[1] 张小波, 徐成东, 张明旭, 等. 中药地理学药地关系的研究框架. 地理学报, 2025, 80(3): 643-660 [2] 查苏娜, 琪波热, 胡红霞, 等. 气候变化背景下濒危药用植物手参在中国潜在适生区预测. 应用生态学报, 2024, 35(11): 3023-3030 [3] Yang LC, Zhu XF, Song WZ, et al. Predicting the potential distribution of 12 threatened medicinal plants on the Qinghai-Tibet Plateau, with a maximum entropy model. Ecology and Evolution, 2024, 14: e11042 [4] Guo YX, Zhang SY, Tang SC, et al. Analysis of the prediction of the suitable distribution of Polygonatum kingianum under different climatic conditions based on the MaxEnt model. Frontiers in Earth Science, 2023, 11: 1111878 [5] Yang Y, He J, Liu YX, et al. Assessment of Chinese suitable habitats of Zanthoxylum nitidum in different climatic conditions by MaxEnt model, HPLC, and chemometric methods. Industrial Crops and Products, 2023, 196: 116515 [6] Dong PB, Wang LJ, Qiu DY, et al. Evaluation of the environmental factors influencing the quality of Astragalus membranaceus var. mongholicus based on HPLC and the MaxEnt model. BMC Plant Biology, 2024, 24: 697 [7] 张小波, 郭兰萍, 张卫, 等. 中国传统医药中的地理观. 中国中药杂志, 2022, 47(23): 6287-6296 [8] 赵露颖, 施梦瑶, 张巧艳, 等. 道地药材品质特征及形成机制研究进展. 中草药, 2022, 53(21): 6931-6947 [9] Wu FZ, Wang Y, Zheng MH, et al. Prediction and quality zoning of potentially suitable areas for Panax notoginseng cultivation using MaxEnt and random forest algorithms in Yunnan Province, China. Industrial Crops and Products, 2025, 229: 120960 [10] Zhang TT, Yuan Y, Han Y, et al. Ensemble model-based analysis of the effects of environmental factors on the distribution and chemical composition of Asparagus cochinchinensis (Lour.) Merr. Industrial Crops and Products, 2024, 214: 118584 [11] Zhang HH, Zhang XK, Zhang GS, et al. Assessing the quality ecology of endemic tree species in China based on machine learning models and UPLC methods: The example of Eucommia ulmoides Oliv. Journal of Cleaner Production, 2024, 452: 142021 [12] Mu KL, Ran F, Feng YQ, et al. Integrated evaluation of habitat suitability and spatial prediction of medicinal quality for Bletilla striata using species distribution models and machine learning approaches. Industrial Crops and Products, 2025, 236: 121937 [13] Li PY, Zuo ZT, Wang YZ. Research on the synergistic prediction of the suitable distribution and chemical components of Panax notoginseng under the background of climate warming. BMC Plant Biology, 2025, 25: 1115 [14] 国家药典委员会. 中华人民共和国药典(一部)2025版. 北京: 中国医药科技出版社, 2025: 102-103 [15] 韩昌远, 陈勇, 吴维荣, 等. “十大云药”产业培优扶强实践分析. 云南农业科技, 2025(3): 1-5 [16] 张金渝, 沈涛, 杨维泽, 等. 云南道地药材滇龙胆资源调查与评价. 植物遗传资源学报, 2012, 13(5): 890-895 [17] 沈涛, 虞泓, 王元忠. 滇龙胆草野生资源的地理分布与生物气候特征. 应用生态学报, 2019, 30(7): 2291-2300 [18] 王声跃, 张文. 云南地理. 昆明: 云南民族出版社, 2002: 2-82 [19] Zhang J, Zhang ZX, Wang Y. Environmental impact on the variability in quality of Gentiana rigescens, a medicinal plant in southwest China. Global Ecology and Conservation, 2020, 24: e01374 [20] Beckmann M, Václavík T, Manceur AM, et al. gl UV: A global UV-B radiation data set for macroecological studies. Methods in Ecology and Evolution, 2014, 5: 372-383 [21] He G, Yang SB, Wang YZ. Suitable habitat prediction and identification of origin of Lanxangia tsao-ko. Computers and Electronics in Agriculture, 2024, 223: 109127 [22] 徐朝茜, 罗恒毅, 王锦华, 等. 基于MaxEnt的榆蛎盾蚧在中国的潜在地理分布预测. 山西农业科学, 2020, 48(5): 774-778 [23] Mo Y, Li TY, Bao YJ, et al. Applying regional climatic indicators to study plant diversity patterns in Inner Mongolia. Ecological Indicators, 2024, 158: 111376 [24] Jiang M, Cui BW, Wu YL, et al. Genus Gentiana: A review on phytochemistry, pharmacology and molecular mechanism. Journal of Ethnopharmacology, 2021, 264: 113391 [25] 沈涛, 金航, 王元忠, 等. 滇龙胆不同部位裂环烯醚萜类物质含量比较分析. 西北植物学报, 2011, 31(9): 1886-1890 [26] 吕伟奇, 张霁, 左智天, 等 . 基于灰色关联度分析法的滇龙胆质量评价. 中国实验方剂学杂志, 2017, 23(13): 66-73 [27] Krivoruchko K, Gribov A. Evaluation of empirical Bayesian kriging. Spatial Statistics, 2019, 32: 100368 [28] 史舟, 周越. 空间分析理论实践. 北京: 科学出版社, 2020: 100-114 [29] 邓颖, 赵婷婷, 戴强, 等. 多参数MRI影像组学列线图术前预测子宫内膜癌风险分层的价值. 肿瘤影像学, 2025, 34(4): 343-355 [30] Tibshirani R. Regression shrinkage and selection via the lasso. Journal of the Royal Statistical Society Series B: Statistical Methodology, 1996, 58: 267-288 [31] Friedman JH, Hastie T, Tibshirani R. Regularization paths for generalized linear models via coordinate descent. Journal of Statistical Software, 2010, 33: 1-22 [32] Wang JF, Li XH, Christakos G, et al. Geographical detectors-based health risk assessment and its application in the neural tube defects study of the Heshun region, China. International Journal of Geographical Information Science, 2010, 24: 107-127 [33] 辛培源, 田甜, 张美露, 等. 基于InVEST模型和地理探测器的吉林省生境质量变化及驱动因素评估. 应用生态学报, 2024, 35(10): 2853-2860 [34] 黄姚姚, 申俊龙, 李洁. 逆境出质量: 从种质与环境的相互作用探讨道地药材的质量形成机制. 中草药, 2025, 56(8): 2945-2953 [35] Zhang J, Zhao YL, Wang YZ. The trade-off between growth and reproduction in an alpine herbaceous plant along an elevation gradient. Pakistan Journal of Botany, 2019, 51: 1075-1080 [36] 薛永常, 王贺贤, 赵娣, 等. 植物萜类化合物生物合成及其功能研究进展. 植物研究, 2025, 45(4): 479-490 [37] Fick SE, Hijmans RJ. WorldClim 2: New 1-km spatial resolution climate surfaces for global land areas. International Journal of Climatology, 2017, 37: 4302-4315 [38] 周平, 陈宗瑜. 云南高原紫外辐射强度变化时空特征分析. 自然资源学报, 2008, 23(3): 487-493 [39] Dias MC, Pinto DCGA, Freitas H, et al. The antioxidant system in Olea europaea to enhanced UV-B radiation also depends on flavonoids and secoiridoids. Phytochemistry, 2020, 170: 112199 [40] 唐运萍, 刘卫红, 孙蕊仙, 等. 滇龙胆中药有效成分与土壤理化因子的相关性研究. 时珍国医国药, 2024, 35(1): 182-187 [41] 刘昊, 黄彬, 徐蔧声, 等. 氮磷钾配方施肥对滇龙胆光合特性及主要性状的影响. 西南农业学报, 2023, 36(6): 1242-1251 [42] Hou JM, Yin HB, Wang D, et al. The influence of rhizosphere soil microorganisms and environmental factors on gentiopicroside content in the roots and rhizomes of Gentiana scabra Bunge from Liaoning Province. Frontiers in Microbiology, 2025, 16: 1554981 [43] 袁媛, 郑汉, 黄璐琦. 再论道地药材“优形、优质、优效”特征成因及研究模式. 中国中药杂志, 2024, 49(15): 3977-3985 [44] 张乐婷, 周涛, 徐成东, 等. 中国太子参产区空间格局的MAUP效应多尺度分析. 中国实验方剂学杂志, 2025, 31(22): 183-191 [45] Zhao ZY, Bi YQ, Wei XX, et al. Spatial distribution changes and habitat conservation of medicinal plant diversity in the Yinshan Mountains (China) under climate change. Journal of Geographical Sciences, 2025, 35: 1479-1496 [46] 姜霞, 赵俊禧, 石盼盼, 等. 基于MaxEnt和ArcGIS的山西省3种黄芩属药用植物生态适宜性区划. 生态学杂志, 2025, 44(7): 2456-2464 [47] Abebe H, Desta AB, Dejene SW. Modeling the distribution of Aloe ankoberensis and A. debrana under different climate change scenarios in North Shewa Zone, Amhara National Regional State, Ethiopia. Ecological Processes, 2024, 13: 39 |