CDS

Accession Number TCMCG065C11433
gbkey CDS
Protein Id XP_022681098.1
Location join(24690720..24690776,24690881..24691048,24691133..24691306,24692353..24692592,24692676..24692792,24693950..24694089,24694181..24694330,24694400..24694556,24694631..24695158,24696142..24696252,24696476..24696622,24696686..24696883,24697055..24697156,24697379..24697510,24698700..24698765,24699009..24699070,24699149..24699398)
Gene LOC101776856
GeneID 101776856
Organism Setaria italica

Protein

Length 932aa
Molecule type protein
Topology linear
Data_file_division PLN
dblink BioProject:PRJNA207554
db_source XM_022825363.1
Definition phospholipase D zeta 1 isoform X2 [Setaria italica]

EGGNOG-MAPPER Annotation

COG_category I
Description Phospholipase D. Active site motifs.
KEGG_TC -
KEGG_Module -
KEGG_Reaction R01310        [VIEW IN KEGG]
R02051        [VIEW IN KEGG]
R07385        [VIEW IN KEGG]
KEGG_rclass RC00017        [VIEW IN KEGG]
RC00425        [VIEW IN KEGG]
BRITE ko00000        [VIEW IN KEGG]
ko00001        [VIEW IN KEGG]
ko01000        [VIEW IN KEGG]
ko04131        [VIEW IN KEGG]
KEGG_ko ko:K01115        [VIEW IN KEGG]
EC 3.1.4.4        [VIEW IN KEGG]        [VIEW IN INGREDIENT]
KEGG_Pathway ko00564        [VIEW IN KEGG]
ko00565        [VIEW IN KEGG]
ko01100        [VIEW IN KEGG]
ko01110        [VIEW IN KEGG]
ko04014        [VIEW IN KEGG]
ko04024        [VIEW IN KEGG]
ko04071        [VIEW IN KEGG]
ko04072        [VIEW IN KEGG]
ko04144        [VIEW IN KEGG]
ko04666        [VIEW IN KEGG]
ko04724        [VIEW IN KEGG]
ko04912        [VIEW IN KEGG]
ko05231        [VIEW IN KEGG]
map00564        [VIEW IN KEGG]
map00565        [VIEW IN KEGG]
map01100        [VIEW IN KEGG]
map01110        [VIEW IN KEGG]
map04014        [VIEW IN KEGG]
map04024        [VIEW IN KEGG]
map04071        [VIEW IN KEGG]
map04072        [VIEW IN KEGG]
map04144        [VIEW IN KEGG]
map04666        [VIEW IN KEGG]
map04724        [VIEW IN KEGG]
map04912        [VIEW IN KEGG]
map05231        [VIEW IN KEGG]
GOs -

Sequence

CDS:  
ATGCAAGAATATCTGAACCATTTCTTGGGGAACTTGGATATTGTCAATTCACAGGAGGTTTGCAAATTTTTGGAGGTGTCATGTTTGTCATTTTTACCTGAGTATGGGCCTAAGCTAAAAGAAGACTATGTTTCAGTTGGACATCTACCAAAGATTCAGAAGGACCGTAAAAAGCAATGTTGTTCATGCGGATTGTTTAACTGTTGCAAGAGCAATTGGCAAAAGGTTTGGGTTGTCCTGAAGCCAGGATTCTTGGCTTTGCTTGAAGATCCTTTTGATCCAAAGCTTTTAGATGTCATTATTTTTGATGCGTTGCCGCATATGGATATAAATGGAGAAGGCCAAATTTCTTTAGCAAAAGAGATCAAAGAACGTAACCCACTGCATTTTGGATTCCAGGTGTCTTCTGGTGGCCGGACAATAAAGCTGCGCACAAGAAGCTCTTCTAAGGTCAAGGATTGGGTTACTGCAATAAATGCTGCTCGACAACCTCCAGAGGGCTGGTGTTATCCTCATCGTTTTGGCTCATTTGCACCACCAAGGGGTTTGTTGGAAGATGGGAGTATGGTACAATGGTTTATAGATGGCCAAGCTGCATTCGAAGCCATTGCGTCCTCCATTGAGGAAGCTAAATCAGAGATATTCATTACTGGCTGGTGGCTCTGCCCAGAGTTGTATCTTCGACGCCCGTTCCAAAATCATGGATCATCCAGGCTTGACGCTCTACTGGAAGCAAGAGCTAAGCAGGGTGTACAGATTTACATTCTATTGTACAAGGAAGTTGCTCTTGCATTGAAAATTAATAGCTTATACAGTAAGCAAAGGCTACTTAACATTCATGAAAATGTCAAAGTTCTGCGTTACCCTGATCATTTCTCAAGTGGTGTATACTTGTGGTCACACCATGAGAAGGTTGTAATTGTTGATAATCAAGTATGTTATATTGGAGGTCTTGATCTATGCTTTGGTCGCTACGATAATCCTGAGCACAAAGTCACAGATACTCCTCCTGTGATATGGCCAGGAAAGGACTACTACAATCCCAGGGAATCTGAGCCCAATTCTTGGGAGGACACCATGAAAGATGAACTGGACCGTGCTAAATATCCCCGCATGCCTTGGCATGATGTTCAGTGTGCTCTCTATGGTCCACCTTGCCGTGATGTAGCGAGGCATTTTGTTCAGCGCTGGAATTATGCAAAGAGGAACAAAGCTCTAAATGAGCAAGCAATTCCATTACTGATGCCTCATCACCACATGGTAATTCCACACTACAAGGGTAGAAGCAAAGAAACAAATGATGAGGCTGATGGTAAACAGTATCATGATAGGGATGTTGATAAAAATCCAGTCTTGACATCGCGCACATCATGTCAGGATGTTCCATTGCTTTTACCTCAAGAACTTGAACCTCAGGAATTGTCAAGTGCAGATTTAAGATTGACTGATTTAGATATTAACAATTCAGATCGCATAAACAAAAAGAGCTTTAGTCAGCCTTTGCTCAACCGAAAGGCAAAGTTGGATTTTTCTCATCAGGATTTACCTATGAGAAGTTTTGTGGACAATCACAGTTCCCTTGAGGCATCATCTATTAGGCGTTTTGATTCACTGAAAGATGATAGGAATCACAAGGACAAGAAATGGTGGGAAAAGCAGGAGCGTGGTGACCAAGTTGCTTCAGTACTTGACATTGGGCAAGTTGGTCCAAGGGCAACTTGTCGTTGTCAGGTTGTTAGGAGTGTTGGTCAATGGTCAGCTGGAACCACTCAAATTGAAGGAACCATCCACAATGCCTACTTTTCTCTGATTGAAAAGGCAGAACACTTTGTATACATTGAGAATCAATTTTTCATATCGGGCCTGTCAGGAGATGATACGATTAAAAACCGTGTATTAGAAGCATTGTATCGGCGTATACTTCGAGCTGAGAGAGAGAAAAAGCGCTTTAAGGCCATCATCATCATTCCTCTTCTACCTGGTTTCCAGGGAGGCATTGATGATGGTGGAGCTGCATCAGTGAGGGCAATCATGCACTGGCAATATCGTACTATCTGCAGAGGCCCTAATTCAATTCTCCAGAATCTATTTGATGTTATTGGACCTAAAGCACATGATTACATCTCCTTTTATGGTCTTAGAGCACATGGTAAACTGAATGATGGGGGTCCCTTGGTCACTAGTCAGATTTATGTACATAGCAAGTTAATGATAATTGATGACCGCATTACATTGATTGGCTCAGCTAACATAAATGATAGAAGCTTGCTTGGATCAAGGGATTCTGAGATTGCTGTGGTCATTGAAGATAAAGAAGTTGTTAATTCTAAAATGGACGGAAGACCTTGGGAAGCTGGAAAATTCTCTCTAAGCCTACGTCTTTCTCTGTGGGCGGAGCACCTTGGCCTTCATCCAGGAGAGGTTAGCCACATCATGGATCCTATAGATGATTCCACATTTAAAAATATCTGGATGGCCACTGCTAAGACGAATACCATGATATACCAAGATGTCTTCTCTTGTGTACCCAACGATCTCATCGACTCAAGGGCCCAATTTCGGCAAAGCTTTGCTCACTTGAGGGACAAAATTGGCCACACCACAATTGATTTGGGCGTTGCCCAAGAGAAACTAGAAGCTTACCAAGATGGCGATCTCAAAGGTACTGATCCTATGGACAGATTGCAGTTAGTAAGGGGCCACCTTGTTTCTTTTCCTTTGGATTTCATGTGCCAAGAGGACTTGAGACCATATTTCAGTGAAAGTGAGTATTACACATCGCCACAGGTTTTCCATTAA
Protein:  
MQEYLNHFLGNLDIVNSQEVCKFLEVSCLSFLPEYGPKLKEDYVSVGHLPKIQKDRKKQCCSCGLFNCCKSNWQKVWVVLKPGFLALLEDPFDPKLLDVIIFDALPHMDINGEGQISLAKEIKERNPLHFGFQVSSGGRTIKLRTRSSSKVKDWVTAINAARQPPEGWCYPHRFGSFAPPRGLLEDGSMVQWFIDGQAAFEAIASSIEEAKSEIFITGWWLCPELYLRRPFQNHGSSRLDALLEARAKQGVQIYILLYKEVALALKINSLYSKQRLLNIHENVKVLRYPDHFSSGVYLWSHHEKVVIVDNQVCYIGGLDLCFGRYDNPEHKVTDTPPVIWPGKDYYNPRESEPNSWEDTMKDELDRAKYPRMPWHDVQCALYGPPCRDVARHFVQRWNYAKRNKALNEQAIPLLMPHHHMVIPHYKGRSKETNDEADGKQYHDRDVDKNPVLTSRTSCQDVPLLLPQELEPQELSSADLRLTDLDINNSDRINKKSFSQPLLNRKAKLDFSHQDLPMRSFVDNHSSLEASSIRRFDSLKDDRNHKDKKWWEKQERGDQVASVLDIGQVGPRATCRCQVVRSVGQWSAGTTQIEGTIHNAYFSLIEKAEHFVYIENQFFISGLSGDDTIKNRVLEALYRRILRAEREKKRFKAIIIIPLLPGFQGGIDDGGAASVRAIMHWQYRTICRGPNSILQNLFDVIGPKAHDYISFYGLRAHGKLNDGGPLVTSQIYVHSKLMIIDDRITLIGSANINDRSLLGSRDSEIAVVIEDKEVVNSKMDGRPWEAGKFSLSLRLSLWAEHLGLHPGEVSHIMDPIDDSTFKNIWMATAKTNTMIYQDVFSCVPNDLIDSRAQFRQSFAHLRDKIGHTTIDLGVAQEKLEAYQDGDLKGTDPMDRLQLVRGHLVSFPLDFMCQEDLRPYFSESEYYTSPQVFH