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January 17, 2026Environmental Toxicology and Chemistry1 citations

Beyond acute toxicity: evolutionary response by rapid polygenic adaptation to a complex environmental stressor in Chironomus riparius

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LRLorenzo RiganoMSMarkus SchmitzHHHenner Hollert

Key Points

  • The study aims to explore how chronic exposure to urban runoff sediment influences genomic adaptation and fitness in Chironomus riparius.
  • Used an evolutionary life-cycle test with replicate populations exposed to control and two sediment concentrations.
  • Conducted multigenerational exposure over seven generations.
  • Measured key fitness traits including mortality, emergence time, fertility, and population growth rate.
  • Tracked allele frequency changes to identify genomic adaptation.
  • Observed distinct fitness responses across treatments, including both transgenerational effects and recovery of performance.
  • Identified candidate haplotypes linked to stress-response pathways, highlighting polygenic adaptation.
  • Detected signals of selection even in control populations.

Abstract

Abstract Anthropogenic stressors, such as pollution and climate change, are altering selective pressures on natural populations, but the evolutionary consequences of chronic exposure to complex mixtures of contaminants remain poorly understood. Addressing this knowledge gap is critical to the emerging field of evolutionary ecotoxicology, which aims to understand how long-term exposure to environmental contaminants shapes adaptive evolution and genome-wide variation. In this study, we employed urban runoff sediment as complex and environmentally realistic model stressor to investigate how multigenerational exposure affects fitness and potentially drives genomic adaptation in the freshwater midge Chironomus riparius. We combined an evolutionary life-cycle test with the Evolve and Resequence (E&R) approach, exposing replicate populations over seven generations to three treatments: control and two concentrations of urban runoff sediment (0.5% and 10%). Key fitness traits, including mortality, mean emergence time (EmT50), fertility, and population growth rate (PGR), were measured, while allele frequency changes (AFC) were tracked to identify genomic signatures of selection. The results revealed distinct and non-linear fitness responses across treatments, including transgenerational effects, recovery of performance, and evidence of life-history trade-offs. Candidate haplotypes were enriched for genes involved in membrane transport, metabolism, and gene regulation, suggesting selection on general stress-response pathways consistent with polygenic adaptation. Signals of selection were also detected in control populations, underscoring the evolutionary influence of laboratory conditions. Overall, our findings demonstrate how evolutionary ecotoxicology can reveal both the potential and the constraints of rapid adaptation to realistic environmental stressors and highlight the importance of integrating evolutionary perspectives into ecological risk assessment.

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Cite This Study

Rigano et al. (2026) studied this question.

synapsesocial.com/papers/696b2696d2a12237a9349cb4https://doi.org/10.1093/etojnl/vgag010
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Also Consider

Synapse has enriched 5 closely related papers on similar clinical questions. Consider them for comparative context:

  1. 1Pollution‐Driven Selection in a Non‐Biting Midge: Genome‐Wide Responses to Bacillus thuringiensis israelensis and Copper2026
  2. 2Anthropogenic pressures on riparian communities: insights from genomic tools2026
  3. 3Phenotypic adaptation of Chironomus riparius to chronic Bti exposure: effects on emergence time and nutrient content2024 · 10 citations
  4. 4Unveiling population-specific outcomes: Examining life cycle traits of different strains of Chironomus riparius exposed to microplastics and cadmium questions generality of ecotoxicological results2024 · 1 citations
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