<p>Bacterial pathogens are capable of surviving in almost all types of environmental conditions on the earth. They have tenacity to survive in extremely harsh and varied conditions ranging from hot springs to ice-cold arctic region. The survival of bacteria under such conditions depends on its ability to recognize and respond to such intense changes with proper adjustment in protein activity and gene expression. Stress responses are transitory. A change in the environment is detected first by the cell which adjusts its gene expression to neutralize the effects of the stress on its genetic components and after that regains a steady state. In this study, stress produced at elevated temperature in bacterial cells and its effect on virulence of...
Bacterial stress response and virulence are two key factors that guarantee the survival and propagat...
Heat shock response is a classical stress-induced regulatory system in bacteria, characterized by ex...
Synthetic biology applies engineering principles to rationally design artificial biological systems,...
Bacterial pathogens survive under two entirely different conditions, namely, their natural environme...
Bacterial pathogens survive under two entirely different conditions, namely, their natural environme...
The heat-shock response is a mechanism of cellular protection against sudden adverse environmental g...
Bacteria thrive in virtually all environments. Like all other living organisms, bacteria may encount...
Environmental factors like temperature, pressure, and pH partly shaped the evolution of life. As lif...
Stress responses are of particular importance to microorganisms, because their habitats are subjecte...
Environmental factors like temperature, pressure, and pH partly shaped the evolution of life. As lif...
Bacterial stress responses provide them the opportu-nity to survive hostile environments, proliferat...
A better understanding of the impact of antibiotics on bacteria is required to increase the efficien...
Temperature serves as a cue to regulate gene expression in Escherichia coli and other bacteria. Usin...
Stress can be broadly defi ned as any unfavourable condition. A given condition may or may not be st...
Response to heat stress (HSR) is a key stress response for endurance in Escherichia coli mediated by...
Bacterial stress response and virulence are two key factors that guarantee the survival and propagat...
Heat shock response is a classical stress-induced regulatory system in bacteria, characterized by ex...
Synthetic biology applies engineering principles to rationally design artificial biological systems,...
Bacterial pathogens survive under two entirely different conditions, namely, their natural environme...
Bacterial pathogens survive under two entirely different conditions, namely, their natural environme...
The heat-shock response is a mechanism of cellular protection against sudden adverse environmental g...
Bacteria thrive in virtually all environments. Like all other living organisms, bacteria may encount...
Environmental factors like temperature, pressure, and pH partly shaped the evolution of life. As lif...
Stress responses are of particular importance to microorganisms, because their habitats are subjecte...
Environmental factors like temperature, pressure, and pH partly shaped the evolution of life. As lif...
Bacterial stress responses provide them the opportu-nity to survive hostile environments, proliferat...
A better understanding of the impact of antibiotics on bacteria is required to increase the efficien...
Temperature serves as a cue to regulate gene expression in Escherichia coli and other bacteria. Usin...
Stress can be broadly defi ned as any unfavourable condition. A given condition may or may not be st...
Response to heat stress (HSR) is a key stress response for endurance in Escherichia coli mediated by...
Bacterial stress response and virulence are two key factors that guarantee the survival and propagat...
Heat shock response is a classical stress-induced regulatory system in bacteria, characterized by ex...
Synthetic biology applies engineering principles to rationally design artificial biological systems,...