← Explorer/Network

Molecular profiling of fungal communities in moisture damaged buildings before and after remediation - a comparison of culture-dependent and culture-independent methods

Miia Pitkäranta, Teija Meklin, Anne Hyvärinen +5 more2011BMC Microbiologyarticle
10.1186/1471-2180-11-235PubMedFree full text
Indoor Mold (Stachybotrys, Aspergillus, etc.)Water-Damaged Buildings (WDB)

Abstract

BACKGROUND: Indoor microbial contamination due to excess moisture is an important contributor to human illness in both residential and occupational settings. However, the census of microorganisms in the indoor environment is limited by the use of selective, culture-based detection techniques. By using clone library sequencing of full-length internal transcribed spacer region combined with quantitative polymerase chain reaction (qPCR) for 69 fungal species or assay groups and cultivation, we have been able to generate a more comprehensive description of the total indoor mycoflora. Using this suite of methods, we assessed the impact of moisture damage on the fungal community composition of settled dust and building material samples (n = 8 and 16, correspondingly). Water-damaged buildings (n = 2) were examined pre- and post- remediation, and compared with undamaged reference buildings (n = 2). RESULTS: Culture-dependent and independent methods were consistent in the dominant fungal taxa in dust, but sequencing revealed a five to ten times higher diversity at the genus level than culture or qPCR. Previously unknown, verified fungal phylotypes were detected in dust, accounting for 12% of all diversity. Fungal diversity, especially within classes Dothideomycetes and Agaricomycetes tended to be higher in the water damaged buildings. Fungal phylotypes detected in building materials were present in dust samples, but their proportion of total fungi was similar for damaged and reference buildings. The quantitative correlation between clone library phylotype frequencies and qPCR counts was moderate (r = 0.59, p < 0.01). CONCLUSIONS: We examined a small number of target buildings and found indications of elevated fungal diversity associated with water damage. Some of the fungi in dust were attributable to building growth, but more information on the material-associated communities is needed in order to understand the dynamics of microbial communities between building structures and dust. The sequencing-based method proved indispensable for describing the true fungal diversity in indoor environments. However, making conclusions concerning the effect of building conditions on building mycobiota using this methodology was complicated by the wide natural diversity in the dust samples, the incomplete knowledge of material-associated fungi fungi and the semiquantitative nature of sequencing based methods.

Cited By (7)

  • Mycobiota and the Contribution of Yeasts in Floor Dust of 50 Elementary Schools Characterized with Sequencing Internal Transcribed Spacer Region of Ribosomal DNAEnvironmental Science & Technology · 2022
  • Spring is associated with increased total and allergenic fungal concentrations in house dust from a pediatric asthma cohort in New York CityBuilding and Environment · 2022
  • Mold Exposure and Mold-Associated Diseases- Does the Public Healthcare System Protect Us? A CommentJournal of Public Health Issues and Practices · 2025
  • Comparison of Methods to Identify and Monitor Mold Damages in BuildingsApplied Sciences · 2022
  • Indoor Bacterial and Fungal Burden in “Moldy” versus “Non-Moldy” Homes: A Case Study Employing Advanced Sequencing Techniques in a US Metropolitan AreaPathogens · 2023
  • Fungal Signature of Moisture Damage in Buildings: Identification by Targeted and Untargeted Approaches with Mycobiome DataApplied and Environmental Microbiology · 2020

Related Papers

  • Misalignment between Clinical Mold Antigen Extracts and Airborne Molds Found in Water-damaged HomesAnnals of the American Thoracic Society · 2021 · 2 shared tags
  • Dampness, mould, onset and remission of adult respiratory symptoms, asthma and rhinitisEuropean Respiratory Journal · 2019 · 2 shared tags
  • Microbial Air Quality in the Built Environment—Case Study of Darvas-La Roche Heritage Museum House, Oradea, RomaniaBuildings · 2023 · 2 shared tags
  • Mold inhalation causes innate immune activation, neural, cognitive and emotional dysfunctionBrain Behavior and Immunity · 2020 · 2 shared tags
  • Going over Fungal Allergy: Alternaria alternata and Its AllergensJournal of Fungi · 2023 · 2 shared tags
  • Toxicity Screening of Fungal Extracts and Metabolites, Xenobiotic Chemicals, and Indoor Dusts with In Vitro and Ex Vivo Bioassay MethodsPathogens · 2024 · 2 shared tags
Bacteria in a water-damaged building: associations of actinomycetes and non-tuberculous mycobacteria with respiratory health in occupants
Indoor Air · 2017

References (8)

  • Air- and Dustborne Mycoflora in Houses Free of Water Damage and Fungal GrowthApplied and Environmental Microbiology · 2004
  • Characterization of the microbial community in indoor environments: a chemical-analytical approachApplied and Environmental Microbiology · 2003
  • Public health and economic impact of dampness and moldIndoor Air · 2007
  • Indoor air particles and bioaerosols before and after renovation of moisture-damaged buildings: the effect on biological activity and microbial floraEnvironmental Research · 2008
  • Reduction in Asthma Morbidity in Children as a Result of Home Remediation Aimed at Moisture SourcesEnvironmental Health Perspectives · 2006
  • Respiratory morbidity among children following renovation of a water-damaged schoolArchives of Environmental Health An International Journal · 2000
  • Comparison of indoor fungal spore levels before and after professional home remediationAnnals of Allergy Asthma & Immunology · 2007
  • Respiratory and Allergic Health Effects of Dampness, Mold, and Dampness-Related Agents: A Review of the Epidemiologic EvidenceEnvironmental Health Perspectives · 2011