Thermal effects on the performance, motor control, and muscle dynamics of ballistic feeding in the salamander Eurycea guttolineata

Author:

Anderson Christopher V.1ORCID,Larghi Nicholas P.2,Deban Stephen M.3

Affiliation:

1. Brown University, United States;

2. Florida Southern College, United States;

3. University of South Florida, United States

Abstract

Abstract Temperature strongly affects muscle contractile rate properties and thus may influence whole-organism performance. Movements powered by elastic recoil, however, are known to be more thermally robust than muscle-powered movements. We examined the whole-organism performance, motor control and muscle contractile physiology underlying feeding in the salamander Eurycea guttolineata. We compared elastically powered tongue projection to the associated muscle-powered retraction to determine the thermal robustness of each of these functional levels. We found that tongue-projection distance in Eurycea was unaffected by temperature across the entire 4-26°C range, tongue-projection dynamics were significantly affected by temperature across only the 4-11°C interval, and tongue retraction was affected to a higher degree across the entire temperature range. The significant effect of temperature on projection dynamics across the 4-11°C interval corresponds to a significant decline in projector muscle burst intensity and peak contractile force of the projector muscle across the same interval. Across the remaining temperature range, however, projection dynamics were unaffected by temperature with contractile muscle physiology showing typical thermal effects and motor patterns showing increased activity durations and latencies. These results reveal that elastically powered tongue-projection performance in Eurycea is maintained to a higher degree than muscle-powered tongue retraction performance across a wide temperature range. These results further indicate that thermal robustness of the elastically powered movement is dependent on motor control and muscle physiology that results in comparable energy being stored in elastic tissues across a range of temperatures.

Publisher

The Company of Biologists

Subject

Insect Science,Molecular Biology,Animal Science and Zoology,Aquatic Science,Physiology,Ecology, Evolution, Behavior and Systematics

Reference46 articles.

1. Rubber-like properties of the inner hinge-ligament of Pectinidae;Alexander;J. Exp. Biol.,1966

2. Ballistic tongue projection in chameleons maintains high performance at low temperature;Anderson;Proc. Natl. Acad. Sci. USA,2010

3. Thermal effects on motor control and in vitro muscle dynamics of the ballistic tongue apparatus in chameleons;Anderson;J. Exp. Biol.,2012

4. Chameleon anatomy;Anderson,2014

5. Evidence for a vertebrate catapult: elastic energy storage in the plantaris tendon during frog jumping;Astley;Biol. Lett.,2012

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