[1] ARNETH A,SHIN Y J,LEADLEY P,et al. Post-2020 Biodiversity Targets Need to Embrace Climate Change[J]. Proceedings of the National Academy of Sciences of the United States of America,2020,117(49):30882-30891 [2] MCLAUGHLIN J F,HELLMANN J,BOGGS C L,et al. Climate Change Hastens Population Extinctions[J]. Proceedings of the National Academy of Sciences of the United States of America,2002,99(9):6070-6074 [3] PAUTASSO M. Observed Impacts of Climate Change on Terrestrial Birds in Europe:An Overview[J]. Italian Journal of Zoology,2012,79(2):296-314 [4] JIANG F,ZHANG J J,GAO H M,et al. Musk Deer (Moschus Spp.) Face Redistribution to Higher Elevations and Latitudes under Climate Change in China[J]. Science of the Total Environment,2020,704:135335 [5] 刘津岐,刘永萍,张俊逸,等. 盐爪爪属5种植物的潜在分布及其适生性分析[J]. 草业科学,2022,39(1):1-16 [6] FRISHKOFF L O,KARP D S,FLANDERS J R,et al. Climate Change and Habitat Conversion Favour the Same Species[J]. Ecology Letters,2016,19(9):1081-1090 [7] ROJAS-SOTO O R,SOSA V,ORNELAS J F,et al. Forecasting Cloud Forest in Eastern and Southern Mexico:Conservation Insights under Future Climate Change Scenarios[J]. Biodiversity and Conservation,2012,21(10):2671-2690 [8] CHEN I C,HILL J K,OHLEMULLER R,et al. Rapid Range Shifts of Species Associated with High Levels of Climate Warming[J]. Science,2011,333(6045):1024-1026 [9] ENDLER J A. Geographic Variation,Speciation and Clines[J]. Monographs in Population Biology,1977,10(3):1-246 [10] FRISHKOFF L O,KARP D S,FLANDERS J R,et al.Climate Change and Habitat Conversion Favour the Same Species[J]. Ecology Letters,2016,19(9):1081-1090 [11] 朱耿平,刘国卿,卜文俊,等. 生态位模型的基本原理及其在生物多样性保护中的应用[J]. 生物多样性,2013,21(1):90-98 [12] COSTA W,MIRANDA L,BORGES R,et al. The Need of Species Distribution Models Metadata:Using Species Distribution Model to Address Decision Making on Climate Change[J]. Biodiversity Information Science and Standards,2018,2:1024-1026 [13] 黄睿智,于涛,赵辉,等. 气候变化背景下濒危植物梓叶槭在中国适生分布区预测[J]. 北京林业大学学报,2021,43(5):33-43 [14] HILL N J,TOBIN A J,RESIDE A E,et al. Dynamic Habitat Suitability Modelling Reveals Rapid Poleward Distribution Shift in a Mobile Apex Predator[J]. Global Change Biology,2016,22(3):1086-1096 [15] 朱耿平,乔慧捷. Maxent模型复杂度对物种潜在分布区预测的影响[J]. 生物多样性,2016,24(10):1189-1196 [16] 刘红彩,赵纳勋,庄钰琪,等. 基于MaxEnt模型的秦岭山地斑羚生境适宜性评价[J]. 生态学报,2022,42(10):4181-4188 [17] 赵文龙,陈红刚,袁永亚,等. 气候变化对藏药独一味适生区分布格局的影响[J]. 草地学报,2021,29(5):956-964 [18] 赵黎明. 中国子午沙鼠形态地理变异及亚种分类研究[D]. 兰州:兰州大学,2013:1-5 [19] SUSAN J,ATSHABAR B,SCHMID,B V,et al. Living with Plague:Lessons from the Soviet Union’s Antiplague System[J]. Proceedings of the National Academy of Sciences of the United States of America,2019,116(19):9155-9163 [20] 付和平,武晓东,马春梅,等. 内蒙古阿拉善荒漠区鼠害成因及防治区划[J]. 干旱区资源与环境,2002,16(4):106-109 [21] 吴建华,虎明明,郑燕娟,等. 银川市兴庆区2016—2020年鼠疫监测结果及风险分析[J]. 中国媒介生物学及控制杂志,2022,33(2):258-261 [22] Moss R H,Edmonds J A,Hibbard K A,et al. The Next Generation of Scenarios for Climate Change Research and Assessment[J]. Nature,2010,463(7282):747-756 [23] 罗泽珣,陈卫,高武. 中国动物志,兽纲.第六卷,啮齿目.下册,仓鼠科[M]. 北京:科学出版社,2000:100-113 [24] Smith A T,解焱. 中国兽类野外手册[M]. 长沙:湖南教育出版社,2009:148-149 [25] 周权. 基于几何形态测量法的子午沙鼠头骨形态地理变异研究[D]. 兰州:兰州大学,2019:11-12 [26] 罗光杰,景东东,廖继承. 基于线粒体Cytb基因的柴达木盆地子午沙鼠的遗传多样性与种群结构分析[J]. 兽类学报,2015,35(3):297-303 [27] 景东东. 子午沙鼠头骨形态及种群遗传学研究[D]. 兰州:兰州大学,2015:14-15 [28] 董媛. 子午沙鼠(Meriones meridianus)形态地理变异[D]. 兰州:兰州大学,2007:14 [29] ANDERSON R P,RAZA A,et al. The Effect of the Extent of the Study Region on GIS Models of Species Geographic Distributions and Estimates of Niche Evolution:Preliminary Tests with Montane Rodents (Genus Nephelomys) in Venezuela[J]. Journal of Biogeography,2010,37(7):1378-1393 [30] WU T,LI W P,JI J J,et al. Global Carbon Budgets Simulated by the Beijing Climate Center Climate System Model for the Last Century. Journal of Geophysical Research[J]. Atmospheres,2013,118(10):4326-4347 [31] 韩梦丽,白史且,孙盛楠,等. 基于MaxEnt模型青藏高原老芒麦适生区模拟预测[J]. 草地学报,2021,29(2):374-382. [32] DAN W,RICHARD G,MICHAEL T. ENMTools:a Toolbox for Comparative Studies of Environmental Niche Models[J]. Ecography,2010,33(6):607-611 [33] TANNER E P,ELMORE R D,FUHLENDORF S D,et al. Extreme Climatic Events Constrain Space Use and Survival of a Ground Nesting Bird[J]. Global Change Biology,2016,23(5):1832-1846 [34] SWETS J A. Measuring the Accuracy of Diagnostic Systems[J]. Science,1988,240(4857):1285-1297 [35] Takeyama S. Maximum Likelihood Analysis of sensitivity Test Data According to up and down Test Plan[J]. Materials Science for Energy Technologies,2012,73(1):8-14 [36] ELITH J. Predicting Distributions of Invasive Species[C]//Robinson A P,eds. Invasive Species Risk Assessment and Management. London:Cambridge University Press,2017:93-129 [37] 赵梓伊,肖能文,刘高慧,等. 五种齿突蟾在横断山南潜在地理分布预测[J]. 生态学报,2022,42(7):1-12 [38] MAYS H L,HUNG CM,SHANER P J,et al. Genomic Analysis of Demographic History and Ecological Niche Modeling in the Endangered Sumatran Rhinoceros Dicerorhinus sumatrensis[J]. Current Biology,2018,28(1):70-76 [39] 王百竹,朱媛君,刘艳书,等. 典型草原建群种长芒草(Stipa bungeana)在中国的潜在分布范围预测及主要影响因子分析[J]. 草业学报,2019,28(7):3-13 [40] STANKOWSKI P A,PARKER W H. Species Distribution Modelling:does One Size Fit All? A Phytogeographic Analysis of Salix in Ontario[J]. Ecological Modelling,2010,221(13-14):1655-1664 [41] 孔维尧,李欣海,邹红菲. 最大熵模型在物种分布预测中的优化[J]. 应用生态学报,2019,30(6):2116-2128 [42] 李欣蕊,赵序茅,李明.气候变化和人为干扰对中国三种金丝猴地理分布的未来影响[J]. 兽类学报,2021,41(3):310-320 [43] WATSON,J E M. Human Responses to Climate Change will Seriously Impact Biodiversity Conservation:it’s Time We Start Planning for Them[J]. Conservation Letters,2003,7(1):1-2 [44] SU J H,ARYAL A,NAN Z B,JI W H,et al. Climate Change-Induced Range Expansion of a Subterranean Rodent:Implications for Rangeland Management in Qinghai-Tibetan Plateau[J]. PLoS One,2017,10(9):e0138969 [45] BATSAIKHAN N,TSYTSULINA K,FORMOZOV N,et al. Meriones meridianus (Errata Version Published in 2017). The IUCN Red List of Threatened Species 2016[DB/OL]. https://dx.doi.org/10.2305/IUCN.UK.2016-3.RLTS.T13165A22433098.en. 2016-09-01/2022-08-12 [46] 武晓东,袁帅,付和平,等.不同干扰下阿拉善荒漠啮齿动物优势种对气候变化的响应[J]. 生态学报,2016,36(6):1765-1773 [47] 杨雪梅. 气候变暖背景下河西地区荒漠植被变化研究(1982—2013)[D]. 兰州:兰州大学,2015:90-96 [48] 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 [49] 石锐,刘鹏,滕丽微,等. 贺兰山西坡啮齿动物消化道形态比较研究[J]. 野生动物学报,2019,40(3):617-621 [50] XU W X,CUI W,YANG,W K,et al. Rhombomys opimus Contribution to the “Fertile Island” Effect of Tamarisk Mounds in Junggar Basin[J]. Ecological Research,2012,27(4):775-781 |