BACKGROUND: Microbial conversion of biomass to fuels or chemicals is an attractive alternative for fossil-based fuels and chemicals. Thermophilic microorganisms have several operational advantages as a production host over mesophilic organisms, such as low cooling costs, reduced contamination risks and a process temperature matching that of commercial hydrolytic enzymes, enabling simultaneous saccharification and fermentation at higher efficiencies and with less enzymes. However, genetic tools for biotechnologically relevant thermophiles are still in their infancy. In this study we developed a markerless gene deletion method for the thermophile Bacillus smithii and we report the first metabolic engineering of this species as a potential pla...
<p>Bacillus smithii is a facultatively anaerobic, thermophilic bacterium able to use a variety of su...
<p>Bacillus smithii is a facultatively anaerobic, thermophilic bacterium able to use a variety of su...
Although Escherichia coli and Bacillus subtilis are the most prominent bacterial hosts for recombina...
BACKGROUND: Microbial conversion of biomass to fuels or chemicals is an attractive alternative for f...
BACKGROUND: Microbial conversion of biomass to fuels or chemicals is an attractive alternative for f...
Due to the globally increasing demand for chemicals and fuels and the high environmental impact and ...
Due to the globally increasing demand for chemicals and fuels and the high environmental impact and ...
Thermophilic bacteria are regarded as attractive production organisms for cost-efficient conversion ...
Contains fulltext : 172189.pdf (publisher's version ) (Open Access)Bacillus smithi...
Thermophilic bacteria are regarded as attractive production organisms for cost-efficient conversion ...
Bacillus coagulans has good potential as an industrial production organism for platform chemicals fr...
Bacillus coagulans has good potential as an industrial production organism for platform chemicals fr...
Bacillus coagulans has good potential as an industrial production organism for platform chemicals fr...
Bacillus coagulans has good potential as an industrial production organism for platform chemicals fr...
Bacillus coagulans has good potential as an industrial production organism for platform chemicals fr...
<p>Bacillus smithii is a facultatively anaerobic, thermophilic bacterium able to use a variety of su...
<p>Bacillus smithii is a facultatively anaerobic, thermophilic bacterium able to use a variety of su...
Although Escherichia coli and Bacillus subtilis are the most prominent bacterial hosts for recombina...
BACKGROUND: Microbial conversion of biomass to fuels or chemicals is an attractive alternative for f...
BACKGROUND: Microbial conversion of biomass to fuels or chemicals is an attractive alternative for f...
Due to the globally increasing demand for chemicals and fuels and the high environmental impact and ...
Due to the globally increasing demand for chemicals and fuels and the high environmental impact and ...
Thermophilic bacteria are regarded as attractive production organisms for cost-efficient conversion ...
Contains fulltext : 172189.pdf (publisher's version ) (Open Access)Bacillus smithi...
Thermophilic bacteria are regarded as attractive production organisms for cost-efficient conversion ...
Bacillus coagulans has good potential as an industrial production organism for platform chemicals fr...
Bacillus coagulans has good potential as an industrial production organism for platform chemicals fr...
Bacillus coagulans has good potential as an industrial production organism for platform chemicals fr...
Bacillus coagulans has good potential as an industrial production organism for platform chemicals fr...
Bacillus coagulans has good potential as an industrial production organism for platform chemicals fr...
<p>Bacillus smithii is a facultatively anaerobic, thermophilic bacterium able to use a variety of su...
<p>Bacillus smithii is a facultatively anaerobic, thermophilic bacterium able to use a variety of su...
Although Escherichia coli and Bacillus subtilis are the most prominent bacterial hosts for recombina...