作物遗传多样性对病原体影响的作用:两种病原体的故事

CourseSource Pub Date : 2022-01-01 DOI:10.24918/cs.2022.14
Elizabeth Wlezien, Nick T. Peters, R. Wise, N. Boury
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引用次数: 0

摘要

遗传学入门课程是许多不同领域核心课程的一部分,包括植物育种、动物科学、生物学、微生物学和自然资源管理。涉及基因、遗传、进化和基因组编辑的概念是现代生物学和农业的基础。理解这些概念不仅对培训科学家很重要,而且对将做出个人健康和消费决定的公民也很重要。然而,为了实现这种学习,我们需要使用循证教育实践,将我们的生物和农业科学教学带入21世纪。本案例研究利用历史上的植物病原体流行病,如爱尔兰马铃薯饥荒,指导学生了解基因如何从一代传递到下一代,不同耕作策略的优点和缺点,以及致病生物,其宿主和环境之间的相互作用如何导致流行病。在学习植物疾病爆发的同时,学生也学习了基本的遗传学和作物育种概念。本案例研究还为教师提供了如何与学生一起评估宿主、微生物和环境数据的指导,并指导学生团体设计和讨论计划,以优化产量,同时最大限度地减少因疾病造成的作物损失的风险。
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Role of crop genetic diversity on pathogen impact: The tale of two pathogens
Introductory genetics courses are part of the core curriculum in many different fields, including plant breeding, animal science, biology, microbiology, and natural resource management. Concepts involving genes, inheritance, evolution, and genome editing are foundational to both modern biology and agriculture. Understanding these concepts is not only important for training scientists but also for citizens who will make personal health and consumer decisions. For this learning to happen, however, we need to use evidence-based education practices to bring our teaching of the biological and agricultural sciences into the 21st century. This case study uses historical plant pathogen epidemics, such as the Irish potato famine, to guide student learning about how genes are passed from one generation to the next, the advantages and disadvantages of different farming strategies, and how the interactions between a disease-causing organism, its host, and the environment lead to epidemics. In learning about plant disease outbreaks, students also learn basic genetics and crop breeding concepts. This case study also provides teachers with instructions on how to evaluate host, microbe, and environmental data with the students and also guides student groups as they design and discuss plans to optimize yield while minimizing the risk of crop loss due to disease.
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