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PMID: 10760237 Published · ppublish English Journal Article Research Support, U.S. Gov't, Non-P.H.S.

Microtubule stabilization leads to growth reorientation in Arabidopsis trichomes.

The Plant cell ·Vol. 12 ·No. 4 ·2000-04-00 ·Pages 465-77

Mathur J, Chua NH

Abstract

The single-cell trichomes in wild-type Arabidopsis are either unbranched or have two to five branches. Using transgenic Arabidopsis plants expressing a green fluorescent protein-microtubule-associated protein4 fusion protein, which decorates the microtubular cytoskeleton, we observed that during trichome branching, microtubules reorient with respect to the longitudinal growth axis. Considering branching to be a localized microtubule-dependent growth reorientation event, we investigated the effects of microtubule-interacting drugs on branch induction in trichomes. In unbranched trichomes of the mutant stichel, a change in growth directionality, closely simulating branch initiation, could be elicited by a short treatment with paclitaxel, a microtubule-stabilizing drug, but not with microtubule-disrupting drugs. The growth reorientation appeared to be linked to increased microtubule stabilization and to aster formation in the treated trichomes. Taxol-induced microtubule stabilization also led to the initiation of new branch points in the zwichel mutant of Arabidopsis, which is defective in a kinesin-like microtubule motor protein and possesses trichomes that are less branched. Our observations suggest that trichome cell branching in Arabidopsis might be mediated by transiently stabilized microtubular structures, which may form a component of a multiprotein complex required to reorient freshly polymerizing microtubules into new growth directions.

MeSH Terms
Actins/metabolism,ultrastructure Arabidopsis/cytology,drug effects,genetics,growth & development Arabidopsis Proteins Benzamides/pharmacology Biopolymers/metabolism Bridged Bicyclo Compounds, Heterocyclic/pharmacology Calmodulin-Binding Proteins/genetics Cell Division/drug effects Cell Size/drug effects Dinitrobenzenes/pharmacology Genes, Plant/genetics Microscopy, Confocal Microscopy, Electron, Scanning Microtubule-Associated Proteins/chemistry,genetics,metabolism Microtubules/drug effects,metabolism,ultrastructure Multiprotein Complexes Mutation/genetics Paclitaxel/pharmacology Phenotype Plant Proteins/genetics Plants, Genetically Modified Recombinant Fusion Proteins/chemistry,genetics,metabolism Sulfanilamides Thiazoles/pharmacology Thiazolidines
Chemicals
Actins Arabidopsis Proteins Benzamides Biopolymers Bridged Bicyclo Compounds, Heterocyclic Calmodulin-Binding Proteins Dinitrobenzenes KCBP protein, Arabidopsis MAP4 Microtubule-Associated Proteins Multiprotein Complexes Plant Proteins Recombinant Fusion Proteins Sulfanilamides Thiazoles Thiazolidines pronamide oryzalin latrunculin B Paclitaxel
Authors & Affiliations
2 authors, click to expand affiliations / ORCID
Mathur J
Laboratory of Plant Cell Biology, Institute of Molecular Agrobiology, 1 Research Link, National University of Singapore, 117 604, Singapore.
Chua N H
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Article Info
Journal
The Plant cell
Abbr.
Plant Cell
ISSN
1040-4651
Published
2000-04-00
Pages
465-77
Language
English
Region
England
NLM ID
9208688
PMCID
PMC139846
Subset
IM
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