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Community Analysis and Co-occurrence Patterns in Airway Microbial Communities During Health and Disease

Overview
Journal ERJ Open Res
Specialty Pulmonary Medicine
Date 2019 Jul 16
PMID 31304176
Citations 22
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Abstract

Ecological relationships between bacteria are important when considering variation in bacterial communities in humans, with such variation playing an important role in both health and disease. Using high-throughput sequence data of the 16S rRNA marker-gene, we analysed the prevalence of taxa in the airways of a number of health- and disease-associated cohorts and determined the main drivers of community variance and bacterial co-occurrence. A number of facultative and obligately anaerobic bacterial taxa are commonly associated with the upper airways, forming the main "core" microbiota, spp., spp., spp., spp. and spp. Opportunistic pathogenic bacteria associated with chronic airways disease, such as spp. () spp. ( complex) and spp. () demonstrated poor correlation with other members of their respective communities (ρ<0.5; p>0.005), indicating probable independent acquisition and colonisation. Furthermore, our findings suggest that intra-genus variation between health and disease may affect community assemblies. Improved understanding of how bacteria assemble in time and space during health and disease will enable the future development of tailored treatment according to the patient's own signature microbiota, potentially providing benefit to patients suffering from airway diseases characterised by chronic infection.

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References
1.
DOWNES J, Olsvik B, Hiom S, Spratt D, Cheeseman S, Olsen I . Bulleidia extructa gen. nov., sp. nov., isolated from the oral cavity. Int J Syst Evol Microbiol. 2000; 50 Pt 3:979-983. DOI: 10.1099/00207713-50-3-979. View

2.
Costerton J . Cystic fibrosis pathogenesis and the role of biofilms in persistent infection. Trends Microbiol. 2001; 9(2):50-2. DOI: 10.1016/s0966-842x(00)01918-1. View

3.
Lyczak J, Cannon C, Pier G . Lung infections associated with cystic fibrosis. Clin Microbiol Rev. 2002; 15(2):194-222. PMC: 118069. DOI: 10.1128/CMR.15.2.194-222.2002. View

4.
Ley R, Backhed F, Turnbaugh P, Lozupone C, Knight R, Gordon J . Obesity alters gut microbial ecology. Proc Natl Acad Sci U S A. 2005; 102(31):11070-5. PMC: 1176910. DOI: 10.1073/pnas.0504978102. View

5.
Aas J, Paster B, Stokes L, Olsen I, Dewhirst F . Defining the normal bacterial flora of the oral cavity. J Clin Microbiol. 2005; 43(11):5721-32. PMC: 1287824. DOI: 10.1128/JCM.43.11.5721-5732.2005. View