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Influence of Easily Degradable Naturally Occurring Carbon Substrates on Biodegradation of Monosubstituted Phenols by Aquatic Bacteria

机译:易降解天然存在的碳底物对水生细菌对单取代苯酚生物降解的影响

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摘要

The influence of readily degradable, naturally occurring carbon substrates on the biodegradation of several monosubstitued phenols (m-cresol, m-aminophenol, p-chlorophenol) was examined. The natural substrate classes used were amino acids, carbohydrates, and fatty acids. Samples of the microbial community from Lake Michie, a mesotrophic reservoir, were adapted to different levels of representatives from each natural substrate class in chemostats. After an extended adaptation period, the ability of the microbial community to degrade the monosubstituted phenols was determined by using a radiolabeled substrate uptake and mineralization method. Several microbiological characteristics of the communities were also measured. Adaptation to increasing concentrations of amino acids, carbohydrates, or fatty acids enhanced the ability of the microbial community to degrade all three phenols. The stimulation was largest for m-cresol and m-aminophenol. The mechanism responsible for the enhancement of monosubstituted phenol metabolism was not clearly identified, but the observation that adaptation to amino acids also increased the biodegradation of glucose and, to a lesser extent, naphthalene suggests a general stimulation of microbial metabolism. This study demonstrates that prior exposure to labile, natural substrates can significantly enhance the ability of aquatic microbial communities to respond to xenobiotics.
机译:研究了易降解的天然存在的碳底物对几种单取代酚(间甲酚,间氨基苯酚,对氯苯酚)的生物降解的影响。使用的天然底物种类是氨基酸,碳水化合物和脂肪酸。来自中营养储层Michie湖的微生物群落的样本适应了来自恒化器中每种天然底物类别的不同水平的代表。经过延长的适应期后,通过使用放射性标记的底物吸收和矿化方法确定了微生物群落降解单取代酚的能力。还测量了社区的几种微生物学特征。适应不断增加的氨基酸,碳水化合物或脂肪酸的浓度,可以增强微生物群落降解所有三种酚的能力。间甲酚和间氨基苯酚的刺激作用最大。尚不清楚导致单取代苯酚代谢增强的机制,但观察到对氨基酸的适应作用也增加了葡萄糖的生物降解,而萘在较小程度上提示了微生物代谢的普遍刺激。这项研究表明,事先接触不稳定的天然底物可以显着增强水生微生物群落对异种生物的反应能力。

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