Thermal conditions during juvenile development affect adult dispersal in a spider
- 4 November 2008
- journal article
- Published by Proceedings of the National Academy of Sciences in Proceedings of the National Academy of Sciences
- Vol. 105 (44) , 17000-17005
- https://doi.org/10.1073/pnas.0806830105
Abstract
Understanding the causes and consequences of dispersal is a prerequisite for the effective management of natural populations. Rather than treating dispersal as a fixed trait, it should be considered a plastic process that responds to both genetic and environmental conditions. Here, we consider how the ambient temperature experienced by juvenile Erigone atra, a spider inhabiting crop habitat, influences adult dispersal. This species exhibits 2 distinct forms of dispersal, ballooning (long distance) and rappelling (short distance). Using a half-sib design we raised individuals under 4 different temperature regimes and quantified the spiders' propensity to balloon and to rappel. Additionally, as an indicator of investment in settlement, we determined the size of the webs build by the spiders following dispersal. The optimal temperature regimes for reproduction and overall dispersal investment were 20 degrees C and 25 degrees C. Propensity to perform short-distance movements was lowest at 15 degrees C, whereas for long-distance dispersal it was lowest at 30 degrees C. Plasticity in dispersal was in the direction predicted on the basis of the risks associated with seasonal changes in habitat availability; long-distance ballooning occurred more frequently under cooler, spring-like conditions and short-distance rappelling under warmer, summer-like conditions. Based on these findings, we conclude that thermal conditions during development provide juvenile spiders with information about the environmental conditions they are likely to encounter as adults and that this information influences the spider's dispersal strategy. Climate change may result in suboptimal adult dispersal behavior, with potentially deleterious population level consequences.Keywords
This publication has 40 references indexed in Scilit:
- Reid’s Paradox Revisited: The Evolution of Dispersal Kernels during Range ExpansionThe American Naturalist, 2008
- Starvation affects pre-dispersal behaviour of Erigone spidersBasic and Applied Ecology, 2008
- Rapid evolution of seed dispersal in an urban environment in the weedCrepis sanctaProceedings of the National Academy of Sciences, 2008
- How Does It Feel to Be Like a Rolling Stone? Ten Questions About Dispersal EvolutionAnnual Review of Ecology, Evolution, and Systematics, 2007
- Mobility and lifetime fecundity in new versus old populations of the Glanville fritillary butterflyOecologia, 2007
- Pollination and other ecosystem services produced by mobile organisms: a conceptual framework for the effects of land‐use changeEcology Letters, 2007
- Aerial dispersal plasticity under different wind velocities in a salt marsh wolf spiderBehavioral Ecology, 2006
- From Individual Dispersal to Species Ranges: Perspectives for a Changing WorldScience, 2006
- Dispersal behaviour in fragmented landscapes: Routine or special movements?Basic and Applied Ecology, 2005
- Information and its use by animals in evolutionary ecologyTrends in Ecology & Evolution, 2005