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Detail for scaffold0113G00060.t1

Genome:
ZS11: scaffold0113G00060.t1
ZS11_v0: Bnascaffold0314T0000200ZS
WE: WE_A04G10500.t1
WE_v0: Bnascaffold3191T0000600WE
Darmor: A04p09580.1_BnaDAR
BH: BnaC01T315700BH
Quinta: BnaC01T0210500QU
ZS2: BnaC01T288300ZS2
SW: BnaA04T089900SW
Express61: C01p024430.1_BnaEXP
Xiaoyun: BnaC01G0351400XY
P202: Not available
BL: BnaC01T315700BH
TA: BnaA04T083200TA
Da-Ae: Not available
RB: BnaA04T089500RB
No2127: BnaC01T0195500NO
P130: Not available
Length: 147
KOG ID: KOG2870
KOG E-value: 6.020000e-46
KOG Score: 155.0
KOG Annotation: Energy production and conversion
Biological Process: -
Cellular Component: -
Molecular Function: GO:0016651(oxidoreductase activity, acting on NAD(P)H),GO:0048038(quinone binding),GO:0051287(NAD binding)
KEGG Ortholog: -
NR Protein: VDD65096.1
NR E-value: 5.200000e-78
NR Score: 295.4
NR Annotation: VDD65096.1 unnamed protein product [Brassica oleracea]
SwissProt Protein: Q36450|NDUS2_NICSY
SwissProt E-value: 8.930000e-44
SwissProt Score: 150.0
SwissProt Annotation: NADH dehydrogenase [ubiquinone] iron-sulfur protein 2 OS=Nicotiana sylvestris OX=4096 GN=NAD7 PE=2 SV=1
CDS Sequence (450 bp)
ATGACTACAGGATCATCGGTCTACTCTACCTCAATTCACCATTTCGAACTTTATACAGAAGGTTTTTCCG
TACCAGCTTCTTCTACCTATACCGCAGTTGAAGCACCTAAAGGAGAATTTGGTGTCTTTCTGGTCAGTAA
TGGAAGCAATCGTCCCTACCGTCGTAAAATAAGAGCACCCGGCTTTGCCCATTCACAAGGACTCGATTCT
ATGTCCAAACATCACATGCCAGCAGATGTGGTCACCATCATAGCAGAGATGAATAGGGTGACTGTGAAGA
GAGTGGTGGTTGATCCTGACTCCACAGTCAATCTCATACCTATGTCCACTAGGCATTCAAAAAGAAAAGA
TTGGAGGAGCACTTCTCGAGAGTCCGATAGAGTTCCAGGTTGTTTTTGCACCGACGACATATTACGCTCT
TCTAGGCAGACTCTAGATTCATAA
Upstream Sequence
ATGACTACAGGATCATCGGTCTACTCTACCTCAATTCACCATTTCGAACTTTATACAGAAGGTTTTTCCG
TACCAGCTTCTTCTACCTATACCGCAGTTGAAGCACCTAAAGGAGAATTTGGTGTCTTTCTGGTCAGTAA
TGGAAGCAATCGTCCCTACCGTCGTAAAATAAGAGCACCCGGCTTTGCCCATTCACAAGGACTCGATTCT
ATGTCCAAACATCACATGCCAGCAGATGTGGTCACCATCATAGCAGAGATGAATAGGGTGACTGTGAAGA
GAGTGGTGGTTGATCCTGACTCCACAGTCAATCTCATACCTATGTCCACTAGGCATTCAAAAAGAAAAGA
TTGGAGGAGCACTTCTCGAGAGTCCGATAGAGTTCCAGGTTGTTTTTGCACCGACGACATATTACGCTCT
TCTAGGCAGACTCTAGATTCATAA
Downstream Sequence
GTACTCAAGATATTGTGTTTGGAGAGGTGGATAGATAGGACGACTAGTTGCCAGGACCTT
AGCTTTATTGCGAGCCCAGAAGTCTCTCTTTTTTTTCGGCCTTCAGGAACAGCCTTTAAG
TCAAATCCAACCTAATATCATTCATATCCTTCTACATAGAAGAAAGACACTCTAAGATCC
TTTTTCAAACCTGCTCCCATTTAGAGTCAAGAGATAGATAAATAGACACGTCCCATTGCC
ACTTGATGGGGGGGGCGTTCGTTGTATGTTGAAGCAGAGATGAATAGGGTGACTGTGAAG
AGAGTGGTGGTTGATCCTGACTCCACAGTCAATCTCATACCTATGTCCACTAGGCATTCA
AAAAGAAAAGATTGGAGGAGCACTTCTCGAGGTATATAATTTGAGTTCGAATAATTGTCA
AATCAATTTTCTAGGAATGGTATGGTCAGAGTCAATTGCAACGTTGGACCTTTTCAGAGT
CCGATAGAGTTCCAGGTTGTTTTTGCACCGACGACATATTACGCTCTTCTAGGCAGACTC
TAGATTCATAAAAACCAAGCGGTCCCATTGACATACCATCAATGTATTAAAGGTATAATC
AAAGGAAAATAAGTACTCGTACCAGCGGTGAGCACTCCCTTCGAAAGATCTGAAATCCAT
TTTGCTGACGCTATACATTATTCGGAGTTTGCCGAGGATGGAGAGCTTTCATTGAAAGAG
GTCCAGGGAGCTGTTGGCTTACTCGTTGGAGGCGTTCCTCGAGAACTAGATAGCTAGTCT
GTCTGGTTCTGTTCTCGAGGAACGCCAGTCTCTCGACTGAGAGGAACGCCTCTTACTAAA
GTAGTTCAAATAGATAATCCACCTAAAATGGAACATTCGCTTCTAGATCGCTTGCTATAA
GTAAGGAAACTCCTGAGTACGGAATTGAGACCGAAGAAAGGAGATTCCGTAAATTGACTC
TGAAACAAGAGGCAGGAACTCTTCTGCTGCTGTTTGCAAGCTCTTTCTTTAGCATTAGTT
AGCATTAGAATCCCGCCCTTCCTGACGGAGCTCTCCTACCCTTCTCAATGCAGGAATTCG
CATACAATCGACCGGTACCATAGCTATATTCATCCGGTGGGTCAAAGGAAGGAGAGCCGG
ATTGCAGATCGGGTTAAATAAAGCGGGTGAACACTAGCAACCAGTACAAAACTACCCCGT
CAAAGACGGAAAATTGGTATAAACCAAGATAGCAAATGGAATGATTAACTAGTGCCACCC
CAAACCCACAAACAATCTAACCACAGGTATGGATTGACACCGCGAAGGAAGTCAATACAG
GAGGGTTGGGAGTGAATGGAATATCGAGATAGATATCAAGATATCCCATCAACCCAAAAC
CCTTAACAAAGCTAGAATGCTTATGTTGCGTATAGTAGCCAGGGGGCCGAGCAAGAGACC
TCCAATAAGGTCAAACCAACgggcaaatcagtccaagagtgaaagggaggtttgaactgt
tgaacatataggattccgctatccttatgctctaactagtcttaaacgaaagagatatcg
attcctttcctggtgtactagacttgaattcctttgcgtcttaggctttttgagcttttt
tcattcaaagcgggatgcttgctagactgataagccagagagaggaaaggaaggaatcaa
ttattgagtgggagtaggtct
Pro Sequence
MTTGSSVYSTSIHHFELYTEGFSVPASSTYTAVEAPKGEFGVFLVSNGSN
RPYRRKIRAPGFAHSQGLDSMSKHHMPADVVTIIAEMNRVTVKRVVVDPD
STVNLIPMSTRHSKRKDWRSTSRESDRVPGCFCTDDILRSSRQTLDS
mRNA Sequence
ATGACTACAGGATCATCGGTCTACTCTACCTCAATTCACCATTTCGAACTTTATACAGAAGGTTTTTCCG
TACCAGCTTCTTCTACCTATACCGCAGTTGAAGCACCTAAAGGAGAATTTGGTGTCTTTCTGGTCAGTAA
TGGAAGCAATCGTCCCTACCGTCGTAAAATAAGAGCACCCGGCTTTGCCCATTCACAAGGACTCGATTCT
ATGTCCAAACATCACATGCCAGCAGATGTGGTCACCATCATAGCAGAGATGAATAGGGTGACTGTGAAGA
GAGTGGTGGTTGATCCTGACTCCACAGTCAATCTCATACCTATGTCCACTAGGCATTCAAAAAGAAAAGA
TTGGAGGAGCACTTCTCGAGAGTCCGATAGAGTTCCAGGTTGTTTTTGCACCGACGACATATTACGCTCT
TCTAGGCAGACTCTAGATTCATAA