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Characterization of a Bifunctional O- and N-Glucosyltransferase from Vitis vinifera in Glucosylating Phenolic Compounds and 34-dichloroaniline in Pichia pastoris and Arabidopsis thaliana

机译:来自葡萄的双功能O-和N-葡萄糖基转移酶在巴斯德毕赤酵母和拟南芥中的糖基化酚类化合物和34-二氯苯胺中的表征

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摘要

2,4,5-Trichlorophenol, 2,6-dimethylphenol, 3-methylcatechol, phenol, hydroquinone, catechol, and 3,4-dichloroaniline are present in the environment and are risky to humans and animals because of their wide applications in many industries. In this study, a putative uridine diphosphate glucose-dependent glycosyltransferase from Vitis vinifera (VvUGT72B1) displayed high O-glucosyltransferase or N-glucosyltransferase activity toward all these xenbiotics and was able to enhance the resistance of P. pastoris to them. Compared with wild-type Arabidopsis plants, VvUGT72B1-transgenic Arabidopsis plants showed higher resistance to all the xenobiotics except for phenol and exhibited higher removal efficiencies against all xenobiotics. Glucosides of 3-methylcatechol, 2,6-dimethylphenol, phenol, and 3,4-dichloroaniline were exported to the surrounding media by Arabidopsis plants while transgenic Arabidopsis plants exported more glucosides than wild-type Arabidopsis plants. Our findings have the potential to provide a broader spectrum remediation strategy for the phytoremoval and degradation of phenolic compounds and 3,4-dichloroaniline than previous works.
机译:2,4,5-三氯苯酚,2,6-二甲基苯酚,3-甲基邻苯二酚,苯酚,对苯二酚,邻苯二酚和3,4-二氯苯胺存在于环境中,由于其在许多行业中的广泛应用而对人类和动物具有危险。在这项研究中,来自葡萄(Vitis vinifera)的假定的尿苷二磷酸葡萄糖依赖性糖基转移酶(VvUGT72B1)显示出对所有这些异种生物的高O-葡萄糖基转移酶或N-葡萄糖基转移酶活性,并且能够增强巴斯德毕赤酵母对它们的抵抗力。与野生型拟南芥植物相比,VvUGT72B1转基因拟南芥植物对除苯酚以外的所有异种生物均表现出较高的抗性,并且对所有异种生物均具有较高的去除效率。拟南芥植物将3-甲基邻苯二酚,2,6-二甲基苯酚,苯酚和3,4-二氯苯胺的糖苷输出到周围的培养基中,而转基因拟南芥植物比野生型拟南芥植物输出的葡糖苷更多。我们的发现有可能为酚类化合物和3,4-二氯苯胺的植物脱除和降解提供更广泛的光谱修复策略。

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