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Reference - PMID:32152323 - Time-lapse single-cell transcriptomics reveals modulation of histone H3 for dormancy breaking in fission yeast.

Reference summary

PubMed ID
PMID:32152323
Title
Time-lapse single-cell transcriptomics reveals modulation of histone H3 for dormancy breaking in fission yeast.
Authors
Tsuyuzaki H, Hosokawa M, Arikawa K, Yoda T, Okada N, Takeyama H, Sato M
Citation
Nat Commun 2020 Mar 09;11(1):1265
Publication year
2020
Abstract
How quiescent cells break dormancy is a key issue in eukaryotic cells including cancer. Fungal spores, for example, remain quiescent for long periods until nourished, although the mechanisms by which dormancy is broken remain enigmatic. Transcriptome analysis could provide a clue, but methods to synchronously germinate large numbers of spores are lacking, and thus it remains a challenge to analyse gene expression upon germination. Hence, we develop methods to assemble transcriptomes from individual, asynchronous spore cells of fission yeast undergoing germination to assess transcriptomic changes over time. The virtual time-lapse analyses highlights one of three copies of histone H3 genes whose transcription fluctuates during the initial stage of germination. Disruption of this temporal fluctuation causes defects in spore germination despite no visible defects in other stages of the life cycle. We conclude that modulation of histone H3 expression is a crucial 'wake-up' trigger at dormancy breaking.

Annotation

Single locus phenotype

FYPO:0000582 - decreased rate of spore germination

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FYPO:0001355 - decreased vegetative cell population growth

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FYPO:0003176 - normal meiotic chromosome segregation

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FYPO:0000579 - normal spore germination

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FYPO:0001357 - normal vegetative cell population growth

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