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Accession Number |
TCMCG028C21212 |
gbkey |
CDS |
Protein Id |
KAF6139301.1 |
Location |
complement(join(989090..989216,989294..989370,989788..989868,989988..990044,990140..990196,990298..990397,990526..990596,990691..990840,991306..991512,991607..991765,991865..992035,992347..992406,992507..992551,992632..992746,993251..993352,993446..993585,993668..993883,994323..994421,994495..994614,994762..994967,995079..995256,995370..995430,995522..995628,995786..995917,996011..996178,996269..996395,998579..998616,998705..998806,998881..998938,999011..999112,999698..999844,999960..1000096,1000163..1000324)) |
Organism |
Kingdonia uniflora |
locus_tag |
GIB67_021511 |
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Length |
1292aa |
Molecule type |
protein |
Topology |
linear |
Data_file_division |
PLN |
dblink |
BioProject:PRJNA587615, BioSample:SAMN13195877 |
db_source |
JACGCM010002501.1
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Definition |
hypothetical protein GIB67_021511 [Kingdonia uniflora] |
Locus_tag |
GIB67_021511
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CDS: ATGGATCCTCAGGAAGTCAAGAAGTACAAACTAGGAGATCCAAGAACCTTTCACTATCTTAACCAAACAAACTGCTACGAAGTAGCAAATGTCGATGATGCTAGGGAGTATCTGGATACTAGAAATGCAATGGATGTTCTTGGGATCAGCCAGGATGAACAGGATGCGATATTTCGGGTAGTGGCTTCTGTTCTTCATCTAGGGAACATTGAATTCATCAAAGGGAAGGAATTTGATTCTTCAAAAGTTAAAGATGATAAAGCACTATTCCATCTTAAAACAGCAGCGGAGCTGCTTATGTGTGATGAGAAATCCCTTGAGGACTCTCTGACTAAGCGTGTTATAGTTACACCTGATGGTAACATTACAAAATTTCTTGATCCAGCTTCAGCTGCATCAAACCGTGATGCCTTGGCAAAGACAGTGTACTCCAGATTATTTGATTGGATTGTAGACAAAATCAATAACTCTATTGGTCAGGATCCTACTGCGACCAGTTTAATTGGAGTCCTTGATATCTACGGATTTGAAAGCTTCAAGGTCAACAGTTTTGAGCAGTTATGTATCAACCTCACAAATGAAAAGTTGCAACAACATTTCAACCAGCATGTATTTAAAATGGAGCAAGAGGAATACACAAAGGAAGAGATCAACTGGAGTTATGTTGAATTTGTAGATAATCAAGACGTCTTGGACCTTATTGAAAAGAAACCTGGAGGAATAATTGCTGTCCTTGATGAACAATGTATGTTCCCCAAGGCAAACCATGAGACTTTTGCGCAAAAGATGTACCAGCAATATAAAAACCACAAAAGATTCAGCAAGCCAAAGCTTGCTAGAACAGATTTCACTATCAACCATTACGCTGGTGATGTTACTTACCAAGCTGATCACTTCCTAGACAAAAACAAGGATTATGTTGTAGCGGAACATCAAGCTCTATTGAATGCCTCAAAGTGCTCTTTTGTTGCAAGTCTCTTTCCTCAGCTCGAGGAAACTTCAAAGCAATCCAAGTTTTCTTCCATTGGTACACGTTTCAAGCAACAACTACAAGCGCTGATGGAAACCTTGAGCACGACGGAGCCACATTACATCAGATGCGTGAAACCCAACGCTGTGTTAAAGCCTGGGATTTTTGAGAACTTTAACGTCTTACAACAACTAAGATGTGGGGGTGTGCTCGAGGCAATAAGAATAAGCTGTGCGGGGTATCCCACAAAGAGAACGTTTGATGAGTTCCTTGATCGTTTTGGAATGCTCACACCAGAAGCTGTAGATGGTTCTGATGAGAAATCAGCGTGTGCGGCCATTTTGGATAGAATGGGGTTATTGGGCTATCAGATAGGGAAAACGAAGGTTTTTCTTAGAGCTGGGCAAATGGCTGAATTAGATGCTCGGAGAATCGAAATATTGGCTCATGCTGCTAGAAGTGTACAAAGACAAATACGAACATATCTTACTCGAAAAGATTTTATTACCCTGCGAAGGGCCACAATCAATTGGCAAAAACTATGGCGAGGACGGCTTGCACGTATACTATATGGAGACATGAGGAGGGAAGCTGCTTCTATACGTATCCAAAAGCATGCTCGTGGACATGCAGCTAGACAATCTTATAAGAAAATGCTAGCATCAGCTATAGTTATTCAAACTGGTATGCGAGCAATGGCGGCCCACAAAGAATATAGATACAGAAGGAGTACTAAAGCTGCAAAAATCATTCAGACACAATGGCGTGGATTCCAAGCTCGTTCAGCATATAAGCAACAGAAGAAGGCTACTCTTACATTTCAATGTCTCTGGAGAGGAAGGATAGCGAGGAAAGAACTTAGAAAGCTTAAAATTGATGCTCGAGATACAGGAGCCCTTAGGGAAGCAAAAGACAAGCTGGAGAAGCGAGTTGAAGAGCTAACATGGCGTCTAGATATTGAAAAGCATATGAGGATTGACCTTGAAGAAGCAAAAGGACAGGAAATTGCAAAACTTCAATCCACTTTGAACGAAATGCAAGGGCAATTAGAAGAAGCTCATGCTGCTATCATCCAGGAGAGAGAGGCAGCAAAGATAGCCATAGAACAAGCACCGCCAGTCATCAAAGAGGTTCCTGTTGTGGATAACACCAAACTAGAGTTACTCGCAAATCGCAATGAGGAACTAGAGGGTGAGCTGAGCGAGTTGCAGAAGAAGATCGAGGAACTTGAAAGAAGGAATTTGGAGCAACAAAATGAAAGTGAATCAAGTTCTAAAAAGGCAGAAGAATTACAATCAAGAATATCACAATTTCAAGAAACAGTTGAAAGATTAGAAGTGAATTTGTCCAACTTGGAATCTGAGAACCAGGTTCTTCGTCAGGAAGCTTTGGATGCATCAACAAATGAAGACATTTCTGAAGAAGTAAAGATTCTTGAGAGCAAAATCGCAAGCTTGGAGACTGAGAATGAACTTCTCCGCAATCAAAAACCAGTTGTTGTACAGCAATTAGTTCCTGTTGAACAAATACAGGCACCGGAAACTAAGATATTTGAGAATGGGCAAGAACGCGAAGAAGTTCAGAAAGCAAAAGAGGTCGTGCATGTTGCAATAGCCTTAACAAAACAAAAATCCTTAACGATTCGGCAGCAGGAAAACCATGACCTTCTTATCAAGTGTCTCATCGAAGACAAGAGATTTGAGAACAATAAACCTGTTGCCGCTTGTATTGTTTATAAAACACTTCTTCAGTGGAGATCCTTCGAAGCAGACAAAACAAACATATTCGATCGAATTATTCACACAATACGGTCATCCATTGAGGAACAGAAGAATATTAGTGACCTTTGTTATTGGCTCTCTACAACATCTACTCTTCTGTTTCTTCTACAAAATACTCTGAAGGCAAGCAATGCACCAAGTGCAGCTTCACACCGTAATAGAACCTCGCCAACAACCTTGTTTGGCAGAAAAATGACACAAGGCTTCCGATCAAATCCATCAGGCATGGGGACTTCAAGTGGGTATAGTGGAATTACGGAAAAGCCGGACATACAATCAAGAGTTCAAGCAAAATACCCAGCATTGCTATTTAAGCAACATTTAACAGCATATGTGGAGAAAATATATGGGATGACTCGTGACAGTTTGAAGAAAGAGATTAGTCCTTTACTGAACCTTTGCATACAGGCTCCCAAATCTGTGAGGCCTAGATCAACCAGAGGGTTGTCAAGAAAAATGCAATCATATATTGCTGCAAAACAACAAGCACCAAGTATACACTGGCAAAGCATCGTGAAGAGCCTGGATCATACATTGGGTGTCATGTGTGAGAACCATGTTCCTTCTATGATCATAAGGAAAACCTTCAGCCAAGTATTTTCGTTCATTAATGTGCAGCTTTTTAATAGTTTATTACTTCGCCGGGAGTGCTGCTCATTTAGCAACGGAGAATATGTAAAAGCGGGGCTACAAGAATTAGAGCAGTGGTGCACCAAAGCGACAGACGAGTATTCTGGATCATCGTGGAATGAACTTCAACACATTAGACAAGCTGTTGGTTTTTTGGTATCACATCAAAAGCATCAGAAATTTGTGGATGAGATAGCAAAAGAACTCTGCCCGGTATTGAGCATTCCACAAATATATCGCATTGGAACGATGTTCTGGGACGACAAATATGGAACCCAAGGATTATCACAAGAAGTCATCGGCAAAATGAGAACCCTAATGTCTGAAGATTCGATAGTCAATACTTCATTCTTACTCGACGCAGATTCAAGTATACCTTTCTCCCTAGAGGAAATCTCGCGATCCTTTCTCGACATCAGCATCTCCAACGTCGAACCACCAGATCTCCTTCGCCAAAATTCCGAGTTCAAGTTCCTTGTGTCACAATGCACAGAGTAG |
Protein: MDPQEVKKYKLGDPRTFHYLNQTNCYEVANVDDAREYLDTRNAMDVLGISQDEQDAIFRVVASVLHLGNIEFIKGKEFDSSKVKDDKALFHLKTAAELLMCDEKSLEDSLTKRVIVTPDGNITKFLDPASAASNRDALAKTVYSRLFDWIVDKINNSIGQDPTATSLIGVLDIYGFESFKVNSFEQLCINLTNEKLQQHFNQHVFKMEQEEYTKEEINWSYVEFVDNQDVLDLIEKKPGGIIAVLDEQCMFPKANHETFAQKMYQQYKNHKRFSKPKLARTDFTINHYAGDVTYQADHFLDKNKDYVVAEHQALLNASKCSFVASLFPQLEETSKQSKFSSIGTRFKQQLQALMETLSTTEPHYIRCVKPNAVLKPGIFENFNVLQQLRCGGVLEAIRISCAGYPTKRTFDEFLDRFGMLTPEAVDGSDEKSACAAILDRMGLLGYQIGKTKVFLRAGQMAELDARRIEILAHAARSVQRQIRTYLTRKDFITLRRATINWQKLWRGRLARILYGDMRREAASIRIQKHARGHAARQSYKKMLASAIVIQTGMRAMAAHKEYRYRRSTKAAKIIQTQWRGFQARSAYKQQKKATLTFQCLWRGRIARKELRKLKIDARDTGALREAKDKLEKRVEELTWRLDIEKHMRIDLEEAKGQEIAKLQSTLNEMQGQLEEAHAAIIQEREAAKIAIEQAPPVIKEVPVVDNTKLELLANRNEELEGELSELQKKIEELERRNLEQQNESESSSKKAEELQSRISQFQETVERLEVNLSNLESENQVLRQEALDASTNEDISEEVKILESKIASLETENELLRNQKPVVVQQLVPVEQIQAPETKIFENGQEREEVQKAKEVVHVAIALTKQKSLTIRQQENHDLLIKCLIEDKRFENNKPVAACIVYKTLLQWRSFEADKTNIFDRIIHTIRSSIEEQKNISDLCYWLSTTSTLLFLLQNTLKASNAPSAASHRNRTSPTTLFGRKMTQGFRSNPSGMGTSSGYSGITEKPDIQSRVQAKYPALLFKQHLTAYVEKIYGMTRDSLKKEISPLLNLCIQAPKSVRPRSTRGLSRKMQSYIAAKQQAPSIHWQSIVKSLDHTLGVMCENHVPSMIIRKTFSQVFSFINVQLFNSLLLRRECCSFSNGEYVKAGLQELEQWCTKATDEYSGSSWNELQHIRQAVGFLVSHQKHQKFVDEIAKELCPVLSIPQIYRIGTMFWDDKYGTQGLSQEVIGKMRTLMSEDSIVNTSFLLDADSSIPFSLEEISRSFLDISISNVEPPDLLRQNSEFKFLVSQCTE |