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Microbial population responses to pH and salt shock during phenols degradation under high salt conditions revealed by RISA and AFDRA

机译:RISA和AFDRA揭示了高盐条件下酚降解过程中微生物种群对pH和盐冲击的响应

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摘要

The responses of microbial community to pH and salt shock during phenols degradation under high salt conditions were revealed by two DNA fingerprint methods, i.e. ribosomal intergenic spacer analysis (RISA) and amplified functional DNA restriction analysis (AFDRA), together with 16S rDNA clone library analysis. It was shown that the phenols removal rate was improved with increasing NaCl concentration from 0 to 50 mg/L, and could remain at a high level even in the presence of 100 mg/L NaCl. The degradation efficiency remained stable under neutral conditions (pH 7.0-9.0), but decreased sharply under acidic (below pH 5.0) or more alkaline conditions (above pH 10.0). The community structure was dramatically changed during salt fluctuations, with Halomonas sp. and Marinobacter sp. as the predominant salt-tolerant species. Meanwhile, Marinobacter sp. and Alcaligenes faecalis sp. were the major species which might play the key role for stabilizing the treatment systems under different pH conditions. Moreover, the changes of phenol hydroxylase genes were analyzed by AFDRA, which showed that these functional genes were substantially different under any shock conditions.
机译:通过两种DNA指纹图谱方法,即核糖体基因间间隔区分析(RISA)和扩增功能性DNA限制分析(AFDRA),以及16S rDNA克隆文库分析,揭示了高盐条件下苯酚在高盐条件下降解过程中微生物群落对pH和盐分休克的响应。 。结果表明,随着NaCl浓度从0增加到50 mg / L,苯酚的去除率得以提高,即使在存在100 mg / L NaCl的情况下,苯酚的去除率仍保持较高水平。在中性条件(pH 7.0-9.0)下降解效率保持稳定,但在酸性(pH 5.0以下)或更碱性(pH 10.0以上)条件下降解效率急剧下降。 Halomonas sp。在盐的波动过程中,群落结构发生了巨大变化。和Marinobacter sp。作为主要的耐盐物种。同时,Marinobacter sp.。和粪产碱杆菌。是在不同pH条件下稳定处理系统的关键物种。此外,通过AFDRA分析了酚羟化酶基因的变化,表明这些功能基因在任何休克条件下都存在显着差异。

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