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)...
Aim. The aim was to study the dynamics of the growth and carotene synthesis by the strains B. amylol...
The genus of yeast Rhodotorula are known to accumulate considerable amounts of carotenoids, which ar...
Marine microorganisms are regarded promising sources of bioactive molecules. For this reason, a mari...
Background: The marine thermophilic bacterium Rhodothermus marinus can degrade many polysaccharides ...
This work presents an evaluation of batch, fed-batch, and sequential batch cultivation techniques fo...
The thermophile Rhodothermus marinus produces extracellular polysaccharides (EPSs) that forms a dist...
The unsustainable human impact on ecology and ensuing climate change necessitates the reduction of g...
The current climate crisis and human overpopulation demands more sustainable technologies for indust...
Background: Rhodotorula is characterized by the absence of ballistoconidia, fermentation ability, an...
Rhodotorula yeasts which are known as carotenogenic yeasts have a great industrial value due to thei...
Rhodotorula glutinis is an aerobic yeast with particular metabolic characteristic that can produce l...
In order to investigate the feasibility of low-cost media for producing well- characterized single-c...
Rhodothermus marinus has the potential to be well suited for biorefineries, as an aerobic thermophil...
Ralstonia eutropha H16 is a bacterial species of considerable industrial importance for the producti...
Carotenoids belong to the most abundant classes of natural pigments with important biological functi...
Aim. The aim was to study the dynamics of the growth and carotene synthesis by the strains B. amylol...
The genus of yeast Rhodotorula are known to accumulate considerable amounts of carotenoids, which ar...
Marine microorganisms are regarded promising sources of bioactive molecules. For this reason, a mari...
Background: The marine thermophilic bacterium Rhodothermus marinus can degrade many polysaccharides ...
This work presents an evaluation of batch, fed-batch, and sequential batch cultivation techniques fo...
The thermophile Rhodothermus marinus produces extracellular polysaccharides (EPSs) that forms a dist...
The unsustainable human impact on ecology and ensuing climate change necessitates the reduction of g...
The current climate crisis and human overpopulation demands more sustainable technologies for indust...
Background: Rhodotorula is characterized by the absence of ballistoconidia, fermentation ability, an...
Rhodotorula yeasts which are known as carotenogenic yeasts have a great industrial value due to thei...
Rhodotorula glutinis is an aerobic yeast with particular metabolic characteristic that can produce l...
In order to investigate the feasibility of low-cost media for producing well- characterized single-c...
Rhodothermus marinus has the potential to be well suited for biorefineries, as an aerobic thermophil...
Ralstonia eutropha H16 is a bacterial species of considerable industrial importance for the producti...
Carotenoids belong to the most abundant classes of natural pigments with important biological functi...
Aim. The aim was to study the dynamics of the growth and carotene synthesis by the strains B. amylol...
The genus of yeast Rhodotorula are known to accumulate considerable amounts of carotenoids, which ar...
Marine microorganisms are regarded promising sources of bioactive molecules. For this reason, a mari...