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生长域上动态形态发生素梯度的读出

Read-Out of Dynamic Morphogen Gradients on Growing Domains.

作者信息

Fried Patrick, Iber Dagmar

机构信息

Department of Biosystems Science and Engineering, ETH Zürich, Basel, Switzerland.

SIB Swiss Institute of Bioinformatics, Basel, Switzerland.

出版信息

PLoS One. 2015 Nov 24;10(11):e0143226. doi: 10.1371/journal.pone.0143226. eCollection 2015.

Abstract

Quantitative data from the Drosophila wing imaginal disc reveals that the amplitude of the Decapentaplegic (Dpp) morphogen gradient increases continuously. It is an open question how cells can determine their relative position within a domain based on a continuously increasing gradient. Here we show that pre-steady state diffusion-based dispersal of morphogens results in a zone within the growing domain where the concentration remains constant over the patterning period. The position of the zone that is predicted based on quantitative data for the Dpp morphogen corresponds to where the Dpp-dependent gene expression boundaries of spalt (sal) and daughters against dpp (dad) emerge. The model also suggests that genes that are scaling and are expressed at lateral positions are either under the control of a different read-out mechanism or under the control of a different morphogen. The patterning mechanism explains the extraordinary robustness that is observed for variations in Dpp production, and offers an explanation for the dual role of Dpp in controlling patterning and growth. Pre-steady-state dynamics are pervasive in morphogen-controlled systems, thus making this a probable general mechanism for the scaled read-out of morphogen gradients in growing developmental systems.

摘要

来自果蝇翅成虫盘的定量数据显示,骨形态发生蛋白(Dpp)形态发生素梯度的幅度持续增加。细胞如何基于持续增加的梯度来确定其在一个区域内的相对位置仍是一个悬而未决的问题。在此我们表明,形态发生素基于前稳态扩散的扩散导致在生长区域内出现一个区域,在图案形成期内该区域的浓度保持恒定。根据Dpp形态发生素的定量数据预测的该区域位置,与spalt(sal)和daughters against dpp(dad)的Dpp依赖性基因表达边界出现的位置相对应。该模型还表明,呈比例缩放并在侧翼位置表达的基因,要么受不同读出机制的控制,要么受不同形态发生素的控制。这种图案形成机制解释了在Dpp产生变化时所观察到的非凡稳健性,并为Dpp在控制图案形成和生长中的双重作用提供了解释。前稳态动力学在形态发生素控制系统中普遍存在,因此这可能是生长发育系统中形态发生素梯度比例读出的一种普遍机制。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/71e5/4657938/58e4eeb8af72/pone.0143226.g001.jpg

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