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首页> 外文期刊>Applied Microbiology and Biotechnology >Functional and structural analyses of trichloroethylene-degrading bacterial communities under different phenol-feeding conditions: laboratory experiments
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Functional and structural analyses of trichloroethylene-degrading bacterial communities under different phenol-feeding conditions: laboratory experiments

机译:在不同苯酚进料条件下降解三氯乙烯的细菌群落的功能和结构分析:实验室实验

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摘要

The effects of different phenol-feeding conditions on trichloroethylene (TCE) biodegradation and bacterial population structure in an aquifer soil community were studied. The soil sample, minerals, phenol, and TCE were mixed in glass bottles, which were then incubated under three different phenol-feeding conditions. First, phenol was supplied only once at 0.2 mM (condition 0.2P); second, it was added at 2.0 mM (condition 2.0P); and third, it was periodically supplied ten times at 0.2 mM (condition 0.2PS). TCE concentrations remained stable under conditions 0.2P and 2.0P. In contrast, TCE was completely degraded under condition 0.2PS. TCE/phenol-degrading bacteria were enumerated indirectly and functionally by quantitative PCR. The low-K s (half saturation constant) group of phenol-degrading bacteria, exhibiting high TCE-degrading activity, yielded a 50-fold higher population under condition 0.2PS than under condition 2.0P. The bacterial community structure under condition 0.2PS was studied by denaturing gradient gel electrophoresis targeting the genes encoding 16S rRNA and the largest subunit of multicomponent phenol hydroxylase. Sequence analysis of the major bands detected indicated the predominance of the low-K s group of TCE/phenol-degrading bacteria belonging to β-Proteobacteria. These results suggest that continuous supplementation with phenol at a low concentration increases the population of the low-K s group of TCE/phenol-degrading bacteria.
机译:研究了不同的酚添加条件对含水层土壤群落中三氯乙烯(TCE)生物降解和细菌种群结构的影响。将土壤样品,矿物质,苯酚和三氯乙烯(TCE)在玻璃瓶中混合,然后在三种不同的苯酚进料条件下孵育。首先,仅以0.2 mM(条件0.2P)提供一次苯酚;其次,以2.0 mM(条件2.0P)添加;第三,定期以0.2 mM(条件0.2PS)供应十次。在0.2P和2.0P的条件下,TCE浓度保持稳定。相反,TCE在0.2PS的条件下完全降解。通过定量PCR间接地和功能上计数TCE /降解苯酚的细菌。降解酚的细菌的低K s(半饱和常数)基团具有较高的TCE降解活性,在条件为0.2PS的条件下产生的菌群比在条件为2.0P的条件下产生的种群高50倍。通过变性梯度凝胶电泳,研究了编码16S rRNA和多组分酚羟化酶最大亚基的基因在0.2PS条件下的细菌群落结构。对主要谱带的序列分析表明,属于β-Proteobacteria的TCE /降解苯酚的细菌的低K s 基团占优势。这些结果表明,连续补充低浓度的苯酚会增加TCE /降解苯酚的细菌的低K s 族的数量。

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  • 来源
    《Applied Microbiology and Biotechnology》 |2003年第5期|594-600|共7页
  • 作者单位

    Department of Ecological Engineering Toyohashi University of Technology Aichi 441–8580 Japan;

    Marine Biotechnology Institute Kamaishi Laboratories Kamaishi Iwate 026–0001 Japan;

    Department of Ecological Engineering Toyohashi University of Technology Aichi 441–8580 Japan;

    Marine Biotechnology Institute Kamaishi Laboratories Kamaishi Iwate 026–0001 Japan;

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