Home range in genus Capra: from polygons to Brownian bridges of scabietic and healthy Iberian ibexes (Capra pyrenaica)

Author:

Valldeperes Marta12ORCID,Pascual-Rico Roberto3ORCID,Fandos Paulino14ORCID,Soriguer Escofet Ramón C5ORCID,Pérez Jesús M16ORCID,Cano-Manuel León Francisco J7,Prieto Yerro Paloma8ORCID,López-Olvera Jorge Ramón12ORCID,Granados José Enrique19ORCID

Affiliation:

1. Wildlife Ecology & Health Group (WE&H) , 08193 Bellaterra, Barcelona , Spain

2. Servei d’Ecopatologia de Fauna Salvatge (SEFaS), Departament de Medicina i Cirurgia Animals, Universitat Autònoma de Barcelona (UAB) , 08193 Bellaterra , Spain

3. Grupo Sanidad y Biotecnología (SaBio), Instituto de Investigación en Recursos Cinegéticos IREC (UCLM-CSIC-JCCM) , 13071 Ciudad Real , Spain

4. Ocaña , 44, 2° D, 28047 Madrid , Spain

5. Estación Biológica de Doñana (CSIC) , Av. Américo Vespucio, s.n., 41092 Sevilla , Spain

6. Departamento de Biología Animal, Biología Vegetal y Ecología, Universidad de Jaén, Campus Las Lagunillas , s.n., E-23071 Jaén , Spain

7. Junta de Andalucía, Departamento de Actuaciones en el Medio Natural , Av. Joaquina Eguaras 2, 18013 Granada , Spain

8. Oficina Parque Natural Sierras de Cazorla , Segura y Las Villas, C/ Martínez Falero 11, 23470 Cazorla, Jaén , Spain

9. Parque Nacional y Parque Natural de Sierra Nevada, Ctra. Antigua de Sierra Nevada Km 7 , 18191 Pinos Genil, Granada , Spain

Abstract

Abstract Home range and home range overlap can be used to describe use of space and movement of wildlife. During the last years, advancements in technology have greatly improved our understanding of animal movement, especially among large herbivores. Wild ungulate abundance and distribution have increased in temperate areas. Moreover, their diseases—including sarcoptic mange in the Iberian Ibex (Capra pyrenaica)—have become a cause of concern for livestock, public health, and wildlife conservation. In this study, we first reviewed existing literature on the home range of species in the genus Capra. We then analyzed data from 52 GPS-GSM-collared Iberian ibexes, of which 33 were healthy and 19 were affected by sarcoptic mange from 3 different populations in the southeastern Iberian Peninsula to analyze: (1) differences in size and characteristics of home ranges obtained by the 3 most commonly used methodologies—minimum convex polygon, kernel density estimation, and Brownian bridges movement models (BBMMs); and (2) the impact of endemic sarcoptic mange on Iberian Ibex home range. The literature review revealed that available information on spatial behavior of Capra spp. was based only on 3 species, including the Iberian Ibex, estimated through a diversity of methods which made it difficult to compare results. We found positive correlations among the different home range estimation methods in the Iberian Ibex, with BBMMs proving to be the most accurate. This study is the first to use BBMMs for estimating home range in this species, and it revealed a marked seasonal behavior in spatial use, although sarcoptic mange smoothed such seasonal pattern. The seasonal overlaps obtained suggest that core areas of the Iberian Ibex change within wider home range areas, which are ecological parameters relevant to identifying key areas for species management and conservation.

Publisher

Oxford University Press (OUP)

Reference74 articles.

1. The use of radio-collars for monitoring wildlife diseases: a case study from Iberian Ibex affected by Sarcoptes scabiei in Sierra Nevada, Spain;Alasaad,2013

2. Plant phenology and the benefits of migration in a temperate ungulate;Albon,1992

3. Hidden MHC genetic diversity in the Iberian Ibex (Capra pyrenaica);Angelone,2018

4. Fitting linear mixed effects models using lme4;Bates,2015

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