Fernández-Grandon G Mandela, Woodcock Christine M, Poppy Guy M
School of Biological Sciences, University of Southampton, Southampton, Hampshire, UK.
Bull Entomol Res. 2013 Aug;103(4):466-72. doi: 10.1017/S0007485313000126. Epub 2013 Mar 13.
The aphid sex pheromone component (4aS,7S,7aR)-nepetalactone is considered to be a potential tool for enhancing biological control of aphids. Studies have confirmed its potential to attract parasitoids, increase parasitism rates in the field and also alter the spatial distribution of parasitoids. An important aspect that has been overlooked is the impact that the introduction of nepetalactone may have on aphid populations already present in field or glasshouse environments. The most prevalent pest aphid populations in glasshouse and field environments are the asexual morphs, which are capable of exponential growth if populations are not controlled. The short-term implications of the sex pheromone on asexual aphids were observed through their behavioural response. Using Y-tube olfactometry, it is shown that virginoparae of the peach-potato aphid, Myzus persicae, are repelled by high concentrations of nepetalactone. Long-term effects of the pheromone which may span the aphid's life, or even generations, were assessed via mean relative growth rate (MRGR) and the intrinsic rate of natural increase (rm). Electroantennography also demonstrated that asexual female aphids are able to detect aphid sex pheromone components. To our knowledge, this is the first time it has been reported that M. persicae virginoparae are able to detect aphid sex pheromone components or that their behavioural response and/or performance has been studied. The implications of these results and their significance in understanding semiochemical communication are discussed.
蚜虫性信息素成分(4aS,7S,7aR)-荆芥内酯被认为是增强蚜虫生物防治效果的一种潜在工具。研究已证实其具有吸引寄生蜂、提高田间寄生率以及改变寄生蜂空间分布的潜力。一个被忽视的重要方面是,荆芥内酯的引入可能会对田间或温室环境中已有的蚜虫种群产生影响。温室和田间环境中最常见的害虫蚜虫种群是无性型,若种群得不到控制,它们能够呈指数级增长。通过蚜虫的行为反应观察了性信息素对无性蚜虫的短期影响。利用Y型嗅觉仪研究发现,桃蚜无翅胎生雌蚜会被高浓度的荆芥内酯驱避。通过平均相对生长率(MRGR)和内禀自然增长率(rm)评估了性信息素可能贯穿蚜虫一生甚至几代的长期影响。触角电位图也表明,无性雌蚜能够检测到蚜虫性信息素成分。据我们所知,这是首次报道桃蚜无翅胎生雌蚜能够检测到蚜虫性信息素成分,或者对其行为反应和/或性能进行研究。本文还讨论了这些结果的意义及其在理解化学生态通讯方面的重要性。