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Detail for ZS11_C06G24660.t1

Genome:
ZS11: ZS11_C06G24660.t1
ZS11_v0: BnaC06T0199100ZS
WE: WE_C06G24920.t1
WE_v0: BnaA07T0188800WE
Darmor: A07p22940.1_BnaDAR
BH: BnaC06T219500BH
Quinta: BnaC06T0185800QU
ZS2: BnaC06T187900ZS2
SW: BnaC06T207500SW
Express61: C06p017120.1_BnaEXP
Xiaoyun: BnaC06G0200400XY
P202: BnaC06G051090P202.1
BL: BnaC06T219500BH
TA: BnaC06T192500TA
Da-Ae: rna-gnl|WGS:JAGKQM|BnaA01g11690D
RB: BnaC06T206200RB
No2127: BnaC06T0187200NO
P130: BnaC06G027400P130.3
Length: 348
KOG ID: KOG1198
KOG E-value: Not available
KOG Score: 617.0
KOG Annotation: Energy production and conversion; General function prediction only
Biological Process: -
Cellular Component: -
Molecular Function: GO:0016491(oxidoreductase activity)
KEGG Ortholog: K00344 qor, CRYZ; NADPH:quinone reductase [EC:1.6.5.5]
NR Protein: XP_013702572.1
NR E-value: 2.600000e-192
NR Score: 676.4
NR Annotation: XP_013702572.1 quinone oxidoreductase-like protein 2 homolog [Brassica napus]
SwissProt Protein: A7RK30|QORL2_NEMVE
SwissProt E-value: 3.860000e-63
SwissProt Score: 208.0
SwissProt Annotation: Quinone oxidoreductase-like protein 2 homolog OS=Nematostella vectensis OX=45351 GN=v1g238856 PE=3 SV=1
CDS Sequence (1061 bp)
ATGGAGGCTTTGGTTTGCCGGAAACTAGGAGATCCGACGGCGACGGAACCAGGGAGTACAGAATCTCCGG
TGGAAGTGAGCAAAACCTACCCGATCCCGCCTCTGACCTCCGATACAGCGGTGAGAGTCAAGGTCACAGC
AACGAGCTTGAACTTCGCGAATTACCTTCAGATTCTCGGAAAGTACCAGGAGAAACCTCCGTTGCCTTTC
ATCCCCGGCTCCGACTACTCCGGAATCGTCGACGCCATCGGCCCATCCGTCACCAAATTCAGCGTCGGTG
ATCGAGTTTGCTCCTTCGCCGCCCTCGGTTCCTACGCTCAGTTCATCGTCGCCGACCAGTCTCTCCTGTT
CCTTGTACCGGAAGGATGCGACATGATCGCTGCAGCTGCACTTCCCGTTGCCTTTGGGACTTCTCATGTT
GCTCTTGTTCATAGAGCTCGTTTAACCTCTGGTCAGGTCTTGATGGTTCTTGGCGCTGCTGGTGGCGTTG
GTCTTGCAGCTGTTCAAATCGGGAAGATTTGTGGAGCCATTGTCATTGCAGTTGCTAGAGGGAGTGAGAA
GATTCAGCTGTTGAAGTCAATGGGAGTGGATCATGTTGTTGATTTAGGCAGTGAGAATGTTATTACAAGC
GTCAAAGAGTTCGTCAAGACAAGAAAGCTTAAAGGAGTTGATGTTCTGTATGATCCTGTAGGAGGGAAAC
TCACCAAGGACTCCATGAAAGTTCTCAACTGGGGAGCTCAGATTCTTGTGATTGGTTTCGCAAGCGGTGA
AGTACCTCTGATTCCTGCTAATATAGCACTTGTGAAGAACTGGACGGTTCATGGTCTATATTGGGGCAGC
TACAAAATCCACCAACCTAATGTTCTCGATGATTCCATCAGAGAGTTACTGTCATGGCTTGCTAGAGGAT
TGATCACCATTCACATCTCTCATACCTATAGTCTCTCCCAGTCCAATCTCGCTTTTGGGGCCATCAAAGA
CAGGAAGGCAATTGGAAAAGTGATGATTGCTCTCGACCACAAGGCCACCCTCTCTTCAAAACTATAG
Upstream Sequence
AGACAATAGATGAGATATTTAGATATCCAATCATCGAAGACAAAACAACTAAGAGACAGAGGAAGATCGT
GTAAGGAAGATCAACAATGGAGGCTTTGGTTTGCCGGAAACTAGGAGATCCGACGGCGACGGAACCAGGG
AGTACAGAATCTCCGGTGGAAGTGAGCAAAACCTACCCGATCCCGCCTCTGACCTCCGATACAGCGGTGA
GAGTCAAGGTCACAGCAACGAGCTTGAACTTCGCGAATTACCTTCAGATTCTCGGAAAGTACCAGGAGAA
ACCTCCGTTGCCTTTCATCCCCGGCTCCGACTACTCCGGAATCGTCGACGCCATCGGCCCATCCGTCACC
AAATTCAGCGTCGGTGATCGAGTTTGCTCCTTCGCCGCCCTCGGTTCCTACGCTCAGTTCATCGTCGCCG
ACCAGTCTCTCCTGTTCCTTGTACCGGAAGGATGCGACATGATCGCTGCAGCTGCACTTCCCGTTGCCTT
TGGGACTTCTCATGTTGCTCTTGTTCATAGAGCTCGTTTAACCTCTGGTCAGGTCTTGATGGTTCTTGGC
GCTGCTGGTGGCGTTGGTCTTGCAGCTGTTCAAATCGGGAAGATTTGTGGAGCCATTGTCATTGCAGTTG
CTAGAGGGAGTGAGAAGATTCAGCTGTTGAAGTCAATGGGAGTGGATCATGTTGTTGATTTAGGCAGTGA
GAATGTTATTACAAGCGTCAAAGAGTTCGTCAAGACAAGAAAGCTTAAAGGAGTTGATGTTCTGTATGAT
CCTGTAGGAGGGAAACTCACCAAGGACTCCATGAAAGTTCTCAACTGGGGAGCTCAGATTCTTGTGATTG
GTTTCGCAAGCGGTGAAGTACCTCTGATTCCTGCTAATATAGCACTTGTGAAGAACTGGACGGTTCATGG
TCTATATTGGGGCAGCTACAAAATCCACCAACCTAATGTTCTCGATGATTCCATCAGAGAGTTACTGTCA
TGGCTTGCTAGAGGATTGATCACCATTCACATCTCTCATACCTATAGTCTCTCCCAGTCCAATCTCGCTT
TTGGGGCCATCAAAGACAGGAAGGCAATTGGAAAAGTGATGATTGCTCTCGACCACAAGGCCACCCTCTC
TTCAAAACTATAGTCTCTATAGCCACAGAAGAGAACTGATTCTGTTTCTCTAAGTGTACTATGTCATAAT
GTAGTTTACCACATCCTGTTTGAATTTAATAATCATAACTTTGTTTGGATTCTGTAGAAATCACTTTTTC
AGAATAAAAATTTCAGAGTATGTTACTGTTTTGGTTGAGGTGTTTTATGCAAACCCGGT
Downstream Sequence
TGTTCGTTACTAGATCAACACAAACACTCTCTCTCTCTCTCTCTCTATCTTGGTTTACTG
TGGCTTATGGTTGTTGGTGTGGTGTTGTTTCAGGTTCCTTGTACCGGAAGGATGCGACAT
GATCGCTGCAGCTGCACTTCCCGTTGCCTTTGGGACTTCTCATGTTGCTCTTGTTCATAG
AGCTCGTTTAACCTCTGGTCAGGTATATGTTTGATTTCAGTTTCTTTCTTGCTTGATGAT
CGATCCCACTGAGTTTGTGCAAAAAAAAGTTGAGAAACTCTGTTGATTTTGATGCAGGTC
TTGATGGTTCTTGGCGCTGCTGGTGGCGTTGGTCTTGCAGCTGTTCAAATCGGGAAGATT
TGTGGAGCCATTGTCATTGCAGTTGCTAGGTACGTACATGCTGGTTCAGAGGTTTCATGG
ACTTCGGTGTGGCCGAGACCATTTTTTATGTTTATTTTAATTAAAAAAATTTTTGGGGTC
ATACAATCTAACTCTTTAAAATTTGGGGCTAAAACGAATGTTTCATCCGGTTCTGCCCAG
TATCGGCTCTGAGTTTggttcttgttttggggtttattatATTTTATTTGATTAGAATCT
TTTTCTGTTTTGCCAGAGGGAGTGAGAAGATTCAGCTGTTGAAGTCAATGGGAGTGGATC
ATGTTGTTGATTTAGGCAGTGAGAATGTTATTACAAGCGTCAAAGAGTTCGTCAAGACAA
GAAAGCTTAAAGGAGTTGATGTTCTGTATGATCCTGTAGGAGGGAAACTCACCAAGGACT
CCATGAAAGTTCTCAACTGGGGAGCTCAGATTCTTGTGATTGGTTTCGCAAGCGGTGAAG
TACCTCTGATTCCTGCTAATATAGCACTTGTGAAGGTAAATAAAATGATTGTCTTGTAGA
TAGAGAGTCACTAGAGAGAATCTAACACAACTTGGTGGCAGAACTGGACGGTTCATGGTC
TATATTGGGGCAGCTACAAAATCCACCAACCTAATGTTCTCGATGATTCCATCAGAGAGT
TACTGTCATGGCTTGCTAGAGGATTGATCACCATTCACATCTCTCATACCTATAGTCTCT
CCCAGGTAAAAAGCTTAATATATCTTCATGAATCATGATAGCAAAACTCAACACATGTAA
CTAAAACACTTACCGTTTGAGTTACAGTCCAATCTCGCTTTTGGGGCCATCAAAGACAGG
AAGGCAATTGGAAAAGTGATGATTGCTCTCGACCACAAGGCCACCCTCTCTTCAAAACTA
TAGTCTCTATAGCCACAGAAGAGAACTGATTCTGTTTCTCTAAGTGTACTATGTCATAAT
GTAGTTTACCACATCCTGTTTGAATTTAATAATCATAACTTTGTTTGGATTCTGTAGAAA
TCACTTTTTCAGAATAAAAATTTCAGAGTATGTTACTGTTTTGGTTGAGGTGTTTTATGC
AAACCCGGTTTTGGTTCGAGGGAAGATAAAAGGTTGTGTCTTTTCGGTTAGTACCGGTTT
AAGCATAAAAGAAACCAGTACATAATCCAAAGATTCAAGGTTGTAATGATATATCTATGT
TGTCTTTTTACAAAATTAGCAAATCAGTTATTATGGTTCATCAAAACCACCTGCATCGTC
AAGAAGATATAGTTTCCCATCGAGAAAAAACGTTTTCATTTTGATTTTATCCAATGTTCT
TGTGATTTGACTCCCTCCTTTTCTGAATTCTTCATGTTTTTCTTTCAATCTTCCACAGAA
AAAATCATATTGTGTCCTTGCATCCCTTCCCTTTAGAATGAAACTGTTCTGAATACAAGA
ACACAAATCATCAAAAGCTGGAAGAAGGTCAATTCTCTCCCTAAGCCTCATCATTTGTGA
TATACCTAGATTAGGTCAAGGGCACAAGTTTACCATTTTTGTTATGAGATGTGTCATTTG
AATTTGCCAGTTCGTTTTGATTGATCAAGTTTTGATATAGGGAGTGAATGTTGAGCCAAT
GAGAAGCAAATCTTGATTTG
Pro Sequence
MEALVCRKLGDPTATEPGSTESPVEVSKTYPIPPLTSDTAVRVKVTATSL
NFANYLQILGKYQEKPPLPFIPGSDYSGIVDAIGPSVTKFSVGDRVCSFA
ALGSYAQFIVADQSLLFLVPEGCDMIAAAALPVAFGTSHVALVHRARLTS
GQVLMVLGAAGGVGLAAVQIGKICGAIVIAVARGSEKIQLLKSMGVDHVV
DLGSENVITSVKEFVKTRKLKGVDVLYDPVGGKLTKDSMKVLNWGAQILV
IGFASGEVPLIPANIALVKNWTVHGLYWGSYKIHQPNVLDDSIRELLSWL
ARGLITIHISHTYSLSQSNLAFGAIKDRKAIGKVMIALDHKATLSSKL
mRNA Sequence
AGACAATAGATGAGATATTTAGATATCCAATCATCGAAGACAAAACAACTAAGAGACAGAGGAAGATCGT
GTAAGGAAGATCAACAATGGAGGCTTTGGTTTGCCGGAAACTAGGAGATCCGACGGCGACGGAACCAGGG
AGTACAGAATCTCCGGTGGAAGTGAGCAAAACCTACCCGATCCCGCCTCTGACCTCCGATACAGCGGTGA
GAGTCAAGGTCACAGCAACGAGCTTGAACTTCGCGAATTACCTTCAGATTCTCGGAAAGTACCAGGAGAA
ACCTCCGTTGCCTTTCATCCCCGGCTCCGACTACTCCGGAATCGTCGACGCCATCGGCCCATCCGTCACC
AAATTCAGCGTCGGTGATCGAGTTTGCTCCTTCGCCGCCCTCGGTTCCTACGCTCAGTTCATCGTCGCCG
ACCAGTCTCTCCTGTTCCTTGTACCGGAAGGATGCGACATGATCGCTGCAGCTGCACTTCCCGTTGCCTT
TGGGACTTCTCATGTTGCTCTTGTTCATAGAGCTCGTTTAACCTCTGGTCAGGTCTTGATGGTTCTTGGC
GCTGCTGGTGGCGTTGGTCTTGCAGCTGTTCAAATCGGGAAGATTTGTGGAGCCATTGTCATTGCAGTTG
CTAGAGGGAGTGAGAAGATTCAGCTGTTGAAGTCAATGGGAGTGGATCATGTTGTTGATTTAGGCAGTGA
GAATGTTATTACAAGCGTCAAAGAGTTCGTCAAGACAAGAAAGCTTAAAGGAGTTGATGTTCTGTATGAT
CCTGTAGGAGGGAAACTCACCAAGGACTCCATGAAAGTTCTCAACTGGGGAGCTCAGATTCTTGTGATTG
GTTTCGCAAGCGGTGAAGTACCTCTGATTCCTGCTAATATAGCACTTGTGAAGAACTGGACGGTTCATGG
TCTATATTGGGGCAGCTACAAAATCCACCAACCTAATGTTCTCGATGATTCCATCAGAGAGTTACTGTCA
TGGCTTGCTAGAGGATTGATCACCATTCACATCTCTCATACCTATAGTCTCTCCCAGTCCAATCTCGCTT
TTGGGGCCATCAAAGACAGGAAGGCAATTGGAAAAGTGATGATTGCTCTCGACCACAAGGCCACCCTCTC
TTCAAAACTATAGTCTCTATAGCCACAGAAGAGAACTGATTCTGTTTCTCTAAGTGTACTATGTCATAAT
GTAGTTTACCACATCCTGTTTGAATTTAATAATCATAACTTTGTTTGGATTCTGTAGAAATCACTTTTTC
AGAATAAAAATTTCAGAGTATGTTACTGTTTTGGTTGAGGTGTTTTATGCAAACCCGGT