首页> 外文期刊>Journal of Agricultural and Food Chemistry >Phytompnitoring and Phytoremediation of Agrochemicals and Related Compounds Based on Recombinant Cytochrome P450s and Aryl Hydrocarbon Receptors (AhRs)
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Phytompnitoring and Phytoremediation of Agrochemicals and Related Compounds Based on Recombinant Cytochrome P450s and Aryl Hydrocarbon Receptors (AhRs)

机译:基于重组细胞色素P450和芳烃受体(AhRs)的农药和相关化合物的植物催眠和植物修复

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摘要

Molecular mechanisms of metabolism and modes of actions of agrochemicals and related compounds are important for understanding selective toxicity, biodegradability, and monitoring of biological effects on nontarget organisms. It is well-known that in mammals, cytochrome P450 (P450 or CYP) monooxygenases metabolize lipophilic foreign compounds. These P450 species are inducible, and both CYP1A1 and CYP1A2 are induced by aryl hydrocarbon receptor (AhR) combined with a ligand. Gene engineering of P450 and NADPH cytochrome P450 oxidoreductase (P450 reductase) was established for bioconversion. Also, gene modification of AhRs was developed for recombinant AhR-mediated β-glucronidase (GUS) reporter assay of AhR ligands. Recombinant P450 genes were transformed into plants for phytoremediation, and recombinant AhR-mediated GUS reporter gene expression systems were each transformed into plants for phytomonitoring. Transgenic rice plants carrying CYP2B6 metabolized the herbicide metolachlor and remarkably reduced the residues in the plants and soils under paddy field conditions. Transgenic Arabidopsis plants carrying recombinant guinea pig (g) AhR-mediated GUS reporter genes detected PCB126 at the level of 10 ng/g soils in the presence of biosurfactants MEL-B. Both phytomonitoring and phytoremediation plants were each evaluated from the standpoint of practical uses.
机译:农药的化学作用机理和农药及其相关化合物的作用方式对于理解选择性毒性,生物可降解性以及监测对非靶标生物的生物学作用非常重要。众所周知,在哺乳动物中,细胞色素P450(P450或CYP)单加氧酶会代谢亲脂性外来化合物。这些P450物种是可诱导的,并且CYP1A1和CYP1A2都被芳烃受体(AhR)与配体结合诱导。建立了P450和NADPH细胞色素P450氧化还原酶(P450还原酶)的基因工程以进行生物转化。同样,开发了AhRs的基因修饰,用于AhR配体的重组AhR介导的β-葡萄糖醛酸酶(GUS)报告基因检测。重组P450基因被转化到植物中进行植物修复,重组的AhR介导的GUS报告基因表达系统分别被转化到植物中进行植物监测。携带CYP2B6的转基因水稻植物在除草剂条件下代谢了除草剂甲草胺,并显着减少了植物和土壤中的残留。携带重组豚鼠(g)AhR介导的GUS报告基因的转基因拟南芥植物在存在生物表面活性剂MEL-B的情况下以10 ng / g的土壤水平检测到PCB126。从实际应用的角度评估了植物监测植物和植物修复植物。

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