RIKEN Center for Sustainable Resource Science, 1-7-22 Suehiro-cho, Tsurumi, Yokohama, Kanagawa, Japan.
Okazaki Institute for Integrative Bioscience, 5-1 Higashiyama, Myodaiji-cho, Okazaki, Aichi, Japan.
Plant Cell Physiol. 2019 Apr 1;60(4):738-751. doi: 10.1093/pcp/pcy249.
In multi-cellular organisms, cell-to-cell communication is crucial for adapting to changes in the surrounding environment. In plants, plasmodesmata (PD) provide a unique pathway for cell-to-cell communication. PD interconnect most cells and generate a cytoplasmic continuum, allowing the trafficking of various micro- and macromolecules between cells. This molecular trafficking through PD is dynamically regulated by altering PD permeability dependent on environmental changes, thereby leading to an appropriate response to various stresses; however, how PD permeability is dynamically regulated is still largely unknown. Moreover, studies on the regulation of PD permeability have been conducted primarily in a limited number of angiosperms. Here, we studied the regulation of PD permeability in the moss Physcomitrella patens and report that molecular trafficking through PD is rapidly and reversibly restricted by abscisic acid (ABA). Since ABA plays a key role in various stress responses in the moss, PD permeability can be controlled by ABA to adapt to surrounding environmental changes. This ABA-dependent restriction of PD trafficking correlates with a reduction in PD pore size. Furthermore, we also found that the rate of macromolecular trafficking is higher in an ABA-synthesis defective mutant, suggesting that the endogenous level of ABA is also important for PD-mediated macromolecular trafficking. Thus, our study provides compelling evidence that P. patens exploits ABA as one of the key regulators of PD function.
在多细胞生物中,细胞间的通讯对于适应周围环境的变化至关重要。在植物中,胞间连丝(PD)为细胞间通讯提供了独特的途径。PD 连接大多数细胞,并产生细胞质连续体,允许各种微观和宏观分子在细胞之间运输。这种通过 PD 的分子运输是通过改变 PD 的通透性来动态调节的,这取决于环境变化,从而导致对各种胁迫的适当反应;然而,PD 通透性是如何动态调节的,在很大程度上仍然未知。此外,关于 PD 通透性调节的研究主要在少数被子植物中进行。在这里,我们研究了苔藓植物Physcomitrella patens 中 PD 通透性的调节,并报告说,ABA 可迅速且可逆地限制 PD 分子运输。由于 ABA 在苔藓植物的各种胁迫反应中发挥着关键作用,因此 PD 通透性可以通过 ABA 来控制,以适应周围环境的变化。这种 ABA 依赖性的 PD 运输限制与 PD 孔径的减小有关。此外,我们还发现,在 ABA 合成缺陷突变体中,大分子运输的速度更高,这表明内源性 ABA 水平对于 PD 介导的大分子运输也很重要。因此,我们的研究提供了令人信服的证据,表明 P. patens 利用 ABA 作为 PD 功能的关键调节剂之一。