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PMID: 8082653 Published · ppublish English Journal Article Research Support, Non-U.S. Gov't

Role of the microtubule cytoskeleton in gravisensing Chara rhizoids.

European journal of cell biology ·Vol. 63 ·No. 2 ·1994-04-00 ·Pages 289-98

Braun M, Sievers A

Abstract

The arrangement of the microtubule cytoskeleton in tip-growing and gravisensing Chara rhizoids has been documented by immunofluorescence microscopy. Predominantly axially oriented undulating bundles of cortical microtubules were found in the basal zone of the rhizoids and colocalized with the microfilament bundles underlying the cytoplasmic streaming. Microtubules penetrate the subapical zone, forming a three-dimensional network that envelops the nucleus and organelles. Microtubules are present up to 5 to 10 microns basal from the apical cytoplasmic region containing the statoliths. No microtubules were found in the apical zone of the rhizoid which is the site of tip growth and gravitropism. Depolymerization of microtubules by application of oryzalin does not affect cytoplasmic streaming and gravitropic growth until the relatively stationary and polarly organized apical and subapical cytoplasm is converted into streaming cytoplasm. When the statoliths and the apical cytoplasm are included in the cytoplasmic streaming, tip growth and gravitropism are stopped. Oryzalin-induced disruption of the microtubule cytoskeleton also results in a rearrangement of the dense network of apical and subapical microfilaments into thicker bundles, whereas disruption of the microfilament cytoskeleton by cytochalasin D had no effect on the organization of the microtubule cytoskeleton. It is, therefore, concluded that the arrangement of microtubules is essential for the polar cytoplasmic zonation and the functionally polar organization of the actin cytoskeleton which is responsible for the motile processes in rhizoids. Microtubules are not involved in the primary events of gravitropism in Chara rhizoids.

MeSH Terms
Chlorophyta/growth & development,physiology,ultrastructure Cytochalasin D/pharmacology Dinitrobenzenes/pharmacology Gravitation Microtubules/drug effects,physiology,ultrastructure Sulfanilamides Tubulin/analysis
Chemicals
Dinitrobenzenes Sulfanilamides Tubulin Cytochalasin D oryzalin
Authors & Affiliations
2 authors, click to expand affiliations / ORCID
Braun M
Botanisches Institut, Universität Bonn, Germany.
Sievers A
Article Info
Journal
European journal of cell biology
Abbr.
Eur J Cell Biol
ISSN
0171-9335
Published
1994-04-00
Pages
289-98
Language
English
Region
Germany
NLM ID
7906240
Subset
IM
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