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Alicycliphilus: current knowledge and potential for bioremediation of xenobiotics

机译:alicycliphilus:仇外化的目前的知识和潜力

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Alicycliphilus is a promising candidate for participating in the development of novel xenobiotics bioremediation processes. Members of the Alicycliphilus genus are environmental bacteria mostly found in polluted sites such as landfills and contaminated watercourses, and in sewage sludges from wastewater treatment plants. They exhibit a versatile metabolism and the ability to use oxygen, nitrate and chlorate as terminal electron acceptors, which allow them to biodegrade xenobiotics under oxic or anoxic conditions. Pure cultures of Alicycliphilus strains are able to biodegrade some pollutants such as industrial solvents (acetone, cyclohexanol and N-methylpyrrolidone), aromatic hydrocarbons (benzene, toluene and anthracene), as well as polyurethane varnishes and foams, and they can even transform Cr(VI) to Cr(III). In addition, Alicycliphilus has also been identified in bacterial communities involved in wastewater treatment plants for denitrification, and the degradation of emerging pollutants such as triclosan, nonylphenol, N-heterocyclic aromatic compounds (indole and quinoline), and antibiotics (tetracycline and oxytetracycline). This work summarizes the current knowledge on the Alicycliphilus genus, describing its different metabolic characteristics, focusing on its xenobiotic biodegradation abilities and examining the distinct pathways and molecular bases that sustain them. We also discuss the progress made in genetic manipulation and 'omics' analyses, as well as Alicycliphilus participation in novel bioremediation strategies.
机译:alicycliphilus是参与新型异种学生物修复过程的有前途的候选人。脂环藻属的成员是环境细菌,主要发现在垃圾填埋场和污染的水道等污染地点,以及废水处理厂的污水污染。它们表现出通用代谢和使用氧,硝酸盐和氯酸盐作为终端电子受体的能力,这使得它们在氧氧或缺氧条件下生物降解异黄素。脂族脂肪族菌株的纯培养物能够生物降解一些污染物,例如工业溶剂(丙酮,环己醇和N-甲基吡咯烷酮),芳烃(苯,甲苯和蒽)以及聚氨酯清漆和泡沫,它们甚至可以转化CR( vi)至cr(iii)。此外,还在参与废水处理厂的细菌社区中鉴定脂族血管,用于脱硝化,以及新出现的污染物如三氯烷,壬基酚,正氧杂环芳族芳族化合物(吲哚和喹啉)和抗生素(四环素和氧合素)的劣化。这项工作总结了目前对脂族藻属属的知识,描述其不同的代谢特征,重点是其异恶生物降解能力和检查维持它们的明显途径和分子碱基。我们还讨论了遗传操纵和“OMICS”分析中的进展,以及新的生物修复策略的alicycliphilus参与。

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