CDS

Accession Number TCMCG016C17940
gbkey CDS
Protein Id OMO70274.1
Location join(31052..31297,31392..31612,31742..32192,32302..32366,32978..33171,33283..33491,36440..36559,36646..36691,36808..36893,37126..37255,37974..38018,38568..38656,41075..42502)
Organism Corchorus capsularis
locus_tag CCACVL1_19028

Protein

Length 1109aa
Molecule type protein
Topology linear
Data_file_division PLN
dblink BioProject:PRJNA215142; BioSample:SAMN03290679;
db_source AWWV01011826.1
Definition Glycosyl transferase, family 4 [Corchorus capsularis]
Locus_tag CCACVL1_19028

EGGNOG-MAPPER Annotation

COG_category J
Description Ribosomal protein S11
KEGG_TC 9.B.146
KEGG_Module M00177        [VIEW IN KEGG]
KEGG_Reaction R05629        [VIEW IN KEGG]
R05630        [VIEW IN KEGG]
KEGG_rclass RC00002        [VIEW IN KEGG]
RC02753        [VIEW IN KEGG]
BRITE br01610        [VIEW IN KEGG]
ko00000        [VIEW IN KEGG]
ko00001        [VIEW IN KEGG]
ko00002        [VIEW IN KEGG]
ko01000        [VIEW IN KEGG]
ko01011        [VIEW IN KEGG]
ko03011        [VIEW IN KEGG]
KEGG_ko ko:K01000        [VIEW IN KEGG]
ko:K02955        [VIEW IN KEGG]
EC 2.7.8.13        [VIEW IN KEGG]        [VIEW IN INGREDIENT]
KEGG_Pathway ko00550        [VIEW IN KEGG]
ko01100        [VIEW IN KEGG]
ko01502        [VIEW IN KEGG]
ko03010        [VIEW IN KEGG]
map00550        [VIEW IN KEGG]
map01100        [VIEW IN KEGG]
map01502        [VIEW IN KEGG]
map03010        [VIEW IN KEGG]
GOs -

Sequence

CDS:  
ATGCGATCCCATTCCTCTTCTTCAAATCTACACCATTTCTCTTCTCCGGGACCCTCTCGATCCCCAAAACGACGCTCTTTTGTTCCCGTTTTATCTCGTATCCGATTCCTCTCGTCTTCTCGGCTTCATCCCGCTGCTTCCAGTTCCTACTCTCCTCTCAAGTTACAGTTCAAACGATCAAAGCATGAGCAAAAGCGAAGGCGACGGTTTCGATACGACGTCGTCAAAATCAAGGCCGCTGATGATGATTCAGTGGAAATTTCTTCGTTTGATGATTGGGCGGTCGATGATTCGGTGGCGACCTATATGTTTGCTTCATCTAGTGAAGGCGAAGATAGCGATGGGGAAATTGTGTTGAACCCTTTGACTGAGGTGGATTTGCCTCCCGTCAAAGTCTCCACTGAAGAAGCTATAACCAGGACTGGCCATCGCCTTGCTTTGGTTGGAAGAGGCCAAAGAAGACATAGGGTATATGTTGGGCTGTTTATCAACTTGGGACTTATAATCTTCCTGACTTTGGTTCTTCTGCTTGTGGATTGGTGGGGGTGGAAAATTGTGAGGCTACCCCTGGCGCCATTTTACTTGACCTCCCCGTTTTTCATATCGTTGATTTTAGCTGCGTGTGCTGGTTATGTCTGTGTCCCTTTGCTTAAAAGTCTTAAGTTTCATCAAGTAATTAGGAAAGAAGGGCCTGCCAGACATTCCAGAAAGAGGAGAACCCCGACACTGGGCGGACTTTTCTTTATTCCTGTTGGTATATCTGTTGCGAAGTTTGTAACTGGTTTTTCCTCTATTGAAGTTTCTGCTGCTGCTTTGGCAACCTTAGGATTTGGTACAATTGGGCTGCTTGATGATGTTTTAAGTTTCATCAAGCAACACAACAGTGGCTTATCTCCGCGGTTAAGATTAGTTTTGGAGGTAGCTGTTGGCATTTGGTTTTCTTGTTGGCTGGATGCAACAAATTTGTCGTCGCCCTATGGCATGAAAATGTTGGTTCCTCTACCTGCTCCAGTTGGCCTCGTGTGCTTGGGAAAATTTTACCTATTGCTGACTTCATTTTGTTTTGTATCCATGGGAAATGGGGTTAACTTAACAGATGGTCTTGATGGTCTGGCTGGAGGGACTGCTGCATTAGCTTTTATTGGAATGTCAATTGCAGTGCTTCCAGTATGCCCTGAACTTGCTATATTTGGAGCATCAATGGCAGGGGCCTGTGTTGGTTTTCTTTTGCACAACCGTTACAAAGCATCTGTATTTATGGGTGATACCGGATCCTTGGCCATTGGTGGTGCATTAGCTGCAATGGCTGCTTGTACTGGAATGTTCTTTCCCTTATTCATTTCATCTGGTTTCTTTGTCTTGGAAGCATTATCAGTTATCATGCAGTCTAGGAGAAAAACCAGGGAACCAAAGGAAGATAATGTGACACTTGGACCTGCTGTAAGAGAGGGAGAATATGTTTTCGGTGTTGCTCACATCTTTGCATCATTCAATGACACTTTCATTCATGTGACTGATCTGTCTGGAAGAGAAACTATGGTTCGTATAACTGGTGGAATGAAAGTGAAAGCTGATAGAGATGAGTCTTCACCATATGCTGCCATGCTTGCAGCACAGGATGTTGCTCAAAGATGCAAGGAACTTGGCATAACTGCTCTTCATATAAAGCTTAGAGCTACTGGTGGTAACAAGACAAAAACTCCTGGTCCAGGTGCCCAGTCTGCTCTCCGTGCACTTGCCCGTTCCGGGATGAAAATTGGCCGCATTGAGGATGTTACACCCATTCCCACAGACAGTACCCGCCGAAAGGGAGGGTTGGGGACTTGGGATTGGGCTGAGTGTAAAGTGTTAGGTATAATAACCTTTTTAGCCAGAAGCTGGTGTGTAGGAGCCTTATATAAGATCTCTTACTTGCGCAGAAAACAAAATGCCCCTGGTCCAAACCTGGTACTTCCCTTCATAGGCAACGCAATCTCATTAGTCAGACAGCCAACCAGGTTCTGGGAACTTCAAGCTGAGTTGGCAGCTTCTGTCGGGTTTTCTGCTAATTATGTTGTCGGGAAATTCATCCTCTTTATCAGAAGCAGTGAACTCTCTCATCTTATCTTCGCCAACGTTCGACCCGATGCCTTTTTCCTTGTGGGACATCCGTTTGGTAAGAAACTCTTCGGTGAACATAACCTGATCTATATGTTTGGTCAGGATCACAAGGATCTCCGCCGTCAGATCGCTCCTAACTTCACTCCCAGAGCGTTGTCAACCTACACTTCGTTGCAGCAGATCATTATTCTCGAGCATTTAAAATCCTGGGAGCGTCTTTCTTCGGAATCGCCGGCGGAGCCGATTTCTCTCCGCCTTTTGGTTCGCGAGATGAATCTAGAAACTTCCCAAACTGTTTTCCTCGGCCGGTATTTGCCTCACGAATCTCGCGGGAAATTTAGGGACGATTACAATCTTTTCAACACTGGATTAATGAAGCTCCCGTTTGATCTACCTGGCTTCGCGTTCCGAAACGCCAGGCTGGGAGTTGAGCGGTTGCTCGAAACGCTTACTGATTGTGCTGCTCAAAGTAGAGATAGAATGTCCCAAGGCGACGAGCCTACTTGTTTAATCGATTTTTGGATTCAAGAAACTGTCCGGGAATTAAGGGAGTCAAAAACGGCGCCGCCTCACTCGTCCGACAGAGAAATCGGCAGTTATATATTCGATTTCCTCTTCGCCGCACAAGATGCCTCCACGTCATCGCTTCTATGGGCTGTGACCCTCCTCGACTCCCATCCCGATGTTCTCCAGAAAGTCCGCGATGAAGTTTCGAGGATATGGTCACCGGAATCGGATGGTTTAATAAGTGCCGACCAATTGAGGGAAATGAAGTACACGCAGGCGGTGGCGCGTGAGGTGGTTAGATATCGTGCGCCGGCGACATTGGTGCCGCACATTGCGATGCAAGACTTCCCGTTGACCGAATCGTACACGATTCGAAAGGGCACAATTGTCATGCCATCGGTTTACGAGTCTTCATTTCAAGGGTTCACGGAGGCCGACCGGTTCGACCCCGACCGATTCTCGGAGGAGAGGCAGGAGGAGGTGATATTCAAACGGAACTTCCTCGCGTTCGGGGCTGGGGCCCACCAGTGCGTGGGCCAAAGGTACGCCTTGAATCATCTGGTGCTTTTCATCGCCATGTTTGTTACGTTGCTCGATTTCAAGAGGCACCGAACCGACGGCTGTGATGAAATCATGTACTGTCCGACCATTTGTCCCAAAGACGGGTGCAAGGTTTTCCTCGCTCGGAGGTGCCCACGTTATCCTAATCTCTCTCTCGATTGA
Protein:  
MRSHSSSSNLHHFSSPGPSRSPKRRSFVPVLSRIRFLSSSRLHPAASSSYSPLKLQFKRSKHEQKRRRRFRYDVVKIKAADDDSVEISSFDDWAVDDSVATYMFASSSEGEDSDGEIVLNPLTEVDLPPVKVSTEEAITRTGHRLALVGRGQRRHRVYVGLFINLGLIIFLTLVLLLVDWWGWKIVRLPLAPFYLTSPFFISLILAACAGYVCVPLLKSLKFHQVIRKEGPARHSRKRRTPTLGGLFFIPVGISVAKFVTGFSSIEVSAAALATLGFGTIGLLDDVLSFIKQHNSGLSPRLRLVLEVAVGIWFSCWLDATNLSSPYGMKMLVPLPAPVGLVCLGKFYLLLTSFCFVSMGNGVNLTDGLDGLAGGTAALAFIGMSIAVLPVCPELAIFGASMAGACVGFLLHNRYKASVFMGDTGSLAIGGALAAMAACTGMFFPLFISSGFFVLEALSVIMQSRRKTREPKEDNVTLGPAVREGEYVFGVAHIFASFNDTFIHVTDLSGRETMVRITGGMKVKADRDESSPYAAMLAAQDVAQRCKELGITALHIKLRATGGNKTKTPGPGAQSALRALARSGMKIGRIEDVTPIPTDSTRRKGGLGTWDWAECKVLGIITFLARSWCVGALYKISYLRRKQNAPGPNLVLPFIGNAISLVRQPTRFWELQAELAASVGFSANYVVGKFILFIRSSELSHLIFANVRPDAFFLVGHPFGKKLFGEHNLIYMFGQDHKDLRRQIAPNFTPRALSTYTSLQQIIILEHLKSWERLSSESPAEPISLRLLVREMNLETSQTVFLGRYLPHESRGKFRDDYNLFNTGLMKLPFDLPGFAFRNARLGVERLLETLTDCAAQSRDRMSQGDEPTCLIDFWIQETVRELRESKTAPPHSSDREIGSYIFDFLFAAQDASTSSLLWAVTLLDSHPDVLQKVRDEVSRIWSPESDGLISADQLREMKYTQAVAREVVRYRAPATLVPHIAMQDFPLTESYTIRKGTIVMPSVYESSFQGFTEADRFDPDRFSEERQEEVIFKRNFLAFGAGAHQCVGQRYALNHLVLFIAMFVTLLDFKRHRTDGCDEIMYCPTICPKDGCKVFLARRCPRYPNLSLD