Inhibitory modulation of age-dependent behavior through <i>dsx</i> -expressing cells in honeybees

J Jana Seiler (Institute of Evolutionary Genetics, Department of Biology, Heinrich-Heine University) P Pia Ulbricht (Institute of Evolutionary Genetics, Department of Biology, Heinrich-Heine University) V Vivien Sommer (Institute of Evolutionary Genetics, Department of Biology, Heinrich-Heine University) S Sabine Metzger (Biocenter Mass Spectrometry Platform, Department of Biology, University of Cologne) B Bernd Grünewald (Honeybee Research Center Oberursel, Polytechnische Gesellschaft, Department of Biological Sciences, Goethe University, Frankfurt am Main) M Martin Beye (Institute of Evolutionary Genetics, Department of Biology, Heinrich-Heine University)

Abstract

Social insects exhibit distinct age-dependent behavioral repertoires that collectively contribute to the common benefits of a colony. However, how the nervous system manifests the capacity of such age-dependent, disparate behavioral repertoires underlying the division of labor is largely unknown. In honeybee ( Apis mellifera ), a classical model of such age-dependent polyethism, young but not older worker bees attend and feed the queen (retinue behavior), which is triggered by the queen mandibular pheromone (QMP). Here, we revealed that older bees are still equipped with a latent QMP retinue response that is, however, modulated by the electrical activity of doublesex -expressing ( dsx + ) cells. We genetically expressed a designed neuron silencer hM4Di protein from the endogenous dsx promoter. We conditionally activated this receptor protein by feeding or not feeding the synthetic ligand C21. Eight- to 11-day-old worker bees displayed a retinue-like QMP response under electrical silencing conditions (+C21) but not under nonsilencing conditions (−C21). Control experiments demonstrated that the administration of the ligand C21 could not account for the observed increase in retinue behaviors in older bees, which is otherwise only observed in younger bees. Our study suggests an inhibitory role of dsx + cells of age-dependent retinue behaviors and establishes an unexplored connection between polyethism and its manifestation in the nervous system. Hence, chemogenetically driven manipulations suggest inroads for examining the division of labor at the level of neuronal activity.

Article Details

Volume / Issue Vol. 123, Issue 29
Published July 21, 2026
ISSN 0027-8424
Publisher National Academy of Sciences

Authors (6)

J

Jana Seiler

Institute of Evolutionary Genetics, Department of Biology, Heinrich-Heine University

P

Pia Ulbricht

Institute of Evolutionary Genetics, Department of Biology, Heinrich-Heine University

V

Vivien Sommer

Institute of Evolutionary Genetics, Department of Biology, Heinrich-Heine University

S

Sabine Metzger

Biocenter Mass Spectrometry Platform, Department of Biology, University of Cologne

B

Bernd Grünewald

Honeybee Research Center Oberursel, Polytechnische Gesellschaft, Department of Biological Sciences, Goethe University, Frankfurt am Main

M

Martin Beye

Institute of Evolutionary Genetics, Department of Biology, Heinrich-Heine University