Longevity of mass-reared, irradiated and packed male Anopheles arabiensis and Aedes aegypti under simulated environmental field conditions

Abstract Background To ensure the success of a mosquito control programme that integrates the sterile insect technique (SIT), it is highly desirable to release sterile males with a maximal lifespan to increase release effectiveness. Understanding sterile male survival under field conditions is thus...

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Main Authors: Nicole Jean Culbert, Hamidou Maiga, Nanwintoum Sévérin Bimbile Somda, Jeremie Roger Lionel Gilles, Jérémy Bouyer, Wadaka Mamai
Format: Article
Language:English
Published: BMC 2018-11-01
Series:Parasites & Vectors
Subjects:
Online Access:http://link.springer.com/article/10.1186/s13071-018-3191-z
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spelling doaj-7005df5e0cda4143adcde122f5f73e9d2020-11-25T02:15:37ZengBMCParasites & Vectors1756-33052018-11-011111810.1186/s13071-018-3191-zLongevity of mass-reared, irradiated and packed male Anopheles arabiensis and Aedes aegypti under simulated environmental field conditionsNicole Jean Culbert0Hamidou Maiga1Nanwintoum Sévérin Bimbile Somda2Jeremie Roger Lionel Gilles3Jérémy Bouyer4Wadaka Mamai5Insect Pest Control Laboratory, Joint FAO/IAEA Division of Nuclear Techniques in Food and AgricultureInsect Pest Control Laboratory, Joint FAO/IAEA Division of Nuclear Techniques in Food and AgricultureInsect Pest Control Laboratory, Joint FAO/IAEA Division of Nuclear Techniques in Food and AgricultureInsect Pest Control Laboratory, Joint FAO/IAEA Division of Nuclear Techniques in Food and AgricultureInsect Pest Control Laboratory, Joint FAO/IAEA Division of Nuclear Techniques in Food and AgricultureInsect Pest Control Laboratory, Joint FAO/IAEA Division of Nuclear Techniques in Food and AgricultureAbstract Background To ensure the success of a mosquito control programme that integrates the sterile insect technique (SIT), it is highly desirable to release sterile males with a maximal lifespan to increase release effectiveness. Understanding sterile male survival under field conditions is thus critical for determining the number of males to be released. Our study aimed to investigate the effect of mass rearing, irradiation, chilling, packing and release time on irradiated male mosquito longevity. Methods Anopheles arabiensis and Aedes aegypti immature stages were mass-reared using a rack and tray system. Batches of 50 males irradiated at the pupal stage were immobilised, packed into canisters and chilled for 6 hours at 6 °C. Mosquitoes were then transferred either in the early morning or early evening into climate chambers set to simulate the weather conditions, typical of the beginning of the rainy season in Khartoum, Sudan and Juazeiro, Brazil for An. arabiensis and Ae. aegypti, respectively. The longevity of experimental males was assessed and compared to mass-reared control males subjected either to simulated field or laboratory conditions. Results The combined irradiation, chilling and packing treatments significantly reduced the longevity of both An. arabiensis and Ae. aegypti under simulated field conditions (P < 0.001). However, packing alone did not significantly reduce longevity of Ae. aegypti (P = 0.38) but did in An. arabiensis (P < 0.001). Overall, the longevity of mass reared, irradiated and packed males was significantly reduced, with the median survival time (days) lower following an early morning introduction (4.62 ± 0.20) compared to an evening (7.34 ± 0.35) in An. arabiensis (P < 0.001). However, there was no significant difference in longevity between morning (9.07 ± 0.54) and evening (7.76 ± 0.50) in Ae. aegypti (P = 0.14). Conclusions Our study showed that sterile mass-reared males have a reduced lifespan in comparison to laboratory-maintained controls under simulated field conditions, and that An. arabiensis appeared to be more sensitive to the handling process and release time than Ae. aegypti. Longevity and release time are important parameters to be considered for a successful area-wide integrated vector control programme with a SIT component.http://link.springer.com/article/10.1186/s13071-018-3191-zSterile insect techniqueMosquitoPackingRelease timeClimatic conditionsDiptera
collection DOAJ
language English
format Article
sources DOAJ
author Nicole Jean Culbert
Hamidou Maiga
Nanwintoum Sévérin Bimbile Somda
Jeremie Roger Lionel Gilles
Jérémy Bouyer
Wadaka Mamai
spellingShingle Nicole Jean Culbert
Hamidou Maiga
Nanwintoum Sévérin Bimbile Somda
Jeremie Roger Lionel Gilles
Jérémy Bouyer
Wadaka Mamai
Longevity of mass-reared, irradiated and packed male Anopheles arabiensis and Aedes aegypti under simulated environmental field conditions
Parasites & Vectors
Sterile insect technique
Mosquito
Packing
Release time
Climatic conditions
Diptera
author_facet Nicole Jean Culbert
Hamidou Maiga
Nanwintoum Sévérin Bimbile Somda
Jeremie Roger Lionel Gilles
Jérémy Bouyer
Wadaka Mamai
author_sort Nicole Jean Culbert
title Longevity of mass-reared, irradiated and packed male Anopheles arabiensis and Aedes aegypti under simulated environmental field conditions
title_short Longevity of mass-reared, irradiated and packed male Anopheles arabiensis and Aedes aegypti under simulated environmental field conditions
title_full Longevity of mass-reared, irradiated and packed male Anopheles arabiensis and Aedes aegypti under simulated environmental field conditions
title_fullStr Longevity of mass-reared, irradiated and packed male Anopheles arabiensis and Aedes aegypti under simulated environmental field conditions
title_full_unstemmed Longevity of mass-reared, irradiated and packed male Anopheles arabiensis and Aedes aegypti under simulated environmental field conditions
title_sort longevity of mass-reared, irradiated and packed male anopheles arabiensis and aedes aegypti under simulated environmental field conditions
publisher BMC
series Parasites & Vectors
issn 1756-3305
publishDate 2018-11-01
description Abstract Background To ensure the success of a mosquito control programme that integrates the sterile insect technique (SIT), it is highly desirable to release sterile males with a maximal lifespan to increase release effectiveness. Understanding sterile male survival under field conditions is thus critical for determining the number of males to be released. Our study aimed to investigate the effect of mass rearing, irradiation, chilling, packing and release time on irradiated male mosquito longevity. Methods Anopheles arabiensis and Aedes aegypti immature stages were mass-reared using a rack and tray system. Batches of 50 males irradiated at the pupal stage were immobilised, packed into canisters and chilled for 6 hours at 6 °C. Mosquitoes were then transferred either in the early morning or early evening into climate chambers set to simulate the weather conditions, typical of the beginning of the rainy season in Khartoum, Sudan and Juazeiro, Brazil for An. arabiensis and Ae. aegypti, respectively. The longevity of experimental males was assessed and compared to mass-reared control males subjected either to simulated field or laboratory conditions. Results The combined irradiation, chilling and packing treatments significantly reduced the longevity of both An. arabiensis and Ae. aegypti under simulated field conditions (P < 0.001). However, packing alone did not significantly reduce longevity of Ae. aegypti (P = 0.38) but did in An. arabiensis (P < 0.001). Overall, the longevity of mass reared, irradiated and packed males was significantly reduced, with the median survival time (days) lower following an early morning introduction (4.62 ± 0.20) compared to an evening (7.34 ± 0.35) in An. arabiensis (P < 0.001). However, there was no significant difference in longevity between morning (9.07 ± 0.54) and evening (7.76 ± 0.50) in Ae. aegypti (P = 0.14). Conclusions Our study showed that sterile mass-reared males have a reduced lifespan in comparison to laboratory-maintained controls under simulated field conditions, and that An. arabiensis appeared to be more sensitive to the handling process and release time than Ae. aegypti. Longevity and release time are important parameters to be considered for a successful area-wide integrated vector control programme with a SIT component.
topic Sterile insect technique
Mosquito
Packing
Release time
Climatic conditions
Diptera
url http://link.springer.com/article/10.1186/s13071-018-3191-z
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