〔1〕 Stocker T F D,Qin G K,Plattner,et al.The physical science basis〔C〕//Contribution of Working Group I to the Fifth Assessment Report of the Intergovernmental Panel on Climate Change,2013:710-719. 〔2〕 Galloway J N.The global nitrogen cycle:Changes and consequenc-es〔J〕.Environmental Pollution,1998,102(1):15-24. 〔3〕 Galloway J N,Townsend A R,Erisman J W,et al.Sutton transformation of the nitrogen cycle:Recent trends,questions,and potential solutions〔J〕.Science,2008,320:889-892. 〔4〕 庄晓玲,李凯辉,王晓丽,等.新疆两种不同类型农田生态系统大气氮素干沉降分析〔J〕.干旱区研究,2017,34(6):1-10.〔Zhuang Xiaoling,Li Kaihui,Wang Xiaoli,et al.Atmospheric nitrogen dry deposition on two contrasting types of agroecosystem in Xinjiang Province〔J〕.Arid Zone Research,2017,34(6):1-10.〕 〔5〕 Schimel J, Balser T C, Wallenstein M.Microbial stress-response physiology and its implications for ecosystem function〔J〕.Ecology,2007,88(6):1 386-1 394. 〔6〕 张明锦,陈良华,张健,等.马尾松人工林林窗内凋落叶微生物生物量碳和氮的动态变化〔J〕.应用生态学报,2016,27(3):672-680.〔Zhang Mingjin,Chen Lianghua,Zhang Jian,et al.Dynamics of microbial biomass carbon and nitrogen during foliar litter decomposition under artificial forest gap in Pinus massoniana plantation〔J〕.Chinese Journal of Applied Ecology,2016,27(3):672-680.〕 〔7〕 Schindlbacher A,Rodler A,Kuffner M,et al.Experimental warming effects on the microbial community of a temperate mountain forest soil 〔J〕.Soil Biology & Biochemistry,2011,43(7):1 417-1 425. 〔8〕 Treseder K K,Balser T C,Bradford M A,et al.Integrating microbial ecology into ecosystem models:Challenges and priorities 〔J〕.Biogeochemistry,2012,109(1):7-18. 〔9〕 Zhang Q H,Zak J C.Effects of water and nitrogen amendment on soil microbial biomass and fine root production in a semi-arid environment in West Texas〔J〕.Soil Biology & Biochemistry,1998,30,39-45. 〔10〕Treseder K K.Nitrogen additions and microbial biomass:A meta-analysis of ecosystem studies〔J〕.Ecology Letters,2008,11(10):1 111-1 120. 〔11〕Sheik C S,Beasley W H,Elshahed M S,et al.Effect of warming and drought on grassland microbial communities〔J〕.Isme Journal,2011,5(10):1 692-1 700. 〔12〕Zhang N,Wan S,Guo J,et al.Precipitation modifies the effects of warming and nitrogen addition on soil microbial communities in northern Chinese grasslands〔J〕.Soil Biology & Biochemistry,2015,89(6):12-23. 〔13〕Gestel N C V,Dhungana N,Tissue D T,et al.Seasonal microbial and nutrient responses during a 5-year reduction in the daily temperature range of soil in a Chihuahuan Desert ecosystem〔J〕.Oecologia,2016,180(1):1-13 〔14〕钱亦兵,吴兆宁,张立运,等.古尔班通古特沙漠植被与环境的关系〔J〕.生态学报,2007,27(7):2 802-2 811.〔Qian Yibing,Wu Zhaoning,Zhang Liyun,et al.Vegetation-environment relationships in Gurbantunggut Desert〔J〕.Acta Ecologica Sinica,2007,27(7):2 802-2 811.〕 〔15〕Huang G,Li Y,Padilla F M.Ephemeral plants mediate responses of ecosystem carbon exchange to increased precipitation in a temperate desert〔J〕.Agricultural & Forest Meteorology,2015,201:141-152. 〔16〕Xu W,Luo X S,Pan Y P,et al.Quantifying atmospheric nitrogen deposition through a nationwide monitoring network across China〔J〕.Atmospheric Chemistry & Physics,2015,15:12 345-12 360. 〔17〕Klein J A,Harte J,Zhao X Q.Experimental warming causes large and rapid species loss,dampened by simulated grazing,on the Tibetan Plateau〔J〕.Ecology Letters,2004,7(12):1 170-1 179. 〔18〕Nunan N,Morgan M A,Herlihy M.Ultraviolet absorbance (280 nm) of compounds released from soil during chloroform fumigation as an estimate of the microbial biomass〔J〕.Soil Biology & Biochemistry,1998,30(12):1 599-1 603. 〔19〕Huang G,Li Y,Su Y G.Divergent responses of soil microbial communities to water and nitrogen addition in a temperate desert〔J〕.Geoderma,2015,251/252:55-64. 〔20〕Sinsabaugh R L,Belnap J,Rudgers J,et al.Soil microbial responses to nitrogen addition in arid ecosystems〔J〕.Frontiers in Microbiology,2015,6(819):1-12. 〔21〕Song M,Xu X,Hu Q,et al.Interactions of plant species mediated plant competition for inorganic nitrogen with soil microorganisms in an alpine meadow〔J〕.Plant and Soil,2007,297(1):127-137. 〔22〕Kuzyakov Y,Xu X.Competition between roots and microorganisms for nitrogen:Mechanisms and ecological relevance〔J〕.New Phytologist,2013,198(3):656-669. 〔23〕Menge D N,Pacala S W,Hedin L O.Emergence and maintenance of nutrient limitation over multiple timescales in terrestrial ecosystems〔J〕.American Naturalist,2009,173(2):164-175. 〔24〕Miki T,Ushio M,Fukui S,et al.Functional diversity of microbial decomposers facilitates plant coexistence in a plant-microbe-soil feedback model〔J〕.Proceedings of the National Academy of Sciences of the United States of America,2010,107(32):14 251-14 256. 〔25〕Reichmann L G,Sala O E,Peters D P C.Water controls on nitrogen transformations and stocks in an arid ecosystem〔J〕.Ecosphere,2013,4(4):1-17. 〔26〕Zhang W,Parker K M,Luo Y,et al.Soil microbial responses to experimental warming and clipping in a tallgrass prairie〔J〕.Global Change Biology,2007,11(8):27-28. 〔27〕Zhang N,Ma K.Soil microbial responses to warming and increased precipitation and their implications for ecosystem C cycling〔J〕.Oecologia,2013,173(3):1 125-1 142. 〔28〕Fan L L,Li Y,Tang L S,et al.Combined effects of snow depth and nitrogen addition on ephemeral growth at the southern edge of the Gurbantunggut Desert,China〔J〕.Journal of Arid Land,2013,5(4):500-510. 〔29〕Mccalley C K,Sparks J P.Abiotic gas formation drives nitrogen loss from a desert ecosystem〔J〕.Science,2009,326(5 954):837-840. 〔30〕Vitousek P M,Aber J D,Howarth R W,et al.Human alteration of the global nitrogen cycle:Sources and consequences〔J〕.Ecological Applications,1997,7(3):737-750. 〔31〕Huang G,Su Y G,Zhu L,et al.The role of spring ephemerals and soil microbes in soil nutrient retention in a temperate desert 〔J〕.Plant and Soil,2016,406(1):1-12. 〔32〕Chen B M,Wang G X,Peng S L.Role of desert annuals in nutrient flow in arid area of Northwestern China:A nutrient reservoir and provider〔J〕.Plant Ecology,2009,201(2):401-409. 〔33〕Imberger K T,Chiu C Y.Spatial changes of soil fungal and bacterial biomass from a sub-alpine coniferous forest to grassland in a humid,sub-tropical region〔J〕.Biology and Fertility of Soils,2001,33(2):105-110. 〔34〕Geisseler D,Horwath W R.Short-term dynamics of soil carbon,microbial biomass,and soil enzyme activities as compared to longer-term effects of tillage in irrigated row crops〔J〕.Biology & Fertility of Soils,2009,46(1):65-72. 〔35〕Griffiths B.Soil Microbiology and Biochemistry,Second Edition 〔J〕.Experimental Agriculture,1997,33(3):385-387. 〔36〕Huang G,Li Y,Su Y G.Effects of increasing precipitation on soil microbial community composition and soil respiration in a temperate desert,Northwestern China〔J〕.Soil Biology & Biochemistry,2015,83:52-56. 〔37〕Bi J,Zhang N,Liang Y,et al.Interactive effects of water and nitrogen addition on soil microbial communities in a semiarid steppe〔J〕.Journal of Plant Ecology,2012,5(5):320-329. 〔38〕Wallenstein M D.Effects of Increased Nitrogen Deposition on Forest Soil Nitrogen Cycling and Microbial Community Structure〔D〕.Durham:Duke University,2004. 〔39〕Martínez-Yrízar A,Núíez S,Búrquez A.Leaf litter decomposition in a southern Sonoran Desert ecosystem,Northwestern Mexico:Effects of habitat and litter quality〔J〕.Acta Oecologica,2007,32(3):291-300. 〔40〕Zhao H,Gang H,Yan L,et al.Effects of increased summer precipitation and nitrogen addition on root decomposition in a temperate desert〔J〕.Plos One,2015,10(11):1-17. |