## Abstract We have previously shown that γ‐tubulin, the third member of the tubulin family that functions in microtubule nucleation, when overexpressed, accumulates throughout the cytoplasm and forms numerous ectopic microtubule nucleation sites in mammalian cells (Shu and Joshi [1995] J. Cell. Bi
Higher plant cells: Gamma-tubulin and microtubule nucleation in the absence of centrosomes
✍ Scribed by Canaday, Jean; Stoppin-Mellet, Virginie; Mutterer, J�r�me; Lambert, Anne-Marie; Schmit, Anne-Catherine
- Publisher
- John Wiley and Sons
- Year
- 2000
- Tongue
- English
- Weight
- 268 KB
- Volume
- 49
- Category
- Article
- ISSN
- 1059-910X
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✦ Synopsis
The assembly of the higher plant cytoskeleton poses several fundamental questions. Since different microtubule arrays are successively assembled during the cell cycle in the absence of centrosomes, we can ask how these arrays are assembled and spatially organized. Two hypotheses are under debate. Either multiple nucleation sites are responsible for the assembly and organization of microtubule arrays or microtubule nucleation takes place at one site, the nuclear surface. In the latter case, microtubule nucleation and organization would be two distinct but coregulated processes. During recent years, novel approaches have provided entirely new insights to understand the assembly and dynamics of the plant cytoskeleton. In the present review, we summarize advances made in microscopy and in molecular biology which lead to novel hypotheses and open up new fields of investigation. From the results obtained, it is clear that the higher plant cell is a powerful model system to investigate cytoskeletal organization in acentrosomal eukaryotic cells.
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