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在蓝藻细胞壁中微纤维沉积模式的模型。

A model for the pattern of deposition of microfibrils in the cell wall of Glaucocystis.

机构信息

Biology Department, Dalhousie University, B3H 4J1, Halifax, N.S., Canada.

出版信息

Planta. 1978 Jan;141(1):51-8. doi: 10.1007/BF00387744.

Abstract

Freeze-fracturing of Glaucocystis nostochinearum Itzigsohn cells during cell-wall microfibril deposition indicates that unidirectionally polarized microfibril ends are localized in a "zone of synthesis" covering about 30% of the sarface area of the plasma membrane. Within this zone there are about 6 microfibril ends/μm(2) cell surface. It is proposed that microfibrils are generated by the passage of their tips over the cell surface and that the pattern of microfibril organization at the poles of the cells, in which microfibrils of alternate layers are interconnected at 3 "rotation centres", results directly from the pattern of this translation of microfibril tips. In a model of the deposition pattern it is proposed that the zone of synthesis may split into 3 sub-zones as the poles are approached, each sub-zone being responsible for the generation of one rotation centre. It is demonstrated that the microfibrillar component of the entire wall could be generated by the steady translation of the microfibril tips (at which synthesis is presumed to occur) over the cell surface at a rate of 0.25-0.5 μm min(-1). Microcinematography indicates that the protoplast rotates during cell-wall deposition, and it is proposed that this rotation may play a role in the generation of the microfibril deposition pattern.

摘要

在蓝藻细胞壁微纤维沉积过程中对蓝斑藻细胞进行冷冻断裂,表明定向极化的微纤维末端定位于覆盖约 30%的细胞膜表面积的“合成区”内。在这个区域内,约有 6 个微纤维末端/μm(2)的细胞表面。因此提出,微纤维是通过其尖端在细胞表面上的推移而产生的,并且细胞两极的微纤维组织模式,其中交替层的微纤维在 3 个“旋转中心”处相互连接,直接源于微纤维尖端的这种推移模式。在沉积模式的模型中,提出随着接近两极,合成区可能分裂成 3 个亚区,每个亚区负责产生一个旋转中心。结果表明,微纤维尖端(假定在该处发生合成)在细胞表面上以 0.25-0.5 μm min(-1)的速率稳定推移,可生成整个细胞壁的微纤维成分。显微电影摄影表明,在细胞壁沉积过程中原生质体发生旋转,并且提出这种旋转可能在微纤维沉积模式的生成中发挥作用。

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