4.1 Article

Phytochrome dependent quantitative control of Hd3a transcription is the basis of the night break effect in rice flowering

Journal

GENES & GENETIC SYSTEMS
Volume 84, Issue 2, Pages 179-184

Publisher

GENETICS SOC JAPAN
DOI: 10.1266/ggs.84.179

Keywords

flowering; Hd3a; night break; phytochrome; rice

Funding

  1. Ministry of Education, Culture, Sports, Science, and Technology of Japan [10182102]
  2. Rice Genome Programs [IP-1006]
  3. Japanese Society for the Promotion of Science
  4. Grants-in-Aid for Scientific Research [10182102] Funding Source: KAKEN

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A short exposure to light during relative night (night break; NB) delays flowering in the short day plant rice. NB acts by downregulating Heading date 3a (Hd3a) expression. Because phytochrome B mutants do not respond to NB and their flowering time is not affected even under NB conditions, phyB is required for the suppression of Hd3a expression. The effect of NB is quantitatively controlled by light quality and by either light intensity or duration. However, the molecular mechanisms that regulate these interactions are poorly understood. Here, we examine the roles of phytochromes in the regulation of Hd3a transcription under NB conditions using monochromatic red, far-red and blue light. Red and blue light downregulated Hd3a expression, but far-red light NB did not. The effect of red light NB on Hd3a is dependent on photon fluence and is restored by subsequent far-red light irradiation. Our results suggest that quantitative effect of light on flowering in rice NB is mediated by the regulation of Hd3a transcription by phyB.

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