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Arun Richard Chandrasekaran – Journal of Chemical Education, 2023
The field of DNA nanotechnology has grown rapidly in the past decade and has expanded to multiple laboratories. While lectures in DNA nanotechnology have been introduced in some institutions, laboratory components at the undergraduate level are still lacking. Undergraduate students predominantly learn about DNA nanotechnology through their…
Descriptors: Genetics, Technology, Microbiology, Undergraduate Study
Heinrich, Benedikt; Graulich, Nicole; Vázquez, Olalla – Journal of Chemical Education, 2020
The complexity of the world's current grand challenges demands interdisciplinary approaches. The education of future scientists must cross the silos of the traditional disciplines; however, there is still a strong reluctance to tear such walls down. Here, we describe an integrative chemical biology course focused on epigenetics that strives to…
Descriptors: Graduate Students, Masters Programs, College Science, Science Education
Hubbard, Amelia R.; Monnig, Laurel A. – Science & Education, 2020
Exposure to information about genetics is at an all-time high, while a full understanding of the biocultural complexity of human difference is low. This paper demonstrates the value of an "anthropological approach" to enhance genetics education in biology, anthropology, and other related disciplines, when teaching about human differences…
Descriptors: Anthropology, College Science, Science Instruction, Genetics
Mavor, David Carl – ProQuest LLC, 2017
Ubiquitin is essential for eukaryotic life and varies in only 3 amino acid positions between yeast and humans. However, recent deep sequencing studies indicate that ubiquitin is highly tolerant to single mutations. We hypothesized that this tolerance would be reduced by chemically induced physiologic perturbations. To test this hypothesis, a class…
Descriptors: Biochemistry, College Science, Graduate Students, Genetics
Porter, Sarah E. G.; Barber, Amorette E.; Colella, Olivia K.; Roach, Tanya D. – Journal of Chemical Education, 2018
The MicRoboCop project introduces chemistry students to the concepts and protocols of synthetic biology. MicRoboCop is a biosensor that has been designed for unique applications in forensic chemistry. The lab is carried out in collaboration with an instructor teaching a genetics course. Students in the biology course synthesize biosensors using…
Descriptors: Chemistry, Science Instruction, Science Laboratories, Genetics
Carvalho, Josue´; Queiroz, João A.; Cruz, Carla – Journal of Chemical Education, 2017
Circular dichroism (CD) has emerged as one of the standard biophysical techniques for the study of guaninequadruplex (G4) folding, cation effect, and ligand binding. The utility of this technique is based on its robustness, ease of use, and requirement of only small quantities of nucleic acid. This experiment is also extendable to the classroom…
Descriptors: Science Experiments, Laboratory Experiments, Science Laboratories, Chemistry
Kouh, Minjoon; Merz, River – Journal of College Science Teaching, 2013
We piloted a semester-long, interdisciplinary, introductory science course using recently developed optogenetic technique as a main context. In neuroscience application, this technique introduces the gene of light-sensitive membrane protein into a targeted class of neurons, whose activity then can be modulated with a laser of specific wavelength.…
Descriptors: Interdisciplinary Approach, Science Instruction, Neurosciences, Light
Ellington, Roni; Wachira, James; Nkwanta, Asamoah – CBE - Life Sciences Education, 2010
The focus of this Research Experience for Undergraduates (REU) project was on RNA secondary structure prediction by using a lattice walk approach. The lattice walk approach is a combinatorial and computational biology method used to enumerate possible secondary structures and predict RNA secondary structure from RNA sequences. The method uses…
Descriptors: Genetics, Prediction, Microbiology, Epilepsy
Tra, Yolande V.; Evans, Irene M. – CBE - Life Sciences Education, 2010
"BIO2010" put forth the goal of improving the mathematical educational background of biology students. The analysis and interpretation of microarray high-dimensional data can be very challenging and is best done by a statistician and a biologist working and teaching in a collaborative manner. We set up such a collaboration and designed a course on…
Descriptors: Feedback (Response), Computer Software, Biology, Interdisciplinary Approach
Nadolski, Jeremy; Smith, Lee Ann – PRIMUS, 2010
As technology and science advance, the boundary between the disciplines begins to blur, emphasizing that it is now, more than ever, a requirement to have a solid background in multiple fields to fully understand emerging scientific advances. As faculty, we need to equip our undergraduate students not only with an introduction to these modern…
Descriptors: Undergraduate Students, Student Research, Data Analysis, Teaching Methods
Rowland-Goldsmith, Melissa – Biochemistry and Molecular Biology Education, 2009
DNA microarray is an ordered grid containing known sequences of DNA, which represent many of the genes in a particular organism. Each DNA sequence is unique to a specific gene. This technology enables the researcher to screen many genes from cells or tissue grown in different conditions. We developed an undergraduate lecture and laboratory…
Descriptors: Interdisciplinary Approach, Quality Control, Genetics, Laboratories
Walker, David E.; Lutz, Gary P.; Alvarez, Consuelo J. – CBE - Life Sciences Education, 2008
Integrating advanced biological techniques into instruction at non-R1 institutions can prove to be a challenge. Here, we report the creation of a model for the introduction of gene expression microarray technology into a research laboratory. A student assessment tool was used to evaluate: (1) technical skill development; (2) cross-disciplinary…
Descriptors: Science Instruction, College Science, Genetics, Technology
Crouse, David T. – Journal of Chemical Education, 2007
A method is described for teaching the analysis of X-ray diffraction of DNA through a series of steps utilizing the original methods used by James Watson, Francis Crick, Maurice Wilkins and Rosalind Franklin. The X-ray diffraction pattern led to the conclusion of the basic helical structure of DNA and its dimensions while basic chemical principles…
Descriptors: Biochemistry, Genetics, Radiology, Teaching Methods
Allen, Garland E. – Amer Biol Teacher, 1970
Advocates the study of the history of science as a means of relating science to other academic fields. Discusses the limitations of the case history approach. Suggests introductory science courses coupled with a history of science course. Indicates how a unit on the historyof genetics could fit into a history of science course and relate to an…
Descriptors: Biology, College Science, Curriculum Development, Genetics
Jez, Joseph M.; Schachtman, Daniel P.; Berg, R. Howard; Taylor, Christopher G.; Chen, Sixue; Hicks, Leslie M.; Jaworski, Jan G.; Smith, Thomas J.; Nielsen, Erik; Pikaard, Craig S. – Biochemistry and Molecular Biology Education, 2007
Studies of protein function increasingly use multifaceted approaches that span disciplines including recombinant DNA technology, cell biology, and analytical biochemistry. These studies rely on sophisticated equipment and methodologies including confocal fluorescence microscopy, mass spectrometry, and X-ray crystallography that are beyond the…
Descriptors: Graduate Students, Genetics, Science Laboratories, Cytology
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