Photoreceptor control of <i>Platynereis</i> growth and lifespan via evolutionarily conserved molecular pathways

G Gabriele Andreatta (Department of Neuroscience and Developmental Biology, Faculty of Life Sciences, University of Vienna) F Federico Scaramuzza (Department of Neuroscience and Developmental Biology, Faculty of Life Sciences, University of Vienna) A Aida Ćorić (Department of Neuroscience and Developmental Biology, Faculty of Life Sciences, University of Vienna) L Lukas Orel (Department of Neuroscience and Developmental Biology, Faculty of Life Sciences, University of Vienna) A Audrey M. Mat (Department of Neuroscience and Developmental Biology, Faculty of Life Sciences, University of Vienna) H Hiroki Takekata (Institute for Co-creative Research and Outreach, University of the Ryukyus) B Birgit Poehn (Department of Neuroscience and Developmental Biology, Faculty of Life Sciences, University of Vienna) N Nadja Milivojev (Department of Neuroscience and Developmental Biology, Faculty of Life Sciences, University of Vienna) K Kristin Tessmar-Raible (Department of Neuroscience and Developmental Biology, Faculty of Life Sciences, University of Vienna)

Abstract

Natural light is severely affected by human impact on Earth, yet little is known about the roles light receptors have outside vision and rhythmic processes, despite their tremendously wide abundance. Here we show that loss-of-function of the light-receptive cryptochrome ( l-cry ) in marine bristleworms significantly increases lifespan and adult size, similarly to wild-types reared in constant darkness. Quantitative transcriptomics revealed hormonal players crucial for invertebrate and vertebrate sexual development and reproduction affected in l-cry mutants. These include nr0b1/2 , ortholog of dax-1 ( nr0b1 ) and shp ( nr0b2 ), long considered vertebrate novelties. Depending on moon-phase, nr0b1/2 is up- or down-regulated in l-cry mutants. Matching the complex regulation, data consistent with loss of nr0b1/2 function partially recapitulate l-cry phenotypes. Molecularly, Platynereis Nr0b1/2 affects steroidogenic and other endocrine pathways, nuclear receptor signaling, and transcription factor orthologs involved in sexual developmental, reproductive, and timing processes in other organisms. Thus, our study suggests profound and direct effects of light on adult animal life-time, likely at least in part via conserved endocrine pathways involved in sexual maturation and reproduction in annelids and vertebrates.

Article Details

Volume / Issue Vol. 123, Issue 12
Published March 24, 2026
ISSN 0027-8424
Publisher National Academy of Sciences

Authors (9)

G

Gabriele Andreatta

Department of Neuroscience and Developmental Biology, Faculty of Life Sciences, University of Vienna

F

Federico Scaramuzza

Department of Neuroscience and Developmental Biology, Faculty of Life Sciences, University of Vienna

A

Aida Ćorić

Department of Neuroscience and Developmental Biology, Faculty of Life Sciences, University of Vienna

L

Lukas Orel

Department of Neuroscience and Developmental Biology, Faculty of Life Sciences, University of Vienna

A

Audrey M. Mat

Department of Neuroscience and Developmental Biology, Faculty of Life Sciences, University of Vienna

H

Hiroki Takekata

Institute for Co-creative Research and Outreach, University of the Ryukyus

B

Birgit Poehn

Department of Neuroscience and Developmental Biology, Faculty of Life Sciences, University of Vienna

N

Nadja Milivojev

Department of Neuroscience and Developmental Biology, Faculty of Life Sciences, University of Vienna

K

Kristin Tessmar-Raible

Department of Neuroscience and Developmental Biology, Faculty of Life Sciences, University of Vienna