生物
基因组学
适应(眼睛)
人口
遗传变异
遗传学
转座因子
数量性状位点
进化生物学
基因组
候选基因
局部适应
群体遗传学
群体基因组学
基因组
结构变异
单核苷酸多态性
计算生物学
基因
遗传资源
遗传关联
功能基因组学
遗传(遗传算法)
连锁不平衡
遗传变异
遗传多样性
气候变化
关联映射
全基因组关联研究
作物
基因库
作者
Zhiyao Ma,Xiaodong Xu,Wenjing Peng,Tianhao Zhang,Zhuyifu Chen,Shuo Cao,Fan Zhang,Yiwen Wang,Hua Xiao,Yuting Liu,Zhenya Liu,Zhongjie Liu,Hui Xue,Qiming Long,Ting Hou,Wenrui Wang,Yuting Liu,Zhongxin Jin,Mengya Zhang,Yanmei Peng
标识
DOI:10.1038/s41467-026-70026-w
摘要
Amur grape (Vitis amurensis Rupr.) is widely recognized for its cold tolerance traits and serves as a valuable genetic resource for breeding climate-resilient grape cultivars. Here, we construct a graph pangenome reference (Vampan_V1.0) and generate a variant map comprising 48,308,434 short variants and 127,094 TE-associated structural variants (TEVs) using deep resequencing data from 330 samples across 31 natural populations covering the species' distribution range. We discover a biased accumulation of SNPs around TEVs and identify 823 candidate adaptive genes associated with environmental variables. Using machine learning-based genetic offset models, we further show that putative adaptive TEVs significantly reduce genetic offsets by 7.3% to 8.2% under future climate scenarios. Our study shows the power of a graph-based pangenome to resolve complex variation and highlights the impact of TEVs on genetic diversity, local adaptation, and resilience to future climate change, providing insights into utilizing crop wild relatives in climate-resilient crop breeding.
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