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再生中由遗传组织不对称性驱动的定向形态发生。

Canalized Morphogenesis Driven by Inherited Tissue Asymmetries in Regeneration.

作者信息

Shani-Zerbib Lital, Garion Liora, Maroudas-Sacks Yonit, Braun Erez, Keren Kinneret

机构信息

Department of Physics, Technion-Israel Institute of Technology, Haifa 32000, Israel.

Network Biology Research Laboratories, Technion-Israel Institute of Technology, Haifa 32000, Israel.

出版信息

Genes (Basel). 2022 Feb 16;13(2):360. doi: 10.3390/genes13020360.

Abstract

The emergence and stabilization of a body axis is a major step in animal morphogenesis, determining the symmetry of the body plan as well as its polarity. To advance our understanding of the emergence of body axis polarity, we study regenerating . Axis polarity is strongly memorized in regeneration even in small tissue segments. What type of processes confer this memory? To gain insight into the emerging polarity, we utilize frustrating initial conditions by studying regenerating tissue strips which fold into hollow spheroids by adhering their distal ends of opposite original polarities. Despite the convoluted folding process and the tissue rearrangements during regeneration, these tissue strips develop in a reproducible manner, preserving the original polarity and yielding an ordered body plan. These observations suggest that the integration of mechanical and biochemical processes supported by their mutual feedback attracts the tissue dynamics towards a well-defined developmental trajectory biased by weak inherited cues from the parent animal. thus provide an example of dynamic canalization in which the dynamic rules are instilled, but, in contrast to the classical picture, the detailed developmental trajectory does not unfold in a programmatic manner.

摘要

体轴的出现和稳定是动物形态发生中的一个重要步骤,它决定了身体结构的对称性及其极性。为了增进我们对体轴极性出现的理解,我们研究再生过程。即使在小的组织片段中,轴极性在再生过程中也被强烈记忆。是什么类型的过程赋予了这种记忆?为了深入了解新兴的极性,我们通过研究再生组织条带来利用令人沮丧的初始条件,这些组织条带通过将其具有相反原始极性的远端粘连而折叠成空心球体。尽管再生过程中存在复杂的折叠过程和组织重排,但这些组织条带以可重复的方式发育,保留了原始极性并产生有序的身体结构。这些观察结果表明,由相互反馈支持的机械和生化过程的整合将组织动力学吸引到由来自亲代动物的微弱遗传线索所偏向的明确发育轨迹上。因此提供了一个动态渠化的例子,其中动态规则被灌输,但与经典情况不同的是,详细的发育轨迹并不是以程序化的方式展开的。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/fc17/8872179/595155e4e52a/genes-13-00360-g001.jpg

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