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Quantitative Trait Locus Analysis of Late Leaf Spot Resistance and Plant-Type-Related Traits in Cultivated Peanut (Arachis hypogaea L.) under Multi-Environments

机译:多环境下栽培花生晚叶斑病抗性及与植物类型相关性状的数量性状基因座分析

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摘要

Late leaf spot (LLS) is one of the most serious foliar diseases affecting peanut worldwide leading to huge yield loss. To understand the genetic basis of LLS and assist breeding in the future, we conducted quantitative trait locus (QTL) analysis for LLS and three plant-type-related traits including height of main stem (HMS), length of the longest branch (LLB) and total number of branches (TNB). Significant negative correlations were observed between LLS and the plant-type-related traits in multi-environments of a RIL population from the cross Zhonghua 5 and ICGV 86699. A total of 20 QTLs were identified for LLS, of which two QTLs were identified in multi-environments and six QTLs with phenotypic variation explained (PVE) more than 10%. Ten, seven, fifteen QTLs were identified for HMS, LLB and TNB, respectively. Of these, one, one, two consensus QTLs and three, two, three major QTLs were detected for HMS, LLB and TNB, respectively. Of all 52 unconditional QTLs for LLS and plant-type-related traits, 10 QTLs were clustered in five genetic regions, of which three clusters including five robust major QTLs overlapped between LLS and one of the plant-type-related traits, providing evidence that the correlation could be genetically constrained. On the other hand, conditional mapping revealed different numbers and different extent of additive effects of QTLs for LLS conditioned on three plant-type-related traits (HMS, LLB and TNB), which improved our understanding of interrelationship between LLS and plant-type-related traits at the QTL level. Furthermore, two QTLs, qLLSB6-7 and qLLSB1 for LLS resistance, were identified residing in two clusters of NB-LRR—encoding genes. This study not only provided new favorable QTLs for fine-mapping, but also suggested that the relationship between LLS and plant-type-related traits of HMS, LLB and TNB should be considered while breeding for improved LLS resistance in peanut.
机译:晚叶斑病(LLS)是影响全世界花生的最严重的叶面疾病之一,导致巨大的产量损失。为了了解LLS的遗传基础并在将来协助育种,我们对LLS进行了数量性状基因座(QTL)分析,以及三个与植物类型相关的性状,包括主茎高度(HMS),最长分支的长度(LLB)和分支总数(TNB)。中华民国5号和ICGV 86699杂交的RIL种群的多环境中,LLS与植物类型相关性状之间存在显着的负相关。共鉴定出20个QLS QTL,其中两个QTL被鉴定为-环境和六个具有表型变异的QTL(PVE)超过10%。分别为HMS,LLB和TNB确定了10、7、15个QTL。其中,分别检测到HMS,LLB和TNB的一个,一个,两个共有QTL和三个,两个,三个主要QTL。在LLS和植物类型相关性状的所有52个无条件QTL中,有10个QTL聚集在五个遗传区域中,其中三个聚类,包括5个健壮的主要QTL重叠在LLS和一种植物类型相关性状之间,提供了证据相关性可能在遗传上受到限制。另一方面,条件映射揭示了以三种植物类型相关性状(HMS,LLB和TNB)为条件的LLS QTL的数量和程度的不同程度,这加深了我们对LLS与植物类型之间相互关系的理解。 QTL级别的相关特征。此外,鉴定出两个QTL,分别是针对LLS抗性的qLLSB6-7和qLLSB1,它们位于两个NB-LRR编码基因簇中。这项研究不仅为精细作图提供了新的有利的QTL,而且还建议在育种时应考虑LLS与HMS,LLB和TNB的植物类型相关性状之间的关系,以提高花生对LLS的抗性。

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