[1] 秦大河,Thomas S. IPCC第五次评估报告第一次工作组报告的亮点结论[J.] 气候变化研究进展,2014,10(1):1-6 [2] 丁一汇,孙颖. 国际气候变化研究新进展[J]. 气候变化研究进展,2006,2(4):161-167 [3] Wang X,Xie Z,Li Q,et al.Sensitivity analysis of glacier systems to climate warming in China[J]. Journal of Geographical Sciences,2008,18(2):190-200 [4] Fitzpatrick M C,Gove A D,Sanders N J,et al.Climate change,plant migration,and range collapse in a global biodiversity hotspot:the Banksia (Proteaceae) of Western Australia[J]. Global Change Biology,2008,14(6):1337-1352 [5] Descombes P,Wisz M S,Leprieur F,et al.Forecasted coral reef decline in marine biodiversity hotspots under climate change[J]. Global Change Biology,2015,21(7):2479-2487 [6] Allen J L,Lendemer J C. Climate change impacts on endemic,high-elevation lichens in a biodiversity hotspot[J]. Biodiversity and Conservation,2016,25(3):555-568 [7] 中国科学院中国植物志编辑委员会. 中国植物志第65(2)卷[M]. 北京:科学出版社,1977:480 [8] 国家药典委员会. 中华人民共和国药典一部[M]. 北京:中国医药科技出版社,2015:262 [9] 罗达尚. 晶珠本草[M]. 西宁:青海人民出版社,1982:137 [10] 孙辉,蒋舜媛,冯成强,等. 独一味Lamiophlomis rotata野生资源现状与存在的问题[J]. 中国中药杂志,2012,37(22):3500-3505 [11] 赵泽芳. 气候变化下物种分布模型建构与模型比较——以羌活为例[D]. 西安:陕西师范大学,2018:4-5 [12] 王梦琳,范靖宇,李敏,等. 入侵蔗扁蛾在我国的潜在分布区[J]. 生物安全学报,2017,26(2):129-133 [13] 朱耿平,范靖宇,王梦琳,等. ROC曲线形状在生态位模型评价中的重要性——以美国白蛾为例[J]. 生物安全学报,2017,26(3):184-190 [14] Elith J,Graham C H,Anderson R P,et al.Novel methods improve prediction of species’ distributions from occurrence data[J]. Ecography,2006,29(2):129-151 [15] Phillips S J,Anderson R P,Schapire R E. Maximum entropy modeling of species geographic distributions[J]. Ecological Modelling,2006,190(3/4):231-259 [16] 陈积山,刘杰淋,朱瑞芬,等. 基于MaxEnt分析我国羊草分布区的生物气候特征[J]. 草地学报,2019,27(1):35-42 [17] 武自念,侯向阳,任卫波,等. 气候变化背景下我国扁蓿豆潜在适生区预测[J]. 草地学报,2018,26(4):888-906 [18] 赵文龙,晋玲,王惠珍,等. 板蓝根药材品质区划研究[J]. 中国中药杂志,2016,42(22):4414-4418 [19] 卢有媛,杨燕梅,马晓辉,等. 中药秦艽生态适宜性区划研究[J]. 中国中药杂志,2016,41(17):3176-3180 [20] Yanmei L,Jianfeng Z,Tao Y,et al.Structural Decomposition Analysis of the Decline in China’s CO2 Emission Intensity 2005-2010 [J]. Journal of Resources and Ecology,2013,4(4):311-316 [21] Dabo G,Jing M,David M R.,et al.Structural decline in China’s CO2 emissions through transitions in industry and energy systems[J]. Nature Geoscience,2018,11(8):551-555 [22] 祝聪,罗瑶,董永波,等. 基于3S技术的四川省独一味生长适宜区研究[J]. 中草药,2018,49(6):1405-1412 [23] 周传猛,陈垣,李向群,等. 基于熵权法模糊物元模型的独一味(Lamiophlomis rotata) 适宜性分布[J]. 中国沙漠,2017,37(1):93-99 [24] Jump A S,Peñuelas J. Running to stand still:adaptation and the response of plants to rapid climate change[J]. Ecology Letters. 2005,8(9):1010-1020 [25] Engler R,Randin C F,Thuiller W,et al.21 st century climate change threatens mountain flora unequally across Europe[J]. Global Change Biology. 2011,17(7):2330-2341 [26] 郭彦龙,卫海燕,路春燕,等. 气候变化下桃儿七潜在地理分布的预测[J]. 植物生态学报,2014,38(3):249-261 [27] Lenoir J,Gégout J C,Marquet P A,et al. A significant upward shift in plant species optimum elevation during the 20th century[J]. Science,2008(320):1768-1771 [28] Bertrand R,Lenoir J,Piedallu C,et al. Changes in plant community composition lag behind climate warming in lowland forests[J]. Nature,2011(479):517-520 |