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首页> 外文期刊>Papéis Avulsos de Zoologia (So Paulo) >Using the logical basis of phylogenetics as the framework for teaching biology
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Using the logical basis of phylogenetics as the framework for teaching biology

机译:使用系统发育学的逻辑基础作为生物学教学的框架

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The influence of the evolutionary theory is widespread in modern worldview. Due to its great explanatory power and pervasiveness, the theory of evolution should be used as the organizing theme in biology teaching. For this purpose, the essential concepts of phylogenetic systematics are useful as a didactic instrument. The phylogenetic method was the first objective set of rules to implement in systematics the evolutionary view that the organisms are all connected at some hierarchical level due to common ancestry, as suggested by Darwin and Wallace. Phylogenetic systematics was firstly proposed by the German Entomologist Willi Hennig in 1950 and had considerably importance in the decrease of the role of essentialism and subjectivity in classificatory studies, becoming one of the paradigms in biological systematics. Based on cladograms, a general phylogenetic reference system allows to the depiction and representation of large amounts of biological information in branching diagrams. Besides, the phylogenetic approach sheds light upon typical misconceptions concerning evolution and related concepts that directly affect students' comprehension about the evolutionary process and the hierarchical structure of the living world. The phylogenetic method is also a form of introducing students to some of the philosophical and scientific idiosyncrasies, providing them the ability to understand concepts such as hypothesis, theory, paradigm and falsifiability. The students are incited to use arguments during the process of accepting or denying scientific hypotheses, which overcomes the mere assimilation of knowledge previously elaborated.
机译:进化论的影响在现代世界观中十分普遍。由于其强大的解释力和普遍性,进化论应作为生物学教学的组织主题。为此,系统发育系统学的基本概念可用作教学工具。系统发育方法是在系统上实施进化论的第一个目标规则,正如达尔文和华莱士所建议的那样,这些进化论认为,由于共同祖先,生物在一定的等级层次上是相连的。系统发育系统学最早是由德国昆虫学家威利·亨尼格(Willi Hennig)于1950年提出的,它对减少本质主义和主观性在分类研究中的作用具有重要意义,成为生物学系统学的范例之一。基于分支图,通用的系统发育参考系统允许在分支图中描述和表示大量的生物信息。此外,系统进化论方法揭示了关于进化论的典型误解和直接影响学生对生活过程的进化过程和等级结构理解的相关概念。系统发育方法也是一种向学生介绍一些哲学和科学特质的形式,使他们能够理解诸如假设,理论,范式和可证伪性等概念。激发学生在接受或否认科学假设的过程中使用论点,这克服了先前阐述的知识的单纯吸收。

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