University of Antwerp; Biology Department; Plant Growth and Development; Antwerpen, Belgium.
Plant Signal Behav. 2013 Jul;8(7):e24821. doi: 10.4161/psb.24821. Epub 2013 Jul 1.
The plant cytoskeleton plays a crucial role in the cells' growth and development during different developmental stages and it undergoes many rearrangements. In order to describe the arrangements of the F-actin cytoskeleton in root epidermal cells of Arabidopsis thaliana, the recently developed software MicroFilament Analyzer (MFA) was exploited. This software enables high-throughput identification and quantification of the orientation of filamentous structures on digital images in a highly standardized and fast way. Using confocal microscopy and transgenic GFP-FABD2-GFP plants the actin cytoskeleton was visualized in the root epidermis. MFA analysis revealed that during the early stages of cell development F-actin is organized in a mainly random pattern. As the cells grow, they preferentially adopt a longitudinal organization, a pattern that is also preserved in the largest cells. In the evolution from young to old cells, an approximately even distribution of transverse, oblique or combined orientations is always present besides the switch from random to a longitudinal oriented actin cytoskeleton.
植物细胞骨架在不同发育阶段的细胞生长和发育中起着至关重要的作用,它经历了许多重排。为了描述拟南芥根表皮细胞中 F-肌动蛋白细胞骨架的排列,我们利用了最近开发的软件 MicroFilament Analyzer(MFA)。该软件能够以高度标准化和快速的方式,在数字图像上对丝状结构的取向进行高通量识别和定量。利用共聚焦显微镜和转 GFP-FABD2-GFP 植物,我们在根表皮中可视化了肌动蛋白细胞骨架。MFA 分析表明,在细胞发育的早期阶段,F-肌动蛋白主要以随机模式组织。随着细胞的生长,它们优先采用纵向组织,这种模式在最大的细胞中也得到了保留。在从年轻细胞到老年细胞的进化过程中,除了从随机到纵向排列的肌动蛋白细胞骨架的转变外,还始终存在横向、斜向或组合取向的大致均匀分布。