Temperature and genotypic effects on life history and fluctuating asymmetry in a field strain of Culex pipiens
- 2 April 2002
- journal article
- Published by Springer Nature in Heredity
- Vol. 88 (4) , 307-312
- https://doi.org/10.1038/sj.hdy.6800045
Abstract
Fluctuating asymmetry (FA) has been proposed as a tool to measure levels of stress experienced by populations of organisms during development. To be of value as a bio-marker to highlight conditions at particular sites, it is important that variation in FA is due to environmental (eg pollution) variation and not genetic variation among populations and families, in other words heritability for FA should be very close to zero. A full-sib design was set up in which families of Culex pipiens mosquitoes collected from the field were reared at three different developmental temperatures. The effects of temperature and family on developmental rate, egg to adult survival and four wing morphological measures were assessed. There was both a temperature and a family effect on development rate and survival. Temperature affected all four wing traits, but an influence of family was only evident in two of the wing traits. Two separate measures of FA for each of the wing traits were obtained. The mean estimates of FA were mainly around 1% of the value of the character measured. There was evidence of an increase in FA with increase in temperature stress. Heritability was estimated for the wing traits and wing trait FA's using restricted estimation maximum likelihood. The estimates of heritability for the wing traits were small and, individually, did not differ significantly from zero. There was also no evidence of heritable genetic variation for any of the wing trait FA's. The results are discussed in relation to other studies where FA heritabilities have been estimated and in relation to the use of FA as an indicator of environmental stress.Keywords
This publication has 40 references indexed in Scilit:
- Can Fluctuating Asymmetry in Adult Burrowing Mayflies (Hexagenia rigida, Ephemeroptera) be used as a Measure of Contaminant Stress?Journal of Great Lakes Research, 1999
- Condition-dependent asymmetry is fluctuating asymmetryJournal of Evolutionary Biology, 1999
- Heritability of size but not symmetry in a sexually selected trait chosen by female earwigsHeredity, 1999
- Fluctuating asymmetry of sexual and nonsexual traits in stalk-eyed flies: a poor indicator of developmental stress and genetic qualityJournal of Evolutionary Biology, 1999
- Female choice and manipulations of forceps size and symmetry in the earwigForficula auriculariaL.Animal Behaviour, 1998
- Effects of size and fluctuating asymmetry on field fitness of the parasitoid Trichogramma carverae (Hymenoptera: Trichogrammatidae)Journal of Animal Ecology, 1998
- Inbreeding, fluctuating asymmetry, and ejaculate quality in an endangered ungulateProceedings Of The Royal Society B-Biological Sciences, 1998
- Levels of asymmetry in Formica pratensis Retz. (Hymenoptera, insecta) from a chronic metal‐contaminated siteEnvironmental Toxicology and Chemistry, 1997
- Increase in developmental instability upon inbreeding in DaphniaHeredity, 1997
- The effect of new environment on adapted genetic architectureHeredity, 1990