[1] Intergovernmental Panel on Climate Change (IPCC). Climate Change 2013:The Physical Science Basis. Contribution of Working Group I to the Fifth Assessment Report of the Intergovernmental Panel on Climate Change[R]. IPCC WGI 5th Assessment Report,2013 [2] 赵东升,高璇,吴绍洪,等.基于自然分区1960-2018年中国气候变化特征[J].地球科学进展,2020,35(7):750-760 [3] 焦越佳,张佳雨,黄馨慧,等.内蒙古荒漠草原东部植被指标动态变化及其与气候变化的关系[J].草地学报,2022,30(1):153-160 [4] BEIER C,BEIERKUHNLEIN C,WOHLGEMUTH T,et al. Precipitation manipulation experiments challenges and recommendations for the future[J]. Ecology Letter,2012,15(8):899-911 [5] BAI Y F,WU J G,XING Q,et al. Primary production and rain use efficiency across a precipitation gradient on the Mongolia plateau[J]. Ecology,2008,89(8):2140-2153 [6] YUAN Z Y,CHEN H Y H. Global scale patterns of nutrient resorption associated with latitude,temperature and precipitation[J]. Global Ecology and Biogeography,2009,18(1):11-18 [7] SMITH M D,KNAPP A K,COLLINS S L. A frame work for assessing ecosystem dynamics in response to chronic resource alterations induced by global change[J]. Ecology,2009,90(12):3279-3289 [8] REN H Y,XU Z W,HUANG J H,et al. Nitrogen and water addition reduce leaf longevity of steppe species[J]. Annals of Botany,2011,107(1):145-155 [9] DIJKSTRA F A,CARRILLO Y,ASPINWALL M J,et al. Water,nitrogen and phosphorus use efficiencies of four tree species in response to variable water and nutrient supply[J]. Plant and Soil,2016,406(1):187-199 [10] WANG S,WANG X B,HAN X G,et al. Higher precipitation strengthens the microbial interactions in semi-arid grassland soils[J]. Global Ecology&Biogeography,2018,27(5):570-580 [11] 梁德飞,孙熠,蒋宏宇,等.高寒矿区渣山坡向对恢复植物叶片养分重吸收的影响[J].草地学报,2022,30(6):1491-1499 [12] ZHANG L X,BAI Y F,HAN X G. Differential responses of N:P stoichiometry of Leymus chinensis and Carex korshinskyi to N additions in a steppe ecosystem in Nei Mongol[J]. Journal of Integrative Plant Biology,2004,46(3):259-270 [13] HAN X G,FANG J Y,GUO D L,et al. Leaf nitrogen and phosphorus stoichiometry across 753 terrestrial plant species in China[J]. New Phytologist,2005,168(2):377-385 [14] 吴旭东,季波,何建龙,等.控制降水梯度对荒漠草原优势植物叶功能性状及土壤养分的影响[J].生态学报,2021,41(7):2719-2727 [15] DRURY C F,ZHANG T Q,KAY B D. The non-limiting and least limiting water ranges for soil nitrogen mineralization[J]. Soil Science Society of American Journal,2003,67(5):1388-1404 [16] REN H Y,HUANG Z W,HUANG J H,et al. Increased precipitation induces a positive plant soil feedback in a semi-arid grassland[J]. Plant and Soil,2015,389(1/2):211-223 [17] XU Z Z,HOU Y H,ZHANG L H,et al. Ecosystem responses to warming and watering in typical and desert steppes[J]. Scientific Reports,2016,6(1):34801 [18] ZHAN X Y,YU G R,HE N P. Effects of plant functional types,climate and soil nitrogen on leaf nitrogen along the north-south transect of eastern China[J]. Journal of Resources and Ecology,2013,4(2):125-131 [19] LYU X T,REED S,YU Q,et al. Convergent responses of nitrogen and phosphorus resorption to nitrogen inputs in a semi-arid grassland[J]. Global Change Biology,2013,19:2775-2784 [20] BARRETT J E,MCCULLEY R L,LANE D R,et al. Influence of climate variability on plant production and N-mineralization in Central US grasslands[J]. Journal of Vegetation Science,2002,13(3):383-394 [21] CHEN J,XIAO G L,KUZYAKOV Y,et al. Soil nitrogen transformation responses to seasonal precipitation changes are regulated by changes in functional microbial abundance in a subtropical forest[J]. Biogeosciences,2017,14(9):2513-2525 [22] LYU X M,WANG Y H,ZHOU G S,et al. Interactive effects of changing precipitation and elevated temperatures on plant biomass and its allocation of Stipa breviflora[J]. Acta Ecologica Sinica,2015,35(3):752-760 [23] 黄菊莹,余海龙,刘吉利,等.控雨对荒漠草原植物、微生物和土壤C、N、P化学计量特征的影响[J].生态学报,2018,38(15):5362-5373 [24] VINTON M A,BURKE I C. Interactions between individual plant species and soil nutrient status in shortgrass steppe[J]. Scientific Reports,1995,76(4):1116-1133 [25] MURPHY K L,BURKE I C,VINTON M A,et al. Regional analysis of litter quality in the central grassland region of North America[J]. Journal of Vegetation Science,2002,13(3):395-402 [26] MEIER I C,LEUSCHNER C. Nutrient dynamics along a precipitation gradient in European beech forests[J]. Biogeochemistry,2014,120:51-69 [27] REED S C,TOWNSEND A R,DAVIDSON E A,et al. Stoichiometric patterns in foliar nutrient resorption across multiple scales[J]. New Phytologist,2012,196(1):173-180 [28] 赵广帅,熊定鹏,石培礼,等.羌塘高原降水梯度带紫花针茅叶片氮回收特征及影响因素[J].生态学报,2016,36(11):3419-3428 [29] LYU X T,HAN X G. Nutrient resorption responses to water and nitrogen amendment in semi-arid grassland of Inner Mongolia,China[J]. Plant and Soil,2010,327(1/2):481-491 [30] LYU X T,HU Y Y,AMELIA A W,et al. Species richness mediates within species nutrient resorption:Implications for the biodiversity-productivity relationship[J]. Journal of Ecology,2019,107(5):2346-2352 [31] YUAN Z Y,CHEN H Y H. Decoupling of nitrogen and phosphorus in terrestrial plants associated with global changes[J]. Nature Climate Change,2015,5:465-469 [32] 高继卿,杨晓光,董朝阳,等.气候变化背景下中国北方干湿区降水资源变化特征分析[J].农业工程学报,2015,31(12):99-110 [33] 孙悦,高继卿,杨晓光.西北各省季节降水变化及其贡献的差异分析[J].中国农业气象,2019,40(8):489-501 [34] HUANG J,YU H,ZHANG F,et al,Water-and N-induced changes in soil C:N:P stoichiometry and its implications for N limitation of a desert steppe species,Glycyrrhiza uralensis[J]. Polish Journal of Ecology,2016,64(2):241-254 [35] LI J J,HUANG Y,XU F W,et al. Responses of growing-season soil respiration to water and nitrogen addition as affected by grazing intensity[J]. Functional Ecology,2018,32(7):1890-1901 [36] VAN H L,TOET S,AERTS R. Current measures of nutrient resorption efficiency lead to a substantial underestimation of real resorption efficiency:facts and solutions[J]. Oikos,2003,101(3):664-669 [37] VERGUTZ L,MANZONI S,PORPORATO A,et al. Global resorption efficiencies and concentrations of carbon and nutrients in leaves of terrestrial plants[J]. Ecological Monographs,2012,82(2):205-220 [38] YUAN Z Y,CHEN H Y H. Negative effects of fertilization on plant nutrient resorption[J]. Ecology,2015,96(2):373-380 [39] 黄绪梅,张翼,李建平.毛乌素荒漠草原植被特征对降水变化的响应[J].草地学报,2022,30(1):178-187 [40] 杜忠毓,安慧,王波,等.养分添加和降水变化对荒漠草原植物群落物种多样性和生物量的影响[J].草地学报,2020,28(4):1100-1110 [41] REN H Y,KANG J,YUAN Z Y,et al. Responses of nutrient resorption to warming and nitrogen fertilization in contrasting wet and dry years in a desert grassland[J]. Plant and Soil,2018,432:65-73 [42] 宋一凡,卢亚静,刘铁军,等.荒漠草原不同雨量带土壤-植物-微生物C、N、P及其化学计量特征[J].生态学报,2020,40(12):4011-4023 [43] SELIGMAN N G,SINCLAIR T R. Global environment change and simulated forage quality of wheat II. Water and nitrogen stress[J]. Field Crops Research,1995,40(1):29-37 [44] 李元恒,韩国栋,王珍,等.增温和氮素添加降低荒漠草原多年生植物氮素回收效率[J].生态学报,2015,35(18):5948-5956 [45] 陆姣云,段兵红,杨梅,等.植物叶片氮磷养分重吸收规律及其调控机制研究进展[J].草业学报,2018,27(4):178-188 [46] ZHOU L,ADDO-DANSO S D,WU P,et al. Leaf resorption efficiency in relation to foliar and soil nutrient concentrations and stoichiometry of Cunninghamia lanceolata with stand development in southern China[J]. Journal of Soils and Sediments,2016,16(5):1448-1459 [47] KOBE R K,LEPCZYK C A,IYER M. Resorption efficiency decreases with increasing green leaf nutrients in a global data set[J]. Ecology,2005,86(10):2780-2792 |