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罗得西亚红红球菌 BX2 对脂肪族腈的酶促降解作用,这是一种多功能的腈降解细菌。

Enzymatic degradation of aliphatic nitriles by Rhodococcus rhodochrous BX2, a versatile nitrile-degrading bacterium.

机构信息

College of Resource and Environment, Northeast Agricultural University, Harbin 150030, Heilongjiang, PR China; College of Life Science and Technology, Heilongjiang Bayi Agricultural University, Daqing 16339, Heilongjiang, PR China.

College of Resource and Environment, Northeast Agricultural University, Harbin 150030, Heilongjiang, PR China.

出版信息

Bioresour Technol. 2015 Jun;185:28-34. doi: 10.1016/j.biortech.2015.02.078. Epub 2015 Feb 26.

Abstract

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.

摘要

腈类是常见的环境污染物,其去除已引起越来越多的关注。微生物降解被认为是去除腈类的最可接受的方法。在这项工作中,我们研究了红球菌 BX2 对三种脂肪族腈(乙腈、丙烯腈和丁烯腈)的生物降解作用及其相应代谢酶的表达。该菌可以将所有三种脂肪族腈作为唯一的碳氮源利用,导致这些化合物的完全降解。降解动力学用一级模型描述。根据半衰期将降解效率排序如下:乙腈>反式丁烯腈>丙烯腈>顺式丁烯腈。三种腈类降解后仅积累氨,而酰胺和羧酸则是短暂的,在试验结束时消失。mRNA 表达和酶活性表明,所测试的脂肪族腈类通过诱导型 NHase/酰胺酶和组成型腈酶途径降解,前者可能更受青睐。

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