Tributyl phosphate biodegradation to butanol and phosphate and utilization by a novel bacterial isolate, Sphingobium sp. strain RSMS

Rangu, Shyam Sunder ; Muralidharan, Bindu ; Tripathi, S. C. ; Apte, Shree Kumar (2014) Tributyl phosphate biodegradation to butanol and phosphate and utilization by a novel bacterial isolate, Sphingobium sp. strain RSMS Applied Microbiology and Biotechnology, 98 (5). pp. 2289-2296. ISSN 0175-7598

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Official URL: http://doi.org/10.1007/s00253-013-5158-5

Related URL: http://dx.doi.org/10.1007/s00253-013-5158-5

Abstract

A Sphingobium sp. strain isolated from radioactive solid waste management site (RSMS) completely degraded 7.98 g/L of tributyl phosphate (TBP) from TBP containing suspensions in 3 days. It also completely degraded 20 mM dibutyl phosphate (DBP) within 2 days. The strain tolerated high levels of TBP and showed excellent stability with respect to TBP degradation over several repeated subcultures. On solid minimal media or Luria Bertani media supplemented with TBP, the RSMS strain showed a clear zone of TBP degradation around the colony. Gas chromatography and spectrophotometry analyses identified DBP as the intermediate and butanol and phosphate as the products of TBP biodegradation. The RSMS strain utilized both TBP and DBP as the sole source of carbon and phosphorous for its growth. The butanol released was completely utilized by the strain as a carbon source thereby leaving no toxic residue in the medium. Degradation of TBP or DBP was found to be suppressed by high concentration of glucose which also inhibited TBP or DBP dependent growth. The results highlight the potential of Sphingobium sp. strain RSMS for bioremediation of TBP and for further molecular investigation.

Item Type:Article
Source:Copyright of this article belongs to Springer Nature
Keywords:Tributyl phosphate, Biodegradation, Sphingobium, Biochemical pathway
ID Code:130721
Deposited On:01 Dec 2022 11:27
Last Modified:01 Dec 2022 11:27

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