Javascript must be enabled to continue!
Collection of triatomines from sylvatic habitats by a Trypanosoma cruzi-infected scent detection dog in Texas, USA
View through CrossRef
BackgroundTriatomine insects, vectors of the etiologic agent of Chagas disease (Trypanosoma cruzi), are challenging to locate in sylvatic habitats. Collection techniques used in the United States often rely on methods to intercept seasonally dispersing adults or on community scientists’ encounters. Neither method is suited for detecting nest habitats likely to harbor triatomines, which is important for vector surveillance and control. Furthermore, manual inspection of suspected harborages is difficult and unlikely to reveal novel locations and host associations. Similar to a team that used a trained dog to detect sylvatic triatomines in Paraguay, we worked with a trained scent detection dog to detect triatomines in sylvatic locations across Texas.Principle methodology/FindingsZiza, a 3-year-old German Shorthaired Pointer previously naturally infected withT.cruzi, was trained to detect triatomines. Over the course of 6 weeks in the fall of 2017, the dog and her handler searched at 17 sites across Texas. The dog detected 60 triatomines at 6 sites; an additional 50 triatomines were contemporaneously collected at 1 of these sites and 2 additional sites without the assistance of the dog. Approximately 0.98 triatomines per hour were found when only humans were conducting searches; when working with the dog, approximately 1.71 triatomines per hour were found. In total, 3 adults and 107 nymphs of four species (Triatoma gerstaeckeri,Triatoma protracta,Triatoma sanguisuga, andTriatoma indictiva) were collected. PCR testing of a subset revealedT.cruziinfection, including DTUs TcI and TcIV, in 27% of nymphs (n = 103) and 66% of adults (n = 3). Bloodmeal analysis of a subset of triatomines (n = 5) revealed feeding on Virginia opossum (Didelphis virginiana), Southern plains woodrat (Neotoma micropus), and eastern cottontail (Sylvilagus floridanus).Conclusion/SignificanceA trained scent detection dog enhanced triatomine detections in sylvatic habitats. This approach is effective at detecting nidicolous triatomines. Control of sylvatic sources of triatomines is challenging, but this new knowledge of specific sylvatic habitats and key hosts may reveal opportunities for novel vector control methods to block the transmission ofT.cruzito humans and domestic animals.
Title: Collection of triatomines from sylvatic habitats by a Trypanosoma cruzi-infected scent detection dog in Texas, USA
Description:
BackgroundTriatomine insects, vectors of the etiologic agent of Chagas disease (Trypanosoma cruzi), are challenging to locate in sylvatic habitats.
Collection techniques used in the United States often rely on methods to intercept seasonally dispersing adults or on community scientists’ encounters.
Neither method is suited for detecting nest habitats likely to harbor triatomines, which is important for vector surveillance and control.
Furthermore, manual inspection of suspected harborages is difficult and unlikely to reveal novel locations and host associations.
Similar to a team that used a trained dog to detect sylvatic triatomines in Paraguay, we worked with a trained scent detection dog to detect triatomines in sylvatic locations across Texas.
Principle methodology/FindingsZiza, a 3-year-old German Shorthaired Pointer previously naturally infected withT.
cruzi, was trained to detect triatomines.
Over the course of 6 weeks in the fall of 2017, the dog and her handler searched at 17 sites across Texas.
The dog detected 60 triatomines at 6 sites; an additional 50 triatomines were contemporaneously collected at 1 of these sites and 2 additional sites without the assistance of the dog.
Approximately 0.
98 triatomines per hour were found when only humans were conducting searches; when working with the dog, approximately 1.
71 triatomines per hour were found.
In total, 3 adults and 107 nymphs of four species (Triatoma gerstaeckeri,Triatoma protracta,Triatoma sanguisuga, andTriatoma indictiva) were collected.
PCR testing of a subset revealedT.
cruziinfection, including DTUs TcI and TcIV, in 27% of nymphs (n = 103) and 66% of adults (n = 3).
Bloodmeal analysis of a subset of triatomines (n = 5) revealed feeding on Virginia opossum (Didelphis virginiana), Southern plains woodrat (Neotoma micropus), and eastern cottontail (Sylvilagus floridanus).
Conclusion/SignificanceA trained scent detection dog enhanced triatomine detections in sylvatic habitats.
This approach is effective at detecting nidicolous triatomines.
Control of sylvatic sources of triatomines is challenging, but this new knowledge of specific sylvatic habitats and key hosts may reveal opportunities for novel vector control methods to block the transmission ofT.
cruzito humans and domestic animals.
Related Results
Collection of triatomines from sylvatic habitats by a Chagas-positive, trained scent-detection canine in Texas, USA
Collection of triatomines from sylvatic habitats by a Chagas-positive, trained scent-detection canine in Texas, USA
Abstract
Background
Triatomine insects, vectors of the etiologic agent of Chagas disease (
...
Comparative proteomic analysis of the hemolymph and salivary glands of
Rhodnius prolixus
and
R. colombiensis
reveals candidates associated with differential lytic activity against
Comparative proteomic analysis of the hemolymph and salivary glands of
Rhodnius prolixus
and
R. colombiensis
reveals candidates associated with differential lytic activity against
Abstract
Background
Immune response of triatomines plays an important role in the success or failure of tr...
TLR-Dependent Induction of IFN-β Mediates Host Defense against
Trypanosoma cruzi
TLR-Dependent Induction of IFN-β Mediates Host Defense against
Trypanosoma cruzi
Abstract
Host resistance to the intracellular protozoan parasite Trypanosoma cruzi depends on IFN-γ production by T cells and NK cells. However, the involvement o...
Comparative proteomic analysis of the hemolymph and salivary glands of Rhodnius prolixus and R. colombiensis reveals candidates associated with differential lytic activity against Trypanosoma cruzi Dm28c and T. cruzi Y
Comparative proteomic analysis of the hemolymph and salivary glands of Rhodnius prolixus and R. colombiensis reveals candidates associated with differential lytic activity against Trypanosoma cruzi Dm28c and T. cruzi Y
Background
Immune response of triatomines plays an important role in the success or failure of transmission of
T
...
Predominance of
Trypanosoma cruzi
Lineage I in Mexico
Predominance of
Trypanosoma cruzi
Lineage I in Mexico
ABSTRACT
Randomly amplified polymorphic DNA (RAPD) has emerged as an effective genetic marker for analysis of
Trypanosoma cruzi
popul...
Effects of homeopathy in mice experimentally infected with Trypanosoma cruzi
Effects of homeopathy in mice experimentally infected with Trypanosoma cruzi
Aim: The aim of this study was to evaluate the action of homeopathic treatment on mice experimentally infected with Trypanosoma cruzi.Methods: Eighty adult male C57BL/6 inbred mice...
Bumblebees can discriminate between scent-marks deposited by conspecifics
Bumblebees can discriminate between scent-marks deposited by conspecifics
AbstractBumblebees secrete a substance from their tarsi wherever they land, which can be detected by conspecifics. These secretions are referred to as scent-marks, which bumblebees...
Teaching old dogs and young dogs new tricks: canine scent detection for seabird monitoring
Teaching old dogs and young dogs new tricks: canine scent detection for seabird monitoring
Dogs Canis familiaris have been domesticated for over 11,000 years and have been trained to perform a vast array of tasks. Scent dogs are routinely used to detect elusive animals o...

