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一种用于饮用水中细菌计数和传代培养的新培养基。

A new medium for the enumeration and subculture of bacteria from potable water.

作者信息

Reasoner D J, Geldreich E E

出版信息

Appl Environ Microbiol. 1985 Jan;49(1):1-7. doi: 10.1128/aem.49.1.1-7.1985.

DOI:10.1128/aem.49.1.1-7.1985
PMID:3883894
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC238333/
Abstract

Plate count agar is presently the recommended medium for the standard bacterial plate count (35 degrees C, 48-h incubation) of water and wastewater. However, plate count agar does not permit the growth of many bacteria that may be present in treated potable water supplies. A new medium was developed for use in heterotrophic plate count analyses and for subculture of bacteria isolated from potable water samples. The new medium, designated R2A, contains 0.5 g of yeast extract, 0.5 g of Difco Proteose Peptone no. 3 (Difco Laboratories), 0.5 g of Casamino Acids (Difco), 0.5 g of glucose, 0.5 g of soluble starch, 0.3 g of K2HPO4, 0.05 g of MgSO4 X 7H2O, 0.3 g of sodium pyruvate, and 15 g of agar per liter of laboratory quality water. Adjust the pH to 7.2 with crystalline K2HPO4 or KH2PO4 and sterilize at 121 degrees C for 15 min. Results from parallel studies with spread, membrane filter, and pour plate procedures showed that R2A medium yielded significantly higher bacterial counts than did plate count agar. Studies of the effect of incubation temperature showed that the magnitude of the count was inversely proportional to the incubation temperature. Longer incubation time, up to 14 days, yielded higher counts and increased detection of pigmented bacteria. Maximal bacterial counts were obtained after incubation at 20 degrees C for 14 days. As a tool to monitor heterotrophic bacterial populations in water treatment processes and in treated distribution water, R2A spread or membrane filter plates incubated at 28 degrees C for 5 to 7 days is recommended.(ABSTRACT TRUNCATED AT 250 WORDS)

摘要

平板计数琼脂目前是水和废水标准细菌平板计数(35摄氏度,48小时培养)推荐使用的培养基。然而,平板计数琼脂无法使处理后的饮用水供应中可能存在的许多细菌生长。一种新的培养基被开发用于异养平板计数分析以及从饮用水样本中分离出的细菌的继代培养。这种新培养基名为R2A,每升实验室级水中含有0.5克酵母提取物、0.5克Difco 3号蛋白胨(Difco实验室)、0.5克酪蛋白氨基酸(Difco)、0.5克葡萄糖、0.5克可溶性淀粉、0.3克磷酸氢二钾、0.05克硫酸镁·7水合物、0.3克丙酮酸钠和15克琼脂。用结晶磷酸氢二钾或磷酸二氢钾将pH调至7.2,并在121摄氏度下灭菌15分钟。采用涂布法、膜过滤法和倾注平板法进行的平行研究结果表明,R2A培养基产生的细菌计数显著高于平板计数琼脂。培养温度影响的研究表明,计数的大小与培养温度成反比。延长培养时间至14天,会产生更高的计数并增加对有色细菌的检测。在20摄氏度下培养14天后可获得最大细菌计数。作为监测水处理过程和处理后的配水系统中异养细菌种群数量的工具,建议使用在28摄氏度下培养5至7天的R2A涂布平板或膜过滤平板。(摘要截选至250字)

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本文引用的文献

1
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J Bacteriol. 1938 Feb;35(2):129-39. doi: 10.1128/jb.35.2.129-139.1938.
2
The distribution of bacteria and fungal spores in Blelham Tarn with particular reference to an experimental overturn.布莱勒姆 Tarn 湖中细菌和真菌孢子的分布,特别涉及一次实验性水体翻转。
Arch Mikrobiol. 1962;43:294-307. doi: 10.1007/BF00405972.
3
Microbial fouling of reverse-osmosis membranes used in advanced wastewater treatment technology: chemical, bacteriological, and ultrastructural analyses.先进废水处理技术中使用的反渗透膜的微生物污染:化学、细菌学和超微结构分析。
Appl Environ Microbiol. 1983 Mar;45(3):1066-84. doi: 10.1128/aem.45.3.1066-1084.1983.
4
Studies on freshwater bacteria: effect of medium composition and method on estimates of bacterial population.淡水细菌研究:培养基成分和方法对细菌数量估计的影响
J Appl Bacteriol. 1970 Dec;33(4):679-86. doi: 10.1111/j.1365-2672.1970.tb02250.x.
5
Stress: a factor to be considered in heterotrophic microorganism enumeration from aquatic environments.应激:水生环境中异养微生物计数时需考虑的一个因素。
Appl Microbiol. 1974 Feb;27(2):429-31. doi: 10.1128/am.27.2.429-431.1974.