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Genetic control of inflorescence architecture in legumesIdentification of genes specifically expressed in cauliflower reproductive meristems. Molecular characterization of BoREM1.Import and processing of the precursor of the delta subunit of tobacco chloroplast ATP synthase.Genetic and genomic analysis of legume flowers and seeds.How floral meristems are built.The shoot meristem identity gene TFL1 is involved in flower development and trafficking to the protein storage vacuole.Regulation of compound leaf development by PHANTASTICA in Medicago truncatula.AGO1 controls arabidopsis inflorescence architecture possibly by regulating TFL1 expression.Changing the spatial pattern of TFL1 expression reveals its key role in the shoot meristem in controlling Arabidopsis flowering architecture.Separate elements of the TERMINAL FLOWER 1 cis-regulatory region integrate pathways to control flowering time and shoot meristem identity.Control of dissected leaf morphology by a Cys(2)His(2) zinc finger transcription factor in the model legume Medicago truncatula.Pea VEGETATIVE2 Is an FD Homolog That Is Essential for Flowering and Compound Inflorescence Development.AUXIN RESPONSE FACTOR3 Regulates Compound Leaf Patterning by Directly Repressing PALMATE-LIKE PENTAFOLIATA1 Expression in Medicago truncatula.Clustering of genes involved in nitrate assimilation in the cyanobacterium Synechococcus.Analysis of B function in legumes: PISTILLATA proteins do not require the PI motif for floral organ development in Medicago truncatula.Use of a mutant strain of the cyanobacterium Synechococcus R2 for the determination of nitrate.Low temperature regulates Arabidopsis Lhcb gene expression in a light-independent manner.Sequence analysis of thymidine kinase-defective mutants of equine herpesvirus-1 (EHV-1).Functional conservation of PISTILLATA activity in a pea homolog lacking the PI motif.Transcription Factor Interplay between LEAFY and APETALA1/CAULIFLOWER during Floral Initiation.Regulatory interplay between LEAFY, APETALA1/CAULIFLOWER and TERMINAL FLOWER1: New insights into an old relationship.The PsEND1 promoter: a novel tool to produce genetically engineered male-sterile plants by early anther ablation.Dimerization of Arabidopsis 14-3-3 proteins: structural requirements within the N-terminal domain and effect of calciumDifferent roles of flowering-time genes in the activation of floral initiation genes in ArabidopsisLotus japonicus NOOT-BOP-COCH-LIKE1 is essential for nodule, nectary, leaf and flower developmentTERMINAL FLOWER1 Functions as a Mobile Transcriptional Cofactor in the Shoot Apical Meristem
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description
hulumtues
@sq
researcher
@en
wetenschapper
@nl
հետազոտող
@hy
name
Francisco Madueno
@ast
Francisco Madueno
@en
Francisco Madueno
@es
Francisco Madueno
@nl
Francisco Madueno
@sl
type
label
Francisco Madueno
@ast
Francisco Madueno
@en
Francisco Madueno
@es
Francisco Madueno
@nl
Francisco Madueno
@sl
prefLabel
Francisco Madueno
@ast
Francisco Madueno
@en
Francisco Madueno
@es
Francisco Madueno
@nl
Francisco Madueno
@sl
P106
P1153
55991755100
P21
P31
P496
0000-0001-7598-3003