Missouri State University
Behavioral and Physiological Evidence for Musk Gland Secretions as a Chemical Alarm Cue in the Cottonmouth, Agkistrodon Piscivorus
Abstract
dc:description.abstract<p>Snakes release malodorous secretions from cloacal musk glands when harassed by predators. Although these secretions have mainly been evaluated as predator deterrents, they have also been suggested to function as alarm pheromones. I conducted two experiments to test the hypothesis that musk gland secretions function as an alarm signal in the cottonmouth (Agkistrodon piscivorus), using behavioral and physiological response variables. In a repeated-measures experiment snakes were exposed to solutions of musk gland secretions, integumentary chemicals from conspecifics, and distilled water as a blank control. In behavior trials, snakes exhibited elevated tongue-flick rates, engaged in longer periods of immobility, and took significantly longer to complete a foraging task in the presence of musk cues relative to controls. Metabolic trials showed a similar general pattern consistent with reduced activity in musk treatments relative to controls. However, metabolic responses were highly variable due to confounding influences of a testing order effect, and litter-specific differences. Overall, my study provides new evidence for alarm signal functionality of musk gland secretions in snakes and adds to the understanding of chemically mediated communication in snakes.</p>
Degree
thesis:*- Name thesis:degree_name
- Master of Science in Biology
- Level thesis:degree_level
- Masters
- Discipline thesis:degree_discipline
- Biology
- Year
- 2015
Author and committee
dc:creator, dc:contributor.*- Author dc:creator
-
- Churilla, Joseph Matthew
- Contributors dc:contributor
-
- Brian Greene
Subjects
dc:subject × 8Rights
dc:rights- Statement dc:rights
-
- © Joseph Matthew Churilla
Identifiers
dc:identifier.*- Repository record dc:identifier
- https://bearworks.missouristate.edu/theses/1344
- OAI identifier oai:identifier
- oai:bearworks.missouristate.edu:theses-2345