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首页> 外文期刊>Protoplasma: An International Journal of Cell Biology >Cyclosis-mediated intercellular transmission of photosynthetic metabolites in Chara revealed with chlorophyll microfluorometry
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Cyclosis-mediated intercellular transmission of photosynthetic metabolites in Chara revealed with chlorophyll microfluorometry

机译:叶绿素微氟度测定曲线淋巴结淋巴结的循环介导的细胞间传播叶绿素微氟度测定法

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摘要

Symplastic interconnections of plant cells via perforations in adjoining cell walls (plasmodesmata) enable long-distance transport of photoassimilates and signaling substances required for growth and development. The pathways and features of intercellular movement of assimilates are often examined with fluorescent tracers whose molecular dimensions are similar to natural metabolites produced in photosynthesis. Chlorophyll fluorescence was recently found to be a sensitive noninvasive indicator of long-distance intracellular transport of physiologically produced photometabolites in characean internodes. The present work shows that the chlorophyll microfluorometry has a potential for studying the cell-to-cell transport of reducing substances released by local illumination of one internode and detected as the fluorescence increase in the neighbor internode. The method provides temporal resolution in the time frame of seconds and can be used to evaluate permeability of plasmodesmata to natural components released by illuminated chloroplasts. The results show that approximately one third of the amount of photometabolites released into the streaming cytoplasm during a 30-s pulse of local light permeates across the nodal complex with the characteristic time of similar to 10s. The intercellular transport was highly sensitive to moderate elevations of osmolarity in the bath solution (150mM sorbitol), which contrasts to the view that only transnodal gradients in osmolarity (and internal hydrostatic pressure) have an appreciable influence on plasmodesmal conductance. The inhibition of cell-to-cell transport was reversible and specific; the sorbitol addition had no influence on photosynthetic electron transport and the velocity of cytoplasmic streaming. The conductance of transcellular pores increased in the presence of the actin inhibitor cytochalasin d but the cell-to-cell transport was eventually suppressed due to the deceleration and cessation of cytoplasmic streaming. The r
机译:邻近邻接细胞壁(PlasmodeMata)穿孔的植物细胞的互补互连能够使光刺激和生长和发育所需的信号传导物质的远程传输。同化细胞间运动的途径和特征通常用荧光示踪剂检查,其分子尺寸与光合作用中产生的天然代谢物相似。最近发现叶绿素荧光是CharaceN间在生理学产生的光蛹的长距离细胞内运输的敏感性非侵入性指标。本作者表明,叶绿素的微氟度测定法具有研究通过局部照射释放的还原物质的细胞 - 细胞传输,并且被检测为邻居间的荧光增加。该方法在秒的时间框架中提供时间分辨率,并且可用于评估通过照明叶绿体释放的自然成分的渗透性。结果表明,在30秒的局部光脉冲过程中释放到流细胞质中的大约三分之一的光素渗透在核心络合物上,其特征时间与10s相似。细胞间传输对浴溶液(150mm山梨糖醇)中的中等渗透压升高高度敏感,这与渗透性(和内部静水压力)仅跨鼻梯度的视图对比对血浆导率具有明显的影响。抑制细胞对细胞转运是可逆且特异性的;山梨糖醇加入对光合电子传输和细胞质流速度的影响没有影响。在肌动蛋白抑制剂细胞蛋白D细胞蛋白D存在下增加透析孔的电导,但由于细胞质流的减速度和停止,最终抑制了细胞 - 细胞传输。 r.

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