Literature DB >> 36274123

Medium development and production of carotenoids and exopolysaccharides by the extremophile Rhodothermus marinus DSM16675 in glucose-based defined media.

Israt Jahan Mukti1, Roya R R Sardari2, Thordis Kristjansdottir3,4, Gudmundur O Hreggvidsson3,4, Eva Nordberg Karlsson1.   

Abstract

BACKGROUND: The marine thermophilic bacterium Rhodothermus marinus can degrade many polysaccharides which makes it interesting as a future cell factory. Progress using this bacterium has, however, been hampered by limited knowledge on media and conditions for biomass production, often resulting in low cell yields and low productivity, highlighting the need to develop conditions that allow studies of the microbe on molecular level. This study presents development of defined conditions that support growth, combined with evaluation of production of carotenoids and exopolysaccharides (EPSs) by R. marinus strain DSM 16675.
RESULTS: Two defined media were initially prepared: one including a low addition of yeast extract (modified Wolfe's medium) and one based on specific components (defined medium base, DMB) to which two amino acids (N and Q), were added. Cultivation trials of R. marinus DSM 16675 in shake flasks, resulted in maximum cell densities (OD620 nm) of 2.36 ± 0.057, cell dry weight (CDW) 1.2 ± 0.14 mg/L, total carotenoids 0.59 × 10-3 mg/L, and EPSs 1.72 ± 0.03 mg/L using 2 g/L glucose in DMB. In Wolfe's medium (supplemented by 0.05 g/L yeast extract and 2.5 g/L glucose), maximum OD620 nm was 2.07 ± 0.05, CDW 1.05 ± 0.07 mg/L, total carotenoids 0.39 × 10-3 mg/L, and EPSs 1.74 ± 0.2 mg/L. Growth trials at 5 g/L glucose in these media either failed or resulted in incomplete substrate utilization. To improve reproducibility and increase substrate utilization, a screening of macroelements (e.g. phosphate) in DMB, was combined with use of trace elements and vitamins of the modified Wolfe's medium. The resulting defined minimal R. marinus medium, (DRM), allowed reproducible cultivations to a final OD620nm of 6.6 ± 0.05, CDW 2.85 ± 0.07 mg/L, a maximum specific growth rate (µmax) of 0.26 h-1, total carotenoids 0.77 × 10-3 mg/L and EPSs 3.4 ± 0.17 mg/L in cultivations supplemented with up to 5 g/L glucose.
CONCLUSION: A minimal defined medium (DRM) was designed that resulted in reproducible growth and an almost doubled formation of both total carotenoids and EPSs. Such defined conditions, are necessary for systematic studies of metabolic pathways, to determine the specific requirements for growth and fully characterize metabolite production.
© 2022. The Author(s).

Entities:  

Keywords:  Carotenoids; Defined medium; Exopolysaccharides; Medium development; Rhodothermus marinus DSM 16675; Thermophile

Year:  2022        PMID: 36274123     DOI: 10.1186/s12934-022-01946-7

Source DB:  PubMed          Journal:  Microb Cell Fact        ISSN: 1475-2859            Impact factor:   6.352


  32 in total

1.  Improving fermentation consistency through better inoculum preparation.

Authors:  C Webb; S P Kamat
Journal:  World J Microbiol Biotechnol       Date:  1993-05       Impact factor: 3.312

2.  Complete genome sequence, metabolic model construction and phenotypic characterization of Geobacillus LC300, an extremely thermophilic, fast growing, xylose-utilizing bacterium.

Authors:  Lauren T Cordova; Christopher P Long; Keerthi P Venkataramanan; Maciek R Antoniewicz
Journal:  Metab Eng       Date:  2015-09-21       Impact factor: 9.783

3.  Evaluation of the production of exopolysaccharides by two strains of the thermophilic bacterium Rhodothermus marinus.

Authors:  Roya R R Sardari; Evelina Kulcinskaja; Emanuel Y C Ron; Snædís Björnsdóttir; Ólafur H Friðjónsson; Guðmundur Óli Hreggviðsson; Eva Nordberg Karlsson
Journal:  Carbohydr Polym       Date:  2016-08-21       Impact factor: 9.381

4.  13C metabolic flux analysis of three divergent extremely thermophilic bacteria: Geobacillus sp. LC300, Thermus thermophilus HB8, and Rhodothermus marinus DSM 4252.

Authors:  Lauren T Cordova; Robert M Cipolla; Adti Swarup; Christopher P Long; Maciek R Antoniewicz
Journal:  Metab Eng       Date:  2017-10-14       Impact factor: 9.783

Review 5.  Rhodothermus marinus: physiology and molecular biology.

Authors:  Snaedis H Bjornsdottir; Thorarinn Blondal; Gudmundur O Hreggvidsson; Gudmundur Eggertsson; Solveig Petursdottir; Sigridur Hjorleifsdottir; Sigridur H Thorbjarnardottir; Jakob K Kristjansson
Journal:  Extremophiles       Date:  2005-08-02       Impact factor: 2.395

Review 6.  Strategies for Fermentation Medium Optimization: An In-Depth Review.

Authors:  Vineeta Singh; Shafiul Haque; Ram Niwas; Akansha Srivastava; Mukesh Pasupuleti; C K M Tripathi
Journal:  Front Microbiol       Date:  2017-01-06       Impact factor: 5.640

7.  Elucidation of auxotrophic deficiencies of Bacillus pumilus DSM 18097 to develop a defined minimal medium.

Authors:  Janina Müller; Mario Beckers; Nina Mußmann; Johannes Bongaerts; Jochen Büchs
Journal:  Microb Cell Fact       Date:  2018-07-09       Impact factor: 5.328

Review 8.  Recent Development of Extremophilic Bacteria and Their Application in Biorefinery.

Authors:  Daochen Zhu; Wasiu Adewale Adebisi; Fiaz Ahmad; Sivasamy Sethupathy; Blessing Danso; Jianzhong Sun
Journal:  Front Bioeng Biotechnol       Date:  2020-06-12

9.  Cultivation technology development of Rhodothermus marinus DSM 16675.

Authors:  Emanuel Y C Ron; Roya R R Sardari; Richard Anthony; Ed W J van Niel; Gudmundur O Hreggvidsson; Eva Nordberg-Karlsson
Journal:  Extremophiles       Date:  2019-09-14       Impact factor: 2.395

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