Projekte pro Jahr
Abstract
Animal movement is crucial for fitness and is influenced by resource availability and social dynamics. Habitat degradation changes resource availability, impacting movement behaviour and habitat use. However, responses vary among species, and the role of sociality is unclear. Thus, a better understanding of how and why habitat degradation affects animal movement patterns is important for effective conservation. We studied the impact of forest degradation on the movement behaviour of the placid greenbul Phyllastrephus placidus, a cooperatively breeding bird, in the cloud forest fragments of the Taita Hills in Kenya, which are part of the Eastern Arc Mountains biodiversity hotspot. Individuals covered greater distances and occupied larger home ranges in heavily degraded than in less degraded forest. This was probably due to decreased canopy cover in degraded forest as travel distance and home-range size were inversely related to canopy cover within the home range. In addition, in the degraded forest, individuals were found preferentially in sites with higher mean canopy height than the mean canopy height calculated over the entire home range. Group sizes were not related to home-range size or travel distances. Thus, forest degradation seems to reduce the availability of suitable foraging patches and increase resource dispersion, but not resource richness within foraging patches. The study highlights the need to develop strategies to prevent further degradation of canopy cover in the Taita Hills and other tropical forest ecosystems to ensure the long-term persistence of tropical forest species.
Originalsprache | Englisch |
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Aufsatznummer | 110996 |
Fachzeitschrift | Biological Conservation |
Jahrgang | 302 |
DOIs | |
Publikationsstatus | Veröffentlicht - Feb. 2025 |
Bibliographische Notiz
Publisher Copyright:© 2025 The Authors
Systematik der Wissenschaftszweige 2012
- 106 Biologie
Projekte
- 1 Laufend
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Behavioral and physiological signatures of habitat fragmentation in a cooperative forest interior insectivore.
Kung'u, G. (Projektleitung)
1/09/23 → 31/08/25
Projekt: Forschung