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来自中国西南部天空之岛的(伞形科)系统发育地理学

Phylogeography of (Apiaceae) From the Sky Islands of Southwest China.

作者信息

Yu Shuliang, Zhang Jieyu, Li Zhimin, Li Wensheng, Ma Xiangguang, Sun Wenguang

机构信息

College of Life Sciences Yunnan Normal University Kunming China.

Engineering Research Center of Sustainable Development and Utilization of Biomass Energy, Ministry of Education Yunnan Normal University Kunming China.

出版信息

Ecol Evol. 2024 Nov 11;14(11):e70542. doi: 10.1002/ece3.70542. eCollection 2024 Nov.

Abstract

Sky islands provide insights on how glacial-interglacial cycles have shaped species distribution and help for predicting species' responses to climate warming. The alpine subnival belt of southwest China, especially in the Hengduan Mountains and adjacent areas, is sky island-like. Among them, the Yunnan-Kweichow Plateau harbors several isolated mountains with well-developed alpine subnival vegetation, sharing a similar species composition with the Hengduan Mountains. However, the relationship between the sky islands of the Hengduan Mountains and the Yunnan-Kweichow Plateau remains insufficiently explored. (Apiaceae) is a species endemic to the alpine screes of the Yunnan-Kweichow Plateau and the Hengduan Mountains. We used DNA sequence data from 59 individuals across 9 populations, combined with ecological niche modeling, to investigate the evolution history and future distribution of within this sky island region. The results indicate the following: (1) exhibits a significant phylogeographic structure and can be classified into three nrDNA clades and two cpDNA clades, respectively, (2) a nuclear-plastid discordance observed in and its relatives based on phylogenetic analysis. is monophyletic in the nrDNA phylogeny, while two major clades (HDM and YGP) are present in the cpDNA phylogeny, each forming a clade with other congeneric species. (3) Ecological niche modeling of indicated that the species had the most extensive suitable habitat during the last glacial maximum (LGM). However, anticipated climate warming in the coming decades is expected to reduce the suitable range of , posing a significant threat to isolated marginal populations (e.g., Shizi Mountain) with restricted alpine scree habitats. In conclusion, our study highlights the substantial effect of sky island and glacial-interglacial cycles on the population divergence of . Conservation efforts for marginal populations of alpine plants in the Yunnan-Kweichow Plateau require increased attention and prioritization.

摘要

天空岛屿为研究冰期 - 间冰期循环如何塑造物种分布提供了见解,并有助于预测物种对气候变暖的响应。中国西南部的高山亚冰雪带,尤其是横断山脉及其邻近地区,具有天空岛屿的特征。其中,云贵高原拥有几座孤立的山脉,其上高山亚冰雪植被发育良好,与横断山脉有着相似的物种组成。然而,横断山脉与云贵高原的天空岛屿之间的关系仍未得到充分研究。(某伞形科植物)是云贵高原和横断山脉高山碎石坡特有的物种。我们使用了来自9个种群的59个个体的DNA序列数据,并结合生态位建模,来研究该物种在这个天空岛屿区域内的进化历史和未来分布。结果表明:(1)该物种表现出显著的系统地理学结构,分别可分为三个nrDNA分支和两个cpDNA分支;(2)基于系统发育分析,在该物种及其近缘种中观察到核质不一致。在nrDNA系统发育中该物种是单系的,而在cpDNA系统发育中有两个主要分支(HDM和YGP),每个分支都与其他同属物种形成一个分支。(3)该物种的生态位建模表明,在末次盛冰期(LGM)期间该物种拥有最广泛的适宜栖息地。然而,预计未来几十年的气候变暖将减少该物种的适宜范围,对具有受限高山碎石坡栖息地的孤立边缘种群(如狮子山)构成重大威胁。总之,我们的研究突出了天空岛屿和冰期 - 间冰期循环对该物种种群分化的重大影响。云贵高原高山植物边缘种群的保护工作需要更多关注并给予优先地位。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/297a/11554384/62beec6df645/ECE3-14-e70542-g003.jpg

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