Homologs in group_1983

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6 homologs were identified in 6 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_14875 FBDBKF_14875 80.7 Morganella morganii S1 - YejG-like protein
EHELCC_15680 EHELCC_15680 80.7 Morganella morganii S2 - YejG-like protein
NLDBIP_16210 NLDBIP_16210 80.7 Morganella morganii S4 - YejG-like protein
LHKJJB_15630 LHKJJB_15630 80.7 Morganella morganii S3 - YejG-like protein
HKOGLL_14750 HKOGLL_14750 80.7 Morganella morganii S5 - YejG-like protein
PMI_RS04075 PMI_RS04075 45.6 Proteus mirabilis HI4320 - YejG family protein

Distribution of the homologs in the orthogroup group_1983

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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_1983

Swissprot accession Eval Score ID (%) N gaps Alignment length Annot score Gene Description Organism
P0AD23 2.38e-21 84 41 0 114 4 yejG Uncharacterized protein YejG Shigella flexneri
P0AD21 2.38e-21 84 41 0 114 1 yejG Uncharacterized protein YejG Escherichia coli (strain K12)
P0AD22 2.38e-21 84 41 0 114 4 yejG Uncharacterized protein YejG Escherichia coli O6:H1 (strain CFT073 / ATCC 700928 / UPEC)

  • Number of RefSeq hits:

General

Source Morganella psychrotolerans
Locus tag F4V73_RS07675
Feature type CDS
Gene -
Product hypothetical protein
Location 1604995 - 1605339 (strand: -1)
Length 345 (nucleotides) / 114 (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_1983
Orthogroup size 7
N. genomes 7

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Genomic region

Domains

PF13989 YejG-like protein

Protein Sequence

MNSNALSVVTRLPQHYRLSGHDTGQWVEALPETRTYGEDSLRGLKLLSHGHKSTHDALCIIRAHLEGLQIDSVILTWEGEPCLFLRSGDEGMALCALKTAGAAIAENISALYPF

Flanking regions ( +/- flanking 50bp)

GAAAAAGTAACGTCAGATAATCCACCGGCACAGCATGACAGGATGATAGTGTGAATAGTAATGCGCTTTCGGTTGTTACCCGCTTACCACAACATTACCGGCTATCCGGTCATGATACCGGACAGTGGGTGGAAGCTTTACCGGAGACCCGTACGTACGGGGAAGATAGCCTGAGAGGCTTAAAATTACTGAGCCATGGCCATAAATCAACACATGATGCGCTCTGTATTATCCGGGCGCATCTGGAAGGATTACAGATTGACAGCGTGATCCTGACCTGGGAAGGTGAGCCGTGTTTGTTTTTGCGCAGTGGTGATGAGGGGATGGCACTGTGTGCGCTGAAAACCGCCGGTGCTGCGATTGCGGAAAATATATCGGCTCTTTACCCGTTCTGAGTTGTTATTAACAGAACACCTTCGGTGTTGCAGTCGGAATTAATGAGCCA