Maternally transmitted Wolbachia infect about half of insect species, yet
the predominant mode(s) of Wolbachia acquisition remains uncertain.
Species-specific associations could be old, with Wolbachia and hosts
co-diversifying (i.e., cladogenic acquisition), or relatively young and
acquired by horizontal transfer or introgression. The three Drosophila
yakuba-clade hosts ((D. santomea, D. yakuba), D. teissieri) diverged about
three million years ago and currently hybridize on Bioko and São Tomé,
west African islands. Each species is polymorphic for nearly identical
Wolbachia that cause weak cytoplasmic incompatibility (CI)–reduced egg
hatch when uninfected females mate with infected males. D. yakuba-clade
Wolbachia are closely related to wMel, globally polymorphic in D.
melanogaster. We use draft Wolbachia and mitochondrial genomes to
demonstrate that D. yakuba-clade phylogenies for Wolbachia and
mitochondria tend to follow host nuclear phylogenies. However, roughly
half of D. santomea individuals, sampled both inside and outside of the
São Tomé hybrid zone, have introgressed D. yakuba mitochondria. Both
mitochondria and Wolbachia possess far more recent common ancestors than
the bulk of the host nuclear genomes, precluding cladogenic Wolbachia
acquisition. General concordance of Wolbachia and mitochondrial
phylogenies suggests that horizontal transmission is rare, but varying
relative rates of molecular divergence complicate chronogram-based
statistical tests. Loci that cause CI in wMel are disrupted in D.
yakuba-clade Wolbachia; but, a second set of loci predicted to cause CI
are located in the same WO prophage region. These alternative CI loci seem
to have been acquired horizontally from distantly related Wolbachia, with
transfer mediated by flanking Wolbachia-specific ISWpi1 transposons. Code and data for Cooper
et al. 2019See the readme
file.cooper_genetics_19_dryad.zip