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Front Plant Sci. 2017 Aug 09;8:1394. doi: 10.3389/fpls.2017.01394. eCollection 2017.

Phytochrome A and B Regulate Primary Metabolism in .

Frontiers in plant science

Xiaozhen Han, Takayuki Tohge, Pierce Lalor, Peter Dockery, Nicholas Devaney, Alberto A Esteves-Ferreira, Alisdair R Fernie, Ronan Sulpice

Affiliations

  1. Plant Systems Biology Research Lab, Plant and AgriBiosciences, School of Natural Sciences, NUI GalwayGalway, Ireland.
  2. Max Planck Institute of Molecular Plant PhysiologyPotsdam-Golm, Germany.
  3. Centre for Microscopy and Imaging, Anatomy, School of Medicine, NUI GalwayGalway, Ireland.
  4. Applied Optics Group, School of Physics, NUI GalwayGalway, Ireland.

PMID: 28848593 PMCID: PMC5552712 DOI: 10.3389/fpls.2017.01394

Abstract

Primary metabolism is closely linked to plant productivity and quality. Thus, a better understanding of the regulation of primary metabolism by photoreceptors has profound implications for agricultural practices and management. This study aims at identifying the role of light signaling in the regulation of primary metabolism, with an emphasis on starch. We first screened seven cryptochromes and phytochromes mutants for starch phenotype. The

Keywords: chloroplast ultrastructure; light intensity; light spectral content; metabolites; phytochrome A; phytochromes B; starch accumulation

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