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先进的回交QTL分析以及与重组自交系QTL研究和全基因组关联研究(GWAS)的比较定位,概述了豌豆对腐皮镰孢根腐病抗性的QTL和标记单倍型多样性。

Advanced backcross QTL analysis and comparative mapping with RIL QTL studies and GWAS provide an overview of QTL and marker haplotype diversity for resistance to Aphanomyces root rot in pea ().

作者信息

Leprévost Théo, Boutet Gilles, Lesné Angélique, Rivière Jean-Philippe, Vetel Pierrick, Glory Isabelle, Miteul Henri, Le Rat Anaïs, Dufour Philippe, Regnault-Kraut Catherine, Sugio Akiko, Lavaud Clément, Pilet-Nayel Marie-Laure

机构信息

IGEPP, INRAE, Institut Agro, University of Rennes, Le Rheu, France.

RAGT 2n, Druelle Balsac, France.

出版信息

Front Plant Sci. 2023 Sep 28;14:1189289. doi: 10.3389/fpls.2023.1189289. eCollection 2023.

Abstract

is the most damaging soilborne pea pathogen in France. Breeding of pea resistant varieties combining a diversity of quantitative trait loci (QTL) is a promising strategy considering previous research achievements in dissecting polygenic resistance to . The objective of this study was to provide an overview of the diversity of QTL and marker haplotypes for resistance to , by integrating a novel QTL mapping study in advanced backcross (AB) populations with previous QTL analyses and genome-wide association study (GWAS) using common markers. QTL analysis was performed in two AB populations derived from the cross between the susceptible spring pea variety "Eden" and the two new sources of partial resistance "E11" and "LISA". The two AB populations were genotyped using 993 and 478 single nucleotide polymorphism (SNP) markers, respectively, and phenotyped for resistance to in controlled conditions and in infested fields at two locations. GWAS and QTL mapping previously reported in the pea-Aphanomyces collection and from four recombinant inbred line (RIL) populations, respectively, were updated using a total of 1,850 additional markers, including the markers used in the Eden x E11 and Eden x LISA populations analysis. A total of 29 resistance-associated SNPs and 171 resistance QTL were identified by GWAS and RIL or AB QTL analyses, respectively, which highlighted 10 consistent genetic regions confirming the previously reported QTL. No new consistent resistance QTL was detected from both Eden x E11 and Eden x LISA AB populations. However, a high diversity of resistance haplotypes was identified at 11 linkage disequilibrium (LD) blocks underlying consistent genetic regions, especially in 14 new sources of resistance from the pea-Aphanomyces collection. An accumulation of favorable haplotypes at these 11 blocks was confirmed in the most resistant pea lines of the collection. This study provides new SNP markers and rare haplotypes associated with the diversity of Aphanomyces root rot resistance QTL investigated, which will be useful for QTL pyramiding strategies to increase resistance levels in future pea varieties.

摘要

在法国,它是最具破坏性的土壤传播豌豆病原体。鉴于此前在剖析对该病原体的多基因抗性方面取得的研究成果,培育结合多种数量性状位点(QTL)的豌豆抗性品种是一种很有前景的策略。本研究的目的是通过将一项在高代回交(AB)群体中的新型QTL定位研究与此前使用通用标记的QTL分析和全基因组关联研究(GWAS)相结合,概述对该病原体抗性的QTL和标记单倍型的多样性。在两个AB群体中进行QTL分析,这两个群体源自感病春豌豆品种“Eden”与两个部分抗性新来源“E11”和“LISA”之间的杂交。这两个AB群体分别使用993个和478个单核苷酸多态性(SNP)标记进行基因分型,并在可控条件下以及在两个地点的受侵染田块中对该病原体的抗性进行表型分析。此前分别在豌豆-丝囊霉群体和四个重组自交系(RIL)群体中报道的GWAS和QTL定位,使用总共1850个额外标记进行了更新,包括在Eden×E11和Eden×LISA群体分析中使用的标记。通过GWAS和RIL或AB QTL分析分别鉴定出总共29个抗性相关SNP和171个抗性QTL,突出了10个一致的遗传区域,证实了此前报道的QTL。在Eden×E11和Eden×LISA这两个AB群体中均未检测到新的一致抗性QTL。然而,在一致遗传区域的11个连锁不平衡(LD)区段鉴定出了高度多样的抗性单倍型,特别是在豌豆-丝囊霉群体中的14个新抗性来源中。在该群体中抗性最强的豌豆品系中证实了这11个区段上有利单倍型的积累。本研究提供了与所研究的丝囊霉根腐病抗性QTL多样性相关的新SNP标记和罕见单倍型,这将有助于未来豌豆品种提高抗性水平的QTL聚合策略。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/ba65/10569610/9f0de5525a7e/fpls-14-1189289-g001.jpg

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