气候变化
生物
基因组学
生物多样性
人口
局部适应
地理
适应(眼睛)
脆弱性(计算)
适应能力
生态学
基因组
环境资源管理
遗传学
基因
环境科学
计算机科学
计算机安全
神经科学
人口学
社会学
作者
Yupeng Sang,Zhiqin Long,Xuming Dan,Jiajun Feng,Tingting Shi,Changfu Jia,Xinxin Zhang,Qiang Lai,Guanglei Yang,Hongying Zhang,Xiaoting Xu,Huanhuan Liu,Yuanzhong Jiang,Pär K. Ingvarsson,Jianquan Liu,Kangshan Mao,Jing Wang
标识
DOI:10.1038/s41467-022-34206-8
摘要
Rapid global climate change is posing a substantial threat to biodiversity. The assessment of population vulnerability and adaptive capacity under climate change is crucial for informing conservation and mitigation strategies. Here we generate a chromosome-scale genome assembly and re-sequence genomes of 230 individuals collected from 24 populations for Populus koreana, a pioneer and keystone tree species in temperate forests of East Asia. We integrate population genomics and environmental variables to reveal a set of climate-associated single-nucleotide polymorphisms, insertion/deletions and structural variations, especially numerous adaptive non-coding variants distributed across the genome. We incorporate these variants into an environmental modeling scheme to predict a highly spatiotemporal shift of this species in response to future climate change. We further identify the most vulnerable populations that need conservation priority and many candidate genes and variants that may be useful for forest tree breeding with special aims. Our findings highlight the importance of integrating genomic and environmental data to predict adaptive capacity of a key forest to rapid climate change in the future.
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