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Simply InGEN(E)ious! How Creative DNA Modeling Can Enrich Classic Hands-On Experimentation

机译:简简单单的!创新的DNA建模如何丰富经典的动手实验

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摘要

Innovative 21st-century methods for teaching biology should provide both content knowledge and diverse scientific competencies. The Curriculum Guidelines of the American Society for Microbiology highlight the importance of developing scientific thinking skills, which include the abilities to formulate hypotheses, to communicate fundamental concepts effectively, and to analyze and interpret experimental results. Additionally, contemporary science education should enhance creativity and collaboration as key student assets in its bid to overcome negative perceptions and learning difficulties. In recent years, the expanding movement for so-called “STEAM” approaches (science, technology, engineering, , and math) has increased in STEM curricula. The movement seeks to integrate the arts into science classes to transfer enthusiasm, support individual self-sufficiency, and encourage creative solutions. To meet all these demands, we developed an inquiry-based approach that actively engages students in hands- and minds-on activities on the topic of “decoding the DNA structure” in an outreach laboratory. Since teaching abstract molecular phenomena is a challenge in biology classes, we combine classical experimental tasks (DNA isolation, gel electrophoresis) with creative modeling. The experiments are linked by the modeling phase: immersed in the story of the discovery of the DNA structure, our participants independently construct a DNA model from a box filled with inexpensive craft supplies (e.g., glue, straws, pipe cleaners, beads). After initial pilot testing, the implementation of our approach clearly produced short- and mid-term learning effects among the students, providing a successful example of a STEAM-based approach in a laboratory setting.
机译:21世纪的创新生物学教学方法应提供内容知识和多样化的科学能力。 《美国微生物学会课程指南》强调了发展科学思维能力的重要性,其中包括提出假设,有效传达基本概念以及分析和解释实验结果的能力。此外,当代科学教育应增强创造力和协作能力,将其作为重要的学生资产,以克服负面的观念和学习困难。近年来,STEM课程中所谓的“ STEAM”方法(科学,技术,工程和数学)的发展趋势有所增加。该运动旨在将艺术融入科学课程,以转移热情,支持个人自给自足并鼓励创造性的解决方案。为了满足所有这些需求,我们开发了一种基于查询的方法,该方法可以使学生在外展实验室中积极参与有关“解码DNA结构”主题的动手操作。由于在生物学课上讲授抽象分子现象是一项挑战,因此我们将经典的实验任务(DNA分离,凝胶电泳)与创新的建模相结合。实验与建模阶段相关联:沉浸在发现DNA结构的故事中,我们的参与者从装满廉价手工艺品(例如胶水,吸管,管道清洁剂,珠子)的盒子中独立构建DNA模型。经过初步的试验测试后,我们方法的实施明显在学生中产生了短期和中期学习效果,这是在实验室环境中基于STEAM的方法的成功范例。

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