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Detail for ZS11_C01G38100.t1

Genome:
ZS11: ZS11_C01G38100.t1
ZS11_v0: BnaA01T0273200ZS
WE: WE_A01G32240.t1
WE_v0: BnaA01T0191100WE
Darmor: C01p37160.1_BnaDAR
BH: BnaC01T339600BH
Quinta: BnaA01T0205200QU
ZS2: BnaC01T307100ZS2
SW: BnaA01T234200SW
Express61: C01p027190.1_BnaEXP
Xiaoyun: BnaC01G0322900XY
P202: BnaC01G060400P202.1
BL: BnaC01T339600BH
TA: BnaC01T319300TA
Da-Ae: rna-gnl|WGS:JAGKQM|BnaA01g25700D
RB: BnaC01T338700RB
No2127: BnaA01T0224000NO
P130: BnaC01G037930P130.1
Length: 704
KOG ID: KOG4581
KOG E-value: Not available
KOG Score: 597.0
KOG Annotation: Function unknown
Biological Process: GO:0042372(phylloquinone biosynthetic process)
Cellular Component: GO:0016021(integral component of membrane)
Molecular Function: GO:0016765(transferase activity, transferring alkyl or aryl (other than methyl) groups),GO:0004659(prenyltransferase activity)
KEGG Ortholog: K23094 ABC4, menA; 2-carboxy-1,4-naphthoquinone phytyltransferase [EC:2.5.1.130]
NR Protein: XP_013731330.1
NR E-value: 1.100000e-205
NR Score: 721.8
NR Annotation: XP_013731330.1 2-carboxy-1,4-naphthoquinone phytyltransferase, chloroplastic-like [Brassica napus]
SwissProt Protein: Q0WUA3|MENA_ARATH
SwissProt E-value: Not available
SwissProt Score: 597.0
SwissProt Annotation: 2-carboxy-1,4-naphthoquinone phytyltransferase, chloroplastic OS=Arabidopsis thaliana OX=3702 GN=ABC4 PE=1 SV=2
CDS Sequence (2145 bp)
ATGTTGGGAGGCAACAATGAGAACCCTTTACCACAGGATAGCCAGTTTCAGTACCAAACAAACACTTCGT
TGAATCAGCTTCACTTGCTTGGAACCATGAGAGCTGGTTGCACTATTGATCCTATAAACTACTTTGCTAA
CGATAACCTTGCTACAATGTCTCGGAATAATAGCAAACGCGCTAGGGAGACCGAGACCAACCATAGTATC
CAGAGACAGCAGAAGCTGCAGAGCTCTTTGGACTATAACTACAACAACAATAGTGTTGCTCAAGATGAAG
CCCCAAAGCAGAACTTAGTGTCCACTGGTCTGAGACTATCTTATGACAATGATGAGAGAAACTCTTGTGC
AAATGGAAGCATCACAACTCCAATGTTTCAGTCACTCGGTGACACTATCAGATTGGACTTGGATAGACAG
AAAGAAGAGCTTGATCAGTTTCTCAAATTCCAGGGGAACCAACTGGCGAAAGGTGTGAGCGATATAAAAC
AGAGACATGTCACGTCCTTTGTCACGGCCTTAGAGAAGGATGTGAGCATGAAGCTTCAAGAGAAAGACCA
GGAGATCGAAAACATGAAGAAGAAGAACCGGGAACTCGTGGAAAAGATAAAACAAGTGGCGGTAGAATCT
CAGAACTGGCATTACAGGGCAAAGTACAATGAATCTGTGGTTAATGCCTTAAAGGTAAGCCTGCAACAAG
TGATGTCACATGGAAACAACACCAATCCAGGTGGTGTATTAGCAGTGGAAGAAGGGTACGGGGATAGCGA
GATTGATGATGAGGCAGCTTCATACAACTACATGAACATCCGGGGGATGCCAAACACTGGGATGAGATGC
AAGTCGTGTAACGTAAAGGAGGTTTCGGTCTTGCTTGTACCGTGTAGGCACTTGAGTTTGTGTAAAGACT
GTGATGTGTTCACTGAGGATTATGACTCAATCTCCTATTGTAATCAAAGGATTCGTGTTAGAAAGAGAGT
TAAAATGATGAGTTTAGTCTCTCTCTGCGGTATAACGTCTGGGTTTGTTCTCAGAAAGTCAACCAATCTG
TTTGTGAAACCGAGATTCAGAAGAGGAGATTTAATCACAAGACTACCGGTGCTTGAGAATCTGAATGCTA
AAAGAAAAAGAAACCTCAGAGTTGGTGGGCCAATCGTTTGTAAGAGCTATGAAGAAGATACAGAAAAATT
GTACCAAGAAGAGGAAATTCCCAAAGCAAAATTGATATGGAGAGCAATCAAACTACCCATTTACTCTGTC
GCTTTGGTTCCTCTCACCGTTGCTGCTTCAGCGGCCTATTTGGAGACTGGTTTAGTCCTAGTTAGACGTT
ATGCTACTCTAATGCTCTCATCAGTACTTATCATTACTTGGCTCAACTTAAGCAATGATGTTTATGATTT
TGATACCGGAGCTGATAAGAACAAAAGAGAATCCGTAGTGAATATGGTTGGAAGCCGGGCAGGAACCTTC
GCAGCTGCAATCACAACTCTTGTGCTCGGTGTTTCTGGTTTAATTTGGATATCTTGGACAGCAAGTAATA
TCCGTGCAATACTATTGCTTGCCTCAGCAATTCTATGCGGCTATGTATACCAGTGTCCGCCATTTCGGTT
AAGTTACCAAGGATTAGGAGAGCCTCTATGCTTTGCAGCATTTGGTCCATTTGCAACTACTGCCTTTTAT
CTACTTCTTGGTGGTGGCTCAAGCGAGATGAGGCATCTTCCATTAAGCACTAGGGTTCTTTCATCATCTC
TCCTTGTTGGTTTTACCACATCTCTCATCCTTTTCTGCAGCCACTTTCATCAGGTTGAAGGAGATTTAGC
TGTGGGGAAATTTTCACCTCTGGTCCGGTTAGGGACTGAAAAAGGAGCTTTTGTGGTGAGATGGGCTATT
CGTTTGCTCTATTTGATGCTTCTTGTTCTTGGTTTAACCAAGATTTTGCCAGTAACTTGCACATTGTTGT
GTTTTCTGACACTACCAGTAGGGAATTTAGTGTCAAGCTATGTCGAAAAGCACCACAAGGAGAATGAGAA
GATATTCATGGCTAAGTATTATTGTGTGAGACTCCACGCTTTGTTTGGAGCCGCGTTGTCGTTGGGACTC
GTTATCGCTCGCTAA
Upstream Sequence
CGATTTTGGCAGCCAACTTCTCCCACTCCTTAACCATTGTGACCCGCTTTCTCACGTCCATCATTCATTT
CATCCGTTTCTTTTCTTCTTTTATTCTTTCATTCATCTTAGCCTTTTTAAATCATCAGATGTTGCGTTTC
TGTACGTTTCAACAATCCCACCACCTTCTTAAAACTCTCAATCGCAATTAATTGGCTCCTCTCGATTCCT
TGTTTTTTTTTGCAGGTTTCTTAACTGTTGTTCTTATAAAAATTGAATACTTGTAACGGTTAAGCATTAG
AAAAGATGTTGGGAGGCAACAATGAGAACCCTTTACCACAGGATAGCCAGTTTCAGTACCAAACAAACAC
TTCGTTGAATCAGCTTCACTTGCTTGGAACCATGAGAGCTGGTTGCACTATTGATCCTATAAACTACTTT
GCTAACGATAACCTTGCTACAATGTCTCGGAATAATAGCAAACGCGCTAGGGAGACCGAGACCAACCATA
GTATCCAGAGACAGCAGAAGCTGCAGAGCTCTTTGGACTATAACTACAACAACAATAGTGTTGCTCAAGA
TGAAGCCCCAAAGCAGAACTTAGTGTCCACTGGTCTGAGACTATCTTATGACAATGATGAGAGAAACTCT
TGTGCAAATGGAAGCATCACAACTCCAATGTTTCAGTCACTCGGTGACACTATCAGATTGGACTTGGATA
GACAGAAAGAAGAGCTTGATCAGTTTCTCAAATTCCAGGGGAACCAACTGGCGAAAGGTGTGAGCGATAT
AAAACAGAGACATGTCACGTCCTTTGTCACGGCCTTAGAGAAGGATGTGAGCATGAAGCTTCAAGAGAAA
GACCAGGAGATCGAAAACATGAAGAAGAAGAACCGGGAACTCGTGGAAAAGATAAAACAAGTGGCGGTAG
AATCTCAGAACTGGCATTACAGGGCAAAGTACAATGAATCTGTGGTTAATGCCTTAAAGGTAAGCCTGCA
ACAAGTGATGTCACATGGAAACAACACCAATCCAGGTGGTGTATTAGCAGTGGAAGAAGGGTACGGGGAT
AGCGAGATTGATGATGAGGCAGCTTCATACAACTACATGAACATCCGGGGGATGCCAAACACTGGGATGA
GATGCAAGTCGTGTAACGTAAAGGAGGTTTCGGTCTTGCTTGTACCGTGTAGGCACTTGAGTTTGTGTAA
AGACTGTGATGTGTTCACTGAGGATTATGACTCAATCTCCTATTGTAATCAAAGGATTCGTGTTAGAAAG
AGAGTTAAAATGATGAGTTTAGTCTCTCTCTGCGGTATAACGTCTGGGTTTGTTCTCAGAAAGTCAACCA
ATCTGTTTGTGAAACCGAGATTCAGAAGAGGAGATTTAATCACAAGACTACCGGTGCTTGAGAATCTGAA
TGCTAAAAGAAAAAGAAACCTCAGAGTTGGTGGGCCAATCGTTTGTAAGAGCTATGAAGAAGATACAGAA
AAATTGTACCAAGAAGAGGAAATTCCCAAAGCAAAATTGATATGGAGAGCAATCAAACTACCCATTTACT
CTGTCGCTTTGGTTCCTCTCACCGTTGCTGCTTCAGCGGCCTATTTGGAGACTGGTTTAGTCCTAGTTAG
ACGTTATGCTACTCTAATGCTCTCATCAGTACTTATCATTACTTGGCTCAACTTAAGCAATGATGTTTAT
GATTTTGATACCGGAGCTGATAAGAACAAAAGAGAATCCGTAGTGAATATGGTTGGAAGCCGGGCAGGAA
CCTTCGCAGCTGCAATCACAACTCTTGTGCTCGGTGTTTCTGGTTTAATTTGGATATCTTGGACAGCAAG
TAATATCCGTGCAATACTATTGCTTGCCTCAGCAATTCTATGCGGCTATGTATACCAGTGTCCGCCATTT
CGGTTAAGTTACCAAGGATTAGGAGAGCCTCTATGCTTTGCAGCATTTGGTCCATTTGCAACTACTGCCT
TTTATCTACTTCTTGGTGGTGGCTCAAGCGAGATGAGGCATCTTCCATTAAGCACTAGGGTTCTTTCATC
ATCTCTCCTTGTTGGTTTTACCACATCTCTCATCCTTTTCTGCAGCCACTTTCATCAGGTTGAAGGAGAT
TTAGCTGTGGGGAAATTTTCACCTCTGGTCCGGTTAGGGACTGAAAAAGGAGCTTTTGTGGTGAGATGGG
CTATTCGTTTGCTCTATTTGATGCTTCTTGTTCTTGGTTTAACCAAGATTTTGCCAGTAACTTGCACATT
GTTGTGTTTTCTGACACTACCAGTAGGGAATTTAGTGTCAAGCTATGTCGAAAAGCACCACAAGGAGAAT
GAGAAGATATTCATGGCTAAGTATTATTGTGTGAGACTCCACGCTTTGTTTGGAGCCGCGTTGTCGTTGG
GACTCGTTATCGCTCGCTAA
Downstream Sequence
AGTAAGTTTCTTGATTTTCTGTTGCTTGGAATGTCGTTACAACTTTATCATAGAGCTAAA
GCTTTTTTCCCTTTTGTATGTGGTTACAGTGAGAGCTGGTTGCACTATTGATCCTATAAA
CTACTTTGCTAACGATAACCTTGCTACAATGTCTCGGAATAATAGCAAACGCGCTAGGGA
GACCGAGACCAACCATAGTATCCAGAGACAGCAGAAGCTGCAGAGCTCTTTGGACTATAA
CTACAACAACAATAGTGTTGCTCAAGATGAAGCCCCAAAGCAGAACTTAGTGTCCACTGG
TCTGAGACTATCTTATGACAATGATGAGAGAAACTCTTGTGCAAATGGAAGCATCACAAC
TCCAATGTTTCAGTCACTCGGTGACACTATCAGATTGGACTTGGATAGACAGAAAGAAGA
GCTTGATCAGTTTCTCAAATTCCAGGTACTAATTCTATCCGTTATTTCTTATATATATAT
ATCCAATGTTGTTGATTGTACTTTCTTTGGAAACAGGGGAACCAACTGGCGAAAGGTGTG
AGCGATATAAAACAGAGACATGTCACGTCCTTTGTCACGGCCTTAGAGAAGGATGTGAGC
ATGAAGCTTCAAGAGAAAGACCAGGAGATCGAAAACATGAAGAAGAAGAACCGGGAACTC
GTGGAAAAGATAAAACAAGTGGCGGTAGAATCTCAGAACTGGCATTACAGGGCAAAGTAC
AATGAATCTGTGGTTAATGCCTTAAAGGTAAGCCTGCAACAAGTGATGTCACATGGAAAC
AACACCAATCCAGGTGGTGTATTAGCAGTGGAAGAAGGGTACGGGGATAGCGAGATTGAT
GATGAGGCAGCTTCATACAACTACATGAACATCCGGGGGATGCCAAACACTGGGATGAGA
TGCAAGTCGTGTAACGTAAAGGAGGTTTCGGTCTTGCTTGTACCGTGTAGGCACTTGAGT
TTGTGTAAAGACTGTGATGTGTTCACTGGTTTTTGTCCTGTTTGTCAGTCTTTCAAAACT
TCTAGCGTTCAAGTCTTTTTCTCATGAGTAAAATCCATGAAATAGAGTCCGTCTTCATAC
TCCTGAAATGTTGTTGATTGTGGAGACAGATGATCATATTTGTATGTGATGATTATGATG
AACTAAAAGATGAAACCGTGTACACGATTGATGATACTGCAATTTAGTAAATTCCAAGAA
AAACAAGTGCTGACATGTCAATCAATAGCTGTGTGGATTTAGATTCAGTGCTGAAAGAAA
TTGAACCCTAATCTGACTTTTTCTTCTGTTTATCAAGTCAGAAGCTTGAAATTTTACCGT
AGATACACTGTTTCTATTAGCAGAGAAGAGATGACTCTCACAAACTTTGGCTAGGTTGAA
TTGAAAATTTATGTCAACAGTACTCTACTTTTGTAAGAAAATCACTGCAACAACTTGTAG
CAATTAACTTTTGGGTATACTTTGGTGCTGGAGGCCCAGGCCCATAGTAAAAACAGAACA
AAGACACGTGAACATCAGGTGACATTATCTTCTGTGGGTACATCAGCGTTCACAGTCGTT
CATTTCTCTCTCCCTCAAAATTTCGACATTCAAACTCACTGGAAAATAAAAAAGCGAAAT
CCAAAACTCTTTTCTTTCTGAGTTGCTTAGGTTCCTTCGTAGCCCGTCTGATTCAGGTCA
CTCAATCTTTGAGCTCCGAAGAATAACTTTTTTGATCTCGGCGACTACCAAAGTTCAGAG
GATTATGACTCAATCTCCTATTGTAATCAAAGGATTCGTGTTAGAAAGGTTCAGTTCCTA
GCTTCATATATCTCCTTTTCTTTATTGTTGAAACAGAGATGTTAGTTATGTAGGTCCCAG
AATTTCAGAACTTGGTGTTTAGTTGTACGTTTCTCTGTTGCTGTTTTAACTGAAAAAAAA
AAACTTCTTTCTTGTTTTACAGAGAGTTAAAATGATGAGTTTAGTCTCTCTCTGCGGTAT
AACGTCTGGGTTTGTTCTCA
Pro Sequence
MLGGNNENPLPQDSQFQYQTNTSLNQLHLLGTMRAGCTIDPINYFANDNL
ATMSRNNSKRARETETNHSIQRQQKLQSSLDYNYNNNSVAQDEAPKQNLV
STGLRLSYDNDERNSCANGSITTPMFQSLGDTIRLDLDRQKEELDQFLKF
QGNQLAKGVSDIKQRHVTSFVTALEKDVSMKLQEKDQEIENMKKKNRELV
EKIKQVAVESQNWHYRAKYNESVVNALKVSLQQVMSHGNNTNPGGVLAVE
EGYGDSEIDDEAASYNYMNIRGMPNTGMRCKSCNVKEVSVLLVPCRHLSL
CKDCDVFTEDYDSISYCNQRIRVRKRVKMMSLVSLCGITSGFVLRKSTNL
FVKPRFRRGDLITRLPVLENLNAKRKRNLRVGGPIVCKSYEEDTEKLYQE
EEIPKAKLIWRAIKLPIYSVALVPLTVAASAAYLETGLVLVRRYATLMLS
SVLIITWLNLSNDVYDFDTGADKNKRESVVNMVGSRAGTFAAAITTLVLG
VSGLIWISWTASNIRAILLLASAILCGYVYQCPPFRLSYQGLGEPLCFAA
FGPFATTAFYLLLGGGSSEMRHLPLSTRVLSSSLLVGFTTSLILFCSHFH
QVEGDLAVGKFSPLVRLGTEKGAFVVRWAIRLLYLMLLVLGLTKILPVTC
TLLCFLTLPVGNLVSSYVEKHHKENEKIFMAKYYCVRLHALFGAALSLGL
VIAR
mRNA Sequence
CGATTTTGGCAGCCAACTTCTCCCACTCCTTAACCATTGTGACCCGCTTTCTCACGTCCATCATTCATTT
CATCCGTTTCTTTTCTTCTTTTATTCTTTCATTCATCTTAGCCTTTTTAAATCATCAGATGTTGCGTTTC
TGTACGTTTCAACAATCCCACCACCTTCTTAAAACTCTCAATCGCAATTAATTGGCTCCTCTCGATTCCT
TGTTTTTTTTTGCAGGTTTCTTAACTGTTGTTCTTATAAAAATTGAATACTTGTAACGGTTAAGCATTAG
AAAAGATGTTGGGAGGCAACAATGAGAACCCTTTACCACAGGATAGCCAGTTTCAGTACCAAACAAACAC
TTCGTTGAATCAGCTTCACTTGCTTGGAACCATGAGAGCTGGTTGCACTATTGATCCTATAAACTACTTT
GCTAACGATAACCTTGCTACAATGTCTCGGAATAATAGCAAACGCGCTAGGGAGACCGAGACCAACCATA
GTATCCAGAGACAGCAGAAGCTGCAGAGCTCTTTGGACTATAACTACAACAACAATAGTGTTGCTCAAGA
TGAAGCCCCAAAGCAGAACTTAGTGTCCACTGGTCTGAGACTATCTTATGACAATGATGAGAGAAACTCT
TGTGCAAATGGAAGCATCACAACTCCAATGTTTCAGTCACTCGGTGACACTATCAGATTGGACTTGGATA
GACAGAAAGAAGAGCTTGATCAGTTTCTCAAATTCCAGGGGAACCAACTGGCGAAAGGTGTGAGCGATAT
AAAACAGAGACATGTCACGTCCTTTGTCACGGCCTTAGAGAAGGATGTGAGCATGAAGCTTCAAGAGAAA
GACCAGGAGATCGAAAACATGAAGAAGAAGAACCGGGAACTCGTGGAAAAGATAAAACAAGTGGCGGTAG
AATCTCAGAACTGGCATTACAGGGCAAAGTACAATGAATCTGTGGTTAATGCCTTAAAGGTAAGCCTGCA
ACAAGTGATGTCACATGGAAACAACACCAATCCAGGTGGTGTATTAGCAGTGGAAGAAGGGTACGGGGAT
AGCGAGATTGATGATGAGGCAGCTTCATACAACTACATGAACATCCGGGGGATGCCAAACACTGGGATGA
GATGCAAGTCGTGTAACGTAAAGGAGGTTTCGGTCTTGCTTGTACCGTGTAGGCACTTGAGTTTGTGTAA
AGACTGTGATGTGTTCACTGAGGATTATGACTCAATCTCCTATTGTAATCAAAGGATTCGTGTTAGAAAG
AGAGTTAAAATGATGAGTTTAGTCTCTCTCTGCGGTATAACGTCTGGGTTTGTTCTCAGAAAGTCAACCA
ATCTGTTTGTGAAACCGAGATTCAGAAGAGGAGATTTAATCACAAGACTACCGGTGCTTGAGAATCTGAA
TGCTAAAAGAAAAAGAAACCTCAGAGTTGGTGGGCCAATCGTTTGTAAGAGCTATGAAGAAGATACAGAA
AAATTGTACCAAGAAGAGGAAATTCCCAAAGCAAAATTGATATGGAGAGCAATCAAACTACCCATTTACT
CTGTCGCTTTGGTTCCTCTCACCGTTGCTGCTTCAGCGGCCTATTTGGAGACTGGTTTAGTCCTAGTTAG
ACGTTATGCTACTCTAATGCTCTCATCAGTACTTATCATTACTTGGCTCAACTTAAGCAATGATGTTTAT
GATTTTGATACCGGAGCTGATAAGAACAAAAGAGAATCCGTAGTGAATATGGTTGGAAGCCGGGCAGGAA
CCTTCGCAGCTGCAATCACAACTCTTGTGCTCGGTGTTTCTGGTTTAATTTGGATATCTTGGACAGCAAG
TAATATCCGTGCAATACTATTGCTTGCCTCAGCAATTCTATGCGGCTATGTATACCAGTGTCCGCCATTT
CGGTTAAGTTACCAAGGATTAGGAGAGCCTCTATGCTTTGCAGCATTTGGTCCATTTGCAACTACTGCCT
TTTATCTACTTCTTGGTGGTGGCTCAAGCGAGATGAGGCATCTTCCATTAAGCACTAGGGTTCTTTCATC
ATCTCTCCTTGTTGGTTTTACCACATCTCTCATCCTTTTCTGCAGCCACTTTCATCAGGTTGAAGGAGAT
TTAGCTGTGGGGAAATTTTCACCTCTGGTCCGGTTAGGGACTGAAAAAGGAGCTTTTGTGGTGAGATGGG
CTATTCGTTTGCTCTATTTGATGCTTCTTGTTCTTGGTTTAACCAAGATTTTGCCAGTAACTTGCACATT
GTTGTGTTTTCTGACACTACCAGTAGGGAATTTAGTGTCAAGCTATGTCGAAAAGCACCACAAGGAGAAT
GAGAAGATATTCATGGCTAAGTATTATTGTGTGAGACTCCACGCTTTGTTTGGAGCCGCGTTGTCGTTGG
GACTCGTTATCGCTCGCTAA