Towards a physical understanding of developmental patterning

The temporal coordination of events at cellular and tissue scales is essential for the proper development of organisms, and involves cell-intrinsic processes that can be coupled by local cellular signalling and instructed by global signalling, thereby creating spatial patterns of cellular states tha...

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Veröffentlicht in:Nature reviews. Genetics 2021-08, Vol.22 (8), p.518-531
Hauptverfasser: Negrete, Jose, Oates, Andrew C.
Format: Artikel
Sprache:eng
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Zusammenfassung:The temporal coordination of events at cellular and tissue scales is essential for the proper development of organisms, and involves cell-intrinsic processes that can be coupled by local cellular signalling and instructed by global signalling, thereby creating spatial patterns of cellular states that change over time. The timing and structure of these patterns determine how an organism develops. Traditional developmental genetic methods have revealed the complex molecular circuits regulating these processes but are limited in their ability to predict and understand the emergent spatio-temporal dynamics. Increasingly, approaches from physics are now being used to help capture the dynamics of the system by providing simplified, generic descriptions. Combined with advances in imaging and computational power, such approaches aim to provide insight into timing and patterning in developing systems. This Review outlines how approaches from physics can be used to simplify and understand complex patterning events during development. In particular, wavefronts, genetic oscillators and genetic timers are discussed in the context of illustrative developmental processes.
ISSN:1471-0056
1471-0064
DOI:10.1038/s41576-021-00355-7