Multi‐Omics Inform Invasion Risks Under Global Climate Change

表观遗传学 适应不良 气候变化 生物 适应(眼睛) 生态学 自然灾害 地理 遗传学 DNA甲基化 神经科学 基因表达 气象学 基因
作者
Yiyong Chen,Yangchun Gao,Zhixin Zhang,Aibin Zhan
出处
期刊:Global Change Biology [Wiley]
卷期号:30 (11) 被引量:4
标识
DOI:10.1111/gcb.17588
摘要

ABSTRACT Global climate change is exacerbating biological invasions; however, the roles of genomic and epigenomic variations and their interactions in future climate adaptation remain underexplored. Using the model invasive ascidian Botryllus schlosseri across the Northern Hemisphere, we investigated genomic and epigenomic responses to future climates and developed a framework to assess future invasion risks. We employed generalized dissimilarity modeling and gradient forest analyses to assess genomic and epigenomic offsets under climate change. Our results showed that populations with genomic maladaptation did not geographically overlap with those experiencing epigenomic maladaptation, suggesting that genomic and epigenomic variations play complementary roles in adaptation to future climate conditions. By integrating genomic and epigenomic offsets into the genome–epigenomic index, we predicted that populations with lower index values were less maladapted, indicating a higher risk of future invasions. Native populations exhibited lower offsets than invasive populations, suggesting greater adaptive potentials and higher invasion risks under future climate change scenarios. These results highlight the importance of incorporating multi‐omics data into predictive models to study future climate (mal)adaptation and assess invasion risks under global climate change.
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