Genetic engineering tools are under continuous development. However, hesitation by consumers and governments regarding consumption of genetically modified organism (GMO) affects taking advantage of developments in biotechnology. While being a complicated issue to address, this challenge inspired us to investigate whether it is possible to engineer organisms without altering their wild-type genomes, but with the same customizability level offered by genetic engineering; that is, having the capacity of expressing foreign proteins not codified by the wild-type genome. I used B. subtilis spores as a model organism for this purpose. I took advantage of the sporulation process during which two compartments with differential expression, or diffe...
Bacterial spores are surrounded by the coat, a multilayered shell that contributes in protecting the...
The differentiation of the bacterium Bacillus subtilis into a dormant spore is among the most well-c...
Domesticated laboratory strains of Bacillus subtilis readily take up and integrate exogenous DNA. In...
Bacillus subtilis is a gram-positive model bacterium that forms endospores as a response to nutrient...
The increasing demand for development of sustainable production processes has extended the applicati...
Bacterial spore formers have been the focus of intense study for almost half a century centered prim...
Genome engineering without leaving foreign DNA be-hind requires an efficient counter-selectable mark...
Domesticated laboratory strains of Bacillus subtilis readily take up and integrate exogenous DNA. In...
Bacillus subtilis is a commonly used commercial specie with broad applications in the fields of bioe...
© 2016 Meeske et al. The differentiation of the bacterium Bacillus subtilis into a dormant spore is ...
Domesticated laboratory strains of Bacillus subtilis readily take up and integrate exogenous DNA. In...
Through the application of engineering principles, synthetic biology provides the means to harness t...
The differentiation of the bacterium Bacillus subtilis into a dormant spore is among the most well-c...
Cell-free transcription-translation systems were originally applied towards in vitro protein product...
Upon starvation, the soil bacterium <i>Bacillus subtilis</i> forms an intracellular, metabolically i...
Bacterial spores are surrounded by the coat, a multilayered shell that contributes in protecting the...
The differentiation of the bacterium Bacillus subtilis into a dormant spore is among the most well-c...
Domesticated laboratory strains of Bacillus subtilis readily take up and integrate exogenous DNA. In...
Bacillus subtilis is a gram-positive model bacterium that forms endospores as a response to nutrient...
The increasing demand for development of sustainable production processes has extended the applicati...
Bacterial spore formers have been the focus of intense study for almost half a century centered prim...
Genome engineering without leaving foreign DNA be-hind requires an efficient counter-selectable mark...
Domesticated laboratory strains of Bacillus subtilis readily take up and integrate exogenous DNA. In...
Bacillus subtilis is a commonly used commercial specie with broad applications in the fields of bioe...
© 2016 Meeske et al. The differentiation of the bacterium Bacillus subtilis into a dormant spore is ...
Domesticated laboratory strains of Bacillus subtilis readily take up and integrate exogenous DNA. In...
Through the application of engineering principles, synthetic biology provides the means to harness t...
The differentiation of the bacterium Bacillus subtilis into a dormant spore is among the most well-c...
Cell-free transcription-translation systems were originally applied towards in vitro protein product...
Upon starvation, the soil bacterium <i>Bacillus subtilis</i> forms an intracellular, metabolically i...
Bacterial spores are surrounded by the coat, a multilayered shell that contributes in protecting the...
The differentiation of the bacterium Bacillus subtilis into a dormant spore is among the most well-c...
Domesticated laboratory strains of Bacillus subtilis readily take up and integrate exogenous DNA. In...