The ability to adapt to diverse stresses is critical for the survival of bacteria in the environment. Here we address how Enterobacteriaceae adapt to dehydration and polymyxins. Dehydration is an environmental stress that many bacteria encounter in their ecological niches. However, the mechanisms involved in surviving dehydration are not well understood, particularly in Gram-negative bacteria. In Chapter 2 we develop a dehydration assay and conduct genetic screens to identify genes important for dehydration survival in Escherichia coli. We identify several key regulators that contribute to dehydration survival, including the transcriptional regulator DksA and the general stress response regulator RpoS. In addition to studying dehydration to...
Resistance to semi-dry environments has been considered a crucial trait for superior growth and surv...
Strategies to prevent the development of antibiotic resistance in bacteria are needed to reduce the ...
The Enterobacteriaceae family comprises several important foodborne pathogens and spoilage bacteria....
The ability to adapt to diverse stresses is critical for the survival of bacteria in the environment...
The ability to adapt to diverse stresses is critical for the survival of bacteria in the environment...
Bacterial growth and survival critically hinges on the ability to rapidly adapt to ever-changing env...
Bacteria are constantly faced to stress situations in their ecological niches, the food and the host...
Actinomycetes are an abundant bacterial group in soil, with a critical role in the decomposition of ...
For the opportunistic pathogen Acinetobacter baumannii, desiccation tolerance is thought to contribu...
Pathogens that infect the gastrointestinal and respiratory tracts are subjected to intense pressure ...
The mechanisms of the bacterial response to biocides are poorly understood, despite their broad appl...
The use of E. coli as an indicator organism for faecal contamination in the environment, particularl...
For the opportunistic pathogen Acinetobacter baumannii, desiccation tolerance is thought to contribu...
Antibiotic resistant pathogens cause more than 2.8 million infections and 35000 deaths in the United...
Copyright: © 2020 Yamada et al. This is an open access article distributed under the terms of the Cr...
Resistance to semi-dry environments has been considered a crucial trait for superior growth and surv...
Strategies to prevent the development of antibiotic resistance in bacteria are needed to reduce the ...
The Enterobacteriaceae family comprises several important foodborne pathogens and spoilage bacteria....
The ability to adapt to diverse stresses is critical for the survival of bacteria in the environment...
The ability to adapt to diverse stresses is critical for the survival of bacteria in the environment...
Bacterial growth and survival critically hinges on the ability to rapidly adapt to ever-changing env...
Bacteria are constantly faced to stress situations in their ecological niches, the food and the host...
Actinomycetes are an abundant bacterial group in soil, with a critical role in the decomposition of ...
For the opportunistic pathogen Acinetobacter baumannii, desiccation tolerance is thought to contribu...
Pathogens that infect the gastrointestinal and respiratory tracts are subjected to intense pressure ...
The mechanisms of the bacterial response to biocides are poorly understood, despite their broad appl...
The use of E. coli as an indicator organism for faecal contamination in the environment, particularl...
For the opportunistic pathogen Acinetobacter baumannii, desiccation tolerance is thought to contribu...
Antibiotic resistant pathogens cause more than 2.8 million infections and 35000 deaths in the United...
Copyright: © 2020 Yamada et al. This is an open access article distributed under the terms of the Cr...
Resistance to semi-dry environments has been considered a crucial trait for superior growth and surv...
Strategies to prevent the development of antibiotic resistance in bacteria are needed to reduce the ...
The Enterobacteriaceae family comprises several important foodborne pathogens and spoilage bacteria....