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内源性底物对厌氧微生物群落适应3-氯苯甲酸的影响。

Effects of endogenous substrates on adaptation of anaerobic microbial communities to 3-chlorobenzoate.

作者信息

Becker Jennifer G, Berardesco Gina, Rittmann Bruce E, Stahl David A

机构信息

Department of Biological Resources Engineering, University of Maryland, College Park, MD 20742-2315, USA.

出版信息

Appl Environ Microbiol. 2006 Jan;72(1):449-56. doi: 10.1128/AEM.72.1.449-456.2006.

Abstract

Lengthy adaptation periods in laboratory studies evaluating the potential for contaminant biodegradation in natural or engineered environments may indicate that the native microbial communities are not metabolizing the contaminants in situ. In this study, we characterized the adaptation period preceding the biodegradation of 3-chlorobenzoate in anaerobic communities derived from lake sediment and wastewater sludge digesters. The importance of alternative mechanisms of adaptation of the anaerobic communities to 3-chlorobenzoate was evaluated by monitoring the concentrations of metabolic substrates and products as well as the levels of total small subunit (SSU) rRNA and SSU rRNA from populations thought to be important in 3-chlorobenzoate mineralization. The anaerobic environments from which the 3-chlorobenzoate-degrading communities were derived contained different levels of endogenous substrates. Increasing methane levels in the digester and sediment communities and decreasing chemical oxygen demand concentrations in the sediment community during the adaptation periods revealed that endogenous substrates were preferentially utilized relative to 3-chlorobenzoate. Methane and chemical oxygen demand concentrations leveled off concomitantly with the onset of 3-chlorobenzoate biodegradation, suggesting that depletion of the preferentially degraded endogenous substrates stimulated 3-chlorobenzoate metabolism. Consistent with these observations, adaptation to 3-chlorobenzoate occurred more rapidly in digester samples that were depleted of endogenous substrates compared to samples that contained high levels of these biodegradable compounds. Other potential adaptation mechanisms, e.g., genetic change or selective population enrichment, appeared to be less important based on the reproducibility and relative lengths of the adaptation events, trends in the SSU rRNA levels, and/or amplification of SSU rRNA genes from key populations.

摘要

在评估天然或工程环境中污染物生物降解潜力的实验室研究中,漫长的适应期可能表明本地微生物群落并未在原位代谢污染物。在本研究中,我们对源自湖泊沉积物和废水污泥消化池的厌氧群落中3 - 氯苯甲酸生物降解之前的适应期进行了表征。通过监测代谢底物和产物的浓度以及来自被认为对3 - 氯苯甲酸矿化重要的种群的总小亚基(SSU)rRNA和SSU rRNA水平,评估了厌氧群落对3 - 氯苯甲酸的其他适应机制的重要性。从中获取3 - 氯苯甲酸降解群落的厌氧环境含有不同水平的内源性底物。在适应期内,消化池和沉积物群落中的甲烷水平增加,沉积物群落中的化学需氧量浓度降低,这表明相对于3 - 氯苯甲酸,内源性底物被优先利用。甲烷和化学需氧量浓度在3 - 氯苯甲酸生物降解开始时同时趋于稳定,这表明优先降解的内源性底物的耗尽刺激了3 - 氯苯甲酸的代谢。与这些观察结果一致,与含有高水平这些可生物降解化合物的样品相比,在耗尽内源性底物的消化池样品中,对3 - 氯苯甲酸的适应发生得更快。基于适应事件的可重复性和相对长度、SSU rRNA水平的趋势以及/或来自关键种群的SSU rRNA基因的扩增,其他潜在的适应机制,例如遗传变化或选择性种群富集,似乎不太重要。

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