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Detail for ZS11_C09G08270.t1

Genome:
ZS11: ZS11_C09G08270.t1
ZS11_v0: BnaC09T0066800ZS
WE: WE_C09G08440.t1
WE_v0: BnaC09T0076300WE
Darmor: C09p08250.1_BnaDAR
BH: Bnascaffold0007T004000BH
Quinta: BnaC09T0071700QU
ZS2: BnaC09T068300ZS2
SW: BnaC09T041100SW
Express61: C09p006930.1_BnaEXP
Xiaoyun: BnaC09G0072500XY
P202: BnaC09G008480P202.1
BL: Bnascaffold0007T004000BH
TA: BnaA09T065800TA
Da-Ae: rna-gnl|WGS:JAGKQM|BnaA01g11690D
RB: BnaA09T072500RB
No2127: BnaC09T0037300NO
P130: BnaC09G005540P130.1
Length: 394
KOG ID: KOG1197
KOG E-value: Not available
KOG Score: 645.0
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_013677643.1
NR E-value: 2.300000e-221
NR Score: 773.1
NR Annotation: XP_013677643.1 uncharacterized protein LOC106382208 [Brassica napus]
SwissProt Protein: P43903|QOR_PSEAE
SwissProt E-value: 2.750000e-100
SwissProt Score: 303.0
SwissProt Annotation: Quinone oxidoreductase OS=Pseudomonas aeruginosa (strain ATCC 15692 / DSM 22644 / CIP 104116 / JCM 14847 / LMG 12228 / 1C / PRS 101 / PAO1) OX=208964 GN=qor PE=3 SV=2
CDS Sequence (1201 bp)
ATGGCAGCTTTGACTCTTCATCACTTGTCGTGTCTTCAAGCGTCACGACATCTGTCACTTCCTCACCGAA
CTCTCTCGAGCTTTCCACGAAATCCAGTTAAAAATCTCATCTTTCGTCAAAATCTTGCCGAATCATCGAG
CTTTCGGTTGTCTACGGTTGCTGTAAAAGCTCTGAGTACAGTCGCGGTTGAGGATTCGTCGGAGAAGAAG
ATGGTGAAAGGTATCAGAGTTTACGAGCATGGCGGTCCTGAGGTTCTGAAATGGGAAGATATTGAAGTTG
GAGAGCCAAAAGATGGGGAGATACGCGTTAAGAACAAGGCCATTGGACTTAACTTCATCGATGTTTACTA
CAGGAAAGGTGTTTACAAACCGGCCTCTATGCCCTTCACACCAGGTATGGAGGCTGTTGGAGAAGTGGTA
GCTGTTGGGTCAGGATTAACTGGCAGAAAGGTCGGTGATCTCGTCGCTTATGCTGGAAGTCCAATGGGTG
CATATGCTGAAGAACAGATCCTTCCTGCGGATAAAGTGGTTCCTGTTCCTTCATCTATGGATCCTATAGT
TGCAGCATCAATCATGCTCAAGGGTATGACTGCACAGTTCCTCCTTCGCCGTTGCTTCAAGGTCGAAAGT
GGGCACACGATTCTTGTCCACGCTGCAGCTGGTGGAGTTGGCTCTCTGCTGTGTCAATGGGCAAATGCGC
TTGGAGCTACCGTCATTGGAACTGTCTCGACCAATGAAAAGGCGGCTCAAGCCAAAGAAGATGGATGCCA
CCACGTTATCATGTACAAGAACGAGGACTTTGTTTCACGGGTCAAAGACATTACATCAGGCAAAGGAGTC
GATGTTGTTTATGACTCGGTGGGGAAAGACACCTTCAAGGGATCTTTAGCGTGTTTAAAGAGCAGAGGAT
ACATGGTGAGCTTTGGACAATCCTCCGGATCTCCGGATCCTGTTCCGTTGTCCGATCTTGCTCCAAAGTC
GCTCTTCTTGACAAGGCCTTCAATGATGCAGTACAATGAAACTCGAGATGAGTTGTTGGAGTGTGCTGGG
GAGGTTTTCGCCAATATTGCTTCAGGGGTTATAAAGGCTCGTGTGAACCACAAGTATCCGTTGTCTCGTG
TGGCTGATGCTCATGCAGACGTTGAGAATAGGATAACGTCTGGCTCTGTTGTGCTCTTGCCTTGA
Upstream Sequence
ATAGAAAGTTAACGGAGGAAGAGAAGAAGAAGATGGCAGCTTTGACTCTTCATCACTTGTCGTGTCTTCA
AGCGTCACGACATCTGTCACTTCCTCACCGAACTCTCTCGAGCTTTCCACGAAATCCAGTTAAAAATCTC
ATCTTTCGTCAAAATCTTGCCGAATCATCGAGCTTTCGGTTGTCTACGGTTGCTGTAAAAGCTCTGAGTA
CAGTCGCGGTTGAGGATTCGTCGGAGAAGAAGATGGTGAAAGGTATCAGAGTTTACGAGCATGGCGGTCC
TGAGGTTCTGAAATGGGAAGATATTGAAGTTGGAGAGCCAAAAGATGGGGAGATACGCGTTAAGAACAAG
GCCATTGGACTTAACTTCATCGATGTTTACTACAGGAAAGGTGTTTACAAACCGGCCTCTATGCCCTTCA
CACCAGGTATGGAGGCTGTTGGAGAAGTGGTAGCTGTTGGGTCAGGATTAACTGGCAGAAAGGTCGGTGA
TCTCGTCGCTTATGCTGGAAGTCCAATGGGTGCATATGCTGAAGAACAGATCCTTCCTGCGGATAAAGTG
GTTCCTGTTCCTTCATCTATGGATCCTATAGTTGCAGCATCAATCATGCTCAAGGGTATGACTGCACAGT
TCCTCCTTCGCCGTTGCTTCAAGGTCGAAAGTGGGCACACGATTCTTGTCCACGCTGCAGCTGGTGGAGT
TGGCTCTCTGCTGTGTCAATGGGCAAATGCGCTTGGAGCTACCGTCATTGGAACTGTCTCGACCAATGAA
AAGGCGGCTCAAGCCAAAGAAGATGGATGCCACCACGTTATCATGTACAAGAACGAGGACTTTGTTTCAC
GGGTCAAAGACATTACATCAGGCAAAGGAGTCGATGTTGTTTATGACTCGGTGGGGAAAGACACCTTCAA
GGGATCTTTAGCGTGTTTAAAGAGCAGAGGATACATGGTGAGCTTTGGACAATCCTCCGGATCTCCGGAT
CCTGTTCCGTTGTCCGATCTTGCTCCAAAGTCGCTCTTCTTGACAAGGCCTTCAATGATGCAGTACAATG
AAACTCGAGATGAGTTGTTGGAGTGTGCTGGGGAGGTTTTCGCCAATATTGCTTCAGGGGTTATAAAGGC
TCGTGTGAACCACAAGTATCCGTTGTCTCGTGTGGCTGATGCTCATGCAGACGTTGAGAATAGGATAACG
TCTGGCTCTGTTGTGCTCTTGCCTTGAAAAACATGTAGTGATGTTTCTTTTTAATCTTCCAAATAAGAGC
AATAAGAAGTAATGGACAGATACCAAATGTGTGTACTATTTATCTTCCAGCAATACGGTTTTTTTTTGTG
ATGTTTTCTTTGTTGAATCCATTTACGATGTATATATCTTCTCTTGGTGTTTATGAATCCTGTGATTCAA
GCAAAAGGAAGCCATTCTTTCCCTCGGAG
Downstream Sequence
GGTGAGTCAAAGTTTCGATTTTTAACTTGTCTGTCGAAAAGGGTCATTGTAATCAGATTA
GGTTGAGATCCTCCTGGGTCTCTCTGTCTTGCTTCTACTATGATTATAATTTAAAATGGT
TTAGGATTCAATATAAATTCTAATAGTCTTTTATTACAGAAAATGGTGCTTCATGTTATT
TAATTTAATTTTGCAGTGTGTAGTATTCAGGATTTGTCTAGGTACTGCTTTGCTCTGAAA
GTATATTATTATGCTAGCTTTTTATATTGAAACTCGTGATTGTGTTTTTCTTTTCTTTTT
TAAAATTGTGATTATTCTGTATTCTCAGTATTTCATTGTGGTCTTGTTTATAACTGGAAG
GTTCTGAAATGGGAAGATATTGAAGTTGGAGAGCCAAAAGATGGGGAGATACGCGTTAAG
AACAAGGCCATTGGACTTAACTTCATCGATGTTTACTACAGGAAAGGTGTTTACAAACCG
GCCTCTATGCCCTTCACACCAGGTTCTGCTCTCTACAACCTTTTAGGAAACATGCAAATG
AAGTTTTACTTTTTTAGATCTTAGCTTATAAGCCAATTTGTGATCATAGGTATGGAGGCT
GTTGGAGAAGTGGTAGCTGTTGGGTCAGGATTAACTGGCAGAAAGGTCGGTGATCTCGTC
GCTTATGCTGGAAGTCCAATGGGTGCATATGCTGAAGAACAGATCCTTCCTGCGGATAAA
GTGGTTCCTGTTCCTTCATCTATGGATCCTATAGTTGCAGCATCAATCATGCTCAAGGGT
ATGACTGCACAGTTCCTCCTTCGCCGTTGCTTCAAGGTTAGTCACTAGGCCTGCGGATTT
GGGTAGTTCGGTTCAGCCAAAATCTAGCCGAATTGAACCGAAAAGTTCGGTTCGGTATAT
GGGTAGTTTGGTTTTTAAAAGTTTTACTGAAACTAACCGAAGTTTTTGGTTTCGGTTAAA
ATTTTGGTTCTTTGAGTACTTCCGGTTAGTTCGGTTCGAAATTTTGGTTAATTTAGTTCG
AAGTGAACTAACTGATCACGAAAACCAAAATCACTATTTAATTTTTAAAAATAAATTGAA
AACCGAACTAACTGATTACCGAACCGAAAATCAAAGTGACTATTTAATTTTTAAAAATAA
ATTGAAAACTGAACTAACTGATTACCGAACCGAAAACCAAAGTCACTATTTAATCTGCTT
CTAACATAAAGATCTCTTCACTATATTGACTCAAAATCCTATTTGTATTTGGATAGGTCG
AAAGTGGGCACACGATTCTTGTCCACGCTGCAGCTGGTGGAGTTGGCTCTCTGCTGTGTC
AATGGGCAAATGCGCTTGGAGCTACCGTCATTGGAACTGTCTCGACCAATGAAAAGGCGG
CTCAAGCCAAAGAAGATGGATGCCACCACGTTATCATGTACAAGAACGAGGACTTTGTTT
CACGGGTCAAAGACATTACATCAGGCAAAGGAGTCGATGTTGTTTATGACTCGGTGGGGA
AAGACACCTTCAAGGGATCTTTAGCGTGTTTAAAGAGCAGAGGATACATGGTGAGCTTTG
GACAATCCTCCGGATCTCCGGATCCTGTTCCGTTGTCCGATCTTGCTCCAAAGTCGCTCT
TCTTGACAAGGCCTTCAATGATGCAGTACAATGAAACTCGAGATGAGTTGTTGGAGTGTG
CTGGGGAGGTTTTCGCCAATATTGCTTCAGGGGTTATAAAGGCTCGTGTGAACCACAAGT
ATCCGTTGTCTCGTGTGGCTGATGCTCATGCAGACGTTGAGAATAGGATAACGTCTGGCT
CTGTTGTGCTCTTGCCTTGAAAAACATGTAGTGATGTTTCTTTTTAATCTTCCAAATAAG
AGCAATAAGAAGTAATGGACAGATACCAAATGTGTGTACTATTTATCTTCCAGCAATACG
GTTTTTTTTTGTGATGTTTTCTTTGTTGAATCCATTTACGATGTATATATCTTCTCTTGG
TGTTTATGAATCCTGTGATT
Pro Sequence
MAALTLHHLSCLQASRHLSLPHRTLSSFPRNPVKNLIFRQNLAESSSFRL
STVAVKALSTVAVEDSSEKKMVKGIRVYEHGGPEVLKWEDIEVGEPKDGE
IRVKNKAIGLNFIDVYYRKGVYKPASMPFTPGMEAVGEVVAVGSGLTGRK
VGDLVAYAGSPMGAYAEEQILPADKVVPVPSSMDPIVAASIMLKGMTAQF
LLRRCFKVESGHTILVHAAAGGVGSLLCQWANALGATVIGTVSTNEKAAQ
AKEDGCHHVIMYKNEDFVSRVKDITSGKGVDVVYDSVGKDTFKGSLACLK
SRGYMVSFGQSSGSPDPVPLSDLAPKSLFLTRPSMMQYNETRDELLECAG
EVFANIASGVIKARVNHKYPLSRVADAHADVENRITSGSVVLLP
mRNA Sequence
ATAGAAAGTTAACGGAGGAAGAGAAGAAGAAGATGGCAGCTTTGACTCTTCATCACTTGTCGTGTCTTCA
AGCGTCACGACATCTGTCACTTCCTCACCGAACTCTCTCGAGCTTTCCACGAAATCCAGTTAAAAATCTC
ATCTTTCGTCAAAATCTTGCCGAATCATCGAGCTTTCGGTTGTCTACGGTTGCTGTAAAAGCTCTGAGTA
CAGTCGCGGTTGAGGATTCGTCGGAGAAGAAGATGGTGAAAGGTATCAGAGTTTACGAGCATGGCGGTCC
TGAGGTTCTGAAATGGGAAGATATTGAAGTTGGAGAGCCAAAAGATGGGGAGATACGCGTTAAGAACAAG
GCCATTGGACTTAACTTCATCGATGTTTACTACAGGAAAGGTGTTTACAAACCGGCCTCTATGCCCTTCA
CACCAGGTATGGAGGCTGTTGGAGAAGTGGTAGCTGTTGGGTCAGGATTAACTGGCAGAAAGGTCGGTGA
TCTCGTCGCTTATGCTGGAAGTCCAATGGGTGCATATGCTGAAGAACAGATCCTTCCTGCGGATAAAGTG
GTTCCTGTTCCTTCATCTATGGATCCTATAGTTGCAGCATCAATCATGCTCAAGGGTATGACTGCACAGT
TCCTCCTTCGCCGTTGCTTCAAGGTCGAAAGTGGGCACACGATTCTTGTCCACGCTGCAGCTGGTGGAGT
TGGCTCTCTGCTGTGTCAATGGGCAAATGCGCTTGGAGCTACCGTCATTGGAACTGTCTCGACCAATGAA
AAGGCGGCTCAAGCCAAAGAAGATGGATGCCACCACGTTATCATGTACAAGAACGAGGACTTTGTTTCAC
GGGTCAAAGACATTACATCAGGCAAAGGAGTCGATGTTGTTTATGACTCGGTGGGGAAAGACACCTTCAA
GGGATCTTTAGCGTGTTTAAAGAGCAGAGGATACATGGTGAGCTTTGGACAATCCTCCGGATCTCCGGAT
CCTGTTCCGTTGTCCGATCTTGCTCCAAAGTCGCTCTTCTTGACAAGGCCTTCAATGATGCAGTACAATG
AAACTCGAGATGAGTTGTTGGAGTGTGCTGGGGAGGTTTTCGCCAATATTGCTTCAGGGGTTATAAAGGC
TCGTGTGAACCACAAGTATCCGTTGTCTCGTGTGGCTGATGCTCATGCAGACGTTGAGAATAGGATAACG
TCTGGCTCTGTTGTGCTCTTGCCTTGAAAAACATGTAGTGATGTTTCTTTTTAATCTTCCAAATAAGAGC
AATAAGAAGTAATGGACAGATACCAAATGTGTGTACTATTTATCTTCCAGCAATACGGTTTTTTTTTGTG
ATGTTTTCTTTGTTGAATCCATTTACGATGTATATATCTTCTCTTGGTGTTTATGAATCCTGTGATTCAA
GCAAAAGGAAGCCATTCTTTCCCTCGGAG