Independent effects of connectivity predict homing success by northern flying squirrel in a forest mosaic

Bosque Modelo:

Fundy

Temática:

Gestión forestal

Tipo de documento:

Artículo científico

Resumen

Landscape composition and configuration, often termed as habitat loss and fragmentation, are predicted to reduce species population viability, partly due to the restriction of movement in the landscape. Unfortunately, measuring the effects of habitat loss and fragmentation on functional connectivity is challenging because these variables are confounded, andoften the motivation for movement by target species is unknown. Our objective was to determine the independent effects of landscape connectivity from the perspective of a mature forest specialist—the northern flying squirrel (Glaucomys sabrinus). To standardize movement motivation, we translocated 119 squirrels, at varying distances (0.18–3.8 km) from their home range across landscapes representing gradients in both habitat loss and fragmentation. We measured the physical connectedness of mature forest using an index of connectivity (landscape coincidence probability). Patches were considered connected if they were within the mean gliding distance of a flying squirrel. Homing success increased in landscapes with a higher connectivity index. However, homing time was not strongly predicted by habitat amount, connectivity index, or mean nearest neighbour and was best explained as a simple function of sex and distance translocated. Our study shows support for the independent effects of landscape configuration on animal movement at a spatial scale that encompasses several home ranges. We conclude that connectivity of mature forest should be considered for the conservation of some mature forest specialists, even in forest mosaics where the distinction between habitat and movement corridors are less distinct.

Información Bibliográfica

Autor:

Smith, M.J., Betts, M.G., Forbes, G.J., Kehler, D.G., Bourgeois, M.C., & Flemming. S.P.

Revista:

Landscape Ecology

Año:

2011

N°:

-

País :

Canadá

Páginas:

709 - 721

Volumen:

26

Idioma:

Ingles

Palabras claves

Connectivity Fragmentation Configuration Composition Translocation Animal movement Mammalogy Dispersal Glaucomys sabrinus Landscape