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Ferric uptake regulator (fur) affects the pathogenicity of Aeromonas veronii TH0426 by regulating flagellar assembly and biofilm formation.

Authors :
Gong, Jin-shuo
Wang, Ying-da
Jiang, Yan-long
Zhang, Di
Cai, Ya-nan
Shan, Xiao-feng
Gong, He
Dong, Hao
Source :
Aquaculture. Feb2024:Part 2, Vol. 580, pN.PAG-N.PAG. 1p.
Publication Year :
2024

Abstract

Aeromonas veronii has serious implications for food safety and the aquaculture industry. The iron uptake system can effectively regulate the life activities and pathogenicity of microorganisms, and Fur is one of the key proteins. In this experiment, we constructed the Δ fur mutant strain of A. veronii TH0426 using the pRE112 suicide plasmid and the C- fur complementary strain using the pBBR1-MCS generalized host expression plasmid to research the effects of fur gene on the biological function and mechanisms of virulence regulation of TH0426. It was found that when the fur gene was deleted, the polar flagella of TH0426 was disrupted and the biofilm formation ability was significantly reduced, with consequent changes in motility, flagellation-related gene expression, drug resistance, and tolerance. Transcriptome analysis of TH0426 wild-type and Δ fur mutant showed that fur gene could directly or indirectly regulate bacterial flagella assembly, antibiotic resistance, growth and metabolism. In the pathogenic test, compared with the TH0426 wild-type, Δ fur significantly reduced the cytotoxicity to EPC cells at 30 min, 1 h and 2 h, reduced the adhesion and invasion ability to EPC cells by 2.38-fold (P < 0.001), increased LD 50 of zebrafish by 58.33-fold (P < 0.001) and decreased bacterial load at 12 h, 24 h, and 48 h. Meanwhile, the result of C- fur was higher than that of Δ fur and lower than that of the TH0426 wild-type in all experiments. In summary, the fur gene is essential for flagellar assembly and biofilm formation and is able to indirectly affect some of the biological properties and animal pathogenicity of TH0426. This research helps to explain the function of the fur gene of the iron uptake system and its role in the pathogenesis of animal. • fur gene can directly regulate the assembly of polar flagella in A. veronii TH0426. • fur gene could directly regulate the biofilm formation of A. veronii. • Deletion of fur gene could significantly reduce the pathogenicity of A. veronii to crucian carp and zebrafish. • Deletion of fur gene can affect multiple metabolic pathways in A. veronii. [ABSTRACT FROM AUTHOR]

Details

Language :
English
ISSN :
00448486
Volume :
580
Database :
Academic Search Index
Journal :
Aquaculture
Publication Type :
Academic Journal
Accession number :
173852755
Full Text :
https://doi.org/10.1016/j.aquaculture.2023.740361