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Morphological response to salinity, temperature, and pH changes by marine fungus Epicoccum nigrum

机译:海生真菌Epicoccum nigrum对盐度,温度和pH变化的形态学响应

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Epicoccum nigrum (strain LQRA39-P) was isolated from sediments collected in Chilean Patagonian fjords using microscopy and molecular techniques. We analyzed adaptive responses of cell wall morphology to salinity, temperature, and pH in order to explain the ability of E . nigrum to co-inhabit both marine and freshwater environments. For this purpose, E . nigrum was cultured in a series of media with variations in salinity (freshwater and seawater), pH (acidic, neutral, and basic), and temperature (5 to 25 °C). Changes were observed through transmission electron microscopy. A direct correlation between increased salinity and cell wall thickening ( 0.2 μm) was observed, along with a significant relationship between pH and the presence of extracellular polymeric substances (EPS) on the outside of the cell wall. The observed morphological changes could confirm that an ubiquitous fungus such as E . nigrum requires adaptive responses to co-inhabit freshwater, marine, and terrestrial substrates.
机译:使用显微镜和分子技术从智利巴塔哥尼亚峡湾收集的沉积物中分离出黑(Epicoccum nigrum)(菌株LQRA39-P)。我们分析了细胞壁形态对盐度,温度和pH的适应性反应,以解释E的能力。可以同时居住在海洋和淡水环境中。为此,E。黑醋栗在盐度(淡水和海水),pH(酸性,中性和碱性)和温度(5至25°C)变化的一系列培养基中培养。通过透射电子显微镜观察到变化。盐度增加与细胞壁增厚(> 0.2μm)之间存在直接关系,pH值与细胞壁外侧细胞外聚合物(EPS)的存在之间存在显着关系。观察到的形态学变化可以证实一种普遍存在的真菌,​​例如E。黑鬼需要对淡水,海洋和陆地底物共生的适应性反应。

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