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在进化理论中建立基因型与表型的关系:发育特征入门

Developing the genotype-to-phenotype relationship in evolutionary theory: A primer of developmental features.

作者信息

Snell-Rood Emilie C, Ehlman Sean M

机构信息

Department of Ecology, Evolution and Behavior, University of Minnesota, St Paul, Minnesota, USA.

SCIoI Excellence Cluster, Leibniz Institute of Freshwater Ecology and Inland Fisheries, Humboldt University, Berlin, Germany.

出版信息

Evol Dev. 2023 Nov;25(6):393-409. doi: 10.1111/ede.12434. Epub 2023 Apr 7.

Abstract

For decades, there have been repeated calls for more integration across evolutionary and developmental biology. However, critiques in the literature and recent funding initiatives suggest this integration remains incomplete. We suggest one way forward is to consider how we elaborate the most basic concept of development, the relationship between genotype and phenotype, in traditional models of evolutionary processes. For some questions, when more complex features of development are accounted for, predictions of evolutionary processes shift. We present a primer on concepts of development to clarify confusion in the literature and fuel new questions and approaches. The basic features of development involve expanding a base model of genotype-to-phenotype to include the genome, space, and time. A layer of complexity is added by incorporating developmental systems, including signal-response systems and networks of interactions. The developmental emergence of function, which captures developmental feedbacks and phenotypic performance, offers further model elaborations that explicitly link fitness with developmental systems. Finally, developmental features such as plasticity and developmental niche construction conceptualize the link between a developing phenotype and the external environment, allowing for a fuller inclusion of ecology in evolutionary models. Incorporating aspects of developmental complexity into evolutionary models also accommodates a more pluralistic focus on the causal importance of developmental systems, individual organisms, or agents in generating evolutionary patterns. Thus, by laying out existing concepts of development, and considering how they are used across different fields, we can gain clarity in existing debates around the extended evolutionary synthesis and pursue new directions in evolutionary developmental biology. Finally, we consider how nesting developmental features in traditional models of evolution can highlight areas of evolutionary biology that need more theoretical attention.

摘要

几十年来,人们不断呼吁在进化生物学和发育生物学之间进行更多整合。然而,文献中的批评以及近期的资助计划表明,这种整合仍未完成。我们认为,前进的一种方法是思考如何在传统的进化过程模型中阐述发育的最基本概念,即基因型与表型之间的关系。对于一些问题,当考虑到发育的更复杂特征时,进化过程的预测就会发生变化。我们提供了一份发育概念的入门指南,以澄清文献中的混乱,并激发新的问题和方法。发育的基本特征包括扩展基因型到表型的基本模型,以纳入基因组、空间和时间。通过纳入发育系统,包括信号响应系统和相互作用网络,增加了一层复杂性。功能的发育出现,它捕捉发育反馈和表型表现,提供了进一步的模型细化,明确地将适应性与发育系统联系起来。最后,可塑性和发育生态位构建等发育特征将发育中的表型与外部环境之间的联系概念化,从而在进化模型中更全面地纳入生态学。将发育复杂性的各个方面纳入进化模型,也使得人们更加多元化地关注发育系统、个体生物或主体在产生进化模式中的因果重要性。因此,通过阐述现有的发育概念,并考虑它们在不同领域的应用方式,我们可以在围绕扩展进化综合的现有辩论中获得清晰的认识,并在进化发育生物学中探索新的方向。最后,我们思考如何将发育特征嵌套在传统的进化模型中,以突出进化生物学中需要更多理论关注的领域。

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