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DETAIL

Detail for ZS11_C03G27020.t1

Genome:
ZS11: ZS11_C03G27020.t1
ZS11_v0: BnaC03T0243200ZS
WE: WE_C03G22870.t1
WE_v0: BnaC03T0181500WE
Darmor: A04p32250.1_BnaDAR
BH: BnaC03T263300BH
Quinta: BnaC03T0232400QU
ZS2: BnaC03T249000ZS2
SW: BnaC03T252600SW
Express61: C03p024730.1_BnaEXP
Xiaoyun: BnaC03G0240600XY
P202: BnaC03G028350P202.1
BL: BnaC03T263300BH
TA: BnaC03T245000TA
Da-Ae: rna-gnl|WGS:JAGKQM|BnaA01g20140D
RB: BnaC03T265100RB
No2127: BnaC03T0165800NO
P130: BnaC03G022210P130.2
Length: 757
KOG ID: KOG1186
KOG E-value: Not available
KOG Score: 1427.0
KOG Annotation: Secondary metabolites biosynthesis, transport and catabolism
Biological Process: GO:0009308(amine metabolic process)
Cellular Component: -
Molecular Function: GO:0005507(copper ion binding),GO:0008131(primary amine oxidase activity),GO:0048038(quinone binding)
KEGG Ortholog: K00276 AOC3, AOC2, tynA; primary-amine oxidase [EC:1.4.3.21]
NR Protein: XP_013683761.1
NR E-value: Not available
NR Score: 1552.0
NR Annotation: XP_013683761.1 uncharacterized protein LOC106388276 [Brassica napus]
SwissProt Protein: Q07123|AMO2_ARTS1
SwissProt E-value: 5.780000e-172
SwissProt Score: 511.0
SwissProt Annotation: Copper methylamine oxidase OS=Arthrobacter sp. (strain P1) OX=47915 GN=maoII PE=1 SV=1
CDS Sequence (2306 bp)
ATGGCCTCAGCTTCGCAAAAGACGACGCCATGTGCTCACCACGGAGCCTCTGCTCCGCCTCCTCCGAAAC
TCCTCTCCGCCGTGGAGTCCGTAATCCGCCCTGTCGATTCGATCCCTGACACGGCCAAGAAACCTGCGAA
CAAAGGAATCTCTGTAACGCCAAGGTCGGAAACAAAGCACCCGTTGGATCCTCTATCTGCTGCAGAGATA
TCAGTTGCTGTGGCCACTGTTCGCGCCGCTGGTGCTAACCCTGAGGTTAGGGATAGTATGCGTTTCATCG
AGGTGGCATCAGTGGAGCCAGAGAAACATGTTGTGGCGCTTGCTGATGCTTACTTCTTCCCTCCTTTCCA
GCCATCATTGCTTCCAAGAACTAAAGCTGGACCTGTGATCCCTATGAAGCTCCCTCCAAGGCGAGCGAGA
CTTGTTGTCTACAACAAGACTTCTAATGAGACAAGTGTGTGGATCGTGGAGTTGTCTTCGGTTCATGCTG
TCACTCGGGGCGGGCATCACAGGGGGAGAGTGGTTTCCTCGCAAGTGATACCTGATGTCCAGCCACCCAT
GGATGCGGAAGAATATGCGGAATGTGAAGCGATTGTCAAAGACTTCCCTCCATTCATTGAGGCAATGAAG
AGGAGAGGTATCGATGACATGGATCTTGTGATGGTTGATCCCTGGTGTGTGGGTTATCATAGTGAAGCTG
ACGCTCCTAGTCGTAGGCTTGCGAAGCCTCTTATATACTGTCGAACTGATAGTGACTGCCCAATGGAAAA
TGGCTATGCTCGTCCAGTTGAGGGAATTTATGTTCTTGTGGACATGCAAAACATGGTGGTGATCGAGTTT
GAAGACCGTAAGTTTGTGCCACTTCCCCCACCTGACCCTTTGAGGAATTATACACCAGGTGAGAGCAGAG
GGGGTGTTGATAGAAGTGATGTTAAGCCTCTCGAGATTATTCAGCCTGAAGGTCCAAGTTTCCGCGTAAG
GGGTTACTTTGTCGAGTGGCAGAAGTGGAACTTTCGTATTGGGTTCACTCCGAGGGAAGGTTTAGTCATA
CATTCGGTAGCATATGTTGATGGCAGTCGAGGTCGAAGACCCGTTGCACACAGACTAAGTTTTGTGGAGA
TGGTTGTGCCTTATGGTGATCCGAATGAGCCACATTACAGGAAGAATGCTTTTGATGCAGGGGAGGATGG
TCTTGGAAAAAACGCACATTCGCTCAAGAAGGGGTGTGACTGTCTGGGATTTATCAAGTACTTTGACGCC
CATTTCACAAATTTCACTGGAGGAGTTGAAACAATTGAGAACTGCGTATGCTTGCATGAAGAAGACCATG
GGATTTTGTGGAAACATCAGGACTGGAGAACAGGATTGGCTGAAGTGCGAAGATCTAGGAGGCTGACTGT
CTCTTTCTTTTGTACTGTGGCTAACTACGAGTATGGATTTTACTGGCACTTCTACCAGGATGGAAAAATC
GAAGCTGAAGTAAAACTTACTGGTATCCTCAGTCTAGGAGCGCTGCAGCCAGGAGAAACTCGAAAGTACG
GTACTACTATTGCTCCGGGGTTGTATGCACCAGTCCATCAACATTTCTTTATCGCTCGCATGGATATGTC
CGTTGACTGTAAACCTGGTGAAGCTTATAACCAGGTAGTTGAGGTAAATGTCAAAGTTGACGAGCCCGGT
GAGAACAATATCCACAACAATGCTTTTTACGCAGAAGAGAAGTTACTTAGATCTGAGGCAGAGGCGACGC
GTGACTGCGACCCTTTTAGTGCTCGCCATTGGATTGTAAGGAACACAAGGACAGTAAACAGGACGGGTCA
GTTAACGGGATACAAACTTGTTCCGGGGTCAAACTGTTTGCCACTAGCTCGACCCGAGGCCAAGTTTCTA
AGAAGAGCTGCATTCTTGAAGCATAATCTGTGGGTTACCCGTTATGCACCTGACGAGAAGTTTCCAGGAG
GAGAATTCCCAAACCAAAACCCACGTGCTGGTGAAGGTCTCGCTACATGGGTGAAACAGAATCGCTCCCT
GGAAGAATCTGATGTCGTTCTCTGGTATGTGTTTGGGATCACACATGTTCCTAGACTTGAAGATTGGCCG
GTTATGCCCGTGGAACATATTGGTTTCACGCTAATGCCACATGGATTTTTCAACTGCTCACCGGCCGTAG
ACGTTCCACCGAATCCTGCATGCGAATTGGATACTAAGGACAGTGAGGTCAAAGAGGTTGTAGCACCGAA
GCCTCTTCAGAGTGGTTTACTTTCAAAGCTTTGA
Upstream Sequence
CCACAAGTAGGCTTTGGCAGCTTCTGCTTGGACTGTATAAAGCAAATTGAATCACTCTCTTCCTTCCCAC
CACACCACCACGGGAAAAAGGAGGTGCGATCACAGTTGCCTCAGCGAAACTCAGATCCGGCGAGAGAGAG
GTTTTGCTGTATGTCAGTAGATTGTGCTGAGACTTACTTTGGTGGATTTGGAGAACTCGTAAACCCTATT
CAATGGCCTCAGCTTCGCAAAAGACGACGCCATGTGCTCACCACGGAGCCTCTGCTCCGCCTCCTCCGAA
ACTCCTCTCCGCCGTGGAGTCCGTAATCCGCCCTGTCGATTCGATCCCTGACACGGCCAAGAAACCTGCG
AACAAAGGAATCTCTGTAACGCCAAGGTCGGAAACAAAGCACCCGTTGGATCCTCTATCTGCTGCAGAGA
TATCAGTTGCTGTGGCCACTGTTCGCGCCGCTGGTGCTAACCCTGAGGTTAGGGATAGTATGCGTTTCAT
CGAGGTGGCATCAGTGGAGCCAGAGAAACATGTTGTGGCGCTTGCTGATGCTTACTTCTTCCCTCCTTTC
CAGCCATCATTGCTTCCAAGAACTAAAGCTGGACCTGTGATCCCTATGAAGCTCCCTCCAAGGCGAGCGA
GACTTGTTGTCTACAACAAGACTTCTAATGAGACAAGTGTGTGGATCGTGGAGTTGTCTTCGGTTCATGC
TGTCACTCGGGGCGGGCATCACAGGGGGAGAGTGGTTTCCTCGCAAGTGATACCTGATGTCCAGCCACCC
ATGGATGCGGAAGAATATGCGGAATGTGAAGCGATTGTCAAAGACTTCCCTCCATTCATTGAGGCAATGA
AGAGGAGAGGTATCGATGACATGGATCTTGTGATGGTTGATCCCTGGTGTGTGGGTTATCATAGTGAAGC
TGACGCTCCTAGTCGTAGGCTTGCGAAGCCTCTTATATACTGTCGAACTGATAGTGACTGCCCAATGGAA
AATGGCTATGCTCGTCCAGTTGAGGGAATTTATGTTCTTGTGGACATGCAAAACATGGTGGTGATCGAGT
TTGAAGACCGTAAGTTTGTGCCACTTCCCCCACCTGACCCTTTGAGGAATTATACACCAGGTGAGAGCAG
AGGGGGTGTTGATAGAAGTGATGTTAAGCCTCTCGAGATTATTCAGCCTGAAGGTCCAAGTTTCCGCGTA
AGGGGTTACTTTGTCGAGTGGCAGAAGTGGAACTTTCGTATTGGGTTCACTCCGAGGGAAGGTTTAGTCA
TACATTCGGTAGCATATGTTGATGGCAGTCGAGGTCGAAGACCCGTTGCACACAGACTAAGTTTTGTGGA
GATGGTTGTGCCTTATGGTGATCCGAATGAGCCACATTACAGGAAGAATGCTTTTGATGCAGGGGAGGAT
GGTCTTGGAAAAAACGCACATTCGCTCAAGAAGGGGTGTGACTGTCTGGGATTTATCAAGTACTTTGACG
CCCATTTCACAAATTTCACTGGAGGAGTTGAAACAATTGAGAACTGCGTATGCTTGCATGAAGAAGACCA
TGGGATTTTGTGGAAACATCAGGACTGGAGAACAGGATTGGCTGAAGTGCGAAGATCTAGGAGGCTGACT
GTCTCTTTCTTTTGTACTGTGGCTAACTACGAGTATGGATTTTACTGGCACTTCTACCAGGATGGAAAAA
TCGAAGCTGAAGTAAAACTTACTGGTATCCTCAGTCTAGGAGCGCTGCAGCCAGGAGAAACTCGAAAGTA
CGGTACTACTATTGCTCCGGGGTTGTATGCACCAGTCCATCAACATTTCTTTATCGCTCGCATGGATATG
TCCGTTGACTGTAAACCTGGTGAAGCTTATAACCAGGTAGTTGAGGTAAATGTCAAAGTTGACGAGCCCG
GTGAGAACAATATCCACAACAATGCTTTTTACGCAGAAGAGAAGTTACTTAGATCTGAGGCAGAGGCGAC
GCGTGACTGCGACCCTTTTAGTGCTCGCCATTGGATTGTAAGGAACACAAGGACAGTAAACAGGACGGGT
CAGTTAACGGGATACAAACTTGTTCCGGGGTCAAACTGTTTGCCACTAGCTCGACCCGAGGCCAAGTTTC
TAAGAAGAGCTGCATTCTTGAAGCATAATCTGTGGGTTACCCGTTATGCACCTGACGAGAAGTTTCCAGG
AGGAGAATTCCCAAACCAAAACCCACGTGCTGGTGAAGGTCTCGCTACATGGGTGAAACAGAATCGCTCC
CTGGAAGAATCTGATGTCGTTCTCTGGTATGTGTTTGGGATCACACATGTTCCTAGACTTGAAGATTGGC
CGGTTATGCCCGTGGAACATATTGGTTTCACGCTAATGCCACATGGATTTTTCAACTGCTCACCGGCCGT
AGACGTTCCACCGAATCCTGCATGCGAATTGGATACTAAGGACAGTGAGGTCAAAGAGGTTGTAGCACCG
AAGCCTCTTCAGAGTGGTTTACTTTCAAAGCTTTGAAACATGACAGACTTAGACTTCTTATAAATTGGAG
ACATTATTGTTGCAATTTAGTTTCGAATTGGAATCTTTTCTTGTTTGGTTTGTTGGTTGGAGACTAAAAG
AGTGTTCCATATTAAAGAGTTGATTATTTTATTATGAACTAAGAGTTTTACCCGCAcatgcgggcatatt
tatttgataaatatattattagctt
Downstream Sequence
GGTATATCAAATCTCTAGCTCTCCTAGACTGATTAACGATCTGCCTTGAGATTGATTATC
CTGCGGTTGATACTGATTATCTGATGTTGGATTGTGATTTGTTTGAATTACTCTGAGTTC
GTTCTTGTTGATGATAGCTAAATTGATCTCTTAAATACTGTGATATCACCAATGCAGGAA
TCTCTGTAACGCCAAGGTCGGAAACAAAGCACCCGTTGGATCCTCTATCTGCTGCAGAGA
TATCAGTTGCTGTGGCCACTGTTCGCGCCGCTGGTGCTAACCCTGAGGTGGGGGAAACAC
TCTCAAACCTCTTTCCTGAATCATTGATTTCAACTGGTTTTCTTTTGGCAGGTTAGGGAT
AGTATGCGTTTCATCGAGGTGGCATCAGTGGAGCCAGAGAAACATGTTGTGGCGCTTGCT
GATGCTTACTTCTTCCCTCCTTTCCAGCCATCATTGCTTCCAAGAACTAAAGCTGGACCT
GTGATCCCTATGAAGCTCCCTCCAAGGCGAGCGAGACTTGTTGTCTACAACAAGACTTCT
AATGAGACAAGTGTGTGGATCGTGGAGTTGTCTTCGGTTCATGCTGTCACTCGGGGCGGG
CATCACAGGGGGAGAGTGGTTTCCTCGCAAGTGATACCTGATGTCCAGCCACCCATGGTA
TGTCGTAAGAAAAGTTTAATCATTTAGATGCTGTTTTCGTTCTAGAGTTTCTCAGTTAGA
GTATTGTGATTTTAGGATGCGGAAGAATATGCGGAATGTGAAGCGATTGTCAAAGACTTC
CCTCCATTCATTGAGGCAATGAAGAGGAGAGGTATCGATGACATGGATCTTGTGATGGTT
GATCCCTGGTATGTTTATAACATCTTTGTTAGCTGCTGAAAGTTGTAAATTAAGGTTTAT
TTTTTCCTGAACCTGCCTCTGAACTTATTGTGCAGGTGTGTGGGTTATCATAGTGAAGCT
GACGCTCCTAGTCGTAGGCTTGCGAAGCCTCTTATATACTGTCGAACTGATAGTGACTGC
CCAATGGAAAATGGCTATGCTCGTCCAGTTGAGGGAATTTATGTTCTTGTGGACATGCAA
AACATGGTGGTGATCGAGTTTGAAGACCGTAAGTTTGTGCCACTTCCCCCACCTGACCCT
TTGAGGAATTATACACCAGGTGAGAGCAGAGGGGGTGTTGATAGAAGTGATGTTAAGCCT
CTCGAGATTATTCAGCCTGAAGGTCCAAGTTTCCGCGTAAGGGGTTACTTTGTCGAGTGG
CAGAAGGTAGTTTTCCAATAATATCCTAATTGATGAAAGCAGGTGTTTATGCGTAAGATT
AGTTCTAAACTATGGCTTAACTTTTTAACTTACAGTGGAACTTTCGTATTGGGTTCACTC
CGAGGGAAGGTTTAGTCATACATTCGGTAGCATATGTTGATGGCAGTCGAGGTCGAAGAC
CCGTTGCACACAGACTAAGTTTTGTGGAGATGGTTGTGCCTTATGGTGATCCGAATGAGC
CACATTACAGGAAGAATGCTTTTGATGCAGGGGAGGATGGTCTTGGAAAAAACGCACATT
CGCTCAAGAAGGTTTGAAATCAATTAATCTGTTCTCATTATATCTAACCAGATCTCGGTT
TGCGTTTAACAATTACGTTTTGTAGGGGTGTGACTGTCTGGGATTTATCAAGTACTTTGA
CGCCCATTTCACAAATTTCACTGGAGGAGTTGAAACAATTGAGAACTGCGTATGCTTGCA
TGAAGAAGACCATGGGATTTTGTGGAAACATCAGGACTGGAGAACAGGATTGGCTGAAGT
GCGAAGATCTAGGAGGCTGACTGTCTCTTTCTTTTGTACTGTGGCTAACTACGAGTATGG
ATTTTACTGGCACTTCTACCAGGTTAGTGGGAAACGTGATTAGTCATCTTTGGATCTAAT
TTCTAAAGGGAAGACAAATATATGTCCCTGGATGAGAATAAATCTTGAGTTTGGCAGCTC
ACAATTGTTTTAAGGCTTTA
Pro Sequence
MASASQKTTPCAHHGASAPPPPKLLSAVESVIRPVDSIPDTAKKPANKGI
SVTPRSETKHPLDPLSAAEISVAVATVRAAGANPEVRDSMRFIEVASVEP
EKHVVALADAYFFPPFQPSLLPRTKAGPVIPMKLPPRRARLVVYNKTSNE
TSVWIVELSSVHAVTRGGHHRGRVVSSQVIPDVQPPMDAEEYAECEAIVK
DFPPFIEAMKRRGIDDMDLVMVDPWCVGYHSEADAPSRRLAKPLIYCRTD
SDCPMENGYARPVEGIYVLVDMQNMVVIEFEDRKFVPLPPPDPLRNYTPG
ESRGGVDRSDVKPLEIIQPEGPSFRVRGYFVEWQKWNFRIGFTPREGLVI
HSVAYVDGSRGRRPVAHRLSFVEMVVPYGDPNEPHYRKNAFDAGEDGLGK
NAHSLKKGCDCLGFIKYFDAHFTNFTGGVETIENCVCLHEEDHGILWKHQ
DWRTGLAEVRRSRRLTVSFFCTVANYEYGFYWHFYQDGKIEAEVKLTGIL
SLGALQPGETRKYGTTIAPGLYAPVHQHFFIARMDMSVDCKPGEAYNQVV
EVNVKVDEPGENNIHNNAFYAEEKLLRSEAEATRDCDPFSARHWIVRNTR
TVNRTGQLTGYKLVPGSNCLPLARPEAKFLRRAAFLKHNLWVTRYAPDEK
FPGGEFPNQNPRAGEGLATWVKQNRSLEESDVVLWYVFGITHVPRLEDWP
VMPVEHIGFTLMPHGFFNCSPAVDVPPNPACELDTKDSEVKEVVAPKPLQ
SGLLSKL
mRNA Sequence
CCACAAGTAGGCTTTGGCAGCTTCTGCTTGGACTGTATAAAGCAAATTGAATCACTCTCTTCCTTCCCAC
CACACCACCACGGGAAAAAGGAGGTGCGATCACAGTTGCCTCAGCGAAACTCAGATCCGGCGAGAGAGAG
GTTTTGCTGTATGTCAGTAGATTGTGCTGAGACTTACTTTGGTGGATTTGGAGAACTCGTAAACCCTATT
CAATGGCCTCAGCTTCGCAAAAGACGACGCCATGTGCTCACCACGGAGCCTCTGCTCCGCCTCCTCCGAA
ACTCCTCTCCGCCGTGGAGTCCGTAATCCGCCCTGTCGATTCGATCCCTGACACGGCCAAGAAACCTGCG
AACAAAGGAATCTCTGTAACGCCAAGGTCGGAAACAAAGCACCCGTTGGATCCTCTATCTGCTGCAGAGA
TATCAGTTGCTGTGGCCACTGTTCGCGCCGCTGGTGCTAACCCTGAGGTTAGGGATAGTATGCGTTTCAT
CGAGGTGGCATCAGTGGAGCCAGAGAAACATGTTGTGGCGCTTGCTGATGCTTACTTCTTCCCTCCTTTC
CAGCCATCATTGCTTCCAAGAACTAAAGCTGGACCTGTGATCCCTATGAAGCTCCCTCCAAGGCGAGCGA
GACTTGTTGTCTACAACAAGACTTCTAATGAGACAAGTGTGTGGATCGTGGAGTTGTCTTCGGTTCATGC
TGTCACTCGGGGCGGGCATCACAGGGGGAGAGTGGTTTCCTCGCAAGTGATACCTGATGTCCAGCCACCC
ATGGATGCGGAAGAATATGCGGAATGTGAAGCGATTGTCAAAGACTTCCCTCCATTCATTGAGGCAATGA
AGAGGAGAGGTATCGATGACATGGATCTTGTGATGGTTGATCCCTGGTGTGTGGGTTATCATAGTGAAGC
TGACGCTCCTAGTCGTAGGCTTGCGAAGCCTCTTATATACTGTCGAACTGATAGTGACTGCCCAATGGAA
AATGGCTATGCTCGTCCAGTTGAGGGAATTTATGTTCTTGTGGACATGCAAAACATGGTGGTGATCGAGT
TTGAAGACCGTAAGTTTGTGCCACTTCCCCCACCTGACCCTTTGAGGAATTATACACCAGGTGAGAGCAG
AGGGGGTGTTGATAGAAGTGATGTTAAGCCTCTCGAGATTATTCAGCCTGAAGGTCCAAGTTTCCGCGTA
AGGGGTTACTTTGTCGAGTGGCAGAAGTGGAACTTTCGTATTGGGTTCACTCCGAGGGAAGGTTTAGTCA
TACATTCGGTAGCATATGTTGATGGCAGTCGAGGTCGAAGACCCGTTGCACACAGACTAAGTTTTGTGGA
GATGGTTGTGCCTTATGGTGATCCGAATGAGCCACATTACAGGAAGAATGCTTTTGATGCAGGGGAGGAT
GGTCTTGGAAAAAACGCACATTCGCTCAAGAAGGGGTGTGACTGTCTGGGATTTATCAAGTACTTTGACG
CCCATTTCACAAATTTCACTGGAGGAGTTGAAACAATTGAGAACTGCGTATGCTTGCATGAAGAAGACCA
TGGGATTTTGTGGAAACATCAGGACTGGAGAACAGGATTGGCTGAAGTGCGAAGATCTAGGAGGCTGACT
GTCTCTTTCTTTTGTACTGTGGCTAACTACGAGTATGGATTTTACTGGCACTTCTACCAGGATGGAAAAA
TCGAAGCTGAAGTAAAACTTACTGGTATCCTCAGTCTAGGAGCGCTGCAGCCAGGAGAAACTCGAAAGTA
CGGTACTACTATTGCTCCGGGGTTGTATGCACCAGTCCATCAACATTTCTTTATCGCTCGCATGGATATG
TCCGTTGACTGTAAACCTGGTGAAGCTTATAACCAGGTAGTTGAGGTAAATGTCAAAGTTGACGAGCCCG
GTGAGAACAATATCCACAACAATGCTTTTTACGCAGAAGAGAAGTTACTTAGATCTGAGGCAGAGGCGAC
GCGTGACTGCGACCCTTTTAGTGCTCGCCATTGGATTGTAAGGAACACAAGGACAGTAAACAGGACGGGT
CAGTTAACGGGATACAAACTTGTTCCGGGGTCAAACTGTTTGCCACTAGCTCGACCCGAGGCCAAGTTTC
TAAGAAGAGCTGCATTCTTGAAGCATAATCTGTGGGTTACCCGTTATGCACCTGACGAGAAGTTTCCAGG
AGGAGAATTCCCAAACCAAAACCCACGTGCTGGTGAAGGTCTCGCTACATGGGTGAAACAGAATCGCTCC
CTGGAAGAATCTGATGTCGTTCTCTGGTATGTGTTTGGGATCACACATGTTCCTAGACTTGAAGATTGGC
CGGTTATGCCCGTGGAACATATTGGTTTCACGCTAATGCCACATGGATTTTTCAACTGCTCACCGGCCGT
AGACGTTCCACCGAATCCTGCATGCGAATTGGATACTAAGGACAGTGAGGTCAAAGAGGTTGTAGCACCG
AAGCCTCTTCAGAGTGGTTTACTTTCAAAGCTTTGAAACATGACAGACTTAGACTTCTTATAAATTGGAG
ACATTATTGTTGCAATTTAGTTTCGAATTGGAATCTTTTCTTGTTTGGTTTGTTGGTTGGAGACTAAAAG
AGTGTTCCATATTAAAGAGTTGATTATTTTATTATGAACTAAGAGTTTTACCCGCAcatgcgggcatatt
tatttgataaatatattattagctt