Literature DB >> 22194350

meta-Cleavage of hydroxynaphthoic acids in the degradation of phenanthrene by Sphingobium sp. strain PNB.

Madhumita Roy1, Pratick Khara, Tapan K Dutta.   

Abstract

Polycyclic aromatic hydrocarbons (PAHs) comprise a group of priority organic pollutants that are toxic and/or carcinogenic. Phenanthrene, the simplest PAH among recognized priority pollutants, is commonly used as a model compound for the study of PAH biodegradation. Sphingobium sp. strain PNB, capable of degrading phenanthrene as a sole carbon and energy source, was isolated from a municipal waste-contaminated soil sample. A combination of chromatographic and spectrometric analyses, together with oxygen uptake and enzyme activity studies, suggested the presence of phenanthrene degradation pathways in this strain. Identification of metabolites suggested that initial dioxygenation of phenanthrene took place at both 3,4- and 1,2-carbon positions; meta-cleavage of resultant diols led to the formation of 1-hydroxy-2-naphthoic acid and 2-hydroxy-1-naphthoic acid, respectively. The hydroxynaphthoic acids, in turn, were metabolized by a meta-cleavage pathway(s), leading to the formation of 2,2-dicarboxychromene and 2-hydroxychromene-2-glyoxylic acid, respectively. These metabolites were subsequently transformed to catechol via salicylic acid, which further proceeds towards the tricarboxylic acid cycle leading to complete mineralization of the compound phenanthrene. The present study establishes the metabolism of hydroxynaphthoic acids by a meta-cleavage pathway in the degradation of phenanthrene, expanding our current understanding of microbial degradation of PAHs.

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Year:  2011        PMID: 22194350     DOI: 10.1099/mic.0.053363-0

Source DB:  PubMed          Journal:  Microbiology        ISSN: 1350-0872            Impact factor:   2.777


  8 in total

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Authors:  P Arulazhagan; K Al-Shekri; Q Huda; J J Godon; J M Basahi; D Jeyakumar
Journal:  Extremophiles       Date:  2016-11-16       Impact factor: 2.395

2.  Degradation of petroleum hydrocarbons and treatment of refinery wastewater under saline condition by a halophilic bacterial consortium enriched from marine environment (Red Sea), Jeddah, Saudi Arabia.

Authors:  Mamdoh T Jamal; Arulazhagan Pugazhendi
Journal:  3 Biotech       Date:  2018-05-28       Impact factor: 2.406

3.  Multiple degradation pathways of phenanthrene by Stenotrophomonas maltophilia C6.

Authors:  Shumei Gao; Jong-Su Seo; Jun Wang; Young-Soo Keum; Jianqiang Li; Qing X Li
Journal:  Int Biodeterior Biodegradation       Date:  2013-03-06       Impact factor: 4.320

4.  Direct micro-electric stimulation alters phenanthrene-degrading metabolic activities of Pseudomonas sp. strain DGYH-12 in modified bioelectrochemical system.

Authors:  Xingbiao Wang; Guilong Wan; Liuyang Shi; Xiaolong Gao; Xiaoxia Zhang; Xiaoguang Li; Jianfang Zhao; Beibei Sha; Zhiyong Huang
Journal:  Environ Sci Pollut Res Int       Date:  2019-09-02       Impact factor: 4.223

5.  Draft Whole-Genome Sequence of Sphingobium sp. Strain PNB, a Versatile Polycyclic Aromatic Hydrocarbon-Degrading Bacterium.

Authors:  Madhumita Roy; Tapan K Dutta
Journal:  Microbiol Resour Announc       Date:  2021-12-02

6.  Functional characterization of diverse ring-hydroxylating oxygenases and induction of complex aromatic catabolic gene clusters in Sphingobium sp. PNB.

Authors:  Pratick Khara; Madhumita Roy; Joydeep Chakraborty; Debajyoti Ghosal; Tapan K Dutta
Journal:  FEBS Open Bio       Date:  2014-03-07       Impact factor: 2.693

7.  Biodegradation of polycyclic aromatic hydrocarbons by Novosphingobium pentaromativorans US6-1.

Authors:  Yihua Lyu; Wei Zheng; Tianling Zheng; Yun Tian
Journal:  PLoS One       Date:  2014-07-09       Impact factor: 3.240

8.  Insights into the biodegradation of weathered hydrocarbons in contaminated soils by bioaugmentation and nutrient stimulation.

Authors:  Ying Jiang; Kirsty J Brassington; George Prpich; Graeme I Paton; Kirk T Semple; Simon J T Pollard; Frédéric Coulon
Journal:  Chemosphere       Date:  2016-07-18       Impact factor: 7.086

  8 in total

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