Fine Mapping of QTLs/QTNs and Mining of Genes Associated with Race 7 of the Soybean Cercospora sojina by Combining Linkages and GWAS.

IF 4 2区 生物学 Q1 PLANT SCIENCES
Yanzuo Liu, Bo Hu, Aitong Yu, Yuxi Liu, Pengfei Xu, Yang Wang, Junjie Ding, Shuzhen Zhang, Wen-Xia Li, Hailong Ning
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引用次数: 0

Abstract

Soybean frogeye leaf spot (FLS) disease has been reported globally and is caused by the fungus Cercospora sojina, which affects the growth, seed yield, and quality of soybean. Among the 15 physiological microspecies of C. sojina soybean in China, Race 7 is one of the main pathogenic microspecies. A few genes are involved in resistance to FLS, and they cannot meet the need to design molecular breeding methods for disease resistance. In this study, a soybean recombinant inbred line (RIL3613) population and a germplasm resource (GP) population were planted at two sites, Acheng (AC) and Xiangyang (XY). Phenotypic data on the percentage of leaf area diseased (PLAD) in soybean leaves were obtained via image recognition technology after the inoculation of seven physiological species and full onset at the R3 stage. Quantitative trait loci (QTLs) and quantitative trait nucleotides (QTNs) were mapped via linkage analysis and genome-wide association studies (GWASs), respectively. The resistance genes of FLS were subsequently predicted in the linkage disequilibrium region of the collocated QTN. We identified 114 QTLs and 18 QTNs in the RIL3613 and GP populations, respectively. A total of 14 QTN loci were colocalized in the two populations, six of which presented high phenotypic contributions. Through haplotype-phenotype association analysis and expression quantification, three genes (Glyma.06G300100, Glyma.06G300600, and Glyma.13G172300) located near molecular markers AX-90524088 and AX-90437152 (QTNs) are associated with FLS Chinese Race 7, identifying them as potential candidate resistance genes. These results provide a theoretical basis for the genetic mining of soybean antigray spot No. 7 physiological species. These findings also provide a theoretical basis for understanding the genetic mechanism underlying FLS resistance in soybeans.

结合连锁和GWAS的大豆7小种qtl /QTNs精细定位及相关基因挖掘
大豆蛙眼叶斑病(FLS)是一种由真菌socercospora sojina引起的病害,影响大豆的生长、产量和品质,已在全球范围内报道。在中国大豆15种生理微种中,7号小种是主要致病微种之一。少数基因参与了对FLS的抗性,它们不能满足设计抗病分子育种方法的需要。以大豆重组自交系(RIL3613)和种质资源(GP)群体为研究对象,分别在阿城(AC)和襄阳(XY)两个基地进行了种植。采用图像识别技术,在接种7个生理种并在R3期完全发病后,获得了大豆叶片叶面积病变率(PLAD)的表型数据。通过连锁分析和全基因组关联研究(GWASs)分别定位了数量性状位点(qtl)和数量性状核苷酸(qtn)。随后在配位QTN的连锁不平衡区预测了FLS的抗性基因。在RIL3613和GP群体中分别鉴定出114个qtl和18个qtn。在两个群体中共定位了14个QTN位点,其中6个表现出高表型贡献。通过单倍型-表型关联分析和表达定量分析,发现位于分子标记AX-90524088和AX-90437152 (QTNs)附近的3个基因(Glyma.06G300100、Glyma.06G300600和Glyma.13G172300)与FLS中国小种7相关,为潜在的候选抗性基因。这些结果为大豆抗灰斑7号生理种的遗传挖掘提供了理论依据。这些发现也为理解大豆对FLS抗性的遗传机制提供了理论基础。
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来源期刊
Plants-Basel
Plants-Basel Agricultural and Biological Sciences-Ecology, Evolution, Behavior and Systematics
CiteScore
6.50
自引率
11.10%
发文量
2923
审稿时长
15.4 days
期刊介绍: Plants (ISSN 2223-7747), is an international and multidisciplinary scientific open access journal that covers all key areas of plant science. It publishes review articles, regular research articles, communications, and short notes in the fields of structural, functional and experimental botany. In addition to fundamental disciplines such as morphology, systematics, physiology and ecology of plants, the journal welcomes all types of articles in the field of applied plant science.
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