Shapiro-Ilan David I, Gaugler Randy, Tedders W Louis, Brown Ian, Lewis Edwin E
J Nematol. 2002 Dec;34(4):343-50.
Entomopathogenic nematodes are potent biopesticides that can be mass-produced by in vitro or in vivo methods. For in vivo production, consistently high infection rates are critical to efficiency of the process. Our objective was to optimize in vivo inoculation of Steinernema carpocapsae and Heterorhabditis bacteriophora in Galleria mellonella and Tenebrio molitor by determining effects of inoculation method, nematode concentration, and host density. We found immersing hosts in a nematode suspension to be approximately four times more efficient in time than pipeting inoculum onto the hosts. The number of hosts exhibiting signs of nematode infection increased with nematode concentration and decreased with host density per unit area. This is the first report indicating an effect of host density on inoculation efficiency. We did not detect an effect of nematode inoculum concentration on nematode yield per host or per gram of host. Yield was affected by host density in one of the four nematode-host combinations (S. carpocapsae and T. molitor). We conclude that optimization of inoculation parameters is a necessary component of developing an in vivo production system for entomopathogenic nematodes.
昆虫病原线虫是一种高效的生物杀虫剂,可以通过体外或体内方法大量生产。对于体内生产而言,持续保持高感染率对该生产过程的效率至关重要。我们的目标是通过确定接种方法、线虫浓度和宿主密度的影响,优化小蜡螟和黄粉虫体内的斯氏线虫和嗜菌异小杆线虫接种。我们发现,将宿主浸入线虫悬浮液中的接种效率在时间上比将接种物滴加到宿主上高出约四倍。出现线虫感染迹象的宿主数量随线虫浓度增加而增加,随单位面积内宿主密度降低而减少。这是第一份表明宿主密度对接种效率有影响的报告。我们未检测到线虫接种物浓度对每个宿主或每克宿主中线虫产量的影响。在四种线虫 - 宿主组合之一(斯氏线虫和黄粉虫)中,产量受宿主密度影响。我们得出结论,优化接种参数是开发昆虫病原线虫体内生产系统的必要组成部分。