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Spier, Sarah K.; Dauer, Joseph T. – American Biology Teacher, 2023
There is an emphasis on survival-based selection in biology education that can allow students to neglect other important evolutionary components, such as sexual selection, reproduction, and inheritance. Student understanding of the role of reproduction in evolution is as important as student understanding of the role of survival. Limiting…
Descriptors: Biology, Science Education, Birth, Genetics
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Whitenack, Lisa B.; Drew, Joshua A. – Journal of Biological Education, 2019
Given the importance of phylogenetic trees to understanding common ancestry and evolution, they are a necessary part of the undergraduate biology curriculum. However, a number of common misconceptions, such as reading across branch tips and understanding homoplasy, can pose difficulties in student understanding. Students also may take phylogenetic…
Descriptors: Evolution, Genetics, Paleontology, Biology
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Kirby, Cait S.; Kolber, Natalie; Salih Almohaidi, Asmaa M.; Bierwert, Lou Ann; Saunders, Lori; Williams, Steven; Merritt, Robert – Biochemistry and Molecular Biology Education, 2016
An inversion polymorphism of the filamin and emerin genes at the tip of the long arm of the human X-chromosome serves as the basis of an investigative laboratory in which students learn something new about their own genomes. Long, nearly identical inverted repeats flanking the filamin and emerin genes illustrate how repetitive elements can lead to…
Descriptors: Genetics, Molecular Biology, Molecular Structure, College Science
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Ågren, J. Arvid; Williamson, Robert J.; Campitelli, Brandon E.; Wheeler, Jill – Journal of Biological Education, 2017
Recent years have seen a dramatic increase in our understanding of the social behaviour of microbes. Here, we take advantage of these developments to present an undergraduate laboratory exercise that uses the cooperative flocculating behaviour of yeast ("Saccharomyces sp.") to introduce the concept of inclusive fitness and teach the…
Descriptors: College Science, Undergraduate Study, Science Laboratories, Genetics
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Countryman, Lyn L.; Maroo, Jill D. – American Biology Teacher, 2015
Considerable anecdotal evidence indicates that some of the most difficult concepts that both high school and undergraduate elementary-education students struggle with are those surrounding evolutionary principles, especially speciation. It's no wonder that entry-level biology students are confused, when biologists have multiple definitions of…
Descriptors: Secondary School Science, College Science, Evolution, Scientific Principles
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Price, Rebecca M.; Andrews, Tessa C.; McElhinny, Teresa L.; Mead, Louise S.; Abraham, Joel K.; Thanukos, Anna; Perez, Kathryn E. – CBE - Life Sciences Education, 2014
Understanding genetic drift is crucial for a comprehensive understanding of biology, yet it is difficult to learn because it combines the conceptual challenges of both evolution and randomness. To help assess strategies for teaching genetic drift, we have developed and evaluated the Genetic Drift Inventory (GeDI), a concept inventory that measures…
Descriptors: Genetics, Evolution, Biology, Higher Education
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Davenport, K. D.; Milks, Kirstin Jane; Van Tassell, Rebecca – American Biology Teacher, 2015
Interpreting cladograms is a key skill for biological literacy. In this lesson, students interpret cladograms based on familial relationships and language relationships to build their understanding of tree thinking and to construct a definition of "common ancestor." These skills can then be applied to a true biological cladogram.
Descriptors: Science Instruction, Biology, Genetics, Language Usage
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Hiatt, Anna; Davis, Gregory K.; Trujillo, Caleb; Terry, Mark; French, Donald P.; Price, Rebecca M.; Perez, Kathryn E. – CBE - Life Sciences Education, 2013
To examine how well biology majors have achieved the necessary foundation in evolution, numerous studies have examined how students learn natural selection. However, no studies to date have examined how students learn developmental aspects of evolution (evo-devo). Although evo-devo plays an increasing role in undergraduate biology curricula, we…
Descriptors: Biology, Evolution, Development, Genetics
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Bray Speth, Elena; Shaw, Neil; Momsen, Jennifer; Reinagel, Adam; Le, Paul; Taqieddin, Ranya; Long, Tammy – CBE - Life Sciences Education, 2014
Mutation is the key molecular mechanism generating phenotypic variation, which is the basis for evolution. In an introductory biology course, we used a model-based pedagogy that enabled students to integrate their understanding of genetics and evolution within multiple case studies. We used student-generated conceptual models to assess…
Descriptors: Biology, Science Instruction, College Science, Genetics
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Miralles, Laura; Moran, Paloma; Dopico, Eduardo; Garcia-Vazquez, Eva – Biochemistry and Molecular Biology Education, 2013
Evolution is a main concept in biology, but not many students understand how it works. In this article we introduce the game "DNA Re-EvolutioN" as an active learning tool that uses genetic concepts (DNA structure, transcription and translation, mutations, natural selection, etc.) as playing rules. Students will learn about molecular…
Descriptors: Evolution, Molecular Biology, Science Instruction, Educational Games
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McCabe, Declan J. – American Biology Teacher, 2014
This exercise demonstrates the principle of parsimony in constructing cladograms. Although it is designed using mammalian cranial characters, the activity could be adapted for characters from any group of organisms. Students score categorical traits on skulls and record the data in a spreadsheet. Using the Mesquite software package, students…
Descriptors: Science Activities, Science Laboratories, Biology, Evolution
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Adams, Alison E. M.; Garcia, Jocelyn; Traustadóttir, Tinna – CBE - Life Sciences Education, 2016
Two sections of Genetics and Evolution were taught by one instructor. One group (the fully flipped section) had the entire class period devoted to active learning (with background material that had to be watched before class), and the other group (the partially flipped section) had just a portion of class time spent on active learning (with the…
Descriptors: Science Instruction, Quasiexperimental Design, Undergraduate Study, College Science
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Hobbs, F. Collin; Johnson, Daniel J.; Kearns, Katherine D. – CBE - Life Sciences Education, 2013
One goal of postsecondary education is to assist students in developing expert-level understanding. Previous attempts to encourage expert-level understanding of phylogenetic analysis in college science classrooms have largely focused on isolated, or "one-shot," in-class activities. Using a deliberate practice instructional approach, we…
Descriptors: College Science, Science Instruction, Biology, Skill Development
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Dauer, Joseph T.; Momsen, Jennifer L.; Speth, Elena Bray; Makohon-Moore, Sasha C.; Long, Tammy M. – Journal of Research in Science Teaching, 2013
Research in contemporary biology has become increasingly complex and organized around understanding biological processes in the context of systems. To better reflect the ways of thinking required for learning about systems, we developed and implemented a pedagogical approach using box-and-arrow models (similar to concept maps) as a foundational…
Descriptors: Biology, Science Instruction, Genetics, Evolution
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Beachly, William – American Biology Teacher, 2010
I describe a quantitative approach to three case studies in evolution that can be used to challenge college freshmen to explore the power of natural selection and ask questions that foster a deeper understanding of its operation and relevance. Hemochromatosis, the peppered moth, and hominid cranial capacity are investigated with a common algebraic…
Descriptors: College Freshmen, Case Studies, Mathematics, Biology
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