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离区的精细结构:IV. 乙烯对烟草花梗离区细胞超微结构的影响。

Fine structure of abscission zones : IV. Effect of ethylene on the ultrastructure of abscission cells of tobacco flower pedicels.

机构信息

Department of Biological Sciences, Herbert H. Lehman College of the City University of New York, Bronx.

出版信息

Planta. 1972 Dec;102(4):324-33. doi: 10.1007/BF00386617.

Abstract

The effect of ethylene on abscission of flower pedicels of tobacco plants has been investigated. For the first 2 h of exposure to C2H4, the pedicels bend rather than break in response to applied force, but after 2.5 h exposure they break at the abscission zone under an applied force of 40 g. The break strength of the abscission zone decreases exponentially with time to 5 g at 5 h after beginning of the C2H4 treatment. An examination of the tissue at the fine structural level 2 h after exposure to C2H4 reveals the accumulation of rough endoplasmic reticulum (RER) in the abscission cells. Rough ER becomes increasingly abundant by 3-5 h exposure of the tissue to C2H4. There is approximately a 30 fold increase in RER by 5 h of exposure, as compared to untreated tissue.Loss in the integrity of the membranes of microbodies occurs by 5 h exposure of the tissue to C2H4. As cell wall degradation proceeds, fibrous material, vesicular structures, and electron dense bodies-the latter often appearing striated-develop in the disintegrating wall. Little change is seen in the structure of nuclei, mitochondria, chloroplasts and in the crystalloid cores of microbodies during the first 5 h of exposure of the tissue to C2H4. However, disorganization of cytoplasmic components does occur in cells where cell wall breakdown is at an advanced stage.

摘要

乙烯对烟草植株花梗脱落的影响已经过研究。在暴露于 C2H4 的前 2 小时内,花梗在受力时会弯曲而不是断裂,但在暴露 2.5 小时后,它们会在离区断裂,此时施加 40 克的力。离区的断裂强度随时间呈指数下降,在开始 C2H4 处理后 5 小时下降到 5 克。在暴露于 C2H4 2 小时后,对组织进行精细结构检查显示,离区细胞中积累了粗糙内质网(RER)。在组织暴露于 C2H4 的 3-5 小时内,粗面内质网变得越来越丰富。与未处理的组织相比,在 5 小时的暴露时间内,RER 增加了约 30 倍。在组织暴露于 C2H4 的 5 小时内,微体膜的完整性丧失。随着细胞壁的降解,纤维物质、泡状结构和电子致密体(后者通常呈条纹状)在解体的细胞壁中形成。在组织暴露于 C2H4 的前 5 小时内,细胞核、线粒体、叶绿体以及微体的结晶核心的结构几乎没有变化。然而,在细胞壁降解处于晚期的细胞中,细胞质成分确实会发生紊乱。

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