Identification and characterization of chitinase producing marine microorganism: Unleashing the potential of chitooligosaccharides for bioethanol synthesis
| dc.contributor.author | Atheena, P.V. | |
| dc.contributor.author | Rajesh, K.M. | |
| dc.contributor.author | Raval, K. | |
| dc.contributor.author | Subbalaxmi, S. | |
| dc.contributor.author | Raval, R. | |
| dc.date.accessioned | 2026-02-04T12:25:01Z | |
| dc.date.issued | 2024 | |
| dc.description.abstract | The dwindling supply of the petroleum product and its carbon footprint has initiated search for a sustainable fuel and alternate feed-stocks. One such underexplored feedstock is chitin, a waste derived from sea food processing. The limitation of insolubility and crystallinity inherent in chitin is addressed with the chitin hydrolysates. In the present study, a chitinases producing marine isolate was isolated from the sediments of Arabian Sea from a depth of 20 m. In order to increase the expression of the chitinases, sequential optimisation using one factor at a time and Taguchi experimental designs were employed which resulted in a yield of 13.46 U/mL which was 2.62 fold higher than the initial bioprocess condition values. In a two-step refinery protocol, Candida albicans was evolved towards chitooligosaccharides using chemically synthesized hydrolysates. In a fed –batch fermentation design the Candida yielded a 12.8 % conversion of these commercial chitin oligosaccharides into bioethanol in a run time of 48 h. This is the first report demonstrating the potential of Candida to utilise chitin oligosaccharides for the production of bioethanol. © 2024 The Author(s) | |
| dc.identifier.citation | International Journal of Biological Macromolecules, 2024, 265, , pp. - | |
| dc.identifier.issn | 1418130 | |
| dc.identifier.uri | https://doi.org/10.1016/j.ijbiomac.2024.130846 | |
| dc.identifier.uri | https://idr.nitk.ac.in/handle/123456789/21196 | |
| dc.publisher | Elsevier B.V. | |
| dc.subject | Bioethanol | |
| dc.subject | Candida | |
| dc.subject | Carbon footprint | |
| dc.subject | Chitin | |
| dc.subject | Crystallinity | |
| dc.subject | Fermentation | |
| dc.subject | Food processing | |
| dc.subject | Oligosaccharides | |
| dc.subject | Alternate feed | |
| dc.subject | Bio-ethanols | |
| dc.subject | Chitin oligosaccharide | |
| dc.subject | Chitinases | |
| dc.subject | Chitooligosaccharides | |
| dc.subject | Cristallinity | |
| dc.subject | Feed stock | |
| dc.subject | Marine microorganism | |
| dc.subject | Sustainable fuels | |
| dc.subject | Taguchi | |
| dc.subject | Yeast | |
| dc.subject | bioethanol | |
| dc.subject | chitinase | |
| dc.subject | chitooligosaccharide | |
| dc.subject | genomic DNA | |
| dc.subject | oligosaccharide | |
| dc.subject | RNA 16S | |
| dc.subject | unclassified drug | |
| dc.subject | chitin | |
| dc.subject | chitosan | |
| dc.subject | oligochitosan | |
| dc.subject | agitation speed | |
| dc.subject | Article | |
| dc.subject | Aspergillus terreus | |
| dc.subject | Bacillus cereus | |
| dc.subject | Bacillus thuringiensis | |
| dc.subject | bacterial cell | |
| dc.subject | bacterial strain | |
| dc.subject | bacterium culture | |
| dc.subject | bacterium isolation | |
| dc.subject | Candida albicans | |
| dc.subject | capillary gas chromatography | |
| dc.subject | chitin concentration | |
| dc.subject | enzyme activity | |
| dc.subject | fed batch fermentation | |
| dc.subject | fermentation time | |
| dc.subject | inoculum percentage | |
| dc.subject | marine bacterium | |
| dc.subject | nonhuman | |
| dc.subject | parameters | |
| dc.subject | phylogenetic tree | |
| dc.subject | Saccharomyces cerevisiae | |
| dc.subject | synthesis | |
| dc.subject | Talaromyces funiculosus | |
| dc.subject | Chitosan | |
| dc.title | Identification and characterization of chitinase producing marine microorganism: Unleashing the potential of chitooligosaccharides for bioethanol synthesis |
