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Pollen-tube tip growth requires a balance of lateral propagation and global inhibition of Rho-family GTPase activity.

Authors :
Jae-Ung Hwang
Guang Wu
An Yan
Yong-Jik Lee
Grierson, Claire S.
Zhenbiao Yang
Source :
Journal of Cell Science; 2/1/2010, Vol. 123 Issue 3, p5-5, 1p
Publication Year :
2010

Abstract

Rapid tip growth allows for efficient development of highly elongated cells (e.g. neuronal axons, fungal hyphae and pollen tubes) and requires an elaborate spatiotemporal regulation of the growing region. Here, we use the pollen tube as a model to investigate the mechanism regulating the growing region. ROPs (Rho-related GTPases from plants) are essential for pollen tip growth and display oscillatory activity changes in the apical plasma membrane (PM). By manipulating the ROP activity level, we showed that the PM distribution of ROP activity as an apical cap determines the tip growth region and that efficient tip growth requires an optimum level of the apical ROP1 activity. Excessive ROP activation induced the enlargement of the tip growth region, causing growth depolarization and reduced tube elongation. Time-lapse analysis suggests that the apical ROP1 cap is generated by lateral propagation of a localized ROP activity. Subcellular localization and gain- and loss-of-function analyses suggest that RhoGDI- and RhoGAP-mediated global inhibition limits the lateral propagation of apical ROP1 activity. We propose that the balance between the lateral propagation and the global inhibition maintains an optimal apical ROP1 cap and generates the apical ROP1 activity oscillation required for efficient pollen-tube elongation. [ABSTRACT FROM AUTHOR]

Details

Language :
English
ISSN :
00219533
Volume :
123
Issue :
3
Database :
Complementary Index
Journal :
Journal of Cell Science
Publication Type :
Academic Journal
Accession number :
48107925