Haplotype divergence supports long-term asexuality in the oribatid mite <i>Oppiella nova</i>.
basic_science · Level V
Where this comes from
- Record sourced from PubMed, PMID 34535550.
- Also identified by DOI 10.1073/pnas.2101485118 and PMC identifier 8463897.
- Licence recorded as CC BY.
- The licence permits redistribution, so the abstract is shown in full and the full text is available from the publisher.
Abstract
Sex strongly impacts genome evolution via recombination and segregation. In the absence of these processes, haplotypes within lineages of diploid organisms are predicted to accumulate mutations independently of each other and diverge over time. This so-called "Meselson effect" is regarded as a strong indicator of the long-term evolution under obligate asexuality. Here, we present genomic and transcriptomic data of three populations of the asexual oribatid mite species <i>Oppiella nova</i> and its sexual relative <i>Oppiella subpectinata</i> We document strikingly different patterns of haplotype divergence between the two species, strongly supporting Meselson effect-like evolution and long-term asexuality in <i>O. nova</i>: I) variation within individuals exceeds variation between populations in <i>O. nova</i> but vice versa in <i>O. subpectinata</i>; II) two <i>O. nova</i> sublineages feature a high proportion of lineage-specific heterozygous single-nucleotide polymorphisms (SNPs), indicating that haplotypes continued to diverge after lineage separation; III) the deepest split in gene trees generally separates the two haplotypes in <i>O. nova</i>, but populations in <i>O. subpectinata</i>; and IV) the topologies of the two haplotype trees match each other. Our findings provide positive evidence for the absence of canonical sex over evolutionary time in <i>O. nova</i> and suggest that asexual oribatid mites can escape the dead-end fate usually associated with asexual lineages.
Medical subject headings
- Mites
- Reproduction, Asexual