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首页> 外文期刊>Phytochemistry >O-glucosyltransferase activities toward phenolic natural products and xenobiotics in wheat and herbicide-resistant and herbicide-susceptible black-grass (Alopecurus myosuroides)
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O-glucosyltransferase activities toward phenolic natural products and xenobiotics in wheat and herbicide-resistant and herbicide-susceptible black-grass (Alopecurus myosuroides)

机译:O-葡萄糖基转移酶对小麦中的酚类天然产物和异生物素的抗性以及对除草剂有抗性和对除草剂敏感的黑草(Aurocurus myosuroides)的活性

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摘要

Herbicide safeners manipulate herbicide selectivity by enhancing the activities of detoxifying enzymes, such as glutathione transferases (GSTs) and cytochrome P450 mono-oxygenases (CYPs) in cereal crops. As part of a study examining the importance of O-glucosyltransferases (OGTs) in pesticide metabolism in hexaploid bread wheat (Triticum aestivum L.), seedlings were grown in the presence of dichlormid, a safener used in maize and cloquintocet mexyl, a wheat safener. The efficacy of the treatments was confirmed by monitoring changes in the abundance of phi and tau class GSTs. OGT activities in the root and shoot tissue were assayed using phenolics of natural and xenobiotic origin to determine if they were enhanced by safeners. Cloquintocet mexyl selectively increased OGT activities toward xenobiotics (4-nitrophenol and 2,4,5-trichlorophenol) and flavonoids, (quercetin, luteolin, genistein and coumestrol) in both the roots and shoots. However, OGT activity towards simple phenols and phenylpropanoids was not enhanced by cloquintocet mexyl. Dichlormid was a much weaker enhancer of OGT activity, with the same subset of OGT activities increased as determined with cloquintocet mexyl, but with the effect being largely restricted to the roots. OGT activities were also determined in black-grass (Alopecurus myosuroides L.), an agronomically important weed in wheat. Two populations of black-grass differing in their sensitivity to herbicides were analysed. The population Peldon, which is resistant to multiple classes of herbicides due in part to the elevated expression of CYPs and GSTs active in herbicide detoxification, contained higher OGT activities than herbicide sensitive black-grass. Unlike wheat, treatment with cloquintocet mexyl or dichlormid, had no effect on OGT activities in either black-grass population.
机译:除草剂安全剂通过增强谷物作物中的解毒酶(如谷胱甘肽转移酶(GST)和细胞色素P450单加氧酶(CYP))的活性来控制除草剂的选择性。作为研究O-葡萄糖基转移酶(OGT)在六倍体面包小麦(Triticum aestivum L.)中农药代谢中重要性的研究的一部分,在存在双氯米定(一种用于玉米的安全剂和氯喹托米特甲氧基)(一种小麦安全剂)的情况下培育了幼苗。通过监测phi和tau类GST的丰度变化证实了治疗的有效性。根和芽组织中的OGT活性使用天然和异源酚类酚进行测定,以确定它们是否被安全剂增强。 Cloquintocet甲氧基选择性地增加了根和芽中对异种生物(4-硝基苯酚和2,4,5-三氯苯酚)和类黄酮(槲皮素,木犀草素,染料木黄酮和香豆甾醇)的OGT活性。然而,氯喹喹酮不增强OGT对简单酚和苯丙烷类化合物的活性。双氯米定是OGT活性的增强剂,其作用要弱得多,与Cloquintocet甲氧基测定的OGT活性的子集相同,但其作用很大程度上限于根。还测定了黑草(Alopecurus myosuroides L.)中的OGT活性,这是一种在农业上重要的小麦杂草。分析了两种对除草剂敏感性不同的黑草种群。 Peldon群体对多种除草剂具有抗性,部分是由于在除草剂解毒中具有活性的CYP和GST的表达升高,其OGT活性高于对除草剂敏感的黑草。与小麦不同的是,用氯喹菊酯甲霜灵或二氯敌草胺处理对任何黑草种群的OGT活性均无影响。

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