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Taveirne, M. E.

Publications and source records attributed to Taveirne, M. E..

2 recordsLinked to original sources

Redesign of an Undergraduate General Microbiology Lab to Include Authentic Discovery-Driven Research on Cucumber Fermentations

Many undergraduate introductory microbiology laboratory courses teach basic principles of bacteriology using classical protocol-based experiments, with limited critical thinking and inquiry-based learning practices. We initiated a comprehensive redesign in our General Microbiology Laboratory course to promote scientific critical and creative thinking, while strengthening core microbiology concepts and skills. As part of the redesign, a series of authentic discovery-driven labs, based on cucumber fermentations, were developed as an independent research module within the course curriculum. Integrating discovery-driven labs allowed students to be engaged problem solvers, applying the scientific process to develop hypotheses, design experiments, utilize quantitative reasoning, and effectively communicate results. The inquiry-guided research project was developed to evaluate the minimum concentration of salt (NaCl) required in fermentation brine to safely, and effectively, ferment cucumbers. Over 5 weeks, students assess different aspects of the fermentation process, including quantifying bacterial populations with differential and selective media, measuring pH and glucose concentration of brine solutions, and characterizing the microbial metabolic potential. Additionally, students isolate an unknown bacterium from their fermentations, identifying and characterizing the isolate using 16S rRNA gene sequencing and metabolic tests. Throughout the research project, students collect, graph, and analyze their observations, culminating in students creating and presenting a scientific research poster. With this lab redesign, students generate new knowledge contributing to our understanding of microbial ecology within food fermentations, learn core microbiology skills and techniques, and develop critical and creative thinking skills. The impact of their research is valuable to science educators, researchers, and industry partners.

scientific communication and education

A Cross-Platform Comparison of Student’s Perceptions of the Learning Environment in an Introductory Microbiology Course

AbstractStudents positive perceptions of the learning environment increase retention and persistence in STEM disciplines. This study presents results from a Learning Environment Questionnaire administered at the beginning and end of the semester in a redesigned general/introductory microbiology course offered in traditional lecture, flipped and online sections. Split-sample t-tests and chi-squared tests were used for cross-section and within section analyses, respectively. The findings support the study hypothesis that student perceptions of the learning environment will vary as a function of platform. This work demonstrates the additional effect of the time in the semester when students complete the questionnaire and this effect on students perceptions over the course of the semester relative to their initial perceptions. The results of this study offer insight on student perceptions of the learning environment as universities embrace online education in introductory and gateway courses as a response to rising student enrollments and diminishing resources.

scientific communication and education