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1 he plasmid-encoded iron-scavenging system of Vibrio anguillarum.
2 irulence factor for the marine fish pathogen Vibrio anguillarum.
3 carried on plasmids or with the rtxA gene of Vibrio anguillarum.
4  is a virulence factor for the fish pathogen Vibrio anguillarum.
5 on of a novel chromosome cluster of genes in Vibrio anguillarum 775 that includes redundant functiona
6 te genome sequence of the O1 serotype strain Vibrio anguillarum 775(pJM1) and determined the draft ge
7 lence plasmid pJM1 enables the fish pathogen Vibrio anguillarum, a gram-negative polarly flagellated
8 ii, and Flavobacterium sp. and the pathogens Vibrio anguillarum and Edwardsiella ictaluri with coatin
9 hogenic Escherichia coli, a transposase from Vibrio anguillarum, and several ORFs with no known homol
10 ino acids, homologous to Yersinia sp. HMWP2, Vibrio anguillarum AngR, and E. coli EntF.
11  Here we report in vitro solution studies on Vibrio anguillarum Fur binding to the consensus 19-bp Es
12                       Hemolysins produced by Vibrio anguillarum have been implicated in the developme
13  iron transport-biosynthesis (ITB) operon in Vibrio anguillarum includes four genes for ferric sidero
14                                              Vibrio anguillarum is a causative agent of vibriosis in
15 ion of iron transport genes fatA and fatB in Vibrio anguillarum is mediated by a chromosome-encoded F
16                                              Vibrio anguillarum is the causative agent of vibriosis i
17       Anguibactin, a siderophore produced by Vibrio anguillarum, is synthesized via a nonribosomal pe
18 he bacterial challenge test using pathogenic Vibrio anguillarum revealed that the larval disease resi
19 xpression of iron transport genes fatDCBA in Vibrio anguillarum strain 775 is negatively regulated by
20 lysin gene clusters previously identified in Vibrio anguillarum, the vah1 cluster and the rtxACHBDE c
21 side chain was crucial for the resistance of Vibrio anguillarum to the bactericidal action of nonimmu
22 nal tonB systems in the marine fish pathogen Vibrio anguillarum, tonB1 and tonB2.
23 ed for iron acquisition by the fish pathogen Vibrio anguillarum via the anguibactin-mediated system.
24                                              Vibrio anguillarum virulence is associated with the pres
25                              In the pathogen Vibrio anguillarum we have identified two TonB systems,

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