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Benzyl Cyanide Leads to Auxin-Like Effects Through the Action of Nitrilases in Arabidopsis thaliana

机译:苄基氰通过拟南芥中亚硝酸根的作用导致生长素样效应。

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摘要

Plants within the Brassicales order generate glucosinolate hydrolysis products that can exert different biological effects on several organisms. Here, we evaluated the physiological effects of one of these compounds, benzyl cyanide (phenylacetonitrile), when exogenously applied on Arabidopsis thaliana. Treatment with benzyl cyanide led to a dose-dependent reduction of primary root length and total biomass. Further morphological changes like elongated hypocotyls, epinastic cotyledons, and increased formation of adventitious roots resembled a severe auxin-overproducer phenotype. The elevated auxin response was confirmed by histochemical staining and gene expression analysis of auxin-responsive genes. Nitriles are converted by specific enzymes, nitrilases (NIT1-3), to their corresponding carboxylic acids. The nitrilase mutants nit1 and nit2 tolerated benzyl cyanide treatments better than the wild type, with nit2 being less resistant than nit1. A NIT2RNAi line suppressing several nitrilases was resistant to all tested benzyl cyanide concentrations. When exposed to phenylacetic acid (PAA) – the corresponding carboxylic acid of benzyl cyanide – wild type and mutant seedlings were, however, equally susceptible and showed a more severe auxin phenotype than upon cyanide treatment. Here, we demonstrate that the auxin-like effects triggered by benzyl cyanide on Arabidopsis are due to its nitrilase-mediated conversion to the natural auxin PAA.
机译:十字花科内的植物产生的芥子油苷水解产物可对几种生物产生不同的生物学作用。在这里,我们评估了外源应用于拟南芥时,其中一种化合物苄基氰化物(苯乙腈)的生理作用。用苄基氰化物处理导致初级根长度和总生物量的剂量依赖性降低。进一步的形态变化,例如下胚轴延长,子叶上突和子叶不定根的形成增加,都类似于严重的生长素过度生产型。生长素应答的升高通过组织化学染色和生长素应答基因的基因表达分析得到证实。腈通过特定的酶腈水解酶(NIT1-3)转化为其相应的羧酸。腈水解酶突变体nit1和nit2对苄基氰的耐受性优于野生型,其中nit2的抵抗力小于nit1。抑制几种腈水解酶的NIT2RNAi品系对所有测试的苄基氰化物浓度均具有抗性。当暴露于苯乙酸(PAA)(苄基氰的相应羧酸)中时,野生型和突变苗同样易感,并且生长素表型比氰化物处理时更为严重。在这里,我们证明了苄基氰对拟南芥触发的生长素样作用是由于其腈水解酶介导的向天然生长素PAA的转化。

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