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在细胞增大过程中区分生长与弹性变形。

Separating growth from elastic deformation during cell enlargement.

作者信息

Proseus TE, Ortega JK, Boyer JS

机构信息

College of Marine Studies, University of Delaware, Lewes, Delaware 19958 (T.E.P., J.S.B.).

出版信息

Plant Physiol. 1999 Feb;119(2):775-84. doi: 10.1104/pp.119.2.775.

Abstract

Plants change size by deforming reversibly (elastically) whenever turgor pressure changes, and by growing. The elastic deformation is independent of growth because it occurs in nongrowing cells. Its occurrence with growth has prevented growth from being observed alone. We investigated whether the two processes could be separated in internode cells of Chara corallina Klien ex Willd., em R.D.W. by injecting or removing cell solution with a pressure probe to change turgor while the cell length was continuously measured. Cell size changed immediately when turgor changed, and growth rates appeared to be altered. Low temperature eliminated growth but did not alter the elastic effects. This allowed elastic deformation measured at low temperature to be subtracted from elongation at warm temperature in the same cell. After the subtraction, growth alone could be observed for the first time. Alterations in turgor caused growth to change rapidly to a new, steady rate with no evidence of rapid adjustments in wall properties. This turgor response, together with the marked sensitivity of growth to temperature, suggested that the growth rate was not controlled by inert polymer extension but rather by biochemical reactions that include a turgor-sensitive step.

摘要

植物通过在膨压变化时可逆地(弹性地)变形以及生长来改变大小。弹性变形与生长无关,因为它发生在非生长细胞中。它与生长同时发生,这使得单独观察生长变得困难。我们研究了在轮叶黑藻(Chara corallina Klien ex Willd., em R.D.W.)的节间细胞中,这两个过程是否可以分开。我们使用压力探针注入或去除细胞溶液以改变膨压,同时连续测量细胞长度。当膨压改变时,细胞大小立即改变,生长速率似乎也发生了变化。低温消除了生长,但没有改变弹性效应。这使得在低温下测量的弹性变形可以从同一细胞在温暖温度下的伸长中减去。相减之后,首次能够单独观察到生长。膨压的变化使生长迅速转变为新的稳定速率,没有证据表明细胞壁特性有快速调整。这种膨压响应,以及生长对温度的显著敏感性,表明生长速率不是由惰性聚合物的伸展控制,而是由包括一个对膨压敏感步骤的生化反应控制。

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