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Using Saccharomyces cerevisiae to Test the Mutagenicity of Household Compounds: An Open Ended Hypothesis-Driven Teaching Lab

机译:使用酿酒酵母来测试家用化合物的致突变性:开放式假设驱动的教学实验室

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摘要

In our Fundamentals of Genetics lab, students perform a wide variety of labs to reinforce and extend the topics covered in lecture. I developed an active-learning lab to augment the lecture topic of mutagenesis. In this lab exercise, students determine if a compound they bring from home is a mutagen. Students are required to read extensive background material, perform research to find a potential mutagen to test, develop a hypothesis, and bring to the lab their own suspected mutagen. This lab uses a specially developed strain of Saccharomyces cerevisiae, D7, to determine if a compound is a mutagen. Mutagenesis of the D7 genome can lead to a scorable alteration in the phenotypes of this strain. Students outline and carry out a protocol for treatment of the yeast tester strain, utilizing the concept of dose/response and positive and negative controls. Students report on their results using a PowerPoint presentation to simulate giving a scientific presentation. The students' self-assessment of their knowledge indicated that, in all cases, the students felt that they knew more about the assay, mutagenesis, and the relationship between genotype and phenotype (P < 0.05) after completing the exercise.
机译:在我们的“遗传学基础知识”实验室中,学生可以进行各种各样的实验,以强化和扩展讲座中涵盖的主题。我建立了一个主动学习实验室来扩大诱变的讲座主题。在此实验练习中,学生确定他们从家带来的化合物是否是诱变剂。学生需要阅读大量的背景材料,进行研究以找到可能的诱变剂进行测试,提出假设,并将他们自己的可疑诱变剂带入实验室。该实验室使用特制的酿酒酵母菌株D7来确定化合物是否为诱变剂。 D7基因组的诱变可导致该菌株表型的可改变。学生利用剂量/反应以及阳性和阴性对照的概念,概述并执行用于治疗酵母测试菌株的方案。学生使用PowerPoint演示文稿来模拟科学演示,以报告其结果。学生对自己知识的自我评估表明,在所有情况下,学生都认为他们在完成练习后对测定,诱变以及基因型与表型之间的关系有更多的了解(P <0.05)。

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