首页> 外文期刊>Journal of Basic Microbiology: An International Journal on Morphology, Physiology, Genetics, and Ecology of Microorganisms >Isolation and characterization of a biphenyl-utilizing psychrotrophic bacterium, Hydrogenophaga taeniospiralis IA3-A, that cometabolize dichlorobiphenyls and polychlorinated biphenyl congeners in Aroclor 1221.
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Isolation and characterization of a biphenyl-utilizing psychrotrophic bacterium, Hydrogenophaga taeniospiralis IA3-A, that cometabolize dichlorobiphenyls and polychlorinated biphenyl congeners in Aroclor 1221.

机译:利用联苯的精神营养细菌Hydrogenophaga taeniospiralis IA3-A的分离和表征,该细菌可代谢Aroclor 1221中的二氯联苯和多氯联苯同源物。

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摘要

A psychrotrophic bacterium isolated from polychlorinated biphenyls (PCBs)-contaminated soil grew on biphenyl as sole carbon and energy source, and actively cometabolized PCBs at low temperature. Analysis of cellular fatty acids indicate that the bacterium is most closely related to Hydrogenophaga taeniospiralis. Resting cells incubated with 10 ppm of Aroclor 1221 at 5 or 30 degrees C for 48 h removed all mono-, most di-, and several trichlorobiphenyls. At 5 degrees C, removal of MCBs (monochlorobiphenyls) was between 63 to 89%, DCBs (dichlorobiphenyls) was between 30 to 78%, and TCBs (trichlorobiphenyls) was between 30 to 75%. At 30 degrees C, removal of MCBs was 100%, DCBs was between 30 to 100%, and TCBs was between 27 to 59%. Congeners with two or more ortho chlorine were generally resistant to degradation. However, removal of di-ortho plus para-substituted congeners at 30 degrees C and not at 5 degrees C, suggest that the presence of a para-chlorine enhanced the cometabolism of these congeners at 30 degrees C. Furthermore, after 72 h, resting cells removed 68 and 83% of 500 microM of 2,4'-dichlorobiphenyl (2,4'-DCB) and, 35 and 44% of 500 microM of 2,3-dichlorobiphenyl (2,3-DCB) at 5 and 30 degrees C, respectively. Analysis of metabolites by GC-MS indicates that the cometabolized 2,3-DCB was completely recovered as 2,3-chlorobenzoic acid (2,3-CBA), while the cometabolized 2,4'-DCB was not completely recovered as chlorobenzoic acid. To our knowledge, it is the first strain of Hydrogenophaga taeniospiralis found to degrade an organic pollutant, and also the first psychrotrophic strain of a member of the genus Hydrogenophaga to grow on biphenyl or cometabolize PCBs at low temperature. Results suggest that the bacterium has potential use in the bioremediation of PCB-contaminated sites in cold regions.
机译:从多氯联苯(PCBs)污染的土壤中分离出的一种精神营养细菌在联苯上生长,作为唯一的碳和能源,并在低温下积极地代谢了PCBs。对细胞脂肪酸的分析表明,该细菌与水oph水螺菌最密切相关。将静止的细胞与10 ppm的Aroclor 1221在5或30摄氏度下孵育48小时,以去除所有的单,大部分二氯和几种三氯联苯。在5摄氏度下,MCB(一氯联苯)的去除率为63-89%,DCB(二氯联苯)的去除率为30-78%,TCB(三氯联苯)的去除率为30-75%。在30摄氏度时,MCB的去除率为100%,DCB的去除率为30%至100%,而TCB的去除率为27%至59%。具有两个或多个邻氯的同类物通常抗降解。但是,在30摄氏度而不是5摄氏度下除去双-邻加对位取代同源物,表明对氯的存在增强了这些同源物在30摄氏度下的新陈代谢。此外,在72小时后,静息在5和30时,细胞去除了500 microM的2,4'-二氯联苯(2,4'-DCB)的68%和83%,以及500 microM的2,3-二氯联苯(2,3-DCB)的35%和44%摄氏度。 GC-MS分析代谢物表明,被代谢的2,3-DCB被完全回收为2,3-氯苯甲酸(2,3-CBA),而被代谢的2,4'-DCB没有被完全回收为氯苯甲酸。据我们所知,这是发现的第一个降解有机污染物的taeniospiralis变种,也是第一个在低温下在联苯上生长或代谢PCBs的变菌属的精神营养菌株。结果表明,该细菌在寒冷地区PCB污染部位的生物修复中具有潜在用途。

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