117
Views
5
CrossRef citations to date
0
Altmetric
Original Articles

Climate factors as a possible trigger of modern ecological changes in shallow zone of Lake Baikal (Russia)

, , &

References

  • UNEP, 2012, United Nations Environment Programme: 5th Global Environment Outlook (GEO-5). Available online at: www.unep.org/geo/pdfs/geo5/GEO5_report_full_en.pdf (accessed 25 August 2016).
  • Schindler, D.W., 2006, Recent advances in the understanding and management of eutrophication. Limnology and Oceanography, 51, 356–363.10.4319/lo.2006.51.1_part_2.0356
  • Hallegraeff, G.M., 1993, A review of harmful algal blooms and their apparent increase. Phycologia, 32, 79–99.10.2216/i0031-8884-32-2-79.1
  • Le, C., Zha, Y., Li, Y., Sun, D., Lu, H. and Yin, B., 2010, Eutrophication of lake waters in China: cost, causes, and control. Environmental Management, 45, 662–668.10.1007/s00267-010-9440-3
  • Kravtsova, L.S., Izhboldina, L.A., Khanaev, I.V. and Pomazkina, E.W., 2014, Nearshore benthic blooms of filamentous green algae in Lake Baikal. Journal of Great Lakes Research, 40(2), 441–448.10.1016/j.jglr.2014.02.019
  • Timoshkin, O.A., Samsonovb, D.P., Yamamuroc, M., et al., 2016, Rapid ecological change in the coastal zone of Lake Baikal (East Siberia): is the site of the world’s greatest freshwater biodiversity in danger? Journal of Great Lakes Research, 42(3), 487–497.10.1016/j.jglr.2016.02.011
  • Selezneva, A.V., Seleznev, V.A. and Bespalova, K.V., 2014, Mass seaweed development in the Volga reservoirs when shortage of water. Povolzhsky Ecological Journal, 1, 88–96.
  • Bar-Yosef, Y., Sukenik, A., Hadas, O., Viner-Mozzini, Y. and Kaplan, A., 2010, Enslavement in the water body by toxic Aphanizomenon ovalisporum, inducing alkaline phosphatase in phytoplanktons. Current Biology, 20(September 14), 1557–1561.10.1016/j.cub.2010.07.032
  • Qin, B.Q., Zhu, G.W., Gao, G., Zhang, Y.L., Li, W., Hans, P. and Carmichael, W.W., 2010, A drinking water crisis in Lake Taihu, China: linkage to climatic variability and lake management. Environmental Management, 45, 105–112.10.1007/s00267-009-9393-6
  • Posch, T., Köster, O., Salcher, M.M. and Pernthaler, J., 2012, Harmful filamentous cyanobacteria favoured by reduced water turnover with lake warming. Nature Climate Change, 2, 809–813.10.1038/nclimate1581
  • Moss, B., Kosten, S., Meerhoff, M., Battarbee, R., Mazzeo, N., Havens, K., Lacerot, G., Liu, Z.W., Meester, D.L., Paerl, H. and Scheffer, M., 2011, Allied attack: climate change and eutrophication. Inland Waters, 1, 101–105.10.5268/IW
  • Whitehead, P.G., Wilby, R.L. and Battarbee, R.W., 2009, A review of the potential impacts of climate change on surface water quality. Hydrological Sciences Journal, 54, 101–123.10.1623/hysj.54.1.101
  • Kravtsova, L.S., Izhboldina, L.A., Khanaev, I.V., Pomazkina, G.V., Domysheva, V.M., Kravchenko, O.S. and Grachev, M.A., 2012, Disturbances of vertical zoning of green algae in the littoral area of Listvennichnoye Bay, Lake Baikal. Doklady Biological Sciences, 447(2), 227–229.
  • Zaytseva, N.V., 2014, The problem of development of blue-green algae in the Votkinsky and Izhevsk reservoirs. Recent Scientific Investigations and Innovations, 6. Available online at: http://web.snauka.ru/issues/2014/06/36048 (accessed 24 September 2016).
  • Paerl, H.W. and Otten, T.G., 2013, Blooms bite the hand that feeds them. Science, 342, 433–434.10.1126/science.1245276
  • Cohen, A.S., Gergurich, E.L., Kraemer, B.M., McGlue, M.M., McIntyre, P.B., Russell, J.M., Simmons, J.D. and Swarzenski, P.W., 2016, Climate warming reduces fish production and benthic habitat in Lake Tanganyika, one of the most biodiverse freshwater ecosystems. Proceedings of the National Academy of Sciences, 113(34), 9563–9568.10.1073/pnas.1603237113
  • Zhang, M., Duan, H.T., Shi, X.L., Yu, Y. and Kong, F.X., 2012, Contributions of meteorology to the phenology of cyanobacterial blooms: implications for future climate change. Water Research, 46, 442–452.10.1016/j.watres.2011.11.013
  • Paerl, H.W. and Paul, V.J., 2012, Climate change: links to global expansion of harmful cyanobacteria. Water Research, 46, 1349–1363.10.1016/j.watres.2011.08.002
  • Resources of the USSR surface waters, 1973, (Hydrometeoizdat: USSR, Leningrad).
  • Belykh, O.I., Gladkikh, A.S., Tikhonova, I.V., Kuzmin, A.V., Mogilnikova, T.A., Fedorova, G.A. and Sorokovikova, E.G., 2015a, Identification of cyanobacteria, producers of paralytic mollusc toxins in Lake Baikal and reservoirs of the Angara River. Microbiology, 84(1), 120–122.
  • Belykh, O.I., Gladkikh, A.S., Sorokovikova, E.G., Tikhonova, I.V., Potapov, S.A. and Butina, T.V., 2015b, Saxitoxin-producing cyanobacteria in Lake Baikal. Siberian Ecological Journal, 2, 231–239.
  • NASA (National Aeronautics and Space Administration), Available online at: worldview.earthdata.nasa.gov.
  • Rp5.ru (Reliable Prognosis), Available online at: www.rp5.ru.
  • National Centers for Environmental Information, Available online at: www.ncdc.noaa.gov.
  • Met Office Hadley Centre observations datasets, Available online at: www.metoffice.gov.uk/hadobs.
  • Climate changes in 2016 (December of 2015 – November of 2016), 2007, Review of the state and tendencies of climate changes in Russia. (Moscow: IGCE Roshydromet and Russian Academy of Sciences). [In Russian].
  • Su, J.Q., Wang, H. and Yang, Z.F., 2012, Lake eutrophication modelling in considering climatic factors change: a review, China. Journal of Applied Ecology, 23, 3197–3206.
  • Coumou, D., Lehmann, J. and Beckmann, J., 2015, The weakening summer circulation in the Northern Hemisphere mid-latitudes. Science, 348(6232), 324–327.10.1126/science.1261768
  • Mao, J.Q., Chen, Q. and Chen, Y.C., 2008, Three-dimensional eutrophication model and application to Taihu Lake, China. Journal of Environmental Sciences, 20, 278–284.10.1016/S1001-0742(08)60044-3
  • Meshcherskaya, A.V., Eremin, V.V., Baranova, A.A. and Maistrova, V.V., 2006, Changes of wind speed in the north of Russia in the second half of the XX century using surface and aerological data. Russian Meteorology and Hydrology, 9, 46–58.
  • Bulygina, O.N., Korshunova, N.N. and Razuvaev, V.N., 2013, Changes of wind regime on the territory of Russia for the past decades. Proceedings of Main Geophysical Observatory, 568, 156–172. [In Russian].
  • Shimaraev, M.N., Kuimova, L.N., Sinyukovich, V.N. and Zechanovcki, V.V., 2002, Climate and hydrological processes in Lake Baikal in the 20th century. Russian Meteorology and Hydrology, 3, 71–78.
  • Ihnkena, S., Eggertb, A. and Beardalla, J., 2010, Exposure times in rapid light curves affect photosynthetic parameters in algae. Aquatic Botany, 93, 185–194.10.1016/j.aquabot.2010.07.002
  • Hammond, D. and Pryce, A.R., 2007, Climate Change Impacts and Water Temperature. Report SC060017/SR (Bristol: Environment Agency).
  • Valdemarsen, T., Quintana, C.O., Flindt, M.R. and Kristensen, E., 2015, Organic N and P in eutrophic fjord sediments – rates of mineralization and consequences for internal nutrient loading. Biogeosciences, 12, 1765–1779.10.5194/bg-12-1765-2015
  • O’Neil, J.M., Davis, T.W., Burford, M.A. and Gobler, C.J., 2012, The rise of harmful cyanobacteria blooms: the potential roles of eutrophication and climate change. Harmful Algae, 14, 313–334.10.1016/j.hal.2011.10.027
  • Straškrábová, V., 2005, Primary production and microbial activity in the euphotic zone of Lake Baikal (Southern Basin) during late winter. Global and Planetary Change, 46, 57–73.10.1016/j.gloplacha.2004.11.006
  • Zavoruev, V.V., Domysheva, V.M., Shimaraev, M.N., Sakirko, M.V., Pestunov, D.A. and Panchenko, M.V., 2008, Spatial distribution of phytoplankton fluorescent characteristics during the period of formation of spring homothermia in Lake Baikal. Atmospheric and Ocean Optics, 21(5), 377–380. [In Russian].
  • Shimaraeva, S.V., Pislegina, E.V., Krashchuk, L.S., Shchapov, K.S. and Silow, E.A., 2017, Dynamics of chlorophyll a concentration in the South Baikal pelagic during the direct temperature stratification period. Inland Water Biology, 10(1), 59–63.10.1134/S1995082917010163
  • IPCC, 2014, 2015, Climate Change 2014: Synthesis Report. Contribution of Working Groups I, II and III to the Fifth Assessment Report of the Intergovernmental Panel on Climate Change. (Geneva: Core Writing Team).
  • Eichelberger, S., Mccaa, J., Nijssen, B. and Wood, A., 2008, Climate Change Effects on Wind Speed North American Wind Power. Available online at: www.navindpower.com. (accessed 21 November 2016).

Reprints and Corporate Permissions

Please note: Selecting permissions does not provide access to the full text of the article, please see our help page How do I view content?

To request a reprint or corporate permissions for this article, please click on the relevant link below:

Academic Permissions

Please note: Selecting permissions does not provide access to the full text of the article, please see our help page How do I view content?

Obtain permissions instantly via Rightslink by clicking on the button below:

If you are unable to obtain permissions via Rightslink, please complete and submit this Permissions form. For more information, please visit our Permissions help page.