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Susceptibility of Sardinella lemuru to emerging marine microplastic pollution

SHILAP Revista de lepidopterología 2020 23 citations ? Citation count from OpenAlex, updated daily. May differ slightly from the publisher's own count.
Joseph Dominic Palermo, Kevin L. Labrador, Jhunrey Follante, Altair Agmata, Ma. Josefa R. Pante, Rene Rollon, Laura David

Summary

Researchers examined the susceptibility of Sardinella lemuru (Bali sardinella) to microplastic ingestion by analyzing stomach contents of 600 sardines harvested in Northern Mindanao, Philippines, using visual microscopy, Rose Bengal staining, and hot needle testing to identify ingested microplastic particles.

Body Systems

Marine microplastics are emerging pollutants that impact across levels of marine food chain at a global scale. Its presence was determined on Sardinella lemuru, a commercial pelagic fish that are harvested generally in the Northern Mindanao, consumed locally, and exported worldwide as bottled or canned sardine products. The stomach contents of 600 sardines were examined visually under a microscope, stained with Rose Bengal, and tested with hot needle technique to identify ingested microplastics. These anthropogenic particles were measured and physically classified into fibers, fragments, and films. Results of this study showed that 85% of S. lemuru were already contaminated with 3.74 ± 3.92 # of microplastics even before being processed into various sardine products. These microplastics ranged from 0.12 to 21.30 mm and 80 % were mostly < 2.5 mm size classes. The dominant microplastics were 97.94 % in the form of fibers while 1.52 % and 0.54 % were respectively classified into fragments and films. Method validation by isolating microplastics from spiked samples (n = 30) with three retrieval attempts showed 100% recovery efficiency. While results from Canonical Correspondence Analysis of ingested microplastic data had no relationship with the standard lengths of the sardine and the masses of ingested food materials at varying size classes, the total number of ingested microplastics from 2014 to 2016 were directly correlated (r2=0.91, p=0.003) with the human population at the landing sites along the coastline of northern Mindanao.

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