Suzuki Takeshi
Japan Society for the Promotion of Science, Ichiban-cho 8, Chiyoda, Tokyo 102-8472, Japan.
Center for Environment, Health and Field Sciences, Chiba University, Kashiwa-no-ha 6-2-1, Kashiwa, Chiba 277-0882, Japan.
Insects. 2012 Oct 26;3(4):1126-42. doi: 10.3390/insects3041126.
Integrated pest management (IPM), which combines physical, biological, and chemical control measures to complementary effect, is one of the most important approaches to environmentally friendly sustainable agriculture. To expand IPM, we need to develop new pest control measures, reinforce existing measures, and investigate interactions between measures. Continued progress in the development of environmental control technologies and consequent price drops have facilitated their integration into plant production and pest control. Here I describe environmental control technologies for the IPM of spider mites through: (1) the disturbance of photoperiod-dependent diapause by artificial light, which may lead to death in seasonal environments; (2) the use of ultraviolet radiation to kill or repel mites; and (3) the use of water vapor control for the long-term cold storage of commercially available natural enemies. Such environmental control technologies have great potential for the efficient control of spider mites through direct physical effects and indirect effects via natural enemies.
综合虫害管理(IPM)将物理、生物和化学控制措施结合起来以产生互补效应,是实现环境友好型可持续农业的最重要方法之一。为了扩大综合虫害管理的应用,我们需要开发新的害虫控制措施,加强现有措施,并研究各项措施之间的相互作用。环境控制技术的不断发展以及随之而来的价格下降,促进了这些技术融入植物生产和害虫控制之中。在此,我将通过以下方面描述用于叶螨综合虫害管理的环境控制技术:(1)利用人造光干扰依赖光周期的滞育,这在季节性环境中可能导致叶螨死亡;(2)使用紫外线辐射来杀死或驱赶叶螨;(3)利用水汽控制对市售天敌进行长期冷藏。此类环境控制技术通过直接物理效应以及经由天敌产生的间接效应,在高效控制叶螨方面具有巨大潜力。