| Literature DB >> 35997916 |
Ying-Hui Li1, Chao Qin1, Li Wang2, Chengzhi Jiao3,4, Huilong Hong1, Yu Tian1, Yanfei Li1, Guangnan Xing5, Jun Wang6, Yongzhe Gu1, Xingpeng Gao3, Delin Li1, Hongyu Li1, Zhangxiong Liu1, Xin Jing3, Beibei Feng5, Tao Zhao1, Rongxia Guan1, Yong Guo1, Jun Liu1, Zhe Yan1, Lijuan Zhang1, Tianli Ge1, Xiangkong Li3, Xiaobo Wang7, Hongmei Qiu8, Wanhai Zhang9, Xiaoyan Luan10, Yingpeng Han11, Dezhi Han12, Ruzhen Chang1, Yalong Guo13, Jochen C Reif14, Scott A Jackson15, Bin Liu16, Shilin Tian17,18, Li-Juan Qiu19.
Abstract
Soybean is a leguminous crop that provides oil and protein. Exploring the genomic signatures of soybean evolution is crucial for breeding varieties with improved adaptability to environmental extremes. We analyzed the genome sequences of 2,214 soybeans and proposed a soybean evolutionary route, i.e., the expansion of annual wild soybean (Glycine soja Sieb. & Zucc.) from southern China and its domestication in central China, followed by the expansion and local breeding selection of its landraces (G. max (L.) Merr.). We observed that the genetic introgression in soybean landraces was mostly derived from sympatric rather than allopatric wild populations during the geographic expansion. Soybean expansion and breeding were accompanied by the positive selection of flowering time genes, including GmSPA3c. Our study sheds light on the evolutionary history of soybean and provides valuable genetic resources for its future breeding.Entities:
Keywords: adaptation; breeding; flowering time; introgression; soybean
Year: 2022 PMID: 35997916 DOI: 10.1007/s11427-022-2158-7
Source DB: PubMed Journal: Sci China Life Sci ISSN: 1674-7305 Impact factor: 10.372