Genomic and Metabolomic Insights into the Modes-of-Action of Bacterial Strains to Control the Grapevine wood Pathogen, Fomitiporia mediterranea
Ouiza Mesguida
1, 2
,
Stéphane Compant
3
,
Adrian Wallner
3
,
Livio Antonielli
3
,
Ryszard Lobinski
1, 4
,
Simon Godin
1
,
Mickaël Le Bechec
1
,
Maxence TERRASSE
1
,
Ahmed TAIBI
2
,
Assia Dreux-Zigha
2
,
Jean-Yves Berthon
2
,
Rémy Guyoneaud
1
,
Patrice Rey
1
,
Eléonore Attard
1
1
Universite de Pau et des Pays de l’Adour, CNRS, IPREM, Pau, France
|
2
GreenCell: Biopôle Clermont-Limagne, Saint Beauzire 63360, France
|
Publication type: Journal Article
Publication date: 2025-04-01
scimago Q1
wos Q1
SJR: 1.620
CiteScore: 12.2
Impact factor: 6.9
ISSN: 09445013, 16180623
Abstract
Grapevine trunk diseases (GTDs), particularly Esca, represent a major challenge for viticulture worldwide, leading to substantial economic losses. With no effective control treatments available, developing new methods such as biocontrol is crucial for managing GTDs. Our aim was to select biocontrol bacteria effective against the white-rot fungal pathogen Fomitiporia mediterranea (Fmed) and to investigate their mechanisms of action. A stepwise screening of 58 bacterial strains was conducted in vitro to assess their ability to inhibit Fmed growth through volatile and diffusible metabolites production. The screening was also done on wood sawdust from seven different grapevine cultivars. Out of 58 tested strains, 49 inhibited Fmed growth by over 50 % through their volatile organic compounds, only eight achieving this through their agar-diffusible metabolites. Pseudomonas lactis SV9, Pseudomonas paracarnis S45, and Paenibacillus polymyxa SV13 exhibited a strong efficacy in inhibiting Fmed on wood sawdust in a cultivar-dependent manner. We selected these strains for whole genome analysis and metabolomic profiling via LC-MS/MS for diffusible compounds and SPME GC-MS for volatile compounds. P. polymyxa SV13 inhibited Fmed primarily through diffusible metabolites, producing mainly fusaricidin-type compounds. Conversely, Pseudomonas strains acted mainly via their volatile metabolites, producing mainly the antifungal compound dimethyl disulfide. Genome analysis of the three bacterial strains revealed gene clusters responsible for regulating both direct and indirect mechanisms in biocontrol agents (BCAs). Our findings highlight the importance of comprehensive studies that combine in vitro experiments mimicking field conditions, with detailed investigations into modes of action to improve BCAs efficacy.
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Mesguida O. et al. Genomic and Metabolomic Insights into the Modes-of-Action of Bacterial Strains to Control the Grapevine wood Pathogen, Fomitiporia mediterranea // Microbiological Research. 2025. Vol. 293. p. 128085.
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Mesguida O., Compant S., Wallner A., Antonielli L., Lobinski R., Godin S., Le Bechec M., TERRASSE M., TAIBI A., Dreux-Zigha A., Berthon J., Guyoneaud R., Rey P., Attard E. Genomic and Metabolomic Insights into the Modes-of-Action of Bacterial Strains to Control the Grapevine wood Pathogen, Fomitiporia mediterranea // Microbiological Research. 2025. Vol. 293. p. 128085.
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TY - JOUR
DO - 10.1016/j.micres.2025.128085
UR - https://linkinghub.elsevier.com/retrieve/pii/S0944501325000412
TI - Genomic and Metabolomic Insights into the Modes-of-Action of Bacterial Strains to Control the Grapevine wood Pathogen, Fomitiporia mediterranea
T2 - Microbiological Research
AU - Mesguida, Ouiza
AU - Compant, Stéphane
AU - Wallner, Adrian
AU - Antonielli, Livio
AU - Lobinski, Ryszard
AU - Godin, Simon
AU - Le Bechec, Mickaël
AU - TERRASSE, Maxence
AU - TAIBI, Ahmed
AU - Dreux-Zigha, Assia
AU - Berthon, Jean-Yves
AU - Guyoneaud, Rémy
AU - Rey, Patrice
AU - Attard, Eléonore
PY - 2025
DA - 2025/04/01
PB - Elsevier
SP - 128085
VL - 293
SN - 0944-5013
SN - 1618-0623
ER -
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@article{2025_Mesguida,
author = {Ouiza Mesguida and Stéphane Compant and Adrian Wallner and Livio Antonielli and Ryszard Lobinski and Simon Godin and Mickaël Le Bechec and Maxence TERRASSE and Ahmed TAIBI and Assia Dreux-Zigha and Jean-Yves Berthon and Rémy Guyoneaud and Patrice Rey and Eléonore Attard},
title = {Genomic and Metabolomic Insights into the Modes-of-Action of Bacterial Strains to Control the Grapevine wood Pathogen, Fomitiporia mediterranea},
journal = {Microbiological Research},
year = {2025},
volume = {293},
publisher = {Elsevier},
month = {apr},
url = {https://linkinghub.elsevier.com/retrieve/pii/S0944501325000412},
pages = {128085},
doi = {10.1016/j.micres.2025.128085}
}