mRNA_P-fluviatile_contig8.14644.1 (mRNA) Porterinema fluviatile SAG_2381

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

Overview
NamemRNA_P-fluviatile_contig8.14644.1
Unique NamemRNA_P-fluviatile_contig8.14644.1
TypemRNA
OrganismPorterinema fluviatile SAG_2381 (Porterinema fluviatile SAG_2381)
Homology
BLAST of mRNA_P-fluviatile_contig8.14644.1 vs. uniprot
Match: A0A6H5L4N8_9PHAE (Tr-type G domain-containing protein n=2 Tax=Ectocarpus TaxID=2879 RepID=A0A6H5L4N8_9PHAE)

HSP 1 Score: 966 bits (2498), Expect = 0.000e+0
Identity = 629/843 (74.61%), Postives = 665/843 (78.88%), Query Frame = 3
Query:  702 KARKRAXXXXXXXXXXXDGTYKXXXXXXXXXXAEAAKAAMLAAGLDVPTGPAESGXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXKVDEEAEAKAPTEEEEQADGAVDDWEDAXXXXDSADVTELLGNITVKDGSSNGKFDDEEEDLIEKDRRDEQERLRKQGIRQQKXXXXXXXXXXXXXXXXXXXXRQILQAEMLKDEARRKRLAXXXXXXEARTKESLRSPIVCIMGHVDTGKTKLLDKIRQTSVQEGEAGGITQQIGATFFSKETLCEKVAELNETMKVDIRLPGMLVIDTPGHESFTNLRSRGSSLCDIAILVVDLMHGLEPQTIESLNLLRSKRTPFVIALNKIDRCYAWKSTPNAPARLSLEKQESDTKAEFEDRAMRIRTGEGDGEGPQHRAVLEERRPHPHRVHGANVCHHRG-GHPRLAL----VARQAHAAGEVDGEDNVHARPLGVHGAGGEGDRWAGHDDRRDHSQRPPQGGVRMTLDSIVVCTLDGPVVTSIRALLTPPPNRELRVKSEYVHHKVISGAIGVKLCATGIEKAVAGTPIMVVGQEDDEEDIKEEVMRDFTDLMKMDLEPKGVMVQASTLGALEALMQFLRKECDPPIPVFAVGIGSVFKKDVMRASIMNEKGTPEYATILAFDVKIDSDARKHAEENNVRIFTADIIYHLFDQFTAHMDRLMEQRRQDAKNLAVFPCIVKIMKEHVFNMKDPIIVGMEVVEGTLRVGTPLCIPALGGMEIGRVTSIEQNHREVDKVMKGANGAVRVDDAHGGSTLTYGRQFSADSGSLYSSITRETINALKAHFRDQV 3215
            KARKRA           +GTYK          AEAAKAAMLAAGL+VP+ P +                            XXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXX        KA  EEE  AD A DDWE  XXXX SADVTELLGNITVKDGSS+ KFDDEEEDLIEKD+                XXXXXXXXXXXXXXXXXXXXRQILQAEMLKDEARRKRL       EAR  +SLRSPIVCIMGHVDTGKTKLLDKIRQTSVQEGEAGGITQQIGATFFSKETLCEKV ELN+TMKVD++LPGML+IDTPGHESFTNLRSRGSSLCDIAILVVDLMHGLEPQTIESLNLLRSKRTPFVIALNKIDRCYAWKSTP+ PARLSL+KQES T AEFEDRAMRIRT E   +G       +   P  H V         G G P L L    + ++      +   D +    L V    G G       D    + R  +G      D+IVVCTLDGPVVT+IRALLTPPPNRELR+KSEYVHHK ISGAIGVK+CATGIEKAVAGTPIMVVG +DDEEDIKEEVMRDFTDLMKMDLEPKGVMVQASTLGALEALMQFLRKECDPPIPVFAVGIG+VFKKDVMRASIMNEKGTPEYATILAFDVKIDSDAR+HA+EN VRIFTADIIYHLFDQFTAHMDRLMEQRRQDAKNLAVFPCIVKIMKEHVFNMKDPIIVGMEV+EG LRVGTPLCIPA+GGMEIGRVTSIEQNHREVDK+ KGA+GAVRVDDAHGGSTLTYGRQFSADSGSLYSSITRETINALKAHFR+Q+
Sbjct:  230 KARKRAKAKEKLDRKKKEGTYKTKKQKEQEARAEAAKAAMLAAGLEVPSVPTDGATAGGGKKSKIVYGKRKPANKSKQAAPXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXX---XXVKA-VEEEAGADAA-DDWEXXXXXXXSADVTELLGNITVKDGSSSNKFDDEEEDLIEKDKXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXRQILQAEMLKDEARRKRLEREKAAREARNADSLRSPIVCIMGHVDTGKTKLLDKIRQTSVQEGEAGGITQQIGATFFSKETLCEKVEELNQTMKVDVKLPGMLIIDTPGHESFTNLRSRGSSLCDIAILVVDLMHGLEPQTIESLNLLRSKRTPFVIALNKIDRCYAWKSTPDGPARLSLDKQESGTTAEFEDRAMRIRT-EVMEKGLNTELYWKNDDP-THTVSMVPTSAITGEGIPDLLLWLVRLTQERLTEKIMFMPDLLECTVLEVKAIDGLGMTI----DVIIVNGRLKEG------DAIVVCTLDGPVVTNIRALLTPPPNRELRIKSEYVHHKAISGAIGVKICATGIEKAVAGTPIMVVGPDDDEEDIKEEVMRDFTDLMKMDLEPKGVMVQASTLGALEALMQFLRKECDPPIPVFAVGIGAVFKKDVMRASIMNEKGTPEYATILAFDVKIDSDARRHADENGVRIFTADIIYHLFDQFTAHMDRLMEQRRQDAKNLAVFPCIVKIMKEHVFNMKDPIIVGMEVIEGNLRVGTPLCIPAMGGMEIGRVTSIEQNHREVDKMGKGASGAVRVDDAHGGSTLTYGRQFSADSGSLYSSITRETINALKAHFREQL 1055          
BLAST of mRNA_P-fluviatile_contig8.14644.1 vs. uniprot
Match: A0A836CHS5_9STRA (Tr-type G domain-containing protein n=1 Tax=Tribonema minus TaxID=303371 RepID=A0A836CHS5_9STRA)

HSP 1 Score: 776 bits (2004), Expect = 2.410e-256
Identity = 440/693 (63.49%), Postives = 521/693 (75.18%), Query Frame = 3
Query: 1152 SADVTELLGNITVKDGSSNGKFDDEEEDLIEKDRRDEQERLRKQGIRQQKXXXXXXXXXXXXXXXXXXXXRQILQAEMLKDEARRKRLAXXXXXXEARTKESLRSPIVCIMGHVDTGKTKLLDKIRQTSVQEGEAGGITQQIGATFFSKETLCEKVAELNETMKVDIRLPGMLVIDTPGHESFTNLRSRGSSLCDIAILVVDLMHGLEPQTIESLNLLRSKRTPFVIALNKIDRCYAWKSTPNAPARLSLEKQESDTKAEFEDRAMRIRTGEGDGEGPQHRAVLEERRPHPHRVHGANVCHHRGGHPRLAL----VARQAHAAGEVDGEDNVHARPLGVHGAGGEGDRWAGHDDRRDHSQRPPQGGVRMTLDSIVVCTLDGPVVTSIRALLTPPPNRELRVKSEYVHHKVISGAIGVKLCATGIEKAVAGTPIMVVGQEDDEEDIKEEVMRDFTDLMKMDLEPKGVMVQASTLGALEALMQFLRKECDPPIPVFAVGIGSVFKKDVMRASIMNEKGTPEYATILAFDVKIDSDARKHAEENNVRIFTADIIYHLFDQFTAHMDRLMEQRRQDAKNLAVFPCIVKIMKEHVFNMKDPIIVGMEVVEGTLRVGTPLCIPALGGMEIGRVTSIEQNHREVDKVMKGANGAVRVDDAHGGSTLTYGRQFSADSGSLYSSITRETINALKAHFRDQVA 3218
            SAD+ ++LG++ V D  +NGKF DEEEDLIEK++R+EQERLR  GIRQ+K                    R +    M +D AR+    XXXXXX AR+  SLRSPIVCIMGHVDTGKTKLLDKIRQT+VQEGEAGGITQQIGATFF+KETL +KVA L +   +++RLPGMLVIDTPGHESFTNLRSRGSSLCDIAILV+DLMHGLEPQTIESLNLLRSKRTPFV+ALNKIDRCY WK+T +  +RLSL+ Q+  T+ EFE RA R+R  E +  G       +   P               G P L L    + ++      +   D +    L V    G G                  G +R   D IVVCTLDGPVVTSIRA+LTPPP+RELR+KSEY+HHK I GA+GVK+CA GIE+A+AGTPIMV+G++D+E+DIKEEVM+DFT++MKMDL+ +GV+VQASTLGALEALMQFLRKECDPPIPV +V IG ++++DVMRASIM EKG PEYATILAFDV+ID+DAR +AEE  VRIFTADIIYHLFDQFTA M  LMEQRR DA+  AVFPCI KIM +HVFN KDPIIVGMEV+EGTLRVGTPLCIPAL G+ IGRV SIE NHR+V K+ KG +GAVR++DA+GGSTLTYGRQF A SGSLYS I+R +I+ALKA+FR +V+
Sbjct:  324 SADIGDMLGSLKVAD--ANGKFADEEEDLIEKEKREEQERLRIAGIRQKKLEAERKAEEDKRRAEEEAQQRAVAXXXMQRDAARKXXXXXXXXXXAARSAASLRSPIVCIMGHVDTGKTKLLDKIRQTNVQEGEAGGITQQIGATFFAKETLKDKVAVLAQEAGLEVRLPGMLVIDTPGHESFTNLRSRGSSLCDIAILVIDLMHGLEPQTIESLNLLRSKRTPFVVALNKIDRCYGWKATADGSSRLSLQGQDGATREEFETRAARVRM-ELNERGLNAELYWKNEDPASTVSLVPTSAITGEGIPDLLLWITRLTQERLTEQIMFMPDLLECTVLEVKAVEGLG---------MTIDTIIVNGALREN-DRIVVCTLDGPVVTSIRAVLTPPPSRELRIKSEYIHHKEIYGAMGVKICAQGIERAIAGTPIMVIGKDDNEDDIKEEVMKDFTNVMKMDLDTRGVIVQASTLGALEALMQFLRKECDPPIPVSSVNIGPIYRRDVMRASIMLEKGKPEYATILAFDVRIDADARAYAEEVGVRIFTADIIYHLFDQFTAFMANLMEQRRTDAQATAVFPCICKIMPQHVFNKKDPIIVGMEVIEGTLRVGTPLCIPALEGLPIGRVASIEDNHRQVQKLAKGGSGAVRIEDANGGSTLTYGRQFDATSGSLYSMISRPSIDALKANFRAEVS 1003          
BLAST of mRNA_P-fluviatile_contig8.14644.1 vs. uniprot
Match: A0A7S2Y322_9STRA (Hypothetical protein n=1 Tax=Amphiprora paludosa TaxID=265537 RepID=A0A7S2Y322_9STRA)

HSP 1 Score: 632 bits (1630), Expect = 1.730e-201
Identity = 356/711 (50.07%), Postives = 466/711 (65.54%), Query Frame = 3
Query: 1173 LGNITVKDGSSNGKFDDEEEDLIEKDRRDEQERLRKQGIRQQKXXXXXXXXXXXXXXXXXXXXRQILQAEMLKDEARRKRLAXXXXXXEARTKESLRSPIVCIMGHVDTGKTKLLDKIRQTSVQEGEAGGITQQIGATFFSKETLCEKVAELNETMKVDIRLPGMLVIDTPGHESFTNLRSRGSSLCDIAILVVDLMHGLEPQTIESLNLLRSKRTPFVIALNKIDRCYAWKSTPNAPARLSLEKQESDTKAEFEDRAMRIRT---------------GEGDGEGPQHRAVLEERRPHPHRVHGANVCHHRGGHPRLALVARQAHA--AGEVDGEDNVHARPLGVHGAGGEGDRWAGHDDRRDHSQRPPQGGVRMTLDSIVV------------CTLDGPVVTSIRALLTPPPNRELRVKSEYVHHKVISGAIGVKLCATGIEKAVAGTPIMVVGQEDDEEDIKEEVMRDFTDLM-KMDLEPKGVMVQASTLGALEALMQFLRKECDPPIPVFAVGIGSVFKKDVMRASIMNEKGTPEYATILAFDVKIDSDARKHAEENNVRIFTADIIYHLFDQFTAHMDRLMEQRRQDAKNLAVFPCIVKIMKEHVFNMKDPIIVGMEVVEGTLRVGTPLCIPALGGMEIGRVTSIEQNHREVDKVMKGANGAVRVDDAHGGSTLTYGRQFSADSGSLYSSITRETINALKAHFRDQV 3215
             G++  +     G+  D+EEDL+E +++ EQERLR+ G+ + +                    R +   +  +DE +RKR+       +AR+ + LR P+V IMGHVDTGKTKLLDKIR+T+VQEGEAGGITQQIGAT+F K+TL  + A+LNET KV++++PGMLVIDTPGHESFTNLRSRGSSLCD+AILVVDLMHGLE QTIESL +L  ++ PFVIALNK+DRCY WK+  + P R +L++QE  T +EF +RA   +                G+ D        ++             +     G    L L+ + A      ++    N+    L V    G G                      MT+D +VV            CTLDGP+VT IR LLTPPP+RE+R+KSEY+HHK I GA+GVK+    ++K +AGTP+MVVG +D+EEDIK EVM D T L  K+  +  GV+VQASTLGALEAL+QFLR+E  PPIPV A+GIG++ K+D+ + SIMNEKG PE+AT+LAFDV +  +AR+HA E  VRI TADIIYHLFDQFT  MD L ++RR++A  +AVFP IVKI+ +H+FN KDPIIVGME+VEG L+VGTPLC+PALGG+ +G+V SIE N RE +   KG + AV++ +     TLTYGRQF A S  LYS++TRE+I+ALKAHF+DQ+
Sbjct:  305 FGDLEARLAQVKGESHDDEEDLVELEKKKEQERLRQLGLERAERDRIEAEKMAKIQAEQDAEARALAMIQQKRDEGKRKRMEQEKKNLDARSPDDLRCPVVVIMGHVDTGKTKLLDKIRKTNVQEGEAGGITQQIGATYFEKKTLEAQTAKLNETEKVELKVPGMLVIDTPGHESFTNLRSRGSSLCDVAILVVDLMHGLEQQTIESLQMLVKRQVPFVIALNKVDRCYGWKTCKDTPIRDALKEQEEGTLSEFRNRASEAKVQLMEQGVNSNIYWEMGDEDWTNSDFVPLVP-----------TSAISGEGVQDVLLLLCQMAQRKITDQIMWHANLQCTVLEVKAIDGLG----------------------MTVDVLVVNGYLREGDRAVFCTLDGPIVTEIRGLLTPPPSREMRIKSEYIHHKEIKGALGVKVIGNNLDKVMAGTPVMVVGPDDEEEDIKAEVMSDLTKLEDKLSTDKVGVLVQASTLGALEALLQFLREETKPPIPVSAIGIGTIQKRDITKISIMNEKGRPEFATVLAFDVDVSKEAREHATEMGVRIMTADIIYHLFDQFTRFMDELNQRRREEAAAVAVFPSIVKILPQHIFNQKDPIIVGMEIVEGILKVGTPLCVPALGGLFVGKVDSIESNGREQETARKGNSVAVKIVN-ESNPTLTYGRQFDA-SNMLYSTLTRESIDALKAHFKDQL 980          
BLAST of mRNA_P-fluviatile_contig8.14644.1 vs. uniprot
Match: A0A7S4K8F1_9STRA (Hypothetical protein n=1 Tax=Odontella aurita TaxID=265563 RepID=A0A7S4K8F1_9STRA)

HSP 1 Score: 629 bits (1623), Expect = 3.010e-201
Identity = 375/684 (54.82%), Postives = 476/684 (69.59%), Query Frame = 3
Query: 1221 DEEEDLIEKDRRDEQERLRKQGIRQQKXXXXXXXXXXXXXXXXXXXXRQILQAEMLKDEARRKRLAXXXXXXEARTKESLRSPIVCIMGHVDTGKTKLLDKIRQTSVQEGEAGGITQQIGATFFSKETLCEKVAELNETMKVDIRLPGMLVIDTPGHESFTNLRSRGSSLCDIAILVVDLMHGLEPQTIESLNLLRSKRTPFVIALNKIDRCYAWKSTPNAPARLSLEKQESDTKAEFEDRAMRIRT---------------GEGDGEGPQHRAVLEERRPHPHRVHGANVCHHRGGHPRLALVARQAHAA--GEVDGEDNVHARPLGVHGAGGEGDRWAGHDDRRDHSQRPPQGGVRMTLDSIVVCTLDGPVVTSIRALLTPPPNRELRVKSEYVHHKVISGAIGVKLCATGIEKAVAGTPIMVVGQEDDEEDIKEEVMRDFTDLM-KMDLEPKGVMVQASTLGALEALMQFLRKECDPPIPVFAVGIGSVFKKDVMRASIMNEK-GTPEYATILAFDVKIDSDARKHAEENNVRIFTADIIYHLFDQFTAHMDRLMEQRRQDAKNLAVFPCIVKIMKEHVFNMKDPIIVGMEVVEGTLRVGTPLCIPALGGMEIGRVTSIEQNHREVDKVMKGANGAVRVDDAHGGSTLTYGRQFSADSGSLYSSITRETINALKAHFRDQV 3215
            DE EDL E +++ EQERL+K G+ +++  XXXXXXXXXXXXXXX    +   A   +DE +RKR+        ART+++LR PI  IMGHVDTGKTKLLDKIR+T+VQ GEAGGITQQIGAT+F + TL  + A+LNET K DI +PGMLVIDTPGHESFTNLRSRGSSLCD+AILV+DLMHGLE QTIESLN+L+ K TPFV+ALNK+DRCYAWK+ P+ P R +L++Q   T +EF  R    +                GE D        ++             +     G    L L+ + A      ++    N+ A  L V    G G                  G VR   D  V CTLDGPV+T IR LLTPPP+RE+RVK++Y+HHK I GAIGVK+    +EK +AGTP+M+VG +D+EEDIK EVM D + +  K++++ KGVMVQASTLGALEAL+QFLR+E DPPIPV AVGIG+V K+DV + SIMNEK G  E+ATILAFDV ++ +AR+HA E  VRIFTADIIYHLFDQFT  M+ L E+RRQDA ++AVFP IVKI+ +HVFN KDPIIVG+EVVEG L+VGTPLC+P LGG+ IG+VTSIE N RE +   KG++ A+++ +     T+TYGRQF + + SLYS++TR++I+ALK HF+D++
Sbjct:  260 DEHEDLAEVEKKKEQERLKKLGLERKERDXXXXXXXXXXXXXXXAEDLKAQMAAHKRDEGKRKRIEQEKANLAARTRDNLRCPIAVIMGHVDTGKTKLLDKIRKTNVQGGEAGGITQQIGATYFEQSTLKTQTAKLNETEKFDITVPGMLVIDTPGHESFTNLRSRGSSLCDVAILVIDLMHGLEQQTIESLNMLKQKNTPFVVALNKVDRCYAWKTCPDTPIRDALKEQPEGTVSEFRSRTTDAKVQLQEQGVNSNIYWEMGEDDWMNSDFVPLVP-----------TSAVSGEGVQDVLMLLCQMAQRKIWRQLMWHANLQATVLEVKAIDGLGTTV---------DVLVVNGYVREG-DRAVFCTLDGPVITEIRGLLTPPPSREMRVKADYIHHKEIKGAIGVKVIGNNLEKVMAGTPVMIVGDDDEEEDIKAEVMSDLSRIQDKLNVDKKGVMVQASTLGALEALLQFLREETDPPIPVSAVGIGTVHKRDVTKISIMNEKKGCSEFATILAFDVPVEKEAREHATEMGVRIFTADIIYHLFDQFTRFMEELTERRRQDAADVAVFPSIVKILPQHVFNQKDPIIVGVEVVEGILKVGTPLCVPVLGGLHIGKVTSIECNSREQETARKGSSVAIKIVN-ESNPTITYGRQFDS-THSLYSTLTRQSIDALKEHFKDKL 920          
BLAST of mRNA_P-fluviatile_contig8.14644.1 vs. uniprot
Match: A0A7R9WHP7_9STRA (Hypothetical protein n=1 Tax=Pseudictyota dubia TaxID=2749911 RepID=A0A7R9WHP7_9STRA)

HSP 1 Score: 622 bits (1603), Expect = 1.860e-200
Identity = 343/599 (57.26%), Postives = 435/599 (72.62%), Query Frame = 3
Query: 1440 ARTKESLRSPIVCIMGHVDTGKTKLLDKIRQTSVQEGEAGGITQQIGATFFSKETLCEKVAELNETMKVDIRLPGMLVIDTPGHESFTNLRSRGSSLCDIAILVVDLMHGLEPQTIESLNLLRSKRTPFVIALNKIDRCYAWKSTPNAPARLSLEKQESDTKAEFEDRAM--RIRTGEGDGEGPQHRAVLEERRPHPHRVH--GANVCHHRGGHPRLALVARQAHAA--GEVDGEDNVHARPLGVHGAGGEGDRWAGHDDRRDHSQRPPQGGVRMTLDSIVVCTLDGPVVTSIRALLTPPPNRELRVKSEYVHHKVISGAIGVKLCATGIEKAVAGTPIMVVGQEDDEEDIKEEVMRDFTDLM-KMDLEPKGVMVQASTLGALEALMQFLRKECDPPIPVFAVGIGSVFKKDVMRASIMNEKGTPEYATILAFDVKIDSDARKHAEENNVRIFTADIIYHLFDQFTAHMDRLMEQRRQDAKNLAVFPCIVKIMKEHVFNMKDPIIVGMEVVEGTLRVGTPLCIPALGGMEIGRVTSIEQNHREVDKVMKGANGAVRVDDAHGGSTLTYGRQFSADSGSLYSSITRETINALKAHFRDQV 3215
            ART+++LR PI  IMGHVDTGKTKLLDKIR+T+VQ GEAGGITQQIGAT+F K+TL  + A+LNET K DI +PGMLVIDTPGHESFTNLRSRGSSLCD+AILVVDLMHGLE QTIESLN+LR + TPFV+ALNK+DRCYAWK+ P+ P R +L++Q   T +EF  R +  +++  E       +  + +E   +   V     +     G    L L+ + A      ++    N+ A  L V    G G                   G     D  V CTLDGPVVT IR LLTPPP+RE+RVK++Y+HHK I GA+GVK+    +EK +AGTP+MVVG+ D+EEDIK EVM D T +  K+ ++ KGVMVQASTLGALEAL+QFLR+E +PPIPV AVGIG+V K+DV + SIMNEKG  EYATILAFDV ++ +AR+HA E +VRIFTADIIYHLFDQFT  M+ L E+RRQDA ++AVFP I+KI+ +HVFN KDPIIVG+EVVEG L+VGTPLC+PA+GG+ +G+VTSIE N RE +   KGA+ AV++ +     T+TYGRQF + + SLYS++TR++I+ALK HF+D++
Sbjct:  177 ARTRDNLRCPIAVIMGHVDTGKTKLLDKIRKTNVQGGEAGGITQQIGATYFEKKTLQAQTAKLNETEKFDITVPGMLVIDTPGHESFTNLRSRGSSLCDVAILVVDLMHGLEQQTIESLNMLRGRNTPFVVALNKVDRCYAWKTCPDTPIRDALKEQPEGTVSEFRSRTLDAKVQLQEQGVNSNIYWEMGDEDWMNSDFVPLVPTSAVSGEGVQDILLLLCQMAQRKIWKQLMWHANLQATVLEVKAIDGLGTTV----------DVLVVNGYLREGDRAVFCTLDGPVVTEIRGLLTPPPSREMRVKADYIHHKEIKGALGVKVIGNNLEKVMAGTPVMVVGEHDEEEDIKAEVMSDLTRIQEKLSVDKKGVMVQASTLGALEALLQFLREETEPPIPVSAVGIGTVHKRDVTKISIMNEKGCGEYATILAFDVPVEREAREHANEMSVRIFTADIIYHLFDQFTRFMEELTERRRQDAADVAVFPSIIKILPQHVFNQKDPIIVGVEVVEGILKVGTPLCVPAIGGLHVGKVTSIESNGREQETAKKGASVAVKIVN-ESNPTITYGRQFDS-THSLYSTLTRQSIDALKEHFKDKL 763          
BLAST of mRNA_P-fluviatile_contig8.14644.1 vs. uniprot
Match: A0A7S2KAZ8_9STRA (Hypothetical protein n=1 Tax=Skeletonema marinoi TaxID=267567 RepID=A0A7S2KAZ8_9STRA)

HSP 1 Score: 626 bits (1614), Expect = 3.670e-199
Identity = 382/744 (51.34%), Postives = 487/744 (65.46%), Query Frame = 3
Query: 1053 KVDEEAEAKAPTEEEEQADGAVDDWEDAXXXX----DSADVTELLGNITVKDGSSNGKFDDEEEDLIEKDRRDEQERLRKQGIRQQKXXXXXXXXXXXXXXXXXXXXRQILQAEMLKDEARRKRLAXXXXXXEARTKESLRSPIVCIMGHVDTGKTKLLDKIRQTSVQEGEAGGITQQIGATFFSKETLCEKVAELNETMKVDIRLPGMLVIDTPGHESFTNLRSRGSSLCDIAILVVDLMHGLEPQTIESLNLLRSKRTPFVIALNKIDRCYAWKSTPNAPARLSLEKQESDTKAEFEDRA--MRIRTGEGDGEGPQHRAVLEERRPHPHRVH--GANVCHHRGGHPRLALVARQAHAA--GEVDGEDNVHARPLGVHGAGGEGDRWAGHDDRRDHSQRPPQGGVRMTLDSIVV------------CTLDGPVVTSIRALLTPPPNRELRVKSEYVHHKVISGAIGVKLCATGIEKAVAGTPIMVVGQEDDEEDIKEEVMRDFTDLM-KMDLEPKGVMVQASTLGALEALMQFLRKECDPPIPVFAVGIGSVFKKDVMRASIMNEKGTPEYATILAFDVKIDSDARKHAEENNVRIFTADIIYHLFDQFTAHMDRLMEQRRQDAKNLAVFPCIVKIMKEHVFNMKDPIIVGMEVVEGTLRVGTPLCIPALGGMEIGRVTSIEQNHREVDKVMKGANGAVRVDDAHGGSTLTYGRQFSADSGSLYSSITRETINALKAHFRDQV 3215
            +++EE  A+   +  E+ D A DDWED+        DS      L  +  +   ++    D++EDLIEK++R E+ERL + G  + +                XXXX              ++RL       EART++ LR PIV IMGHVDTGKTKLLDKIR+T+VQEGEAGGITQQIGAT+F K+TL  +  +LNET K ++ LPGMLVIDTPGHESFTNLRSRGSSLCD+AILVVDLMHGLE QTIESL +LR + TPFV+ALNKIDRCY WK+  + P R +L+ Q   T  EF  RA   +++  E       +  + +E   +   V     +     G    L L+ + A      ++    N+ A  L V    G G                      MT+D +VV            CTLDGPVVT IR LLTPPP+RE+RVKSEY+HHK I GA+GVKL   G+EK +AGTP+MVVG+ D+EEDIKEEVM D + L  K+  + KGVMVQASTLGALEAL+QFLR+E  PPIPV A+GIG++ K+DV + SIMNEKG PEYAT+LAFDV ++ DAR+HA + NVRIFTADIIYHLFDQFT  M++L E+RR+DA  +AVFP IVKI+ +HVFN KDPIIVG+EVVEG L+VGTPLC+PALGG+ +G VTSIE N RE +   KG++ A+++ +     T+TYGRQF A S SLYS ++R +I+ALK HF+D++
Sbjct:  260 RLEEERLAEEARKNAEEEDDAKDDWEDSDSGDEWDADSDASGPKLDALEKRLKQTSIDDSDDDEDLIEKEKRLERERLAELGKVRAERERIEEEKMAELRAREXXXXXXXXXXXXXXXXXXKRRLEQEKANLEARTRDDLRCPIVVIMGHVDTGKTKLLDKIRKTNVQEGEAGGITQQIGATYFEKKTLLTQTEKLNETEKFNLTLPGMLVIDTPGHESFTNLRSRGSSLCDVAILVVDLMHGLEQQTIESLTMLRKRGTPFVVALNKIDRCYDWKTCKDTPIRDALKVQSEGTVQEFRSRADSAKLQLQEQGVNSNIYWEMGDEDWTNSDFVPLVPTSAITGEGVQDILLLLCQIAQRKLWRQLMWCANLQATVLEVKAIDGLG----------------------MTVDVLVVNGYLREGDKAVFCTLDGPVVTEIRGLLTPPPSREMRVKSEYIHHKEIKGALGVKLIGNGLEKVMAGTPVMVVGEYDEEEDIKEEVMSDLSRLQDKLSTDKKGVMVQASTLGALEALLQFLREETKPPIPVSAIGIGTIHKRDVTKISIMNEKGCPEYATVLAFDVPVERDAREHANDVNVRIFTADIIYHLFDQFTRFMEQLTEKRREDAAGIAVFPSIVKILPQHVFNQKDPIIVGVEVVEGILKVGTPLCVPALGGLTVGVVTSIECNGREQETAKKGSSIAIKIVN-ESNPTITYGRQFDA-SHSLYSQLSRASIDALKLHFKDKL 979          
BLAST of mRNA_P-fluviatile_contig8.14644.1 vs. uniprot
Match: A0A7S2W0N4_9STRA (Hypothetical protein (Fragment) n=1 Tax=Eucampia antarctica TaxID=49252 RepID=A0A7S2W0N4_9STRA)

HSP 1 Score: 625 bits (1611), Expect = 5.400e-199
Identity = 355/694 (51.15%), Postives = 463/694 (66.71%), Query Frame = 3
Query: 1221 DEEEDLIEKDRRDEQERLRKQGIRQQKXXXXXXXXXXXXXXXXXXXXRQILQAEMLKDEARRKRLAXXXXXXEARTKESLRSPIVCIMGHVDTGKTKLLDKIRQTSVQEGEAGGITQQIGATFFSKETLCEKVAELNETMKVDIRLPGMLVIDTPGHESFTNLRSRGSSLCDIAILVVDLMHGLEPQTIESLNLLRSKRTPFVIALNKIDRCYAWKSTPNAPARLSLEKQESDTKAEFEDRAMRIRT---------------GEGDGEGPQHRAVLEERRPHPHRVHGANVCHHRGGHPRLALVARQAHAA--GEVDGEDNVHARPLGVHGAGGEGDRWAGHDDRRDHSQRPPQGGVRMTLDSIVV------------CTLDGPVVTSIRALLTPPPNRELRVKSEYVHHKVISGAIGVKLCATGIEKAVAGTPIMVVGQEDDEEDIKEEVMRDFTDLM-KMDLEPKGVMVQASTLGALEALMQFLRKECDPPIPVFAVGIGSVFKKDVMRASIMNEKGTPEYATILAFDVKIDSDARKHAEENNVRIFTADIIYHLFDQFTAHMDRLMEQRRQDAKNLAVFPCIVKIMKEHVFNMKDPIIVGMEVVEGTLRVGTPLCIPALGGMEIGRVTSIEQNHREVDKVMKGANGAVRVDDAHGGSTLTYGRQFSADSGSLYSSITRETINALKAHFRDQ 3212
            ++EEDLIE+++R EQERLR+ G+++Q+                    RQ  +    ++E ++KR         ART+++LR PIV IMGHVDTGKTKLLDKIR+T+VQ GEAGGITQQIGAT+F ++TL  +  +LN+T K DI +PGMLVIDTPGHESFTNLRSRGSSLCD+AILVVDLMHGLE QTIESL +L  + TPFV+ALNK+DRCYAWK+ P+ P R +L++Q ++T  EF +RA+  +                G+ D        ++             +     G    L L+ + A      ++    N+    L V    G G                      MT+D +VV            CTL GP+VT IR LLTPPP+RE+R+KS+Y+HHK++ GA+GVK+    +EK +AGTP+MV+G +D+EEDIK EVM D T L  K+ ++  GVMVQASTLGALEAL+QFLR+E  PPIPV A+GIGS+ K+DV R S+MNEKG PEYATILAFDV I+S+AR+HA E  VRIFTADIIYHLFDQFT +M+ L E+RR++A  +AVFP I++I+ +HVFN KDPIIVG+EVVEG L+VGTPLCIPALG + IG+VTSIE N  E D   K ++ A+++ +     TLTYGRQF + S  LYS+I+R +INALK +F+D+
Sbjct:  318 EDEEDLIEREKRKEQERLRELGLKRQEQERIEAERRAHFQIEQDELKRQEFEKAQKREEGKKKREELEKSNLAARTRDNLRCPIVVIMGHVDTGKTKLLDKIRKTNVQGGEAGGITQQIGATYFEQKTLQTQTKKLNDTEKFDITVPGMLVIDTPGHESFTNLRSRGSSLCDVAILVVDLMHGLEQQTIESLKMLTDRGTPFVVALNKVDRCYAWKTCPDTPIRDALKEQPANTVTEFRNRALDAKVQLQEQGINSNIYWEMGDDDWMNTDFVPLVP-----------TSAVTGEGVQDLLMLLCQMAQRKLWRQLMWHANLQCTVLEVKAIDGLG----------------------MTVDLLVVNGHLKEGDRAVFCTLGGPIVTEIRGLLTPPPSREMRIKSDYIHHKIVKGALGVKVIGNNLEKVMAGTPVMVIGPDDEEEDIKAEVMSDLTKLKEKLSVDKTGVMVQASTLGALEALLQFLREETKPPIPVSAIGIGSIHKRDVTRISVMNEKGHPEYATILAFDVNINSEAREHALEMKVRIFTADIIYHLFDQFTRYMEELSEKRREEAAAIAVFPSIIRILPQHVFNQKDPIIVGVEVVEGILKVGTPLCIPALGCLHIGKVTSIEANGNEQDTARKDSSVAIKIVN-ESNPTLTYGRQFDSTS-MLYSTISRASINALKENFKDK 976          
BLAST of mRNA_P-fluviatile_contig8.14644.1 vs. uniprot
Match: B7GD73_PHATC (Predicted protein (Fragment) n=2 Tax=Phaeodactylum tricornutum TaxID=2850 RepID=B7GD73_PHATC)

HSP 1 Score: 597 bits (1538), Expect = 1.510e-193
Identity = 330/616 (53.57%), Postives = 422/616 (68.51%), Query Frame = 3
Query: 1458 LRSPIVCIMGHVDTGKTKLLDKIRQTSVQEGEAGGITQQIGATFFSKETLCEKVAELNETMKVDIRLPGMLVIDTPGHESFTNLRSRGSSLCDIAILVVDLMHGLEPQTIESLNLLRSKRTPFVIALNKIDRCYAWKSTPNAPARLSLEKQESDTKAEFEDRAMRIRT---------------GEGDGEGPQHRAVLEERRPHPHRVHGANVCHHRGGHPRLALVARQAHA--AGEVDGEDNVHARPLGVHGAGGEGDRWAGHDDRRDHSQRPPQGGVRMTLDSIVV------------CTLDGPVVTSIRALLTPPPNRELRVKSEYVHHKVISGAIGVKLCATGIEKAVAGTPIMVVGQEDDEEDIKEEVMRDFTDLM-KMDLEPKGVMVQASTLGALEALMQFLRKECDPPIPVFAVGIGSVFKKDVMRASIMNEKGTPEYATILAFDVKIDSDARKHAEENNVRIFTADIIYHLFDQFTAHMDRLMEQRRQDAKNLAVFPCIVKIMKEHVFNMKDPIIVGMEVVEGTLRVGTPLCIPALGGMEIGRVTSIEQNHREVDKVMKGANGAVRVDDAHGGSTLTYGRQFSADSGSLYSSITRETINALKAHFRDQV 3215
            LR PIV IMGHVDTGKTKLLDKIR+T+VQEGEAGGITQQIGAT+F K+TL ++V++LN T  V++++PGMLVIDTPGHESFTNLRSRGSSLCD+AILVVDLMHGLE QTIESL +LR +  PFV+ALNK+DRCY WK+  ++P R +L+ Q+  T +EF  RA   +                G+ D        ++             +     G    L L+ + A      ++    N+    L V    G G                      MT+D +VV            CTLDGP+VT IR LLTPPP+RE+R+KSEY+HHK + GA+GVKL    +EK +AGTP+MVVG  D+EEDIK EVM D T L  K+  +  GV+VQASTLGALEAL+QFLR+E  PPIPV A+GIG + K+DV + SIMNEKG PE+ATILAFDV I+ +AR+HAE+  VRI TADIIYHLFDQFT  MD L +++R++A  +AVFP I++++ +HVFN KDPIIVG+E+VEG L+VGTPLC+PALGG+ IG+VTSIE N RE +   KG + A+++ +     T+TYGRQF + S SLYSS+TR +I+ALKAHF++Q+
Sbjct:    1 LRCPIVVIMGHVDTGKTKLLDKIRKTNVQEGEAGGITQQIGATYFEKKTLEQQVSKLNATENVELKVPGMLVIDTPGHESFTNLRSRGSSLCDVAILVVDLMHGLEQQTIESLTMLRKRGVPFVVALNKVDRCYGWKTMKDSPIRDALKLQDDSTMSEFRSRATDAKVQLQEQGVNSNLYWEMGDDDWTNSDFIPLVP-----------TSAVTGEGIQDVLLLLCQMAQRKITDQIMWHANLQCTVLEVKAIDGLG----------------------MTVDVLVVNGFLREGDRAVFCTLDGPIVTEIRGLLTPPPSREMRIKSEYIHHKEVKGALGVKLIGNNLEKVMAGTPVMVVGPGDEEEDIKAEVMSDLTKLEDKLSTDKVGVLVQASTLGALEALLQFLREETKPPIPVSAIGIGRIHKRDVTKISIMNEKGHPEFATILAFDVDIEREAREHAEDMGVRIMTADIIYHLFDQFTRFMDELNQRKREEATAVAVFPSIIRVLPQHVFNQKDPIIVGVEIVEGILKVGTPLCVPALGGLHIGKVTSIEMNGREQETARKGLSVAIKIVN-ESNPTITYGRQFDS-SHSLYSSLTRASIDALKAHFKEQL 581          
BLAST of mRNA_P-fluviatile_contig8.14644.1 vs. uniprot
Match: B8BV18_THAPS (Tr-type G domain-containing protein n=2 Tax=Thalassiosira TaxID=35127 RepID=B8BV18_THAPS)

HSP 1 Score: 595 bits (1534), Expect = 4.430e-193
Identity = 333/610 (54.59%), Postives = 419/610 (68.69%), Query Frame = 3
Query: 1482 MGHVDTGKTKLLDKIRQTSVQEGEAGGITQQIGATFFSKETLCEKVAELNETMKVDIRLPGMLVIDTPGHESFTNLRSRGSSLCDIAILVVDLMHGLEPQTIESLNLLRSKRTPFVIALNKIDRCYAWKSTPNAPARLSLEKQESDTKAEFEDRAMRIRT---------------GEGDGEGPQHRAVLEERRPHPHRVHGANVCHHRGGHPRLALVARQAHAA--GEVDGEDNVHARPLGVHGAGGEGDRWAGHDDRRDHSQRPPQGGVRMTLDSIVV------------CTLDGPVVTSIRALLTPPPNRELRVKSEYVHHKVISGAIGVKLCATGIEKAVAGTPIMVVGQEDDEEDIKEEVMRDFTDLM-KMDLEPKGVMVQASTLGALEALMQFLRKECDPPIPVFAVGIGSVFKKDVMRASIMNEKGTPEYATILAFDVKIDSDARKHAEENNVRIFTADIIYHLFDQFTAHMDRLMEQRRQDAKNLAVFPCIVKIMKEHVFNMKDPIIVGMEVVEGTLRVGTPLCIPALGGMEIGRVTSIEQNHREVDKVMKGANGAVRVDDAHGGSTLTYGRQFSADSGSLYSSITRETINALKAHFRDQVAT 3221
            MGHVDTGKTKLLDKIR+T+VQEGEAGGITQQIGAT+F K TL  + A+LNET K D+ LPGMLVIDTPGHESFTNLRSRGSSLCD+AILVVDLMHGLE QTIESL++L+++ TPFV+ALNK+DRCYAWK+  + P R +L++Q   T  EF  RA   +                G+ D E      ++             +     G    L L+ + A      ++    N+ A  L V    G G                      MT+D +VV            CTLDGP+V  IR LLTPPP+RE+R+KSEY+HHK I GA+GVK+   G+EK +AGT ++VVG +D+ EDIK EVM D T L  K+  + KGVMVQASTLGALEAL+QFLR+E  PPIPV A+GIG++ K+DV + SIMNEKG PEYATILAFDV ++ +AR+ AEE NVRIFTADIIYHLFDQFT  M++L E+RR+DA  +AVFP I+KI+ +HVFN KDPIIVG+EVVEG L+VGTPLC+PALGG+ +G VTSIE N RE +   KG++ A+++ +     T+TYGRQF A S SLYS ++R +I+ALK HF++++ T
Sbjct:    1 MGHVDTGKTKLLDKIRKTNVQEGEAGGITQQIGATYFEKSTLLTQTAKLNETEKFDLTLPGMLVIDTPGHESFTNLRSRGSSLCDVAILVVDLMHGLEQQTIESLHMLKNRGTPFVVALNKVDRCYAWKTCKDTPIRDALKEQSDGTLNEFRSRASDAKLQLQEQGVNSNIYWEMGDDDWENSDFVPLVP-----------TSAVTGEGVQDILMLLCQIAQRKLWSQLMWCANLQATVLEVKAIDGLG----------------------MTVDVLVVNGYLREGDRAVFCTLDGPIVAEIRGLLTPPPSREMRIKSEYIHHKEIKGALGVKVIGNGLEKVMAGTSVLVVGPDDEVEDIKAEVMSDLTKLQDKLSTDKKGVMVQASTLGALEALLQFLREETKPPIPVSAIGIGTIHKRDVTKISIMNEKGCPEYATILAFDVPVEREAREQAEEVNVRIFTADIIYHLFDQFTRFMEQLTEKRREDAAAIAVFPSIIKILPQHVFNQKDPIIVGVEVVEGILKVGTPLCVPALGGLTVGTVTSIESNGREQETAKKGSSVAIKIVN-ESNPTITYGRQFDA-SHSLYSHLSRASIDALKLHFKEKLET 575          
BLAST of mRNA_P-fluviatile_contig8.14644.1 vs. uniprot
Match: A0A1E7FX92_9STRA (p-loop containing nucleoside triphosphate hydrolase protein n=1 Tax=Fragilariopsis cylindrus CCMP1102 TaxID=635003 RepID=A0A1E7FX92_9STRA)

HSP 1 Score: 596 bits (1536), Expect = 7.700e-193
Identity = 337/643 (52.41%), Postives = 429/643 (66.72%), Query Frame = 3
Query: 1389 KDEARRKRLAXXXXXXEARTKESLRSPIVCIMGHVDTGKTKLLDKIRQTSVQEGEAGGITQQIGATFFSKETLCEKVAELNETMKVDIRLPGMLVIDTPGHESFTNLRSRGSSLCDIAILVVDLMHGLEPQTIESLNLLRSKRTPFVIALNKIDRCYAWKSTPNAPARLSLEKQESDTKAEFEDRAMRIRT---------------GEGD----------------GEGPQHRAVLEERRPHPHRVHGANVCH--HRGGHPRLALVARQAHAAGEVDGEDNVHARP--LGVHGAGGEGDRWAGHDDRRDHSQRPPQGGVRMTLDSIVVCTLDGPVVTSIRALLTPPPNRELRVKSEYVHHKVISGAIGVKLCATGIEKAVAGTPIMVVGQEDDEEDIKEEVMRDFTDL-MKMDLEPKGVMVQASTLGALEALMQFLRKECDPPIPVFAVGIGSVFKKDVMRASIMNEKGTPEYATILAFDVKIDSDARKHAEENNVRIFTADIIYHLFDQFTAHMDRLMEQRRQDAKNLAVFPCIVKIMKEHVFNMKDPIIVGMEVVEGTLRVGTPLCIPALGGMEIGRVTSIEQNHREVDKVMKGANGAVRVDDAHGGSTLTYGRQFSADSGSLYSSITRETINALKAHFRD 3209
            ++E +RKR         AR+ + LR P+  IMGHVDTGKTKLLDKIR+T+VQEGEAGGITQQIGAT+F K+TL  + A+LN T   DI++PGMLVIDTPGHESF NLRSRGSSLCD+AILV+D+MHGLEPQTIESLN+LR K+ PFV+ALNKIDRCYAWK+  + P R +L++QE  T +EF  R+   +                G+ D                GEG Q   +L              +C    R    +L   A       EV   D +      L V+G   EGD+                          V CTL+GP+VT IR LLTPPP+RE+RVKSEY+HHK + GA+GVK+    ++K +AGTP+M+VG  D+EEDIK EVM D T+L  K+  +  GV+VQASTLGALEAL+QFLR +  PPIPV A+GIG++ K+DV + S MNEKG PEYATILAFDV I+ DAR+HA +  VRI TADIIYHLFDQFT  MD L  +RR++A  +AVFP I+KI+ +HVFN KDPIIVG+E+VEG L++GTPLC+PALGG+ IG+VTSIE N +E +   KG + A+++ +  G  T+TYGRQF + S SLYS++TR +I+ALK +F+D
Sbjct:    6 RNEGKRKREEEEKINLAARSPDDLRCPVTVIMGHVDTGKTKLLDKIRKTNVQEGEAGGITQQIGATYFEKKTLETQTAKLNATEAFDIKIPGMLVIDTPGHESFANLRSRGSSLCDVAILVIDMMHGLEPQTIESLNMLREKKVPFVVALNKIDRCYAWKTCKDTPIRDALKEQEEGTISEFRSRSADTKLQLAELGVNSNLYWEMGDDDWCNSDFIPLVPTSAITGEGVQDVLML--------------LCQMSQRKIWKKLMWCANLEATVLEVKAIDGLGMTVDVLVVNGHLREGDK-------------------------AVFCTLNGPIVTEIRGLLTPPPSREMRVKSEYIHHKEVKGALGVKVIGNNLDKVMAGTPVMIVGPNDEEEDIKAEVMSDLTNLEAKLSTDKVGVLVQASTLGALEALLQFLRVDTQPPIPVSAIGIGTIHKRDVTKISTMNEKGRPEYATILAFDVDIEKDAREHAVDMGVRIMTADIIYHLFDQFTRFMDELTAKRREEASAVAVFPSIIKILPQHVFNQKDPIIVGVEIVEGILKIGTPLCVPALGGLHIGKVTSIEMNGKEQETARKGMSVAIKILN-EGNPTITYGRQFDS-SHSLYSTLTRASIDALKENFKD 607          
The following BLAST results are available for this feature:
BLAST of mRNA_P-fluviatile_contig8.14644.1 vs. uniprot
Analysis Date: 2022-09-19 (Diamond blastx: OGS1.0 vs UniRef90)
Total hits: 25
Match NameE-valueIdentityDescription
A0A6H5L4N8_9PHAE0.000e+074.61Tr-type G domain-containing protein n=2 Tax=Ectoca... [more]
A0A836CHS5_9STRA2.410e-25663.49Tr-type G domain-containing protein n=1 Tax=Tribon... [more]
A0A7S2Y322_9STRA1.730e-20150.07Hypothetical protein n=1 Tax=Amphiprora paludosa T... [more]
A0A7S4K8F1_9STRA3.010e-20154.82Hypothetical protein n=1 Tax=Odontella aurita TaxI... [more]
A0A7R9WHP7_9STRA1.860e-20057.26Hypothetical protein n=1 Tax=Pseudictyota dubia Ta... [more]
A0A7S2KAZ8_9STRA3.670e-19951.34Hypothetical protein n=1 Tax=Skeletonema marinoi T... [more]
A0A7S2W0N4_9STRA5.400e-19951.15Hypothetical protein (Fragment) n=1 Tax=Eucampia a... [more]
B7GD73_PHATC1.510e-19353.57Predicted protein (Fragment) n=2 Tax=Phaeodactylum... [more]
B8BV18_THAPS4.430e-19354.59Tr-type G domain-containing protein n=2 Tax=Thalas... [more]
A0A1E7FX92_9STRA7.700e-19352.41p-loop containing nucleoside triphosphate hydrolas... [more]

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Alignments
The following features are aligned
Aligned FeatureFeature TypeAlignment Location
P-fluviatile_contig8contigP-fluviatile_contig8:3483484..3511945 -
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 score970.3
Seed ortholog evalue7.5e-280
Seed eggNOG ortholog2880.D8LKY1
Preferred nameFUN12
KEGG koko:K03243,ko:K12834
KEGG Pathwayko03013,ko03040,map03013,map03040
KEGG ModuleM00352
GOsGO:0000166,GO:0000462,GO:0001732,GO:0001882,GO:0001883,GO:0002181,GO:0002183,GO:0003674,GO:0003676,GO:0003723,GO:0003743,GO:0003824,GO:0003924,GO:0005488,GO:0005515,GO:0005525,GO:0005575,GO:0005622,GO:0005623,GO:0005737,GO:0005739,GO:0005829,GO:0005840,GO:0006139,GO:0006364,GO:0006396,GO:0006412,GO:0006413,GO:0006417,GO:0006446,GO:0006518,GO:0006725,GO:0006807,GO:0006996,GO:0008135,GO:0008150,GO:0008152,GO:0009058,GO:0009059,GO:0009889,GO:0009987,GO:0010467,GO:0010468,GO:0010494,GO:0010556,GO:0010608,GO:0015935,GO:0016043,GO:0016070,GO:0016072,GO:0016462,GO:0016787,GO:0016817,GO:0016818,GO:0017076,GO:0017111,GO:0019001,GO:0019222,GO:0019538,GO:0022607,GO:0022613,GO:0022618,GO:0022626,GO:0022627,GO:0030490,GO:0030684,GO:0030687,GO:0031323,GO:0031326,GO:0031369,GO:0032268,GO:0032549,GO:0032550,GO:0032553,GO:0032555,GO:0032561,GO:0032991,GO:0033290,GO:0034248,GO:0034470,GO:0034622,GO:0034641,GO:0034645,GO:0034660,GO:0035639,GO:0035770,GO:0036094,GO:0036464,GO:0042254,GO:0042255,GO:0042274,GO:0043021,GO:0043022,GO:0043043,GO:0043167,GO:0043168,GO:0043170,GO:0043226,GO:0043227,GO:0043228,GO:0043229,GO:0043231,GO:0043232,GO:0043603,GO:0043604,GO:0043933,GO:0044085,GO:0044237,GO:0044238,GO:0044249,GO:0044260,GO:0044267,GO:0044271,GO:0044391,GO:0044422,GO:0044424,GO:0044444,GO:0044445,GO:0044446,GO:0044464,GO:0044877,GO:0046483,GO:0050789,GO:0050794,GO:0051171,GO:0051246,GO:0060255,GO:0065003,GO:0065007,GO:0070925,GO:0070993,GO:0071704,GO:0071826,GO:0071840,GO:0080090,GO:0090304,GO:0097159,GO:0097367,GO:1901265,GO:1901360,GO:1901363,GO:1901564,GO:1901566,GO:1901576,GO:1990904,GO:2000112
EggNOG free text desc.translation initiation factor activity
EggNOG OGsCOG0532@1,KOG1144@2759
COG Functional cat.J
Best tax levelEukaryota
Best eggNOG OGNA|NA|NA
BRITEko00000,ko00001,ko00002,ko03012,ko03041
Hectar predicted targeting categoryother localisation
Ec32 ortholog descriptionEIF5B, eukaryotic translation initiation factor 5B
Ec32 orthologEc-11_005980.1
Exons22
Model size4799
Cds size3282
Stop1
Start1
Relationships

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

Feature NameUnique NameSpeciesTypePosition
mRNA_P-fluviatile_contig8.14644.1prot_P-fluviatile_contig8.14644.1Porterinema fluviatile SAG_2381polypeptideP-fluviatile_contig8 3484963..3511907 -


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

Feature NameUnique NameSpeciesTypePosition
1622817260.2846-UTR-P-fluviatile_contig8:3483483..34849621622817260.2846-UTR-P-fluviatile_contig8:3483483..3484962Porterinema fluviatile SAG_2381UTRP-fluviatile_contig8 3483484..3484962 -
1693571785.9329684-UTR-P-fluviatile_contig8:3483483..34849621693571785.9329684-UTR-P-fluviatile_contig8:3483483..3484962Porterinema fluviatile SAG_2381UTRP-fluviatile_contig8 3483484..3484962 -
1622817260.5884347-UTR-P-fluviatile_contig8:3511907..35119451622817260.5884347-UTR-P-fluviatile_contig8:3511907..3511945Porterinema fluviatile SAG_2381UTRP-fluviatile_contig8 3511908..3511945 -
1693571786.2401638-UTR-P-fluviatile_contig8:3511907..35119451693571786.2401638-UTR-P-fluviatile_contig8:3511907..3511945Porterinema fluviatile SAG_2381UTRP-fluviatile_contig8 3511908..3511945 -


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

Feature NameUnique NameSpeciesTypePosition
1622817260.2951524-CDS-P-fluviatile_contig8:3484962..34852471622817260.2951524-CDS-P-fluviatile_contig8:3484962..3485247Porterinema fluviatile SAG_2381CDSP-fluviatile_contig8 3484963..3485247 -
1693571785.9499304-CDS-P-fluviatile_contig8:3484962..34852471693571785.9499304-CDS-P-fluviatile_contig8:3484962..3485247Porterinema fluviatile SAG_2381CDSP-fluviatile_contig8 3484963..3485247 -
1622817260.3067496-CDS-P-fluviatile_contig8:3486534..34866781622817260.3067496-CDS-P-fluviatile_contig8:3486534..3486678Porterinema fluviatile SAG_2381CDSP-fluviatile_contig8 3486535..3486678 -
1693571785.9700418-CDS-P-fluviatile_contig8:3486534..34866781693571785.9700418-CDS-P-fluviatile_contig8:3486534..3486678Porterinema fluviatile SAG_2381CDSP-fluviatile_contig8 3486535..3486678 -
1622817260.320778-CDS-P-fluviatile_contig8:3487110..34873171622817260.320778-CDS-P-fluviatile_contig8:3487110..3487317Porterinema fluviatile SAG_2381CDSP-fluviatile_contig8 3487111..3487317 -
1693571785.9811153-CDS-P-fluviatile_contig8:3487110..34873171693571785.9811153-CDS-P-fluviatile_contig8:3487110..3487317Porterinema fluviatile SAG_2381CDSP-fluviatile_contig8 3487111..3487317 -
1622817260.331941-CDS-P-fluviatile_contig8:3488254..34884551622817260.331941-CDS-P-fluviatile_contig8:3488254..3488455Porterinema fluviatile SAG_2381CDSP-fluviatile_contig8 3488255..3488455 -
1693571785.9898045-CDS-P-fluviatile_contig8:3488254..34884551693571785.9898045-CDS-P-fluviatile_contig8:3488254..3488455Porterinema fluviatile SAG_2381CDSP-fluviatile_contig8 3488255..3488455 -
1622817260.3432586-CDS-P-fluviatile_contig8:3488877..34890211622817260.3432586-CDS-P-fluviatile_contig8:3488877..3489021Porterinema fluviatile SAG_2381CDSP-fluviatile_contig8 3488878..3489021 -
1693571785.9980998-CDS-P-fluviatile_contig8:3488877..34890211693571785.9980998-CDS-P-fluviatile_contig8:3488877..3489021Porterinema fluviatile SAG_2381CDSP-fluviatile_contig8 3488878..3489021 -
1622817260.3605967-CDS-P-fluviatile_contig8:3489820..34899081622817260.3605967-CDS-P-fluviatile_contig8:3489820..3489908Porterinema fluviatile SAG_2381CDSP-fluviatile_contig8 3489821..3489908 -
1693571786.00665-CDS-P-fluviatile_contig8:3489820..34899081693571786.00665-CDS-P-fluviatile_contig8:3489820..3489908Porterinema fluviatile SAG_2381CDSP-fluviatile_contig8 3489821..3489908 -
1622817260.372996-CDS-P-fluviatile_contig8:3492676..34928211622817260.372996-CDS-P-fluviatile_contig8:3492676..3492821Porterinema fluviatile SAG_2381CDSP-fluviatile_contig8 3492677..3492821 -
1693571786.0157754-CDS-P-fluviatile_contig8:3492676..34928211693571786.0157754-CDS-P-fluviatile_contig8:3492676..3492821Porterinema fluviatile SAG_2381CDSP-fluviatile_contig8 3492677..3492821 -
1622817260.3847032-CDS-P-fluviatile_contig8:3493445..34935851622817260.3847032-CDS-P-fluviatile_contig8:3493445..3493585Porterinema fluviatile SAG_2381CDSP-fluviatile_contig8 3493446..3493585 -
1693571786.0338326-CDS-P-fluviatile_contig8:3493445..34935851693571786.0338326-CDS-P-fluviatile_contig8:3493445..3493585Porterinema fluviatile SAG_2381CDSP-fluviatile_contig8 3493446..3493585 -
1622817260.3969278-CDS-P-fluviatile_contig8:3495814..34959361622817260.3969278-CDS-P-fluviatile_contig8:3495814..3495936Porterinema fluviatile SAG_2381CDSP-fluviatile_contig8 3495815..3495936 -
1693571786.04542-CDS-P-fluviatile_contig8:3495814..34959361693571786.04542-CDS-P-fluviatile_contig8:3495814..3495936Porterinema fluviatile SAG_2381CDSP-fluviatile_contig8 3495815..3495936 -
1622817260.4125276-CDS-P-fluviatile_contig8:3496494..34967221622817260.4125276-CDS-P-fluviatile_contig8:3496494..3496722Porterinema fluviatile SAG_2381CDSP-fluviatile_contig8 3496495..3496722 -
1693571786.0582695-CDS-P-fluviatile_contig8:3496494..34967221693571786.0582695-CDS-P-fluviatile_contig8:3496494..3496722Porterinema fluviatile SAG_2381CDSP-fluviatile_contig8 3496495..3496722 -
1622817260.4259512-CDS-P-fluviatile_contig8:3497727..34978431622817260.4259512-CDS-P-fluviatile_contig8:3497727..3497843Porterinema fluviatile SAG_2381CDSP-fluviatile_contig8 3497728..3497843 -
1693571786.0727305-CDS-P-fluviatile_contig8:3497727..34978431693571786.0727305-CDS-P-fluviatile_contig8:3497727..3497843Porterinema fluviatile SAG_2381CDSP-fluviatile_contig8 3497728..3497843 -
1622817260.4411907-CDS-P-fluviatile_contig8:3498538..34986471622817260.4411907-CDS-P-fluviatile_contig8:3498538..3498647Porterinema fluviatile SAG_2381CDSP-fluviatile_contig8 3498539..3498647 -
1693571786.0851557-CDS-P-fluviatile_contig8:3498538..34986471693571786.0851557-CDS-P-fluviatile_contig8:3498538..3498647Porterinema fluviatile SAG_2381CDSP-fluviatile_contig8 3498539..3498647 -
1622817260.4519048-CDS-P-fluviatile_contig8:3499077..34991351622817260.4519048-CDS-P-fluviatile_contig8:3499077..3499135Porterinema fluviatile SAG_2381CDSP-fluviatile_contig8 3499078..3499135 -
1693571786.0948246-CDS-P-fluviatile_contig8:3499077..34991351693571786.0948246-CDS-P-fluviatile_contig8:3499077..3499135Porterinema fluviatile SAG_2381CDSP-fluviatile_contig8 3499078..3499135 -
1622817260.464206-CDS-P-fluviatile_contig8:3499556..34997231622817260.464206-CDS-P-fluviatile_contig8:3499556..3499723Porterinema fluviatile SAG_2381CDSP-fluviatile_contig8 3499557..3499723 -
1693571786.114506-CDS-P-fluviatile_contig8:3499556..34997231693571786.114506-CDS-P-fluviatile_contig8:3499556..3499723Porterinema fluviatile SAG_2381CDSP-fluviatile_contig8 3499557..3499723 -
1622817260.478784-CDS-P-fluviatile_contig8:3500207..35005331622817260.478784-CDS-P-fluviatile_contig8:3500207..3500533Porterinema fluviatile SAG_2381CDSP-fluviatile_contig8 3500208..3500533 -
1693571786.128167-CDS-P-fluviatile_contig8:3500207..35005331693571786.128167-CDS-P-fluviatile_contig8:3500207..3500533Porterinema fluviatile SAG_2381CDSP-fluviatile_contig8 3500208..3500533 -
1622817260.4930162-CDS-P-fluviatile_contig8:3501304..35014101622817260.4930162-CDS-P-fluviatile_contig8:3501304..3501410Porterinema fluviatile SAG_2381CDSP-fluviatile_contig8 3501305..3501410 -
1693571786.136377-CDS-P-fluviatile_contig8:3501304..35014101693571786.136377-CDS-P-fluviatile_contig8:3501304..3501410Porterinema fluviatile SAG_2381CDSP-fluviatile_contig8 3501305..3501410 -
1622817260.5070202-CDS-P-fluviatile_contig8:3502552..35026571622817260.5070202-CDS-P-fluviatile_contig8:3502552..3502657Porterinema fluviatile SAG_2381CDSP-fluviatile_contig8 3502553..3502657 -
1693571786.1440084-CDS-P-fluviatile_contig8:3502552..35026571693571786.1440084-CDS-P-fluviatile_contig8:3502552..3502657Porterinema fluviatile SAG_2381CDSP-fluviatile_contig8 3502553..3502657 -
1622817260.522221-CDS-P-fluviatile_contig8:3503250..35033761622817260.522221-CDS-P-fluviatile_contig8:3503250..3503376Porterinema fluviatile SAG_2381CDSP-fluviatile_contig8 3503251..3503376 -
1693571786.1646247-CDS-P-fluviatile_contig8:3503250..35033761693571786.1646247-CDS-P-fluviatile_contig8:3503250..3503376Porterinema fluviatile SAG_2381CDSP-fluviatile_contig8 3503251..3503376 -
1622817260.5406172-CDS-P-fluviatile_contig8:3504073..35042351622817260.5406172-CDS-P-fluviatile_contig8:3504073..3504235Porterinema fluviatile SAG_2381CDSP-fluviatile_contig8 3504074..3504235 -
1693571786.185781-CDS-P-fluviatile_contig8:3504073..35042351693571786.185781-CDS-P-fluviatile_contig8:3504073..3504235Porterinema fluviatile SAG_2381CDSP-fluviatile_contig8 3504074..3504235 -
1622817260.553029-CDS-P-fluviatile_contig8:3505361..35055141622817260.553029-CDS-P-fluviatile_contig8:3505361..3505514Porterinema fluviatile SAG_2381CDSP-fluviatile_contig8 3505362..3505514 -
1693571786.1985424-CDS-P-fluviatile_contig8:3505361..35055141693571786.1985424-CDS-P-fluviatile_contig8:3505361..3505514Porterinema fluviatile SAG_2381CDSP-fluviatile_contig8 3505362..3505514 -
1622817260.5660696-CDS-P-fluviatile_contig8:3505798..35058971622817260.5660696-CDS-P-fluviatile_contig8:3505798..3505897Porterinema fluviatile SAG_2381CDSP-fluviatile_contig8 3505799..3505897 -
1693571786.2086558-CDS-P-fluviatile_contig8:3505798..35058971693571786.2086558-CDS-P-fluviatile_contig8:3505798..3505897Porterinema fluviatile SAG_2381CDSP-fluviatile_contig8 3505799..3505897 -
1622817260.5785263-CDS-P-fluviatile_contig8:3511856..35119071622817260.5785263-CDS-P-fluviatile_contig8:3511856..3511907Porterinema fluviatile SAG_2381CDSP-fluviatile_contig8 3511857..3511907 -
1693571786.2177935-CDS-P-fluviatile_contig8:3511856..35119071693571786.2177935-CDS-P-fluviatile_contig8:3511856..3511907Porterinema fluviatile SAG_2381CDSP-fluviatile_contig8 3511857..3511907 -


Sequences
The following sequences are available for this feature:

protein sequence of mRNA_P-fluviatile_contig8.14644.1

>prot_P-fluviatile_contig8.14644.1 ID=prot_P-fluviatile_contig8.14644.1|Name=mRNA_P-fluviatile_contig8.14644.1|organism=Porterinema fluviatile SAG_2381|type=polypeptide|length=1094bp
MWWRIACFPYVCPHFCEASAFANMSSDSESNSDAEPAAPVKAAVVTAPTK
AAAKGKGVKGKGKGKGKGQGGGGGGAGDEDDLDAIMAAIEGGDAAAKPKS
APAAATAAAPAAPAPVAAPMEDPAAAAARLLAQMGGGAGGAGEESKSKKK
KKKKKGGGTDKKEEEEDKKPKQSAAGKALAERMARQREEEERIKKLEEEE
ARRIAEEEAKEEAARKAIEDEKARKRAKAKEKLERKKKDGTYKTKKQKEQ
EARAEAAKAAMLAAGLDVPTGPAESGGAAGGGDKSKKKSKIVYSKKKKPA
HNSKQAEAAAPPAVAPTAAPPVEDIPPPPPTPSASGGAKVDEEAEAKAPT
EEEEQADGAVDDWEDAVDDWDSADVTELLGNITVKDGSSNGKFDDEEEDL
IEKDRRDEQERLRKQGIRQQKLEALRKEEEERHRKEEAERQRQILQAEML
KDEARRKRLAREQAAREARTKESLRSPIVCIMGHVDTGKTKLLDKIRQTS
VQEGEAGGITQQIGATFFSKETLCEKVAELNETMKVDIRLPGMLVIDTPG
HESFTNLRSRGSSLCDIAILVVDLMHGLEPQTIESLNLLRSKRTPFVIAL
NKIDRCYAWKSTPNAPARLSLEKQESDTKAEFEDRAMRIRTGEGDGEGPQ
HRAVLEERRPHPHRVHGANVCHHRGGHPRLALVARQAHAAGEVDGEDNVH
ARPLGVHGAGGEGDRWAGHDDRRDHSQRPPQGGVRMTLDSIVVCTLDGPV
VTSIRALLTPPPNRELRVKSEYVHHKVISGAIGVKLCATGIEKAVAGTPI
MVVGQEDDEEDIKEEVMRDFTDLMKMDLEPKGVMVQASTLGALEALMQFL
RKECDPPIPVFAVGIGSVFKKDVMRASIMNEKGTPEYATILAFDVKIDSD
ARKHAEENNVRIFTADIIYHLFDQFTAHMDRLMEQRRQDAKNLAVFPCIV
KIMKEHVFNMKDPIIVGMEVVEGTLRVGTPLCIPALGGMEIGRVTSIEQN
HREVDKVMKGANGAVRVDDAHGGSTLTYGRQFSADSGSLYSSITRETINA
LKAHFRDQVATAVSNCRSVSSSLLRLNGGVSWLLCATSPVPFG*
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mRNA from alignment at P-fluviatile_contig8:3483484..3511945-

Legend: UTRpolypeptideCDS
Hold the cursor over a type above to highlight its positions in the sequence below.
>mRNA_P-fluviatile_contig8.14644.1 ID=mRNA_P-fluviatile_contig8.14644.1|Name=mRNA_P-fluviatile_contig8.14644.1|organism=Porterinema fluviatile SAG_2381|type=mRNA|length=28462bp|location=Sequence derived from alignment at P-fluviatile_contig8:3483484..3511945- (Porterinema fluviatile SAG_2381)
CCGCGCTCGCCCCGCTGCCCTTCTTGCTGCCGACGCGGATGTGGTGGAGG ATCGCTTGCTTCCCGTACGTGTGTCCGCATTTCTGTGAGGTGAGGCGGGG TGTGGTTTGAGGTTTTGGCGGTGGTGCTGGGGCTGGAGTTGGGGTTAGGG ATGAAGTCGAGGTCGGGGTCAAGGCCGCGGCAAAATCGGTCGTCTTGGTT TTGCTCATTCGATCACGGACCCTGGTAGCGCACCATCGTTTCTACTTCAA ATGGAGGCACCGCCGACAAAGAATGCGCAAATGTTGTCACTCGCACTTGG AATAGAGAGCCTGATTTCGTTGGTAGCCATGGCACTGCGAACGTCAACTT TTTCCGGGGAGCGCGAAGGGGCTAGAAACTCGGCGAGCGGAGAACAAATA TCCTTACCAACACGCATGAGCTGCTGAAAATTAGAGTTGGCTGGTCCATT GGTATATTATACTACCGCGGTTGATATACCAACGCGAAGGAGCATCGTGT CCCGGCCGGTAGGATCAACAAAAATGTGGAAAATCGATTGACCTATTCAC TTGTCGAATAAAGCCGGCAGCCAAAAGCAAGACGGTCACGGCAGCCAAGG GATCGTGCGGACCATCCAATCAGATCGACCGAGCTTCTACACCAGCCGAT GATTCGTCCAACTCGAAATCAGGGGGCTACCGCCAGACAGAAGAGAGACC AGGGACCACGAAACGCAATAAATACAGCAATTCCCTACCTAGCCGCTCTC TCCGAAGACAAACCAATCACGTCGACCGAGTCGATTGACTGAGCGGCCCA AACACGAGCATGTTTCATGCGGATGCCAATGCCGATGCCGGCGGTCACTT ACCTTACTCTTAACGGGGTCCACGACGGTTGTCGACGTGCACGGGCACTT GAGGCTGACCTTGTGTCCGGTGTTCTCAACGACGTCGACATCATCGTCGC CGCCGCCGTCTGTGGCCTGTCAAGGGCGACGGGGGGTGAGCTCTACTGAT ATGTACGGGGCCCCACAGCACTATCCGACAACGGACACTCGCACCACCTT TGGTGCGAAGCCGCCAAGAAGCGGCCTCGTAGGCTTCTCGCCTGTTGAGC GGCTAGGTGACTATTGAGCCCGGGCGGTGAGCACGGGAAATCCATCACAC CACCGCTTCCGTCACGCTGACTAAAAATAATGCACGCCAACATGGAGACA TGTTCAACGTCTTTGCCCCACGGAACCGAAAGGACGAGGGGTTTGATGCC ACCGCTGTGTTCGTGGTCGTCTGCAAACATGTCAGGCCAGTTTCATCGTC ATCGAGAATAAAATTGATTTTTGGACTTGTTGTAATCGACTGCGCGATGC ATACCACGACGACGAACTATCCCTTGCATTCCATCTGTAGGACGAACTGC ATCGTGGCGAGACATCGGCAGCCTTACACCCCAGCAGCAACGCCGCCGCC GAAGACTCATCTCCTGTGCAGCTTGTCATAAGCATGCTGTTGATGCACCA CACGATCTGGACCCCATTAGGCACTGAACACTCCATCGAATACCGTCGTG CTGCTACCGACGCGACCCTACTGGCCCTCAAATAAAGGACTGCAAATGGG CTGCGGAATGTGCTGGTAAACATTCAGACGCCGAGCTCGCCCGCAGAGGT GTTAATTCAGACTCCCGTTTTGGGCGTCGCGGTTCGAATCAACTCACGGA GATTTTCTTCATGACTTCCTTGAACTTCTTGGACTCCAGCGCCTTCTCGT CAGCCCCTTCCATGGCCGAGGACACCTCGCCCTTCATCTCTTCCAGGAAG TACGACATATTCATCTGATTACGTGTATTCATTGGTAAAAAAAACAGACA GCCGGAAAGGCGTGACCCGTCTGGCACGTCTGCAACGCAGCCGAGAGGGG AGCGTCTAATAGAGAAGTGAAAACTGCTCGAAAGAGAACCAAACCAGCAG TAAGTATGCACCGAGACATCATCACCTATAAACGCAACTGCTAATTTTCT TCTCTCCTCCGAAACGGCGCATGCTTGCAGGTGTAGTCGCGAAAGCGACA ACCAGGACAATACCTCGCGCTTTGTTAAACGGCGCAAAACTCTGTTCACC CCTGTACGATATTAATCGACCGGCTTATCGCTTGCGTGGACCAAGACGAC ATTTTGACACAGCTGCCTAATATATTTCGGTTCCGTGCGTTAATACACGC GCCGCGTGAACACAACCTCAAGTGAATCAAACCAACAAATGAGCTGAGTT TTGAGACAATCGTACCGCGCAACACTGGAGCACCATCTTGCACGTCCTCG GATCCCTGAGCTTGAGGTCAAATCGTATGCTTTTGTCATGAGACTCTCGG TCTGGATGGATGCCACTCGATCACCAGGTACCCGTACAGCTGGAACATAC CTCCGAGCACTGGACGCGAATTAATGTGCTCCAATTTTCTTAAGGAAGAG CTGACAAAAATGACACGTAATCATCGGGAAACTACGAGTGAACAACCAGT GTGCACTCAAGTTGCTCAACTACGCAATATCTCGTGCCTGCTCTGGGGGG AGTTCGCCGGGTGCTGGTGCAGCTGCGGAGCCCCTAGCCGCCCTGTTGTC CATCTGTTCTGCGAACTTCTTGAGCGCCGAAGTAGTCGCCTTCCGCTGGA CATCAGCAGCGTTTTGAGCATCAACCACACCCAACGGCAAAATTCGAGGT GAAGTAAGTACTTCGACGAACAACGGAGGCAAAAGAAGGGAGCGACTATC CCGCACACGATGCACGACCTACTCAATCTGATCCTGGCGCTATTTTTCTT AAACCTAGCTCCGGCGAGCTCGGAGAAACGTCACTCCTGACTTCAGTGAT GGATGTTAAGCGGACACAAAAGTATCAAATAACATCGGTCAGGATGATCT GTTCTTTTCTGTTCACAATAAAAAACTTCCGATCACCTCTAGCACCTTCA CATATCCGTTCCCTGTTCTACCGGATCGATTCCGTGGTCACAGGCTAAAA CGTGACCTAAAAGGAGGTACAAGAAAAAGACGAAAAAAAAAGTGGATCCC AGATAGAACCGCGGGGCCCTTTCTACCTGACAGCGTGACCACTAAATGAA AGCCTTGTGGCATGGTCAAAAACGAAGGACACCCGCACGGCTGACCTTGA GTTCGAGCGTGGCGCCTGCGGCGGCGAGCTTCTGCACCTTCTCCGCAAGT CTTTTGTGGGCTTGTTTGTCCAGGGGGCTGTTGGGATTTGGCCGCAGGTC CGAAGCAGGCAAATGCGGCGTCGGCAGCAGCAACAAAACACAAAGAGAGA CTCCGGCCGAGGACAACAAGGGCCGCCGAAACCTCGGCGTCAAACACACC AAGAACGACGACGTATCGAATAAGCACGGCAAATGTTGTGAACGATAATA TCACACACCGCAGTGCGCAACAAACACAAATTGCGGGCGTTCTAACAAAC AAACCGGAATGGTTCGGCGTTTGTCTGTCGGCTCGAACGGCGCGACGTCG GTAAGTCTTGCGGGAAGAAGCTAATTACACTTTACTGCGTCGAGGGTGTT GGAGACCAGCCGTTAGCTGTGTGCTCTCCTCCGTTCTCGTGGCACGGCAT TCTGTAAGCCATGCAGTCAGTCGATATGACAGGCGCGGTTCGGTTGCAAT CTAAAGCAGGGTCTGGTCCTCCGATCCCGCTTCGCATTAGGTGCTCTTGA AACCAAGGTCTACGGCCAGGGAGTGATGGCACACTCATCTAGATGCTGTG CACTTGAAAAACATCACCAACGTCGTTTTCTCTCCCCATACGCTGTTGAT TTCACGAAATTAAATGCAAACCTGTTTGTTATCTCCCCCAGCCCCACGGG TGCCGCTGTTTAAAGCATGCATCAACCGCACACCTGTCGTCCTCCAGTCC CAGCTTGGTGGCCAAGTCGTGGACGCCCGTGCCGATCTCGTCGAGAGCTT CTTGCATCTGGTTGTCTCTCTGGGTCACGCCCCGCGAGAGCACCCCTTCC ACTCCATACGCCGACCCTCCTCTGCTGGCTGCCCCGCCCGCTCGGTACGG CGGCATTTCACTTTCTGTTCTGGTTTCTTCTTCTTTGGTTCTGTGTCGCC TTCTCCAGGATGAGCGCCACCTTCTTCCTCCGTCGAGGCGACCCAAGAGC GGGAACAGTGGACCAGCAGTGAAACGGGGAACAAGAAGATAGACGACGAC GCGAGGGCAGCGAGTAGTACCGTCGTTCGCGAAAGCTGCCACGCGCCCGT GGGCCGGTTTTCAACGCTCGATACTGGTGAACCCATCGCTGTCGAGATAT CGAGCTTCAACAATCGACCCAAGGGCGTGTCACCTTGTGCCACTGCGGTA TTCACTGCGGTCGTGTGGCTTGACTCTTACGCGGGCATCAGCACCAGGTT AGGCAGCACACGATGATGCCTGGACATGCGTGCGCGGTCGGGTGTACTCT GTTGGGATACAGCCCCGCCGAAAGCAGTCCCATCTTGGTGCACATACGGG TTCGAATCCAGGTATATGCTGAGACACGTTACCGTCATTTCACCGTCATC CCATCACTAAGTGTCCGTGAAAGAGCTCGTACATGGAAGTTGTTGAAAGA ATGTGGCTCTTTCGAGATTCTTGCGAGTATTGAAGACCACGAAGGATTGT GTGTTGAAAGTGACACATGCCTTTCCCAGCCGCGGAACATCGGCGGTTTT TTGGCGGGAGATGAAGAGTGTGCCGACTTTCGCCTACTTCATGGTGGCTT CGTTGGGGTGGGCGTGGTAGGTCGCGTTGTTGCAATCAGTGTAAGAGAGC TGTTGCGAAGGTTAAGCCGCTAGCCCTTATTTGACCAGAGAGCAGACAGA TGCAACGATCACGGCACCCTTCCCTTTCGAATATAAACCTGCCACTATTT ACAAAAAGTGTCAATCGAGATGAGGATGAACCCGAGGTGTGATGGGAGCA TGGCCAAAAGGGACACTTAATTAATACGGTAATTAATACTCCTACGGAGT ACTACGGAGTATCTGTTTTCAAAACGTAAGCCGCCCGATTTGCCTTCGGA CCACAAAAGCGCGTCACATAACTAATTTGTCATGAAAGCAAAGAACGTTT TACTATGTTATTCGATATCACGTCGTTGGTACGTTCTTACATGGCAGCAG CGGTTCGAGGCGAAGCCAACGTTACCGAGCTTTGTAGTGTCCAGCGGGGC GGTTCGTGTTGTGAGAGTGTTAACCATGTGCACGGAGAGACACATGCGGC AACACCGAAGACGAGAATTGTTGAGCGCCAAGAGACGGTCGTAAATTAGT ACGAAGCCGGAGGAGATGCACACCTGCCTTCCCTTTCTCTCCGAAAGTCT CCCTCCTGCCGCCCGAATGCAATACGCACATCAAGCACTGAACACAGCTG ATTCAATTTTCGAAATACAATCGCGTCTCCCCCTGCAGGGCAACCGCACA TTCCGTACGCGACCCCCCCGTCCTTATGTGGGAGAGCAGGCGGACACGCG CGGCTTGCGTACCCAGTGGAAAGATTTGGTTATAGAAGAATAGCCGTCGT ACGAACGTACGCGTGAGGTGACAGGATGTCCAGCAGCGACAGCGATTCGG ATGTGCCCACAGCGAAGGTGTGCGCCGACCTGTCTCTCGCCCTCTACATT GCAGCATGCACCCATGGCCTATCGTCCTTAGCCTCAAGCAACTCGGTACA TCGCCCACCCAATCCTACTTTACTTCGTGTCCTGCCCAGGCAGTCCTACG TGTCGTCTTCTTGCTGCTGTCTTTAATCTACGTTTCACTGGCATTGCTTG TTTGAAGTGTACGAACTGTGGGCCAAGAGCTGCGAGGACTCGCGACCTGC CAGCTCTCTCGTCTCCACAGCAGCTCACCACACGACCTTACTCAACTGCT GTTGGAGCTGTGCCACGCGCAAAAAAGTACGGCCTCGCGTTGTGCAGCGT GACTGCGAGACGTTAGATACGCATCGATCTGCGAACACTCATTTTTTCGT CCCTTTCTCCCCCCCTCTCTGCCGCGCACGTGACATGCATCATCCAAGGC GTCGGCGTTTGCAAACATGTCGAGCGACTCGGAGAGCAACAGCGATGCCG AGCCAGCTGCTCCCGTGAAGGCGGCGGTTGTTACTGCTCCGACCAAGGTT CGTGCAATCCTACCCGCTCTGCTTCGCTATATGTACCATTCGTTGCGGCG GGGTTCGTTTTATCGCAGCCCCCATCCCCCCATCCCGCCATCCCGCATGG CGAGCGGGACGCATATCGGAAGTGGAACTTGTTCACATCACGTGTCGCCG CACACTCCAACAGAGTGTACCCACTATCCATGTGTACCCTTAATGCACCA CTGATGCAGGCAGGCGTGAACGATCGATGCGCGTGTTCAAAACACATAGT TACTCTCTGTTCGTTCATGACAAAATTTCAGGCCGCTGCCAAGGGAAAAG GAGTCAAGGGCAAGGGGAAAGGCAAGGGGAAGGGGCAGGGCGGTGGAGGA GGAGGCGCAGGCGACGAGGACGATTTGGACGCTATCATGGCGGCAATCGA AGGCGGCGATGCAGCTGCGAAGCCCAAGAGCGCGGTGAGGCAAAAACAGA ATGCCGGCGGACTTGTCCACGAATCCTGGTCAGCAGGAGAGGGGAGAGGG GAGGGGGATGCCAAGGCAGGGTCGTGTCTCAGCGGCCTTCAAGGCGTGGG AAGCCCCTCCCTCCCCTCTCTTTGTCTCCTTGTCGGTGTTTGAGAAGTTC CGCCGCGTGAGAGCGCAAACCATTGCGCAATCATTTTGACTCTTCCCCTC AGAAGTGACTCCCCTAGACACCCTCGATCAAAGGCTTACAGCGCTCGGCC AGCCATTGGTTGGTGGTCTAGGCTGTATAGGGAGACGCCAAACATCTCGA AAATGCATTCCGCGTCTTAGCAAAGTTCTGATAACGTCGGCCTCCCGCCC GATGTCGAACTAAGAGCATTAAACCCGTCGGGGAGGGGGGCAACGGGTGG GATGCATGGGTCATGCAGACGGGGTTGGGTGGTGGTGGGACGAAGTCAGA GTGCCGATGTATTCCTGTGGGAAAGGGAGAGCCAAGGGGCGAACGAGCAT GGGTCATTGGGGCGCGGTCTCGGACTCATCTCTCGGCAGTATCCGGCAGC AGTGTTGACCCACTTTTTTGCATCGAAAGGTTTGACTGCCGGACAAGCTT GTCGTGTAATCCCGCGCGGAACTACCCAAAATGCTGAAAATTGTTACCAT GCCTTTCACCCCCTTCGACCGGTCTACGATTGATCCATAACCAAGGTGAC ACTTTCGACGGTAGTGATGGAGAAATTTGGGATAGATCTCCCATAGATAC TACGTAGATGCCGGTGTCGTATTCTCTTGGTTATGCAGCAACGAATTATC AAATTCAGTCTCGCGGGTGCTTTGGCTTGCATTATTTCGGTACGCTGCGC AACCCTTAGCGACGAAACATGCGGTACGGCCACTCACGGCTTCTGACGTG CCCAGACCTGTTACCATGGAAATTGGGAAGGTAGTCTACTGCATGCCGCC CGCCCTCCCCCGACTCATGAGAGTAATCGTGGAGTCGACGGACACGTGAT TGTTTTTACAAAGCTTGCGAACGCGGTGATGTTTTGGGCAGACTCCGTGT TTTCTTACTTGGATTTGTCGCACTGGACATGGTTGTTCGCTGCTGTCGTC ACAGCCGGAGCCCGCCGCCGCCACAGCAGCAGCACCAGCGGCACCAGCAC CAGTCGCCGCCCCGATGGAAGACCCGGCCGCGGCGGCCGCGCGGCTTTTG GCGCAGATGGGTGGGGGGGCTGGCGGGGCGGGAGAAGAGTCCAAGAGCAA GAAGAAGAAGAAGAAGAAGAAGGTATGCAACGAATGCACATCCAAATTTG CACATTAATGTAGATGATCTGAGGCGGCGAACGAAGAAATGGAGAAGGAT GAGAGTTGTCGAGAAATGGCGTACTTGGCGAGCGCGCGATCTGACCTTTG GAAACGTGATGCCTTGTGCTGGTTCACTGCCCGATCTTTTTTGTGCTGCT AACCAAGTCGTCTGTATTGGACCCAAGCTTTGGTTGGAGCGACGAATCGA GTGTCGCCCCCAAGCTTTAATTTTACCAGCATGTGGCCTGATTTGTATGG GCAAGCAGTTTGGTGTGTCGGACGGGGGTCTATCAAACTTTATCGCGCTT TCCTTTCATGACACACCGAGCGGGCCGCATTTCTGCGATGTGGTTCCTGT CTCAAGAGTATTGTGGCTTTCAGTCGGTCCCCGCTTTGTTGTGTGCGATA GTCCAGTCGCACTGCTCTTGTGCATATACTTGAAATTTTTCAAGAGGAAG AGTCACGAGTTGTGAAGAAAACAAACCTTTTTCTAACATTAAAAGCAGCA AGAGGAGCATGTCAGGGGTAACACTTGCTTTTCTTTTCTCCCTACCTGTC ACAAGCAACAACAACACCCACGCAGAAGCACCGCGCCTACGCAGCCGGTT GGGATTGGTTGCTGACCGACGTACCCCACCCCATCGGCTTTTTTTTTTCG CACGCTGTTTTGGGTTCAGGGAGGCGGGACCGACAAAAAGGAGGAAGAGG AAGACAAGAAGCCGAAGCAATCTGCGGCAGGAAAGGCTCTGGCAGAAAGG ATGGCCAGGCAGCGAGAGGAGGAGGAGCGAATCAAGAAGTTAGAGGTGCG GGGCGGTGCGGTAGTAGTGCCTTTTGAAGTTGCCACCCAGGGTGGCGAAC TTCACGGCATGCGCATCCCGAAGACTTGCGAGCACCTACGGTAGCCCTGT TTTCGCATCGGCGTGTGCCGCCGGTGCCACCTCCGTTCCACCAGTTGTGC TGTGGAAACGAAGAGGGCAGAAGCCTGCCGGCATTCGTCACTCGCGCGCA AGTCCGTGTGCGATCCCGCTGCTGCATAAACGACTTGAAGTAGCAAAATC GATCCGCCGCTGGTGTGGTCTATCTCCGTTGCTCATTATCATGCTGAAAT GCTTTTTCAAGGGCCTCCTAGTTGCCCGCTCTGTGGTCTCCTCTCTCTGC TGCCTTCTTTCTCTGCTTTGCCCCCTCCTTGTGCTGCACTTTCTCGACGT TGTCTCCTCTCTCTGCTGCCTTCTTTCTCTTGTTCGCCCTCTCCTTGTGC AACACGTTCTCTCTCTTGTCTCCTCTCTCTGCTGCCCGCTGTCTGCTATC CCATTTCGCTGCCTTCTTTCTCTGCGTTCTTCTCTATCTGGCTTCCTTTC TGACTTCTGCTGCGTTGTGCGTGTTGCTGCCTGCGCAGGAGGAAGAGGCC CGCCGGATCGCGGAGGAGGAGGCGAAGGAGGAGGCCGCCAGGAAGGCCAT CGAGGACGAAAAGGCCCGCAAAAGAGCCAAGGCCAAAGAGAAGGTGCGTC GGACCCATTCGGCCGCCCGGTCGCGCGAACCGTGGATGACATGGCATGCA ACACCATTTGTGCGATATCAGTCAGCACTCGCTATGTCGACGACAGCAAA GGCGAGCACGACGCCGTTTTCCCTGGAGCTAGGTATATTGGCGGTAAGGG TGATGGGCCACACCGCCCCCGCCGACTCCCGTACCTCGATATTTTGGGGG CAAAATGTGATTGACCACACCCTTTGCGCCGATTTAACAAATCGATGTCT TGATGGCAGAAGTGGTGATTTATCGCATCCGCTGGGCGGATTTTCGGAGC TCGATGTCTTGTGGTAAAAGAGGCGATCGAGCCAAACACAACGCGCGTTT CGACGACCTTGGCGAGATCTTTGTGGTGACGCATCATTCGACATTGATGA AGATTGGGAATCGACCCGGGCGATGTCGTATTTAGCGCAACCTTCGACAC TGCGACCACTTGCTTTCAGACTGACCACACACCTTCGAGTTCATCTAGTG CTAGGGCGTGTCGGAGAATAAAGCCAAGAGCAAGGTCAAAGAATTGAGGT TGTGGCGCATTGATTCGAGATCGTGATCGGTGGCAGGAAGGCGGATGCTT GAAGGGCGTGCCAAAAGGTGTGGACTACAGAGGAGGAAGTTTTTTCACGG CAGATTGCAAACATGAAAACCGGCGGATACCTTCCTTTGTTTCTCTGCAA GCGGGCGCGTCTCCGTGACCTGTGGACTCGTTTCTGCGCGTGTGGGAAAA CCGATTTGCGGGGAAAGAAGTTTGGAAAAGGCGTTTTTCGCTTGAAATGA CGAGAATGCCCGTCCATCAAAAGGCTGTCGTGCTTTCTGTTTGATTCGAT CTCCTTACCGGCAACACCGAATCGCGAAGAGTGTGGAATTGTATGAAGGT AACGAGGAGTCCAAGATAGGTACGATTATCATGGCGACCCAAGGTCTTCG AAAAACGAATCTTGTACTACTTATCTCTTGACGCCATTTTCAGCTGCGCG TGAAGGAACGCCCCCCGCCATCGGATCGCACCGACGGCCCACGCAGCAGT ATTGCCTCATTCGAATGAAGAGCTTTGCAACGACTCAATGGTTGCACACA TCTTGACATTGGTCTCGTCCGTTCGTTGAAAAAAGCTGGAACGCAAGAAA AAAGATGGCACCTACAAGACCAAGAAGCAGAAGGAGCAGGAGGCCCGGGC GGAGGCTGCCAAGGCGGCCATGCTCGCCGCCGGTCTCGATGGTGAGCATC GAGCATCGAGAGTCGTCTGGCTGTTTTTCCGATGGTGCTTTCAGCCGTTG GCGCAAATGGGGTTTGCTCCAATGGAGCGTGCAGCCGTTCAATTCAATGG CGCTTGTTGCCGTTCGCGTCAATGAGGGCTGTCGTCGTTCGCGCCCACTT CGCTATCGTTGTTGTTGTTGTTGTCGTTATTGGTGGCGCTGTGCCGACGC CATCGTCGTCGTGGCTGGTTCGCTCAGGTTTGAGACGGTTTCGACTTTGA ATTTATTGCAGCATTTTCCGCCGGATCCCTTCTGTTACACTGATCCCGTC CGAGGATCACAGCTCTCATCCGAGGATAACAGCGGCCAACAGATTGTTGC AAACACACGCTGACCCGCCGTAATCTGCCTATGCCTCGCCGAAAGCCAGC ATGGCAACGGTTGTTTCTACGAAGTCACAAGTCATGGCGGCTGAACATAT CCCTTGTTTTTGTAACGGTATTAGATGGATTGCGTAATGGCCAAATCGGA GTTATACACATCTCTTTCCCTTTCCCGCTCGCTCCCTCTCCCTCCCTCTC CCTCTCCCTCTCATTCTCTCCCGCTCTTTATCTCATTCTTTCTTCTATTG CTCTTGTCTCCCTCACTTACTCGGTTTCTCTCTCCCTGCCTTCCCCCATT TTTTTTTTTTTTCGCTCTCTTTCTGTCCCTCCCTCTCGCTCTTCCTTTCT CTCTTGTATTTTCCATCTCGCCCGTCGCGCAATCCCGCCTCTCTTGGTGT CTTGATGCGAAGTTCCGACCGGCCCAGCTGAGAGCGGCGGCGCCGCGGGT GGCGGCGACAAGAGCAAGAAGAAGTCCAAGATCGTCTACAGCAAAAAAAA GAAACCAGCCCACAATTCCAAGCAGGCGGAGGCAGCAGCCCCACCTGCAG TAGCTCCAACGGCGGCTCCGCCAGTGGAGGACATCCCCCCTCCCCCTCCG ACGCCGTCTGCAAGTGGCGGGGCGAAGGTGGACGAGGAGGCGGAGGCGAA GGCCCCGACAGAAGAGGAGGAGCAGGCCGACGGCGCGGTGGATGACTGGG AAGATGCTGTCGACGACTGGGATAGCGCCGACGTGACGGTGAGAGGGAGG AGGCATGTGTAAAGTGTCGCCTGGGGGGGATTGGTCTTGTTACTTGCCTG GTGTTTCGCCAGTGGACGAAAGGAGGCGGAAGGGATGCGCGGTGGGGGGG CGGGGGTTGCGTTGGCAGGCGTTTTGGAGTCTTTGGAGAGACCGGGAGTC GAAATCACCGGGAAGTCGAAGGCTTTCTTGGTGTCAAGCCGTACCATTGT CTCACTTTGCAAGACGAAGGACAACGGGCCCAACGGGTGTCAGCTGCACT TCTTCGGGAATACCGCGATTCTGCTCGACCTTGCACGCGGTGCTCGCTGT CTGAGCTGTTTTTGTTTGGTGGTTTTTGACTCTTGTCTCTCATCCCCGTC TTCATCCCGGACACATACCGCCTTCTCGCACCCCCTTGTGTCTGTTCACT CTGCGGAGCATCTTCATTCTCCCGCCTCTCTCTCTCTGTCTCTCTCTTTC ATCTTTCCTCTTACTTGCGAAGGAGCTACTGGGCAATATCACCGTGAAGG ACGGATCCTCCAATGGCAAGTTCGATGACGAGGAGGAAGACCTGATCGAG AAAGATAGAAGAGACGAGCAGGAGAGGCTGAGAAAGCAGGGCATCCGCCA GCAGAAGCTCGAGGCGCTTCGCAAGGAGGAGGAGGAGAGGTGCGCAGCAT TCACTGCGTCGGAGTATGGTTGATGTCGATGGGCGTTATCAGGTACAGCA AGAGTAAGGTCGGACCTTGTGGGAGCGGAAGCGCAGAACTGGTGCAACGG GAACACAGTAGTTGTAGGTTACCACGCTTCTGTCCGAGTTTTGGTTGTTG TGGTGAGGGCCTACCTCGCAGCAAAATTCGAAGTATCCAAGGGAGCGGGA CGATGGAGAGGAGCTGTGCGGTCAACGGAACATAGCGTTGCAAAACATCA ACTTCGACTGTTTTTCGCTTCTCCTTTCCTCATACTACGGAGTGTTATCC ATGTTTGACTTCTCGCCTCTCCGCCGTTTGTTTGATGTCTTTTTTTTTTT TTGTCGGGCGTTGCGGGCGCTCTTTGCGCCTTCTCGTTGTGCCTTTTTTT CGCGACGCAGGCACCGCAAGGAGGAGGCGGAGAGGCAACGACAGATCCTG CAGGCGGAGATGCTCAAGGTGAGAAAACGGCCAGGCGAACCAAGAGCGGA AAGCGGAGCGCGAGGCGTTGCCGGAATGGCTGGCTCGAATTCGAACTTTA GACAGGATTCGACTGTTTTTAAAATATTGAAATGGGGTTTCCCACGGCTT GGTGTGTTGGATTGTTGATTTGGAGTCCAGCTATGTGCATAGTGGGATAG GCCGAAATCGGTCCACAGTCCGTGACGATTTTTGCTCGGCTTGAAGGCTA GCACCGCACGTAAAATCGTGATCGACAATGCTGATCTATTTTCGGTATGA ATGTTTGGTCACGGACCCGTCTCCCACATCTTACGTTGCAGTGCGTTGAA ACGATATGGTACAATGGCGGCTGATTTCAGGTGGGAAGCATCTCCAGCTG CCGGTTAAGTCCATTTTTTTTTTTTTTTTTTTTTTTTTTTTTTCTCAGGA CGAGGCGCGGCGAAAACGATTAGCGAGAGAGCAGGCCGCCCGTGAGGCCC GCACCAAAGAATCGCTGCGCTCACCAATCGTCTGCATCATGGGTCACGTC GACACAGGTATTTGATGCCACACAACAGCAGCAGTGTGCATCATGGGAAA GGTCGGCACAAACACGTGCAGCGGTAGCAGCAGAACTGCGGGTGCAGTAA TATTACAATGCATGAGCGGCTCGCGAAGCCAGGGTGCAGTCAACAGGACC ACTCCTCAGCAGAATATCAAGAGGCATGTGCTGCTCAAAGATGATTTGCT GAAGGGCAGGGTCAGAATCGGAATCCCTCCGCGTGACCCCATGATGGGAG CTCAACCCGGTAGAGAAGCTCCGACCGTTTCGTTTGTCCGAAGGGAAAGG AGAGCGATCTTGCCAGTCGAAGATCCCCGAAAAGAAATGGGGCGGTGGCG ACGCGATGCGGCGCGCTTCAGGCGGTGGTGGGACATCGTTGGCCACGCTG TCCGAGTTGTGTCAAGAAAAGCTGCCCTGACCTCCAACCCTCACAAGCAC CTCGCACTCCGCAGTAGGTGGAACTGTTTGGATTTCAACAGCTAGTCGCA GACGAGATGCTTTTGTGAGTGGTTCCGAGAAAGACGGAAGCCGTTGTGCT CCGCTTTCCGCGGGAACGAGCGAGTTTAGGTGCCGAAATAGCCGCAATGT TCCGCACACGAGGTATTGAGCGAGATTCGGTGGTCGTAGTTTCAGGCAAC GTACTCGCGGAGGACGATTTTCTGCCTTTTTATTTATGGGCGGACTCGGC AGGCAAGACGAAGCTCTTGGACAAGATCCGGCAGACCAGCGTGCAGGAAG GCGAGGCCGGGGGTATCACGCAGCAGATCGGCGCCACCTTCTTCTCCAAG GAGACCCTCTGCGAGAAGGTGGGTTTTACCTCCGTTGCTGGCAGGAGAGG CACGGCGCGTGTAGTCGCTCAAATGTTTGGGCTCCAGCGACGGATCAGCC CGTGGCGGCCGCAGTCAATGACGTTCGGTCTCACGAAGTTAGACTCGCTG AAGTGCAGAAAGAAGAGCTCTCGGATAAATGTGCTTCGGACGAAGGCTGA CGGCGACGGGAGGACGGATCCTCCTCTGATGAGGCCTTGTTCATTTTGAC ATCTCTCCACATCGAACAGGCATAGGGCTCCCTAGCATGCACACACTTTG CAGAAATCTATCGACTTGATACCTGTTTTTGACGAAGAGGCAGCGAGTAT TATCCAGGTCGTACCCCTGTAGGGTATGGACATTTGGGGGTAGTGGAGGT GATCGACAAGGGTTTCAATGCGACGGCAAGACCAACATTACCACCAACAG CAACCATCACACGCACAACAACACCTCTGTTCCACATGTTTATTGGTGTG TGCCATCGATGCTCGTAGTCTCGCTGTTAAAAACAAGAGAAGACATACAA ATAGTCACCTGCGTAAGACGGACGGCCTCGATTTCATGCGTAACCTCGTG CGCTGATTTTCGTCGCGTGTTCTCGGAGGGAAAATGCGGGATGCGATACC GGGACAACACGAATAGTGTGAACTTATGGGGATGGACATGCACTCGTGCC CGCTTCAAGGACCCCGAGATTAAGGGCACACCCCGCTGTAAGGGCACTTC TTTTGCATTGTGCAGAGGTCGTAACGAGTCCTCTTCCAACTAATCCTCAG CACACATCTCGCGTCAAGGGTCGAATTATTGTAAATCGTTGAGTGTCCTC GAAGATGGGAGGACTGTACCGCTATCTGGAAGTCAGATCGCTAGCGTGGT GTCCTTCACGCACGAAACGAGTGCGGTGACAAATTGATTGTGAATGCACA AAATGAGGACGGTGACAATTTGGTGGTGAATGCACAAAACAAGCACCGTG ACAAGTTGGTCGTGAACGAACAGGTGGCGGAGTTGAACGAGACGATGAAG GTGGACATCAGACTGCCGGGCATGCTGGTGATCGACACCCCAGGTCACGA GTCGTTCACCAACCTCCGGTCGCGGGGGAGCTCCTTGTGCGACATCGCCA TCCTAGTCGTCGACCTGATGCACGGGCTGGAGCCACAGACGATTGAGAGC CTAAACCTCTTGAGATCCAAGCGCACCCCGTTCGTCATCGCGCTCAATAA GGTAGACGTGCAGAGACGACGCGCTCAATATGGTACCAACGCAAGACAAA GCGTACATAGAGGTACACACGCAAAGACGGAACGCTCCGAAAGGCACACA CGCAAGTACGTCGCGCTCAACGAGGTACACATGCGAAGACGTCGCGCTCG ACGAAGCACACATGCAAAGACAGGACGCTCAAAAAGGTAACAACGCAATG TTGAAGGTCCAGTCGGGGGTGGCGTGATGGGGCGGTGGAATCAACCCAGG ACAACCGCAGGTGCTATCCTTGATCCCAGCGCACCCCGTTCGCCGTAGCC ATTTTTGCCCGCGACAAGGAAAATGCCAAATGAGAGGCGGGGGTGCCCTG TCTCTGAGTCGACTTGATGGCTTTGCTGTTTCACGTGAGCCATCGACGAG CGCTGATTGTCCTCAACGAGAAGAGAGTGGGTTGCGTTGGCGTGTGCGGC AACATCAAGGGTATCGGGCGATGATTGCTGGCAGCGATGCACGTGATACG CGTGGAAACAAATCTGCCTTCGTGTCTGCCGCTGCCGCTGCCGCTGCCGC CGCGGCCAGATCGACCGGTGTTACGCTTGGAAGAGCACCCCCAACGCGCC GGCCCGGCTGTCCCTGGAGAAGCAGGAGTCAGACACCAAGGCCGAATTCG AGGACAGAGCCATGCGCATCAGGACCGGTGAGTGGAGTCGAGTCAGTGTT GCCGTGCGGCCCCTCTTGAGTATGCCCCTCCTGAGTACGCCATCTCCTTC GGACGTAACGAACCATTACATCGAGGCAGCGGTCGGTCATCACTCGAGCG AGTGAGACTGACGTTGGTGGGCTTGTACTCAGTAGGGAATCGACGCTTTT CTTAGGGGGTGTACTCATGAAAACGCATGCCGTAGTCGGTCAGACCATAG ACCTCGCGTCACCTACAATGCCGGGACGGAGCGATACGCCGGGTTTTCGC CGGCCAGGCGCGTTTCACAAGGATAAGCCAGCATCTGGCCATCATCCTTG TGTTTGCTGAGCCAAACCGGGTCTGCCATGGGTTGATTGGGCATCCGGTA AACCAAACGTTTCACATTCGGCAGGCTCGACTATTCTTCAAGTACCGCAA GGGACTTCGATCTTTGCGCGCACTTATCATATTGGCGCGCCACACACAGC GAACACGTCGCTTCGTGTGTGATACACTTGGAGAATAATCTGCTTATATA CCCCACAGGTGGATATTTCATAAGTATGATTGCTCTAGGGCGTTCCACTA TCCAGCGTTCAGCGGACATCCTATAGGGTGTGATCTCTAGGACCGGAGTC CACAAGCTCACAGGATATACCGCATGAACAACCCCATGCCCTATACAGCA GTTTTACAGCTCCATGCCACAAGAGCCAACCCTACCTCGACCAATCCACC CTCGAAAAAGGGGGAGGACAGAGGGGTTATTTTCTTAGGGGGGCGTACTC ATGTTGTGCATGCCTTAGTTGTTAGACCGTGGACCACGCGTCCTCGAGAG GACGGAGCATTGTTCCCGCATTTCTTAGGGAGGGGGGGGGGGGTGTCCTC ATAGTCGTGCATGCCGTAGTCGTTAGACCATTGACCTCGCATCCCTACAA AGCCGGGACGGAGCACGCCGGGTTCTCACCGGACCAGGCTCTCACACCAC CAAGCGCGAAGCGCCGTGAGGTAGTCGGCGAGTCGCATGAAGGGTGCGCT GCATCCTGCTAAGGGTGTTCGGCATCTTGTGCTTACTTCCTTGCATACGG ATGACAGTTGCGTATGGCTTAATTTATTTTCTGGTGCTTTCACTTCCAGA GACAGTTGTAAGCACTGTGTAACTGCCTCGAGGGTGCTTGACCTACGTGG TGCGATCATCCCCCTTGCGCGGAGTGAGGGTTCTCCCCCCCTCACAACAT GATCTTCTCGACCACCATTATGGTTACCGCCAAAAAAACACAAAGGAAAA AAAAAAGACGGTAACCTGGTTGCCGAGTTCAACAAGTGAATTGGCTTGTT TTACAACGTCGTTGCCAAGCGACGAAAACCCAATCCCGATGGCAAACACC GAGGTGAGAGCCAGCGGAAGGGCGGCATTTCTTAGGGGGGGGGTGGATTA CGCTGAAATTAGATTGAAAACATTTAGTGTAAAAAAATTACGAACTGGCA AGGAGGACAAGCCTAGATTTCTTGCTGGCTGGCTGTCGGTCGGCGGGGGC ACACAGGTCGTAATTCAGCACTTGCACTTCTACCATCTACCCCCTCCCCC CCCCCGGCGTACATTTTTTTATGCTCGTATCCTTCTGTTGCTTTGTATAG ATTTTAGAACCGGAGGCTGTGAGAGGCTCCTTGAGTGGATGAACAAGAGT CGTGTACCTCCCCATGATTTCTCATGCGCTTACCCTCCAAAACTAATTAT TAGTGCATACTCTCGAGTAGGAAATAGCATGCCCCCCCTCCTCTGGTTTA GGGCTTATCGAAGCTTTGGGGTTTGCAGTGCGAGTTAACGATCTGTATTT CCTCTATGCTTAGGTTTAGAAATTTCTCTGCTGTCTGTCTCTCAGTCTGC TGTCGGGGGCATCGTACATGTACCGTGAGTTGCCCTCGCTTGCCAGTGCC GGCACGAAATGATTACGTTGGTTTGCCGATCACTGCGCTGGCGCGCGCTG CGAGAAACATTGCACGGGTGCATGAGCAACAGCGCAAGAGTCGGGTGGTA CCCGCGTTGTAGTTGTCTCCTGCCGAAAATAATGCTGCTTTGCGCGGACC CGCCACGCGGAGCACAGAAGCGTTGGTTAAATCTGCTCCTCTGGCTTTCG AGCTCCTGGTTGCTGCGGTTGCACTTTTTACGTTGTGAGGATGCACTGTG ACCCTGATGGAAATAAACCTGATCGATCATGGTCCATTTCTTTCTCTTCT CTCGCGGCAGAGGTGATGGAGAAGGGCCTCAACACAGAGCTGTACTGGAA GAACGACGACCCCACCCACACCGTGTCCATGGTGCCAACGTCTGCCATCA CCGGGGAGGGCATCCCCGACTTGCTCTTGTGGCTCGTCAGGCTCACGCAG GTGATATTAATATTCGATGTTGCACGGAGGGGTTCTTTTTGCGTTCATTT TTGTTTTTCCCTCGCGTGTTGCTGTTGGACGGCCAAAATTGCAGGGCTTG AGTTGGCTGAATGTTGTCGTGAATCGTGACGTTTTGGCTTGCTTTTTACT GCTGCATCGTGGTTGGAATGACGTTTATTGCAGCAGAAGATTCCTCATCT CTTGAAACTCGAGTGGCGCGGAATTTCGTGGTCACTTCCACCGTTTTCGT TGGACGATTTCACGGTTTTTTATGTGCCCCACTTCGGGACGCAGGAGATG CTGAACGAGAGCATGTAGTGTCCATACCCTAGCCCTGGTCCCAAACTCCG TGGTAAATCTAATATCTACTTCGAGCGTAATGTGCCTGGGAGAAATTACT GTCCGTTTGCTGCCGTTCCCCTCCTGACACCATCGACTTCGTTCGAAATT TCAGTTGGAGTGGCTGACAAAGAAGGCTTGGTGCTTGCCCTTACTCTTAT CCCACCCCAGTTAAGGAGAAGAGGCTCAAAAGGAAGCTGTTTTCGCCCGT ACTGTGACTACCCGATATTTTCTACGCCTTATATTCGGATCCCACCCCCC GTCATTCCTTGTCCATGGTTCGAGCAGGAGAGGTTGACGGAGAAGATAAT GTTCATGCCCGACCTCTTGGAGTGCACGGTGCTGGAGGTGAAGGCGATCG ATGGGCTGGGCATGACGATCGACGTGATCATAGTCAACGGCCGCCTCAAG GAGGGGTGAGAATGACCTTGTCCTGGATGGAAACGAAAATTATAGCAGAG GGCGAGATACTCTCTACGACGCCAAAAAAAGTGGTCTACCCTCGAGAAAC TCGTTTTCTATCGACACTCATGTCGCGTCCGTATCGACAAGCGTGGATGC ACAGGAAACGGCAGATTGGTTCTCGCCCGACAAAAAGTACAGGTTCGAAA ATGCGTTATGGTCTGACGTGCTCGTGTTTAATCACTCCTTGTTGTTATGT CATAGCAGTCAACATGTGTATCAAACACCCGAATCGGAAACGGAATCAAA GTATTTACCCCCATAGGCGTTCTTGGGTTAAATCGTGTGGGGTGTTTTAG ACATCTACTGAAGCAGAAAGAATTAACCCATATCCTTGTCGATACTAAAA AATCCGACACACGATGCATTAGCCGGGTGGTTGGGACAAGCCATTGGCGC TCGTTTCACTCAGGGGAGCCCATTTTGCTTCATCTAGAATGAAATGGCTT CAGGTGTTTTTCTCATCCTTGATTGATCTTGTGAAAAAAATATTAAAACA CACGTACCCACAGCACAGACACACGAAGCCCTCGTTCGAGGGGCTCGTCT CCCTACATTAACATACAATCACAAACGCGTTTGACATTGCAGACAACAAT GATAATGTCGAAAATCCAAGATGTTCATGAATCGCCAACTGTGCATCGCA CAAGCCCAACAAAAAAATGCGACTTGACGGGGCTGTTTCACCCCACCTCC AAGCCAGAGCGTTTCATGCCGTTCCATTTTCGGCGAGGGATCATGACATG GAAAGCGTGATAAGTTAGTACTCCGGGGGGTACTTGGGAGTGCAAAATTC AGTGGCTTCGGCTGACCGTCTGTGATCTTTAATAATATCCATGCTTAACC AATTCCTGTTTGTATTTTATTACGCGACAAAGGAACGAACGCGTATAAAA TCCCCAGCAGAGAGAGACAAAAAATAGTCAGCAAACAATAATACCCTAAA TTTACGTACGGAGTATTTCGCTTCCAAGCGAGAGGGTACAAAGCGGAGAT ATCAAAGAATCAAATTTGGAGGAAAGAAAAAAACGATGGAAAAAATAAAA ATGAGTAAGGAAAACAGTGAAAAGTTCACAAGATAAGGAAAAATTTACGA AGTTGAAATTTCATCTACAGTGTAGAAATTTCTACAACGCAAAAAGTAGG AAAATATGAAATCAAAAAATGAAAAAAACATTAGCCTCGAAAAAGAAGAA AACAGTCTGAAATCGAACTCCGGGGCGGCCGCGTTGAAAACGCAAATCAC CATTTGTCGCTGCCACCTGTGGGAGATGTGGAATGCTGTATCTCTCCGAC GGCGGAACATCTTCGACAAACGGATAATTCCTGGAAAAAGTAAAATCCAT GCCGGGGCTCGAACCCGGAATCTTTCGTTCCGAAGACGAACGCCTTATCC ATTAGGCTACACGGACTAGAATAACATGTGCCAGAAGTTATCCCCTTCTT TACGCCCTGCCTCAATGGAAAATTGGAATTGAAACATATAGCCGTCTCAC CCCTTACTGTACTCCAAAGATCCAAGCAGCACAATTGGGGACAAACTTGC TCAATCTGTAGATAGTATTACAGTCGAGAATGGTCAAGCTGAATGGTGGG CAGCATTTGAATAGCTCGTGGGGATTATGTGTGCACCTAACTCTGGCTTT TCTTTTTCAACTATCGAGTACCACTTGGGGAGAGCAAGATCATGGGACGA GTCTGGTGGGTTTCATTTTTTCGAAACGACATTTGAAGGGTTCGCGGCTG CCCCTTCCTGCATTTGCGCAAAGAATCGTGCATGTCTCGAACACCTCCAC CTCGAAGCGTATACTCCCGGAAATTCATTCAGCTCTGAGAGCTTTTAGGT TCGGAGCAAATTATCAAGTTTTGTGAGAGGTTTGCTGACTTAGCTTCAAA ACGGGTAGACTATCAGAAGGAGTCTGCCCAACGAATAATAGTTCACGTGC GGCAGGGTTTGTTTGCTTCAGTCCAGGGGGACGACGCAGCACTTCGATTT TTATCCCGTATTGTGTGTTCCTCGAAATCTAAGTCTCTTACCTTGATAAT GCTGCGTCGCTGGTGTTGTTTGTTTGTCATCCGGGCCGCATATCGACAGC AAAACCGGCAACCCGCATGAGAAGCTTACCGCGATTGCGCCGCTTACGCT TTTGATACCACGCGAAAATCAGACGAGACTCGCCGCTTCCGTCTCGCTGC CTCTGAATGCGTTGGGTCGGGGTGGTGAGACCTTCGCGAGAAGAACATCG ACGTCGAACCTTTTCTTGGCATTTCGTTTTGGCATGTATTTCGATCCTCC GGGTCATGAGTTGGCGCACGCCAATTGCTTTACAGTATTCGCGTGTAACG CGTCCGTCTTCGCCTTGCTTTTCTTGCTGCGGTGTAGTCCAGCGTTCACG TTGTTTTCATCGTTCGTGGTGCAGGAGGATGGCAGCATGGTGGTCTGCGT TAAGCGACATGTTGCCACGATCCTTGTTTGTCGTTTTGCGTTTTTCCGTG GTTTGCCGGAAGTCGATGTCGAGAGTCTCCTTTCACTCGTTTGCCAGCCA GGTTGAAGGGGCCGCTTCGTACGGCGGTGCAGCGTCGTTGTTTTCGTCAC CGGAATTTCCTTCTCGTACTTTCGAGAGAAAACGCTATGATAACACAGCT GTTTGTTGTCCGATATCCGTTGAATGACTTTTGTCTACTACTTCGCTGAA TACTCATTTTCCGGGGGGTGTTGCTGATGAATTGCAGGGACAGCATCGTG GTCTGCACGCTGGACGGTCCCGTGGTGACTTCCATCAGGGCCTTGCTTAC CCCACCCCCCAACCGCGAGCTCAGGGTGAGACGAGCCACTCGGCGTTAAC GAGTCTTGGCTGCCGAGCTGCCCGTCCGGGACGCGTTTCTCCGTGGCACT ATCTTTGCACTGCATCGCATCGTATCGCATGCGTAACTCGTCTGTTTTCC ATCGTTCGGTTCGGTTTCATTTGATTTGAGTTGCTTGATCGGCGGCTCCA ACATGTGCAGCACACGCATAGGCGGCGAAGTCCCCACCATCAAGCACGGG AGTTCCGATCATGTCGTATGGTGTTCGACACAAGCCGCATTGCTCGTGCC GACTTGCGATGAAAATGCGGTGGGAACGGAGCAAACTTCGCGCTCTGCAA ATGACCTCAGCCTCAGTTTTCAAACGCGCTCGCCCTCAGTTTCATTTTGT GTATCAACATTTGTGCTGTTTCAGCGCCATTCCGCTTGGACAAGGGCGAC TTTGTCTTAGTTTGGGTTACCCCTCACTACAAGCGTCTCCGCGCGAGAAC TCCCACTATTTCGAGGTTTCCGGTGGATTAAAACCCACGTCTCGGCAGAC GTGAAGAACCAGCAGATCTCCCACAGCAGTTCCCTGAAGCCGTTTTTTTT TGGTTTTGCGTTTTGCGTTTTGCGACCCCTTATTCTTCAGTCTGCCGAGG CACGCGTCATGCTCTCCCTCTTGTTTCCCTCCTCTGCGCGGTCCTGACCC AGCGTTGTGCTTGTGTTCCCTAAAGACAGAAGGGAACACGAAAGGCAAAA CAATATGAACCACGAAATCATTTGAACAAACACCCCTGTATACAATACTC TGTCCACCTGTGTCCGCGTGGCAGGTAAAGAGCGAGTACGTCCACCACAA GGTCATCTCCGGCGCGATCGGCGTGAAGCTGTGCGCCACTGGCATCGAGA AGGCAGTGGCCGGTACCCCCATCATGGTGGTGGGCCAAGAGGACGACGAG GAGGATATCAAGGAAGAGGTAGGGTAGGGTGTCGCAATAACGGTCGTGAC ACCCCCTTGGGGCGTGGGGGATGCCGTCTGATACCCGCCCTCGCCTTTCG CTTGAAATTAAGGTGTGGTATTTCGGGGAGATGCTGGCCTTGACGTGACC TCGAGCGCACCGGAGGTCGCCGGTGTACACCAGACTTGAAGAGTCGGATG TGGAGGCGGGCGGAATGTATATACATTTCATTTGGTCGACGTGTACAGGT GTTTTTTTCGGGCCTCTACTTCTCGAGACCACGCCCTGCTCGCACACACG GTCGTTCGGACATGGCGTGCCTGTACTTTTTGTACGTCACGAATATGGAG TTTACCTTTTCAACGTGGAGTGAGCCAGAGATACGCGTGCACCAAATCTT CAGACATCGCCCCTCCCTCGCACGGAACCCCCGACCGTAGGTAATGCGCG ACTTCACCGACCTCATGAAGATGGATCTGGAGCCCAAGGGCGTGATGGTG CAGGCCAGCACCTTGGGGGCCCTCGAAGCGTTGATGCAGTTCCTGAGGAA GGAGTGCGACCCCCCCATCCCCGTATTCGCGGTCGGCATCGGGTCGGTCT TCAAGAAGGACGTCATGCGGGCCAGCATCATGAACGAGAAGGTGACCCAT TTCGCCGTGCACTTATCCGGCCCGTCACGCCCCAATCGCTGATTTGTCAG TTTTTCTGGGCTTGATCGTCGTTTTTTTCATCCTGCCGTCGACGCGAATA TTATGGTCACCCCTCCAGGTTCTGGCTGTTCCTTTCCTCTGAGTGTAGCG CGGAGTACACGCTGGGGAACTCTAGATTCGGCTAGAGTTGAGAGAGTTGT GTGTACGGGAGAGCCAGCAGGAGGAGCGACGTACGGGAAACGCTCCGAGG AAGGTTCTTGGAATGCCAATACCCGCTGGCTCTAATCTGTAAAGACCCCG ATGGAGAAACGTCTCTTGTTGGCCATTTGAGTACGTCACTATCTGCGAGC GATCCGGTGGTGTTTACATACATCGGTTTTTGAAACAGCTGCAGCGGTCC TTCAACCTTCACGTGGAGTGTTATTAGGGCGCATGAGTCATCTGCCCGTC GGCGTTTGTGCTCCTGTGTGCTGACGATGTCGATCACGTGGAGTGTTATT AGGGCGCATGAGTCATCTGCCCGTCGGCGTTTGTGCCCCAGTGTGCTGAC GATGTCGATCTTGATTTTGATGTTTATTAATCAGTGGCGGCGATGTTGGT GGTGGTGAACTTCCTTGGTGATTGCGAAGTATACCGCCAAGAAATCCCGG CATGAATCCTCCCTGCTGGCAAGCGAAGCCGCTTTCCTCTGCTTGGTTAG TGTTTGCGTAAAATGGTCGTATGGCGTGGTTTCTGGCGAAACTTCCGAAA GTGTCGACTCAGGTGATGAACTCGATAACCGTGGCGCAGGCAGCACCCCA CTTTCAAGGAGTTTGACGCGTTGCTGAAAGAATGTCAAAGCTTTCATGCA AGCTCGTCATGTGCACAAACAAAAGCGTTCGAATGAATCCCCTTGTCGTG ATATTGTATCTTTTCCTCTTTTTCCCAGGGGACGCCCGAGTACGCCACGA TCCTGGCCTTCGACGTGAAGATCGACAGCGACGCCCGCAAGCACGCGGAG GAGAATAACGTGAGGATATTCACTGCCGACATCATTTATCACCTCTTCGA CCAGTTCACGGCCCACATGGACCGGTTGATGGAGCAGCGCCGCCAGGACG CCAAGAACCTCGCTGTGTTCCCGTGCATCGTGAAGGTGACAGGGAAGTGA GGGGTGGAAAGACAAAAGGACGCGGGGCGGGGAGGCGGGGATAGAGGGAA GTTGGCAGGGGTGGAAAGAGGGAAGGATGGGGTAGGGGAGGGAAAGAGAG ATACGGAAGGAGACAGGGAGGGCAGAGGGACGGAGCGAGAGGAGGGCGGG GAAGGAGGGGGGCGGGAGGAGGGAGGGATGTGGGGTACGTAGATCGAGAT GAAAAGAGTGATGCTCTGCCTTTCATCGGAAGGAATGCCAAGGCTTAGAG CGTGGACAAGAGACTAACACCTCCTGCCAATAGCTGGGATCACATCTCGA GTGCTGTTGGCAATTTCAAGAGCATTATTTTCTTACTTTGGCCACGAAGG CGCACAACGCAAACATGCGTCTGTTTCAGCTCCGTGTTTTGTCGCGCGAA CGTTTCCTTATTCACAGATCATGAAGGAGCATGTGTTCAACATGAAAGAC CCTATCATCGTAGGCATGGAAGTGGTGGAGGGGACCCTGCGTGTCGGAAC ACCCCTGTGCATCCCCGCTCTCGGAGGCATGGAGATCGGGCGGGTGACTT CCATCGAGCAGGTTCGTCAGCCGGCACTTGCAGCAGCGAAGCGATGTTGG TGCTGCGGCAGTGAACACCTGCTCCAATTCTTGAGTGACAATTTTTCCGA TATCCGATATTTGTATACTTGATAGGGACAGGGATCCGTCTGATGCGACG CTCTAGTTGCTCGACCAAAGAGTGGACCCTATCGCTCTGATGTGGCAGTG CATGTTCTTGAGCGATTGTGACTCGCAAGGCGACGTGGTACTTGCTCCCA CATGACTTCGCCGCCTTCCTGCTTCATGCGTTTTCGTCGCGTGGTGCCGT GATACCGTGATAGTGTGGTTTCGTGTCCACTGGCTGCCCTTTTTCTCCTC TCTTTACGAACCTAGACGAATCACCAGATACTCCCGCTATTTTTGGCAAG AAGGATGACGTATTCCCGCGATGTGTTTTCTCACTTGCTGCATCGTCTTG CTCTATTAATACCTGACGCGACTGCGGGTTAGTGTTGGGGTTAGCCCTGA CCGCGTGGTAGCCACCTCGGCGCGTGCTCTCAGGAACCCTCAACGGTGTC ATATCGATATCTCCGTTGCGAGCCGTTGGTGCGTATCCACCGCGAGCCAA CAATCCCTTCGCACTCGCGTGGCTGCTGGTTTGTCTCCACTCGCGTCGCG TGCCTGCCTTCTCATGATAGATTGTGAGTGTTGATCTGCTTCATGTGCCG CCGCGATTGGCCTGCCGTCCTCCACCCGGCTGCTCTACGTGTCGTGGGTG CCCTAGAATATCGCGCTTTTTGCTGGAAAGAGTTTGTCTGTTGCACTTGT CGCCCCCCGTTACGTGTGACCTGCGTTCGCCTTCATCCGACGCGAGCGGT TTGAAAAGTGACAAAGGTGGGGATCGACACGCGGCCGATCACCTAATGGG GGGGGGATCTGCGCGTTTATTTGTGTGCAAGGGTGACATCGAGTGCTGAA ACAGCACGTGTTTTCACTCTTATCGCCTCGAGACTGGTTCCAAATCCTCA GCCACCTGCTCACGTCGCCGTTGGTAGTGACGGTGACTGACTGCCTCAGA AATGACTCACGGTTCGAACGATGATGATACCGCTTTCGTCGCGCGAGAAC GTGAGCGATTCAGGCTTCCAAAACGCAAAGCAGCGTCATTTCTTCACTAA GGTGGAGATATGATGTACCACGAAGTATGCGTTTACCGAAGATACACCAT GCCACGCGCGACCCTCACCATCCCCCCACACAACCTTCACGCGCTGCACA CGCCGCTTCGTTCGTCCGCCCGTCACGTCGCGTTTTTTCCCCTCCCAGAA CCATCGCGAGGTGGACAAGGTGATGAAGGGGGCCAATGGTGCGGTACGGG TGGACGACGCCCACGGCGGGTCGACATTGACCTACGGCAGACAGTTCTCC GCTGACTCGGGCAGCCTCTACAGCAGCATCACCAGGGAGACGATCAACGC CTTGAAGGCTCACTTCCGCGATCAGGTTGCAACTGCCGTGTCGAATTGTC GTTCCGTCTCCTCCTCTCTGCTCCGGCTCAATGGTGGAGTCTCGTGGCTT CTTTGTGCTACCTCGCCAGTTCCTTTTGGTTGATGATGGTGATGATTGTG ATGAACCTGATGCTGATAGTGACGTAAAGGATTATATGGATGATGATGGT GATGACCATGAGGTGTTCTCGCGAAAATACCGAAACGTGTGTCGTGTCGA ATCTTCCGCTCGAAGCACGCCTGTCTGGGCTGGCCGCAGAAAGGGTACGT GCGTTTGCAAATTTCCGCTCTCGAGATGCCGAATCTTACGAGTGCGAGAC CCAGATGTTATTTTCCGTACCTCAGCCGACGCTCTCTACGACGATTCCAT CGGCGTCTCGTAGTTCATGATGAACAAGGTAGAACCAAGACGAAGACAAG ACCCCCCCCTCTAATATCTTTGCGGGCGCGTCTTGCGATGATTTGTTTTC CGCGTGCTGTTTCCATTCTGCAGCTCACGAACGACGACCTCCGTTTGCTG GTCCAACTGAAGAAGGTCTTCAACATCCCCTAGACGGATCGGTCTGCCGG GCAATCTCCAATCCTTCAGTCCACCGACTCGTCAGGATATGTTGAGGGCT TTTGGTACCGGTTCGCCCTTTGAGCTGTTCACCTATCTCCACCACCAAGG CAAAGAAAAAACGAGATCCGTTCCTACGATTCGCCTTGATTTTTTTCATC CGGCGTCGGGTGTGGCTCGTATCGGTGTCGATTTGATTCGCCTTGACGGA GGAGGCATATCGCCGCAGCACCGCTTTCAAGGGGTTTTAATGCCTCAGCC CGCGCCTTTGCACACAGGTGCCCCCTAACCAGCGAACTCACGTTTTCGGT CGCTGGCCTTGTTTTGCTGTGCACCGCAGGCTTTCCCCTCGTTTCTTTGA CGTCGGCTGGCTGGGGTCTCGAAGAAGGGGGGGGCGGAGGAGTAGATGCT TGTCATCACTGACTGCTGATAAGATTTAAGTAAACAAAAACTTGCCTTTT CTCCTTTTCTGGCGCTCGACGATTGAACGGCTGGCCTACTTGTTTGTCTC GTGAGTTCTTGTGGTCAGGAAGTTGGCGGAGACCATCAGCGCAGTTCGCC GAGTATGGTTCGCCCCCTAAAGGCTTGGGACGATTATTGCATGGCGTTTA GAGCGACTGTCATAGTAGCCTCCCAGCTGCCCCTGCGGGCAAAGCGCTTC ACAATTGAGGGAAGAGTGGACAAGCAAGAGGGGCACGGCACGTCTTGAAG CTTGTCTCCGCGTAGTTGATCAAGTCAGCCCCCCTCCGGTGAATCTGTGC CGCCCCCGCGCTGGATCGTACACCCGTAGGTTTCGAGACAGCAGCGACAT GGACCATACGCATCAGGTTACAAGACGTTTGTACGGCTTTTATGATTTTG GGGTGGACATCGAGCTTGTGGCTACTCCGGCGCGAAGAGAGCGGATCTCA AAGGTGTCCGCTTTGGGAAAGAAACGGATTCCACTGCCCCTCGGCAAGAG TCAAATCACGTTGGCGAGGGATGCATGCTTGCATAAACGTCTTGCGCGGT TTGGTTGATGTC
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Coding sequence (CDS) from alignment at P-fluviatile_contig8:3483484..3511945-

>mRNA_P-fluviatile_contig8.14644.1 ID=mRNA_P-fluviatile_contig8.14644.1|Name=mRNA_P-fluviatile_contig8.14644.1|organism=Porterinema fluviatile SAG_2381|type=CDS|length=6564bp|location=Sequence derived from alignment at P-fluviatile_contig8:3483484..3511945- (Porterinema fluviatile SAG_2381)
ATGTGGTGGAGGATCGCTTGCTTCCCGTACGTGTGTCCGCATTTCTGTGA
GATGTGGTGGAGGATCGCTTGCTTCCCGTACGTGTGTCCGCATTTCTGTG
AGGCGTCGGCGTTTGCAAACATGTCGAGCGACTCGGAGAGCAACAGCGAT
GCCGAGCCAGCTGCTCCCGTGAAGGCGGCGGTTGTTACTGCTCCGACCAA
GGCGTCGGCGTTTGCAAACATGTCGAGCGACTCGGAGAGCAACAGCGATG
CCGAGCCAGCTGCTCCCGTGAAGGCGGCGGTTGTTACTGCTCCGACCAAG
GCCGCTGCCAAGGGAAAAGGAGTCAAGGGCAAGGGGAAAGGCAAGGGGAA
GGGGCAGGGCGGTGGAGGAGGAGGCGCAGGCGACGAGGACGATTTGGACG
CTATCATGGCGGCAATCGAAGGCGGCGATGCAGCTGCGAAGCCCAAGAGC
GCGGCCGCTGCCAAGGGAAAAGGAGTCAAGGGCAAGGGGAAAGGCAAGGG
GAAGGGGCAGGGCGGTGGAGGAGGAGGCGCAGGCGACGAGGACGATTTGG
ACGCTATCATGGCGGCAATCGAAGGCGGCGATGCAGCTGCGAAGCCCAAG
AGCGCGCCCGCCGCCGCCACAGCAGCAGCACCAGCGGCACCAGCACCAGT
CGCCGCCCCGATGGAAGACCCGGCCGCGGCGGCCGCGCGGCTTTTGGCGC
AGATGGGTGGGGGGGCTGGCGGGGCGGGAGAAGAGTCCAAGAGCAAGAAG
AAGAAGAAGAAGAAGAAGCCCGCCGCCGCCACAGCAGCAGCACCAGCGGC
ACCAGCACCAGTCGCCGCCCCGATGGAAGACCCGGCCGCGGCGGCCGCGC
GGCTTTTGGCGCAGATGGGTGGGGGGGCTGGCGGGGCGGGAGAAGAGTCC
AAGAGCAAGAAGAAGAAGAAGAAGAAGAAGGGAGGCGGGACCGACAAAAA
GGAGGAAGAGGAAGACAAGAAGCCGAAGCAATCTGCGGCAGGAAAGGCTC
TGGCAGAAAGGATGGCCAGGCAGCGAGAGGAGGAGGAGCGAATCAAGAAG
TTAGAGGGAGGCGGGACCGACAAAAAGGAGGAAGAGGAAGACAAGAAGCC
GAAGCAATCTGCGGCAGGAAAGGCTCTGGCAGAAAGGATGGCCAGGCAGC
GAGAGGAGGAGGAGCGAATCAAGAAGTTAGAGGAGGAAGAGGCCCGCCGG
ATCGCGGAGGAGGAGGCGAAGGAGGAGGCCGCCAGGAAGGCCATCGAGGA
CGAAAAGGCCCGCAAAAGAGCCAAGGCCAAAGAGAAGGAGGAAGAGGCCC
GCCGGATCGCGGAGGAGGAGGCGAAGGAGGAGGCCGCCAGGAAGGCCATC
GAGGACGAAAAGGCCCGCAAAAGAGCCAAGGCCAAAGAGAAGCTGGAACG
CAAGAAAAAAGATGGCACCTACAAGACCAAGAAGCAGAAGGAGCAGGAGG
CCCGGGCGGAGGCTGCCAAGGCGGCCATGCTCGCCGCCGGTCTCGATGCT
GGAACGCAAGAAAAAAGATGGCACCTACAAGACCAAGAAGCAGAAGGAGC
AGGAGGCCCGGGCGGAGGCTGCCAAGGCGGCCATGCTCGCCGCCGGTCTC
GATGTTCCGACCGGCCCAGCTGAGAGCGGCGGCGCCGCGGGTGGCGGCGA
CAAGAGCAAGAAGAAGTCCAAGATCGTCTACAGCAAAAAAAAGAAACCAG
CCCACAATTCCAAGCAGGCGGAGGCAGCAGCCCCACCTGCAGTAGCTCCA
ACGGCGGCTCCGCCAGTGGAGGACATCCCCCCTCCCCCTCCGACGCCGTC
TGCAAGTGGCGGGGCGAAGGTGGACGAGGAGGCGGAGGCGAAGGCCCCGA
CAGAAGAGGAGGAGCAGGCCGACGGCGCGGTGGATGACTGGGAAGATGCT
GTCGACGACTGGGATAGCGCCGACGTGACGTTCCGACCGGCCCAGCTGAG
AGCGGCGGCGCCGCGGGTGGCGGCGACAAGAGCAAGAAGAAGTCCAAGAT
CGTCTACAGCAAAAAAAAGAAACCAGCCCACAATTCCAAGCAGGCGGAGG
CAGCAGCCCCACCTGCAGTAGCTCCAACGGCGGCTCCGCCAGTGGAGGAC
ATCCCCCCTCCCCCTCCGACGCCGTCTGCAAGTGGCGGGGCGAAGGTGGA
CGAGGAGGCGGAGGCGAAGGCCCCGACAGAAGAGGAGGAGCAGGCCGACG
GCGCGGTGGATGACTGGGAAGATGCTGTCGACGACTGGGATAGCGCCGAC
GTGACGGAGCTACTGGGCAATATCACCGTGAAGGACGGATCCTCCAATGG
CAAGTTCGATGACGAGGAGGAAGACCTGATCGAGAAAGATAGAAGAGACG
AGCAGGAGAGGCTGAGAAAGCAGGGCATCCGCCAGCAGAAGCTCGAGGCG
CTTCGCAAGGAGGAGGAGGAGAGGAGCTACTGGGCAATATCACCGTGAAG
GACGGATCCTCCAATGGCAAGTTCGATGACGAGGAGGAAGACCTGATCGA
GAAAGATAGAAGAGACGAGCAGGAGAGGCTGAGAAAGCAGGGCATCCGCC
AGCAGAAGCTCGAGGCGCTTCGCAAGGAGGAGGAGGAGAGGCACCGCAAG
GAGGAGGCGGAGAGGCAACGACAGATCCTGCAGGCGGAGATGCTCAAGGC
ACCGCAAGGAGGAGGCGGAGAGGCAACGACAGATCCTGCAGGCGGAGATG
CTCAAGGACGAGGCGCGGCGAAAACGATTAGCGAGAGAGCAGGCCGCCCG
TGAGGCCCGCACCAAAGAATCGCTGCGCTCACCAATCGTCTGCATCATGG
GTCACGTCGACACAGGACGAGGCGCGGCGAAAACGATTAGCGAGAGAGCA
GGCCGCCCGTGAGGCCCGCACCAAAGAATCGCTGCGCTCACCAATCGTCT
GCATCATGGGTCACGTCGACACAGGCAAGACGAAGCTCTTGGACAAGATC
CGGCAGACCAGCGTGCAGGAAGGCGAGGCCGGGGGTATCACGCAGCAGAT
CGGCGCCACCTTCTTCTCCAAGGAGACCCTCTGCGAGAAGGCAAGACGAA
GCTCTTGGACAAGATCCGGCAGACCAGCGTGCAGGAAGGCGAGGCCGGGG
GTATCACGCAGCAGATCGGCGCCACCTTCTTCTCCAAGGAGACCCTCTGC
GAGAAGGTGGCGGAGTTGAACGAGACGATGAAGGTGGACATCAGACTGCC
GGGCATGCTGGTGATCGACACCCCAGGTCACGAGTCGTTCACCAACCTCC
GGTCGCGGGGGAGCTCCTTGTGCGACATCGCCATCCTAGTCGTCGACCTG
ATGCACGGGCTGGAGCCACAGACGATTGAGAGCCTAAACCTCTTGAGATC
CAAGCGCACCCCGTTCGTCATCGCGCTCAATAAGGTGGCGGAGTTGAACG
AGACGATGAAGGTGGACATCAGACTGCCGGGCATGCTGGTGATCGACACC
CCAGGTCACGAGTCGTTCACCAACCTCCGGTCGCGGGGGAGCTCCTTGTG
CGACATCGCCATCCTAGTCGTCGACCTGATGCACGGGCTGGAGCCACAGA
CGATTGAGAGCCTAAACCTCTTGAGATCCAAGCGCACCCCGTTCGTCATC
GCGCTCAATAAGATCGACCGGTGTTACGCTTGGAAGAGCACCCCCAACGC
GCCGGCCCGGCTGTCCCTGGAGAAGCAGGAGTCAGACACCAAGGCCGAAT
TCGAGGACAGAGCCATGCGCATCAGGACCGGTGAATCGACCGGTGTTACG
CTTGGAAGAGCACCCCCAACGCGCCGGCCCGGCTGTCCCTGGAGAAGCAG
GAGTCAGACACCAAGGCCGAATTCGAGGACAGAGCCATGCGCATCAGGAC
CGGTGAAGGTGATGGAGAAGGGCCTCAACACAGAGCTGTACTGGAAGAAC
GACGACCCCACCCACACCGTGTCCATGGTGCCAACGTCTGCCATCACCGG
GGAGGGCATCCCCGACTTGCTCTTGTGGCTCGTCAGGCTCACGCAGAGGT
GATGGAGAAGGGCCTCAACACAGAGCTGTACTGGAAGAACGACGACCCCA
CCCACACCGTGTCCATGGTGCCAACGTCTGCCATCACCGGGGAGGGCATC
CCCGACTTGCTCTTGTGGCTCGTCAGGCTCACGCAGCAGGAGAGGTTGAC
GGAGAAGATAATGTTCATGCCCGACCTCTTGGAGTGCACGGTGCTGGAGG
TGAAGGCGATCGATGGGCTGGGCATGACGATCGACGTGATCATAGTCAAC
GGCCGCCTCAAGGAGGGGTGAGAATGACCTTCAGGAGAGGTTGACGGAGA
AGATAATGTTCATGCCCGACCTCTTGGAGTGCACGGTGCTGGAGGTGAAG
GCGATCGATGGGCTGGGCATGACGATCGACGTGATCATAGTCAACGGCCG
CCTCAAGGAGGGGTGAGAATGACCTTGGACAGCATCGTGGTCTGCACGCT
GGACGGTCCCGTGGTGACTTCCATCAGGGCCTTGCTTACCCCACCCCCCA
ACCGCGAGCTCAGGGGACAGCATCGTGGTCTGCACGCTGGACGGTCCCGT
GGTGACTTCCATCAGGGCCTTGCTTACCCCACCCCCCAACCGCGAGCTCA
GGGTAAAGAGCGAGTACGTCCACCACAAGGTCATCTCCGGCGCGATCGGC
GTGAAGCTGTGCGCCACTGGCATCGAGAAGGCAGTGGCCGGTACCCCCAT
CATGGTGGTGGGCCAAGAGGACGACGAGGAGGATATCAAGGAAGAGGTAA
AGAGCGAGTACGTCCACCACAAGGTCATCTCCGGCGCGATCGGCGTGAAG
CTGTGCGCCACTGGCATCGAGAAGGCAGTGGCCGGTACCCCCATCATGGT
GGTGGGCCAAGAGGACGACGAGGAGGATATCAAGGAAGAGGTAATGCGCG
ACTTCACCGACCTCATGAAGATGGATCTGGAGCCCAAGGGCGTGATGGTG
CAGGCCAGCACCTTGGGGGCCCTCGAAGCGTTGATGCAGTTCCTGAGGAA
GGAGTGCGACCCCCCCATCCCCGTATTCGCGGTCGGCATCGGGTCGGTCT
TCAAGAAGGACGTCATGCGGGCCAGCATCATGAACGAGAAGGTAATGCGC
GACTTCACCGACCTCATGAAGATGGATCTGGAGCCCAAGGGCGTGATGGT
GCAGGCCAGCACCTTGGGGGCCCTCGAAGCGTTGATGCAGTTCCTGAGGA
AGGAGTGCGACCCCCCCATCCCCGTATTCGCGGTCGGCATCGGGTCGGTC
TTCAAGAAGGACGTCATGCGGGCCAGCATCATGAACGAGAAGGGGACGCC
CGAGTACGCCACGATCCTGGCCTTCGACGTGAAGATCGACAGCGACGCCC
GCAAGCACGCGGAGGAGAATAACGTGAGGATATTCACTGCCGACATCATT
TATCACCTCTTCGACCAGTTCACGGCCCACATGGACCGGTTGATGGAGCA
GCGCCGCCAGGACGCCAAGAACCTCGCTGTGTTCCCGTGCATCGTGAAGG
GGACGCCCGAGTACGCCACGATCCTGGCCTTCGACGTGAAGATCGACAGC
GACGCCCGCAAGCACGCGGAGGAGAATAACGTGAGGATATTCACTGCCGA
CATCATTTATCACCTCTTCGACCAGTTCACGGCCCACATGGACCGGTTGA
TGGAGCAGCGCCGCCAGGACGCCAAGAACCTCGCTGTGTTCCCGTGCATC
GTGAAGATCATGAAGGAGCATGTGTTCAACATGAAAGACCCTATCATCGT
AGGCATGGAAGTGGTGGAGGGGACCCTGCGTGTCGGAACACCCCTGTGCA
TCCCCGCTCTCGGAGGCATGGAGATCGGGCGGGTGACTTCCATCGAGCAG
ATCATGAAGGAGCATGTGTTCAACATGAAAGACCCTATCATCGTAGGCAT
GGAAGTGGTGGAGGGGACCCTGCGTGTCGGAACACCCCTGTGCATCCCCG
CTCTCGGAGGCATGGAGATCGGGCGGGTGACTTCCATCGAGCAGAACCAT
CGCGAGGTGGACAAGGTGATGAAGGGGGCCAATGGTGCGGTACGGGTGGA
CGACGCCCACGGCGGGTCGACATTGACCTACGGCAGACAGTTCTCCGCTG
ACTCGGGCAGCCTCTACAGCAGCATCACCAGGGAGACGATCAACGCCTTG
AAGGCTCACTTCCGCGATCAGGTTGCAACTGCCGTGTCGAATTGTCGTTC
CGTCTCCTCCTCTCTGCTCCGGCTCAATGGTGGAGTCTCGTGGCTTCTTT
GTGCTACCTCGCCAGTTCCTTTTGGTTGAAACCATCGCGAGGTGGACAAG
GTGATGAAGGGGGCCAATGGTGCGGTACGGGTGGACGACGCCCACGGCGG
GTCGACATTGACCTACGGCAGACAGTTCTCCGCTGACTCGGGCAGCCTCT
ACAGCAGCATCACCAGGGAGACGATCAACGCCTTGAAGGCTCACTTCCGC
GATCAGGTTGCAACTGCCGTGTCGAATTGTCGTTCCGTCTCCTCCTCTCT
GCTCCGGCTCAATGGTGGAGTCTCGTGGCTTCTTTGTGCTACCTCGCCAG
TTCCTTTTGGTTGA
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