首页> 美国卫生研究院文献>Proceedings of the Royal Society B: Biological Sciences >Variance of molecular datings evolution of rodents and the phylogenetic affinities between Ctenodactylidae and Hystricognathi.
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Variance of molecular datings evolution of rodents and the phylogenetic affinities between Ctenodactylidae and Hystricognathi.

机译:分子定年啮齿类动物的进化以及假单胞菌科和下颚棘科之间的亲缘关系的差异。

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摘要

The von Willebrand factor (vWF) gene has been used to understand the origin and timing of Rodentia evolution in the context of placental phylogeny vWF exon 28 sequences of 15 rodent families and eight non-rodent eutherian clades are analysed with two different molecular dating methods (uniform clock on a linearized tree; quartet dating). Three main conclusions are drawn from the study of this nuclear exon. First, Ctenodactylidae (gundis) and Hystricognathi (e.g. porcupines, guinea-pigs, chinchillas) robustly cluster together in a newly recognized clade, named 'Ctenohystrica'. The Sciurognathi monophyly is subsequently rejected. Pedetidae (springhares) is an independent and early diverging rodent lineage, suggesting a convergent evolution of the multiserial enamel of rodent incisors. Second, molecular date estimates are here more influenced by accuracy and choice of the palaeontological temporal references used to calibrate the molecular clock than by either characters analysed (nucleotides versus amino acids) or species sampling. The caviomorph radiation at 31 million years (Myr) and the pig porpoise split at 63 Myr appear to be reciprocally compatible dates. Third, during the radiation of Rodentia, at least three lineages (Gliridae, Sciuroidea and Ctenohystrica) emerged close to the Cretaceous-Tertiary boundary, and their common ancestor separated from other placental orders in the Late Cretaceous.
机译:von Willebrand因子(vWF)基因已被用于了解在胎盘系统发育vWF外显子的28个15个啮齿类动物和8个非啮齿类动物的欧氏进化枝的胎盘系统发育vWF外显子的背景下,啮齿类动物进化的起源和时机(采用两种不同的分子测年方法(线性树上的统一时钟;四重奏约会)。通过对该核外显子的研究得出了三个主要结论。首先,Cendodactylidae(gundis)和Hystricognathi(例如豪猪,豚鼠,龙猫)牢固地聚集在一个新近被认可的进化树中,名为“ Ctenohystrica”。 Sciurognathi单方面随后被拒绝。 ed科(springhares)是一种独立的,早期发散的啮齿动物谱系,表明啮齿动物门齿的多釉质牙釉质的融合演化。其次,这里的分子日期估计值受用于校准分子时钟的古生物学时间参考的准确性和选择的影响比受分析的特征(核苷酸与氨基酸)或物种采样的影响更大。在3,100万年(Myr)的空泡辐射和在63 Myr处的猪海豚分裂似乎是相互兼容的日期。第三,在辐射啮齿动物的过程中,靠近白垩纪-第三系边界出现了至少三个谱系(,科,蛇形纲和蛇骨纲),并且它们的共同祖先与白垩纪晚期的其他胎盘相分离。

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