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位置信息与干细胞相结合导致扁形动物再生。

Positional Information and Stem Cells Combine to Result in Planarian Regeneration.

机构信息

Whitehead Institute for Biomedical Research, Cambridge, Massachusetts 02142, USA.

Department of Biology, MIT, Cambridge, Massachusetts 02139, USA.

出版信息

Cold Spring Harb Perspect Biol. 2022 May 17;14(4):a040717. doi: 10.1101/cshperspect.a040717.

Abstract

The capacity for regeneration is broad in the animal kingdom. Planarians are flatworms that can regenerate any missing body part and their regenerative powers have combined with ease of experimentation to make them a classic regeneration model for more than a century. Pluripotent stem cells called neoblasts generate missing planarian tissues. Fate specification happens in the neoblasts, and this can occur in response to regeneration instructions in the form of positional information. Fate specification can lead to differentiating cells in single steps rather than requiring a long lineage hierarchy. Planarians display constitutive expression of positional information from muscle cells, which is required for patterned maintenance of tissues in tissue turnover. Amputation leads to the rapid resetting of positional information in a process triggered by wound signaling and the resetting of positional information is required for regeneration. These findings suggest a model for planarian regeneration in which adult positional information resets after injury to regulate stem cells to bring about the replacement of missing parts.

摘要

动物界的再生能力非常广泛。涡虫是一种可以再生任何缺失身体部位的扁形虫,它们的再生能力与易于实验相结合,使它们成为一个经典的再生模型,已经有一个多世纪了。多能干细胞称为成体干细胞,它们生成缺失的涡虫组织。命运决定发生在成体干细胞中,这可以响应以位置信息形式的再生指令。命运决定可以导致细胞在单一步骤中分化,而不需要长的谱系层次。涡虫表现出肌肉细胞的组成型表达位置信息,这对于组织更新中组织的模式维持是必需的。截肢会导致位置信息的快速重置,这是由伤口信号触发的过程,并且位置信息的重置对于再生是必需的。这些发现提出了一个涡虫再生模型,其中成年的位置信息在受伤后重置,以调节干细胞,从而替换缺失的部分。

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