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The global epidemiology of emerging Histoplasma species in recent years
A M Rodrigues1, M A Beale2, F Hagen3,4,5
1Laboratory of Emerging Fungal Pathogens, Department of Microbiology, Immunology and Parasitology, Federal University of São Paulo, São Paulo, 04023-062, Brazil.
Abstract:
Histoplasmosis is a serious infectious disease in humans caused by Histoplasma spp. (Onygenales), whose natural reservoirs are thought to be soil enriched with bird and bat guano. The true global burden of histoplasmosis is underestimated and frequently the pulmonary manifestations are misdiagnosed as tuberculosis. Molecular data on epidemiology of Histoplasma are still scarce, even though there is increasing recognition of histoplasmosis in recent years in areas distant from the traditional endemic regions in the Americas. We used multi-locus sequence data from protein coding loci (ADP-ribosylation factor, H antigen precursor, and delta-9 fatty acid desaturase), DNA barcoding (ITS1/2+5.8s), AFLP markers and mating type analysis to determine the genetic diversity, population structure and recognise the existence of different phylogenetic species among 436 isolates of Histoplasma obtained globally. Our study describes new phylogenetic species and the molecular characteristics of Histoplasma lineages causing outbreaks with a high number of severe outcomes in Northeast Brazil between 2011 and 2015. Genetic diversity levels provide evidence for recombination, common ancestry and clustering of Brazilian isolates at different geographic scales with the emergence of LAm C, a new genotype assigned to a separate population cluster in Northeast Brazil that exhibited low diversity indicative of isolation. The global survey revealed that the high genetic variability among Brazilian isolates along with the presence of divergent cryptic species and/or genotypes may support the hypothesis of Brazil being the center of dispersion of Histoplasma in South America, possibly with the contribution of migratory hosts such as birds and bats. Outside Brazil, the predominant species depends on the region. We confirm that histoplasmosis has significantly broadened its area of occurrence, an important feature of emerging pathogens. From a practical point of view, our data point to the emergence of histoplasmosis caused by a plethora of genotypes, and will enable epidemiological analysis focused on understanding the processes that lead to histoplasmosis. Further, the description of this diversity opens avenues for comparative genomic studies, which will allow progress toward a consensus taxonomy, improve understanding of the presence of hybrids in natural populations of medically relevant fungi, test reproductive barriers and to explore the significance of this variation.
Insights
Histoplasmosis, a fungal infection, is spreading globally. This study reveals new species and genotypes, suggesting Brazil as a key dispersion center for Histoplasma, impacting disease emergence and epidemiology.
Area of Science:
- Mycology and Infectious Diseases
- Molecular Epidemiology
- Fungal Phylogenetics
Background:
- Histoplasmosis, caused by Histoplasma spp., is a significant global health concern often misdiagnosed as tuberculosis.
- Molecular data on Histoplasma epidemiology remain limited, despite its increasing recognition beyond traditional endemic areas.
- The true global burden of histoplasmosis is likely underestimated.
Purpose of the Study:
- To determine the genetic diversity and population structure of Histoplasma isolates globally.
- To identify new phylogenetic species and molecular characteristics of Histoplasma lineages.
- To investigate the potential of Brazil as a center of dispersion for Histoplasma in South America.
Main Methods:
- Multi-locus sequence data from protein-coding loci (ADP-ribosylation factor, H antigen precursor, delta-9 fatty acid desaturase).
- DNA barcoding (ITS1/2+5.8s) and Amplified Fragment Length Polymorphism (AFLP) markers.
- Mating type analysis of 436 global Histoplasma isolates.
Main Results:
- Description of new phylogenetic species and molecular characteristics of Histoplasma lineages, including those causing severe outbreaks in Northeast Brazil.
- Evidence of recombination and common ancestry among isolates, with distinct clustering of Brazilian isolates.
- Identification of LAm C, a new genotype in Northeast Brazil, exhibiting low diversity indicative of isolation.
- High genetic variability in Brazilian isolates supports Brazil as a potential center of Histoplasma dispersion in South America.
- Confirmation that histoplasmosis is an emerging infectious disease with a broadened geographical occurrence.
Conclusions:
- The genetic diversity of Histoplasma, including cryptic species and genotypes, highlights Brazil's role in its South American dispersion.
- The emergence of histoplasmosis is driven by a variety of genotypes, necessitating focused epidemiological analysis.
- Further research, including comparative genomics, is needed to refine fungal taxonomy and understand hybrid formation and reproductive barriers.
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