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Detail for ZS11_C09G09820.t1

Genome:
ZS11: ZS11_C09G09820.t1
ZS11_v0: BnaC09T0081800ZS
WE: WE_C09G09990.t1
WE_v0: BnaC09T0090900WE
Darmor: C09p09730.1_BnaDAR
BH: BnaA09T098500BH
Quinta: BnaC09T0085900QU
ZS2: BnaC09T082200ZS2
SW: BnaC09T055800SW
Express61: C09p008170.1_BnaEXP
Xiaoyun: BnaC09G0085500XY
P202: BnaC09G010320P202.1
BL: BnaA09T098500BH
TA: BnaA09T078000TA
Da-Ae: Not available
RB: BnaA09T084300RB
No2127: BnaC09T0050800NO
P130: BnaC09G006820P130.1
Length: 521
KOG ID: KOG1284
KOG E-value: Not available
KOG Score: 912.0
KOG Annotation: Coenzyme transport and metabolism
Biological Process: GO:0009231(riboflavin biosynthetic process)
Cellular Component: -
Molecular Function: GO:0003935(GTP cyclohydrolase II activity),GO:0008686(3,4-dihydroxy-2-butanone-4-phosphate synthase 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_013612678.1
NR E-value: 1.400000e-282
NR Score: 976.9
NR Annotation: XP_013612678.1 PREDICTED: bifunctional riboflavin biosynthesis protein RIBA 1, chloroplastic [Brassica oleracea var. oleracea]
SwissProt Protein: P47924|RIBA1_ARATH
SwissProt E-value: Not available
SwissProt Score: 912.0
SwissProt Annotation: Bifunctional riboflavin biosynthesis protein RIBA 1, chloroplastic OS=Arabidopsis thaliana OX=3702 GN=RIBA1 PE=1 SV=2
CDS Sequence (1588 bp)
ATGGCTTCGATCAATCTATCATCGTCCTCTCCTTCCACCATATCTCTCTCCCGCTCAAGACTTAGCCAAA
CCTCTACTACTACTACATTGCTCCACCGTATTACTTTACCATCTCACCATCCATCATCATCGTTCTCCAT
TAAAACCACTTCAAAAGTCAAAGCTTCAGTGATCTCTAGAGAAGATGATCTCCTCTCTTCTTACACCAAT
GGTTCTCTCGTTGACGAAGACTCCTCATCTCCTGCGCCAGCCAATGGTTTCGTTGCTGAAGATGATGACT
ACGAGTTGGATCTACCTACACCTGGCTTCTCTTCAATCCCTGAAGCCATTGAAGACATACGCCAAGGAAA
GCTTGTGGTGGTTGTGGATGATGAAGACAGAGAAAACGAAGGTGATTTGGTAATGGCTGCTCAGTTAGCT
ACACCTGAGGCTATGGCTTTCATTGTCAAACATGGAACTGGGATTGTTTGTGTGAGTATGAAAGACGATG
ATCTCCAGAGGTTGAACCTTCCTCTGATGGTGAACCAGAAGGAGAACGAGGAGAAGCTCTGCACTGCATT
CACAGTCACTGTCGATGCAAAACATGGTACAACAACAGGAGTATCAGCACGTGACAGGGCAACAACGATA
CTGTCACTTGCGTCTAGAGACTCAAAGCCTGAAGATTTCATCCGTCCAGGGCATATCTTTCCTCTCAAGT
ACCGAGAAGGCGGAGTTTTAAGAAGAGCTGGACACACTGAAGCATCTCTTGATCTTACTGTATTAGCTGG
ACTAGAACCTGTTGGAGTACTCTGTGAGATTGTTGATGATGATGGTTCCATGGCTAGATTACCAAAGCTC
CGTGAATTTGCAGCTGAAAACAACCTCAAAATTGTTTCCATTGCAGATTTGATCAGATATCGAAGGAAGA
GAGATAAGCTAGTGGAACGTTCTTCTGCAGCTCGGATTCCGACAATGTGGGGACCTTTCACAGCTTATTG
CTACAAGTCTATACTAGACGGTATAGAACACATTGCAATGGTTAAGGGAGAGATTGGTGACGGTCAAGAC
ATTCTTGTGAGGGTTCATTCAGAATGTCTCACTGGAGACATATTTGGATCAGCGAGGTGTGACTGCGGGA
ACCAGCTAGCTCTTGCGATGCAGCAGATTGAGTCTGCTGGTCGTGGTGTGTTGGTTTACCTACGTGGACA
CGAAGGAAGAGGGATTGGTTTAGGACACAAGCTTAGAGCTTATAATCTGCAAGATGCTGGGAGGGATACA
GTTGAAGCTAACGAGGAGCTAGGACTTCCTGTTGATTCTAGAGAGTATGGTATTGGTGCACAGGTACTGA
GGGATTTGGGAGTGAGGACGATGAAGCTGATGACGAATAATCCGGCTAAGTATGTTGGTTTGAAGGGATA
TGGATTAGCTATTGTGGGGAGAGTGCCTCTCTTGAGTCTTATCACAAAGGAGAATAAGAGATATCTGGAG
ACGAAGAGGGCCAAGATGGGTCACATGTATGGTTTGAAGTTCAATGGTGATGATGTTGTAGAGAAGATTG
ATGATTCTGCAACCACCGAGTCATGA
Upstream Sequence
TAGAATAAAGCTTCTCTAATCGCTATCGTCACCTAACCCACCTTTCTCCGCATCTTCTTCTTCATAAAGC
CTCGTGATTTTCTCGGAGAATTGCAAAAAAGGGTTTACTTTGATTTCATCTACAAATAGAGAAAGAGAAG
GAGACATGGCTTCGATCAATCTATCATCGTCCTCTCCTTCCACCATATCTCTCTCCCGCTCAAGACTTAG
CCAAACCTCTACTACTACTACATTGCTCCACCGTATTACTTTACCATCTCACCATCCATCATCATCGTTC
TCCATTAAAACCACTTCAAAAGTCAAAGCTTCAGTGATCTCTAGAGAAGATGATCTCCTCTCTTCTTACA
CCAATGGTTCTCTCGTTGACGAAGACTCCTCATCTCCTGCGCCAGCCAATGGTTTCGTTGCTGAAGATGA
TGACTACGAGTTGGATCTACCTACACCTGGCTTCTCTTCAATCCCTGAAGCCATTGAAGACATACGCCAA
GGAAAGCTTGTGGTGGTTGTGGATGATGAAGACAGAGAAAACGAAGGTGATTTGGTAATGGCTGCTCAGT
TAGCTACACCTGAGGCTATGGCTTTCATTGTCAAACATGGAACTGGGATTGTTTGTGTGAGTATGAAAGA
CGATGATCTCCAGAGGTTGAACCTTCCTCTGATGGTGAACCAGAAGGAGAACGAGGAGAAGCTCTGCACT
GCATTCACAGTCACTGTCGATGCAAAACATGGTACAACAACAGGAGTATCAGCACGTGACAGGGCAACAA
CGATACTGTCACTTGCGTCTAGAGACTCAAAGCCTGAAGATTTCATCCGTCCAGGGCATATCTTTCCTCT
CAAGTACCGAGAAGGCGGAGTTTTAAGAAGAGCTGGACACACTGAAGCATCTCTTGATCTTACTGTATTA
GCTGGACTAGAACCTGTTGGAGTACTCTGTGAGATTGTTGATGATGATGGTTCCATGGCTAGATTACCAA
AGCTCCGTGAATTTGCAGCTGAAAACAACCTCAAAATTGTTTCCATTGCAGATTTGATCAGATATCGAAG
GAAGAGAGATAAGCTAGTGGAACGTTCTTCTGCAGCTCGGATTCCGACAATGTGGGGACCTTTCACAGCT
TATTGCTACAAGTCTATACTAGACGGTATAGAACACATTGCAATGGTTAAGGGAGAGATTGGTGACGGTC
AAGACATTCTTGTGAGGGTTCATTCAGAATGTCTCACTGGAGACATATTTGGATCAGCGAGGTGTGACTG
CGGGAACCAGCTAGCTCTTGCGATGCAGCAGATTGAGTCTGCTGGTCGTGGTGTGTTGGTTTACCTACGT
GGACACGAAGGAAGAGGGATTGGTTTAGGACACAAGCTTAGAGCTTATAATCTGCAAGATGCTGGGAGGG
ATACAGTTGAAGCTAACGAGGAGCTAGGACTTCCTGTTGATTCTAGAGAGTATGGTATTGGTGCACAGGT
ACTGAGGGATTTGGGAGTGAGGACGATGAAGCTGATGACGAATAATCCGGCTAAGTATGTTGGTTTGAAG
GGATATGGATTAGCTATTGTGGGGAGAGTGCCTCTCTTGAGTCTTATCACAAAGGAGAATAAGAGATATC
TGGAGACGAAGAGGGCCAAGATGGGTCACATGTATGGTTTGAAGTTCAATGGTGATGATGTTGTAGAGAA
GATTGATGATTCTGCAACCACCGAGTCATGACTGGAGAATAAATATTAGATAATACTTCAAGAGAACACC
AGAAAAGAAACATAGACACAGAAGAGCAAGCAATGAAAGACTTCTGATCTATCTGAGGAGTTTTATTGGA
TTGGTTTAATGTATCTTGATTTGATTTTTTACAATACTTGCGTTACAAAATTTTCAACATTGTTGTTACT
TGTTATGTACTCTTGG
Downstream Sequence
GTCAGCTTTCCTCTTCCTAATCTCAAAGATTAAACCTATGGATCATGAGATGCATAGAAC
CTCAAATGATTTGATTTGATGATGATTCCATGTGCAGACTTAGCCAAACCTCTACTACTA
CTACATTGCTCCACCGTATTACTTTACCATCTCACCATCCATCATCATCGTTCTCCATTA
AAACCACTTCAAAAGTCAAAGCTTCAGTGATCTCTAGAGAAGATGATCTCCTCTCTTCTT
ACACCAATGGTTCTCTCGTTGACGAAGACTCCTCATCTCCTGCGCCAGCCAATGGTTTCG
TTGCTGAAGATGATGACTACGAGTTGGATCTACCTACACCTGGCTTCTCTTCAATCCCTG
AAGCCATTGAAGACATACGCCAAGGAAAGGTTGGCTCTTTTCTTGATTTATTAAAATAAA
AGTCTCCACCTTTTTTTCTTTGTTTCCTTTTATTGATTTGGTTGGTACTGTTTGTGTTAG
CTTGTGGTGGTTGTGGATGATGAAGACAGAGAAAACGAAGGTGATTTGGTAATGGCTGCT
CAGTTAGCTACACCTGAGGCTATGGCTTTCATTGTCAAACATGGAACTGGGATTGTTTGT
GTGAGTATGAAAGACGATGATCTCCAGAGGTTGAACCTTCCTCTGATGGTGAACCAGAAG
GAGAACGAGGAGAAGCTCTGCACTGCATTCACAGTCACTGTCGTATGTCTTTCTTCTCCT
CTCAATAAAAAGCTTCCATCTTAGTGCTGAGTTTTGGAGAATCTGTTGCTCATTGTTTTG
TCGTGGTTCCAAAAAGTGGTCTTAGTTAAAATCCGATTTATACGATTCAAATTGGTTTGA
ACCATCCTAAACCGGTTTAAATCGATCTAAAGTCTAAATCTGTTAAATTAAATAATAATG
TTAGCACAAATCCATAAATTTGTCTAATTCATTTTGTTTTGTATATCTAATTTTAATGAT
TCATCAAAATAGTTTTATAAATAAACCCAAAACTAAAATAACTTATAAAAATGTTAAAAA
TATAAATAAAAAAATTGTTAAGTCTAGGCTCCCAGAGGACCGAATAATCCGCCTATTAGT
TAGTCCTTTACACTTAGTGACCGTCTAGCAATTTCTTGAACATTGTGTTTTGTTTGCTTT
ATAGGATGCAAAACATGGTACAACAACAGGAGTATCAGCACGTGACAGGGCAACAACGAT
ACTGTCACTTGCGTCTAGAGACTCAAAGCCTGAAGATTTCATCCGTCCAGGGCATATCTT
TCCTCTCAAGTACCGAGAAGGCGGAGTTTTAAGAAGAGCTGGACACACTGAAGCATCTCT
TGATCTTACTGTATTAGCTGGACTAGAACCTGTTGGAGTACTCTGTGAGATTGTTGATGA
TGATGGTTCCATGGCTAGATTACCAAAGCTCCGTGAATTTGCAGCTGAAAACAACCTCAA
AATTGTTTCCATTGCAGATTTGATCAGGTTAGAGTGCAATGATTTTTTGGGTAATCAAAA
AGTGGTTTCACCACCTCTTTGTCGGAAAACCAAGCAATGTAAATAGTATCTCCCAACGAG
AATTGAACCCAAGTGCTTACTAGACACTTCTTTACCACCAGACCGACTAGCAACTTGTTG
GCTTTGTGTTTCTTTGAAGCTGAGAGTCTAAACTTTATGGTTTCTGTTAATGAACAGATA
TCGAAGGAAGAGAGATAAGCTAGTGGAACGTTCTTCTGCAGCTCGGATTCCGACAATGTG
GGGACCTTTCACAGCTTATTGCTACAAGTCTATACTAGACGGTATAGAACACATTGCAAT
GGTTAAGGTTAGTAGCAACATCTCTTGTTGCTTTGGACTTAAGAACAGGATCTCATTTTG
TCTGAAACTGTGGGCAGGGAGAGATTGGTGACGGTCAAGACATTCTTGTGAGGGTTCATT
CAGAATGTCTCACTGGAGACATATTTGGATCAGCGAGGTGTGACTGCGGGAACCAGCTAG
CTCTTGCGATGCAGCAGATT
Pro Sequence
MASINLSSSSPSTISLSRSRLSQTSTTTTLLHRITLPSHHPSSSFSIKTT
SKVKASVISREDDLLSSYTNGSLVDEDSSSPAPANGFVAEDDDYELDLPT
PGFSSIPEAIEDIRQGKLVVVVDDEDRENEGDLVMAAQLATPEAMAFIVK
HGTGIVCVSMKDDDLQRLNLPLMVNQKENEEKLCTAFTVTVDAKHGTTTG
VSARDRATTILSLASRDSKPEDFIRPGHIFPLKYREGGVLRRAGHTEASL
DLTVLAGLEPVGVLCEIVDDDGSMARLPKLREFAAENNLKIVSIADLIRY
RRKRDKLVERSSAARIPTMWGPFTAYCYKSILDGIEHIAMVKGEIGDGQD
ILVRVHSECLTGDIFGSARCDCGNQLALAMQQIESAGRGVLVYLRGHEGR
GIGLGHKLRAYNLQDAGRDTVEANEELGLPVDSREYGIGAQVLRDLGVRT
MKLMTNNPAKYVGLKGYGLAIVGRVPLLSLITKENKRYLETKRAKMGHMY
GLKFNGDDVVEKIDDSATTES
mRNA Sequence
TAGAATAAAGCTTCTCTAATCGCTATCGTCACCTAACCCACCTTTCTCCGCATCTTCTTCTTCATAAAGC
CTCGTGATTTTCTCGGAGAATTGCAAAAAAGGGTTTACTTTGATTTCATCTACAAATAGAGAAAGAGAAG
GAGACATGGCTTCGATCAATCTATCATCGTCCTCTCCTTCCACCATATCTCTCTCCCGCTCAAGACTTAG
CCAAACCTCTACTACTACTACATTGCTCCACCGTATTACTTTACCATCTCACCATCCATCATCATCGTTC
TCCATTAAAACCACTTCAAAAGTCAAAGCTTCAGTGATCTCTAGAGAAGATGATCTCCTCTCTTCTTACA
CCAATGGTTCTCTCGTTGACGAAGACTCCTCATCTCCTGCGCCAGCCAATGGTTTCGTTGCTGAAGATGA
TGACTACGAGTTGGATCTACCTACACCTGGCTTCTCTTCAATCCCTGAAGCCATTGAAGACATACGCCAA
GGAAAGCTTGTGGTGGTTGTGGATGATGAAGACAGAGAAAACGAAGGTGATTTGGTAATGGCTGCTCAGT
TAGCTACACCTGAGGCTATGGCTTTCATTGTCAAACATGGAACTGGGATTGTTTGTGTGAGTATGAAAGA
CGATGATCTCCAGAGGTTGAACCTTCCTCTGATGGTGAACCAGAAGGAGAACGAGGAGAAGCTCTGCACT
GCATTCACAGTCACTGTCGATGCAAAACATGGTACAACAACAGGAGTATCAGCACGTGACAGGGCAACAA
CGATACTGTCACTTGCGTCTAGAGACTCAAAGCCTGAAGATTTCATCCGTCCAGGGCATATCTTTCCTCT
CAAGTACCGAGAAGGCGGAGTTTTAAGAAGAGCTGGACACACTGAAGCATCTCTTGATCTTACTGTATTA
GCTGGACTAGAACCTGTTGGAGTACTCTGTGAGATTGTTGATGATGATGGTTCCATGGCTAGATTACCAA
AGCTCCGTGAATTTGCAGCTGAAAACAACCTCAAAATTGTTTCCATTGCAGATTTGATCAGATATCGAAG
GAAGAGAGATAAGCTAGTGGAACGTTCTTCTGCAGCTCGGATTCCGACAATGTGGGGACCTTTCACAGCT
TATTGCTACAAGTCTATACTAGACGGTATAGAACACATTGCAATGGTTAAGGGAGAGATTGGTGACGGTC
AAGACATTCTTGTGAGGGTTCATTCAGAATGTCTCACTGGAGACATATTTGGATCAGCGAGGTGTGACTG
CGGGAACCAGCTAGCTCTTGCGATGCAGCAGATTGAGTCTGCTGGTCGTGGTGTGTTGGTTTACCTACGT
GGACACGAAGGAAGAGGGATTGGTTTAGGACACAAGCTTAGAGCTTATAATCTGCAAGATGCTGGGAGGG
ATACAGTTGAAGCTAACGAGGAGCTAGGACTTCCTGTTGATTCTAGAGAGTATGGTATTGGTGCACAGGT
ACTGAGGGATTTGGGAGTGAGGACGATGAAGCTGATGACGAATAATCCGGCTAAGTATGTTGGTTTGAAG
GGATATGGATTAGCTATTGTGGGGAGAGTGCCTCTCTTGAGTCTTATCACAAAGGAGAATAAGAGATATC
TGGAGACGAAGAGGGCCAAGATGGGTCACATGTATGGTTTGAAGTTCAATGGTGATGATGTTGTAGAGAA
GATTGATGATTCTGCAACCACCGAGTCATGACTGGAGAATAAATATTAGATAATACTTCAAGAGAACACC
AGAAAAGAAACATAGACACAGAAGAGCAAGCAATGAAAGACTTCTGATCTATCTGAGGAGTTTTATTGGA
TTGGTTTAATGTATCTTGATTTGATTTTTTACAATACTTGCGTTACAAAATTTTCAACATTGTTGTTACT
TGTTATGTACTCTTGG