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重金属暴露对绿藻十缢丝藻间期细胞细胞骨架的影响:I. 镉的作用

Cytoskeletal alterations in interphase cells of the green alga Spirogyra decimina in response to heavy metals exposure: I. The effect of cadmium.

作者信息

Pribyl P, Cepák V, Zachleder V

机构信息

Centre of Phycology, Institute of Botany, Academy of Sciences of the Czech Republic, Dukelská 135, 379 82 Trebon, Czech Republic.

出版信息

Protoplasma. 2005 Dec;226(3-4):231-40. doi: 10.1007/s00709-005-0123-5. Epub 2005 Dec 12.

Abstract

The aim of the study was to elucidate the effect of cadmium ions on the arrangement of the actin and tubulin cytoskeleton, as well as the relationships between cytoskeletal changes and growth processes in the green filamentous alga Spirogyra decimina. Batch cultures of algae were carried out under defined conditions in the presence of various cadmium concentrations. In control cells, the cytoskeleton appeared to be a transversely oriented pattern of both microtubules and actin filaments of various thickness in the cell cortex; colocalization of cortical microtubules and actin filaments was apparent. Microtubules were very sensitive to the presence of cadmium ions. Depending on the cadmium concentration and the time of exposure, microtubules disintegrated into short rod-shaped fragments or they completely disappeared. A steep increase in cell width and a decrease in growth rate accompanied (and probably ensued) a very rapid disintegration of microtubules. Actin filaments were more stable because they were disturbed several hours later than microtubules at any cadmium concentration used. When cadmium ions were washed out, the actin cytoskeleton was rebuilt even in cells in which actin filaments were completely disintegrated at higher cadmium concentrations (40 or 100 microM). The much more sensitive microtubules were regenerated after treatment with lower cadmium concentrations (10 or 15 microM) only.

摘要

本研究的目的是阐明镉离子对丝状绿藻十缢螺旋藻肌动蛋白和微管细胞骨架排列的影响,以及细胞骨架变化与生长过程之间的关系。在存在不同镉浓度的特定条件下进行藻类的分批培养。在对照细胞中,细胞骨架在细胞皮层中呈现出微管和不同厚度肌动蛋白丝的横向排列模式;皮层微管和肌动蛋白丝的共定位很明显。微管对镉离子的存在非常敏感。根据镉浓度和暴露时间,微管会解体成短杆状片段或完全消失。微管非常迅速地解体伴随着(并且可能随之而来)细胞宽度急剧增加和生长速率下降。肌动蛋白丝更稳定,因为在任何使用的镉浓度下,它们比微管晚几个小时才受到干扰。当镉离子被洗脱后,即使在较高镉浓度(40或100微摩尔)下肌动蛋白丝完全解体的细胞中,肌动蛋白细胞骨架也能重建。只有在较低镉浓度(10或15微摩尔)处理后,更为敏感的微管才能再生。

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