The Serine-Rich N-Terminal Domain of Oat Phytochrome A Helps Regulate Light Responses and Subnuclear Localization of the Photoreceptor
Open Access
- 1 July 2002
- journal article
- Published by Oxford University Press (OUP) in Plant Physiology
- Vol. 129 (3) , 1127-1137
- https://doi.org/10.1104/pp.010977
Abstract
Phytochrome (phy) A mediates two distinct photobiological responses in plants: the very-low-fluence response (VLFR), which can be saturated by short pulses of very-low-fluence light, and the high-irradiance response (HIR), which requires prolonged irradiation with higher fluences of far-red light (FR). To investigate whether the VLFR and HIR involve different domains within the phyA molecule, transgenic tobacco (Nicotiana tabacum cv Xanthi) and Arabidopsis seedlings expressing full-length (FL) and various deletion mutants of oat (Avena sativa) phyA were examined for their light sensitivity. Although most mutants were either partially active or inactive, a strong differential effect was observed for the Δ6-12 phyA mutant missing the serine-rich domain between amino acids 6 and 12. Δ6-12 phyA was as active as FL phyA for the VLFR of hypocotyl growth and cotyledon unfolding in Arabidopsis, and was hyperactive in the VLFR of hypocotyl growth and cotyledon unfolding in tobacco, and the VLFR blocking subsequent greening under white light in Arabidopsis. In contrast, Δ6-12 phyA showed a dominant-negative suppression of HIR in both species. In hypocotyl cells of Arabidopsis irradiated with FR phyA:green fluorescent protein (GFP) and Δ6-12 phyA:GFP fusions localized to the nucleus and coalesced into foci. The proportion of nuclei with abundant foci was enhanced by continuous compared with hourly FR provided at equal total fluence in FL phyA:GFP, and by Δ6-12 phyA mutation under hourly FR. We propose that the N-terminal serine-rich domain of phyA is involved in channeling downstream signaling via the VLFR or HIR pathways in different cellular contexts.Keywords
This publication has 57 references indexed in Scilit:
- Missense Mutation in the PAS2 Domain of Phytochrome A Impairs Subnuclear Localization and a Subset of ResponsesPlant Cell, 2002
- The VLF loci, polymorphic between ecotypes Landsberg erecta and Columbia, dissect two branches of phytochrome A signal transduction that correspond to very‐low‐fluence and high‐irradiance responsesThe Plant Journal, 1997
- Posttranslational Modification of Oat Phytochrome A: Phosphorylation of a Specific Serine in a Multiple Serine ClusterBiochemistry, 1997
- Phytochrome gene diversityPlant, Cell & Environment, 1997
- Far-red light blocks greening of Arabidopsis seedlings via a phytochrome A-mediated change in plastid development.Plant Cell, 1996
- Far-Red Light Blocks Greening of Arabidopsis Seedlings via a Phytochrome A: Mediated Change in Plastid DevelopmentPlant Cell, 1996
- The amino‐terminus of phytochrome A contains two distinct functional domainsThe Plant Journal, 1996
- Stable genetic transformation of Arabidopsis thaliana by Agrobacterium inoculation in plantaThe Plant Journal, 1994
- Dominant negative suppression of arabidopsis photoresponses by mutant phytochrome A sequences identifies spatially discrete regulatory domains in the photoreceptor.Plant Cell, 1994
- Serine-to-alanine substitutions at the amino-terminal region of phytochrome A result in an increase in biological activity.Genes & Development, 1992