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Research Article

Teaching for genetics literacy in the post-genomic era

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References

  • Albuquerque, P. M. , Rocha de Almeida, A. M. , & El-Hani, N. C. (2008). Gene concepts in higher education cell and molecular biology textbooks. Science Education International , 19 , 219–234.
  • Allchin, D. (2003). Scientific myth-conceptions. Science Education , 87 , 329–351.10.1002/(ISSN)1098-237X
  • Allchin, D. (2005). The dilemma of dominance. Biology and Philosophy , 20 , 427–451.10.1007/s10539-005-2561-z
  • Allum, N. , Sibley, E. , Sturgis, P. , & Stoneman, P. (2014). Religious beliefs, knowledge about science and attitudes towards medical genetics. Public Understanding of Science , 23 , 833–849.10.1177/0963662513492485
  • Banet, E. , & Ayuso, E. (2000). Teaching genetics at secondary school: A strategy for teaching about the location of inheritance information. Science Education , 84 , 313–351.10.1002/(ISSN)1098-237X
  • Barnes, B. , & Dupré, J. (2008). Genomes and what to make of them . Chicago, IL : University of Chicago Press.10.7208/chicago/9780226172965.001.0001
  • Bates, R. B. (2005). Public culture and public understanding of genetics: A focus group study. Public Understanding of Science , 14 , 47–65.10.1177/0963662505048409
  • Bednarski, A. E. , Elgin, S. C. R. , & Pakrasi, H. B. (2005). An Inquiry into protein structure and genetic disease: Introducing undergraduates to bioinformatics in a large introductory course. Cell Biology Education , 4 , 207–220.10.1187/cbe.04-07-0044
  • Borzekowski, D. L. G. , Guan, Y. , Smith, K. C. , Erby, L. H. , & Roter, D. L. (2013). The Angelina effect: Immediate reach, grasp, and impact of going public. Genetics in Medicine , 16 , 516–521.
  • Botoseneanu, A. , Alexander, J. A. , & Banaszak-Holl, J. (2011). To test or not to test? The role of attitudes, knowledge, and religious involvement among U.S. adults on intent-to-obtain adult genetic testing. Health Education & Behavior , 38 , 617–628.10.1177/1090198110389711
  • Bowen, D. J. , Singal, R. , Eng, E. , Crystal, S. , & Burke, W. (2003). Jewish identity and intentions to obtain breast cancer screening. Cultural Diversity and Ethnic Minority Psychology , 9 , 79–87.10.1037/1099-9809.9.1.79
  • Bowling, B. V. , Acra, EE , Wang, L. , Myers, M. F. , Dean, G. E. , Markle, G. C. , … Huether, C. A. (2008). Development and evaluation of a genetics literacy assessment instrument for undergraduates. Genetics , 178 , 15–22.10.1534/genetics.107.079533
  • Burian, R. M. (2013). On gene concepts and teaching genetics: Episodes from classical genetics. Science & Education , 22 , 325–344.10.1007/s11191-011-9367-y
  • Burian, R. M. , & Kampourakis, K. (2013). Against “genes for”: Could an inclusive concept of genetic material effectively replace gene concepts? In K. Kampourakis (Ed.), The philosophy of biology: A companion for educators (pp. 597–628). Dordrecht: Springer.10.1007/978-94-007-6537-5
  • Cameron, V. L. (2003). Teaching advanced genetics without lectures. Genetics , 165 , 945–950.
  • Campanile, M. F. , Lederman, N. G. , & Kampourakis, K. (2015). Mendelian genetics as a platform for teaching about nature of science and scientific inquiry: The value of textbooks. Science & Education , 24 , 205–225.10.1007/s11191-013-9607-4
  • Campbell, C. E. , & Nehm, R. H. (2013). A critical analysis of assessment quality in genomics and bioinformatics education research. Cell Biology Education , 12 , 530–541.10.1187/cbe.12-06-0073
  • Cartier, J. L. , & Stewart, J. (2000). Teaching the nature of inquiry: Further developments in a high school genetics curriculum. Science & Education , 9 , 247–267.
  • Carvalho Santos, V. , Joaquim, L. M. , & El-Hani, C. B. (2012). Hybrid deterministic views about genes in biology textbooks: A key problem in genetics teaching. Science & Education , 21 , 543–578.10.1007/s11191-011-9348-1
  • Carver, R. B. , Castéra, J. , Gericke, N. , Evangelista, N. A. M. , & El-Hani, C. N. (2017). Young adults’ belief in genetic determinism, and knowledge and attitudes towards modern genetics and genomics: The PUGGS questionnaire. PLoS One , 12 (1), e0169808. doi:10.1371/journal.pone.0169808
  • Carver, R. B. , Rodland, E. A. , & Breivik, J. (2012). Quantitative frame analysis of how the gene concept is presented in tabloid and elite newspapers. Science Communication , XX (X), 1–27.
  • Carver, R. B. , Waldahl, R. , & Breivik, J. (2008). Frame that gene. A tool for analysing and classifying the communication of genetics to the public. EMBO Reports , 9 , 943–947.10.1038/embor.2008.176
  • Carver, R. B. , Wiese, E. F. , & Breivik, J. (2014). Frame analysis in science education: A classroom activity for promoting media literacy and learning about genetic causation. International Journal of Science Education, B , 4 , 211–239.
  • Casanoves, M. , Salvado, Z. , González, A. , Valls, C. , & Novo, M. T. (2016). Learning genetics through a scientific inquiry game. Journal of Biological Education , 51 , 99–106.
  • Castera, J. , Bruguière, C. , & Clement, P. (2008). Genetic diseases and genetic determinism models in French secondary school biology textbooks. Journal of Biological Education , 42 , 53–59.10.1080/00219266.2008.9656111
  • Castera, J. , & Clement, P. (2014). Teachers’ conceptions about the genetic determinism of human behaviour: A survey in 23 countries. Science & Education , 23 , 417–443.10.1007/s11191-012-9494-0
  • Castera, J. , Sarapuu, T. , & Clément, P. (2013). Comparison of French and Estonian students’ conceptions in genetic determinism of human behaviours. Journal of Biological Education , 47 , 12–20.10.1080/00219266.2012.716779
  • Chang, J. , Kim, S. , Kang, M. , Shim, J. C. , & Ma, D. H. (2017). The gap in scientific knowledge and role of science communication in South Korea. Public Understanding of Science , 1–16.
  • Cheung, B. , Dar-Nimrod, I. , & Gonsalkorale, K. (2014). Am I my genes? Perceived genetic etiology, intrapersonal processes, and health. Social and Personality Psychology Compass , 8 , 626–637.10.1111/spc3.v8.11
  • Chrispeels, H. E. , Klosterman, M. L. , Martin, J. B. , Lundy, S. R. , Watkins, J. M. , Gibson, C. L. , & Muday, G. K. (2014). Undergraduates achieve learning gains in plant genetics through peer teaching of secondary students. Cell Biology Education , 13 , 641–652.10.1187/cbe.14-01-0007
  • Christensen, A. C. (2000). Cats as an aid to teaching genetics. Genetics , 155 , 999–1004.
  • Condit, C. M. (2010a). Public understandings of genetics and health. Clinical Genetics , 77 , 1–9.10.1111/cge.2010.77.issue-1
  • Condit, C. M. (2010b). Public attitudes and beliefs about genetics. Annual Review of Genomics and Human Genetics , 11 , 339–359.10.1146/annurev-genom-082509-141740
  • Conrad, P. (2001). Genetic optimism: Framing genes and mental illness in the news. Culture, Medicine and Psychiatry , 25 , 225–247.10.1023/A:1010690427114
  • Dar-Nimrod, I. (2012). Postgenomics and genetic essentialism. Behavioral and Brain Sciences , 35 , 362–363.10.1017/S0140525X12000982
  • Dar-Nimrod, I. , Cheung, B. , Ruby, M. , & Heine, S. (2014). Can merely learning about obesity genes affect eating behavior? Appetite , 81 , 269–276.10.1016/j.appet.2014.06.109
  • Dar-Nimrod, I. , & Heine, S. J. (2011). Genetic essentialism: On the deceptive determinism of DNA. Psychological Bulletin , 137 , 800–818.10.1037/a0021860
  • Dawson, V. , & Schibeci, R. (2003). Western Australian school students’ understanding of biotechnology. International Journal of Science Education , 25 , 57–69.10.1080/09500690210126720
  • Donelle, L. , Hoffman-Goetz, L. , & Clarke, J. N. (2005). Portrayal of genetic risk for breast cancer in ethnic and non-ethnic newspapers. Women & Health , 40 , 93–111. doi:10.1300/J013v40n04_06 10.1300/J013v40n04_06
  • Donovan, M. B. (2014). Playing with fire? The impact of the hidden curriculum in school genetics on essentialist conceptions of race. Journal of Research in Science Teaching , 51 , 462–496.10.1002/tea.v51.4
  • Donovan, M. B. (2016). Learned inequality: Racial labels in the biology curriculum can affect the development of racial prejudice. Journal of Research in Science Teaching , 54 , 379–411.
  • Donovan, J. , & Venville, G. (2014). Blood and bones: The influence of the mass media on Australian primary school children’s understandings of genes and DNA. Science & Education , 23 , 325–360.10.1007/s11191-012-9491-3
  • Dougherty, M. J. (2009). Closing the gap: Inverting the genetics curriculum to ensure an informed public. The American Journal of Human Genetics , 85 , 6–12.10.1016/j.ajhg.2009.05.010
  • Dougherty, M. J. (2011). A comprehensive analysis of high school genetics standards: Are states keeping pace with modern genetics? Cell Biology Education , 10 , 318–327.10.1187/cbe.10-09-0122
  • Duncan, R. G. , Castro-Faix, M. , & Choi, J. (2016). Informing a learning progression in genetics: Which should be taught first, Mendelian inheritance or the central dogma of molecular biology? International Journal of Science and Mathematics Education , 14 , 445–472.10.1007/s10763-014-9568-3
  • Duncan, R. G. , & Reiser, B. J. (2007). Reasoning across ontologically distinct levels: Students’ understandings of molecular genetics. Journal of Research in Science Teaching , 938–959.10.1002/(ISSN)1098-2736
  • Duncan, R. G. , & Tseng, K. A. (2011). Designing project-based instruction to foster generative and mechanistic understandings in genetics. Science Education , 95 , 21–56.10.1002/sce.20407
  • El-Hani, C. N. A. , de Almeida, A. M. R. , Bomfim, G. C. , Joaquim, L. M. , Magalhães, J. C. M. , Meyer, L. M. N. , … Santos, V. C. (2014). The contribution of history and philosophy to the problem of hybrid views about genes in genetics teaching. In M. Matthews (Ed.), International handbook of research in history, philosophy and science teaching (pp. 469–520). Dordrecht: Springer.
  • Elliot, P. (2006). Reviewing newspaper articles as a technique for enhancing the scientific literacy of student–teachers. International Journal of Science Education , 28 , 1245–1265.10.1080/10670560500438420
  • Ergazaki, M. , Alexaki, A. , Papadopoulou, C. , & Kalpakiori, M. (2014). Young children’s reasoning about physical & behavioural family resemblance: Is there a place for a precursor model of inheritance? Science & Education , 23 , 303–323.10.1007/s11191-013-9594-5
  • Ergazaki, M. , Valanidou, E. , Kasimati, M. , & Kalantzi, M. (2015). Introducing a precursor model of inheritance to young children. International Journal of Science Education , 37 , 3118–3142.10.1080/09500693.2015.1121551
  • Eurydice Network (2011). Science education in Europe: National policies, practices and research. Education . Brussels: Audiovisual and Culture Executive Agency.
  • Flodin, V. S. (2009). The necessity of making visible concepts with multiple meanings in science education: The use of the gene concept in a biology textbook. Science & Education , 18 , 73–94.10.1007/s11191-007-9127-1
  • Freidenreich, H. B. , Duncan, R. G. , & Shea, N. (2011). Exploring middle school students’ understanding of three conceptual models in genetics. International Journal of Science Education , 33 , 2323–2349.
  • Gannett, L. (2013). Genomics and society: Why “discovery” matters. In K. Kampourakis (Ed.), The philosophy of biology: A companion for educators (pp. 653–685). Dordrecht: Springer.10.1007/978-94-007-6537-5
  • Gannett, L. (2014). Biogeographical ancestry and race. Studies in History and Philosophy of Science Part C: Studies in History and Philosophy of Biological and Biomedical Sciences , 47 , 173–184.10.1016/j.shpsc.2014.05.017
  • Gelman, S. A. (2003). The essential child: Origins of essentialism in everyday thought . Oxford: Oxford University Press.10.1093/acprof:oso/9780195154061.001.0001
  • Gelman, S. A. , & Markman, E. M. (1986). Categories and induction in young children. Cognition , 23 , 183–209.10.1016/0010-0277(86)90034-X
  • Gelman, S. A. , & Markman, E. M. (1987). Young children’s inductions from natural kinds: The role of categories and appearances. Child Development , 58 , 1532–1541.10.2307/1130693
  • Gelman, S. A. , & Wellman, H. M. (1991). Insides and essences: Early understandings of the non-obvious. Cognition , 38 , 213–244.10.1016/0010-0277(91)90007-Q
  • Gericke, N. , & Hagberg, M. (2010a). Conceptual incoherence as a result of the use of multiple historical models in school textbooks. Research in Science Education , 40 , 605–623.10.1007/s11165-009-9136-y
  • Gericke, N. , & Hagberg, M. (2010b). Conceptual variation in the depiction of gene function in upper secondary school textbooks. Science & Education , 19 , 963–994.10.1007/s11191-010-9262-y
  • Gericke, N. , Hagberg, M. , Carvalho Santos, V. , Joaquim, L. M. , & El-Hani, C. (2014). Conceptual variation or incoherence? Textbook discourse on genes in six countries. Science & Education , 23 , 381–416.10.1007/s11191-012-9499-8
  • Gericke, N. , & Smith, M. (2014). Twenty-first-century genetics and genomics: Contributions of HPS-informed research and pedagogy. In M. R. Matthews (Ed.), International handbook of research in history, philosophy and science teaching (pp. 423–467). Dordrecht: Springer.
  • Gericke, N. , & Wahlberg, S. (2013). Clusters of concepts in molecular genetics: A study of Swedish upper secondary science students’ understanding. Journal of Biological Education. , 47 , 73–83.10.1080/00219266.2012.716785
  • Goldsmith, L. , Jackson, L. , O’Connor, A. , & Skirton, H. (2012). Direct-to-consumer genomic testing: Systematic review of the literature on user perspectives. European Journal of Human Genetics , 20 , 811–816.10.1038/ejhg.2012.18
  • Gould, W. A. , & Heine, S. J. (2012). Implicit essentialism: Genetic concepts are implicitly associated with fate concepts. PLoS One , 7 , e38176. doi:10.1371/journal.pone.0038176
  • Haran, J. , & O’Riordan, K. (2017). Public knowledge-making and the media: Genes, genetics, cloning and Mass Observation. European Journal of Cultural Studies , 1–20. doi:10.1177/1367549416682971
  • Harris, R. (2017). Rigor mortis: How sloppy science creates worthless cures, crushes hope, and wastes billions . New York, NY : Basic Books.
  • Haury, D. L. , & Nehm, R. H. (2012). The global challenge of genomics education: A path to the future. In K. E. Nelson , & B. Jones-Nelson (Eds.), Genomics applications for the developing world (Vol. 19, pp. 311–333). Dordrecht: Springer.10.1007/978-1-4614-2182-5
  • Heine, S. J. (2017). DNA is not destiny: The remarkable, completely misunderstood relationship between you and your genes . New York, NY : Norton.
  • Hicks, M. A. , Cline, R. J. , & Trepanier, A. M. (2014). Reaching future scientists, consumers, & citizens: What do secondary school textbooks say about genomics & its impact on health? The American Biology Teacher , 76 , 379–383.
  • Hjörleifsson, S. , Arnason, V. , & Schei, E. (2008). Decoding the genetics debate: Hype and hope in Icelandic news media in 2000 and 2004. New Genetics and Society , 27 , 377–394.
  • Orcajo, T. I. , & Aznar, M. M. (2005). Solving problems in genetics II: Conceptual restructuring. International Journal of Science Education , 27 , 1495–1519.10.1080/09500690500186584
  • Jamieson, A. , & Radick, G. (2017). Genetic determinism in the genetics curriculum: An exploratory study of the effects of Mendelian and Weldonian emphases. Science & Education . doi:10.1007/s11191-017-9900-8
  • Jiménez-Aleixandre, M. P. (2014). Determinism and underdetermination in genetics: Implications for students’ engagement in argumentation and epistemic practices. Science & Education , 23 , 465–484.10.1007/s11191-012-9561-6
  • Jordan, R. , & Duncan, R. G. (2010). Student teachers’ images of science in ecology and genetics. Journal of Biological Education. , 43 , 62–69.
  • Kampourakis, K. (2013). Mendel and the path to genetics: Portraying science as a social process. Science & Education , 22 , 293–324.10.1007/s11191-010-9323-2
  • Kampourakis, K. (2015). Myth 16: That Mendel was a pioneer of genetics, being ahead of his time. In R. L. Numbers & K. Kampourakis (Eds.), Newton’s apple and other myths about science (pp. 129–138). Cambridge, MA: Harvard University Press.
  • Kampourakis, K. (2017). Making sense of genes . Cambridge: Cambridge University Press.10.1017/9781316422939
  • Kampourakis, K. , Silveira, P. , & Strasser, B. J. (2016). How do preservice biology teachers explain the origin of biological traits?: A philosophical analysis. Science Education , 100 , 1124–1149.10.1002/sce.2016.100.issue-6
  • Kampourakis, K. , Vayena, E. , Mitropoulou, C. , van Schaik, R. H. , Cooper, D. N. , Borg, J. , & Patrinos, G. P. (2014). Key challenges for next-generation pharmacogenomics: Science & Society series on Science and Drugs. EMBO Reports , 15 , 472–476.10.1002/embr.201438641
  • Keil, F. C. (1989). Concepts, kinds and cognitive development . Cambridge, MA: MIT Press.
  • Keil, F. C. (2011). Science starts early. Science , 331 , 1022–1023.10.1126/science.1195221
  • Kim, S. Y. , & Irving, K. E. (2010). History of science as an instructional context: Student learning in genetics and nature of science. Science & Education , 19 , 187–215.10.1007/s11191-009-9191-9
  • Kirby, D. A. (2000). The new eugenics in cinema: Genetic determinism and gene therapy in GATTACA. Science Fiction Studies , 27 , 193–215.
  • Kirby, D. A. (2004). Extrapolating race in GATTACA: Genetic passing, identity, and the science of race. Literature and Medicine , 23 , 184–200.10.1353/lm.2004.0006
  • Krimsky, S. , & Gruber, J. (Eds.). (2013). Genetic explanations: Sense and nonsense . Cambridge, MA: Harvard University Press.
  • Law, N. , & Lee, Y. (2004). Using an iconic modelling tool to support the learning of genetics concepts. Journal of Biological Education , 38 , 118–124.10.1080/00219266.2004.9655918
  • Leighton, J. W. , Valverde, K. , & Bernhardt, B. A. (2012). The general public’s understanding and perception of direct-to-consumer genetic test results. Public Health Genomics. , 15 , 11–21.10.1159/000327159
  • Lewis, J. (2014). From flavr savr tomatoes to stem cell therapy: Young people’s understandings of gene technology, 15 years on. Science & Education , 23 , 361–379.10.1007/s11191-012-9523-z
  • Lewis, J. , & Leach, J. (2006). Discussion of socio-scientific issues: The role of science knowledge. International Journal of Science Education , 28 , 1267–1287.10.1080/09500690500439348
  • Lewis, J. , Leach, J. , & Wood-Robinson, C. (2000a). All in the genes? – Young people’s understanding of the nature of genes. Journal of Biological Education , 34 , 74–79.10.1080/00219266.2000.9655689
  • Lewis, J. , Leach, J. , & Wood-Robinson, C. (2000b). Chromosomes: The missing link-young people’s understanding of mitosis, meiosis, and fertilisation. Journal of Biological Education , 34 , 189–199.10.1080/00219266.2000.9655717
  • Lewis, J. , & Wood-Robinson, C. (2000). Genes, chromosomes, cell division and Inheritance – Do students see any relationship? Journal of Biological Education , 22 , 177–195.
  • Ley, B. L. , Jankowski, N. , & Brewer, P. R. (2012). Investigating CSI: Portrayals of DNA testing on a forensic crime show and their potential effects. Public Understanding of Science , 21 , 51–67.10.1177/0963662510367571
  • Lin, C. Y. , Cheng, J. , & Chang, W. (2010). Making science vivid: Using a historical episodes map. International Journal of Science Education , 32 , 2521–2531.10.1080/09500691003746015
  • Longden, B. (1982). Genetics – Are there inherent learning difficulties? Journal of Biological Education. , 16 , 135–140.10.1080/00219266.1982.9654439
  • Maeseele, P. A. , & Schuurman, D. (2008). Biotechnology and the popular press in Northern Belgium. Science Communication , 29 , 435–471.10.1177/1075547008316221
  • Marbach-Ad, G. (2001). Attempting to break the code in student comprehension of genetic concepts. Journal of Biological Education , 35 , 183–189.10.1080/00219266.2001.9655775
  • Marbach-Ad, G. , Rotbain, Y. , & Stavy, R. (2008). Using computer animation and illustration activities to improve high school students’ achievement in molecular genetics. Journal of Research in Science Teaching , 45 , 273–292.10.1002/(ISSN)1098-2736
  • Martinez-Gracia, M. V. , Gil-Quilez, M. J. , & Osada, J. (2006). Analysis of molecular genetics content in Spanish secondary school textbooks. Journal of Biological Education , 40 , 53–60.10.1080/00219266.2006.9656014
  • Martins, I. , & Ogborn, J. (1997). Metaphorical reasoning about genetics. International Journal of Science Education , 19 , 47–63.10.1080/0950069970190104
  • McElhinny, T. L. , Dougherty, M. J. , Bowling, B. V. , & Libarkin, J. C. (2014). The status of genetics curriculum in higher education in the United States: Goals and assessment. Science & Education , 23 , 445–464.10.1007/s11191-012-9566-1
  • Mills Shaw, K. R. , Van Horne, K. , Zhang, H. , & Boughman, J. (2008). Essay contest reveals misconceptions of high school students in genetics content. Genetics , 178 , 1157–1168.10.1534/genetics.107.084194
  • Morning, A. (2008). Reconstructing race in science and society: Biology textbooks, 1952–2002. American Journal of Sociology , 114 , S106–S137.10.1086/592206
  • Mthethwa-Kunene, E. Oke , Onwu, G. , & De Villiers, R. (2015). Exploring biology teachers’ pedagogical content knowledge in the teaching of genetics in Swaziland science classrooms. International Journal of Science Education , 37 , 1140–1165.10.1080/09500693.2015.1022624
  • Muela, F. J. , & Abril, A. M. (2014). Genetics and cinema: Personal misconceptions that constitute obstacles to learning. International Journal of Science Education, Part B , 4 , 260–280.10.1080/21548455.2013.817026
  • National Research Council Committee on Conceptual Framework for the New K-12 Science Education Standards (2012). A framework for K-12 science education: Practices, crosscutting concepts, and core ideas . Washington, DC: National Academies Press.
  • Nelkin, D. (2001). Genetics and the media. International Encyclopedia of the Social & Behavioral Sciences , 6130–6135.10.1016/B0-08-043076-7/03386-6
  • Nersessian, N. J. (2008). Creating scientific concepts . Cambridge, MA: MIT Press.
  • Next Generation Science Standards Lead States . (2013). Next generation science standards: For states, by states . Washington, DC: The National Academies Press.
  • Nichols, K. (2017). Impact of professional learning on teachers’ representational strategies and students’ cognitive engagement with molecular genetics concepts. Journal of Biological Education , 1–16. doi:10.1080/00219266.2017.1285800
  • Nisbet, M. C. , & Lewenstein, B. V. (2002). Biotechnology and the American media the policy process and the elite press, 1970 to 1999. Science Communication , 23 , 359–391.10.1177/107554700202300401
  • Odelola, J. O. , Adisa, O. , & Akintaro, O. A. (2013). Attitude towards pre-marital genetic screening among students of Osun State Polytechnics in Nigeria. International Journal of Educational Administration and Policy Studies , 5 , 53–58.
  • Pata, K. , & Sarapuu, T. (2006). A comparison of reasoning processes in a collaborative modelling environment: Learning about genetics problems using virtual chat. International Journal of Science Education , 28 , 1347–1368.10.1080/09500690500438670
  • Petersen, A. (2001). Biofantasies: Genetics and medicine in the print news media. Social Science & Medicine , 52 , 1255–1268.10.1016/S0277-9536(00)00229-X
  • Possidente, B. P. (2007). Genetics and the sopranos. Science, New Series , 317 , 596.
  • Redfield, R. J. (2012). “Why Do We Have to Learn This Stuff?”—A new genetics for 21st century students. PLoS Biol , 10 (7), e1001356. doi:10.1371/journal.pbio.1001356
  • Reis, P. , & Galvão, C. (2004). Socio-scientific controversies and students’ conceptions about scientists. International Journal of Science Education , 26 , 1621–1633.10.1080/0950069042000205413
  • Reis, P. , & Galvão, C. (2007). Reflecting on scientists’ activity based on science fiction stories written by secondary students. International Journal of Science Education , 29 , 1245–1260.10.1080/09500690600975340
  • Retzbach, J. , Retzbach, A. , Maier, M. , Otto, L. , & Rahnke, M. (2013). Effects of repeated exposure to science TV shows on beliefs about scientific evidence and interest in science. Journal of Media Psychology , 25 , 3–13.10.1027/1864-1105/a000073
  • Roberts, D. A. (2007). Scientific literacy/science literacy. In S. K. Abell & N. G. Lederman (Eds.), Handbook of research on science education (pp. 729–780). Mahwah, NJ: Erlbaum.
  • Rosengren, K. S. , Gelman, S. A. , Kalish, C. W. , & McCormick, M. (1991). As time goes by: Children’s early understanding of growth in animals. Child Development , 62 , 1302–1320.10.2307/1130808
  • Rotbain, Y. , Marbach-Ad, G. , & Stavy, R. (2005). Understanding molecular genetics through a drawing-based activity. Journal of Biological Education , 39 , 174–178.10.1080/00219266.2005.9655992
  • Ryder, J. (2001). Identifying science understanding for functional scientific literacy. Studies in Science Education , 36 (1), 1–44.10.1080/03057260108560166
  • Sadler, T. D. , & Fowler, S. R. (2006). A threshold model of content knowledge transfer for socioscientific argumentation. Science Education , 90 , 986–1004.10.1002/(ISSN)1098-237X
  • Sadler, T. D. , & Zeidler, D. L. (2005). The significance of content knowledge for informal reasoning regarding socioscientific issues: Applying genetics knowledge to genetic engineering issues. Science Education , 89 , 71–93.10.1002/(ISSN)1098-237X
  • Schweitzer, N. J. , & Saks, M. J. (2007). The CSI effect: Popular fiction about forensic science affects the public’s expectations about real forensic science. Jurimetrics , 47 , 357–364.
  • Shea, N. A. (2015). Examining the nexus of science communication and science education: A content analysis of genetics news articles. Journal of Research in Science Teaching , 52 , 397–409.10.1002/tea.v52.3
  • Smith, M. U. (2014). It’s not your grandmother’s genetics anymore! The American Biology Teacher , 76 , 224–229.
  • Smith, M. K. , Wood, W. B. , & Knight, J. K. (2008). The genetics concept assessment: A new concept inventory for gauging student understanding of genetics. Cell Biology Education , 7 , 422–430.10.1187/cbe.08-08-0045
  • Souter, N. (2003). DNA in the school curriculum – A poorly exploited asset? School Science Review , 84 , 57–63.
  • Szu, E. , Osborne, J. , & Patterson, A. D. (2016). Factual accuracy and the cultural context of science in popular media: Perspectives of media makers, middle school students, and university students on an entertainment television program. Public Understanding of Science , 26 , 596–611.
  • Ten Eyck, T. A. , & Williment, M. (2003). The national media and things genetic coverage in the New York Times (1971–2001) and the Washington Post (1977-2001). Science Communication. , 25 , 129–152.10.1177/1075547003259212
  • Thomas, J. (2000). Learning about genes and evolution through formal and informal education. Studies in Science Education , 35 , 59–92.10.1080/03057260008560155
  • Thorne, K. , & Gericke, N. (2014). Teaching genetics in secondary classrooms: A linguistic analysis of teachers’ talk about proteins. Research in Science Education , 44 , 81–108.10.1007/s11165-013-9375-9
  • Thorne, K. , Gericke, N. , & Hagberg, M. (2013). Linguistic challenges in Mendelian genetics: Teachers’ talk in action. Science Education , 97 , 695–722.10.1002/sce.2013.97.issue-5
  • Tsui, C. Y. , & Treagust, D. F. (2003). Genetics reasoning with multiple external representations. Research in Science Education , 33 , 111–135.
  • Tsui, C. Y. , & Treagust, D. (2010). Evaluating secondary students’ scientific reasoning in genetics using a two-tier diagnostic instrument. International Journal of Science Education , 32 , 1073–1098.10.1080/09500690902951429
  • van Lieshout, E. , & Dawson, V. (2016). Knowledge of, and attitudes towards health-related biotechnology applications amongst Australian year 10 high school students. Journal of Biological Education , 50 , 329–344.10.1080/00219266.2015.1117511
  • Venville, G. , & Donovan, J. (2007). Developing year 2 students’ theory of biology with concepts of the gene and DNA. International Journal of Science Education. , 29 , 1111–1131.10.1080/09500690600931079
  • Venville, G. , Gribble, S. J. , & Donovan, J. (2005). An exploration of young children’s understandings of genetics concepts from ontological and epistemological perspectives. Science Education , 89 , 614–633.10.1002/(ISSN)1098-237X
  • Vosniadou, S. (2012). Reframing the classical approach to conceptual change: Preconceptions, misconceptions and synthetic models. In B. J. Fraser , K. G. Tobin , & C. J. McRobbie (Eds.), Second international handbook of science education (pp. 119–130). Dordrecht: Springer.10.1007/978-1-4020-9041-7
  • Vosniadou S. (2013) (Ed.). International handbook of research on conceptual change (2nd ed.). New York, NY : Routledge.
  • Warner, B. J. , Curnow, L. J. , Polglase, A. L. , & Debinski, H. S. (2005). Factors influencing uptake of genetic testing for colorectal cancer risk in an Australian Jewish population. Journal of Genetic Counseling , 14 , 387–394.10.1007/s10897-005-1623-3
  • Wilkins, J. S. (2013). Essentialism in biology. In K. Kampourakis (Ed.), The philosophy of biology: A companion for educators (pp. 395–419). Dordrecht: Springer.10.1007/978-94-007-6537-5
  • Witzig, B. S. , Freyermuth, S. K. , Siegel, M. A. , Izci, K. , & Pires, J. C. (2012). Is DNA alive? A study of conceptual change through targeted instruction. Research in Science Education , 43 , 1361–1375.
  • Wood-Robinson, C. (1994). Young people’s ideas about inheritance and evolution. Studies in Science Education , 24 , 29–47.10.1080/03057269408560038
  • Wood-Robinson, C. , Lewis, J. , & Leach, J. (2000). Young people’s understanding of the nature of genetic information in the cells of an organism. Journal of Biological Education , 35 , 29–36.10.1080/00219266.2000.9655732
  • Yakisan, M. (2016). Are the genetic materials of gametes and somatic cells different? The conceptions of pre-service teachers. International Journal of Environmental & Science Education , 11 , 409–420.

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