The Systematics of the Trematoda.

4区 医学 Q2 Biochemistry, Genetics and Molecular Biology Advances in experimental medicine and biology Pub Date : 2024-01-01 DOI:10.1007/978-3-031-60121-7_2
Aneta Kostadinova, Ana Pérez-Del-Olmo
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Abstract

The platyhelminth class Trematoda comprises two subclasses with largely disparate species diversity, with the small Aspidogastrea with c.80 species and the speciose Digenea with c.18,000 species, which has attracted much effort towards our understanding of evolutionary relationships among suprageneric taxa. This chapter focuses on insights into the classification of the Digenea, that have become apparent from our advanced understanding of both morphological and molecular data. The field of molecular systematics of the Digenea has experienced significant advances over the past 15 years. Phylogenetic analyses of sequence data predominantly from the 18S and 28S rRNA genes have incorporated a considerable diversity of taxa, thus increasing the accuracy of phylogenetic inferences at higher taxonomic levels. As a result, the status of long-standing supraspecific taxa has been revised, new higher-level taxa have been defined, and inferences made in association with morphological and life-cycle evidence. A substantial effort has been made towards a classification reflecting a natural system of the Digenea by considering morphological evidence in conjunction with phylogenies inferred from molecular data; this has resulted in considerable congruence. However, limited taxon sampling in the phylogeny of the Digenea still remains relevant, especially in relation to some higher-level taxa, and an outline of these omissions is presented. A framework that has led to robust estimates of phylogeny is outlined, and the application of advanced morphological and molecular approaches in digenean taxonomy and systematics is illustrated using the most comprehensively studied digenean superfamilies.

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吸虫纲的系统学
扁形动物中的吸虫纲包括两个亚纲,其物种多样性大体上各不相同,其中小纲 Aspidogastrea 约有 80 个物种,大纲 Digenea 约有 18,000 个物种,这吸引了我们为了解超属类群之间的进化关系所做的大量努力。本章将重点介绍我们通过对形态学和分子数据的深入了解,对地肤目分类的认识。Digenea 分子系统学领域在过去 15 年中取得了重大进展。对主要来自 18S 和 28S rRNA 基因的序列数据进行的系统发生学分析已经纳入了相当多的分类群,从而提高了更高分类级别的系统发生学推断的准确性。因此,长期存在的超特异分类群的地位得到了修正,新的高级分类群得到了界定,并结合形态学和生命周期证据进行了推断。通过将形态学证据与分子数据推断的系统发育结合起来考虑,为建立一个反映 Digenea 自然系统的分类法做出了巨大努力;这使得分类结果相当一致。然而,地肤目系统发育中有限的类群取样仍然是相关的,特别是与一些高级类群有关的,本文概述了这些遗漏。本文概述了一个可对系统发生进行可靠估计的框架,并利用研究最为全面的地肤目超科说明了先进的形态学和分子方法在地肤目分类学和系统学中的应用。
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来源期刊
Advances in experimental medicine and biology
Advances in experimental medicine and biology 医学-医学:研究与实验
CiteScore
5.90
自引率
0.00%
发文量
465
审稿时长
2-4 weeks
期刊介绍: Advances in Experimental Medicine and Biology provides a platform for scientific contributions in the main disciplines of the biomedicine and the life sciences. This series publishes thematic volumes on contemporary research in the areas of microbiology, immunology, neurosciences, biochemistry, biomedical engineering, genetics, physiology, and cancer research. Covering emerging topics and techniques in basic and clinical science, it brings together clinicians and researchers from various fields.
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