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Cladistics in ammonoids: back to the future

机译:铵盐类药物:回到未来

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摘要

Cladistics appears as one of the most useful method to reconstruct phylogeny of fossil taxa. However, ammonoids workers tend to sulk this method. The capital step of cladistic analysis is the recognition of homology hypothesis as clue to reconstruct monophyletic clades based on the sharing of derived traits. Previous authors have suggested that coding schemes are usually direct transcription of original taxa description. However, establishing a list of characters (i.e. a matrix taxa/characters) is a very different work compared to a compilation of diagnoses. How morphology is coded in ammonoids? How coding schemes are influenced by traditional descriptions/characters? Here, we review all cladistic analyses of ammonoids published in the literature to compare characters and the way authors have dealt with the treatment of continuous characters, polymorphism and ontogeny. Several barriers are usually invoked to justify that cladistics cannot be applied to reconstruct ammonoids phylogenies. We show that an appropriate use of improvements both on ammonoids' knowledge and cladistics methodology may overcome limitations usually invoked to perform cladistic analysis on ammonoids.
机译:Cladistics似乎是重建化石类群系统发育的最有用方法之一。但是,氨纶工作人员倾向于使用这种方法。分类分析的基本步骤是将同源性假设作为线索,基于共享衍生特征重建单系进化枝。先前的作者建议编码方案通常是原始分类单元描述的直接转录。但是,与诊断汇编相比,建立字符列表(即矩阵分类单元/字符)是非常不同的工作。氨类化合物如何编码形态?编码方案如何受到传统描述/字符的影响?在这里,我们回顾了文献中发表的关于氨类化合物的所有分类分析,以比较字符以及作者处理连续字符,多态性和本体论的方式。通常会引用几个障碍来证明无法将分类学应用于重建类人动物系统发育。我们表明,适当使用改进的对氨的知识和类群学方法的改进可以克服通常为对类群进行类群分析而调用的限制。

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