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Positive selection driving diversification in plant secondary metabolism

机译:正选择驱动植物次生代谢的多样化

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In Arabidopsis thaliana and related plants, glucosinolates are a major component in the blend of secondary metabolites and contribute to resistance against herbivorous insects. Methylthioalkylmalate synthases (MAM) encoded at the MAM gene cluster control an early step in the biosynthesis of glucosinolates and, therefore, are central to the diversification of glucosinolate metabolism. We sequenced bacterial artificial chromosomes containing the MAM cluster from several Arabidopsis relatives, conducted enzyme assays with heterologously expressed MAM genes, and analyzed MAM nucleotide variation patterns. Our results show that gene duplication, neofunctionalization, and positive selection provide the mechanism for biochemical adaptation in plant defense. These processes occur repeatedly in the history of the MAM gene family, indicating their fundamental importance for the evolution of plant metabolic diversity both within and among species.
机译:在拟南芥和相关植物中,芥子油苷是次生代谢产物共混物中的主要成分,有助于抵抗草食性昆虫。在MAM基因簇上编码的甲基硫代烷基苹果酸合酶(MAM)控制芥子油苷的生物合成的早期步骤,因此,对于芥子油苷代谢的多样化至关重要。我们对来自几个拟南芥属亲属的包含MAM簇的细菌人工染色体进行了测序,使用异源表达的MAM基因进行了酶分析,并分析了MAM核苷酸变异模式。我们的结果表明,基因复制,新功能化和阳性选择为植物防御中的生化适应提供了机制。这些过程在MAM基因家族的历史中反复发生,表明它们对于物种内和物种间植物代谢多样性的进化至关重要。

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