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H1-18-all-fractions_k255_3532901_2

Organism: H1-18-all-fractions_metab_conc_71

partial RP 25 / 55 MC: 1 BSCG 31 / 51 MC: 1 ASCG 12 / 38 MC: 1
Location: comp(3978..7700)

Top 3 Functional Annotations

Value Algorithm Source
hypothetical protein n=1 Tax=Microbacterium sp. 292MF RepID=UPI0003626AEF similarity UNIREF
DB: UNIREF100
  • Identity: 32.3
  • Coverage: 1250.0
  • Bit_score: 476
  • Evalue 7.50e-131
Uncharacterized protein {ECO:0000313|EMBL:KHK99949.1}; TaxID=1348253 species="Bacteria; Actinobacteria; Micrococcales; Microbacteriaceae; Microbacterium.;" source="Microbacterium mangrovi.;" similarity UNIPROT
DB: UniProtKB
  • Identity: 36.9
  • Coverage: 1274.0
  • Bit_score: 606
  • Evalue 6.70e-170
TPR repeat-containing adenylate/guanylate cyclase similarity KEGG
DB: KEGG
  • Identity: 29.3
  • Coverage: 1332.0
  • Bit_score: 410
  • Evalue 1.10e-111

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Taxonomy

Microbacterium mangrovi → Microbacterium → Micrococcales → Actinobacteria → Actinobacteria → Bacteria

Sequences

DNA sequence
Length: 3723
ATGAGCATCGGTGTGGCGACCGGGTTCCGGCCGTATGTCCCGAGGCTGGCAGCGGAGTGGGACCTGACCACGCCGGGCGAGCGCGCGCGCGTGATCGACGGTTCGCTGCTCGGTCTCGACATCTCCGGCTTCACGGCCCTCTCGGAGCGGTTGCAGGAGAAGGGGAAGCTCGGGGCCGAGGAGCTGATCATGTTGATCGGCGGCTGTTACTCGGGGCTAATCGACATCGCCGCCCGCTACGGCGGCGACGTGCTCAAGTTTCGCGGGGACGCGCTCCTGATGGTGTTCGAGGGAAGCGGCCACGAGGCAGGGGCGGCAGCCGCCGCGCTGGCTATGCAGCGGTTCATCGCGGAAGGCGGCGCCGCCGGCGAGTCCAGCGTCGGCCCCGTGCAGCTCTCCATGTGCGCGGGGCTCGTCTCCGGCGACTGCCACTTCTTCCTTGTGGGGCGCCACCACCGCGAGCTGCTCGTGTGCGGCCCGTCTGCCTCCCTGACGCTGAAGCTCGAGGATGCCGCCGAGCGGGGTGAGGTGCTCGTCTCGCCTCGCACGGCCGAAGCACTCGAGGGGCTCGTCGCCGGTGAGCGGGACGGCGCGTATCGGCTGCGTGCGGATGCGGGGGACCCCGAACTCCCGCTTCTCCCCGACGAGCACGACCTCGCACCGGAGGGCCTCACGGAGCTCGTGCCGCCGCCCCTGCGCCTGCTGATCGAGCAGAACGCCGTCGAGGCCGAGCATCGCCGCGTGACCGCGGCTTTCGTCAAGTACTCCGGCACCGACGAGCTCGTGGAGCGGCTCGACGAGGCGACGGCCGCGCTCTCCGACCTCGCCGACGTCGTCTCGACCGAGACCGAGGAGCGACGCGTGACGTGGCTGGAGTCGGACATCGACGCAAACGGGGGCAAGCTCTACCTCGTTGCCGGAGCTCCCGCGAGCGAGGGTGACGAGGAGGAACGCATGCTGCGGACGCTGCGTGCGGTCGTCGACGCGCACGCCGGGCTTCCGATCTCGGTCGGCGTGAACCGCGGCCCCGTACTCACCGGCCCCATCGGCTCCGACCGCCGCAACACGTACGCGGTGATGGGAGACACGGTCAATCTCGCGGCACGGCTCTGCGCCCGCGCGGAGAAGGGCGAGATCCTCGCGACGGGGGACGTCCTCCAGCGCTCGCGCACGCGTTTCGAGACGACCTCGCGACAGTTCCTGATGAAGGGCAAGGCGAAGCCGGTCACGGGCTACTCGGTCGGCCCGATCGCGGCCGAAGGGGTGGAGCAGGCGCAAGCGCTCTTGCCGCTCGTCGGCCGCGACGCCGAAGTCGCGGCGTTGCAGGAGGCGCTGAACGCCGCCCGGATGCGCCAGAGCCGCGCGGTCGAGCTCGTCGGCGAGCCGGGCGTCGGCAAGACGCGCCTCGTCGAGGAGCTCGTCGCGTCGGCGGTCGGGTTCCAGGTGCTGCGGACGCGCTGCGAGCCTTACGCCTCCTCGACACCGTTCGCTCCTCTGCGGACACTGCTGCGGCCGCTCGTGGGAATCCTCCCCGAGGACCCGCCGGATGCCGCCGGTGCCAAGCTGACCGCGTTCGCCACGGGCGTGATGCCCGACCTCGCGCTCTGGCTGCCGCTCCTTGCGCTTCCCTTCGACGCCGAGGTGGCCTCGACGCCGGAGGTGGACGAGATCGACCCGGCCTTCAGGCGCGACCGGCTGCACGAGGTGCTGGACCAGTTCCTGATGCGCCTGCTGCTGATGCCGACCGCGCTCGTCGTCGAGGACACGCATTGGCTCGACGACGCATCGCAGCTCGTGCTGGCGAAGCTCGCTCAGCCGGGGCCGCGGCCGTGGCTCGTGGTGGCGACCCGCCGGCCGTCAGGCACGGCACTCGGCGAGACCGCGACCGTGCTCGAGCTGCAGCCGCTCGCCGCCGACGACGCCCGCAGCCTCGCGCTCGCAGCCGCCGGAGACACTGCCCTCTCCGAGGCCGAGCTCGCGGCCCTCACCGAGCGCGCGGCCGGCAACGCCCTCTTCATCCGCGAGCTCGCCGTCGCGCCGAGCGGCGAAGACGCGCTTCCGGAAACGGTCGAGTCGCTGCTCACGAACCGCATCGACACGCTGCATCCGTCGGACCGCGTGCTGCTGCGCCATGCCTCCGTGATAGGGCAGTCGTTCGACCTCGACCTCCTCACCGACACGCTCACCGACGAAGGCGCCGACCCCGAGCAGTGGGAACGGCTTGCGGACTTCGTCGACTGGGAGGGGGCGTCCCGGCTCCGCTTCCGGCACGATCTCGTACGGGCGGCGGCCTACGACGGGCTCTCGTTCGCCCGGCGGCGGGAGATACACGCCCGCGTCGGCGAGGCGCTCGAGCGGCGGATGGTCGACGGCACAGCGCAGTCGGGCGTGCTGTCGCTCCACTTCCTCGAGGCCGCGGAGTGGGACAAGGCATGGCGGTACGCGGTGTTGGCCGGGGACGATGCGCGCTCGAAGCACGCGAACGTCGACGCGGCGACGTTCTACGAGCGCGCGCTCATTGCCTCCGTCTCGCTCGAGCCGCCGAAGGAGGACGTCGCGCGCGTGTGCGAGGCGCTCGGCGACGTCCGCGAGCTCGTCGCGAAATTCGCCGAGGCGGACGGGGCTTACGTGCAGGCGCTCGAGCGGGGCGGCTCGGCCGCGCGGGTGATGCGCAAGCGCGGGATCGTCGCCGAGCGGCAGGGCCGCTACCACGACGCGCTCGCTCTCTACGACGCGGGTGCCGCCGGTGCGGACGCGAACGAGCGCGTCGCGCTGCAACTCGCCCGCGCGATCGTGCTCTACCGTCAGGGCGAGATCGACGACAGCGCCCGGACCGCCGAGGAAGCGGCCGCGGCGGCGATGGCGCTGGACGACCGCGAGGCGCTCGCAAACGCGTACTGGATCCGGGCGCTGGCGGAGGGCGACCGCGGAGGGCCGGCGGGCGAGTTCCTCGCGCTCGCGCTGCCGATCTTCGAGGAGCTCGGCCTCCTCCAGATGCAGGTCAAGGTGCTGCAGAACACGGCCGTGCGCGCCTTCTACGACAGCGAGTGGGAGAAGGCGGTGGAGTACTACGGCCGGACGGCGGCTATGGCCGAGCGCGCGGGGGACGTGATCGGGATGGGGATCGCGGCGCTCAACCATGGCGAGCTGCGCCTCCACCAGGGCCGGCTCGACGAGGCCCAGGAGCTGCTCGAGGGAGCGCTCCGCACCTTTCGAGCCGCGAAGTTTCCGATCGGCGAGGCATTCGCGCTCGTCTACCTCGGCCATCTCGCCGCGGAGCAGTCGCGCTTCGGCGACGCCTACGGCCTCTTCGACACCGCGCTCGAGCGGCTGGCGGCGACGGGGTCGAAGAGCCTGCTGATCGAGGCCGACGCGCGACGGGCCCAGGCGTACGTGCTCGAGGGGCGGCACGAGGAGGCGGCGGCCCTCGCGCGCGAGTGCCTCGAGCGCGAGCACGAGACCGGCGAGACGGGCGGCCGGACGGCGCTGCTCGAGCGGCTGCTCGCCGTCGCTGCGGTACAGGGTCGCCGGCGCGACGACGCGCCGCTGCACTTCGAGGAGAGCCTGCGCGTCGGCCGCGAGTTCGGCTCCCACTACGAGGTCGGCCGCACGCTCCAGGCGAAAGTGCTGACGGGCTTCGCTTCGGACGAGGAGCTCGCGGAGGCCGAGGCGATCATGGCGCGCCTCGGCGTCGTCTCGCTTCCGGACGTGCCGCTGCCCTAG
PROTEIN sequence
Length: 1241
MSIGVATGFRPYVPRLAAEWDLTTPGERARVIDGSLLGLDISGFTALSERLQEKGKLGAEELIMLIGGCYSGLIDIAARYGGDVLKFRGDALLMVFEGSGHEAGAAAAALAMQRFIAEGGAAGESSVGPVQLSMCAGLVSGDCHFFLVGRHHRELLVCGPSASLTLKLEDAAERGEVLVSPRTAEALEGLVAGERDGAYRLRADAGDPELPLLPDEHDLAPEGLTELVPPPLRLLIEQNAVEAEHRRVTAAFVKYSGTDELVERLDEATAALSDLADVVSTETEERRVTWLESDIDANGGKLYLVAGAPASEGDEEERMLRTLRAVVDAHAGLPISVGVNRGPVLTGPIGSDRRNTYAVMGDTVNLAARLCARAEKGEILATGDVLQRSRTRFETTSRQFLMKGKAKPVTGYSVGPIAAEGVEQAQALLPLVGRDAEVAALQEALNAARMRQSRAVELVGEPGVGKTRLVEELVASAVGFQVLRTRCEPYASSTPFAPLRTLLRPLVGILPEDPPDAAGAKLTAFATGVMPDLALWLPLLALPFDAEVASTPEVDEIDPAFRRDRLHEVLDQFLMRLLLMPTALVVEDTHWLDDASQLVLAKLAQPGPRPWLVVATRRPSGTALGETATVLELQPLAADDARSLALAAAGDTALSEAELAALTERAAGNALFIRELAVAPSGEDALPETVESLLTNRIDTLHPSDRVLLRHASVIGQSFDLDLLTDTLTDEGADPEQWERLADFVDWEGASRLRFRHDLVRAAAYDGLSFARRREIHARVGEALERRMVDGTAQSGVLSLHFLEAAEWDKAWRYAVLAGDDARSKHANVDAATFYERALIASVSLEPPKEDVARVCEALGDVRELVAKFAEADGAYVQALERGGSAARVMRKRGIVAERQGRYHDALALYDAGAAGADANERVALQLARAIVLYRQGEIDDSARTAEEAAAAAMALDDREALANAYWIRALAEGDRGGPAGEFLALALPIFEELGLLQMQVKVLQNTAVRAFYDSEWEKAVEYYGRTAAMAERAGDVIGMGIAALNHGELRLHQGRLDEAQELLEGALRTFRAAKFPIGEAFALVYLGHLAAEQSRFGDAYGLFDTALERLAATGSKSLLIEADARRAQAYVLEGRHEEAAALARECLEREHETGETGGRTALLERLLAVAAVQGRRRDDAPLHFEESLRVGREFGSHYEVGRTLQAKVLTGFASDEELAEAEAIMARLGVVSLPDVPLP*