Whole genome sequencing of multiple <i>Leishmania donovani</i> clinical isolates provides insights into population structure and mechanisms of drug resistance

Tim Downing(Wellcome Sanger Institute), Hideo Imamura(Instituut voor Tropische Geneeskunde), Saskia Decuypere(Instituut voor Tropische Geneeskunde), Taane G. Clark(University of London), Graham H. Coombs(University of Strathclyde), James A. Cotton(Wellcome Sanger Institute), James D. Hilley(Wellcome Centre for Molecular Parasitology), Simonne De Doncker(Instituut voor Tropische Geneeskunde), Ilse Maes(Instituut voor Tropische Geneeskunde), Jeremy C. Mottram(Wellcome Centre for Molecular Parasitology), Mike Quail(Wellcome Sanger Institute), Suman Rijal(B.P. Koirala Institute of Health Sciences), Mandy Sanders(Wellcome Sanger Institute), Gabriele Schönian(Institut für Hygiene und Umwelt), Olivia Stark(Institut für Hygiene und Umwelt), Shyam Sundar(Institute of Medical Sciences), Manu Vanaerschot(Instituut voor Tropische Geneeskunde), Christiane Hertz‐Fowler(Wellcome Sanger Institute), Jean‐Claude Dujardin(Instituut voor Tropische Geneeskunde), Matthew Berriman(Wellcome Sanger Institute)
Genome Research
October 28, 2011
Cited by 432Open Access
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Abstract

Visceral leishmaniasis is a potentially fatal disease endemic to large parts of Asia and Africa, primarily caused by the protozoan parasite Leishmania donovani. Here, we report a high-quality reference genome sequence for a strain of L. donovani from Nepal, and use this sequence to study variation in a set of 16 related clinical lines, isolated from visceral leishmaniasis patients from the same region, which also differ in their response to in vitro drug susceptibility. We show that whole-genome sequence data reveals genetic structure within these lines not shown by multilocus typing, and suggests that drug resistance has emerged multiple times in this closely related set of lines. Sequence comparisons with other Leishmania species and analysis of single-nucleotide diversity within our sample showed evidence of selection acting in a range of surface- and transport-related genes, including genes associated with drug resistance. Against a background of relative genetic homogeneity, we found extensive variation in chromosome copy number between our lines. Other forms of structural variation were significantly associated with drug resistance, notably including gene dosage and the copy number of an experimentally verified circular episome present in all lines and described here for the first time. This study provides a basis for more powerful molecular profiling of visceral leishmaniasis, providing additional power to track the drug resistance and epidemiology of an important human pathogen.


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