Olsen Nikoline S, Hendriksen Niels Bohse, Hansen Lars H, Kot Witold
Department of Environmental Science, Aarhus University, Roskilde, Denmark.
Department of Plant and Environmental Sciences, University of Copenhagen, Frederiksberg C, Denmark.
Phage (New Rochelle). 2020 Sep 1;1(3):137-148. doi: 10.1089/phage.2020.0016. Epub 2020 Sep 16.
Bacteriophage therapy and application of phages for biocontrol necessitate acquisition of suitable phages. The exclusivity of phage-host relations and the risk of phage resistance instigate a need to rapidly isolate and characterize novel phages and continually build sizeable phage libraries. Current methods for phage isolation are both laborious and time consuming, suitable for the isolation of a limited number of phages. The method for phages upscales and organizes enrichment of phages for fast isolation and identification of potentially hundreds of distinct phages against single hosts. This enables screening of hundreds of samples, in multiple simultaneous setups with varying parameters, increasing the likelihood of isolating multiple distinct phages specific for the given conditions. The efficiency of the method is emphasized by our screening of 200 environmental samples, resulting in the identification of an abundance of unique phage species virulent to , , , and .
噬菌体疗法以及将噬菌体用于生物防治需要获取合适的噬菌体。噬菌体与宿主关系的特异性以及噬菌体抗性风险促使人们需要快速分离和鉴定新型噬菌体,并持续构建大量噬菌体文库。当前的噬菌体分离方法既费力又耗时,仅适用于分离有限数量的噬菌体。该噬菌体方法可扩大规模并组织噬菌体富集,以便针对单个宿主快速分离和鉴定潜在的数百种不同噬菌体。这使得能够在多个具有不同参数的同时设置中筛选数百个样本,增加了分离出针对给定条件的多种不同噬菌体的可能性。我们对200个环境样本进行筛选,结果鉴定出大量对[具体宿主1]、[具体宿主2]、[具体宿主3]和[具体宿主4]具有毒性的独特噬菌体物种,从而突出了该方法的效率。