Biotechnological production in bacteria enables access to numerous valuable chemical compounds. Nowadays, advanced molecular genetic toolsets, enzyme engineering as well as the combinatorial use of biocatalysts, pathways, and circuits even bring new-to-nature compounds within reach. However, the associated substrates and biosynthetic products often cause severe chemical stress to the bacterial hosts. Species of the Pseudomonas clade thus represent especially valuable chassis as they are endowed with multiple stress response mechanisms, which allow them to cope with a variety of harmful chemicals. A built-in cell envelope stress response enables fast adaptations that sustain membrane integrity under adverse conditions. Further, effective exp...
<FONT FACE="MS Sans Serif" SIZE=2>The aim of the research presented in this thesis was to study the ...
The soil bacterium Pseudomonas putida is endowed with a central carbon metabolic network capable of ...
Background: The soil bacterium Pseudomonas putida is a promising platform for the production of indu...
Bacterial biocatalysis constitutes a sustainable alternative for high-value chemicals production by ...
Expansion of the burgeoning biofuels agenda involves not only the design of suitable genetic and met...
Metabolic engineering and synthetic biology offer great prospects in developing microbial cell facto...
Exceeding planetary boundaries, and in particular climate change, is quickly forcing the global econ...
Microbial metabolic engineering has been extensively studied for valuable chemicals synthesis, gener...
BACKGROUND: Pseudomonas putida is a metabolically versatile, genetically accessible, and stress-robu...
Biological processes have demonstrated the potential to offer cost-effective and environment-friendl...
During microbial production of solvent-like compounds, such as advanced biofuels and bulk chemicals,...
Much of contemporary synthetic biology research relies on the use of bacterial chassis for plugging-...
During microbial production of solvent-like compounds, such as advanced biofuels and bulk chemicals,...
The development of a cost-competitive bioprocess requires that the cell factory converts the feedsto...
ABSTRACT Engineering microbial hosts for the production of fungible fuels requires mitigation of lim...
<FONT FACE="MS Sans Serif" SIZE=2>The aim of the research presented in this thesis was to study the ...
The soil bacterium Pseudomonas putida is endowed with a central carbon metabolic network capable of ...
Background: The soil bacterium Pseudomonas putida is a promising platform for the production of indu...
Bacterial biocatalysis constitutes a sustainable alternative for high-value chemicals production by ...
Expansion of the burgeoning biofuels agenda involves not only the design of suitable genetic and met...
Metabolic engineering and synthetic biology offer great prospects in developing microbial cell facto...
Exceeding planetary boundaries, and in particular climate change, is quickly forcing the global econ...
Microbial metabolic engineering has been extensively studied for valuable chemicals synthesis, gener...
BACKGROUND: Pseudomonas putida is a metabolically versatile, genetically accessible, and stress-robu...
Biological processes have demonstrated the potential to offer cost-effective and environment-friendl...
During microbial production of solvent-like compounds, such as advanced biofuels and bulk chemicals,...
Much of contemporary synthetic biology research relies on the use of bacterial chassis for plugging-...
During microbial production of solvent-like compounds, such as advanced biofuels and bulk chemicals,...
The development of a cost-competitive bioprocess requires that the cell factory converts the feedsto...
ABSTRACT Engineering microbial hosts for the production of fungible fuels requires mitigation of lim...
<FONT FACE="MS Sans Serif" SIZE=2>The aim of the research presented in this thesis was to study the ...
The soil bacterium Pseudomonas putida is endowed with a central carbon metabolic network capable of ...
Background: The soil bacterium Pseudomonas putida is a promising platform for the production of indu...