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首页> 外文期刊>Journal of environmental sciences >Changes of microbial community structures and functional genes during biodegradation of phenolic compounds under high salt condition
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Changes of microbial community structures and functional genes during biodegradation of phenolic compounds under high salt condition

机译:高盐条件下酚类化合物生物降解过程中微生物群落结构和功能基因的变化

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摘要

The changes of microbial community structures and functional genes during the biodegradation of single phenol and phenol plus p-cresol under high salt condition were explored. It was found that the phenol-fed system (PFS) exhibited stronger degrading abilities and more stable biomass than that of the phenol plus p-cresol-fed system (PCFS). The microbial community structures were revealed by a modern DNA fingerprint technique, ribosomal intergenic spacer analysis (RISA). The results indicated that the microbial community of PFS changed obviously when gradually increased phenol concentration, while PCFS showed a little change. 16S rRNA sequence analysis of the major bands showed that Alcanivorax sp. genus was predominant species during phenolic compounds degradation. Furthermore, amplified functional DNA restriction analysis (AFDRA) on phenol hydroxylase genes showed that the fingerprints were substantially different in the two systems, and the fingerprints were not the same during the different operational periods.
机译:探讨了高盐条件下单酚和苯酚加对甲酚的生物降解过程中微生物群落结构和功能基因的变化。发现与酚加对甲酚给料体系(PCFS)相比,酚给料体系(PFS)表现出更强的降解能力和更稳定的生物量。通过现代DNA指纹技术,核糖体基因间间隔区分析(RISA)揭示了微生物群落结构。结果表明,随着酚浓度的逐渐升高,PFS的微生物群落发生了明显变化,而PCFS则发生了很小的变化。主要条带的16S rRNA序列分析表明Alcanivorax sp。属是酚类化合物降解过程中的主要物种。此外,对酚羟化酶基因的扩增功能性DNA限制性内切酶分析(AFDRA)显示,两个系统中的指纹显着不同,并且在不同的操作期间指纹也不相同。

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