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首页> 外文期刊>Applied and Environmental Microbiology >Growth of Pseudomonas aeruginosa in tap water in relation to utilization of substrates at concentrations of a few micrograms per liter.
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Growth of Pseudomonas aeruginosa in tap water in relation to utilization of substrates at concentrations of a few micrograms per liter.

机译:铜绿假单胞菌在自来水中的生长与每升几微克浓度底物的利用有关。

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Five Pseudomonas aeruginosa strains were tested for the utilization of 47 low-molecular-weight compounds as their sole sources of carbon and energy for growth at a concentration of 2.5 g/liter. Of these compounds, 31 to 35 were consumed. Growth experiments in tap water at 15 degrees C were carried out with one particular strain (P1525) isolated from drinking water. This strain was tested for the utilization of 30 compounds supplied at a concentration of 25 microgram of C per liter. The growth rate (number of generations per hour) of strain P1525 in this tap water was approximately 0.005 h-1, and with 10 compounds it was larger than 0.03 h-1. An average yield of 6.2 x 10(9) colony-forming units per mg of C was obtained from the maximum colony counts (colony-forming units per milliliter). The average yield and maximum colony count of strain P1525 grown in tap water supplied with a mixture of 45 compounds, each at a concentration of 1 microgram of C per liter, enabled us to calculate that 28 compounds were utilized. Growth rates of two P. aeruginosa strains (including P1525) in various types of water at 15 degrees C were half of those of a fluorescent pseudomonad. The concentrations of assimilable organic carbon calculated from maximum colony counts and average yield values amounted to 0.1 to 0.7% of the total organic carbon concentrations in five types of tap water. The assimilable organic carbon percentages were about 10 times larger in river water and in water after ozonation.
机译:测试了五株铜绿假单胞菌菌株对47种低分子量化合物的利用,它们是碳和能量以2.5 g /升浓度生长的唯一碳源和能量。在这些化合物中,消耗了31至35。使用从饮用水中分离出的一种特定菌株(P1525)在15摄氏度的自来水中进行生长实验。测试了该菌株对以每升25微克C的浓度提供的30种化合物的利用率。在此自来水中,菌株P1525的生长速率(每小时的世代数)约为0.005 h-1,在含有10种化合物的情况下,它大于0.03 h-1。从最大菌落数(每毫升菌落形成单位)获得每毫克C 6.2 x 10(9)菌落形成单位的平均产量。在自来水中生长的P1525菌株的平均产量和最大菌落数,其中含有45种化合物的混合物,每种化合物的浓度为每升1微克C,这使我们能够计算出28种化合物的利用率。在15摄氏度下,两种铜绿假单胞菌菌株(包括P1525)在各种类型的水中的生长速率是荧光假单胞菌的一半。由最大菌落数和平均产量值计算得出的可吸收有机碳的浓度为五种自来水中总有机碳浓度的0.1%至0.7%。在河水中和臭氧化后的水中,可吸收的有机碳百分比大约高出10倍。

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