FB2026_02 , released June 18, 2026
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Citation
Curtsinger, J.W. (1990). Frequency-dependent selection in Drosophila: Estimation of net fitness in pseudohaploid populations.  Evolution 44(4): 857--869.
FlyBase ID
FBrf0051738
Publication Type
Research paper
Abstract
There is much evidence that the viability of Drosophila larvae depends on the genotypes of other larvae with which they develop. There is, however, little evidence concerning frequency dependence of net fitness. This report documents variation in net fitness among male D. melanogaster from 17 lines studied in 49 discrete-generation populations. The experimental design, which uses attached-X females, eliminates effects of dominance, heterosis, recombination, genetic background, and selection in females. Selection operates only on patroclinously inherited X-chromosomes in males, causing frequency dynamics to mimic those of haploid populations. Analysis of one-generation transitions shows a general pattern of frequency dependence of net fitnesses. Analysis of multigeneration trajectories suggests frequency dependence in 12 populations, but trajectories tend to be heterogeneous among replicates. For a deterministic model in which fitness w(p) is a function of allelic frequency (p), oscillatory dynamics can occur where |dw(p)/dp| > w(p̂) (Curtsinger, 1984a). The derivative measures the strength of frequency-dependent selection, and divides models into two categories: dynamically "well-behaved" and "complex." For the pooled data, this criterion is violated in about half of the frequency space, though several factors probably cause strength to be overestimated. The strength criterion is a useful predictor of evolutionary dynamics: observed oscillations tend to occur most often where frequency dependence is strong, and less often where it is weak.
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    Language of Publication
    English
    Additional Languages of Abstract
    Parent Publication
    Publication Type
    Journal
    Abbreviation
    Evolution
    Title
    Evolution
    Publication Year
    1947-
    ISBN/ISSN
    0014-3820 1558-5646
    Data From Reference
    Genes (6)