SEARCH

DETAIL

Detail for ZS11_A05G45240.t1

Genome:
ZS11: ZS11_A05G45240.t1
ZS11_v0: BnaA05T0494100ZS
WE: WE_C05G68450.t1
WE_v0: BnaA05T0444500WE
Darmor: C09p75010.1_BnaDAR
BH: BnaA05T406000BH
Quinta: BnaC02T0547900QU
ZS2: BnaA05T373700ZS2
SW: BnaA05T421400SW
Express61: C05p047810.1_BnaEXP
Xiaoyun: BnaC05G0571700XY
P202: BnaA05G035060P202.1
BL: BnaA05T406000BH
TA: BnaA05T369300TA
Da-Ae: Not available
RB: BnaA05T400200RB
No2127: BnaA05T0413500NO
P130: BnaA03G048430P130.1
Length: 176
KOG ID: KOG1269
KOG E-value: 1.170000e-111
KOG Score: 320.0
KOG Annotation: Lipid transport and metabolism; General function prediction only
Biological Process: -
Cellular Component: -
Molecular Function: GO:0008168(methyltransferase activity)
KEGG Ortholog: -
NR Protein: XP_013729821.1
NR E-value: 5.800000e-100
NR Score: 368.6
NR Annotation: XP_013729821.1 uncharacterized protein LOC106433536 [Brassica napus]
SwissProt Protein: A9WRT1|MENG_RENSM
SwissProt E-value: 8.320000e-07
SwissProt Score: 50.8
SwissProt Annotation: Demethylmenaquinone methyltransferase OS=Renibacterium salmoninarum (strain ATCC 33209 / DSM 20767 / JCM 11484 / NBRC 15589 / NCIMB 2235) OX=288705 GN=menG PE=3 SV=1
CDS Sequence (538 bp)
ATGAGCTCATGGGTTAGCCATCTACCAGAAGAGGTGAAGTACGAGAAAGTAGTGGGACATGGTCTTAACG
CACAGGAGCTTGCCAGAAACCCTAGACTCGATTACTTCTTCGTCAAGGATCTTAACGAGGATCAGAAACT
CGAGTTCCAAGACAAATATTTCGATGCGGTTTTATGTTCTGTCGGTGTACAGTATCTACAACAACCCGAA
AAGGTGTTTGCGGAAGTGTATAGAGTGTTGAAACCGGGAGGTGCGTTGATAGTGAGTTTTAGCAATCGGA
TGTTTTATGAGAAAGCAATCAGGGTTTGGAGAGATGGAACCGAGTACGGTCGGGTGCAACTGGTGGTTCA
GTACTTTCAGTCTGTCCAAGGGTTTACTCAGCCTGAGACCATCCGGCAACAGCCTCCTCCTGGTGGAGGA
GCTGAGAAACCGGTTTTGAATTGGTTTATGGGTTTAATTGGTTTAGCTTCTAGGCCGGACCCTTTTAATG
CTGTGATTGCTTATAAGAATTTCAAACCTCTGTATGAGTAA
Upstream Sequence
GCTAAAGATTCTTAGCTTGTAGCCACAAAATCCAAAACAGAGAGAGAATATATAGCTTTTTATGGATTCT
CTTCGATTCAAccttcagcaatctcctttCAGTTGAGACCCAGAAGAACTATTCGACCAAGAATCACTAA
CATTTCGAACCAAACCGAAGAAACCGATCCGCGACCACCATCCTCGGCCGGTAAGATCCAACGGTTAGTA
CTCAACAATGAAGGTCGTACTAAACTCAACGCCGGTCCTGACCGCGAATTCTATTCATACCCACGATTCG
TGAACCACGTCGACGACGGTTTCATATCCTCCTTAACGGATCTCTACAGAAACCGGTTAAGATCCGGTTC
GATCGTATTAGACCTGATGAGCTCATGGGTTAGCCATCTACCAGAAGAGGTGAAGTACGAGAAAGTAGTG
GGACATGGTCTTAACGCACAGGAGCTTGCCAGAAACCCTAGACTCGATTACTTCTTCGTCAAGGATCTTA
ACGAGGATCAGAAACTCGAGTTCCAAGACAAATATTTCGATGCGGTTTTATGTTCTGTCGGTGTACAGTA
TCTACAACAACCCGAAAAGGTGTTTGCGGAAGTGTATAGAGTGTTGAAACCGGGAGGTGCGTTGATAGTG
AGTTTTAGCAATCGGATGTTTTATGAGAAAGCAATCAGGGTTTGGAGAGATGGAACCGAGTACGGTCGGG
TGCAACTGGTGGTTCAGTACTTTCAGTCTGTCCAAGGGTTTACTCAGCCTGAGACCATCCGGCAACAGCC
TCCTCCTGGTGGAGGAGCTGAGAAACCGGTTTTGAATTGGTTTATGGGTTTAATTGGTTTAGCTTCTAGG
CCGGACCCTTTTAATGCTGTGATTGCTTATAAGAATTTCAAACCTCTGTATGAGTAAACAAACAAATAGT
CTATTATTTCATTTGAGAGTATAAATGCATTGTCACATTTTTTCT
Downstream Sequence
GGTACCTAACATTAAAATAATATGTATATGTACATATGTCTATTTCCTAAACCGGACATG
CGTATTAATGCTGCGTAGGTGTTTGCGGAAGTGTATAGAGTGTTGAAACCGGGAGGTGCG
TTGATAGTGAGTTTTAGCAATCGGATGTTTTATGAGAAAGCAATCAGGGTTTGGAGAGAT
GGAACCGAGTACGGTCGGGTGCAACTGGTGGTTCAGTACTTTCAGTCTGTCCAAGGGTTT
ACTCAGCCTGAGACCATCCGGCAACAGCCTCCTCCTGGTGGAGGAGCTGAGAAACCGGTT
TTGAATTGGTTTATGGGTTTAATTGGTTTAGCTTCTAGGCCGGACCCTTTTAATGCTGTG
ATTGCTTATAAGAATTTCAAACCTCTGTATGAGTAAACAAACAAATAGTCTATTATTTCA
TTTGAGAGTATAAATGCATTGTCACATTTTTTCTAATATTATTATGAATGGAAAATATAT
AGAAAAGAAGTTGATCTTGAATAACAAGTTTGAAACATAGATAAGAAAGAAAAAGAAGCT
TTGAATTAGAGGACCAAATCCAGCTGGAGAAACTTACAAGACAAATtcaaaacagtaaaa
aaaaaaaattagattttagaaaccaatgagattggaggaaCCTGTAATACAAAAGAATTA
ACTGAAAGAAAATTCAGACACACACACTGTGGAAATTATAATATATTATAACATAATTTT
CAATAGCATGCATGTGTTTGTGTGTGATTCGTTTTGTTTGTAGATTCATGAACAATTTTA
ACAATATCCAAGCAAGGTAGCTTTGTCCCTTTCCACGAGTATCACGAGTTGTCTATATAA
TGAACTTTTTTTAATTTTATCTATGACATTACTAAAAATGCGTTATATTATGTTAATTGC
ATGTAGTACGTACTACTGATGTACAGTTAATTAGTAATGTTAAGTAGCTATGAAGTTACC
AACCAAACAAATTTGGTTACGTTTTTATCAAAGGAAACGTCTACGGAAGTGTCAAAGACA
CAAAACAAATATTGAACCATAGATGAAGCAAAGAAGTTGATTCGAAGTTACCACTTGTTT
TCTTAATCCCTGTATATATATACATGCATGTGTACTAACCCAATCATTCACCTCCTCAAC
CCATCATATCCTTCACATATCGATTTTTCTTCAACCCCTACCTCCTCGGCGAGTATGGCC
AAACGCTTCCAGTTGAACCCAAAGCCCTTCAGTACTGACCCACCAGCCGATCCTCTCAAA
AGGGTCTCTCTGATCCCAAGATCCGCCGAGCAGAAGCTGACTGATAACCAAGGTGAGAGG
CGTCCCGTAGCCGCGAAAACTCACGAAGACGGTGAACAATCAGATGGTCACCATGTTGCT
CCTCCTCTCAAAACTGTGGAACCTACTAAGGTGATGGATCATGAGACCGAGAAGAAGGGT
TCCATTACCCCTAATACCGCACATCATCCTCATTCATCTGAGGATATCGTCGATGCCAAT
AGTCGACACTCTTTGGTGCCGAGATCACTGGGTGACAACTCTCTCGGTGGAAGATTTGGA
CCGGGAAAGAAACAAGCTTTCCATAGAAATGGGAGACCCATGTTTTCACTCTCTGATGAC
AGAGTGATGGCTGATAGAGTCTTGAAGTCTCATAGTCCAGACATGATCTTCTTTGATGTC
AAATCACTTCTCTCCGTTGTTGACGACATCTTCAAGTCTCATGTCCCATCCATCGACTCC
TCTGCTCCTAAGGTTTTTTGAATCTTGCTCCGCAATCAATCCCCAGCATTTCATATATAT
ATTGAATACTGATTTTATTTTTCTTTCAAATTCAAAATTGTGTAGCCGTCACTCGTTTTC
AAGGACTATGCTGACCATGTCTCCTTTGAAACTTTCGCGGACCTCATCGATCAGATCTCT
TGCGAGGTATTTACATACAGCCATCACATATGAAGCTTTTATTTTTCTAAAAAGTATCAA
TGTCTCTGACACAGATCGAG
Pro Sequence
MSSWVSHLPEEVKYEKVVGHGLNAQELARNPRLDYFFVKDLNEDQKLEFQ
DKYFDAVLCSVGVQYLQQPEKVFAEVYRVLKPGGALIVSFSNRMFYEKAI
RVWRDGTEYGRVQLVVQYFQSVQGFTQPETIRQQPPPGGGAEKPVLNWFM
GLIGLASRPDPFNAVIAYKNFKPLYE
mRNA Sequence
GCTAAAGATTCTTAGCTTGTAGCCACAAAATCCAAAACAGAGAGAGAATATATAGCTTTTTATGGATTCT
CTTCGATTCAAccttcagcaatctcctttCAGTTGAGACCCAGAAGAACTATTCGACCAAGAATCACTAA
CATTTCGAACCAAACCGAAGAAACCGATCCGCGACCACCATCCTCGGCCGGTAAGATCCAACGGTTAGTA
CTCAACAATGAAGGTCGTACTAAACTCAACGCCGGTCCTGACCGCGAATTCTATTCATACCCACGATTCG
TGAACCACGTCGACGACGGTTTCATATCCTCCTTAACGGATCTCTACAGAAACCGGTTAAGATCCGGTTC
GATCGTATTAGACCTGATGAGCTCATGGGTTAGCCATCTACCAGAAGAGGTGAAGTACGAGAAAGTAGTG
GGACATGGTCTTAACGCACAGGAGCTTGCCAGAAACCCTAGACTCGATTACTTCTTCGTCAAGGATCTTA
ACGAGGATCAGAAACTCGAGTTCCAAGACAAATATTTCGATGCGGTTTTATGTTCTGTCGGTGTACAGTA
TCTACAACAACCCGAAAAGGTGTTTGCGGAAGTGTATAGAGTGTTGAAACCGGGAGGTGCGTTGATAGTG
AGTTTTAGCAATCGGATGTTTTATGAGAAAGCAATCAGGGTTTGGAGAGATGGAACCGAGTACGGTCGGG
TGCAACTGGTGGTTCAGTACTTTCAGTCTGTCCAAGGGTTTACTCAGCCTGAGACCATCCGGCAACAGCC
TCCTCCTGGTGGAGGAGCTGAGAAACCGGTTTTGAATTGGTTTATGGGTTTAATTGGTTTAGCTTCTAGG
CCGGACCCTTTTAATGCTGTGATTGCTTATAAGAATTTCAAACCTCTGTATGAGTAAACAAACAAATAGT
CTATTATTTCATTTGAGAGTATAAATGCATTGTCACATTTTTTCT