生物多样性 ›› 2026, Vol. 34 ›› Issue (6): 25478.  DOI: 10.17520/biods.2025478  cstr: 32101.14.biods.2025478

• 研究报告: 植物多样性 • 上一篇    下一篇

未来气候变化情景下东亚-北美间断分布属植物潜在分布区比较

蔡莉1,2#, 葛丽萍1#*, 彭丹晓2,3, 胡海花2,3, 陈之端2,3, 牛艳婷2,3*   

  1. 1.山西农业大学林学院,晋中 030801;2.国家植物园,北京100093;3.中国科学院植物研究所,北京100093
  • 收稿日期:2025-11-25 修回日期:2026-01-17 接受日期:2026-03-22 出版日期:2026-06-20 发布日期:2026-07-30
  • 通讯作者: 葛丽萍, 牛艳婷

Comparison of potential distribution of East Asian-North American disjunct distribution genera in response to future climate change

Li Cai1,2#, Liping Ge1#*, Danxiao Peng2,3, Haihua Hu2,3, Zhiduan Chen2,3, Yanting Niu2,3*   

  1. 1 College of Forestry, Shanxi Agricultural University, Jinzhong, Shanxi 030801, China 

    2 China National Botanical Garden, Beijing 100093, China 

    3 State Key Laboratory of Plant Diversity and Specialty Crops, Institute of Botany, Chinese Academy of Sciences, Beijing 100093, China

  • Received:2025-11-25 Revised:2026-01-17 Accepted:2026-03-22 Online:2026-06-20 Published:2026-07-30
  • Contact: Liping Ge, Yanting Niu

摘要: 预测未来气候变化下植物分布区的改变, 是评估物种生存潜力和生物多样性风险的重要依据。东亚-北美间断分布属因其跨大陆的亲缘关系与生态位保守性, 成为揭示气候变化响应区域差异的理想研究对象。本研究选取15个东亚-北美间断分布属(洲际物种分布范围相当)的71种植物, 利用MaxEnt模型模拟了其当前及未来的潜在分布区, 从适生区面积变化、纬度迁移及生境破碎化程度3个方面, 对比分析了东亚与北美区域物种及不同生活型植物对未来气候变化的响应差异。结果表明, 东亚-北美间断分布属整体呈现出相似的响应模式, 但也存在差异: (1)北美的物种相较于东亚的物种对全球气候变化的响应更敏感, 表现在面积显著变化的物种比例更高、分布区北移趋势更普遍且生境破碎化程度加剧更明显。(2)乔木和藤本植物在北美表现出更强烈的响应, 具体为分布区变化幅度更大、迁移趋势更显著、生境破碎化更剧烈; 灌木在两地表现出相当的迁移趋势; 草本在两地表现各异, 在东亚受地形限制, 表现为更强的破碎化, 而在北美则表现为扩张与连通性增强。本研究量化了东亚-北美间断分布类群对未来气候变化的响应差异, 揭示宏观地形格局与生活型特性共同驱动该差异, 并凸显地形在决定物种气候韧性中的重要作用, 为识别保护优先区、制定生活型特异性保护策略及实施适应性管理提供了关键科学依据。

关键词: 东亚-北美间断分布, 生活型, 气候变化, MaxEnt模型, 分布区改变, 生物多样性

Abstract

Aims: This study aims to predict changes in plant distribution ranges under future climate change scenarios and to provide critical insights for assessing species survival potential and biodiversity risks, clarify plant response mechanisms to climate change, and offer a scientific basis for targeted conservation strategies. The East Asian-North American (EA-NA) disjunct distribution genera, with intercontinental phylogenetic relationships and niche conservatism, are ideal for exploring regional differences in plant responses to climate change. This study compares their responses across the two continents and examines the role of life forms (trees, shrubs, lianas, and herbs). 

Methods: Fifteen EA-NA disjunct distribution genera with comparable intercontinental distributional ranges, comprising 71 species in total, were selected. The maximum entropy (MaxEnt) model was utilized to simulate their potential distributions under both current and future climate scenarios. Based on the modeling results, responses to future climate change were compared between regions (East Asia vs. North America) and among different life forms, focusing on three aspects: changes in suitable habitat area, latitudinal shift trends, and the degree of habitat fragmentation. 

Results: (1) North American species exhibited greater sensitivity to climate change than East Asian species, evidenced by a higher proportion of species experiencing significant changes in distribution area, more prevalent northward migration trends, and more pronounced habitat fragmentation. (2) The response of life forms to climate change showed regional differences: trees and lianas demonstrated stronger responses and more drastic distributional changes in North America; shrubs showed similar migration trends in both regions; herbs in East Asia displayed stronger fragmentation, while those in North America showed trends of expansion and enhanced connectivity. 

Conclusion: This study reveals regional differences and life-form dependencies in the responses of EA-NA disjunct distribution taxa to climate change. It indicates that macro-topographic patterns and life-form characteristics jointly drive these disparities, highlighting the key role of topography in determining species’ climatic resilience. The findings provide important scientific support for identifying cross-regional conservation priorities and formulating life-form-specific adaptation strategies.

Key words: East Asian-North American disjunct distribution, life form, climate change, MaxEnt model, distribution shift, biodiversity