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基于大豆FW-RIL群体的种子宽度条件QTL/QTN定位及候选基因挖掘

Conditional QTL/QTN mapping for seed width and mining candidate genes based on soybean FW-RIL population.

作者信息

Wang Xu, Hu Bo, Xue Hong, Yuan Ming, Dong Quanzhong, Li Wen-Xia, Dong Zhimin, Ning Hailong

机构信息

Key Laboratory of Soybean Biology, Ministry of Education, Key Laboratory of Soybean Biology and Breeding/Genetics, Ministry of Agriculture, Northeast Agricultural University, Harbin, China.

Zhongnongfa Wudalianchi Agricultural Technology Co., LTD, Wudalianchi, China.

出版信息

Mol Genet Genomics. 2025 Jun 20;300(1):60. doi: 10.1007/s00438-025-02271-5.

Abstract

Soybean seed width (SW) is a pivotal quantitative trait influencing both seed yield and appearance quality, controlled by a complex interplay of multiple genes and environmental factors. This research was undertaken to identify significant genetic loci and candidate genes associated with SW, thereby facilitating the development of molecular markers crucial for advancing soybean breeding programs. In this study, a four-way recombinant inbred line (FW-RIL) population, derived from the cross of (Kenfeng14 × Kenfeng15) × (Heinong48 × Kenfeng19), alongside a diverse germplasm population (GP) comprising 455 soybean cultivars, served as the genetic material. Phenotypic measurements of SW were meticulously recorded for the FW-RILs across three distinct environments and for the GP across four environments. Subsequent linkage analysis in the FW-RIL population and genome-wide association studies (GWAS) in the GP were conducted to map the quantitative trait loci (QTLs) and quantitative trait nucleotides (QTNs) underlying SW. These analyses successfully identified a total of 51 QTLs and 103 QTNs associated with SW. Furthermore, detailed investigation of seven QTNs attenuation regions located within the consistently detected qSW-7-2 region was performed to predict potential candidate genes. This process led to the selection of three promising genes; Glyma.07G004700, Glyma.07G006300, and Glyma.07G013700 based on the integrated evidence from sequence variation analysis among parental lines, comprehensive haplotype analysis within the mapping populations, and relevant functional annotation. The comprehensive identification of these QTLs, QTNs, and particularly the three prioritized candidate genes, offers significant insights into the genetic control of soybean seed width and provides a robust foundation for the development of effective molecular markers to enhance the efficiency of marker-assisted selection for improved soybean yield.

摘要

大豆种子宽度(SW)是影响种子产量和外观品质的关键数量性状,受多个基因和环境因素的复杂相互作用控制。本研究旨在鉴定与SW相关的重要遗传位点和候选基因,从而推动对大豆育种计划至关重要的分子标记的开发。在本研究中,以(垦丰14×垦丰15)×(黑农48×垦丰19)杂交产生的四交重组自交系(FW-RIL)群体以及包含455个大豆品种的多样化种质群体(GP)作为遗传材料。对FW-RIL群体在三个不同环境下以及GP群体在四个环境下的SW进行了细致的表型测量。随后,在FW-RIL群体中进行连锁分析,并在GP群体中开展全基因组关联研究(GWAS),以定位SW潜在的数量性状基因座(QTL)和数量性状核苷酸(QTN)。这些分析共成功鉴定出51个与SW相关的QTL和103个QTN。此外,对位于持续检测到的qSW-7-2区域内的七个QTN衰减区域进行了详细研究,以预测潜在的候选基因。基于亲本系间序列变异分析、定位群体内综合单倍型分析以及相关功能注释的综合证据,这一过程筛选出了三个有前景的基因:Glyma.07G004700、Glyma.07G006300和Glyma.07G013700。这些QTL、QTN的全面鉴定,特别是三个优先候选基因的确定,为大豆种子宽度的遗传控制提供了重要见解,并为开发有效的分子标记奠定了坚实基础,有助于提高大豆产量的标记辅助选择效率。

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