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Fine genetic and physical mapping of the CRb gene conferring resistance to clubroot disease in Brassica rapa

机译:赋予甘蓝型油菜抗根瘤病的CRb基因的精细遗传和物理定位

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摘要

The use of clubroot resistance (CR) genes is an effective and economical approach for controlling Plasmodiophora brassicae, the causal agent of clubroot disease in Chinese cabbage (Brassica rapa) and other Brassica crops. In a previous study, we identified and mapped the CRb locus on chromosome A03 of B. rapa in the doubled-haploid (DH) line 'CR Shinki DH line' of Chinese cabbage. In this study, CRb, a dominant gene conferring resistance to pathotype 4 of P. brassicae, was finely mapped in combination with bulked segregant analysis and bioinformatics analysis (BIA). Using 1,486 highly susceptible individuals and 2,896 individuals from two separate F-2 populations of '702-5' (B. rapa ssp. chinensis) x 'CR Shinki DH line,' the CRb locus was narrowed to a region of approximately 0.14 cM between two flanking markers, TCR79 and TCR108. The sequences of seven newly developed markers linked to CRb were landed on bacterial artificial chromosome (BAC) of the reference B. rapa 'Chiifu-401-42' by BIA, and a physical map consisting of three BAC clones was constructed. The CRb locus was defined as an interval of approximately 83.5 kb on a BAC clone (KBrB085J21). The target interval contained one Toll-interleukin-1 receptorucleotide-binding site/leucine-rich repeat (TIR-NBS-LRR) gene, one NBS-LRR gene, and several putative regulatory genes in the B. rapa genome. The CRb gene was tightly linked to two other CR genes, CRa and CRb (Kato) . These results provide useful information for isolation of the CRb gene and tightly linked molecular markers for breeding CR in B. rapa
机译:根瘤病抗性(CR)基因的使用是一种控制经济的经济方法,即控制大白菜(Brassica rapa)和其他芸苔属作物的根瘤病的病原体-芸苔。在先前的研究中,我们在大白菜的双单倍体(DH)'CR Shinki DH系'中鉴定并绘制了B. rapa染色体A03上的CRb基因座。在这项研究中,CRb是赋予对芸苔假单胞菌病态4的抗性的主导基因,与大量的分离物分析和生物信息学分析(BIA)结合进行了精细定位。利用来自两个单独的F-2群体的“ 702-5”(中国双歧杆菌)x“ CR Shinki DH系”的1,486位高易感个体和2,896位个体,将CRb基因座的范围缩小至大约0.14 cM两个侧翼标记,TCR79和TCR108。通过BIA,将与CRb连锁的7个新开发的标记的序列登陆到参考B. rapa'Chiifu-401-42'的细菌人工染色体(BAC)上,并构建了由3个BAC克隆组成的物理图谱。 CRb基因座定义为BAC克隆(KBrB085J21)上大约83.5 kb的间隔。目标间隔包含一个Toll白介素1受体/核苷酸结合位点/富含亮氨酸的重复序列(TIR-NBS-LRR)基因,一个NBS-LRR基因和几个假定的调控基因。 CRb基因与另外两个CR基因CRa和CRb(Kato)紧密相连。这些结果为分离CRb基因和紧密连接的分子标记提供了有用的信息,可用于在R. rapa中繁殖CR。

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