首页> 外文期刊>Theoretical and Applied Genetics: International Journal of Breeding Research and Cell Genetics >Identification of QTLs that control clubroot resistance in Brassica oleracea and comparative analysis of clubroot resistance genes between B. rapa and B. oleracea
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Identification of QTLs that control clubroot resistance in Brassica oleracea and comparative analysis of clubroot resistance genes between B. rapa and B. oleracea

机译:控制甘蓝型油菜根肿病抗性的QTLs的鉴定和B. rapa和B. oleracea的根瘤病抗性基因的比较分析

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To perform comparative studies of CR (clubroot resistance) loci in Brassica oleracea and Brassica rapa and to develop marker-assisted selection in B. oleracea, we constructed a B. oleracea map, including specific markers linked to CR genes of B. rapa. We also analyzed CR-QTLs using the mean phenotypes of F progenies from the cross of a resistant double-haploid line (Anju) with a susceptible double-haploid line (GC). In the nine linkage groups obtained (O1-O9), the major QTL, pb-Bo(Anju)1, was derived from Anju with a maximum LOD score (13.7) in O2. The QTL (LOD 5.1) located in O5, pb-Bo(GC)1, was derived from the susceptible GC. Other QTLs with smaller effects were found in O2, O3, and O7. Based on common markers, it was possible to compare our finding CR-QTLs with the B. oleracea CR loci reported by previous authors; pb-Bo(GC)1 may be identical to the CR-QTL reported previously or a different member contained in the same CR gene cluster. In total, the markers linked to seven B. rapa CR genes were mapped on the B. oleracea map. Based on the mapping position and markers of the CR genes, informative comparative studies of CR loci between B. oleracea and B. rapa were performed. Our map discloses specific primer sequences linked to CR genes and includes public SSR markers that will promote pyramiding CR genes in intra- and inter-specific crosses in Brassica crops. Five genes involved in glucosinolates biosynthesis were also mapped, and GSL-BoELONG and GSL-BoPro were found to be linked to the pb-Bo(Anju)1 and Bo(GC)1 loci, respectively. The linkage drag associated with the CR-QTLs is briefly discussed.
机译:为了进行芸苔属和甘蓝型油菜CR(根瘤病抗性)基因座的比较研究,并在油菜双歧杆菌中进行标记辅助选择,我们构建了油菜双歧杆菌图谱,包括与油菜双歧杆菌CR基因连锁的特定标记。我们还使用抗性双单倍体系(Anju)与易感双单倍体系(GC)杂交的F后代的平均表型分析了CR-QTL。在获得的九个连锁组中(O1-O9),主要QTL pb-Bo(Anju)1来自Anju,在O2中具有最高LOD评分(13.7)。位于O5中的QTL(LOD 5.1),pb-Bo(GC)1,来自易感GC。在O2,O3和O7中发现了其他影响较小的QTL。基于共同的标记,有可能将我们发现的CR-QTL与先前作者报道的油菜芽孢杆菌CR位点进行比较。 pb-Bo(GC)1可能与先前报道的CR-QTL相同,也可能与同一CR基因簇中包含的其他成员不同。总共,与七个B. rapa CR基因连锁的标记被绘制在B. oleracea图上。根据CR基因的定位位置和标记,进行了油菜双歧杆菌和油菜双歧杆菌的CR基因座的信息比较研究。我们的图谱公开了与CR基因连锁的特定引物序列,并包括公共SSR标记,这些标记将促进芸苔属作物种内和种间杂交的CR基因金字塔化。还绘制了涉及芥子油苷生物合成的五个基因,并发现GSL-BoELONG和GSL-BoPro分别与pb-Bo(Anju)1和Bo(GC)1基因座相连。简要讨论了与CR-QTL相关的链接阻力。

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