全基因组重测序揭示了东亚山核桃(Carya)的进化史和地理隔离情况

Da Zhang, Rui‐Feng Yang, Jia‐Hui Chen, Lang‐Bo Pan, Wei Duan, Guo‐Hua Xia, Qi‐Xiang Zhang, You‐Jun Huang
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摘要

通过先进的基因组测序技术揭开亚洲山核桃树错综复杂的遗传和进化历史,为了解其生态适应性提供了宝贵的信息。了解历史动态、气候波动和地理障碍对亚洲山核桃的影响不仅有助于科学知识的发展,还能为政策制定者提供有据可依的决策依据,并为保护工作者保护脆弱物种的工作提供指导。潜在栖息地的确定,尤其是对濒危物种亚洲山核桃(Carya kweichowensis)的确定,为有针对性的保护工作提供了一个前景广阔的途径,不仅与保护地球珍贵生物多样性的全球倡议保持了一致,还确保了对坚果经济树种重要基因库的保护。全基因组测序为研究植物区系的遗传关系、种群扩散和植物进化提供了机会。基于对5种EA(东亚)莸的全基因组深度重测序所产生的SNPs(单核苷酸多态性)数据,我们构建了系统发生树、遗传结构和物种分布模型,以阐明EA莸的系统发生关系并预测其潜在的分布区域。arya的系统发育分析表明,EA Carya与NA(北美)Carya之间存在两个不同的支系。濒危物种 C. kweichowensis 的核苷酸多样性最低,在所研究的 EA Carya 物种中分化最早。物种分布模型预测了五个 EA Carya 物种的适宜栖息地,揭示了濒危 C. kweichowensis 的潜在分布。重要的是,不同时期 EA Carya 树种分布区之间的空间重叠极少。EA Carya的地区分布不均被认为是第四纪气候波动、阻碍物种扩散的山脉障碍以及这些树木有限的耐寒性造成的。EA Carya突出表明了气候和地质变化在其亚洲区域分布和迁徙路线中的重要作用。此外,潜在栖息地的发现为保护 C. kweichowensis 提供了一条前景广阔的途径。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Whole genome resequencing reveals the evolutionary history and geographic isolation of the eastern Asian Hickory (Carya)
Unraveling the genetic intricacies and evolutionary history of Asian Hickories through advanced genome sequencing gives valuable insights into their ecological adaptations. Understanding the impact of historical dynamics, climate fluctuations, and geographical barriers on Asian hickories not only contributes to scientific knowledge but also empowers policymakers with evidence‐based decisions and guides conservationists in their efforts to protect vulnerable species. The identification of potential habitats, especially for the endangered Carya kweichowensis, offers a promising avenue for targeted conservation efforts, aligning with global initiatives to preserve Earth's precious biodiversity, but also ensures the conservation of a vital genetic reservoir for nut‐bearing economic tree species.Biogeographic characteristics of disjunct distribution play a vital role in plant geography and the endangered mechanism. The whole genome resequencing provides an opportunity to study the genetic relationship, population diffusion, and floristic evolution of disjunctive‐distribution flora. Based on the SNPs (single nucleotide polymorphisms) data generated by the whole genome deep resequencing of five EA (Eastern Asian) Carya species, we constructed the phylogenetic tree, genetic structure, and species distribution modeling to clarify the phylogenetic relationships and to predict the potential distribution area of EA Carya. Phylogenetic analysis of Carya revealed two distinct clades, separating EA Carya from NA (North America) Carya. C. kweichowensis, an endangered species, showed the lowest nucleotide diversity and the earliest divergence among studied EA Carya species. Species distribution modeling predicted suitable habitats for five EA Carya species, revealing the potential distribution of endangered C. kweichowensis. Importantly, minimal spatial overlap was observed among distribution regions of EA Carya species during different time periods. The uneven regional distribution of EA Carya is believed to be a consequence of Quaternary climate fluctuations, mountain barriers hindering species dispersal, and the limited cold tolerance of these trees. EA Carya highlights the significant role of climate and geological changes in their regional distribution and migration routes in Asia. Furthermore, the discovery of potential habitats offers a promising avenue for the conservation of C. kweichowensis.
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