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Morphological Response of the Halophilic Fungal Genus Wallemia to High Salinity

机译:嗜盐真菌属壁血对高盐度的形态学响应

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The basidiomycetous genus Wallemia is an active inhabitant of hypersaline environments, and it has recently been described as comprising three halophilic and xerophilic species: Wallemia ichthyophaga , Wallemia muriae , and Wallemia sebi . Considering the important protective role the fungal cell wall has under fluctuating physicochemical environments, this study was focused on cell morphology changes, with particular emphasis on the structure of the cell wall, when these fungi were grown in media with low and high salinities. We compared the influence of salinity on the morphological characteristics of Wallemia spp. by light, transmission, and focused-ion-beam/scanning electron microscopy. W. ichthyophaga was the only species of this genus that was metabolically active at saturated NaCl concentrations. W. ichthyophaga grew in multicellular clumps and adapted to the high salinity with a significant increase in cell wall thickness. The other two species, W. muriae and W. sebi , also demonstrated adaptive responses to the high NaCl concentration, showing in particular an increased size of mycelial pellets at the high salinities, with an increase in cell wall thickness that was less pronounced. The comparison of all three of the Wallemia spp. supports previous findings relating to the extremely halophilic character of the phylogenetically distant W. ichthyophaga and demonstrates that, through morphological adaptations, the eukaryotic Wallemia spp. are representative of eukaryotic organisms that have successfully adapted to life in extremely saline environments.
机译:介孢菌属Wallemia是高盐环境的活跃居民,最近已被描述为包含三种嗜盐和嗜干菌种:Wallemia ichthyophaga,Wallemia muriae和Wallemia sebi。考虑到真菌细胞壁在不断变化的理化环境下所起的重要保护作用,本研究着重于细胞形态变化,特别是当这些真菌在低盐和高盐度培养基中生长时的细胞壁结构。我们比较了盐度对Wallemia spp形态特征的影响。通过光,透射和聚焦离子束/扫描电子显微镜观察。 ichthyophaga W.是该属中唯一在饱和NaCl浓度下具有代谢活性的物种。 ichthyophaga W. ichthyophaga生长在多细胞团块中,适应高盐度,细胞壁厚度显着增加。另外两个物种,W。muriae和W. sebi,也表现出对高NaCl浓度的适应性反应,尤其显示了在高盐度下菌丝体沉淀物的大小增加,而细胞壁厚度的增加不那么明显。 Wallemia spp的所有三个的比较。支持先前有关系统发育距离较远的W. ichthyophaga的极嗜盐性的发现,并证明通过形态学适应,真核Wallemia spp。是成功适应极端盐碱环境中生活的真核生物的代表。

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