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DETAIL

Detail for ZS11_C05G46190.t1

Genome:
ZS11: ZS11_C05G46190.t1
ZS11_v0: BnaC05T0394500ZS
WE: WE_C05G47800.t1
WE_v0: BnaC08T0020500WE
Darmor: C08p05080.1_BnaDAR
BH: BnaC05T419600BH
Quinta: BnaC08T0019200QU
ZS2: BnaC05T375000ZS2
SW: BnaC05T409800SW
Express61: C08p003910.1_BnaEXP
Xiaoyun: BnaC05G0392700XY
P202: BnaA05G023840P202.2
BL: BnaC05T419600BH
TA: BnaC05T384100TA
Da-Ae: Not available
RB: BnaC05T416400RB
No2127: BnaA05T0278500NO.1
P130: BnaC05G048020P130.2
Length: 653
KOG ID: KOG2426
KOG E-value: Not available
KOG Score: 528.0
KOG Annotation: Carbohydrate transport and metabolism
Biological Process: GO:0006071(glycerol metabolic process)
Cellular Component: -
Molecular Function: GO:0004371(glycerone kinase activity)
KEGG Ortholog: -
NR Protein: XP_022558294.1
NR E-value: Not available
NR Score: 1129.0
NR Annotation: XP_022558294.1 putative 3,4-dihydroxy-2-butanone kinase [Brassica napus]
SwissProt Protein: O04059|DHBK_SOLLC
SwissProt E-value: 3.370000e-176
SwissProt Score: 517.0
SwissProt Annotation: Putative 3,4-dihydroxy-2-butanone kinase OS=Solanum lycopersicum OX=4081 GN=DHBK PE=2 SV=1
CDS Sequence (1990 bp)
ATGGTTTACGCGGCCGATAAATTCATCAACAACCCCAACGATGCTGCGACTGATGTCATCAAGGGACTTG
TGGACACTTATCCTGGACTCCAGTATTTGTTTGGCTTCGCCATTCCTAAGGTTACGGTGGTGATACAAGC
TGGTGTCTCTGACAAGGTTGCCGTAATATCAGGTGGGGGATATGGGCATGAGCCAGCTCATGCTGGTTAC
GTTGGAGAAGGAATGCTTACAGCTGCTATCTGCGGAGATGTCTTTGCCTCTCCATCAGTTGATTCCATCG
TGGCTGGAATTCGTGCTGTAACTGGTTCTCAGGGATGTCTTTTGATCGTCAAGAACTACACTGCTGACCG
CTTGAACTTTGGTTTGGCTGCTGAGCAAGCGAAGTATGAAGGTTACAAAGTAGAGACTGTTATTGTTGGA
GAGGATTGTGCTTTACCCCCTCCTCGAGGTTTTGCTGGACGCAGGGGCTTAGCAGGAACTATTCTTGTAT
ATAAGGTTGCTGGCGCAGCAGCAGCTGCTGGTCTTTCTCTAGAAGAAGTTGCGGCCGAGGCAAAATGTGC
GTCTGAGATGGTTGGTACCATGGGTGTTGCATTCTCTCTTTGTAAGCTTCTTGGGCCGGTTACATCAGAC
CGTCTGGGCCAAAAGAAGATGGAACTCGGGCTTGGAATTCATGGAGAACCTGGTGCTGCTGTGGTTGACG
TTCAACCTGTGGATGTGGTGGTTTCACTTCTTCTTCAGAAGATACTGAGTCCTGAGACCAATTATGTTCC
AATTACACGCGGTGACAGAGTGGATTTGATGGAACTTATGATTGTAGCTGGAAAAACTGTGTCTAAATTG
CAGCTTGAATTTGGACTTGCTGCTGATAGGGTGTATACAGGCTTTTTTATGACTTCTCTCGACATGGCAG
GATTCTCTATTTCAATCATGAAGGCTGACCAGTCAACCTTAAACCGATTAGATGCTCCAACCAAGGCTCC
AAGTTGGCCTGTTGGCACTGATGGTCCTTATCCACTCTATGATGCTGCTGAAACGATGTATGCCATTGGT
GCATCCATCAGCAAAGCCATAAGGGGCACAATTGGAATTATATACAATTTACTCTGCAAGGCAGCTTACG
CGGAGCTAAAAAAGGCTAACATTGACGAGGAAGTCACTCCCAGAGACTGGTCTGAAGCACTCAAGGCATC
AATAGCTTCTGTGAGGAAATATGGTGGAGCAACTGAGGGGTACAGAACGATGCTAGATGCGCTCATCCCA
GCTTCACAAGTTCTTGAAGAGAATCTGAGCGCTGGAGTGGACCCAGTAACTGCTTTTAGTGTGTCAGCTG
CTGCAGCAACTAAAGGAGCGAAATCAACCATACAGATGCAAGCTCAGGCTGGGAGATCGAGCTATGTGTC
TGCAGAGAATCTTGCAACAGTTCCAGATCCAGGTGCAATGGCTGCAGCAGTATGGTACAGGGCGGCGGCA
AGAGCCGTGAGGAAGAAACAGCATCTAAAACCTTACGAAGGTAGCGTTGTTCCCAAAAGCCCCACTGTCC
CTTCTCGAGATCGTGTGTTCTACTTCGACTTCCCCGACATTGGTAGGCACACATGTCGGGACCCTACCTT
TGTCAAAATTCTTGGTGCCGTCGAGGTGACTCCCTCCGGTGGCTCTCCTCGCTCAACGGTTGGGCAGTCC
GAGAGCCTCTCTTGCAACCTTGGGGCCTCGGTTTCGGTTCGTGAATGGGGCATAATTCGCTTCAAGAAGA
ACGGTGAGAATAAAACGTTCGTAGCTCGGCAAGGATGTCGGATCACTGTACCATTTGGAGGCATTGTCAC
ATATTGCAACAGCATTGAGGAGATTTCTCATCACAGTGGCTTCTGGTGGAACCCTTACCTCTTGTCGTAC
TACTCTATCCCTCCCCAAGGCATTGTTGAGTTTCTTCGCACTCCTGACAAAACAAAAGGAGGTTACCAGT
AG
Upstream Sequence
ATGGTTTACGCGGCCGATAAATTCATCAACAACCCCAACGATGCTGCGACTGATGTCATCAAGGGACTTG
TGGACACTTATCCTGGACTCCAGTATTTGTTTGGCTTCGCCATTCCTAAGGTTACGGTGGTGATACAAGC
TGGTGTCTCTGACAAGGTTGCCGTAATATCAGGTGGGGGATATGGGCATGAGCCAGCTCATGCTGGTTAC
GTTGGAGAAGGAATGCTTACAGCTGCTATCTGCGGAGATGTCTTTGCCTCTCCATCAGTTGATTCCATCG
TGGCTGGAATTCGTGCTGTAACTGGTTCTCAGGGATGTCTTTTGATCGTCAAGAACTACACTGCTGACCG
CTTGAACTTTGGTTTGGCTGCTGAGCAAGCGAAGTATGAAGGTTACAAAGTAGAGACTGTTATTGTTGGA
GAGGATTGTGCTTTACCCCCTCCTCGAGGTTTTGCTGGACGCAGGGGCTTAGCAGGAACTATTCTTGTAT
ATAAGGTTGCTGGCGCAGCAGCAGCTGCTGGTCTTTCTCTAGAAGAAGTTGCGGCCGAGGCAAAATGTGC
GTCTGAGATGGTTGGTACCATGGGTGTTGCATTCTCTCTTTGTAAGCTTCTTGGGCCGGTTACATCAGAC
CGTCTGGGCCAAAAGAAGATGGAACTCGGGCTTGGAATTCATGGAGAACCTGGTGCTGCTGTGGTTGACG
TTCAACCTGTGGATGTGGTGGTTTCACTTCTTCTTCAGAAGATACTGAGTCCTGAGACCAATTATGTTCC
AATTACACGCGGTGACAGAGTGGATTTGATGGAACTTATGATTGTAGCTGGAAAAACTGTGTCTAAATTG
CAGCTTGAATTTGGACTTGCTGCTGATAGGGTGTATACAGGCTTTTTTATGACTTCTCTCGACATGGCAG
GATTCTCTATTTCAATCATGAAGGCTGACCAGTCAACCTTAAACCGATTAGATGCTCCAACCAAGGCTCC
AAGTTGGCCTGTTGGCACTGATGGTCCTTATCCACTCTATGATGCTGCTGAAACGATGTATGCCATTGGT
GCATCCATCAGCAAAGCCATAAGGGGCACAATTGGAATTATATACAATTTACTCTGCAAGGCAGCTTACG
CGGAGCTAAAAAAGGCTAACATTGACGAGGAAGTCACTCCCAGAGACTGGTCTGAAGCACTCAAGGCATC
AATAGCTTCTGTGAGGAAATATGGTGGAGCAACTGAGGGGTACAGAACGATGCTAGATGCGCTCATCCCA
GCTTCACAAGTTCTTGAAGAGAATCTGAGCGCTGGAGTGGACCCAGTAACTGCTTTTAGTGTGTCAGCTG
CTGCAGCAACTAAAGGAGCGAAATCAACCATACAGATGCAAGCTCAGGCTGGGAGATCGAGCTATGTGTC
TGCAGAGAATCTTGCAACAGTTCCAGATCCAGGTGCAATGGCTGCAGCAGTATGGTACAGGGCGGCGGCA
AGAGCCGTGAGGAAGAAACAGCATCTAAAACCTTACGAAGGTAGCGTTGTTCCCAAAAGCCCCACTGTCC
CTTCTCGAGATCGTGTGTTCTACTTCGACTTCCCCGACATTGGTAGGCACACATGTCGGGACCCTACCTT
TGTCAAAATTCTTGGTGCCGTCGAGGTGACTCCCTCCGGTGGCTCTCCTCGCTCAACGGTTGGGCAGTCC
GAGAGCCTCTCTTGCAACCTTGGGGCCTCGGTTTCGGTTCGTGAATGGGGCATAATTCGCTTCAAGAAGA
ACGGTGAGAATAAAACGTTCGTAGCTCGGCAAGGATGTCGGATCACTGTACCATTTGGAGGCATTGTCAC
ATATTGCAACAGCATTGAGGAGATTTCTCATCACAGTGGCTTCTGGTGGAACCCTTACCTCTTGTCGTAC
TACTCTATCCCTCCCCAAGGCATTGTTGAGTTTCTTCGCACTCCTGACAAAACAAAAGGAGGTTACCAGT
AG
Downstream Sequence
GTTCGTCCTCTTCGTCTTCTTCGTTCTCTCTTTCTCTGTTTGGCGGTGTTGTTTCATTAT
TATGGCGTAGATTAGGTCGATGATGATTGTGAATGATCCAGCGAACTGTTTGCGAATTTT
CTTTTGTATGGCGGTGTTGTTTCTTGCTCCTAAAATTCGTCTCTGGTCCCGAATGATTTT
GTTCGCGATCGTCGCAATGTTGCTTTGTCACTGTGTTGTTTCGTTGCATGGTCAACCCGA
TGAGGAATCGATCTTGATTTCCATGGTTTAGGTTATAATTTCCATAATATCGGAGGAATC
GCTAGTTACCTTTTCTTGAAATTGAATGTAATACATAATACTGGTTTGGTTTTGCAGATG
CTGCGACTGATGTCATCAAGGGACTTGTGGACACTTATCCTGGACTCCAGTATTTGTTTG
GCTTCGCCATTCCTAAGGTTACGGTGGTGATACAAGCTGGTGTCTCTGACAAGGTTGCCG
TAATATCAGGTGGGGGATAGTTTGTGACTTCAACATTGTTTATGTGGTTGTTTTTAGGGT
TCTTGAACCTTTTATGAAGTTATGCCTTTTGTTTTATGCAGGTGGAGGCAGTGGGCATGA
GCCAGCTCATGCTGGTTACGTTGGAGAAGGAATGCTTACAGCTGCTATCTGCGGAGATGT
CTTTGCCTCTCCATCAGTTGATTCCATCGTGGCTGTAAGTCTCCCCTGTGTGGTTTCTCC
CTCTCTCTTTTTTTTCTTCTGCCTCTTTTGAGTGAATGATATATTTCTCTTTCCCGTTTC
AGGGAATTCGTGCTGTAACTGGTTCTCAGGGATGTCTTTTGATCGTCAAGGTAATCAGAG
TGGGAAAGACTATGGACTCTTGTCTTTATGTTTTTGCTTAATGTAGTTTCTCTATTAATT
CTCTTTACAGAACTACACTGCTGACCGCTTGAACTTTGGTTTGGCTGCTGAGCAAGCGAA
GTATGAAGGTTACAAAGTAGAGGTACTACTCGTTATTGCTTTTCCCAAGTTTAGAGCGTT
GTAAAGTACATGATAACATAATTTTCGTTGTAGACTGTTATTGTTGGAGAGGATTGTGCT
TTACCCCCTCCTCGAGGTTTTGCTGGACGCAGGGGCTTAGCAGGAACTATTCTTGTATAT
AAGGTTCTCCCTCCCTTCCTCTACTATAAGTCCCCAGTTGGTTGATCTCATTTCTGGCAC
TGTATTTTCTTAAATTGTGCGTCTGAAACCTTGGTCTGCGATGTTTAGCTCAGCCTAGCT
TGGTTTGAACCTTCAAGCATCAGTTCTGCGCATAAACCTTCAAGCATCAGTTTTGTCATT
CGCTTCTGCTTGGTTACAGGTTGCTGGCGCAGCAGCAGCTGCTGGTCTTTCTCTAGAAGA
AGTTGCGGCCGAGGCAAAATGTGCGTCTGAGATGGTTGGTACCATGGGTGTTGCATTCTC
TCTTTGTAAGCTTCTTGGGCCGGTTACATCAGACCGTCTGGGCCAAAAGAAGATGGAACT
CGGGCTTGGAATTGTATGTTATTTTCTCATTCATTTCCCCAAGTTTGCATGAAATCTATT
TTTGTTTCACTGCTGTGGTTCGTACCTTGACCTGATAATTTCTCTCTCAGCATGGAGAAC
CTGGTGCTGCTGTGGTTGACGTTCAACCTGTGGATGTGGTGGTTTCACTTCTTCTTCAGA
AGATACTGAGTCCTGTATGTGCTAATTGTTAACTCTTGTTTCTCTATTGTGCTTTTGTCG
CCATAGTCAAATACAAGTAGCCATGCTGATTATTAACTTACTATCTTGGATTAGAAGTCT
ATCGTGATCAACTAATGCAATATGTACATCTGTTCTTCCATTTCTGCAGGAGACCAATTA
TGTTCCAATTACACGCGGTGACAGAGTGGTTCTCATGGCTAATGGGTAAGCCCATTCTTA
TTTAAATGGATATCCGTGTTTTGCTCCCAAGATTTCAACTGCAGCAAAATGTTACCTTTA
TGGTATCAACTTAATGGTTT
Pro Sequence
MVYAADKFINNPNDAATDVIKGLVDTYPGLQYLFGFAIPKVTVVIQAGVS
DKVAVISGGGYGHEPAHAGYVGEGMLTAAICGDVFASPSVDSIVAGIRAV
TGSQGCLLIVKNYTADRLNFGLAAEQAKYEGYKVETVIVGEDCALPPPRG
FAGRRGLAGTILVYKVAGAAAAAGLSLEEVAAEAKCASEMVGTMGVAFSL
CKLLGPVTSDRLGQKKMELGLGIHGEPGAAVVDVQPVDVVVSLLLQKILS
PETNYVPITRGDRVDLMELMIVAGKTVSKLQLEFGLAADRVYTGFFMTSL
DMAGFSISIMKADQSTLNRLDAPTKAPSWPVGTDGPYPLYDAAETMYAIG
ASISKAIRGTIGIIYNLLCKAAYAELKKANIDEEVTPRDWSEALKASIAS
VRKYGGATEGYRTMLDALIPASQVLEENLSAGVDPVTAFSVSAAAATKGA
KSTIQMQAQAGRSSYVSAENLATVPDPGAMAAAVWYRAAARAVRKKQHLK
PYEGSVVPKSPTVPSRDRVFYFDFPDIGRHTCRDPTFVKILGAVEVTPSG
GSPRSTVGQSESLSCNLGASVSVREWGIIRFKKNGENKTFVARQGCRITV
PFGGIVTYCNSIEEISHHSGFWWNPYLLSYYSIPPQGIVEFLRTPDKTKG
GYQ
mRNA Sequence
ATGGTTTACGCGGCCGATAAATTCATCAACAACCCCAACGATGCTGCGACTGATGTCATCAAGGGACTTG
TGGACACTTATCCTGGACTCCAGTATTTGTTTGGCTTCGCCATTCCTAAGGTTACGGTGGTGATACAAGC
TGGTGTCTCTGACAAGGTTGCCGTAATATCAGGTGGGGGATATGGGCATGAGCCAGCTCATGCTGGTTAC
GTTGGAGAAGGAATGCTTACAGCTGCTATCTGCGGAGATGTCTTTGCCTCTCCATCAGTTGATTCCATCG
TGGCTGGAATTCGTGCTGTAACTGGTTCTCAGGGATGTCTTTTGATCGTCAAGAACTACACTGCTGACCG
CTTGAACTTTGGTTTGGCTGCTGAGCAAGCGAAGTATGAAGGTTACAAAGTAGAGACTGTTATTGTTGGA
GAGGATTGTGCTTTACCCCCTCCTCGAGGTTTTGCTGGACGCAGGGGCTTAGCAGGAACTATTCTTGTAT
ATAAGGTTGCTGGCGCAGCAGCAGCTGCTGGTCTTTCTCTAGAAGAAGTTGCGGCCGAGGCAAAATGTGC
GTCTGAGATGGTTGGTACCATGGGTGTTGCATTCTCTCTTTGTAAGCTTCTTGGGCCGGTTACATCAGAC
CGTCTGGGCCAAAAGAAGATGGAACTCGGGCTTGGAATTCATGGAGAACCTGGTGCTGCTGTGGTTGACG
TTCAACCTGTGGATGTGGTGGTTTCACTTCTTCTTCAGAAGATACTGAGTCCTGAGACCAATTATGTTCC
AATTACACGCGGTGACAGAGTGGATTTGATGGAACTTATGATTGTAGCTGGAAAAACTGTGTCTAAATTG
CAGCTTGAATTTGGACTTGCTGCTGATAGGGTGTATACAGGCTTTTTTATGACTTCTCTCGACATGGCAG
GATTCTCTATTTCAATCATGAAGGCTGACCAGTCAACCTTAAACCGATTAGATGCTCCAACCAAGGCTCC
AAGTTGGCCTGTTGGCACTGATGGTCCTTATCCACTCTATGATGCTGCTGAAACGATGTATGCCATTGGT
GCATCCATCAGCAAAGCCATAAGGGGCACAATTGGAATTATATACAATTTACTCTGCAAGGCAGCTTACG
CGGAGCTAAAAAAGGCTAACATTGACGAGGAAGTCACTCCCAGAGACTGGTCTGAAGCACTCAAGGCATC
AATAGCTTCTGTGAGGAAATATGGTGGAGCAACTGAGGGGTACAGAACGATGCTAGATGCGCTCATCCCA
GCTTCACAAGTTCTTGAAGAGAATCTGAGCGCTGGAGTGGACCCAGTAACTGCTTTTAGTGTGTCAGCTG
CTGCAGCAACTAAAGGAGCGAAATCAACCATACAGATGCAAGCTCAGGCTGGGAGATCGAGCTATGTGTC
TGCAGAGAATCTTGCAACAGTTCCAGATCCAGGTGCAATGGCTGCAGCAGTATGGTACAGGGCGGCGGCA
AGAGCCGTGAGGAAGAAACAGCATCTAAAACCTTACGAAGGTAGCGTTGTTCCCAAAAGCCCCACTGTCC
CTTCTCGAGATCGTGTGTTCTACTTCGACTTCCCCGACATTGGTAGGCACACATGTCGGGACCCTACCTT
TGTCAAAATTCTTGGTGCCGTCGAGGTGACTCCCTCCGGTGGCTCTCCTCGCTCAACGGTTGGGCAGTCC
GAGAGCCTCTCTTGCAACCTTGGGGCCTCGGTTTCGGTTCGTGAATGGGGCATAATTCGCTTCAAGAAGA
ACGGTGAGAATAAAACGTTCGTAGCTCGGCAAGGATGTCGGATCACTGTACCATTTGGAGGCATTGTCAC
ATATTGCAACAGCATTGAGGAGATTTCTCATCACAGTGGCTTCTGGTGGAACCCTTACCTCTTGTCGTAC
TACTCTATCCCTCCCCAAGGCATTGTTGAGTTTCTTCGCACTCCTGACAAAACAAAAGGAGGTTACCAGT
AG