首页> 外文OA文献 >Interval Mapping of Quantitative Trait Loci for Corky Ringspot Disease Resistance in a Tetraploid Population of Potato (\u3ci\u3eSolanum tuberosum\u3c/i\u3e subsp. \u3ci\u3etuberosum\u3c/i\u3e)
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Interval Mapping of Quantitative Trait Loci for Corky Ringspot Disease Resistance in a Tetraploid Population of Potato (\u3ci\u3eSolanum tuberosum\u3c/i\u3e subsp. \u3ci\u3etuberosum\u3c/i\u3e)

机译:马铃薯四倍体群体中软木环斑病抗性数量性状基因座的区间作图(\ u3ci \ u3esolanum tuberosum \ u3c / i \ u3e subsp。\ u3ci \ u3etuberosum \ u3c / i \ u3e)

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摘要

Corky ringspot disease (CRS) resistance is an ideal target trait for breeding using marker-assisted selection (MAS) due to the high variability in field disease incidence that complicates screening for resistance. To develop molecular marker(s) associated with CRS resistance, a linkage map was constructed for a tetraploid population of 92 genotypes in order to conduct quantitative trait locus (QTL) analysis. The population was tested for CRS resistance in an infested screening field for four years. Broad sense heritability and its standard error of CRS disease resistance were 0.80 (±0.16). A total of 892 AFLP, 95 SSR, and 5 SSCP markers were scored and used for testing marker-trait association. One major QTL that explained 43% of the phenotypic variation in CRS resistance was localized on chromosome IX, with flanking AFLP markers AAC-CGT-0347 and ACG-CTG-0588. A minor QTL that explained 12% of CRS resistance was also detected. This minor QTL was associated with distorted marker GGT-CAC-0259, which remained unlinked. Polygenetic nature of CRS resistance was explained by major and minor QTLs association. Conversion of the three AFLP markers associated with this quantitative trait to simple PCR markers will benefit resistance breeding by enabling MAS.
机译:由于田间病发病率的高变异性使抗药性筛选变得复杂,因此,Corky环斑病(CRS)抗药性是使用标记辅助选择(MAS)育种的理想目标性状。为了开发与CRS抗性相关的分子标记,构建了一个针对92个基因型四倍体群体的连锁图谱,以便进行定量性状基因座(QTL)分析。在出没的筛查领域中对该人群进行了4年的CRS抗药性测试。广义遗传力及其对CRS抗病性的标准误为0.80(±0.16)。总共对892 AFLP,95 SSR和5 SSCP标记进行了评分,并用于测试标记-性状关联。解释CRS抗性表型变异43%的一个主要QTL位于IX染色体上,侧翼是AFLP标记AAC-CGT-0347和ACG-CTG-0588。还检测到一个次要的QTL,它解释了CRS耐药性的12%。这个较小的QTL与扭曲的标记物GGT-CAC-0259相关,后者仍未关联。主要和次要QTL关联说明了CRS抗药性的多基因性质。将与该定量性状相关的三个AFLP标记转换为简单的PCR标记,将通过启用MAS来促进抗性育种。

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