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发育生物学中的定量方法。

Quantitative approaches in developmental biology.

作者信息

Oates Andrew C, Gorfinkiel Nicole, González-Gaitán Marcos, Heisenberg Carl-Philipp

机构信息

Max Planck Institute of Molecular Cell Biology and Genetics, D-01307 Dresden, Germany.

出版信息

Nat Rev Genet. 2009 Aug;10(8):517-30. doi: 10.1038/nrg2548.

Abstract

The tissues of a developing embryo are simultaneously patterned, moved and differentiated according to an exchange of information between their constituent cells. We argue that these complex self-organizing phenomena can only be fully understood with quantitative mathematical frameworks that allow specific hypotheses to be formulated and tested. The quantitative and dynamic imaging of growing embryos at the molecular, cellular and tissue level is the key experimental advance required to achieve this interaction between theory and experiment. Here we describe how mathematical modelling has become an invaluable method to integrate quantitative biological information across temporal and spatial scales, serving to connect the activity of regulatory molecules with the morphological development of organisms.

摘要

发育中胚胎的组织会根据其组成细胞之间的信息交换,同时进行模式形成、移动和分化。我们认为,只有借助定量数学框架,才能全面理解这些复杂的自组织现象,该框架能够制定并检验特定假设。在分子、细胞和组织水平上对发育中胚胎进行定量和动态成像,是实现理论与实验之间这种相互作用所需的关键实验进展。在此,我们描述了数学建模如何成为一种整合跨时空尺度定量生物学信息的宝贵方法,有助于将调节分子的活性与生物体的形态发育联系起来。

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