Insect Sci. 2013 Jun;20(3):420-8. doi: 10.1111/j.1744-7917.2012.01525.x. Epub 2012 Jun 20.
The intrinsic optimum temperature for the development of ectotherms is one of the most important factors not only for their physiological processes but also for ecological and evolutional processes. The Sharpe-Schoolfield-Ikemoto (SSI) model succeeded in defining the temperature that can thermodynamically meet the condition that at a particular temperature the probability of an active enzyme reaching its maximum activity is realized. Previously, an algorithm was developed by Ikemoto (Tropical malaria does not mean hot environments. Journal of Medical Entomology, 45, 963-969) to estimate model parameters, but that program was computationally very time consuming. Now, investigators can use the SSI model more easily because a full automatic computer program was designed by Shi et al. (A modified program for estimating the parameters of the SSI model. Environmental Entomology, 40, 462-469). However, the statistical significance of the point estimate of the intrinsic optimum temperature for each ectotherm has not yet been determined. Here, we provided a new method for calculating the confidence interval of the estimated intrinsic optimum temperature by modifying the approximate bootstrap confidence intervals method. For this purpose, it was necessary to develop a new program for a faster estimation of the parameters in the SSI model, which we have also done.
变温动物的内在最适温度不仅是其生理过程的最重要因素之一,也是生态和进化过程的最重要因素之一。Sharpe-Schoolfield-Ikemoto(SSI)模型成功地定义了可以在热力学上满足特定温度下活性酶达到最大活性概率的条件的温度。此前,Ikemoto 开发了一种算法(热带疟疾并不意味着高温环境。Journal of Medical Entomology,45,963-969)来估计模型参数,但该程序在计算上非常耗时。现在,研究人员可以更轻松地使用 SSI 模型,因为 Shi 等人设计了一个全自动计算机程序(A modified program for estimating the parameters of the SSI model. Environmental Entomology,40,462-469)。然而,每个变温动物的内在最适温度的点估计的统计显著性尚未确定。在这里,我们通过修改近似自举置信区间方法提供了一种计算估计内在最适温度置信区间的新方法。为此,有必要开发一种用于 SSI 模型中参数的更快估计的新程序,我们也已经完成了这一点。