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Glucosinolate biosynthetic genes in Brassica rapa.

机译:甘蓝型油菜中的芥子油苷生物合成基因。

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Glucosinolates (GS) are a group of amino acid-derived secondary metabolites found throughout the Cruciferae family. Glucosinolates and their degradation products play important roles in pathogen and insect interactions, as well as in human health. In order to elucidate the glucosinolate biosynthetic pathway in Brassica rapa, we conducted comparative genomic analyses of Arabidopsis thaliana and B. rapa on a genome-wide level. We identified 102 putative genes in B. rapa as the orthologs of 52 GS genes in A. thaliana. All but one gene was successfully mapped on 10 chromosomes. Most GS genes exist in more than one copy in B. rapa. A high co-linearity in the glucosinolate biosynthetic pathway between A. thaliana and B. rapa was also established. The homologous GS genes in B. rapa and A. thaliana share 59-91% nucleotide sequence identity and 93% of the GS genes exhibit synteny between B. rapa and A. thaliana. Moreover, the structure and arrangement of the B. rapa GS (BrGS) genes correspond with the known evolutionary divergence of B. rapa, and may help explain the profiles and accumulation of GS in B. rapa.
机译:芥子油苷(GS)是整个十字花科中发现的一组氨基酸衍生的次级代谢产物。芥子油苷及其降解产物在病原体和昆虫相互作用以及人类健康中起着重要作用。为了阐明芸苔属中的芥子油苷生物合成途径,我们在全基因组水平上进行了拟南芥和芥菜的比较基因组分析。我们确定了B. rapa中的102个推定基因作​​为拟南芥中52个GS基因的直系同源物。除一个基因外,其他所有基因均已成功定位到10条染色体上。多数GS基因在B. rapa中存在一个以上的副本。还建立了拟南芥和芜菁之间的芥子油苷生物合成途径中的高共线性。在R. rapa和拟南芥中的同源GS基因具有59-91%的核苷酸序列同一性,并且93%的GS基因表现出在B. rapa和拟南芥中的同义。此外,B。rapa GS(BrGS)基因的结构和排列与B. rapa的已知进化差异相对应,并可能有助于解释GS在ra。rapa中的分布和积累。

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