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A Study of the Stationary Volumetric Elastic Modulus during Dehydration and Rehydration of Stems of Pea Seedlings.

机译:豌豆幼苗茎脱水和复水过程中的静态体积弹性模量的研究。

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摘要

The relationship between cortical-cell turgor pressure (P) and tissue water mass (W) was determined for stem segments of pea (Pisum sativum L.) seedlings subjected to hydration and dehydration. This allowed a test for elastic hysteresis in the cortical cells. The P-W curves for dehydration and hydration were not coincident. In some experiments, the P-W curves exhibited a "roll-off" at high P, similar to the "plateau effect" sometimes observed in pressure-chamber studies. When hydration was followed by a 4-h dehydration, the tissue water mass (W0) at minimum turgor was reduced. This might reflect a reduction in apoplastic water mass and/or a contraction of the symplast during dehydration. Neglecting the decrease in W0 leads to underestimates of the stationary volumetric elastic modulus ([epsilon]stat). The result of an analysis that assumes W0 was constant during hydration suggests that there was no significant difference in [epsilon]stat between dehydration and hydration and, hence, no significant elastic hysteresis. However, a 16-h dehydration increased [epsilon]stat; this might be a response to water stress.
机译:确定了豌豆(Pisum sativum L.)幼苗的茎段经过水合和脱水后的皮质细胞膨胀压力(P)与组织水量(W)之间的关系。这允许测试皮质细胞中的弹性滞后。脱水和水合作用的P-W曲线不一致。在某些实验中,P-W曲线在高P处表现出“滚降”,类似于有时在压力室研究中观察到的“平稳效应”。在水合后进行4小时脱水后,最小膨胀力下的组织水量(W0)降低。这可能反映了脱水过程中质外性水团的减少和/或共生体的收缩。忽略W 0的降低导致低估了固定的体积弹性模量(εstat)。假设在水合期间W 0恒定的分析结果表明,在脱水和水合之间εstat没有显着差异,因此没有显着的弹性滞后。但是,脱水增加了16小时的εstat值;这可能是对缺水的反应。

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