A Three-Dimensional Computer Simulation Model Reveals the Mechanisms for Self-Organization of Plant Cortical Microtubules into Oblique Arrays
出版年份 2010 全文链接
标题
A Three-Dimensional Computer Simulation Model Reveals the Mechanisms for Self-Organization of Plant Cortical Microtubules into Oblique Arrays
作者
关键词
-
出版物
MOLECULAR BIOLOGY OF THE CELL
Volume 21, Issue 15, Pages 2674-2684
出版商
American Society for Cell Biology (ASCB)
发表日期
2010-06-03
DOI
10.1091/mbc.e10-02-0136
参考文献
相关参考文献
注意:仅列出部分参考文献,下载原文获取全部文献信息。- The -Tubulin Complex Protein GCP4 Is Required for Organizing Functional Microtubule Arrays in Arabidopsis thaliana
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- A dominant mutation of TWISTED DWARF 1 encoding an α-tubulin protein causes severe dwarfism and right helical growth in rice
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- A mutation in the Arabidopsis -tubulin-containing complex causes helical growth and abnormal microtubule branching
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- Mechanisms of Self-Organization of Cortical Microtubules in Plants Revealed by Computational Simulations
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- Arabidopsis Cortical Microtubules Are Initiated along, as Well as Branching from, Existing Microtubules
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- Helical Growth of the Arabidopsis Mutant tortifolia2 Does Not Depend on Cell Division Patterns but Involves Handed Twisting of Isolated Cells
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- Spatial organization of plant cortical microtubules: close encounters of the 2D kind
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- XMAP215 Is a Processive Microtubule Polymerase
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- Quantifying Organization by Means of Entropy
- (2008) Jia-Liang Lu et al. IEEE COMMUNICATIONS LETTERS
- Arabidopsis SPIRAL2 promotes uninterrupted microtubule growth by suppressing the pause state of microtubule dynamics
- (2008) M. Yao et al. JOURNAL OF CELL SCIENCE
- MOR1, the Arabidopsis thaliana homologue of Xenopus MAP215, promotes rapid growth and shrinkage, and suppresses the pausing of microtubules in vivo
- (2008) E. Kawamura et al. JOURNAL OF CELL SCIENCE
- CLASP Modulates Microtubule-Cortex Interaction during Self-Organization of Acentrosomal Microtubules
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