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1.
Braz. j. microbiol ; 47(4): 955-964, Oct.-Dec. 2016. tab, graf
Article in English | LILACS | ID: biblio-828202

ABSTRACT

Abstract The possible application of a bacterial strain - Bacillus subtilis R1, isolated from an oil contaminated desert site in India, as biocontrol agent and its biosurfactant in microbial enhanced oil recovery are discussed. The biosurfactant production in minimal medium was carried out at different temperatures and salt concentrations, where it produced an efficient biosurfactant at 30-45 °C and in presence of up to 7% salt. It significantly reduced the surface tension from 66 ± 1.25 mN/m to 29 ± 0.85 mN/m within 24 h. In order to enhance the biosurfactant production, random mutagenesis of B. subtilis R1 was performed using chemical mutagen - ethyl methanesulfonate. Majority of the isolated 42 mutants showed biosurfactant production, but the difference was statistically insignificant as compared with parent strain R1. Therefore none of the mutants were selected for further study, and only parent strain R1 was studied. The biosurfactant was quite stable under harsh conditions for up to 10 days. The biosurfactant was extracted and characterized as similar to the lipopeptide group - surfactins and fengycin. The crude oil displacement experiments using biosurfactant broth in sand pack glass columns showed 33 ± 1.25% additional oil recovery. The strain also showed inhibition of various plant pathogenic fungi on potato dextrose agar medium.


Subject(s)
Bacillus subtilis/metabolism , Lipopeptides/biosynthesis , Surface-Active Agents/metabolism , Surface-Active Agents/pharmacology , Bacillus subtilis/classification , Bacillus subtilis/genetics , RNA, Ribosomal, 16S/genetics , Microbial Sensitivity Tests , Mutagenesis , Spectroscopy, Fourier Transform Infrared , Spectrometry, Mass, Matrix-Assisted Laser Desorption-Ionization , Lipopeptides/pharmacology , Metabolic Engineering , Hydrogen-Ion Concentration , Antifungal Agents/metabolism , Antifungal Agents/pharmacology
2.
Braz. j. microbiol ; 45(3): 885-892, July-Sept. 2014. ilus, graf, tab
Article in English | LILACS | ID: lil-727017

ABSTRACT

India is amongst the largest banana (Musa acuminata) producing countries and thus banana pseudo stem is commonly available agricultural waste to be used as lignocellulosic substrate. Present study focuses on exploitation of banana pseudo stem as a source for bioethanol production from the sugars released due to different chemical and biological pretreatments. Two fungal strains Aspergillus ellipticus and Aspergillus fumigatus reported to be producing cellulolytic enzymes on sugarcane bagasse were used under co-culture fermentation on banana pseudo stem to degrade holocellulose and facilitate maximum release of reducing sugars. The hydrolysate obtained after alkali and microbial treatments was fermented by Saccharomyces cerevisiae NCIM 3570 to produce ethanol. Fermentation of cellulosic hydrolysate (4.1 g%) gave maximum ethanol (17.1 g/L) with yield (84%) and productivity (0.024 g%/h) after 72 h. Some critical aspects of fungal pretreatment for saccharification of cellulosic substrate using A. ellipticus and A. fumigatus for ethanol production by S. cerevisiae NCIM 3570 have been explored in this study. It was observed that pretreated banana pseudo stem can be economically utilized as a cheaper substrate for ethanol production.


Subject(s)
Aspergillus/metabolism , Biofuels , Ethanol/metabolism , Industrial Waste , Musa/metabolism , Plant Stems/metabolism , Saccharomyces cerevisiae/metabolism , Aspergillus/growth & development , India , Saccharomyces cerevisiae/growth & development
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