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How complexity increases in development: An analysis of the spatial-temporal dynamics of 1218 genes in Drosophila melanogaster

机译:复杂性如何在发展中增加:果蝇中1218个基因的时空动态分析

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One of the most apparent phenomena in development is that it starts with something apparently simple and leads to something clearly complex with a specific and functional structure. At the level of gene expression it seems also clear that the embryo becomes progressively compartmentalized over time and space. However, there have not been any systematic attempts to quantify how this occurs. Here, we present a quantitative analysis of the compartmentalization and spatial complexity of gene expression in Drosophila melanogaster over developmental time by analyzing thousands of gene expression spatial patterns from FlyExpress database. We use three different mathematical measures of compartmentalization of gene expression in space. All these measures show a similar non-linear increase in compartmentalization over time, with the most dramatic change occurring from the maternal to the early gastrula stage. Transcription factors and growth factors showed an earlier compartmentalization. Finally, we partitioned the embryo space in 257 equally sized regions and clustered them depending on their expression similarity, within and between stages. This provides a global overview about the effective degree of differentiation and compartmentalization between body parts at each developmental stage and when and where in the embryo there are more changes, due to signaling or movement. (C) 2015 Elsevier Inc. All rights reserved.
机译:开发中最明显的现象之一是,它从表面上看似简单的事物开始,并导致具有特定功能的结构而变得明显复杂的事物。在基因表达的水平上,似乎也很清楚,随着时间和空间的发展,胚胎逐渐被分隔开。但是,还没有任何系统的尝试来量化这种情况如何发生。在这里,我们通过分析FlyExpress数据库中成千上万的基因表达空间模式,对果蝇在发育时间内的基因表达的区室化和空间复杂性进行定量分析。我们使用三种不同的数学方法来对空间中的基因表达进行分区。所有这些措施都显示出随着时间的流逝,隔室的非线性类似的增加,其中最显着的变化发生在从母体到早期胃stage期。转录因子和生长因子显示较早的区室化。最后,我们将胚胎空间划分为257个大小相等的区域,并根据它们在阶段内和阶段之间的表达相似性将它们聚类。这提供了有关每个发育阶段以及由于信号或运动而在胚胎中何时何地发生更多变化的身体部位之间分化和分隔的有效程度的全局概述。 (C)2015 Elsevier Inc.保留所有权利。

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