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逃离“老鼠陷阱”:新型演化发育生物学模式物种的选择

Escaping the mouse trap: the selection of new Evo-Devo model species.

作者信息

Milinkovitch Michel C, Tzika Athanasia

机构信息

Laboratory of Evolutionary Genetics, Institute for Molecular Biology & Medicine, Université Libre de Bruxelles, Gosselies, Belgium.

出版信息

J Exp Zool B Mol Dev Evol. 2007 Jul 15;308(4):337-46. doi: 10.1002/jez.b.21180.

Abstract

Among the many, sometimes contradictory, criteria that have been used for promoting model species, the most prominent has probably been their relevance for understanding human biology. Recently however, the debate has partly shifted from the search for evolutionary conservation (medicine-driven models) to a better understanding of the generative mechanisms underlying biological diversity (Evo-Devo-driven models). Integration of multiple disciplines, beyond developmental genetics and evolutionary molecular genetics, as well as of innovative technologies will help biologists to open the massive realm of living species to genome manipulation and phenotypic investigation. However, a consensual list of model species must still be reached for optimizing the interplay between in silico analyses and in vivo experiments, and we claim that the Evo-Devo community should play a more energetic role in this endeavor. We discuss here a few criteria and limitations of major relevance to the choice of model species for Evo-Devo studies, and promote the use of a pragmatic approach. Finally, given the difficulties related to manipulating and breeding model species, we suggest the development of Evo-Devo virtual zoos maintaining breeding colonies of a selected set of species and from which eggs or staged embryos are available on order.

摘要

在用于推广模式物种的众多标准(有时相互矛盾)中,最突出的可能是它们与理解人类生物学的相关性。然而最近,这场辩论部分地从寻找进化保守性(医学驱动的模式)转向了更好地理解生物多样性背后的生成机制(进化发育生物学驱动的模式)。除了发育遗传学和进化分子遗传学之外,多学科的整合以及创新技术将帮助生物学家打开庞大的生物物种领域,以便进行基因组操作和表型研究。然而,为了优化计算机分析和体内实验之间的相互作用,仍必须达成一份关于模式物种的共识清单,并且我们认为进化发育生物学界在这一努力中应发挥更积极的作用。我们在此讨论一些与选择用于进化发育生物学研究的模式物种密切相关的标准和局限性,并提倡采用务实的方法。最后,鉴于与模式物种的操作和繁殖相关的困难,我们建议建立进化发育生物学虚拟动物园,维持一组选定物种的繁殖群体,并可根据订单提供卵或特定发育阶段的胚胎。

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