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首页> 外文期刊>The Journal of Experimental Biology >Bringing immersive science to undergraduate laboratory courses using CRISPR gene knockouts in frogs and butterflies
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Bringing immersive science to undergraduate laboratory courses using CRISPR gene knockouts in frogs and butterflies

机译:将沉浸式科学带入本科实验室课程,在青蛙和蝴蝶中使用CRISPR基因淘汰赛

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摘要

The use of CRISPR/Cas9 for gene editing offers new opportunities for biology students to perform genuine research exploring the gene-to-phenotype relationship. It is important to introduce the next generation of scientists, health practitioners and other members of society to the technical and ethical aspects of gene editing. Here, we share our experience leading hands-on undergraduate laboratory classes, where students formulate hypotheses regarding the roles of candidate genes involved in development, perform loss-of-function experiments using programmable nucleases and analyze the phenotypic effects of mosaic mutant animals. This is enabled by the use of the amphibian Xenopus laevis and the butterfly Vanessa cardui, two organisms that reliably yield hundreds of large and freshly fertilized eggs in a scalable manner. Frogs and butterflies also present opportunities to teach key biological concepts about gene regulation and development. To complement these practical aspects, we describe learning activities aimed at equipping students with a broad understanding of genome editing techniques, their application in fundamental and translational research, and the bioethical challenges they raise. Overall, our work supports the introduction of CRISPR technology into undergraduate classrooms and, when coupled with classroom undergraduate research experiences, enables hypothesis-driven research by undergraduates.
机译:使用CRISPR / CAS9用于基因编辑为生物学学生进行了新的机会,以便进行真正的研究探索基因对表型关系。重要的是要将下一代科学家,卫生从业人员和社会其他成员介绍到基因编辑的技术和伦理方面。在这里,我们分享我们的经验领先的实践本科实验室课程,学生制定关于候选基因的作用的假设,使用可编程核酸酶进行函数丧失实验,并分析马赛克突变动物的表型效应。这是通过使用Amphibian Xenopus Laevis和Butterfly Vanessa Candui,两个生物能够以可扩展的方式可靠地产生数百个大型和新肥蛋的生物。青蛙和蝴蝶还提供了教导基因调控和发展的关键生物学概念的机会。为了补充这些实践方面,我们描述了旨在为学生提供广泛理解的学习活动,他们在基本和翻译研究中的应用以及他们提高的生态挑战。总体而言,我们的工作支持将CRISPR技术引入本科教室,并且在加上课堂本科研究经验时,大学生可以通过大学生进行假设驱动的研究。

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