节点文献

A complex interplay of genetic introgression and local adaptation during the evolutionary history of three closely related spruce species

  • 推荐 CAJ下载
  • PDF下载
  • 不支持迅雷等下载工具,请取消加速工具后下载。

【作者】 封烁马海霞殷钰万薇毛康珊汝大福

【Author】 Shuo Feng;Haixia Ma;Yu Yin;Wei Wan;Kangshan Mao;Dafu Ru;State Key Laboratory of Plateau Ecology and Agriculture,Qinghai University;Key Laboratory of Bio-Resources and Eco-Environment of Ministry of Education,College of Life Sciences,State Key Laboratory of Hydraulics and Mountain River Engineering,Sichuan University;State Key Laboratory of Herbage Improvement and Grassland Agro-Ecosystem,College of Ecology,Lanzhou University;

【通讯作者】 封烁;汝大福;

【机构】 State Key Laboratory of Plateau Ecology and Agriculture,Qinghai UniversityKey Laboratory of Bio-Resources and Eco-Environment of Ministry of Education,College of Life Sciences,State Key Laboratory of Hydraulics and Mountain River Engineering,Sichuan UniversityState Key Laboratory of Herbage Improvement and Grassland Agro-Ecosystem,College of Ecology,Lanzhou University

【摘要】 As climate change triggers unprecedented ecological shifts, it becomes imperative to understand the genetic underpinnings of species’ adaptability. Adaptive introgression significantly contributes to organismal adaptation to new environments by introducing genetic variation across species boundaries.However, despite growing recognition of its importance, the extent to which adaptive introgression has shaped the evolutionary history of closely related species remains poorly understood. Here we employed population genetic analyses of high-throughput sequencing data to investigate the interplay between genetic introgression and local adaptation in three species of spruce trees in the genus Picea(P. asperata,P. crassifolia, and P. meyeri). We find distinct genetic differentiation among these species, despite a substantial gene flow. Crucially, we find bidirectional adaptive introgression between allopatrically distributed species pairs and unearthed dozens of genes linked to stress resilience and flowering time.These candidate genes most likely have promoted adaptability of these spruces to historical environmental changes and may enhance their survival and resilience to future climate changes. Our findings highlight that adaptive introgression could be prevalent and bidirectional in a topographically complex area, and this could have contributed to rich genetic variation and diverse habitat usage by tree species.

【Abstract】 As climate change triggers unprecedented ecological shifts, it becomes imperative to understand the genetic underpinnings of species’ adaptability. Adaptive introgression significantly contributes to organismal adaptation to new environments by introducing genetic variation across species boundaries.However, despite growing recognition of its importance, the extent to which adaptive introgression has shaped the evolutionary history of closely related species remains poorly understood. Here we employed population genetic analyses of high-throughput sequencing data to investigate the interplay between genetic introgression and local adaptation in three species of spruce trees in the genus Picea(P. asperata,P. crassifolia, and P. meyeri). We find distinct genetic differentiation among these species, despite a substantial gene flow. Crucially, we find bidirectional adaptive introgression between allopatrically distributed species pairs and unearthed dozens of genes linked to stress resilience and flowering time.These candidate genes most likely have promoted adaptability of these spruces to historical environmental changes and may enhance their survival and resilience to future climate changes. Our findings highlight that adaptive introgression could be prevalent and bidirectional in a topographically complex area, and this could have contributed to rich genetic variation and diverse habitat usage by tree species.

【基金】 supported by the Project of Qinghai provincial central government guides local funds for science and technology development (2024ZY005)
  • 【文献出处】 Plant Diversity ,植物多样性(英文版) , 编辑部邮箱 ,2025年04期
  • 【分类号】Q948
节点文献中: 

本文链接的文献网络图示:

本文的引文网络