Details of Pathogen Ortholog : Vibrio fluvialis

Vfortho ids ' VFP001896' ' VFP004272' ' VFP004291' ' VFP004292' ' VFP004623' ' VFP004629' ' VFP004630' ' VFP009311' ' VFP016373' ' VFP016444' ' VFP016457' ' VFP016641' ' VFP016667' ' VFP020191' ' VFP020192' ' VFP020195' ' VFP023141' ' VFP023142' ' VFP023192' ' VFP023196' ' VFP023197' ' VFP024732' ' VFP024733' ' VFP024734' ' VFP024769' ' VFP024770' ' VFP024792' ' VFP024810' ' VFP024840' ' VFP024841' ' VFP024843' ' VFP024863' ' VFP024864' ' VFP036850' ' VFP036851' ' VFP036856' ' VFP036927' ' VFP036928' ' VFP036933' ' VFP036938' ' VFP036940' ' VFP036941' ' VFP036954' ' VFP036956' ' VFP036957' ' VFP037394' ' VFP037395' ' VFP037435' ' VFP037436' ' VFP037484' ' VFP037485' ' VFP037528' ' VFP037573' ' VFP037574' ' VFP037614' ' VFP037654' ' VFP037655' ' VFP037688' ' VFP037739' ' VFP037781' ' VFP037826' ' VFP037866' ' VFP037867' ' VFP037868' ' VFP038127' ' VFP038169' ' VFP038171' ' VFP041246' ' VFP041590' ' VFP041591' ' VFP041592' ' VFP042019' ' VFP048278' ' VFP048279' ' VFP048280' ' VFP048364' ' VFP051259' ' VFP051260' ' VFP053089' ' VFP053090' ' VFP054027' ' VFP054028' ' VFP054032' ' VFP054319' ' VFP054320' ' VFP054341' ' VFP054342' ' VFP055350' ' VFP055352' ' VFP056238' ' VFP056728' ' VFP056748' ' VFP056750' ' VFP056752' ' VFP056844' ' VFP056845' ' VFP056846' ' VFP056949' ' VFP056950' ' VFP057094' ' VFP057191' ' VFP057192' ' VFP057199' ' VFP057425' ' VFP057571' ' VFP057574' ' VFP057575' ' VFP057672' ' VFP057681' ' VFP057786' ' VFP057879' ' VFP058837' ' VFP059475' ' VFP062626' ' VFP062630' ' VFP064105' ' VFP064137' ' VFP070864' ' VFP070865' ' VFP070866'
VFDB ID ' VFG000121(gb|NP_249453)' ' VFG000143(gb|NP_253699)' ' VFG000146(gb|NP_252413)' ' VFG000462(gb|NP_460110)' ' VFG001301(gb|NP_644943)' ' VFG001303(gb|NP_644945)' ' VFG001862(gb|YP_096397)' ' VFG002048(gb|YP_404601)' ' VFG002050(gb|YP_404603)' ' VFG002078(gb|NP_232511)' ' VFG002079(gb|NP_232512)' ' VFG002081(gb|NP_232514)' ' VFG002083(gb|NP_232516)' ' VFG002088(gb|NP_232521)' ' VFG002092(gb|NP_232508)' ' VFG007035(gb|NP_799736)' ' VFG007142(gb|NP_232419)' ' VFG007292(gb|NP_231819)' ' VFG007322(gb|NP_231825)' ' VFG007358(gb|NP_231831)' ' VFG007364(gb|NP_231832)' ' VFG007370(gb|NP_231833)' ' VFG007406(gb|NP_231753)' ' VFG007424(gb|NP_231756)' ' VFG007454(gb|NP_231761)' ' VFG007478(gb|NP_231765)' ' VFG007490(gb|NP_231767)' ' VFG007502(gb|NP_231769)' ' VFG007556(gb|NP_231695)' ' VFG007598(gb|NP_230539)' ' VFG007616(gb|NP_232229)' ' VFG013276(gb|NP_438430)' ' VFG013286(gb|NP_438515)' ' VFG013315(gb|NP_438813)' ' VFG018238(gb|NP_232914)' ' VFG018241(gb|NP_230208)' ' VFG037386(gb|YP_001847242)' ' VFG038280(gb|YP_855104)' ' VFG038439(gb|YP_858310)' ' VFG038463(gb|YP_858121)' ' VFG038467(gb|YP_858122)' ' VFG038722(gb|YP_855928)' ' VFG038840(gb|YP_008043465)' ' VFG038856(gb|YP_001140277)' ' VFG038857(gb|YP_001140278)' ' VFG038859(gb|YP_001140280)' ' VFG038861(gb|YP_001140282)' ' VFG038862(gb|YP_001140283)' ' VFG038867(gb|YP_001140288)' ' VFG038874(gb|YP_001140295)' ' VFG038877(gb|YP_001140298)' ' VFG038878(gb|YP_001140299)' ' VFG038884(gb|YP_001140308)' ' VFG038889(gb|YP_001140313)' ' VFG039549(gb|NP_820577)' ' VFG043195(gb|AAK20919)' ' VFG045346(gb|NP_933683)' ' VFG047256(gb|YP_169432.1)' ' VFG050017(gb|NP_832067.1)'
Families ' ABC-Transporter' ' Acetyltransferase_3_(AT3)' ' AMP-binding' ' ATPase_alpha/beta_chains' ' CheR' ' CheW' ' Class-II_pyridoxal-phosphate-dependent_aminotransferase' ' CsgG' ' DotU' ' FHIPEP_(flagella/HR/invasion_proteins_export_pore)' ' Flagellin' ' FlgB' ' FlgE' ' FlgH' ' FlgI' ' FliE' ' FliI' ' FliN/MopA/SpaO' ' FliP/MopC/SpaP' ' FliQ/MopD/SpaQ ' ' FliR/MopE/SpaR' ' FliS' ' Glycosyltransferase_2_(GT2)' ' Glycosyltransferase_9_(GT9)' ' Glycosyltransferase_9_(GT9)_' ' GspE' ' GspF' ' GspG' ' HisKA' ' IcmF' ' Lipase' ' LuxS' ' MotA' ' N-acetylglucosamine-1-phosphate_uridyltransferase' ' NAD(P)-dependent_epimerase/dehydratase' ' NlpA_lipoprotein' ' ParA' ' Peptidase_A24 ' ' Peptidase_M23A' ' Peroxidase' ' Polysaccharide_synthase' ' SciNÿ' ' Sel1' ' Sigma-54_factor' ' Sigma-70_factor_' ' TssF' ' TssGÿ' ' UDP-N-acetylglucosamine_2-epimerase' ' VgrG' ' VipA' ' YqeY'
Proteins ' 2,3-dihydroxybenzoate adenylase DhbE' ' alginate biosynthesis protein AlgZ/FimS' ' beta-1,4-glucosyltransferase' ' CAI-1 autoinducer synthase' ' capsular polysaccharide synthesis enzyme Cap8E' ' capsular polysaccharide synthesis enzyme Cap8G' ' catalase-peroxidase KatB' ' chemotaxis protein CheA' ' chemotaxis protein CheV' ' chemotaxis protein methyltransferase CheR' ' CobQ/CobB/MinD/ParA family protein' ' Coxiella Dot/Icm type IVB secretion system' ' curli production assembly/transport protein CsgG' ' elastase LasB' ' ferric siderophore ABC transporter, ATP-binding protein' ' flagellar basal body P-ring protein ' ' flagellar basal body protein' ' flagellar biosynthesis protein' ' flagellar biosynthesis protein FliP ' ' flagellar hook protein FlgE' ' flagellar hook-basal body protein' ' flagellar L-ring protein precursor' ' flagellar motor protein' ' flagellar motor switch protein' ' flagellar protein FliS ' ' flagellin' ' flagellum-specific ATP synthase' ' general secretion pathway protein E' ' general secretion pathway protein F' ' general secretion pathway protein G' ' heptosyltransferase I' ' immunogenic lipoprotein A ' ' LafC, flagellar export chaperone ' ' LafT, flagella motor stator protein' ' lateral flagellar biosynthesis protein' ' lateral flagellar biosynthetic protein LfiR ' ' lateral flagellar FliI-like assembly ATPase, LfiL' ' lateral flagellar L-ring protein, LfgH ' ' lateral flagellar motor switch protein, lfiN' ' lateral flagellin LafA' ' prepilin peptidase, pilD-like ' ' S-ribosylhomocysteinase' ' sensory box sensor histidine kinase' ' short chain dehydrogenase/reductase family oxidoreductase' ' sodium-type flagellar protein MotX' ' thermolabile hemolysin TLH' ' twitching ATPase' ' twitching ATPase ' ' two-component system lateral flagellar response regulator' ' type VI secretion system inner membrane' ' type VI secretion system protein VasA' ' type VI secretion system protein VasB' ' type VI secretion system protein VasD' ' type VI secretion system protein VasF' ' type VI secretion system substrate VgrG-2 ' ' type VI secretion system tubule-forming protein' ' UDP-glucose 4-epimerase' ' UDP-N-acetylglucosamine pyrophosphorylase/glucosamine-1-phosphate N-acetyltransferase'
Gene ' AHA_1389' ' algU' ' bauE' ' cap8E' ' cap8G' ' CBU_1594' ' cheA' ' cheR' ' cheV' ' cqsA' ' csgG' ' dhbE' ' exeF' ' flaA' ' fleS/flrB' ' flgB' ' flgE' ' flgH' ' flgI' ' fliE' ' fliI' ' fliN' ' fliP' ' fliQ' ' fliS' ' flmH' ' galE' ' glmU' ' gspE' ' gspG' ' icmF/vasK' ' IlpA' ' katB' ' lafA' ' lafC' ' lafK' ' lafT' ' lasB' ' lfgH' ' lfhA' ' lfiI' ' lfiN' ' lfiR' ' lgtF' ' luxS' ' motA' ' motX' ' opsX/rfaC' ' tapD' ' tapT' ' tapU' ' tlh' ' vasA' ' vasB' ' vasD' ' vasF' ' vgrG-2' ' vipA/mglA' ' waaF'
Pathogen ' Acinetobacter baumannii ACICU' ' Aeromonas hydrophila str. AH-3' ' Aeromonas hydrophila subsp. hydrophila ATCC 7966' ' Aeromonas salmonicida subsp. salmonicida A449' ' Bacillus cereus ATCC 14579' ' Coxiella burnetii RSA 493' ' Francisella tularensis subsp. tularensis SCHU S4' ' Haemophilus influenzae Rd KW20' ' Legionella pneumophila subsp. pneumophila str. Philadelphia 1' ' Pseudomonas aeruginosa PAO1' ' Salmonella enterica subsp. enterica serovar Typhimurium str. LT2' ' Shigella dysenteriae Sd197' ' Staphylococcus aureus subsp. aureus MW2' ' Vibrio cholerae O1 biovar El Tor str. N16961' ' Vibrio parahaemolyticus RIMD 2210633' ' Vibrio vulnificus YJ016'
Functional Categories ' Alginate (Mucoid exopolysaccharide)' ' LPS' ' Protease' ' Thin aggregative fimbriae' ' Capsule' ' Stress Protein' ' Type II Secretion System' ' Type VI Secretion System' ' Toxin' ' Flagella' ' LOS' ' Quorum Sensing' ' Acinetobactin' ' Type IV Pili' ' Polar Flagella' ' Lateral Flagella' ' Type IV Secretion System' ' Adherence' ' Bacillibactin'
Orthologs ' WP_020328091.1' ' WP_020328205.1' ' WP_020328945.1' ' WP_020329328.1' ' WP_020329329.1' ' WP_020329730.1' ' WP_020329731.1' ' WP_020329733.1' ' WP_020329735.1' ' WP_020329740.1' ' WP_020329935.1' ' WP_020329951.1' ' WP_020329958.1' ' WP_020329966.1' ' WP_020329967.1' ' WP_020329968.1' ' WP_020329971.1' ' WP_020330407.1' ' WP_020330449.1' ' WP_020331164.1' ' WP_020331166.1' ' WP_020331168.1' ' WP_020331172.1' ' WP_020331177.1' ' WP_020331180.1' ' WP_020331720.1' ' WP_020331721.1' ' WP_020331722.1' ' WP_020331734.1' ' WP_020332156.1' ' WP_020430626.1' ' WP_020430641.1' ' WP_020430755.1' ' WP_020431607.1' ' WP_020432054.1' ' WP_020432064.1' ' WP_024373776.1' ' WP_024374330.1' ' WP_024374403.1' ' WP_024374563.1' ' WP_024375571.1' ' WP_032079832.1' ' WP_032080331.1' ' WP_032080332.1' ' WP_032080837.1' ' WP_032080978.1' ' WP_038129485.1' ' WP_044362023.1' ' WP_044364529.1' ' WP_044366750.1' ' WP_047459100.1' ' WP_047460233.1' ' WP_047460234.1' ' WP_061055705.1' ' WP_061055964.1' ' WP_061055989.1' ' WP_061056031.1' ' WP_061056218.1' ' WP_061056225.1' ' WP_061056247.1' ' WP_061056301.1' ' WP_061056303.1' ' WP_061056358.1' ' WP_061056543.1' ' WP_061056567.1' ' WP_061056764.1' ' WP_061056800.1' ' WP_061056910.1' ' WP_061056982.1' ' WP_061057009.1' ' WP_061057056.1' ' WP_061057129.1' ' WP_061057130.1' ' WP_075988087.1' ' WP_075988273.1' ' WP_075988282.1' ' WP_075988306.1' ' WP_075988358.1' ' WP_075988366.1' ' WP_075988368.1' ' WP_075988403.1' ' WP_075988597.1' ' WP_075988614.1' ' WP_075988798.1' ' WP_075988800.1' ' WP_075988973.1' ' WP_075989078.1' ' WP_075989082.1' ' WP_075989524.1' ' WP_075989526.1' ' WP_075989680.1' ' WP_075989699.1' ' WP_075989799.1' ' WP_075989829.1' ' WP_075989914.1' ' WP_081094791.1' ' WP_104408475.1' ' WP_104964820.1' ' WP_104964826.1' ' WP_104964850.1' ' WP_104964940.1' ' WP_104965430.1' ' WP_104965432.1' ' WP_104965582.1' ' WP_104965737.1' ' WP_104965764.1' ' WP_104965983.1' ' WP_104966183.1' ' WP_104966265.1' ' WP_104966267.1' ' WP_104966279.1' ' WP_104966402.1' ' WP_104966610.1' ' WP_104966638.1' ' WP_104966688.1' ' WP_104966702.1' ' WP_104966705.1' ' WP_104966748.1' ' WP_155761255.1' ' WP_155761308.1'