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Detail for ZS11_A06G30440.t1

Genome:
ZS11: ZS11_A06G30440.t1
ZS11_v0: BnaA06T0293300ZS
WE: WE_A06G34030.t1
WE_v0: BnaA06T0287600WE
Darmor: A06p30980.1_BnaDAR
BH: BnaA06T266100BH
Quinta: BnaA06T0281600QU
ZS2: BnaA06T254000ZS2
SW: BnaA06T279000SW
Express61: A06p024450.1_BnaEXP
Xiaoyun: BnaA06G0315500XY
P202: BnaC03G075340P202.1
BL: BnaA06T266100BH
TA: BnaA06T256000TA
Da-Ae: Not available
RB: BnaA06T269800RB
No2127: BnaA06T0295700NO
P130: BnaA06G026150P130.1
Length: 529
KOG ID: KOG1284
KOG E-value: Not available
KOG Score: 944.0
KOG Annotation: Coenzyme transport and metabolism
Biological Process: GO:0009231(riboflavin biosynthetic process)
Cellular Component: -
Molecular Function: GO:0008686(3,4-dihydroxy-2-butanone-4-phosphate synthase activity),GO:0003935(GTP cyclohydrolase II activity)
KEGG Ortholog: K14652 ribBA; 3,4-dihydroxy 2-butanone 4-phosphate synthase / GTP cyclohydrolase II [EC:4.1.99.12 3.5.4.25]
NR Protein: XP_013643168.1
NR E-value: 2.800000e-299
NR Score: 1032.3
NR Annotation: XP_013643168.1 bifunctional riboflavin biosynthesis protein RIBA 1, chloroplastic [Brassica napus]
SwissProt Protein: P47924|RIBA1_ARATH
SwissProt E-value: Not available
SwissProt Score: 944.0
SwissProt Annotation: Bifunctional riboflavin biosynthesis protein RIBA 1, chloroplastic OS=Arabidopsis thaliana OX=3702 GN=RIBA1 PE=1 SV=2
CDS Sequence (1612 bp)
ATGTCTTCCATCAATCTATCGTCTTCGTCTCCTTCCACCATCTCTCTTTCCCGCTCCAGACTAAGCCAAA
GTTCTAGTACACCGATCCACCGTGTTAGTTTGCCATCTAACCATCAACCATCGTTCTCAATTAAAACCAC
TGGAAAAGTCAAAGCTTCAGTGATCTCCAGAGAAGACGATCTCCTCTCTTACACCAACGGAAACGCTCCC
ATCCAAGATCCATTACAGGCGGATTCAGTTTCCCTCGGAACACTTGCTCCTTCAGATTCAGCTAACGCAC
CACCCAATGGCTTCGTCGCTGAAGATGACGACTACGAGCTGGATTTGCCTACGCCTGGCTTCTCTTCCAT
CCCTGAGGCCATTCAAGACATTCGCCAAGGAAAGCTTGTGGTGGTTGTGGATGATGAAGATAGAGAAAAC
GAAGGCGACTTGGTAATGGCTGCTCAGCTAGCTACACCTGAAGCTATGGCTTTTATTGTCAAACATGGAA
CTGGGATAGTCTGTGTGAGTATGAAGGAAGATGATCTCGAGAGATTGAACCTTCCTCTTATGGTGAATCA
GAAGGAGAACGAAGAGAAACTCTGCACTGCATTCACAGTCACTGTCGATGCAAAACATGGTACAACGACA
GGAGTATCAGCACGTGACAGGGCGACAACGATACTCTCCCTTGCTTCAAGAGACTCAAAGCCTGAAGATT
TCAACCGCCCAGGGCATATCTTCCCGCTCAAGTACCGAGAAGGAGGAGTTTTGAAAAGAGCTGGACACAC
TGAAGCATCTGTTGATCTCACTGTTTTAGCTGGATTAGATCCTGTTGGAGTACTTTGTGAGATTGTTGAT
GATGATGGCTCCATGGCTAGATTACCAAAGCTCCGTCAGTTTGCAGCAGAGAATAGCCTGAAGATTGTCT
CCATTGCAGATTTGATCAGATATCGAAGGAAGAGAGATAAGCTAGTGGAACGTTCTTCTGCAGCTCGGAT
CCCAACAATGTGGGGACCTTTCACAGCTTATTGCTACAAGTCTATATTAGATGGGATAGAGCACATTGCA
ATGGTTAAGGGAGAGATAAGTGATGGTCAAGACATTCTTGTGAGGGTTCATTCAGAATGTCTTACGGGAG
ACATATTTGGATCAGCAAGGTGTGATTGCGGGAACCAGCTATCTCTTTCGATGCAGCAGATCGAGTCTGC
TGGTCGTGGTGTGTTAGTTTACTTGCGTGGACATGAAGGAAGAGGGATTGGTTTAGGACATAAGCTCCGA
GCTTACAATCTGCAAGATGCTGGTCGTGACACGGTTGAAGCTAATGAGGAGTTAGGACTTCCTGTTGATT
CTAGAGAGTATGGAATTGGTGCACAGATACTAAGGGACTTGGGAGTGAGAACGATGAAGCTAATGACAAA
TAATCCGGCTAAGTATGTTGGTCTGAAGGGATATGGATTAGCCATTGTGGGAAGAGTCCCTCTCTTGAGT
CTTATCACAAAGGAAAATAAGAGATATTTGGAGACAAAGAGGACTAAGATGGGTCACATGTATGGCTTGA
AGTTCAATGGTGATGTTGTGGAGAAGACTGATGATGCTGAAACCACCTGA
Upstream Sequence
AAGCAAAGCAAGTGTGGTCTGGTCTTATCTCTCTCACCGAATCATATCATCGCACGCACGCACCCAAAGA
GAAAGAGATCGGATCCATAATTTTCTTCCACTTCCCAAATTGGGCCGCCACTAGAATAAGCTTCGCTCAT
CGCTATCGTCATCATCCCGCAACTAACCCCTCTTTTCTCCGCATCTTCCTTCTTCTTCTTCTTCATAAAG
CCTCCTGATTTTTTTCGAAGATCGTGACTAAAAATCTACACAAAGTCTAGATTTTGCGATAAGGGTTATC
TTCAGAAAGACATGTCTTCCATCAATCTATCGTCTTCGTCTCCTTCCACCATCTCTCTTTCCCGCTCCAG
ACTAAGCCAAAGTTCTAGTACACCGATCCACCGTGTTAGTTTGCCATCTAACCATCAACCATCGTTCTCA
ATTAAAACCACTGGAAAAGTCAAAGCTTCAGTGATCTCCAGAGAAGACGATCTCCTCTCTTACACCAACG
GAAACGCTCCCATCCAAGATCCATTACAGGCGGATTCAGTTTCCCTCGGAACACTTGCTCCTTCAGATTC
AGCTAACGCACCACCCAATGGCTTCGTCGCTGAAGATGACGACTACGAGCTGGATTTGCCTACGCCTGGC
TTCTCTTCCATCCCTGAGGCCATTCAAGACATTCGCCAAGGAAAGCTTGTGGTGGTTGTGGATGATGAAG
ATAGAGAAAACGAAGGCGACTTGGTAATGGCTGCTCAGCTAGCTACACCTGAAGCTATGGCTTTTATTGT
CAAACATGGAACTGGGATAGTCTGTGTGAGTATGAAGGAAGATGATCTCGAGAGATTGAACCTTCCTCTT
ATGGTGAATCAGAAGGAGAACGAAGAGAAACTCTGCACTGCATTCACAGTCACTGTCGATGCAAAACATG
GTACAACGACAGGAGTATCAGCACGTGACAGGGCGACAACGATACTCTCCCTTGCTTCAAGAGACTCAAA
GCCTGAAGATTTCAACCGCCCAGGGCATATCTTCCCGCTCAAGTACCGAGAAGGAGGAGTTTTGAAAAGA
GCTGGACACACTGAAGCATCTGTTGATCTCACTGTTTTAGCTGGATTAGATCCTGTTGGAGTACTTTGTG
AGATTGTTGATGATGATGGCTCCATGGCTAGATTACCAAAGCTCCGTCAGTTTGCAGCAGAGAATAGCCT
GAAGATTGTCTCCATTGCAGATTTGATCAGATATCGAAGGAAGAGAGATAAGCTAGTGGAACGTTCTTCT
GCAGCTCGGATCCCAACAATGTGGGGACCTTTCACAGCTTATTGCTACAAGTCTATATTAGATGGGATAG
AGCACATTGCAATGGTTAAGGGAGAGATAAGTGATGGTCAAGACATTCTTGTGAGGGTTCATTCAGAATG
TCTTACGGGAGACATATTTGGATCAGCAAGGTGTGATTGCGGGAACCAGCTATCTCTTTCGATGCAGCAG
ATCGAGTCTGCTGGTCGTGGTGTGTTAGTTTACTTGCGTGGACATGAAGGAAGAGGGATTGGTTTAGGAC
ATAAGCTCCGAGCTTACAATCTGCAAGATGCTGGTCGTGACACGGTTGAAGCTAATGAGGAGTTAGGACT
TCCTGTTGATTCTAGAGAGTATGGAATTGGTGCACAGATACTAAGGGACTTGGGAGTGAGAACGATGAAG
CTAATGACAAATAATCCGGCTAAGTATGTTGGTCTGAAGGGATATGGATTAGCCATTGTGGGAAGAGTCC
CTCTCTTGAGTCTTATCACAAAGGAAAATAAGAGATATTTGGAGACAAAGAGGACTAAGATGGGTCACAT
GTATGGCTTGAAGTTCAATGGTGATGTTGTGGAGAAGACTGATGATGCTGAAACCACCTGAATCTTGAGT
CCAAAAGCTCGTGAACCAGTTTGAAGCGAATCAAACCAAACCGTGAAGACATATGAATGATACTTCAGAA
AGAAAAAAACAGGAAAAAAATTTGACACAAAAAACCAAGGCAAGAAAATACTTTTGATATATACCTGAGG
AAGTTGATTGGATTGGTTTTATATTCTTCTAGTATGATCTTTATTTGATTATTTACATTTCTTCTGTTAC
GAATTTGTCAACATTGTTACTTTTTGAGTAGTTGCATTTGATTTGTGAAACTGTGAAATGAGGAAGCTTT
GTAGTGTACAATTTATTCCTAATAAAATCATGAGTCTCTTAAATGTT
Downstream Sequence
GTGAGCTTTTTCTCCTCAATTTGTGTGATTTAGAATTGGATCATGAGAGATTCATAGTTT
TCAAAGATTTTGATGTTTATGTGCAGACTAAGCCAAAGTTCTAGTACACCGATCCACCGT
GTTAGTTTGCCATCTAACCATCAACCATCGTTCTCAATTAAAACCACTGGAAAAGTCAAA
GCTTCAGTGATCTCCAGAGAAGACGATCTCCTCTCTTACACCAACGGAAACGCTCCCATC
CAAGATCCATTACAGGCGGATTCAGTTTCCCTCGGAACACTTGCTCCTTCAGATTCAGCT
AACGCACCACCCAATGGCTTCGTCGCTGAAGATGACGACTACGAGCTGGATTTGCCTACG
CCTGGCTTCTCTTCCATCCCTGAGGCCATTCAAGACATTCGCCAAGGAAAGGTTTGCTTC
TTCTTGTGCTTAGTTAAAATAAAGTTTCAACCTTTTTTTCGTGTCCTTGATTTGATTTGG
CGGTTATGTTGTGTTAGCTTGTGGTGGTTGTGGATGATGAAGATAGAGAAAACGAAGGCG
ACTTGGTAATGGCTGCTCAGCTAGCTACACCTGAAGCTATGGCTTTTATTGTCAAACATG
GAACTGGGATAGTCTGTGTGAGTATGAAGGAAGATGATCTCGAGAGATTGAACCTTCCTC
TTATGGTGAATCAGAAGGAGAACGAAGAGAAACTCTGCACTGCATTCACAGTCACTGTCG
TATGTCTCTTTCTTCTCTCTCTCTCTCTCTCTCTTTGATCTAGTTCTTGATTTTGATAAT
TTTCTTGTTTTTTTTTGAAGGATGCAAAACATGGTACAACGACAGGAGTATCAGCACGTG
ACAGGGCGACAACGATACTCTCCCTTGCTTCAAGAGACTCAAAGCCTGAAGATTTCAACC
GCCCAGGGCATATCTTCCCGCTCAAGTACCGAGAAGGAGGAGTTTTGAAAAGAGCTGGAC
ACACTGAAGCATCTGTTGATCTCACTGTTTTAGCTGGATTAGATCCTGTTGGAGTACTTT
GTGAGATTGTTGATGATGATGGCTCCATGGCTAGATTACCAAAGCTCCGTCAGTTTGCAG
CAGAGAATAGCCTGAAGATTGTCTCCATTGCAGATTTGATCAGGTCAGGCCCTCTCTCTT
CATGTTATTTACTAAGCCTGGGTATTTTTGCATATTGGATCCGGTTCGGATATTTTTAAT
TCGGATTTTTGGTTATCTCGGGTCGGGGTCGGGTTCGAATATTTAAATTTTTGAAAAAAT
CAAATTATTCATTGCTCAAGTTTTCTGTACTTCAAATTTTACAAATAAGGTAACTAATTT
TCTAATTTTTAATAAGTTGGACGATTAATAGATTCGAAGATAAAACTTTGAAAAAAGAAA
GAAACTAATTTGGTTGTTGTTTTGATATTTTGAATGCAACTTGTGTTAATGCACGAAACA
AAAGCTAAATTTTCGTTCTGGTGAGATAGATATCGAAGGAAGAGAGATAAGCTAGTGGAA
CGTTCTTCTGCAGCTCGGATCCCAACAATGTGGGGACCTTTCACAGCTTATTGCTACAAG
TCTATATTAGATGGGATAGAGCACATTGCAATGGTTAAGGTTAGAGCAGTGCCTTTTAAA
AACAGCTCTCTTTGGTTTTGACTTCAGAATCTAAAATCCGTTTGTGTGAAACTGTGGACA
GGGAGAGATAAGTGATGGTCAAGACATTCTTGTGAGGGTTCATTCAGAATGTCTTACGGG
AGACATATTTGGATCAGCAAGGTGTGATTGCGGGAACCAGCTATCTCTTTCGATGCAGCA
GATCGAGTCTGCTGGTCGTGGTGTGTTAGTTTACTTGCGTGGACATGAAGGAAGAGGGAT
TGGTTTAGGACATAAGCTCCGAGCTTACAATCTGCAAGATGCTGGTCGTGACACGGTTGA
AGCTAATGAGGAGTTAGGACTTCCTGTTGATTCTAGAGAGTATGGAATTGGTGCACAGGT
AAATTAAAAGATCTCATTAT
Pro Sequence
MSSINLSSSSPSTISLSRSRLSQSSSTPIHRVSLPSNHQPSFSIKTTGKV
KASVISREDDLLSYTNGNAPIQDPLQADSVSLGTLAPSDSANAPPNGFVA
EDDDYELDLPTPGFSSIPEAIQDIRQGKLVVVVDDEDRENEGDLVMAAQL
ATPEAMAFIVKHGTGIVCVSMKEDDLERLNLPLMVNQKENEEKLCTAFTV
TVDAKHGTTTGVSARDRATTILSLASRDSKPEDFNRPGHIFPLKYREGGV
LKRAGHTEASVDLTVLAGLDPVGVLCEIVDDDGSMARLPKLRQFAAENSL
KIVSIADLIRYRRKRDKLVERSSAARIPTMWGPFTAYCYKSILDGIEHIA
MVKGEISDGQDILVRVHSECLTGDIFGSARCDCGNQLSLSMQQIESAGRG
VLVYLRGHEGRGIGLGHKLRAYNLQDAGRDTVEANEELGLPVDSREYGIG
AQILRDLGVRTMKLMTNNPAKYVGLKGYGLAIVGRVPLLSLITKENKRYL
ETKRTKMGHMYGLKFNGDVVEKTDDAETT
mRNA Sequence
AAGCAAAGCAAGTGTGGTCTGGTCTTATCTCTCTCACCGAATCATATCATCGCACGCACGCACCCAAAGA
GAAAGAGATCGGATCCATAATTTTCTTCCACTTCCCAAATTGGGCCGCCACTAGAATAAGCTTCGCTCAT
CGCTATCGTCATCATCCCGCAACTAACCCCTCTTTTCTCCGCATCTTCCTTCTTCTTCTTCTTCATAAAG
CCTCCTGATTTTTTTCGAAGATCGTGACTAAAAATCTACACAAAGTCTAGATTTTGCGATAAGGGTTATC
TTCAGAAAGACATGTCTTCCATCAATCTATCGTCTTCGTCTCCTTCCACCATCTCTCTTTCCCGCTCCAG
ACTAAGCCAAAGTTCTAGTACACCGATCCACCGTGTTAGTTTGCCATCTAACCATCAACCATCGTTCTCA
ATTAAAACCACTGGAAAAGTCAAAGCTTCAGTGATCTCCAGAGAAGACGATCTCCTCTCTTACACCAACG
GAAACGCTCCCATCCAAGATCCATTACAGGCGGATTCAGTTTCCCTCGGAACACTTGCTCCTTCAGATTC
AGCTAACGCACCACCCAATGGCTTCGTCGCTGAAGATGACGACTACGAGCTGGATTTGCCTACGCCTGGC
TTCTCTTCCATCCCTGAGGCCATTCAAGACATTCGCCAAGGAAAGCTTGTGGTGGTTGTGGATGATGAAG
ATAGAGAAAACGAAGGCGACTTGGTAATGGCTGCTCAGCTAGCTACACCTGAAGCTATGGCTTTTATTGT
CAAACATGGAACTGGGATAGTCTGTGTGAGTATGAAGGAAGATGATCTCGAGAGATTGAACCTTCCTCTT
ATGGTGAATCAGAAGGAGAACGAAGAGAAACTCTGCACTGCATTCACAGTCACTGTCGATGCAAAACATG
GTACAACGACAGGAGTATCAGCACGTGACAGGGCGACAACGATACTCTCCCTTGCTTCAAGAGACTCAAA
GCCTGAAGATTTCAACCGCCCAGGGCATATCTTCCCGCTCAAGTACCGAGAAGGAGGAGTTTTGAAAAGA
GCTGGACACACTGAAGCATCTGTTGATCTCACTGTTTTAGCTGGATTAGATCCTGTTGGAGTACTTTGTG
AGATTGTTGATGATGATGGCTCCATGGCTAGATTACCAAAGCTCCGTCAGTTTGCAGCAGAGAATAGCCT
GAAGATTGTCTCCATTGCAGATTTGATCAGATATCGAAGGAAGAGAGATAAGCTAGTGGAACGTTCTTCT
GCAGCTCGGATCCCAACAATGTGGGGACCTTTCACAGCTTATTGCTACAAGTCTATATTAGATGGGATAG
AGCACATTGCAATGGTTAAGGGAGAGATAAGTGATGGTCAAGACATTCTTGTGAGGGTTCATTCAGAATG
TCTTACGGGAGACATATTTGGATCAGCAAGGTGTGATTGCGGGAACCAGCTATCTCTTTCGATGCAGCAG
ATCGAGTCTGCTGGTCGTGGTGTGTTAGTTTACTTGCGTGGACATGAAGGAAGAGGGATTGGTTTAGGAC
ATAAGCTCCGAGCTTACAATCTGCAAGATGCTGGTCGTGACACGGTTGAAGCTAATGAGGAGTTAGGACT
TCCTGTTGATTCTAGAGAGTATGGAATTGGTGCACAGATACTAAGGGACTTGGGAGTGAGAACGATGAAG
CTAATGACAAATAATCCGGCTAAGTATGTTGGTCTGAAGGGATATGGATTAGCCATTGTGGGAAGAGTCC
CTCTCTTGAGTCTTATCACAAAGGAAAATAAGAGATATTTGGAGACAAAGAGGACTAAGATGGGTCACAT
GTATGGCTTGAAGTTCAATGGTGATGTTGTGGAGAAGACTGATGATGCTGAAACCACCTGAATCTTGAGT
CCAAAAGCTCGTGAACCAGTTTGAAGCGAATCAAACCAAACCGTGAAGACATATGAATGATACTTCAGAA
AGAAAAAAACAGGAAAAAAATTTGACACAAAAAACCAAGGCAAGAAAATACTTTTGATATATACCTGAGG
AAGTTGATTGGATTGGTTTTATATTCTTCTAGTATGATCTTTATTTGATTATTTACATTTCTTCTGTTAC
GAATTTGTCAACATTGTTACTTTTTGAGTAGTTGCATTTGATTTGTGAAACTGTGAAATGAGGAAGCTTT
GTAGTGTACAATTTATTCCTAATAAAATCATGAGTCTCTTAAATGTT