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Schapovaloff, M. E.

Publications and source records attributed to Schapovaloff, M. E..

2 recordsLinked to original sources

Exploring the virome of Gyropsylla spegazziniana, a major yerba mate pest

The yerba mate psyllid (Gyropsylla spegazziniana) poses a significant threat to yerba mate crops, causing extensive economic losses. While some ecological aspects as well as control strategies have been studied, its associated viral diversity remains unexplored. Here, by generating the first RNA high-throughput analysis (HTS) of this pest, we explored the G. spegazziniana virome, revealing novel and diverse RNA viruses. We characterized five new viral members belonging to distinct families, with evolutionary cues of beny-like viruses (Benyviridae), picorna-like viruses (Picornaviridae), and sobemo-like viruses (Solemoviridae); which were tentatively named Gyropsylla spegazziniana beny-like virus 1 (GSBlV1), Gyropsylla spegazziniana picorna-like virus 1 (GSPlV1), and Gyropsylla spegazziniana sobemo-like virus 1-3 (GSSlV1-3), respectively. Phylogenetic analysis of the bi-segmented and highly divergent sobemo-like viruses showed a distinctive evolutionary trajectory of its encoding proteins at the periphery of recently reported invertebrate Sobelivirales. The beny-like virus belonged to a cluster of insect-associated beny-like viruse; while the picorna-like virus clustered together with psyllid-associated picorna-like viruses. These results highlight the existence of a complex virome within G. spegazziniana and establish the basis for future studies investigating the ecological roles, evolutionary dynamics, and potential biocontrol applications of these viruses in the G. spegazziniana -yerba mate eco-systems.

microbiology↗

Implementation of an Artificial Rearing System and Molecular Identification of Gyropsylla spegazziniana (Lizer & Trelles) (Hemiptera: Psylloidea: Aphalaridae)

Gyropsylla spegazziniana, commonly known as the yerba mate psyllid, is one of the main pests affecting Ilex paraguariensis (yerba mate) production. To date, this pest has only been characterized morphologically, and no efficient artificial rearing system has been developed. In this study, we implemented a successful artificial rearing protocol under controlled conditions, a key step for further investigations. In addition, a fragment of the mitochondrial gene cytochrome c oxidase subunit I (COI), one of the most widely used markers for phylogenetic characterization in insects, was amplified and sequenced, enabling the first molecular identification of this pest. The obtained data confirmed the previously proposed taxonomic position of G. spegazziniana, which was based on morphological traits, as a member of the family Aphalaridae. This study lays the foundation for future research on this economically important pest species of yerba mate.

ecology↗