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An Inquiry-Based Laboratory Module to Promote Understanding of the Scientific Method and Bacterial Conjugation ?

机译:一个基于查询的实验室模块,以促进对科学方法和细菌结合的理解?

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Students are engaged and improve their critical thinking skills in laboratory courses when they have the opportunity to design and conduct inquiry-based experiments that generate novel results. A discovery-driven project for a microbiology, genetics, or multidisciplinary research laboratory course was developed to familiarize students with the scientific method. In this multi-lab module, students determine whether their chosen stress conditions induce conjugation and/or cell death of the model BSL-1 Gram-positive bacterium Bacillus subtilis. Through consultation of the primary literature, students identify conditions or chemicals that can elicit DNA damage, the SOS response, and/or cellular stress. In groups, students discuss their selected conditions, develop their hypotheses and experimental plans, and formulate their positive and negative controls. Students then subject the B. subtilis donor cells to the stress conditions, mix donors with recipients to allow mating, and plate serial dilutions of the mixtures on selective plates to measure how the treatments affect conjugation frequency and donor cell viability. Finally, students analyze and discuss their collective data in light of their controls. The goals of this module are to encourage students to be actively involved in the scientific process while contributing to our understanding of the conditions that stimulate horizontal gene transfer in bacteria.
机译:当学生有机会设计和进行基于探究的实验以产生新颖的结果时,他们就会参与并提高他们在实验室课程中的批判性思维能力。为微生物学,遗传学或多学科研究实验室课程开发了以发现为导向的项目,以使学生熟悉科学方法。在这个多实验室模块中,学生将确定他们选择的应激条件是否引起模型BSL-1革兰氏阳性细菌枯草芽孢杆菌的结合和/或细胞死亡。通过查阅原始文献,学生可以确定会引起DNA损伤,SOS反应和/或细胞应激的状况或化学物质。在小组中,学生讨论他们选择的条件,发展他们的假设和实验计划,并制定他们的正面和负面对照。然后,学生将枯草芽孢杆菌供体细胞置于压力条件下,将供体与受体混合以使其交配,并在选择性平板上平板连续稀释混合物,以测量处理如何影响缀合频率和供体细胞活力。最后,学生根据自己的控制来分析和讨论他们的集体数据。本单元的目的是鼓励学生积极参与科学过程,同时加深我们对刺激细菌水平基因转移的条件的理解。

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