Homologs in group_23

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14 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_13030 FBDBKF_13030 32.2 Morganella morganii S1 - RHS repeat domain-containing protein
FBDBKF_13680 FBDBKF_13680 100.0 Morganella morganii S1 - Insecticidal toxin E
FBDBKF_20435 FBDBKF_20435 32.5 Morganella morganii S1 - RHS repeat domain-containing protein
EHELCC_06345 EHELCC_06345 32.2 Morganella morganii S2 - RHS repeat domain-containing protein
EHELCC_11350 EHELCC_11350 100.0 Morganella morganii S2 - Insecticidal toxin E
EHELCC_19745 EHELCC_19745 32.5 Morganella morganii S2 - RHS repeat domain-containing protein
NLDBIP_06665 NLDBIP_06665 32.2 Morganella morganii S4 - RHS repeat domain-containing protein
NLDBIP_11695 NLDBIP_11695 100.0 Morganella morganii S4 - Insecticidal toxin E
NLDBIP_19760 NLDBIP_19760 32.5 Morganella morganii S4 - RHS repeat domain-containing protein
LHKJJB_03545 LHKJJB_03545 32.2 Morganella morganii S3 - RHS repeat domain-containing protein
LHKJJB_11555 LHKJJB_11555 100.0 Morganella morganii S3 - Insecticidal toxin E
LHKJJB_19725 LHKJJB_19725 32.5 Morganella morganii S3 - RHS repeat domain-containing protein
HKOGLL_07020 HKOGLL_07020 32.2 Morganella morganii S5 - RHS repeat domain-containing protein
HKOGLL_19640 HKOGLL_19640 32.5 Morganella morganii S5 - RHS repeat domain-containing protein

Distribution of the homologs in the orthogroup group_23

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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_23

Swissprot accession Eval Score ID (%) N gaps Alignment length Annot score Gene Description Organism
B6A882 1.21e-81 287 30 20 779 1 yenC2 Toxin subunit YenC2 Yersinia entomophaga
B6A881 3.37e-75 269 31 15 692 1 yenC1 Toxin subunit YenC1 Yersinia entomophaga

  • Number of RefSeq hits:

General

Source Morganella morganii S5
Locus tag HKOGLL_10165
Feature type CDS
Gene -
Product Insecticidal toxin E
Location 93976 - 96774 (strand: -1)
Length 2799 (nucleotides) / 932 (amino acids)
In genomic island -

Contig

Accession ZDB_687
Length 188522 nucleotides
Topology linear
Plasmid False

Orthology

Orthogroup group_23
Orthogroup size 15
N. genomes 5

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Genomic region

COG entry Annotation(s)

ID Function(s) descr. Function(s) cat. Description
COG3209 General function prediction only (R) R Uncharacterized conserved protein RhaS, contains 28 RHS repeats

Kegg Ortholog Annotation(s)

KO Description Pathways Modules
K11021 insecticidal toxin complex protein TccC - -

Protein Sequence

MNLSEIGELCADTPRMTVFDPRGLTVRTVDFNRKISTDIPEALITRYQYGERGEMQICADPRFSVSAQGNEPGYQNLVSATDLLQRPVHQVSIDSGESLSLLHADGQPEWTTGNPGEEAVSQRFTYDRIGRLLSQHSLNGTEEILLQTRRYSDGVDNAEEYNCRGQCTEIQNNAGTETFTEFDISGKNKTFSRRFWSVRDQSADLNHPPEEEMRMWIHRNDLSASGNVRQLSLSCHESGQERAVYTRRNGYNRRGQLISSHLTDEGGNLHALLISADYHANGACQQEMLGNGVTRYYAQEHFTKRLLRISTWRPGGNKKRYPIQDISYQYDPAGNVTERYDLGREDQYFDNLRITAHNQYRYDSCYRLRRAEGREALNGGKSTLTPLISGSQQLVNYQRWYDYDNAGNMTQLRHSAGQNNWTQVFSVSPESNRSLPQPVSPYEVERFFDSFGNLKESNGVHFTRDSQQQLVRADGARRANGASDYEFYQYDSSGQRCSKLSSRIADGITQARRRETVTYISGMRLCEYDYDGKPQGSHYSLSFPLAGHSAVVCLSEREPEKKEMPLSLMRYNCLDAQGSVALELSAEGDIITQEEYYPFGGTSLFSSRSESEADYKYHRYSNKERDNLTGLYDYGFRYYAPWLCRWISPDPLGIADGMNAYCMVRNNPVTYSDSAGLTSQTIELQELRPSSEYRRIASSVYNTTTEPVPQKSIGDRLRSAGRVLSRPLIAIAQGIARIGRAIRSVISGLRSALQRFRGTGDGADEQGMQLLLPMETESEDFSGRVRITESVLTYSPENNEEDLAWDGFLPDSDGEQEYLWDESDFAIDYGSEAGTDEIFGIGGLDKNNYEDDQLSDYSWDDISLRSESDFGGDNVNYPYEAFNITEGPYDDTTPLLNGSNNRATPAAISSLVLSASIFSLLWWYQSQHTYRR

Flanking regions ( +/- flanking 50bp)

GCATGTTTTGAAATGAATCTGACTCCGCCGAAAGTATAAGGAACAATATCATGAATTTATCTGAAATTGGTGAACTGTGCGCAGACACCCCCCGGATGACGGTATTTGATCCCAGAGGGCTGACAGTGCGGACAGTGGATTTTAACCGCAAAATCAGTACAGATATACCCGAAGCACTGATAACCCGCTATCAGTATGGAGAAAGAGGTGAAATGCAGATATGTGCTGATCCGCGTTTCAGTGTCTCTGCACAGGGAAATGAACCCGGATATCAGAATCTCGTTTCTGCCACAGATTTACTGCAGCGCCCTGTTCATCAGGTCAGTATCGACAGCGGTGAATCATTAAGCCTGTTGCATGCGGATGGCCAGCCTGAATGGACAACAGGAAATCCGGGAGAGGAGGCAGTCAGCCAGCGTTTTACCTACGATCGTATTGGACGTTTGCTGTCACAGCACAGTCTTAACGGAACAGAAGAGATCTTATTACAGACCCGGCGTTACAGTGATGGTGTTGATAATGCCGAAGAATATAATTGCCGGGGGCAGTGTACAGAGATACAGAATAACGCCGGAACTGAAACATTTACGGAGTTTGATATTTCCGGCAAAAATAAAACGTTCAGCCGCCGTTTCTGGTCAGTACGTGACCAGAGTGCTGATTTGAATCATCCGCCTGAAGAAGAAATGCGGATGTGGATTCACCGTAATGATTTATCGGCATCAGGTAACGTCCGGCAATTATCGTTGTCCTGTCATGAATCCGGACAGGAACGCGCTGTTTATACACGCCGCAATGGGTACAACCGGCGCGGACAGCTTATCAGCAGTCATCTGACTGATGAGGGCGGAAACCTGCATGCATTACTGATATCGGCAGATTATCATGCGAATGGTGCGTGTCAGCAGGAAATGCTGGGTAATGGTGTGACCCGTTATTATGCACAGGAACATTTCACAAAACGGCTGTTGCGTATTTCAACCTGGCGTCCGGGGGGAAATAAAAAACGTTACCCGATTCAGGATATTTCGTATCAGTATGATCCTGCGGGAAATGTTACTGAGCGTTATGATCTGGGCCGGGAGGATCAGTATTTTGATAATCTGCGGATCACGGCACATAATCAGTATCGCTACGATTCCTGCTACCGCTTACGCCGCGCTGAAGGCCGTGAAGCGCTGAATGGCGGAAAAAGTACATTAACGCCGCTTATCAGCGGATCACAGCAGTTAGTGAATTATCAGAGATGGTATGACTATGATAATGCGGGCAATATGACGCAGCTTCGTCACAGTGCCGGACAAAATAACTGGACTCAGGTTTTTTCTGTCTCGCCGGAGAGTAACCGCAGTTTACCGCAGCCGGTTTCACCGTATGAAGTGGAACGCTTTTTTGATAGTTTCGGTAATCTGAAAGAAAGTAACGGCGTGCATTTTACCCGCGACTCACAGCAGCAGCTTGTCCGTGCGGATGGTGCACGGCGGGCAAATGGCGCGTCGGACTATGAGTTTTATCAGTATGACAGCAGCGGTCAGCGTTGCAGTAAACTCAGCAGCCGGATTGCTGACGGTATCACTCAGGCCCGCCGCCGGGAAACGGTGACATATATTTCCGGCATGCGTTTGTGTGAGTATGACTACGACGGTAAACCACAGGGTAGTCATTATTCACTGAGCTTTCCGCTGGCCGGGCATTCAGCGGTGGTATGCCTGTCTGAGCGGGAGCCGGAAAAGAAAGAAATGCCCCTTTCTCTGATGCGTTATAACTGCCTTGATGCGCAGGGCTCGGTCGCGCTGGAGCTGAGTGCAGAGGGCGATATTATTACGCAGGAGGAATATTATCCGTTCGGCGGCACCTCACTGTTCAGTTCGCGGAGTGAGAGTGAAGCAGACTATAAATATCACCGTTACAGCAATAAAGAACGGGATAATCTTACCGGGCTTTACGATTACGGATTCCGTTATTATGCGCCGTGGTTGTGCCGCTGGATCTCGCCGGACCCGCTGGGAATAGCTGATGGTATGAATGCTTATTGTATGGTGCGCAATAACCCGGTGACATACAGCGATAGCGCCGGTCTGACGTCACAGACAATTGAGTTGCAGGAATTGCGGCCTTCATCCGAGTATCGGAGAATAGCATCATCGGTATATAACACCACCACCGAACCGGTACCTCAGAAGAGCATTGGTGACCGGTTACGCAGTGCCGGCAGAGTACTGAGCCGTCCTTTAATCGCTATCGCACAGGGAATTGCCCGGATAGGGCGGGCAATCCGAAGTGTTATCAGCGGGCTCCGTTCTGCATTACAGCGTTTCAGGGGGACAGGTGATGGTGCTGATGAGCAGGGAATGCAGCTGTTGCTACCGATGGAAACTGAGTCAGAAGATTTTTCAGGCAGAGTTCGTATCACAGAATCAGTTTTGACGTATTCACCGGAAAATAATGAGGAAGATCTGGCCTGGGATGGCTTTCTGCCGGACAGCGACGGAGAGCAGGAATATCTTTGGGACGAAAGTGATTTCGCCATAGATTACGGGTCTGAGGCCGGTACTGATGAAATATTTGGTATCGGGGGACTTGATAAAAATAACTATGAGGATGATCAGTTATCCGATTATAGCTGGGATGATATTAGTTTGAGATCGGAATCTGATTTCGGAGGGGATAACGTTAATTATCCATATGAAGCGTTTAATATTACAGAAGGGCCATACGATGACACAACACCACTTCTGAATGGTTCAAATAACAGAGCAACACCGGCAGCTATTTCATCACTGGTATTATCTGCCTCGATTTTCAGCTTGCTGTGGTGGTATCAGTCTCAGCATACCTACCGCCGCTGAAACGGAGACGTTGTTCTGTAAAATAAAAACCGGCCCCGTTAAAGGCCGGT