[1] SMITH A T,FOGGIN J M. The plateau pila (Ochotona curzoniae) is a keystone species for biodiversity on the Tibetan plateau[J]. Animal Conservation,1999,2(4):235-240 [2] YI S,CHEN J,QIN Y.et al. The burying and grazing effects of plateau pika on alpine grassland are small:A pilot study in a semiarid basin on the Qinghai-TibetPlateau[J]. Biogeosciences,2016(13):6273-6284 [3] ZHANG J,LIU D,MENG B,et al. Using UAVs to assess the relationship between alpine meadow bare patches and disturbance by pikas in the source region of Yellow River on the Qinghai-Tibetan Plateau[J].Global Ecology and Conservation,2021,26(6):e01517 [4] 张堰铭,樊乃昌,王权业,等. 鼠害治理条件下鼠类群落变动的生态过程[J]. 兽类学报,1998(2):58-64 [5] LAI C H,SMITH A T. Keystone status of plateau pikas (Ochotona curzoniae):effect of control on biodiversity of native birds[J]. Biodivers Conserv,2003(12):1901-1912 [6] WANG Q,GUO Z G,PANG X P,et al. Effects of small-herbivore disturbance on the clonal growth of two perennial graminoids in alpine meadows[J]. Alpine Botany,2020(130):115-127 [7] 刘伟,李里,严红宇,等. 高原鼠兔挖掘活动对植物种的丰富度和地上生物量的影响[J]. 兽类学报,2012,32(3):216-220 [8] 殷秀琴,宋博,董炜华,等. 我国土壤动物生态地理研究进展[J]. 地理学报,2010,65(1):91-102 [9] 姚海凤,张赛超,上官华媛,等. 城市化对土壤动物群落结构和多样性的影响[J]. 生物多样性,2022,30(12):222-233 [10] GEISEN S,MITCHELL E A D,ADL S,et al. Soil protists:A fertile frontier in soil biology research[J]. Fems Microbiology Reviews,2018,42(3):293-323 [11] 王子鸣,赵玉敏,种世桂,等. 土壤动物对重金属污染的指示作用[J]. 环境卫生学杂志,2022,12(6):463-472 [12] SHAO Y,ZHANG W,SHEN J,et al. Nematodes as indicators of soil recovery in tailings of a lead/zinc mine[J]. Soil Biology and Biochemistry,2008,(40):2040-2046 [13] MOHAMED A,THIERRY KS,et al. Identification of metal-responsive oribatid mites in a comparative survey of polluted soils[J]. Pedobiologia,2009(52):207-221 [14] 金涛涛,张佛熠,郑伟斌,等. 南昌城乡不同绿地中小型土壤动物群落多样性及其影响因素[J]. 应用生态学报,2023,34(5):1404-1414 [15] 冯怡琳,杨竟艺,王永珍,等. 祁连山国家公园煤矿修复对地表节肢动物多样性的影响[J]. 生态学报,2024,44(4):1575-1587 [16] 马金豪,吴鹏飞. 土壤动物群落对沙化高寒草地生态恢复的响应[J]. 生态学杂志,2018,37(12):3566-3575 [17] BROWN G,SCHERBER C,RAMOS JR P,et al. The effects of harvester ant (Messor ebeninus Forel) nests on vegetation and soil properties in a desert dwarf shrub community in north-eastern Arabia[J]. Flora,2012(207):503-511 [18] 张淑花. 农田生态系统土壤动物群落结构对不同管理与利用方式的响应[D]. 哈尔滨:哈尔滨师范大学,2014:12-16 [19] NIU Y,YANG,ZHU H,et al. Cyclic formation of zokor mounds promotes plant diversity and renews plant communities in alpine meadows on the Tibetan Plateau[J]. Plant and Soil,2020,446(1):65-79 [20] 陈莹莹. 高原鼠兔干扰对高寒草甸生态系统服务价值的影响[D]. 兰州:兰州大学,2022:17-43 [21] 宋文杰,张海兰,洛藏昂毛,等. 多年鼠类防控对高原鼠兔种群数量及植物群落结构的影响[J]. 草地学报,2023,31(9):2853-2859 [22] 邵梓桐,秦彧. 高原鼠兔干扰对高寒草地碳循环的影响研究进展[J]. 草地学报,2022,30(5):1086-1094 [23] 叶国辉,楚彬,周睿,等. 高原鼠兔干扰对高寒草甸大型土壤动物类群的影响[J]. 甘肃农业大学学报,2019,54(4):150-158 [24] ZHAO J X,TIAN L H,WEI H X,et al. Impact of plateau pika (Ochotona curzoniae) burrowing-induced microtopography on ecosystem respiration of the alpine meadow and steppe on the Tibetan plateau[J]. Plant Soil,2021(458):217-230 [25] STIRLING G,WILSEY B. Empirical relationships between species richness,evenness,and proportional diversity[J]. The American Naturalist,2001,158(3):286-299 [26] WHITTAKER R H. Evolution and measurement of species diversity[J]. Taxon,1972,21(2-3):213-251 [27] 郑乐怡. 昆虫分类[M]. 南京:南京师范大学出版社,1999:1-974 [28] 尹文英. 中国土壤动物检索图鉴[M]. 北京:科学出版社,1998:1-756 [29] BELAOUSSOFF S,KEVAN P G,MURPHY S,et al. Assessing tillage disturbance on assemblages of ground beetles(Coleoptera:Carabidae) by using a range of ecological indices[J]. Biodiversity and Conservation,2003,12:851-882 [30] 臧建成,孙涛,杨小林,等. 拉萨半干旱河谷砂生槐灌丛不同封育时间土壤动物多样性特征[J]. 核农学报,2017,31(07):1381-1387 [31] 孙华方,赵之重,金立群,等. 高寒草甸植被特征与土壤全效养分对放牧与高原鼠兔扰动的响应[J]. 青海大学学报,2019,37(2):1-8 [32] 周俗,张绪校,李开章,等. 四川省草原鼠荒地生态调控治理研究[J]. 草业与畜牧,2014(2):35-37 [33] 根呷羊批,周俗,杨孔,等. 若尔盖县不同退化程度草地植物群落特征及土壤理化性质[J]. 西南民族大学学报(自然科学版),2022,48(4):369-378 [34] LIU Y,FAN J,SHI Z,et al. Relationships between plateau pika (Ochotona curzoniae) densities and biomass and biodiversity indices of alpine meadow steppe on the Qinghai-Tibet Plateau China[J]. Ecological Engineering,2017,102:509-518 [35] 石红霄,于健龙. 高原鼠兔洞口密度对高寒嵩草草甸植被及土壤水分的影响[J]. 中国草地学报,2010,32(4):109-112,116 [36] 李兴福. 短期增水对青藏高原高寒草甸植被-土壤系统的影响研究[D]. 北京:北京林业大学,2021:32-34 [37] 白文丽,胡发成,赵雅丽. 降水对高寒草甸草原植被盖度及地上生物量的影响[J]. 畜牧兽医杂志,2021,40(1):62-64 [38] 罗文蓉,胡国铮,干珠扎布,等. 模拟干旱对藏北高寒草甸植物物候期和生产力的影响[J]. 草业学报,2021,30(2):82-92 [39] 程小云,孙小丹,王新源,等. 高寒草甸主要毒杂草生态策略对高原鼠兔干扰的响应[J/OL]. http://kns.cnki.net/kcms/detail/11.3362.s.20240516.0251.006.html,2024-05-17/2024-06-04 [40] 叶国辉,楚彬,周睿,等. 高原鼠兔干扰下高寒草甸植物功能群分布与土壤因子的关系[J]. 生态学杂志,2019,38(8):2382-2388 [41] STEIN A,GERSTNER K,KREFT H. Environmental heterogeneity as a universal driver of species richness across taxa,biomes and spatial scales[J]. Ecology letters,2014,17(7):866-880 [42] 才文代吉,谢先福,张静,等. 高原鼠兔鼠丘覆压对鼠丘上植被重建的影响研究[J]. 草地学报,2019,27(6):1615-1621 [43] 姬程鹏,杨思维,周延山,等. 祁连山东段高原鼢鼠洞道土壤微生物和土壤酶[J]. 兽类学报,2017,37(3):284-292 [44] YU C,ZHANG J,PANG X P,et al. Soil disturbance and disturbance intensity:Response of soil nutrient concentrations of alpine meadow to plateau pika bioturbation in the Qinghai-Tibetan Plateau,China[J]. Geoderma,2017(307):98-106 [45] ZHANG Y,DONG S,GAO Q,et al. Responses of alpine vegetation and soils to the disturbance of plateau pika (Ochotona curzoniae) at burrow level on the Qinghai-Tibetan Plateau of China[J]. Ecological Engineering,2016(88):232-236 [46] 李积兰,卡着才让,李希来. 高原鼠兔干扰对退化草地植物经济类群和土壤理化性质的影响[J]. 青海畜牧兽医杂志,2022,52(2):18-24 [47] 董建新,丛萍,刘娜,等. 秸秆深还对黑土亚耕层土壤物理性状及团聚体分布特征的影响[J]. 土壤学报,2021,58(4):921-934 [48] 马云鹤. 西藏高寒草甸生态系统植物和土壤生物多样性的海拔变化及对增温的响应[D]. 兰州:兰州大学,2023:17-21 [49] 臧建成,黄伟家,臧亚军,等. 藏北高寒草地不同海拔土壤动物群落结构及多样性[J]. 西北农林科技大学学报(自然科学版),2023,51(5):72-81 [50] SOEMME L. Adaptations to the alpine environment in insects and other terrestrial arthropods[J]. Ecosystems of the World,1997:11-26 [51] SETÄLÄ H,MARSHALL V G,TROFYMOW J A. Influence of micro-and macro-habitat factors on collembolan communities in Douglas-fir stumps during forest succession[J]. Applied Soil Ecology,1995,2(4):227-242 [52] FROUZ J,PRACH K,PIŽI V,et al. Interactions between soil development,vegetation and soil fauna during spontaneous succession in post mining sites[J]. European Journal of Soil Biology,2008,44(1):109-121 [53] WENNINGER E J,INOUYE R S. Insect community response to plant diversity and productivity in a sagebrush-steppe ecosystem[J]. Journal of Arid Environments,2008,72(1):24-33 [54] 陈韵秋,孙涛,臧建成,等. 砂生槐灌丛不同海拔地表节肢动物多样性与砂生槐种子危害的关系[J]. 西南农业学报,2021,34(7):1540-1547 [55] 叶国辉,楚彬,胡桂馨,等. 高原鼢鼠干扰强度对祁连山东段高寒草甸大型土壤动物功能群特征及空间分布的影响[J]. 生态学报,2022,42(3):1088-1097 [56] 张洪芝,吴鹏飞,崔丽巍. 高寒草甸大型土壤动物群落结构特征及其与环境的关系[J]. 土壤学报,2012,49(6):1267-1273 [57] 涂程伟,肖玖金,母晨君,等. 川西龙门山5种典型林型的中小型干生土壤动物群落特征[J]. 中南林业科技大学学报,2020,40(6):96-104 [58] ALLOUCHE O,KALYUZHNY M,MORENO-RUEDA G,et al. Area-heterogeneity tradeoff and the diversity of ecological communities[J]. Proceedings of the National Academy of Sciences,2012,109(43):17495-17500 [59] 代江慧. 降水变化对高寒草甸土壤动物群落的影响[D]. 成都:西南民族大学,2023:16-18 [60] 宋敏. 增加降水及施氮对弃耕草地土壤线虫和小型节肢动物的影响[J]. 生态学杂志,2017,36(3):631-639 [61] TSIAFOULI M A,KALLIMANIS A S,KATANA E,et al. Responses of soil microarthropods to experimental short-term manipulations of soil moisture[J]. Applied Soil Ecology,2005,29(1):17-26 |