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将数据库、生物信息学和湿实验练习的经验整合到入门遗传学课程的学生中。

Integrating experience with databases, bioinformatics, and wet lab exercises for students in an introductory genetics course.

机构信息

Department of Biochemistry and Molecular Genetics, Midwestern University, Glendale, Arizona, USA.

出版信息

Biochem Mol Biol Educ. 2022 Sep;50(5):457-459. doi: 10.1002/bmb.21649. Epub 2022 Jul 29.

Abstract

Students often have no exposure to the incredible amount of genomic and proteomic data that is freely and easily accessible online. Becoming familiar with these resources, and seeing how they could be applied to a specific research question, is a prerequisite for students to apply them to their own scientific development. Many students have to "see it" and "do it" before they "get it." This paper describes a teaching laboratory for undergraduate Genetics students that combines exploration of several publicly available databases with some simple bioinformatic exercises and "'real" live experience in a wet lab exercise. The goal is to teach skills in applying genomic data to a real scientific question. In this exercise, students identify a target protein after exploring several protein and signal transduction databases, such as the Kyoto Encyclopedia of Genes and Genomes database. They then search for the encoding RNA in a newly available sea star mature egg transcriptome database and for the DNA in an existing sea star genome database. The students design primers against specific regions or domains in their target RNA and amplify these by reverse transcription PCR against RNA purified from fresh sea star eggs. The PCR reactions are analyzed by agarose gel electrophoresis. It is hoped that the combination of the computational biology exercises with the real lab work will excite the students and stimulate them to explore this exciting new biology further.

摘要

学生通常无法接触到在线上免费且易于获取的大量基因组和蛋白质组数据。熟悉这些资源,并了解如何将它们应用于特定的研究问题,是学生将其应用于自己的科学发展的前提。许多学生必须“看到它”、“做到它”,然后才能“理解它”。本文介绍了一个针对本科遗传学学生的教学实验室,该实验室将探索几个公开可用的数据库与一些简单的生物信息学练习以及在湿实验室练习中的“真实”生活经验相结合。其目标是教授将基因组数据应用于实际科学问题的技能。在这个练习中,学生在探索了几个蛋白质和信号转导数据库(如京都基因与基因组百科全书数据库)后,确定了一个目标蛋白。然后,他们在新的可用海星成熟卵转录组数据库中搜索编码 RNA,并在现有的海星基因组数据库中搜索 DNA。学生针对目标 RNA 的特定区域或结构域设计引物,并针对从新鲜海星卵中纯化的 RNA 进行逆转录 PCR 扩增。PCR 反应通过琼脂糖凝胶电泳进行分析。希望将计算生物学练习与实际实验室工作相结合,能够激发学生的兴趣,并促使他们进一步探索这一令人兴奋的新生物学。

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