分离株之间的异质性表明,低氧环境下的适应性与烟曲霉毒力相关。

Heterogeneity among Isolates Reveals that Fitness in Low Oxygen Correlates with Aspergillus fumigatus Virulence.

作者信息

Kowalski Caitlin H, Beattie Sarah R, Fuller Kevin K, McGurk Elizabeth A, Tang Yi-Wei, Hohl Tobias M, Obar Joshua J, Cramer Robert A

机构信息

Department of Microbiology and Immunology, Geisel School of Medicine at Dartmouth, Hanover, New Hampshire, USA.

Department of Molecular and Systems Biology, Geisel School of Medicine at Dartmouth, Hanover, New Hampshire, USA.

出版信息

mBio. 2016 Sep 20;7(5):e01515-16. doi: 10.1128/mBio.01515-16.

Abstract

UNLABELLED

Previous work has shown that environmental and clinical isolates of Aspergillus fumigatus represent a diverse population that occupies a variety of niches, has extensive genetic diversity, and exhibits virulence heterogeneity in a number of animal models of invasive pulmonary aspergillosis (IPA). However, mechanisms explaining differences in virulence among A. fumigatus isolates remain enigmatic. Here, we report a significant difference in virulence of two common lab strains, CEA10 and AF293, in the murine triamcinolone immunosuppression model of IPA, in which we previously identified severe low oxygen microenvironments surrounding fungal lesions. Therefore, we hypothesize that the ability to thrive within these lesions of low oxygen promotes virulence of A. fumigatus in this model. To test this hypothesis, we performed in vitro fitness and in vivo virulence analyses in the triamcinolone murine model of IPA with 14 environmental and clinical isolates of A. fumigatus Among these isolates, we observed a strong correlation between fitness in low oxygen in vitro and virulence. In further support of our hypothesis, experimental evolution of AF293, a strain that exhibits reduced fitness in low oxygen and reduced virulence in the triamcinolone model of IPA, results in a strain (EVOL20) that has increased hypoxia fitness and a corresponding increase in virulence. Thus, the ability to thrive in low oxygen correlates with virulence of A. fumigatus isolates in the context of steroid-mediated murine immunosuppression.

IMPORTANCE

Aspergillus fumigatus occupies multiple environmental niches, likely contributing to the genotypic and phenotypic heterogeneity among isolates. Despite reports of virulence heterogeneity, pathogenesis studies often utilize a single strain for the identification and characterization of virulence and immunity factors. Here, we describe significant variation between A. fumigatus isolates in hypoxia fitness and virulence, highlighting the advantage of including multiple strains in future studies. We also illustrate that hypoxia fitness correlates strongly with increased virulence exclusively in the nonleukopenic murine triamcinolone immunosuppression model of IPA. Through an experimental evolution experiment, we observe that chronic hypoxia exposure results in increased virulence of A. fumigatus We describe here the first observation of a model-specific virulence phenotype correlative with in vitro fitness in hypoxia and pave the way for identification of hypoxia-mediated mechanisms of virulence in the fungal pathogen A. fumigatus.

摘要

未标记

先前的研究表明,烟曲霉的环境分离株和临床分离株代表了一个多样化的群体,它们占据着各种生态位,具有广泛的遗传多样性,并且在多种侵袭性肺曲霉病(IPA)动物模型中表现出毒力异质性。然而,解释烟曲霉分离株毒力差异的机制仍然不明。在此,我们报告了两种常见实验室菌株CEA10和AF293在IPA的小鼠曲安西龙免疫抑制模型中的毒力存在显著差异,我们之前在该模型中发现真菌病变周围存在严重的低氧微环境。因此,我们假设在这些低氧病变中生长的能力促进了烟曲霉在该模型中的毒力。为了验证这一假设,我们在IPA的曲安西龙小鼠模型中对14株烟曲霉的环境分离株和临床分离株进行了体外适应性和体内毒力分析。在这些分离株中,我们观察到体外低氧适应性与毒力之间存在很强的相关性。进一步支持我们的假设的是,AF293菌株在低氧环境中适应性降低,在IPA的曲安西龙模型中毒力降低,对其进行实验进化后得到了一个菌株(EVOL20),该菌株的低氧适应性增加,毒力相应增加。因此,在类固醇介导的小鼠免疫抑制背景下,在低氧环境中生长的能力与烟曲霉分离株的毒力相关。

重要性

烟曲霉占据多个环境生态位,这可能导致分离株之间的基因型和表型异质性。尽管有关于毒力异质性的报道,但发病机制研究通常使用单一菌株来鉴定和表征毒力及免疫因子。在此,我们描述了烟曲霉分离株在低氧适应性和毒力方面的显著差异,强调了在未来研究中纳入多种菌株的优势。我们还表明,低氧适应性仅在非白细胞减少的小鼠曲安西龙免疫抑制IPA模型中与毒力增加密切相关。通过一项实验进化实验,我们观察到长期低氧暴露会导致烟曲霉毒力增加。我们在此首次观察到一种与低氧体外适应性相关的模型特异性毒力表型,为鉴定真菌病原体烟曲霉中低氧介导的毒力机制铺平了道路。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/ff99/5040115/c3b15ef4fc58/mbo0041629910001.jpg

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