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A gene controlling variation in arabidopsis glucosinolate composition ispart of the methionine chain elongation pathway

机译:控制拟南芥芥子油苷组成变化的基因是蛋氨酸链延长途径的一部分

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摘要

Arabidopsis and other Brassicaceae produce an enormous diversity of aliphatic glucosinolates, a group of methionine (Met)-derived plant secondary compounds containing a P-thio-glucose moiety, a sulfonated oxime, and a variable side chain. We fine-scale mapped GSL-ELONG, a locus controlling variation in the side-chain length of aliphatic glucosinolates. Within this locus, a polymorphic gene was identified that determines whether Met is extended predominantly by either one or by two methylene groups to produce aliphatic glucosinolates with either three- or four-carbon side chains. Two allelic mutants deficient in four-carbon side-chain glucosinolates were shown to contain independent missense mutations within this gene. In cell-free enzyme assays, a heterologously expressed cDNA from this locus was capable of condensing 2-oxo-4-methylthiobutanoic acid with acetyl-coenzyme A, the initial reaction in Met chain elongation. The gene methylthioalkylmalate synthase1 (MAM1) is a member of a gene family sharing approximately 60% amino acid sequence similarity with 2-isopropylmalate synthase, an enzyme of leucine biosynthesis that condenses 2-oxo-3-methylbutanoate with acetylcoenzyme A.
机译:拟南芥和其他十字花科产生大量的脂肪族芥子油苷,一组甲硫氨酸(Met)衍生的植物次级化合物,其中含有对硫代葡萄糖部分,磺化肟和可变侧链。我们对GSL-ELONG进行了精细缩放,这是一个控制脂肪族芥子油苷侧链长度变化的位点。在该基因座内,鉴定出一种多态性基因,该基因确定Met是否主要被一个或两个亚甲基延伸以产生具有三碳或四碳侧链的脂肪族芥子油苷。缺乏四个碳侧链硫代葡萄糖苷的两个等位基因突变体显示在该基因内包含独立的错义突变。在无细胞酶测定中,来自该基因座的异源表达的cDNA能够使2-氧代-4-甲基硫代丁酸与乙酰辅酶A缩合,这是Met链延长中的初始反应。甲基硫代苹果酸苹果酸合酶1(MAM1)是与2-异丙基苹果酸合酶具有大约60%氨基酸序列相似性的基因家族的成员,2-异丙基苹果酸合酶是将2-氧代-3-甲基丁酸与乙酰辅酶A缩合的亮氨酸生物合成酶。

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