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A practical introduction to microbial molecular ecology through the use of isolation chips

机译:通过使用隔离芯片对微生物分子生态学进行实用介绍

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摘要

In the context of antimicrobial resistance as one of the most serious issues faced globally by health providers, we explored a practical introduction to molecular microbial ecology. We designed field work and practical experiments for third year members of a 4 year undergraduate Masters Program, in which the students employed traditional and novel isolation techniques to identify antimicrobial activities from soil dwelling microorganisms. Students gained experience in isolating DNA from complex microbial communities, amplifying 16S rRNA genes and applied richness/diversity indices as well as principal coordinate analyses to the interpretation of the data they obtained from high throughput sequencing. Our results confirmed that isolation chips facilitate the growth of a greater diversity and different species subset from the complex soil microorganism community than traditional plate spreading techniques. However, rarefaction of 16S rRNA amplicon sequencing data showed that the majority of observed species in soil remain unculturable by current methods. Based on the written reports produced by the students carrying out the work, we concluded that the described protocols are robust and informative, that these activities provide a good practical introduction to the theories and practice of molecular ecology and can be easily deployed to groups of six or more students in a cost‐effective manner.
机译:在作为医疗服务提供者全球面临的最严重问题之一的抗菌素耐药性的背景下,我们探索了分子微生物生态学的实用介绍。我们为四年制本科硕士课程的三年级学生设计了现场工作和实践实验,其中学生采用传统和新颖的隔离技术从土壤中的微生物中识别抗菌活性。学生获得了从复杂微生物群落中分离DNA,扩增16S rRNA基因,应用丰富度/多样性指数以及主要坐标分析来解释他们从高通量测序获得的数据的经验。我们的结果证实,与传统的平板传播技术相比,隔离芯片促进了来自复杂土壤微生物群落的更大多样性和不同物种亚群的生长。然而,对16S rRNA扩增子测序数据的研究表明,土壤中大多数观察到的物种仍无法通过当前方法进行培养。根据学生进行这项工作的书面报告,我们得出结论,所描述的方案是可靠且有益的,这些活动为分子生态学的理论和实践提供了很好的实践介绍,并且可以轻松地部署为六人一组或更多具有成本效益的学生。

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