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A New Pressure Probe Method to Determine the Average Volumetric Elastic Modulus of Cells in Plant Tissue.

机译:一种确定植物组织中细胞平均体积弹性模量的压力探针新方法。

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摘要

A new in vivo method was used to determine an average volumetric elastic modulus ([epsilon]ave) for nongrowing cells in plant tissue. This method requires that both the relative transpiration rate, T, of the tissue and the average turgor pressure decay rate, (dP/dt)ave, of the cells are measured after the water source is removed from the plant tissue. Then [epsilon]ave is calculated from the equation [epsilon]ave = (-dP/dt)ave/T. This method was used to determine [epsilon]ave for cortical cells in stems of pea seedlings (Pisum sativum L.). The results demonstrate that [epsilon]ave increases from virtually zero at low P (approximately 0.01MPa) to approximately 10 MPa at high P (approximately 0.5 MPa). Analyses of the results indicate that the relationship between [epsilon]ave and P can be approximated by a linear function and more accurately approximated by a saturating exponential function: [epsilon]ave = [epsilon][infinity symbol][1 - exp {-k(P - Po)}], where Po is a plateau pressure (approximately 0.01 MPa), k is a rate constant (approximately 7 per MPa), and [epsilon][infinity symbol] (approximately 10 MPa) is the hypothetical maximum value of [epsilon]ave as P -> [infinity symbol]. Solutions for the turgor pressure decay (due to transpiration) as functions of time and symplasmic water mass (after the water source is removed) are derived.
机译:使用一种新的体内方法来确定植物组织中未生长细胞的平均体积弹性模量(εave)。该方法要求在从植物组织中去除水源后,同时测量组织的相对蒸腾速率T和细胞的平均膨胀压力衰减速率(dP / dt)ave。然后,从方程εave=(-dP / dt)ave / T计算εave。该方法用于确定豌豆幼苗(Pisum sativum L.)茎中皮质细胞的εave。结果表明,εave从低P(大约0.01 MPa)下的几乎为零增加到高P(大约0.5 MPa)下的大约10 MPa。结果分析表明,εave和P之间的关系可以通过线性函数近似,并且可以通过饱和指数函数更精确地近似:εave =ε∞符号[1-exp {- k(P-Po)}],其中Po是平台压力(约0.01 MPa),k是速率常数(每MPa约7),ε[无穷大符号](约10 MPa)是假设的最大值εave的值作为P-> [无穷大符号]。得出了随着时间和同质水团(在去除水源之后)的膨胀压力衰减(由于蒸腾作用)的解。

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    Murphy, R.; Ortega, JKE.;

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  • 年度 1995
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  • 正文语种 en
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