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Estimating the Temperature Dependence of Germination Time by Assuming Multiple Rate-Determining Steps

机译:通过假设多个速率确定步骤来估计发芽时间的温度依赖性

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The temperature dependence of the duration of a biological process can be analyzed using the Arrhenius equation. However, germination time does not precisely follow the Arrhenius equation, which is based on the assumption that temperature dependence can be explained by the behavior of one step. In the present study, to analyze germination time precisely, I assumed that temperature dependence could be explained by the behavior of multiple independent steps. According to this assumption, the germination time corresponds to the summed durations of multiple steps, and the duration of each step follows the Arrhenius equation. From these relations, I derived the s-equation, which relates germination time to changes in temperature. This s-equation method was then applied to the germination times of rice seeds at various temperatures. The results were compared to those of the classic breakpoint method, in which different Arrhenius equations are fitted to each temperature range, divided at the breakpoint temperatures. Germination time was correlated more precisely to changes in temperature, and obtained values of activation energies were more stable, with the two-step s-equation method than with the breakpoint method. These results suggest that the two-step s-equation method should be used to relate germination time to changes in temperature and that the temperature dependence of germination time involves two steps.
机译:可以使用Arrhenius方程分析生物过程持续时间的温度依赖性。但是,发芽时间并不精确地遵循Arrhenius方程,该方程基于以下假设:温度依赖性可以通过一步的行为来解释。在本研究中,为精确分析发芽时间,我假设温度依赖性可以通过多个独立步骤的行为来解释。根据该假设,发芽时间对应于多个步骤的总持续时间,并且每个步骤的持续时间遵循Arrhenius方程。从这些关系中,我得出了S方程,该方程将发芽时间与温度变化相关。然后将此s方程法应用于水稻种子在不同温度下的发芽时间。将结果与经典折点方法进行比较,在经典折点方法中,将不同的Arrhenius方程拟合到每个温度范围,并在折点温度处进行划分。两步s方程法比断点法更准确地将发芽时间与温度变化相关,并且活化能的获得值更加稳定。这些结果表明,应该使用两步S方程法将发芽时间与温度变化相关联,并且发芽时间的温度依赖性包括两个步骤。

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