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Meta Analysis ? AI-assigned paper type based on the abstract. Classification may not be perfect — flag errors using the feedback button. Tier 1 ? Systematic review or meta-analysis. Synthesizes findings across many studies. Strongest evidence. Environmental Sources Marine & Wildlife Sign in to save

Interactions between microplastics and insects in terrestrial ecosystems—A systematic review and meta-analysis

Journal of Hazardous Materials 2023 34 citations ? Citation count from OpenAlex, updated daily. May differ slightly from the publisher's own count. Score: 70 ? 0–100 AI score estimating relevance to the microplastics field. Papers below 30 are filtered from public browse.
Lei Su Juan‐Ying Li, Juan‐Ying Li, Lei Su Lei Su Lei Su Lei Su Yang Yu, Lei Su Lei Su Lei Su Lei Su Lei Su Lei Su Lei Su Lei Su Nicholas J. Craig, Lei Su Lei Su Lei Su Juan‐Ying Li, Nicholas J. Craig, Lei Su Yang Yu, Lei Su Lei Su Lei Su Nicholas J. Craig, Nicholas J. Craig, Nicholas J. Craig, Lei Su Lei Su Lei Su Lei Su Nicholas J. Craig, Nicholas J. Craig, Nicholas J. Craig, Lei Su Nicholas J. Craig, Nicholas J. Craig, Nicholas J. Craig, Nicholas J. Craig, Nicholas J. Craig, Wenhui He, Lei Su Lei Su Lei Su Lei Su Lei Su Lei Su Lei Su Lei Su Lei Su Lei Su Nicholas J. Craig, Lei Su Nicholas J. Craig, Nicholas J. Craig, Nicholas J. Craig, Nicholas J. Craig, Nicholas J. Craig, Nicholas J. Craig, Lei Su Nicholas J. Craig, Lei Su Wenhui He, Nicholas J. Craig, Nicholas J. Craig, Nicholas J. Craig, Nicholas J. Craig, Nicholas J. Craig, Juan‐Ying Li, Nicholas J. Craig, Nicholas J. Craig, Juan‐Ying Li, Lei Su Nicholas J. Craig, Nicholas J. Craig, Lei Su Lei Su Juan‐Ying Li, Lei Su Juan‐Ying Li, Nicholas J. Craig, Nicholas J. Craig, Nicholas J. Craig, Wenhui He, Lei Su Lei Su

Summary

This meta-analysis with phylogenetic control found that microplastic exposure impairs key biological traits of insects, primarily behavior and reproduction, with effects varying by polymer type and particle size. Field evidence confirmed that insects ingest and transfer microplastics along food chains, and also contribute to bio-fragmentation of larger plastic debris into smaller particles.

Study Type Review

The presence of microplastics (MPs) in terrestrial ecosystems has been confirmed worldwide. Due to their widespread distribution and diversity in habitats, insects will readily interact with MPs via various pathways. Although the topic of MP-insect interactions is still in the early stages of research, it is becoming increasingly important. We used a META approach with phylogenetic control and subgroup examination to summarize the evidence from both field and laboratory experiments in quantitative form. The field evidence suggests that insects can take and transfer MPs along food chains via ingestion and adherence. Also, they are active in the bio-fragmentation of MPs and the generation of secondary pollutants. The exposure to MPs impaired key biological traits of insects, mainly their behavior and health, such as reducing climbing ability and increasing oxidative stress. In terms of exposure conditions, the small-sized MPs can induce more severe effects on the insects, while the insect response to MPs was not significantly reliant on exposure times or MP concentrations based on the current evidence available. We propose that insects not only play roles in the redistribution of MPs spatially and in food chains via bio-fragmentation but are also threatened by MPs. Our research deepens our understanding of the environmental risks posed by MPs in insect ecosystems.

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