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Lack of support for Deuterostomia prompts reinterpretation of the first Bilateria

机译:缺乏对Deuterostomia的支持促使对第一个二聚体的重新诠释

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The bilaterally symmetric animals (Bilateria) are considered to comprise two monophyletic groups, Protostomia (Ecdysozoa and the Lophotrochozoa) and Deuterostomia (Chordata and the Xenambulacraria). Recent molecular phylogenetic studies have not consistently supported deuterostome monophyly. Here, we compare support for Protostomia and Deuterostomia using multiple, independent phylogenomic datasets. As expected, Protostomia is always strongly supported, especially by longer and higher-quality genes. Support for Deuterostomia, however, is always equivocal and barely higher than support for paraphyletic alternatives. Conditions that cause tree reconstruction errors—inadequate models, short internal branches, faster evolving genes, and unequal branch lengths—coincide with support for monophyletic deuterostomes. Simulation experiments show that support for Deuterostomia could be explained by systematic error. The branch between bilaterian and deuterostome common ancestors is, at best, very short, supporting the idea that the bilaterian ancestor may have been deuterostome-like. Our findings have important implications for the understanding of early animal evolution.
机译:双侧对称的动物(二玻璃)被认为包含两个单味基团,抗蛋白酶(Ecdysozoa和Lophotrochozoa)和氘胃肠杆菌(Chordata和Xenambulararia)。最近的分子系统发育研究没有一致地支持氘核。在这里,我们使用多个独立的系统孕组组数据集比较对蛋白质和氘胃疗法的支持。正如预期的那样,始终强烈支持抗蛋白酶,尤其是较长且更高质量的基因。然而,对氘胃肠杆菌的支持始终是常见的,几乎高于对解剖替代品的支持。导致树重建误差的条件 - 模型不足,内部分支短,更快的演化基因和不等分支长度 - 与单体氘前跖的支持一致。仿真实验表明,可以通过系统误差来解释对氘核疗法的支持。双边和氘核共同的祖先之间的分支是最简单的,支持双层祖先可能已经被氘核般的想法。我们的研究结果对对早期动物演变的理解有重要意义。

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