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Molecular systematics: A synthesis of the common methods and the state of knowledge.

机译:分子系统学:常用方法和知识状态的综合。

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The comparative and evolutionary analysis of molecular data has allowed researchers to tackle biological questions that have long remained unresolved. The evolution of DNA and amino acid sequences can now be modeled accurately enough that the information conveyed can be used to reconstruct the past. The methods to infer phylogeny (the pattern of historical relationships among lineages of organisms and/or sequences) range from the simplest, based on parsimony, to more sophisticated and highly parametric ones based on likelihood and Bayesian approaches. In general, molecular systematics provides a powerful statistical framework for hypothesis testing and the estimation of evolutionary processes, including the estimation of divergence times among taxa. The field of molecular systematics has experienced a revolution in recent years, and, although there are still methodological problems and pitfalls, it has become an essential tool for the study of evolutionary patterns and processes at different levels of biological organization. This review aims to present a brief synthesis of the approaches and methodologies that are most widely used in the field of molecular systematics today, as well as indications of future trends and state-of-the-art approaches.
机译:分子数据的比较和进化分析使研究人员能够解决长期以来尚未解决的生物学问题。现在可以对DNA和氨基酸序列的进化进行足够精确的建模,以使所传达的信息可以用于重建过去。推断系统发育的方法(生物谱系和/或序列之间的历史关系模式)的范围从基于简约的最简单方法到基于似然法和贝叶斯方法的更为复杂且高度参数化的方法。总的来说,分子系统学为假设检验和进化过程的估计提供了强大的统计框架,包括对分类单元之间发散时间的估计。近年来,分子系统学领域经历了一场革命,尽管仍然存在方法论上的问题和陷阱,但它已成为研究不同生物组织水平的进化模式和过程的重要工具。这篇综述旨在简要介绍当今分子系统学领域中最广泛使用的方法和方法,以及未来趋势和最新方法的指示。

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