Understanding molecular mechanisms that determine the species life history is important for predicting their susceptibility to environmental change. While specialist species with a narrow niche breadth (NB) maximize their fitness in their optimum habitat, generalists with broad NB adapt to multiple environments. The main objective of this study was to identify general transcriptional patterns that would distinguish bacterial strains characterized by contrasted NBs along a salinity gradient. More specifically, we hypothesized that genes encoding fitness-related traits, such as biomass production have a higher degree of transcriptional regulation in specialists than in generalists, because the fitness of specialists is more variable under env...
All organisms require the ability to respond appropriately to changes in their environment. Inhabiti...
BackgroundExpansion of transcription factors is believed to have played a crucial role in evolution ...
Background: The genetic code is redundant, meaning that most amino acids can be encoded by more than...
WOS:000733372500001International audienceUnderstanding the molecular mechanisms that determine a spe...
Numerous lineage-specific expansions of the transcription factor B (TFB) family in archaea suggests ...
Microbes live in changing environments and change their phenotype via gene regulation in response. A...
Bacterial populations have a remarkable capacity to cope with extreme environmental fluctuations in ...
Background: It has been shown in a number of metagenomic studies that the addition and removal of sp...
Bacterial populations have a remarkable capacity to cope with extreme environmental fluctuations in ...
Bacterial populations have a remarkable capacity to cope with extreme environmental fluctuations in ...
Cultivation in the laboratory is essential for understanding the phenotypic characteristics and envi...
International audienceBiogeochemical cycles are driven by the metabolic activity of microbial commun...
Halophilic bacteria adapted to high salinity (low water activity) provide insight into how they natu...
Natural environments are dynamic, and organisms must sense and respond to changing conditions. One c...
Metagenomic surveys have revealed that natural microbial communities are predominantly composed of s...
All organisms require the ability to respond appropriately to changes in their environment. Inhabiti...
BackgroundExpansion of transcription factors is believed to have played a crucial role in evolution ...
Background: The genetic code is redundant, meaning that most amino acids can be encoded by more than...
WOS:000733372500001International audienceUnderstanding the molecular mechanisms that determine a spe...
Numerous lineage-specific expansions of the transcription factor B (TFB) family in archaea suggests ...
Microbes live in changing environments and change their phenotype via gene regulation in response. A...
Bacterial populations have a remarkable capacity to cope with extreme environmental fluctuations in ...
Background: It has been shown in a number of metagenomic studies that the addition and removal of sp...
Bacterial populations have a remarkable capacity to cope with extreme environmental fluctuations in ...
Bacterial populations have a remarkable capacity to cope with extreme environmental fluctuations in ...
Cultivation in the laboratory is essential for understanding the phenotypic characteristics and envi...
International audienceBiogeochemical cycles are driven by the metabolic activity of microbial commun...
Halophilic bacteria adapted to high salinity (low water activity) provide insight into how they natu...
Natural environments are dynamic, and organisms must sense and respond to changing conditions. One c...
Metagenomic surveys have revealed that natural microbial communities are predominantly composed of s...
All organisms require the ability to respond appropriately to changes in their environment. Inhabiti...
BackgroundExpansion of transcription factors is believed to have played a crucial role in evolution ...
Background: The genetic code is redundant, meaning that most amino acids can be encoded by more than...