A Shift toward Smaller Cell Size via Manipulation of Cell Cycle Gene Expression Acts to Smoothen Arabidopsis Leaf Shape
- 1 August 2011
- journal article
- research article
- Published by Oxford University Press (OUP) in Plant Physiology
- Vol. 156 (4), 2196-2206
- https://doi.org/10.1104/pp.111.176073
Abstract
Understanding the relationship of the size and shape of an organism to the size, shape, and number of its constituent cells is a basic problem in biology; however, numerous studies indicate that the relationship is complex and often nonintuitive. To investigate this problem, we used a system for the inducible expression of genes involved in the G1/S transition of the plant cell cycle and analyzed the outcome on leaf shape. By combining a careful developmental staging with a quantitative analysis of the temporal and spatial response of cell division pattern and leaf shape to these manipulations, we found that changes in cell division frequency occurred much later than the observed changes in leaf shape. These data indicate that altered cell division frequency cannot be causally involved in the observed change of shape. Rather, a shift to a smaller cell size as a result of the genetic manipulations performed correlated with the formation of a smoother leaf perimeter, i.e. appeared to be the primary cellular driver influencing form. These data are discussed in the context of the relationship of cell division, growth, and leaf size and shape.Keywords
This publication has 50 references indexed in Scilit:
- Model for the regulation of Arabidopsis thaliana leaf margin developmentProceedings of the National Academy of Sciences, 2011
- The Arabidopsis Cell Cycle F-Box Protein SKP2A Binds to AuxinPlant Cell, 2010
- ArabidopsisRETINOBLASTOMA-RELATED Is Required for Stem Cell Maintenance, Cell Differentiation, and Lateral Organ ProductionPlant Cell, 2010
- Integration of transport-based models for phyllotaxis and midvein formationGenes & Development, 2009
- A Gender-Specific Retinoblastoma-Related Protein inVolvox carteriImplies a Role for the Retinoblastoma Protein Family in Sexual DevelopmentPlant Cell, 2008
- Expression of Genomic AtCYCD2;1 in Arabidopsis Induces Cell Division at Smaller Cell Sizes: Implications for the Control of Plant GrowthPlant Physiology, 2007
- Visualizing Plant Development and Gene Expression in Three Dimensions Using Optical Projection TomographyPlant Cell, 2006
- Induction of Differentiation in the Shoot Apical Meristem by Transient Overexpression of a Retinoblastoma-Related ProteinPlant Physiology, 2006
- TCP Transcription Factors Control the Morphology of Shoot Lateral Organs via Negative Regulation of the Expression of Boundary-Specific Genes inArabidopsisPlant Cell, 2006
- SERRATE coordinates shoot meristem function and leaf axial patterning in ArabidopsisNature, 2005