For rocky intertidal species that experience changes in a number of potential stressors seasonally and during the tidal cycle, sensing cellular energy status and modulating it adaptively may be crucial for responding to stressor effects. However, the responses of energy metabolism of intertidal species to multiple sublethal stressors are still unclear. Here, we examined gene expression profiles of biomarkers related to sensing of cellular energy status and regulation of catabolism and energy expenditure in a mid-intertidal limpet Cellana toreuma for elucidating the species’ cellular energy responses stresses from high temperature, desiccation and rainfall. Expression levels of genes encoding metabolic regulators [two...
Rising temperatures and other environmental factors influenced by global climate change can cause in...
Much of our understanding of the thermal physiology of intertidal organisms comes from experiments w...
Understanding variation in physiological adaptations to thermal stress is vital when investigating i...
For rocky intertidal species that experience changes in a number of potential stressors seasonally a...
For rocky intertidal species that experience changes in a number of potential stressors seasonally a...
For rocky intertidal species that experience changes in a number of potential stressors seasonally a...
In the natural environment, organisms are exposed to large variations in physical conditions. Quanti...
In the natural environment, organisms are exposed to large variations in physical conditions. Quanti...
In the natural environment, organisms are exposed to large variations in physical conditions. Quanti...
In the natural environment, organisms are exposed to large variations in physical conditions. Quanti...
Understanding physiological responses of organisms to warming and ocean acidification is the first s...
Understanding physiological responses of organisms to warming and ocean acidification is the first s...
National Basic Research Program of China [2013CB956504]; Nature Science funds for Distinguished Youn...
Understanding physiological responses of organisms to warming and ocean acidification is the first s...
1.Traditional approaches to understanding species responses to environmental conditions have focused...
Rising temperatures and other environmental factors influenced by global climate change can cause in...
Much of our understanding of the thermal physiology of intertidal organisms comes from experiments w...
Understanding variation in physiological adaptations to thermal stress is vital when investigating i...
For rocky intertidal species that experience changes in a number of potential stressors seasonally a...
For rocky intertidal species that experience changes in a number of potential stressors seasonally a...
For rocky intertidal species that experience changes in a number of potential stressors seasonally a...
In the natural environment, organisms are exposed to large variations in physical conditions. Quanti...
In the natural environment, organisms are exposed to large variations in physical conditions. Quanti...
In the natural environment, organisms are exposed to large variations in physical conditions. Quanti...
In the natural environment, organisms are exposed to large variations in physical conditions. Quanti...
Understanding physiological responses of organisms to warming and ocean acidification is the first s...
Understanding physiological responses of organisms to warming and ocean acidification is the first s...
National Basic Research Program of China [2013CB956504]; Nature Science funds for Distinguished Youn...
Understanding physiological responses of organisms to warming and ocean acidification is the first s...
1.Traditional approaches to understanding species responses to environmental conditions have focused...
Rising temperatures and other environmental factors influenced by global climate change can cause in...
Much of our understanding of the thermal physiology of intertidal organisms comes from experiments w...
Understanding variation in physiological adaptations to thermal stress is vital when investigating i...