Aphid herbivory on macrophytes drives adaptive evolution in an aquatic community via indirect effects.
basic_science · Level V
Where this comes from
- Record sourced from PubMed, PMID 40838887.
- Also identified by DOI 10.1073/pnas.2502742122 and PMC identifier 12403121.
- Licence recorded as CC BY.
- The licence permits redistribution, so the abstract is shown in full and the full text is available from the publisher.
Abstract
Indirect ecological effects occur when the impact of one species on another is mediated by a third species or the shared environment. Although indirect effects are ubiquitous in nature, we know remarkably little about how they may drive ecoevolutionary processes across community boundaries. Here, we show that insect (aphid) herbivory on macrophytes (duckweed) drove the adaptive evolution of a planktonic crustacean (<i>Daphnia magna</i>) in large outdoor aquatic mesocosms via indirect ecological effects. Aphid herbivory reduced duckweed growth and increased the nutrient and light availability in the water column, which promoted phytoplankton growth and boosted the abundance of <i>D. magna</i> that feed on phytoplankton. Whole-genome pool-sequencing and phenotypic assays revealed aphid-herbivory-mediated evolutionary changes to <i>Daphnia</i> population. Transplant experiments indicated that these evolutionary changes were adaptive. Furthermore, aphid-herbivory-mediated biotic and abiotic changes in the aquatic community increased the performance of the macrophytes and aphids. These results demonstrate that indirect ecological effects can shape ecoevolutionary interactions between seemingly independent species in natural communities.
Medical subject headings
- Aphids
- Herbivory
- Daphnia
- Biological Evolution
- Araceae
- Adaptation, Physiological