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QTL meta-analysis provides a comprehensive view of loci controlling partial resistance to Aphanomyces euteiches in four sources of resistance in pea

机译:QTL荟萃分析提供了豌豆抗药性的四个来源中控制部分对Aphanomyces euteiches的部分抗性的基因座的全面视图

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摘要

Background: Development of durable plant genetic resistance to pathogens through strategies of QTL pyramiding and diversification requires in depth knowledge of polygenic resistance within the available germplasm. Polygenic partial resistance to Aphanomyces root rot, caused by Aphanomyces euteiches, one of the most damaging pathogens of pea worldwide, was previously dissected in individual mapping populations. However, there are no data available regarding the diversity of the resistance QTL across a broader collection of pea germplasm. In this study, we performed a meta-analysis of Aphanomyces root rot resistance QTL in the four main sources of resistance in pea and compared their genomic localization with genes/QTL controlling morphological or phenological traits and with putative candidate genes. Results: Meta-analysis, conducted using 244 individual QTL reported previously in three mapping populations (Puget x 90-2079, Baccara x PI180693 and Baccara x 552) and in a fourth mapping population in this study (DSP x 90-2131), resulted in the identification of 27 meta-QTL for resistance to A. euteiches. Confidence intervals of meta-QTL were, on average, reduced four-fold compared to mean confidence intervals of individual QTL. Eleven consistent meta-QTL, which highlight seven highly consistent genomic regions, were identified. Few meta-QTL specificities were observed among mapping populations, suggesting that sources of resistance are not independent. Seven resistance meta-QTL, including six of the highly consistent genomic regions, co-localized with six of the meta-QTL identified in this study for earliness and plant height and with three morphological genes (Af, A, R). Alleles contributing to the resistance were often associated with undesirable alleles for dry pea breeding. Candidate genes underlying six main meta-QTL regions were identified using colinearity between the pea and Medicago truncatula genomes. Conclusions: QTL meta-analysis provided an overview of the moderately low diversity of loci controlling partial resistance to A. euteiches in four main sources of resistance in pea. Seven highly consistent genomic regions with potential use in marker-assisted-selection were identified. Confidence intervals at several main QTL regions were reduced and co-segregation among resistance and morphological/phenological alleles was identified. Further work will be required to identify the best combinations of QTL for durably increasing partial resistance to A. euteiches.
机译:背景:通过QTL金字塔化和多样化策略发展对病原体的持久植物遗传抗性需要深入了解可用种质内的多基因抗性。由Aphanomyces euteiches(全世界豌豆最具破坏性的病原体之一)引起的对Aphanomyces根腐病的多基因部分抗性先前曾在个别作图种群中进行了剖析。但是,没有关于整个豌豆种质资源中抗性QTL多样性的数据。在这项研究中,我们对豌豆的四个主要抗性来源中的Aphanomyces根腐病抗性QTL进行了荟萃分析,并将其基因组定位与控制形态或物候性状的基因/ QTL以及推定的候选基因进行了比较。结果:荟萃分析使用先前在三个作图群体(Puget x 90-2079,Baccara x PI180693和Baccara x 552)和本研究的第四作图群体(DSP x 90-2131)中报告的244个单独的QTL进行。在鉴定27种对A. euteiches耐药的meta-QTL中。与单个QTL的平均置信区间相比,meta-QTL的置信区间平均减少了四倍。确定了11个一致的meta-QTL,突出了7个高度一致的基因组区域。在测绘人群中几乎没有观察到meta-QTL特异性,这表明抗药性来源不是独立的。七个抗性meta-QTL,包括六个高度一致的基因组区域,与在本研究中针对早熟和株高确定的六个meta-QTL,以及三个形态基因(Af,A,R)共定位。造成抗性的等位基因通常与干豌豆育种的不良等位基因有关。利用豌豆和Medi藜苜蓿基因组之间的共线性,鉴定了六个主要的meta-QTL区域的候选基因。结论:QTL荟萃分析概述了豌豆抗性的四个主要来源中控制部分对菜青虫的部分抗性的基因座中等较低的多样性。确定了七个高度一致的基因组区域,这些区域可用于标记辅助选择。减少了几个主要QTL区域的置信区间,并鉴定了抗性和形态/物候等位基因之间的共隔离。将需要进一步的工作来确定QTL的最佳组合,以持续增加对A. euteiches的部分抗性。

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