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Dissecting Organismal Morphogenesis by Bridging Genetics and Biophysics
Annual Review of Genetics ( IF 8.7 ) Pub Date : 2021-11-23 , DOI: 10.1146/annurev-genet-071819-103748
Nikhil Mishra 1 , Carl-Philipp Heisenberg 1
Affiliation  

Multicellular organisms develop complex shapes from much simpler, single-celled zygotes through a process commonly called morphogenesis. Morphogenesis involves an interplay between several factors, ranging from the gene regulatory networks determining cell fate and differentiation to the mechanical processes underlying cell and tissue shape changes. Thus, the study of morphogenesis has historically been based on multidisciplinary approaches at the interface of biology with physics and mathematics. Recent technological advances have further improved our ability to study morphogenesis by bridging the gap between the genetic and biophysical factors through the development of new tools for visualizing, analyzing, and perturbing these factors and their biochemical intermediaries. Here, we review how a combination of genetic, microscopic, biophysical, and biochemical approaches has aided our attempts to understand morphogenesis and discuss potential approaches that may be beneficial to such an inquiry in the future.

中文翻译:


通过桥接遗传学和生物物理学剖析有机体形态发生

多细胞生物通过通常称为形态发生的过程从更简单的单细胞受精卵发展出复杂的形状。形态发生涉及几个因素之间的相互作用,从决定细胞命运和分化的基因调控网络到细胞和组织形状变化的机械过程。因此,形态发生的研究在历史上一直基于生物学与物理学和数学接口的多学科方法。最近的技术进步进一步提高了我们研究形态发生的能力,通过开发用于可视化、分析和干扰这些因素及其生化中介的新工具,弥合遗传和生物物理因素之间的差距。在这里,我们回顾了遗传、微观、生物物理、

更新日期:2021-11-24
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