Diagnosing senescence: inferring evolutionary causes from phenotypic patterns can be misleading
- 22 December 1995
- journal article
- Published by The Royal Society in Proceedings Of The Royal Society B-Biological Sciences
- Vol. 262 (1365) , 305-312
- https://doi.org/10.1098/rspb.1995.0210
Abstract
Based on the predictions of two theories for the evolution of senescence, the `antagonistic pleiotropy' and the `mutation accumulation' theory, an age-specific increase in mortality and a decrease in fecundity are widely used criteria to diagnose senescence in natural and laboratory populations. In this study we question the reliability of these criteria. Using a simple model we show that similar phenotypic patterns result from optimal life histories without senescence. With a tradeoff between reproduction and period survival, optimal life histories produce patterns of increasing mortality and decreasing fecundity as organisms age, even if the tradeoff does not deteriorate with age, so that we are not forced to invoke genetic effects such as antagonistic pleiotropy or accumulation of deleterious mutations to explain such patterns. Furthermore, if optimal life history theory is applied to senescent organisms, phenotypic patterns can result that are usually not associated with senescence. We conclude that the reliability of a diagnosis of senescence based on phenotypic patterns and the comprehension of the phenomenon senescence depends critically on understanding to what extent tradeoffs are determined by the effects of segregating genes.Keywords
This publication has 22 references indexed in Scilit:
- Heuristic optimization of the general life history problem: A novel approachEvolutionary Ecology, 1996
- Retarded senescence in an insular population of Virginia opossums (Didelphis virginiana)Journal of Zoology, 1993
- Optimally, mutation and the evolution of ageingNature, 1993
- Primate longevity: Its place in the mammalian schemeAmerican Journal of Primatology, 1992
- Threshold accepting: A general purpose optimization algorithm appearing superior to simulated annealingJournal of Computational Physics, 1990
- Increased Life-Span of age -1 Mutants in Caenorhabditis elegans and Lower Gompertz Rate of AgingScience, 1990
- Slow Mortality Rate Accelerations During Aging in Some Animals Approximate That of HumansScience, 1990
- Trade-Offs in Life-History EvolutionFunctional Ecology, 1989
- Optimization by Simulated AnnealingScience, 1983
- A test of evolutionary theories of senescenceNature, 1980