The marine oligotrophic ultramicrobacterium Sphingomonas alaskensis RB2256 has a physiology that is distinctly different from that of typical copiotrophic marine bacteria, such as Vibrio angustum S14. This includes a high level of inherent stress resistance and the absence of starvation-induced stress resistance to hydrogen peroxide. In addition to periods of starvation in the ocean, slow nutrient-limited growth is likely to be encountered by oligotrophic bacteria for substantial periods of time. In this study we examined the effects of growth rate on the resistance of S. alaskensis RB2256 to hydrogen peroxide under carbon or nitrogen limitation conditions in nutrient-limited chemostats. Glucose-limited cultures of S. alaskensis RB2256 at a...
International audienceHigh hydrostatic pressure (HHP) batch cultivation of a model extremophile, Arc...
Reactive oxygen species such as hydrogen peroxide have the potential to alter metabolic rates of mar...
Survival of Bacteroides fragilis in the presence of oxygen was dependent on the ability of bacteria ...
The marine oligotrophic ultramicrobacterium Sphingomonas alaskensis RB2256 has a physiology that is ...
Sphingopyxis (formerly Sphingomonas) alaskensis, a numerically abundant species isolated from Alaska...
Purpose: Aquatic bacteria of the genus Vibrio include animal and human pathogens. The occurrence of ...
Indigenous heterotrophic marine bacteria are of great importance to global nutrient cycling. Predomi...
Sulfate-reducing bacteria and methanogens are found to coexist in a variety of anoxic marine sedimen...
The unicellular cyanobacterium Prochlorococcus is the numerically dominant photosynthetic organism t...
Sphingomonas sp. strain RB2256 was isolated from Resurrection Bay in Alaska and possibly represents ...
Sphingopyxis alaskensis is a marine member of the Alphaproteobacteria that is adapted to heterotroph...
Many heterotrophic bacteria possess adaptations for prolonged survival under carbon and energy limit...
<div><p>Reactive oxygen species such as hydrogen peroxide have the potential to alter metabolic rate...
Oceans are powered by active, metabolically diverse microorganisms, which are important in regulatin...
A freshwater Spirillum sp., which apparently belongs to a niche of low nutritional status, accumulat...
International audienceHigh hydrostatic pressure (HHP) batch cultivation of a model extremophile, Arc...
Reactive oxygen species such as hydrogen peroxide have the potential to alter metabolic rates of mar...
Survival of Bacteroides fragilis in the presence of oxygen was dependent on the ability of bacteria ...
The marine oligotrophic ultramicrobacterium Sphingomonas alaskensis RB2256 has a physiology that is ...
Sphingopyxis (formerly Sphingomonas) alaskensis, a numerically abundant species isolated from Alaska...
Purpose: Aquatic bacteria of the genus Vibrio include animal and human pathogens. The occurrence of ...
Indigenous heterotrophic marine bacteria are of great importance to global nutrient cycling. Predomi...
Sulfate-reducing bacteria and methanogens are found to coexist in a variety of anoxic marine sedimen...
The unicellular cyanobacterium Prochlorococcus is the numerically dominant photosynthetic organism t...
Sphingomonas sp. strain RB2256 was isolated from Resurrection Bay in Alaska and possibly represents ...
Sphingopyxis alaskensis is a marine member of the Alphaproteobacteria that is adapted to heterotroph...
Many heterotrophic bacteria possess adaptations for prolonged survival under carbon and energy limit...
<div><p>Reactive oxygen species such as hydrogen peroxide have the potential to alter metabolic rate...
Oceans are powered by active, metabolically diverse microorganisms, which are important in regulatin...
A freshwater Spirillum sp., which apparently belongs to a niche of low nutritional status, accumulat...
International audienceHigh hydrostatic pressure (HHP) batch cultivation of a model extremophile, Arc...
Reactive oxygen species such as hydrogen peroxide have the potential to alter metabolic rates of mar...
Survival of Bacteroides fragilis in the presence of oxygen was dependent on the ability of bacteria ...