Department of Biology, Norwegian University of Science and Technology, 7491, Trondheim, Norway.
Physiol Plant. 2018 Sep;164(1):82-94. doi: 10.1111/ppl.12744. Epub 2018 Jul 23.
During recent years it has become accepted that plant cell walls are not inert objects surrounding all plant cells but are instead highly dynamic, plastic structures. They are involved in a large number of cell biological processes and contribute actively to plant growth, development and interaction with environment. Therefore, it is not surprising that cellular processes can control plant cell wall integrity (CWI) while, simultaneously, CWI can influence cellular processes. In yeast and animal cells such a bidirectional relationship also exists between the yeast/animal extracellular matrices and the cell cycle. In yeast, the CWI maintenance mechanism and a dedicated plasma membrane integrity checkpoint are mediating this relationship. Recent research has yielded insights into the mechanism controlling plant cell wall metabolism during cytokinesis. However, the knowledge regarding putative regulatory pathways controlling adaptive modifications in plant cell cycle activity in response to changes in the state of the plant cell wall are not yet identified. In this review, we summarize similarities and differences in regulatory mechanisms coordinating extracellular matrices and cell cycle activity in animal and yeast cells, discuss the available evidence supporting the existence of such a mechanism in plants and suggest that the plant CWI maintenance mechanism might also control cell cycle activity in plant cells.
近年来,人们普遍认为植物细胞壁并非是围绕所有植物细胞的惰性物体,而是高度动态、有可塑性的结构。细胞壁参与了大量的细胞生物学过程,并积极促进植物生长、发育以及与环境的相互作用。因此,细胞过程可以控制植物细胞壁完整性(CWI),而 CWI 也可以影响细胞过程,这并不奇怪。在酵母和动物细胞中,酵母/动物细胞外基质和细胞周期之间也存在这种双向关系。在酵母中,CWI 维持机制和专门的质膜完整性检查点介导了这种关系。最近的研究深入了解了控制有丝分裂过程中植物细胞壁代谢的机制。然而,关于控制植物细胞周期活性的适应性改变的假定调节途径的知识,还没有确定,这些改变是响应于植物细胞壁状态的变化而发生的。在这篇综述中,我们总结了协调动物和酵母细胞细胞外基质和细胞周期活性的调节机制的异同,讨论了支持该机制在植物中存在的现有证据,并提出植物 CWI 维持机制也可能控制植物细胞的细胞周期活性。