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

Glob Chang Biol

Dipartimento di Scienze della Terra e del Mare (DiSTeM), Università degli Studi di Palermo, Palermo, Italy.

Published: June 2021

AI Article Synopsis

  • Increased concern about microplastics prompted a meta-analysis examining their impacts on fish functional traits, specifically focusing on variables like behavior, growth, and survival.
  • Findings revealed that microplastic exposure generally has a negative effect on fish, particularly affecting feeding and behavior, with notable differences based on species, life stage, and microplastic characteristics.
  • The long-term repercussions of these effects might disrupt aquatic ecosystems, undermining their ability to provide essential services for human communities.

Article Abstract

Over the years, concern about the effects of microplastics has grown. Here, we answered the main question "What are the impacts of microplastics on the functional traits of fish species?" through a meta-analysis. The general impact of microplastic exposure on the functional traits of fishes and specifically on eight variables, namely, behaviour, development, fecundity, feeding, growth, health, hatching and survival was explored. Subgroup analyses were performed to detect correlations between the impact of microplastics and the following factors: species, life stage, habitat, water column habitat, day of exposure to microplastics and microplastic size, type and shape. A meta-regression analysis allowed understanding the correlation between the impact of microplastics and the size of organisms. Generally, microplastics have a negative effect on the functional traits of fishes. Feeding and behaviour, followed by growth showed the greatest impact. Among the subgroup analysis, four of the eight variables considered showed a significant difference between groups: species, life stage, microplastic shape and days of exposure to microplastics. Depending on their life stage, organisms may be more sensitive to microplastic pollution. Changes in growth rates, development of early life stage and behavioural patterns in fishes may have a negative effect on the structure and functions of aquatic ecosystem in the long term and consequently affect the ability of aquatic ecosystems to provide ecosystem services and sustain human communities.

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Source
http://dx.doi.org/10.1111/gcb.15570DOI Listing

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