A newly established reverse genetic system for a circular RNA virus reveals new requirements for infection and its biocontrol potential.
basic_science · Level V
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- Record sourced from PubMed, PMID 42685207.
- Also identified by DOI 10.1126/sciadv.aed1511.
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Abstract
Ambiviruses are fungal-infecting circular RNA viruses that uniquely combine viroid-like and viral features, yet the function of their conserved ORF-B protein and their effects on hosts remain unknown, hindered by the lack of a reverse genetics system. Here, we constructed the first infectious cDNA clone of an ambivirus, Fusarium graminearum ambivirus 1 (FgAV1), using a head-to-tail dimer placed downstream of a fungal promoter. FgAV1 was horizontally transmitted via hyphal anastomosis to virus-free <i>Fusarium graminearum</i> strains. Notably, a reverse-oriented dimer construct was also infectious and transmissible. Targeted mutagenesis revealed that both ORF-A- and ORF-B-encoded proteins and the presence of embedded ribozymes are indispensable for ambivirus replication. Our results further demonstrate that FgAV1 infection triggers a fungal RNAi response, extending the antiviral role of host sRNAs to circular RNA viruses. Furthermore, FgAV1 infection suppressed fungal growth and significantly reduced the virulence of <i>F. graminearum</i> on wheat. These findings provide novel insights into ambivirus replication and their potential in fungal pathogen biocontrol.
Medical subject headings
- RNA Viruses
- Reverse Genetics
- Fusarium
- RNA, Viral
- RNA, Circular
- Fungal Viruses