On the ontogeny of developmental stability in a stabilized trait
- 22 March 1997
- journal article
- Published by The Royal Society in Proceedings Of The Royal Society B-Biological Sciences
- Vol. 264 (1380) , 329-334
- https://doi.org/10.1098/rspb.1997.0047
Abstract
Developmental stability is most accurately assessed by measuring the small asymmetries between left and right elements of bilateral traits, i.e. fluctuating asymmetry. Although there has been much recent interest in fluctuating asymmetry, as low asymmetry may reflect high fitness, relatively little is known concerning the developmental origins of these minor discrepancies. Understanding the mechanisms that determine fluctuating asymmetry is crucial to interpreting much of the recent literature, for example, it has often been claimed that asymmetry reflects properties of an individual's genome. Therefore, in this study, we have examined the ontogeny of fluctuating asymmetry in the primary feathers of European starlings (Sturnus vulgaris) and compared our data with six published hypotheses of the mechanisms of asymmetry development. We found that signed asymmetries were not consistently biased toward either the left or the right side among feathers on the same individual; growth increments (measured every two days) were also not sided; and both absolute and relative asymmetry decrease as the feathers develop. These data are most consistent with a developmental regulatory system that involves some elements of feedback between left and right sides and episodes of compensational growth to correct large asymmetries. We discuss the possible differences in developmental mechanisms that determine asymmetry in traits of varying functional importance.Keywords
This publication has 25 references indexed in Scilit:
- Coercive mating, fluctuating asymmetry and male mating success in the dung flySepsis cynipseaAnimal Behaviour, 1996
- Ultraviolet vision and mate choice in zebra finchesNature, 1996
- Reproductive success and symmetry in zebra finchesAnimal Behaviour, 1996
- The analysis of fluctuating asymmetryAnimal Behaviour, 1994
- Female swallow preference for symmetrical male sexual ornamentsNature, 1992
- Lack of response to family selection for directional asymmetry inDrosophila melanogaster: left and right are not distinguished in developmentProceedings Of The Royal Society B-Biological Sciences, 1990
- Allomeric Variation. 1. The Theory and Some ConsequencesThe American Naturalist, 1982
- Developmental stability in constant and fluctuating temperaturesHeredity, 1960
- Experiments on canalizing selectionGenetics Research, 1960
- The Causes of Asymmetries in AnimalsThe American Naturalist, 1935