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Advantages and Disadvantages of Molecular Phylogenetics: A Case Study ofAscaridoid Nematodes

机译:分子系统发育学的利与弊:以分子生物学为例scar螨线虫

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摘要

The advantages of nucleotide sequence data for studying phylogeny have been shown to include number of potential characters available for comparison, rate independence between molecular and morphological evolution, and utility of molecular data for modeling patterns of nucleotide substitution. Potential pitfalls have also been revealed and include difficulties of inferring positional homology, incongruence between organismal and gene genealogies, and low likelihood of recovering the correct phylogeny given certain patterns in the timing of speciation events. Statistical methods for comparing phylogenetic hypotheses have been used to assess the reliability of alternative trees for ascaridoid nematodes. Based on partial ribosomal RNA sequences, tree topologies inconsistent with monophyly of the Ascaridinae were significantly worse by maximum likelihood inference. The topology of the maximum parsimony tree based on full-length sequences of 18S rRNA and 300 nucleotides of Cytochrome oxidase II for 13 ascaridoid species was generally consistent with traditional taxonomic expectations at lower ranks, but inconsistent with most proposed arrangements at higher taxonomic levels.
机译:已经显示出用于研究系统发育的核苷酸序列数据的优势包括:可用于比较的潜在特征数量,分子与形态学进化之间的速率独立性以及分子数据可用于建模核苷酸取代模式。还发现了潜在的陷阱,包括难以推断位置同源性,机体谱系和基因谱系之间的不一致,以及在物种形成事件发生时采用某些模式,恢复正确的系统发育的可能性较低。用于比较系统发育假说的统计方法已被用来评估替代树对类螨线虫的可靠性。基于部分核糖体RNA序列,最大似然推断显着恶化了与A螨一字不符的树形拓扑。基于18S rRNA的全长序列和细胞色素氧化酶II的300个核苷酸的最大简约树的拓扑结构,与13个类螨虫的物种总体上一致,但与较低分类的传统分类学预期一致,但与较高分类学级别的大多数拟议安排不一致。

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