Multilocus microsatellite typing system for Penicillium marneffei reveals spatially structured populations

For eukaryotic pathogens that have low levels of genetic variation, multilocus microsatellite typing (MLMT) offers an accurate and reproducible method of characterizing genetic diversity. Here, we describe the application of an MLMT system to the emerging pathogenic fungus Penicillium marneffei. Iso...

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Main Authors: Fisher M.C., Aanensen D., De Hoog S., Vanittanakom N.
Format: Article
Language:English
Published: 2014
Online Access:http://www.scopus.com/inward/record.url?eid=2-s2.0-8644262307&partnerID=40&md5=d08426db9b64c85682061b9732c63676
http://cmuir.cmu.ac.th/handle/6653943832/3769
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Institution: Chiang Mai University
Language: English
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spelling th-cmuir.6653943832-37692014-08-30T02:35:18Z Multilocus microsatellite typing system for Penicillium marneffei reveals spatially structured populations Fisher M.C. Aanensen D. De Hoog S. Vanittanakom N. For eukaryotic pathogens that have low levels of genetic variation, multilocus microsatellite typing (MLMT) offers an accurate and reproducible method of characterizing genetic diversity. Here, we describe the application of an MLMT system to the emerging pathogenic fungus Penicillium marneffei. Isolates used for this study were those held in the culture collections of the Centraalbureau voor Schimmelcultures, Utrecht, The Netherlands, and the Chiang Mai University Department of Microbiology, Chang Mai, Thailand. High genetic diversity and extensive spatial structure were observed among clinical isolates, with the geographical area of origin for each isolate strongly correlating with the occurrence of two deeply divided clades. Within each clade, multilocus linkage associations were highly significant and could be explained by genetically differentiated populations or by an exclusively clonal reproductive mode, or both. Our results show that southeast Asian penicilliosis is caused by a fungus with a complex population genetic structure. Furthermore, this MLMT system generates digital data that can be easily queried against a centrally held database via the internet (http://pmarneffei.multilocus.net/); this provides a powerful epidemiological tool for analyzing the underlying parameters that are responsible for the emergence of P. marneffei in human immunodeficiency virus-positive populations. 2014-08-30T02:35:18Z 2014-08-30T02:35:18Z 2004 Article 00951137 10.1128/JCM.42.11.5065-5069.2004 15528697 JCMID http://www.scopus.com/inward/record.url?eid=2-s2.0-8644262307&partnerID=40&md5=d08426db9b64c85682061b9732c63676 http://cmuir.cmu.ac.th/handle/6653943832/3769 English
institution Chiang Mai University
building Chiang Mai University Library
country Thailand
collection CMU Intellectual Repository
language English
description For eukaryotic pathogens that have low levels of genetic variation, multilocus microsatellite typing (MLMT) offers an accurate and reproducible method of characterizing genetic diversity. Here, we describe the application of an MLMT system to the emerging pathogenic fungus Penicillium marneffei. Isolates used for this study were those held in the culture collections of the Centraalbureau voor Schimmelcultures, Utrecht, The Netherlands, and the Chiang Mai University Department of Microbiology, Chang Mai, Thailand. High genetic diversity and extensive spatial structure were observed among clinical isolates, with the geographical area of origin for each isolate strongly correlating with the occurrence of two deeply divided clades. Within each clade, multilocus linkage associations were highly significant and could be explained by genetically differentiated populations or by an exclusively clonal reproductive mode, or both. Our results show that southeast Asian penicilliosis is caused by a fungus with a complex population genetic structure. Furthermore, this MLMT system generates digital data that can be easily queried against a centrally held database via the internet (http://pmarneffei.multilocus.net/); this provides a powerful epidemiological tool for analyzing the underlying parameters that are responsible for the emergence of P. marneffei in human immunodeficiency virus-positive populations.
format Article
author Fisher M.C.
Aanensen D.
De Hoog S.
Vanittanakom N.
spellingShingle Fisher M.C.
Aanensen D.
De Hoog S.
Vanittanakom N.
Multilocus microsatellite typing system for Penicillium marneffei reveals spatially structured populations
author_facet Fisher M.C.
Aanensen D.
De Hoog S.
Vanittanakom N.
author_sort Fisher M.C.
title Multilocus microsatellite typing system for Penicillium marneffei reveals spatially structured populations
title_short Multilocus microsatellite typing system for Penicillium marneffei reveals spatially structured populations
title_full Multilocus microsatellite typing system for Penicillium marneffei reveals spatially structured populations
title_fullStr Multilocus microsatellite typing system for Penicillium marneffei reveals spatially structured populations
title_full_unstemmed Multilocus microsatellite typing system for Penicillium marneffei reveals spatially structured populations
title_sort multilocus microsatellite typing system for penicillium marneffei reveals spatially structured populations
publishDate 2014
url http://www.scopus.com/inward/record.url?eid=2-s2.0-8644262307&partnerID=40&md5=d08426db9b64c85682061b9732c63676
http://cmuir.cmu.ac.th/handle/6653943832/3769
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