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高山极端生物在进化动荡中的演化:中亚生物多样性热点地区嗜盐草的复杂多样化模式和种群动态响应。

Alpine Extremophytes in Evolutionary Turmoil: Complex Diversification Patterns and Demographic Responses of a Halophilic Grass in a Central Asian Biodiversity Hotspot.

机构信息

Institute of Botany, Faculty of Biology, Jagiellonian University, Gronostajowa 3, 30-387 Kraków, Poland.

Doctoral School of Exact and Natural Sciences, Jagiellonian University, Prof. St. Łojasiewicza 11, 30-348 Kraków, Poland.

出版信息

Syst Biol. 2024 Jul 27;73(2):263-278. doi: 10.1093/sysbio/syad073.

Abstract

Diversification and demographic responses are key processes shaping species evolutionary history. Yet we still lack a full understanding of ecological mechanisms that shape genetic diversity at different spatial scales upon rapid environmental changes. In this study, we examined genetic differentiation in an extremophilic grass Puccinellia pamirica and factors affecting its population dynamics among the occupied hypersaline alpine wetlands on the arid Pamir Plateau in Central Asia. Using genomic data, we found evidence of fine-scale population structure and gene flow among the localities established across the high-elevation plateau as well as fingerprints of historical demographic expansion. We showed that an increase in the effective population size could coincide with the Last Glacial Period, which was followed by the species demographic decline during the Holocene. Geographic distance plays a vital role in shaping the spatial genetic structure of P. pamirica alongside with isolation-by-environment and habitat fragmentation. Our results highlight a complex history of divergence and gene flow in this species-poor alpine region during the Late Quaternary. We demonstrate that regional climate specificity and a shortage of nonclimate data largely impede predictions of future range changes of the alpine extremophile using ecological niche modeling. This study emphasizes the importance of fine-scale environmental heterogeneity for population dynamics and species distribution shifts.

摘要

多样化和种群响应是塑造物种进化历史的关键过程。然而,我们仍然缺乏对生态机制的全面理解,这些机制在快速环境变化下影响不同空间尺度的遗传多样性。在这项研究中,我们研究了极端适应植物帕米尔鹅观草(Puccinellia pamirica)的遗传分化,以及影响中亚干旱帕米尔高原上占据的高盐碱性高山湿地中种群动态的因素。利用基因组数据,我们发现了在高海拔高原上建立的各个地点之间存在细尺度种群结构和基因流的证据,以及历史种群扩张的指纹。我们表明,有效种群大小的增加可能与末次冰期相吻合,随后在全新世期间,该物种的种群数量下降。地理距离与隔离环境和生境破碎化一起,对帕米尔鹅观草的空间遗传结构起着至关重要的作用。我们的研究结果突出了晚第四纪这个物种贫乏的高山地区在分化和基因流方面的复杂历史。我们证明,区域气候特异性和缺乏非气候数据在很大程度上阻碍了利用生态位模型对高山极端适应物种未来分布范围变化的预测。本研究强调了细尺度环境异质性对种群动态和物种分布变化的重要性。

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