Stahl Leigha M, Olson Julie B
Department of Biological Sciences, The University of Alabama, Tuscaloosa, Alabama, USA.
J Eukaryot Microbiol. 2023 May-Jun;70(3):e12964. doi: 10.1111/jeu.12964. Epub 2023 Feb 8.
Naegleria fowleri causes primary amoebic meningoencephalitis, a deadly infection that occurs when free-living amoebae enter the nose via freshwater and travel to the brain. N. fowleri naturally thrives in freshwater and soil and is thought to be associated with elevated water temperatures. While environmental and laboratory studies have sought to identify what environmental factors influence its presence, many questions remain. This study investigated the interactive effects of temperature, pH, and salinity on N. fowleri in deionized and environmental waters. Three temperatures (15, 25, 35°C), pH values (6.5, 7.5, 8.5), and salinity concentrations (0.5%, 1.5%, 2.5% NaCl) were used to evaluate the growth of N. fowleri via ATP luminescent assays. Results indicated N. fowleri grew best at 25°C, and multiple interactive effects occurred between abiotic factors. Interactions varied slightly by water type but were largely driven by temperature and salinity. Lower temperature increased N. fowleri persistence at higher salinity levels, while low salinity (0.5% NaCl) supported N. fowleri growth at all temperatures. This research provided an experimental approach to assess interactive effects influencing the persistence of N. fowleri. As climate change impacts water temperatures and conditions, understanding the microbial ecology of N. fowleri will be needed minimize pathogen exposure.
福氏耐格里变形虫会引发原发性阿米巴脑膜脑炎,这是一种致命感染,当自由生活的变形虫通过淡水进入鼻腔并进入大脑时就会发生。福氏耐格里变形虫在淡水和土壤中自然生长旺盛,并且被认为与水温升高有关。虽然环境和实验室研究试图确定哪些环境因素会影响其存在,但仍有许多问题存在。本研究调查了温度、pH值和盐度对去离子水和环境水中福氏耐格里变形虫的交互作用。使用三种温度(15、25、35°C)、pH值(6.5、7.5、8.5)和盐度浓度(0.5%、1.5%、2.5%氯化钠),通过ATP发光测定法评估福氏耐格里变形虫的生长情况。结果表明,福氏耐格里变形虫在25°C时生长最佳,非生物因素之间存在多种交互作用。交互作用因水的类型略有不同,但主要受温度和盐度驱动。较低温度会增加福氏耐格里变形虫在较高盐度水平下的存活能力,而低盐度(0.5%氯化钠)在所有温度下都支持福氏耐格里变形虫的生长。本研究提供了一种实验方法来评估影响福氏耐格里变形虫存活的交互作用。随着气候变化影响水温及条件,需要了解福氏耐格里变形虫的微生物生态学以尽量减少病原体暴露。