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| Content Provider | frontiers |
|---|---|
| Author | Quarantin, Alessandra Hadeler, Birgit Kröger, Cathrin Schäfer, Wilhelm Favaron, Francesco Sella, Luca Martínez-Rocha, Ana Lilia |
| Abstract | Hydrophobins (HPs) are small secreted fungal proteins possibly involved in several processes such as formation of fungal aerial structures, attachment to hydrophobic surfaces, interaction with the environment and protection against the host defense system. The genome of the necrotrophic plant pathogen Fusarium graminearum contains five genes encoding for HPs (FgHyd1-5). Single and triple FgHyd mutants were produced and characterized. A reduced growth was observed when the ∆Fghyd2 and the three triple mutants including the deletion of FgHyd2 were grown in complete or minimal medium. Surprisingly, the growth of these mutants was similar to wild-type when grown under ionic, osmotic or oxidative stress conditions. All the mutant strains confirmed the ability to develop conidia and perithecia, suggesting that the FgHyds are not involved in normal development of asexual and sexual structures. A reduction in the ability of hyphae to penetrate through the water-air interface was observed for the single mutants ∆Fghyd2 and ∆Fghyd3 as well as for the triple mutants including the deletion of FgHyd2 and FgHyd3. Besides, ∆Fghyd3 and the triple mutant ∆Fghyd234 were also affected in the attachment to hydrophobic surface. Indeed, wheat infection experiments showed a reduction of symptomatic spikelets for ∆Fghyd2 and ∆Fghyd3 and the triple mutants only when spray inoculation was performed. This result could be ascribed to the affected ability of mutants deleted of FgHyd2 and FgHyd3 to penetrate through the water-air interface and to attach to hydrophobic surfaces such as the spike tissue. This hypothesis is strengthened by a histological analysis, performed by fluorescence microscopy, showing no defects in the morphology of infection structures produced by mutant strains. Interestingly, triple hydrophobin mutants were significantly more inhibited than wild-type by the treatment with a systemic triazole fungicide, while no defects at the cell wall level were observed. |
| ISSN | 1664302X |
| DOI | 10.3389/fmicb.2019.00751 |
| Volume Number | 10 |
| Journal | Frontiers in Microbiology |
| Language | English |
| Publisher Date | 2019-04-12 |
| Access Restriction | Open |
| Subject Keyword | Fusarium graminearium Attachment Water air interface Virulence Hydrophobin |
| Content Type | Text |
| Resource Type | Article |
| Subject | Microbiology Microbiology (medical) |
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