The alkaliphilic halotolerant bacterium Bacillus sp. N16-5 is often exposed to salt stress in its natural habitats. In this study, we used one-colour microarrays to investigate adaptive responses of Bacillus sp. N16-5 transcriptome to long-term growth at different salinity levels (0%, 2%, 8%, and 15% NaCl) and to a sudden salt increase from 0% to 8% NaCl. The common strategies used by bacteria to survive and grow at high salt conditions, such as K+ uptake, Na+ efflux, and the accumulation of organic compatible solutes (glycine betaine and ectoine), were observed in Bacillus sp. N16-5. The genes of SigB regulon involved in general stress responses and chaperone-encoding genes were also induced by high salt concentration. Moreover, the genes ...
Due to its topographical position and climatic conditions, the Qinghai–Tibet Plateau possesses abund...
The halophilic archaea (haloarchaea) live in hyersaline environments such as salt lakes, salt ponds ...
Rapid genetic and phenotypic adaptation of the sulfate-reducing bacterium Desulfovibrio vulgaris Hil...
<div><p>The alkaliphilic halotolerant bacterium <i>Bacillus</i> sp. N16-5 is often exposed to salt s...
The alkaliphilic halotolerant bacterium Bacillus sp. N16-5 is often exposed to salt stress in its na...
Bacteria are able to cope with the challenges of a sudden increase in salinity by activating adaptat...
Bacteria are able to cope with the challenges of sudden increase of salinity by activating adaptatio...
In its natural habitat, the soil bacterium Bacillus subtilis often has to cope with fluctuating osmo...
Halophilic bacteria adapted to high salinity (low water activity) provide insight into how they natu...
In the present study, we identified salt stress tolerant genes from the marine bacterium Staphylococ...
In an effort to investigate effects of environmental stressors on bacteria that are found to co-exis...
© The Author(s).[Background]: In nature, microorganisms have to adapt to long-term stressful conditi...
The halophilic gamma-proteobacterium Halomonas elongata DSM 2581(T) thrives at salt concentrations w...
The ability of Desulfovibrio vulgaris Hildenborough to reduce, and therefore contain, toxic and radi...
One of the greatest challenges in biology is to understand the interaction between genotype and envi...
Due to its topographical position and climatic conditions, the Qinghai–Tibet Plateau possesses abund...
The halophilic archaea (haloarchaea) live in hyersaline environments such as salt lakes, salt ponds ...
Rapid genetic and phenotypic adaptation of the sulfate-reducing bacterium Desulfovibrio vulgaris Hil...
<div><p>The alkaliphilic halotolerant bacterium <i>Bacillus</i> sp. N16-5 is often exposed to salt s...
The alkaliphilic halotolerant bacterium Bacillus sp. N16-5 is often exposed to salt stress in its na...
Bacteria are able to cope with the challenges of a sudden increase in salinity by activating adaptat...
Bacteria are able to cope with the challenges of sudden increase of salinity by activating adaptatio...
In its natural habitat, the soil bacterium Bacillus subtilis often has to cope with fluctuating osmo...
Halophilic bacteria adapted to high salinity (low water activity) provide insight into how they natu...
In the present study, we identified salt stress tolerant genes from the marine bacterium Staphylococ...
In an effort to investigate effects of environmental stressors on bacteria that are found to co-exis...
© The Author(s).[Background]: In nature, microorganisms have to adapt to long-term stressful conditi...
The halophilic gamma-proteobacterium Halomonas elongata DSM 2581(T) thrives at salt concentrations w...
The ability of Desulfovibrio vulgaris Hildenborough to reduce, and therefore contain, toxic and radi...
One of the greatest challenges in biology is to understand the interaction between genotype and envi...
Due to its topographical position and climatic conditions, the Qinghai–Tibet Plateau possesses abund...
The halophilic archaea (haloarchaea) live in hyersaline environments such as salt lakes, salt ponds ...
Rapid genetic and phenotypic adaptation of the sulfate-reducing bacterium Desulfovibrio vulgaris Hil...