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A Choose-Your-Own Classroom-Based Activity That Promotes Scientific Inquiry about RNA Interference

机译:一种基于自己选择的课堂活动促进对RNA干扰的科学询问

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摘要

RNA interference (RNAi), the process that results in the degradation of a target gene’s mRNA, is a fundamental part of eukaryotic gene regulation and is also an important molecular technique that allows for experimental manipulation of gene expression without altering DNA sequences. Despite the importance of RNAi, there have been relatively few lecture-based activities designed to teach about the consequences of this process and counter common misconceptions. I present here an inquiry-based activity that is centered around a “choose your own experiment” design where students generate hypotheses and critically evaluate their ideas by choosing several simulated experiments. The activity presents students with one of the original puzzling observations, the discovery that triggering overexpression of a given gene in a flower resulted in an opposite change in phenotype than expected, and the subsequent discovery that there was a dramatic decrease of that gene’s mRNA, that sparked the discovery of RNAi. Students then propose a molecular mechanism for these results before using a limited budget of funding to simulate their choice of experiments. Simulated results are provided for these experiments, and students must work together to interpret and discuss these results before deciding on the next experiment. I provide a guide for instructors on how to implement this activity, with suggestions on how to vary the activity to fit different class sizes as well as an abbreviated version for instructors who are short on time. Finally, I include an aligned assessment so that instructors may check student learning about the impacts of RNAi.
机译:RNA干扰(RNAi)是导致靶基因mRNA降解的过程,是真核基因调控的基本组成部分,也是一项重要的分子技术,可在不改变DNA序列的情况下进行基因表达的实验操作。尽管RNAi的重要性,但是相对较少的基于讲座的活动旨在教导人们该过程的后果并应对常见的误解。我在这里提出一个基于探究的活动,围绕“选择自己的实验”设计,在该设计中学生生成假设并通过选择几个模拟实验来批判性地评估他们的想法。该活动为学生提供了一个令人费解的原始观察结果:发现触发花中给定基因的过度表达导致表型发生与预期相反的变化,随后发现该基因的mRNA急剧下降,引发了RNAi的发现。然后,学生在使用有限的资金预算来模拟他们的实验选择之前,为这些结果提出分子机制。为这些实验提供了模拟结果,在决定下一个实验之前,学生必须共同努力以解释和讨论这些结果。我为教师提供了有关如何实施此活动的指南,并提供有关如何更改活动以适合不同班级人数的建议,以及为时间紧缺的教师提供的缩写版本。最后,我进行了一项统一评估,以便教师可以检查学生对RNAi影响的了解。

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