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Octopus insularis as a new marine model for evolutionary developmental biology

机译:章鱼作为进化发育生物学的新海洋模型

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摘要

Octopuses are intriguing organisms that, together with squids and cuttlefishes, form the extant coleoid cephalopods. This group includes many species that can potentially be used as models in the fields of biomedicine, developmental biology, evolution, neuroscience and even for robotics research. The purpose of this work is to first present a simple method for maintaining embryos under a laboratory setup. Second, we show that these embryos are suitable for detailed analyses of specific traits that appear during developmental stages, including the eyes, hearts, arms, suckers, chromatophores and Kölliker's organs. Similar complex traits between cephalopods and vertebrates such as the visual, cardiovascular, neural and pigmentation systems are generally considered to be a result of parallel evolution. We propose that embryos could be used as a model for evolutionary developmental biology (or EvoDevo) research, where comparisons of the morphogenetic steps in the building of equivalent organs between cephalopods and known vertebrate model systems could shed light on evolutionary convergences and deep homologies.
机译:章鱼是一种有趣的生物,与鱿鱼和乌贼一起形成现存的类脂头足类动物。该组包括许多物种,这些物种有可能在生物医学,发育生物学,进化,神经科学乃至机器人研究领域用作模型。这项工作的目的是首先介绍一种在实验室设置下维持胚胎的简单方法。其次,我们表明这些胚胎适合于对发育阶段出现的特定特征进行详细分析,包括眼睛,心脏,手臂,吸盘,色谱和柯立克氏器官。头足类和脊椎动物之间的类似复杂特征,例如视觉,心血管,神经和色素沉着系统,通常被认为是平行进化的结果。我们建议将胚胎用作进化发育生物学(或EvoDevo)研究的模型,在该模型中,对头足类动物与已知脊椎动物模型系统之间等效器官构建过程中形态发生步骤的比较可以为进化趋同和深层同源性提供启示。

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