首页> 外文期刊>Bioresource Technology: Biomass, Bioenergy, Biowastes, Conversion Technologies, Biotransformations, Production Technologies >Co-metabolic biodegradation of acetamiprid by Pseudoxanthomonas sp. AAP-7 isolated from a long-term acetamiprid-polluted soil
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Co-metabolic biodegradation of acetamiprid by Pseudoxanthomonas sp. AAP-7 isolated from a long-term acetamiprid-polluted soil

机译:Pseudoxanthomonas sp。的共代谢生物降解乙酰胺。从长期被乙酰胺污染的土壤中分离出的AAP-7

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An AAP-degrading bacterium, AAP-7, was isolated from AAP-polluted soil. AAP-7 was identified as Pseudoxanthomonas sp. on the basis of the comparative analysis of 16S rDNA sequences. The strain was able to transformate more than 80% AAP by means of co-metabolism and degraded AAP via hydrolysis or demethylation to form (E)-3-(((6-chloropyridin-3yl)methyl)(methyl)amino)acrylonitrile and N-((6-chloropyridin-3yl)methyl)-N-methylprop-1-en-2-amine, both of which transformed into ultimate product, which was 1-(6-chloropyridin-3yl)-N-methylmethanamine. A novel degradation pathway was proposed based on these metabolites. AAP could be transformed with a maximum specific degradation rate, half-saturation constant and inhibit constant of 1.775/36 h, 175.3 mg L~(-1), and 396.5 mg L~(-1), respectively, which proved that the degradation rate of AAP could be restrained at high AAP concentration. This paper highlights a significant potential use of co-metabolic cultures of microbial cells for the cleanup of AAP-contaminated soil.
机译:从AAP污染的土壤中分离出一种降解AAP的细菌AAP-7。 AAP-7被鉴定为假黄单胞菌。在对16S rDNA序列进行比较分析的基础上。该菌株能够通过共代谢转化80%以上的AAP,并通过水解或脱甲基化降解AAP形成(E)-3-((((6-chloropyridin-3yl)methyl)(甲基)氨基)丙烯腈和N-((6-氯吡啶-3-基)甲基)-N-甲基丙-1-烯-2-胺,两者都转化为终产物,即1-(6-氯吡啶-3-基)-N-甲基甲胺。基于这些代谢物提出了一种新的降解途径。 AAP的最大降解率,半饱和常数和抑制常数分别为1.775 / 36 h,175.3 mg L〜(-1)和396.5 mg L〜(-1),证明了降解高AAP浓度可抑制AAP速率。本文着重介绍了协同代谢微生物细胞在清除AAP污染土壤方面的巨大潜力。

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