尊重遗传学的复杂性:用现实世界的例子探索基因和环境的作用

CourseSource Pub Date : 2023-01-01 DOI:10.24918/cs.2023.2
Kelly M. Schmid, Jennifer Avena, L. Hobbie, Pam Kalas, Tamara L Kelly, Amy L. Klocko, Iglika V. Pavlova, G. Radick, Lauren Edris Snow, Michelle K. Smith
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引用次数: 2

摘要

从历史上看,本科遗传学课程不成比例地关注基因对表型的影响,而不是多因素概念,即考虑基因、环境和基因与环境的相互作用如何影响性状。更新课程以包含多因子概念对于使课程材料与当前对遗传学的理解保持一致非常重要,并且有可能减少确定性思维,这种思维认为性状完全由基因控制。目前,很少有资源可以帮助本科生物学讲师将多因子概念纳入他们的遗传学课程,因此我们设计了这节课,以熟悉的,现实世界的例子为中心。在这节课中,学生将学习如何区分遗传和环境变异的来源,并检查和解释表型变异是如何由基因和环境变异和相互作用的组合导致的。这节课是为面对面和在线课堂设计的,让学生参与小小组和大小组讨论,图形解释,并提供可用于形成性和总结性评估的问题。评估问题的结果表明,学生发现通过描述基因型和环境之间相互作用的模型有助于他们理解这些复杂的主题。
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Honoring the Complexity of Genetics: Exploring the Role of Genes and the Environment Using Real World Examples
Historically, undergraduate genetics courses have disproportionately focused on the impact of genes on phenotypes, rather than multifactorial concepts which consider how a combination of genes, the environment, and gene-by-environment interactions impacts traits. Updating the curriculum to include multifactorial concepts is important to align course materials to current understanding of genetics, and potentially reduce deterministic thinking, which is the belief that traits are solely controlled by genes. Currently there are few resources to help undergraduate biology instructors incorporate multifactorial concepts into their genetics courses, so we designed this lesson that centers on familiar, real-world examples. During this lesson, students learn how to distinguish between genetic and environmental sources of variation, and examine and interpret examples of how phenotypic variation can result from a combination of gene and environmental variation and interactions. This lesson, which is designed for both in-person and online classrooms, engages students in small group and large group discussion, figure interpretation, and provides questions that can be used for both formative and summative assessments. Results from assessment questions suggest that students found working through models depicting the interactions between genotypes and environments beneficial for their understanding of these complex topics.
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