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首页> 外文期刊>Ecotoxicology and Environmental Safety >Effects of Bacillus thuringiensis israelensis and spinosad on adult emergence of the non-biting midges Polypedilum nubifer (Skuse) and Tanytarsus curticornis Kieffer (Diptera: Chironomidae) in coastal wetlands
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Effects of Bacillus thuringiensis israelensis and spinosad on adult emergence of the non-biting midges Polypedilum nubifer (Skuse) and Tanytarsus curticornis Kieffer (Diptera: Chironomidae) in coastal wetlands

机译:苏云金芽孢杆菌以色列和多杀菌素对沿海湿地非咬食midNupfer(Skuse)和Tanytarsus curticornis Kieffer(Diptera:Chironomidae)成虫的影响

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摘要

To optimize their efficacy, some insecticides used for mosquito control are introduced into aquatic ecosystems where mosquito larvae develop (marshes, ponds, sanitation devices) and cannot escape from the treated water. However, this raises the question of possible effects of mosquito larvicides on nontarget aquatic species. Bacillus thuringiensis var. israelensis (Bti), which is well-known for its selectivity for Nematocera dipterans, is widely used for mosquito control all over the world. Spinosad, a mixture of spinosyns A and D known as fermentation products of a soil actinomycete (Saccharopolyspora spinosa), is a biological neurotoxic insecticide with a broader action spectrum. It is a candidate larvicide for mosquito control, but some studies showed that it may be toxic to beneficial or non-target species, including non-biting midges. The present study was therefore undertaken to assess the impact of Bti and spinosad on natural populations of Polypedilum nubifer (Skuse) and Tanytarsus curticornis Kieffer (Diptera: Chironomidae) in field enclosures implemented in Mediterranean coastal wetlands. Unlike Bti, spinosad had a strong lethal effect on Polypedilum nubifer and seems to affect Tanytarsus curticornis at presumed recommended rates for field application. Differences in the sensitivity of these two species to spinosad confirm that population dynamics need to be known for a proper assessment of the risk encountered by chironomids in wetlands where larvicide-based mosquito control occurs. (C) 2015 Elsevier Inc. All rights reserved.
机译:为了优化其功效,将一些用于灭蚊的杀虫剂引入到水生生态系统中,在此水生生态系统中,蚊虫的幼虫会生长(沼泽,池塘,卫生设备)并且无法从处理过的水中逸出。但是,这提出了蚊幼虫对非目标水生物种可能产生影响的问题。苏云金芽孢杆菌变种以色列(Bti)以对二线线虫的选择性而闻名,在全世界范围内广泛用于灭蚊。 Spinosad是多杀菌素A和D的混合物,被称为土壤放线菌(Saccharopolyspora spinosa)的发酵产物,是一种具有较宽作用谱的生物神经毒性杀虫剂。它是控制蚊子的候选杀幼虫剂,但一些研究表明,它可能对有益或非目标物种(包括不咬人的蚊子)有毒。因此,本研究旨在评估在地中海沿岸湿地实施的田间围栏中,Bti和多杀菌素对多头Poly(Skuse)和Tan草(Dityera:Chironomidae)自然种群的影响。与Bti不同,多杀菌素对spin虫有很强的致死作用,并且似乎以推定的田间推荐施药量影响Tan草。这两种物种对多杀菌素的敏感性不同,这证明需要对种群动态进行适当评估,以正确评估手足类动物在发生基于杀幼虫剂的蚊子控制的湿地中所面临的风险。 (C)2015 Elsevier Inc.保留所有权利。

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