Temperature alters multimodal signaling and mating success in an ectotherm

Publication Type:Journal Article
Year of Publication:2018
Autoren:Brandt, J. Kelley, Elias
Journal:Behavioral Ecology and Sociobiology
Volume:72
Problem:12
Date Published:Jan-12-2018
ISSN:0340-5443
Schlüsselwörter:biotremology, communication, multimodal signals, Salticidae, sexual selection, Temperature, Thermal ecology, Vibratory communication
Zusammenfassung:

Temperature affects ectotherms in a variety of ways. These effects can be especially complex in sexual behaviors, as different sexes may be affected differently by temperature. We examined this in the jumping spider, Habronattus clypeatus. In this species, males court females using visual and vibratory signals. We tested whether key intersexual behaviors would change with temperature in similar, predictable ways across males and females. We first measured temperature and apparent activity of individuals across the day. We found that H. clypeatus are active across a wide range of temperatures (11–56 °C) and are most active at times of day when temperature ranges from 13 to 46 °C. Next, we performed mating experiments across behaviorally relevant temperatures. Females were more likely to allow males to progress to later stages of courtship and had higher mating rates at higher temperatures. Male visual and vibratory courtship behaviors generally became faster, higher-pitched, and lower in amplitude at higher temperatures. This relationship between temperature and signal aspects attained a roughly curvilinear shape, with an asymptote around 40 °C. Intriguingly, mating rates in the lab were highest at temperatures potentially above those during peak spider activity in the field. Our results suggest that temperature’s effects on behavior are complex and can affect males and females differently. This work emphasizes that understanding temperature effects on mating is critical to understanding sexual selection patterns particularly in species which use complex signals.

URL:http://link.springer.com/10.1007/s00265-018-2620-5
DOI:10.1007/s00265-018-2620-5
Short Title:Behav Ecol Sociobiol
BioAcoustica ID: 
Scratchpads developed and conceived by (alphabetical): Ed Baker, Katherine Bouton Alice Heaton Dimitris Koureas, Laurence Livermore, Dave Roberts, Simon Rycroft, Ben Scott, Vince Smith