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Identification of Candidate Genes for Seed Glucosinolate Content Using Association Mapping in Brassica napus L.

机译:在甘蓝型油菜中使用关联映射法确定种子中芥子油苷含量的候选基因。

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Rapeseed contains glucosinolates, a toxic group of sulfur-containing glucosides, which play critical roles in defense against herbivores and microbes. However, the presence of glucosinolates in rapeseed reduces the value of the meal as feed for livestock. We performed association mapping of seed glucosinolate (GS) content using the 60K Brassica Infinium single nucleotide polymorphism (SNP) array in 520 oilseed rape accessions. A total of 11 peak SNPs significantly associated with GS content were detected in growing seasons of 2013 and 2014 and were located on B. napus chromosomes A08, A09, C03, and C09, respectively. Two associated regions of GS content covered by these markers were further verified, and three B. napus homologous genes involved in the biosynthesis and accumulation of GS were identified. These genes were multigene family members and were distributed on different chromosomes. Moreover, two genes (BnGRT2 and BnMYB28) associated with GS content were validated by the qRT-PCR analysis of their expression profiles. The further identification and functionalization of these genes will provide useful insight into the mechanism underlying GS biosynthesis and allocation in B. napus, and the associated SNPs markers could be helpful for molecular maker-assisted breeding for low seed GS in B. napus.
机译:油菜籽中含有芥子油苷,这是一种有毒的含硫葡萄糖苷,在防御食草动物和微生物中起着至关重要的作用。然而,油菜籽中芥子油苷的存在降低了该粕作为牲畜饲料的价值。我们在520个油籽油菜品种中使用60K芸苔属植物Infinium单核苷酸多态性(SNP)阵列对种子芥子油苷(GS)含量进行了关联映射。在2013年和2014年的生长季节中,共检测到11个与GS含量显着相关的峰值SNP,它们分别位于甘蓝型油菜染色体A08,A09,C03和C09染色体上。进一步验证了由这些标记物覆盖的两个GS相关区域,并鉴定了与GS的生物合成和积累有关的三个甘蓝型油菜同源基因。这些基因是多基因家族成员,分布在不同的染色体上。此外,通过qRT-PCR分析它们的表达谱,验证了与GS含量相关的两个基因(BnGRT2和BnMYB28)。这些基因的进一步鉴定和功能化将为了解甘蓝型油菜GS生物合成和分配的基础机制提供有用的见识,并且相关的SNPs标记可能有助于分子制造商辅助育种低油菜型GS。

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