Analysis of Plasmodium falciparum diversity in natural infections by deep sequencing

Malaria elimination strategies require surveillance of the parasite population for genetic changes that demand a public health response, such as new forms of drug resistance. Here we describe methods for the large-scale analysis of genetic variation in Plasmodium falciparum by deep sequencing of par...

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Main Authors: Manske, M, Miotto, O, Campino, S, Auburn, S, Almagro-Garcia, J, Maslen, G, O'Brien, J, Djimde, A, Doumbo, O, Zongo, I, Ouedraogo, J, Michon, P, Mueller, I, Siba, P, Nzila, A, Borrmann, S
Format: Journal article
Published: 2012
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author Manske, M
Manske, M
Miotto, O
Miotto, O
Campino, S
Campino, S
Auburn, S
Auburn, S
Auburn, S
Almagro-Garcia, J
Almagro-Garcia, J
Almagro-Garcia, J
Maslen, G
Maslen, G
O'Brien, J
O'Brien, J
Djimde, A
Doumbo, O
Zongo, I
Ouedraogo, J
Michon, P
Mueller, I
Siba, P
Nzila, A
Borrmann, S
author_facet Manske, M
Manske, M
Miotto, O
Miotto, O
Campino, S
Campino, S
Auburn, S
Auburn, S
Auburn, S
Almagro-Garcia, J
Almagro-Garcia, J
Almagro-Garcia, J
Maslen, G
Maslen, G
O'Brien, J
O'Brien, J
Djimde, A
Doumbo, O
Zongo, I
Ouedraogo, J
Michon, P
Mueller, I
Siba, P
Nzila, A
Borrmann, S
author_sort Manske, M
collection OXFORD
description Malaria elimination strategies require surveillance of the parasite population for genetic changes that demand a public health response, such as new forms of drug resistance. Here we describe methods for the large-scale analysis of genetic variation in Plasmodium falciparum by deep sequencing of parasite DNA obtained from the blood of patients with malaria, either directly or after short-term culture. Analysis of 86,158 exonic single nucleotide polymorphisms that passed genotyping quality control in 227 samples from Africa, Asia and Oceania provides genome-wide estimates of allele frequency distribution, population structure and linkage disequilibrium. By comparing the genetic diversity of individual infections with that of the local parasite population, we derive a metric of within-host diversity that is related to the level of inbreeding in the population. An open-access web application has been established for the exploration of regional differences in allele frequency and of highly differentiated loci in the P.falciparum genome. © 2012 Macmillan Publishers Limited. All rights reserved.
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spelling oxford-uuid:e9055604-111a-45c8-b2f1-890e3b93c2a82022-03-27T10:51:19ZAnalysis of Plasmodium falciparum diversity in natural infections by deep sequencingJournal articlehttp://purl.org/coar/resource_type/c_dcae04bcuuid:e9055604-111a-45c8-b2f1-890e3b93c2a8Symplectic Elements at Oxford2012Manske, MManske, MMiotto, OMiotto, OCampino, SCampino, SAuburn, SAuburn, SAuburn, SAlmagro-Garcia, JAlmagro-Garcia, JAlmagro-Garcia, JMaslen, GMaslen, GO'Brien, JO'Brien, JDjimde, ADoumbo, OZongo, IOuedraogo, JMichon, PMueller, ISiba, PNzila, ABorrmann, SMalaria elimination strategies require surveillance of the parasite population for genetic changes that demand a public health response, such as new forms of drug resistance. Here we describe methods for the large-scale analysis of genetic variation in Plasmodium falciparum by deep sequencing of parasite DNA obtained from the blood of patients with malaria, either directly or after short-term culture. Analysis of 86,158 exonic single nucleotide polymorphisms that passed genotyping quality control in 227 samples from Africa, Asia and Oceania provides genome-wide estimates of allele frequency distribution, population structure and linkage disequilibrium. By comparing the genetic diversity of individual infections with that of the local parasite population, we derive a metric of within-host diversity that is related to the level of inbreeding in the population. An open-access web application has been established for the exploration of regional differences in allele frequency and of highly differentiated loci in the P.falciparum genome. © 2012 Macmillan Publishers Limited. All rights reserved.
spellingShingle Manske, M
Manske, M
Miotto, O
Miotto, O
Campino, S
Campino, S
Auburn, S
Auburn, S
Auburn, S
Almagro-Garcia, J
Almagro-Garcia, J
Almagro-Garcia, J
Maslen, G
Maslen, G
O'Brien, J
O'Brien, J
Djimde, A
Doumbo, O
Zongo, I
Ouedraogo, J
Michon, P
Mueller, I
Siba, P
Nzila, A
Borrmann, S
Analysis of Plasmodium falciparum diversity in natural infections by deep sequencing
title Analysis of Plasmodium falciparum diversity in natural infections by deep sequencing
title_full Analysis of Plasmodium falciparum diversity in natural infections by deep sequencing
title_fullStr Analysis of Plasmodium falciparum diversity in natural infections by deep sequencing
title_full_unstemmed Analysis of Plasmodium falciparum diversity in natural infections by deep sequencing
title_short Analysis of Plasmodium falciparum diversity in natural infections by deep sequencing
title_sort analysis of plasmodium falciparum diversity in natural infections by deep sequencing
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