Uncovering the sub-lethal impacts of plastic ingestion by shearwaters using fatty acid analysis

TitleUncovering the sub-lethal impacts of plastic ingestion by shearwaters using fatty acid analysis
Publication TypeJournal Article
Year of Publication2020
AuthorsPuskic, PS, Lavers, JL, Adams, LR, Grünenwald, M, Hutton, I, Bond, AL
JournalConservation Physiology
Volume7
Issue1
Date Published2020
ISBN Number2051-1434
Abstract

Marine plastic pollution is increasing exponentially, impacting an expanding number of taxa each year across all trophic levels. Of all bird groups, seabirds display the highest plastic ingestion rates and are regarded as sentinels of pollution within their foraging regions. The consumption of plastic contributes to sub-lethal impacts (i.e. morbidity, starvation) in a handful of species. Additional data on these sub-lethal effects are needed urgently to better understand the scope and severity of the plastics issue. Here we explore the application of fatty acid (FA) analysis as a novel tool to investigate sub-lethal impacts of plastic ingestion on seabird body condition and health. Using gas chromatography-mass spectrometry, we identified 37 individual FAs within the adipose, breast muscle and liver of flesh-footed (Ardenna carneipes) and short-tailed (Ardenna tenuirostris) shearwaters. We found high amounts of FA 16:0, 18:0, 20:5n3 (eicosapentaenoic acid), 22:6n3 (docosahexaenoic acid) and 18:1n9 in both species; however, the overall FA composition of the two species differed significantly. In flesh-footed shearwaters, high amounts of saturated and mono-unsaturated FAs (needed for fast and slow release energy, respectively) in the adipose and muscle tissues were related to greater bird body mass. While total FAs were not related to the amount of plastic ingested in either species, these data are a valuable contribution to the limited literature on FAs in seabirds. We encourage studies to explore other analytical tools to detect these sub-lethal impacts of plastic.

URLhttps://academic.oup.com/conphys/article/7/1/coz017/5489824
DOI10.1093/conphys/coz017
Short TitleConserv Physiol