[1] Hernandez R R,Armstrong A,Burney J,et al. Techno-ecological synergies of solar energy for global sustainability[J]. Nature Sustainability,2019,2(7):560-568 [2] Pogson M,Hastings A,Smith P. How does bioenergy compare with other land-based renewable energy sources globally?[J]. Gcb Bioenergy,2013,5(5):513-524 [3] Kandpal T C,Broman L. “Renewable Energy Education:A Global Status Review.” Renewable & Sustainable Energy Reviews,2014,34(34):300-324 [4] Newell R G,Pizer W A,Raimi D. Carbon Market Lessons and Global Policy Outlook[J]. Science,2014,343(6177):1316-1317 [5] Armstrong A,Waldron S,Whitaker J,et al. Wind farm and solar park effects on plant-soil carbon cycling:uncertain impacts of changes in ground-level microclimate[J]. Global change biology,2014,20(6):1699-1706 [6] Liu Y,Zhang R Q,Huang Z,et al. Solar photovoltaic panels significantly promote vegetation recovery by modifying the soil surface microhabitats in an arid sandy ecosystem[J]. Land Degradation & Development,2019,30(18):2177-2186 [7] Watson S C,Preston J,Beaumont N J,et al. Assessing the natural capital value of water quality and climate regulation in temperate marine systems using a EUNIS biotope classification approach[J]. Science of the total Environment,2020,744:140688 [8] Ma W,Li J,Gao Y,et al. Responses of soil extracellular enzyme activities and microbial community properties to interaction between nitrogen addition and increased precipitation in a semi-arid grassland ecosystem[J]. Science of The Total Environment,2020,703:134691 [9] Dubey A,Malla M A,Khan F,et al. Soil microbiome:a key player for conservation of soil health under changing climate[J]. Biodiversity and Conservation,2019,28(8-9):2405-2429 [10] Barnard R L,Osborne C A,Firestone M K. Responses of soil bacterial and fungal communities to extreme desiccation and rewetting[J]. The ISME journal,2013,7(11):2229-2241 [11] Delgado-Baquerizo M,Maestre F T,Gallardo A,et al. Decoupling of soil nutrient cycles as a function of aridity in global drylands[J]. Nature,2013,502(7473):672-676 [12] Rineau F,Shah F,Smits M,et al. Carbon availability triggers the decomposition of plant litter and assimilation of nitrogen by an ectomycorrhizal fungus[J]. The ISME journal,2013,7(10):2010-2022 [13] 刘建国,刘卫国. 微生物介导的氮循环过程研究进展[J]. 草地学报,2018,26(2):277-283 [14] Schlesinger W H,Dietze M C,Jackson R B,et al. Forest biogeochemistry in response to drought[J]. Global change biology,2016,22(7):2318-2328 [15] Classen A T,Sundqvist M K,Henning J A,et al. Direct and indirect effects of climate change on soil microbial and soil microbial-plant interactions:What lies ahead?[J]. Ecosphere,2015,6(8):1-21 [16] Jing X,Sanders N J,Shi Y,et al. The links between ecosystem multifunctionality and above-and belowground biodiversity are mediated by climate[J]. Nature Communications,2015,6:8159 [17] Shi Y,Zhang K,Li Q,et al. Interannual climate variability and altered precipitation influence the soil microbial community structure in a Tibetan Plateau grassland[J]. Science of The Total Environment,2020,714:136794 [18] Yang Y,Gao Y,Wang S,et al. The microbial gene diversity along an elevation gradient of the Tibetan grassland[J]. The ISME journal,2014,8(2):430-440 [19] Maestre F T,Delgado-Baquerizo M,Jeffries T C,et al. Increasing aridity reduces soil microbial diversity and abundance in global drylands[J]. Proceedings of the National Academy of Sciences,2015,112(51):15684-15689 [20] Evans S E,Burke I C. Carbon and nitrogen decoupling under an 11-year drought in the shortgrass steppe[J]. Ecosystems,2013,16(1):20-33 [21] Bardgett R D,Bowman W D,Kaufmann R,et al. A temporal approach to linking aboveground and belowground ecology[J]. Trends in ecology & evolution,2005,20(11):634-641 [22] Bragazza L,Robroek B J,Jassey V E,et al. Soil microbial community structure and enzymatic activity along a plant cover gradient in Victoria Land (continental Antarctica)[J]. Geoderma,2019,353:144-151 [23] Kabir E,Kumar P,Kumar S,et al. Solar energy:Potential and future prospects[J]. Renewable and Sustainable Energy Reviews,2018,82:894-900 [24] Zaghba L,Khennane M,Fezzani A,et al. Experimental outdoor performance evaluation of photovoltaic plant in a Sahara environment (Algerian desert)[J]. International Journal of Ambient Energy,2019,40(39):1-11 [25] Zhang M,Wang C,Wang S,et al. Assessment of greenhouse gas emissions reduction potential in an industrial park in China[J]. Clean Technologies and Environmental Policy,2020,22(7):1435-1448 [26] 鲍士旦. 土壤农化分析[M]. 第三版. 北京:中国农业出版社,2000:81-82,22-24,30-34 [27] 吴晓荣,叶祥盛,赵竹青. 流动注射法与凯氏定氮法测定土壤全氮的比较[J]. 华中农业大学学报,2009,28(5):560-563 [28] 曹凯红,章金龙,李树德. 两种测定土壤全磷含量方法对比[J]. 保山学院学报,2018,37(5):26-29 [29] 孙宗玖,朱进忠,张鲜花,等. 短期放牧强度对昭苏草甸草原土壤全量氮磷钾的影响[J]. 草地学报,2013,21(5):895-901 [30] 黄瑞霞,王建光,刘志帅,等. 基于主成分回归的草坪蒸散量与其影响因素的研究[J]. 草地学报,2018,26(6):1454-1457 [31] Tan G,Shu W,Hallberg K B,et al. Culturable and molecular phylogenetic diversity of microorganisms in an open-dumped,extremely acidic Pb/Zn mine tailings[J]. Extremophiles,2008,12(5):657 [32] Fu S,He S,Shi X,et al. The chemical properties and microbial community characterization of the thermophilic microaerobic pretreatment process[J]. Bioresource technology,2015,198:497-502 [33] Caporaso J G,Kuczynski J,Stombaugh J,et al. QIIME allows analysis of high-throughput community sequencing data[J]. Nature methods,2010,7(5):335-336 [34] Fierer N,Hamady M,Lauber C L,et al. The influence of sex,handedness,and washing on the diversity of hand surface bacteria[J]. Proceedings of the National Academy of Sciences,2008,105(46):17994-17999 [35] Edgar R C. Search and clustering orders of magnitude faster than BLAST[J]. Bioinformatics,2010,26(19):2460-2461 [36] Maidak B L,Cole J R,Lilburn T G,et al. The RDP (ribosomal database project) continues[J]. Nucleic acids research,2000,28(1):173-174 [37] 丁成翔,杨晓霞,董全民. 青藏高原高寒草原放牧方式对植被、土壤及微生物群落的影响[J]. 草地学报,2020,28(1):159-169 [38] Kembel S W,Cowan P D,Helmus M R,et al. Picante:R tools for integrating phylogenies and ecology[J]. Bioinformatics,2010,26(11):1463-1464 [39] Deng Y,Jiang Y,Yang Y,et al. Molecular ecological network analyses[J]. BMC bioinformatics,2012,13(1):113 [40] Hernandez R R,Hoffacker M K,Murphymariscal M L,et al. Solar energy development impacts on land cover change and protected areas[J]. Proceedings of the National Academy of Sciences,2015,112(44):13579-13584 [41] 殷代英,马鹿,屈建军,等. 大型光伏电站对共和盆地荒漠区微气候的影响[J]. 水土保持通报,2017,37(3):15-21 [42] Baharin K A,Abdul Rahman H,Hassan M Y,et al. Short-term forecasting of solar photovoltaic output power for tropical climate using ground-based measurement data[J]. Journal of renewable and sustainable energy,2016,8(5):53701 [43] Creutzig F,Agoston P,Goldschmidt J C,et al. The underestimated potential of solar energy to mitigate climate change[J]. Nature Energy,2017,2(9):17140 [44] Chu H,Venevsky S,Wu C,et al. NDVI-based vegetation dynamics and its response to climate changes at Amur-Heilongjiang River Basin from 1982 to 2015[J]. Science of the Total Environment,2019,650:2051-2062 [45] Huang K,Zhang Y,Zhu J,et al. The influences of climate change and human activities on vegetation dynamics in the Qinghai-Tibet Plateau[J]. Remote Sensing,2016,8(10):876 [46] Jiang L,Bao A,Guo H,et al. Vegetation dynamics and responses to climate change and human activities in Central Asia[J]. Science of the Total Environment,2017,599:967-980 [47] Zhang Y,Zhang C,Wang Z,et al. Vegetation dynamics and its driving forces from climate change and human activities in the Three-River Source Region,China from 1982 to 2012[J]. Science of the Total Environment,2016,563:210-220 [48] Cleveland C C,Liptzin D. C:N:P stoichiometry in soil:is there a “Redfield ratio” for the microbial biomass?[J]. Biogeochemistry,2007,85(3):235-252 [49] Lan J,Hu N,Fu W. Soil carbon-nitrogen coupled accumulation following the natural vegetation restoration of abandoned farmlands in a karst rocky desertification region[J]. Ecological Engineering,2020,158:106033 [50] Ma F,Jia X,Zhou W,et al. Soil nitrogen mineralization in a wind-disturbed area on Changbai Mountain after 30 years of vegetation restoration[J]. Acta Ecologica Sinica,2017,37(4):265-271 [51] Li J,Yang C,Zhou H,et al. Responses of plant diversity and soil microorganism diversity to water and nitrogen additions in the Qinghai-Tibetan Plateau[J]. Global Ecology and Conservation,2020,22:e1003 [52] Bastida F,Torres I F,Andrés Abellán M,et al. Differential sensitivity of total and active soil microbial communities to drought and forest management[J]. Global Change Biology,2017,23(10):4185-4203 [53] Wang S,Wang X,Han X,et al. Higher precipitation strengthens the microbial interactions in semi-arid grassland soils[J]. Global Ecology and Biogeography,2018,27(5):570-580 |