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首页> 外文期刊>Planta >Changes in the expression pattern of the plasma membrane H+-ATPase in developing Ricinus communis cotyledons undergoing the sink/source transition
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Changes in the expression pattern of the plasma membrane H+-ATPase in developing Ricinus communis cotyledons undergoing the sink/source transition

机译:进行源/源转换的发育中蓖麻子叶的质膜H + -ATPase表达模式的变化

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摘要

The plasma membrane (PM) H+-ATPase is thought to play a key role in generating the proton motive force used to drive the uptake and accumulation of solutes in plant cells. Changes in its expression pattern were studied in the Ricinus communis L. cotyledon as it changed from a sink to a source organ. Expression was monitored in 3-, 10- and 14-day-old cotyledons using an antibody to the maize PM H+-ATPase. The antibody labelled a 100-kDa protein in membrane fractions prepared from cotyledons and this protein occurred at higher levels in the PM-enriched fractions compared to those enriched in intracellular membranes. Immunostaining of tissue sections of 3-day-old Ricinus cotyledons (sinks) with this antibody demonstrated that the PM H+-ATPase was highly expressed in the lower epidermal cells and also in the vascular bundles, particularly the phloem. The high expression in the epidermis suggests that these cells may be important in the initial active uptake of solutes from the endosperm. A similar distribution was observed in the 10-day-old seedlings but, in addition, larger, more spherical cells (idioblasts) had developed in the lower and upper epidermal layers and these were also labelled. In 14-day-old seedlings the cotyledons are no longer reliant on nutrients from the endosperm (which has totally degraded) and they are functioning as source organs. This is reflected in a decrease in PM H+-ATPase expression in the lower epidermal cells, apart from idioblasts and stomatal guard cells. The latter were also observed in the upper epidermis. Expression remained high in the vascular bundles of 14-day-old seedlings with strong staining in the phloem.
机译:质膜H + -ATPase被认为在产生质子动力中起关键作用,质子动力用于驱动植物细胞中溶质的吸收和积累。在子叶蓖麻子中研究了其表达模式的变化,因为它从下沉器官变成了源器官。使用玉米PM H + -ATPase抗体在3、10和14天大的子叶中监测表达。该抗体在由子叶制备的膜级分中标记了一个100 kDa的蛋白质,与在细胞内膜中富集的级分相比,该蛋白在PM富集级分中的含量更高。用这种抗体对3天大的蓖麻子叶(水槽)的组织切片进行免疫染色,表明PM H + -ATPase在下表皮细胞以及血管束(尤其是韧皮部)中高表达。表皮中的高表达表明这些细胞可能在主动从胚乳中主动吸收溶质中很重要。在10天龄的幼苗中观察到了类似的分布,但是此外,在表皮的上层和下层中形成了更大,更多的球形细胞(成纤维细胞),并且这些细胞也被标记了。在14天大的幼苗中,子叶不再依赖于胚乳(已经完全降解)的营养,它们起着源器官的作用。这反映在除表皮细胞和气孔保卫细胞外,下部表皮细胞中的PM H + -ATPase表达下降。后者也在上表皮中观察到。在14日龄幼苗的维管束中,表达仍保持较高水平,韧皮部染色强烈。

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