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Degradation of pendimethalin by the yeast YC2 and determination of its two main metabolites

机译:酵母YC2降解二甲戊乐灵及其两种主要代谢产物的测定

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In this study, we isolated a yeast strain, YC2, by enrichment culture from pendimethalin-contaminated soil. The analysis of its phenotypic features and 26S rRNA sequence confirmed that the strain YC2 is Clavispora lusitaniae . According to the kinetics of pendimethalin degradation, YC2 could degrade 74% of 200 mg L ~(?1) pendimethalin in CMB liquid culture over 8 days. LC-MS/MS was used to identify the metabolites of pendimethalin after degradation. This study confirmed that its metabolites consist of 1,2-dimethyl-3,5-dinitro-4- N (buta-1,3-dien-2-yl)-dinitrobenzenamine- N -oxide and 1,2-dimethyl-3,5-dinitro-4- N (prop-1-en-2-yl)-dinitrobenzenamine- N -oxide, which were broken down by a series of enzymatic reactions to produce CO _(2) and H _(2) O. Thus, the study herein sheds light on the role of yeast in the degradation of pendimethalin.
机译:在这项研究中,我们通过浓缩培养从二甲戊灵污染的土壤中分离出了酵母菌株YC2。对其表型特征和26S rRNA序列的分析证实该菌株YC2为紫花苜蓿(Clavispora lusitaniae)。根据二甲戊乐灵降解动力学,YC2可以在8天的时间内降解CMB液体培养物中200 mg L〜(?1)二甲戊乐灵的74%。 LC-MS / MS用于鉴定降解后的二甲戊乐灵的代谢产物。这项研究证实了其代谢产物包括1,2-二甲基-3,5-二硝基-4-N(buta-1,3-dien-2-yl)-二硝基苯胺-N-氧化物和1,2-二甲基-3 ,5-dinitro-4-N(prop-1-en-2-yl)-dinitrobenzenamine- N-oxide,通过一系列酶促反应分解生成CO _(2)和H _(2)O因此,本文的研究揭示了酵母在二甲戊乐灵降解中的作用。

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