Fahy Anne, Ball Andrew S, Lethbridge Gordon, McGenity Terry J, Timmis Kenneth N
Department of Biological Sciences, University of Essex, Wivenhoe Park, Colchester, UK.
FEMS Microbiol Ecol. 2008 Sep;65(3):526-33. doi: 10.1111/j.1574-6941.2008.00518.x. Epub 2008 Jun 6.
Exposure to pollution exerts strong selective pressure on microbial communities, which may affect their potential to adapt to current or future environmental challenges. In this microcosm study, we used DNA fingerprinting based on 16S rRNA genes to document the impact of high concentrations of benzene on two bacterial communities from a benzene-contaminated aquifer situated below a petrochemical plant (SIReN, UK). The two groundwaters harboured distinct aerobic benzene-degrading communities able to metabolize benzene to below detection levels (1 microg L(-1)). A benzene concentration of 100 mg L(-1) caused a major shift from Betaproteobacteria to Actinobacteria, in particular Arthrobacter spp. A similar shift from Betaproteobacteria to Arthrobacter spp. and Rhodococcus erythropolis was observed in minimal medium (MM) inoculated with a third groundwater. These Gram-positive-dominated communities were able to grow on benzene at concentrations up to 600 mg L(-1) in groundwater and up to 1000 mg L(-1) in MM, concentrations that cause significant solvent stress to cellular systems. Therefore, Gram-positive bacteria were better competitors than Gram-negative organisms under experimental conditions of high benzene loads, which suggests that solvent-tolerant Gram-positive bacteria can play a role in the natural attenuation of benzene or the remediation of contaminated sites.
接触污染会对微生物群落施加强大的选择压力,这可能会影响它们适应当前或未来环境挑战的潜力。在这项微观世界研究中,我们基于16S rRNA基因使用DNA指纹技术,来记录高浓度苯对来自英国一家石化厂下方受苯污染含水层的两个细菌群落的影响。这两种地下水含有不同的好氧苯降解群落,它们能够将苯代谢至检测水平以下(1微克/升)。100毫克/升的苯浓度导致了从β-变形菌纲到放线菌纲的重大转变,尤其是节杆菌属。在用第三种地下水接种的基本培养基(MM)中,也观察到了从β-变形菌纲到节杆菌属和红平红球菌的类似转变。这些以革兰氏阳性菌为主的群落能够在地下水中浓度高达600毫克/升、在基本培养基中浓度高达1000毫克/升的苯上生长,这些浓度会给细胞系统造成显著的溶剂压力。因此,在高苯负荷的实验条件下,革兰氏阳性菌比革兰氏阴性菌更具竞争力,这表明耐溶剂革兰氏阳性菌可以在苯的自然衰减或污染场地的修复中发挥作用。