CDS

Accession Number TCMCG036C21114
gbkey CDS
Protein Id PTQ29714.1
Location complement(join(2554..2768,2940..3085,3283..3456,3570..3669,3796..3951,4178..4286,4462..4679,4921..5041,5410..5497,5674..5743,5859..5979,6183..6350,6514..6699,6980..7066,7160..7302,7531..7699,8094..8189,8314..8396,8574..8691,8844..8981,9194..9262,9393..9713,9904..9960,10137..10292))
GeneID Phytozome:Mapoly0135s0001
Organism Marchantia polymorpha
locus_tag MARPO_0135s0001

Protein

Length 1102aa
Molecule type protein
Topology linear
Data_file_division PLN
dblink BioProject:PRJNA53523, BioSample:SAMN00769973
db_source KZ772807.1
Definition hypothetical protein MARPO_0135s0001 [Marchantia polymorpha]
Locus_tag MARPO_0135s0001

EGGNOG-MAPPER Annotation

COG_category G
Description Belongs to the glycosyl hydrolase 31 family
KEGG_TC -
KEGG_Module -
KEGG_Reaction R00028        [VIEW IN KEGG]
R00801        [VIEW IN KEGG]
R00802        [VIEW IN KEGG]
R06087        [VIEW IN KEGG]
R06088        [VIEW IN KEGG]
KEGG_rclass RC00028        [VIEW IN KEGG]
RC00049        [VIEW IN KEGG]
RC00077        [VIEW IN KEGG]
BRITE ko00000        [VIEW IN KEGG]
ko00001        [VIEW IN KEGG]
ko01000        [VIEW IN KEGG]
KEGG_ko ko:K01187        [VIEW IN KEGG]
EC 3.2.1.20        [VIEW IN KEGG]        [VIEW IN INGREDIENT]
KEGG_Pathway ko00052        [VIEW IN KEGG]
ko00500        [VIEW IN KEGG]
ko01100        [VIEW IN KEGG]
map00052        [VIEW IN KEGG]
map00500        [VIEW IN KEGG]
map01100        [VIEW IN KEGG]
GOs -

Sequence

CDS:  
ATGCCTCTACCGAAGACTCTTGCGCAGACATTTGCATTTAGAAGCAATGTAGCTGGGTCCGGTTTGATGTCTCGGTTCGATCGTCGTGCTTTGGCGCATTCGTCCTGGACTGAGATCGTCGTGCCTCTCACTTTCGATCGCACCTTTTTGGCGAAGCGTAAATTCTCATTCTTGGCTCCTGGAATTTCTGGAATTAGCGTCTGGCCGAGGCAGATTCCAGTCCAGCACGGCTGCATACGCCGGCAATTTTGCAGTAGTCGCTCTATCAGAGCCATTGGCAGGGGGCCGGAGGAGAAAGGATCGGACCTGATGCCCCCGGCAAAGAAGATGCTATGGGCGCCCATAATTCAAGAAGGTGTCTTCCGGTTCGATGCCAATGAGGGGGCAAAAAAGCAAGCCTGGCCCTCTGTGTCCTTCGTAAATGGGCAGGATCGAGAGTCGCCCATCACGTTGACAGCCGAGGCCCACATTCGGGAGCCCCTCTACATCCCTCAGTGCAGGACGGACAATGGCTCACAGACTATCACTGTGAAACTGCCTGAAGGCACTTCATTCTATGGTACTGGTGAAGTTAGTGGGCCCCTTGAGAGAACCGGGAAAAGGGTCTTCGCTTGGAACACTGATGCATGGGGTTATGGGCCCAGCACAACAGCATTGTATCAGTCACATCCTTGGGTTCTTGCGCTCCTTCCAGATGGAACTACTTTCGGCGTTTTAGCTGACACCACTCGCCGAGCTGAGATCGATACCCGAAAGGCGTCTACCATCCGTTTTGTAGCATCTGGATCGTATCCTGTCATAACATTTGGACCGTTTTCGTCCCCTGAAGCAGTCCTGACTGCTCTCTCCAAAGCTACAGGAACTTTGGCAATGCCGCCAAAGTGGACGCTTGGGTATCAACAGTGCAGGTGGAGTTATGAAACTGCAGACCGAGTTGTAGAGATTGCCACAACATTTCGAGAAAAGAAGATACCTTGTGACGTGATATGGATGGACATTGATTACATGAATGCTTGGCGTTGTTTTACGTTCGACCCTGAAACGTTTCCTGAACCAGCCAAGCTCTCCGATTTGCTGCATGAGAAGGGTTTCAAGGGTGTGTGGATGCTTGATCCTGGCATCAAGCAAGAACCAGGCTGGTCTGTATATGACTCTGGAACGGCTGAGGATGTTTGGGTCCTTCAGGCGAACAAGAAACCTTACGCTGGTGAAGTGTGGCCTGGTCCATGTTGTTTCCCAGATTACACTCAAGCAAAAACTAGGAAATGGTGGGGAGGGCTGGTAAAAGACTTTGTCAAGATCGGTGTCGATGGGATTTGGAATGACATGAATGAACCTGCAGTCTTTAAGAGTTTGTCAAAGACGATGCCTGATACAAACATTCATAGAGGAGACGAAGATCTCGGTGGAAGCCAAAATCACCAGCACTACCACAATGTTTATGGAATGTTGATGGCTAGATCAACCTACGAAGGGATGATCCTTGCTAATCCTGAGAAGAGGCCATTTGTGTTGACCAGAGCAGGTCATGTTGGAAGCCAAAGATACGCTGCCACATGGACCGGTGACAATCTTTCAAGTTGGATTCATCTTGAAATGAGTATACCAATGTCACTAAACTTGGGTTTAAGTGGACAACCATTCTCCGGGCCTGATATTGGTGGGTTTGGTGGAAACGCTACACCTCAAATGTTTGCGCGGTGGATGGGTATTGGGGCCATGCTTCCATTTGCACGTGGCCATTCAGAGAAAGGGACTGTGGATCATGAACCCTGGGAATTTGGGAAAGAGTGTGAAGACGTCTGCAGGCAGGCACTGTACAGGAGATATCGGATACTGCCGCACCTATATACTCTATTTTACAAGGCACATACGACAGGAGTTCCGATAATGTCTCCTTTGTTCTTTGCTGATCCTAAAGATGAGAAACTTCGTAAGGTGGAAGACAGTTTTCTTCTGGGACCTCTCCTTGTTGCTGCATGTACTAAGGCTGGCAAGAAACCTGATCCAAAGAAGACTGTCCTACCTAGTGGGTTGTGGCAGCTCTTTGATTTTGATGACTCACATCCGGATTTACCGTTACTGTTCCTCAAGGGAGGATCTATCATCCCGACTGGTCAGGTTTCACAGAACACTGGTGATGTCAGTGAGAATGATCCCATCACCCTCATCATAGCTCTTGATGAAGAAGGAAAAGCAGAAGGGACACTCTACGAGGATGATGGAGATAGTTTTGAATATAAAAAAGGACAGTTCTTGCTTACTCGTTACTCTGCTGCCCTGGTCTCCAGCTCCACCGGAGGTTCAAGTGGAAAAAAGATCGTCATCAAAATCACCCAGTCGGATGGTTATCTTAGCAGGCCCAAGCGTCCTCTCAAAGTGCGCATTTTGCTCGCAAATAAAGCGGAGCTTGAGGGTGAAGGTGTCGATGGCGAGGAATTGACTGTCGACCTGCCTTCACGTTTCGACATGGCCCAGATCACGACTCTCATCCAACAGCAGGATCTGCCAAAGGAAGATGATGAGAATATTCCAGATGAAGCCGATCACGAGACCTCAGAGAGCCTTGCAGTTCCTCCAACGACTCTCCTGGATCTGAAAATTGGTGACTGGTCTCTAAAAGTGGCGCCCTGGATTGGTGGTCGGATTGTTTCTATGATCCACGAGCCCACAGAGACCGAATGGCTGGAAGGAAAACTGGAGCATGGAGCGTATGAAGAGTACAGTGGGGTCGAATATCGATCTCCTGGCTGTGTGGAGCAGTATGATGTCAAAAAGGAGCAGTCAGATATTGAAGGAACAGACGGAGTAGTTATGGAAGGTGACATTGGTGGAGGATTGGTGATGTGTCGTCAAATTGGCGGCAAGGGAGCTGATTCGAAAATAGTACAGATAAGCTCCTCAATTGAGGCTAGATCTGTTGGTGCTGGTTCAGGTGGATTTTCTAGGTTGGTGTGTTTGCGGGTGCATCCATCTTTCAAAGTTGCCAACTATGAACTGGCATTGGTGAAGTTCACATCCATCAGTGGAGAAGCTCGAGAAATAGTCCCGAAGCCCGGCGATATAATGTTGACAGCAGACGACCGACCAAATGGAGAGTGGGCATTCTTAGACAAAGAGAACGGAGTGGCCATCGTGAACAGATTCAACCCAGAGCAGGTGTTCACGTGTGTAATCCACTGGTCAGCAGGCATTTGCAACTTGGAGCTTTGGTCTGAGGAGAGGCCCGTTTCCAAGGAAACACCTCTTCAGATATGCCATGAATATGAGACTGTCAGTGAGCAGGAGCTGCTTCAGTCTCAGCCTTGA
Protein:  
MPLPKTLAQTFAFRSNVAGSGLMSRFDRRALAHSSWTEIVVPLTFDRTFLAKRKFSFLAPGISGISVWPRQIPVQHGCIRRQFCSSRSIRAIGRGPEEKGSDLMPPAKKMLWAPIIQEGVFRFDANEGAKKQAWPSVSFVNGQDRESPITLTAEAHIREPLYIPQCRTDNGSQTITVKLPEGTSFYGTGEVSGPLERTGKRVFAWNTDAWGYGPSTTALYQSHPWVLALLPDGTTFGVLADTTRRAEIDTRKASTIRFVASGSYPVITFGPFSSPEAVLTALSKATGTLAMPPKWTLGYQQCRWSYETADRVVEIATTFREKKIPCDVIWMDIDYMNAWRCFTFDPETFPEPAKLSDLLHEKGFKGVWMLDPGIKQEPGWSVYDSGTAEDVWVLQANKKPYAGEVWPGPCCFPDYTQAKTRKWWGGLVKDFVKIGVDGIWNDMNEPAVFKSLSKTMPDTNIHRGDEDLGGSQNHQHYHNVYGMLMARSTYEGMILANPEKRPFVLTRAGHVGSQRYAATWTGDNLSSWIHLEMSIPMSLNLGLSGQPFSGPDIGGFGGNATPQMFARWMGIGAMLPFARGHSEKGTVDHEPWEFGKECEDVCRQALYRRYRILPHLYTLFYKAHTTGVPIMSPLFFADPKDEKLRKVEDSFLLGPLLVAACTKAGKKPDPKKTVLPSGLWQLFDFDDSHPDLPLLFLKGGSIIPTGQVSQNTGDVSENDPITLIIALDEEGKAEGTLYEDDGDSFEYKKGQFLLTRYSAALVSSSTGGSSGKKIVIKITQSDGYLSRPKRPLKVRILLANKAELEGEGVDGEELTVDLPSRFDMAQITTLIQQQDLPKEDDENIPDEADHETSESLAVPPTTLLDLKIGDWSLKVAPWIGGRIVSMIHEPTETEWLEGKLEHGAYEEYSGVEYRSPGCVEQYDVKKEQSDIEGTDGVVMEGDIGGGLVMCRQIGGKGADSKIVQISSSIEARSVGAGSGGFSRLVCLRVHPSFKVANYELALVKFTSISGEAREIVPKPGDIMLTADDRPNGEWAFLDKENGVAIVNRFNPEQVFTCVIHWSAGICNLELWSEERPVSKETPLQICHEYETVSEQELLQSQP