A Comparison of the Genetic Basis of Wing Size Divergence in Three Parallel Body Size Clines of Drosophila melanogaster

Author:

Gilchrist A Stuart1,Partridge Linda1

Affiliation:

1. Department of Biology, Galton Laboratory, University College London, London NW1 2HE, United Kingdom

Abstract

Abstract Body size clines in Drosophila melanogaster have been documented in both Australia and South America, and may exist in Southern Africa. We crossed flies from the northern and southern ends of each of these clines to produce F1, F2, and first backcross generations. Our analysis of generation means for wing area and wing length produced estimates of the additive, dominance, epistatic, and maternal effects underlying divergence within each cline. For both females and males of all three clines, the generation means were adequately described by these parameters, indicating that linkage and higher order interactions did not contribute significantly to wing size divergence. Marked differences were apparent between the clines in the occurrence and magnitude of the significant genetic parameters. No cline was adequately described by a simple additive-dominance model, and significant epistatic and maternal effects occurred in most, but not all, of the clines. Generation variances were also analyzed. Only one cline was described sufficiently by a simple additive variance model, indicating significant epistatic, maternal, or linkage effects in the remaining two clines. The diversity in genetic architecture of the clines suggests that natural selection has produced similar phenotypic divergence by different combinations of gene action and interaction.

Publisher

Oxford University Press (OUP)

Subject

Genetics

Reference39 articles.

1. Further evidence for coadaptation in crosses among geographic populations of Drosophila pseudoobscura;Anderson;Genet. Res.,1968

2. Evolution of the genetic architecture underlying fitness in the pitcher-plant mosquito, Wyeomyia smithii;Armbruster;Evolution,1997

3. Latitudinal variation of wing:thorax size ratio and wing aspect ratio in Drosophila melanogaster;Azevedo;Evolution,1998

4. The genetics of central and marginal populations of Drosophila serrata. 2. Hybrid breakdown in fitness components as a correlated response to selection for desiccation resistance;Blows;Evolution,1993

5. Hybrid breakdown in developmental time in the copepod Tigriopus californicus;Burton;Evolution,1990

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