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November 1, 1995The Plant Journal209 citations

Mutations throughout an Arabidopsis blue‐light photoreceptor impair blue‐light‐responsive anthocyanin accumulation and inhibition of hypocotyl elongation

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MAMargaret AhmadCentre National de la Recherche ScientifiqueCLChentao LinFujian Agriculture and Forestry UniversityACAnthony R. CashmoreUniversity of Pennsylvania

Key Points

  • To characterize novel mutations within the Arabidopsis HY4 gene encoding the CRY1 photoreceptor and evaluate their functional consequences on blue-light-dependent physiological responses.
  • Identified point mutations across the amino-terminal photolyase-homology domain and carboxy-terminal extension of the CRY1 protein in Arabidopsis thaliana.
  • Measured blue-light-induced hypocotyl elongation inhibition, anthocyanin accumulation, and chalcone synthase mRNA expression in mutant seedlings.
  • Point mutations within both the chromophore-binding amino-terminal region and the 200-amino-acid carboxy-terminal extension significantly disrupted CRY1 function.
  • CRY1 activity regulated seedling anthocyanin accumulation in part through chalcone synthase transcript modulation, with mutation severity in hypocotyl elongation closely correlating with anthocyanin biosynthesis defects.

Abstract

This paper reports the characterization of novel mutations within the Arabidopsis thaliana HY4 gene, which has previously been shown to encode a protein (CRY1) with characteristics of a blue-light photoreceptor. Several point mutations were identified within the amino-terminal domain of CRY1--this region of CRY1 has high homology to photolyase and is likely to be involved in blue-light-mediated electron transfer. Mutations were found within the region of homology to the known chromophore binding domains of photolyase. Point mutations within the 200 amino acid carboxy-terminal extension distinguishing CRY1 from photolyase, likewise disrupt function of the protein. CRY1 was originally defined as the photoreceptor responsible for blue-light-mediated inhibition of hypocotyl elongation and we now report that anthocyanin accumulation in germinating seedlings is an additional phenotype under the control of this photoreceptor--this is shown to be mediated in part by modulation of mRNA levels of chalcone synthase, one of the anthocyanin biosynthetic enzymes. The effect of the novel mutations on both inhibition of hypocotyl elongation and anthocyanin biosynthesis have been evaluated, and it is demonstrated that mutations with less severe effects on hypocotyl elongation show a similarly reduced effect on anthocyanin biosynthesis. These results are consistent with the cryptochrome photoreceptor mediating multiple regulatory pathways by the same primary mode of action.

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Cite This Study

Ahmad et al. (1995) studied this question.

synapsesocial.com/papers/69dcb61498c6111533e5381fhttps://doi.org/10.1046/j.1365-313x.1995.08050653.x
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