Makarevitch Irina, Frechette Cameo, Wiatros Natalia
Department of Biology, Hamline University, Saint Paul, MN 55104
Department of Biology, Hamline University, Saint Paul, MN 55104.
CBE Life Sci Educ. 2015 Fall;14(3). doi: 10.1187/cbe.15-04-0081.
Integration of inquiry-based approaches into curriculum is transforming the way science is taught and studied in undergraduate classrooms. Incorporating quantitative reasoning and mathematical skills into authentic biology undergraduate research projects has been shown to benefit students in developing various skills necessary for future scientists and to attract students to science, technology, engineering, and mathematics disciplines. While large-scale data analysis became an essential part of modern biological research, students have few opportunities to engage in analysis of large biological data sets. RNA-seq analysis, a tool that allows precise measurement of the level of gene expression for all genes in a genome, revolutionized molecular biology and provides ample opportunities for engaging students in authentic research. We developed, implemented, and assessed a series of authentic research laboratory exercises incorporating a large data RNA-seq analysis into an introductory undergraduate classroom. Our laboratory series is focused on analyzing gene expression changes in response to abiotic stress in maize seedlings; however, it could be easily adapted to the analysis of any other biological system with available RNA-seq data. Objective and subjective assessment of student learning demonstrated gains in understanding important biological concepts and in skills related to the process of science.
将基于探究的方法融入课程正在改变本科课堂中科学教学和学习的方式。将定量推理和数学技能纳入真实的生物学本科研究项目已被证明有助于学生培养未来科学家所需的各种技能,并吸引学生投身科学、技术、工程和数学学科。虽然大规模数据分析已成为现代生物学研究的重要组成部分,但学生很少有机会参与大型生物数据集的分析。RNA测序分析是一种能够精确测量基因组中所有基因表达水平的工具,它彻底改变了分子生物学,并为让学生参与真实研究提供了充足机会。我们开发、实施并评估了一系列真实研究实验室练习,将大数据RNA测序分析纳入本科入门课堂。我们的实验室系列专注于分析玉米幼苗对非生物胁迫响应时的基因表达变化;然而,它可以很容易地适用于对任何其他具有可用RNA测序数据的生物系统的分析。对学生学习的客观和主观评估表明,学生在理解重要生物学概念以及与科学过程相关的技能方面都有收获。