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Mercury in the Feathers of Bird Scavengers from Two Areas of Patagonia (Argentina) Under the Influence of Different Anthropogenic Activities: a Preliminary Study

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Publisher Springer
Date 2018 Mar 8
PMID 29512014
Citations 3
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Abstract

Mercury (Hg) is a global pollutant that bioaccumulates and biomagnifies in food chains and is associated with adverse effects in both humans and wildlife. We used feather samples from bird scavengers to evaluate Hg concentrations in two different areas of Northern Patagonia. Hg concentrations were analyzed in feathers obtained from turkey vultures (Cathartes aura), Black Vultures (Coragyps atratus), and southern crested caracaras (Caracara plancus) from the two areas of Northern Patagonia (Argentina): Bariloche and El Valle. Hg was detected in all the samples analyzed, but the concentrations can be considered low for the three species in both sampling areas. The mean concentration of Hg in Bariloche was 0.22 ± 0.16 mg/kg dry weight (d.w.) in black vulture, 0.13 ± 0.06 mg/kg d.w. in turkey vulture, and 0.13 ± 0.09 mg/kg d.w. in southern crested caracara; in El Valle, the mean concentration of Hg was 1.02 ± 0.89 mg/kg d.w. in black vulture, 0.53 ± 0.82 mg/kg d.w. in turkey vulture, and 0.54 ± 0.74 mg/kg d.w. in southern crested caracara. Hg concentrations in feathers were explained by the sampling area but not by the species. The concentrations of Hg contamination were comparable to those obtained in other studies of terrestrial raptors and aquatic bioindicator raptors. The species of the present study occur throughout much of North and South America. Thus, they may be appropriate bioindicators across the species' range, which is particularly useful as a surrogate, especially in distribution areas shared with endangered scavengers such as the California condor (Gymnopsys californianus) and the Andean Condor (Vultur gryphus).

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References
1.
Jackson A, Evers D, Folsom S, Condon A, Diener J, Goodrick L . Mercury exposure in terrestrial birds far downstream of an historical point source. Environ Pollut. 2011; 159(12):3302-8. DOI: 10.1016/j.envpol.2011.08.046. View

2.
Holland A, Byrne M, Bryan A, DeVault T, Rhodes O, Beasley J . Fine-scale assessment of home ranges and activity patterns for resident black vultures (Coragyps atratus) and turkey vultures (Cathartes aura). PLoS One. 2017; 12(7):e0179819. PMC: 5497974. DOI: 10.1371/journal.pone.0179819. View

3.
Garcia-Fernandez A, Calvo J, Martinez-Lopez E, Maria-Mojica P, Martinez J . Raptor ecotoxicology in Spain: a review on persistent environmental contaminants. Ambio. 2008; 37(6):432-9. DOI: 10.1579/0044-7447(2008)37[432:reisar]2.0.co;2. View

4.
Arribere M, Ribeiro Guevara S, Sanchez R, Gil M, Roman Ross G, Daurade L . Heavy metals in the vicinity of a chlor-alkali factory in the Upper Negro River ecosystem, Northern Patagonia, Argentina. Sci Total Environ. 2002; 301(1-3):187-203. DOI: 10.1016/s0048-9697(02)00301-7. View

5.
Ortega H, Lopez M, Salvaggio J, Reimers R, Hsiao-Lin C, Bollinger J . Lymphocyte proliferative response and tissue distribution of methylmercury sulfide and chloride in exposed rats. J Toxicol Environ Health. 1997; 50(6):605-16. DOI: 10.1080/15287399709532058. View