Juergensmeyer M A, Nelson E S, Juergensmeyer E A
IIT Research Institute, Chicago, IL 60616, USA.
Lett Appl Microbiol. 2007 Aug;45(2):179-83. doi: 10.1111/j.1472-765X.2007.02172.x.
This study investigated the effects of linear vibration on cultures grown in both hard- and soft-sided containers to determine whether vibration alone affected the growth rate.
Cultures of Escherichia coli were exposed to vibrational acceleration with and without access to additional oxygen. Vibrated cultures grown in hard-sided containers exited lag phase earlier and had a higher final yield than identical unshaken cultures, whether or not the cultures had access to ambient air. Cultures grown in soft-sided containers showed no response to vibration.
Vibration in hard-sided containers decreases the length of the lag phase and increases final OD in E. coli, with or without increased oxygenation. Increased mixing and improved suspension, which result from vibration of cultures in hard-sided containers, are the most likely physical mechanisms for the more favorable culture conditions.
This paper demonstrates that growth enhancement of shaken cultures is a function of the rigidity of the vessel even without aeration of the medium.
本研究调查了线性振动对在硬壁和软壁容器中培养的培养物的影响,以确定单独的振动是否会影响生长速率。
将大肠杆菌培养物暴露于有或无额外氧气供应的振动加速度环境中。无论培养物是否能接触到环境空气,在硬壁容器中生长的振动培养物比相同的未摇动培养物更早进入对数期,最终产量更高。在软壁容器中生长的培养物对振动无反应。
无论是否增加氧合,硬壁容器中的振动都会缩短大肠杆菌的对数期长度并增加最终光密度。硬壁容器中培养物的振动导致的混合增加和悬浮改善,是形成更有利培养条件的最可能物理机制。
本文表明,即使培养基未通气,摇动培养物生长增强也是容器刚性的函数。