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The plant cell nucleus is constantly alert and highly sensitive to repetitive local mechanical stimulations

机译:植物细胞核对重复的局部机械刺激始终保持警觉并高度敏感

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When mechanical stimulation is applied to a plant cell, the nucleus usually shows oriented movement to the site of stimulation (as a defensive response). Former researchers have revealed that applying mechanical pressure to plant tissues could line up cell division plane. A proposal, therefore, was put forward that cells inside plant tissue could receive mechanical signals from their growing neighbors to adjust their nuclear position and thus regulate the orientation of their dividing plane in order to form characteristic morphology of plant organs. To explore nuclear capacity and sensitivity to rapidly changing signals, multiple mechanical stimulations were applied to the same plant cell at intervals, either locally or at distance. The results revealed that the nucleus was highly sensitive to mechanical stimulations. It responded quickly to both local and distant stimulation by showing oriented movement toward the stimulation site. The nucleus was able to respond immediately to a second stimulation (no time lag) by starting up a second oriented movement toward the new signal; the completion of nuclear oriented movement to a first site of stimulation was not necessary for startup of a subsequent movement track to a second stimulation site, regardless of whether the second stimulation was applied ahead of or behind the moving nucleus. The nucleus responded to a second stimulation without loss of velocity, whether or not it was in a resting or moving state. This novel finding favors the proposal that growing tissues adjust the location of nuclei in cells by varying mechanical pressures; they thus control cell division according to a plan whereby organs and their constituent tissues develop in an orderly, specified manner. It appears that the enhanced sensitivity of plant cells to mechanical pressure is necessary not only in response to the external environment, but also to the developmental microenvironment inside the tissues.
机译:当对植物细胞施加机械刺激时,细胞核通常会向刺激部位显示定向运动(作为防御反应)。前研究人员已经发现,向植物组织施加机械压力可以使细胞分裂平面对齐。因此,提出了一种建议,即植物组织内部的细胞可以从生长中的邻居那里接收机械信号,以调节其核位置,从而调节其分裂平面的方向,从而形成植物器官的特征形态。为了探索核能力和对快速变化的信号的敏感性,将多个机械刺激以局部或远距离的间隔应用于同一植物细胞。结果表明,细胞核对机械刺激高度敏感。通过显示朝向刺激部位的定向运动,它对局部和远距离刺激都迅速做出反应。通过向新信号开始第二次定向运动,原子核能够立即对第二次刺激做出反应(无时间滞后)。不论是在运动核的前面还是后面施加第二次刺激,都无需完成向第一刺激点的定向核运动,而无需启动向第二刺激点的后续运动轨迹。无论是处于静止状态还是运动状态,细胞核都对第二次刺激做出反应而没有速度损失。这个新颖的发现支持了这样一个提议,即不断增长的组织通过改变机械压力来调节细胞核的位置。因此,它们按照计划控制细胞分裂,从而使器官及其组成组织以有序的特定方式发育。看来,不仅对外部环境有反应,而且对组织内部的发育微环境也有必要增强植物细胞对机械压力的敏感性。

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