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Detail for ZS11_C07G22760.t1

Genome:
ZS11: ZS11_C07G22760.t1
ZS11_v0: BnaC07T0177600ZS
WE: WE_A09G42970.t1
WE_v0: BnaA09T0428900WE
Darmor: C07p20870.1_BnaDAR
BH: BnaA09T432600BH
Quinta: BnaA09T0434900QU
ZS2: BnaC07T159800ZS2
SW: BnaC07T186200SW
Express61: C07p005910.1_BnaEXP
Xiaoyun: BnaC07G0186000XY
P202: BnaC07G052370P202.1
BL: BnaA09T432600BH
TA: BnaA09T356100TA
Da-Ae: Not available
RB: BnaC07T190600RB
No2127: BnaC07T0173200NO
P130: BnaC07G025600P130.1
Length: 188
KOG ID: KOG2940
KOG E-value: 3.590000e-70
KOG Score: 218.0
KOG Annotation: General function prediction only
Biological Process: -
Cellular Component: -
Molecular Function: -
KEGG Ortholog: K18162 NDUFAF5; NADH dehydrogenase [ubiquinone] 1 alpha subcomplex assembly factor 5 [EC:2.1.1.-]
NR Protein: CDY12508.1
NR E-value: 2.400000e-64
NR Score: 250.4
NR Annotation: CDY12508.1 BnaC07g13480D [Brassica napus]
SwissProt Protein: O80543|Y1280_ARATH
SwissProt E-value: 1.520000e-69
SwissProt Score: 218.0
SwissProt Annotation: Putative methyltransferase At1g22800, mitochondrial OS=Arabidopsis thaliana OX=3702 GN=At1g22800 PE=1 SV=2
CDS Sequence (575 bp)
ATGCGGAGGATCACTTCCCTGTACGGACGAATTAGTCTTCTTAAGAGACCAACGAAGCAATCTCACACAT
TCATCGCCTCTCTATCCTTCTCCACGGTCGGTGGCTACAAGCGCGTACATCGTGGCCGAGCGGCGTGGCT
GTCTCGCAATAAAAACGACACCTTTGTCGACGCTGTTGCAGAGGACCGCTTAGAGGGGAATCTATTGACC
AGGGCGGGTTTTAGTCTTCCCGGTGTTGACGTTGACGACTATGTGGTTAAATACAAGAGTGCGCTGGATC
TTATAGACCATCTTCGTGCCATGGGTGAAACCAACGCTCTTCTCCACCGAAACAAGGCATGTTTTTCTTT
CTTTCTTTCTTCTATCTTGAATCGTGAAACTGCTCTTGCAACGGCAGCTATATATGACTCCATGTTCGCC
ACAGAGGACGGCACCATACCTGCTACTTTTCAGGTGATTTACATGACGGGATGGAGGGAACACTCTTCTC
ACCCGCAGGCTAAGCGGAGAGGTTCAGCCACCGTATCCTTCACAGATATCCAGAAGCAATTTGGTGCTTA
CTCTTGA
Upstream Sequence
ATGCGGAGGATCACTTCCCTGTACGGACGAATTAGTCTTCTTAAGAGACCAACGAAGCAATCTCACACAT
TCATCGCCTCTCTATCCTTCTCCACGGTCGGTGGCTACAAGCGCGTACATCGTGGCCGAGCGGCGTGGCT
GTCTCGCAATAAAAACGACACCTTTGTCGACGCTGTTGCAGAGGACCGCTTAGAGGGGAATCTATTGACC
AGGGCGGGTTTTAGTCTTCCCGGTGTTGACGTTGACGACTATGTGGTTAAATACAAGAGTGCGCTGGATC
TTATAGACCATCTTCGTGCCATGGGTGAAACCAACGCTCTTCTCCACCGAAACAAGGCATGTTTTTCTTT
CTTTCTTTCTTCTATCTTGAATCGTGAAACTGCTCTTGCAACGGCAGCTATATATGACTCCATGTTCGCC
ACAGAGGACGGCACCATACCTGCTACTTTTCAGGTGATTTACATGACGGGATGGAGGGAACACTCTTCTC
ACCCGCAGGCTAAGCGGAGAGGTTCAGCCACCGTATCCTTCACAGATATCCAGAAGCAATTTGGTGCTTA
CTCTTGA
Downstream Sequence
TGTGTAGTGTTCGAACTCATCTTCTCGTTTGATTTCGATTCTTTTGTTTCCTCATTAATG
ACTTTTAACTCAGCGTGGCCGAGCGGCGTGGCTGTCTCGCAATAAAAACGACACCTTTGT
CGACGCTGTTGCAGAGGACCGCTTAGAGGGTACATTCTGATCTTTGCTTTTGCTATTTTT
ATAAGGACTGTAAGAAGAGTTTCCCCTCTGCATTGTGTTTGGGAGGATCTCTTGGTGCAG
TTCAGCGTTTACTACGTGGTGGTCGTGGTTAGTTATTGCTTTCAGGTTAGGGACGCAGGG
AATCTATTGACCAGGGCGGGTTTTAGTCTTCCCGGTGTTGACGTTGACGACTATGTGGTT
AAATACAAGAGTGGTAAAAAAAAAACTATTCCACTTTTTGTTCTTCTTCTTCATCATTGG
CCAAAGCTTTTTCTCTCTTCTAATTTTTTCCTCTTCTTTGATCTCTCTGTACTCAGCGCT
GGATCTTATAGACCATCTTCGTGCCATGGGTGAAACCAACGCTCTTCTCCACCGAAACAA
GGCATGTTTTTCTTTCTTTCTTTCTTCTGTCAGACTTTTCGTAAATGTGACATTTTCTTA
AACAAAAATTCATCTTCTTGATTATTACCAAAACAGATCTTGAATCGTGAAACTGCTCTT
GCAACGGCAGCTATATATGACTCCATGTTCGCCACAGAGGACGGCACCATACCTGCTACT
TTTCAGGTCTGTTTGATAGAGATCAGTCTATGGATTGTAGATTAAAACAACGCAATGCTA
GACACCACAAGTGCCTAATCCCTGCAATGGACGACGTCTGAGGCCTAAATGTATATATCG
TTGGATACGTATTCGTGTGTAGGTGATTTACATGACGGGATGGAGGGAACACTCTTCTCA
CCCGCAGGCTAAGCGGAGAGGTTCAGCCACCGTATCCTTCACAGATATCCAGAAGCAATT
TGGTGCTTACTCTTGAAGGGACGTTCAGAAAGAAAAAAACAGAGACTTTACAAAAGAGAC
TGCGAGAATCAGTGACTACTACAATGTACTTTTTGTATCGAATAATACTGGAATATCAGA
CCAGACACATGTTTGCTTAATGTTCATTAAATCAATAGGCAGCAATTAGGCGATTTTATA
AGAGATTATTGATTAGTCCATTTTTAGATCGAATTTTTGAACACTTAGACCAAATTTTAA
ATATATTGATTCAGGAAAATCATTTCATTTTAAATCCGATTTGCCGCCTAGAGACCGATT
TTAGAATATTGTGTTTGCTGGTTCTTGTCTGGTTCAATGAACCTAGTGACGATTTAATTT
TCTTCAAGGCTTTTTTAAATTTACAAAAAAAAAGTTTCTAGTTACAAAAAAAAAAGAAAA
AAAGTTTCTTGAATTGGTTCGACATTGAAATATAAATGCACACGTATATCCACAACCATT
TTGGTTTGCTTACAAGTGGCTCCATCTCCATTCTCCAACACTGTTTTAGTAGCTGTATTA
TCTTTTAAATCAAAAAGAAGAAGACCAAACGTGATCGTGACCGTCCAGATAATCATACAC
CGAAATATTCAACGGCTCCATTACTTCACCTCCATTCCCACAATACGCCGTCGTATGTCC
ACACCCAGAGTTCCCTGTCACGCCGTTACCGTTAACGATCCCCGCGTCAACTGCCATCCC
GGCATTGGAAGCAGCTTGCTGGATAGACCTCGGCGAAGTATTACTGGAAGCGATATAAGG
AGGAAGGAGGTGAGGAAAATTGAGAGATTCGAGTGAGTTTGGTTGGTGTAAACAGTAGAA
AGCTACGTCGTGCGCTACGGCTGCGCCTTCTGCGGTGGAGAATGAGCCTAGCCAGAGACG
GTCTCGAGTTCCCGGAACTCTAATCTCCGATACCCATTTTCCCCATTTCCGGCGACGGAT
TCCTCTGTACTTTGATTGACTTTCGCTGGAGTCTCTGCAGTCCATTTTGTATTTGTGTGA
GTTTGAATCTGAAGATACGG
Pro Sequence
MRRITSLYGRISLLKRPTKQSHTFIASLSFSTVGGYKRVHRGRAAWLSRN
KNDTFVDAVAEDRLEGNLLTRAGFSLPGVDVDDYVVKYKSALDLIDHLRA
MGETNALLHRNKACFSFFLSSILNRETALATAAIYDSMFATEDGTIPATF
QVIYMTGWREHSSHPQAKRRGSATVSFTDIQKQFGAYS
mRNA Sequence
ATGCGGAGGATCACTTCCCTGTACGGACGAATTAGTCTTCTTAAGAGACCAACGAAGCAATCTCACACAT
TCATCGCCTCTCTATCCTTCTCCACGGTCGGTGGCTACAAGCGCGTACATCGTGGCCGAGCGGCGTGGCT
GTCTCGCAATAAAAACGACACCTTTGTCGACGCTGTTGCAGAGGACCGCTTAGAGGGGAATCTATTGACC
AGGGCGGGTTTTAGTCTTCCCGGTGTTGACGTTGACGACTATGTGGTTAAATACAAGAGTGCGCTGGATC
TTATAGACCATCTTCGTGCCATGGGTGAAACCAACGCTCTTCTCCACCGAAACAAGGCATGTTTTTCTTT
CTTTCTTTCTTCTATCTTGAATCGTGAAACTGCTCTTGCAACGGCAGCTATATATGACTCCATGTTCGCC
ACAGAGGACGGCACCATACCTGCTACTTTTCAGGTGATTTACATGACGGGATGGAGGGAACACTCTTCTC
ACCCGCAGGCTAAGCGGAGAGGTTCAGCCACCGTATCCTTCACAGATATCCAGAAGCAATTTGGTGCTTA
CTCTTGA