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控制眼睛发育及其变异的生长、分化和形态之间的定量关系。

Quantitative Relationships Between Growth, Differentiation, and Shape That Control Eye Development and Its Variation.

作者信息

Lobo-Cabrera Francisco Javier, Navarro Tomás, Iannini Antonella, Casares Fernando, Cuetos Alejandro

机构信息

Department of Physical, Chemical and Natural Systems, Pablo de Olavide University, Sevilla, Spain.

DMC2-GEM Unit, The CABD, CSIC-Pablo de Olavide University-JA, Seville, Spain.

出版信息

Front Cell Dev Biol. 2021 Jul 19;9:681933. doi: 10.3389/fcell.2021.681933. eCollection 2021.

Abstract

The size of organs is critical for their function and often a defining trait of a species. Still, how organs reach a species-specific size or how this size varies during evolution are problems not yet solved. Here, we have investigated the conditions that ensure growth termination, variation of final size and the stability of the process for developmental systems that grow and differentiate simultaneously. Specifically, we present a theoretical model for the development of the eye, a system where a wave of differentiation sweeps across a growing primordium. This model, which describes the system in a simplified form, predicts universal relationships linking final eye size and developmental time to a single parameter which integrates genetically-controlled variables, the rates of cell proliferation and differentiation, with geometrical factors. We find that the predictions of the theoretical model show good agreement with previously published experimental results. We also develop a new computational model that recapitulates the process more realistically and find concordance between this model and theory as well, but only when the primordium is circular. However, when the primordium is elliptical both models show discrepancies. We explain this difference by the mechanical interactions between cells, an aspect that is not included in the theoretical model. Globally, our work defines the quantitative relationships between rates of growth and differentiation and organ primordium size that ensure growth termination (and, thereby, specify final eye size) and determine the duration of the process; identifies geometrical dependencies of both size and developmental time; and uncovers potential instabilities of the system which might constraint developmental strategies to evolve eyes of different size.

摘要

器官的大小对于其功能至关重要,并且常常是一个物种的决定性特征。然而,器官如何达到特定物种的大小,或者这种大小在进化过程中如何变化,仍是尚未解决的问题。在这里,我们研究了确保生长终止、最终大小变化以及同时生长和分化的发育系统过程稳定性的条件。具体而言,我们提出了一个眼睛发育的理论模型,眼睛是一个分化波扫过正在生长的原基的系统。这个以简化形式描述该系统的模型预测了将最终眼睛大小和发育时间与一个单一参数联系起来的普遍关系,该参数整合了基因控制变量、细胞增殖和分化速率以及几何因素。我们发现理论模型的预测与先前发表的实验结果显示出良好的一致性。我们还开发了一个更逼真地概括该过程的新计算模型,并发现该模型与理论之间也存在一致性,但前提是原基是圆形的。然而,当原基是椭圆形时,两个模型都显示出差异。我们通过细胞之间的机械相互作用来解释这种差异,这是理论模型中未包含的一个方面。总体而言,我们的工作定义了生长和分化速率与器官原基大小之间的定量关系,这些关系确保了生长终止(从而确定了最终眼睛大小)并决定了过程的持续时间;确定了大小和发育时间的几何依赖性;并揭示了系统可能存在的不稳定性,这些不稳定性可能会限制发育策略,使其无法进化出不同大小的眼睛。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/a03f/8326509/41c844826d1e/fcell-09-681933-g0001.jpg

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