What's a Pseudomonas Ortholog Group?

In order to generate a more inclusive dataset of Pseudomonas genes mapped to putative in-paralogs and putative orthologs in other Pseudomonas species/strains, we developed a Pseudomonas Orthologous Groups classification system.

To generate ortholog groups, pair-wise DIAMOND searches were run on all genomes in the database to find reciprocal best hits (RBHs) for each gene. These analyses often resulted in multiple candidate genes for RBH status, which were narrowed down by examining the similarity between the query's flanking genes and the hit's flanking genes. If two candidate genes were directly adjacent, they where both accepted as RBHs that involve putative in-parology.

Pairwise intra-genome DIAMOND searches were also performed to acquire in-paralog information (i.e. gene duplications occurring after species divergence). If two genes in one genome were reciprocally more similar to each other than to any gene in the other genomes, the two genes were designated putative in-paralogs. Ortholog groups are built by starting with a seed gene and then adding all genes to which there is a RBH or in-paralog relationship.

Every new gene added to an ortholog group was then treated as a seed gene and the addition process was repeated until all qualifying genes had been added. The result was the development of orthologous groups, specifically generated for Pseudomonas species genomes, which can be used to sort search results.

Pseudomonas Ortholog Group POG001063

536 results were returned for your query
= Popular strains (Ordered by popular strains first, then by strain name, ascending)
Strain Locus Tag Description Same-Strain Members Fragment ?
Pseudomonas aeruginosa LES_CF_sputum_CF03_contigs_24_a1 TC72_RS27920 flagellar motor switch protein FliG
1 member
Pseudomonas aeruginosa LES_CF_sputum_CF03_contigs_25_a1 TC72_RS14110 flagellar motor switch protein FliG
1 member
Pseudomonas aeruginosa LES_CF_sputum_CF03_contigs_26_a1 TC72_RS13745 flagellar motor switch protein FliG
1 member
Pseudomonas aeruginosa LES_CF_sputum_CF03_contigs_27_a1 TC72_RS14105 flagellar motor switch protein FliG
1 member
Pseudomonas aeruginosa LES_CF_sputum_CF03_contigs_28_a1 TC72_RS28300 flagellar motor switch protein FliG
1 member
Pseudomonas aeruginosa LES_CF_sputum_CF03_contigs_29_a1 TC72_RS14135 flagellar motor switch protein FliG
1 member
Pseudomonas aeruginosa LES_CF_sputum_CF03_contigs_2_a1 TC72_RS14145 flagellar motor switch protein FliG
1 member
Pseudomonas aeruginosa LES_CF_sputum_CF03_contigs_30_a1 TC72_RS15520 flagellar motor switch protein FliG
1 member
Pseudomonas aeruginosa LES_CF_sputum_CF03_contigs_31_a1 TC72_RS13720 flagellar motor switch protein FliG
1 member
Pseudomonas aeruginosa LES_CF_sputum_CF03_contigs_32_a1 TC72_RS13750 flagellar motor switch protein FliG
1 member
Pseudomonas aeruginosa LES_CF_sputum_CF03_contigs_33_a1 TC72_RS14110 flagellar motor switch protein FliG
1 member
Pseudomonas aeruginosa LES_CF_sputum_CF03_contigs_34_a1 TC72_RS24490 flagellar motor switch protein FliG
1 member
Pseudomonas aeruginosa LES_CF_sputum_CF03_contigs_35_a1 TC72_RS17560 flagellar motor switch protein FliG
1 member
Pseudomonas aeruginosa LES_CF_sputum_CF03_contigs_36_a1 TC72_RS14105 flagellar motor switch protein FliG
1 member
Pseudomonas aeruginosa LES_CF_sputum_CF03_contigs_37_a1 TC72_RS14010 flagellar motor switch protein FliG
1 member
Pseudomonas aeruginosa LES_CF_sputum_CF03_contigs_38_a1 TC72_RS00820 flagellar motor switch protein FliG
1 member
Pseudomonas aeruginosa LES_CF_sputum_CF03_contigs_39_a1 TC72_RS13115 flagellar motor switch protein FliG
1 member
Pseudomonas aeruginosa LES_CF_sputum_CF03_contigs_3_a1 TC72_RS13380 flagellar motor switch protein FliG
1 member
Pseudomonas aeruginosa LES_CF_sputum_CF03_contigs_40_a1 TC72_RS14135 flagellar motor switch protein FliG
1 member
Pseudomonas aeruginosa LES_CF_sputum_CF03_contigs_4_a1 TC72_RS26420 flagellar motor switch protein FliG
1 member