4.5 Article

Application of GPS occurrence data to understand African white-backed vultures Gyps africanus spatial home range overlaps

Journal

ECOLOGY AND EVOLUTION
Volume 12, Issue 4, Pages -

Publisher

WILEY
DOI: 10.1002/ece3.8778

Keywords

African white-backed vulture; autocorrelated kernel density estimator; Bhattacharyya's coefficient; home range overlap

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Understanding the spatial home range overlap zones of critically endangered African white-backed vultures is important for conservation planning. This study used high-resolution GPS technology and analytical algorithms to estimate and delineate these overlap zones. Results showed low home range overlap among the vultures, with some individuals having fixed ranges within Hwange National Park. The overlap zones were concentrated within the protected area of the park.
Understanding key overlap zones and habitats which are intensively shared by species in space and time is crucial as it provides vital information to inform spatial conservation with maximum benefits. The advent of high-resolution GPS technologies associated with new analytical algorithms is revolutionizing studies underpinning species spatial and social interaction patterns within ecosystems. Here, using a robust home range estimation algorithm, the autocorrelated kernel density estimator (AKDE) equipped with an equally powerful home range overlap metric, the Bhattacharyya's coefficient (BC), we provide one of the first attempts to estimate and delineate spatial home range overlap zones for critically endangered African white-backed vultures to inform conservation planning. Six vultures were captured in Hwange National Park using a modified cannon net system after which they were tagged and tracked with high-resolution GPS backpacks. Overall, results suggested weaker average home range overlaps based on both the pooled data (0.38 +/- 0.26), wet non-breeding seasonal data (0.32 +/- 0.23), and dry breeding season data (0.34 +/- 0.28). Vultures 4, 5, and 6 consistently revealed higher home range overlaps across all the scales with values ranging between 0.60 and 0.99. Individual vultures showed consistence in space use patterns as suggested by high between-season home range overlaps, an indication that they may be largely resident within the Hwange ecosystem. Importantly, we also demonstrate that home range overlapping geographic zones are all concentrated within the protected area of Hwange National Park. Our study provides some of the first results on African vulture home range overlaps and segregation patterns in the savanna ecosystem based on unbiased telemetry data and rigorous analytical algorithms. Such knowledge may provide vital insights for prioritizing conservation efforts of key geographic overlap zones to derive maximum conservation benefits especially when targeting wide-ranging and critically endangered African white-backed vultures. To this end, spatial overlap zones estimated here, although based on a small sample size, could provide a strong foundation upon which other downstream social and ecological questions can be explored further to expand our understanding on shared space use mechanisms among African vulture species.

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