Essential and recurrent roles for hairpin RNAs in silencing de novo sex chromosome conflict in Drosophila simulans

Author:

Vedanayagam Jeffrey,Herbette Marion,Mudgett Holly,Lin Ching-Jung,Lai Chun-Ming,McDonough-Goldstein Caitlin,Dorus Stephen,Loppin Benjamin,Meiklejohn Colin,Dubruille Raphaëlle,Lai Eric C.ORCID

Abstract

Meiotic drive loci distort the normally equal segregation of alleles, which benefits their own transmission even in the face of severe fitness costs to their host organism. However, relatively little is known about the molecular identity of meiotic drivers, their strategies of action, and mechanisms that can suppress their activity. Here, we present data from the fruitfly Drosophila simulans that address these questions. We show that a family of de novo, protamine-derived X-linked selfish genes (the Dox gene family) is silenced by a pair of newly emerged hairpin RNA (hpRNA) small interfering RNA (siRNA)-class loci, Nmy and Tmy. In the w[XD1] genetic background, knockout of nmy derepresses Dox and MDox in testes and depletes male progeny, whereas knockout of tmy causes misexpression of PDox genes and renders males sterile. Importantly, genetic interactions between nmy and tmy mutant alleles reveal that Tmy also specifically maintains male progeny for normal sex ratio. We show the Dox loci are functionally polymorphic within D. simulans, such that both nmy-associated sex ratio bias and tmy-associated sterility can be rescued by wild-type X chromosomes bearing natural deletions in different Dox family genes. Finally, using tagged transgenes of Dox and PDox2, we provide the first experimental evidence Dox family genes encode proteins that are strongly derepressed in cognate hpRNA mutants. Altogether, these studies support a model in which protamine-derived drivers and hpRNA suppressors drive repeated cycles of sex chromosome conflict and resolution that shape genome evolution and the genetic control of male gametogenesis.

Funder

National Institute of General Medical Sciences

Agence Nationale de la Recherche

Eunice Kennedy Shriver National Institute of Child Health and Human Development

National cancer institute

United States - Israel Binational Science Foundation

Publisher

Public Library of Science (PLoS)

Subject

General Agricultural and Biological Sciences,General Immunology and Microbiology,General Biochemistry, Genetics and Molecular Biology,General Neuroscience

Reference54 articles.

1. Fertility Costs of Meiotic Drivers.;SE Zanders;Curr Biol,2019

2. Selfish genetic elements.;JA Agren;PLoS Genet,2018

3. The Ecology and Evolutionary Dynamics of Meiotic Drive;AK Lindholm;Trends Ecol Evol,2016

4. The Y Chromosome as a Battleground for Intragenomic Conflict;D. Bachtrog;Trends Genet,2020

5. Genetic conflict and sex chromosome evolution;CD Meiklejohn;Trends Ecol Evol,2010

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