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高尔基器介导的玉米外根冠细胞多糖分泌:I. 动力学和分泌途径。

Golgi apparatus mediated polysaccharide secretion by outer root cap cells of Zea mays : I. Kinetics and secretory pathway.

机构信息

Department of Botany and Plant Pathology, Purdue University, Lafayette, Indiana.

出版信息

Planta. 1967 Sep;74(3):286-301. doi: 10.1007/BF00384849.

Abstract

In the outer cap cells of roots of Zea mays, secretion is accompanied by hypertrophy of dictyosome cisternae with formation of large secretory vesicles. Vesicle contents are subsequently released from the protoplast by fusion of the vesicle membrane with the plasma membrane. The secreted material, a highly hydrated polysaccharide, was localized intracellularly by the periodic acid-Schiff reaction. Under appropriate conditions, the product moves outward through the cell wall after discharge from the protoplast, and appears as a droplet adhering to the root tip. Under conditions where the secretory product accumulates at the inner wall surfaces, no external droplet is formed.The secretory activity has an active phase that is sensitive to metabolic inhibitors and influenced by temperature (Q10>2), and a passive phase that is independent of temperature, insensitive to metabolic inhibitors but sensitive to osmotic agents. The active phase is characterized by a temperature-independent periodicity (3 hours). Sucrose supplied to the growth medium increases the amount of polysaccharide secreted. Polysaccharide synthesis, segregation into vesicles, and discharge from the protoplast are assumed to require active metabolism; the step involving extrusion of polysaccharide through the cell wall region appears to be a passive process influenced by the degree of hydration of the polysaccharide and by cell turgor.

摘要

在玉米根的外帽细胞中,伴随着分泌物的形成,高尔基器潴泡发生肥大,形成大的分泌小泡。小泡内容物通过小泡膜与质膜融合从原生质体中释放出来。分泌的物质是一种高度水合的多糖,通过过碘酸雪夫反应在细胞内定位。在适当的条件下,产物在从原生质体排出后通过细胞壁向外移动,并以附着在根尖的液滴形式出现。在分泌产物在细胞壁内表面积累的条件下,不会形成外部液滴。分泌活性具有对代谢抑制剂敏感且受温度影响(Q10>2)的活跃相,以及对温度不敏感、对代谢抑制剂不敏感但对渗透剂敏感的被动相。活跃相具有温度独立的周期性(3 小时)。供给生长培养基中的蔗糖会增加多糖的分泌量。多糖的合成、分选到小泡中以及从小泡中排出原生质体被认为需要活跃的代谢;多糖通过细胞壁区域挤出的步骤似乎是一个受多糖水合程度和细胞膨压影响的被动过程。

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