耳念珠菌III支抗氟康唑的短期进化和传播模式

IF 5.1 1区 生物学 Q1 MICROBIOLOGY mBio Pub Date : 2025-02-05 Epub Date: 2024-12-27 DOI:10.1128/mbio.03164-24
Irving Cancino-Muñoz, Juan Vicente Mulet-Bayona, Carme Salvador-García, Nuria Tormo-Palop, Remedios Guna, Concepción Gimeno-Cardona, Fernando González-Candelas
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引用次数: 0

摘要

由新出现的真菌病原体耳念珠菌引起的感染迅速增加是全球关注的问题,了解其扩展是一个优先事项。酵母的系统发育多样性聚集在五个主要进化支中,其中进化支III特别相关,因为其大多数菌株对氟康唑具有耐药性,减少了治疗选择并引发难以控制的爆发。在这项研究中,我们通过分析全球收集的566个基因组来研究进化支III的系统发育结构。我们已经在进化枝III中确定了三个亚群,其中两个在遗传上最密切相关。此外,我们估计第三进化枝的进化速率为2.25e-7 s/s/y(每年2.87次变化)。我们发现其中一个亚群表现出对氟康唑的内在耐药性,并且是全球该分支中大多数病例的原因。我们推断,这一亚群可能起源于2010年12月左右(95%高概率密度(HPD): 2010年4月至2011年6月),从那时起,它在各大洲传播,产生了多次大规模疫情,每次都有独特的传播和传播模式。这些结果突出了该病原体适应其环境的卓越能力及其在全球的迅速传播,强调了迫切需要有效应对这一流行病学挑战。重要性受念珠菌感染的病例数量在世界范围内令人担忧地增加。在目前确认的进化支中,进化支III的氟康唑耐药病例比例最高,并且传播非常迅速,在全球范围内引起了大规模的医院暴发。通过分析来自世界各地的完整真菌基因组,我们确认了这一分支的起源,并揭示了它在2010年代初的传播模式。这一发现提供了可能有助于公共卫生当局控制疾病的知识。
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Short-term evolution and dispersal patterns of fluconazole-resistance in Candida auris clade III.

The rapid increase in infections caused by the emerging fungal pathogen Candida auris is of global concern, and understanding its expansion is a priority. The phylogenetic diversity of the yeast is clustered in five major clades, among which clade III is particularly relevant, as most of its strains exhibit resistance to fluconazole, reducing the therapeutic alternatives and provoking outbreaks that are difficult to control. In this study, we have investigated the phylogenetic structure of clade III by analyzing a global collection of 566 genomes. We have identified three subgroups within clade III, among which two are genetically most closely related. Moreover, we have estimated the evolutionary rate of clade III to be 2.25e-7 s/s/y (2.87 changes per year). We found that one of these subgroups shows intrinsic resistance to fluconazole and is responsible for the majority of cases within this clade globally. We inferred that this subgroup may have originated around December 2010 (95% High Probability Density (HPD): April 2010-June 2011), and since then it has spread across continents, generating multiple large outbreaks, each with a unique pattern of transmission and dissemination. These results highlight the remarkable ability of the pathogen to adapt to its environment and its rapid global spread, underscoring the urgent need to address this epidemiological challenge effectively.IMPORTANCEThe number of cases affected by Candida auris has increased worryingly worldwide. Among the currently recognized clades, clade III has the highest proportion of fluconazole-resistant cases and is spreading very rapidly, causing large nosocomial outbreaks across the globe. By analyzing complete fungal genomes from around the world, we have confirmed the origin of this clade and unraveled its dispersal patterns in the early 2010s. This finding provides knowledge that may be helpful to the public health authorities for the control of the disease.

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来源期刊
mBio
mBio MICROBIOLOGY-
CiteScore
10.50
自引率
3.10%
发文量
762
审稿时长
1 months
期刊介绍: mBio® is ASM''s first broad-scope, online-only, open access journal. mBio offers streamlined review and publication of the best research in microbiology and allied fields.
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