系统发生学方法确定了青藏高原的贝塔多样性模式和植物亚区系。

IF 4.9 2区 工程技术 Q1 ENGINEERING, ELECTRICAL & ELECTRONIC IEEE Journal of Emerging and Selected Topics in Power Electronics Pub Date : 2023-07-21 eCollection Date: 2024-01-01 DOI:10.1016/j.pld.2023.07.006
Haibin Yu, Man Yang, Zixin Lu, Weitao Wang, Fangyuan Yu, Yonghua Zhang, Xue Yin, Hongjun Yu, Junjie Hu, David C Deane
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引用次数: 0

摘要

分类学和系统发育的贝塔多样性模式及其与环境的关系有助于揭示区域生物群的起源和进化历史。青藏高原(QTP)蕴藏着异常多样的植物区系,但很少有人从系统发育的角度来研究其β多样性和植物区系。在本研究中,我们采用系统发生学方法识别了青藏高原的贝塔多样性模式,并定量划分了青藏高原的植物区系。我们还研究了多方面的贝塔多样性、地理距离和气候差异之间的关系,并评估了各种因素(即气候、地形和历史)在形成贝塔多样性模式中的相对重要性。索伦森差异指数表明,不同地点之间的物种更替模式在 QTP 中占主导地位。我们还发现,分类和系统发育的贝塔多样性模式与地理距离和气候差异有显著关系。对这些贝塔多样性模式贡献最大的环境因素包括年降水量、年平均气温、气候梯度和气候不稳定性。基于系统发育贝塔多样性数据的差异层次树状图和非度量多维尺度排序确定了青藏高原的十个植物亚区。我们的研究结果表明,当代环境和历史气候变化过滤了不同地点的物种组成,并最终决定了QTP植物的贝塔多样性模式。
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A phylogenetic approach identifies patterns of beta diversity and floristic subregions of the Qinghai-Tibet Plateau.

Patterns of taxonomic and phylogenetic beta diversity and their relationships with environmental correlates can help reveal the origin and evolutionary history of regional biota. The Qinghai-Tibet Plateau (QTP) harbors an exceptionally diverse flora, however, a phylogenetic perspective has rarely been used to investigate its beta diversity and floristic regions. In this study, we used a phylogenetic approach to identify patterns of beta diversity and quantitatively delimit floristic regions on the Qinghai-Tibet Plateau. We also examined the relationships between multifaceted beta diversity, geographical distance, and climatic difference, and evaluated the relative importance of various factors (i.e., climate, topography and history) in shaping patterns of beta diversity. Sørensen dissimilarity indices indicated that patterns of species turnover among sites dominated the QTP. We also found that patterns of both taxonomic and phylogenetic beta diversity were significantly related to geographical distance and climatic difference. The environmental factors that contributed most to these patterns of beta diversity include annual precipitation, mean annual temperature, climatic gradients and climatic instability. Hierarchical dendrograms of dissimilarity and non-metric multidimensional scaling ordination based on phylogenetic beta diversity data identified ten floristic subregions in the QTP. Our results suggest that the contemporary environment and historical climate changes have filtered species composition among sites and eventually determined beta diversity patterns of plants in the QTP.

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来源期刊
CiteScore
12.50
自引率
9.10%
发文量
547
审稿时长
3 months
期刊介绍: The aim of the journal is to enable the power electronics community to address the emerging and selected topics in power electronics in an agile fashion. It is a forum where multidisciplinary and discriminating technologies and applications are discussed by and for both practitioners and researchers on timely topics in power electronics from components to systems.
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