Adam Delphine, Maciejewska Marta, Naômé Aymeric, Martinet Loïc, Coppieters Wouter, Karim Latifa, Baurain Denis, Rigali Sébastien
Integrative Biological Sciences (InBioS), Center for Protein Engineering, Liège University, B-4000 Liège, Belgium.
Genomics Platform, GIGA (Grappe Interdisciplinaire de Génoprotéomique Appliquée), University of Liège (B34), B-4000 Liège, Belgium.
Antibiotics (Basel). 2018 Mar 22;7(2):28. doi: 10.3390/antibiotics7020028.
Cave moonmilk deposits host an abundant and diverse actinobacterial population that has a great potential for producing novel natural bioactive compounds. In our previous attempt to isolate culturable moonmilk-dwelling Actinobacteria, only species were recovered, whereas a metagenetic study of the same deposits revealed a complex actinobacterial community including 46 actinobacterial genera in addition to streptomycetes. In this work, we applied the rehydration-centrifugation method to lessen the occurrence of filamentous species and tested a series of strategies to achieve the isolation of hard-to-culture and rare Actinobacteria from the moonmilk deposits of the cave "Grotte des Collemboles". From the "tips and tricks" that were tested, separate autoclaving of the components of the International Streptomyces Project (ISP) medium number 5 (ISP5) medium, prolonged incubation time, and dilution of the moonmilk suspension were found to most effectively improve colony forming units. Taxonomic analyses of the 40 isolates revealed new representatives of the , , , , , , and species, as well as additional new streptomycetes. The applied methodologies allowed the isolation of strains associated with both the least and most abundant moonmilk-dwelling actinobacterial operational taxonomic units. Finally, bioactivity screenings revealed that some isolates displayed high antibacterial activities, and genome mining uncovered a strong potential for the production of natural compounds.
洞穴月奶沉积物中存在丰富多样的放线菌种群,具有产生新型天然生物活性化合物的巨大潜力。在我们之前尝试分离可培养的月奶栖居放线菌时,仅回收了 种,而对同一沉积物的宏基因组研究揭示了一个复杂的放线菌群落,除链霉菌外还包括 46 个放线菌属。在这项工作中,我们应用复水离心法减少丝状物种的出现,并测试了一系列策略,以从 “弹尾虫洞穴” 的月奶沉积物中分离难以培养和稀有的放线菌。从测试的 “技巧” 中发现,国际链霉菌项目(ISP)5 号培养基(ISP5)成分的单独高压灭菌、延长培养时间以及月奶悬浮液的稀释最有效地提高了菌落形成单位。对 40 株分离株的分类分析揭示了 、 、 、 、 、 和 物种的新代表,以及其他新的链霉菌。所应用的方法允许分离与最少和最丰富的月奶栖居放线菌操作分类单元相关的菌株。最后,生物活性筛选表明一些分离株表现出高抗菌活性,基因组挖掘揭示了产生天然化合物的强大潜力。