首页> 外文期刊>Cladistics: The international journal of the Willi Hennig Society >Establishing criteria for higher-level classification using molecular data: the systematics of Polyommatus blue butterflies (Lepidoptera, Lycaenidae)
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Establishing criteria for higher-level classification using molecular data: the systematics of Polyommatus blue butterflies (Lepidoptera, Lycaenidae)

机译:建立使用分子数据进行更高分类的标准:多虫蓝蝴蝶(鳞翅目,盲蛾科)的系统

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Most taxonomists agree on the need to adapt current classifications to recognize monophyletic units. However, delineations between higher taxonomic units can be based on the relative ages of different lineages and/or the level of morphological differentiation. In this paper, we address these issues in considering the species-rich Polyommatus section, a group of butterflies whose taxonomy has been highly controversial. We propose a taxonomy-friendly, flexible temporal scheme for higher-level classification. Using molecular data from nine markers (6666bp) for 104 representatives of the Polyommatus section, representing all but two of the 81 described genera/subgenera and five outgroups, we obtained a complete and well resolved phylogeny for this clade. We use this to revise the systematics of the Polyommatus blues, and to define criteria that best accommodate the described genera within a phylogenetic framework. First, we normalize the concept of section (Polyommatus) and propose the use of subtribe (Polyommatina) instead. To preserve taxonomic stability and traditionally recognized taxa, we designate an age interval (45Myr) instead of a fixed minimum age to define genera. The application of these criteria results in the retention of 31 genera of the 81 formally described generic names, and necessitates the description of one new genus (Rueckbeilia gen. nov.). We note that while classifications should be based on phylogenetic data, applying a rigid universal scheme is rarely feasible. Ideally, taxon age limits should be applied according to the particularities and pre-existing taxonomy of each group. We demonstrate that the concept of a morphological gap may be misleading at the genus level and can produce polyphyletic genera, and we propose that recognition of the existence of cryptic genera may be useful in taxonomy.
机译:大多数分类学家都同意需要修改当前分类以识别单系单元。但是,较高分类单元之间的划分可以基于不同谱系的相对年龄和/或形态分化水平。在本文中,我们通过考虑物种丰富的Polyommatus部分来解决这些问题,Polyommatus部分是一组在分类学上一直引起争议的蝴蝶。我们为高层分类提出了一种分类学上友好的,灵活的时间方案。使用来自Polyommatus部分的104个代表的9个标记(6666bp)的分子数据,除了描述的81个属/亚属中的2个之外,还包括5个外群,我们获得了该进化枝的完整且系统解决的信息。我们用它来修订多枝蓝的系统学,并定义最能在系统发育框架内适应所述属的标准。首先,我们将切面(Polyommatus)的概念规范化,并建议使用子部落(Polyommatina)。为了保持分类的稳定性和传统上公认的分类单元,我们指定了年龄间隔(45Myr)而不是固定的最小年龄来定义属。这些标准的应用导致保留了81个正式描述的通用名称中的31个属,并且需要描述一个新属(Rueckbeilia gen。nov。)。我们注意到,尽管分类应基于系统发育数据,但应用严格的通用方案几乎不可行。理想情况下,应根据每个组的特殊性和现有分类法来应用分类年龄限制。我们证明形态间隙的概念可能在属水平上会产生误导,并可能产生多系属,并且我们建议认识到隐性属的存在可能在分类学中很有用。

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