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发育稳健性的起源:针对细胞水平噪声的缓冲机制建模。

On the origins of developmental robustness: modeling buffering mechanisms against cell-level noise.

机构信息

Genomics, Bioinformatics and Evolution group, Departament de Genètica i Microbiologia, Universitat Autònoma de Barcelona, Barcelona 08193, Spain.

Electronics and Computer Science Department, University of Southampton, Southampton SO17 1BJ, UK.

出版信息

Development. 2023 Dec 15;150(24). doi: 10.1242/dev.201911. Epub 2023 Dec 21.

Abstract

During development, cells are subject to stochastic fluctuations in their positions (i.e. cell-level noise) that can potentially lead to morphological noise (i.e. stochastic differences between morphologies that are expected to be equal, e.g. the right and left sides of bilateral organisms). In this study, we explore new and existing hypotheses on buffering mechanisms against cell-level noise. Many of these hypotheses focus on how the boundaries between territories of gene expression remain regular and well defined, despite cell-level noise and division. We study these hypotheses and how irregular territory boundaries lead to morphological noise. To determine the consistency of the different hypotheses, we use a general computational model of development: EmbryoMaker. EmbryoMaker can implement arbitrary gene networks regulating basic cell behaviors (contraction, adhesion, etc.), signaling and tissue biomechanics. We found that buffering mechanisms based on the orientation of cell divisions cannot lead to regular boundaries but that other buffering mechanisms can (homotypic adhesion, planar contraction, non-dividing boundaries, constant signaling and majority rule hypotheses). We also explore the effects of the shape and size of the territories on morphological noise.

摘要

在发育过程中,细胞的位置会受到随机波动的影响(即细胞水平的噪声),这可能导致形态噪声(即预期相等的形态之间的随机差异,例如双侧生物的左右两侧)。在这项研究中,我们探讨了针对细胞水平噪声的缓冲机制的新假设和现有假设。这些假设中的许多都集中在基因表达区域之间的边界如何保持规则和明确,尽管存在细胞水平的噪声和分裂。我们研究了这些假设以及不规则的区域边界如何导致形态噪声。为了确定不同假设的一致性,我们使用了一种通用的发育计算模型:EmbryoMaker。EmbryoMaker 可以实现调节基本细胞行为(收缩、粘附等)、信号转导和组织生物力学的任意基因网络。我们发现,基于细胞分裂方向的缓冲机制不能导致规则的边界,但其他缓冲机制可以(同型粘附、平面收缩、不分裂的边界、恒定的信号和多数规则假设)。我们还探讨了区域的形状和大小对形态噪声的影响。

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