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Modularity and design principles in the sea urchin embryo gene regulatory network

机译:海胆胚胎基因调控网络的模块化和设计原则

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摘要

The gene regulatory network (GRN) established experimentally for the pre-gastrular sea urchin embryo provides causal explanations of the biological functions required for spatial specification of embryonic regulatory states. Here we focus on the structure of the GRN which controls the progressive increase in complexity of territorial regulatory states during embryogenesis; and on the types of modular subcircuits of which the GRN is composed. Each of these subcircuit topologies executes a particular operation of spatial information processing. The GRN architecture reflects the particular mode of embryogenesis represented by sea urchin development. Network structure not only specifies the linkages constituting the genomic regulatory code for development, but also indicates the various regulatory requirements of regional developmental processes.udud
机译:通过实验建立的针对胃前海胆胚胎的基因调控网络(GRN)提供了对胚胎调控状态空间规格所需的生物学功能的因果解释。在这里,我们关注于GRN的结构,该结构控制着胚胎发生过程中领土调控状态的复杂性的逐步增加。以及组成GRN的模块化子电路的类型。这些子电路拓扑中的每一个都执行空间信息处理的特定操作。 GRN体系结构反映了以海胆发育为代表的胚胎发生的特定模式。网络结构不仅指定构成开发的基因组监管代码的链接,而且还指示区域发展过程的各种监管要求。

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