生物
农学
遗传变异
数量性状位点
作物产量
生物技术
栽培
基因-环境相互作用
遗传学
产量(工程)
作者
Jie Li,Wenhao Yue,Guang‐Qi He,Yubin Zou,Weidong Wang,James Whelan,Junmei Wang,Xianzhong Feng,Huixia Shou
标识
DOI:10.1038/s41467-026-76055-9
摘要
Genomic structural variants (SVs) are major sources of genetic variation and have profound impacts on phenotypic traits. However, their functional effects remain largely unexplored in soybean. Here, we resequence 940 soybean accessions. Together with 44 publicly available datasets, we identify 602,281 SVs. Using a graph-based genome, we detect an additional 58,760 presence/absence variations (PAVs) that broadly affect gene expression. Population genomic analyses reveal that SVs serve as a core driving force for soybean domestication and improvement. Integrating SVs with QTLs for oil and protein content, and performing GWAS on 27 traits, we identify key functional SVs. These include transposable element insertions altering seed coat color, multiple insertions within a cytochrome P450 gene modifying flower and hypocotyl color, and a GmMATE1 deletion enhancing seed size. Together, our study establishes a comprehensive SV map of soybean, offering a valuable resource for dissecting the genetic basis of complex traits to accelerate molecular breeding. The effects of structural variants (SVs) and their functional implications remain largely unexplored in soybean. Here, the authors analyze resequencing data of 984 diverse soybean accessions for variant calling and identify multiple functional SVs underlying key agronomic traits.
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