Aerially transmitted human fungal pathogens: what can we learn from metagenomics and comparative genomics?
Cécile-Marie Aliouat-Denis1, Magali Chabé1, Laurence Delhaes2
1Biology & Diversity of Emerging Eukaryotic Pathogens (BDEEP), Center for Infection and Immunity of Lille (CIIL), INSERM U1019, CNRS UMR8204, IFR142, Lille Pasteur Institute, Lille Nord de France University (EA4547), Lille, France; Parasitology-Medical Mycology Department, Faculty of Pharmacy, Lille, France.
Abstract:
In the last few decades, aerially transmitted human fungal pathogens have been increasingly recognized to impact the clinical course of chronic pulmonary diseases, such as asthma, cystic fibrosis or chronic obstructive pulmonary disease. Thanks to recent development of culture-free high-throughput sequencing methods, the metagenomic approaches are now appropriate to detect, identify and even quantify prokaryotic or eukaryotic microorganism communities inhabiting human respiratory tract and to access the complexity of even low-burden microbe communities that are likely to play a role in chronic pulmonary diseases. In this review, we explore how metagenomics and comparative genomics studies can alleviate fungal culture bottlenecks, improve our knowledge about fungal biology, lift the veil on cross-talks between host lung and fungal microbiota, and gain insights into the pathogenic impact of these aerially transmitted fungi that affect human beings. We reviewed metagenomic studies and comparative genomic analyses of carefully chosen microorganisms, and confirmed the usefulness of such approaches to better delineate biology and pathogenesis of aerially transmitted human fungal pathogens. Efforts to generate and efficiently analyze the enormous amount of data produced by such novel approaches have to be pursued, and will potentially provide the patients suffering from chronic pulmonary diseases with a better management. This manuscript is part of the series of works presented at the "V International Workshop: Molecular genetic approaches to the study of human pathogenic fungi" (Oaxaca, Mexico, 2012).
Insights
Metagenomics and comparative genomics reveal the role of airborne fungal pathogens in chronic lung diseases. These advanced methods improve understanding of fungal biology and host interactions, aiding better patient management.
Area of Science:
- Medical Mycology
- Genomics
- Pulmonary Medicine
Background:
- Airborne fungal pathogens increasingly impact chronic lung conditions like asthma and cystic fibrosis.
- Traditional culture methods struggle with complex respiratory tract microbial communities.
Purpose of the Study:
- To review how metagenomics and comparative genomics enhance the study of airborne fungal pathogens.
- To explore fungal biology, host-lung interactions, and pathogenesis in chronic pulmonary diseases.
Main Methods:
- Review of metagenomic studies.
- Analysis of comparative genomic data for selected microorganisms.
- Focus on culture-free, high-throughput sequencing approaches.
Main Results:
- Metagenomics effectively detects, identifies, and quantifies microbial communities, including fungi, in the respiratory tract.
- These methods overcome fungal culture limitations, revealing insights into fungal biology and pathogenesis.
- Confirmed the utility of genomic approaches for understanding airborne fungal pathogens.
Conclusions:
- Genomic approaches are crucial for delineating the biology and pathogenesis of airborne fungal pathogens.
- Further data generation and analysis are needed for improved management of chronic pulmonary diseases.
- These methods offer potential for better patient outcomes in respiratory fungal infections.
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