Genomic analysis of globally diverse Mycobacterium tuberculosis strains provides insights into the emergence and spread of multidrug resistance
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Published:2017-01-16
Issue:3
Volume:49
Page:395-402
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ISSN:1061-4036
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Container-title:Nature Genetics
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language:en
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Short-container-title:Nat Genet
Author:
Manson Abigail LORCID, , Cohen Keira A, Abeel ThomasORCID, Desjardins Christopher A, Armstrong Derek T, Barry Clifton E, Brand Jeannette, Chapman Sinéad B, Cho Sang-Nae, Gabrielian Andrei, Gomez James, Jodals Andreea M, Joloba Moses, Jureen Pontus, Lee Jong Seok, Malinga Lesibana, Maiga Mamoudou, Nordenberg Dale, Noroc Ecaterina, Romancenco Elena, Salazar AlexORCID, Ssengooba Willy, Velayati A A, Winglee Kathryn, Zalutskaya Aksana, Via Laura E, Cassell Gail H, Dorman Susan E, Ellner Jerrold, Farnia Parissa, Galagan James E, Rosenthal Alex, Crudu Valeriu, Homorodean Daniela, Hsueh Po-Ren, Narayanan Sujatha, Pym Alexander S, Skrahina Alena, Swaminathan Soumya, Van der Walt Martie, Alland David, Bishai William R, Cohen Ted, Hoffner Sven, Birren Bruce W, Earl Ashlee M
Publisher
Springer Science and Business Media LLC
Reference75 articles.
1. Farmer, P. et al. The dilemma of MDR-TB in the global era. Int. J. Tuberc. Lung Dis. 2, 869–876 (1998). 2. World Health Organization. Global Tuberculosis Report 2015 (World Health Organization, Geneva, Switzerland, 2015). 3. Awofeso, N. Antituberculosis medication side effects constitute major factor for poor adherence to tuberculosis treatment. Bull. World Health Organ. 86, B–D (2008). 4. Pietersen, E. et al. Long-term outcomes of patients with extensively drug-resistant tuberculosis in South Africa: a cohort study. Lancet 383, 1230–1239 (2014). 5. Boehme, C.C. et al. Rapid molecular detection of tuberculosis and rifampin resistance. N. Engl. J. Med. 363, 1005–1015 (2010).
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