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叶片脱水过程中叶肉超声特性与结构变化的关系。

Relationship between ultrasonic properties and structural changes in the mesophyll during leaf dehydration.

机构信息

Unidad de Recursos Forestales, Centro de Investigación y Tecnología Agroalimentaria, Gobierno de Aragón, E-50059, Zaragoza, Spain.

出版信息

J Exp Bot. 2011 Jun;62(10):3637-45. doi: 10.1093/jxb/err065. Epub 2011 Mar 17.

Abstract

The broad-band ultrasonic spectroscopy technique allows the determination of changes in the relative water content (RWC) of leaves with contrasting structural features. Specifically, the standardized frequency associated with the maximum transmittance (f/f(o)) is strongly related to the RWC. This relationship is characterized by the existence of two phases separated by an inflexion point (associated with the turgor loss point). To obtain a better understanding of the strong relationship found between RWC and f/f(o), this work has studied the structural changes experienced by Quercus muehlenbergii leaves during dehydration in terms of ultrasounds measurements, cell wall elasticity, leaf thickness, leaf density, and leaf structure. The results suggest that the decrease found in f/f(o) before the turgor loss point can be attributed to the occurrence of changes in the estimation of the macroscopic effective elastic constant of the leaf (c(33)), mainly associated with changes in the bulk modulus of elasticity of the cell wall (ε). These changes are overriding or compensating for the thickness decreases recorded during this phase. On the other hand, the high degree of cell shrinkage and stretching found in the mesophyll cells during the second phase seem to explain the changes in the acoustic properties of the leaf beyond the turgor loss point. The formation of large intercellular spaces, which increased the irregularity in the acoustic pathway, may explain the increase of the attenuation coefficient of ultrasounds once the turgor loss point threshold is exceeded. The direct measurement of c(33) from ultrasonic measurements would allow a better knowledge of the overall biomechanical properties of the leaf further than those derived from the P-V analysis.

摘要

宽带超声光谱技术允许确定具有对比结构特征的叶片的相对含水量 (RWC) 变化。具体来说,与最大透射率相关的标准化频率 (f/f(o)) 与 RWC 密切相关。这种关系的特点是存在两个相位,由拐点分开(与膨压损失点相关)。为了更好地理解 RWC 和 f/f(o) 之间发现的强关系,这项工作通过超声测量、细胞壁弹性、叶片厚度、叶片密度和叶片结构来研究 Quercus muehlenbergii 叶片在脱水过程中经历的结构变化。结果表明,在膨压损失点之前发现的 f/f(o) 下降可以归因于叶片宏观有效弹性常数 (c(33)) 的估计发生变化,主要与细胞壁弹性模量 (ε) 的变化有关。这些变化覆盖或补偿了在此阶段记录的厚度减小。另一方面,在第二阶段中叶肉细胞中发现的高度细胞收缩和拉伸似乎解释了超过膨压损失点后叶片声学特性的变化。大细胞间空间的形成增加了声传播路径的不规则性,这可以解释一旦超过膨压损失点阈值,超声波衰减系数的增加。直接从超声测量测量 c(33) 将允许进一步了解叶片的整体生物力学特性,而不仅仅是从 P-V 分析得出的特性。

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