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首页> 外文期刊>Journal of Agricultural and Food Chemistry >Enhanced Herbicide Metabolism and Metabolic Resistance Genes Identified in Tribenuron-Methyl Resistant Myosoton aquaticum L.
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Enhanced Herbicide Metabolism and Metabolic Resistance Genes Identified in Tribenuron-Methyl Resistant Myosoton aquaticum L.

机译:在呋喃酮 - 耐药中鉴定的除草剂代谢和代谢抗性基因霉菌肌室Aquaticum L.

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摘要

The evolved resistance of Myosoton aquaticum L. to acetolactate synthase (ALS) inhibitors is well established, but most research has focused on target-site resistance, while nontarget-site resistance remains neglected. Here, we investigated mechanisms of the latter. The pretreatment with the P450 inhibitor malathion significantly increased the sensitivity of resistant plants to tribenuron-methyl. The rapid P450-mediated tribenuron-methyl metabolism in resistant plants was confirmed by LC-MS/MS analysis. Besides, GST activity was higher among resistant than susceptible individuals. The next transcriptome analysis generated 544,102,236 clean reads from RNA sequencing libraries. De novo assembly yielded 102,529 unigenes with an average length of 866 bp, annotated across seven databases. Digital gene expression selected 25 differentially expressed genes, further validated with qRT-PCR Three P450 genes, two GST genes, two glucosyltransferase genes, four ABC transporter genes, and four additional contigs were constitutively up-regulated in resistant individuals. Overall, our research confirmed that enhanced herbicide metabolism drives tribenuron-methyl resistance in M. aquaticum.
机译:Myosoton Aquaticum L.对乙酸盐合酶(ALS)抑制剂的进化抗性是很好的,但大多数研究都集中在靶位抗性上,而Nontarget-位点抵抗仍然被忽视。在这里,我们调查了后者的机制。 P450抑制剂马拉病的预处理显着提高了抗植物对呋喃酮 - 甲基的敏感性。通过LC-MS / MS分析证实了快速的P450介导的抗性植物的抗培养基 - 甲基代谢。此外,除了易感个体,GST活性较高。从RNA测序文库中产生544,102,236的下一个转录组分析。 De Novo组件产生102,529个未成熟,平均长度为866 BP,跨七个数据库注释。数字基因表达选择25个差异表达基因,进一步用QRT-PCR三个P450基因验证,两个GST基因,两个葡糖基转移酶基因,四个ABC转运基因和四个另外的折叠在抗性个体上构成上调。总体而言,我们的研究证实,增强的除草剂代谢驱动了M. Aquaticum中的呋喃酮 - 甲基抗性。

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