The ULTRAPETALA1 gene functions early in Arabidopsis development to restrict shoot apical meristem activity and acts through WUSCHEL to regulate floral meristem determinacy
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Flower developmentKey divisions in the early Arabidopsis embryo require POL and PLL1 phosphatases to establish the root stem cell organizer and vascular axis.Time to stop: flower meristem termination.A terminator of floral stem cells.BLADE-ON-PETIOLE1 coordinates organ determinacy and axial polarity in arabidopsis by directly activating ASYMMETRIC LEAVES2.Cytokinin regulates the activity of reproductive meristems, flower organ size, ovule formation, and thus seed yield in Arabidopsis thaliana.JAIBA, a class-II HD-ZIP transcription factor involved in the regulation of meristematic activity, and important for correct gynoecium and fruit development in Arabidopsis.The ERECTA receptor kinase regulates Arabidopsis shoot apical meristem size, phyllotaxy and floral meristem identity.ULTRAPETALA1 and LEAFY pathways function independently in specifying identity and determinacy at the Arabidopsis floral meristemRegulation of floral stem cell termination in ArabidopsisThe ERECTA, CLAVATA and class III HD-ZIP Pathways Display Synergistic Interactions in Regulating Floral Meristem ActivitiesSQUINT promotes stem cell homeostasis and floral meristem termination in Arabidopsis through APETALA2 and CLAVATA signalling.Sweet memories: epigenetic control in flowering.Molecular mechanisms of flower development: an armchair guide.Transcriptional profiling of sweetpotato (Ipomoea batatas) roots indicates down-regulation of lignin biosynthesis and up-regulation of starch biosynthesis at an early stage of storage root formation.Identification, cloning and characterization of an ultrapetala transcription factor CsULT1 from Crocus: a novel regulator of apocarotenoid biosynthesisThe ULTRAPETALA1 trxG factor contributes to patterning the Arabidopsis adaxial-abaxial leaf polarity axis.The SAND domain protein ULTRAPETALA1 acts as a trithorax group factor to regulate cell fate in plants.Genetic regulation and structural changes during tomato fruit development and ripening.APETALA2 antagonizes the transcriptional activity of AGAMOUS in regulating floral stem cells in Arabidopsis thaliana.EMBRYONIC FLOWER1 and ULTRAPETALA1 Act Antagonistically on Arabidopsis Development and Stress Response.State of the Art: trxG Factor Regulation of Post-embryonic Plant Development.Genome-Wide Association Mapping and Genomic Prediction Elucidate the Genetic Architecture of Morphological Traits in Arabidopsis.The signaling peptide-encoding genes CLE16, CLE17 and CLE27 are dispensable for Arabidopsis shoot apical meristem activity
P2860
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P2860
The ULTRAPETALA1 gene functions early in Arabidopsis development to restrict shoot apical meristem activity and acts through WUSCHEL to regulate floral meristem determinacy
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2004 nî lūn-bûn
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2004 թուականի Օգոստոսին հրատարակուած գիտական յօդուած
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2004 թվականի օգոստոսին հրատարակված գիտական հոդված
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2004年の論文
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2004年論文
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2004年論文
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2004年論文
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The ULTRAPETALA1 gene function ...... te floral meristem determinacy
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The ULTRAPETALA1 gene function ...... te floral meristem determinacy
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The ULTRAPETALA1 gene function ...... te floral meristem determinacy
@ast
The ULTRAPETALA1 gene function ...... te floral meristem determinacy
@en
prefLabel
The ULTRAPETALA1 gene function ...... te floral meristem determinacy
@ast
The ULTRAPETALA1 gene function ...... te floral meristem determinacy
@en
P2093
P2860
P1433
P1476
The ULTRAPETALA1 gene function ...... te floral meristem determinacy
@en
P2093
Cristel C Carles
Jennifer C Fletcher
Keira Reville
Kvin Lertpiriyapong
P2860
P304
P356
10.1534/GENETICS.104.028787
P407
P577
2004-08-01T00:00:00Z