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首页> 外文期刊>Protoplasma: An International Journal of Cell Biology >PLASMODESMAL WIDENING ACCOMPANIES THE SHORT-TERM INCREASE IN SYMPLASMIC PHLOEM UNLOADING IN PEA ROOT TIPS UNDER OSMOTIC STRESS
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PLASMODESMAL WIDENING ACCOMPANIES THE SHORT-TERM INCREASE IN SYMPLASMIC PHLOEM UNLOADING IN PEA ROOT TIPS UNDER OSMOTIC STRESS

机译:渗透胁迫下等离子宽广伴随着豌豆根尖象征性节肢动物卸载的短期增加

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Root rips of Pisum sativum seedlings were exposed to 350 mM mannitol, which was shown to effect a transient but dramatic increase in phloem unloading, and investigated by electron microscopy. After chemical fixation and embedding, extremely thin sections of the root extension zone were examined. Outer, inner, and desmotubule diameters of 830 primary plasmodesmata in transverse walls of cortical cells were measured. Statistical analysis indicated that the majority of plasmodesmata had no neck constriction during osmoregulation. Compared to controls, a highly significant increase in mean plasmodesmata diameter was found, but the desmotubule diameter remained unchanged. Both loss of neck constriction and widening of the cytoplasmic sleeve indicate an increase in effective passage area of plasmodesmata. Spokes between plasma membrane and desmotubule were preserved. Continued exposure of the root tips to mannitol led to a return to control values for plasmodesmal diameters. In contrast to these responses, plasmolysis of cortical cells by 1,000 mM sucrose, diminishing phloem unloading, was accompanied by a reduction in those plasmodesmata classified as open. This is the first report showing a correlation between the ultrastructure of plasmodesmata and the rate of symplasmic transport. The role of the different plasmodesmal components in controlling the passage area of symplasmic transport is discussed. [References: 59]
机译:豌豆幼苗的根裂暴露于350 mM甘露醇下,这显示韧皮部卸载的瞬时但显着增加,并通过电子显微镜进行了研究。化学固定和包埋后,检查了根延伸区的极薄部分。测量皮质细胞横壁中830个原发性胞膜瘤的外径,内径和桥臂直径。统计分析表明,在渗透调节过程中,大部分胞浆菌丝没有颈缩。与对照组相比,发现胞质平均直径显着增加,但桥粒直径保持不变。颈部收缩的丧失和细胞质套筒的变宽都表明胞浆菌的有效通过面积增加。保留了质膜和去小管之间的辐条。根尖持续暴露于甘露醇导致血浆的直径恢复到对照值。与这些反应相反,1,000 mM蔗糖对皮质细胞进行胞质溶解,减少了韧皮部的卸载,同时伴有被分类为开放性的胞浆的减少。这是第一份报告,显示了胞质超微结构和同质运输速率之间的相关性。讨论了不同的等离子细胞成分在控制同质转运通道面积中的作用。 [参考:59]

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