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Associative Transcriptomics Study Dissects the Genetic Architecture of Seed Glucosinolate Content in Brassica napus

机译:联想转录组织研究将甘蓝型油菜中的种子硫代葡萄糖酸盐含量的遗传建筑描述

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摘要

Breeding new varieties with low seed glucosinolate (GS) concentrations has long been a prime target in Brassica napus. In this study, a novel association mapping methodology termed 'associative transcriptomics' (AT) was applied to a panel of 101 B. napus lines to define genetic regions and also candidate genes controlling total seed GS contents. Over 100,000 informative single-nucleotide polymorphisms (SNPs) and gene expression markers (GEMs) were developed for AT analysis, which led to the identification of 10 SNP and 7 GEM association peaks. Within these peaks, 26 genes were inferred to be involved in GS biosynthesis. A weighted gene co-expression network analysis provided additional 40 candidate genes. The transcript abundance in leaves of two candidate genes, BnaA.GTR2a located on chromosome A2 and BnaC.HAG3b on C9, was correlated with seed GS content, explaining 18.8 and 16.8% of phenotypic variation, respectively. Resequencing of genomic regions revealed six new SNPs in BnaA.GTR2a and four insertions or deletions in BnaC.HAG3b. These deletion polymorphisms were then successfully converted into polymerase chain reaction-based diagnostic markers that can, due to high linkage disequilibrium observed in these regions of the genome, be used for marker-assisted breeding for low seed GS lines.
机译:长期以来,甘蓝型油菜的主要目标是培育具有低种子芥子油苷(GS)浓度的新品种。在这项研究中,一种称为“缔合转录组学”(AT)的新型关联作图方法应用于一组101个甘蓝型油菜品系,以定义遗传区域以及控制总种子GS含量的候选基因。开发了超过100,000种信息性单核苷酸多态性(SNP)和基因表达标记(GEM)用于AT分析,从而鉴定了10个SNP和7个GEM关联峰。在这些峰中,推断出26个基因参与了GS的生物合成。加权基因共表达网络分析提供了另外40个候选基因。位于染色体A2上的两个候选基因BnaA.GTR2a和位于C9上的BnaC.HAG3b的叶片中的转录本丰度与种子GS含量相关,分别解释了表型变异的18.8和16.8%。基因组区域的重新测序揭示了BnaA.GTR2a中有6个新SNP,BnaC.HAG3b中有4个插入或缺失。然后,将这些缺失多态性成功转化为基于聚合酶链反应的诊断标记,由于在基因组这些区域中观察到的高连锁不平衡,该标记可用于低种子GS系的标记辅助育种。

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