Epicuticular lipids induce aggregation in Chagas disease vectors

<p>Abstract</p> <p>Background</p> <p>The triatomine bugs are vectors of the protozoan parasite <it>Trypanosoma cruzi</it>, the causative agent of Chagas disease. Aggregation behavior plays an important role in their survival by facilitating the location of r...

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Main Authors: Juárez M Patricia, Mijailovsky Sergio J, Girotti Juan R, Figueiras Alicia
Format: Article
Language:English
Published: BMC 2009-01-01
Series:Parasites & Vectors
Online Access:http://www.parasitesandvectors.com/content/2/1/8
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spelling doaj-8a5172f624ea4702843830d010ed97c42020-11-24T21:14:23ZengBMCParasites & Vectors1756-33052009-01-0121810.1186/1756-3305-2-8Epicuticular lipids induce aggregation in Chagas disease vectorsJuárez M PatriciaMijailovsky Sergio JGirotti Juan RFigueiras Alicia<p>Abstract</p> <p>Background</p> <p>The triatomine bugs are vectors of the protozoan parasite <it>Trypanosoma cruzi</it>, the causative agent of Chagas disease. Aggregation behavior plays an important role in their survival by facilitating the location of refuges and cohesion of aggregates, helping to keep them safely assembled into shelters during daylight time, when they are vulnerable to predators. There are evidences that aggregation is mediated by thigmotaxis, by volatile cues from their faeces, and by hexane-extractable contact chemoreceptive signals from their cuticle surface. The epicuticular lipids of <it>Triatoma infestans </it>include a complex mixture of hydrocarbons, free and esterified fatty acids, alcohols, and sterols.</p> <p>Results</p> <p>We analyzed the response of <it>T. infestans </it>fifth instar nymphs after exposure to different amounts either of total epicuticular lipid extracts or individual lipid fractions. Assays were performed in a circular arena, employing a binary choice test with filter papers acting as aggregation attractive sites; papers were either impregnated with a hexane-extract of the total lipids, or lipid fraction; or with the solvent. Insects were significantly aggregated around papers impregnated with the epicuticular lipid extracts. Among the lipid fractions separately tested, only the free fatty acid fraction promoted significant bug aggregation. We also investigated the response to different amounts of selected fatty acid components of this fraction; receptiveness varied with the fatty acid chain length. No response was elicited by hexadecanoic acid (C16:0), the major fatty acid component. Octadecanoic acid (C18:0) showed a significant assembling effect in the concentration range tested (0.1 to 2 insect equivalents). The very long chain hexacosanoic acid (C26:0) was significantly attractant at low doses (≤ 1 equivalent), although a repellent effect was observed at higher doses.</p> <p>Conclusion</p> <p>The detection of contact aggregation pheromones has practical application in Chagas disease vector control. These data may be used to help design new tools against triatomine bugs.</p> http://www.parasitesandvectors.com/content/2/1/8
collection DOAJ
language English
format Article
sources DOAJ
author Juárez M Patricia
Mijailovsky Sergio J
Girotti Juan R
Figueiras Alicia
spellingShingle Juárez M Patricia
Mijailovsky Sergio J
Girotti Juan R
Figueiras Alicia
Epicuticular lipids induce aggregation in Chagas disease vectors
Parasites & Vectors
author_facet Juárez M Patricia
Mijailovsky Sergio J
Girotti Juan R
Figueiras Alicia
author_sort Juárez M Patricia
title Epicuticular lipids induce aggregation in Chagas disease vectors
title_short Epicuticular lipids induce aggregation in Chagas disease vectors
title_full Epicuticular lipids induce aggregation in Chagas disease vectors
title_fullStr Epicuticular lipids induce aggregation in Chagas disease vectors
title_full_unstemmed Epicuticular lipids induce aggregation in Chagas disease vectors
title_sort epicuticular lipids induce aggregation in chagas disease vectors
publisher BMC
series Parasites & Vectors
issn 1756-3305
publishDate 2009-01-01
description <p>Abstract</p> <p>Background</p> <p>The triatomine bugs are vectors of the protozoan parasite <it>Trypanosoma cruzi</it>, the causative agent of Chagas disease. Aggregation behavior plays an important role in their survival by facilitating the location of refuges and cohesion of aggregates, helping to keep them safely assembled into shelters during daylight time, when they are vulnerable to predators. There are evidences that aggregation is mediated by thigmotaxis, by volatile cues from their faeces, and by hexane-extractable contact chemoreceptive signals from their cuticle surface. The epicuticular lipids of <it>Triatoma infestans </it>include a complex mixture of hydrocarbons, free and esterified fatty acids, alcohols, and sterols.</p> <p>Results</p> <p>We analyzed the response of <it>T. infestans </it>fifth instar nymphs after exposure to different amounts either of total epicuticular lipid extracts or individual lipid fractions. Assays were performed in a circular arena, employing a binary choice test with filter papers acting as aggregation attractive sites; papers were either impregnated with a hexane-extract of the total lipids, or lipid fraction; or with the solvent. Insects were significantly aggregated around papers impregnated with the epicuticular lipid extracts. Among the lipid fractions separately tested, only the free fatty acid fraction promoted significant bug aggregation. We also investigated the response to different amounts of selected fatty acid components of this fraction; receptiveness varied with the fatty acid chain length. No response was elicited by hexadecanoic acid (C16:0), the major fatty acid component. Octadecanoic acid (C18:0) showed a significant assembling effect in the concentration range tested (0.1 to 2 insect equivalents). The very long chain hexacosanoic acid (C26:0) was significantly attractant at low doses (≤ 1 equivalent), although a repellent effect was observed at higher doses.</p> <p>Conclusion</p> <p>The detection of contact aggregation pheromones has practical application in Chagas disease vector control. These data may be used to help design new tools against triatomine bugs.</p>
url http://www.parasitesandvectors.com/content/2/1/8
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