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Chiel, E.

Publications and source records attributed to Chiel, E..

3 recordsLinked to original sources

A Vertically and Horizontally Transmitted RNA Virus Facilitates Egg Hatching of a Parasitoid Wasp

Information on the impacts of RNA viruses inhabiting insect hosts is scarce. Here, we studied the effects of a recently described RNA virus, termed AnvRV, on its host, the parasitoid wasp Anagyrus vladimiri (Hymenoptera: Encyrtidae), an important natural enemy of mealybug pests. AnvRV was found to be maternally transmitted with very high fidelity but not paternally. Additionally, AnvRV was horizontally transferred at an efficiency of 23% from infected to uninfected wasp larvae that develop together inside the same mealybug host (superparasitism). To test the effects of AnvRV on A. vladimiri, the virus horizontal transmission was utilized to establish AnvRV-infected (RV+) and uninfected (RV-) isogenic wasp lines, a method rarely applied and novel to RNA virus-parasitoid systems. Longevity, developmental time, sex ratio, and fecundity of RV+ and RV- A. vladimiri were very similar. Nonetheless, the egg hatching rate of RV+ wasps was markedly and significantly higher than that of RV- wasps, especially in hosts that were not superparasitized. Additionally, less encapsulation marks (the main form of mealybug immunity) were found around RV+ eggs inside parasitized mealybug hosts. Taken together, the data suggest that AnvRV is affecting the mealybugs physiology in a way that improves first stages of wasps development. These findings present a rare example of interaction between an RNA virus and a parasitoid and may provide a tool for the improvement of biological control efforts.

microbiology↗

Sodalis praecaptivus subsp. spalangiae subsp. nov., a nascent bacterial endosymbiont isolated from the parasitoid wasp, Spalangia cameroni

An endosymbiotic bacterium of the genus Sodalis, designated as strain HZT, was cultured from the parasitoid wasp Spalangia cameroni, that develops on pupae of various host flies. The bacterium was detected in S. cameroni that developed on house flies, Musca domestica, in a poultry facility in Hazon, northern Israel. Following culture, this bacterium displayed no surface motility on LB agar, is rod-shaped and irregular in size, approximating 10-30 nm in diameter and 5-20 m in length. Phylogenetic analyses revealed that strain HZT is closely related to Sodalis praecaptivus strain HST, a free-living species of the genus Sodalis that includes many insect endosymbionts. Although these bacteria maintain >98% sequence identity in shared genes, genomic characterization revealed that strain HZT has undergone substantial reductive evolution, such that it lacks many gene functions that are maintained in S. praecaptivus strain HST. Based on the results of phylogenetic, genomic and chemotaxonomic analyses, we propose that this endosymbiont should be classified in a new subspecies as Sodalis praecaptivus subsp. spalangiae subsp. nov. The type strain for this new subspecies is HZT (=ATCC TSD-398T=NCIMB 15482T). The subspecies Sodalis praecaptivus subsp. praecaptivus strain HST is created automatically with the type strain ATCC BAA-2554T (=DSMZ 27494T).

microbiology↗

Genomic characterization of viruses associated with the parasitoid Anagyrus vladimiri (Hymenoptera: Encyrtidae)

The knowledge on symbiotic microorganisms of insects has increased in recent years, yet relatively little data is available on non-pathogenic viruses. Here we studied the virome of the parasitoid wasp Anagyrus vladimiri (Hymenoptera: Encyrtidae), a biocontrol agent of mealybugs. By high-throughput sequencing of viral nucleic acids, we revealed three novel viruses, belonging to the families Reoviridae (provisionally termed AnvRV [Anagyrus vladimiri reovirus]), Iflaviridae (AnvIFV) and Dicistroviridae (AnvDV). Phylogenetic analysis further classified the AnvRV in the genus Idnoreovirus, and the AnvDV in the genus Triatovirus. The genome of AnvRV is comprised of 10 distinct genomic segments ranging in length from 1.5 to 4.2 Kbp, but only two out of the 10 open reading frames (ORFs) have a known function. AnvIFV and AnvDV each have one polypeptide ORF, which is typical to iflaviruses but very un-common among dicistroviruses. AnvRV was found to be fixed in a mass-reared population of A. vladimiri, whereas its prevalence in field-collected wasps was ~15%. Similarly, the prevalence of AnvIFV and AnvDV were much higher in the mass rearing population than in the field population. Transmission electron micrographs of females ovaries revealed clusters and viroplasms of Reovirus-like particles in follicle cells. AnvRV was not detected in the mealybugs, suggesting that this virus is truly associated with the wasps. The possible effects of these viruses on A. vladimiris biology, and on biocontrol agents in general are discussed. Our findings identify RNA viruses as potential players involved in the multitrophic system of mealybugs, their parasitoids and other members of the holobiont. ImportanceDifferent biological control approaches use industrially mass-reared natural enemy insects to reduce damage of arthropod pests. Such mass-reared cultures may be positively and/or negatively affected by various microorganisms, including viruses. Yet, current knowledge on virus diversity, especially in arthropods, is limited. Here, we provide the first virome characterization of a member of the wasps family Encyrtidae - the member being the parasitoid Anagyrus vladimiri - a commercially important natural enemy of mealybug pests. We describe the genome of three previously unknown RNA viruses, co-inhabiting this parasitoid, and elaborate on the prevalence of those viruses in individual wasps of both mass-reared and environmental origins. Microscopy images suggest that at least one of the viruses is transmitted maternally via the ovaries. We discuss the genomic structure of the viruses and the possible relationship between those viruses and the A. vladimiri host, with implications on improvement of biocontrol of mealybug pests.

microbiology↗