Denholm Ian, Devine Gregor J, Horsberg Tor E, Sevatdal Sigmund, Fallang Anders, Nolan Damien V, Powell Richard
Plant and Invertebrate Ecology Division, IACR-Rothamsted, Harpenden AL5 2JQ, UK.
Pest Manag Sci. 2002 Jun;58(6):528-36. doi: 10.1002/ps.482.
In Northern Europe and Canada, the salmon louse, Lepeophtheirus salmonis (Krøyer), seriously affects the marine phase of salmon production. Although the problem is long-standing, the development of sustainable methods of pest management has been unable to keep pace with the intensification of production, leading to large-scale reliance on very few chemotherapeutants. This runs the risk of selecting for genetically determined resistance in target organisms. There are many examples of similar evolutionary adaptations in arthropod pests of arable crops, livestock and human health. Several hundred pest species are now documented as being resistant to one or more chemical classes of insecticides and acaricides. Many of these compounds are identical or closely related to ones currently employed against salmon lice. It is, therefore, opportune to consider what lessons have been learnt from contending with resistance in terrestrial organisms, the implications for sustainable use of chemotherapeutants in aquaculture, and the potential for developing effective resistance management strategies. An EU-funded project named SEARCH (QLK2-CT-2000-00809) has been initiated to explore in more detail the diagnosis, incidence, dynamics and management of resistance to chemotherapeutants in L salmonis.
在北欧和加拿大,鲑鱼虱(Lepeophtheirus salmonis,克罗耶氏)严重影响鲑鱼养殖的海洋阶段。尽管这个问题由来已久,但可持续害虫管理方法的发展却跟不上养殖集约化的步伐,导致大规模依赖极少数化学治疗剂。这存在在目标生物中选择出基因决定的抗性的风险。在可耕地作物、家畜和人类健康的节肢动物害虫中,有许多类似进化适应的例子。现在有数百种害虫被记录为对一种或多种化学类别的杀虫剂和杀螨剂具有抗性。其中许多化合物与目前用于对付鲑鱼虱的化合物相同或密切相关。因此,现在是时候考虑从应对陆生生物抗性中学到了哪些经验教训,这对水产养殖中化学治疗剂的可持续使用有何影响,以及制定有效的抗性管理策略的潜力。一个名为SEARCH(QLK2 - CT - 2000 - 00809)的欧盟资助项目已启动,以更详细地探索鲑鱼虱对化学治疗剂的抗性诊断、发生率、动态变化和管理。