<?xml version="1.0" encoding="UTF-8"?>
<!DOCTYPE root>
<article xmlns:mml="http://www.w3.org/1998/Math/MathML" xmlns:xlink="http://www.w3.org/1999/xlink" xmlns:xsi="http://www.w3.org/2001/XMLSchema-instance" xmlns:ali="http://www.niso.org/schemas/ali/1.0/" article-type="other" dtd-version="1.2" xml:lang="en"><front><journal-meta><journal-id journal-id-type="publisher-id">Environmental Dynamics and Global Climate Change</journal-id><journal-title-group><journal-title xml:lang="en">Environmental Dynamics and Global Climate Change</journal-title><trans-title-group xml:lang="ru"><trans-title>Environmental Dynamics and Global Climate Change</trans-title></trans-title-group></journal-title-group><issn publication-format="print">2218-4422</issn><issn publication-format="electronic">2541-9307</issn><publisher><publisher-name xml:lang="en">Yugra State University</publisher-name></publisher></journal-meta><article-meta><article-id pub-id-type="publisher-id">6466</article-id><article-id pub-id-type="doi">10.17816/edgcc126-</article-id><article-categories><subj-group subj-group-type="toc-heading" xml:lang="en"><subject>Articles</subject></subj-group><subj-group subj-group-type="toc-heading" xml:lang="ru"><subject>Статьи</subject></subj-group><subj-group subj-group-type="article-type"><subject>Unknown</subject></subj-group></article-categories><title-group><article-title xml:lang="en">Biological productivity of oligotrophic and eutrophic peatlands in southern taiga in Western Siberia</article-title><trans-title-group xml:lang="ru"><trans-title>Биологическая продуктивность олиготрофных и эвтрофных болот южной тайги Западной Сибири</trans-title></trans-title-group></title-group><contrib-group><contrib contrib-type="author"><name-alternatives><name xml:lang="en"><surname>Golovatskaya</surname><given-names>Evgeniya Aleksandrovna</given-names></name><name xml:lang="ru"><surname>Головацкая</surname><given-names>Евгения Александровна</given-names></name></name-alternatives><email>golovatskaya@imces.ru</email><xref ref-type="aff" rid="aff1"/></contrib></contrib-group><aff id="aff1"><institution></institution></aff><pub-date date-type="pub" iso-8601-date="2010-06-15" publication-format="electronic"><day>15</day><month>06</month><year>2010</year></pub-date><volume>1</volume><issue>2</issue><issue-title xml:lang="en">NO2 (2010)</issue-title><issue-title xml:lang="ru">№2 (2010)</issue-title><history><date date-type="received" iso-8601-date="2017-05-31"><day>31</day><month>05</month><year>2017</year></date></history><permissions><copyright-statement xml:lang="en">Copyright ©; 2010, Golovatskaya E.A., Golovatskaya E.A.</copyright-statement><copyright-statement xml:lang="ru">Copyright ©; 2010, Golovatskaya E.A., Головацкая Е.А.</copyright-statement><copyright-year>2010</copyright-year><copyright-holder xml:lang="en">Golovatskaya E.A., Golovatskaya E.A.</copyright-holder><copyright-holder xml:lang="ru">Golovatskaya E.A., Головацкая Е.А.</copyright-holder><ali:free_to_read xmlns:ali="http://www.niso.org/schemas/ali/1.0/"/><license><ali:license_ref xmlns:ali="http://www.niso.org/schemas/ali/1.0/">http://creativecommons.org/licenses/by-nd/4.0</ali:license_ref></license></permissions><self-uri xlink:href="https://edgccjournal.org/EDGCC/article/view/6466">https://edgccjournal.org/EDGCC/article/view/6466</self-uri><abstract xml:lang="en"><p>The results of long-term (1999-2006) investigations of dynamics of vegetation storages, phytomass growth, dead matter, and net primary productivity (NPP) at oligotrophic and eutrophic peatlands in southern taiga in Western Siberia (Tomsk region) are presented. The storages of phytomass at different ecosystems of oligotrophic bog have similar values. Storages of phytomass at eutrophic peatland are 2 times higher in comparison to oligotrophic bog. The qualitative composition of phytomass depends on vegetation of the studied ecosystems, nutrient availability and hydrothermal conditions.</p></abstract><trans-abstract xml:lang="ru"><p>Приводятся данные многолетних (1999-2006 гг.) измерений запасов биомассы, динамики прироста фитомассы и мортмассы, чистой первичной продукции (NPP) болотных биогеоценозов олиготрофного и эвтрофного типа, расположенных на территории южно-таежной подзоны Западной Сибири (Томская область). Выявлено, что запасы фитомассы и NPP эвтрофного болота почти в два раза выше по сравнению с олиготрофным. Динамика запасов фитомассы и мортмассы определяется видовым составом растительного покрова, трофностью местообитания и гидротермическими условиями.</p></trans-abstract><kwd-group xml:lang="en"><kwd>peatlands</kwd><kwd>biological productivity</kwd><kwd>net primary production</kwd></kwd-group><funding-group/></article-meta></front><body></body><back><ref-list><ref id="B1"><label>1.</label><mixed-citation>Billings W.D., Luken J.O., Mortensen D.A., Peterson K.M. 1982. Arctic tundra: A source or sink for atmospheric carbon dioxide in a changing environment? // Ecologia. 53. P 7- 11.</mixed-citation></ref><ref id="B2"><label>2.</label><mixed-citation>Birukova O.N., Orlov D.S. 1995. Stocks of carbon of organic compounds in soils of the Russian Federation. Eurasian Soil Sci. № 1. P..21-32.</mixed-citation></ref><ref id="B3"><label>3.</label><mixed-citation>Botch M.S., Kobak K.I., Vinson T.S., Kolchugina T.P. 1995. Carbon pools and accumulation in peatlands of the former Sovet Union // Global Biogeochem Cycles. 9(1). P.37-46.</mixed-citation></ref><ref id="B4"><label>4.</label><mixed-citation>Carroll P., Crill P. 1997. Carbon balance for a temperate poor fen // Global Biogeochem Cycles. 11(3). P.349-356.</mixed-citation></ref><ref id="B5"><label>5.</label><mixed-citation>Cherepanov S.K. 1995. Vascular plants of Russia and adjacent states (the former USSR). Sankt-Peterburg. 990 p.</mixed-citation></ref><ref id="B6"><label>6.</label><mixed-citation>Chramov A.A., Valutskii V.I. 1977. Forest and bog phytocenosis of East Vasuganiya.-Novosibirsk. Nauka. 219 p. (in Russian)</mixed-citation></ref><ref id="B7"><label>7.</label><mixed-citation>Efremov S.P., Efremova T.T. 2007. Experimental diagnostics of peat accumulation and transformation of organic matter in bog-forest ecosystems of Western Siberia // West Siberian peatlands and Carbon Cycle Past and Present. Proc of the Second Int Field Symposium. P.95-97. (in Russian).</mixed-citation></ref><ref id="B8"><label>8.</label><mixed-citation>Efremova T.T., Efremov S.P., Kosych N.P., Mironycheva-Tokareva N.P., Titlyanova A.A. 1994. Biological productivity and soils of bogs at south Vasuganiya // Siberian Journal of Ecology. 3. P.253-267 (in Russian).</mixed-citation></ref><ref id="B9"><label>9.</label><mixed-citation>Efremov S.P., Efremova T.T., Melent'eva N.V. 1994. Carbon stocks in bog ecosystems // Carbon in ecosystems of forest and swamps of Russia. Edited by V.A. Alekseev and P.A.Berdsi - Krasnoyarsk, P. 128-139.(in Russian).</mixed-citation></ref><ref id="B10"><label>10.</label><mixed-citation>Golovatskaya E.A., Porokhina E.V. 2005. Botany with Fundamental Phytocoenology. Biologic Productivity of Bog Biogeocoenoses: A Handbook. TGPU, Tomsk. 64p. (in Russian).</mixed-citation></ref><ref id="B11"><label>11.</label><mixed-citation>Gorham E. 1991. Northern Peatlands: role in carbon cycle and probable responses to climatic warming // Ecol. Applic. 1(2). P.182-195.</mixed-citation></ref><ref id="B12"><label>12.</label><mixed-citation>Ignatov M.S., Afonina O.M.1992. Check-list of mosses of the former USSR // Arctoa. Vol. 1 (1-2). P. 1-85.</mixed-citation></ref><ref id="B13"><label>13.</label><mixed-citation>Kim J., Verma S.B. 1992. Soil surface CO2 flux in a Minnesota peatland // Biogeochem. 18. P.37-51.</mixed-citation></ref><ref id="B14"><label>14.</label><mixed-citation>Klinger L.F., Zimmermann P.R., Greenberg J.P., Heidt L.E., Guenther A.B. 1994. Carbon trace gas fluxes along a successional gradient in the Hudson Bay Lowlands // J. Geophys. Res. 99. P.1469-1494.</mixed-citation></ref><ref id="B15"><label>15.</label><mixed-citation>Moore T.R., Bubier J.L., Frolking S.E., Lafleur P.M., Roulet N.T. 2002. Plant biomass and production and CO2 exchange in an ombrotrophic bog // J. of Ecology. 90. P.25-36.</mixed-citation></ref><ref id="B16"><label>16.</label><mixed-citation>Moore T.R., Knowles R. 1989. The influence of water table levels on methane and carbon dioxide emissions from peatland soils // Can. J. Soil Sci. 69. P.33-38.</mixed-citation></ref><ref id="B17"><label>17.</label><mixed-citation>Neumann H.H., Hartog G., King K.M., Chipanshi A.C. 1994. Carbon dioxide flux over a raised open bog at the Kinosheo Lake tower site during the Northern Wetlands Study (NOWES) // J Geophys. Res. 99(D1). P.1529-1538.</mixed-citation></ref><ref id="B18"><label>18.</label><mixed-citation>P'yavchenko N.I. 1967. On the productivity of bogs of Western Siberia // Rastitelnye resursy. 3(4). P. 523-532. (in Russian).</mixed-citation></ref><ref id="B19"><label>19.</label><mixed-citation>Sheng Y., Smith L.C., MacDonald G.M., Kremenetski K.V., Frey K.E., Velichko A.A., Lee M., Beilman D.W. and Dubinin P. 2004. A high-resolution GIS-based inventory of the west Siberian peat carbon pool // Global Biogeochem. Cycles. 18: GB3004.</mixed-citation></ref><ref id="B20"><label>20.</label><mixed-citation>Silvola J., Alm J., Ahlholm U., Nykanen H., Martikainen P.J. 1996. CO2 fluxes from peat in boreal mires under varying temperature and moisture conditions. J of Ecology 84:219-228.</mixed-citation></ref><ref id="B21"><label>21.</label><mixed-citation>Szumigalski A.R., Bayley S.E. 1997. Net aboveground primary production along a peatland gradient in central Alberta in relation to environmental factors // Ecoscience. 4. P.385-393.</mixed-citation></ref><ref id="B22"><label>22.</label><mixed-citation>The Great Vasyugan Bog. Current State and Evolution Processes. 2002. ed. by Kabanov MV, IOA SO RAN, Tomsk. 230 p. (in Russian).</mixed-citation></ref><ref id="B23"><label>23.</label><mixed-citation>Titlyanova A.A.1988. Biological Productivity of Grass Ecosystems.Novosibirsk.Nauka. 131 p. (in Russian).</mixed-citation></ref><ref id="B24"><label>24.</label><mixed-citation>Titlyanova A.A., Bulavko G.I., Kudryashova S.Ya., Naumov A.V., Smirnov V.V., Tanasienko A.A. 1998. Storages and losses of organic carbon in Siberian soils // Eurasian Soil Sci. 1.P.51-59. (in Russian).</mixed-citation></ref><ref id="B25"><label>25.</label><mixed-citation>Valutskii V.I., Chramov A.A. 1976. Theory and practice of forest telmathology and forest reclamation, Krasnoyarsk. P.59-82. (in Russian).</mixed-citation></ref><ref id="B26"><label>26.</label><mixed-citation>Vomperskii S.E. 1994. Peatlands role in the carbon cycle. Biogeocenotic features of peatlands and their rational use. Nauka, Moscow. P.5-73.(in Russian).</mixed-citation></ref><ref id="B27"><label>27.</label><mixed-citation>Vomperskii S.E.. Cyganova O.P., Kovalev A.G., Gluchova T.V., Valyaeva N.A. 1999. Waterlogged of territory of Russia as the factor of fixing of atmospheric carbon. Carbon cycle in territory of Russia. Moskow. P.124-146.</mixed-citation></ref></ref-list></back></article>
