To improve current and future risk assessment of pesticides under global warming, mechanistic insights and consideration of daily temperature fluctuations (DTFs) are needed. One overlooked mechanism how both higher mean temperatures and DTFs may increase toxicity is by reducing body size (temperature-size-rule). We studied whether a higher mean temperature and DTF magnified chlorpyrifos toxicity in Ischnura elegans damselfly larvae, and whether this was mediated by temperature-induced reductions in body size and/or physiological changes. The lethal effects of chlorpyrifos were magnified at the high mean temperature (up to ∼15%) and under DTF (up to ∼33%), and especially at their combination (up to ∼46%) indicating synergisms. This highlight...
Recent insights indicate that negative effects of pesticides on aquatic biota occur at concentration...
1. An alarming finding for biodiversity is that global warming and pesticides often interact synergi...
How global warming changes the toxicity of contaminants is a research priority at the intersection o...
There is increasing concern that climate change may make organisms more sensitive to chemical pollut...
The widespread evidence that global warming can increase species sensitivities to chemical toxicants...
To predict the impact of pesticides in a warming world we need to know how species differ in the int...
1. Freshwater ecosystems are especially vulnerable to climate change and pollution. One key challeng...
1. Freshwater ecosystems are especially vulnerable to climate change and pollution. One key challeng...
To make more realistic predictions about the current and future effects of pesticides, we need to be...
There is increasing concern that standard laboratory toxicity tests may be misleading when assessing...
Freshwater ecosystems are especially vulnerable to climate change and pollution. One key challenge f...
Ecotoxicological studies typically cover only a limited part of the natural thermal range of populat...
Global warming and chemical pollution are key anthropogenic stressors with the potential to interact...
The widespread evidence that global warming can increase species sensitivities to chemical toxicants...
1. An alarming finding for biodiversity is that global warming and pesticides often interact synergi...
Recent insights indicate that negative effects of pesticides on aquatic biota occur at concentration...
1. An alarming finding for biodiversity is that global warming and pesticides often interact synergi...
How global warming changes the toxicity of contaminants is a research priority at the intersection o...
There is increasing concern that climate change may make organisms more sensitive to chemical pollut...
The widespread evidence that global warming can increase species sensitivities to chemical toxicants...
To predict the impact of pesticides in a warming world we need to know how species differ in the int...
1. Freshwater ecosystems are especially vulnerable to climate change and pollution. One key challeng...
1. Freshwater ecosystems are especially vulnerable to climate change and pollution. One key challeng...
To make more realistic predictions about the current and future effects of pesticides, we need to be...
There is increasing concern that standard laboratory toxicity tests may be misleading when assessing...
Freshwater ecosystems are especially vulnerable to climate change and pollution. One key challenge f...
Ecotoxicological studies typically cover only a limited part of the natural thermal range of populat...
Global warming and chemical pollution are key anthropogenic stressors with the potential to interact...
The widespread evidence that global warming can increase species sensitivities to chemical toxicants...
1. An alarming finding for biodiversity is that global warming and pesticides often interact synergi...
Recent insights indicate that negative effects of pesticides on aquatic biota occur at concentration...
1. An alarming finding for biodiversity is that global warming and pesticides often interact synergi...
How global warming changes the toxicity of contaminants is a research priority at the intersection o...