Repository logo
Log In(current)
  1. Home
  2. Works by Faculty
  3. Faculty Scholarship and Open Access Collection
  4. Foraging trade-offs along a predator-permanence gradient in subalpine wetlands
Details

Foraging trade-offs along a predator-permanence gradient in subalpine wetlands

Persistent URL
http://hdl.handle.net/10456/45617
Author(s)
Wissinger, Scott A.
Whiteman, Howard H.
Sparks, Grace B.
Rouse, Gretchen L.
Brown, Wendy S.
Date Issued
September 1999
Abstract
We conducted a series of field and laboratory experiments to determine the direct and indirect effects of a top predator, the tiger salamander (Ambystoma tigrinum nebulosum), on larvae of two species of limnephilid caddisflies (Limnephilus externus and Asynarchus nigriculus) in subalpine wetlands in central Colorado. Asynarchus larvae predominate in temporary wetlands and are aggressive intraguild predators on Limnephilus larvae, which only predominate in permanent basins with salamanders. We first conducted a field experiment in mesocosms (cattle tanks) to quantify the predatory effects of different life stages of salamanders on the two caddisfly species. Two life stages of the salamanders (larvae and paedomorphs) preferentially preyed on Asynarchus relative to Limnephilus. Subsequent laboratory experiments revealed that high Asynarchus activity rates and relatively ineffective antipredatory behaviors led to higher salamander detection and attack rates compared to Limnephilus. In a second field experiment (full factorial for presence and absence of each of the three species), we found that salamander predation on Asynarchus had an indirect positive effect on Limnephilus: survival was higher in the presence of salamanders + Asynarchus than with just Asynarchus. In the laboratory we compared the predatory effects of salamanders with and without their mouths sewn shut and found the observed indirect positive effect on Limnephilus survival to be mainly the result of reduced numbers of Asynarchus rather than salamander-induced changes in Asynarchus behavior. We argue that indirect effects of predator–predator interactions on shared prey will be mainly density-mediated and not trait-mediated when one of the predators (in this case, Asynarchus) is under strong selection for rapid growth and therefore does not modify foraging behaviors in response to the other predator. The reciprocal dominance of Limnephilus and Asynarchus in habitats with and without salamanders probably reflects a trade-off between competitive superiority and vulnerability to predation. The high activity levels and aggressiveness that enable Asynarchus to complete development in temporary habitats result in strong asymmetric competition (via intraguild predation) with Limnephilus. In permanent habitats these same behaviors increase Asynarchus vulnerability to salamander predation, which indirectly benefits Limnephilus. This and previous work implicate salamanders as keystone predators that exert a major influence on the composition of benthic and planktonic assemblages in subalpine wetlands.
Journal
Ecology
Department
Biology
Citation
Wissinger, S., Whiteman, H., Sparks, G., Rouse, G., & Brown, W. (1999). Foraging trade-offs along a predator-permanence gradient in subalpine wetlands. Ecology, 80(6): 2102-2116. doi:10.2307/176681
Publisher
Ecological Society of America
Version of Article
Published article
DOI
10.2307/176681
ISSN
0012-9658
e1939-9170
Rights
This article was selected and published in Ecology © 1999 Wissinger, Whiteman, Sparks, Rouse, and Brown. All rights reserved.
Subjects

Ambystoma

Asynarchus

Caddisflies

coexistence, predator...

indirect effects

Keystone predator

Limnephilus

pond hydroperiod

predation

salamander

wetlands

File(s)
Thumbnail Image
Name

Wissinger_1999_Ecology_Cover.pdf

Description
cover
Size

330.53 KB

Format

Adobe PDF

Checksum (etag)

5819aedb021ee02060506e6161670462

Thumbnail Image
Name

Wissinger_et_al_1999_Ecology.pdf

Description
Main Document
Size

2.48 MB

Format

Adobe PDF

Checksum (etag)

9658aaf2b059cb1d741faef957e0d9fa

Allegheny Logo

814-332-4312

dspace-help@allegheny.edu

Built with DSpace-CRIS software - Extension maintained and optimized by 4Science

  • Accessibility settings
  • Privacy policy
  • End User Agreement
  • Send Feedback
Repository logo COAR Notify