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Immunogold electron microscopy of phytochrome in Avena: identification of intracellular sites responsible for phytochrome sequestering and enhanced pelletability

机译:Avena中植物色素的免疫金电子显微镜:鉴定造成细胞色素螯合和增强可沉淀性的细胞内位点

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摘要

Using monoclonal antibodies to the plant photoreceptor, phytochrome, we have investigated by immunogold electron microscopy the rapid, red light-induced, intracellular redistribution (termed "sequestering") of phytochrome in dark-grown Avena coleoptiles. Pre-embedding immunolabeling of 5-micron-thick cryosections reveals that sequestered phytochrome is associated with numerous, discrete structures of similar morphology. Specific labeling of these structures was also achieved by post-embedding ("on-grid") immunostaining of LR-White-embedded tissue, regardless of whether the tissue had been fixed chemically or by freeze substitution. The phytochrome-associated structures are globular to oval in shape, 200-400 nm in size, and are composed of amorphous, granular material. No morphologically identifiable membranes are present either surrounding or within these structures, which are often present as apparent aggregates that approach several micrometers in size. An immunogold labeling procedure has also been developed to identify the particulate, subcellular component with which phytochrome is associated in vitro as a consequence of irradiation of Avena coleoptiles before their homogenization. Structures with appearance similar to those identified in situ are the only components of the pelletable material that are specifically labeled with gold. We conclude that the association of phytochrome with these structures in Avena represents the underlying molecular event that ultimately is expressed both as red light-induced sequestering in vivo and enhanced pelletability of phytochrome detected in vitro.
机译:使用针对植物感光细胞的植物色素的单克隆抗体,我们已经通过免疫金电子显微镜研究了暗生长的Avena胚芽鞘中植物色素的快速,红光诱导的细胞内重新分布(称为“代数”)。对5微米厚的冰冻切片进行预嵌入免疫标记后发现,螯合的植物色素与形态相似的众多离散结构有关。这些结构的特异性标记也可以通过LR-White嵌入组织的嵌入后(“网格”)免疫染色来实现,而不管该组织是化学固定还是冷冻替代。与植物色素相关的结构呈球形到椭圆形,大小为200-400 nm,并且由无定形的颗粒材料组成。在这些结构周围或内部不存在形态学上可识别的膜,这些膜通常以接近几微米大小的表观聚集体形式存在。还已经开发了一种免疫金标记程序,以鉴定由于Avena胚芽鞘在均质化之前的照射而在体外与植物色素相关的颗粒状亚细胞成分。外观与原位鉴定的结构相似的结构是可造粒材料中唯一用金标记的组分。我们得出的结论是,植物色素与Avena中的这些结构的关联代表了潜在的分子事件,该事件最终表现为体内由红光诱导的螯合和体外检测到的植物色素的可沉淀性。

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