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Analysis of the Dynamic and Steady-State Responses of Growth Rate and Turgor Pressure to Changes in Cell Parameters

机译:生长速率和湍流压力对细胞参数变化的动态和稳态响应分析

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摘要

The physical analysis of plant cell enlargment is extended to show the dependence of turgor pressure and growth rate under steady-state conditions on the parameters which govern cell wall extension and water transport in growing cells and tissues, and to show the dynamic responses of turgor and growth rate to instantaneous changes in one of these parameters. The analysis is based on the fact that growth requires simultaneous water uptake and irreversible wall expansion. It shows that when a growing cell is perturbed from its steady-state growth rate, it will approach the steady-state rate with exponential kinetics. The half-time of the transient adjustment depends on the biophysical parameters governing both water transport and irreversible wall expansion. When wall extensibility is small compared to hydraulic conductance, the growth rate is controlled by the yielding properties of the cell wall, while the half-time for changes in growth rate is controlled by the water transport parameters. The reverse situation occurs when hydraulic conductance is lower than wall extensibility. The analysis also shows explicitly that turgor pressure is tightly coupled with growth rate when growth is controlled by both water transport and wall yielding parameters.In growing tissue where the resistance to water flow is distributed throughout the tissue, the physical analysis is more complicated because gradients in water potential (and hence turgor pressure) are required to sustain high growth rates. However, the analysis of growth in such tissues shows that the turgor and time-course relations are similar to that in single cells. These turgor and time-course relations provide experimentally useful ways for determining (a) whether growth is limited by water uptake, and (b) whether an agent which alters the growth rate does so by affecting the water transport or wall yielding properties or both.
机译:对植物细胞膨大的物理分析进行了扩展,以显示稳态条件下的膨胀压力和生长速率对控制生长中的细胞和组织中细胞壁延伸和水传输的参数的依赖性,并显示膨胀和膨胀的动态响应。增长率到这些参数之一的瞬时变化。该分析基于以下事实:生长需要同时吸水和不可逆的壁膨胀。它表明,当一个生长中的细胞受到其稳态增长率的干扰时,它将以指数动力学接近稳态速率。瞬态调节的一半时间取决于控制水传输和不可逆壁膨胀的生物物理参数。当壁的可扩展性与水力传导率相比较小时,生长速率由细胞壁的屈服特性控制,而生长速率变化的半衰期则由水传输参数控制。当水力传导率低于壁的可扩展性时,发生相反的情况。该分析还明确表明,当生长受水分传输和壁屈服参数控制时,膨胀压力与生长速率紧密相关。在生长组织中,水流阻力分布在整个组织中,物理分析更加复杂,因为梯度为了保持较高的增长率,需要水势(因此会产生胀气压力)。然而,对这种组织中生长的分析表明,膨胀和时程关系与单个细胞中的相似。这些强度和时程关系提供了实验上有用的方法,可用于确定(a)生长是否受水分限制,以及(b)改变生长速率的试剂是否通过影响水的运输或壁的屈服特性或两者而改变。

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