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Quantitative criteria for species delimitation

机译:物种划界的定量标准

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Species are the fundamental units of biology, ecology and conservation, and progress in these fields is therefore hampered by widespread taxonomic bias and uncertainty. Numerous operational techniques based on molecular or phenotypic data have been designed to overcome this problem, yet existing procedures remain subjective or inconsistent, particularly when applying the biological species concept. We address this issue by developing quantitative methods for a classic technique in systematic zoology, namely the use of divergence between undisputed sympatric species as a yardstick for assessing the taxonomic status of allopatric forms. We calculated mean levels of differentiation in multiple phenotypic characters - including biometrics, plumage and voice - for 58 sympatric or parapatric species-pairs from 29 avian families. We then used estimates of mean divergence to develop criteria for species delimitation based on data-driven thresholds. Preliminary tests show that these criteria result in relatively few changes to avian taxonomy in Europe, yet are capable of extensive reassignment of species limits in poorly known tropical regions. While we recognize that species limits are in many cases inherently arbitrary, we argue that our system can be applied to the global avifauna to deliver taxonomic decisions with a high level of objectivity, consistency and transparency.
机译:物种是生物学,生态学和保护学的基本单位,因此,这些领域的进展受到广泛的分类学偏见和不确定性的阻碍。已经设计了许多基于分子或表型数据的操作技术来克服这个问题,但是现有的程序仍然是主观的或不一致的,特别是在应用生物物种概念时。我们通过为系统动物学中的一项经典技术开发定量方法来解决此问题,即使用无争议同胞物种之间的差异作为评估异源形态分类标准的准绳。我们计算了来自29个禽类家族的58个同伴或同伴物种对在多个表型特征(包括生物特征识别,羽毛和声音)上的平均分化水平。然后,我们使用均值估计来制定基于数据驱动阈值的物种划界标准。初步测试表明,这些标准导致欧洲鸟类分类学的变化相对较少,但能够在鲜为人知的热带地区广泛重新分配物种限制。尽管我们认识到物种限制在许多情况下固有地是任意的,但我们认为我们的系统可以应用于全球航空动物,以高度客观,一致和透明的方式做出生物分类决策。

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