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41.
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Studies were carried out in Zimbabwe of the responses of tsetse to cattle treated with deltamethrin applied to the parts of the body where most tsetse were shown to land. Large proportions of Glossina pallidipes Austen (Diptera: Glossinidae) landed on the belly ( approximately 25%) and legs ( approximately 70%), particularly the front legs ( approximately 50%). Substantial proportions of Glossina morsitans morsitans Westwood landed on the legs ( approximately 50%) and belly (25%), with the remainder landing on the torso, particularly the flanks ( approximately 15%). Studies were made of the knockdown rate of wild, female G. pallidipes exposed to cattle treated with a 1% pour-on or 0.005% suspension concentrate of deltamethrin applied to the (a) whole body, (b) belly and legs, (c) legs, (d) front legs, (e) middle and lower front legs, or (f) lower front legs. The restricted treatments used 20%, 10%, 5%, 2% or 1% of the active ingredient applied in the whole-body treatments. There was a marked seasonal effect on the performance of all treatments. With the whole-body treatment, the persistence period (knockdown > 50%) ranged from approximately 10 days during the hot, wet season (mean daily temperature > 30 degrees C) to approximately 20 days during the cool, dry season (< 22 degrees C). Restricting the application of insecticide reduced the seasonal persistence periods to approximately 10-15 days if only the legs and belly were treated, approximately 5-15 days if only the legs were treated and < 5 days for the more restricted treatments. The restricted application did not affect the landing distribution of tsetse or the duration of landing bouts (mean = 30 s). The results suggest that more cost-effective control of tsetse could be achieved by applying insecticide to the belly and legs of cattle at 2-week intervals, rather than using the current practice of treating the whole body of each animal at monthly intervals. This would cut the cost of insecticide by 40%, improve efficacy by 27% and reduce the threats to non-target organisms and the enzootic stability of tick-borne diseases.  相似文献   
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Abstract Tsetse are vectors of trypanosomes that cause diseases both in humans and livestock. Traditional tsetse surveys, using sampling methods such as Epsilon traps and black screen fly rounds, are often logistically difficult, costly and time-consuming. The distribution of tsetse, as revealed by such survey methods, is strongly influenced by environmental conditions, such as climate and vegetation cover, which may be readily mapped using satellite data. These data may be used to make predictions of the probable distribution of tsetse in unsurveyed areas by determining the environmental characteristics of areas of tsetse presence and absence in surveyed areas. The same methods may also be used to characterize differences between tsetse species and subspecies. In this paper we analyse the distribution of Glossina morsitans centralis, Glossina morsitans morsitans and Glossina pallidipes in southern Africa with respect to single environmental variables. For G.m.centralis the best predictions were made using the average NDVI (75% correct predictions; range > 0.37) and the average of the maximum temperature (70% correct predictions; 27.0–29.2°C). For G.m.morsitans the best prediction was given by the maximum of the minimum temperature (84% correct predictions; range > 18.8°C), and for G.pallidipes , also by the maximum of the minimum temperature (86% correct predictions; range > 19.6 °C). The following paper compares a range of multivariate techniques for making predictions about the distribution of these species in the same region.  相似文献   
45.
Various chamber designs for infecting natural populations ofGlossina pallidipes, G. longipennis,andG. fuscipes fuscipeswith the entomopathogenic fungusMetarhizium anisopliaewere tested in the field. All three species of tsetse flies entered the chambers and became infected with the fungus. Mortality attributed to infection byM. anisopliaeranged from 0 to 76% forG. pallidipes/G. longipennisand from 0 to 80% forG. fuscipes.One design proved to be more efficient than the others in permitting the passage of flies and contaminating them with fungal conidia. Dry conidia ofM. anisopliaein the infection chamber retained their infectivity for more than 21 days in the field.  相似文献   
46.
Gene diversity was investigated in four taxa of tsetse flies (Diptera: Glossinidae) including Glossina morsitans morsitans, G. m. centralis, G. swynnertoni, and G. pallidipes. Histochemical tests were performed for 35–46 isozymes. Polymorphic loci were 20% in G. morsitans morsitans, 32% in G. m. centralis, 17.6% in G. swynnertoni, and 26% in G. pallidipes. Mean heterozygosities among all loci were 6.6% in G. morsitans morsitans, 6.0% in G. m. centralis, 7.1% in G. swynnertoni, and 6.8% in G. pallidipes. Allozyme gene diversities were considerably less than those reported for many Diptera. The low gene diversities are probably related to small effective population sizes.  相似文献   
47.
A virus infection, associated with enlargement of the salivary glands (ESG) and gonadal pathology in Glossina pallidipes Austen (Diptera: Glossinidae), was studied in field-caught and laboratory-reared flies. The lifespan of both sexes of infected (ESG-) flies was significantly shorter than that of flies with normal salivary glands (NSG). NSG-females, mated to infected males only or to both infected and normal males, produced predominantly male progeny. In general, NSG-parents produced only NSG-progeny, and ESG-females only ESG-progeny. ESG-males were usually sterile, but a few NSG-females inseminated by ESG-males produced NSG-progeny. One NSG-female, mated first to an ESG-male and then to an NSG-male, produced 3 ESG-sons. As will be discussed, this virus may have important effects (reduced insemination rates, fecundity and lifespan, and sex ratio distortion) on laboratory colonies of G. pallidipes as well as on the regulation of its natural populations.
Résumé C'est à partir de mouches capturées et élevées au laboratoire à Kibwezi au Kenya, qu'a été étudiée l'infection virale, accompagnée d'hyperplasie des glandes salivaires (ESG) et la pathologie des gonades de G. pallidipes Aust. La durée de vie des mouches contaminées (ESG)_des 2 sexes était significativement plus brève que celle des mouches aux glandes salivaires normales (NSG). Des femelles NSG accouplées uniquement à des mâles contaminés ou à des mâles sains et contaminés, ont donné une descendance majoritairement mâle.En général, des parents NSG ont donné uniquement des enfants NSG, et des femelles ESG des enfants ESG. Les mâles ESG étaient généralement stériles, mais quelques femelles NSG inséminées par des mâles ESG ont donné des enfants NSG. Une femelle NSG accouplée en premier avec un mâle ESG et ensuite à un mâle NSG, a donné 3 fils ESG. Bien que les transmissions orales et sexuelles puissent être naturellement des modes de contamination, la transmission verticale de la mère à la descendance semble être le mécanisme le plus significatif du maintien de ce virus. L'apparition d'enfants ESG de parents NSG est dans quelques cas vraisemblablement due à la présence du virus chez quelques mouches NSG sans qu'il y ait apparemment infection, sans symptômes visibles. Le virus ESG peut avoir des effets importants (diminution des taux d'insémination, de la fécondité, de la durée de vie, et modification de la fréquence des sexes) dans les souches de laboratoire et aussi sur la régulation des populations naturelles de ce vecteur des trypanosomiases africaines.
  相似文献   
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ABSTRACT.
  • 1 Data are presented which suggests that the accurate determination of the age of tsetse flies (Glossina morsitans morsitans Westwood and G. pallidipes Austen) in the field can be achieved by measuring the fluorescence content of the head capsule.
  • 2 The way in which this can be achieved and further work which would improve the accuracy of the technique are discussed.
  相似文献   
50.
运用2因素2次回归正交旋转组合设计,研究了温度和光照周期对淡足侧沟茧蜂Microplitis pallidipes Szepligeti寄生率和性比的影响,并建立了回归模型,旨在为优化寄生蜂雌性比率、提高寄生率提供资料。主效分析表明,温度、光周期与寄生率呈抛物线关系,编码值为零水平取值时,寄生率达到最大;温度对雌性比率的影响大于光周期。交互作用表明,温度和光周期对斜纹夜蛾Spodoptera litura Fabricius幼虫被寄生率有明显的负交互效应,而对侧沟茧蜂雌性比率的交互作用不明显。通过对模型进行模拟,温度为28℃、光周期L∶D=12∶12时,寄生率达到最大(71.89%);温度为33.7℃、光周期为L∶D=12∶12时,雌性比率达最高值(0.57)。  相似文献   
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