mirna作为推测深层后生动物系统发育和支持嗅觉假说的有前途的系统发育标记

Q. Cai, Xiaoyan Zhang, Zuofeng Li
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引用次数: 2

摘要

快速进化的尾脊索动物诱导的长分支吸引(LBA)伪影阻碍了脊索动物3个亚门间关系的解释。虽然逐渐接受了将尾脊索目而不是头脊索目作为颅目近亲的Olfactores假说,但系统发育重建的每一步都必须谨慎对待,以尽量减少LBA现象。MiRNAs (microRNAs)以其以下特点而闻名:1)与生物体发育的粘附性;2)高度的保守性;3)罕见的次生损失、平行进化和后生动物间的趋同。因此,我们认为mirna是消除LBA现象的有希望的候选者。我们对35个pre-miRNA数据集进行了系统发育研究,并利用较少的数据集和未指定的替代模型,以更有效的方式重建了支持Olfactores假说的脊索动物系统发育。这是应用miRNA序列解释脊索动物系统发育的第一次尝试,我们认为miRNA是阐明后口动物进化的有前途的系统发育标记。
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MiRNAs as promising phylogenetic markers for inferring deep metazoan phylogeny and in support of Olfactores hypothesis
The Long Branch attraction (LBA) artefact induced by fast evolving Urochordata had hindered the interpretation of relationships among 3 subphyla of Chordata. Although Olfactores hypothesis which placed Urochordata rather than Cephalochordata as the closest relatives to Craniata was gradually accepted, every step of phylogenetic reconstruction had to be treated prudential to minimize LBA phenomenon. MiRNAs (microRNAs) are well known for their 1) adherence to organism development, 2) high conservation, and 3) rarity of secondary loss, parallel evolution, and convergence among metazoan. Therefore we suppose miRNAs to be promising candidates to dispel LBA phenomenon. We performed a phylogenetic study upon 35 pre-miRNA datasets and reconstruct Chordata phylogeny which supported Olfactores hypothesis in a more toilless way by applying fewer datasets and unspecified substitution model. This is the first attempt to apply miRNA sequences in interpreting Chordata phylogeny, and we reckon miRNAs as promising phylogenetic markers for illuminating deuterostome evolution.
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