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优化小世界倡议服务学习,重点关注土壤中产生抗生素的放线菌。

Optimizing Small World Initiative service learning by focusing on antibiotics-producing actinomycetes from soil.

机构信息

Universidad de Castilla-La Mancha, Facultad de Farmacia, Avda. Dr. José María Sánchez Ibáñez s/n, E-02008 Albacete, Spain.

Universidad de Castilla-La Mancha, Facultad de Medicina, c/ Almansa 14, E-02008 Albacete, Spain.

出版信息

FEMS Microbiol Lett. 2019 Dec 1;366(24). doi: 10.1093/femsle/fnaa019.

Abstract

Small World Initiative and Tiny Earth are popular citizen science programs that are implemented worldwide in response to the global antibiotic resistance crisis. When starting up the program in Albacete (Spain), we noted that rates of isolated antibiotic-producing bacteria are generally low. To make the activity more stimulating for participating students, we modified the protocol to obtain more positive results by focusing on isolation of actinomycetes, the main producers of most clinically used antibiotics. Adaptations involved redesigning culture media, incubation times and temperatures, and modification of the ESKAPE antibiosis experiment by employing an agar-transplantation step. Of 390 bacterial isolates tested, almost 6% tested positive in antibiosis experiments and DNA sequence analysis confirmed that all positives are actinomycetes, demonstrating that our protocol is efficient toward isolating antibiotic-producing actinomycetes from soil. Evaluation forms filled by participating students indicated that the program was received very positively and that our modifications contribute to make this educational program more stimulating and efficient.

摘要

小小世界倡议和小小地球是广受欢迎的公民科学项目,在全球范围内实施,以应对全球抗生素耐药危机。在西班牙阿尔瓦塞特启动该项目时,我们注意到分离出的产抗生素细菌的比例通常较低。为了使参与学生的活动更具刺激性,我们通过专注于放线菌的分离来修改方案,以获得更多阳性结果,放线菌是大多数临床使用的抗生素的主要生产者。适应包括重新设计培养基、孵育时间和温度,以及通过采用琼脂移植步骤修改 ESKAPE 抗生素实验。在测试的 390 个细菌分离物中,近 6%的分离物在抗生素实验中呈阳性,DNA 序列分析证实所有阳性分离物均为放线菌,表明我们的方案能够有效地从土壤中分离出产抗生素的放线菌。参与学生填写的评估表表明,该项目非常受欢迎,我们的修改有助于使这个教育项目更具刺激性和效率。

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