The Impact of Polystyrene Microplastics on Feeding, Function and Fecundity in the Marine Copepod <i>Calanus helgolandicus</i>
Environmental Science & Technology2015
1246 citations
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Matthew Cole,
Matthew Cole,
Matthew Cole,
Matthew Cole,
Tamara S. Galloway,
Matthew Cole,
Tamara S. Galloway,
Penelope K. Lindeque
Matthew Cole,
Matthew Cole,
Claudia Halsband,
Matthew Cole,
Claudia Halsband,
Claudia Halsband,
Matthew Cole,
Penelope K. Lindeque
Penelope K. Lindeque
Matthew Cole,
Claudia Halsband,
Matthew Cole,
Penelope K. Lindeque
Matthew Cole,
Matthew Cole,
Tamara S. Galloway,
Claudia Halsband,
Matthew Cole,
Claudia Halsband,
Tamara S. Galloway,
Claudia Halsband,
Matthew Cole,
Tamara S. Galloway,
Matthew Cole,
Matthew Cole,
Matthew Cole,
Matthew Cole,
Matthew Cole,
Matthew Cole,
Matthew Cole,
Matthew Cole,
Matthew Cole,
Matthew Cole,
Tamara S. Galloway,
Tamara S. Galloway,
Matthew Cole,
Matthew Cole,
Penelope K. Lindeque
Penelope K. Lindeque
Tamara S. Galloway,
Penelope K. Lindeque
Penelope K. Lindeque
Tamara S. Galloway,
Penelope K. Lindeque
Tamara S. Galloway,
Penelope K. Lindeque
Penelope K. Lindeque
Tamara S. Galloway,
Penelope K. Lindeque
Penelope K. Lindeque
Tamara S. Galloway,
Penelope K. Lindeque
Penelope K. Lindeque
Penelope K. Lindeque
Penelope K. Lindeque
Penelope K. Lindeque
Tamara S. Galloway,
Penelope K. Lindeque
Penelope K. Lindeque
Tamara S. Galloway,
Penelope K. Lindeque
Penelope K. Lindeque
Penelope K. Lindeque
Tamara S. Galloway,
Penelope K. Lindeque
Tamara S. Galloway,
Tamara S. Galloway,
Tamara S. Galloway,
Tamara S. Galloway,
Tamara S. Galloway,
Tamara S. Galloway,
Tamara S. Galloway,
Elaine S. Fileman,
Claudia Halsband,
Claudia Halsband,
Matthew Cole,
Matthew Cole,
Matthew Cole,
Matthew Cole,
Matthew Cole,
Matthew Cole,
Matthew Cole,
Elaine S. Fileman,
Tamara S. Galloway,
Tamara S. Galloway,
Tamara S. Galloway,
Tamara S. Galloway,
Tamara S. Galloway,
Tamara S. Galloway,
Tamara S. Galloway,
Tamara S. Galloway,
Tamara S. Galloway,
Tamara S. Galloway,
Tamara S. Galloway,
Tamara S. Galloway,
Tamara S. Galloway,
Tamara S. Galloway,
Tamara S. Galloway,
Tamara S. Galloway,
Tamara S. Galloway,
Tamara S. Galloway,
Penelope K. Lindeque
Penelope K. Lindeque
Penelope K. Lindeque
Penelope K. Lindeque
Penelope K. Lindeque
Penelope K. Lindeque
Penelope K. Lindeque
Matthew Cole,
Matthew Cole,
Matthew Cole,
Matthew Cole,
Matthew Cole,
Matthew Cole,
Matthew Cole,
Matthew Cole,
Matthew Cole,
Matthew Cole,
Matthew Cole,
Matthew Cole,
Matthew Cole,
Matthew Cole,
Matthew Cole,
Matthew Cole,
Matthew Cole,
Matthew Cole,
Matthew Cole,
Matthew Cole,
Matthew Cole,
Matthew Cole,
Matthew Cole,
Matthew Cole,
Matthew Cole,
Claudia Halsband,
Claudia Halsband,
Claudia Halsband,
Claudia Halsband,
Elaine S. Fileman,
Elaine S. Fileman,
Elaine S. Fileman,
Elaine S. Fileman,
Tamara S. Galloway,
Claudia Halsband,
Claudia Halsband,
Tamara S. Galloway,
Tamara S. Galloway,
Elaine S. Fileman,
Matthew Cole,
Matthew Cole,
Matthew Cole,
Penelope K. Lindeque
Tamara S. Galloway,
Tamara S. Galloway,
Matthew Cole,
Matthew Cole,
Tamara S. Galloway,
Penelope K. Lindeque
Penelope K. Lindeque
Penelope K. Lindeque
Penelope K. Lindeque
Matthew Cole,
Penelope K. Lindeque
Penelope K. Lindeque
Tamara S. Galloway,
Penelope K. Lindeque
Penelope K. Lindeque
Tamara S. Galloway,
Elaine S. Fileman,
Tamara S. Galloway,
Penelope K. Lindeque
Matthew Cole,
Penelope K. Lindeque
Matthew Cole,
Elaine S. Fileman,
Elaine S. Fileman,
Penelope K. Lindeque
Penelope K. Lindeque
Tamara S. Galloway,
Penelope K. Lindeque
Penelope K. Lindeque
Claudia Halsband,
Matthew Cole,
Tamara S. Galloway,
Penelope K. Lindeque
Claudia Halsband,
Penelope K. Lindeque
Tamara S. Galloway,
Tamara S. Galloway,
Tamara S. Galloway,
Tamara S. Galloway,
Claudia Halsband,
Tamara S. Galloway,
Matthew Cole,
Penelope K. Lindeque
Penelope K. Lindeque
Penelope K. Lindeque
Penelope K. Lindeque
Penelope K. Lindeque
Tamara S. Galloway,
Claudia Halsband,
Tamara S. Galloway,
Matthew Cole,
Matthew Cole,
Matthew Cole,
Tamara S. Galloway,
Matthew Cole,
Matthew Cole,
Matthew Cole,
Matthew Cole,
Claudia Halsband,
Matthew Cole,
Claudia Halsband,
Matthew Cole,
Tamara S. Galloway,
Tamara S. Galloway,
Tamara S. Galloway,
Matthew Cole,
Tamara S. Galloway,
Matthew Cole,
Matthew Cole,
Tamara S. Galloway,
Tamara S. Galloway,
Matthew Cole,
Tamara S. Galloway,
Tamara S. Galloway,
Penelope K. Lindeque
Tamara S. Galloway,
Tamara S. Galloway,
Tamara S. Galloway,
Penelope K. Lindeque
Penelope K. Lindeque
Tamara S. Galloway,
Tamara S. Galloway,
Tamara S. Galloway,
Tamara S. Galloway,
Tamara S. Galloway,
Claudia Halsband,
Tamara S. Galloway,
Tamara S. Galloway,
Elaine S. Fileman,
Tamara S. Galloway,
Tamara S. Galloway,
Tamara S. Galloway,
Tamara S. Galloway,
Elaine S. Fileman,
Tamara S. Galloway,
Penelope K. Lindeque
Penelope K. Lindeque
Penelope K. Lindeque
Claudia Halsband,
Tamara S. Galloway,
Tamara S. Galloway,
Tamara S. Galloway,
Penelope K. Lindeque
Tamara S. Galloway,
Tamara S. Galloway,
Penelope K. Lindeque
Penelope K. Lindeque
Penelope K. Lindeque
Penelope K. Lindeque
Tamara S. Galloway,
Tamara S. Galloway,
Tamara S. Galloway,
Tamara S. Galloway,
Tamara S. Galloway,
Penelope K. Lindeque
Matthew Cole,
Matthew Cole,
Penelope K. Lindeque
Tamara S. Galloway,
Tamara S. Galloway,
Penelope K. Lindeque
Tamara S. Galloway,
Claudia Halsband,
Tamara S. Galloway,
Tamara S. Galloway,
Tamara S. Galloway,
Penelope K. Lindeque
Tamara S. Galloway,
Penelope K. Lindeque
Tamara S. Galloway,
Penelope K. Lindeque
Matthew Cole,
Penelope K. Lindeque
Tamara S. Galloway,
Matthew Cole,
Tamara S. Galloway,
Matthew Cole,
Tamara S. Galloway,
Tamara S. Galloway,
Tamara S. Galloway,
Claudia Halsband,
Tamara S. Galloway,
Tamara S. Galloway,
Penelope K. Lindeque
Tamara S. Galloway,
Matthew Cole,
Tamara S. Galloway,
Matthew Cole,
Tamara S. Galloway,
Penelope K. Lindeque
Matthew Cole,
Tamara S. Galloway,
Tamara S. Galloway,
Penelope K. Lindeque
Summary
Researchers exposed a key marine copepod species to polystyrene microplastics and measured the effects on feeding, egg production, and offspring survival. They found that microplastic ingestion significantly reduced the amount of algae the copepods consumed, lowered their reproductive output, and decreased the hatching success of their eggs. Since copepods are a foundational link in marine food webs, these effects could have cascading consequences for ocean ecosystems.
Microscopic plastic debris, termed “microplastics”, are of increasing environmental concern. Recent studies have demonstrated that a range of zooplankton, including copepods, can ingest microplastics. Copepods are a globally abundant class of zooplankton that form a key trophic link between primary producers and higher trophic marine organisms. Here we demonstrate that ingestion of microplastics can significantly alter the feeding capacity of the pelagic copepod Calanus helgolandicus. Exposed to 20 μm polystyrene beads (75 microplastics mL(–1)) and cultured algae ([250 μg C L(–1)) for 24 h, C. helgolandicus ingested 11% fewer algal cells (P = 0.33) and 40% less carbon biomass (P < 0.01). There was a net downward shift in the mean size of algal prey consumed (P < 0.001), with a 3.6 fold increase in ingestion rate for the smallest size class of algal prey (11.6–12.6 μm), suggestive of postcapture or postingestion rejection. Prolonged exposure to polystyrene microplastics significantly decreased reproductive output, but there were no significant differences in egg production rates, respiration or survival. We constructed a conceptual energetic (carbon) budget showing that microplastic-exposed copepods suffer energetic depletion over time. We conclude that microplastics impede feeding in copepods, which over time could lead to sustained reductions in ingested carbon biomass.