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Accession Number |
TCMCG028C09440 |
gbkey |
CDS |
Protein Id |
KAF6136882.1 |
Location |
join(443772..443807,444265..444310,447455..447514,447618..447698,454309..454394,456671..456772,457071..457124,459314..459415,459885..459943,462719..462863,463666..463773,471833..471985,472122..472226,475501..475697,480570..480681,481030..481061,481339..481686,481953..482232,483833..483916,484477..484575,484675..484820,484956..485013,485334..485426,486263..486313,486437..486568,489602..489703,493951..494005,497472..497557,498362..498510,499346..499451,499564..499617,501026..501137,501753..501895,502824..502872,503437..503501) |
Organism |
Kingdonia uniflora |
locus_tag |
GIB67_018921 |
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Length |
1229aa |
Molecule type |
protein |
Topology |
linear |
Data_file_division |
PLN |
dblink |
BioProject:PRJNA587615, BioSample:SAMN13195877 |
db_source |
JACGCM010002668.1
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Definition |
hypothetical protein GIB67_018921 [Kingdonia uniflora] |
Locus_tag |
GIB67_018921
|
CDS: ATGGTTGACGTTTCTACTTATTCAATATTATTTGAGGAGTTACGGGCGTACCAAGCTGATATTGCTACTGTGCTACGAAATGGTTGCTTCTCAATTATACCTGCAACAGATCTTGTACCTGGAGATATTGTTGAAGTTGGAGTGGGATGCAAAATACCTGCAGACATGAGGATGATTGAGATGCTAAGTAATCAACTGCGTGTAGATCAGGCAATTCTTACAGGTGAAAGCTGTTCTGTGGCAAAAGAGCTCGATTCTACCTCTGCAACCAATGCCGTGTACCAAGATAAAATAAGCATTCTTTTCTCGGGTACAGTAGTGGTGGTTGGTAGAGCAAGAGCTGTTGTAGTCGGAGTTGGCTCTAACACTGCTATGGGTGGTATACGGGATGCAATGTTAAGTACAGAAGATGAAGTGACACCGCTGAAGAAGAAGCTGGATGAATTTGGCACTTTTTTAGCTAAGGTAATTGCAGGAATTTGCGTCTCAGTATGGATTGTAAACATTGGACACTTCCGCGATCCTTCTCATGGTGGTTTCTTACGGGGTGCAATACATTACTTCAAGATTGCAGTTGCTCTTGCAGTCGCAGCAATTCCGGAGGGTCTCCCAGCAGTTGTTACAACGTGTTTAGCTCTTGGGACAAAACGAATGGCTCGGTTGAATGCCATAGTAAGGTCTTTGCCTTCTGTAGAGACCCTAGGGTGTACTACAGTAATATGCAGTGACAAGACAGGTACTCTTACAACAAACATGATGTCTGTCTCAAAGGTATGCATGGTTCGTTCTGTACACCAGGGTCCTATTACTGCTGAATTCAGTGTTAATGGGACAACATATGCACCGGAAGGCACCATTTTTGACAGTGAGGGGCTGCAGCTTGAGTTTCCAGCTCAGTTTCCCTGCCTTCTTCACATTGCAATGTGTTCATCTCTTTGTAATGAGTCGACATTACAATATAATTCGAACACGGGTAACTACGAGAAGATTGGTGAGTCAACTGAAGTTGCTCTCCGTGTACTGGCCGAAAAGGTTGGTCTTCCTGGTTTTGATTCTATGCCTTCAGCTCTGAATATGCTCAGCAAGCATGACCGTGCATCGTACTGTAATCATTATTGGGATAATCAGTTTAAAAAGGTTTCACTTTTGGATTTTTCTCGTGATCGCAAAATGATGAGCGTCCTCTGTAGCCGAAAGCAGCAGGAGATTATGTTTTCAAAAGGCGCTCCTGAAAGTATACTTTCTAGATGTACAAGTGTACTCTGCAATGACGATGGATCTACAGTTTCACTTACAAACAACATTCGGACTGAGTTGGAGGCTAGATTCCATAGTTTTGCGGGAAAAGAAAGCCTAAGATGCTTAGGTCTTGCATTAAAACGGATGCCCATGGGTCAGCAAACTCTATCCTTTGATGATGAGAAGGACCTTACATTTATTGGATTGGTATATAGGAAGGAAATTGGCAAAAAAAAAAATGATTTTGCTACCAAAGCAAGGATAAATCCTAGGTTTGCTATGTACTTACAAGCAATTATTCGAATTGCGGAGATTGATGCGAGTGTTATAAGTGAGGGATCGATTGAGATCAATGGAGGCAACTTAAGCATGAGCCAACACGGAGAATCAACGGAGAGAGAGTCTCAACGGGTGATTGATGTGATTGGTAAAGGAGTAGAGGACGCGTTGGGAAATTTACGATCAAAATCTCACCACGGGGTTGTGATTTTGGAGCGTGAATCCCACCAAATTGAAAACCCTACTCATGACAAAATTCAACCCAAGAGCACAACCACAATCTCCGTTACCAAGAATTCGTCAATTGGAATTCGTCAATTGGGTAAGAACGAATCACAAATCGTAAAATCCAATCAGTTGGGGTCAGAGGGAACACAAATTAATGCCAGAATTGATGGGGTTTTGACGGCAACTAGTAGCGGGTTGACCGGAATTTGCGAGGGCAGCAGTACGGCAACGACAGGGTCGACAGCGGCAGGCCTTGAGGCGGACGGTAGGGTTGCCGGTAAACCTGTGGAGATACCGGCAGACCTTGTTGCTGATGTCTGGGAAGCCAAAGAGGAGCTAGGGTCACCGGTGATAACAATCCGGGTTGATACATCGGGACATAGAGAGTTTCTGGTTCGATGGGTAGATAAAGGGACCGAGGTTGATTCGTGGATTTCTGTAGAGGTTGGAATGCTTGATCCACCAAGGGATGAAGTAAGAGACGCTATACTTTCTTGTATGTCTGCTGGCATACGTGTTATAATTGTCACTGGAGATAACAAGTCTACTGCGGAATCTCTATGTCGCCAAATTGGCGCATTCGGGCACTTGGAAGACTTTGTTGGACGTTCTTATACTGCTGCGGAGTTTGAAGAACTTCCAGCCTTGCAGAAAACTGTGGCATTACAGCGTATGCTACTCTTCACCAGGGTTGAACCATCTCATAAAAGAATGCTAGTTGAAGCCCTTCAGAACCAGAATGAAGTGGTTGCTATGACTGGTGATGGTGTCAATGATGCACCTGCATTGAAGAAGGCTGACATAGGAATTTCCATGGGATCAGGAACAGCAGTTGCAAAGAGTGCTTCGGACATGGTATTGGCTGATGACAATTTTGCTTCAATTGTTGCGGCTGTTGCAGAAGGAAGGGCCATTTATAATAACACAAAGCAGTTCATTAGATACATGATCTCTTCAAATATTGGTGAAGTAGTTTGCATCTTTGTTGCTGCAGTACTTGGAATACCTGAAACCCTTGTCCCGGTGCAACTACTATGGGTTAATCTTGTCACCGATGGATTGCCTGCCACTGCTATTGGTTTCAATAAACAAGACTCGGATGTTATGAAAGTCAAACCTCGGAAGGTTAGCGAAGCTGTTGTTAGCGGGTGGCTATTTTTCCGTTATTTGGTTATTGGAGCATATGTTGGTCTTGCAACTGTTATGGGGTTTATATGGTGGTTTGTTTATGCTGATGATGGTCCCAAACTACCATATCATGAATTGATTAAATTTGATACGTGTTCCACAAGGGAGACTACCTACTCGTGTAGTATATTTGATGATCGTCATCCATCGACTGTATCAATGACCGTTCTTGTTGTTGTTGAGATGTTCAATGCCTTGAATAACCTTAGTGAAAATCAATCTCTTCTTGTAATCGTTCCATGGAGCAACTTATGGCTTGTTGCGTCAATCGCTCTGACTATGCTTCTTCATATACTAATTTTATACGTGCAACCTTTGTCCATTATGTTCTCTGTGACACCATTGTCATGGGCTGAGTGGACTGCTATCCTGTATCTTTCTTTTCCAATTGAGGTACTTGGCAGAATTTTAGAGGACTGTGACATTGAGAAGGGCCTTTCTCAGGAGGTGGGTTTTGAAGAGCCCTTGGAAAAAGATGAAGTACTTATAAAACATATAGGGTGGATGTATGAAGAGGCTGCAACTGTGACCTTAGGAAGTATGGCAGTCAGTGAGAAGGCTGATGGAATGTTGTCAGCCTCAGCCACAGCGTTGAATGTTATAAAGTTCGGAACAGACTTGTCGGCAGGGGCTGAGAGGGAGGTTATAATCATTGACGAGATATTGAAGTTTATATCAAGAAATTACAGAGGTTTGAGATTCAATCTCAGATACAGAACTGATTTACTTCCAAAAAGGGAAGTGCGGGATAAGTAA |
Protein: MVDVSTYSILFEELRAYQADIATVLRNGCFSIIPATDLVPGDIVEVGVGCKIPADMRMIEMLSNQLRVDQAILTGESCSVAKELDSTSATNAVYQDKISILFSGTVVVVGRARAVVVGVGSNTAMGGIRDAMLSTEDEVTPLKKKLDEFGTFLAKVIAGICVSVWIVNIGHFRDPSHGGFLRGAIHYFKIAVALAVAAIPEGLPAVVTTCLALGTKRMARLNAIVRSLPSVETLGCTTVICSDKTGTLTTNMMSVSKVCMVRSVHQGPITAEFSVNGTTYAPEGTIFDSEGLQLEFPAQFPCLLHIAMCSSLCNESTLQYNSNTGNYEKIGESTEVALRVLAEKVGLPGFDSMPSALNMLSKHDRASYCNHYWDNQFKKVSLLDFSRDRKMMSVLCSRKQQEIMFSKGAPESILSRCTSVLCNDDGSTVSLTNNIRTELEARFHSFAGKESLRCLGLALKRMPMGQQTLSFDDEKDLTFIGLVYRKEIGKKKNDFATKARINPRFAMYLQAIIRIAEIDASVISEGSIEINGGNLSMSQHGESTERESQRVIDVIGKGVEDALGNLRSKSHHGVVILERESHQIENPTHDKIQPKSTTTISVTKNSSIGIRQLGKNESQIVKSNQLGSEGTQINARIDGVLTATSSGLTGICEGSSTATTGSTAAGLEADGRVAGKPVEIPADLVADVWEAKEELGSPVITIRVDTSGHREFLVRWVDKGTEVDSWISVEVGMLDPPRDEVRDAILSCMSAGIRVIIVTGDNKSTAESLCRQIGAFGHLEDFVGRSYTAAEFEELPALQKTVALQRMLLFTRVEPSHKRMLVEALQNQNEVVAMTGDGVNDAPALKKADIGISMGSGTAVAKSASDMVLADDNFASIVAAVAEGRAIYNNTKQFIRYMISSNIGEVVCIFVAAVLGIPETLVPVQLLWVNLVTDGLPATAIGFNKQDSDVMKVKPRKVSEAVVSGWLFFRYLVIGAYVGLATVMGFIWWFVYADDGPKLPYHELIKFDTCSTRETTYSCSIFDDRHPSTVSMTVLVVVEMFNALNNLSENQSLLVIVPWSNLWLVASIALTMLLHILILYVQPLSIMFSVTPLSWAEWTAILYLSFPIEVLGRILEDCDIEKGLSQEVGFEEPLEKDEVLIKHIGWMYEEAATVTLGSMAVSEKADGMLSASATALNVIKFGTDLSAGAEREVIIIDEILKFISRNYRGLRFNLRYRTDLLPKREVRDK |