Chen Xu-Yang, Hopkins R J, Zhao Yi-Pei, Huang Guo-Hua
Hunan Provincial Key Laboratory for Biology and Control of Plant Diseases and Insect Pests, Hunan Agricultural University, Nongda Rd. 1, Furong District, Changsha, Hunan 410128, P. R. China (
Natural Resource Institute, University of Greenwich, Chatham Maritime, Kent, ME44TB, United Kingdom (
Environ Entomol. 2017 Jun 1;46(3):642-648. doi: 10.1093/ee/nvx076.
Host selection is a key stage in the lifecycle of parasitoids, and is critical to both their function in control and to the maintenance of their population. The solitary endoparasitoid Microplitis similis (Hymenoptera: Braconidae) is a potential biological control agent of Spodoptera litura (F.) larvae (Lepidoptera: Noctuidae). In this study, we examined the preference M. similis exhibits for different instars of the host, host instar effects on parasitoid development, and the weight gain and food consumption of different instars of parasitized larvae. In no-choice tests, parasitization rates were highest in second- and early third-instar larvae, and no fourth- or fifth-instar hosts were parasitized. When provided with a choice of first- to late third-instar host larvae, M. similis preferred to parasitize early third-instar host larvae (41%) with a selection coefficient of 0.37. All morphometric features of wasp offspring increased with increasing age of the host at parasitization. A lower proportion of females emerged from first-instar larvae than any other instar. Parasitized S. litura larvae showed a pronounced reduction in food consumption and weight gain. Microplitis similis may have the potential to significantly suppress population growth and the damage caused by S. litura.
寄主选择是寄生蜂生命周期中的关键阶段,对于它们在控制害虫方面的作用以及种群维持都至关重要。单寄生内寄生蜂拟微点脉姬蜂(膜翅目:茧蜂科)是斜纹夜蛾幼虫(鳞翅目:夜蛾科)的一种潜在生物防治剂。在本研究中,我们研究了拟微点脉姬蜂对不同龄期寄主的偏好、寄主龄期对寄生蜂发育的影响,以及被寄生幼虫不同龄期的体重增加和食物消耗情况。在无选择试验中,寄生率在二龄和三龄初期幼虫中最高,没有四龄或五龄寄主被寄生。当提供一龄至三龄后期寄主幼虫供其选择时,拟微点脉姬蜂更倾向于寄生三龄初期寄主幼虫(41%),选择系数为0.37。寄生时,蜂后代的所有形态特征都随着寄主年龄的增加而增加。一龄幼虫羽化出的雌性比例低于其他任何龄期。被寄生的斜纹夜蛾幼虫的食物消耗和体重增加明显减少。拟微点脉姬蜂可能有潜力显著抑制斜纹夜蛾的种群增长及其造成的危害。