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细胞骨架在定向微纤丝沉积过程中的作用。I. 微管与纤维素合成复合体之间可能相互作用的阐释。

The role of the cytoskeleton during oriented microfibril deposition. I. Elucidation of the possible interaction between microtubules and cellulose synthetic complexes.

作者信息

Seagull R W

出版信息

J Ultrastruct Res. 1983 May;83(2):168-75. doi: 10.1016/s0022-5320(83)90074-6.

Abstract

A detailed analysis of changes in the cytoskeletal organization during cell elongation and oriented microfibril deposition has been done in the four plant species, clover (Trifolium repens), radish (Raphanus sativus), corn (Zea mays), and sorghum (Sorghum vulgare). Microtubules of variable lengths were found in all the cells examined. Some grouping of microtubules was observed with inter microtubule distances ranging from 14 to 40 nm. Single microfilaments were often observed between parallel microtubules. During cell elongation, microtubule frequency (No./microns) was maintained, thus indicating that microtubules must be formed continuously. The parallel orientation of wall microfibrils is disrupted as they deviate around plasmodesmata and pit-fields; however the cortical microtubules, thought to be influencing microfibril orientation, exhibit no consistent deviation around pit-fields. These observations are used to argue that cortical microtubules cannot influence microfibril orientation through a direct association with cellulose synthetic complexes via microtubule cross bridges.

摘要

已对三叶草(白车轴草)、萝卜、玉米和高粱这四种植物在细胞伸长和定向微纤丝沉积过程中细胞骨架组织的变化进行了详细分析。在所检查的所有细胞中均发现了不同长度的微管。观察到一些微管成组排列,微管间距离在14至40纳米之间。在平行微管之间经常观察到单根微丝。在细胞伸长过程中,微管频率(数量/微米)保持不变,这表明微管必须不断形成。壁微纤丝的平行取向在它们围绕胞间连丝和纹孔场偏离时会被破坏;然而,被认为影响微纤丝取向的皮层微管在纹孔场周围并未表现出一致的偏差。这些观察结果被用于论证皮层微管不能通过微管交叉桥与纤维素合成复合体直接关联来影响微纤丝取向。

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