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Major QTLs for Resistance to Early and Late Leaf Spot Diseases Are Identified on Chromosomes 3 and 5 in Peanut (Arachis hypogaea)

机译:在花生(花生)的第3号和第5号染色体上鉴定出了对早期和晚期叶斑病的抗性的主要QTL。

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摘要

Early and late leaf spots (LLSs) are the major foliar diseases of peanut responsible for severely decreased yield in the absence of intensive fungicide spray programs. Pyramiding host resistance to leaf spots in elite cultivars is a sustainable solution to mitigate the diseases. In order to determine the genetic control of leaf spot disease resistance in peanut, a recombinant inbred line population (Florida-07 × GP-NC WS16) segregating for resistance to both diseases was used to construct a SNP-based linkage map consisting of 855 loci. QTL mapping revealed three resistance QTLs for LLS qLLSA05 (phenotypic variation explained, PVE = 7–10%), qLLSB03 (PVE = 5–7%), and qLLSB05 (PVE = 15–41%) that were consistently expressed over multi-year analysis. Two QTL, qLLSA05 and qLLSB05, confirmed our previously published QTL-seq results. For early leaf spot, three resistance QTLs were identified in multiple years, two on chromosome A03 (PVE = 8–12%) and one on chromosome B03 (PVE = 13–20%), with the locus qELSA03_1.1 coinciding with the previously published genomic region for LLS resistance in GPBD4. Comparative analysis of the genomic regions spanning the QTLs suggests that resistance to early and LLSs are largely genetically independent. In addition, QTL analysis on yield showed that the presence of resistance allele in qLLSB03 and qLLSB05 loci might result in protection from yield loss caused by LLS disease damage. Finally, post hoc analysis of the RIL subpopulation that was not utilized in the QTL mapping revealed that the flanking markers for these QTLs can successfully select for resistant and susceptible lines, confirming the effectiveness of pyramiding these resistance loci to improve host-plant resistance in peanut breeding programs using marker-assisted selection.
机译:早期和晚期叶斑病(LLSs)是花生的主要叶面疾病,在没有强化杀真菌剂喷洒程序的情况下,产量严重下降。金字塔宿主对优良品种叶片斑点的抗性是减轻疾病的可持续解决方案。为了确定花生对叶斑病抗性的遗传控制,使用分离了对两种病抗性的重组自交系种群(Florida-07×GP-NC WS16)来构建由855个基因座组成的基于SNP的连锁图谱。 QTL映射揭示了三个LLS qLLSA05(表型变异,PVE = 7–10%),qLLSB03(PVE = 5–7%)和qLLSB05(PVE = 15–41%)的三个耐药QTL,它们在多年中一致表达分析。两个QTL qLLSA05和qLLSB05证实了我们先前发布的QTL-seq结果。对于早期叶斑病,多年内鉴定出三个抗性QTL,两个在染色体A03(PVE = 8–12%),一个在染色体B03(PVE = 13–20%),qELSA03_1.1与前一个一致。已发表GPBD4中LLS抗性的基因组区域。对跨越QTL的基因组区域的比较分析表明,对早期和LLS的抗性在很大程度上是基因独立的。此外,对产量的QTL分析表明,qLLSB03和qLLSB05基因座中存在抗性等位基因可能会导致免受LLS病害导致的产量损失的保护。最后,对未在QTL定位中使用的RIL亚群进行事后分析表明,这些QTL的侧翼标记可以成功选择抗性和易感品系,从而证实了将这些抗性基因座金字塔化以改善花生中的宿主植物抗性的有效性。使用标记辅助选择的育种程序。

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