Crawley Sydney E, Gordon Jennifer R, Kowles Katelyn A, Potter Michael F, Haynes Kenneth F
Department of Entomology, University of Kentucky, Lexington, KY, United States of America.
PLoS One. 2017 May 10;12(5):e0177410. doi: 10.1371/journal.pone.0177410. eCollection 2017.
Sublethal exposure to an insecticide may alter insect feeding, mating, oviposition, fecundity, development, and many other life history parameters. Such effects may have population-level consequences that are not apparent in traditional dose-mortality evaluations. Earlier, we found that a routinely used combination insecticide that includes a pyrethroid and a neonicotinoid (Temprid® SC) had deleterious effects on multiple bed bug (Cimex lectularius, L.) behaviors. Here, we demonstrate that sublethal exposure impacts physiology and reproduction as well. We report that sublethal exposure to Temprid SC has variable aberrant effects on bed bugs depending on the strain, including: a reduction in male mating success and delayed oviposition by females. However, after sublethal exposure, egg hatch rate consistently declined in every strain tested, anywhere from 34%-73%. Conversely, impact on fifth instar eclosion time was not significant. While the strains that we tested varied in their respective magnitude of sublethal effects, taken together, these effects could reduce bed bug population growth. These changes in bed bug behavior and fecundity could lead to improved efficacy of Temprid SC in the field, but recovery of impacted bugs must be considered in future studies. Sublethal effects should not be overlooked when evaluating insecticide efficacy, as it is likely that other products may also have indirect effects on population dynamics that could either aid or inhibit successful management of pest populations.
亚致死剂量接触杀虫剂可能会改变昆虫的取食、交配、产卵、繁殖力、发育以及许多其他生活史参数。这些影响可能会产生种群水平的后果,而这些后果在传统的剂量-死亡率评估中并不明显。此前,我们发现一种常规使用的复合杀虫剂(包含拟除虫菊酯和新烟碱类,即Temprid® SC)对多种臭虫(温带臭虫,Cimex lectularius, L.)的行为具有有害影响。在此,我们证明亚致死剂量接触也会影响生理和繁殖。我们报告称,亚致死剂量接触Temprid SC对不同品系的臭虫有不同的异常影响,包括:雄性交配成功率降低以及雌性产卵延迟。然而,亚致死剂量接触后,每个测试品系的卵孵化率均持续下降,降幅在34% - 73%之间。相反,对五龄若虫羽化时间的影响并不显著。虽然我们测试的品系在亚致死效应的程度上各不相同,但总体而言,这些效应可能会降低臭虫种群的增长。臭虫行为和繁殖力的这些变化可能会提高Temprid SC在田间的防治效果,但在未来的研究中必须考虑受影响臭虫的恢复情况。在评估杀虫剂效果时,亚致死效应不应被忽视,因为其他产品也可能对种群动态产生间接影响,这可能有助于或抑制害虫种群的成功治理。