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Community analysis and metabolic pathway of halophilic bacteria for phenol degradation in saline environment

机译:盐环境下嗜盐细菌降解苯酚的群落分析和代谢途径

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A moderately halophilic bacterial enrichment was able to degrade 120 mg/L of phenol in the presence of 1-2 M of NaCl within 3 d or 2.5-3 M of NaCl within 6 d. The optimal degradation was achieved at 1.5 M of NaCl and 350 mg/L of phenol. PCR-DGGE profile of the enrichment showed that the Acidobacterium sp. and Chloroflexus sp. dominated the community. The phenol-biodegradation pathways consisted of an initial oxidative attack by phenol hydroxylase, and subsequent ring fission by catechol 1,2-dioxygenase and catechol 2,3-dioxygenase. Nuclear magnetic resonance (NMR) spectroscopy profiles showed that ectoine and hydroxyectoine were the main compatible solutes to adjust the bacterial osmotic pressure. This study provides further information on the understanding of phenol-degradation over a wide range of salinity and remediation of phenol as a pollutant in the environment
机译:中等嗜盐细菌富集能够在3天内1-2 M NaCl或6天内2.5-3 M NaCl的存在下降解120 mg / L苯酚。在1.5 M NaCl和350 mg / L苯酚下实现了最佳降解。富集的PCR-DGGE图谱表明嗜酸杆菌属。和Chloroflexus sp.。主导了社区。苯酚的生物降解途径包括苯酚羟化酶的初始氧化攻击和随后的邻苯二酚1,2-二加氧酶和邻苯二酚2,3-二加氧酶的环裂变。核磁共振(NMR)谱图表明,ectoine和hydroxyectoine是调节细菌渗透压的主要相容性溶质。这项研究提供了更多的信息,以了解对多种盐度下的苯酚降解以及对环境中的苯酚作为污染物的修复

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