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UV and chemically induced Halomonas smyrnensis mutants for enhanced levan productivity.

Authors :
Erkorkmaz, Burak Adnan
Kırtel, Onur
Abaramak, Gülbahar
Nikerel, Emrah
Toksoy Öner, Ebru
Source :
Journal of Biotechnology. Sep2022, Vol. 356, p19-29. 11p.
Publication Year :
2022

Abstract

Halomonas smyrnensis AAD6T is a moderately halophilic bacterium proven to be a powerful biotechnological tool with its ability to accumulate valuable biopolymers such as levan and poly(3-hydroxybutyrate) (PHB). Levan is a fructose homopolymer with β-2,6 fructofuranosidic linkages on the polymer backbone, and its distinctive applications in various industries such as food, pharmaceutical, medical, and chemical have been well-defined. On the other hand, PHB is a promising raw material to produce biodegradable plastics. Although it was shown in our previous studies that H. smyrnensis AAD6T exhibits one of the highest conversion yields of sucrose to levan reported to date, novel strategies are required to overcome high costs of levan production. In this study, we aimed at increasing levan productivity of H. smyrnensis AAD6T cultures using random mutagenesis techniques combined (i.e., ethyl methanesulfate treatment and/or ultraviolet irradiation). After several consecutive treatments, mutant strains BAE2, BAE5 and BAE6 were selected as efficient levan producers, as BAE2 standing out as the most efficient one not only in sucrose utilization and levan production rates, but also in final PHB concentrations. The mutants' whole genome sequences were analysed to determine the mutations occurred. Several mutations in genes related to central carbon metabolism and osmoregulation were found. Our results suggest that random mutagenesis can be a facile and efficient strategy to enhance the performance of extremophiles in adverse conditions. • Random mutagenesis can be a facile and efficient strategy to enhance the performance of extremophiles in adverse conditions. • An improved levan producer Halomonas strain is obtained, characterized and described. • Sucrose utilization and levan production rates, as well as final PHB yields were enhanced. [ABSTRACT FROM AUTHOR]

Details

Language :
English
ISSN :
01681656
Volume :
356
Database :
Academic Search Index
Journal :
Journal of Biotechnology
Publication Type :
Academic Journal
Accession number :
158513314
Full Text :
https://doi.org/10.1016/j.jbiotec.2022.07.005