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Transgenic fish systems and their application in ecotoxicology

机译:转基因鱼类系统及其在生态毒理学中的应用

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The use of transgenics in fish is a relatively recent development for advancing understanding of genetic mechanisms and developmental processes, improving aquaculture, and for pharmaceutical discovery. Transgenic fish have also been applied in ecotoxicology where they have the potential to provide more advanced and integrated systems for assessing health impacts of chemicals. The zebrafish (Daniorerio) is the most popular fish for transgenic models, for reasons including their high fecundity, transparency of their embryos, rapid organogenesis and availability of extensive genetic resources. The most commonly used technique for producing transgenic zebrafish is via microinjection of transgenes into fertilized eggs. Transposon and meganuclease have become the most reliable methods for insertion of the genetic construct in the production of stable transgenic fish lines. The GAL4-UAS system, where GAL4 is placed under the control of a desired promoter and UAS is fused with a fluorescent marker, has greatly enhanced model development for studies in ecotoxicology. Transgenic fish have been developed to study for the effects of heavy metal toxicity (via heat-shock protein genes), oxidative stress (via an electrophile-responsive element), for various organic chemicals acting through the aryl hydrocarbon receptor, thyroid and glucocorticoid response pathways, and estrogenicity. These models vary in their sensitivity with only very few able to detect responses for environmentally relevant exposures. Nevertheless, the potential of these systems for analyses of chemical effects in real time and across multiple targets in intact organisms is considerable. Here we illustrate the techniques used for generating transgenic zebrafish and assess progress in the development and application of transgenic fish (principally zebrafish) for studies in environmental toxicology. We further provide a viewpoint on future development opportunities.
机译:在鱼类中使用转基因技术是一个相对较新的发展,目的是增进对遗传机制和发育过程的了解,改善水产养殖以及药物开发。转基因鱼还已经应用于生态毒理学,它们有潜力提供更先进和综合的系统来评估化学品对健康的影响。斑马鱼(Daniorerio)是转基因模型中最受欢迎的鱼类,其原因包括高繁殖力,胚胎透明性,快速的器官发生和广泛遗传资源的可用性。生产转基因斑马鱼的最常用技术是通过将转基因显微注射到受精卵中。转座子和大范围核酸酶已成为在稳定的转基因鱼品系生产中插入基因构建体的最可靠方法。 GAL4-UAS系统将GAL4置于所需启动子的控制下,UAS与荧光标记融合,极大地增强了用于生态毒理学研究的模型开发。已经开发出转基因鱼来研究重金属毒性(通过热休克蛋白基因),氧化应激(通过亲电子响应元件),通过芳烃受体,甲状腺和糖皮质激素响应途径起作用的各种有机化学物质的影响。和雌激素。这些模型的灵敏度各不相同,只有极少数能够检测出与环境相关的暴露的响应。尽管如此,这些系统用于实时分析完整生物中多个目标的化学作用的潜力是巨大的。在这里,我们说明了用于产生转基因斑马鱼的技术,并评估了转基因鱼(主要是斑马鱼)的开发和应用进展,以进行环境毒理学研究。我们进一步提供了关于未来发展机会的观点。

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