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A Multifunctional Mutagenesis System for Analysis of Gene Function in Zebrafish

机译:用于分析斑马鱼基因功能的多功能诱变系统

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Since the sequencing of the human reference genome, many human disease-related genes have been discovered. However, understanding the functions of all the genes in the genome remains a challenge. The biological activities of these genes are usually investigated in model organisms such as mice and zebrafish. Large-scale mutagenesis screens to generate disruptive mutations are useful for identifying and understanding the activities of genes. Here, we report a multifunctional mutagenesis system in zebrafish using the maize Ds transposon. Integration of the Ds transposable element containing an mCherry reporter for protein trap events and an EGFP reporter for enhancer trap events produced a collection of transgenic lines marking distinct cell and tissue types, and mutagenized genes in the zebrafish genome by trapping and prematurely terminating endogenous protein coding sequences. We obtained 642 zebrafish lines with dynamic reporter gene expression. The characterized fish lines with specific expression patterns will be made available through the European Zebrafish Resource Center (EZRC), and a database of reporter expression is available online (http://fishtrap.warwick.ac.uk/). Our approach complements other efforts using zebrafish to facilitate functional genomic studies in this model of human development and disease.
机译:自人类参考基因组测序以来,已发现许多与人类疾病相关的基因。然而,了解基因组中所有基因的功能仍然是一个挑战。这些基因的生物学活性通常在模型生物如小鼠和斑马鱼中进行研究。进行诱变突变的大规模诱变筛选对于鉴定和了解基因的活性非常有用。在这里,我们报告了使用玉米Ds转座子的斑马鱼多功能诱变系统。 Ds转座因子的整合包含蛋白捕获事件的mCherry报道分子和增强子捕获事件的EGFP报道分子,通过捕获和过早终止内源蛋白编码,产生了一系列标记不同细胞和组织类型的转基因株系,以及斑马鱼基因组中的诱变基因。序列。我们获得了642条具有动态报告基因表达的斑马鱼品系。可通过欧洲斑马鱼资源中心(EZRC)获得具有特定表达模式的特征化鱼类系,并可在线获得报告基因表达数据库()。我们的方法补充了使用斑马鱼促进在人类发展和疾病模型中进行功能基因组研究的其他努力。

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