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Detail for ZS11_A06G33670.t1

Genome:
ZS11: ZS11_A06G33670.t1
ZS11_v0: BnaA06T0320500ZS
WE: WE_A06G37470.t1
WE_v0: BnaA06T0352200WE
Darmor: A06p34260.1_BnaDAR
BH: BnaC07T395200BH
Quinta: BnaA06T0308900QU
ZS2: BnaA06T280300ZS2
SW: BnaA06T307500SW
Express61: A06p027080.1_BnaEXP
Xiaoyun: BnaA06G0344000XY
P202: BnaA06G025680P202.1
BL: BnaC07T395200BH
TA: BnaA06T282200TA
Da-Ae: Not available
RB: BnaA06T296900RB
No2127: BnaC07T0357200NO
P130: BnaA06G028650P130.1
Length: 459
KOG ID: KOG1436
KOG E-value: Not available
KOG Score: 823.0
KOG Annotation: Nucleotide transport and metabolism
Biological Process: GO:0006207('de novo' pyrimidine nucleobase biosynthetic process)
Cellular Component: GO:0016020(membrane),GO:0005737(cytoplasm)
Molecular Function: GO:0004152(dihydroorotate dehydrogenase activity),GO:0016627(oxidoreductase activity, acting on the CH-CH group of donors)
KEGG Ortholog: K00254 DHODH, pyrD; dihydroorotate dehydrogenase [EC:1.3.5.2]
NR Protein: XP_009150863.1
NR E-value: 4.000000e-262
NR Score: 908.7
NR Annotation: XP_009150863.1 PREDICTED: dihydroorotate dehydrogenase (quinone), mitochondrial [Brassica rapa]
SwissProt Protein: P32746|PYRD_ARATH
SwissProt E-value: Not available
SwissProt Score: 870.0
SwissProt Annotation: Dihydroorotate dehydrogenase (quinone), mitochondrial OS=Arabidopsis thaliana OX=3702 GN=PYRD PE=1 SV=2
CDS Sequence (1399 bp)
ATGGCTGGAAGGGCTGCGACATCGTCGGCTAAATGGGCGAGAGAGTTTTTGCTCAGAAGGAATCCTCTTG
GAGCGATTCGAAGCTCTTCTTCGGCTGCTCCTGGCGCGGCTTCCTCTACACCTAAAGTCCCTCACTTTTC
CAAAAAAGGAAGGATATTGACAGGAGCTACCATTGGTCTTGCCATAGCTGGAGGAGCTTATGTCAGTACT
GCAGATGAAGCAACCTTCTGTGGGTGGCTGTTCTCAGCAACAAAGGTTGTTAACCCTCTCTTTGCTCTTC
TGGATGCTGAGTTTGCGCACAAGCTGGCTGTCACGGCCGCTGCTCGCGGGTGGGTGCCTAGAGAGAAGAG
GCCTGATCCACAGATCTTGGGACTTGAAGTTTGGGGAAGGAAGTTTTCAAACCCAATAGGTCTTGCCGCT
GGATTCGACAAAAACGCTGAGGCTACAGAGGGATTGCTAGGACTTGGGTTTGGCTTTGTTGAAGTAGGCT
CTGTAACTCCAGTTCCACAAGAAGGCAACCCTAAACCACGTATCTTCAGATTACGCGAAGATGGAGCTAT
TATCAATAGGTGTGGGTTTAACAGTGAAGGGATTGTTGTGGTTGCAAAGCGGTTGGGTGCTCAACATGGT
AAAAGAATGTTGGCGGAAACATCAGGCACTTCGTCATCTCCAAGCGATGAAGGAAAACCAGGGGGCAAGT
CTGGACCTGGTATACTTGGAGTCAACCTTGGTAAGAACAAGACAAGTGAAGATGCAGCTGCTGACTATGT
CCAGGGAGTTCATAACTTATCCCAATATGCGGATTACTTGGTTATCAATGTTTCATCACCCAACACAGCA
GGGCTGAGAATGCTTCAGGGAAGGAAACAGTTGAAGGACCTTGTAAAGAAGGTACAAGCTGCTAGGGATG
AGATGCAGTGGGGTGATGATGGTCCTCCTCCTCTTCTTGTGAAGATTGCTCCTGATCTATCCAGAGGAGA
GCTTGAAGATATTGCAGCGGTTGCTCTTGCTCTCCACTTGGATGGGCTGATCATATCAAATACAACAGTC
TCGAGGCCAGATCCTGTAAGCAACAACCCAGTGGCAACAGAAACAGGTGGTTTGAGCGGGAAACCGCTCT
TTCCTCTCTCCACCAACATGTTAAGAGAGATGTACACTCTGACACGAGGAAAGATTCCACTGATAGGCTG
CGGTGGTGTTAGCAGTGGTGAGGATGCTTACAAGAAGATAAGAGCCGGAGCTACTCTTGTTCAGCTGTAC
ACTGGGTTTGCGTATGGTGGACCTGCTCTCATCCCACAAATAAAGGAAGAACTAGTGAGTTGCTTAGAAA
GGGATGGCTTCAAGTCGATTCAAGAAGCAATTGGTGCAGATCACAGATGA
Upstream Sequence
TCTGTCATCAAGCCGTGAGCTCAAAGCCTAAAACCCTCTTCTTGTAGCTATCTGGGTTGTCTGAAAAAGC
AATCCTTTGCTTCTAATTCTGTTGACTTTTAGATCAAACTAATGGCTGGAAGGGCTGCGACATCGTCGGC
TAAATGGGCGAGAGAGTTTTTGCTCAGAAGGAATCCTCTTGGAGCGATTCGAAGCTCTTCTTCGGCTGCT
CCTGGCGCGGCTTCCTCTACACCTAAAGTCCCTCACTTTTCCAAAAAAGGAAGGATATTGACAGGAGCTA
CCATTGGTCTTGCCATAGCTGGAGGAGCTTATGTCAGTACTGCAGATGAAGCAACCTTCTGTGGGTGGCT
GTTCTCAGCAACAAAGGTTGTTAACCCTCTCTTTGCTCTTCTGGATGCTGAGTTTGCGCACAAGCTGGCT
GTCACGGCCGCTGCTCGCGGGTGGGTGCCTAGAGAGAAGAGGCCTGATCCACAGATCTTGGGACTTGAAG
TTTGGGGAAGGAAGTTTTCAAACCCAATAGGTCTTGCCGCTGGATTCGACAAAAACGCTGAGGCTACAGA
GGGATTGCTAGGACTTGGGTTTGGCTTTGTTGAAGTAGGCTCTGTAACTCCAGTTCCACAAGAAGGCAAC
CCTAAACCACGTATCTTCAGATTACGCGAAGATGGAGCTATTATCAATAGGTGTGGGTTTAACAGTGAAG
GGATTGTTGTGGTTGCAAAGCGGTTGGGTGCTCAACATGGTAAAAGAATGTTGGCGGAAACATCAGGCAC
TTCGTCATCTCCAAGCGATGAAGGAAAACCAGGGGGCAAGTCTGGACCTGGTATACTTGGAGTCAACCTT
GGTAAGAACAAGACAAGTGAAGATGCAGCTGCTGACTATGTCCAGGGAGTTCATAACTTATCCCAATATG
CGGATTACTTGGTTATCAATGTTTCATCACCCAACACAGCAGGGCTGAGAATGCTTCAGGGAAGGAAACA
GTTGAAGGACCTTGTAAAGAAGGTACAAGCTGCTAGGGATGAGATGCAGTGGGGTGATGATGGTCCTCCT
CCTCTTCTTGTGAAGATTGCTCCTGATCTATCCAGAGGAGAGCTTGAAGATATTGCAGCGGTTGCTCTTG
CTCTCCACTTGGATGGGCTGATCATATCAAATACAACAGTCTCGAGGCCAGATCCTGTAAGCAACAACCC
AGTGGCAACAGAAACAGGTGGTTTGAGCGGGAAACCGCTCTTTCCTCTCTCCACCAACATGTTAAGAGAG
ATGTACACTCTGACACGAGGAAAGATTCCACTGATAGGCTGCGGTGGTGTTAGCAGTGGTGAGGATGCTT
ACAAGAAGATAAGAGCCGGAGCTACTCTTGTTCAGCTGTACACTGGGTTTGCGTATGGTGGACCTGCTCT
CATCCCACAAATAAAGGAAGAACTAGTGAGTTGCTTAGAAAGGGATGGCTTCAAGTCGATTCAAGAAGCA
ATTGGTGCAGATCACAGATGATCG
Downstream Sequence
AGTAAGCACCTTTGTTGATCAATCTCTTTGTTAAAAAGAATCAATCTTTTTAGGCTGTCT
ACTAGAATTTGTATCATCAAATGCTTATTTAGTTATAGATCATTTTGGCTCTTACAAGTG
CAATTCAGTTTCTCAGTTCTCAAAGTATGTAGCTTTGAAATTTTTAGGGAAGGATATTGA
CAGGAGCTACCATTGGTCTTGCCATAGCTGGAGGAGCTTATGTCAGTACTGCAGATGAAG
CAACCTTCTGGTACTAGTGCCTGTGACATTACATATCTTTGTCTTTTATTCTCCTTGTTA
ATTTTGATCCATCTTGTGTGTGTTGGACAGTGGGTGGCTGTTCTCAGCAACAAAGGTTGT
TAACCCTCTCTTTGCTCTTCTGGATGCTGAGTTTGCGCACAAGCTGGCTGTCACGGCCGC
TGCTCGCGGGTGGGTGCCTAGAGAGAAGAGGCCTGATCCACAGATCTTGGGACTTGAAGT
TTGGGGAAGGAAGTTTTCAAACCCAATAGGTCTTGCCGCTGGATTCGACAAAAACGCTGA
GGCTACAGAGGGATTGCTAGGACTTGGGTTTGGCTTTGTTGAAGTAGGCTCTGTAACTCC
AGTTCCACAAGAAGGCAACCCTAAACCACGTATCTTCAGATTACGCGAAGATGGGTGAGA
ATCTCTAATCCATTGACCGTTTAATGTTGAGATAAATCAACAGTTTCAACTAAAACACTG
AATAATCTTTGCTTCTTGTCCTTTCAGAGCTATTATCAATAGGTGTGGGTTTAACAGTGA
AGGGATTGTTGTGGTTGCAAAGCGGTTGGGTGCTCAACATGGTAAAAGAATGTTGGCGGA
AACATCAGGCACTTCGTCATCTCCAAGCGATGAAGGAAAACCAGGGGGCAAGTCTGGACC
TGGTATACTTGGAGTCAACCTTGGTAAGAACAAGACAAGTGAAGATGCAGCTGCTGACTA
TGTCCAGGGAGTTCATAACTTATCCCAATATGCGGATTACTTGGTAATATATAGAGCATT
CATTTGATCCTATCTACCATAGAATCATTTGCTCCTAATTTTCATTTTTTTTTTCTCTCT
ACAGGTTATCAATGTTTCATCACCCAACACAGCAGGGCTGAGAATGCTTCAGGGAAGGAA
ACAGTTGAAGGACCTTGTAAAGAAGGTACAAGCTGCTAGGGATGAGATGCAGTGGGGTGA
TGATGGTCCTCCTCCTCTTCTTGTGAAGATTGCTCCTGATCTATCCAGAGGAGAGCTTGA
AGATATTGCAGCGGTGAGTTGTAATTTAGAAGAAAAAAAAAACAAAACTTAATAATTTCC
ACCAAGTAAATGGCTCTTACAACATTGAATTGGTATTGGCTTGTGTAGGTTGCTCTTGCT
CTCCACTTGGATGGGCTGGTAAGTTATCTTTATACACAAACTAACCTAACCTATGTTTCA
TCAATGATGATACTGTCTTTTTGTGATTGTCCTATAGATCATATCAAATACAACAGTCTC
GAGGCCAGATCCTGTAAGCAACAACCCAGTGGCAACAGAAACAGGTGGTTTGAGCGGGAA
ACCGCTCTTTCCTCTCTCCACCAACATGTTAAGAGAGATGTACACTCTGACACGAGTAAG
TTTTTTTCTTAATCTAAAAAGAGATGAGTAACTGTTGTTACCAAGGAACTAAAACATTTC
TGATTCGGGTTATTGGTTATTTTCATTGACATCTTACATTAGGGAAAGATTCCACTGATA
GGCTGCGGTGGTGTTAGCAGGTAAACGTCTGAACCTGTTTATAGATTATGAGGAAAACAA
AACACACAAAAAAAAATGATTCAGATGATTTTTCTTCAGTGGTGAGGATGCTTACAAGAA
GATAAGAGCCGGAGCTACTCTTGTTCAGCTGTACACTGGGTTTGCGTATGGTGGACCTGC
TCTCATCCCACAAATAAAGGTATCTCCTTTACTTTCTCATTAACTTTTCTTGGATCATGG
AAGCTTAATAGGCATGAGAA
Pro Sequence
MAGRAATSSAKWAREFLLRRNPLGAIRSSSSAAPGAASSTPKVPHFSKKG
RILTGATIGLAIAGGAYVSTADEATFCGWLFSATKVVNPLFALLDAEFAH
KLAVTAAARGWVPREKRPDPQILGLEVWGRKFSNPIGLAAGFDKNAEATE
GLLGLGFGFVEVGSVTPVPQEGNPKPRIFRLREDGAIINRCGFNSEGIVV
VAKRLGAQHGKRMLAETSGTSSSPSDEGKPGGKSGPGILGVNLGKNKTSE
DAAADYVQGVHNLSQYADYLVINVSSPNTAGLRMLQGRKQLKDLVKKVQA
ARDEMQWGDDGPPPLLVKIAPDLSRGELEDIAAVALALHLDGLIISNTTV
SRPDPVSNNPVATETGGLSGKPLFPLSTNMLREMYTLTRGKIPLIGCGGV
SSGEDAYKKIRAGATLVQLYTGFAYGGPALIPQIKEELVSCLERDGFKSI
QEAIGADHR
mRNA Sequence
TCTGTCATCAAGCCGTGAGCTCAAAGCCTAAAACCCTCTTCTTGTAGCTATCTGGGTTGTCTGAAAAAGC
AATCCTTTGCTTCTAATTCTGTTGACTTTTAGATCAAACTAATGGCTGGAAGGGCTGCGACATCGTCGGC
TAAATGGGCGAGAGAGTTTTTGCTCAGAAGGAATCCTCTTGGAGCGATTCGAAGCTCTTCTTCGGCTGCT
CCTGGCGCGGCTTCCTCTACACCTAAAGTCCCTCACTTTTCCAAAAAAGGAAGGATATTGACAGGAGCTA
CCATTGGTCTTGCCATAGCTGGAGGAGCTTATGTCAGTACTGCAGATGAAGCAACCTTCTGTGGGTGGCT
GTTCTCAGCAACAAAGGTTGTTAACCCTCTCTTTGCTCTTCTGGATGCTGAGTTTGCGCACAAGCTGGCT
GTCACGGCCGCTGCTCGCGGGTGGGTGCCTAGAGAGAAGAGGCCTGATCCACAGATCTTGGGACTTGAAG
TTTGGGGAAGGAAGTTTTCAAACCCAATAGGTCTTGCCGCTGGATTCGACAAAAACGCTGAGGCTACAGA
GGGATTGCTAGGACTTGGGTTTGGCTTTGTTGAAGTAGGCTCTGTAACTCCAGTTCCACAAGAAGGCAAC
CCTAAACCACGTATCTTCAGATTACGCGAAGATGGAGCTATTATCAATAGGTGTGGGTTTAACAGTGAAG
GGATTGTTGTGGTTGCAAAGCGGTTGGGTGCTCAACATGGTAAAAGAATGTTGGCGGAAACATCAGGCAC
TTCGTCATCTCCAAGCGATGAAGGAAAACCAGGGGGCAAGTCTGGACCTGGTATACTTGGAGTCAACCTT
GGTAAGAACAAGACAAGTGAAGATGCAGCTGCTGACTATGTCCAGGGAGTTCATAACTTATCCCAATATG
CGGATTACTTGGTTATCAATGTTTCATCACCCAACACAGCAGGGCTGAGAATGCTTCAGGGAAGGAAACA
GTTGAAGGACCTTGTAAAGAAGGTACAAGCTGCTAGGGATGAGATGCAGTGGGGTGATGATGGTCCTCCT
CCTCTTCTTGTGAAGATTGCTCCTGATCTATCCAGAGGAGAGCTTGAAGATATTGCAGCGGTTGCTCTTG
CTCTCCACTTGGATGGGCTGATCATATCAAATACAACAGTCTCGAGGCCAGATCCTGTAAGCAACAACCC
AGTGGCAACAGAAACAGGTGGTTTGAGCGGGAAACCGCTCTTTCCTCTCTCCACCAACATGTTAAGAGAG
ATGTACACTCTGACACGAGGAAAGATTCCACTGATAGGCTGCGGTGGTGTTAGCAGTGGTGAGGATGCTT
ACAAGAAGATAAGAGCCGGAGCTACTCTTGTTCAGCTGTACACTGGGTTTGCGTATGGTGGACCTGCTCT
CATCCCACAAATAAAGGAAGAACTAGTGAGTTGCTTAGAAAGGGATGGCTTCAAGTCGATTCAAGAAGCA
ATTGGTGCAGATCACAGATGATCG