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Genome-Wide Approaches to Drosophila Heart Development

机译:果蝇心脏发育的全基因组方法

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The development of the dorsal vessel in Drosophila is one of the first systems in which key mechanisms regulating cardiogenesis have been defined in great detail at the genetic and molecular level. Due to evolutionary conservation, these findings have also provided major inputs into studies of cardiogenesis in vertebrates. Many of the major components that control Drosophila cardiogenesis were discovered based on candidate gene approaches and their functions were defined by employing the outstanding genetic tools and molecular techniques available in this system. More recently, approaches have been taken that aim to interrogate the entire genome in order to identify novel components and describe genomic features that are pertinent to the regulation of heart development. Apart from classical forward genetic screens, the availability of the thoroughly annotated Drosophila genome sequence made new genome-wide approaches possible, which include the generation of massive numbers of RNA interference (RNAi) reagents that were used in forward genetic screens, as well as studies of the transcriptomes and proteomes of the developing heart under normal and experimentally manipulated conditions. Moreover, genome-wide chromatin immunoprecipitation experiments have been performed with the aim to define the full set of genomic binding sites of the major cardiogenic transcription factors, their relevant target genes, and a more complete picture of the regulatory network that drives cardiogenesis. This review will give an overview on these genome-wide approaches to Drosophila heart development and on computational analyses of the obtained information that ultimately aim to provide a description of this process at the systems level.
机译:果蝇背血管的发育是最早的系统之一,其中已经在遗传和分子水平上详细定义了调节心脏发生的关键机制。由于进化上的保守性,这些发现也为脊椎动物心脏发生的研究提供了重要的投入。基于候选基因方法发现了许多控制果蝇心脏发生的主要成分,并通过使用该系统中出色的遗传工具和分子技术来定义了它们的功能。最近,已经采取了旨在询问整个基因组的方法,以鉴定新颖的成分并描述与心脏发育的调节有关的基因组特征。除经典的正向遗传筛选外,果蝇全基因组序列的完整注释使新的全基因组方法成为可能,其中包括产生大量用于正向遗传筛选和研究的RNA干扰(RNAi)试剂。正常和实验操作条件下发育中的心脏的转录组和蛋白质组。此外,已经进行了全基因组染色质免疫沉淀实验,目的是确定主要心源性转录因子的完整基因组结合位点,它们的相关靶标基因以及驱动心源性的调控网络的更完整图片。这篇综述将概述果蝇心脏发育的这些全基因组方法以及对获得的信息的计算分析,这些信息最终旨在在系统水平上对该过程进行描述。

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