The influence of the polyamine synthesis pathways on Pseudomonas syringae virulence and plant interaction

Symplectic ID
2125592
Source
Ora (Hyrax)
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Saturday, 15 August, 2026 - 23:39
DOI
10.1099/mic.0.001569
Publication Date
Tuesday, 10 June, 2025
Keywords
pseudomonas syringae
polyamines
putrescine
spermidine
Authors
Solmi, L
Rossi, FR
Romero, FM
Bach-Pages, M
Preston, G
Garriz, A
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Abstract
This study investigates the role of polyamine biosynthesis in the pathogenesis of the bacterial phytopathogen Pseudomonas syringae pv. tomato. Through a comprehensive phenotypic analysis of mutant strains affected in the synthesis of putrescine and spermidine, we reveal a complex interplay between this metabolic pathway and bacterial virulence. Disruption of putrescine synthesis impairs a variety of virulence traits such as motility, biofilm formation, siderophore production, prevention of plant stomatal closure, and the functionality of the type III secretion system. This is reversed by reintroducing the deleted genes, but not by the supplementation of culture media with putrescine or apoplastic washing fluids. Similarly, suppression of spermidine biosynthesis results in a comparable phenotype. However, in this case, the wild-type phenotype is restored by adding spermidine, apoplastic washing fluids, or expressing the spermidine synthase gene. We conclude that both putrescine and spermidine are important for bacterial virulence, and that plant-derived spermidine can partially compensate for bacterial needs. Accordingly, whereas putrescine deficiency leads to a hypovirulent phenotype, spermidine synthesis perturbation does not affect plant colonization. These findings emphasize the critical role of polyamine metabolism in the plant invasion process by bacterial pathogens.
Publisher
Microbiology Society
ISSN
1350-0872
Journal Title
Microbiology
eISSN
1465-2080
Volume
171
Issue
6
ID at Source
uuid_6c5a3d49-c3dc-4398-90f8-298a6ab7480d
Publication Status
Published
Open access
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