Production of novel biosurfactant by a new yeast species isolated from Prunus mume Sieb. et Zucc.
Kim, J.-S.; Lee, M.; Ki, D.-W.; Kwon, S.-W.; Ko, Y.-J.; Kim, J.-S.; Yun, B.-S.; Kim, S.-J.
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Biosurfactants reduce surface and interfacial tension due to their amphiphilic properties, and are an eco-friendly alternative for chemical surfactants. In this study, a novel yeast strain JAF-11 that produces biosurfactant was selected using drop collapse method, and the properties of the material were investigated. The nucleotide sequences of the strain were compared with closely related strains and identified based on the D1/D2 domain of the large-subunit rDNA (LSU) and internal transcribed spacer (ITS) regions. Neodothiora populina CPC 39399T, the closest species with strain JAF-11 in the phylogenetic tree, showed a sequence similarity of 97.75% for LSU and 94.27% for ITS, respectively. The result suggests that the strain JAF-11 represent a distinct species which cannot be assigned to any existing genus or species in the family Dothideaceae. Strain JAF-11 was able to produce biosurfactant reducing the surface tension of medium to 34.5 mN/m on the 6th day of culture and the result of measuring the critical micelle concentration (CMC) by extracting the crude biosurfactant was found to be 24 mg l-1. The molecular weight 502 of the purified biosurfactant was confirmed by measuring the fast atom bombardment mass spectrum (FAB-MS). The chemical structure was analyzed by measuring 1H nuclear magnetic resonance (NMR), 13C NMR, two-dimensional NMRs of the compound. The molecular formula was C26H46O9, and it was composed of one octanoyl group and two hexanoyl group to myo-inositol moiety. The new biosurfactant is the first report of a compound produced by a novel yeast strain JAF-11. This new biosurfactant is proposed as potential candidate for use in a variety field.
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