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DETAIL

Detail for ZS11_C01G50720.t1

Genome:
ZS11: ZS11_C01G50720.t1
ZS11_v0: BnaC01T0431000ZS
WE: WE_C01G51020.t1
WE_v0: BnaC01T0362400WE
Darmor: C01p48920.1_BnaDAR
BH: BnaC01T445000BH
Quinta: BnaC01T0319400QU
ZS2: BnaC01T401400ZS2
SW: BnaA01T313400SW
Express61: C05p035450.1_BnaEXP
Xiaoyun: BnaC01G0426800XY
P202: BnaC01G072880P202.1
BL: BnaC01T445000BH
TA: BnaC01T416800TA
Da-Ae: rna-gnl|WGS:JAGKQM|BnaA01g32880D
RB: BnaC01T445500RB
No2127: BnaC01T0313100NO
P130: BnaC01G050250P130.1
Length: 289
KOG ID: -
KOG E-value: Not available
KOG Score: Not available
KOG Annotation: -
Biological Process: -
Cellular Component: -
Molecular Function: GO:0008168(methyltransferase activity)
KEGG Ortholog: -
NR Protein: XP_013714712.1
NR E-value: 1.200000e-158
NR Score: 564.3
NR Annotation: XP_013714712.1 uncharacterized protein LOC106418536 [Brassica napus]
SwissProt Protein: Q74LY0|MENG_LACJO
SwissProt E-value: 3.090000e-09
SwissProt Score: 59.7
SwissProt Annotation: Demethylmenaquinone methyltransferase OS=Lactobacillus johnsonii (strain CNCM I-12250 / La1 / NCC 533) OX=257314 GN=menG PE=3 SV=1
CDS Sequence (882 bp)
ATGGGTAAAACCGCCGGGAACAGAGACTGGGCTCAGATCTACGCTATATACGGTATTGAACAATGGCAGA
CGCTCGTCTTCCTTCTCTTCCATGCCTTCGTCTTCTCCCTCCTCTCCGTCCTCTTCCTCATCTACTTCGA
CCAGATTTGCTTCTTCCTCGACTCCTTCTTCCTCTCCGGCGCCGCCAGACTAGCCGCAGGGTTCACCGGC
GCAGTCACCGCTCTTTCCGCCGTGTGCCTCCTCTTCGCCGCCGCTAATTTCCTCTACTCCGACGTTCCGC
TCCAGTACAAGATGGCTCAGCGCATGGTCAGCTCCGTCGGCGACTGGTCGTGCGTCAAAACGGCTCTCGA
TCTCGGCTGCGGACGCGGCATTCTCCTCAATGCCGTCGCTACTCAGCTCAAGAAAACCGGTAGCTCCGGT
CGGGTCGTCGGGTTAGACCGGTCCAAACGCACCACTCTCTCAACTCTCCGCACCGCCAAACTCGAAGGTG
TGCAAGAGTACGTGACTTGTCGGGAAGGAGACGTGAGGACGTTACCGTTTGGGGATAACTACTTCGACGT
GGTGGTCTCGTCGGTGTTTGTGCACACTGTGGGGAAAGAGCACGGTCAGAAGTCGGTGGAGGCTGCGGCG
GAGAGGATGAGGGTGTTAGGGGAGATAGTGAGAGTAGTTAAGCCTGGAGGCTTGTGCGTGGTGTGGGATC
TCTTACACGTGCCTGAGTACGTGCGGAGACTCCAGGAGTTAAAGATGGAGGATATCCGAGTCTCTGAGCG
AGTCACGGCGTTTATGGCTGCAAGCCACATCGTGTCGTTCCGTAAACCTAGCGAACTCGTCGCCGGACCA
CGTGAAGTCCGGCTCGATTGGAGATGCTGA
Upstream Sequence
TGCCATTTTTCATCTTCTTCTTCTTCTTCATAAGTTCACTCTCTCACCATGTTCTTCTGACGATGCTCTC
ATCATCATCGTCCTTGATCTATTCTCATCTCATTCACCACTTCAGTTGTATTTGAATCATCTCATTCACC
ACTTCAGTTGTATTTGAAAGTCAGTTTCAAACTCCTGAGATCTATTTGTTTCCCCAAGAAAACAGCTTGT
TTTCAACTCCCGTCGTGTCTGAAGCCTCTAGTACTTGTTCTTTCCTTTTCTGTCAGCTACAGTTTCCTTA
TTGGGAGTTTGTGTCACGACTCACGACGACCTTATAGATCGTTTGATCGGAACCTAGAAATATATCAAAA
TGGGTAAAACCGCCGGGAACAGAGACTGGGCTCAGATCTACGCTATATACGGTATTGAACAATGGCAGAC
GCTCGTCTTCCTTCTCTTCCATGCCTTCGTCTTCTCCCTCCTCTCCGTCCTCTTCCTCATCTACTTCGAC
CAGATTTGCTTCTTCCTCGACTCCTTCTTCCTCTCCGGCGCCGCCAGACTAGCCGCAGGGTTCACCGGCG
CAGTCACCGCTCTTTCCGCCGTGTGCCTCCTCTTCGCCGCCGCTAATTTCCTCTACTCCGACGTTCCGCT
CCAGTACAAGATGGCTCAGCGCATGGTCAGCTCCGTCGGCGACTGGTCGTGCGTCAAAACGGCTCTCGAT
CTCGGCTGCGGACGCGGCATTCTCCTCAATGCCGTCGCTACTCAGCTCAAGAAAACCGGTAGCTCCGGTC
GGGTCGTCGGGTTAGACCGGTCCAAACGCACCACTCTCTCAACTCTCCGCACCGCCAAACTCGAAGGTGT
GCAAGAGTACGTGACTTGTCGGGAAGGAGACGTGAGGACGTTACCGTTTGGGGATAACTACTTCGACGTG
GTGGTCTCGTCGGTGTTTGTGCACACTGTGGGGAAAGAGCACGGTCAGAAGTCGGTGGAGGCTGCGGCGG
AGAGGATGAGGGTGTTAGGGGAGATAGTGAGAGTAGTTAAGCCTGGAGGCTTGTGCGTGGTGTGGGATCT
CTTACACGTGCCTGAGTACGTGCGGAGACTCCAGGAGTTAAAGATGGAGGATATCCGAGTCTCTGAGCGA
GTCACGGCGTTTATGGCTGCAAGCCACATCGTGTCGTTCCGTAAACCTAGCGAACTCGTCGCCGGACCAC
GTGAAGTCCGGCTCGATTGGAGATGCTGACGTGGATTTTTAAAACGGCAGTGTCGGTTGGTTATATTATC
AAACGGCACGTAGTACAAGTCGGGAGGTTGGAAACGATGATTGTGATTATACTGTATTATTTTAGTTACG
AATATTAAAACTTAGAAATTTAAATACTGGGGAGGCGAAGCGGAACCAGATTAGCTTGTTAATGGCCGCG
TTTTGATCTTTGTATTTATTTATACAAACAATACTATTAATATAATCAGATCTTTATTATGGTGCT
Downstream Sequence
GTACACTTCCAAAGTCAACTCTCTAGTTTCTTTCAAATAAATGAAAAAATAAATAAAATG
ATAATAATAATAATTGTCGTTACACAACCTGTTCATGTTTTGAAGTTTGCTTCTGTTTTG
TAATCACTCAGGTGTGCAAGAGTACGTGACTTGTCGGGAAGGAGACGTGAGGACGTTACC
GTTTGGGGATAACTACTTCGACGTGGTGGTCTCGTCGGTGTTTGTGCACACTGTGGGGAA
AGAGCACGGTCAGAAGTCGGTGGAGGCTGCGGCGGAGAGGATGAGGGTGTTAGGGGAGAT
AGTGAGAGTAGTTAAGCCTGGAGGCTTGTGCGTGGTGTGGGATCTCTTACACGTGCCTGA
GTACGTGCGGAGACTCCAGGAGTTAAAGATGGAGGATATCCGAGTCTCTGAGCGAGTCAC
GGCGTTTATGGCTGCAAGCCACATCGTGTCGTTCCGTAAACCTAGCGAACTCGTCGCCGG
ACCACGTGAAGTCCGGCTCGATTGGAGATGCTGACGTGGATTTTTAAAACGGCAGTGTCG
GTTGGTTATATTATCAAACGGCACGTAGTACAAGTCGGGAGGTTGGAAACGATGATTGTG
ATTATACTGTATTATTTTAGTTACGAATATTAAAACTTAGAAATTTAAATACTGGGGAGG
CGAAGCGGAACCAGATTAGCTTGTTAATGGCCGCGTTTTGATCTTTGTATTTATTTATAC
AAACAATACTATTAATATAATCAGATCTTTATTATGGTGCTGAATCGACCATGTTTGAAG
GTTGAGTGAATTTCAAGACTTGCTTCTTCCTCGACTCCTTCCTCTCCGGCGCCACCAGAT
TAAAACTGGGGGAGGCGAAGCGGAACCAGATTAGCTTGTTAATTGCTGCGTTTTGATCTT
TGTATATATTTGGGTCCCTATATATTTATACAAACAATAGTATTAATATAATCAGACCTT
TATTATGGTGCTGAATCGACCATGTTGACTTAATTAGTGTAGGATTAAAAAAAATAGACC
ATGTTTGAAGGTTGAGTGAATTTCAAGATTGTCGTCTTGTAAAATTCGTTGGCCATTAAA
TGACATGTCTTTTTCATATTACATCGATGTGATAGATGTTCCCCCACATTATTAATTTAA
TTGTACGTTTGGGCCAAGGCTTTTACACATTCATAAGCGAATCCTCATAACGTCGCGAGT
TGTTTAATCAACGAGTGAATAGATAACATATCATAGGAGAACATAAGGCCGTTTATATGT
CATTTCTTAGGCTCATTGGAAGATATATCGTATCTTTTGAGAATCCATCAAAAGAAAGCC
TTATGGTCTATTTTAGATTCTGATTAGCACTTGATTGATCATTGAAGTTACGGACTCAGT
TCATCTGGATTGCCATTTTTGCCTCCTCGGCAATATTTGAACTACCCTAGGTGAGTCCTG
TTTTATTTCTCACTGTTGAATTAAATAAAGCAGCTCTTATGTGTGGGAACAGTAGGTTAG
CTGGAAGAGGAACTGTGGAAATCACCATTGAGAAAAGTGATGGTTCAACGTTTCAAGCTG
AAGCTGAGGTAGATCAAAGAAAGAGTGGCTACAATCTAGGTATCAAAGCTAAATGGGATT
TTAAATAAGGGTCAGTTACTTGTGTTTTACGCAACAATCTCTCTAGCTGTTCTTTTACGA
GACAATGCTTTTACTTATATTATCTGATTTAGGTTGATATCGATGGTTATTCAGCTCCAG
TAACAGCAGGGAATTCTGCAAAACTGGTTAGGTAGTTTACTTTAACTTCAACTTTTGCTA
ACTATACAATCTTAAACCTAAGAGGCTGTACTATGTACTCTTGAGTCTTGGGAACATGTG
ACACCCCAAAGCTGTTGCATCTCGCGTTGTCTCAGGTAACCAACGGTGCATATGATAGAG
CCAAACTCAATACAGTGAATCAAGCTGGTATCAAAAGTTCTACACCCTTTCTTCCACATA
ATAGAGTACAAGTATAACAT
Pro Sequence
MGKTAGNRDWAQIYAIYGIEQWQTLVFLLFHAFVFSLLSVLFLIYFDQIC
FFLDSFFLSGAARLAAGFTGAVTALSAVCLLFAAANFLYSDVPLQYKMAQ
RMVSSVGDWSCVKTALDLGCGRGILLNAVATQLKKTGSSGRVVGLDRSKR
TTLSTLRTAKLEGVQEYVTCREGDVRTLPFGDNYFDVVVSSVFVHTVGKE
HGQKSVEAAAERMRVLGEIVRVVKPGGLCVVWDLLHVPEYVRRLQELKME
DIRVSERVTAFMAASHIVSFRKPSELVAGPREVRLDWRC
mRNA Sequence
TGCCATTTTTCATCTTCTTCTTCTTCTTCATAAGTTCACTCTCTCACCATGTTCTTCTGACGATGCTCTC
ATCATCATCGTCCTTGATCTATTCTCATCTCATTCACCACTTCAGTTGTATTTGAATCATCTCATTCACC
ACTTCAGTTGTATTTGAAAGTCAGTTTCAAACTCCTGAGATCTATTTGTTTCCCCAAGAAAACAGCTTGT
TTTCAACTCCCGTCGTGTCTGAAGCCTCTAGTACTTGTTCTTTCCTTTTCTGTCAGCTACAGTTTCCTTA
TTGGGAGTTTGTGTCACGACTCACGACGACCTTATAGATCGTTTGATCGGAACCTAGAAATATATCAAAA
TGGGTAAAACCGCCGGGAACAGAGACTGGGCTCAGATCTACGCTATATACGGTATTGAACAATGGCAGAC
GCTCGTCTTCCTTCTCTTCCATGCCTTCGTCTTCTCCCTCCTCTCCGTCCTCTTCCTCATCTACTTCGAC
CAGATTTGCTTCTTCCTCGACTCCTTCTTCCTCTCCGGCGCCGCCAGACTAGCCGCAGGGTTCACCGGCG
CAGTCACCGCTCTTTCCGCCGTGTGCCTCCTCTTCGCCGCCGCTAATTTCCTCTACTCCGACGTTCCGCT
CCAGTACAAGATGGCTCAGCGCATGGTCAGCTCCGTCGGCGACTGGTCGTGCGTCAAAACGGCTCTCGAT
CTCGGCTGCGGACGCGGCATTCTCCTCAATGCCGTCGCTACTCAGCTCAAGAAAACCGGTAGCTCCGGTC
GGGTCGTCGGGTTAGACCGGTCCAAACGCACCACTCTCTCAACTCTCCGCACCGCCAAACTCGAAGGTGT
GCAAGAGTACGTGACTTGTCGGGAAGGAGACGTGAGGACGTTACCGTTTGGGGATAACTACTTCGACGTG
GTGGTCTCGTCGGTGTTTGTGCACACTGTGGGGAAAGAGCACGGTCAGAAGTCGGTGGAGGCTGCGGCGG
AGAGGATGAGGGTGTTAGGGGAGATAGTGAGAGTAGTTAAGCCTGGAGGCTTGTGCGTGGTGTGGGATCT
CTTACACGTGCCTGAGTACGTGCGGAGACTCCAGGAGTTAAAGATGGAGGATATCCGAGTCTCTGAGCGA
GTCACGGCGTTTATGGCTGCAAGCCACATCGTGTCGTTCCGTAAACCTAGCGAACTCGTCGCCGGACCAC
GTGAAGTCCGGCTCGATTGGAGATGCTGACGTGGATTTTTAAAACGGCAGTGTCGGTTGGTTATATTATC
AAACGGCACGTAGTACAAGTCGGGAGGTTGGAAACGATGATTGTGATTATACTGTATTATTTTAGTTACG
AATATTAAAACTTAGAAATTTAAATACTGGGGAGGCGAAGCGGAACCAGATTAGCTTGTTAATGGCCGCG
TTTTGATCTTTGTATTTATTTATACAAACAATACTATTAATATAATCAGATCTTTATTATGGTGCT