4.8 Article

Multiple Phytochrome-Interacting bHLH Transcription Factors Repress Premature Seedling Photomorphogenesis in Darkness

Journal

CURRENT BIOLOGY
Volume 18, Issue 23, Pages 1815-1823

Publisher

CELL PRESS
DOI: 10.1016/j.cub.2008.10.058

Keywords

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Funding

  1. Spanish Ministry of Education and Science
  2. Spanish Ministry of Education and Science [B102006-09254]
  3. Japan Society for the Promotion of Science for Young Scientists
  4. National Science Foundation [IBN-0418653, IOS-0822811]
  5. National Institutes of Health [GM-47475]
  6. Department of Energy [DEFG03-87ER13742]
  7. USDA [5335-21000-017-00D]
  8. Direct For Biological Sciences
  9. Division Of Integrative Organismal Systems [0822811] Funding Source: National Science Foundation

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Background: An important contributing factor to the success of terrestrial flowering plants in colonizing the land was the evolution of a developmental strategy, termed skotomorphogenesis, whereby postgerminative seedlings emerging from buried seed grow vigorously upward in the subterranean darkness toward the soil surface. Results: Here we provide genetic evidence that a central component of the mechanism underlying this strategy is the collective repression of premature photomorphogenic development in dark-grown seedlings by several members of the phytochrome (phy)-interacting factor (PIF) subfamily of bHLH transcription factors (PIF1, PIF3, PIF4, and PIF5). Conversely, evidence presented here and elsewhere collectively indicates that a significant component of the mechanism by which light initiates photomorphogenesis upon first exposure of dark-grown seedlings to irradiation involves reversal of this repression by rapid reduction in the abundance of these PIF proteins, through degradation induced by direct interaction of the photoactivated phy molecule with the transcription factors. Conclusions: We conclude that bHLH transcription factors PIF1, PIF3, PIF4 and PIF5 act as constitutive repressors of photomorphogenesis in the dark, action that is rapidly abrogated upon light exposure by phy-induced proteolytic degradation of these PIFs, allowing the initiation of photomorphogenesis to occur.

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