Plant Cell Physiology Group, Institute of Plant Physiology, Justus-Liebig-University, D-35390 Giessen, Germany.
Plant Physiol. 2013 Jun;162(2):707-19. doi: 10.1104/pp.113.216218. Epub 2013 Apr 26.
This study dealt with the visualization of the sieve element (SE) cytoskeleton and its involvement in electrical responses to local cold shocks, exemplifying the role of the cytoskeleton in Ca(2+)-triggered signal cascades in SEs. High-affinity fluorescent phalloidin as well as immunocytochemistry using anti-actin antibodies demonstrated a fully developed parietal actin meshwork in SEs. The involvement of the cytoskeleton in electrical responses and forisome conformation changes as indicators of Ca(2+) influx was investigated by the application of cold shocks in the presence of diverse actin disruptors (latrunculin A and cytochalasin D). Under control conditions, cold shocks elicited a graded initial voltage transient, ΔV1, reduced by external La(3+) in keeping with the involvement of Ca(2+) channels, and a second voltage transient, ΔV2. Cytochalasin D had no effect on ΔV1, while ΔV1 was significantly reduced with 500 nm latrunculin A. Forisome dispersion was triggered by cold shocks of 4°C or greater, which was indicative of an all-or-none behavior. Forisome dispersion was suppressed by incubation with latrunculin A. In conclusion, the cytoskeleton controls cold shock-induced Ca(2+) influx into SEs, leading to forisome dispersion and sieve plate occlusion in fava bean (Vicia faba).
本研究探讨了筛分子(SE)细胞骨架的可视化及其在局部冷休克电响应中的作用,例证了细胞骨架在 SE 中钙(Ca2+)触发信号级联反应中的作用。高亲和力荧光鬼笔环肽以及使用抗肌动蛋白抗体的免疫细胞化学显示 SE 中完全发育的壁肌动蛋白网格。通过在存在各种肌动蛋白破坏剂(拉曲库铵 A 和细胞松弛素 D)的情况下应用冷休克,研究了细胞骨架在电响应和胞间连丝构象变化(作为 Ca2+流入的指标)中的作用。在对照条件下,冷休克引起分级初始电压瞬变,ΔV1,外部 La(3+)减少表明 Ca2+通道的参与,以及第二个电压瞬变,ΔV2。细胞松弛素 D 对 ΔV1 没有影响,而 500nm 拉曲库铵 A 使 ΔV1 显著降低。胞间连丝分散由 4°C 或更高的冷休克触发,这表明是全或无的行为。胞间连丝分散被拉曲库铵 A 孵育抑制。总之,细胞骨架控制冷休克诱导的 SE 内 Ca2+流入,导致蚕豆(Vicia faba)中的胞间连丝分散和筛板闭塞。