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根冠细胞的激光消融:对重力感知模型的启示

Laser ablation of root cap cells: implications for models of graviperception.

作者信息

Blancaflor E B, Fasano J M, Gilroy S

机构信息

The Pennsylvania State University, Biology Department, University Park 16802, USA.

出版信息

Adv Space Res. 1999;24(6):731-8. doi: 10.1016/s0273-1177(99)00406-8.

Abstract

The initial event of gravity perception by plants is generally thought to occur through sedimentation of amyloplasts in specialized sensory cells. In the root, these cells are the columella which are located toward the center of the root cap. To define more precisely the contribution of columella cells to root gravitropism, we used laser ablation to remove single columella cells or groups of these cells and observed the effect of their removal on gravity sensing and response. Complete removal of the cap or all the columella cells (leaving peripheral cap cells intact) abolishes the gravity response of the root. Removal of stories of columella revealed differences between regions of the columella with respect to gravity sensing (presentation time) versus graviresponse (final tropic growth response of the root). This fine mapping revealed that ablating the central columella located in story 2 had the greatest effect on presentation time whereas ablating columella cells in story 3 had a smaller or no effect. However, when removed by ablation the columella cells in story 3 did inhibit gravitropic bending, suggesting an effect on translocation of the gravitropic signal from the cap rather than initial gravity perception. Mapping the in vivo statolith sedimentation rates in these cells revealed that the amyloplasts of the central columella cells sedimented more rapidly than those on the flanks do. These results show that cells with the most freely mobile amyloplasts generate the largest gravisensing signal consistent with the starch statolith hypothesis of gravity sensing in roots.

摘要

植物对重力感知的初始事件通常被认为是通过淀粉体在特殊感觉细胞中的沉降来发生的。在根中,这些细胞是位于根冠中心的柱细胞。为了更精确地确定柱细胞对根向重力性的贡献,我们使用激光消融技术去除单个柱细胞或这些细胞的群体,并观察去除它们对重力感知和反应的影响。完全去除根冠或所有柱细胞(使外周根冠细胞保持完整)会消除根的重力反应。去除不同层的柱细胞揭示了柱细胞不同区域在重力感知(呈现时间)与重力反应(根的最终向性生长反应)方面的差异。这种精细定位表明,消融位于第2层的中央柱细胞对呈现时间的影响最大,而消融第3层的柱细胞影响较小或没有影响。然而,当通过消融去除第3层的柱细胞时,确实会抑制向重力性弯曲,这表明其对重力信号从根冠的转位有影响,而不是对初始重力感知有影响。绘制这些细胞中体内平衡石沉降速率图发现,中央柱细胞的淀粉体沉降速度比侧翼细胞的淀粉体沉降速度更快。这些结果表明,淀粉体移动最自由的细胞产生的重力感知信号最大,这与根中重力感知的淀粉平衡石假说是一致的。

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