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Bioavailability and effects of microplastics on marine zooplankton: A review

Environmental Pollution · 2018 · Vol. 245 · pp. 98–110
Zara L.R. BotterellNicola BeaumontTarquin DorringtonMichael SteinkeRichard C. ThompsonPenelope K. Lindeque

Abstract

Microplastics are abundant and widespread in the marine environment. They are a contaminant of global environmental and economic concern. Due to their small size a wide range of marine species, including zooplankton can ingest them. Research has shown that microplastics are readily ingested by several zooplankton taxa, with associated negative impacts on biological processes. Zooplankton is a crucial food source for many secondary consumers, consequently this represents a route whereby microplastic could enter the food web and transfer up the trophic levels. In this review we aim to: 1) evaluate the current knowledge base regarding microplastic ingestion by zooplankton in both the laboratory and the field; and 2) summarise the factors which contribute to the bioavailability of microplastics to zooplankton. Current literature shows that microplastic ingestion has been recorded in 39 zooplankton species from 28 taxonomic orders including holo- and meroplanktonic species. The majority of studies occurred under laboratory conditions and negative effects were reported in ten studies (45%) demonstrating effects on feeding behaviour, growth, development, reproduction and lifespan. In contrast, three studies (14%) reported no negative effects from microplastic ingestion. Several physical and biological factors can influence the bioavailability of microplastics to zooplankton, such as size, shape, age and abundance. We identified that microplastics used in experiments are often different to those quantified in the marine environment, particularly in terms of concentration, shape, type and age. We therefore suggest that future research should include microplastics that are more representative of those found in the marine environment at relevant concentrations. Additionally, investigating the effects of microplastic ingestion on a broader range of zooplankton species and life stages, will help to answer key knowledge gaps regarding the effect of microplastic on recruitment, species populations and ultimately broader economic consequences such as impacts on shell- and finfish stocks.

Microplastics and Plastic PollutionMarine Biology and Environmental ChemistryRecycling and Waste Management TechniquesMicroplasticsZooplanktonTrophic levelFood chainFood webEnvironmental scienceEcologyBiology

MeSH terms

AnimalsBiological AvailabilityEatingEnvironmental MonitoringFeeding BehaviorPlasticsWater Pollutants, ChemicalZooplanktonFood Chain

Funding

  • NERC Environmental Bioinformatics Centre
  • Sight Research UK
  • Natural Environment Research Council
Citations
915
FWCI
22.60
field-weighted impact
References
111
Percentile
100%
vs. same field & year
Citations per year
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References
Deposit- and suspension-feeding sea cucumbers (Echinodermata) ingest plastic fragments
Journal of Experimental Marine Biology and Ecology · 2008 · 610 citations
Microplastic Ingestion by Zooplankton
Environmental Science & Technology · 2013 · 2,652 citations
The physical impacts of microplastics on marine organisms: A review
Environmental Pollution · 2013 · 4,301 citations
Accumulation of Microplastic on Shorelines Woldwide: Sources and Sinks
Environmental Science & Technology · 2011 · 4,544 citations
A Comparison of Plastic and Plankton in the North Pacific Central Gyre
Marine Pollution Bulletin · 2001 · 999 citations
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