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The Gene Controlling the Quantitative Trait Locus EPITHIOSPECIFIER MODIFIER1 Alters Glucosinolate Hydrolysis and Insect Resistance in Arabidopsis[W]

机译:控制数量性状基因座的基因表位修饰符1改变拟南芥中芥子油苷的水解和抗虫性[W]

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摘要

Glucosinolates are sulfur-rich plant secondary metabolites whose breakdown products have a wide range of biological activities in plant–herbivore and plant–pathogen interactions and anticarcinogenic properties. In Arabidopsis thaliana, hydrolysis by the enzyme, myrosinase, produces bioactive nitriles, epithionitriles, or isothiocyanates depending upon the plant's genotype and the glucosinolate's structure. A major determinant of this structural specificity is the epithiospecifier locus (ESP), whose protein causes the formation of epithionitriles and nitriles. A quantitative trait locus (QTL) on chromosome 3 epistatically affects nitrile formation in combination with ESP; this QTL has been termed EPITHIOSPECIFIER MODIFIER1 (ESM1). We identified a myrosinase-associated protein as the ESM1 QTL in Arabidopsis using map-based cloning with recombinant inbred lines, natural variation transcriptomic analysis, and metabolic profiling. In planta and in vitro analyses with natural ESM1 alleles, ESM1 knockouts, and overexpression lines show that ESM1 represses nitrile formation and favors isothiocyanate production. The glucosinolate hydrolysis profile change influenced by ESM1 is associated with the ability to deter herbivory by Trichoplusia ni. This gene could provide unique approaches toward improving human nutrition.
机译:芥子油苷是富含硫的植物次生代谢产物,其分解产物在植物-草食动物和植物-病原体的相互作用以及抗癌性方面具有广泛的生物学活性。在拟南芥中,取决于植物的基因型和芥子油苷的结构,酶黑芥子酶的水解产生生物活性的腈,表硫腈或异硫氰酸酯。决定这种结构特异性的主要因素是Epithiospecifier位点(ESP),其蛋白质会引起表硫腈和腈的形成。 3号染色体上的数量性状基因座(QTL)与ESP结合会影响腈的形成;此QTL被称为EPITHIOSPECIFIER MODIFIER1(ESM1)。我们使用重组近交系,基于自然变异的转录组学分析和代谢谱分析,基于图谱的克隆,在拟南芥中鉴定了与芥兰酶相关的蛋白质作为ESM1 QTL。在植物体内和体外,利用天然ESM1等位基因,ESM1基因敲除和过表达系分析表明,ESM1抑制腈的形成并有利于异硫氰酸酯的产生。受ESM1影响的芥子油苷水解特性变化与阻止毛粉癣菌的草食能力有关。该基因可以提供改善人类营养的独特方法。

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