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FPF1 promotes flowering in Arabidopsis.

T Kania, D Russenberger, S Peng, K Apel, S Melzer
T Kania
Swiss Federal Institute of Technology, Institute for Plant Sciences, Zurich, Switzerland.
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D Russenberger
Swiss Federal Institute of Technology, Institute for Plant Sciences, Zurich, Switzerland.
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S Peng
Swiss Federal Institute of Technology, Institute for Plant Sciences, Zurich, Switzerland.
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K Apel
Swiss Federal Institute of Technology, Institute for Plant Sciences, Zurich, Switzerland.
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S Melzer
Swiss Federal Institute of Technology, Institute for Plant Sciences, Zurich, Switzerland.
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Published August 1997. DOI: https://doi.org/10.1105/tpc.9.8.1327

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Abstract

We have characterized the gene flowering promoting factor1 (FPF1), which is expressed in apical meristems immediately after the photoperiodic induction of flowering in the long-day plants mustard and Arabidopsis. In early transition stages, expression is only detectable in the peripheral zone of apical meristems; however, later on, it can also be found in floral meristems and in axillary meristems that form secondary inflorescences. The FPF1 gene encodes a 12.6-kD protein that has no homology to any previously identified protein of known function. Constitutive expression of the gene in Arabidopsis under control of the cauliflower mosaic virus 35S promoter resulted in a dominant heritable trait of early flowering under both short- and long-day conditions. Treatments with gibberellin (GA) and paclobutrazol, a GA biosynthesis inhibitor, as well as crosses with GA-deficient mutants indicate that FPF1 is involved in a GA-dependent signaling pathway and modulates a GA response in apical meristems during the transition to flowering.

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FPF1 promotes flowering in Arabidopsis.
T Kania, D Russenberger, S Peng, K Apel, S Melzer
The Plant Cell Aug 1997, 9 (8) 1327-1338; DOI: 10.1105/tpc.9.8.1327

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FPF1 promotes flowering in Arabidopsis.
T Kania, D Russenberger, S Peng, K Apel, S Melzer
The Plant Cell Aug 1997, 9 (8) 1327-1338; DOI: 10.1105/tpc.9.8.1327
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The Plant Cell
Vol. 9, Issue 8
Aug 1997
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