Dynamical systems of fate and form in development

IF 6.2 2区 生物学 Q1 CELL BIOLOGY
Alex M. Plum, Mattia Serra
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引用次数: 0

Abstract

Developmental biology has long drawn on dynamical systems to understand the diverging fates and the emerging form of the developing embryo. Cell differentiation and morphogenesis unfold in high-dimensional gene-expression spaces and position spaces. Yet, their stable and reproducible outcomes suggest low-dimensional geometric structures—e.g., fixed points, manifolds, and dynamic attracting and repelling structures—that organize cell trajectories in both spaces. This review surveys the history and recent advances in dynamical systems frameworks for development. We focus on techniques for extracting the organizing geometric structures of cell fate decisions and morphogenetic movements from experiments, as well as their interconnections. This unifying, dynamical systems perspective aids in rationalizing increasingly complex experimental datasets, facilitating principled dimensionality reduction and an integrated understanding of development, bridging typically distinct domains.
发展中的命运和形式的动力系统
发育生物学长期以来一直利用动力系统来理解发育胚胎的分化命运和新兴形式。细胞的分化和形态发生在高维的基因表达空间和位置空间中展开。然而,他们的稳定和可重复的结果表明低维几何结构-例如。,固定点,流形,以及动态吸引和排斥结构,这些结构组织了两个空间中的细胞轨迹。本文综述了动力系统发展框架的历史和最新进展。我们专注于从实验中提取细胞命运决定和形态发生运动的组织几何结构的技术,以及它们的相互联系。这种统一的动态系统视角有助于使日益复杂的实验数据集合理化,促进原则性的降维和对发展的综合理解,连接典型的不同领域。
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来源期刊
CiteScore
15.10
自引率
1.40%
发文量
310
审稿时长
9.1 weeks
期刊介绍: Seminars in Cell and Developmental Biology is a review journal dedicated to keeping scientists informed of developments in the field of molecular cell and developmental biology, on a topic by topic basis. Each issue is thematic in approach, devoted to an important topic of interest to cell and developmental biologists, focusing on the latest advances and their specific implications. The aim of each issue is to provide a coordinated, readable, and lively review of a selected area, published rapidly to ensure currency.
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