Scinovex
article Open AccessTop 1% cited

Bat guilds, a concept to classify the highly diverse foraging and echolocation behaviors of microchiropteran bats

Frontiers in Physiology · 2013 · Vol. 4 · pp. 164–164
Annette DenzingerHans‐Ulrich Schnitzler

Abstract

Throughout evolution the foraging and echolocation behaviors as well as the motor systems of bats have been adapted to the tasks they have to perform while searching and acquiring food. When bats exploit the same class of environmental resources in a similar way, they perform comparable tasks and thus share similar adaptations independent of their phylogeny. Species with similar adaptations are assigned to guilds or functional groups. Habitat type and foraging mode mainly determine the foraging tasks and thus the adaptations of bats. Therefore, we use habitat type and foraging mode to define seven guilds. The habitat types open, edge and narrow space are defined according to the bats' echolocation behavior in relation to the distance between bat and background or food item and background. Bats foraging in the aerial, trawling, flutter detecting, or active gleaning mode use only echolocation to acquire their food. When foraging in the passive gleaning mode bats do not use echolocation but rely on sensory cues from the food item to find it. Bat communities often comprise large numbers of species with a high diversity in foraging areas, foraging modes, and diets. The assignment of species living under similar constraints into guilds identifies patterns of community structure and helps to understand the factors that underlie the organization of highly diverse bat communities. Bat species from different guilds do not compete for food as they differ in their foraging behavior and in the environmental resources they use. However, sympatric living species belonging to the same guild often exploit the same class of resources. To avoid competition they should differ in their niche dimensions. The fine grain structure of bat communities below the rather coarse classification into guilds is determined by mechanisms that result in niche partitioning.

Bat Biology and Ecology StudiesMarine animal studies overviewAnimal Vocal Communication and BehaviorForagingHuman echolocationGuildBiologyEcologySympatric speciationHabitatInsectivorePredation

Funding

  • Deutsche Forschungsgemeinschaft
Citations
515
FWCI
27.99
field-weighted impact
References
95
Percentile
100%
vs. same field & year
Citations per year
References
The foraging behaviour and ecology of animal-eating bats
Canadian Journal of Zoology · 1990 · 395 citations
Echolocation by Insect-Eating Bats
BioScience · 2001 · 1,028 citations
Citation Network

How this paper connects to the literature. Drag to explore, click any node to open that paper.