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简约法分析和基于模型分析中的同源性评估:同一枚硬币的两面。

Homology assessment in parsimony and model-based analyses: two sides of the same coin.

作者信息

Assis Leandro C S

机构信息

Departamento de Botânica, Instituto de Ciências Biológicas, Universidade Federal de Minas Gerais, Belo Horizonte, MG, 31270-901, Brazil.

出版信息

Cladistics. 2015 Jun;31(3):315-320. doi: 10.1111/cla.12085. Epub 2014 Jun 30.

Abstract

The present paper is mainly concerned with homology assessment through phylogenetic analyses. It raises a fundamental question: What are the epistemological differences between modern parsimony and model-based analyses in relation to homology assessment and phylogenetic inference? Although these methods usually achieve concordant topological results, they may generate discordant inferences of character evolution from the same datasets. This indicates that method selection has serious implications for evolutionary scenarios and classificatory arrangements. Notwithstanding that parsimony and model-based approaches use the Hennigian concepts of monophyly and synapomorphy, they employ different epistemological ways of dealing with the monophyly/synapomorphy relationship. Independently of their differences, these analyses should take into account all relevant evidence in support of the phylogenetic inferences. A focus on morphological homologues means that they must be included in data matrices, evaluated as part of the phylogenetic analysis, and cannot be ignored in calculation of the tree(s) length (parsimony), maximum-likelihood (maximum-likelihood), and posterior probabilities (Bayes).

摘要

本文主要关注通过系统发育分析进行同源性评估。它提出了一个基本问题:在同源性评估和系统发育推断方面,现代简约法和基于模型的分析在认识论上有哪些差异?尽管这些方法通常能得出一致的拓扑结构结果,但它们可能会从相同的数据集中产生不一致的性状进化推断。这表明方法的选择对进化场景和分类安排具有重要影响。尽管简约法和基于模型的方法都使用了亨尼希的单系性和共衍征概念,但它们采用了不同的认识论方式来处理单系性/共衍征关系。尽管存在差异,但这些分析都应考虑所有支持系统发育推断的相关证据。关注形态学同源物意味着它们必须被纳入数据矩阵,作为系统发育分析的一部分进行评估,并且在计算树长(简约法)、最大似然值(最大似然法)和后验概率(贝叶斯法)时不能被忽视。

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