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Stephanie A. Carr; Stephanie L. Mathews; Justin A. Pruneski; Nikolas M. Stasulli – Journal of Microbiology & Biology Education, 2024
In this article, we describe curricular materials developed to engage undergraduate students in evolutionary thinking around antibiotic resistance using the MEGA-plate experiment (Microbial Evolution and Growth Arena). This elegant and visual experiment, developed by the Kishony Lab, shows the development of antibiotic resistance on the timescale…
Descriptors: Biochemistry, Science Instruction, Laboratory Experiments, Drug Therapy
Ă…gren, 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
Freeman, Scott; Mukerji, Joya; Sievers, Matt; Beltran, Ismael Barreras; Dickinson, Katie; Dy, Grace E. C.; Gardiner, Amanda; Glenski, Elizabeth H.; Hill, Mariah J.; Kerr, Ben; Monet, Deja; Reemts, Connor; Theobald, Elli; Tran, Elisa T.; Velasco, Vicente; Wachtell, Lexi; Warfield, Liz – CBE - Life Sciences Education, 2023
We developed labs on the evolution of antibiotic resistance to assess the costs and benefits of replacing traditional laboratory exercises in an introductory biology course for majors with a course-based undergraduate research experience (CURE). To assess whether participating in the CURE imposed a cost in terms of exam performance, we implemented…
Descriptors: Microbiology, Science Instruction, Teaching Methods, Course Descriptions
Kong, Yi; Apodaca, Jennifer; Olimpo, Jeffrey T. – International Journal of Science Education, 2022
The Model of the Use of Evolutionary Trees (MUET)-curricular module that systematically and comprehensively introduces the learning of evolutionary trees for the lower-level college students was developed and implemented in an introductory organismal biology laboratory course at a mid-size, doctoral degree-granting institution. A…
Descriptors: Evolution, Biology, Science Instruction, Introductory Courses
Short, Stephen D.; Lastrapes, Katherine A.; Natale, Noelle E.; McBrady, Erin E. – Journal of Research in Science Teaching, 2019
Previous research has noted one's knowledge of and attitudes toward the theory of evolution is negatively predicted by one's political ideology, specifically how conservative the individual identifies, and positively predicted by one's level rational thinking. The present research expands on this past research by examining the roles of political…
Descriptors: Social Attitudes, Science Education, Evolution, Student Attitudes
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
May, S. Randolph – American Biology Teacher, 2014
Students will analyze the coevolution of the predator-prey relationships between "Tyrannosaurus rex" and its prey species using analyses of animal speeds from fossilized trackways, prey-animal armaments, adaptive behaviors, bite marks on prey-animal fossils, predator-prey ratios, and scavenger competition. The students will be asked to…
Descriptors: Biology, Evolution, Science Instruction, Paleontology
Hubler, Tina; Adams, Patti; Scammell, Jonathan – American Biology Teacher, 2015
The molecular basis of evolution is an important and challenging concept for students to understand. In a previous article, we provided some of the scientific background necessary to teach this topic. This article features a series of laboratory activities demonstrating that molecular events can alter the genomes of organisms. These activities are…
Descriptors: Laboratory Experiments, Science Activities, Molecular Biology, Genetics
Suwa, Tomomi; Williamson, Brad – American Biology Teacher, 2014
We present a guided-inquiry biology lesson, using the plant-rhizobium symbiosis as a model system. This system provides a rich environment for developing connections between the big ideas in biology as outlined in the College Board's new AP Biology Curriculum. Students gain experience with the practice of scientific investigation, from…
Descriptors: Science Instruction, Biology, College Science, Science Experiments
Eirin-Lopez, Jose M. – Biochemistry and Molecular Biology Education, 2013
The study of chromatin constitutes one of the most active research fields in life sciences, being subject to constant revisions that continuously redefine the state of the art in its knowledge. As every other rapidly changing field, chromatin biology requires clear and straightforward educational strategies able to efficiently translate such a…
Descriptors: Undergraduate Students, Information Science, Evolution, Physics
Kroneisen, Meike; Erdfelder, Edgar – Journal of Experimental Psychology: Learning, Memory, and Cognition, 2011
Nairne, Thompson, and Pandeirada (2007) discovered a strong and rather general memory advantage for word material processed in a survival-related context. One possible explanation of this effect conceives survival processing as a special form of encoding: Nature specifically "tuned" our memory systems to process and remember…
Descriptors: Foreign Countries, Language Processing, Replication (Evaluation), Evolution