The role of salicylate and biosurfactant in inducing phenanthrene degradation in batch soil slurries

被引:0
作者
Avery Gottfried
Naresh Singhal
Roy Elliot
Simon Swift
机构
[1] University of Auckland,Department of Civil and Environmental Engineering
[2] University of Auckland,Department of Molecular Medicine and Pathology
[3] The University of Auckland,Department of Civil and Environmental Engineering
来源
Applied Microbiology and Biotechnology | 2010年 / 86卷
关键词
Bioremediation; Biosurfactant; Salicylate; Polycyclic aromatic hydrocarbons;
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学科分类号
摘要
The majority of polycyclic aromatic hydrocarbons (PAHs) sorb strongly to soil organic matter posing a complex barrier to biodegradation. Biosurfactants can increase soil-sorbed PAHs desorption, solubilisation, and dissolution into the aqueous phase, which increases the bioavailability of PAHs for microbial metabolism. In this study, biosurfactants, carbon sources, and metabolic pathway inducers were tested as stimulators of microorganism degradation. Phenanthrene served as a model PAH and Pseudomonas putida ATCC 17484 was used as the phenanthrene degrading microorganism for the liquid solutions and soil used in this investigation. Bench-scale trials demonstrated that the addition of rhamnolipid biosurfactant increases the apparent aqueous solubility of phenanthrene, and overall degradation by at least 20% when combined with salicylate or glucose in liquid solution, when compared to solutions that contained salicylate or glucose with no biosurfactant. However, salicylate addition, with no biosurfactant addition, increased the total degradation of phenanthrene 30% more than liquid systems with only biosurfactant addition. In soil slurries, small amounts of biosurfactant (0.25 g/L) showed a significant increase in total removal when only biosurfactant was added. In soil slurries containing salicylate, the effects of biosurfactant additions were negligible as there was greater than 90% removal, regardless of the biosurfactant concentration. The results of experiments performed in this study provide further evidence that an in situ enhancement strategy for phenanthrene degradation could focus on providing additional carbon substrates to induce metabolic pathway catabolic enzyme production, if degradation pathway intermediates are known.
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页码:1563 / 1571
页数:8
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共 107 条
[1]  
Basu A(2009)Sequential utilization of substrates by Microbiol Res 164 8-338
[2]  
Das D(1993) CSV86: Signatures of intermediate metabolites and online measurements Curr Opin Biotechnol 4 331-113
[3]  
Bapat P(2008)Biodegradation of polycyclic aromatic hydrocarbons Indian J Microbiol 48 95-439
[4]  
Wangikar PP(1999)Bacterial metabolism of polycyclic aromatic hydrocarbons: strategies for bioremediation Environ Technol 33 435-280
[5]  
Phale PS(2002)Salicylate stimulates the degradation of high-molecular weight polycyclic aromatic hydrocarbons by J Environ Qual 31 275-973
[6]  
Cerniglia CE(2006) P15 J Microbiol Biotechnol 16 969-1133
[7]  
Chauhan A(2001)Combined effect of natural organic matter and surfactants on the apparent solubility of polycyclic aromatic hydrocarbons J Environ Qual 30 1126-7554
[8]  
Fazlurrahman J(1992)Effects of intermediate metabolites on phenanthrene biodegradation J Bacteriol 174 7542-4115
[9]  
Oakeshott R(1997)Phenanthrene degradation in soils co-inoculated with phenanthrene-degrading and biosurfactant-producing bacteria Appl Environ Microbiol 63 4111-84
[10]  
Jain S-H(2005)Bacterial metabolism of naphthalene: Construction and use of recombinant bacteria to study ring cleavage of 1, 2-dihydroxynaphthalene and subsequent reactions Environ Pollut 133 71-2443