Predicting ecological responses to climate change requires an understanding of the mechanisms that influence species’ tolerances to temperature. Based on the idea that air and water breathing animals are differentially suited to life in either medium due to differences in their respiratory morphology, we examined the possibility that the thermal tolerances of co-existing intertidal pulmonate and patellogastropod limpets may differ in different breathing media. We tested this by determining each species’ median lethal temperature (LT50) and cardiac Arrhenius breakpoint temperature (ABT) as measures of upper thermal tolerance limits, in air and water. Although all these species can survive in air and water, we hypothesised that the pulmonate ...
Understanding the physiological abilities of organisms to cope with heat stress is critical for pred...
International audienceUnderstanding the physiological abilities of organisms to cope with heat stres...
International audienceUnderstanding the physiological abilities of organisms to cope with heat stres...
Predicting ecological responses to climate change requires an understanding of the mechanisms that i...
Predicting ecological responses to climate change requires an understanding of the mechanisms that i...
Arrhenius plots of the study species in water (A) and air (B). SC–Siphonaria capensis; SG–Scutellast...
The cardiac thermal response curves of the study species in air (A) and water (B). SC–Siphonaria cap...
Patella rustica and Patella caerulea are two congeneric limpet species, both occurring along the roc...
Patella rustica and Patella caerulea are two congeneric limpet species, both occurring along the roc...
Much of our understanding of the thermal physiology of intertidal organisms comes from experiments w...
Much of our understanding of the thermal physiology of intertidal organisms comes from experiments w...
<div><p>The thermal reaction norms of 4 closely related intertidal Nacellid limpets, Antarctic (<em>...
The rocky intertidal zone is among one of the most highly variable environments on Earth, with rapid...
International audienceUnderstanding the physiological abilities of organisms to cope with heat stres...
International audienceUnderstanding the physiological abilities of organisms to cope with heat stres...
Understanding the physiological abilities of organisms to cope with heat stress is critical for pred...
International audienceUnderstanding the physiological abilities of organisms to cope with heat stres...
International audienceUnderstanding the physiological abilities of organisms to cope with heat stres...
Predicting ecological responses to climate change requires an understanding of the mechanisms that i...
Predicting ecological responses to climate change requires an understanding of the mechanisms that i...
Arrhenius plots of the study species in water (A) and air (B). SC–Siphonaria capensis; SG–Scutellast...
The cardiac thermal response curves of the study species in air (A) and water (B). SC–Siphonaria cap...
Patella rustica and Patella caerulea are two congeneric limpet species, both occurring along the roc...
Patella rustica and Patella caerulea are two congeneric limpet species, both occurring along the roc...
Much of our understanding of the thermal physiology of intertidal organisms comes from experiments w...
Much of our understanding of the thermal physiology of intertidal organisms comes from experiments w...
<div><p>The thermal reaction norms of 4 closely related intertidal Nacellid limpets, Antarctic (<em>...
The rocky intertidal zone is among one of the most highly variable environments on Earth, with rapid...
International audienceUnderstanding the physiological abilities of organisms to cope with heat stres...
International audienceUnderstanding the physiological abilities of organisms to cope with heat stres...
Understanding the physiological abilities of organisms to cope with heat stress is critical for pred...
International audienceUnderstanding the physiological abilities of organisms to cope with heat stres...
International audienceUnderstanding the physiological abilities of organisms to cope with heat stres...