首页> 外文期刊>Theoretical and Applied Genetics: International Journal of Breeding Research and Cell Genetics >Association of gene-linked SSR markers to seed glucosinolate content in oilseed rape (Brassica napus ssp. napus)
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Association of gene-linked SSR markers to seed glucosinolate content in oilseed rape (Brassica napus ssp. napus)

机译:基因连锁的SSR标记与油菜(甘蓝型油菜)中种子芥子油苷含量的关系

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Breeding of oilseed rape (Brassica napus ssp. napus) has evoked a strong bottleneck selection towards double-low (00) seed quality with zero erucic acid and low seed glucosinolate content. The resulting reduction of genetic variability in elite 00-quality oilseed rape is particularly relevant with regard to the development of genetically diverse heterotic pools for hybrid breeding. In contrast, B. napus genotypes containing high levels of erucic acid and seed glucosinolates (++ quality) represent a comparatively genetically divergent source of germplasm. Seed glucosinolate content is a complex quantitative trait, however, meaning that the introgression of novel germplasm from this gene pool requires recurrent backcrossing to avoid linkage drag for high glucosinolate content. Molecular markers for key low-glucosinolate alleles could potentially improve the selection process. The aim of this study was to identify potentially gene-linked markers for important seed glucosinolate loci via structure-based allele-trait association studies in genetically diverse B. napus genotypes. The analyses included a set of new simple-sequence repeat (SSR) markers whose orthologs in Arabidopsis thaliana are physically closely linked to promising candidate genes for glucosinolate biosynthesis. We found evidence that four genes involved in the biosynthesis of indole, aliphatic and aromatic glucosinolates might be associated with known quantitative trait loci for total seed glucosinolate content in B. napus. Markers linked to homoeologous loci of these genes in the paleopolyploid B. napus genome were found to be associated with a significant effect on the seed glucosinolate content. This example shows the potential of Arabidopsis-Brassica comparative genome analysis for synteny-based identification of gene-linked SSR markers that can potentially be used in marker-assisted selection for an important trait in oilseed rape.
机译:油菜(Brassica napus ssp。napus)的育种已经引起了一个强有力的瓶颈选择,即芥酸为零且芥子油苷含量较低,种子品质达到双低(00)。优质00品质油菜的遗传变异性降低与杂交育种遗传多样性杂种库的开发特别相关。相比之下,含有高水平芥酸和芥子油苷种子(++质量)的甘蓝型油菜(B. napus)基因型代表了相对遗传上不同的种质来源。种子芥子油苷含量是一个复杂的定量性状,但是,这意味着从该基因库中渗入新种质需要反复回交,以避免因芥子油苷含量高而造成的连锁阻力。关键的低芥子油苷等位基因的分子标记可能会改善选择过程。这项研究的目的是通过遗传多样性的甘蓝型油菜基因型中基于结构的等位基因-性状关联研究,为重要的种子芥子油苷位点鉴定潜在的基因标记。分析包括一组新的简单序列重复(SSR)标记,其在拟南芥中的直系同源物与芥子油苷生物合成的有希望的候选基因在物理上紧密相连。我们发现证据表明,参与吲哚,脂肪族和芳香族硫代芥子油苷生物合成的四个基因可能与已知的油菜籽中总芥子油苷含量定量特征基因座相关。发现与多倍体甘蓝型油菜基因组中这些基因的同源基因座相关的标记与对种子芥子油苷含量的显着影响有关。该实施例显示了拟南芥-芸苔比较基因组分析在基于同义的基因连锁SSR标记鉴定中的潜力,该标记可潜在地用于油菜油菜重要性状的标记辅助选择中。

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