Electro-optical imaging of F-actin and endoplasmic reticulum in living and fixed plant cells.

Scanning microscopy. Supplement Pub Date : 1996-01-01
N S Allen, M N Bennett
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Abstract

Confocal and video micrographs of living and fixed alfalfa roots, onion epithelial and pear pollen cells illustrate the architecture of the cytoskeleton and endoplasmic reticulum in plant cells. Fixation of plant tissues to preserve cytoplasmic structure poses special problems. When possible, emphasis should be placed on the imaging of structures in stained living cells over time. The early events that occur when Nod factors or bacteria elicit nodule formation in alfalfa roots will illustrate several approaches to plant cell fixation, staining and imaging. The first observable events after Nod factor stimulation occur in root hairs and are changes in rates of cytoplasmic streaming, nuclear movements, and changes in the shape of the vacuole. Within ten minutes, the endoplasmic reticulum shifts position towards the tip of the root hair. For comparison, the endoplasmic reticulum localization in pollen tubes and onion epithelial cells will be illustrated. The actin cytoskeleton undergoes a series of changes over a twelve hour period. These changes in the cytoskeleton are spatially and temporally correlated with the observed growth changes of the root hairs. This dynamic change of the actin filament and endoplasmic reticulum and associated secretory vesicles in these root hairs suggests a mechanism for the observed root hair growth changes.

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活的和固定的植物细胞中f -肌动蛋白和内质网的光电成像。
活的和固定的苜蓿根、洋葱上皮细胞和梨花粉细胞的共聚焦和视频显微照片说明了植物细胞中细胞骨架和内质网的结构。固定植物组织以保持细胞质结构带来了特殊的问题。如果可能的话,重点应该放在染色活细胞随时间变化的结构成像上。当Nod因子或细菌引起紫花苜蓿根瘤形成时发生的早期事件将说明植物细胞固定、染色和成像的几种方法。Nod因子刺激后的第一个可观察到的事件发生在根毛上,是细胞质流动速率、核运动和液泡形状的变化。在十分钟内,内质网的位置向根毛的尖端移动。为了比较,内质网定位在花粉管和洋葱上皮细胞将说明。肌动蛋白细胞骨架在12小时内经历一系列变化。这些细胞骨架的变化在空间和时间上与观察到的根毛生长变化相关。这种肌动蛋白丝、内质网及相关分泌囊泡的动态变化提示了观察到的根毛生长变化的机制。
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