Reconstructing the ancestral state of a group of species helps answer many important questions in evolutionary biology. Therefore, it is crucial to understand when we can estimate the ancestral state accurately. Previous works provide a necessary and sufficient condition, called the big bang condition, for the existence of an accurate reconstruction method under discrete trait evolution models and the Brownian motion model. In this paper, we extend this result to a wide range of continuous trait evolution models. In particular, we consider a general setting where continuous traits evolve along the tree according to stochastic processes that satisfy some regularity conditions. We verify these conditions for popular continuous trait evolution models including Ornstein-Uhlenbeck, reflected Brownian Motion, and Cox-Ingersoll-Ross.
翻译:重新构建一组物种的祖先状态有助于解答进化生物学中许多重要问题。 因此,了解我们何时才能准确估算祖先状态至关重要。 先前的工程提供了一种必要和充分的条件,称为大爆炸条件,以在离散特性进化模型和布朗运动模型下存在准确的重建方法。 在本文中,我们将这一结果推广到广泛的连续特性进化模型中。 特别是, 我们考虑一个总体环境,让连续特征根据符合某些正常条件的随机过程沿树发展。 我们核实了这些条件,以建立流行的连续性进化模型,包括Ornstein-Uhlenbeck、反映布朗运动和Cox-Ingersoll-Ross。