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来自不同地理区域土壤的多环芳烃降解细菌的系统发育和生理比较。

Phylogenetic and physiological comparisons of PAH-degrading bacteria from geographically diverse soils.

作者信息

Mueller J G, Devereux R, Santavy D L, Lantz S E, Willis S G, Pritchard P H

机构信息

SBP Technologies, Inc., Gulf Breeze, FL 32561, USA.

出版信息

Antonie Van Leeuwenhoek. 1997 May;71(4):329-43. doi: 10.1023/a:1000277008064.

Abstract

The diversity of bacteria isolated from creosote- contaminated soils in the United States, Norway, and Germany was determined by comparing their ability to degrade polycyclic aromatic hydrocarbons (PAHs), their phospholipid ester-linked fatty acid (GC-FAME) profiles, sole carbon source utilization patterns (Biolog assays), and 16S rRNA sequences. Bacteria were initially obtained by enrichment with phenanthrene and fluoranthene. Many were capable of degrading a broad range of the PAHs found in creosote. Phenanthrene- or fluoranthene-degraders were abundant in most of the soils tested. Several of the fluoranthene-degrading isolates clustered with Sphingomonas (formerly Pseudomonas) paucimobilis strain EPA505 in the GC-FAME and Biolog analyses and three of the isolates examined by 16S rRNA sequence comparisons showed a close relationship with Sphingomonas. In addition, the Sphingomonas strains showed the most extensive degradation of 4- & 5-ring PAHs in creosote. Burkholderia cepacia strains isolated on phenanthrene from PAH-contaminated soils had limited ability to attack higher molecular weight PAHs either individually or in creosote. Thus, degradation capabilities appeared to be associated with members of certain taxa, independent of the origin of the soils from which the bacteria were isolated.

摘要

通过比较从美国、挪威和德国的杂酚油污染土壤中分离出的细菌降解多环芳烃(PAHs)的能力、其磷脂酯连接脂肪酸(气相色谱-脂肪酸甲酯分析,GC-FAME)图谱、唯一碳源利用模式(Biolog分析)以及16S rRNA序列,确定了这些细菌的多样性。细菌最初通过用菲和荧蒽进行富集培养获得。许多细菌能够降解杂酚油中发现的多种PAHs。在大多数测试土壤中,菲或荧蒽降解菌数量众多。在GC-FAME和Biolog分析中,一些荧蒽降解分离株与少动鞘氨醇单胞菌(以前的假单胞菌)菌株EPA505聚类,并且通过16S rRNA序列比较检测的分离株中有三株与鞘氨醇单胞菌显示出密切关系。此外,鞘氨醇单胞菌菌株对杂酚油中的4环和5环PAHs表现出最广泛的降解。从PAH污染土壤中以菲为培养基分离出的洋葱伯克霍尔德菌菌株对单独的或杂酚油中的高分子量PAHs的降解能力有限。因此,降解能力似乎与某些分类群的成员有关,而与分离出细菌的土壤来源无关。

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