Department of Biotechnology, Modern Institute of Technology (MIT), Dhalwala , Rishikesh-249201, Uttarakhand , India.
Braz J Microbiol. 2009 Oct;40(4):884-92. doi: 10.1590/S1517-838220090004000020. Epub 2009 Dec 1.
Benzo [a] Pyrene (BaP) is a highly recalcitrant, polycyclic aromatic hydrocarbon (PAH) with high genotoxicity and carcinogenicity. It is formed and released into the environment due to incomplete combustion of fossil fuel and various anthropogenic activities including cigarette smoke and automobile exhausts. The aim of present study is to isolate bacteria which can degrade BaP as a sole source of carbon and energy. We have isolated a novel strain BMT4i (MTCC 9447) of Bacillus subtilis from automobile contaminated soil using BaP (50 g /ml) as the sole source of carbon and energy in basal salt mineral (BSM) medium. The growth kinetics of BMT4i was studied using CFU method which revealed that BMT4i is able to survive in BaP-BSM medium up to 40 days attaining its peak growth (10(29) fold increase in cell number) on 7 days of incubation. The BaP degradation kinetics of BMT4i was studied using High Performance Liquid Chromatography (HPLC) analysis of BaP biodegradation products. BMT4i started degrading BaP after 24 hours and continued up to 28 days achieving maximum degradation of approximately 84.66 %. The above findings inferred that BMT4i is a very efficient degrader of BaP. To our best of knowledge, this is the first report showing utilization of BaP as a sole source of carbon and energy by bacteria. In addition, BMT4i can degrade a wide range of PAHs including naphthalene, anthracene, and dibenzothiophene therefore, it could serve as a better candidate for bioremediation of PAHs contaminated sites.
苯并[a]芘(BaP)是一种高度稳定的多环芳烃(PAH),具有高遗传毒性和致癌性。它是由于化石燃料不完全燃烧和各种人为活动(包括香烟烟雾和汽车尾气)而形成并释放到环境中的。本研究的目的是分离能够以 BaP 为唯一碳源和能源进行降解的细菌。我们从汽车污染的土壤中分离到一株新型枯草芽孢杆菌 BMT4i(MTCC 9447),该菌株能够以 BaP(50 g/ml)作为唯一碳源和能源在基础盐矿(BSM)培养基中生长。采用 CFU 法研究了 BMT4i 的生长动力学,结果表明,BMT4i 能够在 BaP-BSM 培养基中存活长达 40 天,在 7 天的孵育期内达到其最大生长(细胞数增加 10(29)倍)。采用高效液相色谱法(HPLC)分析 BaP 生物降解产物研究了 BMT4i 的 BaP 降解动力学。BMT4i 在 24 小时后开始降解 BaP,并持续至 28 天,达到约 84.66%的最大降解率。上述发现表明,BMT4i 是 BaP 的一种非常有效的降解菌。据我们所知,这是首次报道细菌以 BaP 作为唯一碳源和能源的利用。此外,BMT4i 可以降解多种 PAHs,包括萘、蒽和二苯并噻吩,因此,它可以作为 PAHs 污染场地生物修复的更好候选物。