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Phylogeography and Genetic Variation of Triatoma dimidiata, the Main Chagas Disease Vector in Central America, and Its Position within the Genus Triatoma

BACKGROUND: Among Chagas disease triatomine vectors, the largest genus, Triatoma, includes species of high public health interest. Triatoma dimidiata, the main vector throughout Central America and up to Ecuador, presents extensive phenotypic, genotypic, and behavioral diversity in sylvatic, peridom...

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Autores principales: Bargues, María Dolores, Klisiowicz, Debora R., Gonzalez-Candelas, Fernando, Ramsey, Janine M., Monroy, Carlota, Ponce, Carlos, Salazar-Schettino, Paz María, Panzera, Francisco, Abad-Franch, Fernando, Sousa, Octavio E., Schofield, Christopher J., Dujardin, Jean Pierre, Guhl, Felipe, Mas-Coma, Santiago
Formato: Texto
Lenguaje:English
Publicado: Public Library of Science 2008
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC2330091/
https://www.ncbi.nlm.nih.gov/pubmed/18461141
http://dx.doi.org/10.1371/journal.pntd.0000233
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author Bargues, María Dolores
Klisiowicz, Debora R.
Gonzalez-Candelas, Fernando
Ramsey, Janine M.
Monroy, Carlota
Ponce, Carlos
Salazar-Schettino, Paz María
Panzera, Francisco
Abad-Franch, Fernando
Sousa, Octavio E.
Schofield, Christopher J.
Dujardin, Jean Pierre
Guhl, Felipe
Mas-Coma, Santiago
author_facet Bargues, María Dolores
Klisiowicz, Debora R.
Gonzalez-Candelas, Fernando
Ramsey, Janine M.
Monroy, Carlota
Ponce, Carlos
Salazar-Schettino, Paz María
Panzera, Francisco
Abad-Franch, Fernando
Sousa, Octavio E.
Schofield, Christopher J.
Dujardin, Jean Pierre
Guhl, Felipe
Mas-Coma, Santiago
author_sort Bargues, María Dolores
collection PubMed
description BACKGROUND: Among Chagas disease triatomine vectors, the largest genus, Triatoma, includes species of high public health interest. Triatoma dimidiata, the main vector throughout Central America and up to Ecuador, presents extensive phenotypic, genotypic, and behavioral diversity in sylvatic, peridomestic and domestic habitats, and non-domiciliated populations acting as reinfestation sources. DNA sequence analyses, phylogenetic reconstruction methods, and genetic variation approaches are combined to investigate the haplotype profiling, genetic polymorphism, phylogeography, and evolutionary trends of T. dimidiata and its closest relatives within Triatoma. This is the largest interpopulational analysis performed on a triatomine species so far. METHODOLOGY AND FINDINGS: Triatomines from Mexico, Guatemala, Honduras, Nicaragua, Panama, Cuba, Colombia, Ecuador, and Brazil were used. Triatoma dimidiata populations follow different evolutionary divergences in which geographical isolation appears to have had an important influence. A southern Mexican–northern Guatemalan ancestral form gave rise to two main clades. One clade remained confined to the Yucatan peninsula and northern parts of Chiapas State, Guatemala, and Honduras, with extant descendants deserving specific status. Within the second clade, extant subspecies diversity was shaped by adaptive radiation derived from Guatemalan ancestral populations. Central American populations correspond to subspecies T. d. dimidiata. A southern spread into Panama and Colombia gave the T. d. capitata forms, and a northwestern spread rising from Guatemala into Mexico gave the T. d. maculipennis forms. Triatoma hegneri appears as a subspecific insular form. CONCLUSIONS: The comparison with very numerous Triatoma species allows us to reach highly supported conclusions not only about T. dimidiata, but also on different, important Triatoma species groupings and their evolution. The very large intraspecific genetic variability found in T. dimidiata sensu lato has never been detected in a triatomine species before. The distinction between the five different taxa furnishes a new frame for future analyses of the different vector transmission capacities and epidemiological characteristics of Chagas disease. Results indicate that T. dimidiata will offer problems for control, although dwelling insecticide spraying might be successful against introduced populations in Ecuador.
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spelling pubmed-23300912008-05-07 Phylogeography and Genetic Variation of Triatoma dimidiata, the Main Chagas Disease Vector in Central America, and Its Position within the Genus Triatoma Bargues, María Dolores Klisiowicz, Debora R. Gonzalez-Candelas, Fernando Ramsey, Janine M. Monroy, Carlota Ponce, Carlos Salazar-Schettino, Paz María Panzera, Francisco Abad-Franch, Fernando Sousa, Octavio E. Schofield, Christopher J. Dujardin, Jean Pierre Guhl, Felipe Mas-Coma, Santiago PLoS Negl Trop Dis Research Article BACKGROUND: Among Chagas disease triatomine vectors, the largest genus, Triatoma, includes species of high public health interest. Triatoma dimidiata, the main vector throughout Central America and up to Ecuador, presents extensive phenotypic, genotypic, and behavioral diversity in sylvatic, peridomestic and domestic habitats, and non-domiciliated populations acting as reinfestation sources. DNA sequence analyses, phylogenetic reconstruction methods, and genetic variation approaches are combined to investigate the haplotype profiling, genetic polymorphism, phylogeography, and evolutionary trends of T. dimidiata and its closest relatives within Triatoma. This is the largest interpopulational analysis performed on a triatomine species so far. METHODOLOGY AND FINDINGS: Triatomines from Mexico, Guatemala, Honduras, Nicaragua, Panama, Cuba, Colombia, Ecuador, and Brazil were used. Triatoma dimidiata populations follow different evolutionary divergences in which geographical isolation appears to have had an important influence. A southern Mexican–northern Guatemalan ancestral form gave rise to two main clades. One clade remained confined to the Yucatan peninsula and northern parts of Chiapas State, Guatemala, and Honduras, with extant descendants deserving specific status. Within the second clade, extant subspecies diversity was shaped by adaptive radiation derived from Guatemalan ancestral populations. Central American populations correspond to subspecies T. d. dimidiata. A southern spread into Panama and Colombia gave the T. d. capitata forms, and a northwestern spread rising from Guatemala into Mexico gave the T. d. maculipennis forms. Triatoma hegneri appears as a subspecific insular form. CONCLUSIONS: The comparison with very numerous Triatoma species allows us to reach highly supported conclusions not only about T. dimidiata, but also on different, important Triatoma species groupings and their evolution. The very large intraspecific genetic variability found in T. dimidiata sensu lato has never been detected in a triatomine species before. The distinction between the five different taxa furnishes a new frame for future analyses of the different vector transmission capacities and epidemiological characteristics of Chagas disease. Results indicate that T. dimidiata will offer problems for control, although dwelling insecticide spraying might be successful against introduced populations in Ecuador. Public Library of Science 2008-05-07 /pmc/articles/PMC2330091/ /pubmed/18461141 http://dx.doi.org/10.1371/journal.pntd.0000233 Text en Bargues et al. http://creativecommons.org/licenses/by/4.0/ This is an open-access article distributed under the terms of the Creative Commons Attribution License, which permits unrestricted use, distribution, and reproduction in any medium, provided the original author and source are properly credited.
spellingShingle Research Article
Bargues, María Dolores
Klisiowicz, Debora R.
Gonzalez-Candelas, Fernando
Ramsey, Janine M.
Monroy, Carlota
Ponce, Carlos
Salazar-Schettino, Paz María
Panzera, Francisco
Abad-Franch, Fernando
Sousa, Octavio E.
Schofield, Christopher J.
Dujardin, Jean Pierre
Guhl, Felipe
Mas-Coma, Santiago
Phylogeography and Genetic Variation of Triatoma dimidiata, the Main Chagas Disease Vector in Central America, and Its Position within the Genus Triatoma
title Phylogeography and Genetic Variation of Triatoma dimidiata, the Main Chagas Disease Vector in Central America, and Its Position within the Genus Triatoma
title_full Phylogeography and Genetic Variation of Triatoma dimidiata, the Main Chagas Disease Vector in Central America, and Its Position within the Genus Triatoma
title_fullStr Phylogeography and Genetic Variation of Triatoma dimidiata, the Main Chagas Disease Vector in Central America, and Its Position within the Genus Triatoma
title_full_unstemmed Phylogeography and Genetic Variation of Triatoma dimidiata, the Main Chagas Disease Vector in Central America, and Its Position within the Genus Triatoma
title_short Phylogeography and Genetic Variation of Triatoma dimidiata, the Main Chagas Disease Vector in Central America, and Its Position within the Genus Triatoma
title_sort phylogeography and genetic variation of triatoma dimidiata, the main chagas disease vector in central america, and its position within the genus triatoma
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC2330091/
https://www.ncbi.nlm.nih.gov/pubmed/18461141
http://dx.doi.org/10.1371/journal.pntd.0000233
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