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首页> 外文期刊>Biodegradation >Isolation and characterization of a pseudomonas oleovorans degrading the chloroacetamide herbicide acetochlor.
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Isolation and characterization of a pseudomonas oleovorans degrading the chloroacetamide herbicide acetochlor.

机译:降解氯乙酰胺除草剂乙草胺的油菜假单胞菌的分离和鉴定。

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摘要

To date, no pure bacterial cultures that could degrade acetochlor have been described. In this study, one strain of microorganism capable of degrading acetochlor, designated as LCa2, was isolated from acetochlor-contaminated soil. The strain LCa2 is Pseudomonas oleovorans according to the criteria of Bergey's manual of determinative bacteriology and sequence analysis of the partial 16S rRNA gene. Optimum growth temperature and pH were 35 degrees C and 8.0, respectively. The strain could degrade 98.03% of acetochlor treated at a concentration of 7.6 mg l(-1) after 7 days of incubation and could tolerate 200 mg l(-1) of acetochlor. When the acetochlor concentration became higher, the degradation cycle became longer. The acetochlor biodegradation products were identified by GC-MS based on mass spectral data and fragmentation patterns. The main plausible degradative pathways involved dechlorination, hydroxylation, N-dealkylation, C-dealkylation and dehydrogenation.
机译:迄今为止,还没有描述可以降解乙草胺的纯细菌培养物。在这项研究中,从受乙草胺污染的土壤中分离出一种能够降解乙草胺的微生物菌株,命名为LCa2。根据Berkey的确定性细菌学和部分16S rRNA基因序列分析的标准,LCa2菌株为油假单胞菌。最佳生长温度和pH分别为35摄氏度和8.0。孵育7天后,该菌株可降解98.03%浓度为7.6 mg l(-1)的乙草胺,并能耐受200 mg l(-1)的乙草胺。当乙草胺浓度升高时,降解周期变长。根据质谱数据和裂解模式,通过GC-MS鉴定了乙草胺的生物降解产物。可能的主要降解途径涉及脱氯,羟基化,N-脱烷基,C-脱烷基和脱氢。

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