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形态发生素在大小、形状和模式进化中的作用。

Morphogens in the evolution of size, shape and patterning.

机构信息

Mathematical and Physical Biology Laboratory, The Francis Crick Institute, 1 Midland Road, London NW1 1AT, UK.

Department of Physics and Astronomy, University College London, Gower Street, London WC1E 6BT, UK.

出版信息

Development. 2024 Sep 15;151(18). doi: 10.1242/dev.202412. Epub 2024 Sep 18.

Abstract

Much of the striking diversity of life on Earth has arisen from variations in the way that the same molecules and networks operate during development to shape and pattern tissues and organs into different morphologies. However, we still understand very little about the potential for diversification exhibited by different, highly conserved mechanisms during evolution, or, conversely, the constraints that they place on evolution. With the aim of steering the field in new directions, we focus on morphogen-mediated patterning and growth as a case study to demonstrate how conserved developmental mechanisms can adapt during evolution to drive morphological diversification and optimise functionality, and to illustrate how evolution algorithms and computational tools can be used alongside experiments to provide insights into how these conserved mechanisms can evolve. We first introduce key conserved properties of morphogen-driven patterning mechanisms, before summarising comparative studies that exemplify how changes in the spatiotemporal expression and signalling levels of morphogens impact the diversification of organ size, shape and patterning in nature. Finally, we detail how theoretical frameworks can be used in conjunction with experiments to probe the role of morphogen-driven patterning mechanisms in evolution. We conclude that morphogen-mediated patterning is an excellent model system and offers a generally applicable framework to investigate the evolution of developmental mechanisms.

摘要

地球上引人注目的生物多样性很大程度上源于相同分子和网络在发育过程中运作方式的变化,这些变化将组织和器官塑造成不同的形态。然而,我们仍然对不同的高度保守机制在进化过程中表现出的潜在多样化,或者相反,它们对进化施加的限制,知之甚少。为了引导该领域朝新的方向发展,我们将形态发生因子介导的模式形成和生长作为一个案例研究,以展示保守的发育机制如何在进化过程中适应,从而推动形态多样化和优化功能,并说明进化算法和计算工具如何与实验相结合,为我们提供如何使这些保守机制进化的见解。我们首先介绍形态发生因子驱动的模式形成机制的关键保守特性,然后总结比较研究,这些研究例证了形态发生因子的时空表达和信号水平的变化如何影响器官大小、形状和形态发生在自然界中的多样化。最后,我们详细介绍了理论框架如何与实验相结合,以探究形态发生因子驱动的模式形成机制在进化中的作用。我们得出结论,形态发生因子介导的模式形成是一个极好的模型系统,并提供了一个普遍适用的框架来研究发育机制的进化。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/9f56/7616732/bd6e71673b18/EMS199445-f001.jpg

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