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Beverage-Agarose Gel Electrophoresis: An Inquiry-based Laboratory Exercise with Virtual Adaptation

机译:饮料琼脂糖凝胶电泳:基于咨询的虚拟适应实验

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摘要

A wide range of literature and experience has shown that teaching methods that promote active learning, such as inquiry-based approaches, are more effective than those that rely on passive learning. Gel electrophoresis, one of the most common laboratory techniques in molecular biology, has a wide range of applications in the life sciences. As such, we chose it as a platform to expose high school and undergraduate students to the active process of scientific inquiry in general, while specifically teaching electrophoresis. First, we optimized DNA electrophoresis in the laboratory by using common beverages instead of standard media (e.g., Tris-based media). Second, we adapted this laboratory process of progressive optimization to a Web-based format in which students had to achieve all the same steps of optimization by performing serial electrophoreses. And third, we evaluated the use of this entirely Web-based virtual laboratory exercise in high school and undergraduate biology courses. Students learned fundamental and practical principles of electrophoresis, while experiencing the essential inquiry-based process of optimizing a technique, and they also enjoyed it. Our findings provide a readily accessible, inexpensive, and intriguing technique for teaching electrophoresis and the progressive optimization of a laboratory technique.
机译:大量文献和经验表明,促进主动学习的教学方法(例如基于询问的方法)比依赖被动学习的方法更为有效。凝胶电泳是分子生物学中最常见的实验室技术之一,在生命科学中具有广泛的应用。因此,我们选择它作为平台,使高中生和本科生能够全面了解科学探索的活跃过程,同时专门教授电泳。首先,我们通过使用普通饮料代替标准培养基(例如基于Tris的培养基)来优化实验室中的DNA电泳。其次,我们将这种渐进式优化的实验室过程调整为基于Web的格式,在这种格式中,学生必须通过执行串行电泳来实现所有相同的优化步骤。第三,我们评估了这种完全基于网络的虚拟实验室练习在高中和本科生物学课程中的使用。在学习电泳技术的基本原理和实践原理的同时,他们还体验了基于查询的优化技术的基本过程,他们也很享受。我们的发现为电泳教学和实验室技术的逐步优化提供了一种容易获得,便宜且有趣的技术。

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