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A new phylogenetic analysis of Phytosauria (Archosauria: Pseudosuchia) with the application of continuous and geometric morphometric character coding

机译:应用连续和几何形态计量学字符编码进行植物鳞茎(Archosauria:Pseudosuchia)的新系统发育分析

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摘要

Phytosauria is a clade of large, carnivorous, semi-aquatic archosauromorphs which reached its peak diversity and an almost global distribution in the Late Triassic (c. 230–201 Mya). Previous phylogenetic analyses of Phytosauria have either focused primarily on the relationships of specific subclades, or were limited in taxonomic scope, and no taxonomically comprehensive dataset is currently available. We here present the most taxonomically comprehensive cladistic dataset of phytosaurs to date, based on extensive first-hand study, identification of novel characters and synthesis of previous matrices. This results in an almost twofold increase in phylogenetic information scored per taxon over previous analyses. Alongside a traditional discrete character matrix, three variant matrices were analysed in which selected characters were coded using continuous and landmarking methods, to more rigorously explore phytosaur relationships. Based on these four data matrices, four tree topologies were recovered. Relationships among non-leptosuchomorph phytosaurs are largely consistent between these four topologies, whereas those of more derived taxa are more variable. Rutiodon carolinensis consistently forms a sister relationship with Angistorhinus. In three topologies Nicrosaurus nests deeply within a group of traditionally non-Mystriosuchini taxa, leading us to redefine Mystriosuchini by excluding Nicrosaurus as an internal specifier. Two distinct patterns of relationships within Mystriosuchini are present in the four topologies, distinguished largely by the variable position of Mystriosuchus. In two topologies Mystriosuchus forms the most basal clade in Mystriosuchini, whilst in the others it occupies a highly derived position within the Machaeroprosopus clade. ‘Redondasaurus’ is consistently recovered as monophyletic; however, it also nests within the Machaeroprosopus clade. The greatest impact on tree topology was associated with the incorporation of continuous data into our matrices, with landmark characters exerting a relatively modest influence. All topologies correlated significantly with stratigraphic range estimates. Topological variability in our results highlights clades in which further investigation may better elucidate phytosaur relationships.
机译:植物鳞茎是大型食肉类,半水生弓形纲的进化枝,在三叠纪晚期(约230-201 Mya)达到其峰顶多样性并几乎遍布全球。以前的植物鳞茎的系统发育分析要么主要集中在特定子小节的关系上,要么受到分类学范围的限制,目前尚无分类学全面的数据集。基于广泛的第一手研究,新颖特征的识别和先前矩阵的合成,我们在此提供迄今为止最分类分类的植物龙骨数据集。这导致每个分类单元评分的系统发育信息比以前的分析几乎增加了两倍。除传统的离散字符矩阵外,还分析了三种变体矩阵,其中使用连续和标记方法对选定的字符进行编码,以更严格地探索植物龙的关系。基于这四个数据矩阵,恢复了四个树形拓扑。这四种拓扑之间的非钩体类植物体之间的关系在很大程度上是一致的,而更多衍生类群的关系则更具可变性。 Rutiodon carolinensis与Angistorhinus始终保持姐妹关系。 Nicrosaurus在三种拓扑结构中深深地嵌套在一组传统的非Mystriosuchini类群中,这使我们通过将Nicrosaurus排除为内部指定者来重新定义Mystriosuchini。 Mystriosuchini中的两种不同的关系模式存在于四种拓扑中,其主要特征是Mystriosuchus的位置可变。在两种拓扑中,Mystriosuchus构成Mystriosuchini中最基础的进化枝,而在其他拓扑中,它在Machaeroprosopus进化枝中占据高度衍生的位置。 “ Redondasaurus”一直被认为是单系统的;但是,它也嵌套在Machaeroprosopus进化枝内。对树形拓扑的最大影响与将连续数据合并到我们的矩阵中有关,地标字符的影响相对较小。所有拓扑都与地层范围估计值显着相关。我们的结果中的拓扑变异性突出了进化枝,在其中进一步的研究可能会更好地阐明植物龙的关系。

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