Revealing the profound influence of diapause on gene expression: Insights from the annual transcriptome of the copepod Calanus finmarchicus

Overview
TitleRevealing the profound influence of diapause on gene expression: Insights from the annual transcriptome of the copepod Calanus finmarchicus
AuthorsPayton L, Last KS, Grigor J, Noirot C, Hüppe L, Conway DVP, Dannemeyer M, Wilcockson D, Meyer B
TypeJournal Article
Journal NameMolecular ecology
VolumeN/A
IssueN/A
Year2024
Page(s)e17425
CitationPayton L, Last KS, Grigor J, Noirot C, Hüppe L, Conway DVP, Dannemeyer M, Wilcockson D, Meyer B. Revealing the profound influence of diapause on gene expression: Insights from the annual transcriptome of the copepod Calanus finmarchicus. Molecular ecology. 2024 Jun 07; e17425.

Abstract

Annual rhythms are observed in living organisms with numerous ecological implications. In the zooplanktonic copepod Calanus finmarchicus, such rhythms are crucial regarding its phenology, body lipid accumulation, and global carbon storage. Climate change drives annual biological rhythms out of phase with the prevailing environmental conditions with yet unknown but potentially catastrophic consequences. However, the molecular dynamics underlying phenology are still poorly described. In a rhythmic analysis of C. finmarchicus annual gene expression, results reveal that more than 90% of the transcriptome shows significant annual rhythms, with abrupt and dramatic upheaval between the active and diapause life cycle states. This work explores the implication of the circadian clock in the annual timing, which may control epigenetic mechanisms to profoundly modulate gene expression in response to calendar time. Results also suggest an increased light sensitivity during diapause that would ensure the photoperiodic entrainment of the endogenous annual clock.

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Additional details for this publication include:
Property NameValue
Journal CountryEngland
Publication TypeJournal Article
Language Abbreng
LanguageEnglish
Copyright© 2024 The Author(s). Molecular Ecology published by John Wiley & Sons Ltd.
Elocation10.1111/mec.17425
DOI10.1111/mec.17425
Journal AbbreviationMol Ecol
Publication Date2024 Jun 07
eISSN1365-294X
ISSN1365-294X
Publication ModelPrint-Electronic
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PMID: PMID:38847383