| Literature DB >> 34314874 |
Chunming Yang1, Jun Yan2, Shuqin Jiang2, Xia Li3, Haowei Min4, Xiangfeng Wang5, Dongyun Hao6.
Abstract
The limited knowledge of genomic diversity and functional genes associated with the traits of soybean varieties has resulted in slow progress in breeding. In this study, we sequenced the genomes of 250 soybean landraces and cultivars from China, America, and Europe, and investigated their population structure, genetic diversity and architecture, and the selective sweep regions of these accessions. Five novel agronomically important genes were identified, and the effects of functional mutations in respective genes were examined. The candidate genes GSTT1, GL3, and GSTL3 associated with the isoflavone content, CKX3 associated with yield traits, and CYP85A2 associated with both architecture and yield traits were found. The phenotype-gene network analysis revealed that hub nodes play a crucial role in complex phenotypic associations. This study describes novel agronomic trait-associated genes and a complex genetic network, providing a valuable resource for future soybean molecular breeding.Entities:
Keywords: Agronomic trait; GWAS; Network; Resequence; Soybean
Year: 2021 PMID: 34314874 DOI: 10.1016/j.gpb.2021.02.009
Source DB: PubMed Journal: Genomics Proteomics Bioinformatics ISSN: 1672-0229 Impact factor: 6.409