Genome-Wide Association Analysis of Yield-Related Traits and Candidate Genes in Vegetable Soybean

Plants Pub Date : 2024-05-23 DOI:10.3390/plants13111442
Hongtao Gao, Guanji Wu, Feifei Wu, Xunjun Zhou, Yonggang Zhou, Keheng Xu, Yaxin Li, Wenping Zhang, Kuan Zhao, Yan Jing, Chen Feng, Nan Wang, Haiyan Li
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Abstract

Owing to the rising demand for vegetable soybean products, there is an increasing need for high-yield soybean varieties. However, the complex correlation patterns among quantitative traits with genetic architecture pose a challenge for improving vegetable soybean through breeding. Herein, a genome-wide association study (GWAS) was applied to 6 yield-related traits in 188 vegetable soybean accessions. Using a BLINK model, a total of 116 single nucleotide polymorphisms (SNPs) were identified for plant height, pod length, pod number, pod thickness, pod width, and fresh pod weight. Furthermore, a total of 220 genes were found in the 200 kb upstream and downstream regions of significant SNPs, including 11 genes encoding functional proteins. Among them, four candidate genes, Glyma.13G109100, Glyma.03G183200, Glyma.09G102200, and Glyma.09G102300 were analyzed for significant haplotype variations and to be in LD block, which encode MYB-related transcription factor, auxin-responsive protein, F-box protein, and CYP450, respectively. The relative expression of candidate genes in V030 and V071 vegetable soybean (for the plant height, pod number, and fresh pod weight of V030 were lower than those of the V071 strains) was significantly different, and these genes could be involved in plant growth and development via various pathways. Altogether, we identified four candidate genes for pod yield and plant height from vegetable soybean germplasm. This study provides insights into the genomic basis for improving soybean and crucial genomic resources that can facilitate genome-assisted high-yielding vegetable soybean breeding.
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蔬菜大豆产量相关性状和候选基因的全基因组关联分析
由于人们对蔬菜大豆产品的需求不断增加,对高产大豆品种的需求也越来越大。然而,数量性状与遗传结构之间复杂的相关模式给通过育种改良蔬菜大豆带来了挑战。本文对 188 个蔬菜大豆品种的 6 个产量相关性状进行了全基因组关联研究(GWAS)。利用 BLINK 模型,共鉴定出 116 个单核苷酸多态性(SNPs),涉及植株高度、豆荚长度、豆荚数量、豆荚厚度、豆荚宽度和新鲜豆荚重量。此外,在重要 SNP 的上下游 200 kb 区域共发现 220 个基因,包括 11 个编码功能蛋白的基因。其中,Glyma.13G109100、Glyma.03G183200、Glyma.09G102200和Glyma.09G102300这4个候选基因被分析出存在显著的单倍型变异并处于LD区块,它们分别编码MYB相关转录因子、辅助因子响应蛋白、F-box蛋白和CYP450。候选基因在 V030 和 V071 菜豆中的相对表达量(V030 的株高、荚数和鲜荚重均低于 V071 株系)存在显著差异,这些基因可能通过不同途径参与植物的生长发育。我们从蔬菜大豆种质中总共发现了 4 个影响豆荚产量和株高的候选基因。这项研究深入揭示了改良大豆的基因组基础和重要的基因组资源,有助于基因组辅助高产蔬菜大豆育种。
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