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斯普诺沙菌素抗药性影响家蝇林奈生物学参数。

Spinosad resistance affects biological parameters of Musca domestica Linnaeus.

机构信息

Institute of Agricultural Sciences, University of the Punjab, Lahore, Pakistan.

出版信息

Sci Rep. 2018 Sep 19;8(1):14031. doi: 10.1038/s41598-018-32445-8.

Abstract

Musca domestica is one of the major cosmopolitan insect pests of public health importance. Spinosad is considered an eco-friendly insecticide used for the management of M. domestica and other pests of significant concern. Cases of resistance against spinosad in M. domestica have been reported from some parts of the world; however, there are no reports of any negative effects of spinosad resistance on the fitness/biological parameters of M. domestica. To investigate fitness costs, a near isogenic M. domestica resistant strain (Spin-R) was constructed using Spin-UNSEL-susceptible and Spin-SEL-resistant strains sharing a close genetic background. We found significantly reduced rates of adult eclosion, fecundity, egg hatching, survival, and lengthened developmental time in the Spin-R strain. Moreover, the values of different fitness parameters like biotic potential, mean relative growth rate, intrinsic rate of natural increase, and net reproductive rate, were also significantly reduced in the Spin-R strain, which reflect fitness costs most probably linked with spinosad resistance. The presence of fitness costs suggests likely instability of resistance to spinosad in M. domestica, which can be reverted by relaxing spinosad selection pressure and rotation with alternate insecticides. The wise use of insecticides will ultimately help to manage resistance in this pest and minimize environmental pollution.

摘要

家蝇是具有重要公共卫生意义的主要世界性昆虫害虫之一。多杀菌素被认为是一种环保型杀虫剂,用于防治家蝇和其他受到严重关注的害虫。世界上一些地区已经报道了家蝇对多杀菌素产生抗药性的情况;然而,目前尚无关于多杀菌素抗性对家蝇适应/生物学参数产生任何负面影响的报道。为了研究适应代价,我们使用遗传背景相近的多杀菌素敏感(Spin-UNSEL)和多杀菌素抗性(Spin-SEL)品系构建了近等基因系家蝇抗性品系(Spin-R)。我们发现,Spin-R 品系的成虫羽化率、繁殖力、卵孵化率、存活率显著降低,发育时间延长。此外,Spin-R 品系的不同适应参数值,如生物潜能、平均相对增长率、内禀增长率和净生殖率也显著降低,这反映了与多杀菌素抗性相关的适应代价。适应代价的存在表明,家蝇对多杀菌素的抗性可能不稳定,通过放松多杀菌素选择压力并与其他杀虫剂轮换使用,这种抗性可能会逆转。明智地使用杀虫剂将有助于管理这种害虫的抗性,最大限度地减少环境污染。

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