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Showing 1 to 15 of 50 results Save | Export
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Thurtle-Schmidt, Deborah M.; Lo, Te-Wen – Biochemistry and Molecular Biology Education, 2018
Disrupting a gene to determine its effect on an organism's phenotype is an indispensable tool in molecular biology. Such techniques are critical for understanding how a gene product contributes to the development and cellular identity of organisms. The explosion of genomic sequencing technologies combined with recent advances in genome-editing…
Descriptors: Science Instruction, Molecular Biology, Genetics, Undergraduate Study
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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
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Gerczei, Timea – Journal of Chemical Education, 2017
A laboratory sequence is described that is suitable for upper-level biochemistry or molecular biology laboratories that combines project-based and traditional laboratory experiments. In the project-based sequence, the individual laboratory experiments are thematically linked and aim to show how a bacterial antibiotic sensing noncoding RNA (the…
Descriptors: Biochemistry, Active Learning, Student Projects, Laboratory Experiments
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Davenport, K. D.; Milks, Kirstin Jane; Van Tassell, Rebecca – American Biology Teacher, 2015
Analyzing evolutionary relationships requires that students have a thorough understanding of evidence and of how scientists use evidence to develop these relationships. In this lesson sequence, students work in groups to process many different lines of evidence of evolutionary relationships between ungulates, then construct a scientific argument…
Descriptors: Science Instruction, Evaluation, Misconceptions, Scientific Concepts
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Braun, Gregory; Tierney, Dennis; Schmitzer, Heidrun – Physics Teacher, 2011
Rosalind Franklin, a chemical physicist (1920-1958), used x-ray diffraction to determine the structure of DNA. What exactly could she read out from her x-ray pattern, shown in Fig. 1? In lecture notes dated November 1951, R. Franklin wrote the following: "The results suggest a helical structure (which must be very closely packed) containing 2, 3…
Descriptors: Genetics, Women Scientists, Biophysics, Gender Bias
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Sultana, Khalida; van Rooy, Wilhelmina – Teaching Science, 2009
Extracting DNA from fruit and vegetables provides students with hands-on opportunities to engage with a visualisation of genetic material that can later be supported by ICT and practical model making. Here is a quick, cheap and easy way to extract DNA from strawberries that avoids the mess involved in other DNA extractions, such as from dried…
Descriptors: Genetics, Food, Hands on Science, Science Experiments
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Keyes, Carol A.; Subramanian, Senthil; Yu, Oliver – Bioscene: Journal of College Biology Teaching, 2009
Hairy root transformation has been widely adapted in plant laboratories to rapidly generate transgenic roots for biochemical and molecular analysis. We present hairy root transformations as a versatile and adaptable model system for a wide variety of undergraduate laboratory courses and research. This technique is easy, efficient, and fast making…
Descriptors: Biotechnology, Biochemistry, Undergraduate Students, College Science
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Ouyang, Liming; Ge, Chongtao; Wu, Haizhen; Li, Suxia; Zhang, Huizhan – Biochemistry and Molecular Biology Education, 2009
Individual genome DNA was extracted fast from oral swab and followed up with PCR specific for codon 248 of "p53" tumor suppressor gene. "Msp"I restriction mapping showed the G-C mutation in codon 248, which closely relates to cancer susceptibility. Students learn the concepts, detection techniques, and research significance of point mutations or…
Descriptors: Genetics, Science Instruction, Scientific Concepts, Science Laboratories
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Carson, Tobin M.; Bradley, Sharonda Q.; Fekete, Brenda L.; Millard, Julie T.; LaRiviere, Frederick J. – Journal of Chemical Education, 2009
Recent advances in canine genomics have allowed the development of highly distinguishing methods of analysis for both nuclear and mitochondrial DNA. We describe a laboratory exercise suitable for an undergraduate biochemistry course in which the polymerase chain reaction is used to amplify hypervariable regions of DNA from dog hair and saliva…
Descriptors: Genetics, Science Laboratories, Biochemistry, Animals
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Li, Suxia; Wu, Haizhen; Zhao, Jian; Ou, Ling; Zhang, Yuanxing – Biochemistry and Molecular Biology Education, 2010
In an effort to achieve high success in knowledge and technique acquisition as a whole, a biochemistry and molecular biology experiment was established for high-grade biotechnology specialty students after they had studied essential theory and received proper technique training. The experiment was based on cloning and expression of alkaline…
Descriptors: Experimental Groups, Biotechnology, Molecular Biology, Biochemistry
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Knutson, Kristopher; Smith, Jennifer; Wallert, Mark A.; Provost, Joseph J. – Biochemistry and Molecular Biology Education, 2010
A successful laboratory experience provides the foundation for student success, creating active participation in the learning process. Here, we describe a new approach that emphasizes research, inquiry and problem solving in a year-long biochemistry experience. The first semester centers on the purification, characterization, and analysis of a…
Descriptors: Motivation, Biochemistry, Inquiry, Laboratory Training
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Szeberenyi, Jozsef – Biochemistry and Molecular Biology Education, 2008
The classic experiment presented in this problem-solving test was designed to identify the template molecules of translation by analyzing the synthesis of phage proteins in "Escherichia coli" cells infected with bacteriophage T4. The work described in this test led to one of the most seminal discoveries of early molecular biology: it dealt a…
Descriptors: Genetics, Biochemistry, Molecular Biology, Problem Solving
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Shultz, Jeffry – Journal of Science Education and Technology, 2009
I present a laboratory procedure for illustrating transcription, post-transcriptional modification, gene conservation, and comparative genetics for use in undergraduate biology education. Students are individually assigned genes in a targeted biochemical pathway, for which they design and test polymerase chain reaction (PCR) primers. In this…
Descriptors: Laboratory Procedures, Genetics, Biology, Science Instruction
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Szeberenyi, Jozsef – Biochemistry and Molecular Biology Education, 2008
Mutational inactivation of a specific gene is the most powerful technique to analyze the biological function of the gene. This approach has been used for a long time in viruses, bacteria, yeast, and fruit fly, but looked quite hopeless in more complex organisms. Targeted inactivation of specific genes (also known as knock-out mutation) in mice is…
Descriptors: Genetics, Biology, Problem Solving, Science Instruction
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Furge, Laura Lowe; Winter, Michael B.; Meyers, Jacob I.; Furge, Kyle A. – Biochemistry and Molecular Biology Education, 2008
Comprehensive measurement of gene expression using high-density nucleic acid arrays (i.e. microarrays) has become an important tool for investigating the molecular differences in clinical and research samples. Consequently, inclusion of discussion in biochemistry, molecular biology, or other appropriate courses of microarray technologies has…
Descriptors: Measurement Techniques, Diseases, Cancer, Science Instruction
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