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金属加工液中免疫分枝杆菌和龟分枝杆菌多种新基因型的出现及特征分析

Occurrence and characterization of multiple novel genotypes of Mycobacterium immunogenum and Mycobacterium chelonae in metalworking fluids.

作者信息

Khan Izhar U H, Selvaraju Suresh B, Yadav Jagjit S

机构信息

Environmental Genetics and Molecular Toxicology Division, Department of Environmental Health, University of Cincinnati Medical Center, Cincinnati, OH 45267-0056, USA.

出版信息

FEMS Microbiol Ecol. 2005 Nov 1;54(3):329-38. doi: 10.1016/j.femsec.2005.04.009.

Abstract

Rapidly growing mycobacteria colonize metalworking fluids, leading to contamination of occupational environments and exposure-related respiratory illnesses in machine workers. Lately, it has been emphasized that these fluids are colonizable by a single genotype of a rapidly growing mycobacterium species, Mycobacterium immunogenum. Here, we report on the genotypic diversity of mycobacteria in these fluids, including isolation and characterization of multiple novel genotypes of two distinct species, Mycobacterium chelonae and M. immunogenum. Using agar culturing and Mycobacterium-specific PCR, 13 mycobacterial isolates were recovered from 100 geographically diverse in-use metalworking fluid samples. Based on restriction fragment length polymorphism of PCR products, DNA sequencing (hsp65 gene segment), and phylogenetic analysis of 16S-23S rDNA internal transcribed spacer (ITS) sequences, six isolates were identified as M. immunogenum and seven as M. chelonae; an additional isolate from metalworking fluid diluent water was identified as M. diernhoferi. Genomic DNA macro-restriction fragment pattern analysis, using pulsed-field gel electrophoresis with XbaI and SpeI restriction digestions, showed intraspecies variation among the isolates of M. immunogenum and M. chelonae. Visual and computer-assisted dendrogram analysis of the XbaI macro-restriction patterns revealed three novel genotypes of M. immunogenum and two of M. chelonae, whereas SpeI macro-restriction patterns revealed only two genotypes for each isolate. None of the identified genotypes matched the reportedly dominant one of M. immunogenum from metalworking fluids. Both mycobacterial species are prevalent in metalworking fluids and there is a considerable strain-level genetic diversity within them.

摘要

快速生长分枝杆菌在金属加工液中定殖,导致职业环境受到污染,并使机器操作工出现与接触相关的呼吸道疾病。最近,有人强调这些液体可被快速生长分枝杆菌属的单一基因型——免疫分枝杆菌定殖。在此,我们报告了这些液体中分枝杆菌的基因型多样性,包括两种不同菌种——龟分枝杆菌和免疫分枝杆菌的多个新基因型的分离和鉴定。通过琼脂培养和分枝杆菌特异性聚合酶链反应(PCR),从100份来自不同地理位置的在用金属加工液样本中分离出13株分枝杆菌。基于PCR产物的限制性片段长度多态性、DNA测序(hsp65基因片段)以及16S - 23S核糖体DNA内转录间隔区(ITS)序列的系统发育分析,6株分离菌被鉴定为免疫分枝杆菌,7株为龟分枝杆菌;另外从金属加工液稀释水中分离出的1株被鉴定为迪氏分枝杆菌。使用XbaI和SpeI限制性酶切的脉冲场凝胶电泳进行基因组DNA宏观限制性片段模式分析,结果显示免疫分枝杆菌和龟分枝杆菌的分离株存在种内变异。对XbaI宏观限制性模式进行视觉和计算机辅助的树状图分析,发现免疫分枝杆菌有3种新基因型,龟分枝杆菌有2种;而SpeI宏观限制性模式显示每种分离株仅有2种基因型。所鉴定的基因型均与据报道在金属加工液中占主导地位的免疫分枝杆菌基因型不匹配。这两种分枝杆菌在金属加工液中均普遍存在,且它们内部存在相当程度的菌株水平遗传多样性。

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