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Detail for ZS11_A09G17920.t1

Genome:
ZS11: ZS11_A09G17920.t1
ZS11_v0: BnaA09T0166800ZS
WE: WE_A09G18110.t1
WE_v0: BnaA09T0156000WE
Darmor: A09p17460.1_BnaDAR
BH: BnaA09T203800BH
Quinta: BnaA09T0157500QU
ZS2: BnaA09T166800ZS2
SW: BnaA09T200200SW
Express61: A09p014910.1_BnaEXP
Xiaoyun: BnaA09G0163400XY
P202: BnaA09G017290P202.2
BL: BnaA09T203800BH
TA: BnaA09T160300TA
Da-Ae: rna-gnl|WGS:JAGKQM|BnaA01g07790D
RB: BnaA09T169800RB
No2127: BnaA09T0102000NO
P130: BnaA09G015350P130.2
Length: 338
KOG ID: KOG1680
KOG E-value: Not available
KOG Score: 602.0
KOG Annotation: Lipid transport and metabolism
Biological Process: GO:0009234(menaquinone biosynthetic process)
Cellular Component: -
Molecular Function: GO:0003824(catalytic activity),GO:0008935(1,4-dihydroxy-2-naphthoyl-CoA synthase activity)
KEGG Ortholog: K01661 menB; naphthoate synthase [EC:4.1.3.36]
NR Protein: XP_013677378.1
NR E-value: 3.800000e-193
NR Score: 679.1
NR Annotation: XP_013677378.1 1,4-dihydroxy-2-naphthoyl-CoA synthase, peroxisomal-like [Brassica napus]
SwissProt Protein: Q8GYN9|MENB_ARATH
SwissProt E-value: Not available
SwissProt Score: 626.0
SwissProt Annotation: 1,4-dihydroxy-2-naphthoyl-CoA synthase, peroxisomal OS=Arabidopsis thaliana OX=3702 GN=MENB PE=1 SV=2
CDS Sequence (1031 bp)
ATGGCTGACTCCAAGGAACTCGGCACCGCGAGCCGCCGTATCTCCGTCTTCACCAATCATCTCATCCCCT
TGGAAACAATTCCAACTCGCGTTCACTCAGTGGAACTCTCTACTGCCTCGTCGATGAATGACAATTACCA
TAAGGTTCACGGTGAAGTGCCGACTCACCAAGTCGTTTGGAGAAAAGCTGATCTCGTCGGTGACGACGGA
GAAACGAAAGAGTTCGTTGACATTATATATGAGAAAGCCGTCGGTGAAGATATTGCCAAGATTACTATAA
ACCGTCCGGAGAGAAGAAACGCGTTCCGGCCTCAGACTGTGAAGGAGCTTATGCGTGCGTTTAACGACGC
CAGAGACGATAGCTCTGTAGGAGTCATCATACTCACCGGCAAGGGAACGAAAGCGTTTTGCAGTGGTGGT
GATCAAGCGTTGAGGACACCAGATGGTTATGCTGATCCCAATGATGTTGGTCGACTTAATGTCCTTGATC
TCCAGGTTCAAATCCGAAGACTGCCAAAACCAGTTATCGCAATGGTTGCTGGTTATGCTGTTGGGGGAGG
ACATATCTTGCACATGGTCTGCGATCTAACCATTGCAGCTGATAATGCTATTTTCGGTCAGACGGGTCCT
AAGGTTGGAAGTTTTGATGCTGGTTATGGAAGTTCAATCATGTCTCGTCTGGTTGGTCCTAAAAAGGCAC
GAGAAATGTGGTTCATGACGAGATTCTACACAGCTTCGGAAGCAGATAAAATGGGACTTATCAATACAGT
TGTACCGCTAGAGGAATTGGAGAAAGAAACTGTAAAATGGTGCAGAGAAATCTTACGGAATAGCCCTACT
GCAATCCGTGTTCTTAAGGCAGCACTCAATGCAGTCGATGATGGCCATGCTGGACTTCAGGGGCTAGGAG
GTGATGCGACGCTCTTATTCTATGGAACCGAAGAAGGTATAGAAGGAAGAACAGCTTATATGCAACGCCG
ACCACCGGACTTCTCTAAATTTCCCCGGCGACCTTGA
Upstream Sequence
GGCGCGCCAAGAGATTACGTCCACTTCCTCTGATTCTCCAAACCTTCAAGCTTCTTCCTTTTTTGGAAGA
ATTCAATTAATTATTTATTCTCTTTAACTAAACAAATATTTTATCCAAACTATTGTCAAAGTCCATGCGA
TAGAATCATCTTCATCACCAATCATCATCACCTTTCTCTGTCTATACTTCTTCCTCTCTAATGGCTGACT
CCAAGGAACTCGGCACCGCGAGCCGCCGTATCTCCGTCTTCACCAATCATCTCATCCCCTTGGAAACAAT
TCCAACTCGCGTTCACTCAGTGGAACTCTCTACTGCCTCGTCGATGAATGACAATTACCATAAGGTTCAC
GGTGAAGTGCCGACTCACCAAGTCGTTTGGAGAAAAGCTGATCTCGTCGGTGACGACGGAGAAACGAAAG
AGTTCGTTGACATTATATATGAGAAAGCCGTCGGTGAAGATATTGCCAAGATTACTATAAACCGTCCGGA
GAGAAGAAACGCGTTCCGGCCTCAGACTGTGAAGGAGCTTATGCGTGCGTTTAACGACGCCAGAGACGAT
AGCTCTGTAGGAGTCATCATACTCACCGGCAAGGGAACGAAAGCGTTTTGCAGTGGTGGTGATCAAGCGT
TGAGGACACCAGATGGTTATGCTGATCCCAATGATGTTGGTCGACTTAATGTCCTTGATCTCCAGGTTCA
AATCCGAAGACTGCCAAAACCAGTTATCGCAATGGTTGCTGGTTATGCTGTTGGGGGAGGACATATCTTG
CACATGGTCTGCGATCTAACCATTGCAGCTGATAATGCTATTTTCGGTCAGACGGGTCCTAAGGTTGGAA
GTTTTGATGCTGGTTATGGAAGTTCAATCATGTCTCGTCTGGTTGGTCCTAAAAAGGCACGAGAAATGTG
GTTCATGACGAGATTCTACACAGCTTCGGAAGCAGATAAAATGGGACTTATCAATACAGTTGTACCGCTA
GAGGAATTGGAGAAAGAAACTGTAAAATGGTGCAGAGAAATCTTACGGAATAGCCCTACTGCAATCCGTG
TTCTTAAGGCAGCACTCAATGCAGTCGATGATGGCCATGCTGGACTTCAGGGGCTAGGAGGTGATGCGAC
GCTCTTATTCTATGGAACCGAAGAAGGTATAGAAGGAAGAACAGCTTATATGCAACGCCGACCACCGGAC
TTCTCTAAATTTCCCCGGCGACCTTGAACTCACTACTGAGCTCAGTTCAGGTGTTTTCATAAAACATTTG
TTCTCATTTCAATCAGATTCCTTTGTTCTGTTTGTCAAATTAATTCCAGACTTCAACTATTACACACAA
Downstream Sequence
GTTTGTTAGTGTAACGTGTTCGACTAACTCTCTCTCTCTCTCTCTCTGGTGTGTGTGTTT
CTTTCTTCTTCAGTTGAATAGTTGTTGGTTATGTAGATTACTATAAACCGTCCGGAGAGA
AGAAACGCGTTCCGGCCTCAGACTGTGAAGGAGCTTATGCGTGCGTTTAACGACGCCAGA
GACGATAGCTCTGTAGGAGTCATCATACTCACCGGCAAGGTAATTTAGTTAGTTATGAGC
TTTCTCTAGCTTAGGCCCAATCCTGTGCATAGCGATAGTTGTCAAAGTTTGAATGGTAAT
TTGGCTCCAAAATGATTGAAAATATATATGTATTTGATCATTTAGTTTTTTTTTCAAGTC
ACATAAATGTCAGGACCGACCCTAGGCTAAGAGCTTTTGTGTTGAGTCTTTAGAGTTTGA
TGAAAAAGAGTTCTTCTGTTTAGATTGTTGTAAGTGAAATGATTGTTCTGAATAGTTATG
TTGATGGTTTAGGGAACGAAAGCGTTTTGCAGTGGTGGTGATCAAGCGTTGAGGACACCA
GATGGTTATGCTGATCCCAATGATGTTGGTCGACTTAATGTCCTTGATCTCCAGGTATGT
CTTTGATTTTCTATACTAAAATAAAAGCGCAGGTTATCTTAGTCTTAGTAGGATTAGTGT
ATTTATTCAACTTTGTTTCTTATCTTCATTCTCAGGTTCAAATCCGAAGACTGCCAAAAC
CAGTTATCGCAATGGTAAGTAGATTCAAACAATTTCTTGTTTAGTCTATGCATCTTTTAC
TGATCTTGGTTGCGTGTTTCTTGTGATGACTAATTCAGGTTGCTGGTTATGCTGTTGGGG
GAGGACATATCTTGCACATGGTCTGCGATCTAACCATTGCAGCTGATAATGCTATTTTCG
GTCAGACGGGTCCTAAGGTTTTCCCTCTAGCCTCTTTTTTCAACTTTGAATGTGACAGTG
AAGTAGGAGCAGAGTTTATACTAATCCTCATTGATCATTAAGTATCGATTTTCTGTCTGC
AGGTTGGAAGTTTTGATGCTGGTTATGGAAGTTCAATCATGTCTCGTCTGGTAATAACTC
GATACAACTAACTGACTAGTAGTACTACGATGCAACAAACACGGGCTGATCAAACTGTCT
GAAAAAACAAAAACAGGTTGGTCCTAAAAAGGCACGAGAAATGTGGTTCATGACGAGATT
CTACACAGCTTCGGAAGCAGATAAAATGGGACTTATCAATACAGTTGTACCGGTAAAATT
AATCAGTAGTGTTATCACAGATTCATAAATGCATAACTTACTTTCTTGTTTTGTTCATTC
ACTGAGACATGTTTTTGTATGTTCCAGCTAGAGGAATTGGAGAAAGAAACTGTAAAATGG
TGCAGAGAAATCTTACGGAATAGCCCTACTGCAATCCGTGTTCTTAAGGCAGCACTCAAT
GCAGTCGATGATGGCCATGCTGGACTTCAGGTTCTAGCCTTTTCCACCAACTTGTTAAGC
CACAAGTCAGTATTATTTCATTAATATACTTCTTTCCTAAACATTATTTGGTATACAGGG
GCTAGGAGGTGATGCGACGCTCTTATTCTATGGAACCGAAGAAGGTATAGAAGGAAGAAC
AGCTTATATGCAACGCCGACCACCGGACTTCTCTAAATTTCCCCGGCGACCTTGAACTCA
CTACTGAGCTCAGTTCAGGTGTTTTCATAAAACATTTGTTCTCATTTCAATCAGATTCCT
TTGTTCTGTTTGTCAAATTAATTCCAGACTTCAACTATTACACACAATGAATAATGATAA
TAATAATACTTTATCAGAGCTTTACTTGGATTCATAGAAACGAGAAAAACATTCACGTTC
CAAGTAAGAAATTATCATTACCACAAAACTTAAAAGCAAAATCCAGGTCCAAGAGATTCA
CTTAAGCCATAAAAACTCAACACATTAACGGGGACTTGTGTTGGCAATAACACTGGTTTT
GTAAACTTCAGGCATGTTAC
Pro Sequence
MADSKELGTASRRISVFTNHLIPLETIPTRVHSVELSTASSMNDNYHKVH
GEVPTHQVVWRKADLVGDDGETKEFVDIIYEKAVGEDIAKITINRPERRN
AFRPQTVKELMRAFNDARDDSSVGVIILTGKGTKAFCSGGDQALRTPDGY
ADPNDVGRLNVLDLQVQIRRLPKPVIAMVAGYAVGGGHILHMVCDLTIAA
DNAIFGQTGPKVGSFDAGYGSSIMSRLVGPKKAREMWFMTRFYTASEADK
MGLINTVVPLEELEKETVKWCREILRNSPTAIRVLKAALNAVDDGHAGLQ
GLGGDATLLFYGTEEGIEGRTAYMQRRPPDFSKFPRRP
mRNA Sequence
GGCGCGCCAAGAGATTACGTCCACTTCCTCTGATTCTCCAAACCTTCAAGCTTCTTCCTTTTTTGGAAGA
ATTCAATTAATTATTTATTCTCTTTAACTAAACAAATATTTTATCCAAACTATTGTCAAAGTCCATGCGA
TAGAATCATCTTCATCACCAATCATCATCACCTTTCTCTGTCTATACTTCTTCCTCTCTAATGGCTGACT
CCAAGGAACTCGGCACCGCGAGCCGCCGTATCTCCGTCTTCACCAATCATCTCATCCCCTTGGAAACAAT
TCCAACTCGCGTTCACTCAGTGGAACTCTCTACTGCCTCGTCGATGAATGACAATTACCATAAGGTTCAC
GGTGAAGTGCCGACTCACCAAGTCGTTTGGAGAAAAGCTGATCTCGTCGGTGACGACGGAGAAACGAAAG
AGTTCGTTGACATTATATATGAGAAAGCCGTCGGTGAAGATATTGCCAAGATTACTATAAACCGTCCGGA
GAGAAGAAACGCGTTCCGGCCTCAGACTGTGAAGGAGCTTATGCGTGCGTTTAACGACGCCAGAGACGAT
AGCTCTGTAGGAGTCATCATACTCACCGGCAAGGGAACGAAAGCGTTTTGCAGTGGTGGTGATCAAGCGT
TGAGGACACCAGATGGTTATGCTGATCCCAATGATGTTGGTCGACTTAATGTCCTTGATCTCCAGGTTCA
AATCCGAAGACTGCCAAAACCAGTTATCGCAATGGTTGCTGGTTATGCTGTTGGGGGAGGACATATCTTG
CACATGGTCTGCGATCTAACCATTGCAGCTGATAATGCTATTTTCGGTCAGACGGGTCCTAAGGTTGGAA
GTTTTGATGCTGGTTATGGAAGTTCAATCATGTCTCGTCTGGTTGGTCCTAAAAAGGCACGAGAAATGTG
GTTCATGACGAGATTCTACACAGCTTCGGAAGCAGATAAAATGGGACTTATCAATACAGTTGTACCGCTA
GAGGAATTGGAGAAAGAAACTGTAAAATGGTGCAGAGAAATCTTACGGAATAGCCCTACTGCAATCCGTG
TTCTTAAGGCAGCACTCAATGCAGTCGATGATGGCCATGCTGGACTTCAGGGGCTAGGAGGTGATGCGAC
GCTCTTATTCTATGGAACCGAAGAAGGTATAGAAGGAAGAACAGCTTATATGCAACGCCGACCACCGGAC
TTCTCTAAATTTCCCCGGCGACCTTGAACTCACTACTGAGCTCAGTTCAGGTGTTTTCATAAAACATTTG
TTCTCATTTCAATCAGATTCCTTTGTTCTGTTTGTCAAATTAATTCCAGACTTCAACTATTACACACAA