Trait changes in a harvested population are driven by a dynamic tug-of-war between natural and harvest selection
- 2 October 2007
- journal article
- research article
- Published by Proceedings of the National Academy of Sciences in Proceedings of the National Academy of Sciences
- Vol. 104 (40), 15799-15804
- https://doi.org/10.1073/pnas.0705908104
Abstract
Selective harvest of large individuals should alter natural adaptive landscapes and drive evolution toward reduced somatic growth and increased reproductive investment. However, few studies have simultaneously considered the relative importance of artificial and natural selection in driving trait changes in wild populations. Using 50 years of individual-based data on Windermere pike (Esox lucius), we show that trait changes tracked the adaptive peak, which moved in the direction imposed by the dominating selective force. Individual lifetime somatic growth decreased at the start of the time series because harvest selection was strong and natural selection was too weak to override the strength of harvest selection. However, natural selection favoring fast somatic growth strengthened across the time series in parallel with the increase in pike abundance and, presumably, cannibalism. Harvest selection was overridden by natural selection when the fishing effort dwindled, triggering a rapid increase in pike somatic growth. The two selective forces appear to have acted in concert during only one short period of prey collapse that favored slow-growing pike. Moreover, increased somatic growth occurred concurrently with a reduction in reproductive investment in young and small female pike, indicating a tradeoff between growth and reproduction. The age-specific amplitude of this change paralleled the age-specific strength of harvest pressure, suggesting that reduced investment was also a response to increased life expectancy. This is the first study to demonstrate that a consideration of both natural selection and artificial selection is needed to fully explain time-varying trait dynamics in harvested populations.Keywords
This publication has 24 references indexed in Scilit:
- The ideal free pike: 50 years of fitness-maximizing dispersal in WindermereProceedings Of The Royal Society B-Biological Sciences, 2006
- DOES SIZE MATTER MOST? THE EFFECT OF GROWTH HISTORY ON PROBABILISTIC REACTION NORM FOR SALMON MATURATIONEvolution, 2006
- Maladaptive changes in multiple traits caused by fishing: impediments to population recoveryEcology Letters, 2005
- Can commercial fishing cause evolution? Answers from guppies (Poecilia reticulata)Canadian Journal of Fisheries and Aquatic Sciences, 2005
- Undesirable evolutionary consequences of trophy huntingNature, 2003
- Disentangling the effects of size-selective mortality, density, and temperature on length-at-ageCanadian Journal of Fisheries and Aquatic Sciences, 2002
- Long-term studies on the Windermere populations of perch (Perca fluviatilis), pike (Esox lucius) and Arctic charr (Salvelinus alpinus)Freshwater Biology, 1990
- Optimal Life Histories Under Age-Specific PredationThe American Naturalist, 1979
- A Study of Reproduction, Early Life, Weight-Length Relationship and Growth of Pike, Esox lucius L., in WindermereJournal of Animal Ecology, 1967
- The Determination of the Age and Growth of Pike (Esox lucius L.) from Scales and Opercular BonesICES Journal of Marine Science, 1959