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A review of biological control efforts against Diptera of medical and veterinary importance includes pertinent literature of major dipterous taxonomic groups where some success has been achieved or where work is currently being conducted on species breeding in aquatic (e.g., mosquitoes, blackflies, tabanids) and terrestrial habitats (muscids, tsetse, etc.). Most effort has been directed against aquatic Diptera because of the human and animal disease agents they transmit. Research has established that the natural enemy component frequently is responsible for significant population reduction and indispensable to integrated control which seeks to maintain populations below annoyance or disease transmission levels. The manipulation of natural enemies through introduction and/or augmentation has in some cases provided satisfactory control, and sustained releases of natural enemies over several years may overcome the relative high cost of massive release rates. Ultimately, to guarantee the existence and maximum expression of resident natural enemies has become almost universally accepted, and challenging, to sound control practices. Indeed, chemical industry recognizing this, has sought to manufacture products such as Bacillus toxins, juvenile hormones, and baits that are minimally disruptive to existing natural controls. Although such easily applied products have been widely adopted, their cost continues to become prohibitive with developing resistance, as was observed earlier with many organophosphate and chlorinated hydrocarbon insecticides. Further advancements in the control ofthese Diptera should continue to embrace a sound appreciation for the natural control component and nurture ways to allow its maximum expression. Keyword Index: Biological Control, Diptera, Medical, Veterinary.
Mutations are the ultimate basis of evolution, yet their occurrence rate is known only for few species. We directly estimated the spontaneous mutation rate and the mutational spectrum in the nonbiting midge C. riparius with a new approach. Individuals from ten mutation accumulation lines over five generations were deep genome sequenced to count de novo mutations that were not present in a pool of F1 individuals, representing parental genotypes. We identified 51 new single site mutations of which 25 were insertions or deletions and 26 single nucleotide mutations. This shift in the mutational spectrum compared to other organisms was explained by the high A/T content of the species. We estimated a haploid mutation rate of 2.1 × 10−9 (95% confidence interval: 1.4 × 10−9 – 3.1 × 10-9) that is in the range of recent estimates for other insects and supports the drift barrier hypothesis. We show that accurate mutation rate estimation from a high number of observed mutations is feasible with moderate effort even for nonmodel species.
Einsatz entomopathogener Pilze gegen die Kirschfruchtfliege Rhagoletis cerasi : erste Feldresultate
(2008)
Die Kirschfruchtfliege Rhagoletis cerasi Loew (Diptera: Tephritidae) ist der wichtigste Schädling im Süßkirschenanbau in Europa. Bei unbehandelten Bäumen können bis zu 100% der Kirschen Madenbefall aufweisen. Da Handel und Verbraucher nur einen Befall von maximal 2% tolerieren, sind effiziente Bekämpfungsmaßnahmen gefragt. Der bisher verwendete Wirkstoff Dimethoate könnte im Zuge der Re-Evaluation von Pflanzenschutzmitteln in der EU seine Zulassung verlieren. Danach stünde die gesamte Kirschenproduktion in Europa vor der gleichen Situation wie derzeit der ökologische Landbau: eine Regulierung der Kirschfruchtfliege wäre nur noch über Leimfallen oder durch den Einsatz von Netzen möglich. Beide Methoden sind sehr arbeitsintensiv und oft nicht ausreichend wirksam. Im Labor wurden mehrere Pilzstämme gegen verschiedene Entwicklungsstadien der Kirschfruchtfliege geprüft, mit dem Ergebnis, dass nur adulte Fliegen befallen werden. Dabei zeigten die Pilze Beauveria bassiana und Paecilomyces fumosoroseus die beste Wirkung. Diese beiden Pilze, die bereits in kommerziellen Produkten formuliert sind, wurden 2006 in zwei Feldversuchen gegen adulte Kirschfruchtfliegen appliziert.
Two new endemic genera of Therevinae are described from Madagascar. Rinhatiana gen. nov. contains three new species (R. arctifestuca gen. et sp. nov., R. cracentis gen. et sp. nov. and R. latifestuca gen. et sp. nov.) as well as R. distincta (Lyneborg, 1976) comb. nov., which is transferred from Stenopomyia Lyneborg, 1976. Tianarinha gen. nov. is described containing two new species, T. goodmani gen. et sp. nov. and T. micet gen. et sp. nov. All species are diagnosed and figured along with distribution data.
Reproduction of mosquitoes (Diptera: Culicidae) in Santa Cruz, Santiago island, Cape Verde Islands
(2012)
Mosquitoes are dipterous insects with an important role in the transmission of diseases like malaria and dengue. During a dengue fever outbreak in the Cape Verde Islands in 2009, several studies were undertaken to support vector control. The present study was carried out in the district of Santa Cruz, Santiago island, to evaluate previous measures taken to control mosquito populations. Results show that mosquitoes use domestic water containers to breed. Barrels, drums and pots were all used. Of these, drums were most frequently found being infested with mosquito larvae or pupae. Morphological identification showed that Anopheles arabiensis and Aedes aegypti were present in the study area. Ae. aegypti was the commonest of the two and the only one found throughout the study area. Results show that socio-economic factors influence container positivity.
Container-breeding Aedes spp. (Diptera: Culicidae) mosquitoes can be surveilled at low cost using ovitraps. Hence, this method is a preferred monitoring approach of dengue vectors in low-resource settings. The ovitraps consist of a cup filled with water and an oviposition substrate for female mosquitoes. The attractiveness of the substrates for female mosquitoes can greatly differ due to differences in texture, color, and smell of the materials used. We compare four oviposition substrates, which are all low priced, easy to transport, and easy to purchase, to maximize the success of Aedes egg sampling. Sampled egg material is often reared to adulthood for further taxonomic identification and transported to (international) laboratories for specialized vector research. Here we introduce a transport technique for sampled eggs. In addition, we explored the impact of international transport by means of a bilateral hatching experiment in Nepal, the country of origin, and in Germany, in a laboratory specialized in ecophysiological research. The best low-cost oviposition substrate for the dengue vectors Aedes albopictus (Skuse) and Aedes aegypti (L.) was found to be a white cotton sheet. The introduced transport technique of sampled eggs is easy to build from laboratory and household materials and ensures good transport conditions (i.e., temperature and relative humidity). Even under good temperature (17.4–31.0 °C) and humidity conditions (58.9–94.2%), hatching success of eggs was found to be reduced after international transport to Germany when compared to the hatching success of eggs in Nepal. We postulate that air pressure during international transport may have reduced the hatching success and strongly recommend pressure-regulated transport boxes for egg transport via airplane. As the proposed operation procedure is useful in assisting the monitoring of Ae. albopictus and Ae. aegypti in low-resource settings, Aedes researchers are encouraged to follow it for the sampling and transport of Aedes eggs.
Die Kirschfruchtfliege Rhagoletis cerasi Loew (Diptera: Tephritidae) ist der wichtigste Schädling im Süßkirschenanbau in Europa. Bei unbehandelten Bäumen können bis zu 100% der Kirschen Madenbefall aufweisen. Da Handel und Verbraucher nur einen Befall von maximal 2% tolerieren, sind effiziente Bekämpfungsmaßnahmen gefragt. Der bisher verwendete Wirkstoff Dimethoate könnte im Zuge der Re-Evaluation von Pflanzenschutzmitteln in der EU seine Zulassung verlieren. Danach stünde die gesamte Kirschenproduktion in Europa vor der gleichen Situation wie derzeit der biologische Landbau: eine Regulierung der Kirschfruchtfliege wäre nur noch über Leimfallen oder durch den Einsatz von Netzen möglich. Beide Methoden sind sehr arbeitsintensiv und oft nicht ausreichend wirksam. Der Einsatz von Mikroorganismen als Biocontrol-Maßnahme könnte eine Alternative darstellen. Die Verwendung von entomopathogenen Pilzen zur Bekämpfung von Tephritiden wurde in den letzten Jahren von mehreren Autoren beschrieben (Anagnou-Veroniki et al., 2005; Ekesi et al., 2005; Konstantopoulou & Mazomenos, 2005; Yee & Lacey, 2005), wobei bisher noch keine Erfahrungen zu R. cerasi vorliegen. Ziel dieser Untersuchung war die Beurteilung verschiedener Pilzstämme (Deuteromycotina: Hyphomycetes) hinsichtlich ihrer Pathogenität und Virulenz gegen die Kirschfruchtfliege.