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COG category: Translation, ribosomal structure and biogenesis
Organism: Pseudomonas sp. ADP, ADP

Number of genes found: 4

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# Pseudomonas sp. ADP, ADP

>gid:1169077  atzE  biuret hydrolase
ATGAAGACAGTAGAAATTATTGAAGGTATCGCCTCTGGCAGAACCAGTGC
GCGCGACGTGTGCGAAGAGGCGCTCGCAACCATCGGCGCGACCGATGGAC
TCATCAATGCCTTTACATGCCGTACGGTTGAACGAGCCCGCGCAGAGGCG
GATGCCATCGATGTTCGACGGGCGCGCGGCGAGGTACTTCCGCCTCTTGC
CGGCCTCCCCTACGCGGTAAAGAATCTGTTCGACATCGAAGGCGTGACGA
CGCTTGCCGGCTCGAAGATCAACCGTACTCTCCCGCCTGCGCGCGCAGAC
GCCGTGCTGGTGCAACGGCTGAAAGCTGCCGGCGCCGTGCTCCTGGGCGG
CCTCAATATGGACGAGTTTGCCTATGGATTTACGACCGAAAATACGCACT
ATGGGCCGACCCGGAACCCGCATGACACCGGGCGTATCGCTGGTGGTTCG
TCAGGGGGGTCTGGAGCGGCAATCGCTGCGGGGCAGGTACCACTATCGCT
CGGATCGGACACCAACGGTTCCATACGCGTGCCAGCATCATTGTGTGGCG
TGTGGGGGCTGAAGCCTACCTTCGGCCGCCTGTCCCGGCGAGGGACATAC
CCGTTTGTTCACAGCATTGATCACCTCGGGCCATTGGCCGATAGCGTGGA
AGGCTTGGCGTTGGCCTACGATGCAATGCAGGGCCCGGATCCGCTCGACC
CCGGATGCAGCGCATCGCGCATCCAACCCTCGGTACCGGTCCTCAGTCAG
GGTATCGCTGGGCTCCGGATCGGCGTGCTGGGTGGCTGGTTTCGGGACAA
TGCCGGCCCGGCCGCGCGAGCCGCGGTCGATGTTGCCGCGCTTACGCTCG
GCGCCAGCGAAGTCGTCATGTGGCCCGACGCGGAGATCGGGCGCGCAGCC
GCCTTCGTTATCACTGCCAGCGAGGGAGGCTGTCTGCATCTCGATGATCT
TCGCATCCGTCCGCAAGACTTCGAGCCTCTGTCCGTAGATCGCTTTATCT
CGGGGGTTTTACAACCGGTCGCGTGGTACTTGCGTGCACAGCGGTTTCGA
CGTGTCTATCGAGATAAGGTGAATGCTCTTTTCCGTGACTGGGACATATT
AATCGCTCCCGCAACGCCAATAAGTGCTCCCGCAATCGGCACCGAATGGA
TCGAGGTAAACGGTACACGCCATCCGTGCCGCCCGGCTATGGGACTTCTC
ACTCAGCCGGTCTCCTTCGCAGGCTGTCCGGTGGTCGCCGCTCCAACGTG
GCCTGGAGAAAACGATGGCATGCCGATCGGGGTACAGCTCATCGCGGCGC
CCTGGAACGAATCTCTATGCCTGCGCGCAGGCAAGGTATTACAAGACACC
GGTATCGCCCGACTGAAATGTTAA
>gid:1169078  atzF  allophanate hydrolase
ATGAATGACCGCGCGCCCCACCCTGAAAGATCTGGTCGAGTCACGCCGGA
TCACCTGACCGATCTGGCTTCCTATCAGGCTGCCTATGCCGCCGGTACAG
ACGCCGCCGACGTCATTTCGGACCTGTATGCCCGTATCAAAGAAGACGGC
GAAAATCCGATCTGGATTAGCCTGTTGCCCTTGGAAAGCGCATTGGCGAT
GCTGGCCGACGCGCAGCAACGCAAGGACAAGGGAGAAGCGTTGCCGCTCT
TTGGCATCCCCTTCGGCGTCAAGGACAACATCGACGTCGCAGGCCTTCCG
ACGACTGCCGGGTGTACGGGGTTCGCGCGTACGCCCCGACAGCACGCCTT
CGTCGTACAGCGCCTGGTGGACGCTGGCGCGATCCCGATCGGAAAAACGA
ACCTCGATCAATTCGCGACCGGGTTGAACGGCACTCGCACGCCGTTTGGC
ATTCCGCGCTGCGTGTTCAACGAGAACTACGTATCCGGCGGCTCCAGCAG
TGGCTCCGCAGTGGCCGTCGCCAACGGCACGGTACCGTTCTCGCTCGGGA
CGGACACTGCCGGTTCCGGCCGCATTCCTGCTGCGTTCAACAATCTGGTG
GGCTTGAAACCGACCAAAGGCCTGTTCTCGGGCAGTGGACTGGTTCCCGC
GGCGCGAAGCCTTGACTGCATCAGCGTCCTCGCCCATACCGTAGATGACG
CCCTTGCGGTCGCACGCGTCGCCGCCGGCTACGATGCTGATGACGCTTTT
TCGCGCAAGGCGGGCGCCGCCGCACTGACAGAAAAGAGTTGGCCTCGTCG
CTTCAATTTCGGGGTCCCAGCGGCGGAACATCGCCAGTTTTTCGGTGACG
CGGAAGCCGAGGCGCTTTTCAATAAAGCGGTTCGCAAGCTTGAAGAGATG
GGTGGCACCTGCATCTCGTTTGACTATACCCCCTTCAGGCAGGCTGCTGA
ACTGCTCTACGCCGGCCCTTGGGTTGCGGAGCGCCTGGCGGCCATCGAGA
GCCTTGCGGACGAGCATCCCGAGGTGCTCCACCCGGTCGTTCGTGACATC
ATCTTGTCCGCGAAGCGAATGAGCGCAGTCGACACGTTCAACGGTATCTA
TCGCCTGGCCGACCTTGTCAGGGCTGCAGAGAGCACTTGGGAAAAGATCG
ATGTGATGCTGCTGCCGACGGCGCCGACCATCTACACTGTAGAAGACATG
CTCGCCGATCCGGTACGCCTCAACAGCAATCTGGGCTTCTACACGAACTT
CGTGAACTTGATGGATTTGTCCGCGATTGCTGTTCCCGCAGGCTTCCGAA
CCAATGGCCTGCCATTTGGCGTCACTTTCATCGGTCGGGCGTTCGAAGAT
GGGGCGATCGCAAGCTTGGGAAAAGCTTTCGTGGAGCACGACCTCGCCAA
GGGCAACGCGGCCACGGCGGCGCCACCCAAGGATACCGTCGCAATCGCCG
TGGTAGGTGCACATCTCTCCGACCAGCCCTTGAATCATCAGCTCACGGAG
AGCGGCGGAAAGCTACGGGCAACAACGCGTACTGCGCCGGGATATGCCTT
GTACGCACTCCGTGATGCGACGCCGGCTAAGCCTGGAATGTTGCGCGACC
AGAATGCGGTCGGGAGCATCGAAGTGGAAATCTGGGATCTGCCGGTCGCC
GGGTTCGGTGCGTTTGTAAGTGAAATTCCGGCGCCGTTGGGTATCGGGAC
AATAACACTCGAAGACGGCAGCCATGTGAAAGGCTTTCTGTGCGAGCCAC
ATGCCATCGAGACGGCGCTCGACATCACTCACTACGGCGGCTGGCGAGCA
TACCTCGCGGCTCAATAG
>gid:1169007  orf31  hypothetical protein
ATGGAACACACGAAATTTGAATCAAGCATGCTGCAGATCGCAATCGAGGA
GGCGGAAGCAAGTTTCCTAGAGGGAGGCCTTCCCATCGGATCGGTACTCG
TCCACCGCGGCAAGCTGGTCTCACGCGGACGCAATCTCCGGGCGCAGACC
GGCAGCACTCTCCATCACGCAGAAATGACTGCGCTCGCCAACGCCGGTCG
GCAACCGCCGGAATTTTATCGAGAAACTGTGCTCTACACGACGCTTTCGC
CCTGTCCAATGTGCACAGGAGCGATGATCCTATATGGTATTCCCAAGGTC
GTGATCGGCACCCCAACCGTTCGCGAGTGGGGTGAAGATCGTCTGCGGGA
GCTAGGAGTCGAGGTCGTGCACACCCGCAGTGAGGCCTGCGCGGAACTGC
TCTCCCGTATGATCACGCAGCAGCGTGAGCTGATCCGGGAAGATGGTGGC
AATTTTTTTGCGCAAGCAGGGGTGTGA
>gid:1169014  orf38  putative amidase
ATGACGCCGTTGCTGCATCCGCCGCCCCTTGAGGAAATCGCTGCCATCTT
GGCGCGGCTCGGATTGGGGGGCGGACATGACCTTGATGGATACAGAATTG
CCATGAATGCGGCACTTCCGTCCTTCGCTCGTGTGGAATCGTTGGTAGGT
GAGGGTCGACTGCGGGCGCCAGCTTCCCGAAGAGGTGAAAGGCCCGAGCC
CGGTACGAATCCGACGAACGCGTGGTACCTGAGGACTTCCGTGCGCGAAC
ATCAAAACGGATCCCTGGCAGGAATGCGGATCGCCCTGAAAGACAGCATC
GCGCTGGCTGGAATAGGGATGCGCAACGGCTCGTCCCTGCTTGAGGGGTA
CACTCCCGAATACGATGCCACAGTCGTCCAGCGCCTATTGGGAGCGGGCG
CGGAGATCGCCGGTAAAGCAGTCTGCGAGGATCTCTGCATTTCCGGTGCG
AGCGAAAACGGATAG