Michigan State University, Department of Entomology, East Lansing, MI 48824, United States.
The Pennsylvania State University, Department of Entomology, University Park, PA 16803, United States.
J Invertebr Pathol. 2017 Nov;150:121-129. doi: 10.1016/j.jip.2017.10.002. Epub 2017 Oct 6.
Production costs and limited regional availability are two key factors limiting the widespread adoption of entomopathogenic nematodes (Rhabditida: Heterorhabditidae and Steinernematidae) in biological control programs. We explore the potential of using black soldier fly larvae Hermetia illucens (L.) (Diptera: Stratiomyidae) as an alternative in vivo rearing host to the greater wax moth, Galleria mellonella (L.) (Lepidoptera: Pyralidae). We injured black soldier fly larvae to test the hypothesis that the tough cuticle was preventing the penetration of founding infective juveniles (IJs) into the host and egress of offspring from the cadaver. Injuring the black soldier fly larvae increased the infection rate, the number of nematodes entering a host, and the number of IJs harvested from a cadaver. Black soldier fly larvae, however, provided at most 10-fold less IJs compared to G. mellonella. In olfactometer assays, we assessed nematode behavioral responses to wounded black soldier fly larvae. Steinernema carpocapsae did not move towards the insects. Heterorhabditis bacteriophora was attracted to black soldier fly larvae but not G. mellonella. Heterorhabditis bacteriophora did not show a preference for injured black soldier fly larvae over non-injured larvae. Thus, increased colonization on wounded black soldier fly larvae was likely due to additional entry points rather than an increase in their apparency in the soil solution.
生产成本和有限的区域可用性是限制昆虫病原线虫(Rhabditida:异小杆科和斯氏线虫科)在生物防治计划中广泛应用的两个关键因素。我们探讨了利用黑蝇幼虫 Hermetia illucens(双翅目:Stratiomyidae)作为比家蚕更大的蜡螟 Galleria mellonella(鳞翅目:Pyralidae)的替代活体饲养宿主的潜力。我们对黑蝇幼虫进行了损伤,以检验坚硬的外骨骼阻止了初始感染性幼虫(IJs)穿透宿主和后代从尸体中逸出的假设。损伤黑蝇幼虫会增加感染率、进入宿主的线虫数量以及从尸体中收获的 IJs 数量。然而,与 G. mellonella 相比,黑蝇幼虫最多只能提供 10 倍的 IJs。在嗅觉计测定中,我们评估了线虫对受伤黑蝇幼虫的行为反应。斯氏线虫 Steinernema carpocapsae 不会向昆虫移动。嗜线虫杆菌 Heterorhabditis bacteriophora 被黑蝇幼虫吸引,但对 G. mellonella 没有吸引力。嗜线虫杆菌 Heterorhabditis bacteriophora 对受伤的黑蝇幼虫没有比对未受伤的幼虫更偏好。因此,在受伤的黑蝇幼虫上的定植增加可能是由于增加了进入点,而不是增加了它们在土壤溶液中的可见度。