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May 10, 2026Insects0 citationsOpen Access

Genome Characterization of a Novel Hepe-like Virus and a Rhabdovirus Identified in Macrosteles fascifrons

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DGDanfeng GeZNZhi NiYWYì Wáng

Key Points

  • To characterize novel RNA viruses associated with the aster leafhopper, expanding knowledge of viral diversity.
  • Deep transcriptome sequencing of Macrosteles fascifrons virome
  • Use of overlapping RT-PCR and rapid amplification of cDNA ends for genome sequencing
  • Phylogenetic analysis based on polyprotein sequences
  • Identified two new viruses: MfHV1 (6688 nucleotides, Hepeviridae) and MfRV1 (14,984 nucleotides, Rhabdoviridae)
  • MfHV1 shares a maximum of 36.07% amino acid identity with known hepe-like viruses
  • MfRV1 shows a maximum of 47.7% identity with known deltarhabdoviruses, suggesting they are putative novel members of their families.

Abstract

Macrosteles fascifrons, a representative aster leafhopper frequently detected in rice-growing environments, is an economically significant insect that inhabits rice fields and plays a role in the ecology of crop pests and disease transmission. To expand the understanding of viral diversity associated with the aster leafhopper, we analyzed its virome using deep transcriptome sequencing. In addition to several previously reported viruses, we identified two previously unreported RNA viruses, tentatively designated as Macrosteles fascifrons hepe-like virus 1 (MfHV1) and Macrosteles fascifrons rhabdovirus 1 (MfRV1). The complete genome sequences of both genomes were obtained using overlapping RT-PCR and rapid amplification of cDNA ends. Excluding the poly(A) tail, the genome of MfHV1 is 6688 nucleotides in length and exhibits a genomic organization characteristic of the family Hepeviridae, comprising three major open reading frames (ORFs) that encode a putative nonstructural polyprotein, a capsid protein, and a small accessory protein. The ORF encoding the capsid protein partially overlaps with the ORF encoding the small accessory protein, a genomic feature commonly observed in hepe-like viruses. The genome of MfRV1 is 14,984 nucleotides in length and displays the canonical genomic organization of the family Rhabdoviridae. An additional accessory ORF was identified between the putative M and G genes. Phylogenetic analysis based on polyprotein sequences placed MfHV1 within the Hepeviridae, most closely related to insect-associated hepe-like viruses, whereas MfRV1 clustered within the subfamily Deltarhabdovirinae. According to ICTV guidelines, virus classification is based on a combination of sequence divergence, phylogenetic relationships, and genome organization. MfHV1 and MfRV1 share low amino acid sequence identities with known viruses (maximum 36.07% for the MfHV1 polyprotein and 47.7% for the MfRV1 RNA-dependent RNA polymerase). Based on sequence divergence, genome organization, and phylogenetic placement, these viruses are classified as putative novel members of their respective families. This study expands the diversity of virus-associated sequences detected in M. fascifrons and provides additional genomic resources for understanding insect-associated RNA viruses.

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Cite This Study

Ge et al. (2026) studied this question.

synapsesocial.com/papers/6a0020aec8f74e3340f9b747https://doi.org/10.3390/insects17050479
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