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How Golden is Silence? Teaching Undergraduates the Power and Limits of RNA Interference

机译:沉默有多金黄?指导大学生RNA干扰的力量和局限性

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It is hard and getting harder to strike a satisfying balance in teaching. Time dedicated to student-generated models or ideas is often sacrificed in an effort to “get through the syllabus.” I describe a series of RNA interference (RNAi) experiments for undergraduate students that simultaneously explores fundamental concepts in gene regulation, develops cutting-edge laboratory skills, and embraces student-directed learning. Students design a small interfering RNA (siRNA) against luciferase, add it to cells expressing this gene, and then quantitatively assess the siRNA's effect on both intended and unintended targets, using a luciferase assay and a DNA microarray. Because both RNAi and microarray technologies are relatively new, with no clear consensus on their analysis or limitations, students are encouraged to explore different approaches to the design of their reagents and interpretations of their data. The ability to creatively formulate a hypothesis-driven experimental approach to a scientific question and to critically evaluate collected data is stressed. Equally important, this experiment emphasizes how modern scientific ideas emerge, are debated, tested, and decided.
机译:在教学中要达到令人满意的平衡越来越困难。通常会牺牲学生专用于模型或想法的时间,以“通过课程提纲”。我描述了一系列针对本科生的RNA干扰(RNAi)实验,这些实验同时探索了基因调控的基本概念,发展了前沿的实验室技能并接受了学生指导的学习。学生设计一种针对萤光素酶的小干扰RNA(siRNA),将其添加到表达该基因的细胞中,然后使用萤光素酶测定法和DNA微阵列定量评估siRNA对既定目标和非预期目标的影响。由于RNAi和微阵列技术都是相对较新的技术,对它们的分析或局限性没有明确的共识,因此鼓励学生探索试剂设计和数据解释的不同方法。强调了创造性地提出假设驱动的实验方法以解决科学问题并严格评估收集到的数据的能力。同样重要的是,该实验强调现代科学思想如何出现,辩论,检验和决定。

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