Homologs in group_26

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16 homologs were identified in 7 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_12005 FBDBKF_12005 30.7 Morganella morganii S1 - Filamentous hemagglutinin
FBDBKF_16585 FBDBKF_16585 29.3 Morganella morganii S1 - Hemolysin
EHELCC_08450 EHELCC_08450 29.3 Morganella morganii S2 - Hemolysin
EHELCC_14300 EHELCC_14300 30.7 Morganella morganii S2 - Filamentous hemagglutinin
NLDBIP_08775 NLDBIP_08775 29.3 Morganella morganii S4 - Hemolysin
NLDBIP_15395 NLDBIP_15395 30.7 Morganella morganii S4 - Filamentous hemagglutinin
LHKJJB_05490 LHKJJB_05490 29.3 Morganella morganii S3 - Hemolysin
LHKJJB_15215 LHKJJB_15215 30.7 Morganella morganii S3 - Filamentous hemagglutinin
HKOGLL_05425 HKOGLL_05425 29.3 Morganella morganii S5 - Hemolysin
HKOGLL_14335 HKOGLL_14335 30.7 Morganella morganii S5 - Filamentous hemagglutinin
F4V73_RS03085 F4V73_RS03085 24.8 Morganella psychrotolerans - filamentous hemagglutinin N-terminal domain-containing protein
F4V73_RS03115 F4V73_RS03115 25.9 Morganella psychrotolerans - filamentous hemagglutinin N-terminal domain-containing protein
F4V73_RS14650 F4V73_RS14650 31.2 Morganella psychrotolerans - filamentous hemagglutinin N-terminal domain-containing protein
PMI_RS03490 PMI_RS03490 25.8 Proteus mirabilis HI4320 - filamentous hemagglutinin N-terminal domain-containing protein
PMI_RS08095 PMI_RS08095 26.3 Proteus mirabilis HI4320 - filamentous hemagglutinin N-terminal domain-containing protein
PMI_RS14040 PMI_RS14040 28.5 Proteus mirabilis HI4320 - filamentous hemagglutinin N-terminal domain-containing protein

Distribution of the homologs in the orthogroup group_26

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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_26

Swissprot accession Eval Score ID (%) N gaps Alignment length Annot score Gene Description Organism
Q7CGD9 1.38e-33 144 25 23 694 3 cdiA Toxin CdiA Yersinia pestis
C4SGN7 2.45e-25 117 24 33 819 3 cdiA tRNA nuclease CdiA Yersinia mollaretii (strain ATCC 43969 / DSM 18520 / CIP 103324 / CNY 7263 / WAIP 204)
I1WVY3 5.4e-25 116 24 28 799 1 cdiA2 tRNA nuclease CdiA-2 Burkholderia pseudomallei (strain 1026b)
P0DSI1 3.15e-22 107 25 35 867 1 cdiA tRNA nuclease CdiA Escherichia coli (strain NC101)
D5CBA0 6.41e-22 106 24 35 900 1 cdiA 16S rRNA endonuclease CdiA Enterobacter cloacae subsp. cloacae (strain ATCC 13047 / DSM 30054 / NBRC 13535 / NCTC 10005 / WDCM 00083 / NCDC 279-56)
Q3YL96 2.6e-19 97 31 9 293 1 cdiA Toxin CdiA Escherichia coli
A0A1S4NYE3 4.77e-19 97 31 9 293 1 cdiA tRNA nuclease CdiA Escherichia coli (strain STEC_O31)
Q0T963 9.13e-18 92 33 7 243 1 cdiA tRNA nuclease CdiA Escherichia coli O6:K15:H31 (strain 536 / UPEC)
B3BM48 9.59e-18 92 30 10 295 1 cdiA1 tRNA nuclease CdiA Escherichia coli O157:H7 (strain EC869)
P16466 4.64e-14 80 28 4 208 1 hpmA Hemolysin Proteus mirabilis
P15320 3.21e-13 77 31 5 204 1 shlA Hemolysin Serratia marcescens
Q06277 2.6e-07 58 27 2 140 1 ibpA Protein adenylyltransferase and cysteine protease IbpA Histophilus somni (strain 2336)
P12255 1.7e-06 55 28 9 232 1 fhaB Filamentous hemagglutinin Bordetella pertussis (strain Tohama I / ATCC BAA-589 / NCTC 13251)

  • Number of RefSeq hits:

General

Source Proteus mirabilis HI4320
Locus tag PMI_RS14405
Feature type CDS
Gene -
Product filamentous hemagglutinin N-terminal domain-containing protein
Location 3194336 - 3196852 (strand: -1)
Length 2517 (nucleotides) / 838 (amino acids)

Contig

Accession NC_010554
Length 4063606 nucleotides
Topology circular
Plasmid False

Orthology

Orthogroup group_26
Orthogroup size 17
N. genomes 7

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Genomic region

Domains

PF05860 TPS secretion domain

COG entry Annotation(s)

ID Function(s) descr. Function(s) cat. Description
COG3468 Cell wall/membrane/envelope biogenesis (M)
Intracellular trafficking, secretion, and vesicular transport (U)
MU Autotransporter adhesin AidA

Protein Sequence

MNRKKIVSFKINLLVFSVLSTLNMATVVQADPSAHIVVQQQQKNSSVDILNIAAAINGYSSNSLTSFDVSEAGLILNNSPDGADTQLSGHIDGNSNLSSGAAKEITLEVNAKKAITLNGPVEVAGTKARVILSNPAGIICSSCNFLSADRVVLTTGKVNTQNDTVDSYKVEKGNITVKGNATFDKSAQQIDLIARNVSIETPLDASGINVNVITGANEVKAQDNTVVAQKPTGVASKYSLQIVKNAGVRSSSLKFIGTEANSPLKNNGNVETAGGGIELIHSGALDNNKGNFLSEGDIYFAFDKGVTNSTGEIQSTKTISIETKEAKVDNISGGNISADGNVTINSGEFKNNASYIASKDKLDIQTNGKPITNTATVGEGVGISATNGIKINSGLFNNKEGQINSKSVIDINTNLKDFNNIDAYIDASGDISINSGAMNNTHSRLRSVTRVEIDTNGKALKNTGMTADTASDDSLGILSGLDGMTVNIAGLNNDQGIIATDGDMNFTNKGDITNKWGHIKSGGYLTFSSDKIKNLYGGLASKTGANVTFSQTLDNNFGVFYLEGDSVTISAPYINNNKGVIKGDAIYFKTDKFNNTSGFVITEQKLEIDTPELTNNSSLDFKTEMGFYLGQPDQKGGLISKGEMKLSGNKLVSNKGRIVTENGDMELKFTSVDNTSGTIASHKNAFVVTSTFTNSQGTLFGQDKLTLQTDTLKNNSTGSVESNTLKGVIASSGDTEVTVNRDFENNGVISGVEHLRVNINGKYTNASNSIMSGKNSFELGVTGNIINRGILNSIKDTTISGENITNEKSGIIVGRESITIDNKGTFTNKGKVVGPLNK

Flanking regions ( +/- flanking 50bp)

AGAGATCTTATTATTTAATTAACTTTTGTGCTTAATATAAGGTAATTATAATGAATAGGAAAAAAATTGTTTCTTTTAAAATTAATTTATTAGTTTTCTCTGTATTATCAACGTTAAATATGGCGACTGTAGTACAGGCGGATCCGTCTGCTCATATTGTTGTGCAACAACAGCAAAAAAATAGTAGTGTTGATATTCTTAATATTGCCGCAGCGATTAATGGCTATTCCAGTAATTCATTAACCAGTTTTGATGTTTCTGAAGCAGGGTTAATATTAAATAATAGTCCTGATGGTGCTGATACTCAATTATCGGGGCATATTGACGGTAATAGTAATTTATCTAGCGGTGCGGCAAAAGAGATTACTCTTGAGGTTAACGCTAAAAAAGCCATTACGTTAAATGGTCCTGTTGAGGTGGCCGGAACAAAAGCACGGGTTATTTTATCTAATCCTGCTGGAATTATTTGTAGTAGCTGTAACTTTCTTAGTGCTGACCGTGTTGTGTTGACTACTGGGAAAGTGAATACACAAAATGATACCGTTGATAGTTATAAAGTGGAAAAAGGGAATATTACTGTTAAAGGTAATGCCACTTTTGATAAAAGTGCGCAACAGATTGATTTAATTGCCCGCAATGTTTCCATTGAAACGCCTCTTGATGCATCTGGTATTAATGTGAATGTGATAACTGGCGCTAATGAAGTTAAAGCACAAGATAATACTGTGGTTGCACAAAAGCCAACAGGCGTTGCTAGTAAATATAGTTTGCAGATAGTCAAGAATGCAGGAGTGAGAAGCTCATCGTTAAAATTTATAGGTACTGAAGCTAACTCACCACTGAAAAATAATGGTAATGTTGAAACTGCTGGGGGAGGGATCGAGCTTATTCATAGCGGTGCACTTGATAATAATAAAGGTAACTTCTTATCTGAGGGGGATATCTATTTTGCTTTCGATAAAGGTGTTACAAATAGTACTGGTGAAATACAAAGTACTAAAACTATCTCAATAGAAACCAAAGAAGCGAAAGTTGATAATATCTCTGGTGGTAATATTTCTGCTGATGGAAATGTAACTATCAATAGTGGTGAATTTAAAAACAATGCCTCCTATATTGCAAGTAAAGATAAATTAGATATTCAGACAAACGGTAAACCAATAACGAATACTGCAACGGTCGGTGAAGGCGTCGGTATTTCTGCTACTAATGGTATTAAGATTAATAGTGGCTTATTTAATAATAAAGAGGGTCAAATCAATTCTAAAAGTGTCATTGATATTAATACTAACCTAAAAGATTTCAATAATATTGATGCTTATATTGATGCATCAGGGGATATTAGTATTAATAGTGGCGCAATGAATAATACCCATAGCCGCCTACGCTCAGTTACTCGTGTTGAAATTGATACTAATGGTAAGGCGCTGAAAAATACCGGCATGACTGCAGATACTGCTAGCGATGATTCATTAGGTATTCTTAGTGGTCTGGATGGTATGACAGTTAATATTGCTGGACTGAATAATGACCAAGGGATTATTGCCACCGATGGCGATATGAACTTCACTAACAAAGGCGACATTACCAATAAATGGGGACATATAAAATCAGGGGGATACTTGACATTTAGTAGTGATAAGATCAAAAACCTCTATGGTGGCTTAGCATCTAAAACTGGTGCTAATGTGACTTTCTCCCAGACATTAGATAATAACTTTGGTGTTTTTTACTTAGAAGGCGATAGCGTTACCATCAGTGCGCCTTATATAAATAATAATAAAGGTGTTATTAAAGGAGACGCTATTTATTTTAAAACAGATAAATTTAATAACACATCAGGATTTGTGATCACTGAACAGAAATTAGAGATTGATACACCAGAACTGACGAATAACAGCAGTTTAGATTTCAAAACAGAAATGGGCTTTTATCTGGGGCAACCTGATCAGAAAGGGGGATTAATTAGTAAAGGAGAAATGAAATTAAGCGGTAATAAATTAGTGAGTAATAAAGGACGTATTGTAACAGAAAATGGGGATATGGAGCTTAAATTCACCTCTGTTGATAATACCAGTGGTACTATTGCATCACATAAAAATGCCTTTGTAGTGACAAGCACCTTTACCAATTCACAAGGCACATTGTTTGGCCAGGATAAATTAACACTACAAACCGATACACTGAAAAATAACAGTACAGGTTCGGTTGAAAGTAATACCTTAAAAGGTGTTATTGCGTCGAGTGGTGATACTGAAGTGACGGTTAATCGTGATTTTGAAAACAATGGCGTCATTTCTGGTGTAGAACATTTACGTGTAAATATAAATGGTAAATATACCAATGCCAGCAATAGTATTATGTCAGGTAAAAATAGTTTCGAATTAGGTGTGACAGGAAATATTATTAATCGCGGTATTCTTAATTCAATAAAAGACACGACTATTTCTGGTGAGAATATTACTAATGAAAAATCAGGTATTATTGTTGGTAGAGAAAGTATTACTATCGATAATAAAGGCACTTTTACTAATAAAGGTAAAGTTGTCGGGCCGTTAAATAAATAACATTTTAGCCTATCTATGAGCGATATTTTGTCGCTCATAGATCAAAGGAT