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Detail for ZS11_C09G22220.t1

Genome:
ZS11: ZS11_C09G22220.t1
ZS11_v0: BnaC09T0186400ZS
WE: WE_C09G22920.t1
WE_v0: BnaC09T0190700WE
Darmor: C09p21740.1_BnaDAR
BH: BnaC09T041200BH
Quinta: BnaC09T0184100QU
ZS2: BnaC09T183700ZS2
SW: BnaC09T169600SW
Express61: C09p017640.1_BnaEXP
Xiaoyun: BnaC09G0188800XY
P202: BnaC09G029770P202.1
BL: BnaC09T041200BH
TA: BnaA09T160300TA
Da-Ae: rna-gnl|WGS:JAGKQM|BnaA01g07790D
RB: BnaC09T039800RB
No2127: BnaC09T0150900NO
P130: BnaA09G015350P130.1
Length: 330
KOG ID: KOG1680
KOG E-value: Not available
KOG Score: 595.0
KOG Annotation: Lipid transport and metabolism
Biological Process: GO:0009234(menaquinone biosynthetic process)
Cellular Component: -
Molecular Function: GO:0008935(1,4-dihydroxy-2-naphthoyl-CoA synthase activity),GO:0003824(catalytic activity)
KEGG Ortholog: K01661 menB; naphthoate synthase [EC:4.1.3.36]
NR Protein: XP_013725327.1
NR E-value: 2.100000e-188
NR Score: 663.3
NR Annotation: XP_013725327.1 1,4-dihydroxy-2-naphthoyl-CoA synthase, peroxisomal [Brassica napus]
SwissProt Protein: Q8GYN9|MENB_ARATH
SwissProt E-value: Not available
SwissProt Score: 619.0
SwissProt Annotation: 1,4-dihydroxy-2-naphthoyl-CoA synthase, peroxisomal OS=Arabidopsis thaliana OX=3702 GN=MENB PE=1 SV=2
CDS Sequence (1007 bp)
ATGGCGGACTCCAAGGAACTCGGCACCGCGAGCCGCCGTATCTCCGTCGTCACCAATCATCTCATCCCCT
TGGAAACAATTCCAACTCGCGTTCACTCAGTGGAACTCTCTACTGCTTCGTCGATGAATGACAAGTACCA
TAAGGTTCACGGTGAAGTGCCGACTCACCAAGTCGTTTGGAGAAAATCTGAACTCGAGTTTGTTGACATT
ATATATGAGAAAGCCGTTGGTGAAGATATTGCGAAGATTACTATAAACCGTCCAGAGAGAAGAAACGCGT
TCCGGCCTCAGACTGTGAAGGAGCTTATGCGTGCGTTTAATGACGCCAGAGACGATAGCTCTGTAGGTGT
CATCATACTCACCGGCAAGGGAACGAAAGCGTTTTGCAGTGGTGGTGATCAAGCGTTGAGGACACCAGAT
GGTTATGCTGATCCCAATGATGTTGGTCGACTTAATGTCCTTGATCTCCAGGTTCAAATCCGCAGACTGC
CAAAACCAGTTATCGCAATGGTTGCTGGTTATGCTGTTGGAGGAGGACATATCTTGCACATGGTTTGTGA
TCTAACCATTGCAGCTGATAATGCTATTTTCGGTCAGACGGGTCCTAAGGTTGGAAGTTTTGATGCTGGT
TATGGAAGTTCAATCATGTCTCGTCTGGTTGGTCCTAAAAAGGCACGGGAAATGTGGTTCATGACGAGAT
TCTACACAGCTTCGGAAGCAGATAAAATGGGACTCATCAATACAGTTGTACCGCTAGAGGATTTGGAGAA
AGAAACTGTGAAATGGTGCAGAGAAATCTTACGGAACAGCCCTACTGCAATCCGTGTGCTTAAGGCAGCA
CTCAATGCAGTCGATGATGGCCATGCCGGACTTCAGGGGCTAGGAGGTGATGCCACGCTCTTATTCTATG
GAACCGAAGAAGGTATAGAAGGAAGAACAGCTTATATGCAACGCCGACCACCGAACTTCTCTAAATTTCC
CCGGCGACCTTGA
Upstream Sequence
TTCAAGCTTCTTCTCCTTTGGAAGAATTCAATTGTTTATTCCTTTTTAATTAAAAATATAATTTATCTTT
ACTAGTGTCAAAGTCCATGCGATAGAATCTCTTGTCAATTGTCATCTACATCACCAATCATTCTCATCTT
TCTCTGTCCCTCGCTCCTTCCTCTCCAATGGCGGACTCCAAGGAACTCGGCACCGCGAGCCGCCGTATCT
CCGTCGTCACCAATCATCTCATCCCCTTGGAAACAATTCCAACTCGCGTTCACTCAGTGGAACTCTCTAC
TGCTTCGTCGATGAATGACAAGTACCATAAGGTTCACGGTGAAGTGCCGACTCACCAAGTCGTTTGGAGA
AAATCTGAACTCGAGTTTGTTGACATTATATATGAGAAAGCCGTTGGTGAAGATATTGCGAAGATTACTA
TAAACCGTCCAGAGAGAAGAAACGCGTTCCGGCCTCAGACTGTGAAGGAGCTTATGCGTGCGTTTAATGA
CGCCAGAGACGATAGCTCTGTAGGTGTCATCATACTCACCGGCAAGGGAACGAAAGCGTTTTGCAGTGGT
GGTGATCAAGCGTTGAGGACACCAGATGGTTATGCTGATCCCAATGATGTTGGTCGACTTAATGTCCTTG
ATCTCCAGGTTCAAATCCGCAGACTGCCAAAACCAGTTATCGCAATGGTTGCTGGTTATGCTGTTGGAGG
AGGACATATCTTGCACATGGTTTGTGATCTAACCATTGCAGCTGATAATGCTATTTTCGGTCAGACGGGT
CCTAAGGTTGGAAGTTTTGATGCTGGTTATGGAAGTTCAATCATGTCTCGTCTGGTTGGTCCTAAAAAGG
CACGGGAAATGTGGTTCATGACGAGATTCTACACAGCTTCGGAAGCAGATAAAATGGGACTCATCAATAC
AGTTGTACCGCTAGAGGATTTGGAGAAAGAAACTGTGAAATGGTGCAGAGAAATCTTACGGAACAGCCCT
ACTGCAATCCGTGTGCTTAAGGCAGCACTCAATGCAGTCGATGATGGCCATGCCGGACTTCAGGGGCTAG
GAGGTGATGCCACGCTCTTATTCTATGGAACCGAAGAAGGTATAGAAGGAAGAACAGCTTATATGCAACG
CCGACCACCGAACTTCTCTAAATTTCCCCGGCGACCTTGAACTCAGTTCAGGTGTTTTCATACAAACATT
TGTCCTCATTTCAATCATATTCCTTTGGTTTGTTTGCCAAATTAATTCTAGACTTCAACTATG
Downstream Sequence
GTTTGTTAGTGTAACGTGTTCGACTAACTCTCTCTCTCTCTCTGCTGTGTGTGTTTCTTT
CTTCTTCAGTTGAATAGTTTTTGGTTATGTAGATTACTATAAACCGTCCAGAGAGAAGAA
ACGCGTTCCGGCCTCAGACTGTGAAGGAGCTTATGCGTGCGTTTAATGACGCCAGAGACG
ATAGCTCTGTAGGTGTCATCATACTCACCGGCAAGGTAAATTAGTTAGTTATGAGCTTTG
TCTAGATTTAGGTTATGTTACTTTGTGTCTAGCTTAGGCTCAAGCCAGAGATGAAACATT
GGCCTTAAGCCGCTGTCAAAGTTTGAATGGTCATTTGGCTCCAAATTGATTGTTCTGAAT
AGTTGTGTTGTTGGTGGTATAGGGAACGAAAGCGTTTTGCAGTGGTGGTGATCAAGCGTT
GAGGACACCAGATGGTTATGCTGATCCCAATGATGTTGGTCGACTTAATGTCCTTGATCT
CCAGGTATGTCTTTGATTTTCAATACAAAAATAAAAGCTCAGGTTATCTAGTCTTAGTAG
GATTAGTGTATTTTTTCCAACTTTGTTTCTTATCTTCATTCTCAGGTTCAAATCCGCAGA
CTGCCAAAACCAGTTATCGCAATGGTATGCACCTTCTTAATACAATTGCCGGTCTAGTAT
ATTCATCTTTTACTGATCTTGGTTCCATGTCATTTTTGATGACTAATTCAGGTTGCTGGT
TATGCTGTTGGAGGAGGACATATCTTGCACATGGTTTGTGATCTAACCATTGCAGCTGAT
AATGCTATTTTCGGTCAGACGGGTCCTAAGGTTCTCCCTCTAGCCTCTTTTTTTCAACTT
TGAATGTGACAGTGAAGTAGGAGCAGGAGTTGATACTAATCTTCATTGATCATTAAGTAT
CGATTTTCTGTCTGCAGGTTGGAAGTTTTGATGCTGGTTATGGAAGTTCAATCATGTCTC
GTCTGGTAATAACTCGATACAACTGACTAATACTGCGATGCAACAAACACGGGCTGATCA
AACTGTCTGAAAAAAAACAAAACAAAACAAAAACAGGTTGGTCCTAAAAAGGCACGGGAA
ATGTGGTTCATGACGAGATTCTACACAGCTTCGGAAGCAGATAAAATGGGACTCATCAAT
ACAGTTGTACCGGTAAAGTTAATCGTGTAACCCATTGTGTTATCACATATTCATAAAACG
TAACGTTCCTAACTGAGACATGTTTTTTCTGTACTAGCTAGAGGATTTGGAGAAAGAAAC
TGTGAAATGGTGCAGAGAAATCTTACGGAACAGCCCTACTGCAATCCGTGTGCTTAAGGC
AGCACTCAATGCAGTCGATGATGGCCATGCCGGACTTCAGGTTCTAGCCTTTTCCACCAA
CTTGTTAAGCCACAAGTCAGTATTATTTCACTAATACACTTTTAACTTTATTTGGTACAC
AGGGGCTAGGAGGTGATGCCACGCTCTTATTCTATGGAACCGAAGAAGGTATAGAAGGAA
GAACAGCTTATATGCAACGCCGACCACCGAACTTCTCTAAATTTCCCCGGCGACCTTGAA
CTCAGTTCAGGTGTTTTCATACAAACATTTGTCCTCATTTCAATCATATTCCTTTGGTTT
GTTTGCCAAATTAATTCTAGACTTCAACTATGATAAACAATGAAGTGATAAAAATCTATT
TAAAGTTCATTTGGATTAATAGAAACGAGAAAAACATTAACGTTTAAACTAAGCAATTAT
CATTACCACAAAACTTAACGCAAAATCCATGTTTCAAGAGATCACAAGAGCCATAAGAAC
ACAAGACATTTACCATAGCTACAATTACAAATCAATTCCAGACTTTAGGCATGTTATTTT
TGCTTTAGATAGGCAACGATACTGAGAAAATAGGAAACAGATTGAAGCGGACATAGAAAG
CTAACACAAGTTTTGAGTCCAAATAAACAACAGCAAGAAAAGGTTTCAAACAGCAAGACA
ACATAAACAAGAAGCTTAGT
Pro Sequence
MADSKELGTASRRISVVTNHLIPLETIPTRVHSVELSTASSMNDKYHKVH
GEVPTHQVVWRKSELEFVDIIYEKAVGEDIAKITINRPERRNAFRPQTVK
ELMRAFNDARDDSSVGVIILTGKGTKAFCSGGDQALRTPDGYADPNDVGR
LNVLDLQVQIRRLPKPVIAMVAGYAVGGGHILHMVCDLTIAADNAIFGQT
GPKVGSFDAGYGSSIMSRLVGPKKAREMWFMTRFYTASEADKMGLINTVV
PLEDLEKETVKWCREILRNSPTAIRVLKAALNAVDDGHAGLQGLGGDATL
LFYGTEEGIEGRTAYMQRRPPNFSKFPRRP
mRNA Sequence
TTCAAGCTTCTTCTCCTTTGGAAGAATTCAATTGTTTATTCCTTTTTAATTAAAAATATAATTTATCTTT
ACTAGTGTCAAAGTCCATGCGATAGAATCTCTTGTCAATTGTCATCTACATCACCAATCATTCTCATCTT
TCTCTGTCCCTCGCTCCTTCCTCTCCAATGGCGGACTCCAAGGAACTCGGCACCGCGAGCCGCCGTATCT
CCGTCGTCACCAATCATCTCATCCCCTTGGAAACAATTCCAACTCGCGTTCACTCAGTGGAACTCTCTAC
TGCTTCGTCGATGAATGACAAGTACCATAAGGTTCACGGTGAAGTGCCGACTCACCAAGTCGTTTGGAGA
AAATCTGAACTCGAGTTTGTTGACATTATATATGAGAAAGCCGTTGGTGAAGATATTGCGAAGATTACTA
TAAACCGTCCAGAGAGAAGAAACGCGTTCCGGCCTCAGACTGTGAAGGAGCTTATGCGTGCGTTTAATGA
CGCCAGAGACGATAGCTCTGTAGGTGTCATCATACTCACCGGCAAGGGAACGAAAGCGTTTTGCAGTGGT
GGTGATCAAGCGTTGAGGACACCAGATGGTTATGCTGATCCCAATGATGTTGGTCGACTTAATGTCCTTG
ATCTCCAGGTTCAAATCCGCAGACTGCCAAAACCAGTTATCGCAATGGTTGCTGGTTATGCTGTTGGAGG
AGGACATATCTTGCACATGGTTTGTGATCTAACCATTGCAGCTGATAATGCTATTTTCGGTCAGACGGGT
CCTAAGGTTGGAAGTTTTGATGCTGGTTATGGAAGTTCAATCATGTCTCGTCTGGTTGGTCCTAAAAAGG
CACGGGAAATGTGGTTCATGACGAGATTCTACACAGCTTCGGAAGCAGATAAAATGGGACTCATCAATAC
AGTTGTACCGCTAGAGGATTTGGAGAAAGAAACTGTGAAATGGTGCAGAGAAATCTTACGGAACAGCCCT
ACTGCAATCCGTGTGCTTAAGGCAGCACTCAATGCAGTCGATGATGGCCATGCCGGACTTCAGGGGCTAG
GAGGTGATGCCACGCTCTTATTCTATGGAACCGAAGAAGGTATAGAAGGAAGAACAGCTTATATGCAACG
CCGACCACCGAACTTCTCTAAATTTCCCCGGCGACCTTGAACTCAGTTCAGGTGTTTTCATACAAACATT
TGTCCTCATTTCAATCATATTCCTTTGGTTTGTTTGCCAAATTAATTCTAGACTTCAACTATG