Vascular pattern formation in plants.
Explore this paper's citation graph
Summary
A control mechanism in which an apical-basal flow of signal establishes a basic coordinate system for body axis formation and vascular strand differentiation, and in which a superimposed level of radial organizing cues elaborates cell patterns, would generate a reproducible tissue configuration in the context of an underlying robust, self-organizing structure and account for the simultaneous regularity and flexibility of vascular tissue patterns.
- Type
- review
- Published
- 2010-01-01
- Cited by
- 55
- References
- 253
- OpenAlex
- https://openalex.org/W53663657
- Semantic Scholar
- https://api.semanticscholar.org/CorpusID:37654300
Keywords
Multicellular organism, Biology, Vascular tissue, Context (archaeology), Anatomy
References
- Identification of CRE1 as a cytokinin receptor from Arabidopsis
- Polar PIN Localization Directs Auxin Flow in Plants
- Carrier-mediated auxin transport
- The evolution of early land plants.
- Sieve Elements: Comparative Structure, Induction, and Development
- Plasmodesmata : structure, function, role in cell communication
- Cell signalling at the shoot meristem
- Signals that control plant vascular cell differentiation
- Dynamics of MONOPTEROS and PIN-FORMED1 expression during leaf vein pattern formation in Arabidopsis thaliana.
- Role of PHABULOSA and PHAVOLUTA in determining radial patterning in shoots
- Gradual shifts in sites of free-auxin production during leaf-primordium development and their role in vascular differentiation and leaf morphogenesis in Arabidopsis
- The origin and early evolution of plants on land
- KANADI regulates organ polarity in Arabidopsis
- The control of growth and differentiation in plants
- Asymmetric leaves1 mediates leaf patterning and stem cell function in Arabidopsis
- Leaf polarity and meristem formation in Arabidopsis.
- Sites and homeostatic control of auxin biosynthesis in Arabidopsis during vegetative growth.
- Mutations affecting the radial organisation of the Arabidopsis root display specific defects throughout the embryonic axis
- Polar Auxin Transport and Asymmetric Auxin Distribution
- Members of the YABBY gene family specify abaxial cell fate in Arabidopsis.
Cited by
- Cell-to-Cell Signalling in Arabidopsis Root Development
- Caractérisation fonctionnelle de JMJ24, une déméthylase d’histone de la famille JUMONJI, chez Arabidopsis thaliana
- The roles of SHORT INTERNODES/STYLISH genes, regulators of auxin homeostasis, during leaf vein development in Arabidopsis thaliana
- Identification of novel MONOPTEROS target genes in embryonic root initiation
- Intercellular trafficking of transcription factors in the vascular tissue patterning.
- The VASCULATURE COMPLEXITY AND CONNECTIVITY Gene Encodes a Plant-Specific Protein Required for Embryo Provasculature Development1[C][W][OPEN]
- Prenatal plumbing--vascular tissue formation in the plant embryo.
- A bHLH complex controls embryonic vascular tissue establishment and indeterminate growth in Arabidopsis.
- Ecophysiological implications of vascular differentiation and plant evolution
- Deletion of MP/ARF5 domains III and IV reveals a requirement for Aux/IAA regulation in Arabidopsis leaf vascular patterning.
- The plant vascular system: evolution, development and functions.
- Role of hormones in controlling vascular differentiation and the mechanism of lateral root initiation
- Auxin-associated initiation of vascular cell differentiation by LONESOME HIGHWAY
- Message in a bottle: small signalling peptide outputs during growth and development.
- ERECTA Family Genes Regulate Auxin Transport in the Shoot Apical Meristem and Forming Leaf Primordia1[C][W][OPEN]
- The Plant-Specific Dof Transcription Factors Family: New Players Involved in Vascular System Development and Functioning in Arabidopsis
- Control of vein network topology by auxin transport
- Signaling and gene regulatory programs in plant vascular stem cells
- PHABULOSA Mediates an Auxin Signaling Loop to Regulate Vascular Patterning in Arabidopsis1[OPEN]
- Plant Phosphoglycerolipids: The Gatekeepers of Vascular Cell Differentiation
Related papers
- The origin of Metazoa: a unicellular perspective
- Unmatched Level of Molecular Convergence among Deeply Divergent Complex Multicellular Fungi
- The many roads to and from multicellularity
- The molecular origins of multicellular transitions.
- Homeodomain proteins belong to the ancestral molecular toolkit of eukaryotes
- On The Evolution of Bacterial Multicellularity
- Complex multicellularity in fungi: evolutionary convergence, single origin, or both?
- Group formation, relatedness, and the evolution of multicellularity.
- Complex multicellularity in fungi: evolutionary convergence, single origin, or both?