Rink Jochen C
Max Planck Institute of Molecular Cell Biology and Genetics, Dresden, Germany.
Methods Mol Biol. 2018;1774:57-172. doi: 10.1007/978-1-4939-7802-1_2.
The establishment of size and shape remains a fundamental challenge in biological research that planarian flatworms uniquely epitomize. Planarians can regenerate complete and perfectly proportioned animals from tiny and arbitrarily shaped tissue pieces; they continuously renew all organismal cell types from abundant pluripotent stem cells, yet maintain shape and anatomy in the face of constant turnover; they grow when feeding and literally degrow when starving, while scaling form and function over as much as a 40-fold range in body length or an 800-fold change in total cell numbers. This review provides a broad overview of the current understanding of the planarian stem cell system, the mechanisms that pattern the planarian body plan and how the interplay between patterning signals and cell fate choices orchestrates regeneration. What emerges is a conceptual framework for the maintenance and regeneration of the planarian body plan on basis of the interplay between pluripotent stem cells and self-organizing patterns and further, the general utility of planarians as model system for the mechanistic basis of size and shape.
在生物学研究中,确定尺寸和形状仍然是一项根本性挑战,而涡虫纲扁虫是这一挑战的典型代表。涡虫能够从微小且形状任意的组织碎片再生出完整且比例完美的动物;它们通过丰富的多能干细胞持续更新所有机体细胞类型,同时在细胞不断更替的情况下维持形状和解剖结构;它们进食时生长,饥饿时实际上会萎缩,身体长度变化幅度高达40倍,总细胞数量变化幅度达800倍,同时形态和功能也会相应缩放。本综述全面概述了目前对涡虫干细胞系统的理解、构建涡虫身体蓝图的机制,以及模式信号与细胞命运选择之间的相互作用如何协调再生过程。由此形成了一个概念框架,用于基于多能干细胞与自组织模式之间的相互作用来维持和再生涡虫身体蓝图,此外,还阐述了涡虫作为研究尺寸和形状机制基础的模型系统的普遍效用。