舞台上的噬菌体。

Bacteriophage Pub Date : 2015-06-22 eCollection Date: 2015-07-01 DOI:10.1080/21597081.2015.1062589
Louise Temple, Lynn Lewis
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引用次数: 2

摘要

人们对噬菌体用于对抗抗生素耐药细菌的兴趣重新燃起,与此同时,迫切需要更有效的科学教育实践,包括动手学习的机会。为了解决这个问题,已经提出了许多解决方案,包括2007年由霍华德休斯医学研究所开始的一项大型教育实验,目前有超过85所学院和大学参与,该实验让学生发现独特的噬菌体,获得图像,并纯化噬菌体DNA。使用生物信息学工具对这些噬菌体基因组的一个子集进行测序和分析。描述单个噬菌体发现和比较基因组研究的论文正在定期发表。这个项目的绝大多数学生都是大一学生,这是抓住他们的兴趣并将他们留在理工科专业的关键时期。这种病毒发现模型正在被各种各样的教育机构采用和修改,使用许多不同的细菌宿主。在作者看来,这个项目和其他类似的项目代表了一种几乎适用于任何本科设置的模式。由于这些项目,噬菌体爱好者(学者、卫生专业人员、生物技术公司)可以期待更多准备充分的学生加入他们的行列,并应该期待更多潜在有用的噬菌体的发现和表征。
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Phage on the stage.
The resurgence of interest in bacteriophages for use in combating antibiotic resistant bacteria is coincident with an urgent call for more effective science education practices, including hands-on learning opportunities. To address this issue, a number of solutions have been proposed, including a large educational experiment, begun in 2007 by the Howard Hughes Medical Institute and currently involving over 85 colleges and universities, which has students discovering unique phages, obtaining images, and purifying phage DNA. A subset of these phage genomes is sequenced and analyzed using bioinformatics tools. Papers describing individual phage discoveries and comparative genomic studies are being published regularly. The vast majority of students in the program are in their first year of college, a critical time in capturing their interest and retaining them as science majors. This viral discovery model is being adopted and modified by a wide variety of educational institutions using a number of different bacterial hosts. In the opinion of the authors, this program and others like it represent a model accessible to virtually any undergraduate setting. And because of these programs, bacteriophage enthusiasts (academics, health professionals, biotechnology companies) can look forward to more well prepared students entering their ranks and should anticipate many more potentially useful phages discovered and characterized.
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