Deep evolutionary conservation of a sex-determining locus without sequence homology

C Chuanxin Yu (Max Planck Institute for Biology) D Dean Hodapp (Institute of Organismic and Molecular Evolution, Johannes Gutenberg University) S Safira Moog (Institute of Organismic and Molecular Evolution, Johannes Gutenberg University) S Simon Dupont (Institut de Recherche sur la Biologie de l’Insecte (UMR 7261) CNRS, University of Tours) E Eric Darrouzet (Institut de Recherche sur la Biologie de l’Insecte (UMR 7261) CNRS, University of Tours) C Claudia Isabelle Keller Valsecchi (Institute of Molecular Biology) T Thomas Joseph Colgan (Institute of Organismic and Molecular Evolution, Johannes Gutenberg University) Q Qiaowei Pan (Max Planck Institute for Biology) H Hugo Darras (Institute of Organismic and Molecular Evolution, Johannes Gutenberg University)

Abstract

Sex determination is fundamental to eukaryotic life, yet its molecular basis varies widely across the tree of life. In most animal clades, sex-determining mechanisms are highly diverse and evolve rapidly. Here, we identify an exception in aculeate Hymenoptera, an ancient and diverse clade of haplodiploid insects that includes ants, bees, and stinging wasps. By integrating comparative genomics across Hymenoptera with genetic mapping in bumblebees and hornets, we reveal that the ANTSR locus, a multiallelic noncoding locus, has been maintained for over 150 My as the primary instructive signal for female development. This locus is located in a conserved synteny block that originated at the base of Aculeata and functions as a highly polymorphic, zygosity-based sex determiner, with only heterozygous individuals developing as females across lineages. Despite its deep evolutionary conservation, this sex locus shows no detectable sequence homology among lineages. These findings demonstrate that an essential noncoding locus can retain its function over deep evolutionary time without sequence conservation. More broadly, our results highlight haplodiploid insects as a powerful model for studying the evolution of sex determination mechanisms beyond those linked to sex chromosomes.

Article Details

Volume / Issue Vol. 123, Issue 2
Published January 13, 2026
ISSN 0027-8424
Publisher National Academy of Sciences

Authors (9)

C

Chuanxin Yu

Max Planck Institute for Biology

D

Dean Hodapp

Institute of Organismic and Molecular Evolution, Johannes Gutenberg University

S

Safira Moog

Institute of Organismic and Molecular Evolution, Johannes Gutenberg University

S

Simon Dupont

Institut de Recherche sur la Biologie de l’Insecte (UMR 7261) CNRS, University of Tours

E

Eric Darrouzet

Institut de Recherche sur la Biologie de l’Insecte (UMR 7261) CNRS, University of Tours

C

Claudia Isabelle Keller Valsecchi

Institute of Molecular Biology

T

Thomas Joseph Colgan

Institute of Organismic and Molecular Evolution, Johannes Gutenberg University

Q

Qiaowei Pan

Max Planck Institute for Biology

H

Hugo Darras

Institute of Organismic and Molecular Evolution, Johannes Gutenberg University