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Does salinity affect body proportions and “size/mass” ratios of highly halotolerant Baeotendipes noctivagus larvae (Diptera, Chironomidae)?

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Anufriieva, E., Hołyńska, M. & Shadrin, N. (2014). Current invasions of Asian Cyclopid species (Copepoda: Cyclopidae) in Crimea, with taxonomical and zoogeographical remarks on the hypersaline and freshwater fauna. Ann. Zool. 64(1): 109–130. Anufriieva E. Hołyńska M. & Shadrin N. 2014 Current invasions of Asian Cyclopid species (Copepoda: Cyclopidae) in Crimea, with taxonomical and zoogeographical remarks on the hypersaline and freshwater fauna Ann. Zool 641 109 13010.3161/000345414X680636Search in Google Scholar

Anufriieva, E. & Shadrin, N. (2014a). Resting stages of crustaceans in the Crimean hypersaline lakes (Ukraine) and their ecological role. Acta Geol. Sin. 88: 46–49. Anufriieva E. & Shadrin N. 2014a Resting stages of crustaceans in the Crimean hypersaline lakes (Ukraine) and their ecological role Acta Geol. Sin 88 46 4910.1111/1755-6724.12266_3Search in Google Scholar

Anufriieva, E.V., & Shadrin, N.V. (2014b). Factors determining the average body size of geographically separated Arctodiaptomus salinus (Daday, 1885) populations. Zoological Research 35(2): 132–141. Anufriieva E.V. & Shadrin N.V. 2014b Factors determining the average body size of geographically separated Arctodiaptomus salinus (Daday, 1885) populations Zoological Research 352 132 141Search in Google Scholar

Anufriieva, E.V. & Shadrin, N.V. (2015). Morphometric variability of Arctodiaptomus salinus (Copepoda) in the Mediterranean-Black Sea region. Zoological Research 36(6): 328–336. Anufriieva E.V. & Shadrin N.V. 2015 Morphometric variability of Arctodiaptomus salinus (Copepoda) in the Mediterranean-Black Sea region Zoological Research 366 328 336Search in Google Scholar

Anufriieva, E.V., Vdodovich, I.V. & Shadrin, N.V. (2018). First data on predation of Eucypris mareotica (Crustacea, Ostracoda) in hypersaline waters. Food Webs 16: e00090. Anufriieva E.V. Vdodovich I.V. & Shadrin N.V. 2018 First data on predation of Eucypris mareotica (Crustacea, Ostracoda) in hypersaline waters Food Webs 16 e0009010.1016/j.fooweb.2018.e00090Search in Google Scholar

Armitage, P.D., Pinder, L.C. & Cranston, P. (1995). The Chironomidae: Biology and ecology of non-biting midges. London: Chapman & Hall. Armitage P.D. Pinder L.C. & Cranston P. 1995 The Chironomidae: Biology and ecology of non-biting midges London Chapman & Hall10.1007/978-94-011-0715-0Search in Google Scholar

Balushkina, E.V. (1987). The functional significance of chironomid larvae in inland water bodies. Leningrad: Nauka. (In Russian). Balushkina E.V. 1987 The functional significance of chironomid larvae in inland water bodies Leningrad Nauka In RussianSearch in Google Scholar

Balushkina, E.V., Golubkov, S.M., Golubkov, M.S., Litvinchuk, L.F. & Shadrin, N.V. (2009). Effect of abiotic and biotic factors on the structural and functional organization of the saline lake ecosystems in Crimea. Zh. Obshchei Biol. 70(6): 504–514. (In Russian). Balushkina E.V. Golubkov S.M. Golubkov M.S. Litvinchuk L.F. & Shadrin N.V. 2009 Effect of abiotic and biotic factors on the structural and functional organization of the saline lake ecosystems in Crimea Zh. Obshchei Biol 706 504 514 In RussianSearch in Google Scholar

Belmonte, G., Moscatello, S., Batogova, E.A., Pavlovskaya, T., Shadrin, N.V. et al. (2012). Fauna of hypersaline lakes of the Crimea (Ukraine). Thalassia Salentina 34: 11–24. Belmonte G. Moscatello S. Batogova E.A. Pavlovskaya T. Shadrin N.V. et al 2012 Fauna of hypersaline lakes of the Crimea (Ukraine) Thalassia Salentina 34 11 24Search in Google Scholar

Belyakov, V.P., Anufriieva, E.V., Bazhora, A.I. & Shadrin, N.V. (2018). Effect of salinity on chironomid larvae (Diptera, Chironomidae) in hypersaline lakes of Crimea. Biology Bulletin 45(10): 1211–1218. Belyakov V.P. Anufriieva E.V. Bazhora A.I. & Shadrin N.V. 2018 Effect of salinity on chironomid larvae (Diptera, Chironomidae) in hypersaline lakes of Crimea Biology Bulletin 4510 1211 121810.1134/S1062359018100059Search in Google Scholar

Biswas, J.K., Rana, S., Bhakta, J.N. & Jana, B.B. (2009). Bioturbation potential of chironomid larvae for the sediment-water phosphorus exchange in simulated pond systems of varied nutrient enrichment. Ecol. Eng. 35: 1444–1453. Biswas J.K. Rana S. Bhakta J.N. & Jana B.B. 2009 Bioturbation potential of chironomid larvae for the sediment-water phosphorus exchange in simulated pond systems of varied nutrient enrichment Ecol. Eng 35 1444 145310.1016/j.ecoleng.2009.06.004Search in Google Scholar

Cartier, V., Claret, C., Garnier, R. & Franquet, E. (2011). How salinity affects life cycle of a brackish water species, Chironomus salinarius Kieffer (Diptera: Chironomidae). J. Exp. Mar. Biol. Ecol. 405(1): 93–98. Cartier V. Claret C. Garnier R. & Franquet E. 2011 How salinity affects life cycle of a brackish water species, Chironomus salinarius Kieffer (Diptera: Chironomidae) J. Exp. Mar. Biol. Ecol 4051 93 9810.1016/j.jembe.2011.05.019Search in Google Scholar

Donald, G.L. & Paterson, C.G. (1977). Effect of preservation on wet weight biomass of chironomid larvae. Hydrobiologia 53(1): 75–80. Donald G.L. & Paterson C.G. 1977 Effect of preservation on wet weight biomass of chironomid larvae Hydrobiologia 531 75 8010.1007/BF00021235Search in Google Scholar

Fonseca, A.L. & Rocha, O. (2004). Laboratory cultures of the native species Chironomus xanthus Rempel, 1939 (Diptera-Chironomidae). Acta Limnologica Brasiliensia 16(2): 153–161. Fonseca A.L. & Rocha O. 2004 Laboratory cultures of the native species Chironomus xanthus Rempel, 1939 (Diptera-Chironomidae) Acta Limnologica Brasiliensia 162 153 161Search in Google Scholar

Goldberg, A.D., Allis, C.D. & Bernstein, E. (2007). Epigenetics: a landscape takes shape. Cell 128: 635–638. Goldberg A.D. Allis C.D. & Bernstein E. 2007 Epigenetics: a landscape takes shape Cell 128 635 63810.1016/j.cell.2007.02.00617320500Search in Google Scholar

Graham, A.A. & Burns, C.W. (1983). Production and ecology of benthic chironomid larvae (Diptera) in Lake Hayes, New Zealand, a warm-monomictic eutrophic lake. Internationale Revue der gesamten Hydrobiologie und Hydrographie 68(3): 351–377. Graham A.A. & Burns C.W. 1983 Production and ecology of benthic chironomid larvae (Diptera) in Lake Hayes, New Zealand, a warm-monomictic eutrophic lake Internationale Revue der gesamten Hydrobiologie und Hydrographie 683 351 37710.1002/iroh.19830680307Search in Google Scholar

Hirvenoja, M. (1973). Revision der Gattung Cricotopus van der Wulp und ihrer Verwandten (Diptera, Chironomidae). Ann. Zool. Fenn. 10: 1–363. Hirvenoja M. 1973 Revision der Gattung Cricotopus van der Wulp und ihrer Verwandten (Diptera, Chironomidae) Ann. Zool. Fenn 10 1 363Search in Google Scholar

Huston, M.A. & DeAngelis, D.L. (1987). Size bimodality in monospecific populations: a critical review of potential mechanisms. Am. Nat. 129: 678–707. Huston M.A. & DeAngelis D.L. 1987 Size bimodality in monospecific populations: a critical review of potential mechanisms Am. Nat 129 678 70710.1086/284666Search in Google Scholar

Khlebovich, V.V. & Aladin, N.V. (2010). The salinity factor in animal life. Her. Russ. Acad. Sci. 80: 299–304. Khlebovich V.V. & Aladin N.V. 2010 The salinity factor in animal life Her. Russ. Acad. Sci 80 299 30410.1134/S1019331610030172Search in Google Scholar

Kokkinn, M.J. (1990). Is the rate of embryonic development a predictor of overall development rate in Tanytarsus barbitarsis Freeman (Diptera: Chironomidae)? Australian Journal of Marine and Freshwater Research 41(5): 575–579. Kokkinn M.J. 1990 Is the rate of embryonic development a predictor of overall development rate in Tanytarsus barbitarsis Freeman (Diptera: Chironomidae)? Australian Journal of Marine and Freshwater Research 415 575 57910.1071/MF9900575Search in Google Scholar

Kravtsova, L.S. (2007). The relationships between the body mass and its linear sizes in larvae of three Chironomidae species (Diptera) from the lake Baikal littoral. Zoologichesky Zhurnal 86(11): 1398–1401. (In Russian). Kravtsova L.S. 2007 The relationships between the body mass and its linear sizes in larvae of three Chironomidae species (Diptera) from the lake Baikal littoral Zoologichesky Zhurnal 8611 1398 1401 In RussianSearch in Google Scholar

Maier, K.J., Kosalwat, P. & Knight, A.W. (1990). Culture of Chironomus decorus (Diptera: Chironomidae) and the effect of temperature on its life history. Environ. Entomol. 19(6): 1681–1688. Maier K.J. Kosalwat P. & Knight A.W. 1990 Culture of Chironomus decorus (Diptera: Chironomidae) and the effect of temperature on its life history Environ. Entomol 196 1681 168810.1093/ee/19.6.1681Search in Google Scholar

Makarchenko, E.A. & Makarchenko, M.A. (1999). Chironomidae. Non-biting midges. In S.J. Tsalolikhin (Ed.), Key to Freshwater Invertebrates of Russia and Adjacent Lands. V. 4. Higher Insects. Diptera (pp. 210–295). St. Petersburg: Zoological Institute RAS. (In Russian). Makarchenko E.A. & Makarchenko M.A. 1999 Chironomidae. Non-biting midges Tsalolikhin S.J. Key to Freshwater Invertebrates of Russia and Adjacent Lands. V. 4. Higher Insects. Diptera 210 295 St. Petersburg Zoological Institute RAS In RussianSearch in Google Scholar

Menzie, C.A. (1981). Production ecology of Cricotopus sylvestris (Fabricius) (Diptera: Chironomidae) in a shallow estuarine cove. Limnol. Oceanogr. 26(3): 467–481. Menzie C.A. 1981 Production ecology of Cricotopus sylvestris (Fabricius) (Diptera: Chironomidae) in a shallow estuarine cove Limnol. Oceanogr 263 467 48110.4319/lo.1981.26.3.0467Search in Google Scholar

Miyasaka, H., Genkai-Kato, M., Miyake, Y., Kishi, D., Katano, I. et al. (2008). Relationships between length and weight of freshwater macroinvertebrates in Japan. Limnology 9(1): 75–80. Miyasaka H. Genkai-Kato M. Miyake Y. Kishi D. Katano I. et al 2008 Relationships between length and weight of freshwater macroinvertebrates in Japan Limnology 91 75 8010.1007/s10201-008-0238-4Search in Google Scholar

Muehlbauer, J.D., Collins, S.F., Doyle, M.W. & Tockner, K. (2014). How wide is a stream? Spatial extent of the potential “stream signature” in terrestrial food webs using meta-analysis. Ecology 95(1): 44–55. Muehlbauer J.D. Collins S.F. Doyle M.W. & Tockner K. 2014 How wide is a stream? Spatial extent of the potential “stream signature” in terrestrial food webs using meta-analysis Ecology 951 44 5510.1890/12-1628.124649645Search in Google Scholar

Müller, P.H., Neuman, P. & Storm, R. (1979). Tafeln der Mathematischen Statistik. Leipzig: VEB Fachbuchverlag. Müller P.H. Neuman P. & Storm R. 1979 Tafeln der Mathematischen Statistik Leipzig VEB FachbuchverlagSearch in Google Scholar

Nolte, U. & Hoffmann, T. (1992). Fast life in cold water: Diamesa incallida (Chironomidae). Ecography 15(1): 25–30. Nolte U. & Hoffmann T. 1992 Fast life in cold water: Diamesa incallida (Chironomidae) Ecography 151 25 3010.1111/j.1600-0587.1992.tb00004.xSearch in Google Scholar

Pankratova, V. (1970). Larvae and pupae of Mosquitoes of the subfamily Orthocladiinae in the fauna of the USSR (Diptera, Chironomidae = Tendipedidae). Leningrad: Nauka. (In Russian). Pankratova V. 1970 Larvae and pupae of Mosquitoes of the subfamily Orthocladiinae in the fauna of the USSR (Diptera, Chironomidae = Tendipedidae) Leningrad Nauka In RussianSearch in Google Scholar

Pankratova, V. (1983). Larvae and pupae of Mosquitoes of the subfamily Chironominae in the fauna of the USSR (Diptera, Chironomidae = Tendipedidae) Leningrad: Nauka. (In Russian). Pankratova V. 1983 Larvae and pupae of Mosquitoes of the subfamily Chironominae in the fauna of the USSR (Diptera, Chironomidae = Tendipedidae) Leningrad Nauka In RussianSearch in Google Scholar

Rech, K.C., Guereschi, R.M., Torres, K.H. & Nuñer, A.P.D.O. (2014). Subsidies for production of Chironomus calligraphus larvae (Chironomidae, Diptera) in the laboratory. Invertebr. Reprod. Dev. 58(3): 199–206. Rech K.C. Guereschi R.M. Torres K.H. & Nuñer A.P.D.O. 2014 Subsidies for production of Chironomus calligraphus larvae (Chironomidae, Diptera) in the laboratory Invertebr. Reprod. Dev 583 199 20610.1080/07924259.2014.894947Search in Google Scholar

Schütz, S.A. & Füreder, L. (2018). Unexpected patterns of chironomid larval size in an extreme environment: a highly glaciated, alpine stream. Hydrobiologia 820(1): 49–63. Schütz S.A. & Füreder L. 2018 Unexpected patterns of chironomid larval size in an extreme environment: a highly glaciated, alpine stream Hydrobiologia 8201 49 6310.1007/s10750-018-3579-ySearch in Google Scholar

Shadrin, N.V. & Anufriieva, E.V. (2013). Climate change impact on the marine lakes and their Crustaceans: The case of marine hypersaline Lake Bakalskoye (Ukraine). Turk. J. Fish. Aquat. Sc. 13: 603–611. Shadrin N.V. & Anufriieva E.V. 2013 Climate change impact on the marine lakes and their Crustaceans: The case of marine hypersaline Lake Bakalskoye (Ukraine) Turk. J. Fish. Aquat. Sc 13 603 61110.4194/1303-2712-v13_4_05Search in Google Scholar

Shadrin, N.V., Anufriieva, E.V., Belyakov, V.P. & Bazhora, A.I. (2017). Chironomidae larvae in hypersaline waters of the Crimea: diversity, distribution, abundance and production. The European Zoological Journal 84(1): 61–72. Shadrin N.V. Anufriieva E.V. Belyakov V.P. & Bazhora A.I. 2017 Chironomidae larvae in hypersaline waters of the Crimea: diversity, distribution, abundance and production The European Zoological Journal 841 61 7210.1080/11250003.2016.1273974Search in Google Scholar

Shadrin, N.V., Anufriieva, E.V., Kipriyanova, L.M., Kolesnikova, E.A., Latushkin, A.A. et al. (2018). The political decision caused the drastic ecosystem shift of the Sivash Bay (the Sea of Azov). Quatern. Int. 475: 4–10. Shadrin N.V. Anufriieva E.V. Kipriyanova L.M. Kolesnikova E.A. Latushkin A.A. et al 2018 The political decision caused the drastic ecosystem shift of the Sivash Bay (the Sea of Azov) Quatern. Int 475 4 1010.1016/j.quaint.2017.12.009Search in Google Scholar

Shadrin, N.V., Belyakov, V.P., Bazhora, A.I. & Anufriieva, E.V. (2019). The role of salinity as an environmental filtering factor in the determination of the Diptera taxonomic composition in the Crimean waters. Knowl. Manag. Aquat. Ec. 420: 3. Shadrin N.V. Belyakov V.P. Bazhora A.I. & Anufriieva E.V. 2019 The role of salinity as an environmental filtering factor in the determination of the Diptera taxonomic composition in the Crimean waters Knowl. Manag. Aquat. Ec 420 310.1051/kmae/2018041Search in Google Scholar

Stoffels, R.J., Karbe, S. & Paterson, R.A. (2003). Length-mass models for some common New Zealand littoral-benthic macroinvertebrates, with a note on within-taxon variability in parameter values among published models. New Zeal. J. Mar. Fresh. Res. 37(2): 449–460. Stoffels R.J. Karbe S. & Paterson R.A. 2003 Length-mass models for some common New Zealand littoral-benthic macroinvertebrates, with a note on within-taxon variability in parameter values among published models New Zeal. J. Mar. Fresh. Res 372 449 46010.1080/00288330.2003.9517179Search in Google Scholar

Swanson, S.M. & Hammer, U.T. (1983). Production of Cricotopus ornatus (Meigen) (Diptera: Chironomidae) in Waldsea Lake, Saskatchewan. Hydrobiologia 105(1): 155–163. Swanson S.M. & Hammer U.T. 1983 Production of Cricotopus ornatus (Meigen) (Diptera: Chironomidae) in Waldsea Lake, Saskatchewan Hydrobiologia 1051 155 16310.1007/BF00025185Search in Google Scholar

Toderash, I.K. (1984). Functional importance of chironomids in reservoir ecosystems of Moldova. Kishinev (Chisinau): Shtiintsa Publisher. (In Russian). Toderash I.K. 1984 Functional importance of chironomids in reservoir ecosystems of Moldova Kishinev (Chisinau) Shtiintsa Publisher In RussianSearch in Google Scholar

Waddington, CH. (1940). Organisers & Genes. Cambridge: Cambridge University Press. Waddington CH. 1940 Organisers & Genes Cambridge Cambridge University PressSearch in Google Scholar

Wiederholm, T. (1983). Chironomidae of the Holarctic Region: Keys and diagnoses. Part 1. Larvae. Entomologica Scandinavica 19: 457. Wiederholm T. 1983 Chironomidae of the Holarctic Region: Keys and diagnoses. Part 1. Larvae Entomologica Scandinavica 19 457Search in Google Scholar

Williams, W.D. (1998). Salinity as a determinant of the structure of biological communities in the salt lakes. Hydrobiologia 381: 191–201. Williams W.D. 1998 Salinity as a determinant of the structure of biological communities in the salt lakes Hydrobiologia 381 191 20110.1023/A:1003287826503Search in Google Scholar

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