Abstract
Because plant cells do not move and are surrounded by a rigid cell wall, cell division rates and patterns are believed to be directly responsible for generating new structures throughout development. To study the relationship between cell division and morphogenesis, transgenic tobacco and Arabidopsis plants were constructed expressing dominant mutations in a key regulator of the Arabidopsis cell cycle, the Cdc2a kinase. Plants constitutively overproducing the wild-type Cdc2a or the mutant form predicted to accelerate the cell cycle did not exhibit a significantly altered development. In contrast, a mutation expected to arrest the cell cycle abolished cell division when expressed in Arabidopsis, whereas some tobacco plants constitutively producing this mutant protein were recovered. These plants had a reduced histone H1 kinase activity and contained considerably fewer cells. These cells were, however, much larger and underwent normal differentiation. Morphogenesis, histogenesis and developmental timing were unaffected. The results indicate that, in plants, the developmental controls defining shape can act independently from cell division rates.
MeSH Terms
Amino Acid Sequence
Arabidopsis/cytology,enzymology,genetics,growth & development
Base Sequence
CDC2 Protein Kinase/biosynthesis,genetics,physiology
Cell Division
Cell Size
Genes, Plant/genetics
Histones/metabolism
Molecular Sequence Data
Morphogenesis
Phosphorylation
Plants, Genetically Modified
Plants, Toxic
Point Mutation
Protoplasts
RNA, Messenger/biosynthesis
RNA, Plant/biosynthesis
Tobacco/cytology,enzymology,genetics,growth & development
Chemicals
Histones
RNA, Messenger
RNA, Plant
CDC2 Protein Kinase
Authors & Affiliations
7 authors, click to expand affiliations / ORCID
Hemerly A
Laboratorium voor Genetica, Universiteit Gent, Belgium.
Engler J de A
Bergounioux C
Van Montagu M
Engler G
Inzé D
Ferreira P
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