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Identification of quantitative trait loci controlling partial clubroot resistance in new mapping populations of Arabidopsis thaliana

机译:在拟南芥新作图种群中控制部分性根肿病抗性的数量性状基因座的鉴定

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To date, mechanisms of partial quantitative resistance, under polygenic control, remain poorly understood, studies of the molecular basis of disease resistance have mainly focused on qualitative variation under oligogenic control. However, oligogenic conferred resistance is rapidly overcome by the pathogen and knowledge of the relationship between qualitative and quantitative resistance is necessary to develop durably resistant cultivars. In this study, we exploited the Arabidopsis thaliana-Plasmodiophora brassicae pathosystem to decipher the genetic architecture determining partial resistance. This soil-borne pathogen causes clubroot, one of the economically most important diseases of Brassica crops in the world. A quantitative trait locus (QTL) approach was carried out using two segregating populations (F2 and recombinant inbred lines) from crosses between the partially resistant accession Burren and the susceptible accession Columbia. Four additive QTLs (one moderate and three minor) controlling partial resistance to clubroot were identified, all the resistance alleles being derived from the partially resistant parent. In addition, four epistatic regions, which have no additive effect on resistance, were also found to be involved in partial resistance. An examination of candidate genes suggested that a potentially diverse array of mechanisms is related to the different QTLs. By fine-mapping and cloning these regions, the mechanisms involved in partial resistance will be identified.
机译:迄今为止,在多基因控制下对部分定量抗性的机制仍知之甚少,对疾病抗性分子基础的研究主要集中在寡聚控制下的定性变异。然而,致病菌迅速克服了寡聚赋予的抗性,因此必须了解定性和定量抗性之间的关系才能开发出持久的抗性品种。在这项研究中,我们利用拟南芥-Plasmodiophora brasicae病理系统破译了确定部分抗性的遗传结构。这种土壤传播的病原体引起根瘤病,这是世界上芸苔属作物经济上最重要的疾病之一。利用部分抗性种质Burren和易感种质Columbia之间杂交的两个分离种群(F 2 和重组自交系)进行了数量性状基因座(QTL)方法。确定了四个附加的QTL(一个中等和三个较小的QTL)来控制对根部的部分抗性,所有抗性等位基因均来自部分抗性亲本。此外,还发现了四个对电阻没有累加作用的上位区域与部分电阻有关。对候选基因的检查表明,潜在的多种机制与不同的QTL相关。通过精细映射和克隆这些区域,将确定参与部分抗性的机制。

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