0
Article ? AI-assigned paper type based on the abstract. Classification may not be perfect — flag errors using the feedback button. Tier 2 ? Original research — experimental, observational, or case-control study. Direct primary evidence. Marine & Wildlife Policy & Risk Sign in to save

Functional Trait-Based Evidence of Microplastic Effects on Aquatic Species

Biology 2023 17 citations ? Citation count from OpenAlex, updated daily. May differ slightly from the publisher's own count. Score: 45 ? 0–100 AI score estimating relevance to the microplastics field. Papers below 30 are filtered from public browse.
Manuel Berlino, Gianluca Sarà, Maria Cristina Mangano

Summary

Researchers merged data from two global meta-analyses on microplastic effects on benthic invertebrates and fish to compare impacts across functional traits, finding that microplastics impair feeding, reproduction, and growth across both vertebrate and invertebrate aquatic species.

Body Systems

Microplastics represent an ever-increasing threat to aquatic organisms. We merged data from two global scale meta-analyses investigating the effect of microplastics on benthic organisms' and fishes' functional traits. Results were compared, allowing differences related to vertebrate and invertebrate habitat, life stage, trophic level, and experimental design to be explored. Functional traits of aquatic organisms were negatively affected. Metabolism, growth, and reproduction of benthic organisms were impacted, and fish behaviour was significantly affected. Responses differed by trophic level, suggesting negative effects on trophic interactions and energy transfer through the trophic web. The experimental design was found to have the most significant impact on results. As microplastics impact an organism's performance, this causes indirect repercussions further up the ecological hierarchy on the ecosystem's stability and functioning, and its associated goods and services are at risk. Standardized methods to generate salient targets and indicators are urgently needed to better inform policy makers and guide mitigation plans.

Sign in to start a discussion.

More Papers Like This

Meta Analysis Tier 1

Effects of microplastics on the functional traits of aquatic benthic organisms: A global-scale meta-analysis

Microplastics had a moderate overall negative effect on functional traits of aquatic benthic organisms, particularly impairing energy assimilation and population-level traits like reproduction, while behavior and feeding traits appeared unaffected.

Meta Analysis Tier 1

An enigma: A meta-analysis reveals the effect of ubiquitous microplastics on different taxa in aquatic systems

This meta-analysis pooled data from multiple studies to assess how microplastics affect aquatic organisms including fish, invertebrates, and zooplankton. Results showed that microplastic exposure can reduce feeding, growth, and reproduction across different species, raising concerns about broader impacts on aquatic food webs.

Meta Analysis Tier 1

Microplastics and the functional traits of fishes: A global meta‐analysis

This global meta-analysis pooled data from multiple studies to measure how microplastics affect fish. The results showed that microplastic exposure harms feeding behavior, growth, and overall health in fish, with younger fish being especially vulnerable. Since fish are a major protein source for humans, these effects could ultimately impact food security and the quality of seafood on our plates.

Systematic Review Tier 1

Global meta‐analysis reveals diverse effects of microplastics on freshwater and marine fishes

This systematic review and meta-analysis examines the effects of microplastics on fish in both freshwater and ocean environments. The findings show that microplastics reduce feeding, impair digestion, slow growth, and weaken immune function in fish, which is concerning because contaminated fish are a major food source for people worldwide.

Meta Analysis Tier 1

Global distribution characteristics and ecological risk assessment of microplastics in aquatic organisms based on meta-analysis

This meta-analysis assessed the global distribution of microplastics in aquatic organisms across multiple trophic levels, finding that biological characteristics like body size and feeding strategy significantly influence microplastic ingestion rates. The study provides a framework for ecological risk assessment and proposes strategies to reduce microplastic input into water bodies.

Share this paper