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Effectiveness of a Cloning and Sequencing Exercise on Student Learning with Subsequent Publication in the National Center for Biotechnology Information GenBank

机译:克隆和测序练习对学生学习的有效性以及随后在国家生物技术信息GenBank中心发表的论文

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With rapid advances in biotechnology and molecular biology, instructors are challenged to not only provide undergraduate students with hands-on experiences in these disciplines but also to engage them in the “real-world” scientific process. Two common topics covered in biotechnology or molecular biology courses are gene-cloning and bioinformatics, but to provide students with a continuous laboratory-based research experience in these techniques is difficult. To meet these challenges, we have partnered with Bio-Rad Laboratories in the development of the “Cloning and Sequencing Explorer Series,” which combines wet-lab experiences (e.g., DNA extraction, polymerase chain reaction, ligation, transformation, and restriction digestion) with bioinformatics analysis (e.g., evaluation of DNA sequence quality, sequence editing, Basic Local Alignment Search Tool searches, contig construction, intron identification, and six-frame translation) to produce a sequence publishable in the National Center for Biotechnology Information GenBank. This 6- to 8-wk project-based exercise focuses on a pivotal gene of glycolysis (glyceraldehyde-3-phosphate dehydrogenase), in which students isolate, sequence, and characterize the gene from a plant species or cultivar not yet published in GenBank. Student achievement was evaluated using pre-, mid-, and final-test assessments, as well as with a survey to assess student perceptions. Student confidence with basic laboratory techniques and knowledge of bioinformatics tools were significantly increased upon completion of this hands-on exercise.
机译:随着生物技术和分子生物学的飞速发展,教师面临的挑战不仅是为本科生提供这些学科的动手经验,而且还要使他们参与“现实世界”的科学过程。生物技术或分子生物学课程涵盖两个共同的主题,即基因克隆和生物信息学,但是要为学生提供连续的基于实验室的研究经验是很困难的。为了应对这些挑战,我们与Bio-Rad实验室合作开发了“克隆和测序资源管理器系列”,该系列结合了湿实验室的经验(例如DNA提取,聚合酶链反应,连接,转化和限制性酶切)通过生物信息学分析(例如,DNA序列质量评估,序列编辑,基本本地比对搜索工具搜索,重叠群构建,内含子鉴定和六帧翻译)来产生可在国家生物技术信息GenBank中心发布的序列。这项基于项目的6到8周的练习重点研究了糖酵解的关键基因(甘油醛-3-磷酸脱氢酶),学生可以从尚未在GenBank中发表的植物物种或品种中分离,测序和表征该基因。使用学前,中期和最终测试评估以及通过评估学生感知的调查来评估学生的成绩。完成本动手练习后,学生对基本实验室技术和生物信息学工具知识的信心大大提高。

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