Please use this identifier to cite or link to this item: http://hdl.handle.net/10553/134359
Title: Differential exposure to second-generation anticoagulant rodenticides in raptors from continental and insular regions of the Iberian Peninsula
Authors: Martín Cruz, Beatriz 
Rial Berriel, Cristian Javier 
Acosta Dacal, Andrea Carolina 
Carromeu-Santos, Ana
Simbaña Rivera, Katherine Lizeth 
Gabriel, Sofia I.
Pastor Tiburón, Natalia
González González, Fernando
Fernández Valeriano, Rocío
Henríquez Hernández, Luis Alberto 
Zumbado Peña, Manuel Luis 
Pérez Luzardo, Octavio Luis 
UNESCO Clasification: 3109 Ciencias veterinarias
3214 Toxicología
Keywords: Pesticidas
Aves de presa
Issue Date: 2024
Journal: Environmental Pollution 
Abstract: The global impact of anticoagulant rodenticides (ARs) on non-target species is well-recognized. Birds of prey, as apex predators, are highly vulnerable to AR exposure and are widely used as biomonitors for priority pollutants in Europe. This study investigates differential SGAR exposure in raptors from insular versus continental regions, hypothesizing greater exposure in insular areas due to ecological factors like reduced prey diversity, intensive rodenticide use, and resistant rodent populations. We analyzed the livers of 190 common kestrels (Falco tinnunculus) and 104 common buzzards (Buteo buteo) across the Iberian Peninsula and its archipelagos using LC-MS/MS to assess their role as AR sentinels and the differences between insular and continental areas. Results revealed a high prevalence (>80%) of second-generation anticoagulant rodenticides (SGARs), with brodifacoum and bromadiolone, being the most frequent. Multiple SGAR detections were also common (≈50%). A binomial logistic regression showed that species and region significantly influence the likelihood of SGAR exposure. Kestrels had a greater probability of exceeding 100 ng/g wet weight (ww) compared to buzzards. Raptors from insular territories were ten times more likely to have higher SGAR concentrations than those from continental areas. However, the legal restriction on SGAR bait concentrations that came into effect in 2018 did not significantly impact exposure levels. This study highlights the need for targeted conservation efforts to mitigate AR exposure risk in vulnerable island ecosystems.
URI: http://hdl.handle.net/10553/134359
ISSN: 0269-7491
DOI: 10.1016/j.envpol.2024.125034
Source: Environmental Pollution [ISSN 0269-7491], v. 362, 125034, (Diciembre 2024)
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