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PI 567516C 中 qSCN10 的遗传特征揭示了一种新型广谱抗大豆胞囊线虫源。

Genetic characterization of qSCN10 from an exotic soybean accession PI 567516C reveals a novel source conferring broad-spectrum resistance to soybean cyst nematode.

机构信息

Division of Plant Sciences, University of Missouri, Columbia, MO, 65211, USA.

Joint International Research Laboratory of Agriculture and Agri-Product Safety, Jiangsu Key Laboratory of Crop Genomics and Molecular Breeding, Yangzhou University, Yangzhou, 225009, China.

出版信息

Theor Appl Genet. 2021 Mar;134(3):859-874. doi: 10.1007/s00122-020-03736-4. Epub 2021 Jan 4.

Abstract

The qSCN10 locus with broad-spectrum SCN resistance was fine-mapped to a 379-kb region on chromosome 10 in soybean accession PI 567516C. Candidate genes and potential application benefits of this locus were discussed. Soybean cyst nematode (SCN, Heterodera glycines Ichinohe) is one of the most devastating pests of soybean, causing significant yield losses worldwide every year. Genetic resistance has been the major strategy to control this pest. However, the overuse of the same genetic resistance derived primarily from PI 88788 has led to the genetic shifts in nematode populations and resulted in the reduced effectiveness in soybean resistance to SCN. Therefore, novel genetic resistance resources, especially those with broad-spectrum resistance, are needed to develop new resistant cultivars to cope with the genetic shifts in nematode populations. In this study, a quantitative trait locus (QTL) qSCN10 previously identified from a soybean landrace PI 567516C was confirmed to confer resistance to multiple SCN HG Types. This QTL was further fine-mapped to a 379-kb region. There are 51 genes in this region. Four of them are defense-related and were regulated by SCN infection, suggesting their potential role in mediating resistance to SCN. The phylogenetic and haplotype analyses of qSCN10 as well as other information indicate that this locus is different from other reported resistance QTL or genes. There was no yield drag or other unfavorable traits associated with this QTL when near-isogenic lines with and without qSCN10 were tested in a SCN-free field. Therefore, our study not only provides further insight into the genetic basis of soybean resistance to SCN, but also identifies a novel genetic resistance resource for breeding soybean for durable, broad-spectrum resistance to this pest.

摘要

qSCN10 基因座具有广谱抗 SCN 特性,被精细定位到大豆种质 PI 567516C 的第 10 号染色体上的 379-kb 区域。讨论了该基因座的候选基因和潜在应用效益。大豆胞囊线虫(SCN,Heterodera glycines Ichinohe)是大豆最具破坏性的害虫之一,每年在全球范围内造成严重的产量损失。遗传抗性一直是控制这种害虫的主要策略。然而,由于主要来自 PI 88788 的同一遗传抗性的过度使用,导致线虫种群的遗传变化,从而降低了大豆对 SCN 的抗性效果。因此,需要新型遗传抗性资源,特别是广谱抗性资源,以开发新的抗性品种来应对线虫种群的遗传变化。在这项研究中,先前从大豆地方品种 PI 567516C 中鉴定出的一个数量性状基因座(QTL)qSCN10 被证实对多种 SCN HG 型具有抗性。该 QTL 进一步被精细定位到 379-kb 区域。该区域有 51 个基因。其中 4 个与防御有关,并受 SCN 感染调节,表明它们在介导对 SCN 的抗性方面具有潜在作用。qSCN10 的系统发育和单倍型分析以及其他信息表明,该基因座与其他报道的抗性 QTL 或基因不同。当在无 SCN 的田间测试具有和不具有 qSCN10 的近等基因系时,没有与该 QTL 相关的产量下降或其他不利性状。因此,我们的研究不仅进一步深入了解了大豆对 SCN 的遗传基础,还为培育对这种害虫具有持久广谱抗性的大豆提供了一种新的遗传抗性资源。

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