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Alphabetical List of Species with Notes on Synonyms, Taxonomy, Distribution, and Ecology

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Freshwater Crustacean Zooplankton of Europe

Abstract

The list presents all valid species recorded in Europe in alphabetical order with notes on synonyms, taxonomy, ecology, and distribution maps. Species distribution has been shown by countries and only certain species with very limited distribution have been shown on smaller, often endemic areas. The distribution maps were prepared based on all monographs and primary literature listed (after a colon) at the end (with a few exceptions) of each synonym list or cited in the ecology notes. As complementary information the catalog of Limnofauna Europea (Illies 1967, 1978) and the Fauna Europea (de Jong 2013) were also used.

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References

  • Adamowicz SJ, Menu-Marque S, Halse SA, Topan JC, Zemlak TS, Hebert PD, Witt JD (2010) The evolutionary diversification of the Centropagidae (Crustacea, Calanoida): a history of habitat shifts. Mol Phylogenet Evol 55(2):418–430

    Article  PubMed  Google Scholar 

  • Albaina A, Villate F, Uriarte I (2009) Zooplankton communities in two contrasting Basque estuaries (1999-2001): reporting changes associated with ecosystem health. J Plankton Res 31(7):739–752. doi:10.1093/plankt/fbp025

    Article  CAS  Google Scholar 

  • Alekseev VR (1995) Opredelitel presnovodnych becpozvonocznych Rossii i copredelnych territorii. Tom 2 Rakoobraznye. Key to freshwater invertebrates of Russia and adjacent lands, vol 2 Crustacea. St. Petersburg, 629 pp. ISBN 93-04-6296

    Google Scholar 

  • Alekseev VR (1998) Key identification of Cyclopidae of Russia and adjacent lands. Zoosyst Ross 7:25–43

    Google Scholar 

  • Alekseev V (2000a) Taxonomic analysis of species characters for copepodid instars 4 and 5 of the subfamily Eucyclopinae of European Russia. Hydrobiologia 417:57–79

    Article  Google Scholar 

  • Alekseev VR (2000b) Eucyclops dumonti sp nov from Central Mongolia. Hydrobiologia 441(1–3):63–71

    Article  Google Scholar 

  • Alekseev VR (2008) Eucyclops albuferensis sp. nov. (Cyclopida: Copepoda: Crustacea) from Albufera Lake, Valencia, Spain. Proc Zool Instit RAS 312(1/2):127–134

    Google Scholar 

  • Alekseev VR (2010) Two new Eucyclops species (Cyclopiformes: Cyclopidae) from Spain. Zoosyst Ross 19(2):171–178

    Google Scholar 

  • Alekseev VR, Defaye D (2011) Taxonomic differentiation and world geographical distribution of the Eucyclops serrulatus group (Copepoda, Cyclopidae, Eucyclopinae). Crustaceana monographs, studies on freshwater Copepoda: a volume in honour of Bernard Dussart. Brill, Leiden, pp 41–72

    Google Scholar 

  • Alekseev VR, Popov NY (1986) On the specific status of Diacyclops limnobius Kiefer—new to fauna of the USSR. Trudy Zool Inst Acad Nauk SSSR 152:106–116

    Google Scholar 

  • Alekseev V, Fefilova E, Dumont HJ (2002) Some noteworthy free-living copepods from surface freshwater in Belgium. Belg J Zool 132(2):133–139

    Google Scholar 

  • Alekseev V, Dumont HJ, Pensaert J, Baribwegure D, Vanfleteren JR (2006) A redescription of Eucyclops serrulatus (Fischer, 1851) (Crustacea: Copepoda: Cyclopida) and some related taxa, with a phylogeny of the E. serrulatus-group. Zool Script 35(2):123–147

    Article  Google Scholar 

  • Aleshina OA, Kozlova LA, Uslamin DV (2012) Zonalnoe raspredelenie zooplanktona v presnych ozerach zapadnoj Sibiri (na primere Tyumenskoy Oblasti). Vestnik Tymenskogo Gosudarstvennogo Universiteta 12:148–159

    Google Scholar 

  • Alfonso G, Belmonte G (2008) Expanding distribution of Boeckella triarticulata (Thomson, 1883) (Copepoda: Calanoida: Centropagidae) in Southern Italy. Aquat Invasions 3(2):247–251

    Article  Google Scholar 

  • Alfonso G, Belmonte G (2011) Calanoida (Crustacea Copepoda) from the inland waters of Apulia (south-eastern Italy). J Limnol 70(1):57–68

    Article  Google Scholar 

  • Alfonso G, Belmonte G (2013) Neolovenula alluaudi (Guerne and Richard, 1890) (Calanoida: Diaptomidae: Paradiaptominae): first record in Italy and review of geographical distribution. J Limnol 72(2):e20

    Article  Google Scholar 

  • Alfonso G, Belmonte G, Marrone F, Naselli-Flores L (2010) Does lake age affect zooplankton diversity in Mediterranean lakes and reservoirs? A case study from southern Italy. Hydrobiologia 653(1):149–164. doi:10.1007/s10750-010-0350-4

    Article  CAS  Google Scholar 

  • Ali AK, Primicerio R, Folstad I, Liljedal S, Berge J (2009) Morphological correlates of mating frequency and clutch size in wild caught female Eudiaptomus graciloides (Copepoda: Calanoida). J Plankton Res 31(4):389–397. doi:10.1093/plankt/fbn130

    Article  Google Scholar 

  • Alonso M (1984) The Genus Mixodiaptomus Kiefer, 1932 (Copepoda, Diaptomidae) in Spain. Hydrobiologia 118(2):135–146

    Article  Google Scholar 

  • Alonso M (1987a) Ejemplos de vicarianza en comunidades de crustáceos de lagunas esteparias. Limnética 3:81–89

    Google Scholar 

  • Alonso M (1990a) Anostraca, Cladocera and Copepoda of Spanish saline lakes. Hydrobiologia 197:221–231

    Article  Google Scholar 

  • Alonso M (1990b) Estatheroporus gauthieri, new genus, new species (Cladocera: Chydoridae), from Mediterranean countries. J Crustac Biol 10(1):148–161

    Article  Google Scholar 

  • Amar Y, Djahed B, Lebid S, Anani M, Moueddene K, Mathieu C (2012) Impact of industrial pollution on the zooplankton population diversity of the Hammam Boughrara Dam. J Environ Sci Eng A1(4):527–532

    Google Scholar 

  • Andersen T, Hessen DO (1991) Carbon, nitrogen, and phosphorus content of freshwater zooplankton. Limnol Oceanogr 36:807–814

    Article  CAS  Google Scholar 

  • Antonsson U (1992) The structure and function of zooplankton in Thingvallavatn, Iceland. Oikos 64(1–2):188–221

    Article  Google Scholar 

  • Appeltans W, Hannouti A, Van Damme S, Soetaert K, Vanthomme R, Tackx M (2003) Zooplankton in the Schelde estuary (Belgium The Netherlands). The distribution of Eurytemora affinis: effect of oxygen? J Plankton Res 25(11):1441–1445

    Article  Google Scholar 

  • Arbaciauskas K, Kalytyte D (2010) Occurrence and interannual abundance variation of glacial relict calanoids Limnocalanus macrurus and Eurytemora lacustris in Lithuanian lakes. Acta Zool Lituanica 20(1):61–67

    Article  Google Scholar 

  • Armengol J (1976) Crustáceos acuáticos del Coto de Doñana. Oecol Aquat 2:93–97

    Google Scholar 

  • Ascolini A, Di Cola G, Ferrari I (1979) Production of Eudiaptomus intermedius in Lake Santo Parmense. Ital J Zool 46(3):145–151

    Google Scholar 

  • Atici T, Ahiska S, Altindag A, Aydin D (2008) Ecological effects of some heavy metals (Cd, Pb, Hg, Cr) pollution of phytoplanktonic algae and zooplanktonic organisms in Sariyar Dam Reservoir in Turkey. Afr J Biotechnol 7(12):1972–1977

    Article  CAS  Google Scholar 

  • Badosa A, Frisch D, Arechederra A, Serrano L, Green AJ (2010) Recovery of zooplankton diversity in a restored Mediterranean temporary marsh in Doana National Park (SW Spain). Hydrobiologia 654(1):67–82. doi:10.1007/s10750-010-0370-0

    Article  CAS  Google Scholar 

  • Baird W (1850) The natural history of the British Entomostraca. The Ray Society, London, 364 pp

    Book  Google Scholar 

  • Baribwegure D, Dumont HJ (2003) The integumental pore signature of Thermocyclops schmeili (Poppe & Mrázek, 1895); Thermocyclops dybowskii (Landé, 1890); Thermocyclops hooki Loffler, 1968; Thermocyclops incisus Kiefer, 1932 and Thermocyclops inopinus (Kiefer, 1926). Hydrobiologia 505(1–3):15–30. doi:10.1023/b:hydr.0000007216.58971.38

    Article  Google Scholar 

  • Barnett AJ, Finlay K, Beisner BE (2007) Functional diversity of crustacean zooplankton communities: towards a trait-based classification. Freshw Biol 52(5):796–813

    Article  Google Scholar 

  • Bartholme S, Samchyshyna L, Santer B, Lampert W (2005) Subitaneous eggs of freshwater copepods pass through fish guts: survival, hatchability, and potential ecological implications. Limnol Oceanogr 50(3):923–929

    Article  Google Scholar 

  • Bayly IAE (1992b) The non-marine Centropagidae. (Copepoda: Calanoida) of the world, vol 2. SPB Academic Publishing bv, The Hague, pp 1–30

    Google Scholar 

  • Beklioglu M, Tan CO (2008) Restoration of a shallow Mediterranean Lake by biomanipulation complicated by drought. Fundam Appl Limnol 171(2):105–118

    Article  CAS  Google Scholar 

  • Belmonte G, Alfonso G, Moscatello S (2006) Copepod fauna (Calanoida and Cyclopida) in small ponds of the Pollino National Park (South Italy), with notes on seasonality and biometry of species. J Limnol 65(2):107–113

    Article  Google Scholar 

  • Bettinetti R, Garibaldi L, Leoni B, Quadroni S, Galassi S (2012) Zooplankton as an early warning system of persistent organic pollutants contamination in a deep lake (lake Iseo, Northern Italy). J Limnol 71(2):335–339. doi:10.4081/jlimnol.2012.e36

    Article  Google Scholar 

  • Blaha M (2010) Descriptions of copepodid and adult Acanthocyclops trajani (Mirabdullayev & Defaye 2002) and A. einslei (Mirabdullayev & Defaye 2004) (Copepoda: Cyclopida) with notes on their discrimination. Fundam Appl Limnol 177(3):223–240. doi:10.1127/1863-9135/2010/0177-0223

    Article  Google Scholar 

  • Blaha M, Hulak M, Sloukova J, Tesitel J (2010) Molecular and morphological patterns across Acanthocyclops vernalis-robustus species complex (Copepoda, Cyclopida). Zool Script 39(3):259–268. doi:10.1111/j.1463-6409.2010.00422.x

    Article  Google Scholar 

  • Blaustein L (1997) Non-consumptive effects of larval Salamandra on crustacean prey: can eggs detect predators? Oecologia 110(2):212–217

    Article  Google Scholar 

  • Blaustein L, Friedman J, Fahima T (1996) Larval Salamandra drive temporary pool community dynamics: evidence from an artificial pool experiment. Oikos 76(2):392–402

    Article  Google Scholar 

  • Błędzki LA (1989) Ekologia zooplanktonu Zbiornika Włocławskiego. Ph.D. Thesis, N. Copernicus University, Toruń, Poland

    Google Scholar 

  • Blumenshine SC, Hambright HD (2003) Top-down control in pelagic systems: a role for invertebrate predation. Hydrobiologia 491(1–3):347–356

    Article  Google Scholar 

  • Bohonak AJ, Holland MD, Santer B, Zeller M, Kearns CM, Hairston NG (2006) The population genetic consequences of diapause in Eudiaptomus copepods. Arch Hydrobiol 167(1–4):183–202

    Article  CAS  Google Scholar 

  • Bondarenko NA, Sheveleva NG, Domysheva VM (2002) Structure of plankton communities in Ilchir, an alpine lake in eastern Siberia. Limnology 3(2):127–133

    Article  CAS  Google Scholar 

  • Borutzky EV (1962) Piervoye nachozdenie troglobionta iz Calanoida (Crustacea, Copepoda) v podzemnych vodach (In Russian). Doklady Akademii Nauk SSSR 147(6C):1499–1502

    Google Scholar 

  • Borutzky EV, Stepanova LA, Kos MS (1991) Opriedelitiel Calanoida presnykh vod SSSR. Revision of the freshwater Calanoida of the U.S.S.R. (in Russian). Nauka, St. Petersburg, 504 pp

    Google Scholar 

  • Bothár A, Ráth B (1994) Abundance dynamics of crustaceans in different littoral biotopes of the “Szigetkoz” side arm system, River Danube, Hungary. Internationale Vereinigung für Theoretische und Angewandte Limnologie Verhandlungen 25(3):1684–1687

    Google Scholar 

  • Bottazzi E, Bruno MC, Mazzini M, Pieri V, Rossetti G (2008) First report on Copepoda and Ostracoda (Crustacea) from northern Apenninic springs (N. Italy): a faunal and biogeographical account. J Limnol 67(1):56–63

    Article  Google Scholar 

  • Bowman TE, Long A (1968) Relict Populations of Drepanopus bungei and Limnocalanus macrurus Grimaldii (Copepoda—Calanoida) from Ellesmere Island NWT. Arctic 21(3):172–180

    Article  Google Scholar 

  • Boxshall GA, Halsey SH (2004) An introduction to copepod diversity, vol 166. The Ray Society, London, pp 1–966, 163 pp

    Google Scholar 

  • Bozkurt A, Can MF (2014) Seasonal variations in body length and fecundity of 2 copepod species: Thermocyclops crassus (Fischer, 1853) and Eudiaptomus drieschi (Poppe & Mrazek, 1895). Turk J Zool 38(2):222–228. doi:10.3906/zoo-1007-7

    Article  Google Scholar 

  • Bozkurt A, Yusuf S (2008) Birecik baraj gölü zooplaktonunun vertikal dağilimi. J Fish Sci 2(3):332–342

    Google Scholar 

  • Brakovska A, Skute R, Skute A (2012) Heterogeneity of distribution and community composition of zooplankton in upper layers of Lake Svente. Zool Ecol 22(3–4):172–180. doi:10.1080/21658005.2012.733553

    Article  Google Scholar 

  • Brancelj A (1990) Alona hercegovianae n. sp. (Cladocera, Chydoridae), a blind cave-inhabiting cladoceran from Herzegovina, Yugoslavia. Hydrobiologia 199:7–16

    Article  Google Scholar 

  • Brancelj A (1991) Stygobitic Calanoida (Crustacea, Copepoda) from Yugoslavia with the description of a new species—Stygodiaptomus petkovskii from Bosnia and Hercegovina. Stygologia 6(3):165–176

    Google Scholar 

  • Brancelj A (1999) The extinction of Arctodiaptomus alpinus (Copepoda) following the introduction of charr into a small alpine lake Dvojno Jezero (NW Slovenia). Aquat Ecol 33:355–361

    Article  Google Scholar 

  • Brancelj A (2001) Male of Moraria radovnae Brancelj, 1988 (Copepoda: Crustacea), and notes on endemic and rare copepod species from Slovenia and neighboring countries. Hydrobiologia 453(1–3):513–524

    Article  Google Scholar 

  • Brancelj A (2005) Hadodiaptomus dumonti n. gen., n. sp., a new freshwater stygobitic calanoid (Crustacea: Copepoda: Calanoida) from Vietnam (South Asia) and a new member of the subfamily Speodiaptominae Borutzky, 1962. Hydrobiologia 534(1–3):57–70

    Google Scholar 

  • Brancelj A, Dumont HJ (2007) A review of the diversity, adaptations and groundwater colonization pathways in Cladocera and Calanoida (Crustacea), two rare and contrasting groups of stygobionts. Fundam Appl Limnol 168(1):3–17

    Article  Google Scholar 

  • Brandl Z (1998a) Feeding strategies of planktonic cyclopoids in lacustrine ecosystems. J Mar Syst 15(1–4):87–95

    Article  Google Scholar 

  • Brandl Z (1998b) Life strategy and feeding relations of Cyclops vicinus in two reservoirs. Int Rev Hydrobiol 83:381–388

    Article  Google Scholar 

  • Brandl Z, Lavická M (2002) Morphological differentiation of some populations of the genus Cyclops (Copepoda: Cyclopida) from Bohemia (Czech Republic). Acta Soc Zool Bohem 66:161–168

    Google Scholar 

  • Brandorff GO (2011) The copepod invader Skistodiaptomus pallidus (Herrick, 1879) (Crustacea, Copepoda, Diaptomidae) from North America in water bodies of Bremen, northern Germany. Aquat Invasions 6(Suppl 1):S1–S5. doi:10.3391/ai.2011.6.S1.001

    Article  Google Scholar 

  • Brehm V (1955) Calanoide Kopepoden und Cladoceren aus Kreta. Fragm Balc 1(17):149–155

    Google Scholar 

  • Bressac Y (1983) The biological cycle of Acanthodiaptomus denticornis (Copepoda, Calanoida) in the hydroelectric reservoir of Serre Poncon (France) [in French]. Ecol Mediterr 9(1):19–30

    Google Scholar 

  • Brucet S, Compte J, Boix D, Lopez-Flores R, Quintana XD (2008) Feeding of nauplii, copepodites and adults of Calanipeda aquaedulcis (Calanoida) in Mediterranean salt marshes. Mar Ecol Prog Ser 355:183–191

    Article  Google Scholar 

  • Brucet S, Boix D, Gascon S, Sala J, Quintana XD, Badosa A, Sondergaard M, Lauridsen TL, Jeppesen E (2009) Species richness of crustacean zooplankton and trophic structure of brackish lagoons in contrasting climate zones: north temperate Denmark and Mediterranean Catalonia (Spain). Ecography 32(4):692–702. doi:10.1111/j.1600-0587.2009.05823.x

    Article  Google Scholar 

  • Bruno MC, Loftus WF, Reid JW, Perry SA (2001) Diapause in copepods (Crustacea) from ephemeral habitats with different hydroperiods in Everglades National Park (Florida, USA). Hydrobiologia 453(1–3):295–308

    Article  Google Scholar 

  • Bukvic I, Kerovec M, Mihaljevic Z (1999) Eudiaptomus hadzici (BREHM) (Crustacea: Copepoda) from the Dinarid karstic area. Int Rev Hydrobiol 84(1):23–31

    Google Scholar 

  • Bukvic-Ternjej I, Kerovec M, Mihaljevic Z, Tavcar V, Mrakovcic M, Mustafic P (2001) Copepod communities in karstic Mediterranean lakes along the eastern Adriatic coast. Hydrobiologia 453(454):325–333

    Article  Google Scholar 

  • Calliari D, Sanz K, Martinez M, Cervetto G, Gomez M, Basso C (2003) Comparison of the predation rate of freshwater cyclopoid copepod species on larvae of the mosquito Culex pipiens. Med Vet Entomol 17(3):339–342

    Article  CAS  PubMed  Google Scholar 

  • Caramujo MJ, Boavida MJ (1999) Characteristics of the reproductive cycles and development times of Copidodiaptomus numidicus (Copepoda: Calanoida) and Acanthocyclops robustus (Copepoda: Cyclopida). J Plankton Res 21(9):1765–1778

    Article  Google Scholar 

  • Caramujo MJ, Boavida MJ (2000) The seasonal dynamics of Copidodiaptomus numidicus (Gurney, 1909) and Thermocyclops dybowskii (Landé, 1890) in Castelo-do-Bode Reservoir. Aquat Ecol 34(2):143–153

    Article  Google Scholar 

  • Caramujo MJ, Boavida MJ (2010) Biological diversity of copepods and cladocerans in Mediterranean temporary ponds under periods of contrasting rainfall. J Limnol 69(1):64–75. doi:10.3274/JL10-69-1-06

    Article  Google Scholar 

  • Caramujo MJ, Crispim MC, Boavida MJ (1997) Assessment of the importance of fish predation versus copepod predation on life history traits of Daphnia hyalina. Hydrobiologia 360:243–252

    Article  Google Scholar 

  • Catalan J, Barbieri MG, Bartumeus F, Bitusik P, Botev I, Brancelj A, Cogalniceanu D, Manca M, Marchetto A, Ognjanova-Rumenova N, Pla S, Rieradevall M, Sorvari S, Stefkova E, Stuchlik E, Ventura M (2009) Ecological thresholds in European alpine lakes. Freshw Biol 54(12):2494–2517

    Article  CAS  Google Scholar 

  • Champeau A (1965) Étude biologique et biométrique du Copépode Mixodiaptomus kupelwieseri en Camargue [Biological and biometrical study of Mixodiaptomus kupelwieseri in Camargue (Copepoda)] (in French). Ann Limnol 1(2197):212

    Google Scholar 

  • Cherbi M, Lek-Ang S, Lek S, Arab A (2008) Distribution of zooplankton community in Mediterranean-climate lakes. C R Biol 331(9):692–702

    Article  PubMed  Google Scholar 

  • Cole JJ, Carpenter SR, Kitchell J, Pace ML, Solomon CT, Weidel B (2011) Strong evidence for terrestrial support of zooplankton in small lakes based on stable isotopes of carbon, nitrogen, and hydrogen. Proc Natl Acad Sci U S A 108(5):1975–1980

    Article  CAS  PubMed  PubMed Central  Google Scholar 

  • Comita GW (1956) A study of a calanoid copepod population in an arctic lake. Ecology 37(3):576–591

    Article  Google Scholar 

  • Correia MJ, Costa JL, Teixeira C, Almeida PR, Domingos I, Costa MJ (2001) Feeding habits and condition of two landlocked population of Allis shad (Alosa alosa) in Portugal. Bull Fr Peche Piscic 362(363):823–835

    Article  Google Scholar 

  • Cruz-Pizarro L (1984) Morphological and biometrical considerations of 2 Diaptomids (Mixodiaptomus laciniatus, Diaptomus cyaneus) from a High Mountain Lake, La-Caldera, Granada, Spain (Copepoda, Calanoida). Crustaceana 46:225–240

    Google Scholar 

  • Culver DC, Pipan T, Schneider K (2009) Vicariance, dispersal and scale in the aquatic subterranean fauna of karst regions. Freshw Biol 54(4):918–929. doi:10.1111/j.1365-2427.2007.01856.x

    Article  Google Scholar 

  • Czeczuga B, Kozlowska M (2002) Fertility of Eudiaptomus, Bosmina and Daphnia (Crustacea) representatives in lakes of varied trophic states in the Suwalki District. Pol J Environ Stud 11(1):23–31

    Google Scholar 

  • Czerniawski R (2013) Zooplankton community changes between forest and meadow sections in small headwater streams, NW Poland. Biologia 68(3):448–458. doi:10.2478/s11756-013-0170-x

    Article  Google Scholar 

  • Dahms HU, Fernando CH (1994) Redescription of female Macrocyclops fuscus (Jurine, 1820) (Copepoda, Cyclopida) from Ontario with a description of naupliar stages. J Plankton Res 16(1):9–21

    Article  Google Scholar 

  • Damian-Georgescu A (1963) Copepoda. Fam. Cyclopidae (Forme de apa dulce), vol 4. Crustacea (6 Cyclopidae). Editura Academiei Republicii Socialiste Romania, Bucaresti, pp 1–208

    Google Scholar 

  • Damian-Georgescu A (1966) Calanoida, vol 4(8). Editura Academiei Republicii Socialiste Romania, Bucaresti, pp 1–30

    Google Scholar 

  • de Jong YSDM (ed) (2013) Fauna Europaea version 2.6. Web service. http://www.faunaeur.org

  • Defaye D, Cuoc C, Barthélémy RM (2003) A new interpretation of the female genitalia in Macrocyclops albidus (Copepoda, Cyclopidae). Acta Zool 84(1):25–31

    Article  Google Scholar 

  • Deimantovica I, Skute R, Strake S (2011) A survey of the Latvian freshwater free-living Copepoda fauna. Crustaceana 84(3):257–279

    Article  Google Scholar 

  • Demeter L, Marrone F (2009) Updated checklist and distribution of the inland-water calanoid copepods (Copepoda: Calanoida) of Romania. N West J Zool 5(2):370–378. doi:ARTN 051133

    Google Scholar 

  • Derry AM, Arnott SE, Shead JA, Hebert PDN, Boag PT (2009) Ecological linkages between community and genetic diversity in zooplankton among boreal shield lakes. Ecology 90(8):2275–2286

    Article  PubMed  Google Scholar 

  • Diaz-Paniagua C, Fernandez-Zamudio R, Florencio M, Garcia-Murillo P, Gomez-Rodriguez C, Portheault A, Serrano L, Siljestrom P (2010) Temporay ponds from Donana National Park: a system of natural habitats for the preservation of aquatic flora and fauna. Limnetica 29(1):41–58

    Google Scholar 

  • Dieng H, Boots M, Tuno N, Tsuda Y, Takagi M (2002) A laboratory and field evaluation of Macrocyclops distinctus, Megacyclops viridis and Mesocyclops pehpeiensis as control agents of the dengue vector Aedes albopictus in a peridomestic area in Nagasaki, Japan. Med Vet Entomol 16(3):285–291

    Article  CAS  PubMed  Google Scholar 

  • Dimentman C, Por FD (1985) Diaptomidae (Copepoda, Calanoida) of Israel and Northern Sinai—morphology, biology, distribution. Hydrobiologia 127(1):89–95. doi:10.1007/bf00004666

    Article  Google Scholar 

  • Dodson SI, Grishanin AK, Gross K, Wyngaard GA (2003) Morphological analysis of some cryptic species in the Acanthocyclops vernalis species complex from North America. Hydrobiologia 500(1–3):131–143

    Article  Google Scholar 

  • Dodson SI, Newman AL, Will-Wolf S, Alexander ML, Woodford MP, Egeren S (2009) The relationship between zooplankton community structure and lake characteristics in temperate lakes (Northern Wisconsin, USA). J Plankton Res 31(1):93–100. doi:10.1093/plankt/fbn095

    Article  CAS  Google Scholar 

  • Dodson SI, Skelly DA, Lee CE (2010) Out of Alaska: morphological diversity within the genus Eurytemora from its ancestral Alaskan range (Crustacea, Copepoda). Hydrobiologia 653(1):131–148. doi:10.1007/s10750-010-0351-3

    Article  Google Scholar 

  • Doi H, Zuykova EI, Kikuchi E, Shikano S, Kanou K, Yurlova N, Yadrenkina E (2006) Spatial changes in carbon and nitrogen stable isotopes of the plankton food web in a saline lake ecosystem. Hydrobiologia 571:395–400

    Article  CAS  Google Scholar 

  • Dokulil MT, Herzig A (2009) An analysis of long-term winter data on phytoplankton and zooplankton in Neusiedler See, a shallow temperate lake, Austria. Aquat Ecol 43(3):715–725. doi:10.1007/s10452-009-9282-3

    Article  CAS  Google Scholar 

  • Dole-Olivier MJ, Castellarini F, Coineau N, Galassi DMP, Martin P, Mori N, Valdecasas A, Gibert J (2009) Towards an optimal sampling strategy to assess groundwater biodiversity: comparison across six European regions. Freshw Biol 54(4):777–796. doi:10.1111/j.1365-2427.2008.02133.x

    Article  Google Scholar 

  • Donald DB, Vinebrooke RD, Anderson RS, Syrgiannis J, Graham MD (2001) Recovery of zooplankton assemblages in mountain lakes from the effects of introduced sport fish. Can J Fish Aquat Sci 58(9):1822–1830

    Article  Google Scholar 

  • Dooh RT, Adamowicz SJ, Hebert PDN (2006) Comparative phylogeography of two North American ‘glacial relict’ crustaceans. Mol Ecol 15:4459–4475

    Article  CAS  PubMed  Google Scholar 

  • Dorak Z, Gaygusuz Ö, Aydin H, Tarkan AS (2013) Diurnal vertical distribution of zooplankton in a newly formed reservoir (Tahtalı Reservoir, Kocaeli): the role of abiotic factors and chlorophyll a. Turk J Zool 37(2):218–227

    Google Scholar 

  • Dorucu M (2007) Seasonal changes in cestode infection of Cyclops vicinus Uljanin, 1875 (Copepoda, Cyclopida) in Lake Hazar (Elazig, Turkey). Crustaceana 80(9):1095–1102

    Article  Google Scholar 

  • Doulka E, Kehayias G (2008) Spatial and temporal distribution of zooplankton in Lake Trichonis (Greece). J Nat Hist 42(5–8):575–595

    Article  Google Scholar 

  • Dowell KM (1997) Evidence for diapause in the freshwater copepod Skistodiaptomus pallidus. Am Midl Nat 137(2):362–368

    Article  Google Scholar 

  • Dubovskaya OP, Kotov AA, Korovchinsky NM, Smirnov NN, Sinev AY (2010) Zooplankton of lakes in the spurs of the Putorana Plateau and adjacent territories (North of Krasnoyarsk Krai). Contemp Probl Ecol 3(4):401–434. doi:10.1134/S1995425510040065

    Article  Google Scholar 

  • Duggan IC, Duggan KS (2011) Are botanical gardens a risk for zooplankton invasions? Biol Invasions 13(12):2997–3003

    Article  Google Scholar 

  • Dumont HJ (1973) On Metacyclops problematicus spec. nov., a new freshwater cyclopoid copepod from Belgium, with discussion of its taxonomic and ecological status. Zool Anz 191:329–337

    Google Scholar 

  • Dussart B (1967) Les Copepodes des eaux continentales d’Europe occidentale. Tome I: Calanoides at Harpacticoides. N. Boub‚e & Cie, Paris, 500 pp

    Google Scholar 

  • Dussart B (1969) Les Copepodes des eaux continentales d’Europe occidentale. Tome II: Cyclopoides et Biologie. N. Boub‚e & Cie, Paris, 292 pp

    Google Scholar 

  • Dussart BH, Defaye D (2001) Copepoda. Introduction to the Copepoda. In: Dumont HJF (ed) Guides to the identification of the microinvertebrates of the continental waters of the world, vol 16, 2nd edn. Backhuys, Leiden, pp 1–344

    Google Scholar 

  • Dussart B, Defaye D (2002) World directory of Crustacea Copepoda of inland waters. I—Calaniformes, vol 1. Backhuys, Leiden, pp 1–276

    Google Scholar 

  • Dussart B, Defaye D (2006) World directory of Crustacea Copepoda of inland waters. II—Cyclopiformes, 2nd edn. Backhuys, Leiden, 354 pp

    Google Scholar 

  • Dziuba MK, Cerbin S, Wejnerowski L (2013) Cladocera and Copepoda of the shallow eutrophic lake in Natura 2000 area in Western Poland. Pak J Zool 45(3):653–659

    Google Scholar 

  • Einsle U (1975) Revision der Gattung Cyclops s. str., speziell der abyssorum-Gruppe. Memorie dell’Istituto italiano di idrobiologia dottMarco de Marchi 32:57–219

    Google Scholar 

  • Einsle U (1993) Crustacea: Copepoda: Calanoida und Cyclopida, vol 8/4. G. Fisher, Stuttgart

    Google Scholar 

  • Einsle U (1994) Cyclops kikuchii Smirnov, 1932 (Copepoda, Cyclopida), eine Selbstaendige art aus Sueddeutschen Gewaessern. Cyclops kikuchii Smirnov, 1932 (Copepoda, Cyclopida), a separate species from southern German waters. Crustaceana 66(2):240–246

    Article  Google Scholar 

  • Einsle U (1996a) Copepoda: Cyclopida. Genera Cyclops, Megacyclops, Acanthocyclops, vol 10. SPB Academic Publishing bv, Amsterdam, pp 1–83

    Google Scholar 

  • Einsle U (1996b) Cyclops heberti n sp and Cyclops singularis n sp, two new species within the genus Cyclops (‘strenuus-subgroup’) (Crust Copepoda) from ephemeral ponds in southern Germany. Hydrobiologia 319(3):167–177

    Google Scholar 

  • Ejsmont-Karabin J, Karabin A (2013) The suitability of zooplankton as lake ecosystem indicators: crustacean trophic state index. Pol J Ecol 61(3):561–573

    Google Scholar 

  • Elgmork K (1962) A bottom resting stage in the planktonic Copepod Cyclops scutifer Sars. Oikos 13:306–310

    Article  Google Scholar 

  • Enriquez-Garcia C, Nandini S, Sarma SSS (2013) Feeding behaviour of Acanthocyclops americanus (Marsh) (Copepoda: Cyclopida). J Nat Hist 47(5–12):853–862. doi:10.1080/00222933.2012.747637

    Article  Google Scholar 

  • Evdokimov NA, Ermokhin MV (2009a) The effect of hydrological and morphometric parameters of temporary waterbodies on the structure and abundance dynamics of crustacean zooplankton. Inland Water Biol 2(3):247–253. doi:10.1134/S1995082909030080

    Article  Google Scholar 

  • Evdokimov NA, Ermokhin MV (2009b) The typology of temporary waterbodies and the influence of their parameters on the crustacean species composition of zooplankton. Inland Water Biol 2(2):171–176

    Article  Google Scholar 

  • Evdokimov NA, Ermokhin MV (2009c) Zooplankton crustaceans of ephemeral waterbodies on the territory of various natural zones in Saratov oblast. Inland Water Biol 2(1):59–66. doi:10.1134/S199508290901009X

    Article  Google Scholar 

  • Evdokimov NA, Yermokhin MV (2007) Seasonal dynamics of population density and biomass of Hemidiaptomus hungaricus Kiefer, 1933 (Copepoda, Calanoida) in temporary reservoirs in the Saratov region. Povolz Ekol Z 4:287–296

    Google Scholar 

  • Fadda A, Markova S, Kotlik P, Luglie A, Padedda B, Buscarinu P, Sechi N, Manca M (2011) First record of planktonic crustaceans in Sardinian reservoirs. Biologia 66(5):856–865

    Article  Google Scholar 

  • Fahd K, Serrano L, Toja J (2000) Crustacean and rotifer composition of temporary ponds in the Donana National Park (SW Spain) during floods. Hydrobiologia 436(1–3):41–49

    Article  Google Scholar 

  • Fahd K, Florencio M, Keller C, Serrano L (2007) The effect of the sampling scale on zooplankton community assessment and its implications for the conservation of temporary ponds in south-west Spain. Aquat Conserv 17(2):175–193

    Article  Google Scholar 

  • Fahd K, Arechederra A, Florencio M, Leon D, Serrano L (2009) Copepods and branchiopods of temporary ponds in the Doana Natural Area (SW Spain): a four-decade record (1964-2007). Hydrobiologia 634(1):219–230. doi:10.1007/s10750-009-9889-3

    Article  Google Scholar 

  • Farkač J, Škorpík M, Král D (2005) Red list of threatened species in the Czech Republic, invertebrates. Agentura ochrany přírody a krajiny ČR, Praha, 760 pp

    Google Scholar 

  • Fefilova E, Dubovskaya O, Kononova O, Khokhlova L (2013) A comparative survey of the freshwater copepods of two different regions of the Central Palaearctic: European and Siberian. J Nat Hist 47(5–12):805–819. doi:10.1080/00222933.2012.742163

    Article  Google Scholar 

  • Fernando CH (2002) A guide to tropical freshwater zooplankton: identification, ecology and impact on fisheries. Backhuys, Leiden, 291 pp. ISBN 90-5782-117-6

    Google Scholar 

  • Ferrara O (2002) Zooplankton abundance and diversity in Lake Bracciano, Latium, Italy. J Limnol 61(2):169–175

    Article  Google Scholar 

  • Ferrari I (1971) Notes on the dynamics of the reproductive activity of Arctodiaptomus bacillifer in high altitude alpine lakes. Boll Zool 38(3):221–235

    Article  Google Scholar 

  • Ferrari FD (2000) Patterns of setal numbers conserved during early development of swimming legs of Copepoda (Crustacea). Hydrobiologia 417:81–90

    Article  Google Scholar 

  • Ferrari I, Ascolini A (1975) Life cycle of Eudiaptomus intermedius Copepoda Calanoida in a mountain lake. Boll Zool 42(1):39–47

    Article  Google Scholar 

  • Ferrari I, Menozzi P, Moroni A (1992) Research on northern Apennine lakes and aquatic systems in the Plain, Italy. Mem Ist Ital Idrobiol 50:273–294

    Google Scholar 

  • Fidalgo ML, Monteiro MT (2003) A note on the presence of Dussartius baeticus (Dussart, 1967) in Portugal (Copepoda, Calanoida). Crustaceana 76:1399–1407

    Article  Google Scholar 

  • Fiers F, Ghenne V (2000) Cryptozoic copepods from Belgium: diversity and biogeographic implications. Belg J Zool 130(1):11–19

    Google Scholar 

  • Forró L, Gulyas P (1992) Eurytemora velox (Lilljeborg, 1853) (Copepoda: Calanoida) in the Szigetkoz region of the Danube. Miscell Zool Hung 7:53–58

    Google Scholar 

  • Forró L, De Meester L, Cottenie K, Dumont HJ (2003) An update on the inland cladoceran and copepod fauna of Belgium, with a note on the importance of temporary waters. Belg J Zool 133(1):31–36

    Google Scholar 

  • Frisch D (2001) Life cycles of the two freshwater copepods Cyclops strenuus Fischer and Cyclops insignis Claus (Cyclopida, Copepoda) in an amphibious floodplain habitat. Hydrobiologia 453(1–3):285–293

    Article  Google Scholar 

  • Frisch D (2002) Dormancy, dispersal and the survival of cyclopoid copepods (Cyclopida, Copepoda) in a lowland floodplain. Freshw Biol 47(7):1269–1281

    Article  Google Scholar 

  • Frisch D, Green AJ (2007) Copepods come in first: rapid colonization of new temporary ponds. Fundam Appl Limnol 168(4):289–297

    Article  Google Scholar 

  • Frisch D, Santer B (2004) Temperature-induced responses of a permanent-pond and a temporary-pond cyclopoid copepod: a link to habitat predictability? Evol Ecol Res 6(4):541–553

    Google Scholar 

  • Frisch D, Moreno-Ostos E, Green AJ (2006a) Species richness and distribution of copepods and cladocerans and their relation to hydroperiod and other environmental variables in Donana, south-west Spain. Hydrobiologia 556:327–340

    Article  Google Scholar 

  • Frisch D, Rodriguez-Perez H, Green AJ (2006b) Invasion of artificial ponds in Donana Natural Park, southwest Spain, by an exotic estuarine copepod. Aquat Conserv 16(5):483–492

    Article  Google Scholar 

  • Fryer G (1955) A critical review of the genus Ectocyclops (Crustacea, Copepoda). Ann Mag Nat Hist 8:938–950

    Article  Google Scholar 

  • Fryer G, Joyce A (1981) The distribution of some freshwater copepods and its bearing on the history of the fauna and flora of the British Isles. J Biogeogr 8:281–291

    Article  Google Scholar 

  • Garcia CE, Nandini S, Sarma SSS (2011) Demographic characteristics of the copepod Acanthocyclops americanus (Sars, 1863) (Copepoda: Cyclopida) fed mixed algal (Scenedesmus acutus)-rotifer (Brachionus havanaensis) diet. Hydrobiologia 666(1):59–69

    Article  Google Scholar 

  • Garibaldi L, Anzani A, Marieni A, Leoni B, Mosello R (2003) Studies on the phytoplankton of the deep subalpine Lake Iseo. J Limnol 62(2):177–189

    Article  Google Scholar 

  • Gaviria S (1998) Checklist and distribution of the free-living copepods (Arthropoda: Crustacea) from Austria. Ann Naturhist Mus Wien 100B:539–594

    Google Scholar 

  • Gaviria S, Forró L (2000) Morphological characterization of new populations of the copepod Eurytemora velox (Lilljeborg, 1853) (Calanoida, Temoridae) found in Austria and Hungary. Hydrobiologia 438(1–3):205–216

    Article  Google Scholar 

  • George DG (1973) Diapause in Cyclops vicinus. Oikos 24(1):136–142

    Article  Google Scholar 

  • Georgiev BB, Biserkov VY, Naydenov VT, Genov T (1986) Eudiaptomus vulgaris (Schmeil, 1998) (Copepoda, Calanoida)—an intermediate host of Echinocotyle (Echinocotyloides) ukrainensis Kornyushin, 1969 (Gestoda, Hymenolepididae). Dokladi Na Bolgarskata Akademiya Na Naukite 39(8):137–140

    Google Scholar 

  • Geraldes A, Boavida M (2004a) Limnological variations of a reservoir during two successive years: one wet, another dry. Lakes Reserv Res Manag 9(2):143–152

    Article  Google Scholar 

  • Geraldes AM, Boavida MJ (2004b) What factors affect the pelagic cladocerans of the meso-eutrophic Azibo Reservoir? Ann Limnol 40(2):101–111

    Article  Google Scholar 

  • Gherardi F, Bertolino S, Bodon M, Casellato S, Cianfanelli S, Ferraguti M, Lori E, Mura G, Nocita A, Riccardi R, Rossetti G, Rota E, Scalera R, Zerunian S, Tricarico E (2008) Animal xenodiversity in Italian inland waters: distribution, modes of arrival, and pathways. Biol Invasions 10(4):435–454

    Article  Google Scholar 

  • Gliwicz ZM (1986) Predation and the evolution of vertical migration behavior in zooplankton. Nature 320:746–748

    Article  Google Scholar 

  • Gliwicz ZM, Rowan MG (1984) Survival of Cyclops abyssorum tatricus Copepoda Crustacea in alpine lakes stocked with planktivorous fish. Limnol Oceanogr 29(6):1290–1299

    Article  Google Scholar 

  • Gliwicz ZM, Rybak JI (1976) Zooplankton. In: Selected problems of lake littoral ecology. PWN, Warszawa, pp 69–96

    Google Scholar 

  • Gliwicz ZM, Stibor H (1993) Egg predation by copepods in Daphnia brood cavities. Oecologia 95(2):295–298

    Article  Google Scholar 

  • Goncalves A, Azeiteiro U, Pardal M, De Troch M (2012) Fatty acid profiling reveals seasonal and spatial shifts in zooplankton diet in a temperate estuary. Estuar Coast Shelf Sci 109:70–80

    Article  CAS  Google Scholar 

  • Goss LB, Bunting DL (1976) Thermal tolerance of zooplankton. Water Res 10:387–398

    Article  Google Scholar 

  • Grigorovich IA, MacIsaac HJ, Shadrin NV, Mills EL (2002) Patterns and mechanisms of aquatic invertebrate introductions in the Ponto-Caspian region. Can J Fish Aquat Sci 59(7):1189–1208. doi:10.1139/f02-088

    Article  Google Scholar 

  • Grishanin A (2014) Chromatin diminution in Copepoda (Crustacea): pattern, biological role and evolutionary aspects. Comp Cytogenet 8(1):1–10. doi:10.3897/CompCytogen.v8i1.5913

    Article  PubMed  PubMed Central  Google Scholar 

  • Grishanin AK, Rasch EM, Dodson SI, Wyngaard GA (2006) Genetic architecture of the cryptic species complex of Acanthocyclops vernalis (Crustacea : Copepoda). II. Crossbreeding experiments, cytogenetics, and a model of chromosomal evolution. Evolution 60(2):247–256

    CAS  PubMed  Google Scholar 

  • Grygierek E (1971) Some data on the role of food in the biology of Eudiaptomus zachariasi Poppe. Ekol Pol 19(21):177–192

    Google Scholar 

  • Guisande C, Bartumeus F, Ventura M, Catalan J (2003) Role of food partitioning in structuring the zooplankton community in mountain lakes. Oecologia 136(4):627–634

    Article  CAS  PubMed  Google Scholar 

  • Gurney B (1921) Two new British Entomostraca. Ann Mag Nat Hist 9:236–243

    Article  Google Scholar 

  • Guseska D, Tasevska O, Kostoski G (2012) Zooplankton dynamic of Lake Prespa (Macedonia). Biologia 67(5):939–944

    Article  Google Scholar 

  • Gutierrez-Aguirre M, Suarez-Morales E (2000) The Eurasian Thermocyclops crassus (Fischer, 1853) (Copepoda, Cyclopida) found in southeastern Mexico. Crustaceana 73:705–713

    Article  Google Scholar 

  • Gutierrez-Aguirre MA, Mercado-Salas NF, Cervantes-Martinez A (2013) Description of Eucyclops tziscao sp n., E. angeli sp n., and a new record of E. festivus Lindberg, 1955 (Cyclopida, Cyclopidae, Eucyclopinae) in Chiapas, Mexico. Zookeys (351):1–30. doi:10.3897/zookeys.351.5413

    Google Scholar 

  • Halvorsen G, Dervo BK, Papińska K (2004) Zooplankton in Lake Atnsjoen 1985-1997. Hydrobiologia 521(1–3):149–175

    Article  Google Scholar 

  • Hamrova E, Krajicek M, Karanovic T, Cerny M, Petrusek A (2012) Congruent patterns of lineage diversity in two species complexes of planktonic crustaceans, Daphnia longispina (Cladocera) and Eucyclops serrulatus (Copepoda), in East European mountain lakes. Zool J Linnean Soc 166(4):754–767

    Article  Google Scholar 

  • Hansen AM, Santer B (2003) The life cycle of Cyclops vicinus in Lake Sobygard: new aspects derived from sediment analyses. Hydrobiologia 510(1–3):17–21

    Article  Google Scholar 

  • Hartmann HJ, Taleb H, Aleya L, Lair N (1993) Predation on Ciliates by the suspension-feeding calanoid copepod Acanthodiaptomus denticornis. Can J Fish Aquat Sci 50(7):1382–1393

    Article  Google Scholar 

  • Heron GA (1964) Seven Species of Eurytemora (Copepoda) from Northwestern North America. Crustaceana 7(3):199–211

    Article  Google Scholar 

  • Hessen DO, Walseng B (2008) The rarity concept and the commonness of rarity in freshwater zooplankton. Freshw Biol 53(10):2026–2035

    Article  Google Scholar 

  • Hołyńska M (2008) On the morphology and geographical distribution of some problematic South Palearctic Cyclops (Copepoda: Cyclopidae). J Nat Hist 42(29–30):2011–2039

    Article  Google Scholar 

  • Hołyńska M, Dahms HU (2004) New diagnostic microcharacters of the cephalothoracic appendages in Cyclops O. F. Muller, 1776 (Crustacea, Copepoda, Cyclopida). Zoosystema 26(2):175–198

    Google Scholar 

  • Homonnay ZG, Keki Z, Marialigeti K, Toth EM (2012) Bacterial communities in the gut of the freshwater copepod Eudiaptomus gracilis. J Basic Microbiol 52(1):86–90

    Article  PubMed  Google Scholar 

  • Horicka Z, Stuchlik E, Hudec I, Cerny M, Fott J (2006) Acidification and the structure of crustacean zooplankton in mountain lakes: the Tatra Mountains (Slovakia, Poland). Biologia 61:S121–S134

    Article  CAS  Google Scholar 

  • Horvath Z, Vad CF, Voeroes L, Boros E (2013) The keystone role of anostracans and copepods in European soda pans during the spring migration of waterbirds. Freshw Biol 58(2):430–440. doi:10.1111/fwb.12071

    Article  Google Scholar 

  • Hudec I (2001) Red (Ecosozological) list of (Crustacea) of Slovakia. In: Balaz D, Marhold K, Urban P (eds) Red list of plants and animals of Slovakia. Ochr Przyr 20 Suppl:87–90

    Google Scholar 

  • Iepure S, Martinez-Hernandez V, Herrera S, Rasines-Ladero R, de Bustamante I (2013) Response of microcrustacean communities from the surface-groundwater interface to water contamination in urban river system of the Jarama basin (central Spain). Environ Sci Pollut Res 20(8):5813–5826. doi:10.1007/s11356-013-1529-9

    Article  CAS  Google Scholar 

  • Illies J (1967) Limnofauna Europaea, 1st edn. Gustav Fischer Verlag, Stuttgart

    Google Scholar 

  • Illies J (1978) Limnofauna Europaea, 2nd edn. Gustav Fischer, Stuttgart, 532 pp. ISBN 3-437-30246-9

    Google Scholar 

  • Illyova M, Kubicek F (2002) Crustaceans (Crustacea: Cladocera, Copepoda) of the Morava River alluvium on the Slovak territory. Acta Soc Zool Bohem 66(3):205–212

    Google Scholar 

  • Illyova M, Pastuchova Z (2012) The zooplankton communities of small water reservoirs with different trophic conditions in two catchments in western Slovakia. Limnologica 42(4):271–281

    Article  CAS  Google Scholar 

  • Illyova M, Bukvayova K, Nemethova D (2008) Zooplankton in a Danube river arm near Rusovce (Slovakia). Biologia 63(4):566–573

    Article  Google Scholar 

  • Ishida T (1997) Eucyclops roseus, a new Eurasian copepod, and the E. serrulatus-speratus problem in Japan. Jpn J Limnol 58:349–358

    Article  Google Scholar 

  • Ishida T (1998) Eucyclops biwensis, a new cyclopoid copepod (Crustacea) from Lake Biwa, Japan, with records of a morphologically identical population of the new species and Eucyclops roseus from Lake Victoria. Bull Biogeograph Soc Jpn 53:23–27

    Google Scholar 

  • Issi IV, Tokarev YS, Voronin VN, Seliverstova EV, Pavlova OA, Dolgikh VV (2010) Ultrastructure and molecular phylogeny of Mrazekia macrocyclopis sp. n. (Microsporidia, Mrazekiidae), a microsporidian parasite of Macrocyclops albidus (Jur.) (Crustacea, Copepoda). Acta Protozool 49(1):75–84

    CAS  Google Scholar 

  • Ivanets O (2011) Zooplankton of the water vegetation in the ponds of west forest-steppe of Ukraine. Visnyk Univ Ser Biol 2011(56):148–156

    Google Scholar 

  • Jamieson CD (2005) Coexistence of two similar copepod species, Eudiaptomus gracilis and E. graciloides: the role of differential predator avoidance. Hydrobiologia 542:191–202

    Article  Google Scholar 

  • Janiec K (1996) The comparison of freshwater invertebrates of Spitsbergen (Arctic) and King George Island (Antarctic). Pol Polar Res 17:173–202

    Google Scholar 

  • Jaume D (1989) Calanoides (Crustacea: Copepoda) de les aigües continentals baleàriques. Calanoida (Crustacea: Copepoda) from inland waters of the Balearic Islands (W. Mediterranean). Boll Soco Hist Nat Balears 33(1989–1990):207–219. Palma de Mallorca

    Google Scholar 

  • Jedryczkowski W (1978) Dynamics of periodic development of the fauna of cladocera and copepoda of small reservoirs. Fragm Faun (Warsaw) 23(13):305–314

    Google Scholar 

  • Jensen JW (1981) The annual cycle and production of Arctodiaptomus laticeps in lake Malsjoen Norway. J Plankton Res 3(2):283–290. doi:10.1093/plankt/3.2.283

    Article  Google Scholar 

  • Jeppesen E, Christoffersen K, Malmquist HJ, Faafeng B, Hansson LA (2002) Ecology of five Faroese lakes: summary and synthesis. Ann Soc Scient Færoensis Suppl 36:126–139

    Google Scholar 

  • Jersabek CD, Schabetsberger R (1995) Resting egg-production and oviducal cycling in two sympatric species of alpine diaptomids (Copepoda, Calanoida) in relation to temperature and food availability. J Plankton Res 17(11):2049–2078. doi:10.1093/plankt/17.11.2049

    Article  Google Scholar 

  • Jersabek CD, Goldschmid A, Schabetsberger R (1996) Naupliar development of Acanthodiaptomus denticornis (Wierzejski, 1887) and Arctodiaptomus alpinus (Imhof, 1885) (Copepoda: Calanoida) and a comparison with other Diaptomidae. J Plankton Res 18(11):2027–2061

    Article  Google Scholar 

  • Jersabek CD, Brancelj A, Stoch F, Schabetsberger R (2001) Distribution and ecology of copepods in mountainous regions of the Eastern Alps. Hydrobiologia 453(1–3):309–324

    Article  Google Scholar 

  • Jersabek CD, Luger MS, Schabetsberger R, Grill S, Strickler JR (2007) Hang on or run? Copepod mating versus predation risk in contrasting environments. Oecologia 153(3):761–773

    Article  PubMed  Google Scholar 

  • Jimenez-Melero R, Santer B, Guerrero F (2005) Embryonic and naupliar development of Eudiaptomus gracilis and Eudiaptomus graciloides at different temperatures: comments on individual variability. J Plankton Res 27(11):1175–1187

    Google Scholar 

  • Johansson KSL, Vrede T, Lebret K, Johnson RK (2013) Zooplankton feeding on the nuisance flagellate Gonyostomum semen. PLoS One 8(5). doi:10.1371/journal.pone.0062557

    Google Scholar 

  • Karanovic T (1999a) First record of Metacyclops stammeri Kiefer, 1938 from Balkan Peninsula (Crustacea, Copepoda). Spixiana 22:193–198

    Google Scholar 

  • Karanovic T (1999b) A new stygobitic Calanoida (Crustacea: Copepoda) of the genus Stygodiaptomus Petkovski, 1981 from the Balkan Peninsula. Proc Biol Soc Wash 112(4):682–686

    Google Scholar 

  • Karanovic T (2004a) The genus Metacyclops Kiefer in Australia (Crustacea: Copepoda: Cyclopida), with description of two new species. Rec West Aust Mus 22(3):193–212

    Google Scholar 

  • Karanovic T (2004b) Subterranean Copepoda from arid Western Australia. Crustac Monogr 3:1–366

    Google Scholar 

  • Karanovic T, Krajicek M (2012a) First molecular data on the Western Australian Diacyclops (Copepoda, Cyclopida) confirm morpho-species but question size differentiation and monophyly of the Alticola-Group. Crustaceana 85(12–13):1549–1569

    Article  Google Scholar 

  • Karanovic T, Krajicek M (2012b) When anthropogenic translocation meets cryptic speciation globalized bouillon originates; molecular variability of the cosmopolitan freshwater cyclopoid Macrocyclops albidus (Crustacea: Copepoda). Annal Limnol 48(1):63–80

    Article  Google Scholar 

  • Karanovic T, Eberhard SM, Murdoch A (2011) A cladistic analysis and taxonomic revision of Australian Metacyclops and Goniocyclops, with description of four new species and three new genera (Copepoda, Cyclopida). Crustaceana 84(1):1–67

    Article  Google Scholar 

  • Karanovic T, Grygier MJ, Lee W (2013) Endemism of subterranean Diacyclops in Korea and Japan, with descriptions of seven new species of the languidoides-group and redescription of D. brevifurcus Ishida, 2006 and D. suoensis Ito, 1954 (Crustacea, Copepoda, Cyclopida). Zookeys (267):1–76. doi:10.3897/zookeys.267.3935

    Google Scholar 

  • Karatayev AY, Mastitsky SE, Burlakova LE, Olenin S (2008) Past, current, and future of the central European corridor for aquatic invasions in Belarus. Biol Invasions 10(2):215–232

    Article  Google Scholar 

  • Karaytug S (1999) Genera Paracyclops, Ochridacyclops and key to the Eucyclopinae. In: Dumont HJ (ed) Guides to the identification of the microinvertebrates of the continental waters of the world, vol. 14. Backhuys, Leiden, 217 pp

    Google Scholar 

  • Karaytug S, Boxshall GA (1998) The Paracyclops fimbriatus-complex (Copepoda, Cyclopida): a revision. Zoosystema 20:563–602

    Google Scholar 

  • Karlsson J, Sawstrom C (2009) Benthic algae support zooplankton growth during winter in a clear-water lake. Oikos 118(4):539–544. doi:10.1111/j.1600-0706.2009.17239.x

    Article  Google Scholar 

  • Kasprzak P, Reese C, Koschel R, Schulz M, Hambaryan L, Mathes J (2005) Habitat characteristics of Eurytemora lacustris (Poppe, 1887) (Copepoda, Calanoida): the role of lake depth, temperature, oxygen concentration and light intensity. Int Rev Hydrobiol 90(3):292–309

    Article  Google Scholar 

  • Katsiapi M, Michaloudi E, Moustaka-Gouni M, Pahissa Lopez J (2012) First ecological evaluation of the ancient Balkan Lake Megali Prespa based on plankton. J Biol Res Thessaloniki 17:51–56

    Google Scholar 

  • Kehayias G, Michaloudi E, Bexi A (2004) Aspects on the seasonal dynamics and the vertical distribution of the crustacean zooplankton community and the Dreissena polymorpha larvae in Lake Trichonis. Mediterr Marine Sci 5(1):19–28

    Article  Google Scholar 

  • Kehayias G, Chalkia E, Chalkia S, Nistikakis G, Zacharias I, Zotos A (2008) Zooplankton dynamics in the upstream part of Stratos reservoir (Greece). Biologia 63(5):699–710

    Article  Google Scholar 

  • Keitt TH (2008) Coherent ecological dynamics induced by large-scale disturbance. Nature 454(7202):331–U339

    Article  CAS  PubMed  Google Scholar 

  • Kelly NE, Yan ND, Walseng B, Hessen DO (2013a) Differential short- and long-term effects of an invertebrate predator on zooplankton communities in invaded and native lakes. Divers Distrib 19(4):396–410. doi:10.1111/j.1472-4642.2012.00946.x

    Article  Google Scholar 

  • Kiefer F (1928) Crustacea 1. Copepoda aqua-dulcis. In: Contribution à la faune du Cameroun. Faune colon. françaises, vol 1, pp 535–570

    Google Scholar 

  • Kiefer F (1929) Das Tierreich; Crustacea Copepoda II. Cyclopida Gnathostoma, Berlin

    Google Scholar 

  • Kiefer F (1932a) Neue Süsswassercopepoden aus Jugoslawien. Zool Anz 101(3/4):49–60

    Google Scholar 

  • Kiefer F (1932b) Versuch eines Systems der Diaptomiden (Copepoda Calanoida). Zool Jahrb Syst 63(4):451–520

    Google Scholar 

  • Kiefer F (1964) Zur Kenntnis der subterranen Copepoden (Crustacea) Osterreichs. Annal Nat Mus Wien 67:477–485

    Google Scholar 

  • Kiefer F (1968) Versuch einer Revision der Gattung Eudiaptomus Kiefer (Copepoda, Calanoida). Memorie dell’Istituto Italiano di Idrobiologia Dott Marco De Marchi 24:9–160

    Google Scholar 

  • Kiefer F (1972) Zur Kenntnis von Morphologie und Systematik einiger Arten der Gattung Diaptomus (s. restr.) (Crustacea, Copepoda). Zool Script 1(5):229–240

    Article  Google Scholar 

  • Kiefer F (1974a) Revision of the cyaneus group of the genus Diaptomus crustacea Copepoda Calanoida. Zool Anz 192(3–4):279–288

    Google Scholar 

  • Kiefer F (1974b) Zur Kenntnis von Morphologie und Systematik einiger Arten der Gattung Arctodiaptomus Kiefer (Crustacea, Copepoda). Zool Script 3(1):11–22

    Article  Google Scholar 

  • Kiefer F (1978) Das Zooplankton der Binnengewasser: Freilebende Copepoda. vol 26, Teil 2. Stuttgart

    Google Scholar 

  • Kiss A (2000) Limnological investigations of small water bodies in the Pilis Biosphere Reserve, Hungary: two forest ponds: Tolaki-lap and Csikovari-to. Opusc Zool (Budapest) 32:103–112

    Google Scholar 

  • Koksvik JI, Reinertsen H, Koksvik J (2009) Plankton development in Lake Jonsvatn, Norway, after introduction of Mysis relicta: a long-term study. Aquat Biol 5(3):293–304

    Article  Google Scholar 

  • Korenchenko EA (1993) [The first information on the biology of Philomena sibirica (Nematoda: Philometridae)-a cavitary parasite of whitefish]. Parazitologiia 27(5):385–390

    CAS  PubMed  Google Scholar 

  • Koźmiński Z (1927) Über die Variabilitat der Cyclopiden aus der strenuus-Gruppe auf Grund von quantitativen Untersuchungen. Bull Acad Sci Cracovie Ser B:1–114

    Google Scholar 

  • Koźmiński Z (1933) Badania morfometryczne i ekologiczne nad oczlikami (Cyclopidae) z grupoy strenuus. Arch Hydrobiol Ryb 7:59–140

    Google Scholar 

  • Koźmiński Z (1936) Morphometrische und ökologische Untersuchungen an Cyclopiden der strenuus-Gruppe. Int Rev Hydrobiol Hydrogr 33:161–240

    Article  Google Scholar 

  • Krupa EG, Stuge TC, Dborochotova OB (2012) O faunie Calanoida Kazakhstana (in Russian). In: Materials of the international conference «Wildlife of Kazakhstan and adjacent areas» devoted to the 80th anniversary of the Institute of Zoology, 22–23 Nov 2012, Almaty, pp 128–130

    Google Scholar 

  • Kumar S, Singh G (1990) Reproductive activity of Arctodiaptomus bacillifer (Copepoda, Calanoida) in a high altitude lake (Northwest Himalaya). J Ecobiol 2(3):204–212

    Google Scholar 

  • Kur J, Wojtasik B (2007) Widłonogi Cyclopida wybranych jezior zlewni górnej Raduni [Copepoda Cyclopida from the selected lakes of the Upper Radunia catchment]. In: Borowiak D (ed) Jeziora Kaszubskiego Parku Krajobrazowego. Katedra Limnologii, Uniwersytet Gdański, pp 145–163

    Google Scholar 

  • Kurbatova S, Ershov I (2012) Development of a zooplankton community including Heterocope saliens Lillijeborg in an experiment with Hydrophytes. Inland Water Biol 5(1):75–82

    Article  Google Scholar 

  • Lair N, Hilal M (1992) Acanthodiaptomus denticornis another omnivorous calanoid copepod: description of its mouth appendages and feeding experiments on animal prey. Hydrobiologia 248(2):137–142

    Article  Google Scholar 

  • Lansac-Toha FA, Velho LF, Higuti J, Takahashi EM (2002) Cyclopidae (Crustacea, Copepoda) from the upper Parana River floodplain, Brazil. Braz J Biol 62(1):125–133

    Article  CAS  PubMed  Google Scholar 

  • Lapesa S, Snell TW, Fields DM, Serra M (2002) Predatory interactions between a cyclopoid copepod and three sibling rotifer species. Freshw Biol 47(9):1685–1695

    Article  Google Scholar 

  • Lapesa S, Snell TW, Fields DM, Serra M (2004) Selective feeding of Arctodiaptomus salinus (Copepoda, Calanoida) on co-occurring sibling rotifer species. Freshw Biol 49(8):1053–1061

    Article  Google Scholar 

  • Lazareva VI (2008) Distribution and special traits of naturalization of new and rare zooplankton species in waterbodies of the Upper Volga basin. Inland Water Biol 1(1):76–83

    Article  Google Scholar 

  • Lee CE (1999) Rapid and repeated invasions of fresh water by the copepod Eurytemora affinis. Evolution 53(5):1423–1434

    Article  Google Scholar 

  • Lee CE, Gelembiuk GW (2008) Evolutionary origins of invasive populations. Evol Appl 1(3):427–448. doi:10.1111/j.1752-4571.2008.00039.x

    Article  PubMed  PubMed Central  Google Scholar 

  • Liberge M, Barthélémy RM (2007) Localization of metallothionein, heat shock protein (Hsp70), and superoxide dismutase expression in Hemidiaptomus roubaui (Copepoda, Crustacea) exposed to cadmium and heat stress. Can J Zool 85(3):362–371

    Article  CAS  Google Scholar 

  • Licchelli C, Presta D, Alfonso G, Moscatello S, Belmonte G (2003) Prima segnalazione in Italia di Arctodiaptomus kerkyrensis (Crustacea Copepoda Calanoida) [First record of Arctodiaptomus kerkyrensis (Crustacea Copepoda Calanoida) in Italy]. Riv Idrobiol 42(1–3):283–293

    Google Scholar 

  • Lindberg K (1957) Le groupe Cyclops rubens (syn, Cyclops strenuus). Rebisuin du genre Cyclops s. str. (O.F. Müller, 1770) (Crustaceans Copepodes). CWK Gleerup, Lund, pp 1–335

    Google Scholar 

  • Lindberg K (1961) Remarques sur le genre Metacyclops nouveau du Portugal. Kungliga Fysiografiska sällskapets i Lund förhandlingar 31:133–145

    Google Scholar 

  • Lionard M, Azemar F, Bouletreau S, Muylaert K, Tackx M, Vyverman W (2005) Grazing by meso- and microzooplankton on phytoplankton in the upper reaches of the Schelde estuary (Belgium/The Netherlands). Estuar Coast Shelf Sci 64(4):764–774

    Article  Google Scholar 

  • Lovik JE, Kjellberg G (2003) Long-term changes of the crustacean zooplankton community in Lake Mjosa, the largest lake in Norway. J Limnol 62(2):143–150

    Article  Google Scholar 

  • Lu M, Xie P, Tang HJ, Shao ZJ, Xie LQ (2002) Experimental study of trophic cascade effect of silver carp (Hypophthalmichthys molitrixon) in a subtropical lake, Lake Donghu: on plankton community and underlying mechanisms of changes of crustacean community. Hydrobiologia 487(1):19–31

    Article  Google Scholar 

  • Ludovisi A, Todini C, Pandolfi P, Taticchi MI (2008) Scale patterns of diel distribution of the copepod Cyclops abyssorum Sars in a regulated lake: the relative importance of physical and biological factors. J Plankton Res 30(5):495–509

    Article  Google Scholar 

  • Luger MS, Schabetsberger R, Jersabek CD, Goldschmid A (2000) Life cycles, size and reproduction of the two coexisting calanoid copepods Arctodiaptomus alpinus (IMHOF, 1885) and Mixodiaptomus laciniatus (Lilljeborg, 1889) in a small high-altitude lake. Arch Hydrobiol 148(2):161–185

    Article  Google Scholar 

  • MacLennan MM, Arnott SE, Strecker AL (2012) Differential sensitivity of planktonic trophic levels to extreme summer temperatures in boreal lakes. Hydrobiologia 680(1):11–23. doi:10.1007/s10750-011-0896-9

    Article  CAS  Google Scholar 

  • Maier G (1990) The life-history of 2 copepods with special reference to Eudiaptomus vulgaris Schmeil, 1898. Crustaceana 59:204–212

    Article  Google Scholar 

  • Maier G (1991) Metacyclops minutus (Claus, 1863) a cyclopoid copepod with very rapid development. Crustaceana 61:49–54

    Article  Google Scholar 

  • Maier G (1992) Metacyclops minutus (Claus, 1863)—population dynamics and life history characteristics of a rapidly developing copepod. Int Rev Hydrobiol 77(3):455–466

    Article  Google Scholar 

  • Maier G (1994) Patterns of life history among cyclopoid copepods of central Europe. Freshw Biol 31(1):77–86

    Article  Google Scholar 

  • Maier G, Hossler J, Tessenow U (1998) Succession of physical and chemical conditions and of crustacean communities in some small, man-made water bodies. Int Rev Hydrobiol 83(5–6):405–418

    Article  Google Scholar 

  • Maier G, Speth B, Arp W, Bahnwart M, Kasprzak P (2011) New records of the rare glacial relict Eurytemora lacustris (Poppe 1887) (Copepoda; Calanoida) in atypical lake habitats of northern Germany. J Limnol 70(1):145–148

    Article  Google Scholar 

  • Manca M, Armiraglio M (2002) Zooplankton of 15 lakes in the Southern Central Alps: comparison of recent and past (pre-ca 1850 AD) communities. J Limnol 61(2):225–231

    Article  Google Scholar 

  • Manca M, Calderoni A, Mosello R (1992) Limnological research in Lago Maggiore: studies on hydrochemistry and plankton. Mem Ist Ital Idrobiol 50:171–200

    Google Scholar 

  • Manca M, Carnovale A, Alemani P (2004) Exotopic protrusions and ellobiopsid infection in zooplanktonic copepods of a large, deep subalpine lake, Lago Maggiore, in northern Italy. J Plankton Res 26(11):1257–1263

    Article  Google Scholar 

  • Mann AK (1940) Über pelagische Copepoden türkischer Seen (mit Berücksichtigung des übrigen Planktons). Int Rev Hydrobiol Hydrogr 40(102):1–87

    Article  Google Scholar 

  • Marchetto A, Mosello R, Rogora M, Manca M, Boggero A, Morabito G, Musazzi S, Tartari GA, Nocentini AM, Pugnetti A, Bettinetti R, Panzani P, Armiraglio M, Cammarano P, Lami A (2004) The chemical and biological response of two remote mountain lakes in the Southern Central Alps (Italy) to twenty years of changing physical and chemical climate. J Limnol 63(1):77–89

    Article  Google Scholar 

  • Margaritora FG, Ferrara O, Vagaggini D (2001) Predatory impact of the mosquitofish (Gambusia holbrooki Girard) on zooplanktonic populations in a pond at Tenuta di Castelporziano (Rome, Central Italy). J Limnol 60(2):189–193

    Article  Google Scholar 

  • Marques E (1978) Fresh water copepod Copidodiaptomus steueri found casually in Sardinia Italy. Garcia Orta Ser Zool 7(1–2):7–10

    Google Scholar 

  • Marques SC, Azeiteiro UM, Leandro SM, Queiroga H, Primo AL, Martinho F, Viegas I, Pardal MA (2008) Predicting zooplankton response to environmental changes in a temperate estuarine ecosystem. Mar Biol 155(5):531–541

    Article  Google Scholar 

  • Marrone F (2006) The microcrustacean fauna of Sicily and the central Mediterranean sea area—current knowledge and gaps to be filled. Pol J Ecol 54(4):681–685

    Google Scholar 

  • Marrone F, Naselli-Flores L (2005) First record of a representative of the subfamily Paradiaptominae (Copepoda Calanoida Diaptomidae) in Italy: Metadiaptomus chevreuxi (Guerne & Richard, 1894) Lake Borullus of the Nile Delta: a short history and an uncertain future. J Limnol 64(1):89–92

    Article  Google Scholar 

  • Marrone F, Barone R, Flores LN (2006a) Ecological characterization and cladocerans, calanoid copepods and large branchiopods of temporary ponds in a Mediterranean island (Sicily, southern Italy). Chem Ecol 22:S181–S190

    Article  Google Scholar 

  • Marrone F, Castelli G, Barone R, Naselli-Flores L (2006b) Ecology and distribution of calanoid copepods in Sicilian inland waters (Italy). Verh Int Ver Limnol 29:2150–2156

    Google Scholar 

  • Marrone F, Castelli G, Naselli FL (2009) Sicilian temporary ponds: an overview on the composition and affinities of their crustacean biota. In: International conference on Mediterranean temporary ponds. Proceedings & abstracts. Consell Insular de Menorca, Recerca, Menorca, vol 14, pp 189–202

    Google Scholar 

  • Marrone F, Lo Brutto S, Arculeo M (2010) Molecular evidence for the presence of cryptic evolutionary lineages in the freshwater copepod genus Hemidiaptomus GO Sars, 1903 (Calanoida, Diaptomidae). Hydrobiologia 644(1):115–125. doi:10.1007/s10750-010-0101-6

    Article  CAS  Google Scholar 

  • Marrone F, Alfonso G, Miserocchi D, Lo Brutto S (2011) First record of Hemidiaptomus (Gigantodiaptomus) superbus (Schmeil, 1895) in Italy, with notes on distribution and conservation status (Copepoda, Calanoida, Diaptomidae). J Limnol 70(1):149–155

    Article  Google Scholar 

  • Marrone F, Lo Brutto S, Hundsdoerfer AK, Arculeo M (2013) Overlooked cryptic endemism in copepods: systematics and natural history of the calanoid subgenus Occidodiaptomus Borutzky 1991 (Copepoda, Calanoida, Diaptomidae). Mol Phylogenet Evol 66(1):190–202

    Article  PubMed  Google Scholar 

  • Marsh CD (1920) Freshwater Copepoda of the Canadian Arctic Expedition 1913-18. Report of the Canadian Arctic Expedition 7(Part J):3J–25J

    Google Scholar 

  • Marten GG, Nguyen M, Mason BJ, Ngo G (2000) Natural control of Culex quinquefasciatus larvae in residential ditches by the copepod Macrocyclops albidus. J Vector Ecol 25(1):7–15

    CAS  PubMed  Google Scholar 

  • Martin P, De Broyer C, Fiers F, Michel G, Sablon R, Wouters K (2009) Biodiversity of Belgian groundwater fauna in relation to environmental conditions. Freshw Biol 54(4):814–829. doi:10.1111/j.1365-2427.2008.01993.x

    Article  Google Scholar 

  • Martinoy M, Boix D, Sala J, Gascón S, Gifre J, Argerich A, Quintana XD (2006) Crustacean and aquatic insect assemblages in the Mediterranean coastal ecosystems of Empordà Wetlands (NE Iberian Peninsula). Limnetica 25(3):665–682

    Google Scholar 

  • Matzinger A, Schmid M, Veljanoska-Sarafiloska E, Patceva S, Guseska D, Wagner B, Mueller B, Sturm M, Wueest A (2007) Eutrophication of ancient Lake Ohrid: global warming amplifies detrimental effects of increased nutrient inputs. Limnol Oceanogr 52(1):338–353

    Article  CAS  Google Scholar 

  • Mauchline J (1998) The biology of calanoid copepods. Adv Mar Biol 33:1–710

    Article  Google Scholar 

  • Megyeri J (1969) Hydrofaunistische untersuchungen der sümpfe des waldes zu zsombó. Mora Ferenc Muz Evk 1:257–268

    Google Scholar 

  • Meleg IN, Fiers F, Robu M, Moldovan OT (2012) Distribution patterns of subsurface copepods and the impact of environmental parameters. Limnologica 42(2):156–164

    Article  Google Scholar 

  • Meshkova TM (1953) Zooplankton of Lake Sevan. Trudy Sevan Hydrobiol Stantsii (In Russian) 13:5–170

    Google Scholar 

  • Michaloudi E (2005) Dry weights of the zooplankton of Lake Mikri Prespa (Macedonia, Greece). Belg J Zool 135(2):223–227

    Google Scholar 

  • Mioduchowska M, Wojtasik B (2009) Copepoda-Cyclopida of water bodies of the coast of Gdansk. Teka Kom Ochr Kszt Środ Przyr–OL PAN 6:189–199

    Google Scholar 

  • Mirabdullayev IM, Defaye D (2002) On taxonomy of the Acanthocyclops robustus complex (Copepoda, Cyclopidae). 1. Acanthocyclops robustus (G. o. Sars, 1863) and Acanthocyclops trajani n. sp. Selevinia 1–4:7–20

    Google Scholar 

  • Mirabdullayev IM, Defaye D (2004) On the taxonomy of the Acanthocyclops robustus species–complex (Copepoda, Cyclopidae): Acanthocyclops brevispinosus and A. einslei sp. n. Vestn Zool 38(5):27–37

    Google Scholar 

  • Mirabdullayev IM, Reid JW, Ueda H (2003) Genus Thermocyclops Kiefer, 1927. In: Copepoda: Cyclopida, Genera Mesocyclops and Thermocyclops. Guides to the identification of the microinvertebrates of the continental waters of the world, vol 20. Backhuys, Leiden

    Google Scholar 

  • Miracle MR (1982) Biogeography of the freshwater zooplanktonic communities of Spain. J Biogeogr 9(6):455–467

    Article  Google Scholar 

  • Miracle MR, Alekseev V, Monchenko V, Sentandreu V, Vicente E (2013) Molecular-genetic-based contribution to the taxonomy of the Acanthocyclops robustus group. J Nat Hist 47(5–12):863–888. doi:10.1080/00222933.2012.744432

    Article  Google Scholar 

  • Mohamed HH, Salman SD (2009) Copepoda of the Southern Iraqi Marshes. 1. Calanoida. Marsh Bul 4(2):148–161

    Google Scholar 

  • Molina-Navarro E, Perez SM, Merlin AS, del Pozo DM (2012) The limnological characteristics and zooplankton community of a newly created site: the Pareja Limno-reservoir. Limnetica 31(1):95–106

    Google Scholar 

  • Monchenko VI (1974) Shchlepnoroti tsiklopopodyni, tsiklopi: (Cyclopidae) [Cyclopidae. In: Fauna Ukraini] (in Ukrainian) vol 27(3). Kiev, Naukova Dumka

    Google Scholar 

  • Monchenko VI (2000) Cryptic species in Diacyclops bicuspidatus (Copepoda: Cyclopida): evidence from crossbreeding studies. Hydrobiologia 417:101–107

    Article  Google Scholar 

  • Monchenko VI, Samchyshyna L (2009) Conception of crossed populations: application in Cyclopida taxonomy. Vestn Zool 43(3):195–198

    Google Scholar 

  • Mori N, Brancelj A (2013) Differences in aquatic microcrustacean assemblages between temporary and perennial springs of an alpine karstic aquifer. Int J Speleol 42(3):257–266. doi:10.5038/1827-806x.42.3.9

    Article  Google Scholar 

  • Muschiol D, Markovic M, Threis I, Traunspurger W (2008) Predator-prey relationship between the cyclopoid copepod Diacyclops bicuspidatus and a free-living bacterivorous nematode. Nematology 10:55–62

    Article  Google Scholar 

  • Mykitchak T (2010) Фaунa гiлляcтoвуcиx (Cladocera) i вecлoнoгиx (Copepoda) paкoпoдiбниx вoдoйм бaceйну p. Шибeнкa (Укpaїнcькi Кapпaти). [Fauna of the cladoceran and copepod crustacean of the reservoir of the Shibenka river basin (the Ukrainian Carpathians)]. Visnyk Lviv Univ Ser Biol 52:107–116

    Google Scholar 

  • Naidenow W (1994) Wandel in der Zusammensetzung der Cladocera-und Copepoda-Fauna des Süßwassers in Bulgarien im letzten Jahrhundert. Lauterbornia 19:95–106

    Google Scholar 

  • Naidenow WT (2001) Changes in metazoan plankton composition in the glacial lakes of the Pirin Mountain in the period 1930-1988. Acta Zool Bulg 53(2):7–18

    Google Scholar 

  • Naidenow W, Pandourski I (1992) Zwei neue Cyclopida (Crustacea, Copepoda) aus den Karstgrundgewässern des Ponorgebirges (Westbulgarien). Acta Zool Bulg 44:27–35

    Google Scholar 

  • Napiórkowski P, Napiórkowska T (2013) The diversity and longitudinal changes of zooplankton in the lower course of a large, regulated European river (the lower Vistula River, Poland). Biologia 68(6):1163–1171. doi:10.2478/s11756-013-0263-6

    Article  Google Scholar 

  • Naselli-Flores L, Barone R (2002) Limnology of a small, temporary water body: the Pond of Santa Rosalia (Sicily, Italy). Verh Int Verein Limnol 28(4):1–5

    Google Scholar 

  • Nebra A, Garcia L, Alonso M, Pardo I (2006) Una nueva especie de cladócero (Ctenopoda, Holopediidae) para la fauna gallega. Graellsia 62(1):101–102

    Article  Google Scholar 

  • Newrkla P (1978) Influence of ionic concentration on population parameters, development time, activity, and respiration rate of Arctodiaptomus spinosus (Daday) (Calanoida, Copepoda). Oecologia 33(1):87–99

    Article  Google Scholar 

  • Nilssen JP, Waervagen SB (2000) Superficial ecosystem similarities vs autecological stripping: the “twin species” Mesocyclops leuckarti (Claus) and Thermocyclops oithonoides (Sars)—seasonal habitat utilisation and life history traits. J Limnol 59(2):79–102

    Article  Google Scholar 

  • Novichkova A, Chertoprud E, Gislason GM (2014) Freshwater Crustacea (Cladocera, Copepoda) of Iceland: taxonomy, ecology, and biogeography. Polar Biol 37(12):1755–1767. doi:10.1007/s00300-014-1559-x

    Article  Google Scholar 

  • Olmo C, Armengol X, Ortells R (2012) Re-establishment of zooplankton communities in temporary ponds after autumn flooding: does restoration age matter? Limnologica 42(4):310–319

    Article  Google Scholar 

  • Olszewski K (1976) Contribution to the knowledge of Copepoda in small and artificial water reservoirs. Prz Zool 20(4):428–432

    Google Scholar 

  • Omesová M (2001) Vzácná vznášivka Hemidiaptomus amblyodon v jarních periodických tůních jižní Moravy. [Rarity of the copepod Hemidiaptomus amblyodon in periodic vernal pools in southern Moravia.]. Ochrana Přírody 56(3):80–81

    Google Scholar 

  • Orfeo M, Ventura M, Tartarotti B, Sommaruga R (2011) Body distribution and source of mycosporine-like amino acids in the cyclopoid copepod Cyclops abyssorum tatricus. J Plankton Res 33(9):1430–1444

    Article  Google Scholar 

  • Pandourski I (1997) Composition, origin, and formation of stygobiont cyclopids from Bulgaria and definition of the “kieferi” group of the genus Acanthocyclops (Crustacea, Copepoda, Cyclopida). Museo Regionale di Scienze Naturali Bollettino (Turin) 15(2):279–297

    Google Scholar 

  • Papa RD, Li H, Tordesillas DT, Han B, Dumont HJ (2012) Massive invasion of Arctodiaptomus dorsalis (Copepoda, Calanoida, Diaptomidae) in Philippine lakes: a threat to Asian zooplankton biodiversity? Biol Invasions 14(12):2471–2478

    Article  Google Scholar 

  • Papińska K (1984) The life cycle and the zones of occurrence of Mesocyclops leuckarti Claus (Cyclopida, Copepoda). Ekol Pol 32:493–531

    Google Scholar 

  • Parra G, Jimenez-Melero R, Guerrero F (2003) A study of the oxygen consumption rates in the Copepod, Neolovenula alluaudi (Calanoida). Crustaceana 76:851–858

    Article  Google Scholar 

  • Pasternak AF, Arashkevich EG (1999) Resting stages in the life cycle of Eudiaptomus graciloides (Lill.) (Copepoda : Calanoida) in Lake Glubokoe. J Plankton Res 21(2):309–325

    Article  Google Scholar 

  • Pesce GL (1994) The genus Diacyclops Kiefer in Italy: a taxonomic, ecological and biogeographical up-to-date review (Crustacea Copepoda Cyclopidae). Arthropoda Selecta 3(3–4):13–19

    Google Scholar 

  • Peter H, Sommaruga R (2008) An evaluation of methods to study the gut bacterial community composition of freshwater zooplankton. J Plankton Res 30(9):997–1006

    Article  Google Scholar 

  • Petkovski TK (1954) Beitrage zur Kenntnis der Jugoslavischen Cyclopiden. Acta Mus Macedonici Sci Nat Skopje 2:1–31

    Google Scholar 

  • Petkovski TK (1978) Triglodiaptomus sketi n. gen., n. sp., ein neuer Hoehlen-Calanoide vom Karstgelaende Istriens (Crustacea, Copepoda). [Triglodiaptomus sketi gen. et sp. nov., a new cavernicolous calanoid from the chalk region of Istria (Crustacea, Copepoda)]. Acta Mus Macedonici Sci Nat 15(7):151–165

    Google Scholar 

  • Petkovski TK (1981) Stygodiaptomus kieferi n. gen. et n.sp., zweiter Höhlen-Calanoide vom Dinarischen Karstgebiet (Crustacea, Copepoda). [Stygodiaptomus kieferi new genus, new species, the second cave dwelling calanoid from the Dinaric karst region, Crustacea Copepoda]. Fragmenta Balcanica Musei Macedonici Scientiarum Naturalium 11(8) (250):63–74

    Google Scholar 

  • Petkovski TK, Karanovic T (1997) Two new copepod species (Crustacea: Copepoda) from the Ohrid Lake. Ann Limnol Int J Limnol 33(4):245–253

    Article  Google Scholar 

  • Pipan T (2005a) Epikarst-a promising habitat: copepod fauna, its diversity and ecology: a case study from Slovenia (Europe), vol 5. Založba ZRC

    Google Scholar 

  • Plassmann T, Maier G, Stich HB (1997) Predation impact of Cyclops vicinus on the rotifer community in Lake Constance in spring. J Plankton Res 19(8):1069–1079

    Article  Google Scholar 

  • Podshivalina VN (2012a) The Holopedium gibberum Zaddach (Crustacea, Cladocera) biology and spreading features on the territory of Nizmennoe Zavolzhje in South Taiga zone. Ocoбeннocти биoлoгии и pacпpocтpaнeния Holopedium gibberum Zaddach (Crustacea, Cladocera) нa тeppитopии зoны южнoй тaйги низмeннoгo зaвoлжья. Пoвoлжcкий Экoлoгичecкий Жуpнaл 3:1–7

    Google Scholar 

  • Por FD, Dimentman C (2001) Cyclopoid diversity in the basin of Lake Hula (Israel), after its partial reflooding. Hydrobiologia 453(1–3):335–339

    Article  Google Scholar 

  • Pospisil P, Stoch F (1997) Rediscovery and redescription of Austriocyclops vindobonae Kiefer, 1964 (Copepoda, Cyclopida) with remarks on the subfamily Eucyclopinae Kiefer. Crustaceana 70:901–910

    Article  Google Scholar 

  • Preston ND, Rusak JA (2010) Homage to Hutchinson: does inter-annual climate variability affect zooplankton density and diversity? Hydrobiologia 653(1):165–177. doi:10.1007/s10750-010-0352-2

    Article  CAS  Google Scholar 

  • Primo AL, Azeiteiro UM, Marques SC, Martinho F, Pardal MA (2009) Changes in zooplankton diversity and distribution pattern under varying precipitation regimes in a southern temperate estuary. Estuar Coast Shelf Sci 82(2):341–347. doi:10.1016/j.ecss.2009.01.019

    Article  CAS  Google Scholar 

  • Quintana XD, Comin FA, MorenoAmich R (1998) Nutrient and plankton dynamics in a Mediterranean salt marsh dominated by incidents of flooding. Part 2: response of the zooplankton community to disturbances. J Plankton Res 20(11):2109–2127

    Article  Google Scholar 

  • Ramdani M, Elkhiati N, Flower RJ, Birks HH, Kraiem MM, Fathi AA, Patrick ST (2001) Open water zooplankton communities in North African wetland lakes: the CASSARINA project. Aquat Ecol 35(3–4):319–333

    Article  Google Scholar 

  • Rasch EM, Wyngaard GA (2006) Genome sizes of cyclopoid copepods (Crustacea): evidence of evolutionary constraint. Biol J Linn Soc 87(4):625–635

    Article  Google Scholar 

  • Ravera O, Tonolli V (1956) Body size and number of eggs in Diaptomids, as related to water renewal in mountain lakes. Limnol Oceanogr 1:118–122

    Article  Google Scholar 

  • Rayner NA (1999) Copepoda: Calanoida. Diaptomidae: Paradiaptominae. Illustrated keys to the genera and species of Paradiaptomus, Lovenula, Neolovenula and Metadiaptomus. Guides to the identification of the microinvertebrates of the continental waters of the world, vol 15. Backhuys, Leiden

    Google Scholar 

  • Reddy RY (1994) Copepoda: Calanoida: Diaptomidae. Key to the genera Heliodiaptomus, Allodiaptomus, Neodiaptomus, Phyllodiaptomus, Eodiaptomus, Arctodiaptomus and Sinodiaptomus. Guides to the identification of the microinvertebrates of the continental waters of the world, vol 5. SPB Academic Publishing bv, The Hague, pp 1–221

    Google Scholar 

  • Reid JW (1992) Copepoda (Crustacea) from the fresh waters of the Florida Everglades, U.S.A., with a description of Eucyclops conrowae n.sp. Trans Am Microsc Soc 111:229–254

    Article  Google Scholar 

  • Reid JW (2001) A human challenge: discovering and understanding continental copepod habitats. Hydrobiologia 453(1–3):201–226

    Article  Google Scholar 

  • Reid JW, Hudson PL (2008) Comment on “Rate of species introductions in the Great Lakes via ships’ ballast water and sediments”. Can J Fish Aquat Sci 65(3):549–553

    Article  Google Scholar 

  • Rey JR, O’Connell S, Suarez S, Menendez Z, Lounibos LP, Byer G (2004) Laboratory and field studies of Macrocyclops albidus (Crustacea: Copepoda) for biological control of mosquitoes in artificial containers in a subtropical environment. J Vector Ecol 29(1):124–134

    PubMed  Google Scholar 

  • Riccardi N, Giussani G (2007) The relevance of life-history traits in the establishment of the invader Eudiaptomus gracilis and the extinction of Eudiaptomus padanus in Lake Candia (Northern Italy): evidence for competitive exclusion? Aquat Ecol 41(2):243–254

    Article  Google Scholar 

  • Riccardi N, Rossetti G (2007) Eudiaptomus gracilis in Italy: how, where and why. J Limnol 66(1):64–69

    Article  Google Scholar 

  • Riccardi N, Lucini L, Benagli C, Welker M, Wicht B, Tonolla M (2012) Potential of matrix-assisted laser desorption/ionization time-of-flight mass spectrometry (MALDI-TOF MS) for the identification of freshwater zooplankton: a pilot study with three Eudiaptomus (Copepoda: Diaptomidae) species. J Plankton Res 34(6):484–492. doi:10.1093/plankt/fbs022

    Article  CAS  Google Scholar 

  • Rossetti G (2005) Fungal parasitism in freshwater calanoid population: ecological consequences and possible mechanisms involved in the infection process. Hydrobiologia 548:167–176

    Article  Google Scholar 

  • Rossetti G, Tireni F, Tavernini S (2004) Occurrence and ecological characteristics of Mixodiaptomus kupelwieseri (Brehm, 1907) (Copepoda, Calanoida) in mountain water bodies of the northern Apennines, Italy. Ital J Zool 71(2):123–129

    Article  Google Scholar 

  • Rusak JA, Yan ND, Somers KM (2008) Regional climatic drivers of synchronous zooplankton dynamics in north-temperate lakes. Can J Fish Aquat Sci 65(5):878–889

    Article  Google Scholar 

  • Rybak JI, Błędzki LA (2010) Słodkowodne skorupiaki planktonowe. Klucz do oznaczania gatunków. [Freshwater planktonic crustacea. Key for species identification.] (In Polish). Warsaw University Press, Warsaw, 366 pp. ISBN 978-83-235-0738-3

    Google Scholar 

  • Rylov VM (1935) Das Zooplankton der Binnengewässer. Einführung in die Systematik und Ökologie des tierishen Limnoplanktons mit besonderer Berücksichtingung der Gewässer Mittel Europas 15:1–272

    Google Scholar 

  • Rylov VM (1948) Freshwater Cyclopida. Fauna of USSR. Crustacea. English translation 1963, Israel Program for Scientific Translations, Jerusalem, vol 3/3. Izdatelstwo Akademii Nauk SSSR, Moskva, 314 pp

    Google Scholar 

  • Sahuquillo M, Miracle MR (2010) Crustacean and rotifer seasonality in a Mediterranean temporary pond with high biodiversity (Lavajo de Abajo de Sinarcas, Eastern Spain). Limnetica 29(1):75–92

    Google Scholar 

  • Sahuquillo M, Miracle MR (2013) The role of historic and climatic factors in the distribution of crustacean communities in Iberian Mediterranean ponds. Freshw Biol 58(6):1251–1266. doi:10.1111/fwb.12124

    Article  Google Scholar 

  • Salmaso N, Naselli-Flores L (1999) Studies on the zooplankton of the deep subalpine Lake Garda. J Limnol 58(1):66–76

    Article  Google Scholar 

  • Samchyshyna L (2001) Copepoda Calanoida of the Shatsky Lakes (Ukraine). Vestn Zool 35(1):47–51

    Google Scholar 

  • Samchyshyna L (2005) Two new records of freshwater calanoid copepods (Copepoda, Calanoida) in the fauna of Ukraine. Vestn Zool 39(3):58

    Google Scholar 

  • Samchyshyna L (2008) Ecological characteristic of calanoids (Copepoda, Calanoida) of the inland waters of Ukraine. Vestn Zool 42(2):123–128

    Google Scholar 

  • Samchyshyna L (2011) Faunistical overview of calanoid copepods (Crustacea) from continental waters of Ukraine. Vestn Zool 45(4):e9–e15. doi:10.2478/v10058-011-0020-7

    Google Scholar 

  • Samchyshyna L, Santer B (2010) Chorion structure of diapause and subitaneous eggs of four diaptomid copepods (Calanoida, Diaptomidae): SEM observations. Vestn Zool 44(3):253–259

    Google Scholar 

  • Samraoui B (2002) Branchiopoda (Ctenopoda and Anomopoda) and Copepoda from eastern Numidia, Algeria. Hydrobiologia 470(1–3):173–179

    Article  Google Scholar 

  • Santer B, Hansen AM (2006) Diapause of Cyclops vicinus (Uljanin) in Lake Sobygard: indication of a risk-spreading strategy. Hydrobiologia 560:217–226

    Article  Google Scholar 

  • Santer B, Blohm-Sievers E, Caceres CE, Hairston NG (2000) Life-history variation in the coexisting freshwater copepods Eudiaptomus gracilis and Eudiaptomus graciloides. Arch Hydrobiol 149(3):441–458

    Article  Google Scholar 

  • Särkkä J, Meriläinen JJ, Hynynen J (1990) The distribution of relict crustaceans in Finland: new observations and some problems and ideas concerning relicts. Ann Zool Fenn 27:221–225

    Google Scholar 

  • Sars GO (1898) The Cladocera, Copepoda and Ostracoda of the Jana Expedition. Ann Mus Zool St Petersbourg 3:324–359 pis. 326–311

    Google Scholar 

  • Sars GO (1903a) An account of the Crustacea of Norway with short descriptions and figures of all the species. IV. Copepoda, Calanoida. Bergen Museum, Bergen

    Google Scholar 

  • Sars GO (1903b) On the crustacean fauna of Central Asia. Part II. Cladocera. Ann Mus Zool Acad Imp Sci St Petersbourg 8:157–194

    Google Scholar 

  • Sars GO (1913) An account of the Crustacea of Norway. Copepoda, Cyclopida. 1913–1918, vol 6. Bergen Museum, Bergen

    Google Scholar 

  • Sars GO (1918) An account of the Crustacea of Norway with short descriptions and figures of all the species. VI. Copepoda: Cyclopida. Bergen Museum, Bergen, pp 1–121, PL I–LXXVI

    Google Scholar 

  • Schabetsberger R, Jersabek CD (1995) Alpine newts (Triturus alpestris) as top predators in a high-altitude karst lake—daily food-consumption and impact on the copepod Arctodiaptomus alpinus. Freshw Biol 33(1):47–61. doi:10.1111/j.1365-2427.1995.tb00385.x

    Article  Google Scholar 

  • Schabetsberger R, Jersabek CD (2004) Shallow males, deep females: sex-biased differences in habitat distribution of the freshwater calanoid copepod Arctodiaptomus alpinus. Ecography 27(4):506–520

    Article  Google Scholar 

  • Schabetsberger R, Luger MS, Drozdowski G, Jagsch A (2009) Only the small survive: monitoring long-term changes in the zooplankton community of an Alpine lake after fish introduction. Biol Invasions 11(6):1335–1345

    Article  Google Scholar 

  • Scher O, Defaye D, Korovchinsky N, Thiery A (2000) The crustacean fauna (Branchiopoda, Copepoda) of shallow freshwater bodies in Iceland. Vestn Zool 34(6):11–25

    Google Scholar 

  • Schneider T, Herzig A, Koinig KA, Sommaruga R (2012) Copepods in turbid shallow soda lakes accumulate unexpected high levels of carotenoids. PLoS One 7(8):e43063

    Article  CAS  PubMed  PubMed Central  Google Scholar 

  • Seebens H, Straile D, Hoegg R, Stich HB, Einsle U (2007) Population dynamics of a freshwater calanoid copepod: complex responses to changes in trophic status and climate variability. Limnol Oceanogr 52(6):2364–2372. doi:10.4319/lo.2007.52.6.2364

    Article  Google Scholar 

  • Seminara M, Vagaggini D, Margaritora FG (2008) Differential responses of zooplankton assemblages to environmental variation in temporary and permanent ponds. Aquat Ecol 42(1):129–140

    Article  Google Scholar 

  • Serrano L, Fahd K (2005) Zooplankton communities across a hydroperiod gradient of temporary ponds in the Donana National Park (SW Spain). Wetlands 25(1):101–111

    Article  Google Scholar 

  • Shehu M, Serravalle F, Alfonso G, Moscatello S, Belmonte G (2010) The Alpine Gistova (Mount Gramos, Albania-Greece border) biodiversity of an isolated microcosm. Thalassia Salentina 32:53–62

    Google Scholar 

  • Sidorovsky SA (2013) Calanoida (Copepoda) Xapькoвcкoй Oблacти (Russ.). [Calanoida (Copepoda) Charkovskoj Oblasti]. Biologicheskyj Vestnik ineni Bohdana Chmelnickogo 1(7):106–112

    Google Scholar 

  • Silfverberg H (1999) A provisional list of Finnish Crustacea. Memo Soc Fauna Flora Fenn 75:15–37

    Google Scholar 

  • Simm K (1916) Diaptomus alluadi de Guerne et Rich., nowy gatunek dla fauny skorupiakow galicyjskich. Spraw Kom Fizjogr 50

    Google Scholar 

  • Smirnov SS (1930) Über einige bemerkenswerte Copepoden aus dem Nordural. Zool Anz 87(7–8):159–170

    Google Scholar 

  • Smirnov SS (1936) Eine neue Art der Gattung Diaptomus Westw.aus dem Nord Kaukasus. Trudy Zool Instit Akad Nauk SSSR 4:157–164

    Google Scholar 

  • Smith K, Fernando CH (1978) A guide to the freshwater Calanoid and Cyclopoid Copepod Crustacea of Ontario, vol 18. University of Waterloo, Waterloo

    Google Scholar 

  • Sorf M, Brandl Z (2012) The rotifer contribution to the diet of Eudiaptomus gracilis (G. O. Sars, 1863) (Copepoda, Calanoida). Crustaceana 85(12–13):1421–1429

    Article  Google Scholar 

  • Souza MS, Hansson L-A, Hylander S, Modenutti B, Balseiro E (2012) Rapid enzymatic response to compensate UV radiation in copepods. PLoS One 7(2):e32046. doi:10.1371/journal.pone.0032046

    Article  CAS  PubMed  PubMed Central  Google Scholar 

  • Šrámek-Hušek R (1953) Naši klanonožci. Cescoslovenská. Akad. Véd, Praha

    Google Scholar 

  • Stankovic I, Ternjej I (2007) The first record of Cyclops bohater Koźmiński (Copepoda, Cyclopida) in Croatia and the Balkan Peninsula. Nat Croat 16(3):189–199

    Google Scholar 

  • Stankovic I, Ternjej I, Mihaljevic Z, Furac L, Kerovec M (2011) Crustacean plankton community (Crustacea: Copepoda and Cladocera) in gypsum karst lakes and their relation to abiotic parameters. Hydrobiologia 666(1):145–153

    Article  CAS  Google Scholar 

  • Stella E (1984) Crustacea: Copepoda: Calanoida (d’acqua dolce), vol 21. Calderini, Bologna

    Google Scholar 

  • Stepanova LA (1995) Podotriad Calanoida: 80–108, 338–406. In: Alekseev VR (ed) Opredelitel presnovodnych becpozvonocznych Rossii i copredelnych territorii. Tom 2 Rakoobraznye. (In Russian). Suborder Calanoida. [In: Alekseev VR (ed) Key to freshwater invertebrates of Russia and adjacent lands], vol 2. Crustacea, St. Petersburg, pp 1–629

    Google Scholar 

  • Stepanova LA (2008) Species of the genus Diaptomus (Crustacea, Diaptomidae) in the Siberian fauna. Zool Zhurnal 87(8):912–922

    Google Scholar 

  • Stoch F (2001) How many species of Diacyclops? New taxonomic characters and species richness in a freshwater cyclopid genus (Copepoda, Cyclopida). Hydrobiologia 453(1–3):525–531

    Article  Google Scholar 

  • Stoch F, Pospisil P (2000) Redescription of Diacyclops disjunctus (Thallwitz, 1927) from Austria, with remarks on the Diacyclops languidus-group in Europe (Copepoda, Cyclopida, Cyclopidae). Crustaceana 73:469–478

    Article  Google Scholar 

  • Stolarska M, Wojtasik B (2008) The impact of the phosphogips heap on meiobenthos assemblages (Pomerania, Poland). Annal UMCS Sec C Biol 63(2):87–95

    Google Scholar 

  • Suarez-Moraes E, Arroyo-Bustos G (2012) An intra-continental invasion of the temperate freshwater copepod Skistodiaptomus pallidus (Herrick, 1879) (Calanoida, Diaptomidae) in tropical Mexico. Bioinvasions Rec 1(4):255–262

    Article  Google Scholar 

  • Svetlichny L, Hubareva E, Khanaychenko A (2012) Calanipeda aquaedulcis and Arctodiaptomus salinus are exceptionally euryhaline osmoconformers: evidence from mortality, oxygen consumption, and mass density patterns. Marine Ecol Prog Ser 470:15–U313+Suppl

    Google Scholar 

  • Szlauer L (1959) Obserwacje nad rozmnażaniem oczlika Cyclops kolensis Lilljeborg [Observation on the course of copulation in Cyclops kolensis Lilljeborg]. Pol Arch Hydrobiol 5(2):101–109

    Google Scholar 

  • Szlauer L (1995) On the culture of Paracyclops fimbriatus (Cyclopida) and the potential of the species as live food for juvenile fish. Acta Ichthyol Pisc 25:15–28

    Article  Google Scholar 

  • Tackx MLM, De Pauw N, Van Mieghem R, Azemar F, Hannouti A, Van Damme S, Fiers F, Daro N, Meire P (2004) Zooplankton in the Schelde estuary, Belgium and the Netherlands. Spatial and temporal patterns. J Plankton Res 26(2):133–141

    Article  CAS  Google Scholar 

  • Taleb H, Lair N, Jamet JL (1992) Estival diel vertical migration of Acanthodiaptomus denticornis (Wierzejski, 1887) (Calanoida—Copepoda) in an eutrophic lake of the temperate zone. Annal Sci Nat Zool Biol Anim 13(4):149–156

    Google Scholar 

  • Tartarotti B, Laurion I, Sommaruga R (2001) Large variability in the concentration of mycosporine-like amino acids among zooplankton from lakes located across an altitude gradient. Limnol Oceanogr 46(6):1546–1552

    Article  CAS  Google Scholar 

  • Tartarotti B, Saul N, Chakrabarti S, Trattner F, Steinberg CEW, Sommaruga R (2014) UV-induced DNA damage in Cyclops abyssorum tatricus populations from clear and turbid alpine lakes. J Plankton Res 36(2):557–566. doi:10.1093/plankt/fbt109

    Article  PubMed  Google Scholar 

  • Tavernini S (2008) Seasonal and inter-annual zooplankton dynamics in temporary pools with different hydroperiods. Limnologica 38(1):63–75

    Article  CAS  Google Scholar 

  • Tavernini S, Fratta E, Sartore F, Rossetti G (2003) Distribution and ecology of calanoid species in relation to morphometric and chemical characteristics of lakes and ponds of the Northern Apennines (Italy). J Limnol 62(1):28–34

    Article  Google Scholar 

  • Tavernini S, Primicerio R, Rossetti G (2009) Zooplankton assembly in mountain lentic waters is primarily driven by local processes. Acta Oecol 35(1):22–31. doi:10.1016/j.actao.2008.07.004

    Article  Google Scholar 

  • Tellioglu A (2006) Seasonal variations in copepod body length: a comparison between different species in Keban Dam Lake, Turkey. Crustaceana 79:11–22

    Article  Google Scholar 

  • Tellioglu A (2007) Morphometric variables and individual volume of Macrocyclops albidus and Cyclops vicinus females (Copepoda, Cyclopida) from Hazar Lake (Elazig-Turkey). Iran J Sci Technol Trans A Sci 31(A3):301–307

    Google Scholar 

  • Ternjej I, Stankovic I, Mihaljevic Z, Furac L, Zeljezic D, Kopjar N (2009) Alkaline comet assay as a potential tool in the assessment of DNA integrity in freshwater zooplankton affected by pollutants from water treatment facility. Water Air Soil Pollut 204(1–4):299–314. doi:10.1007/s11270-009-0046-4

    Article  CAS  Google Scholar 

  • Thackeray SJ, George DG, Jones RI, Winfield IJ (2006) Statistical quantification of the effect of thermal stratification on patterns of dispersion in a freshwater zooplankton community. Aquat Ecol 40(1):23–32

    Article  CAS  Google Scholar 

  • Thum RA, Stemberger RS (2006) Pure spatial and spatially structured environmental variables explain Skistodiaptomus copepod range limits in the northeastern USA. Can J Fish Aquat Sci 63(6):1397–1404

    Article  Google Scholar 

  • Thys I, Hoffmann L (2005) Diverse responses of planktonic crustaceans to fish predation by shifts in depth selection and size at maturity. Hydrobiologia 551:87–98

    Article  Google Scholar 

  • Tiberti R, Iacobuzio R (2013) Does the fish presence influence the diurnal vertical distribution of zooplankton in high transparency lakes? Hydrobiologia 709(1):27–39. doi:10.1007/s10750-012-1405-5

    Article  Google Scholar 

  • Toja J (1980) Limnology of La Minilla reservoir in 1976. 2. Zooplankton distribution Limnologia del embalse de La Minilla durante 1976. 2. Distribucion del zooplancton. Oecol Aquat 4:110

    Google Scholar 

  • Tonolli V (1961) Studio sulla dinamica del populatio di un Copepode (Eudiaptomus vulgaris Schmeil). Memorie dell’Istituto Italiano di Idrobiologia Dott Marco de Marchi 13:179–202

    Google Scholar 

  • Torke B (2001) The distribution of calanoid copepods in the plankton of Wisconsin Lakes. Hydrobiologia 453–454(1–3):351–365

    Article  Google Scholar 

  • Tóth A, Horvath Z, Vad CF, Zsuga K, Nagy SA, Boros E (2014) Zooplankton of the European soda pans: fauna and conservation of a unique habitat type. Int Rev Hydrobiol 99(3):255–276. doi:10.1002/iroh.201301646

    Article  Google Scholar 

  • Trokhymets VN (2014) Littoral zooplankton of the downstream Area of Kaniv Reservoir. Inland Water Biol 7(2):154–160. doi:10.1134/s1995082914020138

    Article  Google Scholar 

  • Tunowski J (1994) Eurytemora gracilis (Sars, 1898) (Copepoda, Calanoida, Temoridae Sars 1903), nowy gatunek słodkowodnej fauny Polski z rodziny Temoridae. Materiały XVI Zjazdu Hydrobiologów Polskich (Wrocław, 5–8 wrzesień)

    Google Scholar 

  • Tunowski J (1998) Eurytemora gracilis (Sars, 1898) (Copepoda, Temoridae Sars, 1903), nowy gatunek słodkowodnej fauny Polski. Mat. konf. “Funkcjonowanie i ochrona ekosystemów wodnych na obszarach chronionych”, 11–13 maja 1998 r., Wigry

    Google Scholar 

  • Tunowski J (2000) Eurytemora gracilis (G.O. Sars, 1898)—pierwsza obserwacja osobnika męskiego w Jeziorze Hańcza. XVIII Zjazd Hydrobiologów Polskich w Białymstoku. 4–8 września 2000

    Google Scholar 

  • Twombly S, Burns CW (1996) Effects of food quality on individual growth and development in the freshwater copepod Boeckella triarticulata. J Plankton Res 18(11):2179–2196

    Article  Google Scholar 

  • Twombly S, Clancy N, Burns CW (1998) Life history consequences of food quality in the freshwater copepod Boeckella triarticulata. Ecology 79(5):1711–1724

    Article  Google Scholar 

  • Ueda H, Ohtsuka S (1998) Redescription and taxonomic status of Sinodiaptomus valkanovi, a common limnoplanktonic calanoid copepod in Japan, with comparison to the closely related S. sarsi. Hydrobiologia 379:159–168

    Article  Google Scholar 

  • Ueda H, Ishida T, Imai JI (1997) Species composition and description of limnoplanktonic copepods from Okinawa. Plankton Biol Ecol 44:41–54

    Google Scholar 

  • Ustaoglu MR (2004) A check-list for zooplankton of Turkish inland waters. EU J Fish Aquat Sci 21(3–4):191–199

    Google Scholar 

  • Vad CF, Horvath Z, Kiss KT, Acs E (2012a) Microcrustacean (Cladocera, Copepoda) communities in artificial lakes in the region of the north Hungarian mountains, with special reference to the adventive species. Acta Zool Acad Sci Hung 58:47–61

    Google Scholar 

  • Vadadi-Fülöp C, Hufnagel L, Sipkay C, Veraszto C (2008a) Evaluation of climate change scenarios based on aquatic food web modelling. Appl Ecol Environ Res 6(1):1–28

    Article  Google Scholar 

  • Vadadi-Fülöp C, Meszaros G, Jablonszky G, Hufnagel L (2008b) The zooplankton of the Rackeve-Soroksar Danube: spatio-temporal changes and similarity patterns. Appl Ecol Environ Res 6(4):121–148

    Article  Google Scholar 

  • Vadadi-Fülöp C, Hufnagel L, Jablonszky G, Zsuga K (2009a) Crustacean plankton abundance in the Danube River and in its side arms in Hungary. Biologia 64(6):1184–1195. doi:10.2478/s11756-009-0202-8

    Article  Google Scholar 

  • Vadadi-Fülöp C, Tuerei D, Sipkay C, Veraszto C, Dregelyi-Kiss A, Hufnagel L (2009b) Comparative assessment of climate change scenarios based on aquatic food web modeling. Environ Model Assess 14(5):563–576. doi:10.1007/s10666-008-9158-2

    Article  Google Scholar 

  • Van de Velde I (1984) Introduction of new identification characters in Mesocyclops, with African species as an example. Crustaceana (Suppl) 7(2):404–409

    Google Scholar 

  • Van Hove P, Swadling KM, Gibson JAE, Belzile C, Vincent WF (2001) Farthest north lake and fjord populations of calanoid copepods Limnocalanus macrurus and Drepanopus bungei in the Canadian high Arctic. Polar Biol 24(5):303–307

    Article  Google Scholar 

  • Vanderploeg HA, Cavaletto JF, Liebig JR, Gardner WS (1998a) Limnocalanus macrurus (Copepoda: Calanoida) retains a marine arctic lipid and life cycle strategy in Lake Michigan. J Plankton Res 20(8):1581–1597

    Article  CAS  Google Scholar 

  • Vanderploeg HA, Cavaletto JF, Liebig JR, Gardner WS (1998b) Limnocalanus macrurus (Copepoda: Calanoida) retains a marine arctic lipid and life cycle strategy in Lake Michigan (vol 20, pg 1581, 1998). J Plankton Res 20(10):2029

    Article  Google Scholar 

  • Vekhov NV (1989) Distribution and biotopic distribution of Copepoda of the family Diaptomidae in water bodies of the subarctic region of Europe Russian SFSR USSR. Vestn Zool 5:52–55

    Google Scholar 

  • Ventura M, Catalan J (2005) Reproduction as one of the main causes of temporal variability in the elemental composition of zooplankton. Limnol Oceanogr 50(6):2043–2056

    Article  CAS  Google Scholar 

  • Vezhnovets VV (2005) Rakoobraznye (Cladocera, Copepoda) v vodnykh ekosistemakh Belarusi. [Crustaceans (Cladocera, Copepoda) in aquatic ecosystems of Belarus]. Beloruskaya Nauka, Minsk, 155 pp. ISBN 985-08-0691-5

    Google Scholar 

  • Vezhnovets VV, Zaidykov IY, Naumova EY, Sysova EA (2012) Biological peculiarities of two copepod species (Crustacea, Copepoda, Calanoida) as possible causes of changes in their geographical ranges. Russ J Biol Invasions 3(4):243–250. doi:10.1134/S2075111712040054

    Article  Google Scholar 

  • Visconti A, Manca M (2010) The invasive appearance of Eudiaptomus gracilis (GO Sars 1863) in Lago Maggiore. J Limnol 69(2):353–357

    Article  Google Scholar 

  • Waervagen SB, Nilssen JP (2010) Life histories and seasonal dynamics of common boreal pelagic copepods (Crustacea, Copepoda) inhabiting an oligotrophic Fennoscandian lake. J Limnol 69(2):311–332

    Article  Google Scholar 

  • Wagner C, Adrian R (2011) Consequences of changes in thermal regime for plankton diversity and trait composition in a polymictic lake: a matter of temporal scale. Freshw Biol 56(10):1949–1961

    Article  Google Scholar 

  • Walseng B, Karlsen LR (2009) Recovery of acid sensitive crustaceans and fish in seven limed lakes in Østfold county. NINA Oppdragsmelding 469:1–47

    Google Scholar 

  • Walseng B, Halvorsen G, Huru H, Nost T, Schartau AKL (1996) Acanthodiaptomus tibetanus Daday, 1908 (Copepoda, Calanoida, Diaptomidae): new records of a very rare species. Crustaceana 69:868–877

    Article  Google Scholar 

  • Walseng B, Hessen DO, Halvorsen G, Schartau AK (2006) Major contribution from littoral crustaceans to zooplankton species richness in lakes. Limnol Oceanogr 51(6):2600–2606

    Article  Google Scholar 

  • Weiler W, Kasprzak P, Schulz M, Flößner D (2003) Habitat requirements of Eurytemora lacustris (Copepoda, Calanoida) and implications for its distribution. Adv Limnol 58:201–214

    Google Scholar 

  • Wierzbicka M (1936) Copepoda (Cyclopida i Calanoida) niektórych jezior z okolic Wilna. Arch Hydrobiol Ryb 10:223–231

    Google Scholar 

  • Wierzbicka M (1953) Limnocalanus macrurus G. O. sars w jeziorach polnocno-wschodniej Polski. [Limnocalanus macrurus G.O.Sars in the lakes of north-eastern Poland] (in Polish). Fragmenta Faunistica Musei Zoologici Polonici 6:525–540

    Article  Google Scholar 

  • Wierzbicka M (1959a) Analyse morphometrique comparee de Cyclops furcifer Claus et de Cyclops strenuus Fidher en provenance de Zaborow et de Parczew. Pol Arch Hydrobiol 5(2):171–182

    Google Scholar 

  • Wierzbicka M (1959b) Cyclops furcifer Claus dans la classification du sous-genre Cyclops O.F.M. Pol Arch Hydrobiol 5:161–169

    Google Scholar 

  • Wierzbicka M (1960) Cyclops bohater Kozm. dans le nouveau biotope. Pol Arch Hydrobiol 7:143–157

    Google Scholar 

  • Wierzbicka M (1972) Distribution of Cyclopida copepodites in the resting stage in bottom sediments of astatic reservoirs. Pol Arch Hydrobiol 19:369–376

    Google Scholar 

  • Wierzejski A (1887) O krajowych skorupiakach z rodziny Calanoidae. Rozprawy i sprawozdania z posiedzeń Wydziału Matematyczno Przyrodniczego Akademii Umiejętnosci, Kraków 16:232–244, Tab. III–IV

    Google Scholar 

  • Winder M, Monaghan MT, Spaak P (2001) Have human impacts changed alpine zooplankton diversity over the past 100 years? Arct Antarct Alp Res 33(4):467–475

    Article  Google Scholar 

  • Winkler G, Dodson JJ, Lee CE (2008) Heterogeneity within the native range: population genetic analyses of sympatric invasive and noninvasive clades of the freshwater invading copepod Eurytemora affinis. Mol Ecol 17(1):415–430

    Article  PubMed  Google Scholar 

  • Winkler G, Souissi S, Poux C, Castric V (2011) Genetic heterogeneity among Eurytemora affinis populations in Western Europe. Mar Biol 158(8):1841–1856

    Article  Google Scholar 

  • Wiśniewska-Wojtasik B, Bartoń K (2004) Diacyclops crassicaudis (G.O. Sars, 1863)—cykl życiowy w warunkach arktycznych [Diacyclops crassicaudis (G.O. Sars, 1863)—developmental cycle in Arctic conditions]. XXX Sympozjum Polarne, Gdynia. Polish Polar Studies, pp 271–284

    Google Scholar 

  • Wojtasik B, Cieszyńska J (2008) Meiobenthic assemblages, particularly Copepoda-Cyclopida in the Czorsztyński and Sromowiecki reservoirs (the Pieniny Mountains, Poland). Annales Universitatis Mariae Curie-Skłodowska Lublin-Polonia LXIII 2 sectio C, pp 97–102

    Google Scholar 

  • Wojtasik B, Mioduchowska M (2010) Zgrupowanie meiobentosu zasiedlającego niewielkie zbiorniki słodkowodne Trójmiasta (Pomorze, Polska) [Meiobenthic assemblages inhabiting small freshwater reservoirs (Pomerania, Poland)]. Ochrona Środowiska i Zasobów Naturalnych 45:46–62

    Google Scholar 

  • Yağci MA (2013) Seasonal zooplankton community variation in Karatas Lake, Turkey. Iran J Fish Sci 12(2):265–276

    Google Scholar 

  • Yang Y, Yang J, Huang X (1998) Feeding of Cyclops vicinus on zooplankton. Acta Hydrobiol Sin 22:71–78

    Google Scholar 

  • Yang WX, Mirabdullayev I, Dahms HU, Hwang JS (2009) Karyology of Acanthocyclops Kiefer, 1927 (Copepoda, Cyclopida), including the first karyological reports on Acanthocyclops trajani Mirabdullayev & Defaye, 2002 and A. einslei Mirabdullayev & Defaye, 2004. Crustaceana 82(4):487–492. doi:10.1163/156854008X400603

    Article  Google Scholar 

  • Yang WX, Mirabdullayev I, Dahms HU, Chullasorn S, Hwang JS (2010) Karyology of Cyclops insignis, Thermocyclops crassus, and Megacyclops viridis (Copepoda, Cyclopida). Crustaceana 83(2):223–231. doi:10.1163/001121609X12596543952379

    Article  Google Scholar 

  • Zaika VE (1968) Age-structure dependence of specific production in zooplankton populations. Mar Biol 1(4):311–315

    Article  Google Scholar 

  • Zeller M, Jimenez-Melero R, Santer B (2004) Diapause in the calanoid freshwater copepod Eudiaptomus graciloides. J Plankton Res 26(12):1379–1388

    Article  Google Scholar 

  • Zeller M, Reusch TBH, Lampert W (2006) A comparative population genetic study on calanoid freshwater copepods: investigation of isolation-by-distance in two Eudiaptomus species with a different potential for dispersal. Limnol Oceanogr 51(1):117–124

    Article  Google Scholar 

  • Zivkovic A (1985) Zooplankton of the impoundment Jablanica Lake Yugoslavia. Godisnjak Bioloskog Instituta Univerziteta u Sarajevu 38:169–182

    Google Scholar 

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Błędzki, L.A., Rybak, J.I. (2016). Alphabetical List of Species with Notes on Synonyms, Taxonomy, Distribution, and Ecology. In: Freshwater Crustacean Zooplankton of Europe . Springer, Cham. https://doi.org/10.1007/978-3-319-29871-9_17

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