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Cellular Mechanisms of Drosophila Heart Morphogenesis

机译:果蝇心脏形态发生的细胞机制

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Many of the major discoveries in the fields of genetics and developmental biology have been made using the fruit fly, Drosophila melanogaster. With regard to heart development, the conserved network of core cardiac transcription factors that underlies cardiogenesis has been studied in great detail in the fly, and the importance of several signaling pathways that regulate heart morphogenesis, such as Slit/Robo, was first shown in the fly model. Recent technological advances have led to a large increase in the genomic data available from patients with congenital heart disease (CHD). This has highlighted a number of candidate genes and gene networks that are potentially involved in CHD. To validate genes and genetic interactions among candidate CHD-causing alleles and to better understand heart formation in general are major tasks. The specific limitations of the various cardiac model systems currently employed (mammalian and fish models) provide a niche for the fly model, despite its evolutionary distance to vertebrates and humans. Here, we review recent advances made using the Drosophila embryo that identify factors relevant for heart formation. These underline how this model organism still is invaluable for a better understanding of CHD.
机译:遗传和发育生物学领域的许多重大发现都是使用果蝇果蝇(Drosophila melanogaster)进行的。在心脏发育方面,动态研究了构成心脏发生基础的核心心脏转录因子的保守网络,并且在研究中首次显示了调节心脏形态发生的几种信号通路的重要性,例如Slit / Robo。飞行模型。最近的技术进步导致可从先天性心脏病(CHD)患者获得的基因组数据大大增加。这突出了许多可能与冠心病有关的候选基因和基因网络。验证候选冠心病等位基因之间的基因和遗传相互作用以及更好地了解心脏的形成通常是主要任务。尽管它与脊椎动物和人类的进化距离很大,但目前使用的各种心脏模型系统(哺乳动物和鱼类模型)的特定局限性为飞行模型提供了一个利基。在这里,我们回顾了使用果蝇胚胎识别与心脏形成相关的因素的最新进展。这些强调了这种模式生物对于更好地了解冠心病仍具有不可估量的价值。

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