Homology
BLAST of mRNA_P-fluviatile_contig13.1736.1 vs. uniprot
Match:
D7G859_ECTSI (Methyltransf_11 domain-containing protein n=2 Tax=Ectocarpus TaxID=2879 RepID=D7G859_ECTSI)
HSP 1 Score: 777 bits (2006), Expect = 4.840e-259
Identity = 554/1245 (44.50%), Postives = 689/1245 (55.34%), Query Frame = 1
Query: 202 DNKKHKQSCSALALFVAGKASSDRLEAILDLPLVSLMSKHVAYVTEISRKKVQDRAEGRASSRWILSAAGMAAKPNIRRSVAESGASASPAAAAAAPTLAELAAVTDECKNLGGELAKA-LAVKATVSSTTHAAGIVVSEGAAAEIRKLKPRSNGDAAFRENRDAKSREGGETYEWYTGYPDKALREAFPRSARDKKTLVVGCGNSDLSEKMCEDGFRDVLSIDSSESAIAQMSARAERFNTARAKCRYQVMDAGHLEGLSAGTFAGVVDKGTIDAVLSEGLEPARRICREAMRVLEPGGAFLVISNTPAELLHVTLMSMCGPAAKPDGSPPIEVPIASGTGDGGGSXGRGGPCVYGYIVRKKGSL-------AKGMRGMVSVPGTRMDITQPPQNPIDESAAALEARASEPAGAASRNDLQLLELELPPEFVEQEKA---GVNDGRQRVGVRGGSRPTQPQLSLEQVRGRLLEAEARANSELCLWEIDEEESRLREKSELTPTLDGETTGRLPTGGGKSRSGAPRAAGAAAPPPAGKPAEQLSLPWGLQESFSEDSICVTYELTLDTEIPSSKLLSVEIGTSRIKVVHRRR-SGESPVVLLDRELFDKINASESTWSLEDKTVLSFTLYKSPPYLWRRAFKNDMPKGSAVVSRGEVGETKAGDWGVADNSSRRQESTSA--------AAARAGCGPSIPSPSPPVVPRNHEPPPKVGL-ANGIAFKAPERFLLEDHVGIKKLQLHLAKPRGFLVSTYRVSRAGPGLCEVRLECRDATRSGLPDLHLLQRAELGRADFHPDRASCYGDAAGGVFVVGVPYDGERWAAADENCGAGAWSGCAGCAGDA-----DDEGVRLVARLRCRFCGQPITPPGKGLAVRAMPSGRWDDCIEDMICFDGPQAVPVLARDVNFARPGRCLMSQVEVLLHPRDIIRGAVVAAAAAATATEKVAATEAVPGWRSLECARCDFPLGRPATVADGHVIEGVAVAEEARGLLLLKHCVLGDDVSNQDIENGDCDAKDSAEGHAAARVGGGGXXXXXXXXXSSPSGEKPAATCPGKEGRPIVPPDTFRGVFGSRTAIKWLMGEMAYFNERDGCARFIVAAWGRSPAAPGGSLSLVLSKPNTFVSVDGGGKPGLAHRVSYREESRDEAEQRDENERRGAEXXXXXXXXXXXXXXXXXXXXXXCGKAPVESHRQTAARVPARLLEVSYAEYRTVRERLVESSWAAAASRALDPRGYTTSYLF 3858
D KKHKQ C L L++ + + + L +KH+ Y++ K ++RAE +AS + +L ++ + AE D + L + +A A KA V++ + L P+ GDA + E R AKSR GET+EWYTGYPD+AL++AFP+S R KKTLV+GCG S LSEKMC+DGFRDVLSID+S++A+ QM+ARA+ FN A KCRYQVMDA L TF GVVDKGTIDAVLS GLE ARRIC+EAMRVLEPGG F VISNTP E L L++MCGP + D P+ VP+ G G R VY Y V K+G AK G + G ++E A R +S +D ++ PE QEK G+ + Q + G + + CL +I + S+ R + E L R A R A P A +P +L+LPWG +ESFSEDS TYEL LD ++ S L V + +R+K +R G P VLLDRE + ESTW +EDK VL +L K W+R FK D + A +R +AD++S+ +E + + A AG GPS P P+PP VPR H PKV L A+ FKAPERFLLEDH+GIKKLQL+L+KP GF V+ ++VSR G LCEVR CRDA LPD LQRA++GR DF DRASC +A + VVGVPY G SG G +A DDEG++ V+ LRCRFC PITP G+ LAVRAMPSGRWD+CIEDMIC+DGPQAVP+LARDVNFARPGRCLM+Q EVLLHPRD+I GA+ A A A + + + WR ++CARCD PLGRPAT GH ++E+ GLLLLKHC+LGDD XXXXXXXXX + E A P E P VF +RTAIKWL EMA++NERDGCARFIV+A GRSPA PGGSLSL+L K N+ VSVDG KPG AHRV++REES +EAE+ DE XXXXXXXXXXXXX +TAA+VPARLLEVSY EY TVR+RL++++WA A R LD RGY+ SYLF
Sbjct: 2 DTKKHKQVCFKLVLWLR----KPSIRGSMSTQEMMLCAKHLKYMSARVSKSTEERAESKASIQSVLG--------GVKAAQAEK----------------------DAARQLQAQATEARAAAKAAVATAAQS---------------LNPKRYGDADYWEERHAKSRASGETFEWYTGYPDEALQKAFPQSVRGKKTLVIGCGTSVLSEKMCDDGFRDVLSIDTSKNAVEQMTARAKPFNNANTKCRYQVMDACELSQCDGETFGGVVDKGTIDAVLSGGLERARRICQEAMRVLEPGGKFFVISNTPGEKLLAPLLAMCGPGSTAD--QPLAVPVQGWKGGSDGKDDR----VYAYTVLKRGGSGAASPRQAKNHGGNGAAAGA-----------VEEGPAGATGRGGGRRAPSSASDTGVVPS---PEERRQEKPSSEGLGELDQLLSREVGXXXXXXXXXXXXXXXXXXXXXXXSRDQ-CLGKIRDLLSKKRPPAPKKLESGDERFSTL-----LERKAATRPPEAMPLPEATRP-PKLALPWGSRESFSEDSASATYELKLDKDV-SPSTLPVSMDATRVKACYRPPPGGGDPEVLLDREFHGHVTG-ESTWCIEDKRVLVLSLCKRTQDFWKRPFKKDESEPQAAATRS-----------LADDTSKTREPPAVGDAPGLKKSPAAAGLGPSKPVPTPPTVPRKHVRSPKVDLVASYHNFKAPERFLLEDHIGIKKLQLYLSKPPGFEVTKFQVSRVGAELCEVRFVCRDAAGRDLPDAQFLQRADVGREDFEGDRASCSAEATDSMCVVGVPYSGTA-------------SGRGGVEEEAESDGLDDEGLQRVSCLRCRFCKHPITPAGRVLAVRAMPSGRWDECIEDMICYDGPQAVPMLARDVNFARPGRCLMAQAEVLLHPRDVITGALTVADARGGAVSMMPEEDDLE-WRGVDCARCDLPLGRPATSPIGHDNS----SQESVGLLLLKHCLLGDDDGXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXSATEGGLARGP-PEATAGSPEKKSPRVFENRTAIKWLQREMAHYNERDGCARFIVSAKGRSPATPGGSLSLLLVKMNSLVSVDGSSKPGRAHRVAFREESLEEAERADEX---------------XXXXXXXXXXXXXXXXXXXXXSDKTAAKVPARLLEVSYGEYATVRQRLLDTAWAGAPWRKLDSRGYSYSYLF 1123
BLAST of mRNA_P-fluviatile_contig13.1736.1 vs. uniprot
Match:
A0A6H5K3R4_9PHAE (Uncharacterized protein n=1 Tax=Ectocarpus sp. CCAP 1310/34 TaxID=867726 RepID=A0A6H5K3R4_9PHAE)
HSP 1 Score: 151 bits (381), Expect = 1.470e-37
Identity = 97/248 (39.11%), Postives = 133/248 (53.63%), Query Frame = 1
Query: 202 DNKKHKQSCSALALFVAGKASSDRLEAILDLPLVSLMSKHVAYVTEISRKKVQDRAEGRASSRWILSAAGMAAKPNIRRSVAESGASASPAAAAAAPTLAELAAVTDECKNLGGELAKALAVKATVSSTTHAAGIVVSEGAAAEIRKLKPRSNGDAAFRENRDAKSREGGETYEWYTGYPDKALREAFPRSARDKKTLVVGCGNSDLSEKMCEDGFRDVLSIDSSESAIAQMSARAERFNTARAKCRY 945
D KKHKQ CS L L++ L + + L +KH+ Y++ K ++RAE +AS + +L ++ + AE D + L + +A A T +T R L P+ GDA + E R AKSR GET+EWYTGYPD+AL++AFP+S R KKTLV+GCG S LSEKM +DGFRDVLSID+S++A+ QM+ARA+ FN A KCR+
Sbjct: 2 DIKKHKQVCSKLVLWLR----KPSLGGGMSTQEMMLYAKHLKYMSARVSKSTEERAESKASIQSVLG--------GMKAAQAEK----------------------DAARQLQEQAKEARAAAKTAVATA--------------ARSLNPKRYGDADYWEERHAKSRASGETFEWYTGYPDEALQKAFPQSVRGKKTLVIGCGTSVLSEKMSDDGFRDVLSIDTSKNAVEQMTARAKPFNNANTKCRW 201
BLAST of mRNA_P-fluviatile_contig13.1736.1 vs. uniprot
Match:
A0A835YJ55_9STRA (S-adenosyl-L-methionine-dependent methyltransferase (Fragment) n=1 Tax=Tribonema minus TaxID=303371 RepID=A0A835YJ55_9STRA)
HSP 1 Score: 93.6 bits (231), Expect = 1.400e-17
Identity = 57/153 (37.25%), Postives = 89/153 (58.17%), Query Frame = 1
Query: 703 EGGETYEWYTGYPDKALREAFPRSARDKKT-----LVVGCGNSDLSEKMCEDGFRDVLSIDSSESAIAQMSARAERFNTARAKCRYQVMDAGHLEGLSAGTFAGVVDKGTIDAVL--SEGLEPARRICREAMRVLEPGGAFLVIS-NTPAELL 1137
E GETY+W+ GYP +REA A + L++GCGNS+LSE+M +DG+ ++ID S+ I M ++ +T + + VMDA + G+ G+ V+DKG IDA+ + + +++ E+ RVL PGG+++ S NTP LL
Sbjct: 46 EAGETYDWFLGYPK--MREALLEHASHARNGAGTVLILGCGNSELSERMYDDGWTQQINIDFSKPVIDLMRSK----HTDKPGMEWAVMDARDMSGVPDGSVQTVIDKGLIDALTHSDQYRDDIQKVVAESARVLRPGGSYICTSFNTPESLL 192
BLAST of mRNA_P-fluviatile_contig13.1736.1 vs. uniprot
Match:
D7FQU9_ECTSI (Methyltransf_11 domain-containing protein n=2 Tax=Ectocarpus TaxID=2879 RepID=D7FQU9_ECTSI)
HSP 1 Score: 95.1 bits (235), Expect = 5.750e-16
Identity = 63/190 (33.16%), Postives = 103/190 (54.21%), Query Frame = 1
Query: 619 GAAAEIRKLKPRSNGDAAFRENRDAKSREGGETYEWYTGYPDKALREAFPRSAR-DKKTLVVGCGNSDLSEKMCEDGFRDVLSIDSSESAIAQMSARAERFNTARAKCRYQVMDAGHLEGLSAGTFAGVVDKGTIDAVLSEGLEPARR----ICREAMRVLEPGGAFLVISNTPAELLHVTLMSMCGPAA 1173
G A KL PR + + +E D+ ++ + +EWY Y D LR+ R+ R ++ LV+GCGNS+ S ++ +DGF ++ ++D S+ IA+M + R K + VMD + G G+F VVDKGT+DA++SE R+ + RE RVL+P G ++ ++ + + +S PAA
Sbjct: 5 GGGAAAPKLLPRHHDEFRSKEYWDSFFQQRTDAFEWYGEYED--LRKLVHRTLRRTERILVIGCGNSNFSAELYDDGFEEIENVDFSDPVIAEMH---RSHSGVRPKMTWTVMDVTDMRGYEDGSFDAVVDKGTLDALMSEDTAEVRKSGEAMLREVKRVLKPTGRYMCVTLWQ-DFIGSAFLSSFAPAA 188
BLAST of mRNA_P-fluviatile_contig13.1736.1 vs. uniprot
Match:
A0A6J0U4J8_9SAUR (methyltransferase-like protein 13 isoform X1 n=1 Tax=Pogona vitticeps TaxID=103695 RepID=A0A6J0U4J8_9SAUR)
HSP 1 Score: 94.4 bits (233), Expect = 7.350e-16
Identity = 68/181 (37.57%), Postives = 101/181 (55.80%), Query Frame = 1
Query: 625 AAEIRKLKPRSNGDAAFRENRDAKSREGGE-TYEWYTGYPDKALREAFPRSARDKKT-LVVGCGNSDLSEKMCEDGFRDVLSIDSSESAIAQMSARAERFNTARAKCRYQVMDAGHLEGLSAGTFAGVVDKGTIDAVLSEGLEPA----RRICREAMRVLEPGGAFLVISNTPAELLHVTL 1149
AAE +L P+ + A E + RE GE +EWY + K LR R R + + LVVGCGNS+LSE++ ++G+RD++S+D SE + QM R+ R K Y VMD ++ G+F V+DKGT+DA+ ++ E +R+ E RVL+ GG +L +S +L V L
Sbjct: 2 AAEGLRLLPKRAREFASAEYWEHFFRERGERAFEWYGAW--KELRAPLARYLRSRDSILVVGCGNSELSEQLYDEGYRDIISVDISEVVVKQMQERSAHL---RPKMTYMVMDVLQMD-FPDGSFQVVLDKGTLDALTTDDEETTLMRVKRMFAEIGRVLQFGGRYLCVSLAQGHVLKVAL 176
BLAST of mRNA_P-fluviatile_contig13.1736.1 vs. uniprot
Match:
UPI000442213F (methyltransferase-like protein 13 isoform X1 n=2 Tax=Python bivittatus TaxID=176946 RepID=UPI000442213F)
HSP 1 Score: 94.4 bits (233), Expect = 7.380e-16
Identity = 67/179 (37.43%), Postives = 99/179 (55.31%), Query Frame = 1
Query: 631 EIRKLKPRSNGDAAFRENRDAKSREGGE-TYEWYTGYPDKALREAFPRSARDKKT-LVVGCGNSDLSEKMCEDGFRDVLSIDSSESAIAQMSARAERFNTARAKCRYQVMDAGHLEGLSAGTFAGVVDKGTIDAVLSEG----LEPARRICREAMRVLEPGGAFLVISNTPAELLHVTL 1149
E +L PR D A E + RE GE +EWY +P LR R R + + LVVGCGNS+LSE++ ++G+ +++S+D +E + QM R+ R K Y VMD ++ G F V DKGT+DA+L++G L+ A R+ E RVL+ GG +L +S A +L +
Sbjct: 2 EELRLLPRHARDFASSEYWERFFRERGERAFEWYGEWP--GLRSTLGRYLRPRDSILVVGCGNSELSEQLYDEGYHNIISVDINELVVKQMQERSTHL---RPKMAYMVMDVLQMD-FPDGHFQVVFDKGTLDALLTDGEETTLKQAERMFAEIGRVLQFGGRYLCVSLAQAHVLKAAV 174
BLAST of mRNA_P-fluviatile_contig13.1736.1 vs. uniprot
Match:
H9GJ40_ANOCA (EEF1A lysine and N-terminal methyltransferase n=1 Tax=Anolis carolinensis TaxID=28377 RepID=H9GJ40_ANOCA)
HSP 1 Score: 93.6 bits (231), Expect = 1.280e-15
Identity = 68/180 (37.78%), Postives = 101/180 (56.11%), Query Frame = 1
Query: 628 AEIRKLKPRSNGDAAFRENRDAKSRE-GGETYEWYTGYPDKALREAFPRSARDKKT-LVVGCGNSDLSEKMCEDGFRDVLSIDSSESAIAQMSARAERFNTARAKCRYQVMDAGHLEGLSAGTFAGVVDKGTIDAVLSEG----LEPARRICREAMRVLEPGGAFLVISNTPAELLHVTL 1149
AE+R L PR D A + + RE GG +EWY + K+LR R R + + LVVGCGNS+LSE++ ++G++D++++D SE + QM R+ R K Y VMD ++ G F V+DKGT+DA+L++ L A R+ E RVL GG +L +S A +L +
Sbjct: 2 AELR-LLPRRAQDFASADFWERFFRERGGRAFEWYGAW--KSLRAPLERYLRPRDSILVVGCGNSELSEELYDEGYQDIINVDISELVVKQMQERSVHL---RPKMTYMVMDVLQMD-FPDGHFQVVLDKGTLDALLTDAEEMSLRRAERMFAEIGRVLRFGGRYLCVSLAQAHVLKAAV 174
BLAST of mRNA_P-fluviatile_contig13.1736.1 vs. uniprot
Match:
A0A8I5ZU74_RAT (EEF1A lysine and N-terminal methyltransferase n=1 Tax=Rattus norvegicus TaxID=10116 RepID=A0A8I5ZU74_RAT)
HSP 1 Score: 90.5 bits (223), Expect = 4.780e-15
Identity = 61/149 (40.94%), Postives = 87/149 (58.39%), Query Frame = 1
Query: 706 GGETYEWYTGYPDKALREAFPRSARDK-KTLVVGCGNSDLSEKMCEDGFRDVLSIDSSESAIAQMSARAERFNTARAKCRYQVMDAGHLEGLSAGTFAGVVDKGTIDAVLSEG----LEPARRICREAMRVLEPGGAFLVISNTPAELL 1137
G +T+EWY Y + L E + + K K LV+GCGNS+LSE++ + G++D+++ID SE I QM ER + R + MD H+E A TF V+DKGT+DAVL++ L R+ E RVL+ GG +L IS A +L
Sbjct: 25 GKKTFEWYGTYLE--LCEVLHKYIKPKEKVLVIGCGNSELSEQLYDVGYQDIMNIDISEVVIKQMK---ERNGSRRPHMSFLKMDMTHMEFPDA-TFQVVLDKGTLDAVLTDEEEKTLRQVDRMLAEVGRVLQVGGRYLCISLAQAHIL 167
BLAST of mRNA_P-fluviatile_contig13.1736.1 vs. uniprot
Match:
A0A0Q3G7M8_BRADI (Methyltransf_11 domain-containing protein n=2 Tax=Brachypodium distachyon TaxID=15368 RepID=A0A0Q3G7M8_BRADI)
HSP 1 Score: 85.9 bits (211), Expect = 8.270e-15
Identity = 56/160 (35.00%), Postives = 86/160 (53.75%), Query Frame = 1
Query: 700 REGGETYEWYTGYPD--KALREAFPRSARDKKTLVVGCGNSDLSEKMCEDGFRDVLSIDSSESAIAQMSARAERFNTARAKCRYQVMDAGHLEGLSAGTFAGVVDKGTIDAVLSEGLEP--ARRICREAMRVLEPGGAFLVIS-NTPAELLHVTLMSMCG 1164
++GG ++WY Y LR+ P S+R L++GCGNS LSE M +DG+ D+L+ID S I QMS + + Y D + G+F ++DKGT+DA++ P A R+ E R++ PGG +++I+ P E VTL++ G
Sbjct: 31 KDGGGFFDWYQSYQALRPLLRDCVPTSSR---VLMLGCGNSLLSEDMVKDGYEDILNIDISSVVIEQMSEKHMDIP----QLTYMQFDVREMSFFEDGSFDCIIDKGTLDAMMCGDDAPHGASRMLAEVARLIRPGGIYMLITYGAPKE--RVTLLNQVG 181
BLAST of mRNA_P-fluviatile_contig13.1736.1 vs. uniprot
Match:
A0A2V0NR17_9CHLO (Methyltransf_11 domain-containing protein n=1 Tax=Raphidocelis subcapitata TaxID=307507 RepID=A0A2V0NR17_9CHLO)
HSP 1 Score: 89.7 bits (221), Expect = 8.510e-15
Identity = 66/163 (40.49%), Postives = 86/163 (52.76%), Query Frame = 1
Query: 646 KPRSNGDAAFRENRDAKSREGGETYEWYTGYP--DKALREAFPRSARDKKTLVVGCGNSDLSEKMCEDGFRDVLSIDSSESAIAQMSARAERF--NTARAKCRYQVMDAGHLEGLSAGTFAGVVDKGTIDAVL--SEGLEPARRICREAMRVLEPGGAFLVIS 1116
KP A++ +NR A R G ++W+ Y LR A P + VGCGNSDLS +CEDG V++ D S I QM A RA+ ++V D + G+F+GV+DKGT+DAVL GL AR EA R+L PGGAFL+IS
Sbjct: 99 KPAGYSAASYWDNRYASDRRGIH-FDWFLSYKALSPLLRHALPPG--HLPVMHVGCGNSDLSTGLCEDGT-PVVNTDISPVVIEQMRQDAAALPPGALRAEVSWEVADCRSMPQYGDGSFSGVLDKGTLDAVLCSGSGLVDARAYVSEAYRLLAPGGAFLLIS 257
The following BLAST results are available for this feature:
Sequences
The following sequences are available for this feature:
protein sequence of mRNA_P-fluviatile_contig13.1736.1
>prot_P-fluviatile_contig13.1736.1 ID=prot_P-fluviatile_contig13.1736.1|Name=mRNA_P-fluviatile_contig13.1736.1|organism=Porterinema fluviatile SAG_2381|type=polypeptide|length=1287bp
MFSITRHPLASRCPIVLPIRRPRRRMKPDIDLGAGLYRCVVCEDAAIQHP
CKLCGAYLYCSRGCGKKDNKKHKQSCSALALFVAGKASSDRLEAILDLPL
VSLMSKHVAYVTEISRKKVQDRAEGRASSRWILSAAGMAAKPNIRRSVAE
SGASASPAAAAAAPTLAELAAVTDECKNLGGELAKALAVKATVSSTTHAA
GIVVSEGAAAEIRKLKPRSNGDAAFRENRDAKSREGGETYEWYTGYPDKA
LREAFPRSARDKKTLVVGCGNSDLSEKMCEDGFRDVLSIDSSESAIAQMS
ARAERFNTARAKCRYQVMDAGHLEGLSAGTFAGVVDKGTIDAVLSEGLEP
ARRICREAMRVLEPGGAFLVISNTPAELLHVTLMSMCGPAAKPDGSPPIE
VPIASGTGDGGGSGGRGGPCVYGYIVRKKGSLAKGMRGMVSVPGTRMDIT
QPPQNPIDESAAALEARASEPAGAASRNDLQLLELELPPEFVEQEKAGVN
DGRQRVGVRGGSRPTQPQLSLEQVRGRLLEAEARANSELCLWEIDEEESR
LREKSELTPTLDGETTGRLPTGGGKSRSGAPRAAGAAAPPPAGKPAEQLS
LPWGLQESFSEDSICVTYELTLDTEIPSSKLLSVEIGTSRIKVVHRRRSG
ESPVVLLDRELFDKINASESTWSLEDKTVLSFTLYKSPPYLWRRAFKNDM
PKGSAVVSRGEVGETKAGDWGVADNSSRRQESTSAAAARAGCGPSIPSPS
PPVVPRNHEPPPKVGLANGIAFKAPERFLLEDHVGIKKLQLHLAKPRGFL
VSTYRVSRAGPGLCEVRLECRDATRSGLPDLHLLQRAELGRADFHPDRAS
CYGDAAGGVFVVGVPYDGERWAAADENCGAGAWSGCAGCAGDADDEGVRL
VARLRCRFCGQPITPPGKGLAVRAMPSGRWDDCIEDMICFDGPQAVPVLA
RDVNFARPGRCLMSQVEVLLHPRDIIRGAVVAAAAAATATEKVAATEAVP
GWRSLECARCDFPLGRPATVADGHVIEGVAVAEEARGLLLLKHCVLGDDV
SNQDIENGDCDAKDSAEGHAAARVGGGGSGGSGGIGGSSPSGEKPAATCP
GKEGRPIVPPDTFRGVFGSRTAIKWLMGEMAYFNERDGCARFIVAAWGRS
PAAPGGSLSLVLSKPNTFVSVDGGGKPGLAHRVSYREESRDEAEQRDENE
RRGAEGAAAAAPQRRQVGGDGSDGSGGCGKAPVESHRQTAARVPARLLEV
SYAEYRTVRERLVESSWAAAASRALDPRGYTTSYLF*
back to topmRNA from alignment at P-fluviatile_contig13:1181181..1189254-
Legend: polypeptideCDS
Hold the cursor over a type above to highlight its positions in the sequence below.
>mRNA_P-fluviatile_contig13.1736.1 ID=mRNA_P-fluviatile_contig13.1736.1|Name=mRNA_P-fluviatile_contig13.1736.1|organism=Porterinema fluviatile SAG_2381|type=mRNA|length=8074bp|location=Sequence derived from alignment at P-fluviatile_contig13:1181181..1189254- (Porterinema fluviatile SAG_2381)
ATGTTTTCGATCACGCGGCATCCGTTGGCATCACGATGTCCCATCGTCCT
ACCCATCCGCCGGCCGCGCCGGAGGATGAAGCCTGATATTGATCTTGGAG
CAGGCTTGTACAGATGCGTGGTGTGCGAGGATGCCGCAATTCAGCACCCA
TGCAAGCTATGCGGGGCGTACCTGTATTGCTCAAGAGGTAAATACTGCCT
ACGATCATGTTTTGCCAGCCTTTGAATCGCCCTCGCTAGCCTTCGTCTGA
TGCGTGTGCGGCTAGGACTCTGCGTCCGTTAAGCAAGTTTCGCGTTGCGC
TGCAAATGTAAACACCACTTTTATGTGTGAATGGTCTGTGGCGTGCTGTT
GGGTTCCGACAGAGAGTTGGAAAAGTGAAAATGCGTTCACCCACGGATAA
CCTTGTTGCTTTTCTCTCCGATTGCATGGCATGTCACGACGGCAAGTGGC
TTGCCCTACTAACCGCTTCGAGGGATCGCGCGCCCATTTGACGGGAATGT
ATTCGTCGGAGTTTGAACACTGGTCCACAGCAGGATTTCTTTTTCCAAGC
ACTCAGCCGAAAGATGATGCAGATTCGTGAACGGACGGTACAAACGAAGC
GTCGTCCACATCATACAGACGCAGACTCGTCAAACGGGCGTGTATGCTAC
TCCGGGTACGATGTACTAGTCTACATTTCTTGCTCGGAAACGGAAAGGCG
AGGACGAGGTAAAACGGTGTACTGCAGGTATCTATAGTAGTCTGTTGCAC
GGCAGGACTGGAGTATTGAAACAAATGCATTGCACCCCGAGCCGTCAAGA
CGCTGCTTCTACGGAAAGGTCAAGGTTTCCTCTGTAATCGGAGGGGGCTG
CTGCGAGGACAGGGTACCTGACCGAGGTGATGCAGTTCCCCAAGATTGAT
TGCTCTCTCCTTGTACTCGGCTTCAGCACTGATTCACGACGATGTGACGC
GGTTGTGCCCCGTACACCCGAGAGGAGGTGCTCCCCGGTGGGGCCCGGGT
TTACGGGAACAAATTATCAAGAATTAAAATCCCAAGATTTCAAGTTCATC
GGCGCTCTGATAGGCAGACACGCAAACCTCACGACGACGCAATGTTGATA
TTTCGATAAGTGAGTCTCCGCCAGGGAAGTCCCCGGGGATTATCTTTGGG
GACAATAACCAAAAATCGAAAATTAAAGTTTTCATGACATGCGAAGAACG
TTCCCCACACAGGTTCCGATGCAAGATGAACTGAAAACGTGGCCAACCCT
AGTCGGCTTCTGATTGAGCCCAGAATTGCGGCGTCGAGTGCATTCGTTGG
GGAGCAATCGCCAACTGCAAGCTGCCTTGGGGGAGAGAGAGGGCGGGATA
ACGTACGGAACCGGTGTTAGTGAGAAATTGTGTCACCATTTCTCGACGCT
CTCAGCACCCCCGAACCCGAACCTTAGCCATCCCTCAATGAGTATTAGTC
TACCCTCTCGAGGAGAAGTTGCTAGCGAAAGTCGTGCTCTCATCGGCAAG
GGATTCGAGATATTGTGAACCAAGACCAACGGCTGGAGAAACGGTTCTGT
TGACTCTTTGGGTGCTTGCAACCCTTTGCCTCGACGCTATCAGTAACCCC
CGACCCCCGAGCTTGGCGAACTATGTCAGCGCATGAAATCAGCTTTCTCG
GAGTGTCTTTGGCAAGGCATTCCATCCCTTTTTCGCCGAGATTTTGGTGA
AAAGACAGCCCGAGGAGGGTGTAGAACGTCGGAAGAAAAATGGCCCTATC
CTGGGCGTCAAGTTGGCAAGCGCCAATTTTATATTTTTATCAAAATTCCA
ATTTCGATGTTTTGTTTTTTTATATTTTCTGTTGTTCGACAACACTGGCG
CTTATGTGTCGAGTGGGAGGCGGCGATCCTCGTCTCTCTCTCTCTCTCTC
TCTCTCTCTCTCTCTCTCTCTCTCTCTCGTTGTCTCGGGTTCTCTTCCGT
CAGTTACCCGCTCTCGTCGAAGACACACCACGACGAGAATCTACAACATC
GCCGAACAGCAAGAACGATGGCGTCATCTCACAGCAACAATCATATGTCT
CGCCCGCAAACGTTCATTCAAGGCTGCGGCAAGAAGGACAACAAGAAGCA
CAAACAGAGCTGCTCTGCCCTCGCTCTCTTCGTGGCTGGCAAGGCGTCAA
GCGATAGGCTGGAGGCTATCTTGGACTTGCCGCTCGTGAGCCTCATGAGC
AAACACGTGGCGTATGTGGTGAGTGAGGAGACAGAAGACATGTCCTTGTC
CTGTGCTGCCCACGATCATTTGCTTTCGATAATTTTTTGTTGTTGCAAGC
GATGCCTGCTACTCGACGTTCTGCCTTGCACCCAACGTAGTATCGTTCCA
TCATCTCTAGTGTCGGCGTGCGCGTTGGAATCACGATATCGCCCCCTTGG
CCTAAGTCAATTTTTTTTCAACACATCCTCTATTGCAGCACCGGTCTCCA
ATGGTTCGTTTTTTGCTGTGGTTTGCACCGAGGTTACTTCATTCGTCAAC
GCAACGTACCAAGCCTTGGAGCCAGGGCTTTAAAGAGCAAAAGAGAGAGT
CGCAGGGGATGTTCGGAAGAGCGGCGAGAGGGGAGGGAGACGACACATGG
AATCACGAGTCATGCTTCACCGCAGCACAAGGGCGTAGGCAGGGCGCCGA
CCACCCCTCCTTGCAAGGATGGTCCATGCAGCACTTTCCCAGGACGATGC
TTGGTTCTCTTTGATACGGCTGGTCCGTGTGTCACCTAAACTGGCCGCCG
TTTACAAATGTTTCTGTCCGTCGCTCCTTCTTAATTTATTTTTGGCGGTT
CTGACGACCCGAAGTGGAATGATTAGCTGCCATTCCTCTTCCACTGTCGT
CGCCACTGCTCGTTTTCATGTTTTCCTCTCTCTCTTTCTCTCCCCCTCTC
TAACTCACTCTCGGCTGCATCTCTGCCGTGTGTCACGGCTTGTTTCGAAT
GCATCGAAAAGACCGAGATTTCCAGGAAGAAGGTTCAAGATCGAGCCGAG
GGCAGGGCGAGCTCGCGCTGGATCCTGAGCGCCGCGGGCATGGCCGCGAA
ACCGAACATCAGGCGATCAGTCGCCGAATCAGGAGCCTCCGCCTCCCCCG
CTGCCGCTGCTGCTGCACCGACTCTTGCTGAGCTAGCGGCGGTCACCGAC
GAGTGCAAGAATTTGGGAGGAGAGTTGGCGAAGGCCCTCGCTGTGAAGGC
TACCGTAAGTAGCACCACCCACGCCGCTGGCATAGTGGTCTCGGAGGGTG
CTGCCGCGGAGATCCGAAAGCTGAAGCCCAGAAGCAACGGCGACGCGGCG
TTCCGGGAAAATCGCGACGCCAAGAGCCGGGAAGGCGGCGAAACCTACGA
GTGGTACACGGGCTACCCCGACAAAGCTTTGCGCGAGGTCAGAGATTTCT
TCCGTCGCGGGGGGTTCGAACAAGCCCGCACTGGTGGCACCTACTCTCCC
CCGCCGATTTTGTTCGTCATCAAGTTCGTGTGCCCGTGGACGTGCCACCA
CGTAGGAGCAGAAGCAGCAGCAGCACCACCCTCGCCACCACCACCAGTAT
CGGCTCATCGGGGGAGTCTTTCCCGACGGCAGAGTCTGTTGATCCTGGCG
ACATCACGCGACATAATTTCTCTCTTTTTTTTTTTCTGCGTGTACCCAGG
CGTTCCCGCGATCCGCTCGCGACAAGAAGACTCTAGTGGTGGGCTGTGGG
AACTCCGACCTGTCGGAGAAGATGTGCGAGGACGGCTTTCGCGACGTCCT
GAGCATCGATTCCTCGGAGAGCGCGATAGCGCAGATGTCCGCGCGAGCGG
AAAGGTTCAACACCGCCCGCGCAAAGTGCAGGTGCTGGTCGGCCTGCCTT
ATTTGTCGCGGCCCTTTCGCAGATTTGTGTGTCTGCCTCTCCTGCGTTAT
CGCAACATTGAATAGCTACATAGCGCAGCAGCCTGTTGACCCGAATTTGG
TCGCCTTGCTGTCGAGCCACCTATTCTCATGGGAGTAAGATCGAGCGCCA
TCCCGCCGATCGTCGCTTGAATCCTCCGCCACGGACAGCCCCTGCACCTC
TGCAGCACGCCGTATCCGGCTACGGCATCAACTTCAGGCAGGGATTGGCG
ATCTCTGTAAATGTCGCGTGCGCTTACTCTCCTGCCCGTTGCTTAAGTTA
CGAATGCACGTGCCCACGCCCCGTCCTTTCCTCCTTGCGGTGTAGATACC
AGGTGATGGATGCTGGACACCTCGAAGGACTGAGCGCGGGAACCTTCGCG
GGGGTGGTGGACAAGGGCACGATCGACGCCGTGCTTTCGGAGGGCTTGGA
GCCGGCTCGACGCATCTGCCGGGAGGCCATGCGCGTCCTCGAGCCCGGGG
GTGCATTTTTGGTCATTAGCAACACGCCCGCGGAACTGCTGCATGTGACC
CTTATGAGCATGTGCGGCCCCGCGGCCAAGCCAGATGGGTCACCACCTAT
CGAGGTCCCGATTGCCAGCGGCACGGGCGACGGAGGCGGCAGCGGAGGCA
GGGGAGGACCGTGCGTGTACGGTTACATCGTCCGTAAGAAGGGCAGCCTC
GCGAAAGGGATGCGTGGGATGGTTTCCGTGCCGGGGACTCGAATGGACAT
CACTCAGCCTCCGCAAAACCCGATCGATGAGAGCGCGGCCGCATTAGAGG
CCAGGGCATCTGAGCCAGCGGGTGCCGCGTCCAGAAACGATTTGCAACTC
TTGGAGCTTGAACTTCCCCCGGAGTTCGTGGAGCAGGAAAAAGCCGGCGT
TAATGACGGCCGCCAACGTGTAGGGGTGCGGGGCGGCAGCAGGCCGACCC
AGCCGCAGTTATCATTGGAGCAGGTGCGCGGCAGATTGTTGGAAGCGGAA
GCGCGAGCAAATTCTGAATTGTGCTTGTGGGAAATTGACGAGGAGGAGTC
GCGGCTGCGCGAGAAGTCGGAATTGACGCCAACCTTAGACGGCGAGACCA
CAGGCCGCCTTCCTACGGGCGGAGGAAAGTCCAGGTCAGGGGCACCTCGA
GCAGCTGGAGCAGCGGCGCCGCCACCAGCAGGGAAGCCTGCTGAGCAACT
ATCCCTGCCATGGGGCTTACAAGAGAGCTTCAGCGAAGATTCCATTTGTG
TGACATACGAGCTGACGCTCGATACGGAGATCCCGTCGTCCAAGCTCTTG
TCCGTCGAGATCGGGACGTCCCGTATCAAGGTCGTCCATCGGAGGCGTTC
CGGCGAGTCGCCCGTGGTACTGCTCGACCGCGAGCTTTTCGACAAGATCA
ACGCATCCGAGTCCACCTGGTCCCTCGAGGACAAGACGGTGCTGAGCTTT
ACGTGAGTCTGTCCCTCCGCTCGGTGTGATTGGGCTGGCGGCAACGCAAT
TGGGGGTAGAACAACGTTGTCCTCGGCCGGCGTTTGAGAGTAGGTTGTCC
TTTCCCCCAAAGATGTAGGGGAGGCAGGCAGGCAGGCAAAATGGGCTGGC
AGACGGAACGGTTGCGAGACAGGCGGCTGGCCATATTGATATTCCAAGAC
GCGGACGAGCCGACGAAACCACATGCTTATGTGCCGCATCCGTCTGCGAA
TTCGCTGGTAAAGTTTTGGAGAAGCGCGCCGTGACCAGTGCTTCTCTTTT
GCCTTTTTTGGCCACGCTCTCGATGACATTTGCCCAGGTTTTAGCCATTG
CTCTTGCCAACTGCTCCCTTTGAGCCAAAATCTTGCCTCGATTATTGACC
GCCTTCCACCCCCGTCGTTTGCCAATCCCACCCCCCCCCCACCCACCCAG
CCTCTACAAGTCACCCCCATATCTCTGGAGGCGTGCTTTCAAGAATGATA
TGCCGAAAGGTTCCGCCGTTGTATCGCGCGGTGAGGTGGGCGAAACGAAG
GCGGGAGATTGGGGAGTGGCCGACAACTCTTCGCGGCGGCAGGAGTCGAC
CTCAGCAGCGGCGGCCAGGGCCGGATGTGGACCGTCGATCCCGTCGCCCT
CTCCACCGGTGGTGCCGAGAAACCACGAGCCGCCGCCAAAAGTCGGCCTC
GCGAACGGCATTGCCTTCAAGGCCCCCGAGGTGAGCAGAGATATTTCTTG
CCTAGAATAAACCTTGCATCGTGGACACCGCGTTGAGCGACGGAATGTTT
TTTGCACGGGAGAACGACCTCGTGTACCTGTAAATCGAAGACCGCAGCCA
GAAACGGGGCTCGTCGGCGTCAAACTGCTTTTGCAACAAGTCGTCCGTTT
GGGGATTGCCCTGCCGTTTTGATGGATGCGGAGGCAGTACTATGTTCTCT
CTCATTCGCGAATCGATGCACCAGGCACTAGAACATGTCGAAGAATTTGC
GTGCTCCAGCGTACAGCGTTTGTTTTTTTTCGTGCGGGTTGCGTGCGAAG
CGGCGTGTTTGCCTGTGCTCGGTGGGATAAACTGATGACAAATCTCCCCT
TCCCCGCCCCTGAGGAGTATGGCCCTCCTAAATGTCCCCTCCGTCTCTTC
CCCACGGACACGCAAATCATCCCTTTGTTTTCCTGCATCATCACTCGACC
GCCTCGCACCACCAGCGCTTCCTCCTAGAGGATCACGTCGGAATAAAGAA
GCTTCAGTTGCACCTTGCCAAGCCGCGGGGGTTCCTGGTGTCGACCTACC
GGGTCTCTCGTGCGGGCCCCGGGCTCTGCGAGGTCCGCCTGGAGTGCCGA
GACGCGACCAGGAGCGGACTCCCGGACTTGCACCTCCTTCAGCGCGCGGA
GCTCGGCCGGGCAGACTTCCACCCCGACCGGGCGTCGTGCTATGGCGATG
CTGCCGGCGGTGTGTTCGTCGTCGGGGTGCCCTACGACGGCGAGCGCTGG
GCGGCCGCGGACGAGAATTGCGGGGCTGGGGCTTGGAGTGGCTGCGCCGG
CTGTGCCGGCGACGCCGACGACGAGGGCGTGCGTCTCGTCGCGCGCCTGA
GATGCCGGTTCTGCGGCCAGCCGATCACGCCGCCCGGGAAGGGACTGGCG
GTCAGGGCGATGCCGTCGGGAAGGTGGGACGACTGCATCGAGGACATGAT
CTGCTTTGACGGGCCCCAGGCGGTGCCGGTGCTCGCGCGGGACGTCAACT
TCGCCCGTCCTGGGCGCTGCCTGATGTCACAGGTGGAGGTGTTGCTTCAT
CCGCGGGACATCATCCGGGGCGCGGTGGTGGCGGCGGCGGCGGCGGCGAC
GGCGACGGAGAAGGTCGCGGCGGTATCGGCGTCCAGCATGTCGGGGAGAC
CGAAGCGGTCCCGGGATGGCGGAGTCTCGAGTGCGCGCGCTGCGATTTTC
CGCTCGGCCGACCGGCCACTGTGGCAGACGGGCACGTCATCGAAGGCGTT
GCTGTTGCGGAGGAGGCCCGCGGCCTCTTGCTTCTCAAGCACTGTGTGTT
AGGGGATGACGTGAGCAACCAGGACATTGAAAACGGCGACTGCGATGCGA
AAGACAGTGCGGAGGGCCACGCAGCTGCACGCGTCGGAGGCGGCGGCAGC
GGCGGCAGCGGCGGCATCGGTGGAAGTAGCCCTAGCGGGGAAAAGCCAGC
AGCGACGTGTCCCGGGAAGGAAGGCCGTCCCATTGTTCCTCCTGATACCT
TCCGTGGCGTGTTCGGAAGCCGGACGGCGATTAAGTGGCTGATGGGGGAG
ATGGCCTACTTTAACGAGAGGGACGGCTGCGCCCGCTTCATCGTGGCGGC
GTGGGGGCGCTCCCCGGCGGCTCCCGGCGGCTCCCTGAGCCTGGTGCTCA
GCAAGCCGAACACCTTTGTGTCGGTAGACGGCGGCGGCAAGCCAGGACTG
GCTCACCGGGTCTCCTACCGGGAGGAGTCCCGCGACGAGGCGGAGCAAAG
GGACGAGAACGAAAGGCGAGGGGCAGAGGGGGCGGCGGCGGCGGCACCGC
AGCGAAGGCAGGTGGGTGGCGACGGCAGCGACGGAAGCGGCGGGTGCGGC
AAAGCACCAGTGGAAAGCCATCGTCAGACGGCGGCGAGGGTGCCCGCCCG
CCTGCTGGAGGTCTCGTACGCGGAGTATCGGACCGTGAGGGAGAGGCTGG
TCGAATCATCCTGGGCCGCTGCAGCTTCGCGGGCGCTGGACCCCAGAGGG
TACACAACCAGCTACCTTTTTTGA
back to topCoding sequence (CDS) from alignment at P-fluviatile_contig13:1181181..1189254-
>mRNA_P-fluviatile_contig13.1736.1 ID=mRNA_P-fluviatile_contig13.1736.1|Name=mRNA_P-fluviatile_contig13.1736.1|organism=Porterinema fluviatile SAG_2381|type=CDS|length=7722bp|location=Sequence derived from alignment at P-fluviatile_contig13:1181181..1189254- (Porterinema fluviatile SAG_2381)
ATGTTTTCGATCACGCGGCATCCGTTGGCATCACGATGTCCCATCGTCCT
ACCCATCCGCCGGCCGCGCCGGAGGATGAAGCCTGATATTGATCTTGGAG
CAGGCTTGTACAGATGCGTGGTGTGCGAGGATGCCGCAATTCAGCACCCA
TGCAAGCTATGCGGGGCGTACCTGTATTGCTCAAGAGATGTTTTCGATCA
CGCGGCATCCGTTGGCATCACGATGTCCCATCGTCCTACCCATCCGCCGG
CCGCGCCGGAGGATGAAGCCTGATATTGATCTTGGAGCAGGCTTGTACAG
ATGCGTGGTGTGCGAGGATGCCGCAATTCAGCACCCATGCAAGCTATGCG
GGGCGTACCTGTATTGCTCAAGAGGCTGCGGCAAGAAGGACAACAAGAAG
CACAAACAGAGCTGCTCTGCCCTCGCTCTCTTCGTGGCTGGCAAGGCGTC
AAGCGATAGGCTGGAGGCTATCTTGGACTTGCCGCTCGTGAGCCTCATGA
GCAAACACGTGGCGTATGTGGCTGCGGCAAGAAGGACAACAAGAAGCACA
AACAGAGCTGCTCTGCCCTCGCTCTCTTCGTGGCTGGCAAGGCGTCAAGC
GATAGGCTGGAGGCTATCTTGGACTTGCCGCTCGTGAGCCTCATGAGCAA
ACACGTGGCGTATGTGACCGAGATTTCCAGGAAGAAGGTTCAAGATCGAG
CCGAGGGCAGGGCGAGCTCGCGCTGGATCCTGAGCGCCGCGGGCATGGCC
GCGAAACCGAACATCAGGCGATCAGTCGCCGAATCAGGAGCCTCCGCCTC
CCCCGCTGCCGCTGCTGCTGCACCGACTCTTGCTGAGCTAGCGGCGGTCA
CCGACGAGTGCAAGAATTTGGGAGGAGAGTTGGCGAAGGCCCTCGCTGTG
AAGGCTACCGTAAGTAGCACCACCCACGCCGCTGGCATAGTGGTCTCGGA
GGGTGCTGCCGCGGAGATCCGAAAGCTGAAGCCCAGAAGCAACGGCGACG
CGGCGTTCCGGGAAAATCGCGACGCCAAGAGCCGGGAAGGCGGCGAAACC
TACGAGTGGTACACGGGCTACCCCGACAAAGCTTTGCGCGAGACCGAGAT
TTCCAGGAAGAAGGTTCAAGATCGAGCCGAGGGCAGGGCGAGCTCGCGCT
GGATCCTGAGCGCCGCGGGCATGGCCGCGAAACCGAACATCAGGCGATCA
GTCGCCGAATCAGGAGCCTCCGCCTCCCCCGCTGCCGCTGCTGCTGCACC
GACTCTTGCTGAGCTAGCGGCGGTCACCGACGAGTGCAAGAATTTGGGAG
GAGAGTTGGCGAAGGCCCTCGCTGTGAAGGCTACCGTAAGTAGCACCACC
CACGCCGCTGGCATAGTGGTCTCGGAGGGTGCTGCCGCGGAGATCCGAAA
GCTGAAGCCCAGAAGCAACGGCGACGCGGCGTTCCGGGAAAATCGCGACG
CCAAGAGCCGGGAAGGCGGCGAAACCTACGAGTGGTACACGGGCTACCCC
GACAAAGCTTTGCGCGAGGCGTTCCCGCGATCCGCTCGCGACAAGAAGAC
TCTAGTGGTGGGCTGTGGGAACTCCGACCTGTCGGAGAAGATGTGCGAGG
ACGGCTTTCGCGACGTCCTGAGCATCGATTCCTCGGAGAGCGCGATAGCG
CAGATGTCCGCGCGAGCGGAAAGGTTCAACACCGCCCGCGCAAAGTGCAG
GCGTTCCCGCGATCCGCTCGCGACAAGAAGACTCTAGTGGTGGGCTGTGG
GAACTCCGACCTGTCGGAGAAGATGTGCGAGGACGGCTTTCGCGACGTCC
TGAGCATCGATTCCTCGGAGAGCGCGATAGCGCAGATGTCCGCGCGAGCG
GAAAGGTTCAACACCGCCCGCGCAAAGTGCAGATACCAGGTGATGGATGC
TGGACACCTCGAAGGACTGAGCGCGGGAACCTTCGCGGGGGTGGTGGACA
AGGGCACGATCGACGCCGTGCTTTCGGAGGGCTTGGAGCCGGCTCGACGC
ATCTGCCGGGAGGCCATGCGCGTCCTCGAGCCCGGGGGTGCATTTTTGGT
CATTAGCAACACGCCCGCGGAACTGCTGCATGTGACCCTTATGAGCATGT
GCGGCCCCGCGGCCAAGCCAGATGGGTCACCACCTATCGAGGTCCCGATT
GCCAGCGGCACGGGCGACGGAGGCGGCAGCGGAGGCAGGGGAGGACCGTG
CGTGTACGGTTACATCGTCCGTAAGAAGGGCAGCCTCGCGAAAGGGATGC
GTGGGATGGTTTCCGTGCCGGGGACTCGAATGGACATCACTCAGCCTCCG
CAAAACCCGATCGATGAGAGCGCGGCCGCATTAGAGGCCAGGGCATCTGA
GCCAGCGGGTGCCGCGTCCAGAAACGATTTGCAACTCTTGGAGCTTGAAC
TTCCCCCGGAGTTCGTGGAGCAGGAAAAAGCCGGCGTTAATGACGGCCGC
CAACGTGTAGGGGTGCGGGGCGGCAGCAGGCCGACCCAGCCGCAGTTATC
ATTGGAGCAGGTGCGCGGCAGATTGTTGGAAGCGGAAGCGCGAGCAAATT
CTGAATTGTGCTTGTGGGAAATTGACGAGGAGGAGTCGCGGCTGCGCGAG
AAGTCGGAATTGACGCCAACCTTAGACGGCGAGACCACAGGCCGCCTTCC
TACGGGCGGAGGAAAGTCCAGGTCAGGGGCACCTCGAGCAGCTGGAGCAG
CGGCGCCGCCACCAGCAGGGAAGCCTGCTGAGCAACTATCCCTGCCATGG
GGCTTACAAGAGAGCTTCAGCGAAGATTCCATTTGTGTGACATACGAGCT
GACGCTCGATACGGAGATCCCGTCGTCCAAGCTCTTGTCCGTCGAGATCG
GGACGTCCCGTATCAAGGTCGTCCATCGGAGGCGTTCCGGCGAGTCGCCC
GTGGTACTGCTCGACCGCGAGCTTTTCGACAAGATCAACGCATCCGAGTC
CACCTGGTCCCTCGAGGACAAGACGGTGCTGAGCTTTACATACCAGGTGA
TGGATGCTGGACACCTCGAAGGACTGAGCGCGGGAACCTTCGCGGGGGTG
GTGGACAAGGGCACGATCGACGCCGTGCTTTCGGAGGGCTTGGAGCCGGC
TCGACGCATCTGCCGGGAGGCCATGCGCGTCCTCGAGCCCGGGGGTGCAT
TTTTGGTCATTAGCAACACGCCCGCGGAACTGCTGCATGTGACCCTTATG
AGCATGTGCGGCCCCGCGGCCAAGCCAGATGGGTCACCACCTATCGAGGT
CCCGATTGCCAGCGGCACGGGCGACGGAGGCGGCAGCGGAGGCAGGGGAG
GACCGTGCGTGTACGGTTACATCGTCCGTAAGAAGGGCAGCCTCGCGAAA
GGGATGCGTGGGATGGTTTCCGTGCCGGGGACTCGAATGGACATCACTCA
GCCTCCGCAAAACCCGATCGATGAGAGCGCGGCCGCATTAGAGGCCAGGG
CATCTGAGCCAGCGGGTGCCGCGTCCAGAAACGATTTGCAACTCTTGGAG
CTTGAACTTCCCCCGGAGTTCGTGGAGCAGGAAAAAGCCGGCGTTAATGA
CGGCCGCCAACGTGTAGGGGTGCGGGGCGGCAGCAGGCCGACCCAGCCGC
AGTTATCATTGGAGCAGGTGCGCGGCAGATTGTTGGAAGCGGAAGCGCGA
GCAAATTCTGAATTGTGCTTGTGGGAAATTGACGAGGAGGAGTCGCGGCT
GCGCGAGAAGTCGGAATTGACGCCAACCTTAGACGGCGAGACCACAGGCC
GCCTTCCTACGGGCGGAGGAAAGTCCAGGTCAGGGGCACCTCGAGCAGCT
GGAGCAGCGGCGCCGCCACCAGCAGGGAAGCCTGCTGAGCAACTATCCCT
GCCATGGGGCTTACAAGAGAGCTTCAGCGAAGATTCCATTTGTGTGACAT
ACGAGCTGACGCTCGATACGGAGATCCCGTCGTCCAAGCTCTTGTCCGTC
GAGATCGGGACGTCCCGTATCAAGGTCGTCCATCGGAGGCGTTCCGGCGA
GTCGCCCGTGGTACTGCTCGACCGCGAGCTTTTCGACAAGATCAACGCAT
CCGAGTCCACCTGGTCCCTCGAGGACAAGACGGTGCTGAGCTTTACCCTC
TACAAGTCACCCCCATATCTCTGGAGGCGTGCTTTCAAGAATGATATGCC
GAAAGGTTCCGCCGTTGTATCGCGCGGTGAGGTGGGCGAAACGAAGGCGG
GAGATTGGGGAGTGGCCGACAACTCTTCGCGGCGGCAGGAGTCGACCTCA
GCAGCGGCGGCCAGGGCCGGATGTGGACCGTCGATCCCGTCGCCCTCTCC
ACCGGTGGTGCCGAGAAACCACGAGCCGCCGCCAAAAGTCGGCCTCGCGA
ACGGCATTGCCTTCAAGGCCCCCGAGCCTCTACAAGTCACCCCCATATCT
CTGGAGGCGTGCTTTCAAGAATGATATGCCGAAAGGTTCCGCCGTTGTAT
CGCGCGGTGAGGTGGGCGAAACGAAGGCGGGAGATTGGGGAGTGGCCGAC
AACTCTTCGCGGCGGCAGGAGTCGACCTCAGCAGCGGCGGCCAGGGCCGG
ATGTGGACCGTCGATCCCGTCGCCCTCTCCACCGGTGGTGCCGAGAAACC
ACGAGCCGCCGCCAAAAGTCGGCCTCGCGAACGGCATTGCCTTCAAGGCC
CCCGAGCGCTTCCTCCTAGAGGATCACGTCGGAATAAAGAAGCTTCAGTT
GCACCTTGCCAAGCCGCGGGGGTTCCTGGTGTCGACCTACCGGGTCTCTC
GTGCGGGCCCCGGGCTCTGCGAGGTCCGCCTGGAGTGCCGAGACGCGACC
AGGAGCGGACTCCCGGACTTGCACCTCCTTCAGCGCGCGGAGCTCGGCCG
GGCAGACTTCCACCCCGACCGGGCGTCGTGCTATGGCGATGCTGCCGGCG
GTGTGTTCGTCGTCGGGGTGCCCTACGACGGCGAGCGCTGGGCGGCCGCG
GACGAGAATTGCGGGGCTGGGGCTTGGAGTGGCTGCGCCGGCTGTGCCGG
CGACGCCGACGACGAGGGCGTGCGTCTCGTCGCGCGCCTGAGATGCCGGT
TCTGCGGCCAGCCGATCACGCCGCCCGGGAAGGGACTGGCGGTCAGGGCG
ATGCCGTCGGGAAGGTGGGACGACTGCATCGAGGACATGATCTGCTTTGA
CGGGCCCCAGGCGGTGCCGGTGCTCGCGCGGGACGTCAACTTCGCCCGTC
CTGGGCGCTGCCTGATGTCACAGGTGGAGGTGTTGCTTCATCCGCGGGAC
ATCATCCGGGGCGCGGTGGTGGCGGCGGCGGCGGCGGCGACGGCGACGGA
GAAGGTCGCGGCGCGCTTCCTCCTAGAGGATCACGTCGGAATAAAGAAGC
TTCAGTTGCACCTTGCCAAGCCGCGGGGGTTCCTGGTGTCGACCTACCGG
GTCTCTCGTGCGGGCCCCGGGCTCTGCGAGGTCCGCCTGGAGTGCCGAGA
CGCGACCAGGAGCGGACTCCCGGACTTGCACCTCCTTCAGCGCGCGGAGC
TCGGCCGGGCAGACTTCCACCCCGACCGGGCGTCGTGCTATGGCGATGCT
GCCGGCGGTGTGTTCGTCGTCGGGGTGCCCTACGACGGCGAGCGCTGGGC
GGCCGCGGACGAGAATTGCGGGGCTGGGGCTTGGAGTGGCTGCGCCGGCT
GTGCCGGCGACGCCGACGACGAGGGCGTGCGTCTCGTCGCGCGCCTGAGA
TGCCGGTTCTGCGGCCAGCCGATCACGCCGCCCGGGAAGGGACTGGCGGT
CAGGGCGATGCCGTCGGGAAGGTGGGACGACTGCATCGAGGACATGATCT
GCTTTGACGGGCCCCAGGCGGTGCCGGTGCTCGCGCGGGACGTCAACTTC
GCCCGTCCTGGGCGCTGCCTGATGTCACAGGTGGAGGTGTTGCTTCATCC
GCGGGACATCATCCGGGGCGCGGTGGTGGCGGCGGCGGCGGCGGCGACGG
CGACGGAGAAGGTCGCGGCGACCGAAGCGGTCCCGGGATGGCGGAGTCTC
GAGTGCGCGCGCTGCGATTTTCCGCTCGGCCGACCGGCCACTGTGGCAGA
CGGGCACGTCATCGAAGGCGTTGCTGTTGCGGAGGAGGCCCGCGGCCTCT
TGCTTCTCAAGCACTGTGTGTTAGGGGATGACGTGAGCAACCAGGACATT
GAAAACGGCGACTGCGATGCGAAAGACAGTGCGGAGGGCCACGCAGCTGC
ACGCGTCGGAGGCGGCGGCAGCGGCGGCAGCGGCGGCATCGGTGGAAGTA
GCCCTAGCGGGGAAAAGCCAGCAGCGACGTGTCCCGGGAAGGAAGGCCGT
CCCATTGTTCCTCCTGATACCTTCCGTGGCGTGTTCGGAAGCCGGACGGC
GATTAAGTGGCTGATGGGGGAGATGGCCTACTTTAACGAGAGGGACGGCT
GCGCCCGCTTCATCGTGGCGGCGTGGGGGCGCTCCCCGGCGGCTCCCGGC
GGCTCCCTGAGCCTGGTGCTCAGCAAGCCGAACACCTTTGTGTCGGTAGA
CGGCGGCGGCAAGCCAGGACTGGCTCACCGGGTCTCCTACCGGGAGGAGT
CCCGCGACGAGGCGGAGCAAAGGGACGAGAACGAAAGGCGAGGGGCAGAG
GGGGCGGCGGCGGCGGCACCGCAGCGAAGGCAGGTGGGTGGCGACGGCAG
CGACGGAAGCGGCGGGTGCGGCAAAGCACCAGTGGAAAGCCATCGTCAGA
CGGCGGCGAGGGTGCCCGCCCGCCTGCTGGAGGTCTCGTACGCGGAGTAT
CGGACCGTGAGGGAGAGGCTGGTCGAATCATCCTGGGCCGCTGCAGCTTC
GCGGGCGCTGGACCCCAGAGGGTACACAACCAGCTACCTTTTTTGAACCG
AAGCGGTCCCGGGATGGCGGAGTCTCGAGTGCGCGCGCTGCGATTTTCCG
CTCGGCCGACCGGCCACTGTGGCAGACGGGCACGTCATCGAAGGCGTTGC
TGTTGCGGAGGAGGCCCGCGGCCTCTTGCTTCTCAAGCACTGTGTGTTAG
GGGATGACGTGAGCAACCAGGACATTGAAAACGGCGACTGCGATGCGAAA
GACAGTGCGGAGGGCCACGCAGCTGCACGCGTCGGAGGCGGCGGCAGCGG
CGGCAGCGGCGGCATCGGTGGAAGTAGCCCTAGCGGGGAAAAGCCAGCAG
CGACGTGTCCCGGGAAGGAAGGCCGTCCCATTGTTCCTCCTGATACCTTC
CGTGGCGTGTTCGGAAGCCGGACGGCGATTAAGTGGCTGATGGGGGAGAT
GGCCTACTTTAACGAGAGGGACGGCTGCGCCCGCTTCATCGTGGCGGCGT
GGGGGCGCTCCCCGGCGGCTCCCGGCGGCTCCCTGAGCCTGGTGCTCAGC
AAGCCGAACACCTTTGTGTCGGTAGACGGCGGCGGCAAGCCAGGACTGGC
TCACCGGGTCTCCTACCGGGAGGAGTCCCGCGACGAGGCGGAGCAAAGGG
ACGAGAACGAAAGGCGAGGGGCAGAGGGGGCGGCGGCGGCGGCACCGCAG
CGAAGGCAGGTGGGTGGCGACGGCAGCGACGGAAGCGGCGGGTGCGGCAA
AGCACCAGTGGAAAGCCATCGTCAGACGGCGGCGAGGGTGCCCGCCCGCC
TGCTGGAGGTCTCGTACGCGGAGTATCGGACCGTGAGGGAGAGGCTGGTC
GAATCATCCTGGGCCGCTGCAGCTTCGCGGGCGCTGGACCCCAGAGGGTA
CACAACCAGCTACCTTTTTTGA
back to top