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Using a Molecular-Genetic Approach to Investigate Bacterial Physiology in a Continuous Research-Based Semester-Long Laboratory for Undergraduates

机译:在连续的以研究为基础的学期较长的大学生实验室中使用分子遗传学方法研究细菌生理学

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摘要

Designing investigative laboratory exercises that encourage critical thinking, problem solving, and independent thought for upper-division biology courses is a difficult but worthwhile task. In an effort to do so, we developed a semester-long, continuous, research-based investigative laboratory that integrates numerous genetic and molecular biology methods into the investigation of a bacterial physiological process. In this lab, students use random Tn5 transposon mutagenesis to create prodigiosin pigment mutants in the bacterium, Serratia marcescens. This is followed by phenotypic characterization, cloning, and sequencing the Tn insertion site to identify genes involved in pigment biosynthesis. During this lab, students gain ample experience performing basic lab techniques while learning about — and applying — methods for elucidating gene function. The approach to the laboratory and the outcomes are intimately integrated into the teaching of many fundamental physiological processes underlying prodigiosin production in bacteria. The result is a cohesive course that integrates the theory and application of molecular genetic techniques with the study of bacterial physiology. Assessments of student learning objectives demonstrated that students greatly improved their understanding of both physiological processes and the genetic techniques used to investigate them. In addition, students felt that this semester-long exercise provided the necessary laboratory experience they needed and desired in preparation for careers in molecular biology, microbiology, and biochemistry.
机译:设计调查性实验室练习,以鼓励批判性思维,解决问题和对上级生物学课程的独立思考是一项艰巨但值得的任务。为了做到这一点,我们建立了一个学期的,连续的,基于研究的调查实验室,该实验室将许多遗传和分子生​​物学方法整合到细菌生理过程的调查中。在这个实验室中,学生使用随机的Tn5转座子诱变技术在粘质沙雷氏菌中创建prodigiosin色素突变体。随后进行表型鉴定,克隆和对Tn插入位点进行测序,以鉴定涉及色素生物合成的基因。在本实验期间,学生在学习(并应用)阐明基因功能的方法的同时,会获得执行基本实验技术的丰富经验。实验室方法和结果已紧密集成到细菌中产黄菌素生产的许多基本生理过程的教学中。结果是一个衔接性课程,将分子遗传技术的理论和应用与细菌生理学研究相结合。对学生学习目标的评估表明,学生大大提高了他们对生理过程和用于研究它们的遗传技术的理解。此外,学生们认为,这个为期一个学期的练习提供了他们为分子生物学,微生物学和生物化学事业的职业准备所需的必要实验室经验。

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