Stress tolerance of three opportunistic black yeasts

J. Zajc, C. Gostinčar, Metka Lenassi, N. Gunde-Cimerman
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Abstract

Many species of black yeasts can survive extremely harsh conditions and can quickly adapt to novel environments. These traits were proposed to have a role in the ability of some fungal species tocolonise indoor habitats inhospitable for majority of microorganisms, and to cause (opportunistic)infections in humans. In order to better understand the stress tolerance of black yeasts and thereby their opportunism, we focused our research on the three model black yeasts: the polyextremotolerant Au-reobasidium melanogenum and Exophiala dermatitidis, and the extremely halotolerant Hortaeawerneckii. These black yeasts are shown to thrive at temperatures, salinities, pH values and, H2O2 concentrations that inhibit growth of mesophilic species. Most importantly, unlike their close relatives they can not only grow, but also synthesize siderophores (E. dermatitidis) or degradeproteins (A. melanogenum) at 37 °C - traits that are crucial for pathogenesis in humans. These results support the hypothesis that the ability to cope with various environmental stresses is linked to the opportunistic behaviour of fungi. Therefore, better understanding of the connections between the stress-tolerant biology of black fungi and their ability to cause disease is needed, in particular due to their changing interactions with humans and their emerging pathogenicity.
三种机会性黑酵母的抗逆性
许多种类的黑酵母可以在极端恶劣的条件下生存,并能迅速适应新的环境。这些特征被认为是一些真菌物种能够在大多数微生物不适宜居住的室内生境中定植,并引起人类(机会性)感染的原因。为了更好地了解黑酵母的抗逆性及其机会性,我们将研究重点集中在三种模式黑酵母上:多极端耐受的Au-reobasidium melanogenum和Exophiala dermatitis,以及极端耐盐的Hortaeawerneckii。这些黑色酵母在抑制中温菌生长的温度、盐度、pH值和H2O2浓度下都能茁壮成长。最重要的是,与它们的近亲不同,它们不仅可以生长,还可以在37°C下合成铁载体(E. dermatitidis)或降解蛋白质(A. melanogenum)——这些特征对人类的发病机制至关重要。这些结果支持了真菌应对各种环境压力的能力与机会主义行为有关的假设。因此,需要更好地了解黑真菌的耐压生物学与其致病能力之间的联系,特别是由于它们与人类的相互作用不断变化以及它们新出现的致病性。
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