Response To Natural And Laboratory Selection At The Drosophila Hsp70 Genes
Open Access
- 1 September 2002
- Vol. 56 (9) , 1796-1801
- https://doi.org/10.1111/j.0014-3820.2002.tb00193.x
Abstract
To determine whether and how laboratory and natural selection act on the hsp70 (70-Kd heat-shock protein) genes of Drosophila melanogaster, we examined hsp70 allele frequencies in two sets of populations. First, five populations reared at different temperatures for more than 20 years differentially fixed both a large insertion/deletion (indel) polymorphism at the 87A7 hsp70 cluster ("56H8"/"122") and a single nucleotide polymorphism at the 87C1 hsp70 cluster. In both cases, the 18 degrees C and 25 degrees C populations fixed one allele and the 28 degrees C populations the other, consistent with previously described evolved differences among these populations in Hsp70 expression and thermotolerance. Second, we examined 56H8 and 122 frequencies in a set of 11 populations founded from flies collected along a latitudinal transect of eastern Australia. The 56H8 allele frequencies are positively associated with latitude, consistent with maintenance of the 56H8/122 polymorphism by natural selection. Thermal extremes and average values are negatively correlated with latitude. These results suggest that natural selection imposed by temperature and thermal variability may affect hsp70 allele frequencies.Keywords
This publication has 28 references indexed in Scilit:
- Rapid Concerted Evolution via Gene Conversion at the Drosophila hsp70 GenesJournal of Molecular Evolution, 2002
- Changing fitness consequences of hsp70 copy number in transgenic Drosophila larvae undergoing natural thermal stressFunctional Ecology, 2000
- Evolution of Thermotolerance and Variation in the Heat Shock Protein, Hsp70American Zoologist, 1999
- Natural hyperthermia and expression of the heat shock protein Hsp70 affect developmental abnormalities in Drosophila melanogasterOecologia, 1999
- The Function of Heat-Shock Proteins in Stress Tolerance: Degradation and Reactivation of Damaged ProteinsAnnual Review of Genetics, 1993
- The consequences of expressing hsp70 in Drosophila cells at normal temperatures.Genes & Development, 1992
- Temperature‐related divergence in experimental populations of Drosophila melanogaster. II. Correlation between fitness and body dimensionsJournal of Evolutionary Biology, 1989
- Is the major Drosophila heat shock protein present in cells that have not been heat shocked?The Journal of cell biology, 1983
- Genes for the 70,000 dalton heat shock protein in two cloned D. melanogaster DNA segmentsCell, 1979
- Physical map of two D. melanogaster DNA segments containing sequences coding for the 70,000 dalton heat shock proteinCell, 1979