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Improving Student Outcomes with an Adaptable Molecular Cloning Course-Based Undergraduate Research Experience
Published on: November 15, 2024
Culturally relevant inquiry-based laboratory module implementations in upper-division genetics and cell biology
Dimuth Siritunga1, María Montero-Rojas, Katherine Carrero
1Department of Biology, University of Puerto Rico, Mayagüez. dimuth.siritunga@upr.edu
CBE Life Sciences Education
|September 3, 2011
Summary
This study introduces a culturally relevant teaching model using cassava to boost minority student engagement in undergraduate science research. The approach improved content knowledge and research skills, fostering greater interest in science careers.
Area of Science:
- Undergraduate science education
- Culturally relevant pedagogy
- Genetics and cell biology research
Background:
- Minority students are underrepresented in science, technology, engineering, and mathematics (STEM) PhDs.
- Hands-on research experiences are crucial for encouraging students to pursue research careers.
- Traditional lab courses may not adequately engage all student demographics.
Purpose of the Study:
- To present a model for implementing laboratory research in undergraduate teaching labs.
- To utilize a culturally relevant approach to increase student engagement.
- To assess the model's impact on content knowledge and learning perceptions.
Main Methods:
- Laboratory modules were developed for genetics and cell biology courses.
- Cassava, a culturally relevant crop, was used as the central theme.
- Students characterized Puerto Rican cassava, comparing field samples to known lineages.
Main Results:
- The novel approach facilitated student learning and engagement in characterizing cassava.
- Significant improvements in content knowledge were observed in both genetics (66%, 55%) and cell biology (24%, 15%) courses over two semesters.
- Students gained valuable research skills through relatable problem-solving.
Conclusions:
- The pedagogical model effectively enhances student learning and engagement in STEM.
- Culturally relevant research experiences can improve content knowledge and professional competitiveness.
- This approach can help broaden participation in science and engineering fields.
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