NATURAL HYBRIDIZATION BETWEEN THE SYMPATRIC HAWAIIAN SPECIES DROSOPHILA SILVESTRIS AND DROSOPHILA HETERONEURA
- 1 January 1989
- Vol. 43 (1) , 190-203
- https://doi.org/10.1111/j.1558-5646.1989.tb04217.x
Abstract
Two newly formed, morphologically distinct species of Drosophila from the island of Hawaii have been found to form fertile hybrids in two areas of sympatry. Both F1 and backcross hybrids have been recognized in nature; in one case, the hybridization events extended over three years. Original hybridizations involved one or more D. silvestris females mating with D. heteroneura males. Female F1 hybrids from this cross have participated in backcrosses to D. silvestris. In any one locality, less than 2% hybrids have been found in nature. A hybrid swarm was not formed; selection appears to favor a strict maintenence of morphologies characteristic of the separate species. This result is attributed to pervasive sexual selection, which serves to preserve the syndromes of sexual characteristics that arose during past allopatric divergence. Populations of D. silvestris both within and outside the present range of D. heteroneura often display heritable variation in color patterns involving the abdomen, pleurae, legs, and wings. Genes effecting variation in these characters may be derived from genes involved in a past introgression from D. heteroneura. Independent evidence for past hybridization between these species comes from study of mitochondrial DNA. Although the inferred direction of the cross is the opposite of that observed in the recent case described here, both reciprocal crosses have been obtained experimentally in the laboratory. Accordingly, we suggest that these species may have been open to hybridization since their first sympatic encounters following their inception in allopatry. That they remain as strictly recognizable morphological entities is due both to their current partial allopatry and to the action of sexual selection in maintaining two separate major modes of efficient reproduction. There is no reason to invoke specific reinforcing selection that has imposed reproductive isolation.Funding Information
- National Science Foundation (BMS 74‐15506, 79‐26692)
This publication has 22 references indexed in Scilit:
- Phylogeographic relationships within the Mediterranean turbot inferred by mitochondrial DNA haplotype variationJournal of Fish Biology, 2004
- THE GENETIC SYSTEM, THE DEME, AND THE ORIGIN OF SPECIESAnnual Review of Genetics, 1987
- Discordance of nuclear and mitochondrial DNA phylogenies in Hawaiian Drosophila.Proceedings of the National Academy of Sciences, 1986
- Mitochondrial DNA variability in natural populations of Hawaiian Drosophila. II. Genetic and phylogenetic relationships of natural populations of D. silvestris and D. heteroneuraHeredity, 1986
- Evolution of drosophila on the newer hawaiian volcanoesHeredity, 1982
- Morphometric Evidence for Incipient Speciation in Drosophila silvestris from the Island of HawaiiEvolution, 1982
- Change in a secondary sexual character as evidence of incipient speciation in Drosophila silvestrisProceedings of the National Academy of Sciences, 1979
- Genetic Variation in Hawaiian Drosophila. V. Chromosomal and Allozymic Diversity in Drosophila silvestris and its Homosequential SpeciesEvolution, 1979
- Natural Hybridization between a Sympatric Pair of Hawaiian DrosophilaThe American Naturalist, 1977
- Drosophila Hybrids in Nature: Proof of Gene Exchange Between Sympatric SpeciesScience, 1975