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首页> 外文期刊>Molecular phylogenetics and evolution >Integrating multilocus DNA data and 3D geometric morphometrics to elucidate species boundaries in the case of Pyrenaearia (Pulmonata: Hygromiidae)
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Integrating multilocus DNA data and 3D geometric morphometrics to elucidate species boundaries in the case of Pyrenaearia (Pulmonata: Hygromiidae)

机译:在PyRenaEaria(Pulmonata:Hygromiidae)的情况下,集成多层DNA数据和3D几何形态化学以阐明物种界限

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摘要

To accurately delimit species the use of multiple character types is essential as all speciation processes are not equally reflected in different data (e.g. morphological, molecular or ecological characters). With the introduction of geometric morphometrics methods and advances in 3D technology, a comprehensive combination of molecular and morphological data has been enabled in groups where exhaustively quantifying and measuring morphological shape change was not possible before such as gastropod shells. In this study, we combined multilocus coalescent species delimitation methods with 3D geometric morphometrics of shell shape to delimit species within the land snail genus Pyrenaearia. A new taxonomic scheme was constructed for the genus identifying ten species. Two nominal species were synonymized and a hitherto unrecognized cryptic species was identified. Our findings support the importance of combining multiple lines of evidence as molecular and morphological data on their own do not yield the same information. Further, the integration of morphological and molecular data shows the importance of allometry in shell shape and suggests a combined effect of population history and selection in different environments on shells morphological variation. Our new taxonomy and phylogenetic reconstruction suggest that, besides the glacial cycles of the Pleistocene, passive dispersal and rock substrate complexity could also have been involved in the speciation of the genus.
机译:为了准确分隔物种,使用多种字符类型的使用是必不可少的,因为所有物种过程都不在不同的数据中同样反射(例如形态,分子或生态特征)。随着几何形态化学方法和3D技术的进步,在诸如美食壳之前不可能地进行详尽量化和测量形态变化的组,已经启用了分子和形态数据的综合组合。在这项研究中,我们将多层膨胀物种划分方法与壳体形状的3D几何形态化学算法相结合到陆地蜗牛属Pyrenaearia内的界定物种。为识别十种种类的属,构建了一种新的分类学计划。两个标称物种是同义的,鉴定了迄今为止无法识别的神秘性物种。我们的调查结果支持将多条证据与分子和形态数据相结合的重要性,其不产生相同的信息。此外,形态学和分子数据的整合表明了壳体形状中的体内的重要性,并提出了种群历史和选择在不同环境中的综合影响在壳形态变异上。我们的新分类学和系统发育重建表明,除了更新世的冰川循环之外,无源分散和岩石衬底复杂性也可以参与属的形态。

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