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Том 16   Выпуск 2   Год 2021
Абакумов А.И., Пак С.Я.

Моделирование процесса фотосинтеза и оценка динамики биомассы фитопланктона на основе модели Друпа

Математическая биология и биоинформатика. 2021;16(2):380-393.

doi: 10.17537/2021.16.380.

Список литературы

  1. Platt T., Gallegos C.L., Harrison W.G. Photoinhibition of photosynthesis in natural assemblages of marine phytoplankton. Journal Marine Research. 1980;38(4):687–701.
  2. Platt T., Caverhill C., Sathyendranath S. Basin-scale estimates of oceanic primary production by remote sensing: The North Atlantic. Journal of Geophysical Research: Oceans (1978–2012). 1991;96(C8):15147–15159. doi: 10.1029/91JC01118
  3. Hilary E. Glover. Assimilation numbers in cultures of marine phytoplankton. Journal of Plankton Research. 1980;2(1):69–79. doi: 10.1093/plankt/2.1.69
  4. Vinogradov M.E., Shushkina E.A., Nezlin N.P., Vedernikov V.I., Gagarinn V.I. Correlation between Different Parameters of the Ecosystem of the Epipelagic Zone of the World Ocean. Oceanology. 1999;39(1):54.
  5. Farquhar G.D., von Caemmerer S., Berry J.A. A biochemical model of photosynthetic CO2 assimilation in leaves of C3 species. Planta. 1980;149:78–90. doi: 10.1007/BF00386231
  6. Lenz K.E., Host G.E., Roskoski K., Noormets A., Sober A., Karnosky D.F. Analysis of a Farquhar-von Caemmerer-Berry leaf-level photosynthetic rate model for Populus tremuloides in the context of modeling and measurement limitations. Environmental Pollution. 2010;158:1015–1022. doi: 10.1016/j.envpol.2009.08.004
  7. Buckley T.N., Farquhar G.D. A new analytical model for whole-leaf potential electron transport rate. Plant Cell and Environment. 2004;27(12):1487–1502. doi: 10.1111/j.1365-3040.2004.01232.x
  8. Nikolaou A., Hartmann P., Sciandra A., Chachuat B., Bernard O. Dynamic coupling of photoacclimation and photoinhibition in a model of microalgae growth. J. Theoret. Biology. 2016;390:61–72. doi: 10.1016/j.jtbi.2015.11.004
  9. Bernard O. Hurdles and challenges for modelling and control of microalgae for CO2 mitigation and biofuel production. Journal of Process Control. 2011;21:1378–1389. doi: 10.1016/j.jprocont.2011.07.012
  10. Mairet F., Bernard O., Lacour T., Sciandra A. Modelling microalgae growth in nitrogen limited photobiorector for estimating biomass, carbohydrate and neutral lipid productivities. J. IFAC Proceedings. 2011;44:10591–10596. doi: 10.3182/20110828-6-IT-1002.03165
  11. Govindjee, Weger H.G., Turpin D.H., van Rensen J.J.S., de Vos O.J., Snel J.F.H. Formate releases carbon dioxide/bicarbonate from thylakoid membranes – measurements by mass spectroscopy and infrared gas analyzer. Naturwissenschaften. 1991;78:168–170. doi: 10.1007/BF01136204
  12. Moiseeva N.A., Churilova T.Ya., Efimova T.V., Krivenko O.V., Matorin D.N. Fluorescence of Chlorophyll a during Seasonal Water Stratification in the Black Sea. Physical Oceanography. 2019;26(5):425–437. doi: 10.22449/1573-160X-2019-5-425-437
  13. Falkowski P.G., The Ocean invisible fores. Scientific American. 2002;54:54–61. doi: 10.1038/scientificamerican0802-54
  14. Salyuk P.A., Stepochkin I.E., Aleksanin A.I., Golik I.A. Analysis of tropical cyclones influence on chlorophyll–a concentration fields in North-Western Pacific during 1979-1986 and 1996-2010 using satellite passive remote ocean color data. Current Problems in Remote Sensing of the Earth from Space. 2014;11(2):219–227.
  15. Droop M.R. The nutrient status of algal cells in continuous culture. J. Mar. Biol. Assoc. U. K. 1974;54:825–855. doi: 10.1017/S002531540005760X
  16. Jørgensen S.E. A eutrophication model for a lake. J. Ecol. Model. 1976;2:147–165. doi: 10.1016/0304-3800(76)90030-2
  17. Trofimova V.V., Makarevich P.R. Daily Dynamics of Chlorophyll a in the Estuarine Pelagic Phytocenosis of the Kola Inlet (Barents Sea). Algologia. 2009;19(2):145–154. http://nbuv.gov.ua/UJRN/algol_2009_19_2_5 (accessed 20 October 2021).
  18. Le Bouteiller A., Herbland A. Diel variation of chlorophyll a as evidence from a 13-day station in the equatorial Atlantic Ocean. Oceanologica Acta. 1982;5(4):433–441.
  19. Silkin V.A., Abakumov A.I., Pautova L.A., Pakhomova S.V., Lifanchuk A.V. Mechanisms of regulation of invasive processes in phytoplankton on the example of the north-eastern part of the Black Sea. Aquatic Ecology. 2016;50(2):221–234. doi: 10.1007/s10452-016-9570-7
  20. Sidelev S.I., Babanazarova O.V. The Link Analysis of the Pigmentary and Structural Characteristics of the High-Eutrophic Lake Phytoplankton. Journal of Siberian Federal University. Biology. 2008;1(2):162–177. doi: 10.17516/1997-1389-0275
  21. Monitoring sostoianiia okruzhaiushchei sredy na Zapadno-Kamchatskom litsenzionnom uchastke v 2015–2016 gg. (Environmental monitoring at the Zapadno-Kamchatsky license area in 2015–2016): information bulletin. Krasnoiarsk – Petropavlovsk-Kamchatskii, 2015. 376 p.(in Russ.).
Содержание Оригинальная статья
Мат. биол. и биоинф.
2021;16(2):380-393
doi: 10.17537/2021.16.380
опубликована на рус. яз.

Аннотация (рус.)
Аннотация (англ.)
Полный текст (рус., pdf)
Список литературы

 

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