红球菌
腈水合酶
生物降解
红球菌
硝化酶
化学
腈
乙腈
丙烯腈
酰胺酶
降级(电信)
酶
有机化学
电信
聚合物
计算机科学
共聚物
作者
Shumei Fang,Xiaopeng An,Hongyuan Liu,Yi Cheng,Ning Hou,Lei Feng,Xinning Huang,Chunyan Li
标识
DOI:10.1016/j.biortech.2015.02.078
摘要
Nitriles are common environmental pollutants, and their removal has attracted increasing attention. Microbial degradation is considered to be the most acceptable method for removal. In this work, we investigated the biodegradation of three aliphatic nitriles (acetonitrile, acrylonitrile and crotononitrile) by Rhodococcus rhodochrous BX2 and the expression of their corresponding metabolic enzymes. This organism can utilize all three aliphatic nitriles as sole carbon and nitrogen sources, resulting in the complete degradation of these compounds. The degradation kinetics were described using a first-order model. The degradation efficiency was ranked according to t1/2 as follows: acetonitrile>trans-crotononitrile>acrylonitrile>cis-crotononitrile. Only ammonia accumulated following the three nitriles degradation, while amides and carboxylic acids were transient and disappeared by the end of the assay. mRNA expression and enzyme activity indicated that the tested aliphatic nitriles were degraded via both the inducible NHase/amidase and the constitutive nitrilase pathways, with the former most likely preferred.
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