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Size‐ and shape‐dependent effects of microplastic particles on adult daggerblade grass shrimp ( Palaemonetes pugio )
Author(s) -
Gray Austin D.,
Weinstein John E.
Publication year - 2017
Publication title -
environmental toxicology and chemistry
Language(s) - English
Resource type - Journals
SCImago Journal Rank - 1.1
H-Index - 171
eISSN - 1552-8618
pISSN - 0730-7268
DOI - 10.1002/etc.3881
Subject(s) - microplastics , shrimp , zoology , biology , decapoda , ecotoxicology , particle size , crustacean , ecology , chemistry , paleontology
The incidence of microplastics in marine environments has been increasing over the past several decades. The objective of the present study was to characterize the size‐ and shape‐dependent effects of microplastic particles (spheres, fibers, and fragments) on the adult daggerblade grass shrimp ( Palaemonetes pugio ). Grass shrimp were exposed to 11 sizes of plastic: spheres (30, 35, 59, 75, 83, 116, and 165 μm), fragments (34 and 93 μm), and fibers (34 and 93 μm) at a concentration of 2000 particles/400 mL (= 50 000 particles/L) for 3 h. Following exposure, grass shrimp were monitored for survival, ingested and ventilated microplastics, and residence time. Mortality ranged from 0% to 55%. Spheres and fragments <50 μm were not acutely toxic. Mortality rates in experiments with spheres and fragments >50 μm ranged from 5% to 40%. Mortality was significantly higher in the exposure to 93‐μm fibers than other sizes tested ( p  < 0.001). The shape of the particle had a significant influence on the number of particles ingested by the shrimp ( p  < 0.001). The residence time of particles in the gut ranged from 27 to 75 h, with an average of 43.0 ± 13.8 h. Within the gills, the residence time ranged from 27 to 45 h, with an average of 36.9 ± 5.4 h. The results suggest that microplastic particles of various sizes and shapes can be ingested and ventilated by adult daggerblade grass shrimp, resulting in acute toxicity. Environ Toxicol Chem 2017;36:3074–3080. © 2017 SETAC

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