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后生动物发育与进化中的机械感应:从最早的多细胞生物到现代动物胚胎

Mechanical induction in metazoan development and evolution: from earliest multi-cellular organisms to modern animal embryos.

作者信息

Nguyen Ngoc Minh, Farge Emmanuel

机构信息

Mechanics and Genetics of Embryonic Development group, Institut Curie, Centre OCAV PSL Research University, Sorbonne University, CNRS UMR168 Physics of Cells and Cancer, Inserm, 11 rue Pierre et Marie Curie, 75005, Paris, France.

出版信息

Nat Commun. 2024 Dec 19;15(1):10695. doi: 10.1038/s41467-024-55100-5.

Abstract

The development and origin of animal body forms have long been intensely explored, from the analysis of morphological traits during antiquity to Newtonian mechanical conceptions of morphogenesis. Advent of molecular biology then focused most interests on the biochemical patterning and genetic regulation of embryonic development. Today, a view is arising of development of multicellular living forms as a phenomenon emerging from non-hierarchical, reciprocal mechanical and mechanotransductive interactions between biochemical patterning and biomechanical morphogenesis. Here we discuss the nature of these processes and put forward findings on how early biochemical and biomechanical patterning of metazoans may have emerged from a primitive behavioural mechanotransducive feeding response to marine environment which might have initiated the development of first animal multicellular organisms.

摘要

动物身体形态的发育和起源长期以来一直受到深入探索,从古代对形态特征的分析到形态发生的牛顿力学概念。分子生物学的出现随后将大多数兴趣集中在胚胎发育的生化模式形成和基因调控上。如今,一种观点正在兴起,即多细胞生物形态的发育是一种现象,它源于生化模式形成和生物力学形态发生之间非等级的、相互的机械和机械转导相互作用。在这里,我们讨论这些过程的本质,并提出关于后生动物早期生化和生物力学模式形成可能如何从对海洋环境的原始行为机械转导性摄食反应中出现的研究结果,这种反应可能启动了第一批动物多细胞生物的发育。

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