An introgressed gene causes meiotic drive in <i>Neurospora sitophila</i>.
basic_science · Level V
Where this comes from
- Record sourced from PubMed, PMID 33875604.
- Also identified by DOI 10.1073/pnas.2026605118 and PMC identifier 8092558.
- 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
Meiotic drive elements cause their own preferential transmission following meiosis. In fungi, this phenomenon takes the shape of spore killing, and in the filamentous ascomycete <i>Neurospora sitophila</i>, the <i>Sk-1</i> spore killer element is found in many natural populations. In this study, we identify the gene responsible for spore killing in <i>Sk-1</i> by generating both long- and short-read genomic data and by using these data to perform a genome-wide association test. We name this gene <i>Spk-1</i> Through molecular dissection, we show that a single 405-nt-long open reading frame generates a product that both acts as a poison capable of killing sibling spores and as an antidote that rescues spores that produce it. By phylogenetic analysis, we demonstrate that the gene has likely been introgressed from the closely related species <i>Neurospora hispaniola</i>, and we identify three subclades of <i>N. sitophila</i>, one where <i>Sk-1</i> is fixed, another where <i>Sk-1</i> is absent, and a third where both killer and sensitive strain are found. Finally, we show that spore killing can be suppressed through an RNA interference-based genome defense pathway known as meiotic silencing by unpaired DNA. <i>Spk-1</i> is not related to other known meiotic drive genes, and similar sequences are only found within <i>Neurospora</i> These results shed light on the diversity of genes capable of causing meiotic drive, their origin and evolution, and their interaction with the host genome.
Medical subject headings
- Genetic Introgression
- Neurospora
- RNA Interference
- Repetitive Sequences, Nucleic Acid