Department of Evolutionary Biology, Zoological Institute, Technische Universität Braunschweig, Braunschweig, Germany.
Institut de Systématique, Évolution, Biodiversité (ISYEB), Muséum national d'Histoire naturelle, CNRS, Sorbonne Université, EPHE, Paris, France.
Methods Mol Biol. 2024;2744:77-104. doi: 10.1007/978-1-0716-3581-0_4.
Over the past two decades, DNA barcoding has become the most popular exploration approach in molecular taxonomy, whether for identification, discovery, delimitation, or description of species. The present contribution focuses on the utility of DNA barcoding for taxonomic research activities related to species delimitation, emphasizing the following aspects:(1) To what extent DNA barcoding can be a valuable ally for fundamental taxonomic research, (2) its methodological and theoretical limitations, (3) the conceptual background and practical use of pairwise distances between DNA barcode sequences in taxonomy, and (4) the different ways in which DNA barcoding can be combined with complementary means of investigation within a broader integrative framework. In this chapter, we recall and discuss the key conceptual advances that have led to the so-called renaissance of taxonomy, elaborate a detailed glossary for the terms specific to this discipline (see Glossary in Chap. 35 ), and propose a newly designed step-by-step species delimitation protocol starting from DNA barcode data that includes steps from the preliminary elaboration of an optimal sampling strategy to the final decision-making process which potentially leads to nomenclatural changes.
在过去的二十年中,DNA 条码技术已成为分子分类学中最受欢迎的探索方法,无论是用于鉴定、发现、划界还是描述物种。本研究主要关注 DNA 条码在与物种划界相关的分类学研究活动中的应用,强调以下几个方面:(1)DNA 条码在基础分类学研究中可以起到多大的作用,(2)其方法和理论上的局限性,(3)在分类学中,DNA 条码序列之间的成对距离的概念背景和实际应用,以及(4)在更广泛的综合框架内,将 DNA 条码与其他补充调查手段相结合的不同方式。在本章中,我们回顾和讨论了导致分类学所谓复兴的关键概念进展,详细阐述了该学科特定术语的详细词汇表(见第 35 章词汇表),并提出了一个新设计的从 DNA 条码数据开始的逐步物种划界方案,其中包括从最佳采样策略的初步制定到最终决策过程的步骤,这可能会导致命名法的改变。