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Ethylene-induced Fine Structure Alterations in Cotton and Sugarbeet Radicle Cells

机译:乙烯诱导棉花和甜菜根系细胞的精细结构改变

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摘要

Electron microscopic examination of cotton (Gossypium hirsutum L.) and sugarbeet (Beta vulgaris L.) radicles subjected to ethylene at 1, 10, 100 microliters per liter and a saturated ethylene atmosphere showed distinct ultrastructural differences compared to aerobic, control tissue and to anaerobic, nitrogen-treated radicles. Short term ethylene treatments of 1 hour induced the formation of cisternal stacks of rough endoplasmic reticulum in undifferentiated radicle cells. Similar profiles of rough endoplasmic reticulum were not observed in control radicles, but were found in nitrogen-treated tissues. Additionally, ribosomes in all ethylene-treated radicles were larger than ribosomes in control and nitrogen-treated cells. By ribosome density determinations it was found that the ethylene-treated ribosomes were swollen and less dense. The cell walls of the ethylene-treated tissue were also expanded and less dense than those of control tissue.
机译:电子显微镜检查棉花(Gossypium hirsutum L.)和甜菜(Beta vulgaris L.)胚根的乙烯含量分别为1、10、100微升每升,并且在饱和的乙烯气氛下,与需氧,对照组织和厌氧相比,它们具有明显的超微结构差异。 ,经氮处理的胚根。短期乙烯处理1小时会在未分化的胚根细胞中诱导形成粗糙的内质网的脑池堆叠。在对照胚根中未观察到类似的粗面内质网,但在经氮处理的组织中发现。另外,所有经乙烯处理的胚根中的核糖体均大于对照和经氮处理的细胞中的核糖体。通过核糖体密度测定,发现乙烯处理的核糖体肿胀且密度较小。乙烯处理的组织的细胞壁也被扩张,并且比对照组织的细胞壁密度低。

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