Search engine for discovering works of Art, research articles, and books related to Art and Culture
ShareThis
Javascript must be enabled to continue!

Summer tree roost selection by Rafinesque's big‐eared bat

View through CrossRef
AbstractRoost requirements of most North American forest bats are well‐documented, but questions remain regarding the ultimate mechanisms underlying roost selection. Hypotheses regarding roost selection include provision of a stable microclimate, space for large colonies, protection from predators, and proximity to foraging habitat, among others. Although several hypotheses have been proposed, specific mechanisms likely vary by species and geographic region. Rafinesque's big‐eared bat (Corynorhinus rafinesquii) commonly roosts in trees with large basal hollows in the Coastal Plain of the southeastern United States. Our objective was to weigh evidence for hypotheses regarding selection of diurnal summer roosts by Rafinesque's big‐eared bat at 8 study sites across the Coastal Plain of Georgia, USA. We used transect searches and radiotelemetry to locate roosts and measured 22 characteristics of trees, tree cavities, and surrounding vegetation at all occupied roosts and for randomly selected unoccupied trees. We evaluated 10 hypotheses using single‐season occupancy models and used Akaike's information criterion to select the most parsimonious models. We located 170 tree roosts containing approximately 870 bats for our analysis. The best supported model predicted bat presence from cavity size, interior wall texture, and number of entrances. Because large cavities allow bats to fly and smooth walls impede attacks by terrestrial predators, our results are consistent with the hypothesis that bats select roosts that allow them to evade predators. However, data on predation rates are needed for a conclusive determination. Because trees suitable as roosts for Rafinesque's big‐eared bat are rare in the landscape, protection of suitable forested wetland habitat is essential to provide current and long‐term roost tree availability. © 2012 The Wildlife Society.
Title: Summer tree roost selection by Rafinesque's big‐eared bat
Description:
AbstractRoost requirements of most North American forest bats are well‐documented, but questions remain regarding the ultimate mechanisms underlying roost selection.
Hypotheses regarding roost selection include provision of a stable microclimate, space for large colonies, protection from predators, and proximity to foraging habitat, among others.
Although several hypotheses have been proposed, specific mechanisms likely vary by species and geographic region.
Rafinesque's big‐eared bat (Corynorhinus rafinesquii) commonly roosts in trees with large basal hollows in the Coastal Plain of the southeastern United States.
Our objective was to weigh evidence for hypotheses regarding selection of diurnal summer roosts by Rafinesque's big‐eared bat at 8 study sites across the Coastal Plain of Georgia, USA.
We used transect searches and radiotelemetry to locate roosts and measured 22 characteristics of trees, tree cavities, and surrounding vegetation at all occupied roosts and for randomly selected unoccupied trees.
We evaluated 10 hypotheses using single‐season occupancy models and used Akaike's information criterion to select the most parsimonious models.
We located 170 tree roosts containing approximately 870 bats for our analysis.
The best supported model predicted bat presence from cavity size, interior wall texture, and number of entrances.
Because large cavities allow bats to fly and smooth walls impede attacks by terrestrial predators, our results are consistent with the hypothesis that bats select roosts that allow them to evade predators.
However, data on predation rates are needed for a conclusive determination.
Because trees suitable as roosts for Rafinesque's big‐eared bat are rare in the landscape, protection of suitable forested wetland habitat is essential to provide current and long‐term roost tree availability.
© 2012 The Wildlife Society.

Related Results

Bats of Colonial National Historical Park following white-nose syndrome
Bats of Colonial National Historical Park following white-nose syndrome
I conducted bat surveys at Colonial National Historical Park to assess the status of bat communities following potential impacts of white-nose syndrome (WNS) since its arrival in V...
Remediated for accessibility per Section 508
Remediated for accessibility per Section 508
I conducted bat surveys at Richmond National Battlefield Park to assess the status of bat communities following potential impacts of the disease white-nose syndrome. This disease, ...
Bats of Richmond National Battlefield Park following white-nose syndrome: Public version
Bats of Richmond National Battlefield Park following white-nose syndrome: Public version
I conducted bat surveys at Richmond National Battlefield Park to assess the status of bat communities following potential impacts of the disease white-nose syndrome. This disease, ...
Bats of Petersburg National Battlefield following white-nose syndrome
Bats of Petersburg National Battlefield following white-nose syndrome
I conducted bat surveys at Petersburg National Battlefield Park (PETE) to assess the status of bat communities following potential impacts of the disease white-nose syndrome. This ...
Determining bat presence and activity in Petroglyph National Monument to inform visitor management
Determining bat presence and activity in Petroglyph National Monument to inform visitor management
Petroglyph National Monument (PETR or Monument) is 7,212 acres and is located on the outskirts of the City of Albuquerque. Adjacent land is rapidly being developed leading to incre...
Patterns of roost site use by Asian hornbills and implications for seed dispersal
Patterns of roost site use by Asian hornbills and implications for seed dispersal
Abstract Animals spend a significant amount of time roosting. Therefore, understanding roosting patterns and the processes that influence roostin...
Diagnostic value of BAT-25 and BAT-26 qPCR markers for microsatellite instability in colon cancer
Diagnostic value of BAT-25 and BAT-26 qPCR markers for microsatellite instability in colon cancer
Colon cancer is a leading cause of cancer-related morbidity and mortality worldwide. Microsatellite instability (MSI), reflecting deficient DNA mismatch repair, is present in a sub...

Back to Top