Promoting student interest in plant biology through an inquiry-based module exploring plant circadian rhythm, gene expression, and defense against insects

Jeremy L. Hsu, H. Atamian, Kate Avendano-Woodruff
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Abstract

We present a weeklong curricular module for high school biology students that promotes knowledge of phytohormones, the circadian clock, and the Central Dogma. The module, which relies on easily accessible items and requires minimal space, integrates a hands-on experiment that guides students through replicating research examining circadian entrainment in postharvest cabbage from groceries. This work found that plants have cyclical, circadian expression of genes that produce phytohormones, and that such cyclical expression influences herbivory by caterpillars. Such cyclical patterns were found in plants both in situ and in postharvest cabbage. This work thus provides an ideal platform to shape student conceptions of circadian rhythms, gene expression, and plant herbivory by having students use light timers to entrain postharvest cabbage to alternating light and dark cycles and then measuring herbivory in these plants. The results should replicate previous work and demonstrate less herbivory when both plant and caterpillar are entrained to the same light and dark cycles since the expression of phytohormones involved in plant defense will be greatest when caterpillars are active. The module then concludes with a discussion of gene regulation and how this influences phytohormones. This module was field tested at four public schools, reaching over 600 students, and we present data demonstrating that the module led to learning gains and likely increases in interest in plant biology and self-efficacy.
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通过探索植物昼夜节律、基因表达和昆虫防御的探究式模块,提高学生对植物生物学的兴趣
我们为高中生物学生介绍了一个为期一周的课程模块,以促进学生对植物激素、昼夜节律钟和中央教条的了解。该模块依赖于易于获取的物品,所需空间极小,它整合了一个动手实验,引导学生通过复制研究来检验杂货收获后卷心菜的昼夜节律诱导。这项研究发现,植物产生植物激素的基因具有周期性、昼夜节律性表达,这种周期性表达会影响毛毛虫的食草行为。这种周期性模式在原生植物和收获后的卷心菜中都有发现。因此,这项研究提供了一个理想的平台,通过让学生使用光定时器将收获后的卷心菜控制在交替的光暗周期中,然后测量这些植物的食草量,来形成学生对昼夜节律、基因表达和植物食草量的概念。结果应与之前的工作相同,并表明当植物和毛虫都被控制在相同的光暗周期时,植食量会减少,因为当毛虫活跃时,参与植物防御的植物激素的表达量最大。该模块最后讨论了基因调控以及基因调控如何影响植物激素。该模块在四所公立学校进行了实地测试,共有 600 多名学生参加,我们提供的数据表明,该模块提高了学生的学习效率,并可能提高了学生对植物生物学的兴趣和自我效能感。
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