Temperature and ultraviolet B (UV-B) interact in causing cellular damage and impairing locomotor performance. Here, we test the hypothesis that movement and thermal selection of zebrafish (Danio rerio) change in the presence of UV-B, and in particular, that fish which were chronically exposed to UV-B avoid high and low temperature extremes to maximize activities of antioxidant enzymes. Fish chronically (two to three weeks) exposed to UV-B had increased reactive oxygen species (ROS)-induced damage to proteins and membranes, and reduced swimming performance at high (more than 26°C) temperatures. In an open field arena with a thermal gradient, chronically exposed fish avoided high and low temperature extremes compared with control fish. Additi...
Potentially negative effects of thermal variation on physiological functions may be modulated by com...
Plasticity can allow organisms to maintain consistent performance across a wide range of environment...
The amount of ultraviolet (UV) radiation reaching the earth\u27s surface has increased due to ozone ...
Temperature and ultraviolet B (UV-B) interact in causing cellular damage and impairing locomotor per...
Temperature and ultraviolet B (UV-B) interact in causing cellular damage and impairing locomotor per...
The interaction between UV-B and temperature can modify the effects of climate variability on animal...
The interaction between UV-B and temperature can modify the effects of climate variability on animal...
Ultraviolet B radiation (UV-B) is an important environmental driver that can affect locomotor perfor...
Environmental UV radiation in sufficient doses, as a possible consequence of climate change, is pote...
Ultraviolet B radiation (UV-B) can reduce swimming performance by increasing reactive oxygen species...
Levels of UVB radiation (UVB) and mean temperatures have increased substantially over recent decades...
Faculty advisor: Craig SeeThis research was supported by the Undergraduate Research Opportunities Pr...
Levels of UVB radiation (UVB) and mean temperatures have increased substantially over recent decades...
Ultraviolet B radiation (UV-B) is an important environmental driver that can affect locomotor perfor...
Among the benzotriazole ultraviolet stabilizers (BUVSs), UV-234 and UV-320 are frequently detected i...
Potentially negative effects of thermal variation on physiological functions may be modulated by com...
Plasticity can allow organisms to maintain consistent performance across a wide range of environment...
The amount of ultraviolet (UV) radiation reaching the earth\u27s surface has increased due to ozone ...
Temperature and ultraviolet B (UV-B) interact in causing cellular damage and impairing locomotor per...
Temperature and ultraviolet B (UV-B) interact in causing cellular damage and impairing locomotor per...
The interaction between UV-B and temperature can modify the effects of climate variability on animal...
The interaction between UV-B and temperature can modify the effects of climate variability on animal...
Ultraviolet B radiation (UV-B) is an important environmental driver that can affect locomotor perfor...
Environmental UV radiation in sufficient doses, as a possible consequence of climate change, is pote...
Ultraviolet B radiation (UV-B) can reduce swimming performance by increasing reactive oxygen species...
Levels of UVB radiation (UVB) and mean temperatures have increased substantially over recent decades...
Faculty advisor: Craig SeeThis research was supported by the Undergraduate Research Opportunities Pr...
Levels of UVB radiation (UVB) and mean temperatures have increased substantially over recent decades...
Ultraviolet B radiation (UV-B) is an important environmental driver that can affect locomotor perfor...
Among the benzotriazole ultraviolet stabilizers (BUVSs), UV-234 and UV-320 are frequently detected i...
Potentially negative effects of thermal variation on physiological functions may be modulated by com...
Plasticity can allow organisms to maintain consistent performance across a wide range of environment...
The amount of ultraviolet (UV) radiation reaching the earth\u27s surface has increased due to ozone ...