Gorsuch John P, Jones Zachary, Saint Daniel Le, Kitts Christopher L
BiOWiSH Technologies, 2724 Erie Avenue Suite C, Cincinnati, OH 45208, USA.
Center for Applications in Biotechnology, California Polytechnic State University, 1 Grand Avenue, San Luis Obispo, CA 93407, USA.
J Microbiol Methods. 2019 Sep;164:105682. doi: 10.1016/j.mimet.2019.105682. Epub 2019 Aug 2.
The aerobic plate count assay remains among the most widespread methods for enumerating industrial Bacillus assemblages, as growth-independent methods are either cost prohibitive or unavailable in some areas. However, the standard plating assays used to verify the CFU count of Bacillus-based products are not tailored to Bacillus species and thus may not produce the most accurate possible estimations. Standard plating assays assume that established limits of quantification are applicable to Bacillus species whose colonies swarm on solid media, and that colonies of each species in a mixed-species assemblage form independently of one another on agar plates. In the present study, we examined the upper limit of quantification for an assemblage of swarming industrial Bacillus isolates by comparing plate count on medium with and without a swarming inhibitor with direct counts for spore suspensions of increasing endospore concentration. Additionally, we examined the impact of assemblage species composition on the evenness of colony distribution across replicate plates for four industrial Bacillus isolates. We compared the observed distribution of colonies across replicate plates to the expected Poisson distribution for axenic endospore suspensions, for a 3-species assemblage and a 4-species assemblage, respectively. Results suggest that customized plating assays may be more appropriate than standard protocols for the enumeration of Bacillus-based products, and that interactions between colonies on solid media should be considered when interpreting plating data for mixed-species Bacillus assemblages.
需氧平板计数法仍然是用于计数工业芽孢杆菌组合的最广泛方法之一,因为与生长无关的方法要么成本过高,要么在某些地区无法使用。然而,用于验证芽孢杆菌基产品CFU计数的标准平板测定法并非针对芽孢杆菌属量身定制,因此可能无法得出最准确的估计值。标准平板测定法假定既定的定量限适用于在固体培养基上菌落会扩散的芽孢杆菌属,并且混合菌种组合中每个物种的菌落在琼脂平板上彼此独立形成。在本研究中,我们通过比较添加和不添加扩散抑制剂的培养基上的平板计数与不同内生孢子浓度的孢子悬液的直接计数,来检测一群工业芽孢杆菌分离株组合的定量上限。此外,我们研究了组合物种组成对四种工业芽孢杆菌分离株在重复平板上菌落分布均匀性的影响。我们分别将重复平板上观察到的菌落分布与纯培养内生孢子悬液、三种菌种组合和四种菌种组合的预期泊松分布进行比较。结果表明,定制的平板测定法可能比标准方案更适合用于芽孢杆菌基产品的计数,并且在解释混合菌种芽孢杆菌组合的平板数据时应考虑固体培养基上菌落之间的相互作用。