Guzman Karen, Bartlett John
Department of Biological Sciences, Campbell University, Buies Creek, NC 27506, USA.
Biochem Mol Biol Educ. 2012 Sep-Oct;40(5):320-7. doi: 10.1002/bmb.20638. Epub 2012 Aug 29.
Biological systems and living processes involve a complex interplay of biochemicals and macromolecular structures that can be challenging for undergraduate students to comprehend and, thus, misconceptions abound. Protein synthesis, or translation, is an example of a biological process for which students often hold many misconceptions. This article describes an exercise that was developed to illustrate the process of translation using simple objects to represent complex molecules. Animations, 3D physical models, computer simulations, laboratory experiments and classroom lectures are also used to reinforce the students' understanding of translation, but by focusing on the simple manipulatives in this exercise, students are better able to visualize concepts that can elude them when using the other methods. The translation exercise is described along with suggestions for background material, questions used to evaluate student comprehension and tips for using the manipulatives to identify common misconceptions.
生物系统和生命过程涉及生物化学物质和大分子结构的复杂相互作用,这对于本科生来说理解起来可能具有挑战性,因此误解比比皆是。蛋白质合成,即翻译,是一个学生常常存在诸多误解的生物过程实例。本文描述了一项练习,该练习通过使用简单物体来代表复杂分子,以阐释翻译过程。动画、3D实物模型、计算机模拟、实验室实验和课堂讲授也被用于强化学生对翻译的理解,但通过专注于本练习中的简单操作工具,学生能够更好地将那些使用其他方法时可能难以理解的概念可视化。文中介绍了翻译练习,以及背景材料建议、用于评估学生理解情况的问题,还有使用操作工具来识别常见误解的技巧。