Membrane fluidity is critical for proper membrane function and is regulated in part by the proportion of unsaturated fatty acids present in membrane lipids. The proportion of these lipids in turn varies with temperature and may contribute to temperature adaptation in poikilothermic organisms. The fundamental question posed in this study was whether the unsaturation of fatty acids contributes to the ability to adapt to temperature stress in Dictyostelium. First, fatty acid composition was analysed and it was observed that the relative proportions of dienoic acids changed with temperature. To investigate the role of dienoic fatty acids in temperature adaptation, null mutants were created in the two known D5 fatty acid desaturases (FadA and Fa...
Temperature is a key environmental factor inducing phenotypic plasticity in a wide range of behavior...
Temperature is a key environmental factor inducing phenotypic plasticity in a wide range of behavior...
A moderate change in ambient temperature can lead to vital physiological and biochemical adjustments...
The homeoviscous adaptation hypothesis states that the relative abundance of polyunsaturated fatty a...
The homeoviscous adaptation hypothesis states that the relative abundance of polyunsaturated fatty a...
The homeoviscous adaptation hypothesis states that the relative abundance of polyunsaturated fatty a...
The homeoviscous adaptation hypothesis states that the relative abundance of polyunsaturated fatty a...
The homeoviscous adaptation hypothesis states that the relative abundance of polyunsaturated fatty a...
Abstract: The free-living eukaryotic protozoan Tetrahymena is a potentially useful model for the the...
Fluidity of a given membrane decreases at lower ambient temperatures, whereas it rises at increasing...
Fluidity of a given membrane decreases at lower ambient temperatures, whereas it rises at increasing...
AbstractThe role of fatty acid synthesis in the acclimation of the photosynthetic machinery to high ...
Homeoviscous adaptation in poikilotherms is based in the regulation of the level of desaturation of ...
Temperature is a key environmental factor inducing phenotypic plasticity in a wide range of behavior...
How do cells maintain the fluidity of cellular membrane in response to temperature fluctuation? In t...
Temperature is a key environmental factor inducing phenotypic plasticity in a wide range of behavior...
Temperature is a key environmental factor inducing phenotypic plasticity in a wide range of behavior...
A moderate change in ambient temperature can lead to vital physiological and biochemical adjustments...
The homeoviscous adaptation hypothesis states that the relative abundance of polyunsaturated fatty a...
The homeoviscous adaptation hypothesis states that the relative abundance of polyunsaturated fatty a...
The homeoviscous adaptation hypothesis states that the relative abundance of polyunsaturated fatty a...
The homeoviscous adaptation hypothesis states that the relative abundance of polyunsaturated fatty a...
The homeoviscous adaptation hypothesis states that the relative abundance of polyunsaturated fatty a...
Abstract: The free-living eukaryotic protozoan Tetrahymena is a potentially useful model for the the...
Fluidity of a given membrane decreases at lower ambient temperatures, whereas it rises at increasing...
Fluidity of a given membrane decreases at lower ambient temperatures, whereas it rises at increasing...
AbstractThe role of fatty acid synthesis in the acclimation of the photosynthetic machinery to high ...
Homeoviscous adaptation in poikilotherms is based in the regulation of the level of desaturation of ...
Temperature is a key environmental factor inducing phenotypic plasticity in a wide range of behavior...
How do cells maintain the fluidity of cellular membrane in response to temperature fluctuation? In t...
Temperature is a key environmental factor inducing phenotypic plasticity in a wide range of behavior...
Temperature is a key environmental factor inducing phenotypic plasticity in a wide range of behavior...
A moderate change in ambient temperature can lead to vital physiological and biochemical adjustments...