How the Brain Develops from the Epiblast: The Node Is Not an Organizer.

Q4 Biochemistry, Genetics and Molecular Biology Results and Problems in Cell Differentiation Pub Date : 2024-01-01 DOI:10.1007/978-3-031-39027-2_4
Hisato Kondoh
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Abstract

Studies using early-stage avian embryos have substantially impacted developmental biology, through the availability of simple culture methods and easiness in tissue manipulation. However, the regulations underlying brain and head development, a central issue of developmental biology, have not been investigated systematically. Yoshihi et al. (2022a) devised a technique to randomly label the epiblast cells with a green fluorescent protein before their development into the brain tissue. This technique was combined with grafting a node or node-derived anterior mesendoderm labeled with a cherry-colored fluorescent protein. Then cellular events were live-recorded over 18 hours during the brain and head development. The live imaging-based analyses identified previously undescribed mechanisms central to brain development: all anterior epiblast cells have a potential to develop into the brain tissues and their gathering onto a proximal anterior mesendoderm forms a brain primordium whereas the remaining cells develop into the covering head ectoderm. The analyses also ruled out the direct participation of the node's activity in the brain development. Yoshihi et al. (2022a) also demonstrate how the enigmatic data from classical models can be reinterpreted in the new model.This chapter was adapted from Yoshihi K, Iida H, Teramoto M, Ishii Y, Kato K, Kondoh H. (2022b). Epiblast cells gather onto the anterior mesendoderm and initiate brain development without the direct involvement of the node in avian embryos: Insights from broad-field live imaging. Front Cell Dev Biol. 10:1019845. doi: 10.3389/fcell.2022.1019845.

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大脑如何从外胚层发育而来?节点不是组织者
利用早期鸟类胚胎进行的研究,由于培养方法简单、组织操作容易,对发育生物学产生了重大影响。然而,作为发育生物学的核心问题,大脑和头部发育的基本规律尚未得到系统研究。Yoshihi 等人(2022a)设计了一种技术,在上胚层细胞发育成脑组织之前用绿色荧光蛋白随机标记它们。该技术与移植标记有樱桃色荧光蛋白的结节或结节衍生的前中胚层相结合。然后对大脑和头部发育过程中的细胞事件进行了18小时的实时记录。基于活体成像的分析发现了以前未曾描述过的大脑发育的核心机制:所有前胚层细胞都有可能发育成脑组织,它们聚集到近端前中胚层上形成脑原基,而其余细胞则发育成覆盖头部的外胚层。分析还排除了节点活动直接参与脑发育的可能性。Yoshihi 等人(2022a)还展示了如何在新模型中重新解释经典模型中的神秘数据。在鸟类胚胎中,上胚层细胞聚集到前中胚层并启动大脑发育,而无需节点的直接参与:宽视野实时成像的启示。doi: 10.3389/fcell.2022.1019845.
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来源期刊
Results and Problems in Cell Differentiation
Results and Problems in Cell Differentiation Biochemistry, Genetics and Molecular Biology-Developmental Biology
CiteScore
1.90
自引率
0.00%
发文量
21
期刊介绍: Results and Problems in Cell Differentiation is an up-to-date book series that presents and explores selected questions of cell and developmental biology. Each volume focuses on a single, well-defined topic. Reviews address basic questions and phenomena, but also provide concise information on the most recent advances. Together, the volumes provide a valuable overview of this exciting and dynamically expanding field.
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