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Observation of polarity induction by cytochemical localization of phenylalkylamine-binding sites in regenerating protoplasts of the moss Physcomitrella patens

机译:苔藓小立碗藓再生原生质体中苯烷基胺结合位点的细胞化学定位观察极性诱导

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摘要

Different external (e.g., light) and internal (e.g., auxin and calcium gradients) factors control differentiation of the moss protonema. The present investigations demonstrate that exogenously applied auxin, the pharmacological blockade of auxin efflux by naphthylphthalamic acid, and treatment with (−)bepridil, a calcium channel antagonist, inhibit protoplast division without affecting protoplast viability in the moss Physcomitrella patens. A fluorescently labelled phenylalkylamine (DM-Bodipy PAA), another calcium channel antagonist, was used as a probe for in vivo labelling of phenylalkylamine(PAA)-binding sites. The specificity of this binding was demonstrated by competition with (−)bepridil. Confocal laser scanning microscopy visualized PAA-binding sites on the plasma membrane and along the nuclear membrane as uniformly distributed clusters. During asymmetric division of P. patens protoplasts, however, fluorescence labelling particularly increases at the membrane invagination and later along the plate separating the new cells. Intracellular localization of PAA-binding sites, probably at the membranes of vesicles and vacuoles, significantly increases in the smaller daughter cell, destined to later form a polar outgrowth, the first chloronema cell. Thus, a system was established to visualize early events in P. patens protoplast polarization at the subcellular level.
机译:不同的外部因素(例如光)和内部因素(例如生长素和钙的梯度)控制着苔藓原生质的分化。本研究表明,外源应用生长素,萘基邻苯二甲酸酯对植物生长素的药理学阻滞以及钙通道拮抗剂(-)bepridil的处理均能抑制原生质体分裂,而不会影响苔藓小立地藓中原生质体的活力。荧光标记的苯基烷基胺(DM-Bodipy PAA),另一种钙通道拮抗剂,被用作体内标记苯基烷基胺(PAA)结合位点的探针。通过与(-)bepridil竞争证明了这种结合的特异性。共聚焦激光扫描显微镜将质膜上和沿核膜的PAA结合位点可视化为均匀分布的簇。然而,在P.patens原生质体的不对称分裂过程中,荧光标记在膜内陷后尤其沿分离新细胞的平板增加。 PAA结合位点的细胞内定位可能在小泡和液泡的膜上,在较小的子细胞中显着增加,注定以后会形成极性向外生长,第一个绿藻细胞。因此,建立了一个系统以在亚细胞水平上可视化彭定康原生质体极化的早期事件。

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