Takeuchi Rikiya, Tamura Takeyuki, Nakayashiki Toru, Tanaka Yuichirou, Muto Ai, Wanner Barry L, Mori Hirotada
Graduate School of Biological Sciences, Nara Institute of Science and Technology, Ikoma, Nara, Japan.
BMC Microbiol. 2014 Jun 26;14:171. doi: 10.1186/1471-2180-14-171.
Precise quantitative growth measurements and detection of small growth changes in high-throughput manner is essential for fundamental studies of bacterial cell. However, an inherent tradeoff for measurement quality in high-throughput methods sacrifices some measurement quality. A key challenge has been how to enhance measurement quality without sacrificing throughput.
We developed a new high-throughput measurement system, termed Colony-live. Here we show that Colony-live provides accurate measurement of three growth values (lag time of growth (LTG), maximum growth rate (MGR), and saturation point growth (SPG)) by visualizing colony growth over time. By using a new normalization method for colony growth, Colony-live gives more precise and accurate growth values than the conventional method. We demonstrated the utility of Colony-live by measuring growth values for the entire Keio collection of Escherichia coli single-gene knockout mutants. By using Colony-live, we were able to identify subtle growth defects of single-gene knockout mutants that were undetectable by the conventional method quantified by fixed time-point camera imaging. Further, Colony-live can reveal genes that influence the length of the lag-phase and the saturation point of growth.
Measurement quality is critical to achieving the resolution required to identify unique phenotypes among a diverse range of phenotypes. Sharing high-quality genome-wide datasets should benefit many researchers who are interested in specific gene functions or the architecture of cellular systems. Our Colony-live system provides a new powerful tool to accelerate accumulation of knowledge of microbial growth phenotypes.
精确的定量生长测量以及以高通量方式检测微小的生长变化对于细菌细胞的基础研究至关重要。然而,高通量方法中测量质量存在内在的权衡,会牺牲一些测量质量。一个关键挑战在于如何在不牺牲通量的情况下提高测量质量。
我们开发了一种新的高通量测量系统,称为菌落实时监测系统(Colony-live)。在此我们表明,通过可视化菌落随时间的生长,Colony-live能够准确测量三个生长值(生长滞后期(LTG)、最大生长速率(MGR)和饱和点生长(SPG))。通过使用一种新的菌落生长归一化方法,Colony-live比传统方法给出更精确和准确的生长值。我们通过测量大肠杆菌单基因敲除突变体的整个Keio文库的生长值,证明了Colony-live的实用性。通过使用Colony-live,我们能够识别单基因敲除突变体中传统方法(通过固定时间点相机成像定量)无法检测到的细微生长缺陷。此外,Colony-live可以揭示影响滞后期长度和生长饱和点的基因。
测量质量对于在各种表型中识别独特表型所需的分辨率至关重要。共享高质量的全基因组数据集应使许多对特定基因功能或细胞系统结构感兴趣的研究人员受益。我们的Colony-live系统提供了一个新的强大工具,以加速微生物生长表型知识的积累。