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Effect of thermal additions on the density and distribution of thermophilic amoebae and pathogenic Naegleria fowleri in a newly created cooling lake.

机译:热添加对新创建的冷却湖中嗜热变形虫和致病性奈格勒菌的密度和分布的影响。

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摘要

Pathogenic Naegleria fowleri is the causative agent of fatal human amoebic meningoencephalitis. The protozoan is ubiquitous in nature, and its presence is enhanced by thermal additions. In this investigation, water and sediments from a newly created cooling lake were quantitatively analyzed for the presence of thermophilic amoebae, thermophilic Naegleria spp., and the pathogen Naegleria fowleri. During periods of thermal additions, the concentrations of thermophilic amoebae and thermophilic Naegleria spp. increased as much as 5 orders of magnitude, and the concentration of the pathogen N. fowleri increased as much as 2 orders of magnitude. Concentrations of amoebae returned to prior thermal perturbation levels within 30 to 60 days after cessation of thermal additions. Increases in the thermophilic amoeba concentrations were noted in Savannah River oxbows downriver from the Savannah River plant discharge streams as compared with oxbows upriver from the discharges. Concentrations of thermophilic amoebae and thermophilic Naegleria spp. correlated significantly with temperature and conductivity. Air samples taken proximal to the lake during periods of thermal addition showed no evidence of thermophilic Naegleria spp. Isoenzyme patterns of the N. fowleri isolated from the cooling lake were identical to patterns of N. fowleri isolated from other sites in the United States and Belgium.
机译:致病性禽流感是致命的人类阿米巴脑膜脑炎的病原。原生动物本质上无处不在,并且通过热添加来增强其存在。在这项调查中,对新建的冷却湖中的水和沉积物进行了定量分析,以了解嗜热变形虫,嗜热Naegleria spp。和病原体Naegleria fowleri的存在。在热添加期间,嗜热变形虫和嗜热Naegleria spp的浓度。最多增加5个数量级,而病原体N. fowleri的浓度增加最多2个数量级。停止添加热后30至60天内,变形虫的浓度恢复到先前的热扰动水平。萨凡纳河植物排放流下游的萨凡纳河黄bo中嗜热变形虫的浓度增加,而与之相比则更高。嗜热变形虫和嗜热Naegleria spp的浓度。与温度和电导率显着相关。在热添加期间在湖附近采集的空气样本没有显示嗜热的Naegleria spp的迹象。从冷却湖中分离出的家禽猪笼草的同工酶模式与从美国和比利时其他地方分离出的家禽猪笼草的同工酶模式相同。

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