Movement ecology, breeding, diet, and roosting behavior of barn owls (Tyto alba) in a transboundary conflict region

Transboundary frontiers often contain wildlife habitats that are fractured by geopolitical borders, which could have adverse effects on the wildlife that inhabit those areas. We examined the movement, breeding, roosting, and diet of 15 GPS-tagged barn owls ( Tyto alba ) along the Israeli-Jordanian a...

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Veröffentlicht in:Regional environmental change 2021-03, Vol.21 (1), Article 26
Hauptverfasser: Rozman, Gabriel, Izhaki, Ido, Roulin, Alexandre, Charter, Motti
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Sprache:eng
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Zusammenfassung:Transboundary frontiers often contain wildlife habitats that are fractured by geopolitical borders, which could have adverse effects on the wildlife that inhabit those areas. We examined the movement, breeding, roosting, and diet of 15 GPS-tagged barn owls ( Tyto alba ) along the Israeli-Jordanian and Israeli-Palestinian Authority borders. Our results showed that 80% of the barn owls hunted across the border. On average, the owls engaged in 5.4 hunting trips per night, 16% of which were cross-border excursions, and they crossed the borders as frequently as expected randomly, highlighting the importance of wildlife protection on all sides. Hunting movement, rather than cross-border activity, had an effect on the annual reproductive success and diet composition. Specifically, female owls that spent more time at the nest and engaged in longer distance hunting trips had higher reproductive success. Eighty percent of the females roosted outside of the nest box at a median distance of 908 m (range = 199–4112 m). Only 13.3% of the owls (2/15 owls) roosted across the border. These results increase our understanding of the movement, breeding, and roosting behavior of a non-migratory avian raptor. However, a serious lack of cooperation and communication between bordering countries hampers our ability to understand the full effects of differing environmental policies on a species that knows no borders.
ISSN:1436-3798
1436-378X
DOI:10.1007/s10113-021-01758-2