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Liao, Min-Ken (Ed.)ABSTRACT The Genomics Education Partnership (GEP;thegep.org) is a collaboration of more than 260 faculty from over 200 colleges and universities across the continental United States and Puerto Rico, all of whom are engaged in bringing Course-based Undergraduate Research Experiences (CUREs) centered in genomics and bioinformatics to their students. The purpose of the GEP-CURE is to ensure all undergraduate students have access to research experiences in genomics, regardless of the funding and resources available at their institutions. The GEP community provides many resources to facilitate implementation of the genomics curriculum at collaborating institutions, including extensive support for both faculty and undergraduate students. Faculty receive training to implement the curriculum, ongoing professional development, access to updated curriculum, and a community of practitioners. During the COVID-19 pandemic, the GEP developed a virtual learning assistant (LA) program to provide real-time support in GEP activities and research to all students, regardless of their institution, while they were participating in the GEP-CURE. A mixed-methods descriptive study was conducted about this program and draws from quantitative data gathered about the scope and use of the program, as well as the value of the program, as indicated by the undergraduates themselves from their post-course survey responses. Additionally, seven LAs who served in this role between 2021 and 2023 participated in interviews to help the GEP better understand how this resource was used by GEP students, the needs of the students, and to identify the conditions in which this resource could be replicated in other courses.more » « lessFree, publicly-accessible full text available April 24, 2026
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The Genomics Education Partnership (GEP), a consortium of diverse colleges and universities, provides support for integrating genomics research into undergraduate curricula. To increase research opportunities for underrepresented students, GEP is expanding to more community colleges (CC). Genomics research, requiring only a computer with Internet access, may be particularly accessible for two-year institutions with limited research capacity and significant budget constraints. To understand how GEP supports student research at CCs, the authors analyzed student knowledge and self-reported outcomes. It was found that CC student gains were comparable to non-CC student gains, with improvements in attitudes toward science and thriving in science. The early findings suggest that the GEP model of centralized support with flexible implementation of a course-related undergraduate research experience benefits CC students and may help mitigate barriers to implementing research at CCs.more » « less
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Marshall, Pamela Ann (Ed.)ABSTRACT The initial phase of the COVID-19 pandemic changed the nature of course delivery from largely in-person to exclusively remote, thus disrupting the well-established pedagogy of the Genomics Education Partnership (GEP; https://www.thegep.org ). However, our web-based research adapted well to the remote learning environment. As usual, students who engaged in the GEP’s Course-based Undergraduate Research Experience (CURE) received digital projects based on genetic information within assembled Drosophila genomes. Adaptations for remote implementation included moving new member faculty training and peer Teaching Assistant office hours from in-person to online. Surprisingly, our faculty membership significantly increased and, hence, the number of supported students. Furthermore, despite the mostly virtual instruction of the 2020–2021 academic year, there was no significant decline in student learning nor attitudes. Based on successfully expanding the GEP CURE within a virtual learning environment, we provide four strategic lessons we infer toward democratizing science education. First, it appears that increasing access to scientific research and professional development opportunities by supporting virtual, cost-free attendance at national conferences attracts more faculty members to educational initiatives. Second, we observed that transitioning new member training to an online platform removed geographical barriers, reducing time and travel demands, and increased access for diverse faculty to join. Third, developing a Virtual Teaching Assistant program increased the availability of peer support, thereby improving the opportunities for student success. Finally, increasing access to web-based technology is critical for providing equitable opportunities for marginalized students to fully participate in research courses. Online CUREs have great potential for democratizing science education.more » « less
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