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轮藻中参与纤维素微纤丝形成的质膜“玫瑰花结”阵列。

Arrays of plasma-membrane "rosettes" involved in cellulose microfibril formation of Spirogyra.

机构信息

Zellenlehre, Universität Heidelberg, Im Neuenheimer Feld 230, D-6900, Heidelberg, Federal Republic of Germany.

出版信息

Planta. 1983 Nov;159(4):347-56. doi: 10.1007/BF00393174.

Abstract

The cell-wall structure and plasma-membrane particle arrangement during cell wall formation of the filamentous chlorophycean alga Spirogyra sp. was investigated with the freeze-fracture technique. The cell wall consists of a thick outer slime layer and a multilayered inner wall with ribbon-like microfibrils. This inner wall shows three differing orientations of microfibrils: random orientation on its outside, followed by axial bundles of parallel microfibrils, and several internal layers of bands of mostly five to six parallel associated microfibrils with transverse to oblique orientation. The extraplasmatic fracture face of the plasma membrane shows microfibril imprints, relatively few particles, and "terminal complexes" arranged in a hexagonal package at the end of the imprint of a microfibril band. The plasmatic fracture face of the plasma membrane is rich in particles. In places, it reveals hexagonal arrays of "rosettes". These rosettes are best demonstrable with the double-replica technique. These findings on rosette arrays of the zygnematacean alga Spirogyra are compared in detail with the published data on the desmidiacean algae Micrasterias and Closterium.

摘要

用冷冻断裂技术研究了丝状绿藻水绵属细胞细胞壁形成过程中的细胞壁结构和质膜颗粒排列。细胞壁由厚的外层粘液层和具有带状微纤维的多层内壁组成。这种内壁显示出三种不同取向的微纤维:外部的随机取向,接着是平行微纤维的轴向束,以及几个内部层的主要是五到六个平行相关微纤维的带,具有横向到斜向取向。质膜的细胞外断裂面显示微纤维印痕,相对较少的颗粒和“末端复合物”,排列在微纤维带印痕的末端呈六边形包装。质膜的质面富含颗粒。在某些地方,它揭示了“玫瑰花结”的六边形排列。这些玫瑰花结最好用双复型技术来证明。对这些水绵属藻类的玫瑰花结排列的发现与已发表的关于双星藻属藻类和衣藻属藻类的资料进行了详细比较。

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