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身体形状的变化表明线虫生长控制中角质层的拉伸。

Changes in body shape implicate cuticle stretch in C. elegans growth control.

作者信息

Nyaanga Joy, Goss Christina, Zhang Gaotian, Ahmed Hannah N, Andersen Elliot J, Miller Isabella R, Rozenich Justine K, Swarthout Iris L, Vaughn Jordan A, Mangan Niall M, Shirman Sasha, Andersen Erik C

机构信息

Department of Molecular Biosciences, Northwestern University, Evanston, IL 60208, USA; Interdisciplinary Biological Sciences Program, Northwestern University, Evanston, IL 60208, USA.

Department of Engineering Sciences and Applied Mathematics, Northwestern University, Evanston, IL 60208, USA.

出版信息

Cells Dev. 2022 Jun;170:203780. doi: 10.1016/j.cdev.2022.203780. Epub 2022 Apr 19.

Abstract

Growth control establishes organism size, requiring mechanisms to sense and adjust growth during development. Studies of single cells revealed that size homeostasis uses distinct control methods. In multicellular organisms, mechanisms that regulate single cell growth must integrate control across organs and tissues during development to generate adult size and shape. We leveraged the roundworm Caenorhabditis elegans as a scalable and tractable model to collect precise growth measurements of thousands of individuals, measure feeding behavior, and quantify changes in animal size and shape during a densely sampled developmental time course. As animals transitioned from one developmental stage to the next, we observed changes in body aspect ratio while body volume remained constant. Then, we modeled a physical mechanism by which constraints on cuticle stretch could cause changes in C. elegans body shape. The model-predicted shape changes are consistent with those observed in the data. Theoretically, cuticle stretch could be sensed by the animal to initiate larval-stage transitions, providing a means for physical constraints to influence developmental timing and growth rate in C. elegans.

摘要

生长控制决定了生物体的大小,这需要在发育过程中具备感知和调节生长的机制。对单细胞的研究表明,大小稳态采用了不同的控制方法。在多细胞生物中,调节单细胞生长的机制必须在发育过程中整合跨器官和组织的控制,以形成成年个体的大小和形状。我们利用线虫秀丽隐杆线虫作为一个可扩展且易于处理的模型,来收集数千个个体的精确生长测量数据,测量摄食行为,并在密集采样的发育时间进程中量化动物大小和形状的变化。当动物从一个发育阶段过渡到下一个阶段时,我们观察到体长与体宽之比发生了变化,而身体体积保持不变。然后,我们建立了一个物理机制模型,通过该模型可以解释角质层伸展的限制如何导致秀丽隐杆线虫身体形状的变化。模型预测的形状变化与数据中观察到的变化一致。从理论上讲,动物可以感知角质层的伸展,从而启动幼虫阶段的转变,这为物理限制影响秀丽隐杆线虫的发育时间和生长速率提供了一种方式。

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