首页> 美国卫生研究院文献>CBE Life Sciences Education >Teaching Human Genetics with Mustard: Rapid Cycling Brassica rapa (Fast Plants Type) as a Model for Human Genetics in the Classroom Laboratory
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Teaching Human Genetics with Mustard: Rapid Cycling Brassica rapa (Fast Plants Type) as a Model for Human Genetics in the Classroom Laboratory

机译:用芥末进行人类遗传学教学:快速循环的甘蓝型油菜(快速种植型)作为教室实验室中人类遗传学的模型

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摘要

We have developed experiments and materials to model human genetics using rapid cycling Brassica rapa, also known as Fast Plants. Because of their self-incompatibility for pollination and the genetic diversity within strains, B. rapa can serve as a relevant model for human genetics in teaching laboratory experiments. The experiment presented here is a paternity exclusion project in which a child is born with a known mother but two possible alleged fathers. Students use DNA markers (microsatellites) to perform paternity exclusion on these subjects. Realistic DNA marker analysis can be challenging to implement within the limitations of an instructional lab, but we have optimized the experimental methods to work in a teaching lab environment and to maximize the “hands-on” experience for the students. The genetic individuality of each B. rapa plant, revealed by analysis of polymorphic microsatellite markers, means that each time students perform this project, they obtain unique results that foster independent thinking in the process of data interpretation.
机译:我们已经开发了实验和材料,以使用快速循环的甘蓝型油菜(也称为快速植物)对人类遗传进行建模。由于它们的授粉自交不亲和力和菌株内的遗传多样性,因此,B。rapa可以作为教学实验室实验中人类遗传学的相关模型。这里介绍的实验是一个父子排除项目,其中一个孩子出生时有一个已知的母亲,但有两个可能的所谓父亲。学生使用DNA标记(微卫星)对这些科目进行亲子鉴定。现实的DNA标记分析可能难以在教学实验室内实施,但我们已经优化了实验方法,以在教学实验室环境中工作,并为学生提供最大的“动手实践”体验。通过对多态微卫星标记的分析揭示了每一种B. rapa植物的遗传个性,这意味着学生每次执行此项目时,都会获得独特的结果,这些结果会在数据解释过程中促进独立思考。

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