Fink Phillipp, Kwon Jong-Hee, Forchhammer Karl
Organismic Interactions Department, Tübingen University, Auf der Morgenstelle 28, Tübingen, Germany.
Applied Life Sciences (BK21), Gyeongsang National University, Jinju, Korea.
Bio Protoc. 2024 Dec 5;14(23):e5125. doi: 10.21769/BioProtoc.5125.
In modern science, the exchange of scientific material between different institutions and collaborating working groups constitutes an indispensable endeavor. For this purpose, bacterial strains are frequently shipped to collaborators to advance joint research projects. Bacterial strains are usually safely shipped as cultures on solid medium, whereas the shipment of liquid cultures requires specific safety measures due to the risk of leakage. Cyanobacterial cultures are frequently maintained as liquid stock cultures, and this problem typically arises. This protocol describes a new method for the shipment of liquid cyanobacterial stock cultures by agarose gel embedding (SCAGE). More specifically, a cyanobacterial culture is mixed with low-melting agarose and cast into sterile plastic bags, resulting in a thin, solid cyanobacterial agarose gel (cyanogel) that can be easily shipped. After delivery, subsequent regeneration of the cyanogel material in liquid media results in full recovery of the examined bacterial strains. Thus, the packaging method devised in the present study comprises an innovative technique to facilitate the shipment of bacterial strains, whilst eliminating previously encountered issues like cell culture leakage. Key features • New packaging procedure to reduce culture leakage. • Novel technique facilitating improved shipment conditions. • Validated method leading to recovery of tested bacterial strains after 14 days. Graphical overview Schematic representation of steps for gel embedding and recovery of cyanobacteria.
在现代科学中,不同机构和合作工作组之间的科学材料交换是一项不可或缺的工作。为此,细菌菌株经常被运送给合作者以推进联合研究项目。细菌菌株通常作为固体培养基上的培养物安全运输,而液体培养物的运输由于存在泄漏风险需要采取特定的安全措施。蓝细菌培养物经常作为液体储备培养物保存,这个问题就经常出现。本方案描述了一种通过琼脂糖凝胶包埋(SCAGE)运输液体蓝细菌储备培养物的新方法。更具体地说,将蓝细菌培养物与低熔点琼脂糖混合,倒入无菌塑料袋中,形成一种薄的、固体的蓝细菌琼脂糖凝胶(蓝凝胶),便于运输。运输后,蓝凝胶材料在液体培养基中随后的再生导致所检测细菌菌株的完全恢复。因此,本研究设计的包装方法包括一种创新技术,可促进细菌菌株的运输,同时消除以前遇到的细胞培养物泄漏等问题。关键特性 • 减少培养物泄漏的新包装程序。 • 有助于改善运输条件的新技术。 • 经过验证的方法,可在14天后使测试细菌菌株恢复。图形概述 蓝细菌凝胶包埋和恢复步骤的示意图。