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Related mobile pathogenicity chromosomes in Fusarium oxysporum determine host range on cucurbits
Jiming Li1, Like Fokkens1, Peter van Dam2
1Molecular Plant Pathology, University of Amsterdam, Amsterdam, Netherlands.
Abstract:
Fusarium oxysporum f. sp. radicis-cucumerinum (Forc) causes severe root rot and wilt in several cucurbit species, including cucumber, melon, and watermelon. Previously, a pathogenicity chromosome, chrRC , was identified in Forc. Strains that were previously nonpathogenic could infect multiple cucurbit species after obtaining this chromosome via horizontal chromosome transfer (HCT). In contrast, F. oxysporum f. sp. melonis (Fom) can only cause disease on melon plants, even though Fom contains contigs that are largely syntenic with chrRC . The aim of this study was to identify the genetic basis underlying the difference in host range between Fom and Forc. First, colonization of different cucurbit species between Forc and Fom strains showed that although Fom did not reach the upper part of cucumber or watermelon plants, it did enter the root xylem. Second, to select candidate genomic regions associated with differences in host range, high-quality genome assemblies of Fom001, Fom005, and Forc016 were compared. One of the Fom contigs that is largely syntenic and highly similar in sequence to chrRC contains the effector gene SIX6. After HCT of the SIX6-containing chromosome from Fom strains to a nonpathogenic strain, the recipient (HCT) strains caused disease on melon plants, but not on cucumber or watermelon plants. These results provide strong evidence that the differences in host range between Fom and Forc are caused by differences between transferred chromosomes of Fom and chrRC , thus narrowing down the search for genes allowing or preventing infection of cucumber and watermelon to genes located on these chromosomes.
Insights
Fusarium oxysporum f. sp. melonis (Fom) host range is limited by its SIX6 effector gene on a transferred chromosome. Differences in transferred chromosomes between Fom and F. oxysporum f. sp. radicis-cucumerinum (Forc) explain varying cucurbit pathogenicity.
Area of Science:
- Plant Pathology
- Fungal Genetics
- Genomics
Background:
- Fusarium oxysporum f. sp. radicis-cucumerinum (Forc) causes cucurbit root rot, while F. oxysporum f. sp. melonis (Fom) is melon-specific.
- Horizontal chromosome transfer (HCT) of Forc's pathogenicity chromosome (chrRC) confers broad cucurbit pathogenicity.
- Fom possesses chrRC-like contigs but exhibits a narrow host range, suggesting genetic differences in pathogenicity determinants.
Purpose of the Study:
- To investigate the genetic basis for the differential host range between Fom and Forc.
- To identify specific genes or chromosomal regions responsible for host specificity in Fusarium pathogens.
Main Methods:
- Comparative genomics of Fom and Forc strains.
- In planta pathogenicity assays across different cucurbit species (cucumber, melon, watermelon).
- Horizontal chromosome transfer (HCT) experiments to assess the role of specific Fom chromosomes.
Main Results:
- Fom can colonize the xylem of cucumber and watermelon roots but does not cause systemic disease.
- A Fom chromosome, syntenic to chrRC, contains the effector gene SIX6.
- HCT of the SIX6-containing Fom chromosome into a nonpathogenic strain restored pathogenicity only on melon, not on cucumber or watermelon.
Conclusions:
- Differences in the SIX6-containing transferred chromosomes between Fom and Forc are the primary drivers of their distinct host ranges.
- The SIX6 effector gene plays a crucial role in Fom's melon-specific pathogenicity.
- This study narrows down the genetic factors governing cucurbit infection by Fusarium pathogens to specific genes on these transferred chromosomes.
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Fungal Phylum Microsporidia
Fungal Group Zygomycota

