College of Life Sciences, Capital Normal University, Beijing, China.
Plant Signal Behav. 2021 Apr 3;16(4):1876348. doi: 10.1080/15592324.2021.1876348. Epub 2021 Feb 12.
Gravitropism plays a critical role in the growth and development of plants. Previous reports proposed that the disruption of the actin cytoskeleton resulted in enhanced gravitropism; however, the mechanism underlying these phenomena is still unclear. In the present study, real-time observation on the effect of Latrunculin B (Lat B), a depolymerizing agent of microfilament cytoskeleton, on gravitropism of the primary root of Arabidopsis was undertaken using a vertical stage microscope. The results indicated that Lat B treatment prevented the growth of root, and the growth rates of upper and lower flanks of the horizontally placed root were asymmetrically inhibited. The growth of the lower flank was influenced by Lat B more seriously, resulting in an increased differential growth rate between the upper and lower flanks of the root. Further analysis indicated that Lat B affected cell growth mainly in the transition and elongation zones. Briefly, the current data revealed that Lat B treatment inhibited cell elongation, especially the cells in the lower flanks of the transition and elongation zones, which finally manifested as the facilitation of gravitropic curvature of the primary root.
向重性在植物的生长和发育中起着关键作用。先前的报告提出,微丝细胞骨架的破坏导致向重性增强;然而,这些现象背后的机制仍不清楚。在本研究中,使用垂直载物台显微镜实时观察微丝骨架解聚剂 Latrunculin B(Lat B)对拟南芥初生根向重性的影响。结果表明,Lat B 处理阻止了根的生长,并且水平放置的根的上下侧翼的生长速率呈不对称抑制。下侧翼受 Lat B 的影响更严重,导致根的上下侧翼之间的差异生长速率增加。进一步的分析表明,Lat B 主要影响过渡区和伸长区的细胞生长。简而言之,目前的数据表明 Lat B 处理抑制了细胞伸长,特别是过渡区和伸长区下部侧翼的细胞,这最终表现为初生根向重性曲率的促进。