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静水压力模拟轮藻细胞中的重力压力。

Hydrostatic pressure mimics gravitational pressure in characean cells.

作者信息

Staves M P, Wayne R, Leopold A C

机构信息

Section of Plant Biology, Cornell University, Ithaca, New York, USA.

出版信息

Protoplasma. 1992;168(3-4):141-52. doi: 10.1007/BF01666260.

Abstract

Hydrostatic pressure applied to one end of a horizontal Chara cell induces a polarity of cytoplasmic streaming, thus mimicking the effect of gravity. A positive hydrostatic pressure induces a more rapid streaming away from the applied pressure and a slower streaming toward the applied pressure. In contrast, a negative pressure induces a more rapid streaming toward and a slower streaming away from the applied pressure. Both the hydrostatic pressure-induced and gravity-induced polarity of cytoplasmic streaming respond identically to cell ligation, UV microbeam irradiation, external Ca2+ concentrations, osmotic pressure, neutral red, TEA Cl-, and the Ca2+ channel blockers nifedipine and LaCl3. In addition, hydrostatic pressure applied to the bottom of a vertically-oriented cell can abolish and even reverse the gravity-induced polarity of cytoplasmic streaming. These data indicate that both gravity and hydrostatic pressure act at the same point of the signal transduction chain leading to the induction of a polarity of cytoplasmic streaming and support the hypothesis that characean cells respond to gravity by sensing a gravity-induced pressure differential between the cell ends.

摘要

向水平放置的轮藻细胞一端施加静水压力会诱导细胞质流动产生极性,从而模拟重力的作用。正静水压力会诱导远离施加压力方向的细胞质流动更快,而朝向施加压力方向的流动更慢。相反,负压力会诱导朝向施加压力方向的流动更快,而远离施加压力方向的流动更慢。静水压力诱导的和重力诱导的细胞质流动极性对细胞结扎、紫外微束照射、外部Ca2+浓度、渗透压、中性红、TEA Cl-以及Ca2+通道阻滞剂硝苯地平和LaCl3的反应相同。此外,向垂直放置细胞的底部施加静水压力可以消除甚至逆转重力诱导的细胞质流动极性。这些数据表明,重力和静水压力在导致细胞质流动极性诱导的信号转导链的同一点起作用,并支持轮藻细胞通过感知细胞两端重力诱导的压力差来响应重力的假说。

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