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Detail for ZS11_A06G42660.t1

Genome:
ZS11: ZS11_A06G42660.t1
ZS11_v0: BnaA06T0397800ZS
WE: WE_A06G46310.t1
WE_v0: BnaA06T0428400WE
Darmor: A06p42990.1_BnaDAR
BH: BnaA06T376700BH
Quinta: BnaA06T0382500QU
ZS2: BnaA06T360600ZS2
SW: BnaC07T302100SW
Express61: A06p035000.1_BnaEXP
Xiaoyun: BnaA06G0425300XY
P202: BnaC02G034510P202.1
BL: BnaA06T376700BH
TA: BnaA06T363000TA
Da-Ae: Not available
RB: BnaA06T377700RB
No2127: BnaA06T0398400NO
P130: BnaA06G035890P130.1
Length: 226
KOG ID: KOG3244
KOG E-value: 1.540000e-163
KOG Score: 451.0
KOG Annotation: Coenzyme transport and metabolism
Biological Process: GO:0006744(ubiquinone biosynthetic process)
Cellular Component: GO:0005743(mitochondrial inner membrane)
Molecular Function: -
KEGG Ortholog: K18586 COQ4; ubiquinone biosynthesis protein COQ4
NR Protein: XP_013692614.1
NR E-value: 3.100000e-130
NR Score: 469.5
NR Annotation: XP_013692614.1 ubiquinone biosynthesis protein COQ4 homolog, mitochondrial [Brassica napus]
SwissProt Protein: Q9ZPR0|COQ4_ARATH
SwissProt E-value: 6.540000e-163
SwissProt Score: 451.0
SwissProt Annotation: Ubiquinone biosynthesis protein COQ4 homolog, mitochondrial OS=Arabidopsis thaliana OX=3702 GN=At2g03690 PE=2 SV=1
CDS Sequence (690 bp)
ATGACGATCGAAAGAGCTCGAGTCCCGTTGAGCCGATGGCAACAAGCTGCCGTGGCGGTGGGTTCTGCCG
TCGGCGCGTTGGTGAACCCTCGTAGGGCGGATCTGATCGCCGCTCTCGGTGAAACCACCGGGAAACCAGC
TTTCGAAATGGTTCTTGAGAGGATGAAGAAGAGTCCTGAAGGAAGAGCTATCTTGCTGGAGCGTCCTCGT
GTTGTGTCAGAGCAAGTAGGTCATGCTTGGGATCTACCAGACAACACATTTGGAGCTGCGTATGCCAAGT
TCATGGGATCTAGAAACTTCTCTCCCGACGATCGTCCTCCTGTGAGGTTCATGGAGACAGATGAACTGGC
GTATGTAGCCACACGGGCACGTGAAGTTCACGACTTGTGGCACACGCTCTTCGGCCTCCCTACGAATCTT
ATAGGCGAGTCGGCTCTGAAAGTGATAGAGTTTGAGCAGATGTATCTTCCGATGTGCATGCTTTCTGTGA
TTGGAGGCACCGTGAGGTTCAACGAGAAGCAGAGGTCAATGTTCTTTAGGCATTACTTTCCTTGGGCTGT
TAGAGCTGGAAGACAGTGTACAGACCTCATGTGTGTGTACTATGAGCGTCATTTCGATGAAGACTTGGAG
CAAGTCCGGAGACAATGGGGGATTATACCCGCTCCTCAACATCCTAAATGA
Upstream Sequence
AGAAAGTCCACGCGGGGGCATAAGCGCGTGTCGTCTAAATTCTTCGTCGTCGCCGTCTATAGAATTTGAT
CTGAATATTAAAGAGGTTCACTGTTCGCTAACCGGAGGGTTCTCCACGAACGATGACGATCGAAAGAGCT
CGAGTCCCGTTGAGCCGATGGCAACAAGCTGCCGTGGCGGTGGGTTCTGCCGTCGGCGCGTTGGTGAACC
CTCGTAGGGCGGATCTGATCGCCGCTCTCGGTGAAACCACCGGGAAACCAGCTTTCGAAATGGTTCTTGA
GAGGATGAAGAAGAGTCCTGAAGGAAGAGCTATCTTGCTGGAGCGTCCTCGTGTTGTGTCAGAGCAAGTA
GGTCATGCTTGGGATCTACCAGACAACACATTTGGAGCTGCGTATGCCAAGTTCATGGGATCTAGAAACT
TCTCTCCCGACGATCGTCCTCCTGTGAGGTTCATGGAGACAGATGAACTGGCGTATGTAGCCACACGGGC
ACGTGAAGTTCACGACTTGTGGCACACGCTCTTCGGCCTCCCTACGAATCTTATAGGCGAGTCGGCTCTG
AAAGTGATAGAGTTTGAGCAGATGTATCTTCCGATGTGCATGCTTTCTGTGATTGGAGGCACCGTGAGGT
TCAACGAGAAGCAGAGGTCAATGTTCTTTAGGCATTACTTTCCTTGGGCTGTTAGAGCTGGAAGACAGTG
TACAGACCTCATGTGTGTGTACTATGAGCGTCATTTCGATGAAGACTTGGAGCAAGTCCGGAGACAATGG
GGGATTATACCCGCTCCTCAACATCCTAAATGA
Downstream Sequence
GTGAGTCTTTTTCTAAGCTTCTCGTCTTGTCTTATTACCACCAACTGATGTTTCATTAGC
TACAGAGTAGTTCTATGGTGTTTCATTATTAGCTCTGAAAGCAAGAGACTTTGCTTATGG
GTTTCCTCTTTGAACAATAAAGTTAAAGTCTTTGAGTCTGAATCTTGTCTCTTTTATCTC
TTGGCAGGCTATCTTGCTGGAGCGTCCTCGTGTTGTGTCAGAGCAAGTAGGTCATGCTTG
GGATCTACCAGACAACACATTTGGAGCTGCGTATGCCAAGTTCATGGGATCTAGAAACTT
CTCTCCCGACGATCGTCCTCCTGTGAGGTTCATGGAGACAGATGAACTGGCGTATGTAGC
CACACGGGCACGTGAAGTTCACGACTTGTGGCACACGCTCTTCGGCCTCCCTACGAATCT
TATAGGCGAGTCGGCTCTGAAAGTGATAGAGTTTGAGCAGATGTATCTTCCGATGTGCAT
GCTTTCTGTGATTGGAGGCACCGTGAGGTTCAACGAGAAGCAGAGGTCAATGTTCTTTAG
GCATTACTTTCCTTGGGCTGTTAGAGCTGGAAGACAGTGTACAGACCTCATGTGTGTGTA
CTATGAGCGTCATTTCGATGAAGACTTGGAGCAAGTCCGGAGACAATGGGGGATTATACC
CGCTCCTCAACATCCTAAATGATGGAGTTTTCACACGTTTGAGAAAAGACTTGTACTCGG
TTTTACACAATGTAATATGTTTTAGTTTCCGTTTGATTCAGTGAACTTGCATTGATGGGT
AATAAGAGAGAAGGGGAAATGTTTTGGATTCATATGATTTGAACATTTTTCAGGAGAACA
TTACAAGATAAACGAATGACACAGGGTTGACAAGAAACCGACTTCTTATCATTTAAAGGC
TCACATCAAACAGTTTAATAATGAGAATGCAACAACAGACACAATGTTTGTTTGTTTGTT
ATTTTTACTTGCCACCAGTGAAGAGGTAATCAAGAGATGATCCACCTCCAGGAGCTGCAT
GAACTTTAGTGGAAGGACGGTCCTGCACAGAGATGGAAAGCATTACACAATGTTGTTTAA
GAAAGAGAGTGAACATTTCATAGAGTAATGGACACACAAAGAAACAGAACATACAGTGAT
GAAGTTTCCGGTGTTTTGTCCTTCAGCACGGGCATAGTTGTTGACAGGAGTTTTGATACC
AGCAGGGATCTCCTTGTTGATCTTAGCAGGCTCAACAGTAGTAGTAGCTGCTGCTGTTGC
ACTCGCAGCTGCCGGAGCTGGTGCAGGTGCAGAAGTCCTGTTGGCTGGCTCAGCAGGAGG
AGCTGGAGCGGGCTTAGGAGGAGGAGGAGCATCACCGCCACCAAAGAGATAATTGAGTGA
GCTCTGACCTCCACCACAGCTGTTTCCACGACCCATTTTGAATAAAGTGATAGACTTTTC
AAACCTAGTAACAAAACCCAGAATATAATAAGATAATTACAAGCTATCATCGTTCAACAT
TCAGAGCTGTAACAAGCCCAAATGCAAAGCCGCTTACGCTAACGAATGGTAACTCAATTA
TGATGTAAGCGAAGAGGACATAGGGGGAAATAAAATCGGATCTAAAACCAGCGAAAGCGA
ATCAACATTCTTAACAGTTGAATTTATTTAGGAAATCGTTAGAGACCAAATCTCCTATAA
TTAAGGTTAAAACAGCATATTCGAGGGATCAAAACAGAGGAATAATCTACGATCTAAACG
AAGAAATCGAAATGGAGAAGAAAAGAGCTTGAAAACCAAACCTTGGGGGTGAAATTGGAG
ATCAGATCTAGAAGAAGGAGAAGAAGATGCAAACGCAGACTCAGTAGAACTGACTACAGA
GTCATAAGCGTTACCCCCAGTCTCTCTATTATATAAACTAGAGTCATAAGGCGGTTTTGT
TAGTGTCAGGGTACCGGTTCAATTGTTCGGTTCTTTGGTTAACCATCAATTTCAAATGCT
CATAAATAGTAAAAATTTAA
Pro Sequence
MTIERARVPLSRWQQAAVAVGSAVGALVNPRRADLIAALGETTGKPAFEM
VLERMKKSPEGRAILLERPRVVSEQVGHAWDLPDNTFGAAYAKFMGSRNF
SPDDRPPVRFMETDELAYVATRAREVHDLWHTLFGLPTNLIGESALKVIE
FEQMYLPMCMLSVIGGTVRFNEKQRSMFFRHYFPWAVRAGRQCTDLMCVY
YERHFDEDLEQVRRQWGIIPAPQHPK
mRNA Sequence
AGAAAGTCCACGCGGGGGCATAAGCGCGTGTCGTCTAAATTCTTCGTCGTCGCCGTCTATAGAATTTGAT
CTGAATATTAAAGAGGTTCACTGTTCGCTAACCGGAGGGTTCTCCACGAACGATGACGATCGAAAGAGCT
CGAGTCCCGTTGAGCCGATGGCAACAAGCTGCCGTGGCGGTGGGTTCTGCCGTCGGCGCGTTGGTGAACC
CTCGTAGGGCGGATCTGATCGCCGCTCTCGGTGAAACCACCGGGAAACCAGCTTTCGAAATGGTTCTTGA
GAGGATGAAGAAGAGTCCTGAAGGAAGAGCTATCTTGCTGGAGCGTCCTCGTGTTGTGTCAGAGCAAGTA
GGTCATGCTTGGGATCTACCAGACAACACATTTGGAGCTGCGTATGCCAAGTTCATGGGATCTAGAAACT
TCTCTCCCGACGATCGTCCTCCTGTGAGGTTCATGGAGACAGATGAACTGGCGTATGTAGCCACACGGGC
ACGTGAAGTTCACGACTTGTGGCACACGCTCTTCGGCCTCCCTACGAATCTTATAGGCGAGTCGGCTCTG
AAAGTGATAGAGTTTGAGCAGATGTATCTTCCGATGTGCATGCTTTCTGTGATTGGAGGCACCGTGAGGT
TCAACGAGAAGCAGAGGTCAATGTTCTTTAGGCATTACTTTCCTTGGGCTGTTAGAGCTGGAAGACAGTG
TACAGACCTCATGTGTGTGTACTATGAGCGTCATTTCGATGAAGACTTGGAGCAAGTCCGGAGACAATGG
GGGATTATACCCGCTCCTCAACATCCTAAATGA