The glassy-winged sharpshooter (Homalodisca vitripennis Germar 1821) has been identified as the predominant vector of Xylella fastidiosa (X. fastidiosa), the causal agent of Pierce’s disease of grapevine (PD) in North America1. Insect population management has quickly become the focus of research to combat this devastating problem to the viticulture industry in California and across the southern United States. A positive-sense, single-stranded RNA virus belonging to the family Dicistroviridae, Homalodisca coagulata virus-01 (HoCV-01) has been identified in wild H. vitripennis populations and shown to increase mortality in those populations2-4, while lowering the insect’s resistance to insecticides.
Development of methods to effectively rear infected H. vitripennis to adulthood in a laboratory setting have been difficult because H. vitripennis have different stage-specific nutritional needs that require a variety of host plants5-8. Specific facilities are required to rear live H. vitripennis in the United States; therefore, cell culture is more economical and a viable alternative, as well as increasingly vital for HoCV-01 detection and replication2,9. While basic methods for establishing cell cultures of H. vitripennis are described, these methods have not yet been utilized for commercial production of biological control agents, such as viruses2.
The overall goal of the following procedures is to produce a high concentration of HoCV-01 suitable for utilization as a biological control agent. Viral replication requires a living cell, which is why successfully cultivating and optimizing H. vitripennis cultures is vital to the progress of producing profitable levels of virus.