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Heavy Metals as a Factor Increasing the Functional Genetic Potential of Bacterial Community for Polycyclic Aromatic Hydrocarbon Biodegradation

机译:重金属是增加细菌群落多环芳烃生物降解功能遗传潜能的因素

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摘要

The bioremediation of areas contaminated with hydrocarbon compounds and heavy metals is challenging due to the synergistic toxic effects of these contaminants. On the other hand, the phenomenon of the induction of microbial secretion of exopolysaccharides (EPS) under the influence of heavy metals may contribute to affect the interaction between hydrophobic hydrocarbons and microbial cells, thus increasing the bioavailability of hydrophobic organic pollutants. The purpose of this study was to analyze the impact of heavy metals on the changes in the metapopulation structure of an environmental consortium, with particular emphasis on the number of copies of orthologous genes involved in exopolysaccharide synthesis pathways and the biodegradation of hydrocarbons. The results of the experiment confirmed that the presence of heavy metals at concentrations of 50 mg·L and 150 mg·L resulted in a decrease in the metabolic activity of the microbial consortium and its biodiversity. Despite this, an increase in the biological degradation rate of polycyclic aromatic hydrocarbons was noted of 17.9% and 16.9%, respectively. An assessment of the estimated number of genes crucial for EPS synthesis and biodegradation of polycyclic aromatic hydrocarbons confirmed the relationship between the activation of EPS synthesis pathways and polyaromatic hydrocarbon biodegradation pathways. It was established that microorganisms that belong to the order are characterized by a high representation of the analyzed orthologs and high application potential in areas contaminated with heavy metals and hydrocarbons.
机译:由于这些污染物的协同毒性作用,对碳氢化合物和重金属污染的区域进行生物修复具有挑战性。另一方面,在重金属的影响下诱导胞外多糖(EPS)微生物分泌的现象可能有助于影响疏水性碳氢化合物与微生物细胞之间的相互作用,从而增加了疏水性有机污染物的生物利用度。这项研究的目的是分析重金属对环境财团的代谢种群结构变化的影响,尤其着重于参与胞外多糖合成途径和碳氢化合物生物降解的直系同源基因的拷贝数。实验结果证实,浓度为50 mg·L和150 mg·L的重金属的存在会导致微生物群落及其生物多样性的代谢活性降低。尽管如此,注意到多环芳烃的生物降解率分别增加了17.9%和16.9%。对估计的EPS合成和多环芳烃生物降解至关重要的基因数目的评估证实了EPS合成途径的激活与多环芳烃生物降解途径之间的关系。已经确定,属于该顺序的微生物的特征在于所分析的直向同源物的高度代表性以及在被重金属和碳氢化合物污染的区域中的高应用潜力。

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