CDS

Accession Number TCMCG062C33810
gbkey CDS
Protein Id XP_024515193.1
Location join(806011..806116,806166..806405,806478..806624,806693..806771,806829..807000,807065..807130,807184..807387,807441..807647,807710..808019,808086..808245,808303..808411,808461..808593,808642..808697,808745..809044,809091..809210,809265..809978,810049..810218,810266..810293)
Gene LOC9653365
GeneID 9653365
Organism Selaginella moellendorffii

Protein

Length 1106aa
Molecule type protein
Topology linear
Data_file_division PLN
dblink BioProject:PRJNA50439
db_source XM_024659425.1
Definition uncharacterized protein LOC9653365 isoform X1 [Selaginella moellendorffii]

EGGNOG-MAPPER Annotation

COG_category G
Description Belongs to the glycosyl hydrolase 2 family
KEGG_TC -
KEGG_Module -
KEGG_Reaction R01105        [VIEW IN KEGG]
R01678        [VIEW IN KEGG]
R03355        [VIEW IN KEGG]
R04783        [VIEW IN KEGG]
R06114        [VIEW IN KEGG]
KEGG_rclass RC00049        [VIEW IN KEGG]
RC00452        [VIEW IN KEGG]
BRITE ko00000        [VIEW IN KEGG]
ko00001        [VIEW IN KEGG]
ko01000        [VIEW IN KEGG]
KEGG_ko ko:K01190        [VIEW IN KEGG]
EC 3.2.1.23        [VIEW IN KEGG]        [VIEW IN INGREDIENT]
KEGG_Pathway ko00052        [VIEW IN KEGG]
ko00511        [VIEW IN KEGG]
ko00600        [VIEW IN KEGG]
ko01100        [VIEW IN KEGG]
map00052        [VIEW IN KEGG]
map00511        [VIEW IN KEGG]
map00600        [VIEW IN KEGG]
map01100        [VIEW IN KEGG]
GOs -

Sequence

CDS:  
ATGGATGCTGCTGGACCTTCGCATCGCGACTGGGAGGATCCCGCGGTGTTCGGCAAGAACAAGCGCAATCCTCACGTTCCGCTCTACTCGCATTCCAGCGTCCAAGAGGCTGTGGATTTCTGGATTGCGCGCAGCCAGGCCGATCGGGAGCTCGCCAATTCAGCTGTGTGGGACGACGATGCCGTCCCAGCTGCGCTCGATAGCGCCAGGTTTTGGTGTGAGGGAGCCTCGTCTTTGATCTCACTCAGTGGCTATTGGAAGTTTTTCCTTGCTTCCAAGCCCGAGAGTGTGCCGCATTGGTTCTACAAGAATCAATTCAATGACAGCAGCTGGAAGACACTGCCCGTTCCATCGAATTGGCAGATGCATGGATACGACACGCCAATCTACACCAATGTTACGTATCCTTTTCCTTTTGATCCACCGCTGGTACCTCGAGAAAATCCAACTGGATGCTATCGAAGATCATTTGTTGTCCCCCCCGAGTGGGCTGGACGAAGGGTGTTTTTAAGATTTGAGGCCGTGGATTCTGCGTTTTATGCTTGGGTGAATGGTGCTCTTATTGGCTACAGTCAGGACAGCCGTCTTCCATCCGAATTTGACATAACAAGCCTCTGCACAGAAAAGGAAAATATTCTAGCTGTTCAAGTGATGCGATGGAGTGATGGATCGTATCTTGAAGACCAAGACCACTGGTGGCTATCTGGGATTCACCGAGATGTGATACTGTTTTCAAAGCCGCAAGTCATGATCAGCGATTATTTTGTGAAAACTCATCTTACCAGAGACCTGAAGCAGGCAACTGTAGAGGTGGACGTGTCGATTGAAGGAGCAACTAAACTAACAAAAGAGATGGTTTTACGCGTGAGTGGATTTCTTTTTGACCCAGTCGAGAGTGAACAGCAGGAGCCTGAAACCATTCCCACTAAAGTCGTGGACATTATCTCTGCTCATCACGGACGAACAGTGCTGACAATTTCTGTCGACAATCCAAAGCTGTGGTCTGCAGAAAAGCCAAGCCTGTACACACTGGTAGTGGTCTTGGAGGATAACAATGGAGGTACTGCTGATTGCGAATCCTGCCGAGTTGGAATCCGGCAGGTTTCAGCTCAACCAAAAGGACTGTTGGTGAATGGTCAACTCGTGACCATATGCGGTTTCAACAGGCATGAACATCACCCACGCCTGGGAAAGACAAACGTGGAAGCATGTATGGCGAGGGATATCGTTCTCATGAAGCAGCATAATGTGAATGCCGTCAGAAATAGTCATTATCCGCAGCATCCTCGCTGGTATGAGCTGTGTGACCTCTTTGGACTGTACGTGGTGGACGAGGCAAACATTGAAACTCATGGGTATGAGCTCATTGAATCGACCCTTCGGAAACACCCGGCTGGCGAAGCAATGTGGACACACGCACTACTTGACCGCTTTGTCAACATGGTTGAAAGGGATAAAAACCATTCGTGCATCATCATATGGTCTCTTGGTAATGAATCGGGATACGGACCAGCGCATGATGCCATGGCTGGTTGGGCTCATTGTCGAGATCCCACGAGATTAGTGCAGTATGAAGGGGGTGGCTCAAGGACGTCTGCAACGGATATAATATGCCCCATGTATATGCGTGTCTGGGACACAGTGAAGATTGCGAACGACACTTCTGAACTTCGGCCTGTTATTCTATGCGAGTATTCGCATGCCATGGGAAATAGCAACGGGAACATTTATAAGTACTGGCAAGCTATTGACACCACCTATGGGTTGCAGGGTGGCTTTATATGGGATTGGGTTGATCAGGGCCTCATACAAACGGAAGGTGGCTCAAGACGTTGGGCATATGGTGGTGATTTTGGAGATACACCCAATGATCTCAATTTTTGTGTCAACGGTCTCGTCTGGCCGGACAGATCTCCACATCCAGCTCTTGAAGAGGTGAAATATTGCTATCAACCTTTAGGGATACATATTGATGGCGATGAAATTGAGATCTGGAACAAACGCTCCTTTACCACTTCAGAAGATCTGGCTTTTGAATGGAGTTTATCAACTGATGGTTCCCTTTTGAAAAGTGGCTCCTGGAATGTACCACCTATTGAACCTAGGGAGAAGTACAGGATGCCTCTAAAAGCTGGGCCTTGGTCTTCTCTTTGCGACGATATATTGGGAAGCGATGTGACTTTGACTATTACAGCTACACTTGCAGCATCAACGCGATGGGCCTGTGCAGGACAGGTCGTTGCGTCACAACAATGTTTTTTACCTTCAAAGCAGCCTTATTCATTACAGACAGTCAAGTTTTCGGATCCTTTGTCTACTGATATTTCCACGAGCACGGTGGTAGTGGCAATACCTCAGCATAGTTGGGAGCTTAAATTTGACAGAAGTACTGGACGCTCTTCTTGGAGGCTGGGGGACATGCTTTTGATGTCCAAAGGGCCTCTCCCTTGCTTTTGGAGGGCTCCAACAGACAATGACAAAGGTGGTGACAAGAGAAGCTACGCATATCGATGGAAGGCATTCGGGTTAGACCGCCTAGCAATCACTGGGACAACTGGTTTTCAGGCGAAGCAGCTGTCTTCTCATTTAGTTTTGTTGGAGGGGGTGCTTTTCATAGAACCAGAATCAGGGAGCGGGGACGAAAAGAGGGAGATATCAATAAGATCGAAGGAAGATGGGACAGACTGGTTCAAGGTTTCAGTGAGCTACATGATTTACAGCAGCGGCGACTTCGTTGCACAGTATAAAGTTGAAGCAAATCCGAAGCTTCCGCCGTTACCAAGGGTGGGCATCGTTTTCTCTATAAGCAACGAGTGCAATGCAGCGGAGTGGTATGGACGAGGACCGTTCGAGTGCTATCCCGATAGGAAGGCAGCTGCTCAACTGGGAATCTACAAGCAGAAGGTGTCTGACCTCCACGCCCCATATATTGTTCCTGGTGAGTGCGGTGGACGCGCAGATGTGAGATGGCTGGCTTTCAAGAATGTTGAGGGAGATGCTGGTCTGTTTGCGATGCCTTTCCAAGGAAGTCCTCCATTGCAAATGAGTGCCAGCAACTACAGTACAGAGGAGCTGGATAGAGCAACTCATGAAGAAGAGCTGAATGCTGGACAGGACATTGAGGTGCACCTTGATCACAAGCACATGGGTTTAGGTGGCGATGATAGTTGGAGTCCCTGCGTCCACGATGAGTACCTCGTCTTACCACGAAATTACGAGTTTGCGGTCAGGTTTTCGCCGTTATCTCTAGCTGCGTCATCACAGGAGTTATACCGTCAGCGACTCTTACCAGAGCAAGTATCACTCGAGCAGGCGAGCTAG
Protein:  
MDAAGPSHRDWEDPAVFGKNKRNPHVPLYSHSSVQEAVDFWIARSQADRELANSAVWDDDAVPAALDSARFWCEGASSLISLSGYWKFFLASKPESVPHWFYKNQFNDSSWKTLPVPSNWQMHGYDTPIYTNVTYPFPFDPPLVPRENPTGCYRRSFVVPPEWAGRRVFLRFEAVDSAFYAWVNGALIGYSQDSRLPSEFDITSLCTEKENILAVQVMRWSDGSYLEDQDHWWLSGIHRDVILFSKPQVMISDYFVKTHLTRDLKQATVEVDVSIEGATKLTKEMVLRVSGFLFDPVESEQQEPETIPTKVVDIISAHHGRTVLTISVDNPKLWSAEKPSLYTLVVVLEDNNGGTADCESCRVGIRQVSAQPKGLLVNGQLVTICGFNRHEHHPRLGKTNVEACMARDIVLMKQHNVNAVRNSHYPQHPRWYELCDLFGLYVVDEANIETHGYELIESTLRKHPAGEAMWTHALLDRFVNMVERDKNHSCIIIWSLGNESGYGPAHDAMAGWAHCRDPTRLVQYEGGGSRTSATDIICPMYMRVWDTVKIANDTSELRPVILCEYSHAMGNSNGNIYKYWQAIDTTYGLQGGFIWDWVDQGLIQTEGGSRRWAYGGDFGDTPNDLNFCVNGLVWPDRSPHPALEEVKYCYQPLGIHIDGDEIEIWNKRSFTTSEDLAFEWSLSTDGSLLKSGSWNVPPIEPREKYRMPLKAGPWSSLCDDILGSDVTLTITATLAASTRWACAGQVVASQQCFLPSKQPYSLQTVKFSDPLSTDISTSTVVVAIPQHSWELKFDRSTGRSSWRLGDMLLMSKGPLPCFWRAPTDNDKGGDKRSYAYRWKAFGLDRLAITGTTGFQAKQLSSHLVLLEGVLFIEPESGSGDEKREISIRSKEDGTDWFKVSVSYMIYSSGDFVAQYKVEANPKLPPLPRVGIVFSISNECNAAEWYGRGPFECYPDRKAAAQLGIYKQKVSDLHAPYIVPGECGGRADVRWLAFKNVEGDAGLFAMPFQGSPPLQMSASNYSTEELDRATHEEELNAGQDIEVHLDHKHMGLGGDDSWSPCVHDEYLVLPRNYEFAVRFSPLSLAASSQELYRQRLLPEQVSLEQAS