2016
DOI: 10.1007/s13205-016-0456-0
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Biodegradation of butyronitrile and demonstration of its mineralization by Rhodococcus sp. MTB5

Abstract: A nitrile utilizing bacterium Rhodococcus sp. MTB5 was previously isolated in our laboratory by the enrichment culture technique. It is able to utilize butyronitrile as sole carbon, nitrogen, and energy source. Maximum butyronitrile degrading property of this strain has been investigated. Results reveal that 100, 98, and 88 % degradation was achieved for 2, 2.5, and 3 % butyronitrile, respectively. The strain is capable of growing in as high as 5 % butyronitrile concentration. A two-step pathway involving nitr… Show more

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Cited by 9 publications
(2 citation statements)
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“…isolate 241. The polyspecific genus includes numerous species of industrial importance for steroid production [83], biodesulfurization of diesel [84] and biodegradation of nitriles [85]. This genus contains numerous species with active polyketide synthase genes raising the possibility for the production of extensive secondary metabolites through the polyketide pathway [86].…”
Section: Discussionmentioning
confidence: 99%
“…isolate 241. The polyspecific genus includes numerous species of industrial importance for steroid production [83], biodesulfurization of diesel [84] and biodegradation of nitriles [85]. This genus contains numerous species with active polyketide synthase genes raising the possibility for the production of extensive secondary metabolites through the polyketide pathway [86].…”
Section: Discussionmentioning
confidence: 99%
“…The residual concentration of phenolic acids was estimated by HPLC. The % utilization of phenolic acids ( g) at different time intervals of incubation was calculated by using the following expression (Mukram et al 2016);…”
Section: Utilization Of Single Substrate By Individual Strains and Bamentioning
confidence: 99%