Homologs in group_2655

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5 homologs were identified in 5 genomes with OrthoFinder.
The following table displays the locus tag of each homolog, the organism to which it belongs, the gene name and product.

Locus tag Identity Source Gene Product
FBDBKF_04570 FBDBKF_04570 89.3 Morganella morganii S1 fecA Outer membrane receptor for Fe3+-dicitrate
EHELCC_05860 EHELCC_05860 89.3 Morganella morganii S2 fecA Outer membrane receptor for Fe3+-dicitrate
NLDBIP_06180 NLDBIP_06180 89.3 Morganella morganii S4 fecA Outer membrane receptor for Fe3+-dicitrate
LHKJJB_03060 LHKJJB_03060 89.3 Morganella morganii S3 fecA Outer membrane receptor for Fe3+-dicitrate
HKOGLL_06535 HKOGLL_06535 89.3 Morganella morganii S5 fecA Outer membrane receptor for Fe3+-dicitrate

Distribution of the homologs in the orthogroup group_2655

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Number of homologs in each genome (first column) and amino-acid identity of the closest homolog (second column).

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Phylogeny of the RefSeq best hits of group_2655

Swissprot accession Eval Score ID (%) N gaps Alignment length Annot score Gene Description Organism
P13036 1.42e-179 534 42 14 687 1 fecA Fe(3+) dicitrate transport protein FecA Escherichia coli (strain K12)
Q6LLU3 2.78e-14 80 29 6 220 3 btuB Vitamin B12 transporter BtuB Photobacterium profundum (strain SS9)
P76115 5.25e-14 79 24 26 536 1 pqqU Pyrroloquinoline quinone transporter Escherichia coli (strain K12)
Q6CZB5 1.01e-09 65 31 7 163 3 btuB Vitamin B12 transporter BtuB Pectobacterium atrosepticum (strain SCRI 1043 / ATCC BAA-672)
C3LPZ6 3.17e-09 63 26 11 309 3 btuB Vitamin B12 transporter BtuB Vibrio cholerae serotype O1 (strain M66-2)
Q9KVI9 3.17e-09 63 26 11 309 3 btuB Vitamin B12 transporter BtuB Vibrio cholerae serotype O1 (strain ATCC 39315 / El Tor Inaba N16961)
A5F4P6 3.17e-09 63 26 11 309 3 btuB Vitamin B12 transporter BtuB Vibrio cholerae serotype O1 (strain ATCC 39541 / Classical Ogawa 395 / O395)
O52903 7.27e-09 62 28 6 163 3 btuB Vitamin B12 transporter BtuB Citrobacter freundii
Q8DD41 9.6e-09 62 28 5 163 3 btuB Vitamin B12 transporter BtuB Vibrio vulnificus (strain CMCP6)
A4WG45 3.1e-08 60 29 6 159 3 btuB Vitamin B12 transporter BtuB Enterobacter sp. (strain 638)
A7ML93 3.82e-08 60 30 7 163 3 btuB Vitamin B12 transporter BtuB Cronobacter sakazakii (strain ATCC BAA-894)
Q7MYE3 5.65e-08 59 31 7 164 3 btuB Vitamin B12 transporter BtuB Photorhabdus laumondii subsp. laumondii (strain DSM 15139 / CIP 105565 / TT01)
A5F9G0 5.77e-08 60 26 9 245 3 irgA Iron-regulated outer membrane virulence protein Vibrio cholerae serotype O1 (strain ATCC 39541 / Classical Ogawa 395 / O395)
A5F9G0 1.41e-06 55 27 8 177 3 irgA Iron-regulated outer membrane virulence protein Vibrio cholerae serotype O1 (strain ATCC 39541 / Classical Ogawa 395 / O395)
A7MXY8 6.47e-08 59 28 7 170 3 btuB Vitamin B12 transporter BtuB Vibrio campbellii (strain ATCC BAA-1116)
P0C6R0 8.58e-08 59 26 9 246 3 irgA Iron-regulated outer membrane virulence protein Vibrio cholerae serotype O1 (strain ATCC 39315 / El Tor Inaba N16961)
P0C6R0 1.45e-06 55 27 8 177 3 irgA Iron-regulated outer membrane virulence protein Vibrio cholerae serotype O1 (strain ATCC 39315 / El Tor Inaba N16961)
Q7MQ42 1.26e-07 58 27 6 168 3 btuB Vitamin B12 transporter BtuB Vibrio vulnificus (strain YJ016)
P17315 1.27e-07 58 30 3 129 1 cirA Colicin I receptor Escherichia coli (strain K12)
Q8Z314 1.35e-07 58 31 6 160 3 btuB Vitamin B12 transporter BtuB Salmonella typhi
Q32AE6 3.07e-07 57 30 8 159 3 btuB Vitamin B12 transporter BtuB Shigella dysenteriae serotype 1 (strain Sd197)
Q0SY25 4.18e-07 57 29 6 158 3 btuB Vitamin B12 transporter BtuB Shigella flexneri serotype 5b (strain 8401)
Q83IS4 4.48e-07 57 29 6 158 3 btuB Vitamin B12 transporter BtuB Shigella flexneri
P37409 4.64e-07 57 31 6 160 3 btuB Vitamin B12 transporter BtuB Salmonella typhimurium (strain LT2 / SGSC1412 / ATCC 700720)
Q5PK67 5.1e-07 56 31 6 160 3 btuB Vitamin B12 transporter BtuB Salmonella paratyphi A (strain ATCC 9150 / SARB42)
Q57H87 5.1e-07 56 31 6 160 3 btuB Vitamin B12 transporter BtuB Salmonella choleraesuis (strain SC-B67)
A4TRG0 7.2e-07 56 30 7 169 3 btuB Vitamin B12 transporter BtuB Yersinia pestis (strain Pestoides F)
Q1CNP0 7.2e-07 56 30 7 169 3 btuB Vitamin B12 transporter BtuB Yersinia pestis bv. Antiqua (strain Nepal516)
Q8ZAA1 7.2e-07 56 30 7 169 3 btuB Vitamin B12 transporter BtuB Yersinia pestis
Q1CBU1 7.2e-07 56 30 7 169 3 btuB Vitamin B12 transporter BtuB Yersinia pestis bv. Antiqua (strain Antiqua)
Q3YV10 8.47e-07 56 29 8 159 3 btuB Vitamin B12 transporter BtuB Shigella sonnei (strain Ss046)
P06129 8.47e-07 56 29 8 159 1 btuB Vitamin B12 transporter BtuB Escherichia coli (strain K12)
A7ZUI6 9.39e-07 55 29 8 159 3 btuB Vitamin B12 transporter BtuB Escherichia coli O139:H28 (strain E24377A / ETEC)
Q8CVJ0 1.14e-06 55 29 8 159 3 btuB Vitamin B12 transporter BtuB Escherichia coli O6:H1 (strain CFT073 / ATCC 700928 / UPEC)
Q1R3U1 1.18e-06 55 29 8 159 3 btuB Vitamin B12 transporter BtuB Escherichia coli (strain UTI89 / UPEC)
Q0TA90 1.18e-06 55 29 8 159 3 btuB Vitamin B12 transporter BtuB Escherichia coli O6:K15:H31 (strain 536 / UPEC)
A1AIE8 1.18e-06 55 29 8 159 3 btuB Vitamin B12 transporter BtuB Escherichia coli O1:K1 / APEC
Q87KN9 1.49e-06 55 29 6 160 3 btuB Vitamin B12 transporter BtuB Vibrio parahaemolyticus serotype O3:K6 (strain RIMD 2210633)
Q66G57 5.76e-06 53 29 7 170 3 btuB Vitamin B12 transporter BtuB Yersinia pseudotuberculosis serotype I (strain IP32953)
A7FD14 5.76e-06 53 29 7 170 3 btuB Vitamin B12 transporter BtuB Yersinia pseudotuberculosis serotype O:1b (strain IP 31758)
A0A0H2ZI93 5.42e-05 50 20 27 615 2 cntO Metal-pseudopaline receptor CntO Pseudomonas aeruginosa (strain UCBPP-PA14)
D0C8V9 5.94e-05 50 31 4 121 1 pirA Probable TonB-dependent siderophore receptor PirA Acinetobacter baumannii (strain ATCC 19606 / DSM 30007 / JCM 6841 / CCUG 19606 / CIP 70.34 / NBRC 109757 / NCIMB 12457 / NCTC 12156 / 81)
Q9HUX3 6.44e-05 50 20 27 615 2 cntO Metal-pseudopaline receptor CntO Pseudomonas aeruginosa (strain ATCC 15692 / DSM 22644 / CIP 104116 / JCM 14847 / LMG 12228 / 1C / PRS 101 / PAO1)
P75780 7.97e-05 49 25 10 239 1 fiu Catecholate siderophore receptor Fiu Escherichia coli (strain K12)
Q8X7W7 8.04e-05 49 25 10 239 3 fiu Catecholate siderophore receptor Fiu Escherichia coli O157:H7
Q1REC0 0.000146 48 25 11 264 3 fiu Catecholate siderophore receptor Fiu Escherichia coli (strain UTI89 / UPEC)
Q8CW90 0.000194 48 25 10 239 3 fiu Catecholate siderophore receptor Fiu Escherichia coli O6:H1 (strain CFT073 / ATCC 700928 / UPEC)
Q4QP67 0.001 46 21 19 487 3 tdhA TonB-dependent heme receptor A Haemophilus influenzae (strain 86-028NP)

  • Number of RefSeq hits:

General

Source Morganella psychrotolerans
Locus tag F4V73_RS09025
Feature type CDS
Gene -
Product TonB-dependent siderophore receptor
Location 1884808 - 1886937 (strand: 1)
Length 2130 (nucleotides) / 709 (amino acids)

Contig

Accession term accessions NZ_VXKB01000001 accessions NZ_VXKB01000000 Name: value, dtype: object
Length 2012992 nucleotides
Topology linear
Plasmid False

Orthology

Orthogroup group_2655
Orthogroup size 6
N. genomes 6

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Genomic region

Domains

PF00593 TonB dependent receptor-like, beta-barrel
PF07715 TonB-dependent Receptor Plug Domain

COG entry Annotation(s)

ID Function(s) descr. Function(s) cat. Description
COG4772 Inorganic ion transport and metabolism (P) P Outer membrane receptor for Fe3+-dicitrate

Kegg Ortholog Annotation(s)

KO Description Pathways Modules
K16091 Fe(3+) dicitrate transport protein - -

Protein Sequence

MTARHTHHRLTLLAFSLSSVCFAGSAGAENKEEPIVVVGNWLDNADNSDILLNHGGARTIRNKKQIDESGAQTIADALRGIPGVQVRDSNGTGGSDVSLNVGIRGLPARLSPRSTILLDGIPLAAAPYGQPQLSMSPLSLGSINSIDVMRGATSVRYGPQNVGGVINFVTKPIPATFGGSASVKTQGARTGGLKTLTDASVGGSKEDGSTGALLLYSGLHGQGYRKNNDNTDIDDIILKTRYTLSETDELLANFHYYHAQSGMPGGLTDAQYKADPYQSVRSFDRFEGNRQDMSFKYRHQEDDKQFELLTWFSKSYRGSYIESEGKDKNTGNSRLISYPRHYTAYAIEPSYSQLFRFDNQSHEITFGYRYLNETADEKAHRSSWYPTGSQSSRPDTGDYYQHTSGGTEAHAIYIDDTINAGNWTIIPGLRYENINIHLDDGFRNQYRSKSYSEPLPALSVIYHIDSQWKIFANTGSSFGSLQYFQLNTGGAGNDPANGLSAEKAHNYEVGTRFDNGLLSAEATVFYIDFNDQLQYIENSTGWTNLGATTHQGIELAVNYDLSEIAPVLDGTSIYSTYTYTKAVSKRGNFADKDLPFYSRQVFTAGTRYETGNWVWNLNTYAQSKQQSPGTGKDYITEGSADGRYGIIPGYMMWDARGEYHFGPQWSDLTLSAGVKNLFDQANFTRSTDNNYGIYAGQPRTFFAQASVTF

Flanking regions ( +/- flanking 50bp)

GTTCTTATTATCATTACGTTTCTTATTTTCTTACGGAATACTCAGCCATTATGACAGCCCGTCACACACACCACCGCCTTACCCTGCTGGCTTTTTCTCTTTCCTCTGTCTGCTTTGCAGGATCTGCCGGAGCCGAAAATAAAGAAGAGCCGATTGTTGTTGTCGGCAACTGGCTGGATAACGCTGACAACAGTGACATATTGCTCAATCACGGCGGAGCCCGGACCATCAGAAATAAAAAACAGATTGATGAGTCCGGCGCACAAACTATTGCAGATGCACTGCGTGGCATTCCGGGTGTTCAGGTGCGTGACAGTAACGGCACCGGTGGCAGTGACGTTTCACTGAATGTCGGGATCCGCGGGCTTCCCGCACGGCTTTCCCCACGCTCCACCATTCTTCTCGACGGTATTCCGCTGGCAGCCGCTCCCTATGGTCAGCCTCAGCTATCAATGTCCCCGCTCTCTTTAGGGTCAATAAACAGTATAGACGTTATGCGTGGCGCGACCTCAGTCCGCTACGGGCCGCAAAATGTGGGCGGTGTGATTAATTTTGTCACCAAACCCATTCCGGCAACCTTTGGCGGCTCTGCATCGGTTAAAACACAGGGCGCCCGCACCGGCGGGCTGAAAACACTGACAGATGCCTCGGTGGGTGGTTCAAAAGAGGATGGCTCGACAGGCGCACTGCTGCTCTACTCCGGCCTGCACGGTCAGGGATATCGCAAAAATAATGATAATACCGATATCGATGATATTATTCTGAAAACCCGCTATACCCTGAGTGAAACAGATGAATTACTGGCTAATTTTCACTATTACCATGCGCAATCCGGGATGCCCGGCGGGCTGACCGATGCACAATATAAAGCAGATCCCTATCAGTCTGTCCGCTCATTTGACCGCTTTGAGGGTAACCGGCAGGATATGTCCTTCAAATACCGTCATCAGGAAGATGATAAGCAATTTGAATTACTGACCTGGTTCAGCAAAAGCTATCGCGGCAGCTATATTGAGAGTGAAGGAAAAGATAAAAACACCGGAAACAGCCGCCTGATTTCCTACCCGCGTCATTACACTGCGTATGCCATCGAACCGAGCTATTCACAGCTGTTCCGCTTTGATAATCAGTCCCACGAAATTACTTTCGGTTACCGCTATCTGAATGAAACCGCAGATGAAAAAGCGCACCGCAGCAGCTGGTATCCGACCGGATCTCAGAGTTCACGTCCGGATACCGGTGATTATTACCAGCACACGTCCGGCGGAACCGAAGCGCATGCCATCTATATTGATGACACAATCAATGCAGGCAACTGGACGATTATCCCGGGGCTGCGTTATGAAAACATCAATATTCATCTGGATGATGGTTTCCGTAATCAGTATCGCAGCAAAAGCTACAGTGAGCCTCTGCCGGCACTGTCCGTTATCTATCATATCGACTCTCAGTGGAAAATTTTTGCAAATACCGGAAGCTCTTTCGGCAGTCTGCAATACTTCCAGCTCAATACCGGCGGTGCAGGTAATGATCCGGCAAACGGACTGAGTGCGGAAAAAGCGCATAACTATGAAGTCGGTACCCGGTTTGATAACGGATTGCTTTCTGCTGAAGCAACAGTTTTCTATATCGATTTTAATGATCAGCTACAATATATCGAAAACTCCACCGGCTGGACAAATCTTGGTGCCACAACACATCAGGGTATTGAGCTCGCTGTAAATTATGATTTGAGTGAGATTGCCCCGGTGCTCGACGGCACCAGTATTTACAGTACTTACACCTACACCAAAGCCGTCAGTAAACGTGGTAATTTTGCTGATAAAGACCTGCCATTCTACTCCCGCCAGGTCTTTACCGCCGGAACCCGTTATGAAACCGGCAACTGGGTCTGGAATCTCAATACTTACGCACAATCAAAGCAGCAATCACCGGGAACCGGGAAAGACTATATCACCGAAGGCAGTGCTGACGGGCGTTACGGGATAATCCCGGGGTATATGATGTGGGATGCGCGCGGAGAATATCATTTCGGTCCGCAATGGTCAGATCTGACATTGTCCGCCGGGGTAAAAAACCTGTTCGACCAGGCTAATTTCACCCGGTCCACTGATAATAATTACGGTATTTATGCCGGACAACCACGCACCTTCTTTGCTCAGGCATCCGTAACCTTTTAAAAAATAAGTGTTTAATATGAAAAATCACTATACCCACGCGGCCGGACGTT