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高尔基体在小麦根冠细胞多糖合成与运输中的作用。

A function of the Golgi apparatus in polysaccharide synthesis and transport in the root-cap cells of wheat.

作者信息

Northcote D H, Pickett-Heaps J D

出版信息

Biochem J. 1966 Jan;98(1):159-67. doi: 10.1042/bj0980159.

Abstract
  1. A radioautographic study of the cells of the root tips of wheat incubated with d-[1- or 6-(3)H]glucose has shown that labelled material is formed in the golgi apparatus of the root-cap cells. This material passed to the vesicles associated with the golgi bodies and then moved through the cytoplasm across the plasmalemma and was incorporated into the cell wall and slime layer of the tissue. 2. Analysis of the labelled material extracted from the root tips showed that the bulk of the radioactive material was polysaccharide; there were relatively small amounts of labelled lipids and protein in the tissue. 3. Starch was formed from the exogenous labelled glucose and it was located in the plastids of the cell. The synthesis of starch depended on the metabolic activity of the cells, which varied with the position of the cell in the various tissues of the root tip and with the amount of the exogenous glucose. 4. Isolation of the radioactive polysaccharides from the root tip incubated in the radioactive glucose has shown that the glucose was very rapidly incorporated into the galactosyl residues of the polymers. 5. Analysis of the radioactive polysaccharides has indicated that the material transported in the golgi vesicles is probably pectic substance. 6. A scheme for the synthesis of the storage and wall polysaccharides by separate routes and their location within the cell has been put forward.
摘要
  1. 一项对用d-[1-或6-(3)H]葡萄糖培养的小麦根尖细胞的放射自显影研究表明,标记物质在根冠细胞的高尔基体中形成。该物质传递到与高尔基体相关的小泡中,然后穿过细胞质,穿过质膜,并被整合到组织的细胞壁和黏液层中。2. 对从根尖提取的标记物质的分析表明,大部分放射性物质是多糖;组织中标记的脂质和蛋白质含量相对较少。3. 淀粉由外源标记葡萄糖形成,且位于细胞的质体中。淀粉的合成取决于细胞的代谢活性,而细胞代谢活性随根尖不同组织中细胞的位置以及外源葡萄糖的量而变化。4. 从在放射性葡萄糖中培养的根尖中分离放射性多糖表明,葡萄糖非常迅速地掺入聚合物的半乳糖基残基中。5. 对放射性多糖的分析表明,在高尔基体小泡中运输的物质可能是果胶物质。6. 已经提出了通过不同途径合成储存多糖和壁多糖及其在细胞内定位的方案。
https://cdn.ncbi.nlm.nih.gov/pmc/blobs/cc65/1264809/4d0c69bd7012/biochemj00759-0175-a.jpg

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