Статья: Каротиноид аллоксантин как индикатор трофической связи зоопланктона с криптофитовыми водорослями в озере Шира

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8. Descy J. P., Frost T. M., Hurley J. P (1999) Assessment of grazing by the freshwater copepod Diaptomus minutus using carotenoid pigments: a caution. Journal of Plankton Research, 21(1): 127-145

9. Dunstan G. A., Brown M. R., Volkman J. K. (2005) Cryptophyceae and rhodophyceae; chemotaxonomy, phylogeny, and application. Phytochemistry, 66(21): 2557-2570

10. Eilertsen H. C., Taasen J. P., Weslawski J. M. (1989) Phytoplankton studies in the fjords of west spitzbergen - physical-environment and production in spring and summer. Journal of Plankton Research, 11(6): 1245-1260

11. Gaevsky N. A., Zotina T. A., Gorbaneva T. B. (2002) Vertical structure and photosynthetic activity of Lake Shira phytoplankton. Aquatic Ecology, 36(2): 165-178

12. Gervais F. (1998) Ecology of cryptophytes coexisting near a freshwater chemocline. Freshwater Biology, 39(1): 61-78

13. Gladyshev M. I., Temerova T A., Dubovskaya O. P., Kolmakov V. I., Ivanova E. A. (1999) Selective grazing on Cryptomonas by Ceriodaphnia quadrangula fed a natural phytoplankton assemblage. Aquatic Ecology, 33(4): 347-353

14. Hairston N. C. (1976) Photoprotection by carotenoid pigments in the copepod Diaptomus nevadensis. Proceedings of the National Academy of Sciences of the United States of America, 73(3): 971-974

15. Hasle G. R. (1978) The inverted-microscope method. Phytoplankton manual. Sournia A. (ed.) Paris, UNESCO, p. 88-96

16. Head E. J.H., Harris L. R. (1994) Feeding selectivity by copepods grazing on natural mixtures of phytoplankton determined by HPLC analysis of pigments. Marine Ecology Progress Series, 110(1): 75-83

17. Klaveness D. (1988) Biology and ecology of the Cryptophyceae: status and challenges. Biological Oceanography, 6(3-4): 257-270

18. Knisely K., Geller W. (1986) Selective feeding of four zooplankton species on natural lake phytoplankton. Oecologia, 69(1): 86-94

19. Leavitt P. R. (1993) A review of factors that regulate carotenoid and chlorophyll deposition and fossil pigment abundance. Journal of Paleolimnology, 9(2): 109-127

20. Marshall W., Laybourn-Parry J. (2002) The balance between photosynthesis and grazing in Antarctic mixotrophic cryptophytes. Freshwater Biology, 47(11): 2060-2070

21. McLeroy-Etheridge S.L., McManus G.B. (1999) Food type and concentration affect chlorophyll and carotenoid destruction during copepod feeding. Limnology and Oceanography, 44(8): 2005-2011

22. Meyer-Harms B., Irigoien X., Head R., Harris R. (1999) Selective feeding on natural phytoplankton by Calanus finmarchicus before, during, and after the 1997 spring bloom in the Norwegian Sea. Limnology and Oceanography, 44(1): 154-165

23. Oechsler-Christensen B., Jonasdottir S. H., Henriksen P., Hansen P. J. (2012) Use of phytoplankton pigments in estimating food selection of three marine copepods. Journal of Plankton Research, 34(2): 161-172

24. Pandolfini E., Thys I., Leporcq B., Descy J. P. (2000) Grazing experiments with two freshwater zooplankters: fate of chlorophyll and carotenoid pigments. Journal of Plankton Research, 22(2): 305-319

25. Porter K. G. (1988) Phagotrophic phytoflagellates in microbial food webs. Hydrobiologia, 159(1): 89-97

26. Reynolds C. S. (1992) Dynamics, selection and composition of phytoplankton in relation to vertical structure in lakes. Ergebnisse der Limnologie, 35: 13-31

27. Rogozin D. Y., Tarnovsky M. O., Belolipetskii V. M., Zykov V. V., Zadereev E. S.,

28. Tolomeev A. P., Drobotov A. V., Barkhatov Y. V., Gaevsky N. A., Gorbaneva T. B., Kolmakova A. A., Degermendzhi A. G. (2017) Disturbance of meromixis in saline Lake Shira (Siberia, Russia): Possible reasons and ecosystem response. Limnologica, 66: 12-23

29. Rogozin D. Y., Zykov V. V., Chernetsky M. Y., Degermendzhy A. G., Gulati R. D. (2009) Effect of winter conditions on distributions of anoxic phototrophic bacteria in two meromictic lakes in Siberia. Aquatic Ecology, 43(3): 661-672

30. Rogozin D. Y., Zykov V. V., Kalugin I. A., Daryin A. V., Degermendzhy A. G. (2011) Carotenoids of phototrophic organisms in bottom sediments of meromictic Lake Shira (Siberia, Russia) as an indicator of past stratification. Doklady Biological Sciences, 439: 228

31. Schneider T., Grosbois G., Vincent W. F., Rautio M. (2016) Carotenoid accumulation in copepods is related to lipid metabolism and reproduction rather than to UV-protection. Limnology and Oceanography, 61(4): 1201-1213

32. Schneider T., Grosbois G., Vincent W. F., Rautio M. (2017) Saving for the future: Pre-winter uptake of algal lipids supports copepod egg production in spring. Freshwater Biology, 62(6): 1063-1072

33. Sommaruga R. (2010) Preferential accumulation of carotenoids rather than of mycosporine-like amino acids in copepods from high altitude Himalayan lakes. Hydrobiologia, 648(1): 143-156

34. Sushchik N. N. (2008) Role of essential fatty acids in trophometabolic interactions in the freshwater ecosystems (a review). Zhurnal Obshchei Biologii, 69(4): 299-316

35. Talling J. F. (2003) Phytoplankton-zooplankton seasonal timing and the 'clear-water phase' in some English lakes. Freshwater Biology, 48(1): 39-52

36. Tonno I., Agasild H., Koiv T., Freiberg R., Noges P., Noges T. (2016) Algal diet of small-bodied crustacean zooplankton in a cyanobacteria-dominated eutrophic lake. Plos One, 11(4): e0154526

37. Wright S. W., Jeffrey S. W., Mantoura R. F.C., Llewellyn C. A., Bjornland T., Repeta D., Welschmeyer N. (1991) Improved HPLC method for the analysis of chlorophylls and carotenoids from marine-phytoplankton. Marine Ecology Progress Series, 77(2-3): 183-196

38. Zykov V. V., Rogozin D. Y., Kalugin I. A., Dar'in A.V., Degermendzhi A. G. (2012) Carotenoids in bottom sediments of lake Shira as a paleoindicator for reconstruction of Lake States in Khakassiya, Russia. Contemporary Problems of Ecology, 5(4): 434-442