首页> 美国卫生研究院文献>International Journal for Parasitology: Drugs and Drug Resistance >High level efficacy of lufenuron against sea lice (Lepeophtheirus salmonis) linked to rapid impact on moulting processes
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High level efficacy of lufenuron against sea lice (Lepeophtheirus salmonis) linked to rapid impact on moulting processes

机译:氟苯脲隆对海虱的高功效与对蜕皮过程的快速影响有关

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摘要

Drug resistance in the salmon louse Lepeophtheirus salmonis is a global issue for Atlantic salmon aquaculture. Multiple resistance has been described across most available compound classes with the exception of the benzoylureas. To target this gap in effective management of L. salmonis and other species of sea lice (e.g. Caligus spp.), Elanco Animal Health is developing an in-feed treatment containing lufenuron (a benzoylurea) to be administered prior to seawater transfer of salmon smolts and to provide long-term protection of salmon against sea lice infestations. Benzoylureas disrupt chitin synthesis, formation, and deposition during all moulting events. However, the mechanism(s) of action are not yet fully understood and most research completed to date has focused on insects. We exposed the first parasitic stage of L. salmonis to 700 ppb lufenuron for three hours and observed over 90% reduction in survival to the chalimus II life stage on the host, as compared to vehicle controls. This agrees with a follow up in vivo administration study on the host, which showed >95% reduction by the chalimus I stage. Transcriptomic responses of salmon lice exposed to lufenuron included genes related to moulting, epithelial differentiation, solute transport, and general developmental processes. Global metabolite profiles also suggest that membrane stability and fluidity is impacted in treated lice. These molecular signals are likely the underpinnings of an abnormal moulting process and cuticle formation observed ultrastructurally using transmission electron microscopy. Treated nauplii-staged lice exhibited multiple abnormalities in the integument, suggesting that the coordinated assembly of the epi- and procuticle is impaired. In all cases, treatment with lufenuron had rapid impacts on L. salmonis development. We describe multiple experiments to characterize the efficacy of lufenuron on eggs, larvae, and parasitic stages of L. salmonis, and provide the most comprehensive assessment of the physiological responses of a marine arthropod to a benzoylurea chemical.
机译:鲑鱼虱中的耐药性鲑鱼Leophophtheirus鲑鱼是大西洋鲑水产养殖的全球性问题。除苯甲酰脲外,已在大多数可用化合物类别中描述了多重耐药性。为了解决有效管理鲑鱼和其他海虱物种(例如Caligus spp。)方面的差距,Elanco Animal Health正在开发一种含有氟苯脲(苯甲酰脲)的饲料处理方法,该处理方法应在鲑鱼鲑鱼海水转移之前进行并为鲑鱼提供长期保护,使其免受海虱侵袭。在所有换毛事件中,苯甲酰脲会破坏甲壳质的合成,形成和沉积。然而,作用机理还没有被完全理解,迄今为止完成的大多数研究都集中在昆虫上。我们将鲑鱼沙门氏菌的第一个寄生虫阶段暴露于700fenppb的氟芬隆中三个小时,与宿主对照相比,观察到宿主在chalimus II生命阶段的存活率降低了90%以上。这与对宿主的后续体内给药研究相吻合,该研究显示,在chalimus I期,其降低了> 95%。暴露于氟苯磺隆的鲑鱼虱子的转录组反应包括与蜕皮,上皮分化,溶质转运和一般发育过程有关的基因。总体代谢物谱还表明,膜虱的稳定性和流动性受到虱子的影响。这些分子信号很可能是异常蜕皮过程和使用透射电子显微镜超结构观察到的表皮形成的基础。处理过的无节幼体阶段的虱子在被膜上表现出多种异常,表明上皮和原皮的协调装配受到损害。在所有情况下,用氟苯脲治疗对鲑鱼乳杆菌的生长都有快速的影响。我们描述了多个实验来表征氟苯磺隆对卵,幼虫和鲑鱼L.寄生虫阶段的功效,并提供海洋节肢动物对苯甲酰脲化学物质的生理反应的最全面评估。

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