Literature DB >> 20886260

Adhesion to the hydrocarbon phase increases phenanthrene degradation by Pseudomonas fluorescens LP6a.

Hassan Abbasnezhad1, Julia M Foght, Murray R Gray.   

Abstract

Microbial adhesion is an important factor that can influence biodegradation of poorly water soluble hydrocarbons such as phenanthrene. This study examined how adhesion to an oil-water interface, as mediated by 1-dodecanol, enhanced phenanthrene biodegradation by Pseudomonas fluorescens LP6a. Phenanthrene was dissolved in heptamethylnonane and added to the aerobic aqueous growth medium to form a two phase mixture. 1-Dodecanol was non-toxic and furthermore could be biodegraded slowly by this strain. The alcohol promoted adhesion of the bacterial cells to the oil-water interface without significantly changing the interfacial or surface tension. Introducing 1-dodecanol at concentrations from 217 to 4,100 mg l(-1) increased phenanthrene biodegradation by about 30% after 120 h incubation. After 100 h incubation, cultures initially containing 120 or 160 mg l(-1) 1-dodecanol had mineralized >10% of the phenanthrene whereas those incubated without 1-dodecanol had mineralized only 4.5%. The production and accumulation of putative phenanthrene metabolites in the aqueous phase of cultures likewise increased in response to the addition of 1-dodecanol. The results suggest that enhanced adhesion of bacterial cells to the oil-water interface was the main factor responsible for enhanced biodegradation of phenanthrene to presumed polar metabolites and to CO(2).

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Year:  2010        PMID: 20886260     DOI: 10.1007/s10532-010-9421-5

Source DB:  PubMed          Journal:  Biodegradation        ISSN: 0923-9820            Impact factor:   3.909


  3 in total

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Authors:  Sally Otto; Estelle P Bruni; Hauke Harms; Lukas Y Wick
Journal:  ISME J       Date:  2016-11-08       Impact factor: 10.302

2.  Evidence for surfactant production by the haloarchaeon Haloferax sp. MSNC14 in hydrocarbon-containing media.

Authors:  Ikram Djeridi; Cécile Militon; Vincent Grossi; Philippe Cuny
Journal:  Extremophiles       Date:  2013-06-09       Impact factor: 2.395

3.  Quantification of Naphthalene Dioxygenase (NahAC) and Catechol Dioxygenase (C23O) Catabolic Genes Produced by Phenanthrene-Degrading Pseudomonas fluorescens AH-40.

Authors:  Asmaa M M Mawad; Wael S Abdel-Mageed; Abd E-L Hesham
Journal:  Curr Genomics       Date:  2020-02       Impact factor: 2.236

  3 in total

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