Sharpe A N, Michaud G L
Appl Microbiol. 1975 Oct;30(4):519-24. doi: 10.1128/am.30.4.519-524.1975.
Printing a wax grid on a conventional membrane filter yields a device functioning as a most probable number apparatus (MPN), used at a single dilution but with a very large number of growth compartments (e.g., 3,650). By restraining the lateral spread and confluence of colonies, the hydrophobic grid-membrane filter (HGMF) allows growth- or colony-forming units (GU) to be resolved at levels far above those which produce an uncountable lawn on a conventional membrane filter. It also eliminates the size variation of normal bacterial colonies. As a result, the HGMF can give more accurate estimates of the concentration of GU. The method by which grid-cell count observations can be used to obtain MPN estimates of the number of GUs is described, and estimates obtained using the MPN method on the HGMF are compared with those resulting from conventional colony count procedures on membrane filters. A linear relation was observed between MPNGU and the number of GUs, at levels up to 30,000 GUs, for pure cultures of bacteria and for samples of natural waters. The HGMF has great potential for reducing the labor required in quantitative microbiology, since it allows, with one filter, enumeration of microorganisms over a very large concentration range and therefore reduces the need to make dilutions.
在传统的膜滤器上打印蜡格会得到一种起最大可能数(MPN)装置作用的设备,它在单一稀释度下使用,但有大量的生长隔室(例如3650个)。通过抑制菌落的横向扩散和汇合,疏水格膜滤器(HGMF)能在远高于在传统膜滤器上形成无法计数菌苔的水平上分辨出生长或菌落形成单位(GU)。它还消除了正常细菌菌落大小的差异。因此,HGMF能更准确地估计GU的浓度。本文描述了利用格室计数观察结果来获得GU数量的MPN估计值的方法,并将在HGMF上使用MPN方法获得的估计值与在膜滤器上进行传统菌落计数程序得到的结果进行了比较。对于细菌纯培养物和天然水样,在高达30000个GU的水平上,观察到MPNGU与GU数量之间存在线性关系。HGMF在减少定量微生物学所需的工作量方面具有巨大潜力,因为它用一个滤器就能在非常大的浓度范围内对微生物进行计数,从而减少了进行稀释的必要性。