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GA 诱导原叶体形成雄配子体过程中,细胞周期、形态和代谢的波动是最重要的特征。

Fluctuations in cell cycle, morphology and metabolism of Anemia phyllitidis gametophytes are the most important hallmarks of GA-induced antheridiogenesis.

机构信息

The University of Łódź, Faculty of Biology and Environmental Protection, Department of Cytophysiology, Pomorska 141/143, 90-236 Łódź, Poland.

出版信息

Micron. 2019 Jun;121:66-76. doi: 10.1016/j.micron.2019.03.005. Epub 2019 Mar 25.

Abstract

The research object concerns partially explained mechanisms of plant hormone participation in male sex determination in plants, among them in A. phyllitidis gametophytes during GA-induced antheridiogenesis. To provide an explanation of the mechanisms of fluorescence and white-light microscopy, cytophotometric, autoradiographic and spectrophotometic methods were used to study cell cycle, the number of nucleoli, the amount of DiOC-stained IMN/ER, in which endoplasmic reticulum (ER) constitutes the main part, and its distribution as well as the amounts of proteins and chlorophylls and activities of acidic (Ac) and basic (Ba) phosphatases (Phases). It was revealed that antheridiogenesis was accompanied by cell cycle arrest at S-phase, changes of the number of nucleoli with simultaneous changes of the amount of IMN/ER and its distribution as well as fluctuations of protein amounts and of activities of acidic (Ac) and basic (Ba) phosphatases (Phases). The results indicated that initiation of antheridiogenesis in A. phyllitidis gametophytes by GA was related to the elevation of GAs/ANs in the culture media, during its induction phase, and the elevation of IMN/ER and GAs/ANs amounts, during expression phase of this process.

摘要

研究对象涉及植物激素参与植物雄性性别决定的部分解释机制,其中包括 GA 诱导的原丝体形成过程中 A. phyllitidis 配子体中的作用。为了解释荧光和白光显微镜、细胞光度法、放射自显影和分光光度法的机制,研究了细胞周期、核仁数量、DiOC 染色的 IMN/ER 量,其中内质网 (ER) 构成主要部分,以及其分布以及蛋白质和叶绿素的含量以及酸性 (Ac) 和碱性 (Ba) 磷酸酶 (Phases) 的活性。结果表明,原丝体发生伴随着 S 期细胞周期停滞,核仁数量发生变化,同时 IMN/ER 的数量及其分布以及酸性 (Ac) 和碱性 (Ba) 磷酸酶 (Phases) 的活性发生波动。结果表明,GA 在 A. phyllitidis 配子体中诱导原丝体发生与培养基中 GAs/ANs 的升高有关,在诱导阶段,以及 IMN/ER 和 GAs/ANs 数量的升高,在这个过程的表达阶段。

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