Additive bioenergetic responses to a pesticide and predation risk in an aquatic insect
- 1. Evolutionary Stress Ecology and Ecotoxicology, University of Leuven, Charles Deberiotstraat 32, Leuven, B-3000 (Belgium)
Description
Highlights: • Effects of predation risk and chlorpyrifos on life history and physiology were tested. • Only chlorpyrifos was lethal, yet both stressors reduced growth. • Both stressors negatively affected the bioenergetics at organismal and cellular level. • Predation risk and chlorpyrifos consistently interacted in an additive way. -- Abstract: Ignoring natural stressors such as predation risk may contribute to the failure of ecological risk assessment of pesticides to protect freshwater biodiversity. To better understand combined effects of multiple stressors, bioenergetic responses are important as these inform about the balance between energy input and consumption, and provide a unifying mechanism to integrate the impact of multiple stressors with different modes of action. We studied in Enallagma cyathigerum damselfly larvae the single and combined effects of exposure to the pesticide chlorpyrifos and predation risk on life history (survival and growth rate) and bioenergetic response variables at the organismal level (assimilation and conversion efficiency) and the cellular level (cellular energy allocation CEA, energy storage Ea, and energy consumption Ec). Chlorpyrifos exposure almost halved the survival of the damselfly larvae, while predation risk had no effect on survival. Both exposure to the pesticide and to predation risk reduced larval growth rates. This was caused by a reduced conversion efficiency under chlorpyrifos exposure, and by a reduced assimilation efficiency under predation risk. Both chlorpyrifos and predation risk reduced the CEA because of a decreased Ea, and for chlorpyrifos also an increased Ec. The lower Ea was driven by reductions in the fat and glycogen contents. Effects of the pesticide and predation risk were consistently additive and for most variables the strongest response was detected when both stressors were present. The absence of any synergisms may be explained by the high mortality and hypometabolism caused by the pesticide. Our results indicate that CEA can be a sensitive biomarker to evaluate effects of not only contaminants but also natural stressors, such as predation risk, and their combined impact on organisms.
Additional details
Identifiers
- DOI
- 10.1016/j.aquatox.2019.05.010;
- PII
- S0166445X19302097;
Publishing Information
- Journal Title
- Aquatic Toxicology
- Journal Volume
- 212
- Journal Page Range
- p. 205-213
- ISSN
- 0166-445X
- CODEN
- AQTODG
INIS
- Country of Publication
- Netherlands
- Country of Input or Organization
- International Atomic Energy Agency (IAEA)
- INIS RN
- 55044334
- Subject category
- S54: ENVIRONMENTAL SCIENCES;
- Descriptors DEI
- ASSIMILATION; BIOLOGICAL MARKERS; ENERGY STORAGE; FRESH WATER; GLYCOGEN; LARVAE; PESTICIDES; PHYSIOLOGY; RISK ASSESSMENT; SPECIES DIVERSITY; SYNERGISM
- Descriptors DEC
- CARBOHYDRATES; HYDROGEN COMPOUNDS; ORGANIC COMPOUNDS; OXYGEN COMPOUNDS; POLYSACCHARIDES; SACCHARIDES; STORAGE; WATER
Optional Information
- Copyright
- Copyright (c) 2019 Elsevier B.V. All rights reserved.