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Gene expression boundary scaling and organ size regulation in the Drosophila embryo

机译:果蝇胚胎中基因表达边界缩放和器官尺寸调节

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摘要

How the shape and size of tissues and organs is regulated during development is a major question in developmental biology. Such regulation relies upon both intrinsic cues (such as signaling networks) and extrinsic inputs (such as from neighboring tissues). Here, we focus on pattern formation and organ development during Drosophila embryogenesis. In particular, we outline the importance of both biochemical and mechanical tissue-tissue interactions in size regulation. We describe how the Drosophila embryo can potentially provide novel insights into how shape and size are regulated during development. We focus on gene expression boundary scaling in the early embryo and how size is regulated in three organs (hindgut, trachea, and ventral nerve cord) later in development, with particular focus on the role of tissue-tissue interactions. Overall, we demonstrate that Drosophila embryogenesis provides a suitable model system for studying spatial and temporal scaling and size control in vivo.
机译:如何在开发期间调节组织和器官的形状和大小是发展生物学的一个主要问题。 这种调节依赖于内在提示(例如信令网络)和外在输入(例如来自相邻组织)。 在这里,我们专注于在果蝇胚胎发生过程中的模式形成和器官发展。 特别是,我们概述了大小调节中生物化学和机械组织组织相互作用的重要性。 我们描述了果蝇胚胎如何潜在地提供新颖的洞察,以如何在开发期间对形状和尺寸进行调节。 我们专注于早期胚胎中的基因表达边界缩放,并且在发展后的三个器官(后肠,气管和腹侧神经脐带)中尺寸的调节程度,特别关注组织组织相互作用的作用。 总体而言,我们证明了果蝇胚胎发生提供了一种用于研究体内空间和时间缩放和尺寸控制的合适模型系统。

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