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Verbalizing phylogenomic conflict: Representation of node congruence across competing reconstructions of the neoavian explosion

机译:语言系统化冲突:新鸟类爆炸的竞争性重建中节点一致性的表示

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摘要

Phylogenomic research is accelerating the publication of landmark studies that aim to resolve deep divergences of major organismal groups. Meanwhile, systems for identifying and integrating the products of phylogenomic inference–such as newly supported clade concepts–have not kept pace. However, the ability to verbalize node concept congruence and conflict across multiple, in effect simultaneously endorsed phylogenomic hypotheses, is a prerequisite for building synthetic data environments for biological systematics and other domains impacted by these conflicting inferences. Here we develop a novel solution to the conflict verbalization challenge, based on a logic representation and reasoning approach that utilizes the language of Region Connection Calculus (RCC–5) to produce consistent alignments of node concepts endorsed by incongruent phylogenomic studies. The approach employs clade concept labels to individuate concepts used by each source, even if these carry identical names. Indirect RCC–5 modeling of intensional (property-based) node concept definitions, facilitated by the local relaxation of coverage constraints, allows parent concepts to attain congruence in spite of their differentially sampled children. To demonstrate the feasibility of this approach, we align two recent phylogenomic reconstructions of higher-level avian groups that entail strong conflict in the "neoavian explosion" region. According to our representations, this conflict is constituted by 26 instances of input "whole concept" overlap. These instances are further resolvable in the output labeling schemes and visualizations as "split concepts", which provide the labels and relations needed to build truly synthetic phylogenomic data environments. Because the RCC–5 alignments fundamentally reflect the trained, logic-enabled judgments of systematic experts, future designs for such environments need to promote a culture where experts routinely assess the intensionalities of node concepts published by our peers–even and especially when we are not in agreement with each other.
机译:植物遗传学研究正在加速发表具有里程碑意义的研究成果,这些研究成果旨在解决主要生物群之间的深层分歧。同时,用于识别和整合植物遗传学推断产物的系统(例如新支持的进化枝概念)并未跟上发展的步伐。然而,在多个节点上表达节点概念的一致性和冲突的能力,实际上是同时认可了系统生物学假设,这是为受这些冲突推论影响的生物系统和其他领域构建综合数据环境的前提。在这里,我们基于逻辑表示和推理方法,开发了一种新颖的解决冲突口头表达的解决方案,该方法利用区域连接演算(RCC-5)的语言来产生一致的结点排列,并得到了不一致的系统生物学研究的认可。该方法使用进化枝概念标签来区分每个来源所使用的概念,即使它们带有相同的名称。局部(基于属性的)节点概念定义的间接RCC-5建模,由于覆盖范围约束的局部放松而得以实现,尽管父概念的子代抽样方式不同,但它们仍可实现一致性。为了证明这种方法的可行性,我们将高级别禽类的两个最近的系统学重建结果进行了比较,这些重建在“ neoavian爆炸”地区引起了强烈的冲突。根据我们的表示,此冲突由26个输入“整个概念”重叠实例构成。这些实例在输出标签方案和可视化中可进一步解析为“拆分概念”,它们提供了构建真正的合成植物统计学数据环境所需的标签和关系。由于RCC-5一致性从根本上反映了系统专家的训练有素,基于逻辑的判断,因此针对此类环境的未来设计需要促进一种文化,在这种文化中,专家将定期评估我们同行发布的节点概念的内涵,即使在我们不这样做时也是如此。彼此同意。

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