[1] SUN J,MA B B,LU X Y. Grazing Enhances Soil Nutrient Effects:Trade-Offs Between Above and Below-ground Biomass in Alpine Grasslands of the Tibetan Plateau[J]. Land Degradation&Development,2018,29(2):1-12 [2] 唐刘燕,国慧,杨振安. 不同放牧模式下青藏高原高寒草甸植被群落和土壤差异[J]. 草业科学,2021,38(7):1209-1217 [3] HAN J,ZHANG Y J,WANG C J,et al. Rangeland Degradation and Restoration Management in China[J]. Rangeland Journal,2008,30(2):233-239 [4] HARRIS R B. Rangeland Degradation on the Qinghai-Tibetan Plateau:A Review of the Evidence of Its Magnitude and Causes[J]. Journal of Arid Environments,2010,74(1):1-12 [5] IRISARRI G,DERNER J,PORENSKY L,et al. Grazing Intensity Differentially Regulates ANPP Response to Precipitation in North American Semiarid Grasslands[J]. Ecological Applications,2016,26(5):1370-1380 [6] AUSTRHEIM G,SPEED J,MARTINSEN V,et al. Experimental Effects of Herbivore Density on Aboveground Plant Biomass in an Alpine Grassland Ecosystem [J]. Arctic Antarctic and Alpine Research,2014,46(3):535-541 [7] 杨晨晨,陈宽,周延林,等. 放牧对锡林郭勒草甸草原群落特征及生产力的影响[J]. 中国草地学报,2021,43(5):58-66 [8] 锡林图雅,徐柱,郑阳. 不同放牧率对内蒙古克氏针茅草原地下生物量及地上净初级生产量的影响[J]. 中国草地学报,2009,31(3):26-29 [9] YAN L,ZHOU GS,ZHANG F. Effects of Different Grazing Intensities on Grassland Production in China:A Meta-Analysis[J]. PlOS One,2013,8(12):e81466 [10] 宋磊,董全民,李世雄,等. 放牧对青海湖北岸高寒草原植物群落特征的影响[J]. 草业科学,2016,33(8):1625-1632 [11] MAZZILLI S,KEMANIAN A,ERNST O,et al. Greater Humification of Belowground than Aboveground Biomass Carbon into Particulate Soil Organic Matter in No-till Corn and Soybean Crops [J]. Soil Biology and Biochemistry,2015,85:1-9 [12] 刘艾,刘德福. 我国草地生物量研究概述[J]. 内蒙古草业,2005,17(1):7-11 [13] VAN DER MAAREL E,TITLYANOVA A. Above-ground and Below-ground Biomass Relations in Steppes under Different Grazing Conditions[J]. Oikos,1989,56:364-370 [14] 陈万杰,董亭,古琛,等. 不同放牧强度对大针茅根系特征的影响[J]. 中国草地学报,2015,37(4):86-91 [15] MCCONNAUGHAY K,COLEMAN J. Biomass Allocation in Plants:Ontogeny or Optimality? A Test along Three Resource Gradients[J]. Ecology,1999,80:2581-2593 [16] 李旭东,张春平,傅华. 黄土高原典型草原草地根冠比的季节动态及其影响因素[J]. 草业学报,2012,21(4):307-312 [17] 王晓光,乌云娜,霍光伟,等. 放牧对呼伦贝尔典型草原植物生物量分配及土壤养分含量的影响[J]. 中国沙漠,2018,38(6):1230-1236 [18] 古琛,杜宇凡,乌力吉,等. 载畜率对荒漠草原群落及植物功能群生物量的影响[J]. 生态环境学报,2015,24(12):1962-1968 [19] CHENG D L,NIKLAS K. Above-and Below-ground Biomass Relationships Across 1534 Forested Communities[J]. Annals of Botany,2006,99(1):95-102 [20] 古琛,陈万杰,杜宇凡,等. 载畜率对内蒙古荒漠草原冷蒿种群资源分配格局的影响[J]. 生态学报,2017,37(7):2237-2243 [21] SU B Q,SU Z X,SHANGGUAN Z P. Trade-off Analyses of Plant Biomass and Soil Moisture Relations on the Loess Plateau[J]. Catena,2021,197:104946 [22] SUN J,WANG H M. Soil Nitrogen and Carbon Determine the Trade-Off of the Above-and Below-ground Biomass Across Alpine Grasslands,Tibetan Plateau[J]. Ecological Indicators,2016,60:1070-1076 [23] 刘娜,白可喻,杨云卉,等. 放牧对内蒙古荒漠草原草地植被及土壤养分的影响[J]. 草业科学,2018,35(6):1323-1331 [24] ZHANG R H,WANG Z W,HAN G D,et al. Grazing Induced Changes in Plant Diversity is A Critical Factor Controlling Grassland Productivity in the Desert Steppe,Northern China[J]. Agriculture Ecosystems & Environment,2018,265:73-83 [25] 黄琛,张宇,赵萌莉,等. 放牧强度对荒漠草原植被特征的影响[J]. 草业科学,2013,30(11):1814-1818 [26] 韩梦琪,王忠武,靳宇曦,等. 短花针茅荒漠草原物种多样性及生产力对长期不同放牧强度的响应[J]. 西北植物学报,2017,37(11):2273-2281 [27] 闫宝龙,吕世杰,王舒新,等. 放牧强度对无芒隐子草小尺度空间分布特征的影响[J]. 中国草地学报,2018,40(4):95-101 [28] 李西良,刘志英,侯向阳,等. 放牧对草原植物功能性状及其权衡关系的调控[J]. 植物学报,2015,50(2):159-170 [29] 王炜,梁存柱,刘钟龄,等. 草原群落退化与恢复演替中的植物个体行为分析[J]. 植物生态学报,2000,24(3):268-274 [30] GONG X Y,FANSELOW N,DITTERT K,et al. Response of Primary Production and Biomass Allocation to Nitrogen and Water Supplementation Along a Grazing Intensity Gradient in Semiarid Grassland[J]. European Journal of Agronomy,2015,63:27-35 [31] 道日娜,宋彦涛,乌云娜,等. 克氏针茅草原植物叶片性状对放牧强度的响应[J]. 应用生态学报,2016,27(7):2231-2238 [32] 杜宝红,高翠萍,哈达朝鲁. 不同放牧强度对锡林郭勒典型草原生产力及碳储量的影响[J]. 水土保持研究,2018,25(1):139-146 [33] 秦洁,韩国栋,乔江. 内蒙古不同草地类型中羊草地上生物量对放牧强度的响应[J]. 中国草地学报,2016,38(4):76-82 [34] FUKUI S,MIKI T,SHIMADA M. Consumers Can Enhance Ecosystem productivity and stability in changing environments[J]. Population Ecology,2012,54(1):177-186 [35] REN HY,HAN GD,SCHÖNBACH P,et al. Forage Nutritional Characteristics and Yield Dynamics in A Grazed Semiarid Steppe Ecosystem of Inner Mongolia,China[J]. Ecological Indicators,2016,60:460-469 [36] WANG H Y,DONG Z,GUO J Y,et al. Effects of Grazing Intensity on Organic Carbon Stock Characteristics in Stipa breviflora Desert Steppe Vegetation Soil Systems[J]. The Rangeland Journal,2017,39(2):169-177 [37] GAO Y Z,GIESE M,LIN S,et al. Belowground Net Primary Productivity and Biomass Allocation of A Grassland in Inner Mongolia is Affected by Grazing Intensity[J]. Plant and Soil,2008,307(1):41-50 [38] 杨秀静,黄玫,王军邦,等. 青藏高原草地地下生物量与环境因子的关系[J]. 生态学报,2013,33(7):2032-2042 [39] 陈蔚,刘任涛,常海涛,等. 放牧对草地枯落物分解和土壤动物群落及其相互关系的影响[J]. 生态学杂志,2020,39(10):3482-3491 [40] 侯扶江,常生华,于应文,等. 放牧家畜的践踏作用研究评述[J]. 生态学报,2014,24(4):784-789 [41] ZHOU T C,SUN J,ZONG N,et al. Community Species Diversity Mediates the Trade-Off Between Aboveground and Belowground Biomass for Grasses and Forbs in Degraded Alpine Meadow,Tibetan Plateau[J]. Ecology and Evolution,2021,11(19):13259-13267 [42] STOLER A,RELYEA R. Reviewing the Role of Plant Litter Inputs to Forested Wetland Ecosystems:Leafing Through the Literature[J]. Ecological Monographs,2020,90(2):e01400 [43] LEDO A,PAUL K,BURSLEM D,et al. Tree Size and Climatic Water Deficit Control Root to Shoot Ratio in Individual Trees Globally[J]. New Phytologist,2017,217:1-4 [44] 郝爱华,薛娴,彭飞,等. 青藏高原典型草地植被退化与土壤退化研究[J]. 生态学报,2020,40(3):964-975 |