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首页> 外文期刊>Evolution: International Journal of Organic Evolution >Disentangling evolutionary cause-effect relationships with phylogenetic confirmatory path analysis
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Disentangling evolutionary cause-effect relationships with phylogenetic confirmatory path analysis

机译:用系统进化确认路径分析解开进化因果关系

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摘要

Confirmatory path analysis is a statistical technique to build models of causal hypotheses among variables and test if the data conform with the causal model. However, classical path analysis techniques ignore the nonindependence of observations due to phylogenetic relatedness among species, possibly leading to spurious results. Here, we present a simple method to perform phylogenetic confirmatory path analysis (PPA). We analyzed simulated datasets with varying amounts of phylogenetic signal in the data and a known underlying causal structure linking the traits to estimate Type I error and power. Results show that Type I error for PPA appeared to be slightly anticonservative (range: 0.047-0.072) but path analysis models ignoring phylogenetic signal resulted in much higher Type I error rates, which were positively related to the amount of phylogenetic signal (range: 0.051 for λ= 0 to 0.916 for λ= 1). Further, the power of the test was not compromised when accounting for phylogeny. As an example of the application of PPA, we revisit a study on the correlates of aggressive broodmate competition across seven avian families. The use of PPA allowed us to gain greater insight into the plausible causal paths linking species traits to aggressive broodmate competition.
机译:验证性路径分析是一种统计技术,用于在变量之间建立因果假设模型并测试数据是否符合因果模型。但是,由于物种之间的系统发育相关性,经典路径分析技术忽略了观测值的非独立性,这可能导致虚假结果。在这里,我们提出了一种简单的方法来进行系统发育确认路径分析(PPA)。我们分析了具有不同数量系统发生信号的模拟数据集,并利用已知的因果结构将这些特征联系起来,以估计I型误差和功效。结果表明,PPA的I型错误似乎略有保守性(范围:0.047-0.072),但是忽略系统发育信号的路径分析模型导致I型错误率更高,与系统发育信号的数量呈正相关(范围:0.051)对于λ= 0到0.916,对于λ= 1)。此外,在考虑系统发育时,测试的功能没有受到损害。作为应用PPA的一个例子,我们重新研究了七个鸟类家庭中积极的溴酸盐竞争相关性的研究。 PPA的使用使我们能够更深入地了解将物种性状与积极的溴酸盐竞争联系起来的合理的因果路径。

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