A Beneficial Endornavirus Enhances the Fitness of Phytopathogenic Fungus Rhizotonia solani
Pang, T.; Li, B.; Sun, Q.; Deng, Z.; Cao, C.; Andika, I. B.; Sun, L.; Kang, Z.
Show abstract
Although viruses are primarily characterized as pathogenic agents, certain viruses confer advantages to their hosts. The extent to which a virus can improve host biological performance, however, remains a fascinating topic in virology. An endornavirus, Rhizoctonia solani endornavirus IM (RsEV-IM), was identified as prevalent in Rhizoctonia solani isolates obtained from potato plants. Comparative analysis with a virus-free isogenic strain demonstrated that RsEV-IM infection enhances mycelial growth, sclerotium formation, stress tolerance, and fungal virulence across multiple plant species. Inoculation tests involving numerous R. solani strains confirmed that only RsEV-IM-infected strains exhibited high pathogenicity, independent of other mycovirus infections. Additionally, its secreted protein fraction of RsEV-IM-infected fungus contained elevated levels of various proteins, including those involved in cell wall degradation. This fraction not only facilitated R. solani infection but also suppressed the growth of other fungi and bacteria. These findings position RsEV-IM as a beneficial virus that widely enhances its hosts biological fitness. From both pathological and ecological perspectives, these observations are significant, as they reveal that a mycovirus can serve as a key virulence determinant in fungal populations and potentially shape microbial community dynamics in natural environments. ImportanceFungal pathogenicity and ecological traits have long been thought to be primarily governed by endogenous genetic factors. However, this study reveals a mutualistic relationship between an endornavirus (RsEV-IM) and Rhizoctonia solani, demonstrating that viral infection enhances fungal virulence and ecological fitness. RsEV-IM stimulates fungal growth and the secretion of cell wall-degrading enzymes, resulting in a severe disease phenotype. Ecologically, RsEV-IM-infected fungi potentially gain a competitive advantage over soil microbiota. These findings present a key example of a virus acting as an essential extrachromosomal determinant of fungal pathogenicity and ecosystem interactions. Our results advance the understanding of fungal virulence mechanisms and underscore the broader significance of beneficial virus-fungus associations in agriculture and microbial ecology.
Matching journals
The top 5 journals account for 50% of the predicted probability mass.
Similar papers in this journal
- Secreted LysM proteins are required for niche competition and full virulence in Pseudomonas savastanoi during host plant infection 94%
- Regressive evolution of an effector following a host jump in the Irish Potato Famine Pathogen Lineage 93%
- Copper acquisition is essential for plant colonization and virulence in a root-infecting vascular wilt fungus 93%
Similar papers in this journal
- Comparative small RNA and degradome sequencing provide new insights into antagonistic interactions in the biocontrol fungus Clonostachys rosea 94%
- Pathogen-microbiome interactions and the virulence of an entomopathogenic fungus 94%
- Genomic footprint of a shared Type 5 prophage in 'Candidatus Liberibacter asiaticus' and 'Candidatus Liberibacter africanus', two destructive bacterial pathogens of citrus huanglongbing 93%
Similar papers in this journal
- Cell wall carbohydrate dynamics during the differentiation of infection structures by the apple scab fungus, Venturia inaequalis 95%
- The role of Dicer-dependent RNA interference in regulating cross-species communication during fungus-fungus interactions 93%
- Csp1, A Cold-Shock Protein Homolog in Xylella fastidiosa Influences Pili Formation, Stress Response, and Gene Expression 93%
Similar papers in this journal
- Spray-Induced Gene Silencing Identifies Pathogen Processes Contributing To Powdery Mildew Proliferation 94%
- Comparative analysis of RNA interference and pattern-triggered immunity induced by dsRNA reveals different efficiencies in the antiviral response to Potato virus X 94%
- Genome-wide alternative splicing profiling in the fungal plant pathogen Sclerotinia sclerotiorum during the colonization of diverse host families 93%
"Similar papers" are the closest papers from that journal in the model's embedding space. They show what the match is built on, but the ranking comes mostly from a classifier over the whole training set, not from these examples alone.