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DETAIL

Detail for ZS11_A05G04150.t1

Genome:
ZS11: ZS11_A05G04150.t1
ZS11_v0: BnaA05T0038000ZS
WE: WE_A05G03810.t1
WE_v0: BnaA05T0028500WE
Darmor: A05p03740.1_BnaDAR
BH: BnaA05T043500BH
Quinta: BnaA05T0035100QU
ZS2: BnaA05T037900ZS2
SW: BnaA05T036000SW
Express61: A05p003400.1_BnaEXP
Xiaoyun: BnaA05G0034900XY
P202: BnaA05G003910P202.4
BL: BnaA05T043500BH
TA: BnaA05T037200TA
Da-Ae: Not available
RB: BnaA05T041000RB
No2127: BnaC04T0039000NO
P130: BnaA05G003430P130.4
Length: 646
KOG ID: KOG2415
KOG E-value: Not available
KOG Score: 1126.0
KOG Annotation: Energy production and conversion
Biological Process: GO:0022900(electron transport chain)
Cellular Component: -
Molecular Function: GO:0004174(electron-transferring-flavoprotein dehydrogenase activity)
KEGG Ortholog: K00311 ETFDH; electron-transferring-flavoprotein dehydrogenase [EC:1.5.5.1]
NR Protein: XP_013717521.1
NR E-value: Not available
NR Score: 1309.3
NR Annotation: XP_013717521.1 electron transfer flavoprotein-ubiquinone oxidoreductase, mitochondrial [Brassica napus]
SwissProt Protein: O22854|ETFQO_ARATH
SwissProt E-value: Not available
SwissProt Score: 1126.0
SwissProt Annotation: Electron transfer flavoprotein-ubiquinone oxidoreductase, mitochondrial OS=Arabidopsis thaliana OX=3702 GN=ETFQO PE=2 SV=1
CDS Sequence (1968 bp)
ATGAAAAAAATGAAGGCTTTGTTTAGATCATCATCGTCCTCTTCTCTTAGCTTCACCATCATGCATAGAT
TCCTTCTAAAGCTATCTTCTTCCACCAATCCATTGAGAAACTCTAAGAATCAACTGCCTTTGATTCTCCC
TCGTTTCCTTTCATCAACCACCGCCTCTGAGTCTCCTCCTCCTCCAAGGACCTCGCACCCTTCTAATCGA
TTCATTTCTCGATCTGGGCATCCTTATTCGGCCGATTCGTTTCGAAAGTCGCAAGCTTTCAGCTCAAAGT
CGAGAGCTTTAGGTGTAAGATGTATCAGCAGTGAAGCGGGGAGAGAGAGTATAGAGTACGATGTTCTGAT
CATCGGAGCTGGACCGGCTGGTCTATCTGCTGCTATACGATTGAAACAGCTCTGTCAGGAGAAGAACGCT
GATCTGTCTGTATGCGTCGTTGAGAAAGGAGCTGAAGTTGGAGGACACGTCATATCTGGAAATGTTTTTG
AGCCTTTGGCGTTAGATGAACTTCTCCCACATTGGAGACAAGAACAGGCGCCAATTGAGGTCGCTGCTTC
TTCCGATAAGTTCTGGTTTCTGACGAAGAACCGTGCGATCTCACTTCCTTCTCCTTTTGATAACAAGGGC
AACTACGTTATTAGTTTGAGCCAACTGGTGCGTTGGTTAGGAGGCAAAGCTGAGGAGCTTGGAATAGAGA
TATATCCTGGCTTTTCAGCTAGTGAGGTGTTGTACGATGCAAGTGATAAGGTTGTTGGGATTGCAACCAA
GGATATGGGAATATCCAAAGATGGTTCTAAGAAGGAGACTTTTCAGCCAGGCGTAGACATAAAAGGGAGA
GTTACTCTATTTGCTGAGGGATGCAGAGGATCATTGTCCGAGAAAATAATCAAAAAGTATAAATTAAGAG
AGGAGGTTAATGCACAACATCAGACATACGCTTTGGGAATTAAAGAGGTTTGGGAGATAGATGAAAGCAA
ACATAACCCCGGAGAAGTTGTTCACACTTTGGGCTGGCCCTTGGATCCTAAGACATACGGAGGTTCTTTC
TTGTACCACATGAACAATAGACAGGTTGCGCTTGGCTTGGTTGTTGCCTTGAATTACAAAAACCCTTTCT
TGAATCCATATGAGGAGTTTCAGAAACTCAAACACCATCCAGCCATAAAACGCATCTTGGAAGGTGGTAC
TGTGCTTCAGTATGGAGCTCGCACTTTAAATGAAGGTGGTTTTCAGTCCATTCCCTATCCAGTTTTTCCT
GGAGGAGCAATCATTGGATGTTCAGCTGGTTTTCTCAATGTACCCAAGATTAAAGGGACACATACCGCAA
TGAAATCAGGAATGTTAGCAGCAGAGGCTGCATTTGGTGCACTTCATGAAGGTTCAAACATGAGCACATA
CTGGGACAACCTGAGAAGTTCATGGGTGTGGAAGGAGCTCTACTCAGCTCGAAACTACCGACCTGCATTT
GAGTATGGGCTAATCCCTGGCTTGGCCGTAAGTGCTATGGAACACTATGTACTGAGAGGAAAGGTCCCTT
TCACGTTGAAGCACGGGAAAGCAGACCACGAAGCAACTGATCTTGCTCGGAAATGGAAGCCAATTGAGTA
TCCAAAGCCAGATGGTGTTTTGTCCTTTGACGTGCCAACGTCTTTATACAGGAGTAACACCAATCATGAT
CATGACCAGCCATCTCATTTGCGATTGAGGGATCCAAAGATTCCAGAAAAGGTGAACTTACCAGAGTATG
CTGCACCAGAGTCACGTTACTGCCCGGCCCGTGTATACGAGTATGTTGAAGATGAAGAGGGTAAGCCGAA
ACTGCAGATCAACGCTCAAAACTGTTTGCACTGCAAGGCGTGTGACATTAAAGATCCGAAGCAAAACATA
GAGTGGACAGTGCCTGAAGGTGGTGGAGGCCCTGCTTATTCCATCATGTAG
Upstream Sequence
GTGTAGAGAGAGTTTTTTTCTTTTTTTGTTTTTTTAAACACAGAGAGAGCTTTTATATGAATGAAAAAAA
TGAAGGCTTTGTTTAGATCATCATCGTCCTCTTCTCTTAGCTTCACCATCATGCATAGATTCCTTCTAAA
GCTATCTTCTTCCACCAATCCATTGAGAAACTCTAAGAATCAACTGCCTTTGATTCTCCCTCGTTTCCTT
TCATCAACCACCGCCTCTGAGTCTCCTCCTCCTCCAAGGACCTCGCACCCTTCTAATCGATTCATTTCTC
GATCTGGGCATCCTTATTCGGCCGATTCGTTTCGAAAGTCGCAAGCTTTCAGCTCAAAGTCGAGAGCTTT
AGGTGTAAGATGTATCAGCAGTGAAGCGGGGAGAGAGAGTATAGAGTACGATGTTCTGATCATCGGAGCT
GGACCGGCTGGTCTATCTGCTGCTATACGATTGAAACAGCTCTGTCAGGAGAAGAACGCTGATCTGTCTG
TATGCGTCGTTGAGAAAGGAGCTGAAGTTGGAGGACACGTCATATCTGGAAATGTTTTTGAGCCTTTGGC
GTTAGATGAACTTCTCCCACATTGGAGACAAGAACAGGCGCCAATTGAGGTCGCTGCTTCTTCCGATAAG
TTCTGGTTTCTGACGAAGAACCGTGCGATCTCACTTCCTTCTCCTTTTGATAACAAGGGCAACTACGTTA
TTAGTTTGAGCCAACTGGTGCGTTGGTTAGGAGGCAAAGCTGAGGAGCTTGGAATAGAGATATATCCTGG
CTTTTCAGCTAGTGAGGTGTTGTACGATGCAAGTGATAAGGTTGTTGGGATTGCAACCAAGGATATGGGA
ATATCCAAAGATGGTTCTAAGAAGGAGACTTTTCAGCCAGGCGTAGACATAAAAGGGAGAGTTACTCTAT
TTGCTGAGGGATGCAGAGGATCATTGTCCGAGAAAATAATCAAAAAGTATAAATTAAGAGAGGAGGTTAA
TGCACAACATCAGACATACGCTTTGGGAATTAAAGAGGTTTGGGAGATAGATGAAAGCAAACATAACCCC
GGAGAAGTTGTTCACACTTTGGGCTGGCCCTTGGATCCTAAGACATACGGAGGTTCTTTCTTGTACCACA
TGAACAATAGACAGGTTGCGCTTGGCTTGGTTGTTGCCTTGAATTACAAAAACCCTTTCTTGAATCCATA
TGAGGAGTTTCAGAAACTCAAACACCATCCAGCCATAAAACGCATCTTGGAAGGTGGTACTGTGCTTCAG
TATGGAGCTCGCACTTTAAATGAAGGTGGTTTTCAGTCCATTCCCTATCCAGTTTTTCCTGGAGGAGCAA
TCATTGGATGTTCAGCTGGTTTTCTCAATGTACCCAAGATTAAAGGGACACATACCGCAATGAAATCAGG
AATGTTAGCAGCAGAGGCTGCATTTGGTGCACTTCATGAAGGTTCAAACATGAGCACATACTGGGACAAC
CTGAGAAGTTCATGGGTGTGGAAGGAGCTCTACTCAGCTCGAAACTACCGACCTGCATTTGAGTATGGGC
TAATCCCTGGCTTGGCCGTAAGTGCTATGGAACACTATGTACTGAGAGGAAAGGTCCCTTTCACGTTGAA
GCACGGGAAAGCAGACCACGAAGCAACTGATCTTGCTCGGAAATGGAAGCCAATTGAGTATCCAAAGCCA
GATGGTGTTTTGTCCTTTGACGTGCCAACGTCTTTATACAGGAGTAACACCAATCATGATCATGACCAGC
CATCTCATTTGCGATTGAGGGATCCAAAGATTCCAGAAAAGGTGAACTTACCAGAGTATGCTGCACCAGA
GTCACGTTACTGCCCGGCCCGTGTATACGAGTATGTTGAAGATGAAGAGGGTAAGCCGAAACTGCAGATC
AACGCTCAAAACTGTTTGCACTGCAAGGCGTGTGACATTAAAGATCCGAAGCAAAACATAGAGTGGACAG
TGCCTGAAGGTGGTGGAGGCCCTGCTTATTCCATCATGTAGTAATCCTCATCAACACTCACTTTACCACG
TCCCATAAATAAATAAGACTCGAGCAAAACCATATAATGTTTGTAGCTTTTTAAAGATAGAAAATGTATG
TAAAAGCATCATTGCTTGGCTTGTTGTAAACTTTCATTTGACATTGATGAGAATTCATCAGAATAAGTGA
AGAAAAAAGAAATCACATTCATGCA
Downstream Sequence
GTTAGTTTCCTCCTTCTCTCTCTCTCTTTATGTATCTCTTAGATTCTTGAATTTCGCTTG
TGATGATGCTTATAGGAGGACACGTCATATCTGGAAATGTTTTTGAGCCTTTGGCGTTAG
ATGAACTTCTCCCACATTGGAGACAAGAACAGGTTTGTTGCTTTAGGCATAAAAAAAAAC
AAATCTTTATTTGGAAAATAACATTAAAGGCGATGTTTTTTGTTGTTTCTTGGTGTGTTC
TGTAACTAGGCGCCAATTGAGGTCGCTGCTTCTTCCGATAAGTTCTGGTTTCTGACGAAG
AACCGTGCGATCTCACTTCCTTCTCCTTTTGATAACAAGGGCAACTACGTTATTAGGTAA
GGTGTTAGACTGAACATCGTTATAACTGGTAAGGTCCATGGTTAAAGTTTCATTGTCGTG
CTTGTATGTACAGTTTGAGCCAACTGGTGCGTTGGTTAGGAGGCAAAGCTGAGGAGCTTG
GAATAGAGATATATCCTGGCTTTTCAGCTAGTGAGGTAATAATCTCTCGTGGCTCTCTCT
ATTCTTCAAACCTTTTGATGTTCTTCGTAGTGAACGGTTTTTTTTTACTCAGGTGTTGTA
CGATGCAAGTGATAAGGTTGTTGGGATTGCAACCAAGGATATGGGAATATCCAAAGATGG
TTCTAAGAAGGAGACTTTTCAGCCAGGCGTAGACATAAAAGGTCTCTCTCTCTCTCTCAT
CACTAATAGGAAGTGTCTTGTGCTAATAAGATATGTGATTTTTTCTATACACAGGGAGAG
TTACTCTATTTGCTGAGGGATGCAGAGGATCATTGTCCGAGGTCAGAAGAAGCGTTTTGG
TTACAATCTACACTCTAATTCGGCGTGCATGATGCTAACTAAGTTTCTTACTTCAACTTT
GTGCAGAAAATAATCAAAAAGTATAAATTAAGAGAGGAGGTTAATGCACAACATCAGACA
TACGCTTTGGGAATTAAAGAGGTTACCACTTTTATCCTTTGTTCTAGTTTTAACAATTGG
TCATAGGACCCCTTTAAATTTGCTGATACTTTGAGCTCAACAGGTTTGGGAGATAGATGA
AAGCAAACATAACCCCGGAGAAGTTGTTCACACTTTGGGCTGGCCCTTGGATCCTAAGAC
ATACGGAGGTTCTTTCTTGTACCACATGAACAATAGACAGGTAACACATTGAGAAAATAT
TGTCTGCTTTCCTTCTACGGGTGTCTTAATCAGTCGAACCAAACAGGTTGCGCTTGGCTT
GGTTGTTGCCTTGAATTACAAAAACCCTTTCTTGAATCCATATGAGGAGTTTCAGGTATG
TCAATTTCTCACAACAATAAAACGAATTAAGAAGTTTGATGAAGGATTAATCATTTTTTA
TTCTCCCAATAGAAACTCAAACACCATCCAGCCATAAAACGCATCTTGGAAGGTGGTACT
GTGCTTCAGTATGGAGCTCGCACTTTAAATGAAGGTGGTTTTCAGGTGAGTttaaaatcT
TTTCCCTTAAGATATAACCTGCACGTTGATATAATTTTGTTCTGGCATGTTATGACATAT
TGATGCTAGTAAAATTTCAGTCCATTCCCTATCCAGTTTTTCCTGGAGGAGCAATCATTG
GATGTTCAGCTGGTTTTCTCAATGTACCCAAGATTAAAGGGACACATACCGCAATGAAAT
CAGGTTACACTACATCTTTGAAAAGAACTACTGTTTTTTTTATATTGTCCCATATTAAAA
TTTTCATTTTAAATTTCATCAAATATTATACAGGAATGTTAGCAGCAGAGGCTGCATTTG
GTGCACTTCATGAAGGTTCAAACATGAGCACATACTGGGACAACCTGAGAAGTTCATGGG
TGTGGAAGGAGCTCTACTCAGCTCGAAACTACCGACCTGTTCGTAACATCATTGCTCTTA
TGGTTTTCTATCTAATTGAAATTTCCTGGTAGATAAGATGTTAATATCTCAAATAATTTC
AGGCATTTGAGTATGGGCTA
Pro Sequence
MKKMKALFRSSSSSSLSFTIMHRFLLKLSSSTNPLRNSKNQLPLILPRFL
SSTTASESPPPPRTSHPSNRFISRSGHPYSADSFRKSQAFSSKSRALGVR
CISSEAGRESIEYDVLIIGAGPAGLSAAIRLKQLCQEKNADLSVCVVEKG
AEVGGHVISGNVFEPLALDELLPHWRQEQAPIEVAASSDKFWFLTKNRAI
SLPSPFDNKGNYVISLSQLVRWLGGKAEELGIEIYPGFSASEVLYDASDK
VVGIATKDMGISKDGSKKETFQPGVDIKGRVTLFAEGCRGSLSEKIIKKY
KLREEVNAQHQTYALGIKEVWEIDESKHNPGEVVHTLGWPLDPKTYGGSF
LYHMNNRQVALGLVVALNYKNPFLNPYEEFQKLKHHPAIKRILEGGTVLQ
YGARTLNEGGFQSIPYPVFPGGAIIGCSAGFLNVPKIKGTHTAMKSGMLA
AEAAFGALHEGSNMSTYWDNLRSSWVWKELYSARNYRPAFEYGLIPGLAV
SAMEHYVLRGKVPFTLKHGKADHEATDLARKWKPIEYPKPDGVLSFDVPT
SLYRSNTNHDHDQPSHLRLRDPKIPEKVNLPEYAAPESRYCPARVYEYVE
DEEGKPKLQINAQNCLHCKACDIKDPKQNIEWTVPEGGGGPAYSIM
mRNA Sequence
GTGTAGAGAGAGTTTTTTTCTTTTTTTGTTTTTTTAAACACAGAGAGAGCTTTTATATGAATGAAAAAAA
TGAAGGCTTTGTTTAGATCATCATCGTCCTCTTCTCTTAGCTTCACCATCATGCATAGATTCCTTCTAAA
GCTATCTTCTTCCACCAATCCATTGAGAAACTCTAAGAATCAACTGCCTTTGATTCTCCCTCGTTTCCTT
TCATCAACCACCGCCTCTGAGTCTCCTCCTCCTCCAAGGACCTCGCACCCTTCTAATCGATTCATTTCTC
GATCTGGGCATCCTTATTCGGCCGATTCGTTTCGAAAGTCGCAAGCTTTCAGCTCAAAGTCGAGAGCTTT
AGGTGTAAGATGTATCAGCAGTGAAGCGGGGAGAGAGAGTATAGAGTACGATGTTCTGATCATCGGAGCT
GGACCGGCTGGTCTATCTGCTGCTATACGATTGAAACAGCTCTGTCAGGAGAAGAACGCTGATCTGTCTG
TATGCGTCGTTGAGAAAGGAGCTGAAGTTGGAGGACACGTCATATCTGGAAATGTTTTTGAGCCTTTGGC
GTTAGATGAACTTCTCCCACATTGGAGACAAGAACAGGCGCCAATTGAGGTCGCTGCTTCTTCCGATAAG
TTCTGGTTTCTGACGAAGAACCGTGCGATCTCACTTCCTTCTCCTTTTGATAACAAGGGCAACTACGTTA
TTAGTTTGAGCCAACTGGTGCGTTGGTTAGGAGGCAAAGCTGAGGAGCTTGGAATAGAGATATATCCTGG
CTTTTCAGCTAGTGAGGTGTTGTACGATGCAAGTGATAAGGTTGTTGGGATTGCAACCAAGGATATGGGA
ATATCCAAAGATGGTTCTAAGAAGGAGACTTTTCAGCCAGGCGTAGACATAAAAGGGAGAGTTACTCTAT
TTGCTGAGGGATGCAGAGGATCATTGTCCGAGAAAATAATCAAAAAGTATAAATTAAGAGAGGAGGTTAA
TGCACAACATCAGACATACGCTTTGGGAATTAAAGAGGTTTGGGAGATAGATGAAAGCAAACATAACCCC
GGAGAAGTTGTTCACACTTTGGGCTGGCCCTTGGATCCTAAGACATACGGAGGTTCTTTCTTGTACCACA
TGAACAATAGACAGGTTGCGCTTGGCTTGGTTGTTGCCTTGAATTACAAAAACCCTTTCTTGAATCCATA
TGAGGAGTTTCAGAAACTCAAACACCATCCAGCCATAAAACGCATCTTGGAAGGTGGTACTGTGCTTCAG
TATGGAGCTCGCACTTTAAATGAAGGTGGTTTTCAGTCCATTCCCTATCCAGTTTTTCCTGGAGGAGCAA
TCATTGGATGTTCAGCTGGTTTTCTCAATGTACCCAAGATTAAAGGGACACATACCGCAATGAAATCAGG
AATGTTAGCAGCAGAGGCTGCATTTGGTGCACTTCATGAAGGTTCAAACATGAGCACATACTGGGACAAC
CTGAGAAGTTCATGGGTGTGGAAGGAGCTCTACTCAGCTCGAAACTACCGACCTGCATTTGAGTATGGGC
TAATCCCTGGCTTGGCCGTAAGTGCTATGGAACACTATGTACTGAGAGGAAAGGTCCCTTTCACGTTGAA
GCACGGGAAAGCAGACCACGAAGCAACTGATCTTGCTCGGAAATGGAAGCCAATTGAGTATCCAAAGCCA
GATGGTGTTTTGTCCTTTGACGTGCCAACGTCTTTATACAGGAGTAACACCAATCATGATCATGACCAGC
CATCTCATTTGCGATTGAGGGATCCAAAGATTCCAGAAAAGGTGAACTTACCAGAGTATGCTGCACCAGA
GTCACGTTACTGCCCGGCCCGTGTATACGAGTATGTTGAAGATGAAGAGGGTAAGCCGAAACTGCAGATC
AACGCTCAAAACTGTTTGCACTGCAAGGCGTGTGACATTAAAGATCCGAAGCAAAACATAGAGTGGACAG
TGCCTGAAGGTGGTGGAGGCCCTGCTTATTCCATCATGTAGTAATCCTCATCAACACTCACTTTACCACG
TCCCATAAATAAATAAGACTCGAGCAAAACCATATAATGTTTGTAGCTTTTTAAAGATAGAAAATGTATG
TAAAAGCATCATTGCTTGGCTTGTTGTAAACTTTCATTTGACATTGATGAGAATTCATCAGAATAAGTGA
AGAAAAAAGAAATCACATTCATGCA