CDS

Accession Number TCMCG013C17773
gbkey CDS
Protein Id XP_006478448.1
Location complement(join(21405548..21406663,21407454..21407570,21407653..21407764,21408051..21408202,21408388..21408459,21408592..21408657,21409566..21409694,21410496..21410604,21412222..21412301,21413350..21413472,21413564..21413614,21414904..21415086,21415382..21415468,21415567..21415677,21415772..21415876,21417118..21417289,21417374..21417546,21417656..21417728,21417865..21418067,21419269..21419361,21419465..21419713))
Gene LOC102610173
GeneID 102610173
Organism Citrus sinensis

Protein

Length 1191aa
Molecule type protein
Topology linear
Data_file_division PLN
dblink BioProject:PRJNA225998
db_source XM_006478385.3
Definition probable manganese-transporting ATPase PDR2 isoform X1 [Citrus sinensis]

EGGNOG-MAPPER Annotation

COG_category P
Description cation-transporting ATPase
KEGG_TC 3.A.3.10
KEGG_Module -
KEGG_Reaction -
KEGG_rclass -
BRITE ko00000        [VIEW IN KEGG]
ko01000        [VIEW IN KEGG]
KEGG_ko ko:K14950        [VIEW IN KEGG]
EC -
KEGG_Pathway -
GOs -

Sequence

CDS:  
ATGTTGAGTTTTCATGTGGGAGGAAAGGTGGTTGACAGAGTTGATTTGCTGCGGAAGAAGCATTGGGTTTGGCGCTTGGATGTTTGGCCTTTTGCGATTCTATATTCTGGGTGGCTGATTGCTATTGTTCCTAGCATTGATTTTGGGGATGCTGCCATTGTTCTTGGTGGGCTTGTTGCCTTTCATATTCTGGTGTGGCTTTTCACGGCTTGGTCTGTTGATTTTAAATGCTTTGCCCACTATAGTAAGATTAATGATATTCACCTTGCTGATGCATGCAAAATAACTCCTGTGAAATTCTGTGGCTCTAAAGAAGTTGTGCCCCTGCAATTTTGGAAACAATCAGCAGTCTCTTCAACCCCAGTGGATGAGGATGAGATTTGTTTTGATTTTAGAAAGCAACACTTCATTTATTCCAGAGAGAAAGGGACCTTTTGCAAACTTCCTTATCCTACTAAAGAAACATTTGGGTATTATCTCAAATGTACGGGCCATTCCACTGAAGCTAAAATTGCTGTGGCGACTGAAAAATGGGGACGAAATGTATTTGAATATCCACAGCCTACATTCCAGAAATTAATGAAGGAGAACTGCATGGAGCCATTTTTTGTATTTCAGGTCTTCTGTGTTGGTCTCTGGTGTTTGGATGAATATTGGTATTACAGCTTGTTCACTCTCTTCATGCTGTTCATGTTTGAGTCAACAATGGCAAAAAGTCGGTTGAAGACTCTAACTGAGATAAGACGTGTTAGAGTTGATAATCAGACCATAATGGTGCATCGTTGTGGGAAGTGGGTGAAGCTTGCAGGCACCGATCTGGTGCCTGGGGATGTTGTCTCCATTGGGCGCTCTTCTGGTCAGACAGGTGAAGACAAGTCTGTGCCAGCTGATATGCTTATATTAGGTGGAAGTGCTATTGTGAATGAAGCCATTCTCACAGGCGAGTCTACTCCCCAATGGAAGGTTTCTATCATGGGTAGGGAAACTGGGGAAAAATTATCTGCTAGAAGAGATAAAAGCCACGTTTTATTTGGTGGGACAAAGATATTGCAGCACACTCCTGACAAGACCTTTCCTCTGAAAACACCTGATGGTGGCTGCTTGGCTGTTGTGCTGCGCACTGGATTTGAAACAAGTCAGGGGAAACTGATGAGGACAATATTGTTTTCAACTGAGAGGGTTACCGCGAACAGCTGGGAAAGTGGATTATTCATTTTATTTTTAGTTGTATTTGCAGTAATAGCTGCTGGTTACGTACTTAAGAAGGGGATGGAGGATCCCACAAGGAGCAAGTATAAGCTGTTCTTAAGCTGTTCTCTTATTATTACATCTGTGATCCCCCCTGAGCTGCCAATGGAACTATCGATAGCTGTTAATACATCCCTGATTGCGCTGGCACGTCGTGGGATATTTTGTACAGAGCCCTTCCGAATTCCATTTGCTGGAAAGGTTGACATGTGTTGTTTTGACAAAACTGGTACACTTACATCAGATGACATGGAATTTCGTGGGGTTGTTGGGTTGTCCAATGCAGAGTTAGAAGATGATATGACTAAAGTTCCTGTCCGCACTCAGGAGATTCTGGCTTCTTGTCATGCGCTAGTGTTTGTAGACAATAAGCTGGTTGGTGATCCTCTTGAGAAGGCTGCCCTTAAGGGAATAGATTGGAGTTATAAATCAGATGAGAAGGCCATGCCAAAAAGGGGAGGGGGTAATGCCGTCCAGATTGTTCAGAGACACCATTTTGCATCGCACTTGAAACGAATGTCAGTTGTTGTTCGCGTTCAGGAGGAGTTTTTTGCTTTTGTGAAGGGTGCTCCCGAAACCATCCAGGATAGACTCACAGACTTGCCATCATCCTATATTGAAACCTACAAGAAATATACACATCAGGGCTCTCGTGTTTTAGCCCTTGCTTTTAAGTCCCTTCCAGACATGACAGTTAGTGATGCAAGAAGCTTGCACAGAGATGAGGTGGAGAATAGCCTTACTTTTGCTGGTTTTGCGGTATTTAACTGCCCTATTAGGGAAGATTCAGCAAAAATTTTGTCTGAACTGAAGAATTCTTCTCAGGACTTGGCGATGATCACTGGTGACCAAGCTTTGACTGCTTGCTATGTTGCTAGCCAAGTGCATATTGTTACAAAGCCGGTATTAATTCTTTGTCCTGTAAAGAATGGCAAAGTGTATGAATGGGTGTCACCTGATGAGACAGAAAAGATTCAATATAGTGAGAAAGAGGTTGAAGGTCTCACAGATGCTCACGATCTCTGTATTGGAGGTGACTGCTTCGAAATGTTACAACAGACTTCAGCTGTTCTACGAGTCATTCCTTATGTGAAGGTTTTTGCAAGAGTTGCACCTGAGCAGAAGGAACTGATTTTGACCACTTTTAAAGCAGTAGGAAGGATGACATTGATGTGTGGGGATGGTACTAATGATGTTGGAGCTCTTAAGCAGGCCCATGTGGGAGTTGCACTGTTGAATGCTGTGCCTCCAACTCAGAGTGGAAACTCTTCATCAGAAGCTTCTAAAGACGAAAATACAAAATCAGTCAAGTCAAAGAAATCTAAGTCTGCTTCAGAAGCAGCTAGCAAAGCTATGAGTCTGAATAGTGAAGGCACTTCAAAGGGAAAAGCTTCTGCTAGATTAGAAGCTAACAGCCGCACAGCTGGTAACCGCCATTTGACAGCTGCTGAGATGCAACGAGAGAAGCTGAAGAAGATGATGGAGGAGTTGAACGAGGAGGGCGATGGTCGTTCCGCTCCCATTGTCAAGCTTGGAGATGCCTCTATGGCATCACCATTCACAGCGAAGCACGCATCGGTTGCTCCCACTACTGACATAATTCGTCAGGGTCGTAGTACCCTAGTGACCACCCTTCAGATGTTCAAAATTCTCGGCCTTAACTGTCTCGCTACAGCATACGTGTTGAGTGTTATGTATTTGGATGGTGTGAAGCTTGGTGATGTCCAGGCTACAATCAGCGGTGTTTTTACCGCAGCCTTTTTCTTGTTTATCTCACATGCCCGTCCTCTTCCCACCCTGTCAGCTGCACGGCCCCATCCCAATATTTTCTGCTCATATGTATTCCTCTCACTTATGGGACAGTTTGCCATTCATTTGTTTTTCCTAATATCATCTGTGAAAGAGGCAGAGAAATACATGCCAGATGAATGCATTGAGCCGGATGCAGATTTTCATCCCAACCTGGTGAACACGGTTTCATACATGGTCAACATGATGATCCAGGTGGCCACCTTTGCTGTTAACTACATGGGCCACCCTTTTAACCAGAGCATTTCTGAGAACAAACCATTTATGTACGCCCTCATGGGTGCTGTTGGTTTCTTCACAGTCATTACATCCGATTTACTCAGGAGCTTGAATGACTGGTTGAAGTTGGTGCCTTTGCCTTCAGGATTGAGGGACAAGCTATTGATATGGGCTGGTCTCATGTTCTTGGGCTGCTATTCATGGGAGAGATTTTTGAGGTGGGCATTCCCTGGTAAAGTTCCAGCTTGGAGAAAGCGACAACGGTTGGCTGCAGCTAATTTGGAGAAGAAGCACGTCTGA
Protein:  
MLSFHVGGKVVDRVDLLRKKHWVWRLDVWPFAILYSGWLIAIVPSIDFGDAAIVLGGLVAFHILVWLFTAWSVDFKCFAHYSKINDIHLADACKITPVKFCGSKEVVPLQFWKQSAVSSTPVDEDEICFDFRKQHFIYSREKGTFCKLPYPTKETFGYYLKCTGHSTEAKIAVATEKWGRNVFEYPQPTFQKLMKENCMEPFFVFQVFCVGLWCLDEYWYYSLFTLFMLFMFESTMAKSRLKTLTEIRRVRVDNQTIMVHRCGKWVKLAGTDLVPGDVVSIGRSSGQTGEDKSVPADMLILGGSAIVNEAILTGESTPQWKVSIMGRETGEKLSARRDKSHVLFGGTKILQHTPDKTFPLKTPDGGCLAVVLRTGFETSQGKLMRTILFSTERVTANSWESGLFILFLVVFAVIAAGYVLKKGMEDPTRSKYKLFLSCSLIITSVIPPELPMELSIAVNTSLIALARRGIFCTEPFRIPFAGKVDMCCFDKTGTLTSDDMEFRGVVGLSNAELEDDMTKVPVRTQEILASCHALVFVDNKLVGDPLEKAALKGIDWSYKSDEKAMPKRGGGNAVQIVQRHHFASHLKRMSVVVRVQEEFFAFVKGAPETIQDRLTDLPSSYIETYKKYTHQGSRVLALAFKSLPDMTVSDARSLHRDEVENSLTFAGFAVFNCPIREDSAKILSELKNSSQDLAMITGDQALTACYVASQVHIVTKPVLILCPVKNGKVYEWVSPDETEKIQYSEKEVEGLTDAHDLCIGGDCFEMLQQTSAVLRVIPYVKVFARVAPEQKELILTTFKAVGRMTLMCGDGTNDVGALKQAHVGVALLNAVPPTQSGNSSSEASKDENTKSVKSKKSKSASEAASKAMSLNSEGTSKGKASARLEANSRTAGNRHLTAAEMQREKLKKMMEELNEEGDGRSAPIVKLGDASMASPFTAKHASVAPTTDIIRQGRSTLVTTLQMFKILGLNCLATAYVLSVMYLDGVKLGDVQATISGVFTAAFFLFISHARPLPTLSAARPHPNIFCSYVFLSLMGQFAIHLFFLISSVKEAEKYMPDECIEPDADFHPNLVNTVSYMVNMMIQVATFAVNYMGHPFNQSISENKPFMYALMGAVGFFTVITSDLLRSLNDWLKLVPLPSGLRDKLLIWAGLMFLGCYSWERFLRWAFPGKVPAWRKRQRLAAANLEKKHV