Degradation of Phenol via Meta Cleavage Pathway by Pseudomonas fluorescens PU1.

ISRN Microbiology Pub Date : 2012-01-23 Print Date: 2012-01-01 DOI:10.5402/2012/741820
Md Mahiudddin, A N M Fakhruddin, Abdullah-Al-Mahin
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引用次数: 89

Abstract

Degradation of phenolics by members of soil microflora is an important means by which these substances are removed from the environment thus reducing environmental pollution. Biodegradation by microorganisms offers unique opportunities to destroy or render phenolic compounds. A bacterium, PU1, identified as Pseudomonas fluorescens PU1, was investigated for its ability to grow on and degrade phenols as sole carbon sources in aerobic shaking batch culture. The organism degraded up to 1000 ppm of phenol using meta cleavage pathway. The pathways for phenol degradation were proposed by the identification of metabolites and assay of ring cleavage enzymes in cell extracts. Phenol was degraded via catechol with subsequent metaring cleavage. Cell growth increased as the phenol concentrations increased up to 1000 ppm phenol. The biodegradation efficiency, degradation extent, and metabolic pathway of phenol were determined to provide useful clues for further application of this isolate in the engineered bioremediation systems. The paper's results suggest that Pseudomonas fluorescens PU1 strain could be a good candidate for remediation of phenol contaminants from heavily polluted sites.

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荧光假单胞菌PU1通过元裂解途径降解苯酚
土壤微生物群成员对酚类物质的降解是这些物质从环境中去除从而减少环境污染的重要手段。微生物的生物降解为破坏或生成酚类化合物提供了独特的机会。研究了一种被鉴定为荧光假单胞菌(Pseudomonas fluorescens PU1)的细菌在以苯酚为唯一碳源的好氧摇培养中生长和降解苯酚的能力。该生物利用元裂解途径降解高达1000ppm的苯酚。通过细胞提取物中代谢产物的鉴定和环裂解酶的测定,提出了苯酚降解的途径。苯酚通过邻苯二酚降解,随后发生裂解反应。当苯酚浓度增加到1000ppm时,细胞的生长也随之增加。通过对苯酚的生物降解效率、降解程度和代谢途径的测定,为该分离物在工程生物修复系统中的进一步应用提供有用的线索。本研究结果表明,荧光假单胞菌PU1菌株可能是修复重度污染场地苯酚污染物的良好候选菌株。
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