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Introducing Biology Undergraduates to Authentic Research through Grand Challenges in Global Health: Examining Environmental Factors that Influence the Development of Zebrafish Embryos

机译:通过全球健康的巨大挑战将生物学专业的本科生引入真实的研究领域:研究影响斑马鱼胚胎发育的环境因素

摘要

To increase student excitement and engagement in science, a course-based undergraduate research experience (CURE) has been introduced in the curriculum at IUPUI. In Fall 2013, original research projects investigating prenatal alcohol, nicotine and caffeine exposure effects on development of zebrafish embryos was introduced into the Introductory Biology K102 course. This research project was also a part of a new Themed Learning Community (TLC) at IUPUI called “From Molecules to Medicines” that examined grand challenges in global health. In documenting the developmental effects on zebrafish embryos, and designing new protocols to address student research questions, students gained experience with authentic research methods, laboratory techniques, microscopy, image analyses, statistical analyses, scientific writing and presentation skills. This project, especially in a freshman undergraduate lab setting, requires a new way of problem-solving, but greatly facilitates student excitement and engagement in science through the use of research-based high-impact practices for student success and persistence. To continue an inquiry-based lab on global health issues and to keep IUPUI biology curricula current with the rapid rise of bioinformatics, concepts of bioinformatics were introduced into the Cell Biology Laboratory K325 course in Spring, 2014. Students were allowed to work on their own investigatory projects to analyzed zebrafish microarray data to find genes affected after ethanol exposure. Students used NCBI/ Ensembl databases to retrieve the gene/protein sequences, and various freely available tools (GeneBank, Protein Data Bank, BLAST, ClustalW, ExPasy, Phylogenetic Tree) to investigate the evolutionary conservation of genes/proteins affected after ethanol exposure. Student learnt 3D-protein structure construction and observed how 3D-protein structure could change with single amino acid changes. Preliminary assessment indicates that students are gaining an understanding the web-based databases and tools and enjoying the investigatory nature of the lab exercises.
机译:为了增加学生对科学的兴趣和参与度,IUPUI的课程中引入了基于课程的本科研究经验(CURE)。 2013年秋季,“生物学入门K102”课程引入了有关研究胎教酒精,尼古丁和咖啡因暴露对斑马鱼胚胎发育影响的原始研究项目。该研究项目也是IUPUI名为“从分子到药物”的新主题学习社区(TLC)的一部分,该主题研究了全球卫生领域的巨大挑战。在记录对斑马鱼胚胎的发育影响以及设计新的方案以解决学生的研究问题时,学生获得了使用真实的研究方法,实验室技术,显微镜,图像分析,统计分析,科学写作和演讲技巧的经验。这个项目,特别是在大学本科新生的实验室环境中,需要一种新的解决问题的方法,但是通过使用基于研究的高影响力实践来促进学生的成功和毅力,极大地促进了学生的兴奋和对科学的投入。为了继续开展基于查询的全球健康问题实验室,并使IUPUI生物学课程与生物信息学的迅速发展保持同步,2014年春季,细胞信息学K325课程将生物信息学的概念引入了课程。允许学生自行开展工作研究项目分析了斑马鱼的微阵列数据,以发现乙醇暴露后受影响的基因。学生使用NCBI / Ensembl数据库检索基因/蛋白质序列,并使用各种免费工具(GeneBank,蛋白质数据库,BLAST,ClustalW,ExPasy,系统树)来研究乙醇暴露后受影响的基因/蛋白质的进化保守性。学生学习了3D蛋白质结构的构建,并观察了3D蛋白质结构如何随单个氨基酸的变化而变化。初步评估表明,学生正在了解基于Web的数据库和工具,并喜欢实验室练习的调查性质。

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