Climatically Unjustified Boreal Forests In The South-Kuril Islands

Forest phytobiota plays an exceptionally important backbone part in the establishment and development of insular–arc volcanic ecosystems in North–West Pacific. The optimizing strategy program for the development of plant communities, which is aimed at the maximum biomass formation on forest island–a...

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Bibliographic Details
Main Authors: Kolomyts, E., Sharaya, L., Surova, N.
Format: Text
Language:Russian
Published: Zenodo 2018
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Online Access:https://dx.doi.org/10.5281/zenodo.1312156
https://zenodo.org/record/1312156
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Summary:Forest phytobiota plays an exceptionally important backbone part in the establishment and development of insular–arc volcanic ecosystems in North–West Pacific. The optimizing strategy program for the development of plant communities, which is aimed at the maximum biomass formation on forest island–arc landscapes, is much more marked compared to their zonal analogs on the neighboring continent. An exceptionally high percentage of green mass in the structure of production results in the acceleration of biological cycle as a factor of stability of forest community. Quantitative assessment of the effects of magmatic energy of active volcano on the thermal regimes of soil and forest formation in an insular volcanic landscape, has been made for the first time. Geothermal energy is a factor of accelerated evolution of the island phytobiota. All the above ensures the survival and development of insular ecosystems of the boreal North–West Pacific under unfavorable conditions of “cold” oceanicity. : Работа выполнена при финансовой поддержке РФФИ, проект № 14–05–00032–а. : {"references": ["Tatewaki, M. (1957). Geobatanic studies on the Kurile island. Acta Horti Gotoburgensis, 21 (2). 43-123.", "Vorobyov, D. P. (1963). Vegetation of the Kuril Islands. M.-L.: Publishing House of the USSR Academy of Sciences, 92.", "Popov, N. A. (1963). Forests of the Southern Kuril Islands and prospects for their use. Proceedings of the conference. Krasnoyarsk: Institute of Forest and Wood, Siberian Branch of the USSR Academy of Sciences, 59-69.", "Urusov, V. M. (1988). Genesis of vegetation and rational nature management in the Far East. Vladivostok: TIG DVO AS USSR, 356.", "Nakamura, Y., & Krestov, P. V. (2005). Coniferous forests of the temperate zone of Asia. Coniferous forests. Ser. Ecosystems of the World, (6). 163-220.", "Krestov, P. V. (2006). Vegetative cover and phytogeographic lines of the Northern Pacific: avtoref. diss. ... Dr. Biol. sciences. Vladivostok, 42.", "Urusov, V. M., & Chipizubova, M. N. (2008). General regularities of the geographical distribution of formations and types of vegetation. Genesis of vegetation. Geosystems of the Far East of Russia at the turn of the XX-XXI centuries. Vladivostok: Dal' Science, 203-220.", "The Atlas of the Kuril Islands. (2009). Ed. count: V. M. Kotlyakov, P. Ya. Baklanov, & N. P. Komedchikov (Ed.) And others. Ed. cartographer E.Ya. Fedorov. Vladivostok: CPI DIC, 516.", "Kojima, S. (1991). Classification and ecological characterization of coniferous forest phytogeocoenoses of Hokkaido, Japan. Vegetation, (96). 25\u201342.", "Igarashi, Y. (1993). History of environmental change in Hokkaido from the viewpoint of Palynological research. Biodiversity and Ecology in the Northernmost Japan. Sapporo: Hokkaido University, Press. 1\u221219.", "Hulten, E. (1960). Flora of the Aleutian Islands and westernmost Alaska Peninsula with notes on the flora of the Commander Islands. 2end ed Weinheim. 400.", "Hopkins, D. M. (1972). The paleogeography and climatic history of Beringia during late Cenozoic Time. Inter-Nord, (12). 152\u2013174.", "Stinson, G., Kurz, W. A., & Smyth C. E., et al. (2011). An inventory-based analysis of Canada's managed forest carbon dynamics, 1990 to 2008. Global Change Biology, (17). 2227\u20132244.", "Kolomits, E. G., (2015). Pacific Mega-Ecotone of Northern Eurasia as Evolutionary Model of Continental Biosphere. Regional Research of Russia, (6). 24-37.", "Sochava, V. B. (1980). Geographical aspects of the Siberian taiga. Novosibirsk: Science, 256.", "Gorshkov, G. S. (1967). Volcanism of the Kuril island arc. Moscow: Science, 288.", "Zlobin, T. K., Abdurakhmanov, L. I., & Zlobina, L. M. (1997). Deep seismic studies of the Mendeleyev volcano in the Southern Kuriles. Pacific. Geology, 16 (4). 79-87.", "Letnikov, F. A. (2000). A Fluid Regime of Endogenous Processes in the Continental Lithosphere and Problems of Metallogeny. Problems of Global Geodynamics. Moscow: GEOS, 204-224.", "Kozlov, D. N., & Zharikov R. V. (2012). Thermal imaging of active volcanoes of the Kurile Islands in 2009-2011. Herald of KRAUNTS. Earth sciences, 1 (19). 1-7.", "Pietsch1, T. W., Bogatov, V. V., & Amaoka, K., et al. (2003). Biodiversity and biogeography of the islands of the Kuril Archipelago. Journ. of Biogeogr, (30). 1297-1310.", "Manko, Yu. I., & Rozenberg, V. A. (1970). Altitudinal zonality of vegetation on Mendeleyev volcano. Biol. resources about. Sakhalin and the Kuril Islands. Vladivostok: Biological soil. Institute of the Far-Eastern Scientific Center of the Academy of Sciences of the USSR, P. 65-71.", "Kolomits, E. G. (2008). Local mechanisms of global changes in natural ecosystems. Moscow: Science, 427.", "Hijmans, R. J., Cameron, S. E., & Parra, J. L., et al. (2005). Very high resolution interpolated climate surfaces for global land areas. International Journal of Climatology, 25 (15). 1965-1978.", "Wood, J. (2009). Overview of software packages used in geomorphometry. Amsterdam, etc.: Elsevier, Chap. 10. 257-267.", "Dimo, V. N. (1967). A calculation method for determining the soil temperature. Bull. Soil Institute. V. V. Dokuchaev, (1). 88-99.", "Protopopov, V. V. (1975). The mediating role of dark coniferous forest. Novosibirsk: Science, 328.", "Molchanov, A. A. (1961). Forest and climate. Moscow: Publishing House of the USSR Academy of Sciences, 279.", "Tarankov, V. I. (1974). Microclimate of the forests of the Southern Primorye. Novosibirsk: Science, 223.", "Shary, P. A., Sharaya, L. S., & Mitusov, A. V. (2002). Fundamental quantitative methods of land surface analysis. Geoderma, 107 (1-2). 1-32.", "Markov, K. K., ed. (1980). Physical geography of the World Ocean. L.: Science, 362.", "Bazilevich, N. I., Grebenshchikov, O. S., & Tishkov, A. A. (1986). Geographic patterns of the structure and functioning of ecosystems. Moscow: Science, 297.", "Korotkii, A. M., Volkov, V. G., & Grebennikova, T. A., et al. (1999). The Far East. Climate and landscape change for the last 65 million years. Moscow: GEOS, 146-164.", "Bazilevich, N. I. (1981). Efficiency, energy and biogeochemistry of terrestrial ecosystems of the Pacific ring. Questions of geography. Moscow: Thought. 146-208.", "Bazilevich, N. I., & Titlyanova A. A. (2008). Biological circulation on five continents: nitrogen and ash elements in natural terrestrial ecosystems. Novosibirsk: Izdatel'stvo SB RAN, 380.", "Takanashi, S., Kosugi, Y., & Tanaka, Y., et al. (2005). CO2 exchange in a temperate Japanese cypress forest compared with that in a cool-temperate deciduous broad-leaved forest. Ecological Research, (20). 313-324.", "Ivanov, A. N. (2014). Problems of Island Landscape Studies, in: Problems of Landscape Studies. (138). Horizons of landscape studies. Moscow: Kodeks, 138-158.", "Tooming, H. G. (1984). Ecological principles of maximum productivity of crops. L.: Gidrometeoizdat, 264.", "Timofeev-Resovsky, N. V., Vorontsov, N. N., & Yablokov, A. V. (1969). A short sketch of the theory of evolution. Moscow: Science, 407.", "Budyko, M. I. (1984). Evolution of the biosphere. L.: Gidrometeoizdat, 488.", "Rauner, Yu. L. (1972). Thermal balance of vegetation cover. Moscow: Science, 210.", "Allen, D. M. (1974). The relationship between variable selection and data augmentation and a method for prediction. Technometrics, (16). 125-127."]}