Department of Wine and Food Science, The University of Adelaide, Urrbrae, Australia.
Department of Microbiology and Infectious Diseases, Université de Sherbrooke, Sherbrooke, Québec, Canada.
Cytometry A. 2021 Apr;99(4):399-406. doi: 10.1002/cyto.a.24258. Epub 2020 Nov 10.
Flow cytometry is a high-throughput tool for determining microbial abundance in a range of medical, environmental, and food-related samples. For wine, determining the abundance of Saccharomyces cerevisiae is well-defined and reliable. However, for the most common wine bacterium, Oenococcus oeni, using flow cytometry to determine cell concentration poses some challenges. O. oeni most often occurs in doublets or chains of varying lengths that can be greater than seven cells. This wine bacterium is also small, at 0.2-0.6 μm and may exhibit a range of morphologies including binary fission and aggregated complexes. This work demonstrates a straightforward approach to determining the suitability of flow cytometry for the chain-forming bacteria, O. oeni, and considerations when using flow cytometry for the enumeration of small microorganisms (<0.5 μm). © 2020 International Society for Advancement of Cytometry.
流式细胞术是一种高通量工具,可用于确定一系列医学、环境和与食品相关的样本中的微生物丰度。对于葡萄酒,确定酿酒酵母的丰度已经得到了很好的定义和验证。然而,对于最常见的葡萄酒细菌——酒酒球菌,使用流式细胞术来确定细胞浓度存在一些挑战。酒酒球菌通常以不同长度的二联体或链的形式存在,长度可以超过七个细胞。这种葡萄酒细菌也很小,大小为 0.2-0.6 μm,可能表现出多种形态,包括二分分裂和聚集复合物。这项工作展示了一种简单的方法来确定流式细胞术对于形成链的细菌——酒酒球菌的适用性,以及在使用流式细胞术对小于 0.5 μm 的小微生物进行计数时需要考虑的因素。©2020 国际细胞分析学会。