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The Introduction of Metagenomics into an Undergraduate Biochemistry Laboratory Course Yielded a Predicted Reductase That Decreases Triclosan Susceptibility in Escherichia coli

机译:将元基因组学引入本科生化学实验室课程产生了可预测的还原酶,可降低大肠杆菌中的三氯生敏感性。

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摘要

Traditional undergraduate science classes often include a laboratory component aimed at enabling the students to experience the classroom topics firsthand. Typically, these experiments are chosen because they have known outcomes that will clearly demonstrate particular aspects of scientific theory. While this approach has its benefits in skill development and concept reinforcement, the lack of novelty inherent in repeating experiments that have been repeated for many years does not accurately convey the feeling of true scientific discovery to the students. In this work, we have designed and implemented a series of experiments into an undergraduate biochemistry curriculum that incorporates the opportunity for scientific discovery, while simultaneously creating an environment for learning routine laboratory techniques. Through this set of experiments, students enrolled in the course were successful in identifying and beginning to characterize an unknown bacterial gene that confers increased tolerance to triclosan on its host.
机译:传统的本科科学课通常包括一个实验室部分,旨在使学生能够亲身体验课堂主题。通常,选择这些实验是因为它们具有已知的结果,这些结果将清楚地证明科学理论的特定方面。尽管这种方法在技能开发和概念增强方面有其好处,但是重复了很多年的重复实验所固有的新颖性不足,无法将正确的科学发现感传达给学生。在这项工作中,我们已经将一系列实验设计和实施到了本科生化学课程中,该课程结合了科学发现的机会,同时创造了学习常规实验室技术的环境。通过这组实验,参加该课程的学生成功地识别并开始表征未知细菌基因,该基因可提高宿主对三氯生的耐受性。

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