Pagel Mark, Meade Andrew
School of Biological Sciences, University of Reading, Reading, UK.
Nat Commun. 2025 May 16;16(1):4555. doi: 10.1038/s41467-025-59836-6.
Statistical characterisations of traits evolving on phylogenies combine the contributions of unique and shared influences on those traits, potentially confusing the interpretation of historical events of macroevolution. The Fabric model, introduced in 2022, identifies historical events of directional shifts in traits (e.g. becoming larger/smaller, faster/slower over evolutionary time) and of changes in macroevolutionary 'evolvability' or the realised historical ability of a trait to explore its trait-space. Here we extend the model to accommodate situations in which the trait is correlated with one or more covarying traits. The Fabric-regression model identifies a unique component of variance in the trait that is free of influences from correlated traits, while simultaneously estimating directional and evolvability effects. We show in a dataset of 1504 Mammalian species that inferences about historical directional shifts in brain size and in its evolvability, having accounted for body size, differ qualitatively from inferences about brain size alone, including finding many new effects not visible in the whole trait. A class of fundamental macroevolutionary questions awaits testing on the variation uniquely attributable to traits, and the ability to accommodate statistically one or more covariates opens the possibility of bringing the formal methods of causal inference to phylogenetic-comparative studies.
在系统发育树上进化的性状的统计特征综合了对这些性状独特和共同影响的贡献,这可能会混淆对宏观进化历史事件的解释。2022年引入的结构模型识别性状定向转变的历史事件(例如在进化时间内变得更大/更小、更快/更慢)以及宏观进化“可进化性”的变化或性状探索其性状空间的实际历史能力。在这里,我们扩展该模型以适应性状与一个或多个协变性状相关的情况。结构回归模型识别性状中方差的一个独特成分,该成分不受相关性状的影响,同时估计定向和可进化性效应。我们在一个包含1504个哺乳动物物种的数据集中表明,在考虑了体型因素后,关于脑容量及其可进化性的历史定向转变的推断在性质上与仅关于脑容量的推断不同,包括发现了许多在整个性状中不可见的新效应。一类基本的宏观进化问题有待于对性状独特归因的变异进行检验,并且能够在统计上容纳一个或多个协变量为将因果推断的形式方法引入系统发育比较研究开辟了可能性。