Understanding the effects of temperature on ecological and evolutionary processes is crucial for generating future climate adaptation scenarios. Using experimental evolution, we evolved the model ciliate Tetrahymena thermophila in an initially novel high temperature environment for more than 35 generations, closely monitoring population dynamics and morphological changes. We observed initially long lag phases in the high temperature environment that over about 26 generations reduced to no lag phase, a strong reduction in cell size and modifications in cell shape at high temperature. When exposing the adapted populations to their original temperature, most phenotypic traits returned to the observed levels in the ancestral populations, indica...
Predicting the performance of aquatic organisms in a future warmer climate depends critically on und...
Developing a thorough understanding of how ectotherm physiology adapts to different thermal environm...
Rapid fluctuation of environmental conditions can impose severe stress upon living organisms. Surviv...
Evolutionary biologists have long sought to understand what factors affect the repeatability of adap...
In order to test how T. thermophila will respond to increasing global temperatures replicates of fou...
How and if organisms can adapt to changing temperatures has drastic consequences for the natural wor...
Temperature drives performance and therefore adaptation; to interpret and understand these, thermal ...
Global climate is changing rapidly, and the degree to which natural populations respond genetically ...
Evolutionary Rescue (ER) occurs when populations, which have declined due to rapid environmental cha...
Global climate is changing rapidly, and the degree to which natural populations respond genetically ...
Evolutionary Rescue (ER) occurs when populations, which have declined due to rapid environmental cha...
Evolutionary Rescue (ER) occurs when populations, which have declined due to rapid environmental cha...
Predicting the performance of aquatic organisms in a future warmer climate depends critically on und...
Predicting the performance of aquatic organisms in a future warmer climate depends critically on und...
The effects of climate change—such as increased temperature variability and novel predators—rarely h...
Predicting the performance of aquatic organisms in a future warmer climate depends critically on und...
Developing a thorough understanding of how ectotherm physiology adapts to different thermal environm...
Rapid fluctuation of environmental conditions can impose severe stress upon living organisms. Surviv...
Evolutionary biologists have long sought to understand what factors affect the repeatability of adap...
In order to test how T. thermophila will respond to increasing global temperatures replicates of fou...
How and if organisms can adapt to changing temperatures has drastic consequences for the natural wor...
Temperature drives performance and therefore adaptation; to interpret and understand these, thermal ...
Global climate is changing rapidly, and the degree to which natural populations respond genetically ...
Evolutionary Rescue (ER) occurs when populations, which have declined due to rapid environmental cha...
Global climate is changing rapidly, and the degree to which natural populations respond genetically ...
Evolutionary Rescue (ER) occurs when populations, which have declined due to rapid environmental cha...
Evolutionary Rescue (ER) occurs when populations, which have declined due to rapid environmental cha...
Predicting the performance of aquatic organisms in a future warmer climate depends critically on und...
Predicting the performance of aquatic organisms in a future warmer climate depends critically on und...
The effects of climate change—such as increased temperature variability and novel predators—rarely h...
Predicting the performance of aquatic organisms in a future warmer climate depends critically on und...
Developing a thorough understanding of how ectotherm physiology adapts to different thermal environm...
Rapid fluctuation of environmental conditions can impose severe stress upon living organisms. Surviv...