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Detail for ZS11_A03G15030.t1

Genome:
ZS11: ZS11_A03G15030.t1
ZS11_v0: BnaA03T0133900ZS
WE: WE_A03G15760.t1
WE_v0: BnaA03T0148300WE
Darmor: A03p15550.1_BnaDAR
BH: BnaA03T152800BH
Quinta: BnaA03T0130100QU
ZS2: BnaA03T141600ZS2
SW: BnaA03T151600SW
Express61: A03p013710.2_BnaEXP
Xiaoyun: BnaA03G0140600XY
P202: BnaA03G012030P202.1
BL: BnaA03T152800BH
TA: BnaA03T123500TA
Da-Ae: Not available
RB: BnaA03T146100RB
No2127: BnaA03T0134800NO
P130: BnaA03G012460P130.1
Length: 170
KOG ID: KOG3365
KOG E-value: 4.710000e-114
KOG Score: 322.0
KOG Annotation: Energy production and conversion
Biological Process: GO:0022904(respiratory electron transport chain)
Cellular Component: -
Molecular Function: -
KEGG Ortholog: K03949 NDUFA5; NADH dehydrogenase (ubiquinone) 1 alpha subcomplex subunit 5
NR Protein: XP_013733915.1
NR E-value: 3.900000e-93
NR Score: 345.9
NR Annotation: XP_013733915.1 probable NADH dehydrogenase [ubiquinone] 1 alpha subcomplex subunit 5, mitochondrial [Brassica napus]
SwissProt Protein: Q9FLX7|NDUA5_ARATH
SwissProt E-value: 2.000000e-113
SwissProt Score: 322.0
SwissProt Annotation: Probable NADH dehydrogenase [ubiquinone] 1 alpha subcomplex subunit 5, mitochondrial OS=Arabidopsis thaliana OX=3702 GN=At5g52840 PE=1 SV=1
CDS Sequence (520 bp)
ATGTTCCTTCGCGCAATCGGACGGCCGTTACTGGCCAAAGTGAAGCAGACGACGGGGATCGTGGGGCTCG
ACGTCGTACCGAACGCGAGGGCGGTGCTGATCGATCTCTACAGCAAAACCCTAAAGGAGATCCAAGCCGT
GCCGGAGGACGAAGGATACCGCAAAGCGGTGGAATCGTTCACGCGCCACCGTCTCAATGTGTGCAAGGAA
GAGGAAGACTGGGAGGCGATCGAGAAGCGTCTTGGCTGCGGTCAAGTCGAGGAGCTCATCGAGGAGGCGC
AAGATGAGCTCACACTCATTGGGAAGATGATCGAATGGGACCCTTGGGGTGTTCCAGATGACTACGAGTG
TGAAGTAATTGAGAACGATGCACCCATTCCCAAGCACGTTCCTCAGCATCGACCTGGTCCTCTTCCTGAG
GATTTCTACAGAACCCTTGAAGCTCTAATTTCAGAGTCCAAAACAAAAATCCCAGCTGCTGCTACCTCCA
CTGATCCGCAGTTGAAGGAGTGA
Upstream Sequence
GTGAGAGTTGACACTGTAAACAACAAACAAACCTTCTGAGATTTCGCCGGCGAGAGAAGAGTGAGAGAGA
GAGAGAGAGAGAGAGATCTAACGGTTGAGATGTTCCTTCGCGCAATCGGACGGCCGTTACTGGCCAAAGT
GAAGCAGACGACGGGGATCGTGGGGCTCGACGTCGTACCGAACGCGAGGGCGGTGCTGATCGATCTCTAC
AGCAAAACCCTAAAGGAGATCCAAGCCGTGCCGGAGGACGAAGGATACCGCAAAGCGGTGGAATCGTTCA
CGCGCCACCGTCTCAATGTGTGCAAGGAAGAGGAAGACTGGGAGGCGATCGAGAAGCGTCTTGGCTGCGG
TCAAGTCGAGGAGCTCATCGAGGAGGCGCAAGATGAGCTCACACTCATTGGGAAGATGATCGAATGGGAC
CCTTGGGGTGTTCCAGATGACTACGAGTGTGAAGTAATTGAGAACGATGCACCCATTCCCAAGCACGTTC
CTCAGCATCGACCTGGTCCTCTTCCTGAGGATTTCTACAGAACCCTTGAAGCTCTAATTTCAGAGTCCAA
AACAAAAATCCCAGCTGCTGCTACCTCCACTGATCCGCAGTTGAAGGAGTGAGTAACTTTTCCAGTTCTA
CATTGTTTGTTTGTGTTCTTTGTTTGGCCACTGTTCAGAGACAGCGAGCCTATGAATAAACTGGTTAATA
ATCTTTGAAAACTAGCACAATGTCACTCGTTTCATAAATGTTTTTTATCTTTCTTCTCAAAGACCGCCTA
TGATAATACAAATGATGTTTCATCCCCTTTGCAATAG
Downstream Sequence
GGTGCGTAAGCTCTCTCCTTCTATTTCATTATCATCCGATTCGTTTGCTATTGTATCTGA
TTGTGCGGATGTAGATTGAGATTTGAGATTAGAATGTTGCTTTAGGTTTTTGCTAGGGAA
CTTTGAGCTGGGGATTGATTTGTTTACAAGAATCTAGAGGCTTTGTAGAATGTTAGTTTG
AAAAATCTGAGCACAGGGGATTGCAAAGGTGTCATCTTTATCGGCTATCAAGCTAAGTGA
AAGAAATTATGTGGGAAATGCGAGTAAGGGAATGTAAAAGTCAAGTTTTTTTTTTTGTCT
GTATTGTTTGCTAGCTTAGGCGTATGGGTGAATGTTTGTGTAGTTTACTTAGTTTGGAAC
TGTTTTGCTTCAGTGACTGTCACATAGGTTTGGTCATGTTCTAAACCTGTATATGCTTGT
TGAAGATCTCTTTCGATTTTTATGTTCTAAACCTGTATAGGTTTCAGGCATCTTATGTTG
AGCTCCTGTCACGTTCTTGTGTTGATTTTTATTGTGTCCTCTTTATCGGCTATCAATCTA
GTTGAAACTGGAAAGAAAGTATGAGTTTTATTCATGGTTATTGAAATTTCAAGCTGAAAT
GCAAAAGTTGAGATTTTGTGTTGTTTACTAAATGTTTGCGTAGTTTGGAACCGTTTTGGC
TTCAGTGTCACATAGGTTTGGTCATGTTCTAAATCCGTAGGTACTTCCATATCCAGTTTT
CTTGAGGTTATTGCTGTCTTCTTCTTTGTCAATCTTTTTGTTGTTGGCTTGTTTTGATGC
GTGAGCTATTTTGGGCCTTTTTATTTTTGAGAATCTGTTGAAGCTTAATGATCTCGTTGA
CCTTGTTCGACTTCTTGGGTTGCATGGCGTGTTTGGTTATCTCTGTGTTGTGTAATGATG
AAGAAATTACAATTACCATCATGATGGTGTTTGAAAATGTTTGATCGCAAGGCTCTAACC
TCCTCGCCTTGGAGCGCCATGCGGTTTCTAAGAAACAGGAATTGCATGATCCTTTAAGTA
GTTAGGCTTCAGGCATCTTACTTTTGTAACCGTCTTTTTAGAACTAGCTATTGTTTGAGC
CCTTATCACACTCTTGTGCTGTATTATGCTACCGAGGCTGCCCATTTCAACCTTTTGTTC
TGAGTTTGCTCATTTTACAAACACTTTGTTCACCATGGAGTCGTAACTCGTTTGATTTGC
ATTTGCAGAATGGGACCCTTGGGGTGTTCCAGATGACTACGAGTGTGAAGTAATTGAGAA
CGATGCACCCATTCCCAAGCACGTTCCTCAGCATCGACCTGGTCCTCTTCCTGAGGATTT
CTACAGAACCCTTGAAGCTCTAATTTCAGAGTCCAAAACAAAAATCCCAGCTGCTGCTAC
CTCCACTGATCCGCAGTTGAAGGAGTGAGTAACTTTTCCAGTTCTACATTGTTTGTTTGT
GTTCTTTGTTTGGCCACTGTTCAGAGACAGCGAGCCTATGAATAAACTGGTTAATAATCT
TTGAAAACTAGCACAATGTCACTCGTTTCATAAATGTTTTTTATCTTTCTTCTCAAAGAC
CGCCTATGATAATACAAATGATGTTTCATCCCCTTTGCAATAGCATTTACTTTTTTTTAA
GACATGTAGCCGATTACCTTGAACTCTATGGTACCCGATTAGCTCAGAGAATACCAGATA
GAGTCGGGGCCAGTCAAGCATTGCCTATAGTCTCCAAAATTTATGAAAAAAATAATATAG
AAAGTAGAAACGAATCTTCATATTTGTAAAAAAAAGTTATTGAAAACTATACTAAATCGT
CTATGGTTCTCAAAATCTCGGGTCGGTCATGGATAGAGTAACAACATTAGGTTCTACTCC
TAGTCTTAACATTTGTTTTTTTGGGCAACAATCTCTATATCAACACTTCAAAACAATTTT
GCTCAAATCCGTAATCAGCTTGACTTAAGATTAACGTTGTCTAAGAGATGGACATTTTAT
GATGCCTAGCACTTCGATAT
Pro Sequence
MFLRAIGRPLLAKVKQTTGIVGLDVVPNARAVLIDLYSKTLKEIQAVPED
EGYRKAVESFTRHRLNVCKEEEDWEAIEKRLGCGQVEELIEEAQDELTLI
GKMIEWDPWGVPDDYECEVIENDAPIPKHVPQHRPGPLPEDFYRTLEALI
SESKTKIPAAATSTDPQLKE
mRNA Sequence
GTGAGAGTTGACACTGTAAACAACAAACAAACCTTCTGAGATTTCGCCGGCGAGAGAAGAGTGAGAGAGA
GAGAGAGAGAGAGAGATCTAACGGTTGAGATGTTCCTTCGCGCAATCGGACGGCCGTTACTGGCCAAAGT
GAAGCAGACGACGGGGATCGTGGGGCTCGACGTCGTACCGAACGCGAGGGCGGTGCTGATCGATCTCTAC
AGCAAAACCCTAAAGGAGATCCAAGCCGTGCCGGAGGACGAAGGATACCGCAAAGCGGTGGAATCGTTCA
CGCGCCACCGTCTCAATGTGTGCAAGGAAGAGGAAGACTGGGAGGCGATCGAGAAGCGTCTTGGCTGCGG
TCAAGTCGAGGAGCTCATCGAGGAGGCGCAAGATGAGCTCACACTCATTGGGAAGATGATCGAATGGGAC
CCTTGGGGTGTTCCAGATGACTACGAGTGTGAAGTAATTGAGAACGATGCACCCATTCCCAAGCACGTTC
CTCAGCATCGACCTGGTCCTCTTCCTGAGGATTTCTACAGAACCCTTGAAGCTCTAATTTCAGAGTCCAA
AACAAAAATCCCAGCTGCTGCTACCTCCACTGATCCGCAGTTGAAGGAGTGAGTAACTTTTCCAGTTCTA
CATTGTTTGTTTGTGTTCTTTGTTTGGCCACTGTTCAGAGACAGCGAGCCTATGAATAAACTGGTTAATA
ATCTTTGAAAACTAGCACAATGTCACTCGTTTCATAAATGTTTTTTATCTTTCTTCTCAAAGACCGCCTA
TGATAATACAAATGATGTTTCATCCCCTTTGCAATAG