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Brassinosteroids play a critical role in the regulation of pesticide metabolism in crop plants

机译:油菜素类固醇在调节农作物农药代谢中起关键作用

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摘要

Pesticide residues in agricultural produce pose a threat to human health worldwide. Although the detoxification mechanisms for xenobiotics have been extensively studied in mammalian cells, information about the regulation network in plants remains elusive. Here we show that brassinosteroids (BRs), a class of natural plant hormones, decreased residues of common organophosphorus, organochlorine and carbamate pesticides by 30–70% on tomato, rice, tea, broccoli, cucumber, strawberry, and other plants when treated externally. Genome-wide microarray analysis showed that fungicide chlorothalonil (CHT) and BR co-upregulated 301 genes, including a set of detoxifying genes encoding cytochrome P450, oxidoreductase, hydrolase and transferase in tomato plants. The level of BRs was closely related to the respiratory burst oxidase 1 (RBOH1)-encoded NADPH oxides-dependent H2O2 production, glutathione biosynthesis and the redox homeostasis, and the activity of glutathione S-transferase (GST). Gene silencing treatments showed that BRs decreased pesticide residues in plants likely by promoting their metabolism through a signaling pathway involving BRs-induced H2O2 production and cellular redox change. Our study provided a novel approach for minimizing pesticide residues in crops by exploiting plants' own detoxification mechanisms.
机译:农产品中的农药残留对全球人类健康构成威胁。尽管已在哺乳动物细胞中广泛研究了异种生物的解毒机理,但有关植物调控网络的信息仍然难以捉摸。在这里,我们显示,油菜素类固醇(BRs)是一类天然植物激素,经外部处理后,番茄,大米,茶,西兰花,黄瓜,草莓和其他植物上常见的有机磷,有机氯和氨基甲酸酯类农药的残留量降低了30-70% 。全基因组微阵列分析表明,杀菌剂百菌清(CHT)和BR共上调了301个基因,其中包括编码番茄植物细胞色素P450,氧化还原酶,水解酶和转移酶的一组解毒基因。 BR的水平与呼吸爆发氧化酶1(RBOH1)编码的NADPH氧化物依赖性H2O2产生,谷胱甘肽的生物合成和氧化还原稳态以及谷胱甘肽S-转移酶(GST)的活性密切相关。基因沉默处理表明,BRs可能通过信号传导途径促进其代谢,从而减少了植物中的农药残留,这些信号传导途径涉及BRs诱导的H2O2产生和细胞氧化还原变化。我们的研究提供了一种通过利用植物自身的排毒机制来减少农作物中农药残留的新颖方法。

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