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大豆中豆象抗性基因座的全基因组关联图谱分析

Genome-wide association mapping of bruchid resistance loci in soybean.

作者信息

Mukuze Clever, Msiska Ulemu M, Badji Afang, Obua Tonny, Kweyu Sharon V, Nghituwamhata Selma N, Rono Evalyne C, Maphosa Mcebisi, Kasule Faizo, Tukamuhabwa Phinehas

机构信息

Department of Agricultural Production, College of Agricultural and Environmental Sciences, Makerere University, Kampala, Uganda.

Department of Crop Science and Post-Harvest Technology, Chinhoyi University of Technology, Chinhoyi, Zimbabwe.

出版信息

PLoS One. 2025 Jan 10;20(1):e0292481. doi: 10.1371/journal.pone.0292481. eCollection 2025.

Abstract

Soybean is a globally important industrial, food, and cash crop. Despite its importance in present and future economies, its production is severely hampered by bruchids (Callosobruchus chinensis), a destructive storage insect pest, causing considerable yield losses. Therefore, the identification of genomic regions and candidate genes associated with bruchid resistance in soybean is crucial as it helps breeders to develop new soybean varieties with improved resistance and quality. In this study, 6 multi-locus methods of the mrMLM model for genome-wide association study were used to dissect the genetic architecture of bruchid resistance on 4traits: percentage adult bruchid emergence (PBE), percentage weight loss (PWL), median development period (MDP), and Dobie susceptibility index (DSI) on 100 diverse soybean genotypes, genotyped with 14,469 single-nucleotide polymorphism (SNP) markers. Using the best linear unbiased predictors (BLUPs), 13 quantitative trait nucleotides (QTNs) were identified by the mrMLM model, of which rs16_14976250 was associated with more than 1 bruchid resistance traits. As a result, the identified QTNs linked with resistance traits can be employed in marker-assisted breeding for the accurate and rapid screening of soybean genotypes for resistance to bruchids. Moreover, a gene search on the Phytozome soybean reference genome identified 27 potential candidate genes located within a window of 478.45 kb upstream and downstream of the most reliable QTNs. These candidate genes exhibit molecular and biological functionalities associated with various soybean resistance mechanisms and, therefore, could be incorporated into the farmers' preferred soybean varieties that are susceptible to bruchids.

摘要

大豆是一种在全球具有重要地位的工业、粮食和经济作物。尽管它在当前和未来经济中具有重要意义,但其生产却受到豆象(绿豆象)的严重阻碍,豆象是一种具有破坏性的仓储害虫,会导致相当大的产量损失。因此,鉴定大豆中与抗豆象相关的基因组区域和候选基因至关重要,因为这有助于育种者培育出具有更高抗性和品质的大豆新品种。在本研究中,使用mrMLM模型的6种多位点方法对全基因组关联研究进行分析,以剖析100种不同大豆基因型对豆象抗性的遗传结构,这些基因型用14469个单核苷酸多态性(SNP)标记进行了基因分型,研究的4个性状包括成虫豆象羽化率(PBE)、失重率(PWL)、中位发育期(MDP)和多比易感性指数(DSI)。利用最佳线性无偏预测值(BLUPs),mrMLM模型鉴定出13个数量性状核苷酸(QTNs),其中rs16_14976250与多种豆象抗性性状相关。结果,鉴定出的与抗性性状相关的QTNs可用于标记辅助育种,以准确、快速地筛选抗豆象的大豆基因型。此外,在植物基因组数据库大豆参考基因组上进行的基因搜索,在最可靠的QTNs上下游478.45 kb的窗口内鉴定出27个潜在的候选基因。这些候选基因表现出与各种大豆抗性机制相关的分子和生物学功能,因此,可以将它们整合到易受豆象侵害的农民喜爱的大豆品种中。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/83c4/11723639/c4d5733a7fdf/pone.0292481.g001.jpg

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