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Seed Germination of Arabidopsis thaliana phyA/phyB Double Mutants Is under Phytochrome Control

C. Poppe, E. Schafer
C. Poppe
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E. Schafer
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Published August 1997. DOI: https://doi.org/10.1104/pp.114.4.1487

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Abstract

We examined the photocontrol of seed germination in the phyA/phyB double mutants of Arabidopsis thaliana seeds. Dormant phyA/phyB seeds showed a red/far-red light (R/FR)-reversible induction of seed germination. This suggests the involvement of at least one other phytochrome, phyC, D, and/or E, in controlling seed germination. We designated this spectrally active phytochrome in phyA/phyB as phyX. The full reversibility of the R-induced germination by subsequent FR pulses, and the observation that the response is reversible by FR, even after a 3-h R treatment, indicates that this phyX response belongs to the low-fluence-response type. Thus, this phyX response is functionally related to phyB-mediated responses. However, in contrast to phyB-controlled seed germination, this phyX-mediated response needs a prolonged imbibition period and exhibits reversibility kinetics different from that needed for phyB. Furthermore, this phyX response requires a prolonged irradiation time and shows a fluence rate response dependency, showing a similarity to the high irradiance response of photomorphogenesis. Thus, phyX, with regard to its control of seed germination, is a functionally new phytochrome that shares some characteristics of both phyA- and phyB-mediated responses.

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Seed Germination of Arabidopsis thaliana phyA/phyB Double Mutants Is under Phytochrome Control
C. Poppe, E. Schafer
Plant Physiology Aug 1997, 114 (4) 1487-1492; DOI: 10.1104/pp.114.4.1487

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Seed Germination of Arabidopsis thaliana phyA/phyB Double Mutants Is under Phytochrome Control
C. Poppe, E. Schafer
Plant Physiology Aug 1997, 114 (4) 1487-1492; DOI: 10.1104/pp.114.4.1487
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Plant Physiology
Vol. 114, Issue 4
Aug 1997
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More in this TOC Section

  • The rms1 Mutant of Pea Has Elevated Indole-3-Acetic Acid Levels and Reduced Root-Sap Zeatin Riboside Content but Increased Branching Controlled by Graft-Transmissible Signal(s)
  • Bacterial Cellulose-Binding Domain Modulates in Vitro Elongation of Different Plant Cells
  • Gibberellin Dose-Response Regulation of GA4 Gene Transcript Levels in Arabidopsis
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