mRNA_P-fluviatile_contig10.866.1 (mRNA) Porterinema fluviatile SAG_2381

You are viewing an mRNA, more information available on the corresponding polypeptide page

Overview
NamemRNA_P-fluviatile_contig10.866.1
Unique NamemRNA_P-fluviatile_contig10.866.1
TypemRNA
OrganismPorterinema fluviatile SAG_2381 (Porterinema fluviatile SAG_2381)
Homology
BLAST of mRNA_P-fluviatile_contig10.866.1 vs. uniprot
Match: D7FJL2_ECTSI (DEAD box helicase n=1 Tax=Ectocarpus siliculosus TaxID=2880 RepID=D7FJL2_ECTSI)

HSP 1 Score: 749 bits (1933), Expect = 5.230e-231
Identity = 752/1911 (39.35%), Postives = 888/1911 (46.47%), Query Frame = 2
Query:  839 QGKTGSMNPFTPGGEDLSHG--QGGEGERVKSADAFSGKP-EHHEDMSDLAVAESFAALDRDSQIPLLSVPPNVMFSAGLTQEQVDQGQPLWAGQARRRRIIDEAMACXXXXXXXXXXXXXXXXXSVGRQFEELPPPPRVGVAPKTAFRPSQQQRMQAPKARPGEGGSTIDFSTLFAELDXXXXXXXXXXXXXXXXXXXXXXXDTSVAASSHGIAKHADSR----GELSGERLASGLEVLSLSAAGATATADGSKAEGGQERKEAPLDSLLVAAAAGEAGGPRTPSAHQ-SMTEHLLKSPNERKQPFRSTLVSSTASSTKGSFALAADKPA-RGEGGGVGRGAAAKNSGGGARWAVTELLDVSDFDALVPRPAHRFPFTLDGFQKQAVARLERAECVFVAAHTSAGKTVVAEYAIAMAQQHMTRAIYTSPIKALSNQKYRDFKTRFGDVGLITGDVSINPEASCLIMTTEILRSMLYRGADLIRDIEWVIFDEVHYVNDSERGVVWEEVIIMLPDHANMIFLSATTPNTVDFCEWIGRTKRKPVHVITTTYRPVPLEHHLYAGNELHPIMDNFGKFASNGYNAAAAVLMSKEDKKAAAGGRGXXXXXXXXXXXXXXXXXXXXXXATRKAAGINGRA*SKSSRRTGCCRWWCSPSARKSARSAPRGSAASRSPPPRRRVKFTCSVRAP*SGCKTRTPSSPRS*T*RRCCLGASACTTAACSRF*RRL*RSASAAGWSKCCSPPRPSPWGLTCPRERLSSTGPGSMTGKTSGVGCRTHRVLLCCGRHQLTSTYIDGACATAWARFTRLRTRSILPGVRYRSKHVSVCAGSFNTCRDHSRVRVLGSRRRELLSGCEERNPESGPRSGLG----VYRTPFEPPNPSLHIFQRLFEASCACLAAVASYRPVTQGPSPG*IHTDGGTGRPARAGQGWHGSNHLLE*ASSACQPQDDAHRCRHQARKPV*AEVEYDPQLASGGGHVRGGHDEEELQRVPHAERAGGV*LAEAHEEVHRGAEQPQCNGGTMHQVRAVDDRGVPPPEHDGIEAVE*SPRLRHEE--LEECSRFAGSEAWACDNTQEAGQRAGSGPPGPRRSWRPGSDDGNTLRWRRSGFLERCPIAGAGLATGSCAIERNTS*NAGPGFVPRGFRQTRRGYLNRQGYRSSRERPHRLIRKANRKRGDEAEGRRRRLGLGRQRPQGGYGGQRESLLGERSHQPVGHAAR*SAQGGRVRGGGRPYICGARGERVARERLFFFS*FIVSC*RKNLAKRSLSCFFALLSIGVFDTRGSREKGFAFSHGVMRYIRT*CFSRLVGDDGLDACLRPRTTRRKWVGFER*DMQGGLVYE*LVIS*HKCHSSSRPAEIFGLQCRHPNGPSTGRKTK*PAGKRYALCCLPSP*RCVWKT*LSGNPVWYGS*PVFVQERPYLVLYRIVEFFERNSQILHFSSISPRCFKMSAGAFQPSAVGNVGSEVLGLEALLQRLAVRIASTHPGDSL*RMNQASQGCAGLVLLRSLTVFQEQSLSGCGSSFAALITTLKEPKISRNGGTVTVFRPWTFISRARQSLTEGRGVFD-TLRTSRLALPIDENMCHWHRWGSATS*AWRRYGKSSTRRTYWEATRGHCPPPSRRWWRWRARCLPSAIGGGPSRISISPASLKFRRLVSGRVQRSWSACSTAVRHPSATHARSFRSSTTCSRSGISCRGGSSFCSTP*VARPCCFSQISSNALGCSEALATWKETLFSS-REGLRARSTRVTSLSLQRWCSRTCSRVSTPPKSQARILSALIFQEKTQNEPPLTDRLQTAVAQVVTIARSLGRLQHDHGLPIDPEENIKLNLNFGLVDVVYEWARGVPFYEITQITLVQEGSVVRTITRLDELCREIRNAARVIGDPTLYRKMETTSQLIKRDIVFAGSLYVT 6520
            +GKTG+MNPFTPGGEDL +   +GG G+RVK+  AFS KP + H+ MSDLAVAES AALD DSQIPLLSVPPNV FS GLT + V +G PLWAGQARRRRI+D   A  XXXXXXXXXXXXXXXX       ELPPPP++G APK   +PS  QRMQAPKARPG  GSTIDFS+LFAELD           XXXXXXXXXX    +V A + G+     +R    G LS ERL SGLEVLSLS +G T   DG       +  EAPLDSLL +A  G   G R P+ HQ SMTEHLLK+P+ERK+P    L +ST++STKGSFALAADKP                      +WAVTELLDVSDFDALVPRPAHRFPFTLDGFQKQAVARLERAECVFV+AHTSAGKTVVAEYAIAMAQQHMTRAIYTSPIKALSNQKYRDFKTRFGDVGLITGDVSINPEASCLIMTTEILRSMLYRGADLIRDIEWVIFDEVHYVNDSERGVVWEEVIIMLP+HANMIFLSATTPNTV+FC+WIGRTKRKPVHVITTTYRPVPLEH+L AGNELHPIMDNFGKF SNGYNAAAA+LMSKEDKKAAAG  G XXXXX XXXXXXXXXXXXXXX          RA           +W       +     P              V F+ S +     C+              C  G S+ T              A+A    +      P    L   +E LS            G+G   H  LL   +  +   +  G     +A      T +   GV   ++ V      FN  R H      G   R+LL G   +      R GL     V  T +  P P +++   L                           T   T   ++    W+   +LL     + +             K   +E     +L +           ++L +V                         +C    ++ ++A  +                 P +R E+  +EE    +   +    +  +   R+              S +  ++   + G +                I      NA P  V RG                                 D+  GR      G        GG ++ L           AAR  AQG          + GA        ++      +V C    +     +               S +K  A S  +  + R           G     R       W G       GG           K  S    A+   L+     G + GR     A     L  + S  + V K  L+   V  G           LV        ER+ +                G F P  + N        E  +Q +  R +S                         L V + ++ S C +           PK+S              + + R  L     +    L +  L+L  D       R G   S  +                                             +  +   LK      GRV     AC                                               +I++    C E +AT  E +F +  E L                          P   A ILSALIFQEKTQNEPPLTDRLQTAVAQV+ IARSLGRLQ DHGLP+DPEENIKLNLN GLVDVVYEWARGVPF EITQITLVQEGSVVR ITRLDELCRE+RNAARVIGDPTLYRKME TSQLIKRDIVFA SLYVT
Sbjct:  228 RGKTGNMNPFTPGGEDLPYAGAEGGAGQRVKNT-AFSAKPAQQHDYMSDLAVAESVAALDPDSQIPLLSVPPNVSFSTGLTADHVAEGAPLWAGQARRRRIVD---AKAXXXXXXXXXXXXXXXXXXXXXXXELPPPPKIGGAPKATSKPSGPQRMQAPKARPGAEGSTIDFSSLFAELDSDLSSEEGSEGXXXXXXXXXXGDGKAVDAHT-GMRLDTGARSGAAGGLSQERLESGLEVLSLSTSGGTKEGDGE-----DQGNEAPLDSLLSSATQGGGLG-RPPTVHQRSMTEHLLKTPDERKRP---ALSASTSASTKGSFALAADKPTGXXXXXXXXXXXXXXXXXXXVKWAVTELLDVSDFDALVPRPAHRFPFTLDGFQKQAVARLERAECVFVSAHTSAGKTVVAEYAIAMAQQHMTRAIYTSPIKALSNQKYRDFKTRFGDVGLITGDVSINPEASCLIMTTEILRSMLYRGADLIRDIEWVIFDEVHYVNDSERGVVWEEVIIMLPEHANMIFLSATTPNTVEFCDWIGRTKRKPVHVITTTYRPVPLEHNLLAGNELHPIMDNFGKFESNGYNAAAAMLMSKEDKKAAAGRGGQXXXXXRXXXXXXXXXXXXXXXXXXXXXXQGSRA-----------QWQSLIKKLEKDGLLPV-------------VVFSFSKKK----CQ-------------ECAEGLSSVTLTTAKEKSEIHLFCATAVKRLQDQDAQLPQVLNL---KEMLSR-----------GIGVH-HGGLLPILKEIVEICFSRGLVKVLFA------TETFAMGVNMPARTVV-----FNGTRKHD-----GKDFRDLLPGEYTQMAGRAGRRGLDKVGTVIITCWSEPPPLVNLKMML---------------------------TGAATKLESQFRLKWNMILNLLRVEDMSVEDM----------MKRSFSEFRTQRELGA-----------KDLPKV-----------------------MKKCTDA-LNNLKATAE-----------------PCIRSEQSTIEEYQLLSAMASERSSDLLDYAMRS--------------SKNARSVLGSKRGLV----------------ITHKKLVNA-PAVVLRGH--------------------------------DDPGGR------GSTAATQSAGGAQDFL----------RAARAQAQGS---------LPGAVPAGEVEMKMLV----LVLCHEGFVTPAEAT---------------SADKVAAESEPIDSFARP---------SGNVVMKRKGDDDGGWGGR----AGGGXX---XXXKAGKASSGRGSAKGKVLKAG-TYGEAAGRTF---AVLEVGLGDIVSLAKAVKK--LNAEDVLGGDSTALASAVKTLVEMESTLPSERDPK----------------GTFTPVNLAN--------ELKVQEIGFRESSAE----------------------LLNVLESRAASQCHTC----------PKLSEQ----------YHLQQKRDKLERRIELLGHALSSEALSLFPDFQQ----RLGVLRSLGY---------------------------------------------VEGNTVQLK------GRV-----AC-----------------------------------------------EINT----CDELIAT--EMVFENVLESL-------------------------DPPEIAGILSALIFQEKTQNEPPLTDRLQTAVAQVLKIARSLGRLQRDHGLPVDPEENIKLNLNLGLVDVVYEWARGVPFCEITQITLVQEGSVVRAITRLDELCREVRNAARVIGDPTLYRKMEATSQLIKRDIVFAASLYVT 1630          
BLAST of mRNA_P-fluviatile_contig10.866.1 vs. uniprot
Match: A0A6H5KP96_9PHAE (Uncharacterized protein n=1 Tax=Ectocarpus sp. CCAP 1310/34 TaxID=867726 RepID=A0A6H5KP96_9PHAE)

HSP 1 Score: 724 bits (1869), Expect = 2.320e-226
Identity = 449/602 (74.58%), Postives = 488/602 (81.06%), Query Frame = 2
Query:  839 QGKTGSMNPFTPGGEDLSHG--QGGEGERVKSADAFSGKP-EHHEDMSDLAVAESFAALDRDSQIPLLSVPPNVMFSAGLTQEQVDQGQPLWAGQARRRRIIDEAMACXXXXXXXXXXXXXXXXXSVGRQFEELPPPPRVGVAPKTAFRPSQQQRMQAPKARPGEGGSTIDFSTLFAELDXXXXXXXXXXXXXXXXXXXXXXXDTSVAASSHGIAKHADSRGELSG--------ERLASGLEVLSLSAAGATATADGSKAEGGQERKEAPLDSLLVAAAAGEAGGPRTPSAHQ-SMTEHLLKSPNERKQPFRSTLVSSTASSTKGSFALAADKPARGEGGGVGRGAAAKNSGGGARWAVTELLDVSDFDALVPRPAHRFPFTLDGFQKQAVARLERAECVFVAAHTSAGKTVVAEYAIAMAQQHMTRAIYTSPIKALSNQKYRDFKTRFGDVGLITGDVSINPEASCLIMTTEILRSMLYRGADLIRDIEWVIFDEVHYVNDSERGVVWEEVIIMLPDHANMIFLSATTPNTVDFCEWIGRTKRKPVHVITTTYRPVPLEHHLYAGNELHPIMDNFGKFASNGYNAAAAVLMSKEDKKAAAG 2608
            +GKTG+MNPFTPGGEDL +   +GG G+RVK+  AFS KP + H+ MSDLAVAES AALD +SQIPLLSVPPNV FSAGLT + V +G PLWAGQARRRR++D   A XXXXXXXXXXXXXXXXX       ELPPPP++G APK   +PS  QRMQAPKARPG  GSTIDFS+LFAELDXXXXXXXXXXXXXXXXXXXX     +V A + G+     +R   +G        ERL SGLEVLSLS +G T      + EG  +  EAPLDSLL +A  G   G R P+ HQ SMT+HLLK+P+ERK+P  S    ST++  KGSFALAADKP                  GG +WAVTELLDVSDFDALVPRPAHRFPFTLDGFQKQAVARLERAECVFV+AHTSAGKTVVAEYAIAMAQQHMTRAIYTSPIKALSNQKYRDFKTRFGDVGLITGDVSINPEASCLIMTTEILRSMLYRGADLIRDIEWVIFDEVHYVNDSERGVVWEEVIIMLP+HANMIFLSATTPNTV+FC+WIGRTKRKPVHVITTTYRPVPLEHHL AGNELHPIMDNFGKF SNGYNAAAA+LMSKEDKKAAAG
Sbjct:   72 RGKTGNMNPFTPGGEDLPYASAEGGAGQRVKNT-AFSAKPAQQHDHMSDLAVAESVAALDPESQIPLLSVPPNVSFSAGLTADHVAEGAPLWAGQARRRRMVD---AKXXXXXXXXXXXXXXXXXXXXXXXXELPPPPKIGGAPKATSKPSGPQRMQAPKARPGAEGSTIDFSSLFAELDXXXXXXXXXXXXXXXXXXXXQDDGKTVDAHT-GMRLDTGARSGAAGRVRVGLSQERLESGLEVLSLSTSGGT-----KEGEGEDKGNEAPLDSLLSSATQGGGLG-RPPTVHQQSMTQHLLKTPDERKRPAPSA---STSALAKGSFALAADKPTGXXX--XXXXXXXXXXXGGVKWAVTELLDVSDFDALVPRPAHRFPFTLDGFQKQAVARLERAECVFVSAHTSAGKTVVAEYAIAMAQQHMTRAIYTSPIKALSNQKYRDFKTRFGDVGLITGDVSINPEASCLIMTTEILRSMLYRGADLIRDIEWVIFDEVHYVNDSERGVVWEEVIIMLPEHANMIFLSATTPNTVEFCDWIGRTKRKPVHVITTTYRPVPLEHHLLAGNELHPIMDNFGKFESNGYNAAAAMLMSKEDKKAAAG 657          
BLAST of mRNA_P-fluviatile_contig10.866.1 vs. uniprot
Match: A0A835YZN6_9STRA (P-loop containing nucleoside triphosphate hydrolase protein n=1 Tax=Tribonema minus TaxID=303371 RepID=A0A835YZN6_9STRA)

HSP 1 Score: 374 bits (961), Expect = 4.980e-115
Identity = 182/217 (83.87%), Postives = 198/217 (91.24%), Query Frame = 2
Query: 1871 WAVTELLDVSDFDALVPRPAHRFPFTLDGFQKQAVARLERAECVFVAAHTSAGKTVVAEYAIAMAQQHMTRAIYTSPIKALSNQKYRDFKTRFGD-VGLITGDVSINPEASCLIMTTEILRSMLYRGADLIRDIEWVIFDEVHYVNDSERGVVWEEVIIMLPDHANMIFLSATTPNTVDFCEWIGRTKRKPVHVITTTYRPVPLEHHLYAGNELHPI 2518
            WAVT  LDVSDF +LVP PA  +PF LD FQKQAVARLER ECVFVAAHTSAGKTVVAEYAIA+A  HMTRAIYTSPIKALSNQKYRDFK RFGD VGLITGDVSINPEASCLIMTTEILRSMLYRGAD++RDIEWVIFDEVHY+ND+ERGVVWEEVIIMLP+HA MIFLSATTPNT++F +WIGRTK+KPVHVITT YRPVPL+H +YAG E+H +
Sbjct:   16 WAVTASLDVSDFRSLVPNPAIEYPFELDAFQKQAVARLERRECVFVAAHTSAGKTVVAEYAIALAAAHMTRAIYTSPIKALSNQKYRDFKKRFGDDVGLITGDVSINPEASCLIMTTEILRSMLYRGADIVRDIEWVIFDEVHYINDTERGVVWEEVIIMLPEHAGMIFLSATTPNTIEFSDWIGRTKKKPVHVITTDYRPVPLQHFIYAGGEMHKV 232          
BLAST of mRNA_P-fluviatile_contig10.866.1 vs. uniprot
Match: A0A7S1XU58_9STRA (Hypothetical protein (Fragment) n=1 Tax=Phaeomonas parva TaxID=124430 RepID=A0A7S1XU58_9STRA)

HSP 1 Score: 355 bits (911), Expect = 9.290e-108
Identity = 177/260 (68.08%), Postives = 211/260 (81.15%), Query Frame = 2
Query: 1841 AAKNSGGGAR---WAVTELLDVSDFDALVPRPAHRFPFTLDGFQKQAVARLERAECVFVAAHTSAGKTVVAEYAIAMAQQHMTRAIYTSPIKALSNQKYRDFKTRFG--DVGLITGDVSINPEASCLIMTTEILRSMLYRGADLIRDIEWVIFDEVHYVNDSERGVVWEEVIIMLPDHANMIFLSATTPNTVDFCEWIGRTKRKPVHVITTTYRPVPLEHHLYAGNELHPIMDNFGKFASNGYNAAAAVLMSKEDKKAAA 2605
            AA+ +  GA+   WAVT LLDVSDF+ LVPRPA  +PF LDGFQKQAV RLE+ E VFVAAHTSAGKTVVAEYA+A+A ++ TR +YTSPIKALSNQK+RDFK RFG  +VG++TGDVS+NPEA C+IMTTEILRSMLYRGADL+RD+EWV+FDEVHYVNDSERGVVWEEVIIMLP +  M+FLSATTPNT +FCEWIGRTKR+PVHV+ T++RPVPL HHL    +   ++D   +F   G   AAA +  KE ++  A
Sbjct:    1 AARRAAAGAQRRSWAVTALLDVSDFERLVPRPAAEWPFELDGFQKQAVCRLEQKEDVFVAAHTSAGKTVVAEYAVALALRNGTRCVYTSPIKALSNQKFRDFKERFGAENVGIVTGDVSVNPEAPCVIMTTEILRSMLYRGADLVRDLEWVVFDEVHYVNDSERGVVWEEVIIMLPSYVGMVFLSATTPNTTEFCEWIGRTKRRPVHVVATSHRPVPLVHHLTLKGKDFVVLDAERRFIQAGAEQAAAKIREKEQRRLRA 260          
BLAST of mRNA_P-fluviatile_contig10.866.1 vs. uniprot
Match: A0A7S4JTK5_9STRA (Hypothetical protein n=1 Tax=Odontella aurita TaxID=265563 RepID=A0A7S4JTK5_9STRA)

HSP 1 Score: 359 bits (922), Expect = 5.730e-100
Identity = 180/252 (71.43%), Postives = 203/252 (80.56%), Query Frame = 2
Query: 1871 WAVTELLDVSDFDALVPRPAHRFPFTLDGFQKQAVARLERAECVFVAAHTSAGKTVVAEYAIAMAQQHMTRAIYTSPIKALSNQKYRDFKTRFGD-VGLITGDVSINPEASCLIMTTEILRSMLYRGADLIRDIEWVIFDEVHYVNDSERGVVWEEVIIMLPDHANMIFLSATTPNTVDFCEWIGRTKRKPVHVITTTYRPVPLEHHLYAGNELHPIMDNFGKFASNGYNAAAAVLM--SKEDKKAAAGGRG 2617
            W  T    +  F  L P PA  +PF LD FQKQAVARLER ECVFVAAHTSAGKTV AEYAIA+A++H TRAIYTSPIKALSNQKYRDF+ +FGD VGLITGD+ I  ++SCLIMTTEILRSMLYRGADLIRDIEWVIFDEVHY+NDSERGVVWEEVIIMLPD+ N+IFLSATTPNT++F +WIGRTKRKPVHVI T YRPVPL HHLYAG +LH +M+    F   GY  A   L+  S +D+ AA G +G
Sbjct:    3 WPATPPPPIRAFPPLAPDPAISYPFELDDFQKQAVARLERGECVFVAAHTSAGKTVCAEYAIALARKHCTRAIYTSPIKALSNQKYRDFRDKFGDDVGLITGDLQIGADSSCLIMTTEILRSMLYRGADLIRDIEWVIFDEVHYINDSERGVVWEEVIIMLPDYVNLIFLSATTPNTIEFSDWIGRTKRKPVHVIRTDYRPVPLSHHLYAGQKLHKVMEGKSGFLEKGYKDATMALLPQSLKDQTAAGGKKG 254          
BLAST of mRNA_P-fluviatile_contig10.866.1 vs. uniprot
Match: A0A6G0WTP8_9STRA (Uncharacterized protein n=1 Tax=Aphanomyces euteiches TaxID=100861 RepID=A0A6G0WTP8_9STRA)

HSP 1 Score: 363 bits (933), Expect = 1.190e-99
Identity = 178/249 (71.49%), Postives = 206/249 (82.73%), Query Frame = 2
Query: 1871 WAVTELLDVSDFDALVPRPAHRFPFTLDGFQKQAVARLERAECVFVAAHTSAGKTVVAEYAIAMAQQHMTRAIYTSPIKALSNQKYRDFKTRFG--DVGLITGDVSINPEASCLIMTTEILRSMLYRGADLIRDIEWVIFDEVHYVNDSERGVVWEEVIIMLPDHANMIFLSATTPNTVDFCEWIGRTKRKPVHVITTTYRPVPLEHHLYAGNELHPIMDNFGKFASNGYNAAAAVLMSKEDKKAAAGG 2611
            WA    +DVSDF   +P  A +FPF LD FQKQA+  LE  ECVF+AAHTSAGKTVVAEYAIAM+Q+HMTR +YTSPIKALSNQKYRDF+T+FG  +VGLITGDVSINPEASCL+MTTEILRSMLYRGAD+IRDIEWVIFDE+HY+NDSERGVVWEEVIIMLP+H +M+FLSATTPNT +F +WIGRTK+K +HVI+TT RPVPL HHLYAG E+ PI+DN  +F +N +  A      KE K AA  G
Sbjct:  363 WASKAEVDVSDFHTKIPDMALKFPFELDSFQKQAIVHLENHECVFIAAHTSAGKTVVAEYAIAMSQKHMTRTVYTSPIKALSNQKYRDFRTKFGVDNVGLITGDVSINPEASCLVMTTEILRSMLYRGADVIRDIEWVIFDEIHYLNDSERGVVWEEVIIMLPEHVSMVFLSATTPNTFEFSDWIGRTKQKKIHVISTTKRPVPLGHHLYAGGEIIPIVDNSNQFLTNNHAKANQKCKPKETKTAATRG 611          
BLAST of mRNA_P-fluviatile_contig10.866.1 vs. uniprot
Match: A0A1V9ZLM2_9STRA (DEAD/DEAH box RNA helicase n=1 Tax=Achlya hypogyna TaxID=1202772 RepID=A0A1V9ZLM2_9STRA)

HSP 1 Score: 363 bits (933), Expect = 1.450e-99
Identity = 177/243 (72.84%), Postives = 206/243 (84.77%), Query Frame = 2
Query: 1871 WAVTELLDVSDFDALVPRPAHRFPFTLDGFQKQAVARLERAECVFVAAHTSAGKTVVAEYAIAMAQQHMTRAIYTSPIKALSNQKYRDFKTRFG--DVGLITGDVSINPEASCLIMTTEILRSMLYRGADLIRDIEWVIFDEVHYVNDSERGVVWEEVIIMLPDHANMIFLSATTPNTVDFCEWIGRTKRKPVHVITTTYRPVPLEHHLYAGNELHPIMDNFGKFASNGYNAAAAVLMSKEDK 2593
            WA  E +DVS+F A VP  A +FPF LD FQKQAV  LE  +CVF+AAHTSAGKTVVAEYAIAM+Q+HMTR IYTSPIKALSNQKYRDF+T+FG  +VGLITGDVSINP+ASCL+MTTEILRSMLYRGAD+IRDIEWVIFDE+HY+NDSERGVVWEEVIIMLP+H +M+FLSATTPNT +F +WIGRTK+K +HVI+T  RP+PL HHLYAG E+ P+MD  G+F S  Y+AA   L  K+ K
Sbjct:  372 WASAEPVDVSNFHAKVPDMAMQFPFELDSFQKQAVVHLENHDCVFIAAHTSAGKTVVAEYAIAMSQKHMTRTIYTSPIKALSNQKYRDFRTKFGVDNVGLITGDVSINPQASCLVMTTEILRSMLYRGADVIRDIEWVIFDEIHYLNDSERGVVWEEVIIMLPEHVSMVFLSATTPNTFEFSDWIGRTKQKKIHVISTHKRPIPLSHHLYAGGEVLPVMDPQGQFLSANYSAAVQRLKPKDSK 614          
BLAST of mRNA_P-fluviatile_contig10.866.1 vs. uniprot
Match: K0TLR1_THAOC (Uncharacterized protein n=1 Tax=Thalassiosira oceanica TaxID=159749 RepID=K0TLR1_THAOC)

HSP 1 Score: 365 bits (936), Expect = 2.050e-99
Identity = 183/260 (70.38%), Postives = 211/260 (81.15%), Query Frame = 2
Query: 1847 KNSGGGARWAVTE---LLDVSDFDALVPRPAHRFPFTLDGFQKQAVARLERAECVFVAAHTSAGKTVVAEYAIAMAQQHMTRAIYTSPIKALSNQKYRDFKTRFGD-VGLITGDVSINPEASCLIMTTEILRSMLYRGADLIRDIEWVIFDEVHYVNDSERGVVWEEVIIMLPDHANMIFLSATTPNTVDFCEWIGRTKRKPVHVITTTYRPVPLEHHLYAGNELHPIMDNFGKFASNGYNAAAAVLMSKEDKKAAAGGR 2614
            KN      WAVT+   L   +DF  ++P PA  FPF LD FQKQAV RLER+ECVF+AAHTSAGKTV AEYAIA+A +H TRAIYTSPIKALSNQKYRDFK++FGD VGLITGD+ I  + SCLIMTTEILRSMLYRGADLIRDIEWVIFDEVHY+NDSERGVVWEEVIIMLP++ N+IFLSATTPNT++F EWIGRTKRKPVHVI T YRPVPL H+L+AG +LH I++  G F + GY AAA  L+    ++AA  G+
Sbjct:  375 KNDKSRKSWAVTDYIPLTSTNDFHTMLPNPALTFPFELDDFQKQAVLRLERSECVFLAAHTSAGKTVSAEYAIALAMKHCTRAIYTSPIKALSNQKYRDFKSKFGDDVGLITGDMQIGADGSCLIMTTEILRSMLYRGADLIRDIEWVIFDEVHYINDSERGVVWEEVIIMLPEYVNLIFLSATTPNTIEFSEWIGRTKRKPVHVIRTNYRPVPLSHNLWAGGKLHKILEGKGAFDTKGYTAAAHALLPASAREAAEMGK 634          
BLAST of mRNA_P-fluviatile_contig10.866.1 vs. uniprot
Match: B8BS27_THAPS (Uncharacterized protein (Fragment) n=1 Tax=Thalassiosira pseudonana TaxID=35128 RepID=B8BS27_THAPS)

HSP 1 Score: 352 bits (902), Expect = 2.240e-98
Identity = 174/235 (74.04%), Postives = 196/235 (83.40%), Query Frame = 2
Query: 1901 DFDALVPRPAHRFPFTLDGFQKQAVARLERAECVFVAAHTSAGKTVVAEYAIAMAQQHMTRAIYTSPIKALSNQKYRDFKTRFGD-VGLITGDVSINPEASCLIMTTEILRSMLYRGADLIRDIEWVIFDEVHYVNDSERGVVWEEVIIMLPDHANMIFLSATTPNTVDFCEWIGRTKRKPVHVITTTYRPVPLEHHLYAGNELHPIMDNFGKFASNGYNAAAAVLMSKEDKKAA 2602
            DF  L+P PA  FPF LD FQKQA+ RLER+ECVF+AAHTSAGKTV AEYAIA+A +H TRAIYTSPIKALSNQKYRDF+ +FGD VGLITGD+ I  + SCLIMTTEILRSMLYRGADLIRDIEWVIFDEVHY+NDSERGVVWEEVIIMLPD+ N+IFLSATTPNT++F EWIGRTKRKPVHVI T YRPVPL H+L+AG +LH +M+    F   GY+ AA  LM    + AA
Sbjct:    1 DFHTLLPNPALTFPFELDDFQKQAILRLERSECVFLAAHTSAGKTVCAEYAIALAMKHCTRAIYTSPIKALSNQKYRDFRNKFGDDVGLITGDMQIGADGSCLIMTTEILRSMLYRGADLIRDIEWVIFDEVHYINDSERGVVWEEVIIMLPDYVNLIFLSATTPNTIEFSEWIGRTKRKPVHVIRTNYRPVPLSHNLWAGMKLHKLMEGREGFNPKGYSEAAKALMPASARAAA 235          
BLAST of mRNA_P-fluviatile_contig10.866.1 vs. uniprot
Match: A0A7S2KL30_9STRA (Hypothetical protein n=1 Tax=Skeletonema marinoi TaxID=267567 RepID=A0A7S2KL30_9STRA)

HSP 1 Score: 361 bits (927), Expect = 4.080e-98
Identity = 182/264 (68.94%), Postives = 214/264 (81.06%), Query Frame = 2
Query: 1847 KNSGGGARWAVTE---LLDVSDFDALVPRPAHRFPFTLDGFQKQAVARLERAECVFVAAHTSAGKTVVAEYAIAMAQQHMTRAIYTSPIKALSNQKYRDFKTRFG-DVGLITGDVSINPEASCLIMTTEILRSMLYRGADLIRDIEWVIFDEVHYVNDSERGVVWEEVIIMLPDHANMIFLSATTPNTVDFCEWIGRTKRKPVHVITTTYRPVPLEHHLYAGNELHPIMDNFGKFASNGYNAAAAVLM-----SKEDKKAAAGG 2611
            KN+     WAVT+   L + +DF  L P PA  FPF LD FQKQA+ RLE+ +CVF+AAHTSAGKTV AEYA+A+A++H TRAIYTSPIKALSNQKYRDF+++FG DVGLITGD+ I  + SCLIMTTEILRSMLYRGADLIRDIEWVIFDEVHY+NDSERGVVWEEVIIMLP++ NMIFLSATTPNT++F EWIGRTKRKPVHVI T YRPVPL HHL+AG+++H IM+    F S GY+AA+  L+     +K D K+  GG
Sbjct:  413 KNAKDRKSWAVTDYIPLTEEADFHTLCPNPALTFPFELDDFQKQAILRLEKRQCVFLAAHTSAGKTVCAEYAVALAKRHCTRAIYTSPIKALSNQKYRDFRSKFGEDVGLITGDMQIGADGSCLIMTTEILRSMLYRGADLIRDIEWVIFDEVHYINDSERGVVWEEVIIMLPEYVNMIFLSATTPNTIEFSEWIGRTKRKPVHVIRTNYRPVPLSHHLWAGHKMHKIMEGKQGFDSKGYSAASKALLPASARAKVDAKSNKGG 676          
The following BLAST results are available for this feature:
BLAST of mRNA_P-fluviatile_contig10.866.1 vs. uniprot
Analysis Date: 2022-09-19 (Diamond blastx: OGS1.0 vs UniRef90)
Total hits: 25
Match NameE-valueIdentityDescription
D7FJL2_ECTSI5.230e-23139.35DEAD box helicase n=1 Tax=Ectocarpus siliculosus T... [more]
A0A6H5KP96_9PHAE2.320e-22674.58Uncharacterized protein n=1 Tax=Ectocarpus sp. CCA... [more]
A0A835YZN6_9STRA4.980e-11583.87P-loop containing nucleoside triphosphate hydrolas... [more]
A0A7S1XU58_9STRA9.290e-10868.08Hypothetical protein (Fragment) n=1 Tax=Phaeomonas... [more]
A0A7S4JTK5_9STRA5.730e-10071.43Hypothetical protein n=1 Tax=Odontella aurita TaxI... [more]
A0A6G0WTP8_9STRA1.190e-9971.49Uncharacterized protein n=1 Tax=Aphanomyces euteic... [more]
A0A1V9ZLM2_9STRA1.450e-9972.84DEAD/DEAH box RNA helicase n=1 Tax=Achlya hypogyna... [more]
K0TLR1_THAOC2.050e-9970.38Uncharacterized protein n=1 Tax=Thalassiosira ocea... [more]
B8BS27_THAPS2.240e-9874.04Uncharacterized protein (Fragment) n=1 Tax=Thalass... [more]
A0A7S2KL30_9STRA4.080e-9868.94Hypothetical protein n=1 Tax=Skeletonema marinoi T... [more]

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Alignments
The following features are aligned
Aligned FeatureFeature TypeAlignment Location
P-fluviatile_contig10contigP-fluviatile_contig10:3083813..3114806 +
Analyses
This mRNA is derived from or has results from the following analyses
Analysis NameDate Performed
Diamond blastx: OGS1.0 vs UniRef902022-09-19
OGS1.0 of Porterinema fluviatile SAG_23812021-02-24
Properties
Property NameValue
Taxonomic scopeEukaryota
Seed ortholog score718.8
Seed ortholog evalue2.2e-204
Seed eggNOG ortholog2880.D7FJL2
Preferred nameSKIV2L
KEGG koko:K12599
KEGG Pathwayko03018,map03018
KEGG ModuleM00392
GOsGO:0000184,GO:0000288,GO:0000291,GO:0000956,GO:0003674,GO:0003676,GO:0003723,GO:0003724,GO:0003729,GO:0003824,GO:0004004,GO:0004386,GO:0005488,GO:0005575,GO:0005622,GO:0005623,GO:0005634,GO:0005730,GO:0005737,GO:0005773,GO:0005829,GO:0006139,GO:0006401,GO:0006402,GO:0006725,GO:0006807,GO:0006810,GO:0006811,GO:0006812,GO:0006813,GO:0006950,GO:0006986,GO:0007154,GO:0007165,GO:0008026,GO:0008150,GO:0008152,GO:0008186,GO:0009056,GO:0009057,GO:0009892,GO:0009987,GO:0010033,GO:0010035,GO:0010038,GO:0010468,GO:0010605,GO:0010608,GO:0010629,GO:0015672,GO:0016070,GO:0016071,GO:0016441,GO:0016458,GO:0016462,GO:0016787,GO:0016817,GO:0016818,GO:0016887,GO:0017111,GO:0019222,GO:0019439,GO:0023052,GO:0030001,GO:0030968,GO:0031974,GO:0031981,GO:0032991,GO:0033554,GO:0034427,GO:0034620,GO:0034641,GO:0034655,GO:0034976,GO:0035864,GO:0035966,GO:0035967,GO:0040029,GO:0042221,GO:0042623,GO:0043170,GO:0043226,GO:0043227,GO:0043228,GO:0043229,GO:0043231,GO:0043232,GO:0043233,GO:0043928,GO:0044237,GO:0044238,GO:0044248,GO:0044260,GO:0044265,GO:0044270,GO:0044422,GO:0044424,GO:0044428,GO:0044444,GO:0044446,GO:0044464,GO:0046483,GO:0046700,GO:0048519,GO:0050789,GO:0050794,GO:0050896,GO:0051179,GO:0051234,GO:0051716,GO:0055087,GO:0060255,GO:0065007,GO:0070013,GO:0070035,GO:0070478,GO:0070481,GO:0070887,GO:0071310,GO:0071704,GO:0090304,GO:0097159,GO:0140098,GO:1901360,GO:1901361,GO:1901363,GO:1901575
EggNOG free text desc.nuclear-transcribed mRNA catabolic process, 3'-5' exonucleolytic nonsense-mediated decay
EggNOG OGsCOG4581@1,KOG0947@2759
COG Functional cat.L
Best tax levelEukaryota
Best eggNOG OGNA|NA|NA
BRITEko00000,ko00001,ko00002,ko01000,ko03019
Hectar predicted targeting categoryother localisation
Exons34
Model size7251
Cds size1866
Stop1
Start1
Relationships

The following polypeptide feature(s) derives from this mRNA:

Feature NameUnique NameSpeciesTypePosition
mRNA_P-fluviatile_contig10.866.1prot_P-fluviatile_contig10.866.1Porterinema fluviatile SAG_2381polypeptideP-fluviatile_contig10 3090943..3099604 +


The following UTR feature(s) are a part of this mRNA:

Feature NameUnique NameSpeciesTypePosition
1622815402.8903925-UTR-P-fluviatile_contig10:3083812..30843201622815402.8903925-UTR-P-fluviatile_contig10:3083812..3084320Porterinema fluviatile SAG_2381UTRP-fluviatile_contig10 3083813..3084320 +
1693561767.8420267-UTR-P-fluviatile_contig10:3083812..30843201693561767.8420267-UTR-P-fluviatile_contig10:3083812..3084320Porterinema fluviatile SAG_2381UTRP-fluviatile_contig10 3083813..3084320 +
1622815402.9015822-UTR-P-fluviatile_contig10:3089423..30895621622815402.9015822-UTR-P-fluviatile_contig10:3089423..3089562Porterinema fluviatile SAG_2381UTRP-fluviatile_contig10 3089424..3089562 +
1693561767.857281-UTR-P-fluviatile_contig10:3089423..30895621693561767.857281-UTR-P-fluviatile_contig10:3089423..3089562Porterinema fluviatile SAG_2381UTRP-fluviatile_contig10 3089424..3089562 +
1622815402.9129415-UTR-P-fluviatile_contig10:3090145..30902471622815402.9129415-UTR-P-fluviatile_contig10:3090145..3090247Porterinema fluviatile SAG_2381UTRP-fluviatile_contig10 3090146..3090247 +
1693561767.8673346-UTR-P-fluviatile_contig10:3090145..30902471693561767.8673346-UTR-P-fluviatile_contig10:3090145..3090247Porterinema fluviatile SAG_2381UTRP-fluviatile_contig10 3090146..3090247 +
1622815402.9234667-UTR-P-fluviatile_contig10:3090835..30909421622815402.9234667-UTR-P-fluviatile_contig10:3090835..3090942Porterinema fluviatile SAG_2381UTRP-fluviatile_contig10 3090836..3090942 +
1693561767.8809478-UTR-P-fluviatile_contig10:3090835..30909421693561767.8809478-UTR-P-fluviatile_contig10:3090835..3090942Porterinema fluviatile SAG_2381UTRP-fluviatile_contig10 3090836..3090942 +
1622815403.1491666-UTR-P-fluviatile_contig10:3099604..30997161622815403.1491666-UTR-P-fluviatile_contig10:3099604..3099716Porterinema fluviatile SAG_2381UTRP-fluviatile_contig10 3099605..3099716 +
1693561767.990697-UTR-P-fluviatile_contig10:3099604..30997161693561767.990697-UTR-P-fluviatile_contig10:3099604..3099716Porterinema fluviatile SAG_2381UTRP-fluviatile_contig10 3099605..3099716 +
1622815403.1597192-UTR-P-fluviatile_contig10:3100406..31004821622815403.1597192-UTR-P-fluviatile_contig10:3100406..3100482Porterinema fluviatile SAG_2381UTRP-fluviatile_contig10 3100407..3100482 +
1693561767.998004-UTR-P-fluviatile_contig10:3100406..31004821693561767.998004-UTR-P-fluviatile_contig10:3100406..3100482Porterinema fluviatile SAG_2381UTRP-fluviatile_contig10 3100407..3100482 +
1622815403.1726642-UTR-P-fluviatile_contig10:3101013..31010851622815403.1726642-UTR-P-fluviatile_contig10:3101013..3101085Porterinema fluviatile SAG_2381UTRP-fluviatile_contig10 3101014..3101085 +
1693561768.00539-UTR-P-fluviatile_contig10:3101013..31010851693561768.00539-UTR-P-fluviatile_contig10:3101013..3101085Porterinema fluviatile SAG_2381UTRP-fluviatile_contig10 3101014..3101085 +
1622815403.215348-UTR-P-fluviatile_contig10:3101920..31020571622815403.215348-UTR-P-fluviatile_contig10:3101920..3102057Porterinema fluviatile SAG_2381UTRP-fluviatile_contig10 3101921..3102057 +
1693561768.0129976-UTR-P-fluviatile_contig10:3101920..31020571693561768.0129976-UTR-P-fluviatile_contig10:3101920..3102057Porterinema fluviatile SAG_2381UTRP-fluviatile_contig10 3101921..3102057 +
1622815403.2275865-UTR-P-fluviatile_contig10:3102613..31031381622815403.2275865-UTR-P-fluviatile_contig10:3102613..3103138Porterinema fluviatile SAG_2381UTRP-fluviatile_contig10 3102614..3103138 +
1693561768.0203907-UTR-P-fluviatile_contig10:3102613..31031381693561768.0203907-UTR-P-fluviatile_contig10:3102613..3103138Porterinema fluviatile SAG_2381UTRP-fluviatile_contig10 3102614..3103138 +
1622815403.2390058-UTR-P-fluviatile_contig10:3103366..31034551622815403.2390058-UTR-P-fluviatile_contig10:3103366..3103455Porterinema fluviatile SAG_2381UTRP-fluviatile_contig10 3103367..3103455 +
1693561768.02768-UTR-P-fluviatile_contig10:3103366..31034551693561768.02768-UTR-P-fluviatile_contig10:3103366..3103455Porterinema fluviatile SAG_2381UTRP-fluviatile_contig10 3103367..3103455 +
1622815403.250857-UTR-P-fluviatile_contig10:3103982..31041061622815403.250857-UTR-P-fluviatile_contig10:3103982..3104106Porterinema fluviatile SAG_2381UTRP-fluviatile_contig10 3103983..3104106 +
1693561768.0350933-UTR-P-fluviatile_contig10:3103982..31041061693561768.0350933-UTR-P-fluviatile_contig10:3103982..3104106Porterinema fluviatile SAG_2381UTRP-fluviatile_contig10 3103983..3104106 +
1622815403.2610726-UTR-P-fluviatile_contig10:3104954..31050581622815403.2610726-UTR-P-fluviatile_contig10:3104954..3105058Porterinema fluviatile SAG_2381UTRP-fluviatile_contig10 3104955..3105058 +
1693561768.0427508-UTR-P-fluviatile_contig10:3104954..31050581693561768.0427508-UTR-P-fluviatile_contig10:3104954..3105058Porterinema fluviatile SAG_2381UTRP-fluviatile_contig10 3104955..3105058 +
1622815403.2711701-UTR-P-fluviatile_contig10:3105386..31054801622815403.2711701-UTR-P-fluviatile_contig10:3105386..3105480Porterinema fluviatile SAG_2381UTRP-fluviatile_contig10 3105387..3105480 +
1693561768.0500393-UTR-P-fluviatile_contig10:3105386..31054801693561768.0500393-UTR-P-fluviatile_contig10:3105386..3105480Porterinema fluviatile SAG_2381UTRP-fluviatile_contig10 3105387..3105480 +
1622815403.2812486-UTR-P-fluviatile_contig10:3106347..31064431622815403.2812486-UTR-P-fluviatile_contig10:3106347..3106443Porterinema fluviatile SAG_2381UTRP-fluviatile_contig10 3106348..3106443 +
1693561768.0604436-UTR-P-fluviatile_contig10:3106347..31064431693561768.0604436-UTR-P-fluviatile_contig10:3106347..3106443Porterinema fluviatile SAG_2381UTRP-fluviatile_contig10 3106348..3106443 +
1622815403.2910223-UTR-P-fluviatile_contig10:3107258..31073691622815403.2910223-UTR-P-fluviatile_contig10:3107258..3107369Porterinema fluviatile SAG_2381UTRP-fluviatile_contig10 3107259..3107369 +
1693561768.0682068-UTR-P-fluviatile_contig10:3107258..31073691693561768.0682068-UTR-P-fluviatile_contig10:3107258..3107369Porterinema fluviatile SAG_2381UTRP-fluviatile_contig10 3107259..3107369 +
1622815403.301023-UTR-P-fluviatile_contig10:3107874..31092671622815403.301023-UTR-P-fluviatile_contig10:3107874..3109267Porterinema fluviatile SAG_2381UTRP-fluviatile_contig10 3107875..3109267 +
1693561768.0760615-UTR-P-fluviatile_contig10:3107874..31092671693561768.0760615-UTR-P-fluviatile_contig10:3107874..3109267Porterinema fluviatile SAG_2381UTRP-fluviatile_contig10 3107875..3109267 +
1622815403.31586-UTR-P-fluviatile_contig10:3110404..31104971622815403.31586-UTR-P-fluviatile_contig10:3110404..3110497Porterinema fluviatile SAG_2381UTRP-fluviatile_contig10 3110405..3110497 +
1693561768.083646-UTR-P-fluviatile_contig10:3110404..31104971693561768.083646-UTR-P-fluviatile_contig10:3110404..3110497Porterinema fluviatile SAG_2381UTRP-fluviatile_contig10 3110405..3110497 +
1622815403.3308148-UTR-P-fluviatile_contig10:3111051..31111641622815403.3308148-UTR-P-fluviatile_contig10:3111051..3111164Porterinema fluviatile SAG_2381UTRP-fluviatile_contig10 3111052..3111164 +
1693561768.0910397-UTR-P-fluviatile_contig10:3111051..31111641693561768.0910397-UTR-P-fluviatile_contig10:3111051..3111164Porterinema fluviatile SAG_2381UTRP-fluviatile_contig10 3111052..3111164 +
1622815403.3462648-UTR-P-fluviatile_contig10:3111685..31117901622815403.3462648-UTR-P-fluviatile_contig10:3111685..3111790Porterinema fluviatile SAG_2381UTRP-fluviatile_contig10 3111686..3111790 +
1693561768.0982075-UTR-P-fluviatile_contig10:3111685..31117901693561768.0982075-UTR-P-fluviatile_contig10:3111685..3111790Porterinema fluviatile SAG_2381UTRP-fluviatile_contig10 3111686..3111790 +
1622815403.3583474-UTR-P-fluviatile_contig10:3112132..31122731622815403.3583474-UTR-P-fluviatile_contig10:3112132..3112273Porterinema fluviatile SAG_2381UTRP-fluviatile_contig10 3112133..3112273 +
1693561768.1054823-UTR-P-fluviatile_contig10:3112132..31122731693561768.1054823-UTR-P-fluviatile_contig10:3112132..3112273Porterinema fluviatile SAG_2381UTRP-fluviatile_contig10 3112133..3112273 +
1622815403.3779218-UTR-P-fluviatile_contig10:3112524..31126071622815403.3779218-UTR-P-fluviatile_contig10:3112524..3112607Porterinema fluviatile SAG_2381UTRP-fluviatile_contig10 3112525..3112607 +
1693561768.115768-UTR-P-fluviatile_contig10:3112524..31126071693561768.115768-UTR-P-fluviatile_contig10:3112524..3112607Porterinema fluviatile SAG_2381UTRP-fluviatile_contig10 3112525..3112607 +
1622815403.3941734-UTR-P-fluviatile_contig10:3113110..31132631622815403.3941734-UTR-P-fluviatile_contig10:3113110..3113263Porterinema fluviatile SAG_2381UTRP-fluviatile_contig10 3113111..3113263 +
1693561768.1265337-UTR-P-fluviatile_contig10:3113110..31132631693561768.1265337-UTR-P-fluviatile_contig10:3113110..3113263Porterinema fluviatile SAG_2381UTRP-fluviatile_contig10 3113111..3113263 +
1622815403.4116297-UTR-P-fluviatile_contig10:3113476..31135421622815403.4116297-UTR-P-fluviatile_contig10:3113476..3113542Porterinema fluviatile SAG_2381UTRP-fluviatile_contig10 3113477..3113542 +
1693561768.134012-UTR-P-fluviatile_contig10:3113476..31135421693561768.134012-UTR-P-fluviatile_contig10:3113476..3113542Porterinema fluviatile SAG_2381UTRP-fluviatile_contig10 3113477..3113542 +
1622815403.4258833-UTR-P-fluviatile_contig10:3113964..31148061622815403.4258833-UTR-P-fluviatile_contig10:3113964..3114806Porterinema fluviatile SAG_2381UTRP-fluviatile_contig10 3113965..3114806 +
1693561768.141784-UTR-P-fluviatile_contig10:3113964..31148061693561768.141784-UTR-P-fluviatile_contig10:3113964..3114806Porterinema fluviatile SAG_2381UTRP-fluviatile_contig10 3113965..3114806 +


The following CDS feature(s) are a part of this mRNA:

Feature NameUnique NameSpeciesTypePosition
1622815402.9649754-CDS-P-fluviatile_contig10:3090942..30909691622815402.9649754-CDS-P-fluviatile_contig10:3090942..3090969Porterinema fluviatile SAG_2381CDSP-fluviatile_contig10 3090943..3090969 +
1693561767.889842-CDS-P-fluviatile_contig10:3090942..30909691693561767.889842-CDS-P-fluviatile_contig10:3090942..3090969Porterinema fluviatile SAG_2381CDSP-fluviatile_contig10 3090943..3090969 +
1622815402.9758544-CDS-P-fluviatile_contig10:3091523..30916471622815402.9758544-CDS-P-fluviatile_contig10:3091523..3091647Porterinema fluviatile SAG_2381CDSP-fluviatile_contig10 3091524..3091647 +
1693561767.8989084-CDS-P-fluviatile_contig10:3091523..30916471693561767.8989084-CDS-P-fluviatile_contig10:3091523..3091647Porterinema fluviatile SAG_2381CDSP-fluviatile_contig10 3091524..3091647 +
1622815402.9942176-CDS-P-fluviatile_contig10:3091909..30922021622815402.9942176-CDS-P-fluviatile_contig10:3091909..3092202Porterinema fluviatile SAG_2381CDSP-fluviatile_contig10 3091910..3092202 +
1693561767.9100213-CDS-P-fluviatile_contig10:3091909..30922021693561767.9100213-CDS-P-fluviatile_contig10:3091909..3092202Porterinema fluviatile SAG_2381CDSP-fluviatile_contig10 3091910..3092202 +
1622815403.0056043-CDS-P-fluviatile_contig10:3092886..30930821622815403.0056043-CDS-P-fluviatile_contig10:3092886..3093082Porterinema fluviatile SAG_2381CDSP-fluviatile_contig10 3092887..3093082 +
1693561767.920919-CDS-P-fluviatile_contig10:3092886..30930821693561767.920919-CDS-P-fluviatile_contig10:3092886..3093082Porterinema fluviatile SAG_2381CDSP-fluviatile_contig10 3092887..3093082 +
1622815403.0162954-CDS-P-fluviatile_contig10:3093939..30941271622815403.0162954-CDS-P-fluviatile_contig10:3093939..3094127Porterinema fluviatile SAG_2381CDSP-fluviatile_contig10 3093940..3094127 +
1693561767.9290166-CDS-P-fluviatile_contig10:3093939..30941271693561767.9290166-CDS-P-fluviatile_contig10:3093939..3094127Porterinema fluviatile SAG_2381CDSP-fluviatile_contig10 3093940..3094127 +
1622815403.0275543-CDS-P-fluviatile_contig10:3094686..30949891622815403.0275543-CDS-P-fluviatile_contig10:3094686..3094989Porterinema fluviatile SAG_2381CDSP-fluviatile_contig10 3094687..3094989 +
1693561767.937021-CDS-P-fluviatile_contig10:3094686..30949891693561767.937021-CDS-P-fluviatile_contig10:3094686..3094989Porterinema fluviatile SAG_2381CDSP-fluviatile_contig10 3094687..3094989 +
1622815403.082013-CDS-P-fluviatile_contig10:3095940..30960931622815403.082013-CDS-P-fluviatile_contig10:3095940..3096093Porterinema fluviatile SAG_2381CDSP-fluviatile_contig10 3095941..3096093 +
1693561767.9448047-CDS-P-fluviatile_contig10:3095940..30960931693561767.9448047-CDS-P-fluviatile_contig10:3095940..3096093Porterinema fluviatile SAG_2381CDSP-fluviatile_contig10 3095941..3096093 +
1622815403.093566-CDS-P-fluviatile_contig10:3096650..30968001622815403.093566-CDS-P-fluviatile_contig10:3096650..3096800Porterinema fluviatile SAG_2381CDSP-fluviatile_contig10 3096651..3096800 +
1693561767.9526691-CDS-P-fluviatile_contig10:3096650..30968001693561767.9526691-CDS-P-fluviatile_contig10:3096650..3096800Porterinema fluviatile SAG_2381CDSP-fluviatile_contig10 3096651..3096800 +
1622815403.1030002-CDS-P-fluviatile_contig10:3097332..30974821622815403.1030002-CDS-P-fluviatile_contig10:3097332..3097482Porterinema fluviatile SAG_2381CDSP-fluviatile_contig10 3097333..3097482 +
1693561767.9604948-CDS-P-fluviatile_contig10:3097332..30974821693561767.9604948-CDS-P-fluviatile_contig10:3097332..3097482Porterinema fluviatile SAG_2381CDSP-fluviatile_contig10 3097333..3097482 +
1622815403.114992-CDS-P-fluviatile_contig10:3098219..30982941622815403.114992-CDS-P-fluviatile_contig10:3098219..3098294Porterinema fluviatile SAG_2381CDSP-fluviatile_contig10 3098220..3098294 +
1693561767.9678843-CDS-P-fluviatile_contig10:3098219..30982941693561767.9678843-CDS-P-fluviatile_contig10:3098219..3098294Porterinema fluviatile SAG_2381CDSP-fluviatile_contig10 3098220..3098294 +
1622815403.1247985-CDS-P-fluviatile_contig10:3098894..30990811622815403.1247985-CDS-P-fluviatile_contig10:3098894..3099081Porterinema fluviatile SAG_2381CDSP-fluviatile_contig10 3098895..3099081 +
1693561767.975418-CDS-P-fluviatile_contig10:3098894..30990811693561767.975418-CDS-P-fluviatile_contig10:3098894..3099081Porterinema fluviatile SAG_2381CDSP-fluviatile_contig10 3098895..3099081 +
1622815403.1379473-CDS-P-fluviatile_contig10:3099584..30996041622815403.1379473-CDS-P-fluviatile_contig10:3099584..3099604Porterinema fluviatile SAG_2381CDSP-fluviatile_contig10 3099585..3099604 +
1693561767.982999-CDS-P-fluviatile_contig10:3099584..30996041693561767.982999-CDS-P-fluviatile_contig10:3099584..3099604Porterinema fluviatile SAG_2381CDSP-fluviatile_contig10 3099585..3099604 +


Sequences
The following sequences are available for this feature:

protein sequence of mRNA_P-fluviatile_contig10.866.1

>prot_P-fluviatile_contig10.866.1 ID=prot_P-fluviatile_contig10.866.1|Name=mRNA_P-fluviatile_contig10.866.1|organism=Porterinema fluviatile SAG_2381|type=polypeptide|length=622bp
MNPFTPGGEDLSHGQGGEGERVKSADAFSGKPEHHEDMSDLAVAESFAAL
DRDSQIPLLSVPPNVMFSAGLTQEQVDQGQPLWAGQARRRRIIDEAMACA
GAADAAEAGGGGGGDESVGRQFEELPPPPRVGVAPKTAFRPSQQQRMQAP
KARPGEGGSTIDFSTLFAELDSDLGSDGESDDSDDDEDAAESASDTSVAA
SSHGIAKHADSRGELSGERLASGLEVLSLSAAGATATADGSKAEGGQERK
EAPLDSLLVAAAAGEAGGPRTPSAHQSMTEHLLKSPNERKQPFRSTLVSS
TASSTKGSFALAADKPARGEGGGVGRGAAAKNSGGGARWAVTELLDVSDF
DALVPRPAHRFPFTLDGFQKQAVARLERAECVFVAAHTSAGKTVVAEYAI
AMAQQHMTRAIYTSPIKALSNQKYRDFKTRFGDVGLITGDVSINPEASCL
IMTTEILRSMLYRGADLIRDIEWVIFDEVHYVNDSERGVVWEEVIIMLPD
HANMIFLSATTPNTVDFCEWIGRTKRKPVHVITTTYRPVPLEHHLYAGNE
LHPIMDNFGKFASNGYNAAAAVLMSKEDKKAAAGGRGGAKGGRGGRGGGG
GRGEGGEAGATRKAAGINGRA*
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mRNA from alignment at P-fluviatile_contig10:3083813..3114806+

Legend: UTRpolypeptideCDS
Hold the cursor over a type above to highlight its positions in the sequence below.
>mRNA_P-fluviatile_contig10.866.1 ID=mRNA_P-fluviatile_contig10.866.1|Name=mRNA_P-fluviatile_contig10.866.1|organism=Porterinema fluviatile SAG_2381|type=mRNA|length=30994bp|location=Sequence derived from alignment at P-fluviatile_contig10:3083813..3114806+ (Porterinema fluviatile SAG_2381)
CTCTCATGTAATGGACGAATGTTCGGTGTGTGACCAAAATGCACCGGAAA GCTACCCGCCTCAGACAGTCGAGCGACTTGTTGCTGCTCAATTCGGTAGC AACGCAGTTCGTAGGCTTCGAGTCTTGTGTGGTAAATGTCTCGAGTCATT GAGCTCTGCTCTCTCTCCAAAGCTTGTAAGTGGATGCTACAAACGCACGT CATTCATGCTGGCCCCTCGCCGCCGCTGTTGGCGTGCAATCTCTCTCTCC GCTTCGACCTCGTTTGCCCTCTTAGAGCCCCCTGGTGCCTGCGCCAGCCG CGCTGCCTTTCCGCATTGTGTCCGTTGGTTTGGAAGGGGAGTCGGTGCTG GTGCCAACCTCAGCCGGAGTTGGCCAATCCGAAGACCAAGAACACGGACA AGGAGTGGACGCGAGTCGGCGAGATGTGATCAGCACATCCACGCTTCCCT TCGGGGTGTTGTCTTTGCCAACCTTTTCTCCGCCCTGTCGGCAGGAGCTT GAGGACAGGTGTGTGGTGTGACGTACGAACTCGTTGGTGGCAGTGTGCTT TATCGGTTTGTCGTGCGTGAACGACTCGCGCGCGGCCTTTTCCAAGCCGC GAGGACACAGTGACACCTGGGTCGACCAGGAACATCTTTGGGGCGTGTAT TGGTTCGTCATTAATTCGGTGCAGTACCCGCCTGCTTGTACGCACCACCT TTTTTCTATGCAGATTGCACATCTTCTTATTTTCGCCATTTCTTTTTCTC CAACCCAGACTTCCACTTATTTCTACACAACAATGACACACGAAACTTTG CACTGTCCACGGGGCACTTGCATGTCACCCGGGGCTACTTGACTGCAAGA AACCCGCTCGCACAAAGTCACCGTTCACACATACATGTACGGGCGAACAA ATACATTACAGCTACCCTTCGAAATCAATTCACGTGGTTCAAATGGCCAA GCTTCATCCCGGTTGGTCACTGTTGCGAAAGTTGGGAGTTCGCGCCCTGC CGCCCTGCCGGCGTGCCTTTTCATCCTCACACCTCTCCGCCGGCTCATTT CGAATCCTCGACCGGCTCGATCAATGCCCATGCTCCTACGGTTGCGTTCG CCTCGTCTACATGGCACGCATTTAGAGGCATCTTAACGCTGAGCTTTGAT CACATGCCAAAACGACGGGGTAGTCGTGCATGTGACCAGTCTGCTGGGCC GCTGCCCGGCTGGTCTGTCCCTAGAACTACCCAATACCACGCCGCAAGAA TACGCAACGCTTTTTCAATGCGTGATCCAGTTTTGCTGGAGGGTATTCTT GAAGCCCGATTCCGGCGGAAGCTCCATCGCGATGGTGTTGTCGTCGGGGT CGTCGTCGCTGTCTAGTTATGAACACGCACCTTGAGCATCGCCGAGGTCA TCACCTAAAAGATACTGCAAAACAAAAAAAAAAAACGCCCAAAAGGAAGG CGCGCATAAGACAGGCGCATTGAGCAATACCACAGCCGCACCCCGGTGCG TTCAAGTTGAAGGGGGAAGGCGAAATGAGAGCGAACCTGAAAAATCCAAA ACTTACCATGATCGTCGGAGCTTGATTCGCCACCGCTCCGCCCCCCGTCG CTGTCGCCGACCTCACCATCCCTGTCGGGCATCTCCTCGTCGATGCTCGT GTCCCCGTCCACGATTTTTGGGGCCCCAACTACGCCCCACGGAGGGTTGC GGTCGTTCAACTACCCGCCTGCCGTCATTGCTAACCCCGTCTTCTCAAAA AGGTGATGGCGGCACCCAGGCCAAGCGTCGATTCGCGCGGCCGGCCTTAC GATGAATCGCGCGAAGAGAGTACGCCGTGCACCAGCTGAAAGTTTGTAGG TCTAGCACAAGCATAGGTTTTTTGCATGTCCTGTTCATCGGGCTCCTTAC GGACTTCGACTTCGAGGAGGCGTCAATAGCCGGCATCGATGGGTTGGAGT TCGTCGGTCAACCCCGAGGGAAGCTGCCGACGCAGCGTGTTACACTCCCC TGGAAGAACTTGCTTGAACTCGTCCGTCGCCTGCGCGTGCAGGTTGACCG CGAAAACGATGGGCTGCTCCTTCGGGACACCACCCTCCGCCCCCTTGACG CTGCCTAGAAAGCTGATTTTTGCCCACACAAAGCAGGTCGGGCTATCCAT CAACGCGCAGTCCTGGAAGAACAAGTCCACGCCGGGGTCGGACACCGCGC TCTCGACCGCCGAAACTCTGCCCTTGCCGCGGAAAATGACTGCGGTTCGC AAATACTTGTCGCCAGGTCCGATGCAGGCGTCGACGGGCACTGATGATTC TTCGGATTTGGAAACGTCTGCCCTATTTGCACTCGCTTTGCTCCCGTCTC GTCCCATGTCGAGTTCAGGCCGTTGACGTCTGCGGGCCCAACGTGGTCGG CGTTGATACGTGCGTTCAGGCTGAAGCGCCCGTAGTTGGGCGATTTCACC GGAGAAATCTCAGCGCTGTTGTTCTCGATGGCATTTGCAAACAGTCCCGG CGGACGGCTCGTTCCTGCAGCGGCCGGCGAAGCTTCCTGTGGAAACTCTT CATCTGCGGAAGACGGTCCTCCACCGGTTTGTTCTTCATGTTTGTGCGCC TTCGTTCCGATAGATGGTGGCGCTTCGCTAACTTCCAGCACCACCGGTCC GATATCGCGAAGTCCTTTGCACGCGGGTCGTCCGGATAAGTTTCCACCAC GAGCTTCATCATAGTGACTCGCTCTCAATGCTCTCAGTTTTTTTTTGCGC CTTTCCCGCAGCAGCGAGTGAAGCATCTTCTCTGCGTCTCCGAACCACCT CCTCCCCCTGCCAGTCTTAAATAGGTCTCTCTTCAAGTCATCAGCCGGCT GTGATCAGCTTCTCAGCTTGACCATCCACTTTCAGTCGTTGAATGGAGCA ATGCTTGTCTTGTTTGCGAGGAACTGCTGACCCGACATGCGGTGAGCGCG CCAGAGTGCCTCCAGCTCTCGTAACTCCGCGGGCACATCAGCCCGCTTCC TGTTGCTGGACTGCGCCCTCTGGTCACCTCCTCGTGTTTTCTCTCTCTTG CTGCGTACATCGTCCCACCCTAGGCCATCATCTGGCGAATCTAGTCCAGC ATACCTTTGGATGCTTGTCTGCAGCTTGCACGTCCAGGTCCTTGGCGCGT GGTGCATCGTCGCACCCCCCGTAGTGGTGTGCCCACCCCCCTGCATGTCT TGAAAGCGGAGCTTGAAACATCTCCCGGGATACCCTTGCCCGACAGGGGT CGTGATGGTACCACTCGTCGCTGAGGCGCGTCTGAGCCCTTGTCCAAGAT GCCGAAGAGGAGCTGGGTGCACGGCACTAGTGTAGGGACCGACCTTGTTG AGCGGCGAAGGTCTTGGGGCAGTGAGGGCACTTCAACTTGGGAGGAGGAA GCGCGAATTGATAGTCGATATGGGTGACCTCCTCGATGCCATTGCGGATA CGCTTCATCTGCGATTAGTGGCATTAAAGCAAGTTCCGGGACACGTAAGT TAAAAGTGCATCAAAATTTGGAAAACAGTCCCCGAACTACACTACAACAG ACCAGCTTTCATTTTTGAATGGCAGCCGGATGCAGGCGATTGTCACATTT CGGTACCAGCATTAAGATATTGTGAGGTGGACTCGAGAAGCGTGTGTTTT CGGAGTCTTGACGTCCCAAAAAAGAGCAACCACGACGGGGCGTTGCCAAC CTTTGCACTTCGGCTGGGGCGAGATTCGGGAGGGTGGGGCGGCACAAAAA GGTCATCCTGCTGTTGCAGTGTAGCTTTTCAGAATTCTTTCACCCATTTG GCAAAGTCTGCCTACTCCGTTTTATGCGTCTCGAACAGCAGTCTCTCTCA CGCTCTCTCTCTCGCCTTCTCTCTCTCCCTCTCTCTTCTCTCTCGCTCTC TCTTGTTTGAGGGTGTGCACCCGCGTCGCCTCTGGTTCATAGCAAGCGGT GGTCTATACGAGGAGCACCAGCGGTTACAAGGTGTCTTGGTTGGATGGGA GATCGAAGAGGGTACTGCATCTGGGCGGTGCACGTTGGATTACCAATGGG ATTCACGGTGCCCCTTTGATGACATAGAGCATGCACACTATATTTTCGCA GCAAGTGATGCACGGACAGCATTTCATCAACGATCGCGGATTGAGGAAGC ATTTAGAATCTTCAACCAACTCACCGGCTTGTTTGTTGCTGCGGCCCAGC AGTTTGCGTTGTTGCTGTGTTTCGTGTTTGCCGCCCCCTTCGCTTCCTTG GACCCCGCGCTTCACCTTTTTCTGTGCGGACCGAATCGTCCTCGGTATCT GCGACCCACTCACCGCTGCTCAGCCCAACGCTGCTGACCCTGGTGCCCCG TCTCGCACAAGGTCTGGAACGTTGCCATCTATCTGCTTTTTACAGTCTTC CGCCGTAAGCGTGCCGCTGGGCACCAAGCCAGCCAAGCGCTCCACAGGCG ACCAACACTTCTCGTCGATGGGACTGTTGTCCATCACATGCTTCTTGATG GAACCTTTGGTGGCCGCTTTCTTCGAACGTGGCCAGCATCAACCGATCTC GACAACATCTCGAGGTTGCCGATGGATGCGGCTGACAGTGGCATTGCCTT CCTTGTTCAGGAAGAAGGCAAACGGTGGGAGGCGGCGAGTCAGGGGGTCC GTGGACACGATCTCGAGTAGATCCGTCCCCTTTTGGCGGTCAAACTAGAG GGCAATTGCCCGTTGTTTGCCCGGAGAGGCCGATTCGCGGCCAACCCTGA GTCCTCTGTTTCTTATTTCGGGAAATTCGAAATTGTTATGAGTACATTTC TTTGCACTCTTGGTTAATTGATCTCATTTTTTTGTGCATTTTTTCTTTTA CTTCACAAAATCTGAGCCTCGATTTCTTTCGAAGGAATTTCTTTCAAGCG GGCCGGCACTATACATTTTCATTGAGGTGAGCACGCGAGTCCCTGCTTGT CAGCATATCTTGTTCCTGTTGGCGCGTGCCTCCCGTACTCGTGATCCCAT GAGCCCGAATATTCTGGAGTTGCGACAAATGTTAGAATCGACACAACATG AGATTTACAGTCTCAATGCAAGGAGGCGTTGAATATTGCCAATTTTCAGA AGGCGACGTGTATGCCATAGCCGCTACCATATTCGAGATCGCAACCTCAT CTATTCGAGAAAGTTGGGTGCGAACCCTTAGCTGCTAGTTCTCCATTGAA CCCACGTTTGAATATTTGATCATGTCTTGCCCTCCCCGAAATTTGACGTA GACACGCCGAGGCGAACGCAGCGCGCGGGGACCAGATACAAACATTATGT CTTGCGAGGATGCAGGCCGCACAGGGCGTGCATCGCGCTGTCGCCTACTG CTCAGGTTCCATCATCAACGGCAGTATCTAGCGCCAAACCGCTCAAAAAA TAATCGCGAGATGCAAGAGATTTTCCAGTTTATATTCATGCACACAACGG TGAGGCATTTCTTTTGTGAACAAGTGGGAGCGAGATCTGACACCGGTGTG TTGGTGCAACCGTTTAGCAGCATTTCAAAAGGCTCAAGCAAGATGCATAC CTCGCAAGCAACATGCCTGCGTACCTAGCACAGGCCTGAACCTCCGCCCT TCGTTCCTCAGGTACCTCGGCATGTCGGCTCATGTCGCCGCCGAGACAAA GGAAGAAGGCGTAGACAAGTGGTTTGACAAGAACACCTGGCCAAGAAGTA TCGGGAATAGCCTCCTAACCGTTGCCATGTCTCGGGCAAGGTCAACAATG GTGAGTTCTCGTGTGCACAACAATTGTTTACATCCATCACGAGTGACGAG TGTTTCATTCCTTTCTTTCGCCATCGAACAAGGCCATTTTTTTGTACATG CAACGCTTGTGGAGTCTGTTGCGGAGAGTGGGTCAGTTGCTTTTGCCGTT TGTGAACCGACAGGCTTGGGCAGCACGATCGGCACCAAGCTCGCCGGCAT ATTTGATTCCAGATATCGCCTGGCACGGTGCTTTTGCAAGCTTGGGATTC TCGCTTGTTTGTAGGAGCAGGCTGGACGGCAGAGAAATGTACTGCCAATG CCCTACAGTGTGCTGTCGGCAAGGCTGGCCGTGAAAGGCAAGAATCGGTG TTAGGGCACGAAACCGCTCTTGCTCCTTTAATCGGTGTGGCATGTGACGC GTGCCCTTCATTATTGCCTGTTTTCAACATACCTCTGGCGTACTCAACCT TCCTACAGCATCCTCAGTGCACCGCTCTCGTCTCGACGCCATGTCGGGTG GGGTGTGCAGCACTGGGGCCGCAACACGCAGATTGTGATCGGCCAGTCTC GCTTCTTGCTGGTTGCTTGTGTGCGGATACCAGGCGGTGAAGCCGGCAGG AGACCTCAAGAACTTCCTCGGAAACTCTCTCGGCCATCACGGGCCGTTCC CCCCCGTCTGCGGAGATCTCGACAGTGGTTGGCAGGTGAGAATCCCACAC CATAGCGCTGGTTGCTTGCCTGCCTGCTTGCTCCCCTAAGGGCGACCGGA TTCGTTGGGTTCCTGGGGCAGCTGTGTTGTCATGCGGTAGTTTGGGTCGT GGTTAAATCACGAAGGAGATTTGGCGCGGTCTCTGATACCTAGCTATGGG GGCGTTGCGATAGAGAATGGCACTGCTTCCCCTAAAGCCTTACCCGTCGG GAGACTCTCTACAAACCATGATGATTTCGGAGTGCGCACGCAAGCTCGCC GCCACGGGGTGAGGACGATCGGGCGATGGGTGCTTCGGATGATACTGCGA GTGAGACAGCAGGCCGACTGGGCAACTATTTGGGGGGTAAAGCTGTGCAG GCACTGCCTTTTCGCCCGGTTCGTGGAGACCGTGATCATTATCGTGAAGG CCGCGTGAGAAAAATTCCTCAAGTCGAGCCGGATCGCCCCCGCCGCGTTT TCCAAAAATGCATACTCGTGGATGTTCTGGGGCGTGATTGTTGCTGGGCA TGAGAGATACTCGTACCTTTTGCTTCTCTTTTTTGTGGCGCAATGTTTGC CCCGCTTGTGCACGTTGGACAAGGTCGAGGAGGTGCGCCTGGAGGGAGAC AGCGTCGGCGGCTATTCCGTGGCCACTCTCGACAAGCCCACCACCAGGTT GTCACAGTACGCCAGGGGAAGACCGGGAGCATGAACCCTTTCACTCCCGG AGGCGAGGTGAGCTGGGCTTCGATTCGCCAGACCTGGGACATTGACTCGT GGATTCGATCAGCGCAATGTGAATGCGTGAAAGAAGCGGTGCAAACCGCG GAAACCATCGGCGGAGTTGTCCTCGCGTGAAACTGTTGGCTCAAGAATGT GGCGCACGCGTGCGCTCAAGGAGGCAATTGGCGACGGGTTCCAGTGTAAT TCCGCTGGGTTTTGTGAGGCCGCCCACTTTAAGCGATAGCTGTGACGGAG TAGTGTCAGGGTCCTCCGATACCTCTAGGAATGACACGTAGACTTGGGGC TACCGAAGCCGATAAGGGAGGGTATGAGCGCAGCCGCGGATTGCTAGGGC AGCTTGTGAATGCGTCAGCAACTGGAGATGGTTTTTGCTATATCGTCAAA CGCTCTTTGAATGCAGTAGGAGTCAACGGTGGCTGCTGGATTGTGCCAAA CTCTGCCCACGGTTAAGATTGTGTATGCTTACCAGCTCGCGCCACCATTC GCCCTGAGGCATACTCTGACCGATGCCGCCGCGGCCGTTACGTGCGGCTG CTTTCGGGCAGGACTTATCCCACGGGCAAGGTGGCGAGGGAGAGCGCGTC AAGAGCGCGGACGCCTTTTCAGGGAAGCCAGAGCACCACGAGGACATGTC TGACCTGGCGGTTGCTGAGAGCTTCGCGGCTTTGGGTGAGTGTCGCTCCG AGCACCGCAGAGGTCGGTAATGGTGCCCACTAGCGGAAATATATCAATCC GAGTCTTTTCTGCCTCTTTCTCTTTCTGAGATCAAGACAGAAGTGGGCCC TGCCTTCATTTGGAACCTGAAACTCCAACACACAGTAACACGGTAACACG TTGAGAATACGCGGCGCTGCGACATGAAAACGGCGGCCAAATGCACCAAT GGTCCCGCTCCCCCCTCCCTTCAACACTCGACTGCTTCCTCTCACAGATC GAGATTCGCAGATCCCACTCCTGTCAGTTCCGCCGAACGTCATGTTTTCG GCGGGGCTCACTCAGGAACAGGTGGATCAGGGGCAACCTTTGTGGGCAGG GCAGGCACGTCGGCGAAGAATCATCGACGAAGCCATGGCTTGCGCCGGAG CTGCTGACGCCGCCGAAGCCGGCGGCGGCGGCGGCGGCGATGAAAGCGTC GGGCGGCAGTTCGAGGAGCTGCCGCCCCCTCCGAGGGTAGGAGTGGCGCC CAAAACCGCGTTCAGGCCTTCCCAACAGCAGAGAATGCAGGTGCGAGTCA AGGTGCATCACCGCCCTCCCAGTCCTGAACTTGTGGTGTTGATGAATGTT ATCTACTCGCCTGTTAAGGCCCGAGCGGCGCCTTGTTTGGGTTGCACTTA CGATCATCAGCATTACCGTGGTCATCTCATCATAGCCTGACATGAGTGCT CTTGCTTTTTACCCCAGAGCCGTTTGCGCAGCGCTAAGTAGCGCAAATAC CTGACCGGGAACGGCAGGATTTCGATACATGAATGGCGCGGTTCTGTCGG TATACGTCACGCAATAGTGTTTGCATCGGCCGTCGTTGGATGCTCCTACG CGAACCCGATTTTCTCGACCTTCGCTCGTGTGACATTGGCCGTTATTTGG CTCTGCTTGTCGCCGGCTGGCATAAGGATGCAAAATTGCGGAGAGGTATT CGTGCCGAGCACTCCGTCTAAATCATGGGCATCACAACTCGCGTCATGCT AGGCAATTTAAGTTACTCCGAAGTACCTGGTATGTATTATCGTGCAAAGC CTTGGACCAGTACTCGCAGAGCTTTCAAGTCTCTCCACCTCTCCCGTTCA TTCCGACATTGGCCCATCATCTCTCCCTCCGAATCCATTACGCTCGCCCA TCACCGGAATGAAAAACACCCCCCTATTTTAACAGCGCGATCCTGCTTTT TTGCTACGATTGATCCCCGCGCAGGCTCCCAAAGCTCGTCCAGGCGAGGG AGGGAGCACGATCGACTTCAGCACCCTCTTTGCCGAGCTGGACAGCGACC TGGGCAGCGACGGAGAGAGCGACGACAGCGACGACGACGAAGATGCCGCC GAGAGCGCTAGCGACACCTCAGTCGCCGCTTCTTCTCACGGAATAGCGAA GCACGCAGATAGCAGGGGGGGTGACTGGGTGAGCCTTTTTGTGTTTTGCG TCATTCGGGGTTTCGGACAGCGTTTTGGGTGGCCTTGTTTCGGGTGTTTT TCGCACTTGACCGCGCCAAATCGCCGCGGTACGGTCACGCAGAAGTTGGA TAGACTTTTATGTCTGACGGACCATGCTCCGCTTCAAACGTGGAACGTGG CTGGAATGTGGCTGCGGTCCATGCGCTGGCTTTGACCGTCCAGTGCTTCA GTCGCTCGGCGGCTGGCGCACGTTGAGCAAACTGACCAGGTCCGACCTTT GTGGTCGTTGTTCGCTGCAGCAACGGGCTAGACGTTGACGGCGCTCTCTT GTCGCTCAGTTGGCCAGCATATTCTGCCCTTGCGGCTAACAGGAGAATAC GAATACGGACCGCACCAGCATCACGTTGCAGGCTCCGGTGATCGAACAAC CAGGGTCGTGCTGTTCCGCGCTGGCCCGGTAGTGTCACGCGATGGCTCGA GATTGTCATTCTTAACCCAGGTTTCGTGTATCCCACCCGCTGGCTCTTGT CTCTCGACACCGCTATCCTATTTTCGCATGCTTCTAGGGGGTCTCCCATA GGTTCCAGATTTGCGTGCTCCACATCTCTGTCCCCGTGTCTCGGTACACA CCAATTGGTGGCCTTCACCGTTCATGCATGTAGCAATCGGATTGTAGGTT TAATGTTATTGTTCGCAAGGACGCGGCGTAGCTCTTCAATTGCTGCGAAT GTTCTAAAAGAATCTTATTCACTTTAATGCACAAGTTGTTCACCATCACC AAGGTGTACAGCACTTGGTGATTTTTCTGCTCTCGTCCGCCTCGGGCTCA CGTCGCTTGTTTCCGGCCCTACTAGAGAGCTCTCCGGGGAGCGGCTGGCA TCCGGGCTAGAGGTGCTGTCTTTGTCGGCGGCCGGGGCTACGGCAACCGC CGATGGGTCAAAAGCAGAAGGAGGTCAAGAGAGGAAGGAGGCGCCCCTGG ATTCTCTGCTCGTGGCGGCGGCGGCGGGAGAAGCTGGGGGGCCGAGAACA CCCAGCGCCCATCAGGTAAATTGGGGTGCGGTTGTTTGTGCGGGCAGACA GCGTTTTGCCGTTGTGGGCGCCGCGTCACCGAGATATTTTGTGTAGTGCG CTGTGACCTGCGCAATGTGTGTGTTGTACAAGCGCCGAAGCGCAATCAGT GTGCCGCCGTTGGCGAAAAGTGGCGAGATACGCCGCAGGAGTGGGAGGCG GTGCAGAAGGGATGATACGCGCGGCATTTTGGCGCCTCGTTTGACACCCG GACCAAGTGCGTGTGCTGAAAAAATCAGACGAACACGCCGAAATTTAATT GTTGCCCACAGAACAACACATCGAAGTATGTGCACAAGCATGCCATCCGT TCGCCCGCTTCTCGTTCGATATGCGGGGAAACAGAAGTATGCTAATTTGC AAACGCCGACATAAACTCGTTGCCCGTAGAACTGCTGTGTGCAAGCATGC CCCGCGCCCACCCGCTCCGGCTGTGCGACATTATCCTCACCCTTCGTGCC GTGCGATTCGGCACTTTCACCTCTGTGCGTCTGGCGACCGCCTGCACGTT TCTTTCGGGCCTGATGCATGACAGTCCATGACGGAGCACTTGCTCAAGTC CCCCAACGAGCGCAAGCAGCCGTTCCGCTCCACGTTGGTGTCATCAACGG CGTCGTCCACGAAGGGCTCCTTCGCCCTCGCCGCCGACAAGCCCGCGAGG GGCGAGGGAGGAGGAGTCGGACGGGGTGCGGCCGCGAAGAACAGCGGCGG GGGTGCAAGGTGGGCCGTCACGGAGCTGCTGGACGTGTCTGACTTCGACG CGCTGGTCCCCCGCCCTGCGCACCGGTTTCCCTTCACCCTCGACGGCTTT CAGAAGCAGGCCGTGGCTAGGCTGGAGGTGCGAGTTGTTTGCGTTAGCCG TTTTTTTTCTCTTTGTTTCTGTGGACATTCGAAATACGAGTCGCAGCAGG CAGGTGACGTACCGGAGATCCCTCGGATTATTGCTTGGTAACGGCGTTTT TTTACTATTGATTGGAGTAGCTTTCACGCTCGGGAGAAAGCCAGGGTCTG AGTGGCTTGCTGCTCGGTGCTCTTGGTGCGTAGATGCTCGTTGTGAAACC GATTCCCCCCAGCCGCAGAAACCCGCTAATGTTGTGCACGTCCAATGGTT GTGAAGGGGAAGAAGCTGAAGGTGCCGCAGAGAGCCCTTAATCTTGTGTC CAAGGATCAACAAAGCGCGAGAGAAATGATTCGCTTCGAGTTGATCGATT CGGCGTCGACATCTCCCTCCCTCCCACGCCGTCATTTACATCGTTTGTCG ACCAATGTGGCTCAACACACACGGAGGGGGCTGTTCTGCATGCCACGCTT TGAAGAACCCGGGTCTCGAGCCCAAGTTAATTACTCCCATCGGCATTTTG CCGCGCTAGAGCTTGTTGCCGACGAGTGCCATCGCCGTCCATCACAACAA CCCGGGTGCTGACAGCTTTTCCCTTTCTTCGCTGCTTGTCTCACGCTGCT TGTCCCACTTTTATTAAACGGACGCAAGTGGCCATGTTGTCCCGCGGCTG TTGCTAGCTGAGTTGCGTTGGGCGCGTCGTTTCTGGGAGCGACTCTCGTG GGTAACCACTCAGTGAAAATGAGGGTCGTGAGTGCCCTTTTTCACGTACG ATTTCCTGCCGTTCGCGTCTCCGGCGTAGTGCTCGAGGGTGTGTGTATTC GGGTCGGCGCACTTTTGCTGTTTCCGGTTTATTTCGGGCGTGTGAGCCAT TTACAACGTATTGTCGCGTGGGATTGCGTTTTACCGGTCACGTGTTCCCC GTTCCGTGCCATCTTGCTTGTATACCAGAGAGCTGAGTGCGTGTTCGTGG CGGCCCACACGTCGGCTGGGAAGACGGTGGTGGCCGAATATGCCATCGCC ATGGCGCAGCAGCACATGACCCGCGCCATCTACACGAGCCCCATTAAGGC CCTCTCCAACCAGAAATACAGGGATTTCAAGGTAAGGACCGCGGCGCCTT CCATTGTACATCAGGTGCTGTTGGAAGGCGTCTCTTTTTTTTTCCCGGGA GCTGTCAGACTCAGTCCATCCGCAGGCTATTCATGATATTTGCAGTCGCA AGGCGGACCGCTGTTCCCTTTGTCGAGCAAGGACGTGGGTTTTTTGGATG AGGTTATGAATCCATTAATTTTTCCTGTATTAATAGCGGTTTGCTTTGAT GTACTCTTTTCGTCTTGATCCTTTTCCGGTTTTCAACAAGAATGCGGGCG TGTTCATTGGACACCAGGCGATGATTTCGCTCAATATAATTTGACTGGTC AGGCGATGCTGTTCTCCAGTACGGGCTCGCATGCTCACCCAAAGTCTGCG CTGAATCCGATTCTCCATTCCAATGGTGGCGATCGAGAATATCTAGCTTG AGTGGATTGTTGGCGTGGGTCCCCATGCCATGTGAAACCAAGTAATTCAA CCAGTTCGCTCCATCAGTTGCAGCTTCTTGCTTCAAATATCCCCGTGTTC TTCTTGAACATGTGTCCATGTTTGAAATATGAGGTCAGACCCGGTTTGGA GACGTTGGCCTTATCACGGGCGACGTGTCCATCAACCCGGAAGCGTCCTG CCTCATCATGACCACGGAGATCCTCCGGTCGATGCTCTACAGGGGAGCCG ACCTCATCCGGGACATCGAGTGGGTCATATTCGACGAGGTAATATTCCGT GCCTTCTTCGCCTCCTGGGTGCCTTGATGCACTTGGGCCTCAGGATCAAA CCGTGAAATCCCAAAAAATCGACCAACCGTCGTGGAACGTCTCGTGAGAG CCGGCCGCCCTCGCTCTGAGCATTTACTCACGCTGTCTTGATCAATACCA CTAATTTCGAAGGTTTTGCCGTGGTCGATCGCCTCATGCTATGTGAAGTG CCCGCGGGAATCGAGCTATGTCTTGTCCCGAGCCAACGCCTCACACGCCA CACGGGTCCGATGTATTATCGCCGATGTGTGCAACGAGATTCTATTCGGA ATGTTGTTTGTCAAGCCTTCCACCGACGCGGATATGGCCACGACTTAACG GACTACGTCGGGGGTTGTCCCGCTCGAACAGAAGGCGCGACACATCCTCT CCTGGAACGACCCGACCGCCTTCACAAAGTCGAGCACCATCTCACAGCGG GCCTGTGTGTGGCCTTTTTGTGGCCCATGATGAGTAACCGCCGTGGTTCT TTTGACGCACGACTGGGCAGGTGCACTACGTGAACGACTCAGAACGGGGC GTGGTGTGGGAGGAGGTAATCATCATGCTACCGGATCACGCCAACATGAT CTTCCTGTCGGCCACCACGCCCAACACGGTGGACTTTTGCGAATGGATAG GTCGCACTAAGCGGAAGCCGGTGAGACGCTCCACGTGTGCTATGGGTGTG TGTGCGTGTGCGTGCACGTCGTGCCAGATGCCGCCCGTCTTCGCCGTAGG AGGGGATGGCGCCCATGCCACGCTTCGAGTGAATCCCTGGTGCATGCACC GCCGTTTAGCATTATTGCTGTTTGTGTTATATTCCTGGGGCATGCACCGC CACAGTTAGCACTGTTGCTGATGTGTTCTTGACTCTCGTCCATAATCCCA CGATGGGAGCATTGGATTGGGTAAACCTAAAGGCAGTGGCAAGCGGTGCT TCTGGCAGTACCTCGAGTTGCGAGCGCAATGAAGACCCAGGGTGACGTAG CGGTCAGAGCTTCGTGGATTCATAAGCACGTAGCACACGGCATGCCTTCA CCTTCACCGCTAAAGCTTTGGGATCACGCTCTTCCCCTGCCACTGGTCGG GGTCTTCCCACTGAAGTTCGGTCTTGGAGTTCAAAGTGCCGATCTACCCA CGATTTTTTGGTCTGGAAAAGACAGCGTTGATCTAGCAGCTGTGTTGTAA CCTCTCGTGAGTGTAAAGTGCTCCTCACCAGGGAGTACGGTGAAAGGTGA GAGCGGCTGTGGTTGTATCCTCGACATGCTTTTTCTCGTCCTGAAGTACA CGCGAAGGGTAAACCACCCTTTTACTGCTCGCTCGCTGCAGCTCGTTGTG CCTCGACTGACGCAGCCGTTGGCGCTTCCCTTTTGTGGTGGATTGGTTCC CCCGCAGGTCCACGTGATCACCACAACCTACCGGCCCGTGCCGCTGGAGC ACCACCTGTATGCAGGCAACGAGCTACACCCGGTGAGGGCAGGACCCGTG CTCGGGGTTCAACGTGCTCCCGACCGATGTTGTTTCCAAACGAGTTCGGC CCCAAACCCACCTGAAAGCTGCGCCGTAATGAGCCTGCGGTGAGCTTCTC TGTTCGGTTACGATTTCTTTCATGCAGCCCCTGTCTCGAGTGCGGCGTGT TTCTGGGAGCAAATGAAGTTGCCTCGCGGGAGACGATCGTGCACGCTGAC CCGTATTCTCAAAACAAAGGAATGCCACATTTTTTGCTTTCGGACATGGC GCCGGCTTTGTGTGTTGTTGGGTTCGCACTGTTGCCGAGTCTTACTGGTT GCAAATCACTCTATGTTGTTGTGATTCCGTGGTTTTGCCTGTATCCCAGC ATGGAGTTCTGCCGTTCATGGCGGTAGTGCAATTGCACTCGCTAGCCAAG AGCAGTCCATTCCCCTGCCTGCTGAAATATAGTGTATTCAACATGGTGCC TCTTTCAACGACAAAGACGGTCAACTTGAAGTCCATCGTTGACGGATGGG GACACGTTATGCCTTTTCTGCTTTCTGCCTCTTCTCCTCCACCCGCTCTG TACCTCCGCCCATTACCCTCTCGATCTCTCAGATAATGGACAATTTTGGC AAGTTCGCGTCAAATGGGTACAACGCGGCCGCCGCGGTTCTCATGAGCAA GGAGGACAAGAAGGCGGCGGCGGGAGGGAGGGGAGGGGCCAAAGGTGGCC GGGGTGGGCGAGGCGGGGGGGGCGGGAGGGGCGAGGGGGGAGAGGCGGGC GCGACACGCAAGGCAGCAGGTGAGCTCAAAACACTAGGGAGTCGCTCCTA CTCGGACGTTTCCGTGAAACGAGTGATCCGGAGGCCTTCATTTTACTTCT TTTCTCTGTTGATACGTCTTTCGGAGAGTCACGGTAAACAAGTGGTTGGC TTGAAGCGATGCTTTGAGAAAGGACGGACTGCAACATCCGAGTTTACTTA TCGCAAAGAAAATGCCACTTTCTTCAATTTGGCGAACCCCGTGTACGTCG TTGCGGTAGGCAGCTCGTCTTGCATCAATGCCGCTCCCACTACCAACTCT GTGCGTTCCTGCCTGATGCATTGGGAATTCGGGCCCCCGAGTTGGAAATT CGCACAGAAGTTACTCTTAAAATCGAACGGCTTGCCGAGGCAAGGTTTCA ATTGCTTTCGAGCATCCGCGACGGAACTCAGCAAACGATGTCCTGCGCTT CGGGGCCCCACTTCTGTCCGTTTTCAGCTCACCCCAATGGCTTTGCATCT TGTGTTTCGTGGGTGCCTGCAGGAATCAATGGCAGAGCTTGATCAAAAAG CTCGAGAAGGACGGGCTGCTGCCGGTGGTGGTGTTCTCCTTCAGCAAGAA AAAGTGCCAGGAGTGCGCCGAGGGGCTCAGCAGCGTCACGCTCACCACCG CCAAGTGAGCTCGCTGCGTTTCGTCACGTGTTGAGATGACGGTGCTTCAG GTCTTGAATCTCTTTGATGCCATGTCATTCTCCTTCTGTCGAAGTTGTTG CACCAAAGGTGCCGGTTCGAGGCTTTCCGCCCGCATCCGCTTCATCCATA GCGCAGGTGCAGATAACGACCAATAAGTGAAAGTTTCGCTGCGATCTACG AAGTGTTGATCCCTGTTTGGGAAGCGGTGGATGTGGTGGAGAGCAGCGTG TCACCAGGCAGCGAGCTTAAGGTTTAGCCGTCCTGATGCACACCGTTTTC GTCGTCCCACGAGATCGAGGAGCATTTTTTCTCTTTGTGTTCGAAACTCT ACGACGGCAAAATTTGGGCCTAGGGATCCGGAGCAAAGGCGCACAGAGCG GGTAAAAAGATCACTGATTATTTTGTCGTGGCTCGAGCTTTCGACAGGGA GAAGAGGTAGGGCTAATGAGAAGACACCCAGCGAATAAACTGCAATGCCA CGCCACCAAATTCAACTGCGTCAGCGCCAGTTCAAACCTCCTCGAAACAA CGACGCTTTGCCAGCGTCAAGGCACTAGTGTGTCCCTCGGCTGTCGTTGA ATGTCGCTACTGCAGGCTGCCCTGTCCGTCTGGTTGCTCTTCTGTTCTCG AAGCTTATCTTTCTCTCTCTCTCTTTTCCGTCTGACATGAACAGGGAGAA GAGTGAAATTCACGTGTTCTGTGCGAGCGCCGTGAAGCGGTTGCAAGACC AGGACGCCCAGCTCCCCCAGGTTCGTGAGTTTGTGGAATTTTTTCGACTC TGTGATGTTTGTGAGCATTGATGTGGCGAAGTATAATTTTCCTACTGACG GACATCAAACGTTGAACGTTTCTCCTCCTCGAATAAGTACACGATCATTC ACCTCAAAGACGGCATGCAACGGGCAATGCGAATGCTCTTCTACGCCGTC AGTAGTCACCAGGACGCGATCTTCTCTGACCGCGCCGCAAGAGCCCGTGG GTCTGCTGGTTTCGACAGAGCAGAGTCAAGCGGTCGATCTCCCTCCGTTG ATTTTCTCTTCCTCTCGGCAGTTGCAGCCGGTCCTCCTTTTCATCTCCAT TACTCGGGTAGACCCGCGTCGATTCTACTCACGTCCACACGCTTTACCCG GCACACGCGGAAGACCTGCACTTTGCCCGTCTGCTCCCCTCCCCCCTGTC TGTCTGTCTGAATTTGGTAACCCGTCTGTCTGTCTGCCTTTAGCCTGCCG CTGACGTAGCATCCGCATCCCGCGTTTCCAATCTCGCAACGCGGTCTGCA GGTCCTGAACTTGAAGGAGATGCTGTCTCGGGGCATCGGCGTGCACCACG GCGGCTTGCTCCCGATTCTGAAGGCAAGTTCATGTTCGCGCTTGGCTTGG ATGCCCTGGCCATGCTCTTGGTTTTTGAGCTTCACTCCTTGGCATCCTTT CTGTCGTATACGCGGAGCTGAGAGCATCGTTATTCGATAACGTATGGTGT GCTCGTCCTTTGCATTTATAGTGCAACGCAGCGGGTTCACTCTGTTTCGC AACGTGAAACACACAGACCGACCTTTTTGCACCACACAGTCGGCGTCCCC ACCGTTTATCATCTCAAGCCCACCTGCCACGACACGCCTTCCTTGGTCGA TCCCTTCCCTCCTTACCCTGTACTGCCACGTCTGCTGCACCCCTCTTTTT ATATGACAACGCACGGGTCTTTGTCTGTATCAAAGTGGGAAGCTCTTGAC TCGTATCGCTTAGCGTGGATGTTGTCTTCATTTTTGAACGCACGGCTCTG TTCTCGTGAGCATGGCAAGGGGGTGCTGCAAGTGTCCTGATCGCCACCCA GAGAAGCTTGCTGAAAGGTCTTCTGTCCCAAACCTCGGACGCGTTTGCTA GATTTTCCTCGTGCCGCTTCGGGTCGTGTAGTCCTGGAGCATGTGGGGGT TTCATGGCACCGGGCTCGGTGTGTTTTTTTCCGAAGGTGGTCACATCATT TCCAGGTGCCGGAAATTGCTGCAGCGGCACTACCATCAACAACAACCACA AAGCTTGCTGCGTCGGTGCAGGGGGCACCTTCGTCGTTTGTCATTGAGTT GTATGGTTCCCTCTTGTGACATCGCGGTCAACTTTGCGCTAACCCTTTGT TTTGTTCTTGTGCCGTCGCGCTGTTCTCTGTGGGTGGATTGGATCTTTCA AACCGCAGGAGATTGTAGAGATCTGCTTCAGCCGCGGGCTGGTCAAAGTG CTGTTCGCCACCGAGACCTTCGCCATGGGGGTTAACATGCCCGCGAGAAC GGTTGTCTTCAACGGGACCAGGAAGCATGACGGGAAAGACTTCAGGTACA TGGCTGTTAGGCTCTGTCTGTTTTCGCGGTGTTTCCCCAACCCATTTAAG CTTCACCATGGAAAGCGAGCGTAGGTCATTAGTATCTTCAATCGTACGTC TGCTTACGAGCTAGCGCCTTCGTTCCCACTGCTAGGCGGGGGGCATTGCC CTTTTGAACCACAGCTACGGAAGGGTTTTGGCAGATCGCATTTGGAATGC CTTCTGCTTTTGTTCACCTTTTTGTGTCACAACACCGTCGCCTTTCAATC GAACCAGCCGTTGTGAAATTTGGAGCCATTGCTCGCACACTATAGCCTTG AAGGACGGACTCAGCACCAAAACCAATGAGTCTAGCTTTGTTCGGAGTAC GAGCGCGCACGCGCAAGGGAAAGTGGCTGTGACCCCTGATGGCTCCGAGT TGACGATGACGCGAAGCTTGTCAGAGGCATTCAGCCTTGGCGTTTCTGTG CTTCAGTTCTTGCCCGGACACCGATTCTCACTTGCAAATGGGGGAGGAGA TCTACTTCGAGACTTTTTTCTGCCACGCGGCGGCGGTTCGGTGAATTTCA GGTGTTGGCTGCCGAACGCATCGGGTTTTGCTCTGTTGTGGACGGCACCA GCTGACCTCTACGTACATCGATGGGGCGTGTGCCACAGCCTGGGCGCGGT TCACACGGCTGCGCACACGATCGATCCTTCCCGGCGTACGGTATCGGTCG AAGCATGTGTCGGTTTGTGCTGGAAGTTTCAACACGTGCAGAGACCACTC TCGCGTCCGCGTACTTGGCAGCCGGCGCAGGGAACTTTTGTCGGGGTGTG AGGAGCGAAACCCCGAAAGCGGACCGCGTAGTGGGCTCGGTGTTTACCGA ACTCCCTTCGAACCTCCGAACCCCTCCTTACACATATTCCAGCGCCTTTT CGAAGCGTCTTGTGCTTGCCTTGCCGCCGTCGCATCATACCGGCCGGTTA CGCAGGGACCTTCTCCCGGGTGAATACACACAGATGGCGGGACGGGCAGG CCGGCGAGGGCTGGACAAGGTTGGCACGGTAGTAATCACCTGCTGGAGTG AGCCTCCTCCGCTTGTCAACCTCAAGGTGCGATGTCCGACATTTTCTCCT TCTTTGGTTGGTCTGGATGATTTGGAAGCCACCGCCTCGTCGGCTTGTGG GAGGCGCGAAGATGCTAGGGTTCTTCTTTGCTCCACTGACGACCCGCACG CACGTGCACCATGTGCTCCACATCAGTGTGGGTTGCGCGCGTGCCGTTCG ACCCGTCGCCGCTTCGTGTGACGCGCCAGTTCTTTTCTTCGACTTTTGGC GCAGATGATGCTCACCGGTGCCGCCACCAAGCTAGAAAGCCAGTTTAGGC TGAAGTGGAATATGATCCTCAACTTGCTTCGGGTGGAGGACATGTGAGTG AGCAAGATGATTTGCGTTCGCTGCGGTGTTGAGGTTTGGCGTCAAGCGTT GCTGGCGTTCGGGGGGCTCTTGTGTCTCGCTGGCCCGGCGTTTGTTTCGC GTTCTCACTCGGTGTGTTTTAAAAGTTTCGGAACTGAGGGAGATCAGGGA TGTGGAGAGATGGTTGGGAAGGGCAGCCAGGAGGGTAGCCGCGCCGTTGT GCCACAGCGCGCCCCACACGTGAGCCAGTCGGCAAGAAGTTTGACGTAAA ACTTTTTTCTTGCAAAGCAGGGGACAGAAGGGATTCTCGGCCGCTGCGTT GCCGGCCGCTGAACTGATCCTCAATACTCTGATGCAAAATCTCTCCCTTT GCCCCGTCGGTACGAACGAAAGGTTGGGGGTGCGCTCATCGTCCCTCATC TGCCGACCTCGTTCGCGCTGCTACAAGCGCACAGCCCGTCGTTTACCTTG CGACTCACCGTCAAAAGCGTACATCGGTGTTCTCGCGAACTCAAAACACA CTCGCTTGCATCGAACGCAGGTCCGTGGAGGACATGATGAAGAGGAGCTT CAGCGAGTTCCGCACGCAGAGAGAGCTGGGGGCGTTTGACTTGCCGAAGC TCATGAAGAAGTGCACCGAGGCGCTGAACAACCTCAATGCAACGGTACGA AGGGAAAATGTCGCTCTACTTAATGCTTTCCTTTTTCGCGCGCAACGTTT GTTTGGTTGCGGCTGTTGGTCGTGGTTGACAGCTTGTCGTTCTAGTTATT TTTTATGTTGTTGCTGGCTCAACATCTTTCGCACCAACTGCATTTCGGTG CGCATCACAAGCCTGGCTGATCCACACGACCAGTACCCCTGTTGTCCAAA CAGATAACCGTTTCTCACGCTGCCGACTCTTGGCCTGTGATCCCGCGCCC ATTCCACAAGAGAGAGGTCTCGACAGCAAAGAGAGACGATACGCCAGAGG AAAATTTTCATGCTCACAGTGCAGAGTGCTTCACTGAAGTTCGTTTTTTG GGCCGTAACTTGACGCCTAGGAAACCTTAGCAAATATCCAGAGACTGCCC GATTTGGACATGTCGAGCTGCCCTTCGCTTTTTAAGGTGTTAAAATTCAG CGGGCGTTATTGAAAGATCAGGGTGAAGCACTAAAAGCTAGCGCTTCCAA TGTTTTGACAAGAATGTCGAACTTTCAAAATGGCTTGCTCCCTATGGTAG GGATTCATCGGCCATTCACGACTTCAAAGTCTTCGCACTTTTCCGGAACG CAGCGCACGCGGTCGTGCCGGTCCCTCGTGTTGCTGAGGTCACGTCTTAC TCAGATTCGCTGTGTGTTTGATGGCGGCGTGGCGAGTTTTCATTGTGATC CCTCAACCCCATAATTCGCGGCATCTCTCCACCGGGAGCAGCATCAATGT GCGTACGTTTGCAGTATGGAGTGGGACGTGTGTCTCATTTTATGTTGTCG GCATCTGAACCCCCTCATTTTCTTGTGCGCGGGCCGCAACAGGCGGAACC ATGCATCAGGTCCGAGCAGTCGACGATAGAGGAGTACCACCTCCTGAGCA CGATGGTATCGAAGCGGTCGAGTGATCTCCTCGACTACGCCATGAGGTCA GTTGATGCCATGTGAACCTGTACGCCAGGTTGCTTTTGTTGGTGTTGCTG CTGCTGCTGGTGCTGATGCTGCTGCTGCTGTTGATGCTGCTGCTGTCGTA CTTGTTCTTTTTTCTGAGGACGTTTTTGTTGTCATTTATCAACCTGTGAC GTTGCGAATGGGTGGTCGCCACACGACTACAGGAATCGCGCGTTGTCAAA AGCCCGTTGTGTCCTTGCTGGATTTTAGCCTGTTTGACCCACCATAGGGA GCCCAGCAGACCCCACGTTGTGTTCAGGCCGATCATCGAGCATCCATTTT TTATCGGCTGGCTTGTGCCCCCAGGAGCTCGAAGAATGCTCGCGTTTTGC TGGGTCCGAGGCGTGGGCTTGTGATAACACACAAGAAGCTGGTCAACGCG CCGGCAGTGGTCCTCCGGGTGAGCGGAAAGGAGAAACCGAAATTGAGGAT TAGAAAACAGAGGGACTGACCTTGGTAGAGTTGCGCGGGTGGTCCTAACG GCTTCACCAAAAGCTTTTGCTGGTCGCGCGCGCCTGAATGCCAACATCAC ACCGAATAAGCTTAGCAGTGGAGAGACCTCTGTAGTGCGAGGGTGGGACG AAAATTTCCCCGCACTCTATCGGGCACCCGCACTATTCAGCAGTAGGTAG AGTATACTGGCCAGATTTTAGTACATTTATATGAGAGAGCTTTCATGCTA ACGGTATTCACCGCACTATACCGAGGACCTGCACTGTCGAGTCGACGATT TACGGGGCCGCCACTGTGCTGTATTCATGATCTTGACGGCACGTGTGACA TTGTTGATGATCTGGATTGGAAACTTAGTCTTCGATGAAGCATCACCAAA ATGAACGCCTTGGCGAGGTCGCGGCGGACGTCGCGTAGCGTTTCGAATTT CGTGGGTGTGCGAGTGTGCTCGGGGCAGGCTCGCTGCGCCGTTGGTCGAC TGCGCCATTCGACGCAGGTGGTGCTCCGATTGGCGCCAATATGGTGTGGG CACGAAAGCATGTTGCTTGTGTGTCAGCGAGCGACTTTCGCCTCCGCATG TCAGGGGGTCAACGCAATAATCAACCCGAGTTGAAAGCAATATCATCCTA ACCTCCGCAGAAACGTCCTGGAAGAATTTCAACTAGGAAAGGGGGAGATG TGATCCTTCATGAAAGAATTGCGTTTAGAGTTCGGTATTACAACCACAGA AACGAAGTGCTGCAGCGGAAGTCTACCGATTTTCTTTTTTCGACGCCTTT TGCGTCCTTCTTGCCTGCTCTCTGTCGTCCACCAGGGCCACGACGATCCT GGAGGCCGGGGAGCGACGACGGCAACACACTCCGCTGGAGGCGCTCAGGA TTTCTTGAGAGATGCCCGATCGCAGGCGCAGGTGAGCGGGCGAATGAGAT GGACGGCGACGCCCCCGACTCGCGGAGTGCGAAAATAGAGCGCTTGCAGG CATCTTCATTGGATAGGATGGGATACCTGCACTGCAGAGTAAAGGACGGA ATAGTATTTTAACTTGGGCGTTTCCACAATTGCGGAGCACTTTGTTCATA CACTTGATCAATGTTGTTCCGATCGAGTGGTGGAGCCCGTGTTAATGCCA CGGATTCGTTTGCGAATAACTTATCCCGCGATCCTTTCAAGTTGGCTCTT GACGAGAGCGATTGTATTGAATGTTCGGAGGCGCTTTTCTACCCAATTCG AGACAAACTTGGGATGATATCGGGACTTCAAACGATTCGCCCGCGCGTCA TCCTTCGAAAGATTTCCGTGCGGTGTATGGCTTGCTCACTTCCCCAATCA TCGTTCTGTGGCGATTCACGTCGAACGGGGCGATTTGGCGAAGTCCGCGA GGTCTCATGTGTTTTACCATGTCCAGGCTTGGCGAATATGTAGCCTGCTC CAATCGCGGTGATCTGTTCTTTACTCAAGGCATGAGCAAGCAAGTTTTGG TGCGGGAATCTTGTGAGTATCGTTTACCCAGAAATGGCAAGCGTTTTCGC CCACGGCGTCGAGGTTGGAGAACCCCTACCCTGCCCCCTTCCGCTTCCAA GTCGTGCCTTAGTTTTGAGAAGCGAAAGGAGTGAGAGGGTGTTTTATTGC AGCAGAAGAGTGACCACCTCCTCTTCCCGTTTAACGTACCAATCATACGT ACCAATCACGTTCCTTTCTGCAAATAAAAAAATTGGCGTTTCGCAGGGCT CGCTACAGGGAGCTGCGCCATCGAGCGGAACACCAGTTAAAATGCTGGTC CTGGCTTTGTGCCACGAGGGTTTCGTCAAACCCGCAGAGGCTATCTCAAC CGGCAAGGTGAACGCGATGTACGATGCACGAGTGTCCGGTCTTTCTAGTT GAGGTCAGCGCTGTACCTCGATGGCCTTGATGGCCCCTGCTCTTCCCTTT GAAGCTACCAATGCAAATGCCACCCGCGCTTGGAGGCAGGTAGACGTCTC CTTTTCGTCGGCATGCAAGCGATTTTGGTTCGCTAATGTTCATGGCTTTG AAGCCCAAATGAAATGAAGCGCGAGCACACACATTGTCCGTTCCAACCAT TACACATGTGCGGGCAGTAGTTGCAGGGCACCAAGCGTTGCTTATCATTC TAGCGAAAAAAAAAATTTTCCCGCCTTATGTGGCGGCATGAGACGGACTG GCACGGGAGCGACCGCGGCAATCACTTGACCATTCCTTGTCGATTGGCAC CCTTCTTCACAACTTCCTCTCTCGCAAGGTCGCTATATTCTTAAACGCGT GAAATCTGCACGTCTAGAACAAATCGACCAACGAACCCACTCACCAACGA ACAAACCCTCAGGGTACCGGAGCAGCAGAGAACGACCCCATCGACTCATT CGTAAGGCCAATCGGAAACGTGGTGATGAAGCGGAAGGGAGACGACGACG ACTGGGGTTGGGGCGGCAGCGGCCGCAAGGGGGGTACGGGGGCCAAAGGG AAAGCCTCCTCGGGGAGAGGAGTCACCAGCCAGTCGGCCACGCGGCGAGG TAAAGCGCTCAAGGCGGGCGAGTACGGGGAGGTGGCCGGCCGTATATTTG CGGTGCTCGAGGTGAGAGGGTAGCGAGAGAGCGACTTTTTTTCTTCTCTT AGTTCATCGTGAGCTGCTAGAGGAAAAACTTGGCGAAGCGATCTCTTTCG TGTTTTTTTGCTCTGCTGTCCATTGGAGTATTCGACACCCGTGGTTCGAG AGAGAAAGGTTTTGCTTTCTCTCATGGTGTCATGAGGTACATTAGGACCT GATGTTTCTCGCGACTCGTCGGTGACGACGGCCTCGACGCCTGCTTGCGC CCCCGCACGACCCGTAGAAAATGGGTGGGGTTCGAGAGGTAGGATATGCA AGGGGGTCTTGTCTACGAGTAGCTTGTCATCAGCTGACACAAATGCCACA GCAGCAGTCGGCCAGCCGAGATATTCGGGCTTCAATGTCGGCACCCTAAC GGACCTTCTACAGGGCGGAAAACTAAGTAGCCCGCAGGGAAGCGATACGC ACTCTGCTGTCTACCGAGCCCGTGAAGGTGTGTGTGGAAGACCTGACTAT CTGGAAATCCGGTATGGTACGGGTCGTGACCGGTTTTTGTACAGGAACGA CCTTACTTGGTCTTGTATCGGATCGTCGAATTTTTCGAACGCAATTCGCA GATTTTGCACTTCTCCAGCATTAGTCCCCGGTGTTTCAAGATGTCCGCCG GTGCTTTCCAGCCGTCCGCCGTTGGAAACGTTGGCTCCGAGGTGCTTGGT CTCGAGGCACTTCTCCAGCGTTTAGCTGTGAGGATTGCTTCCACCCACCC GGGTGACAGCCTGTGACGAATGAATCAGGCGTCACAAGGATGTGCGGGGT TGGTTCTATTACGCTCTTTGACGGTTTTTCAAGAACAGTCTTTGTCAGGT TGCGGTAGCAGTTTTGCGGCGTTGATCACAACGTTGAAGGAACCAAAAAT ATCGAGGAATGGAGGCACCGTTACAGTCTTCAGACCTTGGACGTTCATTA GCCGAGCCCGGCAGTCACTTACAGAGGGACGAGGCGTCTTCGATACCCTC AGAACTTCAAGACTTGCGCTGCCAATCGATGAAAACATGTGTCATTGGCA CAGGTGGGGCTCGGCGACATCGTGAGCCTGGCGAAGGTATGGAAAAAGCT CAACGCGGAGGACCTACTGGGAGGCGACACGGGGGCATTGTCCTCCGCCG TCGAGGTGCGGGTGCACTCGATTCCGTGTCCTCTGCCGTTAGGGCTCCCG CCGGTCGAAAAAAACCATCCAGTTGCGGCGTTTTCGAAATGTTCGTCGTG TCGAAGGATGGATTACCTTGTACTGTTGTTCGTTAAGCGGTCGGGCGCGG TGCCGAAAGGCAGTTGGCGCGACGCCGGCTCATTTGTTGGAGCTCGTCCG AGGGCCCTGAATGCCCAACCGGGTACAGGTGGGGTCGGAAATGAAGTCCG AAAAGCTTGAGGAAGTATAGGATCTTTCGTCAAGTCCAAAGTCGCTGTCC TCGGCCGGTGGTTGGTCGATGCGGGAATTGGCCAGGTACTTGCAGCAACG AATCTCACGGGAGAACTGGCAGAATGAGCAGGTCGACACTGTAAAAATGT CATTCTAAGCCACGGTGTGTGAGAGTGTGAAAGTTCACGCTCTCGGTTGG AGGGCATAGACGAAAGAATTGAGCTAGAAAAACATTGATTGAAGTGGGCC GGAGGGTATCAAGCAAGTCTTGGCCTTGATATTGAGACCACACCAACCGG ATTTCTTCGACGCGAGCTCATTCGCTGATGCTCAGTTGACTTTGCCTGTT GTTTCGTCGACGGGTGCCTTTTGGCCTCGACACGAACACTTGCTCTTCCT GTTTGGCTCGGATGCATTTTTTGCACGTGTTGGGAAGTCCCATTCGGCCT TATCGAAAGCTGGATTCACTTACGGCGGCAACTTCCATCTCCTAGGTTCT TAGATTGGATTGTGGATGTTGCTGCGAGACCATGTCTGTCATCCCTCTCT TCTTGGTTTTTGTGCAGCCGCCGTCAAATGGTGATCGACCGGTCGTTGCT GGCTACAGCATTCTGGGTCTCGATCTTATCTAACGCTTTTCCTCCCAGCT TCACGTCCGGTATAATATCCTTCCACGTTTTGAAATCTGACCGAGCCGCC TTTCGTAGCCCTCGTCGCTGCCCGCTTCTTTGCTCACGGCCGTCTTCGCC TTTCCCGCCGCCGTGCTTCATCTCCGGCTTCACGAAACATTGGCGGATTG GTTATCGGTGCTTCGTTGTTGCCCCTCCCCTCCCCCCCCCCGCCCCCGTA TTGAACTTTGGCGGTTTCATGAATCGGTGCTGATGCGAACAGGCGTTGGT GGAGATGGAGGGCACGATGCCTTCCGAGCGCGATCGGAgGGGGGCCTTCA CGCATCTCAATCTCGCCAGCGAGCTTAAAGTTCAGGTATTTGTCGTGCGT TGCCTTGCGTTGGCTGTGAGAGTTTTTTGTGAGTGGCTTGGGTGATGTGA CGCAAACCTTTTGCTTGACGATCCGTTGAGCTGCCTTCCACGCTTTCGCG CTCATGCATATTCTATCTGGAACTGAGCCTACATCTCTGCTACCGTCTTA TGAGACGTTTTCTGTCTGTTCCACCTCACTCCTTTCCATATGGTGGACCA TCAAGTACGCTCGGTCAAGCCAACCATCGCGAGGGATCTCCACCTTGCAT CGTCGGATGTCAGTCAACAATGAAGGACCCGTACCTCGTATAGAAGCGCC CTGAAGGACGATGAATAGAGTTCATGTGGAGGGTTTGCGTTCTTGTGCTT CCAAGTCATTTCGTACACATCTACACGCAGAGCAGGTCTGTAGAATCGCA GGCAGACCCGTGTGTGCATTTTTTGCACCCCATGTAGTCTGACGTCGAGC TTGAATTCCGATATCGTCGCAGGCACGTGTGTGCATAGAGAGCGCCCCAT ATTGTCTGACGTCGAGCTCGAATTCCGATATCATCGCAGGAGATTGGTTT CAGGGAGAGTTCAGCGGAGCTGGTCAGCGTGCTCGACAGCCGTGCGGCAT CCCAGTGCCACACATGCCCGAAGCTTTCGGAGCAGTACCACCTGCAGCAG AAGTAAGGACCGCCCAGGTTGCACGGCGCTGTCGTCCACAGCGCGACTTC TTACGTTTGTCGGGCACCATGTGTCCTTAGACGAGTTTCCCTGCCGATGG GTTGCGCGTCTGCCGCCAGAGCTGCATAACTGCGATGTTTTTCCAAAATG CGAACTCTGCGAGGCCACAGCGGTAGGTGCGGGGTGGCCTCACCTGTCAC CGTAACCTGAAATGTCCCCAATTTCCCTCAGCGCATTATCTGCGTTCTGT TTTTATCGTACCAATGGTAACTGTCGCCTGCCGCAGCTTCACGTGCACTA TGCTTTCAGGCCTGCTTGTTCCGAAGAAATGTACCGTGCTTGTGCCCATC GTGGTCACGTCCGAATGACGCTTTTGAGGTGACCTGGCTGCTCTTTCCCC ATGTTTTCCCTCGCAATGGTCCGTGTAGGGTGTGGGCTACGACGTCCGCA TCACCAATGAAGCCTTCGCTTGTGATATGTTCATGTTCGCGGTGATTATG TGTGCCCTGCCCACCACCGATAGGCGGGATAAGCTGCAGAGGCGGGTCGA GCTTTTGCAGCACACCTTGAGTAGCGAGGCCTTGTTGCTTTTCCCAGATT TCCAGCAACGCCTTGGGGTGCTCAGAAGGTACGATTACTGTGGGGTTCGA GTAGGCAGTTCACGGTAGGTGGTGTTAGGACCCACGCGCACTCCGGTGGC AACGTTCTGCTCAAAGGGCGCGATCGAGCCGGGGTCGGGCTTTGATGAAA TTTGAGCCCGCGCACGTTTGTGATGCCGCATCGTCCCGCAGCGTTGTTGT ACAACCTATGACGGACGTTGTAGATCTCAGAATGCTCCCAAAATCGAACA TCCTCACACGTCGCGCTTGGAAACATCATATTGAAAGTCACAGAAGCACG TTTTTCTGGCGGCGCCGTGGATTTGACAACACGCTCATCACCTCCTTCGG TGTTTTCTTTTCGCGTCCAGCCTTGGCTACTTGGAAGGAAACACTGTTCA GCTCAAGGGAAGGGTTGCGTGCGAGATCAACACGTGTGACGAGCTTATCG CTACAGAGATGGTGTTCGAGAACGTGCTCGAGAGTCTCGACCCCCCCGAA ATCGCAGGCGAGTCTTTGAGCGAACACTGCCATGATTTGCGATCGTGGAC TTCTTCTATGGCTCTGACAGTTCCCCCTCTGTTTCGCTCCGGTCACCAGG GAAGTGCTTTGCAATGTTTTCGTGTCCCGACGCCTGTCTGGTGGACGCAA GGTGATATCGTTGCACCTTGGTTGTGCCAATCGCTCGCGTGCTGTGATGG GAAGCTCCGCGTGTCTGTAATGCTTGTCGCTTTTTGATTTTGTGCTCATG GGACACCCGCAGGAATCCTGTCGGCTCTGATTTTCCAAGAGAAGACACAG AACGAGCCACCCCTGACAGATAGGCTTCAGACTGCGGTCGCCCAGGTACG GAATAAAATTCGGAGGCAGGATGTTGCGTGTGGACGGCATGAAACGCTGA CAACCTCTTTGGGAAGATTGCAGGGTCTGGGGCATGGACAAGCTTGCCAT TTCCTTGCCTTTTGGTCCGCGGAATCCAAGCTTTGTGTCCTATCGTTTTC TCATCTCAATGTGGGAACGAAACCCACGCTGGAAGGCCCGATCGTAGCGC GTGACAATCTAATACTCGAGTATATTCCAGCCCGTGTATTGCCTGCAGCT GATTCCCTACTGAAGTACATCTACCCACCTCTCTGATTCGCCCTTCTGCA AACATCAATGTTTTCAATCGGCAATCTGCCGCGCAGCACAAGCTGATCAT CCACTGCGTGGAACTGCGCCATGTTCACAGGCTATTGCAAATTGCATGCA GCGATGGACTTGAGAGTTGCCCTCGGTATCATGTTGCTCGCTTCGTCCAA GTGCGGTCCATTCCTTGTGCGGGTTGTCCCTTCCCAATCTTGCCACAGGT GGTGACCATCGCCCGAAGCCTCGGGAGGCTGCAGCACGACCACGGCCTGC CCATAGACCCCGAGGAGAACATCAAGCTGAACCTCAACTTTGGCTTGGTT GACGTGGTCTACGAGTGGGCCAGAGGAGTTCCATTCTACGAAATCACGCA GGTAACGATGGATGCGGTCGAACCCTTGCGCATATAAGCTGGGGGTATTT CAACCATTGTTGCCCGTGGTCGTGCGCGATGACGGCGAGCCAAGTGAAAA GGCCGGGCTGGCTCATTTGGTGCGTGCGGTAGTCTCAGACGAACCCCGTG GTTGTCCGGAGCGCCTCACCAAGGCTGCTATCTCTGTTCCCGCTTTTGGC CGTCGCCCCTGCAGATAACCCTGGTGCAGGAAGGCTCGGTGGTGCGCACC ATCACCCGCCTTGACGAGCTGTGCCGTGAGGTGAGAGAACTGTAGCTCGT TAGATGCATTTTCCTTGAAAACGACGAGCGCATTTTCAGTTTCACCCCCA GACCCCGTAACGAGCACGCCGGGGCCGCAGGCTAATGCTTTGCTTTATTA AAAAAAAAACAGTGCATTGGCTGATTGCTTGCTGTCGTGGTTTGCCTGTG TATCCCGTCTGCTCGTGCTCGTGCGCAATCAAGTGCTCCTTCGTGTGGGC GTGGGAAGGGAAGACTGCTGGCTGCACGTCTATGACCACGGGTTCGATAG ATCGAGCTAATGTTTGGATTCGGTTTTCATCAACTGAGTGATCTGCGTGC TCTTCAATGTCGTCACTGCGTGCTACCCATTTAATGATATTCAACATTCC GCTCGTCGCCTTTCCTCGCGTGTCACTGATTCGGCACTGAATCTGATGGC AGATACGGAATGCTGCACGAGTCATCGGCGACCCCACGTTGTACAGAAAA ATGGAAACCACGAGTCAGCTCATCAAACGCGATATCGTTTTTGCTGGTTC TCTCTACGTGACCTGACTTGTACCTGATTCCATATTCGACGCGTCAAGGG GGGAGTTTGCACGTGCACTCGTGCTTCCTGCACGAGCCCAGGTAGATTTT TTTTTTAGTTCCCGCATCGTGTTCTGGCCGAGTTTGTGTGCTCGCGACAG ACTTGTGAATGCATTGCGGGTGGATCCGTCAAGTCCCATAATCAGCGCGT TGAGACATTTTTTCGTGCGAGTGTTTTTCCGTTTGTTGTACACGTTGCAG ATCAACTGGGGAGCTTAGAATGCTGCTCCAATCTAAAAAGGTGTGGGTTC TTGCCGAGAATGACGAACATCCTCGTTTTGAATTTCATCTGCGGACTATT TGCTCCGATCCTTCCGCCTGCTCCGAGCTCACGATAGCCTCGCATGCGAG CCCATGTTGATTTCCTCCCAACATATCGCCTAGGATTCGAATTTCCTTGA AGCCTTTGATGGAAACTATTTACGTAATACTTCGTAAGGGTATCTTGCAA GCGCTCTTTGTTACTTCGCAAAACGTGTGCTACTGGGACATCAACAAGTT CACCGTGATTCAGGCCCCGCTCTTATCTGCATATTCCATATTGTTGCAGT GGGACCCACTGTTGTGGGTGCTTGTTCTCCAAACAGCGCGTCGGAATTGA GCACCTGTTCTTGACCCCAAATTCTTACGTTTTGTTTATTTTCAGTGTCG ATTTTTGAAGTGCCCGTTCGTCAAACTGGGCTTGCTCTGCATCT
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Coding sequence (CDS) from alignment at P-fluviatile_contig10:3083813..3114806+

>mRNA_P-fluviatile_contig10.866.1 ID=mRNA_P-fluviatile_contig10.866.1|Name=mRNA_P-fluviatile_contig10.866.1|organism=Porterinema fluviatile SAG_2381|type=CDS|length=3732bp|location=Sequence derived from alignment at P-fluviatile_contig10:3083813..3114806+ (Porterinema fluviatile SAG_2381)
ATGAACCCTTTCACTCCCGGAGGCGAGATGAACCCTTTCACTCCCGGAGG
CGAGGACTTATCCCACGGGCAAGGTGGCGAGGGAGAGCGCGTCAAGAGCG
CGGACGCCTTTTCAGGGAAGCCAGAGCACCACGAGGACATGTCTGACCTG
GCGGTTGCTGAGAGCTTCGCGGCTTTGGGACTTATCCCACGGGCAAGGTG
GCGAGGGAGAGCGCGTCAAGAGCGCGGACGCCTTTTCAGGGAAGCCAGAG
CACCACGAGGACATGTCTGACCTGGCGGTTGCTGAGAGCTTCGCGGCTTT
GGATCGAGATTCGCAGATCCCACTCCTGTCAGTTCCGCCGAACGTCATGT
TTTCGGCGGGGCTCACTCAGGAACAGGTGGATCAGGGGCAACCTTTGTGG
GCAGGGCAGGCACGTCGGCGAAGAATCATCGACGAAGCCATGGCTTGCGC
CGGAGCTGCTGACGCCGCCGAAGCCGGCGGCGGCGGCGGCGGCGATGAAA
GCGTCGGGCGGCAGTTCGAGGAGCTGCCGCCCCCTCCGAGGGTAGGAGTG
GCGCCCAAAACCGCGTTCAGGCCTTCCCAACAGCAGAGAATGCAGATCGA
GATTCGCAGATCCCACTCCTGTCAGTTCCGCCGAACGTCATGTTTTCGGC
GGGGCTCACTCAGGAACAGGTGGATCAGGGGCAACCTTTGTGGGCAGGGC
AGGCACGTCGGCGAAGAATCATCGACGAAGCCATGGCTTGCGCCGGAGCT
GCTGACGCCGCCGAAGCCGGCGGCGGCGGCGGCGGCGATGAAAGCGTCGG
GCGGCAGTTCGAGGAGCTGCCGCCCCCTCCGAGGGTAGGAGTGGCGCCCA
AAACCGCGTTCAGGCCTTCCCAACAGCAGAGAATGCAGGCTCCCAAAGCT
CGTCCAGGCGAGGGAGGGAGCACGATCGACTTCAGCACCCTCTTTGCCGA
GCTGGACAGCGACCTGGGCAGCGACGGAGAGAGCGACGACAGCGACGACG
ACGAAGATGCCGCCGAGAGCGCTAGCGACACCTCAGTCGCCGCTTCTTCT
CACGGAATAGCGAAGCACGCAGATAGCAGGGGGGGCTCCCAAAGCTCGTC
CAGGCGAGGGAGGGAGCACGATCGACTTCAGCACCCTCTTTGCCGAGCTG
GACAGCGACCTGGGCAGCGACGGAGAGAGCGACGACAGCGACGACGACGA
AGATGCCGCCGAGAGCGCTAGCGACACCTCAGTCGCCGCTTCTTCTCACG
GAATAGCGAAGCACGCAGATAGCAGGGGGGAGCTCTCCGGGGAGCGGCTG
GCATCCGGGCTAGAGGTGCTGTCTTTGTCGGCGGCCGGGGCTACGGCAAC
CGCCGATGGGTCAAAAGCAGAAGGAGGTCAAGAGAGGAAGGAGGCGCCCC
TGGATTCTCTGCTCGTGGCGGCGGCGGCGGGAGAAGCTGGGGGGCCGAGA
ACACCCAGCGCCCATCAGAGCTCTCCGGGGAGCGGCTGGCATCCGGGCTA
GAGGTGCTGTCTTTGTCGGCGGCCGGGGCTACGGCAACCGCCGATGGGTC
AAAAGCAGAAGGAGGTCAAGAGAGGAAGGAGGCGCCCCTGGATTCTCTGC
TCGTGGCGGCGGCGGCGGGAGAAGCTGGGGGGCCGAGAACACCCAGCGCC
CATCAGTCCATGACGGAGCACTTGCTCAAGTCCCCCAACGAGCGCAAGCA
GCCGTTCCGCTCCACGTTGGTGTCATCAACGGCGTCGTCCACGAAGGGCT
CCTTCGCCCTCGCCGCCGACAAGCCCGCGAGGGGCGAGGGAGGAGGAGTC
GGACGGGGTGCGGCCGCGAAGAACAGCGGCGGGGGTGCAAGGTGGGCCGT
CACGGAGCTGCTGGACGTGTCTGACTTCGACGCGCTGGTCCCCCGCCCTG
CGCACCGGTTTCCCTTCACCCTCGACGGCTTTCAGAAGCAGGCCGTGGCT
AGGCTGGAGTCCATGACGGAGCACTTGCTCAAGTCCCCCAACGAGCGCAA
GCAGCCGTTCCGCTCCACGTTGGTGTCATCAACGGCGTCGTCCACGAAGG
GCTCCTTCGCCCTCGCCGCCGACAAGCCCGCGAGGGGCGAGGGAGGAGGA
GTCGGACGGGGTGCGGCCGCGAAGAACAGCGGCGGGGGTGCAAGGTGGGC
CGTCACGGAGCTGCTGGACGTGTCTGACTTCGACGCGCTGGTCCCCCGCC
CTGCGCACCGGTTTCCCTTCACCCTCGACGGCTTTCAGAAGCAGGCCGTG
GCTAGGCTGGAGAGAGCTGAGTGCGTGTTCGTGGCGGCCCACACGTCGGC
TGGGAAGACGGTGGTGGCCGAATATGCCATCGCCATGGCGCAGCAGCACA
TGACCCGCGCCATCTACACGAGCCCCATTAAGGCCCTCTCCAACCAGAAA
TACAGGGATTTCAAGAGAGCTGAGTGCGTGTTCGTGGCGGCCCACACGTC
GGCTGGGAAGACGGTGGTGGCCGAATATGCCATCGCCATGGCGCAGCAGC
ACATGACCCGCGCCATCTACACGAGCCCCATTAAGGCCCTCTCCAACCAG
AAATACAGGGATTTCAAGACCCGGTTTGGAGACGTTGGCCTTATCACGGG
CGACGTGTCCATCAACCCGGAAGCGTCCTGCCTCATCATGACCACGGAGA
TCCTCCGGTCGATGCTCTACAGGGGAGCCGACCTCATCCGGGACATCGAG
TGGGTCATATTCGACGAGACCCGGTTTGGAGACGTTGGCCTTATCACGGG
CGACGTGTCCATCAACCCGGAAGCGTCCTGCCTCATCATGACCACGGAGA
TCCTCCGGTCGATGCTCTACAGGGGAGCCGACCTCATCCGGGACATCGAG
TGGGTCATATTCGACGAGGTGCACTACGTGAACGACTCAGAACGGGGCGT
GGTGTGGGAGGAGGTAATCATCATGCTACCGGATCACGCCAACATGATCT
TCCTGTCGGCCACCACGCCCAACACGGTGGACTTTTGCGAATGGATAGGT
CGCACTAAGCGGAAGCCGGTGCACTACGTGAACGACTCAGAACGGGGCGT
GGTGTGGGAGGAGGTAATCATCATGCTACCGGATCACGCCAACATGATCT
TCCTGTCGGCCACCACGCCCAACACGGTGGACTTTTGCGAATGGATAGGT
CGCACTAAGCGGAAGCCGGTCCACGTGATCACCACAACCTACCGGCCCGT
GCCGCTGGAGCACCACCTGTATGCAGGCAACGAGCTACACCCGGTCCACG
TGATCACCACAACCTACCGGCCCGTGCCGCTGGAGCACCACCTGTATGCA
GGCAACGAGCTACACCCGATAATGGACAATTTTGGCAAGTTCGCGTCAAA
TGGGTACAACGCGGCCGCCGCGGTTCTCATGAGCAAGGAGGACAAGAAGG
CGGCGGCGGGAGGGAGGGGAGGGGCCAAAGGTGGCCGGGGTGGGCGAGGC
GGGGGGGGCGGGAGGGGCGAGGGGGGAGAGGCGGGCGCGACACGCAAGGC
AGCAGATAATGGACAATTTTGGCAAGTTCGCGTCAAATGGGTACAACGCG
GCCGCCGCGGTTCTCATGAGCAAGGAGGACAAGAAGGCGGCGGCGGGAGG
GAGGGGAGGGGCCAAAGGTGGCCGGGGTGGGCGAGGCGGGGGGGGCGGGA
GGGGCGAGGGGGGAGAGGCGGGCGCGACACGCAAGGCAGCAGGAATCAAT
GGCAGAGCTTGAGAATCAATGGCAGAGCTTGA
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