Actin filament (AF) organization was studied during the plasmolytic cycle in leaf cells of Chlorophyton comosum Thunb. In most cells the hyperosmotic treatment induced convex or concave plasmolysis and intense reorganization of the AF cytoskeleton. Thin cortical AFs disappeared and numerous cortical, subcortical and endoplasmic AFs arranged in thick and well-organized bundles were formed. Plasmolysed cells displayed a significant increase in the overall AF content compared with the control cells. Cortical AF bundles were preferentially localized in the shrunken protoplast areas, lining the detached plasmalemma regions. The endoplasmic AF bundles were mainly found in the perinuclear cytoplasm and on the tonoplast surface. AFs also traversed some of the Hechtian strands. AF disorganization after cytochalasin B (CB) treatment induced dramatic changes in the pattern of plasmolysis, which lasted for a longer time and led to a greater decrease of the protoplast volume compared to the untreated cells. In many of the above cells the protoplasts assumed an 'amoeboid' form and were often subdivided into sub-protoplasts. Soon after the removal of the plasmolytic solution both CB-treated and untreated cells were deplasmolysed, while the AF cytoskeleton gradually reassumed the organization observed in the control cells. The findings of this study revealed for the first time in angiosperm cells that plasmolysis triggers an extensive reorganization of the AF cytoskeleton, which is involved in the regulation of protoplast shape and volume. The probable mechanism(s) leading to AF reorganization as well as the function(s) of the atypical AF arrays in plasmolysed cells are discussed.

译文

:肌动蛋白丝(AF)的组织在溶菌周期的通透性叶片中的细胞的溶胞过程中进行了研究。在大多数细胞中,高渗处理引起房颤细胞骨架的凸面或凹面溶质分解和强烈重组。薄的皮质房颤消失了,形成了厚而组织良好的束的许多皮质,皮质下和内质性房颤形成了。与对照细胞相比,溶浆细胞显示出总体AF含量显着增加。皮质AF束优先位于收缩的原生质体区域,衬在脱离的浆膜区域。内质性AF束主要存在于核周细胞质和液泡膜表面。空军还穿越了赫希特地区的一些地区。与未处理的细胞相比,细胞松弛素B(CB)处理后的AF紊乱引起了胞浆裂解模式的剧烈变化,持续了更长的时间,并导致原生质体体积的更大减少。在上述许多细胞中,原生质体呈“变形虫”形式,通常细分为亚原生质体。去除溶酶溶液后不久,经CB处理的细胞和未经处理的细胞均被解质,而AF细胞骨架逐渐恢复了在对照细胞中观察到的组织。这项研究的发现首次揭示了在被子植物细胞中,胞浆裂解触发了AF细胞骨架的广泛重组,这与原生质体形状和体积的调节有关。讨论了导致房颤重组的可能机制以及浆细胞裂解细胞中非典型房颤阵列的功能。

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