Bioresources and Bioprocessing · 2015 · 12 citations · 40 references
EngineeringFood FermentationIn Vitro FermentationEmulsification ActivityExopolymeric Substance ProductionBiotechnologyEmulsionDownstream ProcessingMetabolic EngineeringHalomonas SpEnvironmental MicrobiologyFood BioprocessingMicrobiologyRrna GeneSeed ProcessingChemical BiotechnologyPotential Emulsification IndexHealth Sciences
An exopolymer producing bacterial strain was identified as Halomonas sp. S19 by 16S rRNA gene sequencing isolated from Mandapam, Southeast coast of India. Strain S19 produces a significant amount of exopolymer (320 mg L−1) in a medium optimized with 2.5 % glucose, 0.6 % peptone, 7.5 % salt and pH 7.5 at 35 °C. The exopolymer consists of total sugars (65 %), proteins (4.07 %), uronic acids (8.08 %) and sulphur contents (6.39 %). FT-IR and 1H NMR analysis revealed the presence of functional groups corresponding to carbohydrates, proteins and sulphates. The exopolymer of Halomonas sp. S19 emulsifies different oils. However, 10 % exopolymer shows 55.18, 55.18, 49.81 and 24.62 % of emulsifying activity for sesame oil, coconut oil, paraffin and kerosene. The present study was focused on optimisation of exopolymer production using Box–Behnken experimental design and its possibility for potential emulsification index.
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Colorimetric Method for Determination of Sugars and Related Substances
Michel Dubois, K. A. Gilles, J. K. Hamilton et al. · Analytical Chemistry · 1956 · 51K citations
Compilation of small ribosomal subunit RNA sequences
Peter De Rijk, Jean‐Marc Neefs, Yves Van de Peer et al. · Nucleic Acids Research · 1992 · 975 citations · Full text