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Global expression profiling reveals genetic programs underlying the developmental divergence between mouse and human embryogenesis

机译:全球表达谱揭示了小鼠和人类胚胎发生之间发育差异的遗传程序

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摘要

BackgroundMouse has served as an excellent model for studying human development and diseases due to its similarity to human. Advances in transgenic and knockout studies in mouse have dramatically strengthened the use of this model and significantly improved our understanding of gene function during development in the past few decades. More recently, global gene expression analyses have revealed novel features in early embryogenesis up to gastrulation stages and have indeed provided molecular evidence supporting the conservation in early development in human and mouse. On the other hand, little information is known about the gene regulatory networks governing the subsequent organogenesis. Importantly, mouse and human development diverges during organogenesis. For instance, the mouse embryo is born around the end of organogenesis while in human the subsequent fetal period of ongoing growth and maturation of most organs spans more than 2/3 of human embryogenesis. While two recent studies reported the gene expression profiles during human organogenesis, no global gene expression analysis had been done for mouse organogenesis.
机译:BackgroundMouse与人类相似,因此成为研究人类发展和疾病的绝佳模型。过去几十年来,小鼠转基因和基因敲除研究的进展极大地增强了该模型的使用,并极大地增进了我们对基因功能的理解。最近,全球基因表达分析揭示了直至胚化阶段的早期胚胎发生中的新特征,并且确实提供了分子证据支持人和小鼠早期发育中的保守。另一方面,关于控制随后器官发生的基因调控网络的信息知之甚少。重要的是,小鼠和人类的发育在器官发生过程中是不同的。例如,小鼠胚胎是在器官发生的末期出生的,而在人类中,随后的大部分器官的持续生长和成熟的胎儿时期跨越了人类胚胎发生的2/3。尽管两项最新研究报告了人类器官发生过程中的基因表达谱,但尚未对小鼠器官发生进行全局基因表达分析。

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