Sieberer Björn J, Ketelaar Tijs, Esseling John J, Emons Anne Mie C
Laboratory of Plant Cell Biology, Wageningen University, Arborteumlaan 4, 6703 BD Wageningen, the Netherlands.
New Phytol. 2005 Sep;167(3):711-9. doi: 10.1111/j.1469-8137.2005.01506.x.
The ability to establish cell polarity is crucial to form and function of an individual cell. Polarity underlies critical processes during cell development, such as cell growth, cell division, cell differentiation and cell signalling. Interphase cytoplasmic microtubules in tip-growing fission yeast cells have been shown to play a particularly important role in regulating cell polarity. By placing proteins that serve as spatial cues in the cell cortex of the expanding tip, microtubules determine the site where exocytosis, and therefore growth, takes place. Transport and the targeting of exocytotic vesicles to the very tip depend on the actin cytoskeleton. Recently, endoplasmic microtubules have been identified in tip-growing root hairs, which are an experimental system for plant cell growth. Here, we review the data that demonstrate involvement of microtubules in hair elongation and polarity of the model plants Medicago truncatula and Arabidopsis thaliana. Differences and similarities between the microtubule organization and function in these two species are discussed and we compare the observations in root hairs with the microtubule-based polarity mechanism in fission yeast.
建立细胞极性的能力对于单个细胞的形成和功能至关重要。极性是细胞发育过程中关键过程的基础,如细胞生长、细胞分裂、细胞分化和细胞信号传导。已证明,在顶端生长的裂殖酵母细胞中,间期细胞质微管在调节细胞极性方面发挥着特别重要的作用。通过将作为空间线索的蛋白质置于不断扩展的顶端的细胞皮层中,微管确定了胞吐作用发生的位置,进而确定了生长发生的位置。运输以及胞吐小泡靶向到顶端依赖于肌动蛋白细胞骨架。最近,在顶端生长的根毛中发现了内质微管,根毛是植物细胞生长的一个实验系统。在这里,我们综述了证明微管参与模式植物蒺藜苜蓿和拟南芥根毛伸长和极性的数据。讨论了这两个物种中微管组织和功能的异同,并将根毛中的观察结果与裂殖酵母中基于微管的极性机制进行了比较。