自噬促进了活根冠细胞的细胞器清除和有组织的细胞分离

T. Goh, Kaoru Sakamoto, Pengfei Wang, Saki Kozono, Koki Ueno, Shunsuke Miyashima, Koichi Toyokura, H. Fukaki, Byungho Kang, K. Nakajima
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引用次数: 7

摘要

根冠是覆盖在植物根尖的多层组织,通过其独特的功能,如重力感应和根际相互作用,指导根系生长。为了防止土壤环境的破坏,根冠细胞通过内层细胞分裂和外层细胞分离的平衡不断翻转。在向最外层移动时,根帽中心区域的小柱细胞在功能上从重力感应细胞转变为分泌细胞,但这种剧烈的细胞命运转变的机制在很大程度上是未知的。通过使用活细胞跟踪显微镜,我们在这里发现最外层细胞的细胞器经历了戏剧性的重排,并且至少部分重排依赖于自噬的时空调节激活。值得注意的是,这种根冠自噬不会立即导致细胞死亡,而是活根冠细胞有组织的分离所必需的,这突出了植物中发育调节的自噬的先前未描述的作用。延时显微镜成像揭示了拟南芥根冠细胞内重组与功能转移和细胞分离的时空动态,以及自噬在这一过程中的作用。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Autophagy promotes organelle clearance and organized cell separation of living root cap cells in Arabidopsis thaliana
The root cap is a multi-layered tissue covering the tip of a plant root that directs root growth through its unique functions such as gravity-sensing and rhizosphere interaction. To prevent damages from the soil environment, cells in the root cap continuously turn over through balanced cell division and cell detachment at the inner and the outer cell layers, respectively. Upon displacement toward the outermost layer, columella cells at the central root cap domain functionally transition from gravity-sensing cells to secretory cells, but the mechanisms underlying this drastic cell fate transition are largely unknown. By using live-cell tracking microscopy, we here show that organelles in the outermost cell layer undergo dramatic rearrangements, and at least a part of this rearrangement depends on spatiotemporally regulated activation of autophagy. Notably, this root cap autophagy does not lead to immediate cell death, but rather is necessary for organized separation of living root cap cells, highlighting a previously undescribed role of developmentally regulated autophagy in plants. Summary statement Time-lapse microscope imaging revealed spatiotemporal dynamics of intracellular reorganization associated with functional transition and cell separation in the Arabidopsis root cap and the roles of autophagy in this process.
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