Sofer W, Tompkins L
Waksman Institute, Rutgers, State University of New Jersey, Piscataway 08854-0759.
Genetics. 1994 Jan;136(1):417-22. doi: 10.1093/genetics/136.1.417.
Drosophila has long been useful for demonstrating the principles of classical Mendelian genetics in the classroom. In recent years, the organism has also helped students understand biochemical and behavioral genetics. In this connection, this article describes the development of a set of integrated laboratory exercises and descriptive materials--a laboratory module--in biochemical genetics for use by high-school students. The module focuses on the Adh gene and its product, the alcohol dehydrogenase enzyme. Among other activities, students using the module get to measure alcohol tolerance and to assay alcohol dehydrogenase activity in Adh-negative and -positive flies. To effectively present the module in the classroom, teachers attend a month-long Dissemination Institute in the summer. During this period, they learn about other research activities that can be adapted for classroom use. One such activity that has proved popular with teachers and students utilizes Drosophila to introduce some of the concepts of behavioral genetics to the high-school student. By establishing closer interactions between high-school educators and research scientists, the gulf between the two communities can begin to be bridged. It is anticipated that the result of a closer relationship will be that the excitement and creativity of science will be more effectively conveyed to students.
果蝇长期以来在课堂上对于演示经典孟德尔遗传学原理很有用。近年来,这种生物也帮助学生理解生化遗传学和行为遗传学。就此而言,本文描述了一套综合实验室练习和描述性材料——一个实验室模块——的开发,供高中生用于生化遗传学学习。该模块聚焦于乙醇脱氢酶(Adh)基因及其产物乙醇脱氢酶。在其他活动中,使用该模块的学生要测量果蝇的酒精耐受性,并测定Adh阴性和阳性果蝇中的乙醇脱氢酶活性。为了在课堂上有效地展示该模块,教师们在夏季参加为期一个月的传播研习班。在此期间,他们了解可以改编用于课堂的其他研究活动。一个在教师和学生中都很受欢迎的此类活动是利用果蝇向高中生介绍行为遗传学的一些概念。通过在高中教育工作者和研究科学家之间建立更紧密的互动,这两个群体之间的差距可以开始弥合。预计更紧密关系的结果将是科学的兴奋感和创造力能更有效地传递给学生。