ECOSEA · Effects of contaminants on seabirds: an energetics approach
Horizon 2020 — Marie Skłodowska-Curie Actions
- Duration
- 2017-12-04 → 2019-12-03
- EU contribution
- €183,455
- Participants
- 1
- Scheme
- MSCA-IF-EF-ST
Lines connect the coordinator with its partners.
Results in brief
Effects of contaminants on seabirds: an energetics approach
Metals and industrial substances used to make every-day objects such as computers, mobile phones, frying pans and waterproof clothes, make their way into the natural environment. These substances are considered to be environmental contaminants and can have a devastating impact on wildlife, in particular predators such as seabirds. However, our understanding of how and when seabirds become contaminated and the consequences of this contamination is limited. While we know that seabirds can ingest these contaminants by eating their prey, it is unclear why some species and some individuals within species have higher contaminant levels than others and what the consequences of this might be. Investigating these questions is critical to understand toxic effects and potential wildlife population declines. Mercury (a heavy metal) and perfluorinated compounds are particularly important to study because they have long residence time in the environment, and in animal and human bodies, with known negative impacts on them. Animals have physiological mechanisms to eliminate contaminants form their bodies. However, these mechanisms are not always effective and can be very costly in terms of energy and nutrients. Contaminants can also increase the susceptibility of animals to disease, or/and make disease more dangerous for them. Yet, the interaction between contaminants and disease is poorly known in seabirds, and so are the consequences of it on energy use, reproduction and mortality of seabirds. The aim of the ECOSEA project was to study the levels and effects of natural (metals) and man-made (perfluorinated substances) contaminants in a declining British seabird: the European shag (hereafter “shag”). The study site was the Isle of May, Firth of Forth, Scotland, an environment which has received a plethora of contaminants over 200 years of intense industrial and urban activities. Shags have been monitored here for more than 30 years, so that we know the age, sex and reproductive history of many of them. Specific objectives of ECOSEA were the following: Aim 1) describe what prey the shags feed on, and where precisely they capture them, in order to understand if different prey, as well as other bodily characteristics such as sex, size and age, explain contaminant level differences between birds; Aim 2) understand if contaminants constitute an energetic costs for the shags; Aim 3) determine if there is a relationship between contaminant levels and the number of parasites present in the stomach of the birds (nematode worms, Contracaecum rudolphii); and 4) measure the combined effects of contaminants and parasites on reproduction.
Data: CORDIS, © European Union
Project objective
The pace of change in the World oceans is ever quickening. For instance, increasing quantities of contaminants are found in marine food webs, exposing top predators to high doses of them through food ingestion. Contaminants decrease fitness in vertebrates, but the underlying mechanisms are poorly understood, which limits the ability to predict potential long-term effects on their populations. Contaminant accumulation is thought to impose direct and indirect costs to vertebrates, through increased energy demands for detoxification mechanisms, or disruption of energy metabolism. Other impacts could be mediated via increased susceptibility to disease. Yet, the energetic consequences of contaminants on vertebrates have been largely neglected in wild animals, especially in combination with disease. This project will quantify the effects of natural (mercury, Hg) and man-made (perfluorinated compounds, PFCs) contaminants on the energy expenditure of a seabird species that frequently suffers from severe infections of gastro-intestinal parasites: the European shag. Hg and PFCs concentrations will be measured in blood of individuals with different parasite loads, and their free-ranging energy expenditure quantified using miniaturised data loggers. This project is the first mechanistic investigation of the potentially interactive effects of contaminants and disease on energetics of free-living seabirds. My knowledge in ecotoxicology, together with expert mentorship of the Host and Partner Organisations in seabird bioenergetics and parasitology, will guarantee high-quality results. The combination of cutting-edge techniques in bioenergetics and parasitology with ecotoxicology will greatly enhance my research profile. This multidisciplinary project is highly relevant for the EU Marine Directive and is a priority under Horizon 2020. Ultimately, it will disentangle how contaminants may act in association with disease and impact animal populations through a hidden energetic cost.
Original text from CORDIS.
Participants
- THE UNIVERSITY OF LIVERPOOL · LIVERPOOLCoordinatorUnited Kingdom
Links
Data: CORDIS, © European Union
