A multicentre study reveals dysbiosis in the microbial co-infection and antimicrobial resistance gene profile in the nasopharynx of COVID-19 patients

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A. Sayeed. M. Mahmud
Christine A. Seers
Aftab Ali Shaikh
Tarannum Taznin
Mohammad Samir Uzzaman
Eshrar Osman
Md. Ahashan Habib
Shahina Akter
Tanjina Akhtar Banu
Md. Murshed Hasan Sarkar
Barna Goswami
Iffat Jahan
Chioma M. Okeoma
Md. Salim Khan
Eric C. Reynolds
机构
[1] Bangladesh Council of Scientific and Industrial Research,The Oral Health Cooperative Research Centre, Melbourne Dental School, Bio21 Institute
[2] The University of Melbourne,Department of Pathology, Microbiology, and Immunology
[3] Jashore University of Science and Technology,undefined
[4] SciTech Consulting and Solutions,undefined
[5] New York Medical College,undefined
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Scientific Reports | / 13卷
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摘要
The impact of SARS-CoV-2 infection on the nasopharyngeal microbiome has not been well characterised. We sequenced genetic material extracted from nasopharyngeal swabs of SARS-CoV-2-positive individuals who were asymptomatic (n = 14), had mild (n = 64) or severe symptoms (n = 11), as well as from SARS-CoV-2-negative individuals who had never-been infected (n = 5) or had recovered from infection (n = 7). Using robust filters, we identified 1345 taxa with approximately 0.1% or greater read abundance. Overall, the severe cohort microbiome was least diverse. Bacterial pathogens were found in all cohorts, but fungal species identifications were rare. Few taxa were common between cohorts suggesting a limited human nasopharynx core microbiome. Genes encoding resistance mechanisms to 10 antimicrobial classes (> 25% sequence coverages, 315 genes, 63 non-redundant) were identified, with β-lactam resistance genes near ubiquitous. Patients infected with SARS-CoV-2 (asymptomatic and mild) had a greater incidence of antibiotic resistance genes and a greater microbial burden than the SARS-CoV-2-negative individuals. This should be considered when deciding how to treat COVID-19 related bacterial infections.
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  • [31] Llor C(2020)Irrational use of antibiotics and antibiotic resistance in southern rural Bangladesh: perspectives from both the physicians and patients BMC Health Serv. Res. 20 656-2468
  • [32] Harper A(2019)What contributes to inappropriate antibiotic dispensing among qualified and unqualified healthcare providers in Bangladesh? A qualitative study mBio 10 e02877-615
  • [33] Gao Z(2019)Unbiased metagenomic sequencing for pediatric meningitis in Bangladesh reveals neuroinvasive chikungunya virus outbreak and other unrealized pathogens PLoS One 14 e0218318-16
  • [34] Kang Y(2012)Metagenomic next-generation sequencing of samples from pediatric febrile illness in Tororo, Uganda Nat. Methods 9 357-9
  • [35] Yu J(2014)Fast gapped-read alignment with Bowtie 2 BMC Biol. 12 87-56
  • [36] Ren L(2014)Reagent and laboratory contamination can critically impact sequence-based microbiome analyses Genome Med. 6 90-382
  • [37] Hornef M(2018)SRST2: Rapid genomic surveillance for public health and hospital microbiology labs J. Dent. Res. 97 492-1053
  • [38] McCullers JA(2017)Metatranscriptome of the oral microbiome in health and disease Nat. Commun. 8 845-6
  • [39] Smith W(2013)The gut microbiome in atherosclerotic cardiovascular disease Gut 62 146-338
  • [40] Andrewes CH(2012)A metagenomic insight into our gut's microbiome Front. Cell. Infect. Microbiol. 2 104-513