Departamento de Ecologia, Universidade Federal de Goiás. Goiânia, Brasil.
Evolution. 2012 Apr;66(4):1079-90. doi: 10.1111/j.1558-5646.2011.01499.x. Epub 2011 Nov 27.
A number of metrics have been developed for estimating phylogenetic signal in data and to evaluate correlated evolution, inferring broad-scale evolutionary and ecological processes. Here, we proposed an approach called phylogenetic signal-representation (PSR) curve, built upon phylogenetic eigenvector regression (PVR). In PVR, selected eigenvectors extracted from a phylogenetic distance matrix are used to model interspecific variation. In the PSR curve, sequential PVR models are fitted after successively increasing the number of eigenvectors and plotting their R(2) against the accumulated eigenvalues. We used simulations to show that a linear PSR curve is expected under Brownian motion and that its shape changes under alternative evolutionary models. The PSR area, expressing deviations from Brownian motion, is strongly correlated (r= 0.873; P < 0.01) with Blomberg's K-statistics, so nonlinear PSR curves reveal if traits are evolving at a slower or higher rate than expected by Brownian motion. The PSR area is also correlated with phylogenetic half-life under an Ornstein-Uhlenbeck process, suggesting how both methods describe the shape of the relationship between interspecific variation and time since divergence among species. The PSR curve provides an elegant exploratory method to understand deviations from Brownian motion, in terms of acceleration or deceleration of evolutionary rates occurring at large or small phylogenetic distances.
已经开发出了许多指标来估计数据中的系统发育信号,并评估相关进化,推断广泛的进化和生态过程。在这里,我们提出了一种称为系统发育信号表示(PSR)曲线的方法,该方法建立在系统发育特征向量回归(PVR)的基础上。在 PVR 中,从系统发育距离矩阵中提取的选定特征向量用于模拟种间变异。在 PSR 曲线中,通过逐步增加特征向量的数量并绘制其 R(2)与累积特征值的关系来拟合顺序 PVR 模型。我们使用模拟来表明,在布朗运动下,预期会出现线性 PSR 曲线,而在替代进化模型下,其形状会发生变化。PSR 区域表示偏离布朗运动的程度,与 Blomberg 的 K 统计量强烈相关(r=0.873;P<0.01),因此非线性 PSR 曲线表明特征是否以比布朗运动预期更快或更慢的速度进化。PSR 区域与奥恩斯坦-乌伦贝克过程中的系统发育半衰期也相关,表明这两种方法如何描述种间变异与物种间分歧时间之间关系的形状。PSR 曲线提供了一种优雅的探索性方法,可以根据在大或小的系统发育距离上发生的进化率的加速或减速,从布朗运动的偏差来理解。