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[一种具有独特能力降解邻位和对位氯化联苯的新型需氧革兰氏阳性细菌]

[A new aerobic gram-positive bacterium with a unique ability to degrade ortho- and para-chlorinated biphenyls].

作者信息

Rybkina D O, Plotnikova E G, Dorofeeva L V, Mironenko Iu L, Demakov V A

机构信息

Institute of Ecology and Genetics of Microorganisms, Ural Division Russian Academy of Sciences, ul. Goleva 13, Perm, 614081 Russia.

出版信息

Mikrobiologiia. 2003 Nov-Dec;72(6):759-65.

Abstract

Strain B51 capable of degrading polychlorinated biphenyls (PCB) was isolated from soil contaminated with wastes from the chemical industry. Based on its morphological and chemotaxonomic characteristics, the strain was identified as a Microbacterium sp. Experiments with washed cells showed that strain B51 is able to degrade ortho- and para-substituted mono-, di-, and trichlorinated biphenyls (MCB, DCB, and TCB, respectively). Unlike the known PCB degraders, Microbacterium sp. B51 is able to oxidize the ortho-chlorinated ring of 2,2'-DCB and 2,4'-DCB and the para-chlorinated ring of 4.4'-DCB. The degradation of 2,4'-DCB and 4,4'-DCB was associated with the accumulation of 4-chlorobenzoic acid (4-CBA) in the medium in amounts comprising 80-90% of the theoretical yield. The strain was able to utilize 2-MCB, 2,2'-DCB, and their intermediate 2-CBA and to oxidize the mono(ortho)-chlorinated ring of 2,4,2'-TCB and the di(ortho-para)-chlorinated ring of 2,4,4'-TCB. A mixed culture of Microbacterium sp. B51 and the 4-CBA-degrading bacterium Arthrobacter sp. H15 was found to grow well on 1 g/l 2,4'-DCB as the sole source of carbon and energy.

摘要

从受化学工业废物污染的土壤中分离出了能够降解多氯联苯(PCB)的B51菌株。根据其形态和化学分类学特征,该菌株被鉴定为微杆菌属(Microbacterium sp.)。对洗涤过的细胞进行的实验表明,B51菌株能够降解邻位和对位取代的单氯、二氯和三氯联苯(分别为MCB、DCB和TCB)。与已知的PCB降解菌不同,微杆菌属B51能够氧化2,2'-DCB和2,4'-DCB的邻位氯代环以及4,4'-DCB的对位氯代环。2,4'-DCB和4,4'-DCB的降解与培养基中4-氯苯甲酸(4-CBA)的积累有关,积累量占理论产量的80-90%。该菌株能够利用2-MCB、2,2'-DCB及其中间产物2-CBA,并能氧化2,4,2'-TCB的单(邻位)氯代环和2,4,4'-TCB的二(邻位-对位)氯代环。发现微杆菌属B51与降解4-CBA的节杆菌属(Arthrobacter sp.)H15的混合培养物能够以1 g/l 2,4'-DCB作为唯一碳源和能源良好生长。

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