首页> 美国卫生研究院文献>G3: GenesGenomesGenetics >Transposon-Mediated Transgenesis in the Short-Lived African Killifish Nothobranchius furzeri a Vertebrate Model for Aging
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Transposon-Mediated Transgenesis in the Short-Lived African Killifish Nothobranchius furzeri a Vertebrate Model for Aging

机译:转基因子介导的短寿命非洲锦鲤Nothobranchius furzeri的转基因老化的脊椎动物模型。

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摘要

The African killifish Nothobranchius furzeri is the shortest-lived vertebrate that can be bred in captivity. N. furzeri comprises several wild-derived strains with striking differences in longevity ranging from 3 to 9 months, which makes it a powerful vertebrate model for aging research. The short life cycle of N. furzeri should also facilitate studies on adult traits that are specific to vertebrates. Although progress has been made to generate a genetic linkage map and to start sequencing the genome of N. furzeri, tools to genetically manipulate this species of fish have not yet been developed. Here, we report the first establishment of transgenesis in N. furzeri. We use the Tol2 transposase system to generate transgenic N. furzeri that express green fluorescent protein driven by the Xenopus cytoskeletal actin promoter or the zebrafish heat-shock protein 70 promoter. We successfully generate stable transgenic lines of N. furzeri with germline transmission of integrated transgene. The development of transgenesis in N. furzeri provides a powerful tool to investigate the mechanisms underlying aging and longevity in a short-lived vertebrate model. Transgenesis in this fish will also facilitate the study of other phenotypes, including adult tissue regeneration and cognitive behavior.
机译:非洲金枪鱼Nothobranchius furzeri是寿命最短的脊椎动物,可以人工饲养。 Furzeri猪笼草包含数种野生来源的菌株,其寿命差异显着,范围从3到9个月不等,这使其成为进行衰老研究的强大脊椎动物模型。弗氏猪笼草的生命周期短也应有助于研究脊椎动物特有的成年性状。尽管在生成遗传连锁图谱和开始测序弗氏奈瑟氏球菌的基因组方面已取得进展,但尚未开发出遗传操纵该鱼类的工具。在这里,我们报告了N. furzeri中第一个转基因的建立。我们使用Tol2转座酶系统来生成表达由非洲爪蟾细胞骨架肌动蛋白启动子或斑马鱼热休克蛋白70启动子驱动的绿色荧光蛋白的转基因N. furzeri。我们成功地通过整合转基因的种系传递成功产生了稳定的弗氏猪笼草转基因品系。弗氏烟草中转基因的发展提供了一个强大的工具,可用于研究短寿命脊椎动物模型中衰老和长寿的潜在机制。该鱼的转基因也将促进其他表型的研究,包括成年组织再生和认知行为。

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