Microbiomes of North American Triatominae: The Grounds for Chagas Disease Epidemiology

Insect microbiomes influence many fundamental host traits, including functions of practical significance such as their capacity as vectors to transmit parasites and pathogens. The knowledge on the diversity and development of the gut microbiomes in various blood feeding insects is thus crucial not o...

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Main Authors: Sonia M. Rodríguez-Ruano, Veronika Škochová, Ryan O. M. Rego, Justin O. Schmidt, Walter Roachell, Václav Hypša, Eva Nováková
Format: Article
Language:English
Published: Frontiers Media S.A. 2018-06-01
Series:Frontiers in Microbiology
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Online Access:https://www.frontiersin.org/article/10.3389/fmicb.2018.01167/full
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spelling doaj-b1cb38bb581541ad87e1807be74940db2020-11-24T23:12:14ZengFrontiers Media S.A.Frontiers in Microbiology1664-302X2018-06-01910.3389/fmicb.2018.01167366454Microbiomes of North American Triatominae: The Grounds for Chagas Disease EpidemiologySonia M. Rodríguez-Ruano0Veronika Škochová1Ryan O. M. Rego2Justin O. Schmidt3Walter Roachell4Václav Hypša5Václav Hypša6Eva Nováková7Eva Nováková8Faculty of Science, University of South Bohemia, Ceske Budejovice, CzechiaFaculty of Science, University of South Bohemia, Ceske Budejovice, CzechiaBiology Centre of ASCR, Institute of Parasitology, Ceske Budejovice, CzechiaDepartment of Entomology, Southwestern Biological Institute, Tucson, AZ, United StatesUS Army Public Health Command-Central, JBSA Fort Sam Houston, Houston, TX, United StatesFaculty of Science, University of South Bohemia, Ceske Budejovice, CzechiaBiology Centre of ASCR, Institute of Parasitology, Ceske Budejovice, CzechiaFaculty of Science, University of South Bohemia, Ceske Budejovice, CzechiaBiology Centre of ASCR, Institute of Parasitology, Ceske Budejovice, CzechiaInsect microbiomes influence many fundamental host traits, including functions of practical significance such as their capacity as vectors to transmit parasites and pathogens. The knowledge on the diversity and development of the gut microbiomes in various blood feeding insects is thus crucial not only for theoretical purposes, but also for the development of better disease control strategies. In Triatominae (Heteroptera: Reduviidae), the blood feeding vectors of Chagas disease in South America and parts of North America, the investigation of the microbiomes is in its infancy. The few studies done on microbiomes of South American Triatominae species indicate a relatively low taxonomic diversity and a high host specificity. We designed a comparative survey to serve several purposes: (I) to obtain a better insight into the overall microbiome diversity in different species, (II) to check the long term stability of the interspecific differences, (III) to describe the ontogenetic changes of the microbiome, and (IV) to determine the potential correlation between microbiome composition and presence of Trypanosoma cruzi, the causative agent of Chagas disease. Using 16S amplicons of two abundant species from the southern US, and four laboratory reared colonies, we showed that the microbiome composition is determined by host species, rather than locality or environment. The OTUs (Operational Taxonomic Units) determination confirms a low microbiome diversity, with 12-17 main OTUs detected in wild populations of T. sanguisuga and T. protracta. Among the dominant bacterial taxa are Acinetobacter and Proteiniphilum but also the symbiotic bacterium Arsenophonus triatominarum, previously believed to only live intracellularly. The possibility of ontogenetic microbiome changes was evaluated in all six developmental stages and feces of the laboratory reared model Rhodnius prolixus. We detected considerable changes along the host's ontogeny, including clear trends in the abundance variation of the three dominant bacteria, namely Enterococcus, Acinetobacter, and Arsenophonus. Finally, we screened the samples for the presence of Trypanosoma cruzi. Comparing the parasite presence with the microbiome composition, we assessed the possible significance of the latter in the epidemiology of the disease. Particularly, we found a trend toward more diverse microbiomes in Trypanosoma cruzi positive T. protracta specimens.https://www.frontiersin.org/article/10.3389/fmicb.2018.01167/fullTriatominaemicrobiomeontogenyTrypanosoma cruziRhodnius prolixus
collection DOAJ
language English
format Article
sources DOAJ
author Sonia M. Rodríguez-Ruano
Veronika Škochová
Ryan O. M. Rego
Justin O. Schmidt
Walter Roachell
Václav Hypša
Václav Hypša
Eva Nováková
Eva Nováková
spellingShingle Sonia M. Rodríguez-Ruano
Veronika Škochová
Ryan O. M. Rego
Justin O. Schmidt
Walter Roachell
Václav Hypša
Václav Hypša
Eva Nováková
Eva Nováková
Microbiomes of North American Triatominae: The Grounds for Chagas Disease Epidemiology
Frontiers in Microbiology
Triatominae
microbiome
ontogeny
Trypanosoma cruzi
Rhodnius prolixus
author_facet Sonia M. Rodríguez-Ruano
Veronika Škochová
Ryan O. M. Rego
Justin O. Schmidt
Walter Roachell
Václav Hypša
Václav Hypša
Eva Nováková
Eva Nováková
author_sort Sonia M. Rodríguez-Ruano
title Microbiomes of North American Triatominae: The Grounds for Chagas Disease Epidemiology
title_short Microbiomes of North American Triatominae: The Grounds for Chagas Disease Epidemiology
title_full Microbiomes of North American Triatominae: The Grounds for Chagas Disease Epidemiology
title_fullStr Microbiomes of North American Triatominae: The Grounds for Chagas Disease Epidemiology
title_full_unstemmed Microbiomes of North American Triatominae: The Grounds for Chagas Disease Epidemiology
title_sort microbiomes of north american triatominae: the grounds for chagas disease epidemiology
publisher Frontiers Media S.A.
series Frontiers in Microbiology
issn 1664-302X
publishDate 2018-06-01
description Insect microbiomes influence many fundamental host traits, including functions of practical significance such as their capacity as vectors to transmit parasites and pathogens. The knowledge on the diversity and development of the gut microbiomes in various blood feeding insects is thus crucial not only for theoretical purposes, but also for the development of better disease control strategies. In Triatominae (Heteroptera: Reduviidae), the blood feeding vectors of Chagas disease in South America and parts of North America, the investigation of the microbiomes is in its infancy. The few studies done on microbiomes of South American Triatominae species indicate a relatively low taxonomic diversity and a high host specificity. We designed a comparative survey to serve several purposes: (I) to obtain a better insight into the overall microbiome diversity in different species, (II) to check the long term stability of the interspecific differences, (III) to describe the ontogenetic changes of the microbiome, and (IV) to determine the potential correlation between microbiome composition and presence of Trypanosoma cruzi, the causative agent of Chagas disease. Using 16S amplicons of two abundant species from the southern US, and four laboratory reared colonies, we showed that the microbiome composition is determined by host species, rather than locality or environment. The OTUs (Operational Taxonomic Units) determination confirms a low microbiome diversity, with 12-17 main OTUs detected in wild populations of T. sanguisuga and T. protracta. Among the dominant bacterial taxa are Acinetobacter and Proteiniphilum but also the symbiotic bacterium Arsenophonus triatominarum, previously believed to only live intracellularly. The possibility of ontogenetic microbiome changes was evaluated in all six developmental stages and feces of the laboratory reared model Rhodnius prolixus. We detected considerable changes along the host's ontogeny, including clear trends in the abundance variation of the three dominant bacteria, namely Enterococcus, Acinetobacter, and Arsenophonus. Finally, we screened the samples for the presence of Trypanosoma cruzi. Comparing the parasite presence with the microbiome composition, we assessed the possible significance of the latter in the epidemiology of the disease. Particularly, we found a trend toward more diverse microbiomes in Trypanosoma cruzi positive T. protracta specimens.
topic Triatominae
microbiome
ontogeny
Trypanosoma cruzi
Rhodnius prolixus
url https://www.frontiersin.org/article/10.3389/fmicb.2018.01167/full
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