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Updated: Sep 25, 2025

Sexual Development and Ascospore Discharge in Fusarium graminearum
Published on: March 29, 2012
Lifestyle Transitions in Fusarioid Fungi are Frequent and Lack Clear Genomic Signatures
Rowena Hill1,2, Richard J A Buggs1,2, Dang Toan Vu3
1Comparative Fungal Biology, Royal Botanic Gardens Kew, Jodrell Laboratory, Richmond, United Kingdom.
Abstract:
The fungal genus Fusarium (Ascomycota) includes well-known plant pathogens that are implicated in diseases worldwide, and many of which have been genome sequenced. The genus also encompasses other diverse lifestyles, including species found ubiquitously as asymptomatic-plant inhabitants (endophytes). Here, we produced structurally annotated genome assemblies for five endophytic Fusarium strains, including the first whole-genome data for Fusarium chuoi. Phylogenomic reconstruction of Fusarium and closely related genera revealed multiple and frequent lifestyle transitions, the major exception being a monophyletic clade of mutualist insect symbionts. Differential codon usage bias and increased codon optimisation separated Fusarium sensu stricto from allied genera. We performed computational prediction of candidate secreted effector proteins (CSEPs) and carbohydrate-active enzymes (CAZymes)-both likely to be involved in the host-fungal interaction-and sought evidence that their frequencies could predict lifestyle. However, phylogenetic distance described gene variance better than lifestyle did. There was no significant difference in CSEP, CAZyme, or gene repertoires between phytopathogenic and endophytic strains, although we did find some evidence that gene copy number variation may be contributing to pathogenicity. Large numbers of accessory CSEPs (i.e., present in more than one taxon but not all) and a comparatively low number of strain-specific CSEPs suggested there is a limited specialisation among plant associated Fusarium species. We also found half of the core genes to be under positive selection and identified specific CSEPs and CAZymes predicted to be positively selected on certain lineages. Our results depict fusarioid fungi as prolific generalists and highlight the difficulty in predicting pathogenic potential in the group.
Insights
Fusarium fungi exhibit diverse lifestyles, transitioning frequently between plant pathogens and endophytes. Genome analysis reveals limited specialization, suggesting these fungi are generalists, making pathogenic potential difficult to predict.
Area of Science:
- Mycology
- Genomics
- Evolutionary Biology
Background:
- The fungal genus Fusarium comprises well-known plant pathogens and ubiquitous asymptomatic endophytes.
- Genome sequencing has advanced understanding of Fusarium, yet diverse lifestyles and evolutionary paths remain areas of active research.
Purpose of the Study:
- To generate genome assemblies for endophytic Fusarium strains, including Fusarium chuoi.
- To investigate lifestyle transitions and evolutionary patterns within the Fusarium genus.
- To identify genetic factors, such as candidate secreted effector proteins (CSEPs) and carbohydrate-active enzymes (CAZymes), potentially influencing host-fungal interactions and pathogenicity.
Main Methods:
- Genome assembly and annotation for five endophytic Fusarium strains.
- Phylogenomic reconstruction to infer evolutionary relationships.
- Computational prediction and comparative analysis of CSEPs and CAZymes.
- Analysis of gene copy number variation and selection pressures.
Main Results:
- Multiple and frequent lifestyle transitions were observed in Fusarium, with insect symbionts forming a distinct clade.
- No significant differences in CSEP or CAZyme repertoires were found between phytopathogenic and endophytic strains, though gene copy number variation may influence pathogenicity.
- Phylogenetic distance better explained gene variance than lifestyle; accessory CSEPs were abundant, while strain-specific CSEPs were rare, indicating limited specialization.
Conclusions:
- Fusarium fungi are prolific generalists with a high capacity for lifestyle transitions.
- Predicting pathogenic potential within Fusarium is challenging due to their generalist nature and limited specialization.
- Positive selection on core genes and specific CSEPs/CAZymes suggests ongoing adaptation within certain lineages.
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