水螅再生中拓扑缺陷部位的机械应变聚焦。

IF 3.7 2区 生物学 Q1 DEVELOPMENTAL BIOLOGY
Development Pub Date : 2025-02-15 Epub Date: 2025-03-03 DOI:10.1242/dev.204514
Yonit Maroudas-Sacks, S Suganthan, Liora Garion, Yael Ascoli-Abbina, Ariel Westfried, Noam Dori, Iris Pasvinter, Marko Popović, Kinneret Keren
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引用次数: 0

摘要

水螅再生过程中新头部的形成涉及头部组织器的建立,该组织器发挥信号中心的作用,并在细胞上肌动蛋白纤维的组织中包含星形拓扑缺陷。在这里,我们展示了再生组织片段中的未来头部区域从再生开始就经历了多次广泛的拉伸和断裂事件。这些反复出现的局部组织变形是由于细胞上外胚层肌动蛋白纤维的瞬时收缩将机械应变集中在缺陷部位所致。我们进一步证明,Wnt 信号通路的扰动会破坏星形缺陷的稳定。我们提出了一个促进头部组织器形成的闭环反馈机制,并建立了一个水螅组织再生的生物物理模型,其中包含一个由机械应变激活的形态发生源和一个引导纤维沿形态发生器梯度排列的排列相互作用。我们认为,这种正反馈回路导致机械应变集中在缺陷部位,增强了局部形态发生器的产生,促进了稳健的组织器形成。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Mechanical strain focusing at topological defect sites in regenerating Hydra.

The formation of a new head during Hydra regeneration involves the establishment of a head organizer that functions as a signaling center and contains an aster-shaped topological defect in the organization of the supracellular actomyosin fibers. Here, we show that the future head region in regenerating tissue fragments undergoes multiple instances of extensive stretching and rupture events from the onset of regeneration. These recurring localized tissue deformations arise due to transient contractions of the supracellular ectodermal actomyosin fibers that focus mechanical strain at defect sites. We further show that stabilization of aster-shaped defects is disrupted by perturbations of the Wnt signaling pathway. We propose a closed-loop feedback mechanism promoting head organizer formation, and develop a biophysical model of regenerating Hydra tissues that incorporates a morphogen source activated by mechanical strain and an alignment interaction directing fibers along morphogen gradients. We suggest that this positive-feedback loop leads to mechanical strain focusing at defect sites, enhancing local morphogen production and promoting robust organizer formation.

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来源期刊
Development
Development 生物-发育生物学
CiteScore
6.70
自引率
4.30%
发文量
433
审稿时长
3 months
期刊介绍: Development’s scope covers all aspects of plant and animal development, including stem cell biology and regeneration. The single most important criterion for acceptance in Development is scientific excellence. Research papers (articles and reports) should therefore pose and test a significant hypothesis or address a significant question, and should provide novel perspectives that advance our understanding of development. We also encourage submission of papers that use computational methods or mathematical models to obtain significant new insights into developmental biology topics. Manuscripts that are descriptive in nature will be considered only when they lay important groundwork for a field and/or provide novel resources for understanding developmental processes of broad interest to the community. Development includes a Techniques and Resources section for the publication of new methods, datasets, and other types of resources. Papers describing new techniques should include a proof-of-principle demonstration that the technique is valuable to the developmental biology community; they need not include in-depth follow-up analysis. The technique must be described in sufficient detail to be easily replicated by other investigators. Development will also consider protocol-type papers of exceptional interest to the community. We welcome submission of Resource papers, for example those reporting new databases, systems-level datasets, or genetic resources of major value to the developmental biology community. For all papers, the data or resource described must be made available to the community with minimal restrictions upon publication. To aid navigability, Development has dedicated sections of the journal to stem cells & regeneration and to human development. The criteria for acceptance into these sections is identical to those outlined above. Authors and editors are encouraged to nominate appropriate manuscripts for inclusion in one of these sections.
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