首页> 外文期刊>Theoretical and Applied Genetics: International Journal of Breeding Research and Cell Genetics >Identification of genomic regions involved in resistance against Sclerotinia sclerotiorum from wild Brassica oleracea.
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Identification of genomic regions involved in resistance against Sclerotinia sclerotiorum from wild Brassica oleracea.

机译:鉴定与野生油菜抗核盘菌的抗性有关的基因组区域。

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摘要

The lack of resistant source has greatly restrained resistance breeding of rapeseed (Brassica napus, AACC) against Sclerotinia sclerotiorum which causes severe yield losses in rapeseed production all over the world. Recently, several wild Brassica oleracea accessions (CC) with high level of resistance have been identified (Mei et al. in Euphytica 177:393-400, 2011), bringing a new hope to improve Sclerotinia resistance of rapeseed. To map quantitative trait loci (QTL) for Sclerotinia resistance from wild B. oleracea, an F2 population consisting of 149 genotypes, with several clones of each genotypes, was developed from one F1 individual derived from the cross between a resistant accession of wild B. oleracea (B. incana) and a susceptible accession of cultivated B. oleracea var. alboglabra. The F2 population was evaluated for Sclerotinia reaction in 2009 and 2010 under controlled condition. Significant differences among genotypes and high heritability for leaf and stem reaction indicated that genetic components accounted for a large portion of the phenotypic variance. A total of 12 QTL for leaf resistance and six QTL for stem resistance were identified in 2 years, each explaining 2.2-28.4% of the phenotypic variation. The combined effect of alleles from wild B. oleracea reduced the relative susceptibility by 22.5% in leaves and 15% in stems on average over 2 years. A 12.8-cM genetic region on chromosome C09 of B. oleracea consisting of two major QTL intervals for both leaf and stem resistance was assigned into a 2.7-Mb genomic region on chromosome A09 of B. rapa, harboring about 30 putative resistance-related genes. Significant negative corrections were found between flowering time and relative susceptibility of leaf and stem. The association of flowering time with Sclerotinia resistance is discussed.
机译:缺乏抗药性来源极大地限制了油菜(Brassica napus,AACC)对核盘菌(Sclerotia sclerotiorum)的抗性育种,这导致全世界油菜生产中的严重产量损失。最近,已经鉴定出几种具有高水平抗性的野生甘蓝(CC)(Mei等人在Euphytica 177:393-400,2011),为提高油菜的核盘菌抗性带来了新希望。为了绘制来自野生油菜的核盘菌抗性的数量性状基因座(QTL),从一个来自野生B抗性种质间杂交的F1个体中培育了一个F1种群,该种群由149个基因型组成,每个基因型都有多个克隆。 oleracea(B. incana)和栽培的B. oleracea var的易感种质。 alboglabra。在受控条件下,于2009年和2010年评估了F2人群的菌核病反应。基因型之间的显着差异以及叶和茎反应的高遗传力表明,遗传成分占表型变异的很大一部分。在2年中鉴定出总共12个叶抗QTL和6个茎抗QTL,每个QTL解释了2.2-28.4%的表型变异。来自野生油菜的等位基因的综合作用在两年内平均使叶片的相对敏感性降低了22.5%,茎的相对敏感性降低了15%。将油菜双歧杆菌C09染色体上一个由两个主要QTL间隔组成的12.8-cM遗传区用于叶和茎抗性,分配给油菜双歧杆菌A09染色体上的2.7-Mb基因组区域,其中包含约30个与抗性相关的基因。发现开花时间与叶片和茎的相对敏感性之间存在显着的负校正。讨论了开花时间与核盘菌抗性的关系。

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