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The Calcium Rhythms of Different Cell Types Oscillate with Different Circadian Phases

机译:不同细胞类型的钙节律振荡 不同的昼夜节律

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摘要

Transgenic tobacco (Nicotiana plumbaginifolia) seedlings containing the Ca2+-sensitive luminescent protein aequorin have been shown to exhibit circadian variations in cytosolic calcium. Concomitant measurements of cytosolic and nuclear calcium show that circadian variations in the cytoplasm are not expressed in the nucleus. To investigate whether all cells of transgenic seedlings contribute equally to circadian variations in cytosolic calcium, different promoters eliciting different expression patterns have been placed upstream of aequorin and used for transformation. The circadian peak occurred at different times in the three transgenic lines constructed. Luminescence imaging of these transgenic lines indicated that aequorin was differentially accumulated among the main tissues and cells of the seedlings and overcoat technology with applied epidermal strips indicated that the surface cell layers contribute the vast majority of luminescent light. We conclude that the Ca2+ rhythmicities of cells and tissues oscillate with distinct differences in phase, that this might represent different underlying cellular control mechanisms and that these observations have significant implications for our understanding and study of Ca2+ mediated signal transduction in plant cells.
机译:含有Ca 2+敏感发光蛋白水母发光蛋白的转基因烟草(Nicotiana plumbaginifolia)幼苗已显示出其胞质钙的昼夜节律变化。胞浆和核钙的同时测量表明,胞质中的昼夜节律变化未在细胞核中表达。为了研究转基因幼苗的所有细胞是否均等地参与细胞钙中昼夜节律的变化,引发不同表达模式的不同启动子已被置于水母发光蛋白的上游并用于转化。在构建的三个转基因品系中,昼夜节律峰出现在不同的时间。这些转基因品系的发光成像表明,水母发光蛋白在幼苗的主要组织和细胞之间差异性积累,应用表皮条的大衣技术表明,表面细胞层贡献了绝大多数的发光。我们得出的结论是,细胞和组织的Ca 2 + 节律性以不同的相位振荡,这可能表示不同的基础细胞 控制机制,并且这些发现具有重要意义 对我们理解和研究Ca 2 + 的意义 介导的植物细胞信号转导。

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