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首页> 外文期刊>Journal of Agricultural and Food Chemistry >Unraveling the Toxicity Mechanisms of the Herbicide Diclofop-Methyl in Rice: Modulation of the Activity of Key Enzymes Involved in Citrate Metabolism and Induction of Cell Membrane Anion Channels
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Unraveling the Toxicity Mechanisms of the Herbicide Diclofop-Methyl in Rice: Modulation of the Activity of Key Enzymes Involved in Citrate Metabolism and Induction of Cell Membrane Anion Channels

机译:阐明水稻中除草剂双氯吡氟甲基的毒性机理:参与柠檬酸代谢和诱导细胞膜阴离子通道的关键酶活性的调节

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摘要

Residual soil concentrations of the herbicide diclofop-methyl (DM) can be toxic to other nontarget plant species, but the toxicity mechanisms at play are not fully understood. In the present study, we analyzed the toxic effect of DM on root growth and metabolism in the rice species Oryza sativa. The results show that a 48-h exposure to a trace level (5 μg/L) of DM inhibits rice root growth by almost 70%. A 48-h exposure to 5 μg/L DM also leads to an ≈2.5-fold increase in citrate synthase (CS) activity (and CS gene transcription) and an ≈2-fold decrease in the citrate lyase gene transcripts, which lead to an increase in the intracellular concentration of citrate and in citrate exudation rate. Addition of a specific inhibitor of cell membrane anion channel, anthracene-9-carboxylic acid, decreased citrate release in the culture, suggesting that DM-induced citrate loss from the cells is mediated by a specific membrane-bound channel protein. This study brings new insights into the key biochemical mechanisms leading to DM toxicity in rice,
机译:除草剂二氯双氯芬(DM)的残留土壤浓度可能对其他非靶标植物物种有毒,但尚未充分了解其作用机理。在本研究中,我们分析了DM对水稻Oryza sativa根系生长和代谢的毒性作用。结果表明,痕量DM(5μg/ L)暴露48小时会抑制稻根生长近70%。暴露于5μg/ L DM的48小时还导致柠檬酸合酶(CS)活性(和CS基因转录)增加约2.5倍,柠檬酸裂合酶基因转录本减少约2倍,从而导致细胞内柠檬酸盐浓度和柠檬酸盐渗出速率的增加。细胞膜阴离子通道的特定抑制剂蒽9-羧酸的添加减少了培养物中柠檬酸的释放,表明DM诱导的柠檬酸从细胞中的损失是由特定的膜结合通道蛋白介导的。这项研究为导致水稻DM毒性的关键生化机制带来了新见解,

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