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The Implications of Stratigraphic Compatibility for Character Integration among Fossil Taxa

机译:地层兼容性对化石分类中字符整合的影响

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Two characters are stratigraphically compatible if some phylogenies indicate that their combinations (state-pairs) evolved without homoplasy and in an order consistent with the fossil record. Simulations assuming independent character change indicate that we expect approximately 95% of compatible character pairs to also be stratigraphically compatible over a wide range of sampling regimes and general evolutionary models. However, two general models of rate heterogeneity elevate expected stratigraphic incompatibility: "early burst" models, where rates of change are higher among early members of a clade than among later members of that clade, and "integration" models, where the evolution of characters is correlated in some manner. Both models have important theoretical and methodological implications. Therefore, we examine 259 metazoan clades for deviations from expected stratigraphic compatibility. We do so first assuming independent change with equal rates of character change through time. We then repeat the analysis assuming independent change with separate "early" and "late" rates (with "early" = the first third of taxa in a clade), with the early and late rates chosen to maximize the probability of the observed compatibility among the early taxa and then the whole clade. We single out Cambrian trilobites as a possible "control" group because morphometric studies suggest that integration patterns are not conserved among closely related species. Even allowing for early bursts, we see excess stratigraphic incompatibility (i.e., negative deviations) in significantly more clades than expected at 0.50, 0.25, and 0.05 P values. This pattern is particularly strong in chordates, echinoderms, and arthropods. However, stratigraphic compatibility among Cambrian trilobites matches the expectations of integration studies, as they (unlike post-Cambrian trilobites) do not deviate from the expectations of independent change with no early bursts. Thus, these results suggest that processes such as integration strongly affect the data that paleontologists use to study phylogeny, disparity, and rates.
机译:如果某些系统发育史表明两个组合(状态对)的演化没有同质性,并且顺序与化石记录一致,则这两个字符在地层上是相容的。假设字符独立变化的模拟表明,我们期望大约95%的兼容字符对在广泛的采样方案和一般演化模型上也具有地层兼容性。但是,速率异质性的两种通用模型会提高预期的地层不相容性:“早期爆发”模型(进化枝的早期成员之间的变化速率高于该进化枝的晚期成员)和“整合”模型,其特征演化以某种方式相关。两种模型都有重要的理论和方法论意义。因此,我们检查了259个后生分支与预期地层相容性的偏差。我们首先假设独立的变化和随时间变化的字符变化率相等。然后,我们重复分析,假设独立的变化具有单独的“早期”和“晚期”速率(“早期” =进化枝中的分类单元的前三分之一),并选择了早期和晚期速率以最大化观察到的相容性的概率。早期的分类群,然后是整个进化枝。我们将寒武纪三叶虫选为可能的“对照组”,因为形态计量学研究表明,在密切相关的物种中整合模式不保守。即使考虑到早期爆发,我们也发现在超过0.5P,0.25和0.05 P值的分支中地层不相容性过多(即负偏差)。这种形态在脊索动物,棘皮动物和节肢动物中尤为突出。但是,寒武纪三叶虫之间的地层相容性符合整合研究的期望,因为它们(不同于后寒武纪三叶虫)没有背离独立变化的期望而没有早期爆发。因此,这些结果表明诸如整合之类的过程极大地影响了古生物学家用来研究系统发育,差异和发生率的数据。

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