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Investigating microplastic trophic transfer in marine top predators

Environmental Pollution · 2018 · Vol. 238 · pp. 999–1007
Sarah E. NelmsTamara S. GallowayBrendan J. GodleyDan JarvisPenelope K. Lindeque

Abstract

Microplastics are highly bioavailable to marine organisms, either through direct ingestion, or indirectly by trophic transfer from contaminated prey. The latter has been observed for low-trophic level organisms in laboratory conditions, yet empirical evidence in high trophic-level taxa is lacking. In natura studies face difficulties when dealing with contamination and differentiating between directly and indirectly ingested microplastics. The ethical constraints of subjecting large organisms, such as marine mammals, to laboratory investigations hinder the resolution of these limitations. Here, these issues were resolved by analysing sub-samples of scat from captive grey seals (Halichoerus grypus) and whole digestive tracts of the wild-caught Atlantic mackerel (Scomber scombrus) they are fed upon. An enzymatic digestion protocol was employed to remove excess organic material and facilitate visual detection of synthetic particles without damaging them. Polymer type was confirmed using Fourier-Transform Infrared (FTIR) spectroscopy. Extensive contamination control measures were implemented throughout. Approximately half of scat subsamples (48%; n = 15) and a third of fish (32%; n = 10) contained 1-4 microplastics. Particles were mainly black, clear, red and blue in colour. Mean lengths were 1.5 mm and 2 mm in scats and fish respectively. Ethylene propylene was the most frequently detected polymer type in both. Our findings suggest trophic transfer represents an indirect, yet potentially major, pathway of microplastic ingestion for any species whose feeding ecology involves the consumption of whole prey, including humans.

Microplastics and Plastic PollutionMarine Biology and Environmental ChemistryRecycling and Waste Management TechniquesTrophic levelPredationApex predatorEcologyFood chainTrophic cascadeBiologyFood web

MeSH terms

AnimalsEatingEnvironmental MonitoringFishesPerciformesPlasticsPolymersWater Pollutants, ChemicalFood ChainAquatic Organisms

Funding

  • Sight Research UK
  • Natural Environment Research Council
Citations
989
FWCI
29.91
field-weighted impact
References
63
Percentile
100%
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References
Microplastics in bivalves cultured for human consumption
Environmental Pollution · 2014 · 2,000 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
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