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首页> 外文期刊>Plant physiology >Changes in cytosolic pH within Arabidopsis root columella cells play a key role in the early signaling pathway for root gravitropism
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Changes in cytosolic pH within Arabidopsis root columella cells play a key role in the early signaling pathway for root gravitropism

机译:拟南芥根小肠细胞内胞质pH的变化在根向重力的早期信号传导途径中起着关键作用

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Ratiometric wide-field fluorescence microscopy with 1',7'-bis-(2-carboxyethyl)-5-(and-6)-carboxyfluorescein (BCECF)-dextran demonstrated that gravistimulation leads to rapid changes in cytoplasmic pH (pHc) in columella cells of Arabidopsis roots. The pHc of unstimulated columella cells in tiers 2 and 3, known sites of graviperception (E.B. Blancaflor, J.B. Fasano, S. Gilroy [1998] Plant Physiol 116: 213-222), was 7.22 plus-or-minus 0.02 pH units. Following gravistimulation, the magnitude and direction of pHc changes in these cells depended on their location in the columella. Cells in the lower side of tier 2 became more alkaline by 0.4 unit within 55 s of gravistimulation, whereas alkalinization of the cells on the upper side was slower (100 s). In contrast, all cells in tier 3 acidified by 0.4 pH unit within 480 s after gravistimulation. Disrupting these pHc changes in the columella cells using pHc modifiers at concentrations that do not affect root growth altered the gravitropic response. Acidifying agents, including bafilomycin A1, enhanced curvature, whereas alkalinizing agents disrupted gravitropic bending. These results imply that pHc changes in the gravisensing cells and the resultant pH gradients across the root cap are important at an early stage in the signal cascade leading to the gravitropic response.
机译:使用1',7'-双-(2-羧乙基)-5-(和-6)-羧基荧光素(BCECF)-葡聚糖进行比例宽视野荧光显微镜观察表明,重力刺激导致小肠细胞质pH(pHc)迅速变化拟南芥根的细胞。在第2层和第3层(已知的重力感知位点)中未刺激的小肠细胞的pHc(E.B。Blancaflor,J.B.Fasano,S。Gilroy [1998] Plant Physiol 116:213-222)为7.22 +/- 0.02 pH单位。经过去刺激后,这些细胞中pHc变化的大小和方向取决于它们在小肠中的位置。重力激发后55 s内,第2层下侧的细胞碱性提高了0.4个单位,而上侧的细胞碱化较慢(100 s)。相比之下,第3层中的所有细胞在去刺激后480秒内均以0.4 pH单位酸化。在不影响根系生长的浓度下使用pHc修饰剂破坏小肠细胞中的这些pHc变化,会改变重力反应。酸化剂(包括bafilomycin A1)提高了曲率,而碱化剂则破坏了重力弯曲。这些结果表明,在趋向性反应的信号级联的早期,重感细胞中的pHc发生变化,并且根冠上的最终pH梯度很重要。

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