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Militello, Kevin T. – Biochemistry and Molecular Biology Education, 2013
Epigenetic inheritance is the inheritance of genetic information that is not based on DNA sequence alone. One type of epigenetic information that has come to the forefront in the last few years is modified DNA bases. The most common modified DNA base in nature is 5-methylcytosine. Herein, we describe a laboratory experiment that combines…
Descriptors: Genetics, Heredity, Laboratory Experiments, Science Experiments
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Orel, Vítezslav; Peaslee, Margaret H. – Science & Education, 2015
This historical narrative describes the foundation of education as established by J. A. Comenius (1592-1670). It explores the transfer of Comenius' tenets, utilized and modified through the years, up to their impact upon the ground-breaking experiments of G. Mendel (1822-1884), "the father of genetics". It explores the questions of…
Descriptors: Genetics, Scientific Concepts, Scientific Literacy, Scientific Methodology
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Singh, Gurmukh; Siddiqui, Khalid; Singh, Mankiran; Singh, Satpal – Journal of Educational Technology Systems, 2011
The current research article is based on a simple and practical way of employing the computational power of widely available, versatile software MS Excel 2007 to perform interactive computer simulations for undergraduate/graduate students in biology, biochemistry, biophysics, microbiology, medicine in college and university classroom setting. To…
Descriptors: Heredity, Genetics, Biological Sciences, Medical Education
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McEwen, Birgitta – Journal of Biological Education, 2007
How do we support the enthusiasm children show for biology in school? Unfortunately, lack of exciting practical work and boring biology lessons seem to make science less popular. As a senior lecturer in plant physiology at Karlstad University I have simplified experiments intended for students at university and then tested them on 10-11 year old…
Descriptors: Biology, Genetics, Science Instruction, Heredity
Zallen, Doris T. – Humanities, 1997
Considers the opportunities and ethical issues involved in genetic testing. Reviews the history of genetics from the first discoveries of Gregor Mendel, through the spurious pseudo-science of eugenics, and up to the discovery of DNA by James Watson and Francis Crick. Explains how genetic tests are done. (MJP)
Descriptors: DNA, Ethics, Genetic Engineering, Genetics
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Kinnear, Judith F. – Journal of Biological Education, 1986
Focuses on genetic concepts that form key components of transmission genetics and illustrates how the domestic cat can be used in the teaching of these concepts. Offers examples of how laboratory experiences with the cat can enhance student learning of genetics. (ML)
Descriptors: Biology, Genetics, Heredity, Laboratory Animals
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Hawk, James A.; And Others – American Biology Teacher, 1980
A three-point linkage system in tomatoes is used to explain concepts of gene mapping, linking and statistical analysis. The system is designed for teaching the effective use of statistics, and the power of genetic analysis from statistical analysis of phenotypic ratios. (Author/SA)
Descriptors: Botany, College Science, Computation, Genetics
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Vigue, Charles L. – Journal of College Science Teaching, 1986
Describes several laboratory experiments that are adaptations of clinical tests for certain genetic diseases in babies. Information and procedures are provided for tests for phenylketonuria (PKU), galactosemia, tyrosinemia, cystinuria, and mucopolysaccharidosis. Discusses the effects of each disease on the infants' development. (TW)
Descriptors: Biology, Clinical Diagnosis, College Science, Diseases