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Proper names in twin worlds: Monophyly, paraphyly, and the world around us

机译:双生世界中的专有名词:单义,副理​​和我们周围的世界

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This paper addresses the theoretical relevance of monophyletic, paraphyletic and polyphyletic groups under the paradigm of sophisticated scientific realism. The doctrine of metaphysical realism is introduced using the philosophy of Karl Popper as an example, which is then contrasted with scientific realism. A discussion of the nature of causal relations presents an account of counterfactual conditionals. The current state of art casts the theory of phylogenetic systematics in a stark contrast of classes (universals) and individuals (particulars). In practice, however, individuals piggyback on classes, or sets. Natural kinds are introduced in order to overcome this deep dichotomy. The theoretical relevance of natural kinds lies in their explanatory value, and that may change with changing context. It is for this reason that non-monophyletic groups can have explanatory value (their members can function as tokens of causally relevant kinds) within certain domains of evolutionary biology. Explanatory value is maximized by integration of the genealogical hierarchy of species and monophyletic taxa with other areas of evolutionary biology.
机译:本文探讨了复杂的科学现实主义范式下的单族,共生和多族群体的理论相关性。以卡尔·波普尔的哲学为例,介绍了形而上学的现实主义学说,然后将其与科学现实主义进行了对比。因果关系性质的讨论提出了反事实条件的说明。当前的技术水平在类(通用)和个人(特殊)的鲜明对比中投射了系统发生学的理论。然而,实际上,个人背负着课程或场景。为了克服这种深层的二分法,引入了自然种类。自然种类的理论相关性在于它们的解释价值,并且可能随着环境的变化而变化。因此,在进化生物学的某些领域中,非一元论群体可以具有解释价值(它们的成员可以充当因果相关种类的代币)。通过将物种的谱系层次和单系分类群与进化生物学的其他领域整合在一起,可以最大程度地提高解释价值。

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