Land use change decreases soil carbon stocks in Tibetan grasslands
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  • 作者:Na Qiao ; Xingliang Xu ; Guangmin Cao ; Hua Ouyang ; Yakov Kuzyakov
  • 关键词:Alpine meadow ; Pasture ; Cropland ; Soil organic carbon ; Total nitrogen ; 未13C ; 未15N
  • 刊名:Plant and Soil
  • 出版年:2015
  • 出版时间:October 2015
  • 年:2015
  • 卷:395
  • 期:1-2
  • 页码:231-241
  • 全文大小:957 KB
  • 参考文献:Babel W, Biermann T, Coners H, Falge E, Seeber E, Ingrisch J, Schleu脽 PM, Gerken T, Leonbacher J, Leipold T, Willingh枚fer S, Sch眉tzenmeister K, Shibistova O, Becker L, Hafner S, Spielvogel S, Li X, Xu XL, Sun Y, Zhang L, Yang Y, Ma Y, Wesche K, Graf HF, Leuschner C, Guggenberger G, Kuzyakov Y, Miehe G, Foken T (2014) Pasture degradation modifies the water and carbon cycles of the Tibetan highlands. Biogeosciences 11:6633鈥?656
    Bowling DR, Pataki DE, Randerson JT (2008) Carbon isotopes in terrestrial ecosystem pools and CO2 fluxes. New Phytol 178:24鈥?0CrossRef PubMed
    Braimoh AK, Vlek PLG (2008) Land use and soil resources. Springer Science鈥?鈥塀usiness Media B.V
    Brookes PC, Landman A, Pruden G, Jenkenson DS (1985) Chloroform fumigation and the release of soil nitrogen: a rapid extraction method to measure microbial biomass nitrogen in soil. Soil Biol Biochem 17:837鈥?42CrossRef
    Chen H, Billen N, Stahr K, Kuzyakov Y (2007) Effects of nitrogen and intensive mixing on decomposition of 14C-labelled maize (Zea mays L.) residue in soils of different land use types. Soil Tillage Res 96:114鈥?23CrossRef
    Cheng W, Chen Q, Xu Y, Han X, Li L (2009) Climate and ecosystem 15N natural abundance along a transect of Inner Mongolian grasslands: contrasting regional patterns and global patterns. Glob Biogeochem Cyc 23(2): GB2005, doi:10.鈥?029/鈥?008GB003315
    Chinese Soil Taxonomy Research Group (1995) Chinese soil taxonomy. Science Press, Beijing, pp 58鈥?47
    Cotrufo MF, Conant RT, Paustian K (2011) Soil organic matter dynamics: land use, management and global change. Plant Soil 338:1鈥?CrossRef
    Frank DA, Evans RD (1997) Effects of native grazers on grassland N cycling in Yellowstone National Park. Ecology 78(7):2238鈥?248CrossRef
    Garten CT (2006) Relationships among forest soil C isotopic composition, partitioning, and turnover times. Can J For Res 36:2157鈥?167CrossRef
    Garten CT, Cooper LW, Post WM III, Hanson PJ (2000) Climate controls on forest soil C isotope ratios in the Southern Appalachian Mountains. Ecology 81:1108鈥?119CrossRef
    Geist H (2006) Our earth鈥檚 changing land: an encyclopedia of land-use and land-cover change. Greenwood Publishing Group
    German DP, Chacon SS, Allison SD (2011) Substrate concentration and enzyme allocation can affect rates of microbial decomposition. Ecology 92:1471鈥?480CrossRef PubMed
    Guillaume T, Muhammad D, Kuzyakov Y (2015) Losses of soil carbon by converting tropical forest to plantations: erosion and decomposition estimated by 未 13C. Glob Change Biol doi:10.鈥?111/鈥媑cb.鈥?2907
    Guo LB, Gifford RM (2002) Soil carbon stocks and land use change. Glob Chang Biol 8:345鈥?60CrossRef
    Hafner S, Unteregelsbacher S, Seeber E, Xu X, Li X, Guggenberger G, Miehe G, Kuzyakov Y (2012) Effect of grazing on carbon stocks and assimilate partitioning in Tibetan montane pasture revealed by 13CO2 pulse labeling. Glob Chang Biol 18:528鈥?38CrossRef
    He YT, Xu XL, Zhang XZ, Kueffer C, Shi PL (2014) Cushion plant litter shifts nitrogen mineralization to immobilization at high but not low temperature in an alpine meadow. Plant Soil 383:415鈥?26CrossRef
    Heimann M, Reichstein M (2008) Terrestrial ecosystem carbon dynamics and climate feedbacks. Nature 451:289鈥?92CrossRef PubMed
    Hobbie EA, Ouimette AP (2009) Controls of nitrogen isotope patterns in soil profiles. Biogeochemistry 95:355鈥?71CrossRef
    Houghton RA (1995) Changes in the storage of terrestrial carbon since 1850. In: Soils and global change. CRC Press, Inc, Boca Raton, pp 45鈥?5
    Ingrisch J, Biermann T, Seeber E, Leipold E, Li M, Ma Y, Xu XL, Miehe G, Guggenberger G, Foken T, Kuzyakov (2015) Carbon pools and fluxes in a Tibetan alpine Kobresia pygmaea pasture partitioned by coupled eddy-covariance measurements and 13CO2 pulse labeling. Sci Total Environ 505:1213鈥?224CrossRef PubMed
    Jendinson DS, Adamas DE, Wild A (1991) Model estimated of CO2 emissions from soil in response to global warming. Nature 351:304鈥?06CrossRef
    Kaiser K, Schoch WH, Miehe G (2007) Holocene paleosols and colluvial sediments in Northeast Tibet (Qinghai Province, China): properties, dating and paleoenvironmental implications. Catena 69(2):91鈥?02CrossRef
    Kirschbaum MUF (2004) Soil respiration under prolonged soil warming: are rate reductions caused by acclimation or substrate loss? Glob Chang Biol 10:1鈥?CrossRef
    LeCain DR, Morgan JA, Schuman GE, Reeder JD, Hart RH (2002) Carbon exchange and species composition of grazed pastures and exclosures in the short grass steppe of Colorado. Agric Ecosyst Environ 93:421鈥?35CrossRef
    Li YN, Zhao XQ, Cao GM, Zhao L, Wang QX (2004) Analyses on climates and vegetation productivity background at Haibei Alpine Meadow Ecosystem Research Station. Plateau Meteorology 23:558鈥?67
    Li YM, Cao GM, Wang YS (2006) Effects of reclamation on soil organic carbon in Haibei alpine meadow. Chin J Ecol 25:911鈥?15
    Liu JY, Kuang WJ, Zhang ZX, Xu XL, Chen YW, Jia N, Zhou WC, Zhang SW, Li RD, Yan CZ, Wu SX, Shi XZ, Jiang N, Yu DS, Pan XZ, Chi WF (2014) Spatiotemporal characteristics, patterns and causes of land use changes in China since the late 1980s. Acta Geograph Sin 69:3鈥?4
    McSherry ME, Ritchie ME (2013) Effects of grazing on grassland soil carbon: a global review. Glob Chang Biol 19:1347鈥?357CrossRef PubMed
    Miehe G, Miehe S, Kaiser K, Liu JQ, Zhao XQ (2008) Status and dynamics of the Kobresia pygmaea ecosystem on the Tibetan plateau. Ambio 37:272鈥?79CrossRef PubMed
    Miehe G, Miehe S, Kaiser K, Reudenbach C, Behrendes L, La D, Schl眉tz F (2009) How old is pastoralism in Tibet? an ecological approach to the making of a Tibetan landscape. Palaeogeogr Palaeoclimatol Palaeoecol 276(1):130鈥?47CrossRef
    Miehe G, Bach K, Miehe S, Kluge J, Yang Y, La D, Co S, Wesche K (2011) Alpine steppe plant communities of the Tibetan highlands. Appl Veg Sci 14:547鈥?60CrossRef
    Miehe G, Miehe S, B枚hner J, Kaiser K, Hensen I, Madsen D, Liu JQ, Opgenoorth L (2014) How old is the human footprint in the world鈥檚 largest alpine ecosystem? A review of multiproxy records from the Tibetan plateau from the ecologists鈥?viewpoint. Quat Sci Rev 86:190鈥?09CrossRef
    Newton JD, Wyatt FA, Brown AL (1945) Effects of cultivation and cropping on the chemical composition of some western Canadian prairie province soils. Sci Agric 25:718鈥?37
    Pi帽eiro G, Paruelo JM, Oesterheld M, Jobb谩gy EG (2010) Pathways of grazing effects on soil organic carbon and nitrogen. Rangel Ecol Manag 63:109鈥?19CrossRef
    Poage MA, Feng XH (2004) A theoretical analysis of steady 未13C profiles of soil organic matter. Glob Biogeochem Cyc 18:GB2016, doi:10.鈥?029/鈥?003GB002195
    Reid RS, Thornton PK, McCrabb GJ, Kruska RL, Atieno F, Jones PG (2004) Is it possible to mitigate greenhouse gas emissions in pastoral ecosystems of the tropics? Environ Dev Sustain 6:91鈥?09CrossRef
    Robinson D (2001) 未15N as an integrator of the nitrogen cycle. Trends Ecol Evol 16(3):153鈥?62CrossRef PubMed
    Sanaullah M, Blagodatskaya E, Chabbi A, Rumpel C, Kuzyakov Y (2011) Drought effects on microbial biomass and enzyme activities in the rhizosphere of grasses depending on plant community composition. Appl Soil Ecol 48:38鈥?4CrossRef
    艩antr暖膷kov谩 H, Bird MI, Lloyd J (2000) Microbial processes and carbon-isotope fractionation in tropical and temperate grassland soils. Funct Ecol 14:108鈥?14CrossRef
    Schleuss P, Heitkamp F, Sun Y, Miehe G, Xu XL, Kuzyakov Y (2015) Nitrogen uptake in an alpine Kobresia pasture on the Tibetan Plateau: localisation by 15N labelling and implications for a vulnerable ecosystem. Ecosystems. doi:10.鈥?007/鈥媠10021-015-9874-9
    Song MH, Jiang J, Cao GM, Xu XL (2010) Effects of temperature, glucose and inorganic nitrogen inputs on carbon mineralization in a Tibetan alpine meadow soil. Eur J Soil Biol 46:375鈥?80CrossRef
    Stockmann U, Adams MA, Crawford JW, Field DJ, Henakaarchchi N, Jenkins M, Minasny B, McBratney AB, de Remy de Courcelles V, Singh K, Wheeler I, Abbott L, Angers DA, Baldock J, Bird M, Brookes PC, Chenu C, Jastrow JD, Lal R, Lehmann J, O鈥橠onnell AG, Parton WJ, Whitehead D, Zimmermann M (2013) The knowns, known unknowns and unknowns of sequestration of soil organic carbon. Agric Ecosyst Environ 164:80鈥?9CrossRef
    Tarnocai C, Canadell JG, Schuur EAG, Kuhry P, Mazhitova G, Zimov S (2009) Soil organic carbon pools in the northern circumpolar permafrost region. Global Biogeochem Cycles 23:GB2023, doi:10.鈥?029/鈥?008GB003327
    Tian YQ, Xu XL, Song MH, Zhou CP, Gao Q, Ouyang H (2009) Carbon sequestration in two alpine soils on the Tibetan plateau. J Integr Plant Biol 51(9):900鈥?05CrossRef PubMed
    Tian J, Pausch J, Yu G, Blagodatskaya E, Gao Y, Kuzyakov Y (2015) Aggregate size and their disruption affect 14C-labeled glucose mineralization and priming effect. Appl Soil Ecol 90:1鈥?0
    Unteregelsbacher S, Hafner S, Guggenberger G, Miehe G, Xu XL, Liu J, Kuzyakov Y (2012) Response of long-, medium- and short-term turnover processes of the carbon budget to overgrazing on the Tibetan plateau. Biogeochemistry 111:187鈥?01CrossRef
    Vance ED, Brookes PC, Jenkinson DS (1987) An extraction method for measuring soil microbial biomass C. Soil Biol Biochem 19(6):703鈥?07CrossRef
    Wang W, Fang JY (2009) Soil respiration and human effects on global grasslands. Glob Planet Chang 67(1-2):20鈥?8
    Wang SP, Wilkes A, Zhang ZC, Chang XF, Lang R, Wang YF, Niu HS (2011) Management and land use change effects on soil carbon in northern China鈥檚 grasslands: a synthesis. Agric Ecosyst Environ 142:329鈥?40CrossRef
    Wang LX, Okin GS, D鈥橭dorico P, Caylor KK, Macko SA (2013) Ecosystem-scale spatial heterogeneity of stable isotopes of soil nitrogen in African savannas. Landsc Ecol 28(4):685鈥?98CrossRef
    WBGU Special Report (1998) The accounting of biological sinks and sources under the Kyoto Protocol. WBGU, Bremerhaven
    WRB (1998) World reference base for soil resources. FAO/ISRIC/ISSS, Rome
    Wu J, J枚rgensen RG, Pommerening B, Chaussod R, Brookes PC (1990) Measurement of soil microbial biomass-C by fumigation-extraction鈥攁n automated procedure. Soil Biol Biochem 22:1167鈥?169CrossRef
    Wu HB, Guo ZT, Peng CH (2003) Distribution and storage of soil organic carbon in China. Global Biogeochem Cycles 17:1鈥?1
    Yang YH, Fang JY, Tang YH, Ji CJ, Zheng CY, He JS, Zhu B (2008) Storage, patterns and controls of soil organic carbon in the Tibetan grasslands. Glob Chang Biol 14:1592鈥?599CrossRef
    Yi X (2004) Stable carbon isotopic composition in soil organic carbon and C3/C4 source variations at the Haibei Alpine Meadow. Acta Bot Boreal 25(2):336鈥?42
    Yi X, Yang Y, Zhang X, Li L, Zhang L (2003) No C4 plants found at the Haibei Alpine Meadow Ecosystem Research station in Qinghai, China: evidence from stable carbon isotope studies. Acta Bot Sin 45(11):1291鈥?296
    Zhang JW (1988) Vegetation of Xizang Science Press, Bejing
    Zhang YL, Li BY, Zheng D (2002) A discussion on the boundary and area of the Tibetan plateau in China. Geogr Res 21:1鈥?
    Zhou XM (2001) Alpine Kobresia meadows in China. Science Press, Beijing
  • 作者单位:Na Qiao (1) (4)
    Xingliang Xu (2)
    Guangmin Cao (3)
    Hua Ouyang (2)
    Yakov Kuzyakov (2) (5) (6)

    1. Key Laboratory of Tropical Forest Ecology, Chinese Academy of Sciences, Xishuangbanna Tropical Botanical Garden, Menglun Mengla, Yunnan, 666303, China
    4. University of the Chinese Academy of Sciences, 19A Yuquan Road, Beijing, 100049, China
    2. Key Laboratory of Ecosystem Network Observation and Modeling, Chinese Academy of Sciences, Institute of Geographic Sciences and Natural Resources Research, 11A Datun Road, Chaoyang District, Beijing, 100101, China
    3. Northwest Institute of Plateau Biology, Chinese Academy of Sciences, NO. 23 Xinning Road, Xining, 810008, China
    5. Department of Soil Science of Temperate Ecosystems and Department of Agricultural Soil Science, University of G枚ttingen, G枚ttingen, Germany
    6. Institute of Environmental Sciences, Kazan Federal University, Kazan, Russia
  • 刊物类别:Biomedical and Life Sciences
  • 刊物主题:Life Sciences
    Plant Sciences
    Soil Science and Conservation
    Plant Physiology
    Ecology
  • 出版者:Springer Netherlands
  • ISSN:1573-5036
文摘
Backgrounds and aims Land use is an important factor affecting soil organic carbon (SOC) dynamics and can produce positive C climate feedback, but its effects remain unknown for Tibetan ecosystems.

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