Selesi Drazenka, Meckenstock Rainer U
Institute of Groundwater Ecology, Helmholtz Zentrum München - German Research Center for Environmental Health, Neuherberg, Germany.
FEMS Microbiol Ecol. 2009 Apr;68(1):86-93. doi: 10.1111/j.1574-6941.2009.00652.x. Epub 2009 Jan 28.
The aromatic hydrocarbon biphenyl is a widely distributed environmental pollutant. Whereas the aerobic degradation of biphenyl has been extensively studied, knowledge of the anaerobic biphenyl-oxidizing bacteria and their biochemical degradation pathway is scarce. Here, we report on an enrichment culture that oxidized biphenyl completely to carbon dioxide under sulfate-reducing conditions. The biphenyl-degrading culture was dominated by two distinct bacterial species distantly affiliated with the Gram-positive genus Desulfotomaculum. Moreover, the enrichment culture has the ability to grow with benzene and a mixture of anthracene and phenanthrene as the sole source of carbon, but here the microbial community composition differed substantially from the biphenyl-grown culture. Biphenyl-4-carboxylic acid was identified as an intermediate in the biphenyl-degrading culture. Moreover, 4-fluorobiphenyl was converted cometabolically with biphenyl because in addition to the biphenyl-4-carboxylic acid, a compound identified as its fluorinated analog was observed. These findings are consistent with the general pattern in the anaerobic catabolism of many aromatic hydrocarbons where carboxylic acids are found to be central metabolites.
芳香烃联苯是一种广泛分布的环境污染物。尽管对联苯的好氧降解已进行了广泛研究,但关于厌氧联苯氧化细菌及其生化降解途径的了解却很少。在此,我们报道了一种富集培养物,它在硫酸盐还原条件下能将联苯完全氧化为二氧化碳。降解联苯的培养物主要由两种与革兰氏阳性的脱硫肠状菌属关系较远的不同细菌物种主导。此外,该富集培养物能够以苯以及蒽和菲的混合物作为唯一碳源生长,但此时微生物群落组成与以联苯生长的培养物有很大不同。联苯 - 4 - 羧酸被鉴定为联苯降解培养物中的一种中间产物。此外,4 - 氟联苯与联苯发生共代谢转化,因为除了联苯 - 4 - 羧酸外,还观察到一种被鉴定为其氟化类似物的化合物。这些发现与许多芳香烃厌氧分解代谢的一般模式一致,在该模式中羧酸是核心代谢产物。