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首页> 外文期刊>American journal of botany >Mannitol-enhanced, fluid-phase endocytosis in storage parenchyma cells of celery (Apium graveolens; Apiaceae) petioles
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Mannitol-enhanced, fluid-phase endocytosis in storage parenchyma cells of celery (Apium graveolens; Apiaceae) petioles

机译:甘露醇增强的芹菜(Apiumgravolens; Apiaceae)叶柄贮藏实质细胞中的液相内吞作用

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We recently demonstrated the occurrence of a sucrose-enhanced, fluid-phase endocytic (FPE) mechanism of nutrient uptake in heterotrophic cells. In the present work, the possible enhancement/induction of FPE by photoassimilates other than sucrose was investigated by measuring the incorporation of the fluorescent endocytosis marker d-TR (dextran-Texas red, 3000 mw) into celery (Apium graveolens) petiole storage parenchyma (CSP), a tissue that transports and accumulates mannitol. Mannitol uptake in these cells is biphasic, with a hyperbolic phase at concentrations below 20 mM and a linear phase above 20 mM external solute concentration. In the absence of mannitol, or in its presence at concentrations within the hyperbolic phase, CSP cells accumulated low levels of d-TR. Conversely, d-TR accumulation by CSP cells was greatly enhanced in the presence of mannitol at concentrations within the linear phase. At high external mannitol concentration, d-TR accumulation was prevented by the endocytic inhibitors LY294002 and latrunculin B. In addition, d-TR uptake was temperature dependent under high mannitol concentration. Microscopic observations revealed that d-TR accumulated in the vacuole. These data support the occurrence of an FPE mechanism in CSP cells that participates in trapping and transport of photoassimilates to the vacuole. The FPE mechanism is enhanced by high mannitol concentrations.
机译:我们最近证明了异养细胞中蔗糖增强,营养吸收的液相内吞(FPE)机制的发生。在目前的工作中,通过测量荧光内吞标记物d-TR(葡聚糖-得克萨斯红,3000 mw)掺入芹菜(砾石)叶柄贮藏薄壁组织( CSP),一种运输和积累甘露醇的组织。这些细胞中甘露醇的吸收是双相的,双曲相的浓度低于20 mM,线性相的外部溶质浓度高于20 mM。在不存在甘露醇的情况下,或在双曲线相浓度下存在的情况下,CSP细胞的d-TR含量低。相反,在线性相内存在甘露醇的情况下,CSP细胞的d-TR积累大大增强。在高外部甘露醇浓度下,内吞抑制剂LY294002和latrunculin B阻止了d-TR的积累。此外,在高甘露醇浓度下d-TR的摄取与温度有关。显微镜观察显示d-TR在液泡中积累。这些数据支持在CSP细胞中发生FPE机制,该机制参与光同化物的捕获和转运至液泡。高甘露醇浓度可增强FPE机制。

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