Please use this identifier to cite or link to this item: 10.3389/fmicb.2017.02661
Title: Mycobacterium tuberculosis acquires limited genetic diversity in prolonged infections, reactivations and transmissions involving multiple hosts
Authors: Herranz, Marta
Pole, Ilva
Ozere, Iveta
Chiner-Oms, Alvaro
Martínez-Lirola, Miguel
Perez-García, Felipe
Gijon, Paloma
Serrano, María Jesus Ruiz
Romero, Laura Clotet
Cuevas, Oscar
Comas, Inaki
Bouza, Emilio
Perez-Lago, Laura
García-de-Viedma, Darío
Department of Infectology
Keywords: Microevolution;SNPs;Tuberculosis;Variability;Whole genome sequencing;3.1 Basic medicine;3.3 Health sciences;1.6 Biological sciences;1.1. Scientific article indexed in Web of Science and/or Scopus database;Microbiology;Microbiology (medical);SDG 3 - Good Health and Well-being
Issue Date: 19-Jan-2018
Citation: Herranz , M , Pole , I , Ozere , I , Chiner-Oms , A , Martínez-Lirola , M , Perez-García , F , Gijon , P , Serrano , M J R , Romero , L C , Cuevas , O , Comas , I , Bouza , E , Perez-Lago , L & García-de-Viedma , D 2018 , ' Mycobacterium tuberculosis acquires limited genetic diversity in prolonged infections, reactivations and transmissions involving multiple hosts ' , Frontiers in Microbiology , vol. 8 , 2661 . https://doi.org/10.3389/fmicb.2017.02661
Abstract: Background: Mycobacterium tuberculosis (MTB) has limited ability to acquire variability. Analysis of its microevolution might help us to evaluate the pathways followed to acquire greater infective success. Whole-genome sequencing (WGS) in the analysis of the transmission of MTB has elucidated the magnitude of variability in MTB. Analysis of transmission currently depends on the identification of clusters, according to the threshold of variability (<5 SNPs) between isolates. Objective: We evaluated whether the acquisition of variability in MTB, was more frequent in situations which could favor it, namely intrapatient, prolonged infections or reactivations and interpatient transmissions involving multiple sequential hosts. Methods: We used WGS to analyze the accumulation of variability in sequential isolates from prolonged infections or translations from latency to reactivation. We then measured microevolution in transmission clusters with prolonged transmission time, high number of involved cases, simultaneous involvement of latency and active transmission. Results: Intrapatient and interpatient acquisition of variability was limited, within the ranges expected according to the thresholds of variability proposed, even though bursts of variability were observed. Conclusions: The thresholds of variability proposed for MTB seem to be valid in most circumstances, including those theoretically favoring acquisition of variability. Our data point to multifactorial modulation of microevolution, although further studies are necessary to elucidate the factors underlying this modulation.
Description: Publisher Copyright: © 2018 Herranz, Pole, Ozere, Chiner-Oms, Martínez-Lirola, Pérez-García, Gijón, Serrano, Romero, Cuevas, Comas, Bouza, Pérez-Lago and García-de-Viedma.
DOI: 10.3389/fmicb.2017.02661
ISSN: 1664-302X
Appears in Collections:Research outputs from Pure / Zinātniskās darbības rezultāti no ZDIS Pure

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