| Literature DB >> 27090297 |
Rosio Buitrago1, Marie-France Bosseno2, Stéphanie Depickère3, Etienne Waleckx2, Renata Salas3, Claudia Aliaga3, Christian Barnabé2, Simone Frédérique Brenière2.
Abstract
BACKGROUND: Chagas disease is a major public health problem in Latin America. Its etiologic agent, Trypanosoma cruzi, is mainly transmitted through the contaminated faeces of blood-sucking insects called triatomines. Triatoma infestans is the main vector in various countries in South America and recently, several foci of wild populations of this species have been described in Bolivia and other countries. These wild populations are suspected of affecting the success of insecticide control campaigns being carried out in South America. To assess the risk that these T. infestans populations pose to human health, it is helpful to determine blood meal sources.Entities:
Keywords: Blood meal sources; Chagas disease; Feeding habits; Triatomines; Wild Triatoma infestans
Mesh:
Year: 2016 PMID: 27090297 PMCID: PMC4835887 DOI: 10.1186/s13071-016-1499-0
Source DB: PubMed Journal: Parasit Vectors ISSN: 1756-3305 Impact factor: 3.876
Geographic origin of wild T. infestans in three ecoregions of Bolivia
| Ecoregion** | Department | Location code | Latitude (S) | Longitude (W) | Altitude (m) | No. of blood meals | |
|---|---|---|---|---|---|---|---|
| Processed | Identified | ||||||
| BSIA | La Paz | SAP | 16°48'47.0'' | 67°42'10.0'' | 1880 | 48 | 17 |
| BSIA | La Paz | COS 01 | 16°49'54.1'' | 67°42'20.6'' | 1905 | 9 | 2 |
| BSIA | Potosi | BSIA | 18°00'43.0'' | 65°48'32.0'' | 2000 | 45 | 5 |
| BSIA | La Paz | POO | 16°51'06.8'' | 67°42'30.0'' | 2040 | 4 | 0 |
| BSIA | La Paz | *TUN 03 | 16°53'12.2'' | 67°42'43.1'' | 2095 | 20 | 6 |
| BSIA | La Paz | *QUE 01 | 17°01'54.8'' | 67°40'38.6'' | 2159 | 2 | 1 |
| BSIA | La Paz | *VIZ 02 | 16°55'48.8'' | 67°41'32.9'' | 2182 | 78 | 8 |
| BSIA | Cochabamba | BSIA 09 | 17°56'01.0'' | 65°23'06.5'' | 2182 | 1 | 0 |
| BSIA | La Paz | *CAC 03 | 17°00'30.1'' | 67°39'25.2'' | 2356 | 72 | 14 |
| BSIA | La Paz | *TUN 02 | 16°43'11.5'' | 67°52'25.7'' | 2427 | 14 | 1 |
| BSIA | La Paz | *RUI 01 | 16°42'56.4'' | 67°52'13.5'' | 2459 | 7 | 1 |
| BSIA | La Paz | *TUN 06 | 17°04'25.2'' | 67°37'59.7'' | 2493 | 5 | 3 |
| BSIA | La Paz | BSIA 11 | 17°27'45.5'' | 66°18'51.0'' | 2543 | 3 | 0 |
| BSIA | La Paz | *TUN 07 | 17°04'24.2'' | 67°38'42.7'' | 2543 | 1 | 1 |
| BSIA | La Paz | *BSIA 12 | 17°03'34.8'' | 67°39'58.4'' | 2583 | 10 | 2 |
| BSIA | Cochabamba | QUI | 17°25'20.0'' | 66°17'40.0'' | 2600 | 72 | 20 |
| BSIA | La Paz | *LIE 01 | 17°04'44.6'' | 67°37'57.0'' | 2602 | 17 | 3 |
| BSIA | La Paz | *CAC 02 | 17°04'07.7'' | 67°39'25.5'' | 2645 | 5 | 1 |
| BSIA | Cochabamba | BSIA 14 | 17°25'28.9'' | 66°15'53.0'' | 2689 | 33 | 7 |
| BSIA | Cochabamba | CAC 04 | 17°28'37.5'' | 66°08'16.1'' | 2710 | 22 | 1 |
| BSIA | La Paz | *TUN 01 | 16°42'25.4'' | 67°59'37.6'' | 2757 | 44 | 14 |
| BSIA | La Paz | *BSIA 13 | 16°42'02.75'' | 67°59'54.9'' | 2765 | 6 | 1 |
| BSIA | La Paz | *TUN 04 | 17°08'10.8" | 67°35'17.9" | 2767 | 5 | 1 |
| BSIA | La Paz | *VIZ 01 | 16°41'25.4'' | 68°00'39.7'' | 2821 | 24 | 7 |
| BSIA | La Paz | *TUN 05 | 17°07'32.0" | 67°35'59.5" | 2864 | 7 | 2 |
| Total BSIA | 554 | 118 | |||||
| PP | Potosi | VIS | 21°37'16.8'' | 65°48'46.0'' | 2963 | 10 | 7 |
| PP | Potosi | TP 01 | 21°44'51.0'' | 65°49'26.0'' | 3080 | 34 | 19 |
| Total PP | 44 | 26 | |||||
| GC | Santa Cruz | SS-2 | 19°25'7.39" | 62°38'24.8" | 412 | 2 | 0 |
| GC | Tarija | Z 01 | 21°50'48.2 | 63°14'51.7'' | 443 | 2 | 0 |
| GC | Santa Cruz | SA | 20°13'42.4" | 62°54'2.4" | 553 | 7 | 0 |
| GC | Santa Cruz | Z07 | 20°15'07.9'' | 62°59'10.2'' | 599 | 7 | 0 |
| GC | Santa Cruz | Z08 | 20°11'02.6'' | 63°01'21.5'' | 614 | 2 | 0 |
| Total GC | 20 | 0 | |||||
| Total general | 618 | 144 | |||||
* Results of these trapping sites were published in Buitrago et al. [8]
**The ecoregions are defined according to Ibisch et al. [19]; BSIA, Inter-Andean Dry Forest; PP, Prepuna; GC, Gran Chaco
Fig. 1Acrylamide electrophoresis gel showing PCR-HDA patterns of DNA samples obtained from intestinal contents of wild T. infestans: lane 1, molecular weight; lanes 3 and 12, P2 HDA pattern (G. musteloides); lanes 5 and 11, P1 HDA pattern (O. gliroides); lanes 6, 7 and 8, P7 HDA pattern (G. musteloides); lane 9, P12 HDA pattern (A. glaucinus); lanes 10 and 16, P6 HDA pattern (O. gliroides); lanes 13, 14 and 15, P5 HDA pattern (G. gallus); lanes 2 and 4, multibanding patterns corresponding to multiple meals
Sequencing and identification of blood meal sources of wild T. infestans with different patterns of HDA
| Species | HDA patterns | Size of | No. of sequenced PCR products | Results of the search for sequence identity in GenBank | ||
|---|---|---|---|---|---|---|
| Species with highest identity | GenBank: accession number | Identity (%) | ||||
| Mammal | P3 | 315 bp | 16 |
| AY509658.1 | 99 |
| P1 | 289 bp | 6 |
| AF370706.1 | 98 | |
| P6 | 290 bp | 6 |
| GQ121127.1 | 99 | |
| P2 | 264 bp | 3 |
| GU067494.1 | 99–100 | |
| P7 | 264 bp | 3 |
| GU067530.1 | 100 | |
| P13 | 235 bp | 1 |
| GU067494.1 | 99 | |
| P16 | 235 bp | 1 |
| GU067513.1 | 100 | |
| P4 | 255 bp | 5 |
| AY 254887.1 | 99 | |
| P8 | 280 bp | 1 |
| AF159291.1 | 88 | |
| P9 | 290 bp | 1 |
| AF159291.1 | 99 | |
| P11 | 287 bp | 1 |
| AF159291.1 | 99 | |
| P12 | 319 bp | 1 |
| KC841384.1 | 95 | |
| P10 | 310 bp | 1 |
| FJ428527.1 | 92–99 | |
| P14 | 300 bp | 1 |
| AY509646.1 | 99 | |
| P15 | 290 bp | 1 |
| AY956698.1 | 98 | |
| P17 | 230 bp | 2 |
| AY341053.1 | 96–99 | |
| Bird | P18 | 322 bp | 1 |
| AF447623.2 | 100 |
| P5 | 281 bp | 6 |
| EU 839454.1 | 100 | |
| Reptile | Absenta | 285 bp | 1 |
| EF616030.1 | 89 |
| Absenta | 294 bp | 1 |
| AY630397.1 | 83 | |
awithout profile
Fig. 2Vertebrate blood sources of wild T. infestans identified by PCR-HDA and sequencing
Identification of blood meal sources of wild and peridomestic T. infestans in three localities in the Inter-Andean Dry Forest ecoregion
| Locality and ecotope | ||||||
|---|---|---|---|---|---|---|
| Sapini | Thago Thago | Quillacollo | ||||
| Blood meal source | Wild | Peridomestic | Wild | Peridomestic | Wild | Peridomestic |
|
| 3 | |||||
|
| 1 | |||||
|
| 13 | |||||
|
| 14 | 20 | ||||
|
| 5 | 1 | 7 | 81 | ||
|
| 1 | |||||
|
| 1 | |||||
|
| 4 | 2 | 1 | 1 | 2 | 7 |
|
| 1 | |||||
|
| 1 | |||||
|
| 10 | 1 | ||||
|
| 2 | |||||
|
| 1 | |||||
|
| 1 | |||||
|
| 2 | |||||
|
| 1 | 9 | ||||
|
| 1 | |||||
|
| 1 | 9 | ||||
|
| 1 | |||||
| Total | 17 | 7 | 5 | 27 | 20 | 129 |
Fig. 3Vertebrate blood meal sources of intra-peridomestic T. infestans identified by PCR-HDA and sequencing in three specific areas (Quillacollo, Thago Thago and Sapini). The ellipses show the wild animals identified