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The ecology of anaerobic degraders of BTEX hydrocarbons in aquifers

机译:含水层中BTEX碳氢化合物厌氧降解的生态学

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摘要

The degradation of benzene, toluene, ethylbenzene and xylene (BTEX) contaminants in groundwater relies largely on anaerobic processes. While the physiology and biochemistry of selected relevant microbes have been intensively studied, research has now started to take the generated knowledge back to the field, in order to trace the populations truly responsible for the anaerobic degradation of BTEX hydrocarbons in situ and to unravel their ecology in contaminated aquifers. Here, recent advances in our knowledge of the identity, diversity and ecology of microbes involved in these important ecosystem services are discussed. At several sites, distinct lineages within the Desulfobulbaceae, the Rhodocyclaceae and the Gram-positive Peptococcaceae have been shown to dominate the degradation of different BTEX hydrocarbons. Especially for the functional guild of anaerobic toluene degraders, specific molecular detection systems have been developed, allowing researchers to trace their diversity and distribution in contaminated aquifers. Their populations appear enriched in hot spots of biodegradation in situ. 13C-labelling experiments have revealed unexpected pathways of carbon sharing and obligate syntrophic interactions to be relevant in degradation. Together with feedback mechanisms between abiotic and biotic habitat components, this promotes an enhanced ecological perspective of the anaerobic degradation of BTEX hydrocarbons, as well as its incorporation into updated concepts for site monitoring and bioremediation.
机译:地下水中苯,甲苯,乙苯和二甲苯(BTEX)污染物的降解在很大程度上取决于厌氧过程。虽然已对选定的相关微生物的生理学和生物化学进行了深入研究,但现在研究已经开始将所产生的知识带回该领域,以便追踪真正造成BTEX烃厌氧降解的种群并揭示其生态。在受污染的含水层中。在此,讨论了我们对这些重要的生态系统服务所涉及的微生物的身份,多样性和生态学的最新认识。在几个地点,已显示出脱硫鳞茎科,杜鹃花科和革兰氏阳性肽球菌科内的不同谱系主导了不同BTEX烃的降解。特别是对于厌氧甲苯降解剂的行业协会,已经开发了特定的分子检测系统,使研究人员能够追踪其在受污染含水层中的多样性和分布。他们的种群似乎富集了原位生物降解的热点。 13 C标记实验揭示了碳共享和专性的共养作用之间意想不到的途径与降解有关。结合非生物和生物栖息地组成部分之间的反馈机制,这增强了BTEX碳氢化合物厌氧降解的生态视角,并将其纳入了现场监测和生物修复的最新概念。

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