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一株反硝化施氏假单胞菌对长链烷基胺的厌氧降解

Anaerobic degradation of long-chain alkylamines by a denitrifying Pseudomonas stutzeri.

作者信息

Nguyen Phuong D, van Ginkel Cornelis G, Plugge Caroline M

机构信息

Laboratory of Microbiology, Wageningen University, Wageningen, The Netherlands.

出版信息

FEMS Microbiol Ecol. 2008 Oct;66(1):136-42. doi: 10.1111/j.1574-6941.2008.00564.x. Epub 2008 Aug 21.

Abstract

The anaerobic degradation of tetradecylamine and other long-chain alkylamines by a newly isolated denitrifying bacterium was studied. Strain ZN6 was isolated from a mixture of soil and active sludge and was identified as representing Pseudomonas stutzeri, based on partial 16S rRNA gene sequence analysis. Strain ZN6 was a mesophilic, motile, Gram-negative rod-shaped bacterium and was able to grow on a variety of compounds including even-numbered primary fatty amines with alkyl chains ranging from C(4) to C(18) coupled to nitrate reduction. Alkylamines were used as sole carbon, energy and nitrogen source and were completely mineralized. Nitrate was dissimilated by ZN6 to nitrite. When strain ZN6 was grown under nitrate limitation, nitrite was slowly dissimilated further. When cocultivated with the complete denitrifier Castellaniella defragens ZN3, anaerobic degradation under denitrifying of alkylamines by strain ZN6 was slightly faster. Strain ZN3 is a complete denitrifier, unable to convert tetradecylamine, and was copurified from the same enrichment culture as strain ZN6. The proposed pathway for the degradation of alkylamines in strain ZN6 starts with C-N cleavages to alkanals and further oxidation to the corresponding fatty acids.

摘要

研究了一种新分离的反硝化细菌对十四烷基胺和其他长链烷基胺的厌氧降解。菌株ZN6从土壤和活性污泥混合物中分离得到,基于16S rRNA基因部分序列分析,被鉴定为代表施氏假单胞菌。菌株ZN6是嗜温、运动、革兰氏阴性杆状细菌,能够在多种化合物上生长,包括碳链长度从C(4)到C(18)的偶数伯脂肪胺,并与硝酸盐还原偶联。烷基胺用作唯一的碳、能量和氮源,并被完全矿化。ZN6将硝酸盐异化还原为亚硝酸盐。当菌株ZN6在硝酸盐限制条件下生长时,亚硝酸盐会进一步缓慢异化。当与完全反硝化菌脱氮 Castellaniella defragens ZN3共培养时,ZN6菌株在反硝化条件下对烷基胺的厌氧降解略快。菌株ZN3是一种完全反硝化菌,不能转化十四烷基胺,与菌株ZN6从同一富集培养物中共纯化得到。ZN6菌株中烷基胺降解的 proposed pathway 始于碳氮键断裂生成烷醛,然后进一步氧化为相应的脂肪酸。 (注:“proposed pathway”这里直接保留英文,因为不太明确其准确的专业中文表述,可能是“推测途径”之类,需根据具体专业内容确定)

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