Coprophagy in a cave-adapted salamander; the importance of bat guano examined through nutritional and stable isotope analyses

Author:

Fenolio Danté B1,Graening G.O2,Collier Bret A3,Stout Jim F4

Affiliation:

1. Department of Zoology, University of Oklahoma730 Van Vleet Oval, Norman, OK 73019, USA

2. The Nature Conservancy601 North University Avenue, Little Rock, AR 72205, USA

3. Department of Wildlife and Fisheries Sciences, Texas A&M UniversityCollege Station, TX 77843-2258, USA

4. Oklahoma City Zoo and Botanical Gardens2101 Northeast 50th Street, Oklahoma City, OK 73111, USA

Abstract

During a two year population ecology study in a cave environment, 15Eurycea(=Typhlotriton)spelaeawere observed ingesting bat guano. Furthermore,E. spelaeacapture numbers increased significantly during the time that grey bats (Myotis grisescens) deposited fresh guano. We investigated the hypothesis that this behaviour was not incidental to the capture of invertebrate prey, but a diet switch to an energy-rich detritus in an oligotrophic environment. Stable isotope assays determined that guano may be assimilated into salamander muscle tissue, and nutritional analyses revealed that guano is a comparable food source to potential invertebrate prey items. This is the first report of coprophagy in a salamander and in any amphibian for reasons other than intestinal inoculation. Because many temperate subterranean environments are often energy poor and this limitation is thought to select for increased diet breadth, we predict that coprophagy may be common in subterranean vertebrates where it is not currently recognized.

Publisher

The Royal Society

Subject

General Agricultural and Biological Sciences,General Environmental Science,General Immunology and Microbiology,General Biochemistry, Genetics and Molecular Biology,General Medicine

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