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Sharanowski, B. J.

Publications and source records attributed to Sharanowski, B. J..

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Endogenization from diverse viral ancestors is common and widespread in parasitoid wasps

The Ichneumonoidea (Ichneumonidae and Braconidae) is an incredibly diverse superfamily of parasitoid wasps that includes species that produce virus-like entities in their reproductive tracts to promote successful parasitism of host insects. Research on these entities has traditionally focused upon two viral genera Bracovirus (in Braconidae) and Ichnovirus (in Ichneumonidae). These viruses are produced using genes known collectively as endogenous viral elements (EVEs) that represent historical, now heritable viral integration events in wasp genomes. Here, new genome sequence assemblies for eleven species and six publicly available genomes from the Ichneumonoidea were screened with the goal of identifying novel EVEs and characterizing the breadth of species in lineages with known EVEs. Exhaustive similarity searches combined with the identification of ancient core genes revealed sequences from both known and novel EVEs. Two species harbored novel, independently derived EVEs related to a divergent large double-stranded DNA (dsDNA) virus that manipulates behavior in other hymenopteran species. While bracovirus or ichnovirus EVEs were identified as expected in three species, the absence of ichnoviruses in several species suggests that they are independently derived and present in two younger, less widespread lineages than previously thought. Overall, this study presents a novel bioinformatic approach for EVE discovery in genomes and shows that three divergent virus families (nudiviruses, the ancestors of ichnoviruses, and LbFV-like viruses) are recurrently acquired as EVEs in parasitoid wasps. Virus acquisition in the parasitoid wasps is a common process that has occurred in many more than two lineages from a diverse range of arthropod-infecting dsDNA viruses. SignificanceParasitoid wasps are an extremely diverse group of animals that are known to harbor Endogenous Virus Elements (EVEs) that produce virions or virus-like particles of key importance in wasps parasitism success. However, the prevalence and diversity of independently acquired EVEs in parasitoid wasp lineages has remained largely uncharacterized on a widespread scale. This study represents an important first step and hints at the massive, untapped diversity of EVEs in parasitoid wasps via the identification of several novel virus co-option events from diverse groups of double-stranded DNA virus pathogens.

evolutionary biology

Phylogenomics of Ichneumonoidea (Hymenoptera) and implications for evolution of mode of parasitism and viral endogenization

Ichneumonoidea is one of the most diverse lineages of animals on the planet with more than 48,000 described species and many more undescribed. Parasitoid wasps of this superfamily are beneficial insects that attack and kill other arthropods and are important for understanding diversification and the evolution of life history strategies related to parasitoidism. Further, some lineages of parasitoids within Ichneumonoidea have acquired endogenous virus elements (EVEs) that are permanently a part of the wasps genome and benefit the wasp through host immune disruption and behavioral control. Unfortunately, understanding the evolution of viral acquisition, parasitism strategies, diversification, and host immune disruption mechanisms, is deeply limited by the lack of a robust phylogenetic framework for Ichneumonoidea. Here we design probes targeting 541 genes across 91 taxa to test phylogenetic relationships, the evolution of parasitoid strategies, and the utility of probes to capture polydnavirus genes across a diverse array of taxa. Phylogenetic relationships among Ichneumonoidea were largely well resolved with most higher-level relationships maximally supported. We noted codon use biases between the outgroups, Braconidae, and Ichneumonidae and within Pimplinae, which were largely solved through analyses of amino acids rather than nucleotide data. These biases may impact phylogenetic reconstruction and caution for outgroup selection is recommended. Ancestral state reconstructions were variable for Braconidae across analyses, but consistent for reconstruction of idiobiosis/koinobiosis in Ichneumonidae. The data suggest many transitions between parasitoid life history traits across the whole superfamily. The two subfamilies within Ichneumonidae that have polydnaviruses are supported as distantly related, providing strong evidence for two independent acquisitions of ichnoviruses. Polydnavirus capture using our designed probes was only partially successful and suggests that more targeted approaches would be needed for this strategy to be effective for surveying taxa for these viral genes. In total, these data provide a robust framework for the evolution of Ichneumonoidea.

evolutionary biology

Nationwide survey on the barriers to converting turfgrass lawns to pollinator-friendly native wildflowers.

The abundance and diversity of insect pollinators around the world is declining and habitat loss is a leading cause. Turfgrass lawns cover a vast area in North America and provide a great opportunity for habitat restoration to native wildflowers by the general public. Efforts to encourage the public to replace lawns with wildflowers could be improved by a better understanding of the thoughts and opinions of the public about lawns. We conducted a nationwide online survey to understand what barriers are most important in preventing people from converting a 6 x 6 ft portion of turfgrass lawn to native wildflowers. We also collected data on a variety of demographic factors to see if those influence survey responses. Over 3200 people took survey across the US. We found that ‘Maintenance time’ and ‘Not knowing what to do’ were the most important barriers to creating wildflower habitat. Age was the most important demographic factor impacting results with young people significantly more likely to select multiple barriers in the survey. For example, people aged 18-34 were 4.3 times more likely to indicate ‘Maintenance cost’ would prevent them from creating a wildflower plot than those age 65 or older. Those who had already created a wildflower plot, or those who were members in a native plant or pollinator organization were less likely to select barriers across the board, except for external barriers related to homeowners associations, neighbors, and local governments. This shows that these are persistent concerns even for those that are otherwise keen to create wildflower habitat. Our results suggest that outreach promoting pollinator-friendly native plant gardens should focus on clear and simple methods, small plots that will not take too much time and less likely to provoke neighbors or authority figures.View Full Text

scientific communication and education