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Bodnev, S. A.

Publications and source records attributed to Bodnev, S. A..

2 recordsLinked to original sources

Identification and full-genome assembly of novel Colorado potato beetle iflavirus and solinvi-like virus with SISPA Sequencing

The Colorado potato beetle is one of the most devastating potato pests widespread in the world. However, its viral pathogens remain highly unexplored. Here using SISPA high-throughput sequencing of Colorado potato beetle (CPB) samples derived from prepupal larvae that died from an unknown infection, we have identified two previously unknown viruses and assembled their full-length genomic sequences. The subsequent genetic and phylogenetic analysis of the obtained sequences demonstrated that the isolated viruses, named Leptinotarsa iflavirus 1 and Leptinotarsa solinvi-like virus 1, are the novel representatives of Iflaviridae and Solinviviridae viral families, respectively. To the best of our knowledge, these are the first sequencing-confirmed insect viruses derived directly from CPB samples. And we also propose that Leptinotarsa iflavirus 1 may be associated with lethal disease in CPB.

microbiology↗

A new microbiological weapon against lepidopteran pests

Nowadays researchers provide more and more evidence that it is necessary to develop an ecologically friendly approach to pest control. This is reflected in a sharp increase in the value of the biological insecticide market in recent decades. In our study, we found a virus strain belonging to the genus Cypovirus (Reoviridae); the strain was isolated from Dendrolimus sibiricus: that possesses attractive features as a candidate for mass production of biological agents for lepidopteran-pest control. We describe morphological, molecular, and ecological features of the new Cypovirus strain. This strain was found to be highly virulent to D. sibiricus (half-lethal dose is 68 occlusion bodies per second-instar larva) and to have a relatively wide host range (infects representatives of five families of Lepidoptera: Erebidae, Sphingidae, Pieridae, Noctuidae, and Lasiocampidae). The virus strain showed a strong interaction with a nontoxic adjuvant (optical brightener), which decreased the lethal dose for both main and alternative hosts, decreased lethal time, and may expand the host range. Moreover, we demonstrated that the insecticidal features were preserved after passaging through the most economically suitable host. By providing strong arguments for possible usefulness of this strain in pest control, we call on virologists, pest control specialists and molecular biologists to give more attention to the Cypovirus genus, which may lead to new insights in the field of pest control research and may provide significant advantages to compare with baculoviruses and Bacillus thuringiensis products which are nowadays main source of bioinsecticides. Significance statementWithin this article we are describing unique set of features of newly discovered cypovirus strain which possess by significant premises for modern biological insecticides requirements: high potency, universality, true regulating effect, flexible production (possibility to choose host species for production), interaction with enhancing adjuvants, ecologically friendly. Basing on genome alignment we suggest that increasing of host range of new strain is the sequence of evolutionary event which was occurred after coinfection of different CPV species within same host. This finding open new perspective to consider CPVs as perspective agent of biocontrol products.

microbiology↗