Affiliation:
1. Warnell School of Forestry and Natural Resources, University of Georgia , Athens, GA 30602, USA
2. School of Renewable Natural Resources, Louisiana State University Agricultural Center , Baton Rouge, LA 70803, USA
Abstract
Wildlife demography is influenced by behavioural decisions, with sleep being a crucial avian behaviour. Avian species use roost sites to minimize thermoregulation costs, predation risk and enhance foraging efficiency. Sleep locations are often reused, forming networks within the home range. Our study, focusing on female eastern wild turkeys (
Meleagris gallopavo silvestris
) during the reproductive season, used social network analysis to quantify both roost site selection and network structure. We identified roost networks which were composed of a small percentage of hub roost sites connecting satellite roosts. Hub roosts were characterized by greater values of betweenness (
β
= 0.62, s.e. = 0.02), closeness (
β
= 0.59, s.e. = 0.03) and eigenvalue centrality (
β
= 1.15, s.e. = 0.05), indicating their importance as connectors and proximity to the network’s functional centre. The probability of a roost being a hub increased significantly with greater eigenvalue centrality. Female wild turkeys consistently chose roost sites at lower elevations and with greater topographical ruggedness. Hub roost probability was higher near secondary roads and further from water. Our research highlights well-organized roost site networks around hub roosts, emphasizing the importance of further investigations into how these networks influence conspecific interactions, reproduction and resource utilization in wild turkeys.
Funder
Louisiana Department of Wildlife and Fisheries
United States Department of Agriculture
South Carolina Department of Natural Resources
Louisiana State University Agricultural Center
Georgia Department of Natural Resources—Wildlife Resources Division
School of Renewable Natural Resources
National Institute of Food and Agriculture
Warnell School of Forestry and Natural Resources at the University of Georgia
Reference119 articles.
1. Hartse KM . 1994 Sleep in insects and Nonmammalian vertebrates. In Principles and practice of sleep medicine (eds MH Kryger , T Roth , WC Dement ), pp. 95–104, 2nd edn. Philadelphia, PA: Elsevier.
2. Phylogeny of Sleep Regulation
3. Sleeping under the risk of predation
4. Rattenborg NC , Amlaner CJ . 2002 Phylogeny of sleep. In Sleep medicine (eds TL Lee-Chiong , MJ Sateia , MA Carskadon ), pp. 7–22, 1st edn. Philadelphia, PA: Hanley and Belfus.
5. Mammalian Sleep, Longevity, and Energy Metabolism; pp. 425–446