Scheuerman P R, Schmidt J P, Alexander M
Department of Agronomy, Cornell University, Ithaca, NY 14853.
Arch Microbiol. 1988;150(4):320-5. doi: 10.1007/BF00408301.
The populations of Pseudomonas sp. B4, Escherichia coli, Klebsiella pneumoniae, Micrococcus flavus, and Rhizobium leguminosarum biovar phaseoli declined rapidly in lake water. The initially rapid decline of the two pseudomonads and R. phaseoli was followed by a period of slow loss of viability, but viable cells of the other species were not found after 10 days. The rapid initial phase of decline was not a result of Bdellovibrio spp., bacteriophages, or toxins in the water since Bdellovibrio spp. were not present and passage of the lake water through filters that should not have removed bacteriophages or soluble toxins led to the elimination of the rapid phase of decline. The addition of 250 micrograms of cycloheximide and 30 micrograms of nystatin per ml eliminated viable protozoa form the lake water, and the population of Pseudomonas sp. B4 did not fall and the decline of E. coli and K. pneumoniae was delayed or slowed under these conditions. Pseudomonas sp. L2 proliferated rapidly in lake water amended with glucose, phosphate, and NH4NO3, but its numbers subsequently fell abruptly; however, in water amended with cycloheximide and nystatin, which killed indigenous protozoa, the population density was higher and the fall in numbers was delayed. Of the nutrients, the chief response was to carbon, but when glucose was added, phosphorus and nitrogen stimulated growth further. Removing other bacteria by filtering the lake water before inoculation with Pseudomonas sp. L2 suggested that competition reduced the extent of response of the pseudomonad to added nutrients.(ABSTRACT TRUNCATED AT 250 WORDS)
假单胞菌属B4、大肠杆菌、肺炎克雷伯菌、黄微球菌和菜豆根瘤菌在湖水中的数量迅速下降。最初,两种假单胞菌和菜豆根瘤菌数量迅速下降,随后是一段活力缓慢丧失的时期,但10天后未发现其他物种的活细胞。最初的快速下降阶段不是由蛭弧菌属、噬菌体或水中毒素导致的,因为不存在蛭弧菌属,且湖水通过不应能去除噬菌体或可溶性毒素的过滤器后,快速下降阶段消失了。每毫升添加250微克放线菌酮和30微克制霉菌素可消除湖水中的活原生动物,在此条件下,假单胞菌属B4的数量没有下降,大肠杆菌和肺炎克雷伯菌的数量下降被延迟或减缓。假单胞菌属L2在添加葡萄糖、磷酸盐和硝酸铵的湖水中迅速增殖,但其数量随后急剧下降;然而,在添加放线菌酮和制霉菌素杀死本地原生动物的水中,种群密度更高,数量下降被延迟。在这些营养物质中,主要反应是对碳的反应,但添加葡萄糖时,磷和氮进一步刺激生长。在用假单胞菌属L2接种前通过过滤湖水去除其他细菌表明,竞争降低了假单胞菌对添加营养物质的反应程度。(摘要截短至250字)