首次明确糖基转移酶 MdUGT73CG22 在苹果烟嘧磺隆解毒代谢中的参与作用

Plants Pub Date : 2024-04-23 DOI:10.3390/plants13091171
Yuefeng Zhang, Aijuan Zhao, Lijun Mu, Xiao Teng, Yingxin Ma, Ru Li, Kang Lei, L. Ji, Xuekun Wang, Pan Li
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摘要

烟嘧磺隆是一种乙酰乳酸合成酶(ALS)抑制剂除草剂,是一种广谱、高效的芽后除草剂。糖基转移酶(GTs)广泛存在于生物体内,可将糖分子从供体转移到受体,形成糖苷或糖酯,从而改变受体分子的理化性质,如参与解毒。本研究根据网上公布的基因芯片数据,预测苹果糖基转移酶家族 I D 组中的九种糖基转移酶可能参与了抑制 ALS 除草剂的解毒代谢。为了证实这一点,我们通过实时聚合酶链式反应(real-time PCR)分析了 D 组中 9 个糖基转移酶基因的表达是否受到之前报道的 ALS 抑制性除草剂的诱导。结果发现,ALS 抑制性除草剂烟嘧磺隆明显增加了 D 组中 MdUGT73CG22 基因的表达量。对其作用机制的进一步研究发现,苹果糖基转移酶 MdUGT73CG22 在体内和体外都对烟嘧磺隆进行糖基化和修饰,形成烟嘧磺隆糖苷,参与解毒代谢。总之,本研究首次发现了一种新的糖基转移酶MdUGT73CG22,它能对抑制ALS的除草剂烟嘧磺隆进行糖基化修饰,并可能参与植物的解毒过程,有助于进一步提高对除草剂非靶向机制的认识。
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First Clarification of the Involvement of Glycosyltransferase MdUGT73CG22 in the Detoxification Metabolism of Nicosulfuron in Apple
Nicosulfuron, an acetolactate synthase (ALS) inhibitor herbicide, is a broad-spectrum and highly effective post-emergence herbicide. Glycosyltransferases (GTs) are widely found in organisms and transfer sugar molecules from donors to acceptors to form glycosides or sugar esters, thereby altering the physicochemical properties of the acceptor molecule, such as participating in detoxification. In this study, nine glycosyltransferases in group D of the apple glycosyltransferase family I were predicted to possibly be involved in the detoxification metabolism of ALS-inhibiting herbicides based on gene chip data published online. In order to confirm this, we analysed whether the expression of the nine glycosyltransferase genes in group D was induced by the previously reported ALS-inhibiting herbicides by real-time PCR (polymerase chain reaction). It was found that the ALS-inhibiting herbicide nicosulfuron significantly increased the expression of the MdUGT73CG22 gene in group D. Further investigation of the mechanism of action revealed that the apple glycosyltransferase MdUGT73CG22 glycosylated and modified nicosulfuron both in vivo and ex vivo to form nicosulfuron glycosides, which were involved in detoxification metabolism. In conclusion, a new glycosyltransferase, MdUGT73CG22, was identified for the first time in this study, which can glycosylate modifications of the ALS-inhibiting herbicide nicosulfuron and may be involved in the detoxification process in plants, which can help to further improve the knowledge of the non-targeted mechanism of herbicides.
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