A mobile ELF4 delivers circadian temperature information from shoots to roots

The circadian clock is synchronized by environmental cues, mostly by light and temperature. Explaining how the plant circadian clock responds to temperature oscillations is crucial to understanding plant responsiveness to the environment. Here, we found a prevalent temperature-dependent function of...

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Veröffentlicht in:Nature plants 2020-04, Vol.6 (4), p.416-426
Hauptverfasser: Chen, Wei Wei, Takahashi, Nozomu, Hirata, Yoshito, Ronald, James, Porco, Silvana, Davis, Seth J., Nusinow, Dmitri A., Kay, Steve A., Mas, Paloma
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Sprache:eng
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Zusammenfassung:The circadian clock is synchronized by environmental cues, mostly by light and temperature. Explaining how the plant circadian clock responds to temperature oscillations is crucial to understanding plant responsiveness to the environment. Here, we found a prevalent temperature-dependent function of the Arabidopsis clock component EARLY FLOWERING 4 (ELF4) in the root clock. Although the clocks in roots are able to run in the absence of shoots, micrografting assays and mathematical analyses show that ELF4 moves from shoots to regulate rhythms in roots. ELF4 movement does not convey photoperiodic information, but trafficking is essential for controlling the period of the root clock in a temperature-dependent manner. Low temperatures favour ELF4 mobility, resulting in a slow-paced root clock, whereas high temperatures decrease movement, leading to a faster clock. Hence, the mobile ELF4 delivers temperature information and establishes a shoot-to-root dialogue that sets the pace of the clock in roots. The Arabidopsis clock component ELF4 protein moves from shoots to roots to regulate the circadian clock in roots in a temperature-dependent manner. Low temperature increases the mobility of ELF4 and thus leads to a slow-paced root clock.
ISSN:2055-0278
DOI:10.1038/s41477-020-0634-2