The Biting Midge Culicoides sonorensis (Diptera: Ceratopogonidae) Is Capable of Developing Late Stage Infections of Leishmania enriettii
Jazyk angličtina Země Spojené státy americké Médium electronic-ecollection
Typ dokumentu časopisecké články, práce podpořená grantem
Grantová podpora
BBS/E/I/00001445
Biotechnology and Biological Sciences Research Council - United Kingdom
BBS/E/I/00001701
Biotechnology and Biological Sciences Research Council - United Kingdom
PubMed
26367424
PubMed Central
PMC4569557
DOI
10.1371/journal.pntd.0004060
PII: PNTD-D-15-00735
Knihovny.cz E-zdroje
- MeSH
- Ceratopogonidae parazitologie MeSH
- gastrointestinální trakt parazitologie MeSH
- hmyz - vektory * MeSH
- křeček rodu Mesocricetus MeSH
- Leishmania enriettii izolace a purifikace MeSH
- leishmanióza parazitologie patologie přenos MeSH
- morčata MeSH
- Psychodidae parazitologie MeSH
- zvířata MeSH
- Check Tag
- morčata MeSH
- ženské pohlaví MeSH
- zvířata MeSH
- Publikační typ
- časopisecké články MeSH
- práce podpořená grantem MeSH
BACKGROUND: Despite their importance in animal and human health, the epidemiology of species of the Leishmania enriettii complex remains poorly understood, including the identity of their biological vectors. Biting midges of the genus Forcipomyia (Lasiohelea) have been implicated in the transmission of a member of the L. enriettii complex in Australia, but the far larger and more widespread genus Culicoides has not been investigated for the potential to include vectors to date. METHODOLOGY/PRINCIPAL FINDINGS: Females from colonies of the midges Culicoides nubeculosus Meigen and C. sonorensis Wirth & Jones and the sand fly Lutzomyia longipalpis Lutz & Nevia (Diptera: Psychodidae) were experimentally infected with two different species of Leishmania, originating from Australia (Leishmania sp. AM-2004) and Brazil (Leishmania enriettii). In addition, the infectivity of L. enriettii infections generated in guinea pigs and golden hamsters for Lu. longipalpis and C. sonorensis was tested by xenodiagnosis. Development of L. enriettii in Lu. longipalpis was relatively poor compared to other Leishmania species in this permissive vector. Culicoides nubeculosus was not susceptible to infection by parasites from the L. enriettii complex. In contrast, C. sonorensis developed late stage infections with colonization of the thoracic midgut and the stomodeal valve. In hamsters, experimental infection with L. enriettii led only to mild symptoms, while in guinea pigs L. enriettii grew aggressively, producing large, ulcerated, tumour-like lesions. A high proportion of C. sonorensis (up to 80%) feeding on the ears and nose of these guinea pigs became infected. CONCLUSIONS/SIGNIFICANCE: We demonstrate that L. enriettii can develop late stage infections in the biting midge Culicoides sonorensis. This midge was found to be susceptible to L. enriettii to a similar degree as Lutzomyia longipalpis, the vector of Leishmania infantum in South America. Our results support the hypothesis that some biting midges could be natural vectors of the L. enriettii complex because of their vector competence, although not Culicoides sonorensis itself, which is not sympatric, and midges should be assessed in the field while searching for vectors of related Leishmania species including L. martiniquensis and "L. siamensis".
Department of Parasitology Faculty of Science Charles University Prague Czech Republic
Vector borne Viral Diseases Programme The Pirbright Institute Pirbright Surrey United Kingdom
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Maroli M, Feliciangeli MD, Bichaud L, Charrel RN, Gradoni L. Phlebotomine sandflies and the spreading of leishmaniases and other diseases of public health concern. Med Vet Entomol. 2012;27: 123–47. 10.1111/j.1365-2915.2012.01034.x PubMed DOI
Killick-Kendrick R. Phlebotomine vectors of the leishmaniases: a review. Med Vet Entomol. 1990;4: 1–24. http://www.ncbi.nlm.nih.gov/pubmed/2132963 PubMed
Noyes H, Pratlong F, Chance M, Ellis J, Lanotte G, Dedet JP. A previously unclassified trypanosomatid responsible for human cutaneous lesions in Martinique (French West Indies) is the most divergent member of the genus PubMed
Asato Y, Oshiro M, Myint CK, Yamamoto Y, Kato H, Marco JD, et al. Phylogenic analysis of the genus PubMed DOI
Dougall AM, Alexander B, Holt DC, Harris T, Sultan AH, Bates PA, et al. Evidence incriminating midges (Diptera: Ceratopogonidae) as potential vectors of PubMed DOI
Marcili A, Sperança MA, da Costa AP, Madeira M de F, Soares HS, Sanches C de OCC, et al. Phylogenetic relationships of PubMed DOI
Pothirat T, Tantiworawit A, Chaiwarith R, Jariyapan N, Wannasan A, Siriyasatien P, et al. First isolation of PubMed DOI PMC
Muniz J, Medina H. Leishmaniose tegumentar do cobaio ( PubMed
Luz E, Giovannoni M, Borba A. Infeccao de
Machado MI, Milder R V, Pacheco RS, Silva M, Braga RR, Lainson R. Naturally acquired infections with PubMed
Rose K, Curtis J, Baldwin T, Mathis A, Kumar B, Sakthianandeswaren A, et al. Cutaneous leishmaniasis in red kangaroos: isolation and characterisation of the causative organisms. Int J Parasitol. 2004;34: 655–64. PubMed
Desbois N, Pratlong F, Quist D, Dedet J-P. PubMed DOI PMC
Bualert L, Charungkiattikul W, Thongsuksai P, Mungthin M, Siripattanapipong S, Khositnithikul R, et al. Autochthonous disseminated dermal and visceral leishmaniasis in an AIDS patient, southern Thailand, caused by PubMed DOI PMC
Kwakye-Nuako G, Mosore MT, Duplessis C, Bates MD, Puplampu N, Mensah-Attipoe I, et al. First isolation of a new species of PubMed
Müller N, Welle M, Lobsiger L, Stoffel MH, Boghenbor KK, Hilbe M, et al. Occurrence of PubMed DOI
Lobsiger L, Müller N, Schweizer T, Frey CF, Wiederkehr D, Zumkehr B, et al. An autochthonous case of cutaneous bovine leishmaniasis in Switzerland. Vet Parasitol. 2010;169: 408–14. 10.1016/j.vetpar.2010.01.022 PubMed DOI
Reuss SM, Dunbar MD, Calderwood Mays MB, Owen JL, Mallicote MF, Archer LL, et al. Autochthonous PubMed DOI PMC
Chiewchanvit S, Tovanabutra N, Jariyapan N, Bates MD, Mahanupab P, Chuamanochan M, et al. Chronic generalized fibrotic skin lesions from disseminated leishmaniasis caused by PubMed
Liautaud B, Vignier N, Miossec C, Plumelle Y, Kone M, Delta D, et al. First case of visceral leishmaniasis caused by PubMed DOI PMC
Lainson R. On Leishmania enriettii and other enigmatic PubMed
Kanjanopas K, Siripattanapipong S, Ninsaeng U, Hitakarun A, Jitkaew S, Kaewtaphaya P, et al. PubMed DOI PMC
Chusri S, Thammapalo S, Silpapojakul K, Siriyasatien P. Animal reservoirs and potential vectors of PubMed
Dougall A, Shilton C, Low Choy J, Alexander B, Walton S. New reports of Australian cutaneous leishmaniasis in Northern Australian macropods. Epidemiol Infect. 2009;137: 1516–20. 10.1017/S0950268809002313 PubMed DOI
Rogers ME. The role of PubMed PMC
Nayduch D, Cohnstaedt LW, Saski C, Lawson D, Kersey P, Fife M, et al. Studying PubMed DOI PMC
Carpenter S, Groschup MH, Garros C, Felippe-Bauer ML, Purse BV. PubMed DOI
Purse B V, Carpenter S, Venter GJ, Bellis G, Mullens BA. Bionomics of temperate and tropical culicoides midges: knowledge gaps and consequences for transmission of PubMed DOI
Volf P, Myskova J. Sand flies and PubMed PMC
Volf P, Volfova V. Establishment and maintenance of sand fly colonies. J Vector Ecol. 2011;36 Suppl 1: S1–9. 10.1111/j.1948-7134.2011.00106.x PubMed DOI
Myskova J, Votypka J, Volf P. PubMed
Walters LL. PubMed
Ciháková J, Volf P. Development of different PubMed
Sádlová J, Price HP, Smith BA, Votýpka J, Volf P, Smith DF. The stage-regulated HASPB and SHERP proteins are essential for differentiation of the protozoan parasite PubMed DOI PMC
Mary C, Faraut F, Lascombe L, Dumon H. Quantification of PubMed PMC
Titus RG, Ribeiro JM. Salivary gland lysates from the sand fly PubMed
Rogers ME, Chance ML, Bates PA. The role of promastigote secretory gel in the origin and transmission of the infective stage of PubMed
Paranaíba L, de Assis R, Nogueira P, Torrecilhas A, Campos J, Silveira A, et al. PubMed DOI PMC
Bates PA, Rogers ME. New insights into the developmental biology and transmission mechanisms of PubMed
Bates PA. Transmission of PubMed PMC
Seblova V, Sadlova J, Carpenter S, Volf P. Development of PubMed
Paraense WL. The spread of PubMed
Thomaz-Soccol V, Pratlong F, Langue R, Castro E, Luz E, Dedet JP. New isolation of PubMed
Bryceson AD, Bray RS, Wolstencroft RA, Dumonde DC. Immunity in cutaneous leishmaniasis of the guinea-pig. Clin Exp Immunol. 1970;7: 301–41. http://www.pubmedcentral.nih.gov/articlerender.fcgi?artid=1712737&tool=pmcentrez&rendertype=abstract PubMed PMC
Belehu A, Turk JL. Establishment of cutaneous PubMed PMC
Molina R, Amela C, Nieto J, San-Andrés M, González F, Castillo JA, et al. Infectivity of dogs naturally infected with PubMed
Maroli M, Pennisi MG, Di Muccio T, Khoury C, Gradoni L, Gramiccia M. Infection of sandflies by a cat naturally infected with PubMed
Jiménez M, González E, Martín-Martín I, Hernández S, Molina R. Could wild rabbits ( PubMed DOI
Svobodová M, Votýpka J, Nicolas L, Volf P. Leishmania tropica in the black rat (Rattus rattus): persistence and transmission from asymptomatic host to sand fly vector PubMed
Sadlova J, Seblova V, Votypka J, Warburg A, Volf P. Xenodiagnosis of PubMed PMC
Guarga JL, Moreno J, Lucientes J, Gracia MJ, Peribáñez MA, Castillo JA. Evaluation of a specific immunochemotherapy for the treatment of canine visceral leishmaniasis. Vet Immunol Immunopathol. 2002;88: 13–20. http://www.ncbi.nlm.nih.gov/pubmed/12088640 PubMed
Ribeiro RR, Moura EP, Pimentel VM, Sampaio WM, Silva SM, Schettini DA, et al. Reduced tissue parasitic load and infectivity to sand flies in dogs naturally infected by PubMed DOI PMC
Euglenozoa: taxonomy, diversity and ecology, symbioses and viruses
Development of Leishmania (Mundinia) in guinea pigs
Genomic analysis of natural intra-specific hybrids among Ethiopian isolates of Leishmania donovani
The First Non-LRV RNA Virus in Leishmania
Comparative genomics of Leishmania (Mundinia)
Refractoriness of Sergentomyia schwetzi to Leishmania spp. is mediated by the peritrophic matrix
Biting midges (Ceratopogonidae) as vectors of avian trypanosomes