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少动假单胞菌荧蒽利用菌株的分离与鉴定

Isolation and characterization of a fluoranthene-utilizing strain of Pseudomonas paucimobilis.

作者信息

Mueller J G, Chapman P J, Blattmann B O, Pritchard P H

机构信息

U.S. Environmental Protection Agency Environmental Research Laboratory, Gulf Breeze, Florida 32561.

出版信息

Appl Environ Microbiol. 1990 Apr;56(4):1079-86. doi: 10.1128/aem.56.4.1079-1086.1990.

Abstract

A soil bacterium capable of utilizing fluoranthene as the sole source of carbon and energy for growth was purified from a seven-member bacterial community previously isolated from a creosote waste site for its ability to degrade polycyclic aromatic hydrocarbons. By standard bacteriological methods, this bacterium was characterized taxonomically as a strain of Pseudomonas paucimobilis and was designated strain EPA505. Utilization of fluoranthene by strain EPA 505 was demonstrated by increase in bacterial biomass, decrease in aqueous fluoranthene concentration, and transient formation of transformation products in liquid cultures where fluoranthene was supplied as the sole carbon source. Resting cells grown in complex medium showed activity toward anthraquinone, benzo[b]fluorene, biphenyl, chrysene, and pyrene as demonstrated by the disappearance of parent compounds or changes in their UV absorption spectra. Fluoranthene-grown resting cells were active against these compound as well as 2,3-dimethylnaphthalene, anthracene, fluoranthene, fluorene, naphthalene, and phenanthrene. These studies demonstrate that organic compounds not previously reported to serve as growth substrates can be utilized by axenic cultures of microorganisms. Such organisms may possess novel degradative systems that are active toward other compounds whose biological degradation has been limited because of inherent structural considerations or because of low aqueous solubility.

摘要

从一个先前从杂酚油污染场地分离出的具有降解多环芳烃能力的七元细菌群落中,纯化出一种能够利用荧蒽作为唯一碳源和能量来源进行生长的土壤细菌。通过标准细菌学方法,该细菌在分类学上被鉴定为少动假单胞菌菌株,并命名为EPA505菌株。在以荧蒽作为唯一碳源的液体培养物中,通过细菌生物量的增加、水相中荧蒽浓度的降低以及转化产物的短暂形成,证明了EPA505菌株对荧蒽的利用。在复合培养基中生长的静息细胞对蒽醌、苯并[b]芴、联苯、 Chrysene和芘有活性,这通过母体化合物的消失或其紫外吸收光谱的变化得以证明。以荧蒽培养的静息细胞对这些化合物以及2,3 - 二甲基萘、蒽、荧蒽、芴、萘和菲也有活性。这些研究表明,微生物的纯培养物可以利用以前未报道可作为生长底物的有机化合物。这类生物可能拥有新颖的降解系统,这些系统对其他化合物具有活性,而这些化合物由于其固有的结构因素或低水溶性,其生物降解受到限制。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/6db3/184346/44d31f8c40e2/aem00085-0262-a.jpg

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