Genome-wide association studies dissect the genetic networks underlying agronomical traits in soybean
Chinese Academy of Sciences · Institute of Genetics and Developmental Biology · +8 more institutions
Abstract
Soybean (Glycine max [L.] Merr.) is one of the most important oil and protein crops. Ever-increasing soybean consumption necessitates the improvement of varieties for more efficient production. However, both correlations among different traits and genetic interactions among genes that affect a single trait pose a challenge to soybean breeding.
To understand the genetic networks underlying phenotypic correlations, we collected 809 soybean accessions worldwide and phenotyped them for two years at three locations for 84 agronomic traits. Genome-wide association studies identified 245 significant genetic loci, among which 95 genetically interacted with other loci. We determined that 14 oil synthesis-related genes are responsible for fatty acid accumulation in soybean and function in line with an additive model. Network analyses demonstrated that 51 traits could be linked through the linkage disequilibrium of 115 associated loci and these links reflect phenotypic correlations. We revealed that 23 loci, including the known Dt1, E2, E1, Ln, Dt2, Fan, and Fap loci, as well as 16 undefined associated loci, have pleiotropic effects on different traits.
Citation impact
- FWCI
- 90.15
- Percentile
- 100%
- References
- 77
Authors
31- CFChao Fang
Chinese Academy of Sciences, Institute of Genetics and Developmental Biology, University of Chinese Academy of Sciences
- YMYanming Ma
Chinese Academy of Sciences, Institute of Genetics and Developmental Biology
- SWShiwen Wu
Chinese Academy of Sciences, State Key Laboratory of Plant Genomics, Institute of Genetics and Developmental Biology
- ZLZhi Liu
Chinese Academy of Sciences, Institute of Genetics and Developmental Biology, University of Chinese Academy of Sciences
- ZWZheng Wang
Chinese Academy of Sciences, Institute of Genetics and Developmental Biology
Topics & keywords
- Biology
- Human genetics
- Genome-wide association study
- Genome Biology
- Genetics
- Evolutionary biology
- Genome
- Genetic association
- Zero hunger
Funding
- UDU.S. Department of AgricultureAward: 2016-68004-24770
- WSWashington State University
- WGWashington Grain CommissionAward: 126593
- NNNational Natural Science Foundation of ChinaAwards: 91531304, 31525018 and 91531304, 31525018
- CAChinese Academy of SciencesAward: XDA08000000
- NINational Institute of Food and AgricultureAward: 2016-68004-24770
- BIBeijing Institute of Genomics, Chinese Academy of Sciences
- NKNational Key Research and Development Program of ChinaAwards: 2017YFD0101401, 2016YFD0100401