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Detail for ZS11_A06G25190.t1

Genome:
ZS11: ZS11_A06G25190.t1
ZS11_v0: Bnascaffold0451T0000600ZS
WE: WE_C09G42520.t1
WE_v0: BnaC09T0310500WE
Darmor: C09p40120.1_BnaDAR
BH: BnaC09T202200BH
Quinta: BnaC09T0303500QU
ZS2: BnaC02T374900ZS2
SW: BnaA06T228400SW
Express61: C09p041960.1_BnaEXP
Xiaoyun: BnaC09G0345100XY
P202: BnaC09G076990P202.1
BL: BnaC09T202200BH
TA: BnaC02T385200TA
Da-Ae: Not available
RB: BnaC09T197400RB
No2127: BnaA04T0033600NO
P130: BnaC09G042070P130.1
Length: 620
KOG ID: -
KOG E-value: Not available
KOG Score: Not available
KOG Annotation: -
Biological Process: GO:0009772(photosynthetic electron transport in photosystem II),GO:0019684(photosynthesis, light reaction),GO:0006412(translation),GO:0009767(photosynthetic electron transport chain),GO:0015977(carbon fixation)
Cellular Component: GO:0005840(ribosome),GO:0016020(membrane),GO:0009521(photosystem)
Molecular Function: GO:0045156(electron transporter, transferring electrons within the cyclic electron transport pathway of photosynthesis activity),GO:0003735(structural constituent of ribosome),GO:0016168(chlorophyll binding),GO:0016984(ribulose-bisphosphate carboxylase activity),GO:0016651(oxidoreductase activity, acting on NAD(P)H),GO:0048038(quinone binding),GO:0051287(NAD binding)
KEGG Ortholog: K02706 psbD; photosystem II P680 reaction center D2 protein [EC:1.10.3.9]
NR Protein: OTG34351.1
NR E-value: 4.700000e-112
NR Score: 410.6
NR Annotation: OTG34351.1 putative photosynthetic reaction centre, L/M, Photosystem antenna protein-like protein [Helianthus annuus]
SwissProt Protein: P06005|PSBD_SPIOL
SwissProt E-value: 1.000000e-107
SwissProt Score: 331.0
SwissProt Annotation: Photosystem II D2 protein OS=Spinacia oleracea OX=3562 GN=psbD PE=1 SV=3
CDS Sequence (1889 bp)
ATGACTATAGCCCTTGGTAAATTTACCAAAGACGAAAAAGATTTATTTGATATTATGGATGACTGGTTAC
GGAGGGACCGCTTCGTTTTTGTAGGTTTTATGTTACGTCAATTTGAACTTGCTCGATCTGTTCAATTGCG
ACCTTATAATGCAATCGCATTCTCTGGTCCAATTGCTGTTTTTGTTTCTGTCTTTCTAATTTATCCACTA
GGGTTTCATAATTGGACATTGAACCCATTTCATATGATGGGAGTCGCTGGTGTACTGGGCGCGGCTCTGT
TATGCGCTATTCATGGTGCTACTGTAGAAAATACTTTATTTGAAGATGGTGATGAAACTTATTCAATGGT
CACCGCTAACCGCTTTTGGTCACAAATCTTTGGGGTTGCTTTTTCCAATAAACGTTGGTTACATTTCTTT
ATGTTATTTGTACCAGTAACTGGTTTATGGATGAGTGCTCTTGGAGTAGTCGGTCTAGCTTTGAACCTAC
GTGCCTATGACTTCACTTTCTATACTAAAAATATTCTTTTAAACGAAGGTATTCGCGCTTGGATGGCGGC
TCAAGATCAGCCTCATGAAAACCTTATATTCCCTGAGGAGGTTCTACCACGTCCTGGGGGAGAAGTTATA
GACACCTTTCCATACTTTGTATCTGGAGTACTTCACTTAATTTCTTCTGCAGTTTTGGGCTTTGGTATTT
ATCATGCACTTCTGGGACCCGAAACTCTTGAAGAATCTTTTCCATTTTTCGGTTATGGAAGGATTTCTTT
TTATGATAAAAAATACATTCATTTCATTTCAAGAAAAAAAGAAGAAAGCAAGGGATCTGTTGAATTTCAA
GTAGTCAGTTTCACTAATAAGATACGAAGACTTACTTCACATTTGGAATTGCACAGAAAAGATTATTTTT
CTCAGAGAGGTCTACGAAAAATTCTGGGAAAACGTCAACGACTGCTGGCTTATTTGTCAAAAAAAATAGA
CAATCTAATTCATACCAGAACGAATCAAGGAAAAACTTATGAAGAGACCAGTTACAGGAAAAGATCTTAT
GATAGTCAATATGGGACCTCACCACCCATCCATGCACGGTGTTCTTCGCTTAATTGTTACTCTAGACGAG
AACGAGAATTTGTATATGATCTATTCGAAGCTGCCACCGTTGATCGTTATGAGTCTTACGATGAATTTGA
ATGGGAAATTCAGTGGCAAAAACAAGGAGATTCATTAGCTCGTTATTTAGTACGACTTAGCGAAATGACA
GAATCCATCAAAATTATTCAACAGGCTCTGGAAGGACTTCCGGGGGGTCCCTATGAAAATTTAGAAAGCA
GAGGCTTTGATAAAAAGGAATCAGAGTGGAATGATTTTGAATATCGATTCATTAGTAAAAACCTTCCCCT
ACTTTTGAATTATCGAAACAAGAACTTTACGTTACCTTTTGATTTACCAGAAGCGGAAGAAGAATTAATA
GCAGGTTATCAAACTGAATATTCCGTTCCACCTGAAGAAGCAGGGGCTGCGGTAGCTGCTGAATCTTCTA
CTGGTACATGGACAACTGTGTGGACCGATGGGCTTACCAGCCTTGACCGTTACAAAGGACGATGCTACCA
CATCGAGCCCGTTCCAGGAGAAGAAACTCAATTTATTGCGTATGTAGCTTACCCATTAGACCTTTTTGAA
GAAGGGTCTGTTACTAACATGTTTACCTCAATTGTGGGTAACGTATTTGGGTTCAAAGCCCTGGCTGCTC
TACGTCTAGAGGATCTGCGAATCCCTCCGGCTTATACTAAAACTTTCCAGGGACCACCTCATGGTATCCA
AGTTGAAAGAGATAAATTGAACAAGTATGGACGTCCCTATTAG
Upstream Sequence
ATGACTATAGCCCTTGGTAAATTTACCAAAGACGAAAAAGATTTATTTGATATTATGGATGACTGGTTAC
GGAGGGACCGCTTCGTTTTTGTAGGTTTTATGTTACGTCAATTTGAACTTGCTCGATCTGTTCAATTGCG
ACCTTATAATGCAATCGCATTCTCTGGTCCAATTGCTGTTTTTGTTTCTGTCTTTCTAATTTATCCACTA
GGGTTTCATAATTGGACATTGAACCCATTTCATATGATGGGAGTCGCTGGTGTACTGGGCGCGGCTCTGT
TATGCGCTATTCATGGTGCTACTGTAGAAAATACTTTATTTGAAGATGGTGATGAAACTTATTCAATGGT
CACCGCTAACCGCTTTTGGTCACAAATCTTTGGGGTTGCTTTTTCCAATAAACGTTGGTTACATTTCTTT
ATGTTATTTGTACCAGTAACTGGTTTATGGATGAGTGCTCTTGGAGTAGTCGGTCTAGCTTTGAACCTAC
GTGCCTATGACTTCACTTTCTATACTAAAAATATTCTTTTAAACGAAGGTATTCGCGCTTGGATGGCGGC
TCAAGATCAGCCTCATGAAAACCTTATATTCCCTGAGGAGGTTCTACCACGTCCTGGGGGAGAAGTTATA
GACACCTTTCCATACTTTGTATCTGGAGTACTTCACTTAATTTCTTCTGCAGTTTTGGGCTTTGGTATTT
ATCATGCACTTCTGGGACCCGAAACTCTTGAAGAATCTTTTCCATTTTTCGGTTATGGAAGGATTTCTTT
TTATGATAAAAAATACATTCATTTCATTTCAAGAAAAAAAGAAGAAAGCAAGGGATCTGTTGAATTTCAA
GTAGTCAGTTTCACTAATAAGATACGAAGACTTACTTCACATTTGGAATTGCACAGAAAAGATTATTTTT
CTCAGAGAGGTCTACGAAAAATTCTGGGAAAACGTCAACGACTGCTGGCTTATTTGTCAAAAAAAATAGA
CAATCTAATTCATACCAGAACGAATCAAGGAAAAACTTATGAAGAGACCAGTTACAGGAAAAGATCTTAT
GATAGTCAATATGGGACCTCACCACCCATCCATGCACGGTGTTCTTCGCTTAATTGTTACTCTAGACGAG
AACGAGAATTTGTATATGATCTATTCGAAGCTGCCACCGTTGATCGTTATGAGTCTTACGATGAATTTGA
ATGGGAAATTCAGTGGCAAAAACAAGGAGATTCATTAGCTCGTTATTTAGTACGACTTAGCGAAATGACA
GAATCCATCAAAATTATTCAACAGGCTCTGGAAGGACTTCCGGGGGGTCCCTATGAAAATTTAGAAAGCA
GAGGCTTTGATAAAAAGGAATCAGAGTGGAATGATTTTGAATATCGATTCATTAGTAAAAACCTTCCCCT
ACTTTTGAATTATCGAAACAAGAACTTTACGTTACCTTTTGATTTACCAGAAGCGGAAGAAGAATTAATA
GCAGGTTATCAAACTGAATATTCCGTTCCACCTGAAGAAGCAGGGGCTGCGGTAGCTGCTGAATCTTCTA
CTGGTACATGGACAACTGTGTGGACCGATGGGCTTACCAGCCTTGACCGTTACAAAGGACGATGCTACCA
CATCGAGCCCGTTCCAGGAGAAGAAACTCAATTTATTGCGTATGTAGCTTACCCATTAGACCTTTTTGAA
GAAGGGTCTGTTACTAACATGTTTACCTCAATTGTGGGTAACGTATTTGGGTTCAAAGCCCTGGCTGCTC
TACGTCTAGAGGATCTGCGAATCCCTCCGGCTTATACTAAAACTTTCCAGGGACCACCTCATGGTATCCA
AGTTGAAAGAGATAAATTGAACAAGTATGGACGTCCCTATTAG
Downstream Sequence
GTTGGTCTGGTCTATTGCTCTTTCCTTGTGCCTATTTCGCTTTGGGGGGTTGGTTCACAG
GTACAACCTTTGTAACTTCATGGTATACTCATGGATTGGCTAGTTCCTATTTAGAAGGTT
GCAATTTTTTACCGCTGCAGTTTCTACTCCTGCTAATAGTTTAGCGCATTCTTTGTTGTT
ACTGTGGGGTCCTGAAGCACAAGGAGATTTTACTCGTTGGTGTCAATTAGGCGGTCTGTG
GGCTTTTGTTGTTTCCACGGTGCTTTCGCATTAATAGGTTTTATGTTACGTCAATTTGAA
CTTGCTCGATCTGTTCAATTGCGACCTTATAATGCAATCGCATTCTCTGGTCCAATTGCT
GTTTTTGTTTCTGTCTTTCTAATTTATCCACTAGGTCAATCTGGTTGGTTCTTTGTGCCT
AGTTTTGGTGTAGCGGCTATATTTCGATTCATCCTCTTTTTCCAAGGGTTTCATAATTGG
ACATTGAACCCATTTCATATGATGGGAGTCGCTGGTGTACTGGGCGCGGCTCTGTTATGC
GCTATTCATGGTGCTACTGTAGAAAATACTTTATTTGAAGATGGTGATGGTGCAAATACA
TTCCGTGCTTTTAACCCAACCTGCCGAAGAAACTTATTCAATGGTCACCGCTAACCGCTT
TTGGTCACAAATCTTTGGGGTTGCTTTTTCCAATAAACGTTGGTTACATTTCTTTATGTT
ATTTGTACCAGTAACTGGTTTATGGATGAGTGCTCTTGGAGTAGTCGGTCTAGCTTTGAA
CCTACGTGCCTATGACTTCGTTTCCCAGGAAATCCGTGCAGCGGAAGATCCGAATTTGAG
ACTTTCTATACTAAAAATATTCTTTTAAACGAAGGTATTCGCGCTTGGATGGCGGCTCAA
GATCAGCCTCATGAAAACCTTATATTCCCTGAGGAGGTTCTACCACGTGGAAACGCTCTT
TAATGGAACTTTAGCTTTAGCTGGTCGTGACCAAGAAACCACTGGTTTCGCTTGGTGGGC
CGGGAATGCCCGACTTATCAATTTATCTGGTAAACTATTGGGAGCTCATGTAGCCCATGC
CGGATTAATCGTATTCTGGGCCGGAGCAATGAACTTATTTGAAGTGGCTCATTTTGTACC
TGAAAAGCCCATGTATGAACAAGGATTGATTTTACTTCCCACCTAGCCACTTTAGGCTGG
GGGTAGGTCCTGGGGGAGAAGTTATAGACACCTTTCCATACTTTGTATCTGGAGTACTTC
ACTTAATTTCTTCTGCAGTTTTGGGCTTTGGTATTTATCATGCACTTCTGGGACCCGAAA
CTCTTGAAGAATCTTTTCCATTTTTCGGTTATGTATGGAAAGATAGAAATAAAATGACCA
CCATTTTGGGTATTCACTTAATTTTGTTAGGTGTAGGTGCTTTTCTTCTAGTATTCAAGG
CTCTCTATTTTGGGGCGTATATGATACCTGGGCTCCAGGAGGGGGATGTAAGAAAATTAC
AAACTTGACTCTTAGCCCAAGTGTTATATTTGGTTATTTACTAAAATCTCCCTTTGGGGG
AGAAGGATGGATTGTTAGTGTGGACGATTTGGAAGATATAATTGGAGGGCATGTATGGTT
AGGTTCCATTTGTATATTTGGTGGAATCTGGCATATCTTAACCAAACCTTTTGCATGGGC
TCGCCGCGCACTTGTATGGTCTGGGAGGCTTACTTGTCTTATAGTTTAGCTGCTTTATCT
GTTTGTGGTTTCATTGCTTGTTGTTTTGTCTGGTTTAATAATACTGCTTACCCTAGTGAG
TTTTACGGACCTACAGGGCCAGAAGCTTCTCAAGCTCAAGCATTTACTTTTCTAGTTAGA
GACCAACGTCTTGGAGCTAACGTGGGGTCTGCTCAAGGACCTACAGGTTTAGGTAAATAC
TTAATGCGTTCCCCGACTGGAGAAGTTATTTTTGGAGGAGAAACAATGCGTTTTTGGGAT
CTGCGTGCTCCCTGGTTAGA
Pro Sequence
MTIALGKFTKDEKDLFDIMDDWLRRDRFVFVGFMLRQFELARSVQLRPYN
AIAFSGPIAVFVSVFLIYPLGFHNWTLNPFHMMGVAGVLGAALLCAIHGA
TVENTLFEDGDETYSMVTANRFWSQIFGVAFSNKRWLHFFMLFVPVTGLW
MSALGVVGLALNLRAYDFTFYTKNILLNEGIRAWMAAQDQPHENLIFPEE
VLPRPGGEVIDTFPYFVSGVLHLISSAVLGFGIYHALLGPETLEESFPFF
GYGRISFYDKKYIHFISRKKEESKGSVEFQVVSFTNKIRRLTSHLELHRK
DYFSQRGLRKILGKRQRLLAYLSKKIDNLIHTRTNQGKTYEETSYRKRSY
DSQYGTSPPIHARCSSLNCYSRREREFVYDLFEAATVDRYESYDEFEWEI
QWQKQGDSLARYLVRLSEMTESIKIIQQALEGLPGGPYENLESRGFDKKE
SEWNDFEYRFISKNLPLLLNYRNKNFTLPFDLPEAEEELIAGYQTEYSVP
PEEAGAAVAAESSTGTWTTVWTDGLTSLDRYKGRCYHIEPVPGEETQFIA
YVAYPLDLFEEGSVTNMFTSIVGNVFGFKALAALRLEDLRIPPAYTKTFQ
GPPHGIQVERDKLNKYGRPY
mRNA Sequence
ATGACTATAGCCCTTGGTAAATTTACCAAAGACGAAAAAGATTTATTTGATATTATGGATGACTGGTTAC
GGAGGGACCGCTTCGTTTTTGTAGGTTTTATGTTACGTCAATTTGAACTTGCTCGATCTGTTCAATTGCG
ACCTTATAATGCAATCGCATTCTCTGGTCCAATTGCTGTTTTTGTTTCTGTCTTTCTAATTTATCCACTA
GGGTTTCATAATTGGACATTGAACCCATTTCATATGATGGGAGTCGCTGGTGTACTGGGCGCGGCTCTGT
TATGCGCTATTCATGGTGCTACTGTAGAAAATACTTTATTTGAAGATGGTGATGAAACTTATTCAATGGT
CACCGCTAACCGCTTTTGGTCACAAATCTTTGGGGTTGCTTTTTCCAATAAACGTTGGTTACATTTCTTT
ATGTTATTTGTACCAGTAACTGGTTTATGGATGAGTGCTCTTGGAGTAGTCGGTCTAGCTTTGAACCTAC
GTGCCTATGACTTCACTTTCTATACTAAAAATATTCTTTTAAACGAAGGTATTCGCGCTTGGATGGCGGC
TCAAGATCAGCCTCATGAAAACCTTATATTCCCTGAGGAGGTTCTACCACGTCCTGGGGGAGAAGTTATA
GACACCTTTCCATACTTTGTATCTGGAGTACTTCACTTAATTTCTTCTGCAGTTTTGGGCTTTGGTATTT
ATCATGCACTTCTGGGACCCGAAACTCTTGAAGAATCTTTTCCATTTTTCGGTTATGGAAGGATTTCTTT
TTATGATAAAAAATACATTCATTTCATTTCAAGAAAAAAAGAAGAAAGCAAGGGATCTGTTGAATTTCAA
GTAGTCAGTTTCACTAATAAGATACGAAGACTTACTTCACATTTGGAATTGCACAGAAAAGATTATTTTT
CTCAGAGAGGTCTACGAAAAATTCTGGGAAAACGTCAACGACTGCTGGCTTATTTGTCAAAAAAAATAGA
CAATCTAATTCATACCAGAACGAATCAAGGAAAAACTTATGAAGAGACCAGTTACAGGAAAAGATCTTAT
GATAGTCAATATGGGACCTCACCACCCATCCATGCACGGTGTTCTTCGCTTAATTGTTACTCTAGACGAG
AACGAGAATTTGTATATGATCTATTCGAAGCTGCCACCGTTGATCGTTATGAGTCTTACGATGAATTTGA
ATGGGAAATTCAGTGGCAAAAACAAGGAGATTCATTAGCTCGTTATTTAGTACGACTTAGCGAAATGACA
GAATCCATCAAAATTATTCAACAGGCTCTGGAAGGACTTCCGGGGGGTCCCTATGAAAATTTAGAAAGCA
GAGGCTTTGATAAAAAGGAATCAGAGTGGAATGATTTTGAATATCGATTCATTAGTAAAAACCTTCCCCT
ACTTTTGAATTATCGAAACAAGAACTTTACGTTACCTTTTGATTTACCAGAAGCGGAAGAAGAATTAATA
GCAGGTTATCAAACTGAATATTCCGTTCCACCTGAAGAAGCAGGGGCTGCGGTAGCTGCTGAATCTTCTA
CTGGTACATGGACAACTGTGTGGACCGATGGGCTTACCAGCCTTGACCGTTACAAAGGACGATGCTACCA
CATCGAGCCCGTTCCAGGAGAAGAAACTCAATTTATTGCGTATGTAGCTTACCCATTAGACCTTTTTGAA
GAAGGGTCTGTTACTAACATGTTTACCTCAATTGTGGGTAACGTATTTGGGTTCAAAGCCCTGGCTGCTC
TACGTCTAGAGGATCTGCGAATCCCTCCGGCTTATACTAAAACTTTCCAGGGACCACCTCATGGTATCCA
AGTTGAAAGAGATAAATTGAACAAGTATGGACGTCCCTATTAG