mRNA_P-fluviatile_contig6.12502.1 (mRNA) Porterinema fluviatile SAG_2381

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

Overview
NamemRNA_P-fluviatile_contig6.12502.1
Unique NamemRNA_P-fluviatile_contig6.12502.1
TypemRNA
OrganismPorterinema fluviatile SAG_2381 (Porterinema fluviatile SAG_2381)
Homology
BLAST of mRNA_P-fluviatile_contig6.12502.1 vs. uniprot
Match: D7FIX0_ECTSI (Ankyrin Repeat Transient Receptor Potential Channel n=1 Tax=Ectocarpus siliculosus TaxID=2880 RepID=D7FIX0_ECTSI)

HSP 1 Score: 1293 bits (3346), Expect = 0.000e+0
Identity = 742/1255 (59.12%), Postives = 878/1255 (69.96%), Query Frame = 2
Query:  128 RFLVLEHAVLLVYASEDDWVEHQEPLDDVALSADSTVETSQEGGEVLVKVRCPGHPPLCFSAFSSDNVGGDDSDSVDDGFDSEAWRKAVAREIDRLRREEEGDGRQQQRADAAAATGGLSSWRLWNAV-------SGLVGAGAAATXXXXXXXXXXXXXXXAPEEDEDAVSLDAALAGGAEXXXXXXXXXXEEKQDRPDIGDGGGGGAEHGGRKASARPAPREQSTARFRRWPLRRGSVNHQIPEYDSAGN----PVATASTANRSAATTAAVRGG-GPSYSSASGGTSLWRKVAGVVRKKDCANCTCKWCRDRGTGSHSRPRLERRSSSSYRHECSW--SKGRAGVRAETSPAVDRWEYLVGRWIPLQMARSGDVMGIQRFLEKFPSFPDKNNLLRAAVRYKQYALVEYLLEEQHMDVNLKNVVGMPLVWFSVVYMQRGDSGVMLRYLMQKGADIHTKSFTGQNVLFLVVSSRGKEAIPMLKYLVEECGVSLTDKDEFGSQPLHWAVLSGHLDTVQWISRYTRNQGVRANWMKAFERMQQIRMVRPEHMGAMRSWRMRGLQKNARSLTPLGVAVLHNHEHIAKWLMGYGTESQDSISRKRENLFSEQNKDLALVAKTWPELLPEVLRGFEQKASSG-HSWDTVERQTVVPTGWSERTYDIKLLYGLPEVPPNRSPLSVLLSTDYPRLFEVKTVQMVVALKWSVFGHR------------------------------------RVISAYYLWELGRYLTLSLSFILGFVVWGDSRNWANPLQSGDDHVRVVGGTISRLLCWALTLYNLVVEEGRELKASKSLKKYLVGGWNMQSVAAYILVLALIPVFRPWKAEVEWETDMFEYTTAGIIRRVMTGPAALLLFLRLMEHLAVWKSTGVFIAVIRMVIADTASWSVLFILFEVAFALAFYALLQGSPGFTTVWESMVTLFVMSMGELRMPLSENETVDVVAVITFVTFMLVVAVVYLNLLVAMMTSGYTEVLKGATAQAMMNRAAALVKWEGIMSDKTRREAFRRVAPGKGKRAHITLTGWFGGAATEVFCGEEGATAVEPEQSTIGKRIDRHAVVMKELEEIRDMISRASAPERSGASGGDGGVFARKTP----ADGESAHASSNGRDASFRKRQAGMLVQG-KGLSALRLGDSSXXXXXXXXXSVRRGSVSSRGEGMRTTERTGSARSVTTEELQVWRERALRVQEKADSRRGVVRAQALIRGYLTRSKSRARFLPDN*ASDD 3724
            RFLVL+HAVLLVYAS+ DW +HQEPLDDV LSA+S VET++E    LVK+R PGH PLCF+  S+ NV  +DS +  D   SEAW  A+++EI  L  +  G  R+     AA    G+ SWRLWNAV       SG  GA                           A+  D A  GG+           +E +                             S+  FRR PL+R     ++ + +SA +    PV T        AT     GG G   S +S  ++LWR+VAGVVR+ D A CT +  ++ G+GS         S + YR ECSW  SK RA V+A+ SP VDRWEYLVGRWIPLQMARSGDV+G++ FLEKFP+FPDK+NLLRAAVRYKQY+LVEYLLEEQHMDVNLKN +GMP+VWFSV +MQRGDSGVMLRYL+QKGADIH KS  GQ +LFL+VSSRGKEAIPMLKYLVEE G+SLT+KD+FGSQPLHWAVL GHLDTV+WIS YT+    RANW KAFE+MQ+IR+V+PEHMGA RSWR+RGLQK+ARSLTPLGVAVLHNHEHIA+WLMGYGTE Q  IS KR N+F E+N+DLALVAKTWPELLPEVLRGF+    +  +SWDT E++ V PTGWSERTYDIKLLYGLPEV  +RSPLS+LL T +  LFEVK VQMVVALKWSVFGHR                                    R IS YY+WELGRYL LS SFI+GF +W +  NWA P+ S DD  +V+G TISRLLCW LTLYNLVVEEGREL ASKS++KYL GGWN+QSV AY+LVLA+IPVFRPW    +W  D FEY++AG+IRRVMT PAAL LFLRLMEHLAVWKSTG+FIAVIRMVI  TASWSVLF LF++AFAL+FY+LL G+ GF T+W SMV++FVMS+GE  +P S+N T+ V+A++  V FML+VA+VYLNLLVAMMTSGYTE+ KGATAQA M+RAAALVKWEGIMSDKTRR+    VAPGKGK + +T+TGW GG ATE+FC +EGATAVEPEQSTIG+R+D HA VMKEL EIR ++ +AS+          GG F+R+ P      GES   SS+ RDASFRKRQAG+L  G  GLS L +GD     XXXXXX    GS   RG G R     GS+  VT EE++ WR +AL VQE+A SRRGV RAQALIRGYL+R+K   RFLPDN  + D
Sbjct:   15 RFLVLDHAVLLVYASKSDWADHQEPLDDVVLSAESVVETTREREGALVKLRGPGHSPLCFTC-SAVNV--NDSTTRPD---SEAWEVAISQEIAGLGGDA-GTSRRPHTVAAARGGRGVRSWRLWNAVRRDAEGNSGKAGA---------------------------ALIADPAGGGGSVDATEKDGSNHDETKHXXXXX------XXXXXXXXXXXXXXARLSSRGFRRRPLKRSDTTCKVSDQESASSLVVAPVVTEGQGKP--ATGGRGEGGEGNPISDSSRASNLWRRVAGVVRQNDRAICTSEPGKNGGSGSQHLSE----SGNKYRRECSWARSKKRASVQAKLSPVVDRWEYLVGRWIPLQMARSGDVLGVRSFLEKFPAFPDKDNLLRAAVRYKQYSLVEYLLEEQHMDVNLKNAMGMPVVWFSVAFMQRGDSGVMLRYLLQKGADIHIKSRVGQTMLFLLVSSRGKEAIPMLKYLVEELGLSLTEKDDFGSQPLHWAVLHGHLDTVRWISEYTKYPATRANWAKAFEKMQKIRLVKPEHMGAARSWRIRGLQKSARSLTPLGVAVLHNHEHIARWLMGYGTEGQHCISCKRNNIFKEENRDLALVAKTWPELLPEVLRGFQHDMKAQKYSWDTDEKRPVAPTGWSERTYDIKLLYGLPEVASSRSPLSILLQTGHTSLFEVKVVQMVVALKWSVFGHRPTRLGAARPSTHVWWIVMGCFPPVAESKALSGIMYNRTISRYYVWELGRYLVLSASFIMGFTIWAEVPNWAGPIDSDDDRGQVMGATISRLLCWTLTLYNLVVEEGRELAASKSMRKYLEGGWNLQSVTAYVLVLAMIPVFRPWGDGRDWMEDEFEYSSAGLIRRVMTAPAALFLFLRLMEHLAVWKSTGIFIAVIRMVIVGTASWSVLFGLFQMAFALSFYSLLDGNEGFETIWASMVSIFVMSLGEFSLPFSDNMTLHVMAMLMLVVFMLIVAIVYLNLLVAMMTSGYTEMEKGATAQATMDRAAALVKWEGIMSDKTRRQ----VAPGKGKSSEVTITGWSGGGATEIFCTDEGATAVEPEQSTIGRRVDTHAAVMKELAEIRSLVEKASSR---------GGGFSRRPPNGPGMQGESFRTSSDDRDASFRKRQAGLLDSGGMGLSVLNIGDGEGRRXXXXXXXXDVGSR--RGVGRR-----GSSIMVTPEEVEEWRRKALEVQEQAKSRRGVTRAQALIRGYLSRAKLAPRFLPDNQETSD 1203          
BLAST of mRNA_P-fluviatile_contig6.12502.1 vs. uniprot
Match: A0A6H5K0W6_9PHAE (Uncharacterized protein (Fragment) n=1 Tax=Ectocarpus sp. CCAP 1310/34 TaxID=867726 RepID=A0A6H5K0W6_9PHAE)

HSP 1 Score: 663 bits (1711), Expect = 2.210e-212
Identity = 379/654 (57.95%), Postives = 439/654 (67.13%), Query Frame = 2
Query:  269 VKVRCPGHPPLCFSAFSSDNVGGDDSDSVDDGFDSEAWRKAVAREIDRLRREEEGDGRQQQRADAAAATGGLSSWRLWNAVSGLVGAGAAATXXXXXXXXXXXXXXXAPEEDEDAVSLDAALAGGAEXXXXXXXXXXEEKQDRPDIGDGGGGGAEHGGRKASARPAPREQSTARFRRWPLRRGSVNHQIPEYDSAGNPVATASTANRSAATTAA-----VRGGGPSYSSASGGTSLWRKVAGVVRKKDCANCTCKWCRDRGTGSHSRPRLERRSSSSYRHECSW--SKGRAGVRAETSPAVDRWEYLVGRWIPLQMARSGDVMGIQRFLEKFPSFPDKNNLLRAAVRYKQYALVEYLLEEQHMDVNLKNVVGMPLVWFSVVYMQRGDSGVMLRYLMQKGADIHTKSFTGQNVLFLVVSSRGKEAIPMLKYLVEECGVSLTDKDEFGSQPLHWAVLSGHLDTVQWISRYTRNQGVRANWMKAFERMQQIRMVRPEHMGAMRSWRMRGLQKNARSLTPLGVAVLHNHEHIAKWLMGYGTESQDSISRKRENLFSEQNKDLALVAKTWPELLPEVLRGFEQ-KASSGHSWDTVERQTVVPTGWSERTYDIKLLYGLPEVPPNRSPLSVLLSTDYPRLFEVKTVQMVVALKWSVFGHR 2206
            V+VR PGH PLCF+  +   V  +DS +  D   SEAW  A++REI  L R   G  R+     AA   GG+ SWRLWN+V    G  +                       E A+  D+A  GG                                    +   +       RFRR PL+R     ++ + DSA N +A A  A +     A       RG G   S +S  ++LWR+VAGVVR+ D A CT +  ++ G GS         S + YR ECSW  SK R  V A+ SP VDRWEYLVGRWIPLQMARSGDV G++ FLEKFP+FPDK+NLLRAAVRYKQY+LVEYLLEEQHMDVNLKNV+GMPLVWFSV +MQRGDSGVMLRYL+QKGADIH KS  GQ VLFL+VSSRGKEAIPMLKYLVEE G+SLT+KDEFGSQPLHWAVL GHLDTV+WIS YT+    RANW KAFE+MQ IR+V+PEHMGA RSWR+RGLQK+ARSLTPLGVAVLHNHEHIAKWLMGYGTE +  IS KR NLF E N+DLALVAKTWPELLPEVL+GF+  +    +SWDT E++ V PTGWSERTYDIKLLYGLPEV  +RSPLS+LL T +  LFEVK VQMVVALKWSVFGHR
Sbjct:    6 VRVRGPGHSPLCFTCSA---VNANDSTTRPD---SEAWEMAISREIAGLGRGA-GTSRRSHTVAAARGRGGVLSWRLWNSVRRGAGGDSGKA--------------------EPALITDSATGGGGVDATEKDDSNHXXXXXXXXXXXXXXXXXXXXXXDVAGLSSRGNTGIVRFRRRPLKRSDTPCKVSDQDSA-NSLAVALVATKGQGKPATGRRGEERGEGNPISGSSRASNLWRRVAGVVRQNDGAICTPEPGKNGGNGSQHLSG----SGNKYRRECSWARSKKRTSVYAKLSPVVDRWEYLVGRWIPLQMARSGDVHGVRSFLEKFPAFPDKDNLLRAAVRYKQYSLVEYLLEEQHMDVNLKNVMGMPLVWFSVAFMQRGDSGVMLRYLLQKGADIHIKSRVGQTVLFLLVSSRGKEAIPMLKYLVEELGLSLTEKDEFGSQPLHWAVLYGHLDTVRWISEYTKYPATRANWAKAFEKMQDIRLVQPEHMGAARSWRIRGLQKSARSLTPLGVAVLHNHEHIAKWLMGYGTEGEQCISCKRNNLFKE-NRDLALVAKTWPELLPEVLQGFQHDRKVEKYSWDTDEKRPVAPTGWSERTYDIKLLYGLPEVASSRSPLSILLQTGHTSLFEVKVVQMVVALKWSVFGHR 626          
BLAST of mRNA_P-fluviatile_contig6.12502.1 vs. uniprot
Match: A0A835Z0J0_9STRA (Uncharacterized protein n=1 Tax=Tribonema minus TaxID=303371 RepID=A0A835Z0J0_9STRA)

HSP 1 Score: 327 bits (837), Expect = 2.070e-87
Identity = 248/841 (29.49%), Postives = 389/841 (46.25%), Query Frame = 2
Query: 1148 VDRWEYLVGRWIPLQMARSGDVMGIQRFLEKFPSFPDKNNLLRAAVRYKQYALVEYLLEEQHMDVNLKNVVGMPLVWFSVVYMQRGDSGVMLRYLMQKGADIHTKSFTGQNVLFLVVSSRGKEAIPMLKYLVEECGVSLTDKDEFG--------------SQPLHWAVLSGHLDTVQWISRYTRNQGVRA-NWMKAFERMQQIRMVRPEHMGAMRSWRMRG-----------LQKNARS-----LTPLGVAVL----HNHEHIAKWLMGYGT-ESQDSISRKRENLFSEQNKDLALVAKTWPELLPEVLRGFE---------------------------------------------------------------------------------QKASSGHSWDTV--ERQTVVPT-------GWSERTYDIKLLYGLPEVPPNRSPLSVLLSTDYPRLFEVKTVQMVVALKWSVFGHRRVISAYYLWELGRYLTLSLSFILGFVVWGDSRNWANPLQSGDDHVRVVGGTISRLLCWALTLYNLVVEEGRELKASKSLKKYLVGGWNMQSVAAYILVLALIPVFRPWKAEVEWETDMFEYTTAGIIRRVMTGPAALLLFLRLMEHLAVWKSTGVFIAVIRMVIADTASWSVLFILFEVAFALAFYALLQGSPGFTTVWESMVTLFVMSMGELRMPLSENETVDVVAVITFVTFMLVVAVVYLNLLVAMMTSGYTEVLKGATAQAMMNRAAALVKWEGIMSDKTRREAFRRVAPGKGKRAHITLTGWFGGAA-TEVFCGEEGATAVEPEQSTIGKRIDRHAVVMKELE----EIRDMISRAS 3277
            V+RW  +V  W  LQ+ARSGDV  ++RFL++FP F   +N+ RAA+R+K YALVEY L+E  MDVN++N  GMP  WF+ +++ + D G M++YL+ +GA + + +  G  ++ L+ ++   +AI       ++   +   +D  G               Q L     +G +  ++ +S + R   +R  +  +A   + Q R     H        +RG            Q++ RS     LT + V  L     +   +A+WLMGYG   S   +  KR  LF +Q  DL +VAKTWPELLPEVL  F                                                                                  Q+ S  ++   V   R T++P        GW ER YD+KLLYG P++P + +PLS+LL T Y  +F++  V++++ LKW+++G      +YY+WEL RY    ++F +GF+  G+S            H   +     R+ CWALT YNLV EEGREL  S S + Y    WN QS+  Y L LAL P++    +   +E D        + +R+M  PAAL LFLR +EHLA+W+ST ++IAVIR +                                           V S+ ++  P S++  ++  A +  + F+++VAV+ LNLL+AM+T  Y  ++  A AQ +M++A  L+KWEG M  + R   +R + P  G +  I L   F G + +EVF     A  VE ++  +   +  H  ++  L+    ++ +++ +AS
Sbjct: 1555 VERWGKMVTSWYSLQIARSGDVDDVRRFLKRFPDFKGVDNMFRAAIRFKHYALVEYFLDEVKMDVNVRNGSGMPACWFAAIFLNKSDGGAMMQYLINRGAIVDSVNNWGMTMIHLLATADPAQAIT-----ADDAHSAYNARDSSGHSVATHSRSSLALSKQSLAQPNFNGFI--LEKLS-HRRKAAMRLFHSYRALSAVDQYRFYSLPHTTGYAYGLLRGHSMSAAGREQVAQRHKRSGDACTLTFVRVLQLICSHRDRVQVAQWLMGYGPGHSVKCMRDKRALLFQDQCHDLRMVAKTWPELLPEVLNSFGSDVVKNSHFTAQDGRLERASEFFNIRSERVQHFRSVYNMMSDQSPQYTLMPVRAAPLSGGWVERIYNVKLLYCCNLLQERVQRYSEAYTRGFVVNNRFTLMPLRAATAAGGWVERIYDVKLLYGEPDIPASNTPLSILLDTHYAPVFDLPVVKLIIQLKWTLYG-----GSYYMWELMRYFGTVITFYMGFIWLGNS---------SAAHAEAI-----RIACWALTAYNLVFEEGRELLHSPSARAYFGSSWNRQSLVTYTLTLALAPLYYLPTSHSGFELDA--PNGPPLAQRMMVAPAALALFLRALEHLAIWRSTSIYIAVIRSLCR-----------------------------------------VRSLPQIDQPFSDDTALNAAASVLLILFVMLVAVLQLNLLIAMLTCSYESMMDKAPAQTLMHKAETLLKWEGGMHPRQRHRFYRIINPKPGTQRRIKLNKLFSGMSRSEVFVYNTEARVVEQKKGVV---LTGHLQLLNRLDALCSKVDELLQQAS 2322          
BLAST of mRNA_P-fluviatile_contig6.12502.1 vs. uniprot
Match: A0A7S1TWL2_9STRA (Hypothetical protein n=3 Tax=Phaeomonas parva TaxID=124430 RepID=A0A7S1TWL2_9STRA)

HSP 1 Score: 317 bits (812), Expect = 9.010e-87
Identity = 217/713 (30.43%), Postives = 368/713 (51.61%), Query Frame = 2
Query: 1127 RAETSPAVDRWEYLVGRWIPLQMARSGD--VMGIQ-RFLEKFPSFPDKN--NLLRAAVRYKQYALVEYLLEEQHMDVNLKNVVGMPLVWFSVVYMQRGDSGVM-----LRYLMQKGADIHTKSFTGQNVLFLVVSSRGKEAIPMLKYLVE---------ECGVSLTDKDEFGSQPLHWAVLSGHLDTVQWI--SRYTRNQGVRANWMKAFERMQQIRMVRPEHMGAMRSWRMRGLQKNARSLTPLGVAVLHNHEHIAKWLMGYGTESQDSISRKRENLFSEQNKDLALVAKTWPELLPEVLRG----FEQKASSGHSWDTVERQTVVPTGWSERTYDIKLLYGLPEVPPNRSPLSVLLSTDYPRLFEVKTVQMVVALKWSVFGHRRVISAYYLWELGRYLTLSLSFILGFVVWGDSRN-WANPLQSGDDHVRVVGGTISRLLCWALTLYNLVVEEGRELKASKSLKKYLVGGWNMQSVAAYILVLALIPVFRPWKAEVEWETDMFEYTTAGIIRRVMTGPAALLLFLRLMEHLAVWKSTGVFIAVIRMVIADTASWSVLFILFEVAFALAFYALLQGSPGFTTVWESMVTLFVMSMGELRMPLSENETVDVVAVITFVTFMLVVAVVYLNLLVAMMTSGYTEVLKGATAQAMMNRAAALVKWEGIMSDKTRREAFRRVAPGKGKRAHITLTGWFGGAATEVFCGEEGATAVEP 3187
            R +    +++W  +  +WI L  AR GD  ++G+   +L++     DK+  NLLRAA R+K    V YL+EE+ +DVN  N  G P+VWF ++ +   ++ V        YL+++GAD    +  GQN++F +  +   +    ++Y+ +         E  +    +D+FGS  +H AVL G+   V  +    +  +   R++W  A + +  + +   EH+ A  SW  RGL   AR L+PLGVA+LHN E +A+ L+     +    +R R  +F + N+DLAL+A+ WP L+P VL       +++A+ G+   T+          +   YD              +PL++L  +  P +       +V+ +KW +FG R      Y+ +L RY  + +S+ LGF+++ +    W   + +             R  C+ L ++  + EE   +K +KS  +YL   +N  ++A+Y+ + A++P     +  + W+     + T  +  R +   A  LLFLR++E LAV  +TG F+A++R V+ D A WS +F+L   AFA+AFY+LL G  GF+   ES  ++F MS+GE   P  E+  ++  A   F  F+++V ++YLN+L+AMM S Y  V + A A A  NRAA L+++E  +SD  R +   +V P +G+R H +L     G   ++F   + A  + P
Sbjct:  337 RGDNMRVLEKWAEVFAKWITLSAARVGDRRMLGLSLAWLDRAKPGIDKDEPNLLRAACRHKHIECVRYLVEERGVDVNGTNGSGAPVVWFCLLGLHAEEARVKAASECFHYLLERGADPTVLNAWGQNIMFWMARTNSPKIGRFMQYMEDFVIVDKQGKERRIDPCQRDKFGSSIMHTAVLYGNRYLVAHLLEKSFCADLLCRSDWAGALDMISDLGLAEDEHITARNSWPGRGLMAAARRLSPLGVAILHNQEAVAQLLVAVSPSTPGGCAR-RAAVFRDDNEDLALLARAWPSLVPAVLDATDVTVDEQAAGGYVVQTLRLHDWFGDPATRNVYD--------------TPLAILSRSGRPEVLAHPVANLVIHMKWKLFGQRM-----YIMQLLRYAVVLVSYFLGFIIFPEQGYPWPTVMYA-------------RWACFWLCVFLFMKEE--LVKMAKSRWRYLASPYNWMALASYVCIAAMVP-----QQALAWQDHASHHDTKEM--RALGAVAGALLFLRVLEFLAVLSATGAFVAMLRRVLLDAAKWSGVFLLLLSAFAVAFYSLLHGEDGFSRFGESFFSVFGMSIGEFDYPFHEDRFINDWACAFFAVFVVLVHLLYLNVLIAMMASSYKAVSEDARASASFNRAALLLRYEATISDDDREKYHNKVRPQRGRREHFSLPDETRGVVRDLFFEHDLALLIAP 1007          
BLAST of mRNA_P-fluviatile_contig6.12502.1 vs. uniprot
Match: A0A7R9U5T3_9STRA (Hypothetical protein (Fragment) n=1 Tax=Pinguiococcus pyrenoidosus TaxID=172671 RepID=A0A7R9U5T3_9STRA)

HSP 1 Score: 283 bits (723), Expect = 9.910e-76
Identity = 194/594 (32.66%), Postives = 305/594 (51.35%), Query Frame = 2
Query: 1148 VDRWEYLVGRWIPLQMARSGDVM----GIQRFLEKFPSFPDKNNLLRAAVRYKQYALVEYLLEEQHMDVNLKNVVGMPLVWFSVVYMQ-RGDSGVMLRYLMQKGADIHTKSFTGQNVLFLVVSSRGKEAIPMLKYLV---------EECGVSLTDKDEFGSQPLHWAVLSGHLDTVQWISRYTRNQ--GV--RANWMKAFERMQQIRMVRPEHMGAMRSWRMRGLQKNARSLTPLGVAVLHNHEHIAKWLMGYGTESQDSISRKRENLFSEQNKDLALVAKTWPELLPEVLRGFEQKASSGHSWDTVERQTVVPTGWSERTYDIKLLYGLPEVPPNRSPLSVLL---STDYPRLFEVKTVQMVVALKWSVFGHRRVISAYYLWELGRYLTLSLSFILGFVVWGDSRNWANPLQSGDDHVRVVGGTISRLLCWALTLYNLVVEEGRELKASKSLKKYLVGGWNMQSVAAYILVLALIPVFRPWKAEVEWETDMFEYTTAGIIRRVMTGPAALLLFLRLMEHLAVWKSTGVFIAVIRMVIADTASWSVLFILFEVAFALAFYALLQGSPGFTTVWESMVTLFVMSMGELRMPLSEN 2866
            +DRW   V RW+ +  ARSG ++     +  F +K P+F D NNLLRAA+R+K    VEYLL+E  +D+N KN  G   + FS++      DSG ML+YL+++GAD    +F GQN+LF V  +     + + + L+         EE  +++  +D  GS  LH AVL G++  V++I + T ++  G+  RANW+K  +      M + EH+ A  SW  RGL   A  L+PLGVA+LHN   +A+ LM     S     R+R  +F + N+DL L+AK WP L+P +L+ F  K +            V   G+    Y I   +G    P   +PL+V+L     D+  L+ ++ +Q+V+ LKW +FG R     YY   L RY+ L +++I GF++         P+ +GD  V    G I R   W      L+ EE RE+  SK   +Y +  +N  S+  Y  +L + P+      E   +T           +R+    A + + LR++E L++  +TG  +A++  ++ DT  W+ +F +  +AF L+F ALL     F  +  +M T F  ++GE   P S +
Sbjct:  397 LDRWATFVVRWMTILDARSGKLVLLRGHVSWFQKKVPAFLDMNNLLRAAIRHKHINCVEYLLDECKVDINAKNAFGNNPIMFSMLKQDDTQDSGAMLKYLLKRGADPTGITFQGQNLLFNVARNAACNTVELFEMLLRNTYVDPRGEERTLNIGQRDTVGSTVLHHAVLFGNVQLVEYILKATHDRIDGIWTRANWIKTIDTFSSYNMSKDEHVTARNSWAARGLTSFAEHLSPLGVAILHNQGSLARLLMSIDCGSGLDC-RRRRTIFYDDNEDLRLLAKVWPSLIPALLQQFSVKTNQ-----------VANLGYKATRYIIHPWFGHHNTPIYHTPLAVMLRFDGEDWNCLYNMRIIQVVITLKWQLFGKR-----YYYGALARYVFLVVTYIFGFIL---DVAPGTPMSAGDAQV----GEIFRWFAWLSAFLLLLHEEFREMYHSKW--EYFMSAYNWLSLVGYTCILIMAPLAGEDYRENSDDTS----------QRIFRAVAGVAILLRVLEFLSIHNTTGRLVAMLEKMMKDTLRWAGIFFVLVLAFTLSFNALLAPEENFENLASTMFTAFRFTIGEADPPFSTD 954          
BLAST of mRNA_P-fluviatile_contig6.12502.1 vs. uniprot
Match: UPI001E1D7FFF (transient receptor potential cation channel subfamily A member 1 homolog n=1 Tax=Mercenaria mercenaria TaxID=6596 RepID=UPI001E1D7FFF)

HSP 1 Score: 68.2 bits (165), Expect = 1.360e-7
Identity = 80/327 (24.46%), Postives = 146/327 (44.65%), Query Frame = 2
Query: 2108 PLSVLLSTDYPRLFEVKTVQMVVALKWSVFGHRRVISAYYLWELGRYLTLSLSFILGFVVWGDSRNWANPLQSGDDHVRVVGGTISRLLCWALTL---YNLVVEEGRELKASKSLKKYLVGGWNMQSVAAYILVLALIPVFRPWKAEVEWETDMFEYTTAGIIRRVMTGPAALLLFLRLMEHLAVWKSTGVFIAVIRMVIADTASWSVLFILFEVAFALAFYALLQGSPGFTTVWESMVTLFVMSMGELRMPLSENETV---DVVAVITFVTFMLVVAVVYLNLLVAMMTSGYTEVLKGA--TAQAMMNRAAALVKWEGIMSDKTRR 3064
            PL +++++    L     V  ++  KW+ FG       +Y      Y    L+F+ G++V  D+    N   S          T +++  +A+ +   +NL+    REL      K   +   N+     Y+  L  +  F   +    + T  +++    +        A  L ++ L+     +   G+++ + + ++     + ++F+LF + FALAFY+LLQ    F+TVW+S++   VM +GE        E V   +V+  I F  FM+V++++ +NLLV +      EV + A  T +AM    A  V  E I+ D  RR
Sbjct:  781 PLMIMVTSKREDLLAHPLVTALLRYKWTKFGR-----TFYYVNFVIYAVF-LTFLTGYIVSTDAPYMINDTCSQLKTAGYDQPTFAKVGKYAIIILAAWNLL----RELIQVYQAKLNYLSWENLIEWTVYVTSLLFVIDFEDCQKNTGYRTR-WQWNVGTV--------AIFLSWINLVLFAQKFPRFGIYVVMFKDILRTFFQFFIVFMLFIIGFALAFYSLLQNQESFSTVWQSLIKTTVMMIGEFEYDSIYTEGVVYYEVLGYILFCVFMVVMSIIIMNLLVGLAVDNIKEVQEQAELTRKAMQVELALDV--ERIVPDFFRR 1086          
BLAST of mRNA_P-fluviatile_contig6.12502.1 vs. uniprot
Match: C3YPH3_BRAFL (Ion_trans domain-containing protein n=3 Tax=Branchiostoma floridae TaxID=7739 RepID=C3YPH3_BRAFL)

HSP 1 Score: 65.5 bits (158), Expect = 7.980e-7
Identity = 44/145 (30.34%), Postives = 82/145 (56.55%), Query Frame = 2
Query: 2654 WKSTGVFIAVI-RMVIADTASWSVLFILFEVAFALAFYALLQGSPG--FTTVWESMVTLFVMSMGELRMPLSENETVDVVAVITFVTFMLVVAVVYLNLLVAMMTSGYTEVLKGATAQAMMNRAAALVKWEGIMSDKTRREAFRR 3079
            W  TG F+ +I +M+  D A + +++  F + FA AF+ + +  P   F + + S++TLF M++GE   P+        +A + FV FM++V ++ LN+L+AMM++ + EV+  +  +    +A  +V  E   S K+  + FR+
Sbjct:  527 WTLTGPFVTMIYKMIAGDMARFGIIYCTFIITFAPAFWIMFRDKPTEKFDSEFGSLMTLFQMTLGEFDYPVFNLAEFPALAKLLFVVFMMLVPIMLLNMLIAMMSNTFQEVVDRSEREWRRQKAKIIVSLERSFS-KSSLQQFRK 670          
BLAST of mRNA_P-fluviatile_contig6.12502.1 vs. uniprot
Match: A0A6P4ZTL0_BRABE (transient receptor potential cation channel subfamily V member 5-like n=3 Tax=Branchiostoma TaxID=7737 RepID=A0A6P4ZTL0_BRABE)

HSP 1 Score: 62.8 bits (151), Expect = 5.360e-6
Identity = 40/135 (29.63%), Postives = 76/135 (56.30%), Query Frame = 2
Query: 2654 WKSTGVFIAVI-RMVIADTASWSVLFILFEVAFALAFYALLQGSPG--FTTVWESMVTLFVMSMGELRMPLSENETVDVVAVITFVTFMLVVAVVYLNLLVAMMTSGYTEVLKGATAQAMMNRAAALVKWEGIMS 3049
            W  TG F+ +I +M+  D A + ++++ F + FA AF+ + +  P   F +   +++TLF M++GE   P+        +A + FV FM++V ++ LN+L+AMM++ + EV+  +  +    +A  +V  E   S
Sbjct:  527 WTLTGPFVTMIYKMIAGDMARFGIIYLTFLITFAPAFWIMFRDKPTEKFDSEIGAVMTLFQMTLGEFDYPVFNLAEFPALAKLLFVVFMMLVPIMLLNMLIAMMSNTFQEVVDRSEREWRRQKAKIIVSLERSFS 661          
BLAST of mRNA_P-fluviatile_contig6.12502.1 vs. uniprot
Match: UPI001CF4537D (transient receptor potential cation channel subfamily A member 1 homolog n=1 Tax=Acropora millepora TaxID=45264 RepID=UPI001CF4537D)

HSP 1 Score: 62.0 bits (149), Expect = 1.020e-5
Identity = 78/311 (25.08%), Postives = 135/311 (43.41%), Query Frame = 2
Query: 2108 PLSVLLSTDYPRLFEVKTVQMVVALKWSVFGHRRVISAYYLWELGRYLTLSLSFILGFVVWGDSRN-WANPLQSGDDHVRVVGGTISRLLCWALTLYNLVVEEGRELKASKSLKKYLVGGWNMQSVAAYILVLALIPVFRPWKAEVEWETDMFEYTTAGIIRRVMTGPAALLLFLRLMEHLAVWKSTGVFIAVIRMVIADTASWSVLFILFEVAFALAFYALLQGS-PGFTTVWESMVTLFVMSMGELRMPLSENETVDVVAV--ITFVTFMLVVAVVYLNLLVAMMTSGYTEVLKGATAQAMMNRAAALV 3028
            PL +++     +L     V  ++  KW  FG R      Y ++L  +    L F+ G+ ++    N  +  + +      V+   I   +  AL L ++V E     +       Y   G N+   AAYIL  A+I V   +   V  ++D   +    I    M+    L LF+R    L      G+++ +   ++     + ++++LF VAF LAFY LL    PGF++   S V   VM +GE     + N  V V  V    F+ F++V+ ++ +NLL+ +        + G   QA + + A +V
Sbjct:  823 PLMIMVENKREQLLRHPLVTFLLHYKWQKFGRRL-----YYFKLALFCVF-LFFLTGYTIYSTQLNKLSKDMLNKSSFPYVLWIDIGSFVTLALALAHIVFEL---FQLRHQFNHYFSWG-NLLEWAAYIL--AIIYVADEFNVSVVNKSDKAVFGALSIFFSWMS----LALFIRKFPKL------GIYVVMFTSILYTFMKFFIIYVLFIVAFGLAFYTLLDTKQPGFSSPGRSCVKTAVMMIGEFDFDDTFNSDVTVPGVTWFLFIVFLIVMTLLLMNLLIGLAIDD----IHGVQEQAFLEQQAMVV 1107          
BLAST of mRNA_P-fluviatile_contig6.12502.1 vs. uniprot
Match: UPI0016521FD6 (transient receptor potential cation channel subfamily A member 1 homolog n=1 Tax=Aplysia californica TaxID=6500 RepID=UPI0016521FD6)

HSP 1 Score: 62.0 bits (149), Expect = 1.050e-5
Identity = 73/336 (21.73%), Postives = 151/336 (44.94%), Query Frame = 2
Query: 2108 PLSVLLSTDYPRLFEVKTVQMVVALKWSVFGHRRVISAYYLWELGRYLTLSLSFILGFV---VWGDSRNWANPLQSG----DDHVRVVGGTISRLLCWALTLYNLVVEEGRELKASKSLKKYLVGGWNMQSVAAYILVLALIPVFRPWKAEVEWETDMFEYTTAGIIRRVMTGPAALLLFLRLMEHLAVWKSTGVFIAVIRMVIADTASWSVLFILFEVAFALAFYALLQGSPGFTTVWESMVTLFVMSMGELRMPLSENETVDVV-----AVITFVTFMLVVAVVYLNLLVAMMTSGYTEVLKGATAQAMMNRAAALVKWEGIMSDKTRREAFRR 3079
            PL +++ ++   L     V  ++  KW+ FG      +++++ +  +LT   ++++  V   V+G   +       G    +   + +  +I   +  AL+ + L+    +EL      K    G  N+     Y+  L L+  F   + E  +   ++++    I        +  L ++ L+  +  +   G+++ +   ++   + + ++F LF +AFALAFY+L Q    F +V +S+V   VM +GE       NE    V     + I F+ F+++++++ +NLLV +       V + A  + M  +    +  E I+ D  RR+AF R
Sbjct:  931 PLYIMILSEREDLLAHPLVTSLLQHKWNTFGSFFYYLSFFIYCI--FLTFITAYMVTSVPPHVFGADASLIEDNTCGSALANPRTQPLIASIGTYVIMALSGFMLL----KELLQIYQAKLNYFGWTNLIEWIVYVTALLLVISFNDCQRETGYRY-VWQWHLGAI--------SVFLAWMDLVLFIQKFPQFGIYVVMFTDILRTFSQFFIVFFLFIIAFALAFYSLFQNQVPFDSVGKSIVKTSVMMIGEFEFDSIFNEASVAVNYAAASYIIFIIFLIIMSILIMNLLVGLAVDDIKAVQEQAALKRMAMQVELALDVERIIPDFIRRKAFTR 1251          
The following BLAST results are available for this feature:
BLAST of mRNA_P-fluviatile_contig6.12502.1 vs. uniprot
Analysis Date: 2022-09-19 (Diamond blastx: OGS1.0 vs UniRef90)
Total hits: 21
Match NameE-valueIdentityDescription
D7FIX0_ECTSI0.000e+059.12Ankyrin Repeat Transient Receptor Potential Channe... [more]
A0A6H5K0W6_9PHAE2.210e-21257.95Uncharacterized protein (Fragment) n=1 Tax=Ectocar... [more]
A0A835Z0J0_9STRA2.070e-8729.49Uncharacterized protein n=1 Tax=Tribonema minus Ta... [more]
A0A7S1TWL2_9STRA9.010e-8730.43Hypothetical protein n=3 Tax=Phaeomonas parva TaxI... [more]
A0A7R9U5T3_9STRA9.910e-7632.66Hypothetical protein (Fragment) n=1 Tax=Pinguiococ... [more]
UPI001E1D7FFF1.360e-724.46transient receptor potential cation channel subfam... [more]
C3YPH3_BRAFL7.980e-730.34Ion_trans domain-containing protein n=3 Tax=Branch... [more]
A0A6P4ZTL0_BRABE5.360e-629.63transient receptor potential cation channel subfam... [more]
UPI001CF4537D1.020e-525.08transient receptor potential cation channel subfam... [more]
UPI0016521FD61.050e-521.73transient receptor potential cation channel subfam... [more]

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Alignments
The following features are aligned
Aligned FeatureFeature TypeAlignment Location
P-fluviatile_contig6contigP-fluviatile_contig6:1826257..1850724 -
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 score1304.3
Seed ortholog evalue0.0
Seed eggNOG ortholog2880.D7FIX0
EggNOG free text desc.temperature-gated cation channel activity
EggNOG OGsCOG0666@1,KOG0510@2759
COG Functional cat.Z
Best tax levelEukaryota
Best eggNOG OGNA|NA|NA
Hectar predicted targeting categoryother localisation
Exons25
Model size4248
Cds size3672
Stop1
Start1
Relationships

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

Feature NameUnique NameSpeciesTypePosition
1622816992.626556-UTR-P-fluviatile_contig6:1826256..18267921622816992.626556-UTR-P-fluviatile_contig6:1826256..1826792Porterinema fluviatile SAG_2381UTRP-fluviatile_contig6 1826257..1826792 -
1693570705.8705637-UTR-P-fluviatile_contig6:1826256..18267921693570705.8705637-UTR-P-fluviatile_contig6:1826256..1826792Porterinema fluviatile SAG_2381UTRP-fluviatile_contig6 1826257..1826792 -
1622816992.9208179-UTR-P-fluviatile_contig6:1850684..18507241622816992.9208179-UTR-P-fluviatile_contig6:1850684..1850724Porterinema fluviatile SAG_2381UTRP-fluviatile_contig6 1850685..1850724 -
1693570710.029983-UTR-P-fluviatile_contig6:1850684..18507241693570710.029983-UTR-P-fluviatile_contig6:1850684..1850724Porterinema fluviatile SAG_2381UTRP-fluviatile_contig6 1850685..1850724 -


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

Feature NameUnique NameSpeciesTypePosition
1622816992.6372132-CDS-P-fluviatile_contig6:1826792..18269241622816992.6372132-CDS-P-fluviatile_contig6:1826792..1826924Porterinema fluviatile SAG_2381CDSP-fluviatile_contig6 1826793..1826924 -
1693570705.8935502-CDS-P-fluviatile_contig6:1826792..18269241693570705.8935502-CDS-P-fluviatile_contig6:1826792..1826924Porterinema fluviatile SAG_2381CDSP-fluviatile_contig6 1826793..1826924 -
1622816992.646973-CDS-P-fluviatile_contig6:1828728..18290531622816992.646973-CDS-P-fluviatile_contig6:1828728..1829053Porterinema fluviatile SAG_2381CDSP-fluviatile_contig6 1828729..1829053 -
1693570705.906503-CDS-P-fluviatile_contig6:1828728..18290531693570705.906503-CDS-P-fluviatile_contig6:1828728..1829053Porterinema fluviatile SAG_2381CDSP-fluviatile_contig6 1828729..1829053 -
1622816992.656513-CDS-P-fluviatile_contig6:1829425..18295141622816992.656513-CDS-P-fluviatile_contig6:1829425..1829514Porterinema fluviatile SAG_2381CDSP-fluviatile_contig6 1829426..1829514 -
1693570706.238867-CDS-P-fluviatile_contig6:1829425..18295141693570706.238867-CDS-P-fluviatile_contig6:1829425..1829514Porterinema fluviatile SAG_2381CDSP-fluviatile_contig6 1829426..1829514 -
1622816992.6696663-CDS-P-fluviatile_contig6:1830327..18304261622816992.6696663-CDS-P-fluviatile_contig6:1830327..1830426Porterinema fluviatile SAG_2381CDSP-fluviatile_contig6 1830328..1830426 -
1693570706.2509723-CDS-P-fluviatile_contig6:1830327..18304261693570706.2509723-CDS-P-fluviatile_contig6:1830327..1830426Porterinema fluviatile SAG_2381CDSP-fluviatile_contig6 1830328..1830426 -
1622816992.6807134-CDS-P-fluviatile_contig6:1830978..18310711622816992.6807134-CDS-P-fluviatile_contig6:1830978..1831071Porterinema fluviatile SAG_2381CDSP-fluviatile_contig6 1830979..1831071 -
1693570707.0586865-CDS-P-fluviatile_contig6:1830978..18310711693570707.0586865-CDS-P-fluviatile_contig6:1830978..1831071Porterinema fluviatile SAG_2381CDSP-fluviatile_contig6 1830979..1831071 -
1622816992.6922057-CDS-P-fluviatile_contig6:1831955..18320611622816992.6922057-CDS-P-fluviatile_contig6:1831955..1832061Porterinema fluviatile SAG_2381CDSP-fluviatile_contig6 1831956..1832061 -
1693570707.0760818-CDS-P-fluviatile_contig6:1831955..18320611693570707.0760818-CDS-P-fluviatile_contig6:1831955..1832061Porterinema fluviatile SAG_2381CDSP-fluviatile_contig6 1831956..1832061 -
1622816992.7027385-CDS-P-fluviatile_contig6:1832948..18330761622816992.7027385-CDS-P-fluviatile_contig6:1832948..1833076Porterinema fluviatile SAG_2381CDSP-fluviatile_contig6 1832949..1833076 -
1693570707.088021-CDS-P-fluviatile_contig6:1832948..18330761693570707.088021-CDS-P-fluviatile_contig6:1832948..1833076Porterinema fluviatile SAG_2381CDSP-fluviatile_contig6 1832949..1833076 -
1622816992.716485-CDS-P-fluviatile_contig6:1833842..18339981622816992.716485-CDS-P-fluviatile_contig6:1833842..1833998Porterinema fluviatile SAG_2381CDSP-fluviatile_contig6 1833843..1833998 -
1693570707.0964742-CDS-P-fluviatile_contig6:1833842..18339981693570707.0964742-CDS-P-fluviatile_contig6:1833842..1833998Porterinema fluviatile SAG_2381CDSP-fluviatile_contig6 1833843..1833998 -
1622816992.7294133-CDS-P-fluviatile_contig6:1834782..18349181622816992.7294133-CDS-P-fluviatile_contig6:1834782..1834918Porterinema fluviatile SAG_2381CDSP-fluviatile_contig6 1834783..1834918 -
1693570707.105054-CDS-P-fluviatile_contig6:1834782..18349181693570707.105054-CDS-P-fluviatile_contig6:1834782..1834918Porterinema fluviatile SAG_2381CDSP-fluviatile_contig6 1834783..1834918 -
1622816992.7402887-CDS-P-fluviatile_contig6:1835536..18356401622816992.7402887-CDS-P-fluviatile_contig6:1835536..1835640Porterinema fluviatile SAG_2381CDSP-fluviatile_contig6 1835537..1835640 -
1693570707.1166894-CDS-P-fluviatile_contig6:1835536..18356401693570707.1166894-CDS-P-fluviatile_contig6:1835536..1835640Porterinema fluviatile SAG_2381CDSP-fluviatile_contig6 1835537..1835640 -
1622816992.7506826-CDS-P-fluviatile_contig6:1836742..18368661622816992.7506826-CDS-P-fluviatile_contig6:1836742..1836866Porterinema fluviatile SAG_2381CDSP-fluviatile_contig6 1836743..1836866 -
1693570707.1290808-CDS-P-fluviatile_contig6:1836742..18368661693570707.1290808-CDS-P-fluviatile_contig6:1836742..1836866Porterinema fluviatile SAG_2381CDSP-fluviatile_contig6 1836743..1836866 -
1622816992.7608197-CDS-P-fluviatile_contig6:1837885..18380161622816992.7608197-CDS-P-fluviatile_contig6:1837885..1838016Porterinema fluviatile SAG_2381CDSP-fluviatile_contig6 1837886..1838016 -
1693570707.1422553-CDS-P-fluviatile_contig6:1837885..18380161693570707.1422553-CDS-P-fluviatile_contig6:1837885..1838016Porterinema fluviatile SAG_2381CDSP-fluviatile_contig6 1837886..1838016 -
1622816992.7710965-CDS-P-fluviatile_contig6:1838991..18391201622816992.7710965-CDS-P-fluviatile_contig6:1838991..1839120Porterinema fluviatile SAG_2381CDSP-fluviatile_contig6 1838992..1839120 -
1693570707.1520348-CDS-P-fluviatile_contig6:1838991..18391201693570707.1520348-CDS-P-fluviatile_contig6:1838991..1839120Porterinema fluviatile SAG_2381CDSP-fluviatile_contig6 1838992..1839120 -
1622816992.7813644-CDS-P-fluviatile_contig6:1839715..18398271622816992.7813644-CDS-P-fluviatile_contig6:1839715..1839827Porterinema fluviatile SAG_2381CDSP-fluviatile_contig6 1839716..1839827 -
1693570707.172067-CDS-P-fluviatile_contig6:1839715..18398271693570707.172067-CDS-P-fluviatile_contig6:1839715..1839827Porterinema fluviatile SAG_2381CDSP-fluviatile_contig6 1839716..1839827 -
1622816992.7914786-CDS-P-fluviatile_contig6:1840170..18403191622816992.7914786-CDS-P-fluviatile_contig6:1840170..1840319Porterinema fluviatile SAG_2381CDSP-fluviatile_contig6 1840171..1840319 -
1693570707.1829212-CDS-P-fluviatile_contig6:1840170..18403191693570707.1829212-CDS-P-fluviatile_contig6:1840170..1840319Porterinema fluviatile SAG_2381CDSP-fluviatile_contig6 1840171..1840319 -
1622816992.803724-CDS-P-fluviatile_contig6:1841174..18413401622816992.803724-CDS-P-fluviatile_contig6:1841174..1841340Porterinema fluviatile SAG_2381CDSP-fluviatile_contig6 1841175..1841340 -
1693570707.1921363-CDS-P-fluviatile_contig6:1841174..18413401693570707.1921363-CDS-P-fluviatile_contig6:1841174..1841340Porterinema fluviatile SAG_2381CDSP-fluviatile_contig6 1841175..1841340 -
1622816992.8166373-CDS-P-fluviatile_contig6:1842215..18424181622816992.8166373-CDS-P-fluviatile_contig6:1842215..1842418Porterinema fluviatile SAG_2381CDSP-fluviatile_contig6 1842216..1842418 -
1693570709.9254985-CDS-P-fluviatile_contig6:1842215..18424181693570709.9254985-CDS-P-fluviatile_contig6:1842215..1842418Porterinema fluviatile SAG_2381CDSP-fluviatile_contig6 1842216..1842418 -
1622816992.8269224-CDS-P-fluviatile_contig6:1843802..18439051622816992.8269224-CDS-P-fluviatile_contig6:1843802..1843905Porterinema fluviatile SAG_2381CDSP-fluviatile_contig6 1843803..1843905 -
1693570709.944025-CDS-P-fluviatile_contig6:1843802..18439051693570709.944025-CDS-P-fluviatile_contig6:1843802..1843905Porterinema fluviatile SAG_2381CDSP-fluviatile_contig6 1843803..1843905 -
1622816992.8401759-CDS-P-fluviatile_contig6:1844796..18448681622816992.8401759-CDS-P-fluviatile_contig6:1844796..1844868Porterinema fluviatile SAG_2381CDSP-fluviatile_contig6 1844797..1844868 -
1693570709.9561167-CDS-P-fluviatile_contig6:1844796..18448681693570709.9561167-CDS-P-fluviatile_contig6:1844796..1844868Porterinema fluviatile SAG_2381CDSP-fluviatile_contig6 1844797..1844868 -
1622816992.8505445-CDS-P-fluviatile_contig6:1845208..18453191622816992.8505445-CDS-P-fluviatile_contig6:1845208..1845319Porterinema fluviatile SAG_2381CDSP-fluviatile_contig6 1845209..1845319 -
1693570709.9668021-CDS-P-fluviatile_contig6:1845208..18453191693570709.9668021-CDS-P-fluviatile_contig6:1845208..1845319Porterinema fluviatile SAG_2381CDSP-fluviatile_contig6 1845209..1845319 -
1622816992.8609467-CDS-P-fluviatile_contig6:1845798..18460441622816992.8609467-CDS-P-fluviatile_contig6:1845798..1846044Porterinema fluviatile SAG_2381CDSP-fluviatile_contig6 1845799..1846044 -
1693570709.975085-CDS-P-fluviatile_contig6:1845798..18460441693570709.975085-CDS-P-fluviatile_contig6:1845798..1846044Porterinema fluviatile SAG_2381CDSP-fluviatile_contig6 1845799..1846044 -
1622816992.8715358-CDS-P-fluviatile_contig6:1846499..18467351622816992.8715358-CDS-P-fluviatile_contig6:1846499..1846735Porterinema fluviatile SAG_2381CDSP-fluviatile_contig6 1846500..1846735 -
1693570709.98316-CDS-P-fluviatile_contig6:1846499..18467351693570709.98316-CDS-P-fluviatile_contig6:1846499..1846735Porterinema fluviatile SAG_2381CDSP-fluviatile_contig6 1846500..1846735 -
1622816992.8821096-CDS-P-fluviatile_contig6:1848085..18483851622816992.8821096-CDS-P-fluviatile_contig6:1848085..1848385Porterinema fluviatile SAG_2381CDSP-fluviatile_contig6 1848086..1848385 -
1693570709.991678-CDS-P-fluviatile_contig6:1848085..18483851693570709.991678-CDS-P-fluviatile_contig6:1848085..1848385Porterinema fluviatile SAG_2381CDSP-fluviatile_contig6 1848086..1848385 -
1622816992.8930728-CDS-P-fluviatile_contig6:1849420..18495531622816992.8930728-CDS-P-fluviatile_contig6:1849420..1849553Porterinema fluviatile SAG_2381CDSP-fluviatile_contig6 1849421..1849553 -
1693570710.000993-CDS-P-fluviatile_contig6:1849420..18495531693570710.000993-CDS-P-fluviatile_contig6:1849420..1849553Porterinema fluviatile SAG_2381CDSP-fluviatile_contig6 1849421..1849553 -
1622816992.906123-CDS-P-fluviatile_contig6:1850595..18506841622816992.906123-CDS-P-fluviatile_contig6:1850595..1850684Porterinema fluviatile SAG_2381CDSP-fluviatile_contig6 1850596..1850684 -
1693570710.0184522-CDS-P-fluviatile_contig6:1850595..18506841693570710.0184522-CDS-P-fluviatile_contig6:1850595..1850684Porterinema fluviatile SAG_2381CDSP-fluviatile_contig6 1850596..1850684 -


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

Feature NameUnique NameSpeciesTypePosition
mRNA_P-fluviatile_contig6.12502.1prot_P-fluviatile_contig6.12502.1Porterinema fluviatile SAG_2381polypeptideP-fluviatile_contig6 1826793..1850684 -


Sequences
The following sequences are available for this feature:

protein sequence of mRNA_P-fluviatile_contig6.12502.1

>prot_P-fluviatile_contig6.12502.1 ID=prot_P-fluviatile_contig6.12502.1|Name=mRNA_P-fluviatile_contig6.12502.1|organism=Porterinema fluviatile SAG_2381|type=polypeptide|length=1224bp
MSNSQMQGEVTVHHFPGLLGTLGWGWLHPRFLVLEHAVLLVYASEDDWVE
HQEPLDDVALSADSTVETSQEGGEVLVKVRCPGHPPLCFSAFSSDNVGGD
DSDSVDDGFDSEAWRKAVAREIDRLRREEEGDGRQQQRADAAAATGGLSS
WRLWNAVSGLVGAGAAATGSGAAGDSTGGGGDDAPEEDEDAVSLDAALAG
GAEADGHGGGGEREEKQDRPDIGDGGGGGAEHGGRKASARPAPREQSTAR
FRRWPLRRGSVNHQIPEYDSAGNPVATASTANRSAATTAAVRGGGPSYSS
ASGGTSLWRKVAGVVRKKDCANCTCKWCRDRGTGSHSRPRLERRSSSSYR
HECSWSKGRAGVRAETSPAVDRWEYLVGRWIPLQMARSGDVMGIQRFLEK
FPSFPDKNNLLRAAVRYKQYALVEYLLEEQHMDVNLKNVVGMPLVWFSVV
YMQRGDSGVMLRYLMQKGADIHTKSFTGQNVLFLVVSSRGKEAIPMLKYL
VEECGVSLTDKDEFGSQPLHWAVLSGHLDTVQWISRYTRNQGVRANWMKA
FERMQQIRMVRPEHMGAMRSWRMRGLQKNARSLTPLGVAVLHNHEHIAKW
LMGYGTESQDSISRKRENLFSEQNKDLALVAKTWPELLPEVLRGFEQKAS
SGHSWDTVERQTVVPTGWSERTYDIKLLYGLPEVPPNRSPLSVLLSTDYP
RLFEVKTVQMVVALKWSVFGHRRVISAYYLWELGRYLTLSLSFILGFVVW
GDSRNWANPLQSGDDHVRVVGGTISRLLCWALTLYNLVVEEGRELKASKS
LKKYLVGGWNMQSVAAYILVLALIPVFRPWKAEVEWETDMFEYTTAGIIR
RVMTGPAALLLFLRLMEHLAVWKSTGVFIAVIRMVIADTASWSVLFILFE
VAFALAFYALLQGSPGFTTVWESMVTLFVMSMGELRMPLSENETVDVVAV
ITFVTFMLVVAVVYLNLLVAMMTSGYTEVLKGATAQAMMNRAAALVKWEG
IMSDKTRREAFRRVAPGKGKRAHITLTGWFGGAATEVFCGEEGATAVEPE
QSTIGKRIDRHAVVMKELEEIRDMISRASAPERSGASGGDGGVFARKTPA
DGESAHASSNGRDASFRKRQAGMLVQGKGLSALRLGDSSSSGGGGGGGSV
RRGSVSSRGEGMRTTERTGSARSVTTEELQVWRERALRVQEKADSRRGVV
RAQALIRGYLTRSKSRARFLPDN*
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mRNA from alignment at P-fluviatile_contig6:1826257..1850724-

Legend: UTRpolypeptideCDS
Hold the cursor over a type above to highlight its positions in the sequence below.
>mRNA_P-fluviatile_contig6.12502.1 ID=mRNA_P-fluviatile_contig6.12502.1|Name=mRNA_P-fluviatile_contig6.12502.1|organism=Porterinema fluviatile SAG_2381|type=mRNA|length=24468bp|location=Sequence derived from alignment at P-fluviatile_contig6:1826257..1850724- (Porterinema fluviatile SAG_2381)
GTGAGCCGCTTGTTGCGCTGTTTAACTGCGAAGCCGAAAGATGTCGAACT CTCAAATGCAGGGTGAGGTCACTGTCCACCACTTTCCCGGGCTCTTGGGG ACATTAGGCTGGGGATGGCTGCACCCTAGGTGAGATGCTTCTCTCGCTGG GCTTTTTATTGCAGCTTAATTTGGAAATATTCCAAGTCGTGATTGAACTG CTGTCACTTAGACTTTAGACTGGACTATGTACGTCCGGAGTATATTACAA AAGCTTAGCGCGCGGCCTCTTCTTCCAATGTGCTTGTCATCCTGGCGCTC CACACCGTGTGCGCTTCGTGATGGTTTGCTACACGACGGCACCCCACGGT GACACTGCCCCGGCGATTGACAAGTACTCTTGTTGTTTGCCGGGGCGGAA CCGACCGGCCTTCTCCCATCTTTCGAGACAAGGATACATCTCGTTCAATG CCCCGCAACAGCGCTCCCGCGAGATATATCATCGCACTCAGTCTACAGAA ACATCTACAGGCCGGCATCAATATTTCTTTGTCAATCCTGTCCCTTGGTT GCAAGGGTACGCCATCGTACATGCATGCATCCCAGCTCGTAATTGCCGGT TTTACGCCTATTAATGGGAACTGTTAGTGCCGTCTTTTGAGATTAATACC TCAACGGCCGACCAGCACCACTTTTGTCACACCCATCGAAGACTTAGTGC GTGCATCAAGCCCTGAACCTCGTCAACTGCACGTGCGGTCTTTTGTTCGT TCTAAGGAAGCTGTCAGGGAGAAGCGACAGATGCTGCTAAATTTCCATGC TCTCATAGCAGATGTGTGAGTGCGGCTCAGATGCCTGCCGGCCGCCGCCG CTTGGACAACGCCGATGTGTTTTTTCTACACCAGTGTTCTGAACGCGAAG AAGTTCGTCAGAGAGGAAGACATATCTCGCCATGTCCCCTGCTCCATAAA AAAATGCCCTGTAGGCGGTGGGTGACCTTGTTGCTTTGTTTTGGTTTCCC GCCCGTCACCGAGGACGACCCACATGCGCGATCACACTCCTGTTGGGGCG TACCTTCCCGAATCGGAAAAGGTGGTGCACCAAACGCCGCTTGGTCTTCC TTGTCTCCGTCCGTTCTGCTGGCGGCGCCGTGGGCTCGTCGGTTGTTCTC CTTTTCTGTCGCGCACGGTAGGTTTCTGGTGCTTGAGCACGCCGTCCTGC TGGTGTACGCGAGCGAGGACGACTGGGTAGAGCACCAGGAGCCGCTGGAC GACGTCGCGCTCTCCGCGGACTCGACCGTGGAGACTTCGCAGGAAGGCGG AGAGGTATGTTTTCGTCGGAACCCACAGCAGATGCAAAGTAGGTAGTGTG TTGAATCACCGCTAGAGGTATTTCAATGTTTAAGCTCGGAAGCATTTCCC TGTTTATCTTGCTACATTTTTACCCCAGCCGCTGATTTTAAGATAGTCAC CAACCAGACAGTCGCCAACCCCCCGTGCTTGTTTTCCGATGCACTTGTAT GCGCCCCCCCGGCCCATCGGAGAGCAGGAGGCGAAGTCATTCGCGTAAGT ATTGCAAAGGCCGCGGAAGGGGCCAGGGAATGCATGGAAAAATCTCACTC GAAACGTGGAGGGCCGAACCAGCCCTCGCTCGAAGGGGCGAATTGTGTCA GCGCCTCAGGATAGCGTCCACCACTGAGTTTTCGTAGGCCGTTTGAAACT CAAAAGCCTGGGCACGGAAATCAATCTGCCATATTTTCAAAGATTTCAAG CTTGACCGGAGCAAATGTTGCAATTATGAAAAAAAAAAAATTATGCTGTG AGTTTAGGCTTCCGAAGGTCATACGGTCTCGACCCCGGCCGATGTAAAGG TTGTGCACTATTAATAGCTCTGAAATGACGGGATGTCGCCGGGCATTCAC GTTTTACTTGTGGTCCATCAAACGATCTTCAACAATTGGTCAAGGAGCGT ATGGTGTCTTACCCAAGCTGCCGTGCAATATTCCCTACCCACGTTGACGC ATGCTTGCAGCTTTCGCTCGCATAATCGTTCGGGAAGAGGGAAGGGATGG GGGGGCCCAGTTGTTCTGCATCACGTCATTCAGGAGTGGGGGGGAATAGA AGCATCGCACCGCCTCAAAAACGGGAAAGTCGGGCGCGGTCTGCTCGGCA CACAACGAAACACCACCCTGTCGCTTTCTTCTGTGATCACTCACACTCGC TTACCCCGTTCTCTCGATCTTGCTCCCTGCTCCCGCCGCACCCTGCGGTG CTCCTTTCCTGCCGCCGCTGCCGCCGCCGCCGCCGCCTCTGGCTTGAACG TATGGGCGGATGCTACCCCCGCCCTTCCCCCTACCGCAGGTGCTTGTGAA GGTCCGCTGCCCAGGCCACCCCCCACTGTGCTTCAGCGCCTTCTCCTCCG ACAATGTCGGCGGCGACGACAGCGACTCCGTTGACGACGGCTTCGACAGT GAGGCCTGGAGGAAGGCAGTCGCCCGAGAGATCGACAGGCTCAGGAGGGA GGAGGAGGGGGACGGGAGACAGCAGCAGCGGGCGGATGCGGCAGCGGCGA CCGGGGGGCTCAGCTCTTGGCGTCTATGGAATGCGGTCAGCGGCCTCGTG GGAGCGGGGGCGGCGGCGACCGGGTCCGGCGCAGCGGGGGTGAGGGAAGG GGAGGAGCTGAGCGATCAACGTAAACTCGTAGGCGCTTTTTTGTCCTGCT CGTGACGAAAAAACAAGAAATGGTCAATATAAAGAAATCTCGAAATTTTG ACGGCCAGAACGGGCGTAGACTGGTTAAGGAGGAGGAAGTGGCAAGGTCA CACAGCGGATGCGCACGAGGTTTTCCGTTGTAATCATTTAACAACAAAAA AGCCCGAACTGACTTTATATCACGTGTTCGGCATACGACCCTATGACTTC TTTAATGTGAAAATGATGAGGGACAAAAAGGTGCCCACGGAGGCGTCGAG ATCACTTTCCTCCCTCCTCGATGCTTCCCACACGCTCGCTTCATTTTTTT TTGTATGATTACGGCATGTGTTCGTTCATGCAGCACCGAGCGGCCGGCAG GGGTTCGAGGAGCCTCTGAACGCGGGCTGGTCGTGTTGACGAATGAGTGC CGGGAAGAATGTAGGCCGAGGCCCTTGGCTTTCTCCTCAGTAGGACCAGT CTGCCCCGGAATCCTGTCTGTAAGACCGTGTAGGGCCGCTCTGTATTCAT GCTTACGGAGAAGAAATTTTGGTTGATTACAACTCTGGATACGACCTCCG ACCGGATTGACCGCTATTCGATTCCGCCGCGAGAACTTTGGATTGCTCAC GGGGCATACTTTTGTTTGTCGTCGGTTGGAGTTATGAAAGCTTTGCCGAA TCGCTCGAAAAAAGACCGCCAGCAGACTGAGCGCCTTCACCTCTGTCGCG GAGAATCTGACTGCTCTCGGGGCGCGTTGGTGTTTGCCACCGACCGGCAT TGTGCGCGTCCTTGACGTTGGCAAGGACGTCAAGGTTCGAACACACCGTA GACGACGATGTATGCCAGCCCTCCTGCTACTGTCGAAGCGCTAACGCTCC TCAGAAGGGTGCTTGTCGGGGCCCAAAACGACGGCTTTGCAAAGATCTCA CCATGGATTTTTTCAAAAACGCATGATTCCGCAGTTGAGCCTGCTCGATA GCGCCGCACTTTAGGTTTGAGCTTCGGCTCAACGGGGGCTGGTATTCATC ATGGTTTACGGTACGGTGGAGGTACTTGCAGGTGGCCGGCAGTGATGGGC GTTGGCAGCCGGCGGGAAGGGGCGGGGTGCGGGATCTGGCTTGCATCGCT CTCTCTCCCAGCGGATCAAACTCAAACCTGCCAGCGAGCAAAGGGAACAC ACGCCTCCAAGAAATTGATTTAGCAGGGAGGGGAAGGAGCGCCGTTGGCG AACCCCCCCCCCCTTATATCCGCCGAAAGCACTGGCGTTGCCCAACTCGC CGCCGGCACGATGCCACCGCTTATTTTTCAATCTCTCAGGACTCCACCGG CGGCGGCGGCGATGATGCCCCCGAAGAAGACGAAGACGCCGTTTCCTTGG ATGCCGCGCTCGCCGGGGGGGCGGAAGCGGACGGACACGGCGGCGGCGGC GAGCGGGAGGAGAAACAAGATCGGCCGGATATCGGCGACGGTGGAGGGGG AGGAGCGGAGCACGGGGGGCGGAAAGCAAGCGCGAGGCCGGCACCCCGAG AGCAGTCGACTGCTCGGTTCCGGAGGTGAGGTGGGCGTGCTGAGGCGTGA TGATGGTTGCGGCTGTCGTTGGCGGTGGCATGCTGTCGTCGGCGGGTGTT GTCCTTGCACGGTGCTCTGCAGCTTTTGCTTCTTCTTCTTCTGTCCTGGT GGTGGTGGTGGTGTTGTTGTTGTTGTTGTTGTTGTTGTTGTTGTTGTTGT TGTTGTTGTTGTTTTTTTCTGTTTATGTGTGGAAAAGAGGGTTTCGTCCT CGACGGACATTTTGTGTGATCCGACCCTTACGAGGGTGGTACCCACATAT GGTGTTTTTTCTGCTTAGGGTGGTGGTGATGGCGATGCACTCGCCGCTGT TGCTTCTGTCGCCGCAGCCGTCGTCGTCGTCGTCGTCGTCGTCGTCATGG CCACTACCAACGCAGTCTCGCGTCGGCAACATTCTCCTACGCTCTGCCGT CCACCTCCGCCTCCAACAAATGCCAAGCAGGTGGCCGCTCAGACGGGGCA GCGTCAATCACCAAATCCCCGAATACGACTCGGCGGGGAACCCGGTCGCC ACCGCCTCCACTGCCAACAGAAGTGCAGCGACGACGGCTGCGGTGCGCGG CGGTGGGCCAAGCTATTCGAGCGCCAGCGGGGGGACGTCGCTCTGGAGAA AGGTCGCCGGGGTTGTCCGCAAGAAGGACTGCGCGAACTGCACGTGCAAG TGGTGCAGGGACCGGGGAACCGGAAGGTGTGGAATCTAAGGAAGAGTCAC TTCAGAGAAGATGGAAGAGAAGCTGTCAGAAGATGGAAAGGATAGTCGTA AAATGAGACAAGGGAGAGGGAGAGGAATTCTACAGGAAGGGGGGAAATAT GGGTGGGGGAGGCAGTGAACTCGGCAGGAAACGAGGGAGCGATCAAGACC GAAAGAGGGTGTAAACGAAGCTAGGGGATTACGATTGCAGGCAGGAAGAT AGAAAGAGGAAGGGAGTAAAAGCGACAGGAATGGGGGGGTGAGTCTTTCG CTCTCCCCGTTCCCAATTCTGCCTTCATCGAGTAGCATTGGTCACCGTCA GCAGATTATTCTGAAATTTTCACCTCCTCGCCCAACCTAGCCCCGCTTTT CTCCGCATGACCCCCTCCTTTGGGTCACCCTCGGCCCGGATTTCTGAACA GCCCCCTCCCCCTCTCTGTCCTTCCTCCCGTCCCCCCTCCGCCCTCATCG AACAGTCACTCTCGGCCGAGATTGGAGCGCAGGTCGAGCAGTAGTTATCG GCACGAGTGCTCCTGGAGCAAGGGCCGCGCAGGTGTCCGAGCGGAGACGT CGCCGGCGGTGGACAGGTGGGGTCGAAGGCACAGCGCCGGGCACTTTCTC CCGCCCCCTTTCGTTACTCCAGGGTCACGGGCGGGTTGCTCGGGCGTGGC GATTTCCGTTCCCGTTCCCGCTCGCGCTACCAATCGCGACCAGATCAACC CACAAAGACTGGTTGGCCTCTCTCTCTCGTGTTCACTACGCTCAATTTTG GGAGCGACCTCTACTGCAGATTCAGCAGCGCCCACCGCTCTCTTTCTCTT GCCGTCTCTCTCTCTCTCTTTCTCTCTCACTCTCTCCCATGCCCGCGCGT GGGCCCGTGCCGGTCTCGTTCCGGGGGGCTCCACGCGGATTATTCGCTAC GCGCAGATGGGAATATCTGGTGGGGCGCTGGATACCCCTGCAGATGGCCA GATCCGGGGACGTGATGGGCATCCAGAGGTGGGGTGGGGAGGCTGGATGT GTTCGGCGCGATCATTTGTTTCGCCTCGAGTGTGGGGCTGCGGGGATGTG AATACAGTCAGTAGAAGGGGGGCGCTTCATTGCGGGTTGAAGAGGGTGGT TCTCCGGTAAAAGAGCGGGTGCAATCAGTCGGCATGAATTTGCTTTCAAA CTGAATTCTTCGTATTGCCCTTTCCTGAGGAGTGCGGGTGCCCGCTGTGG TGCGGATGAAAGTTCCCGTCCCACCTCCGCACTATTGAGGGCCCCCCACT GTACCTTTTTTTTTCCAGTTGGGTCTCAGGAACAGCTAATGACGCAAGAT GCCACATCTCCACGACAACCTTTCACGCGGCGAGTCTTGGGTACAGCTCA TGGCCGTGAAAGCCCACACCTTCGAGACAGTCTTCCTTAGGTCGATATTC AAGATGTCAACAAGGACGCACGGCAATGCCCGCAACAAGCACCAGCAGCT TCGGAAGGTGGCATCGATTCTTGTGTGTGTGGTGTCCGTTTTTCTCGTGC GGGATTGAGGCGGCGTGTGCACATCGCTGCACGCTGCTGTTGTTGCCGCG GCAAGACCGCCGCTCTTCGGCTGAGTCTGTCCTCCCTGCTTTTCTCTCTG CCTCCCCCGCTGTATCTCCGTGTTTCTCCCTGACCCCCCCCTACCCCATC TCCCTAAATCTCGCTGTCTCTCTCCCTCCGACTCTCGCTCCCTCTCTGCC TACCTGACTCTGTCTTCTCCCTCCCTACCCTATCTCTACTCGCCGCACTC GATCGCGCGTCCCCCCTCTCTACACAATAAATCTCTTGGATGCTTTCGCT AACTTGGCTTCGTTTCCGGCAAAAAACGCCCCGTCGACGCAACACACGCG CCCCCAACCCCCCTCCTAGGTTTTTGGAGAAGTTTCCCAGCTTTCCGGAC AAGAACAACCTTCTTCGGGCGGCGGTGCGCTACAAGCAATACGCCCTTGT GGAGTACTTGCTGGAGGAGCAGGTGAGGTCCCCTCCGCGGCAGTTTCGTC TGCTAAGGACCACTCAACCCAAAGCTACTGCTTAGTGGGGCACCGCCAGG GCCACGATTTCGATCCCCAAGCCGGTACGGCCGGCAAACGGCAGCTGCAG CAACGGCCGGCTTTGCCTCCCTTCGCCTTGCCCCGATGCGATCGCCGTTT TGAGTCTCACCTTAGTGCGTGTCGATCGGATCTCAACGTCACATGATTGG TGACGACCGGGACGGGCAACGCTTTCCGATCGGGGTGACCCGTACCTTGC CGACGGTTAGTCCTGCCTTCGGTGGAGAGTATTCGGGTGGTGGGACGGCT CAGCTTTTTTTCGTCCTGCGCCATTGTGTGATTGTTGTGCCCCGGCGGCT GGGGTGATTTCGATGGCGATGATCAGGATGGCGGTGGTGATGGTGATTGG CCGTGACGAAGATGATGATGTTGGTATGATGATAGAATTTTGATGGTAAT TCCAGTGATGCTCTGAAGATGATGGTGACAAGACGTTAATGGTTGTGCTG ATAGTGCCGTGATGAAGGTGAGGATGATGTTGATGATGATGGCGATGGGG ATGGTGGTATGATGATGGAACGATGATGGTGATTTCAGTGGTGCTGGTAC TGATGATGGTGATCACGATGTTGGCGGTGATGATTGCCGTTGCTATGGTT GAATATGCATCGACCGGCGGTGTCGTGAGCGTTTCAGACGTCGATGATCC ACGTAATAAGGTTGTTGCTGCAAAACCACGATTCCCATGAAAATGAGGGC GCACAGATCGTAATCCAGCACTGCACTGCTACCCCCCCATTTCCCTTCGT CGCACATTATTTTGAACCTTTATGCCGCTTTTCCTTGTTTAGGAATTAGT ATTGGGGTCTCCGAGAAGCTTGTTGATGGGGTGGTCAAGAGGTTTTGGGC AGTGCGGTGCTGGGCTATGATCTGTGTGCCCTGTTGCGTCGATTGCGAGC GTGTCAGACCTCGAATTTTTGCCCCCCCCCCACCCCCCGCTACGATCAGG AGAGAGAAGGGTACATGGTTGAGCTGAAAAAAGTAGACAGTCGGTATAGA GAGAAGTTTGAGGCATGGAACAAAGACGAGAAGACGGTAGCGGTACTCGG GTGTAAGATGTGGCCCAGGAAGGACAGGTATAAAGTAGGCAGGTTAGGGA AAACATTTTTGAGCCACCTTTGGCAAAGTAGGCAGGAACGATTGGCCATC GGTGGTCGATCCTGCGGGAACAATGCTCCGTCCTCTCGAGGACGCGTGGT CAATGGTCTAACAAGTAAGGTATGCAAAACATGAGTACGCCCCCCCCCCC CCGCTCCCACTGCTCGCCGAAACCACCCCCCCCGCCCTCCGGCAAATCCG AGATAGCACATGGACGTGAATCTGAAGAACGTGGTGGGCATGCCGCTGGT ATGGTTCAGTGTGGTGTACATGCAGCGAGGGGACAGCGGCGTCATGCTCC GGTACCTCATGCAGAAGGGCGCGGATATCCACACTAAGAGCTTCACCGGG CAGAACGTTCTCTTCCTCGTGGTGTCAAGCCGCGGGAAGGAGGCCATCCC GATGCTCAAGTACGTTTTCGCGTCCGTGATTGTAACTGTTGTGTGTCCTC CGACGAAACTCCAAGGAGGACTAACCCACCAACACCATGCGTGTCCTACG TGCCCGACCTTCCCTCGTCGCTCTGCCCCTCTCGCCGTCTCCGACGGTAA TGTTTGCGTGACCAAGCTCTTCCCGATGATCAAGTACGTTTTTTGTTTTG TGTGCTGCTCGGCTGAATCGCGAAGGGTAAATCGCCCTTGGCACTCGTCA CCCACTTGACCCTCCCCCCGCGCGCGCTCACCTCGGTGCTCTGCCCTTTC GTGAAGCTGGGCTTCGAGGTCAAAGCCTATGCATCACGTTGGCGGATGCC ACCGGATAGATATGTCCTCTTTCCCTCTCCCTCCTCAGCCTACGGCTGTA GGTTTACCTCGGCGGGCTACTACGACGGCCTTTGCCGGATAAACGGATCA TGAGACCTGCCCCTGCTTGGCTGCAACCAAATTATAGGTTCAGACGGCTA CGAAACCTACGACGTTGATTCCTTCAATTTTCTTGCGCGTTTTCGAGCTT GTCTCAAGCTTTGACGGTGTTGATCTTTGATTCCAAAGCTTCGGTTGTCT GTATGTCGTCGCCTCTTGTCTTGCGTTGATGACGACTGTCAAAAATACGT GGTTGTACACGGCTGCGACCGATAATGCAAAACACGGGGCCCAATGAATC CTGTCTCGCGGTGGGTGTTCCTTCTTCGATGCTGCAAGTTGGTTTGGAAA TATAAAGATACAACAAAAACAGGCCACGGATGAAAGAGTGCGGCCTCAGG GGGCTCCGATACTCCGTTTTGCGCGGTATGCTTTCCTTGATGCTGAATTT TTGTATTCTAATTACAAACGCTCCGAAACATCAGGTACCTCGTGGAAGAG TGCGGCGTCTCTTTGACTGACAAGGACGAGTTCGGGTCTCAGCCGCTCCA CTGGGCGGTGCTTTCGGGGCACCTCGACACGGTGCAGTGGATCAGCCGCT ATACGCGAAATCAAGGGGTTCGGGCCAACTGGATGAAGGCGTTCGAAAGG GTGAGTGTTGGTGGTGGTGGGCGTGGTCGGGGTTCGGGCTGCCGGTGGGG AGGGGGAAGGAGTTGGATTGAGGGGTCGAACAATTGGAGGAAGAGAACGA GAGAGAGGAGGAAGAGGAGGAGGGGGGAAGGGGGGAGAGGAGATGGAGGA GGCGCAGGCGGAAGGGTGGGGCGCACTTTGTTCGCCTGGACGCACGCTTT CAGCACCCGAATTAGTGGTCCGGGGTTCAGGCAGTATCCTGCCACACGTG TATCACTTTCCACGGACTCGTGACCGGCCCCCTTTGCCCCCCCTCCTTGT GCTTTGACATCCTCGCTCGATTGTCGCCTGAATATCACCCGTACACCCCC GAACTCTTGGCTACCCAACAGCCCCCCTTGACGCAAACGCCTCCACTCGG CGCGAACAAACTGACATGATGCGAGCACCCCCGTCTGAAGTGTTTTTTTT TGCGACCCCTGCCCGTGGATGGGTGCAAAAAGAAGAGCGACAGGGCTGCG CTCATCGGTACACTTCCCTTTCCACCCATTCCACCCTCTTATGGGGTTGC GAAGTGAAGGGCGAGAGAGAGCGCCAACCTACGGATTGAAGACAGCCACG GGGCATCGCAGAAGTTGGTATACAGGAGCCCGAGGGAGAGAATGCAGGGG AGAAATTGGATCGCACAACCCCCTGATTTTTCTTGTTTTTTGCCCCCCCA TATGCAAATATATAATAACTAGTAGCCCCCGCCACCACCACTACCCCGCT TCTCGGATTTGAGTTATTCCATTCTTGAGAAGTTTATCCTCCATTTTCGC CCGCGAGCCCCCTTGCCCCTCTAACCCCGCACCATCGACATTTCTCTGTC CGCAGATGCAACAAATTCGTATGGTGAGGCCCGAGCACATGGGCGCGATG CGGTCGTGGCGGATGCGCGGGCTGCAGAAGAACGCGAGGTCCCTTACACC GCTCGGGGTGGCCGTCCTGCACAACCACGAGCACATCGCCAAGTGGCTCA TGGGGTGAGCTTGACAAGATAGCGGACGAGAGAGAGAGAGAGAGAGAGAG AGAGAGAGAGAGAGAGAGAGAGAGAGAGAGAGGAGGGAGGAGAAGGCGAT CGATGCTTGCCTAAAAAGCACATGCAAGTATCGCGACTGGGGACGTGTCT TGAATCATGTGGCATTCTTGGCAGACACTTTTTGTACGAGGCGCAGTTGT GAGCTTACGCACACTGGCGTCTGCATTTCGTGCTGTTTATCCGATGAGAC TAAGATGAATGCCCCTTTGTTAACATAACGGTGTAGCGGTGCGTGCCCCC CCCCCGGTTATCCCGTCACCCCTTTCCTTCCCCGTCAACGCACTCAGATA TGGCACCGAGAGCCAGGACAGCATCTCGCGCAAGCGGGAAAACCTCTTCA GCGAGCAGAACAAGGACCTCGCGCTCGTCGCCAAGACCTGGCCCGAGCTC CTGCCCGAGGTGCGCGCGTATGTTCGTGAGAGAGCCGGAATAGCCCGAAA ATTCATGCTGCTCGATAAGCGTGGACGGCTTGCCACTGACAGCGAGCAAG CGGTGGCGGCTGGGCTGGGCGTGATGGCTGGTCACGGGACCACGCCTACC GGGCGGGCGAACTGGCGCTTCTGTTGTGGTGGTGGTGGTGGTGGTGATTG TGGTGGTGGTGGTGGTGGTGGTGCTGCTGCTGCTGCCGCCTAATGCTGCC GCTGCCGCTGCCGCTGCTGCTTATTTTCCGGTCGAGTCGTGGCATTGCAT TATTTGTGCGCAACCCGGGCTGGAGTAACGCCGCATGTATTGTTTATGTG TGTGCTGAACGCAAAGCAGCATCGCGTGCGAGCTCTGCCTCTCCTGAAAA ACACGCGCGCGGTTACAAGGGGTACGGACATGAAACATCCGAATATTTTT GCAGCGCGCCCGCGGTCGCCTCTCTGCAATCGACTGGGCCTTCCTTCCTC TCCTTATCTCGCTCTGCGTAACGCCTGCCCCCTCCTCCTCCCTCCTAAAC CCGCGGATACACCCGTGCCCCGCGATCCGCGGGGATCCGCAATCAACGGC GTAGGTGTTGCGGGGGTTTGAGCAGAAGGCGAGTTCCGGGCACTCGTGGG ACACGGTCGAGAGGCAGACAGTGGTACCGACGGGGTGGTCGGAGAGGACG TACGACATCAAGCTCCTGTACGGGCTTCCCGAGGTGAATAGACTGGAGAT TTAGGGTTTTCGGATTGAGTGGCGGAGGAGCGGACTTCCAGAGGTGGATG GAGTCGGGGGGGATGGGAGGGGGTCCCGGGGGCACCTCCCAATTCCACCG CTCCCTCGGCTTCTTGCCCTCCCTCTCTAGTCGTCGCAACTGCTCGTTTC CCTTCTTCCTTGCCGCTGGCCTTGATGCTGGCCTTGTACTTTCTTCGGAA ACAAAACTTTTTTCTTGGTTTTAGGGAAACAATGTGACGATGAGGGTGGC AGATTGGACGGGGTAGGGTAGGGGCTTTCCGAAGGTAAGCATACAGGGGG AGCGGGGTGTTTTCAGGATGGGAGCTGAAACAACTTTTGCTGCTTGAGGT TCCACATACTGTCGGACGGCAAATGATAACCAACAAAAAAAAGGACCCAT AAGTGTCCGTCGCCGTGAACGTCAAGCGTCCGAGGTGGTAGGAGGCGTGA GGGTGCTCGCTCAACGACCAGTCGGTGCGAAAGACCGGTAGGACGCAGAT GTCTGTTTCACACGACATCAGGAGAACGAGGCTCGTCGGAGAAGCCACGG TCTTGGGTCTGAGTTTACCGGCGAGTTTCGCTCCCGGGAGGAGCCGTGCC GCGGGCGGTGTTCCGGCCGTGTGAAGGAACCCCCTCTCCGCACCATGAAG ATGGCTTCGACTCGCACAACTCCTGAGCAGCTGTCTCTTGAGTGCCGTCA GTGGCATGCAGATCTGTGTGTTTTGCTGGTTGCTTGGTTTTCGGGTTCCC GACCGGATTCCTCGATATTGCTGGCGCCCTTGTTGACGCGGTCCCTCCGT TGCTCCGTCGGAAAAATGCGTCAATCTCTGGTGGCGTCTTTTCCAGCGAT TTCCCCTCACGTGCTTCACTGTGTGATAGGCGATGGGGAGGAAGGACACA ACGACAATATCAACCGACGTCCGAGTTTTGTTTTACTTTCCCTTTGCGTG TGTCTCAGGTGCCGCCAAACCGCTCTCCGCTGAGTGTCCTGCTCAGCACG GACTACCCGAGGCTGTTCGAGGTGAAGACGGTTCAGATGGTGGTGGCTCT CAAGTGGTCGGTGTTCGGGCACAGGCGAGTGATCTCAGCGTTGCAACGGC GGTGAATATTTCCCCCGCCCCCACCCCCCTCCTTTTTTCACGTGTCGCTT CGAACGCGATGCCTTCCACTGCATTTTTTTTCCTTTCCGACCCGAACATG GTTCTTTTGTTTTCTTCGTGCCATTTCGTTGGAACTCTCGCTTCCGTTCA TTCCATCGTCACCCCTCCCACATTTCATGCACTCCCTTCACGGTATATGG CCCTTCATCGCCCCGCACGGTGTTCTGTTCATCACTCCGGCGACCGACCT CGTGGGCTTCGTTTCCTCCTCCGGACGGGGTTGGCGGGGAACAGCCATGC AGCATGCCTTGGGTTGTTTTCACCCGATTACCCCGCATCCCAAGAAAACC CCGAAGGGGGCATGCCTTTACCAGGTGTTCGACCACAGTACTCAGTGGTA CGGGTTCGTGCGGCCAGGCCTCGTCGCCGCGCTACAGCAGCCAGCTGCAT TCTACAAGTTTTTGACGTGTGTCCGTCAACTTTTGTGGCAAATGATTTCA CACAGTGTAGTCACCAGCCGATGCCAACCCACGCAGGTATTGGGCCTGAT GTCCAACAACAAGCATGAACTGCCCTTCAATTCAAACGAAAACGTTCACA GTCGCGTCGACCCTGGTTGAATGTAAATCAGGGGGGGGGGAAGCCCCTTC CTGCTCGCAGGCACTGTGGTCTCCAAGTAGGGCAGCCGTTTCACGTTTCG CAGTCGTCACCATCCCGTACGAAGGGTTGAACGCCGATCCGCGATGTGAT CGGATTACTTTGTTAATCGGAATCACCGAATCACCTTCATGATGCCATCG CTATCTGTTGAAAGGCTGGCGACGCTCATCCCTTTCCATAAAGTTGTTGA CGGTAAGCGTCGGGCGGGGCCCATACGATGCATCGTGGGCAGGATACTTG TTCATTGGACTCGCCTCCACGACGACAGTCTGACGTGGCTTGTCTTGGAT GCCAATCTCAGTGTTCTAAGTGTCGGTGATGTGTTGAAACACTTGTCGCA TGTCTCAGGTACTACCTCTGGGAGCTGGGCCGGTACCTGACGCTGTCCTT GAGCTTCATTTTAGGCTTCGTTGTGTGGGGCGACTCCCGAAATTGGGCCA ACCCTCTCCAATCGGGGGATGACCACGTGCGGGTAAGAGAGAGTGAAGGA CGGGACGGGATGGGTGGGCAGATATTATGAAGGCGAATGAAAAGAGGGGT ATAAGTGAAGGGAGCGGGTGAGCGAGCGGAGGGTGAGAGAGGGGCGGGGA AAGGAAAATGAGGGGATGCGGAAGAAGAGTAAAGGCGCGAGAATGTGTCA GTCAGGAAAGAAGGCGGCAAGCGAGAGAGGGGATGGGAGCACGGGAGAAG AAAGTAGGGGCGACAGTGCAAGAGGGCCGGGACGGGGGGAGGAAAGCGGA AGGTCAAGAGACGTGTCGGAAAATCATCCAGCCTTGAGGCTTACCACGGT GCTTCTCCGTTTCTTCAATTTTTTCGCAGCTTGCGTGCATTTGCACTTCT TCACACAGGCATGACGCGTTGAGGAGTTGCGTGCAAGGTGCGCACACCTG GTCGTGGCATATTCCGGTGCTGTAGGGCGGGGGTCCCTTCCCTGCGGTCG CGGGTGCGATGCCGTTGACATGCGCGCGATAGGTCGCCGCGAGCGATTTT CCGTCCTTGTTGGCCAATCAGCTGCGGGTCTGCTGTTGTTTTGCCGAGGC GGAGCGGTGTGATTTCAGGGCCACCGCTGCCGTATTGCCGATGTCGGTCT ACTACCTAAGGCCCTTGTTTCGGTGCTGCCGACGCCCGCCAGGTATCGAT GGCGTCAATGTGGGTTATCCTTGGGGCGGTGCGATGTATGCCCGGAGACT CTCTTGCAGTCACTTGGCTTGCTTTCCGTGCCCCTCCCGGTTGCCGCGAG GACCAGGGTTTCTCTTTTGCGTGTCTTGCGGCGGCTTTGTCGCCGGTTCG GTCGTTCCCCCCGTTGCCTGATACTCCGGAGTATTTTTTTTTAGCCCTGT TCCTGTGCCGGTCTGCCCCGCTTGCCTGTTTCTAGCCTCGCCCGCTGTTC ACGTGGGGTGCCGGGCCACAGAACATGGTGAGCGGAACGACCCAATGGTC GCTGCTTGCTCTTTTGTTTCCTTTTGACGCCCCTGCTTCGTCTGCCCTGT TCTGGTCCCTGCCTGCCTGCCTGCCTGCCTGCCTGATTGTTGGCTGCCCG ACCGCTGTACACTTCGGGTGCTGGGTCGAACAAGGTGGTGGGCGGAACTA TCTCGAGGCTGCTGTGCTGGGCGCTGACGCTGTACAACCTCGTTGTGGAA GAGGGGAGGGAGCTCAAGGCGTCGAAAAGCCTCAAGAAGTGAGCCGAGCA CGTGCATGAGTTTGCTGTCTATATGATCTTGGTCTTCTTCGACCTTTTTT GTCTCCTTCAGGCTGCTGCTGCTGCTGCTGCTGCTGCTGCTGCTGCTGCT GCTCCTGCTGCTGCTGCTCCTGCTGCTGCCACCGTTTCTGTCCATTGATG CTGCCGTCGGTTGTCAATCTCTGCAGCATTGGATGTTGCCGCGAGAGTTC TCGCTTTGAGCCTGGAGCTCCTTTGTTTCAGACTTGACACGTCGTGCACA GGGCAAGTGTATTCAGGTCCAGCAGGAAGCGCACCGAGGGCAGCGTGGTA TGGAGAACAATGGCAGACAGGACGGCGTTTCATCGAGGCGTCTTCCGTCG AAGGACATTTACACGACGAGACACCAGCGAACACTGCTTTGCCTCCCGCA GTTGCGAAGACTGCACGCAAAAGCATCAAGTTGGTCATGTCTGGCTCTCT CTCTCTCTCTTTCTCTTTCTCTCTCTCTCTCTCTCTCTCTCTCTCTCTCT CTCTCTCTCTCTCTCTCTCCGGCTCTCTTTCTCTCTCCGTCTCTCCCTCT TTCTCCCCTGGCTCTCCTCACACCGTCGCCCTCCCTCTTGCGCGGGCGTC CGGCAGATACTTAGTCGGGGGCTGGAACATGCAGTCGGTGGCCGCCTACA TCCTCGTGCTGGCGCTCATTCCCGTGTTCAGGCCGTGGAAGGCGGAAGTC GAGTGGGAGACCGACATGTTCGAGTATACCACAGCCGGGATCGTGAGTAT AATTTTGTCCGGATTCAGGGTTGAGCATTTTGTGGCCGCTTTTTTTCGCT CTGTTTATGCCGTTCCTCAAACCAAGCCCTATCCACGTTCATTGAATCTT CGAAAGCAGTGGAAATACGCCCTTCCTGTCCGATGCGGATAAGTGCGTGC TCGTCAAAATTGACACGCTTGTCGATTCCGATCAGATACCCTCACACACG CTGGCCTTTGCGTGATCGGACGGCATTCAACCCCCAATTGCAGGCAACTC CGCACCAGGCACGCGTTAATTCTACCGTAGGGCGGTGTATTCGCGATAAA CTCAAAACCTCAAAACTGTCGCCATATTTTCTTTTGGTCATTTGACGACA GTTCTTTGGCCACATTATGGCGAGGGTGACCAGTGTGGTAGTTTTCCAGC CCACCGCGAAGCAGCTCTGCCCCTTCTCCCTCGTCTCTCGGGCTTCCCTT CGGCAATTGTTTAGCGGGGAAGATGAGGACTGTCGACAGTGGCAAATGTT GCTTTGAAATTTTCCGAGATTAGAGGCGGCATGACCGTCGAGGCCCCTCT TGGGTGTGTCTACCTGACGTCCCGTCTGACATGGGAAGGATAATCGCCCA CCATTCTCCATCCCCCGCCCCCACCTACCCCTCCATTCTCCCCATCCCCG GCCTTCACGCATCCTTCCACCCCCCCCACCTCCCGCTCCCCTTCGAACCT ATCTGACGTCCTACACGACACCCCTTTGGCGATCAACGTGCGTGATCGCC ACCTTGGGGGGGGGGTACGACTTCAGATTCGTCGAGTGATGACGGGCCCC GCGGCCTTGCTCCTCTTCTTGCGGCTGATGGAACACCTGGCGGTGTGGAA GTCGACAGGCGTTTTCATCGCGGTGATCCGAATGGTCATCGCCGACACGG CCAGCTGGAGCGTCCTGTTCATCCTCTTCGAGGTGCGTTTTTTGGATGGT GTGTGTGTGCGCGCGTGACGGCTCTGCTGTCGTCTTGACCGTCGCCATGG TGCTCTTACGCTTTCTCACACGCTCCCAAGCAATGAGAAAAGAAGCATGT TCACGACATGTTTTCGGCGTGGGTGCCGTCAACTGTGAGGTTCTACACCG GCCCCGTCGAGACTATCTCCAAAAGCCAATAGCTTCCCAGAAGGGTGAGT GCCGAGGCCGAAAGAAGCGAAGATGTTATCGAGCGGTATTCGAAAACGCA TGGTTCGGCGTTTGTGCCCGCTCGACGGCGCAGAAATCGAGGGATTGGTA CACACCATCCCACACGGTGGGAAAGTGCGTGCACAAGGGCAGCTGCATCC GCACTAGCGGAAGGACCAAAATTGTGCGCTTCCGCAGCATGTCGGCTGTT GCATCACGATTTGTTGGCGCTGACGCATGTAATCCCTGCGTCGCTCAGCA ATTTTTTTTGCCGGCTACGTTGTCGTTGATGTTGGTTCGGGGTTTGTGGC TGTTTCTGGCGTCAAAGTGTTGCTGCTTTTATGCACAAATATCCCACACT ACATGTTGATTTTTTTTTCGCCGCAGCATGAGATGCAGCGGAAGATAACT CGCCTTGATCGGGCCACCTGTGATACCTCGGAGAGTCGCAACATATGTCG GTAGATTCTTCAGTTTCACCATGGCTTGTTGCCAAATGATCACTCTTTTT AATTTTACTCCCGATTCATTTTTTTGTGCGTTTCCCACTGGCGCGCAGGT AGCCTTCGCGCTGGCGTTCTACGCCCTGTTGCAGGGGAGCCCGGGATTTA CGACGGTCTGGGAGAGCATGGTCACGCTGTTCGTTATGTCGATGGGGGAG CTCAGGATGCCGTTGAGCGAGAACGAGTGAGAAGTAGTTTTTGTCCTCAC TTTCTTTTTTTTTAGTTTTTCTGCGGCTGGCTTACCGGCCGAGACGAGCG AGGAAAAGAACGATCGCTGCTGCCGAATCATGGAAAGCGTACTCCTTGGC TGGAAATAAGTGCTTCTTGAAATCGCGCATGCAGGTGCATGCATTCATGC TAGCCGCGACAATGCATGGGACACGTGGGCAGCAGAACTAACGTGGGTGT CCAACTCAGCGTGCGTGCTTGCAGCAAACACCAACGGGAGGGCACACCCG CGCCCGCCGTTTTTGTTGATGTTTTCTTCCCGAATACCGGACTGCGCGAC GGCTGAATACGAACGAAGATATTCTGGAGGATTAATTGCTGATCATCTGA TACGTAGAATTGATTGTGGATAATACGTTCATGTGGTTCGTCTGCATTAT CTGGAATGGCAAGTGAAACATTATGTGGGATGGCAAGTGGAAAGAGATGG TGCTGCGCGTACACAGCGCCTCTCTTACTTGTGCACACTCAAAGAGCCGC TCGTTTGCTCTGCGGAGGGAGGTAACGAGGCTGCGCTGAACCACCCATGA ATTTGGCCGCCGCAACAAGGCCCCGTTTCCTGGGCCTGACCTTAGTCTCG GGGCGGGAACGATGCCCCCACTCGTGGTCTACGTGACGAGCTTCGCAATG CGTCCACGATCGGCTTAGCCAGCGTGGGTACTCCGAACGGTTGAGCCTTT TTTTAGACCCGAAGCCTTCCGCAAGAAGCCGGGATGGTTCTTCCTCTGAT CGCGTCTAGCCGTCTCTACGCTCCGCTCGCCGCGTTGACCACGGTGCCCC ACCCCGCCCATCTCACTGACTACCTTGCGGCGTGCCCCCCTGTCCTGGCG AAAATGAAAAAAGGACCGTCGACGTCGTGGCCGTGATCACGTTTGTGACG TTCATGCTGGTGGTGGCGGTCGTGTACCTGAACCTCCTGGTCGCCATGAT GACGTCCGGCTACACTGAGGTGAAGCGTTGACAAAAGATGAATCGGGAGA AAGAAACGAACCCATCCGCGCGGGCAGGAGAGTGAGCTTTTTATGAGCGG ATACGCTTCTGGAAGCGACGCACCGGTGGCGGCGATGACGATGATGATCA TGATTCGGTCGTGGATTTTGTGTTGCGGCTCGCTGCTGCTGATGTGGTCG TGTACCTGGACCGTGTGGTCGCCATGACGGTGTTGTTGTTGTTGTTGTTG TTGTTGTTGTTGTTGTTGTTGTTGTTGTTGTTGTTGTTGTTGTTGTTGGT GGTGGTGGTGCTGCTGCTGCTGCTGCGGCTTCTGTTGCTCTTGTCGTCAT TCACGTCTAACCTGTCTTCGACCTTCGACTTTGGCAATATGTTTCCCCCT TCGCCAAGCCCGGAGTGCAATCATCTTGGGAACGGGAGCGATTTGAAGCG ATAGTTTACGCATGGCCGCAGTCGATGGTACCACCGTGTGCTCCATAATC GACGTGTCCCTTCAGTTTGTATGCTTCGATTTCTCCAACTTGTGATGGAG CTGTCGAACAGGTTATTTCGTACTCGACAGCTATGGTACCGTTCTCCGTG ATGCAGGTATTCCCGGGTGGAACGAACAAGATTGTGCCGAATTAGAGGCG CCGTATTTCAACGCCTGCGCCAATCTTCGTCTGCGACAACGCCACACAGG CGGAATTCTCTGATTTCTCGACGGCTTCGGAATGACTCGCTGCTTCCTCC TGATTGCCATCTACTCCGCTGGGTCTTTGAAATAGGTGTCTAATACCCAA AACCGGGCACTAAAGCATGTCTACTGCTGTTCAGGGTATACATATATTAG TTGAAAAGCGCAACCGGATTCCACTCGTTGGGACCCCTTTGCGTGAATGT CAGGTGTTGAAGGGAGCAACCGCGCAGGCGATGATGAATCGTGCGGCCGC TCTCGTGAAGTGGGAAGGGATCATGTCTGACAAAACTCGCAGAGAGGTGA GTGAGCGAATGTGTGGGTGAGTGTGAGAGGTGGTTTCGGACCCAGCGACG TGGCGCAAGACTTTGCATCGTCCTTCCTCCTCCTCTTGCTGTTCCTCTTT GTTGTTCTTATTGATGATAGCGGCGATTAGGAGCGGTGCTCCATCACCTC CCACCCCATTCCACCGCATCCTATCCAGTCCCATCCCACCCCATCCGAGA TCACCCCAACCCACCCGCCGCTTGGGGCGTTGGGTGCTAGTCGCGCGAGT TCCTCTGCTTATTAGCTCGTACCGAATATAGCCCCTGCTTTGCGTTTCCG ACCTACTGATGTCTGCATTTCTCCCTTGGCCCCCTATCTCTTGTTTGTGC TCGTTCATCGTTGTTGCGGTGTCATTTTTACCCCCTGGCTTCAGCGGTGT CATTTTTTGGTTTCTCCTTTCCTCGCTCGAATTCATTTTTCTCGTTTCCT ACCCCCTCCCTCCCCTTCCCCCCCCTCACCCCCCCCCCCCCCCCCCCCCC TCTCGCTCTCTCTCTCTTTTGTCGTCCCATCTCATGTGCTTTTCACAGGC GTTCCGACGTGTCGCCCCTGGCAAGGGAAAGCGCGCGCACATCACCCTCA CCGGCTGGTTCGGCGGGGCGGCCACCGAGGTGTTCTGCGGCGAAGAGGTA AGGAAAACGTGGGTGCTGACGCCGTCGTATGTAAACTCAAACGGCCTGTG TTTAAAAGCTCGTATCGCTCCGGCTGTGTGCCTGTTCGAAGTCAATCAAC GTGCGGAAAGACACACCATACGACGGGACTCAGGGTATATCCCTCTCCCT GCAGAGAAGAAGGTTCGATGAAGCCGTGCCTGAAACATATGAAACATATA AAAAAATTAAAGCAGCTTCCCTGCAGAACCGTGTGAGATTGACCACAAAA AGCGTGGAAACAAGCCCTCCGTTAATTCCGTGTAATACTAAGCTGATTTC CAGCGAGGCGCCGATGTCGCTGTCGCTGAATGCCGATGCGGCATCTATAT CCAGCTCGGTATTTACTACGAATTTGGCTAGGACGGGAGACCATGTTGGT GCTGGACCGGGTGTGGTGATCGAGCTCCCGGCGTCCGAGGCCTCTCCGCT CTCGCGACAAGTCCTAGTTCTCTTGTGCGTCATGTCGTATAAACTTCAGT TTCATTTATCACATGTTGCAAGCGCTTCTCTGCTACCCACGCGGGGGGGT GCGGGTGCGCGCGTGCTCGAGTTATGTCTTCGTCAATCATTCCCATTTCT CAAGCCCCGGACCTCCCACCGATTCTACGCCATTCTCAGCCTGGCAAAGA AAGTACGCATTTGAAGTCGCGGAACCAATCGGTGTCGGAGTCCGCGAAGG GGCACTCGACGGGGTGATGTAGCCTGGCATCTGTGTGTGCTATTGGTGGT TCTCCAGACGGTACCGCTGACCTGTGATATATTTTATATGGCGCGCGTAT CGAACCGCAGGGAGCGACCGCGGTAGAGCCGGAGCAGAGCACCATTGGCA AGCGAATCGACCGGCACGCGGTGGTCATGAAGGAACTCGAAGAGATAAGG TGTGCAAACAGCGCTGGCTGCTGTTCATACACGCCTGCGCAGTGCACATC CTCCAACAACGAAACAATCCATTCACGGACAAATTTCACCCCCAGAGGCC ATGTGTCTTTTGAGCGCCTCGAACTCGGCATAACGAACGTCCCAGGCTGG GAGCTCGGCAATCCTATAGGCCCAACAGTGTTTCCTCGCTGACGATTGAA CGAGCCCACGGCGCATTTGCGTGCCCCAAGCTGCCTCTCCACCCACCCAT CGGCCTTTCGTCGTCGCCCCCACTACCCGGATCTCGTGCCGGTAATCGAT GATTTCACAACACCACACTCATCGCGAAAACAATGCGCACTCGATACCGC GCGGGGGGTTGGCGGGGGCAGGGACATGATCTCGAGGGCCTCGGCGCCGG AAAGGAGTGGCGCCAGCGGCGGCGACGGCGGCGTTTTCGCTCGCAAAACC CCGGCCGACGGCGAGAGCGCGCACGCCTCCAGCAACGGACGCGATGCCAG CTTCCGAAAGCGGCAGGCGGGGATGCTTGTCCAGGGGAAGGGTCTTTCTG CGCTCAGGCTGGGTGACAGCAGCAGCAGTGGAGGAGGAGGTGGCGGTGGC AGCGTGCGCAGGGGGAGCGTGAGCAGCCGAGGCGAGGGGATGAGGACGAC GGAGCGAACGGGTTCCGCGCGCTCGGTGACCACGGAAGAATTGCAGGTGA CTTGGGTGTGCGTGCTGTATATGTCTGCGTGCGTCCGCTTGGTGTGTGTG TGAGTGCGCGTGCACACGGGTTATTTGTCGTCTGCTCGTTTGGAGCGTCG CTTTCGCTCTTGGGCTCGGCCAGAAATCTTTGAAGGTATTCAAGTGATGT GTATGTAGCTTTGGCCCCCCGGCGAAATCCCACCAGTGGTTTGTCTCTCC TGCTCCGCGCTGCCACTACACCCCCCTATGACGCATCTTCATCTCTCGCT TGGGTTTGCGACGGAAAACACCCTTGAAACATCAAACAGAAAAGTGGCCT ATCCGTAGCGGGAAACAGTGTGAGATGTATCGGGGACACGTCGTGTGCGT AACGGAAGACCAGCTGATGTGAAAACTGAAACCGTTCGCTGTGCAACGGA AGGCCGTCGGACGTGGAAAGTCGAATCTACCGGTGTGTAACGGAAAACCC GCCGGTGTGAAACGGAAAACGCCCCGCTGCTCGGAAGGCCATCCGTATCT AGACAGCAACCCGATCGGTGTGTAGCGGGACGCCGTTTACGACCGGAAGC CGTCCGAAGTGTGACTCAAACCGTGCAATGTGAAACTTAAACCCGTCTGA TGTGAATCATAAAACCGCTGAGCCTCACGGAAAACCGGCTTGGAAAGGCG TCCGATGTGTAGCAGATAAACGGCTGACGTGTCACGAAAACTCCGCCGTT TATCTTCCGATGTGAAACGGATTACCCGCCGATGGAATGTCCGGCGTGGT GAACCGTGGAGCGGGAACCCGCCGACATGACGTGAGAGTGTACCGGAAAC ACTGCCAATTATTGACGGATTACCCGCCTTCGTGAAAAGTTTAACCCGCC TGACGGAAAACCGCCCGTGTGAAACGGAAAACCCGTCGATGTGAAGTAGG ACACGGTGAACCCGCCGATGTGTAACGGAATACCCGCCAATATGAAACGT CAAACCCACCGTCGTGATATTTGAAACAGAAAACCCACCGATGTGTAACG GGAAGGCCGTCTGGTGCGTGACGGGAAGCCCACCGATGTGAAACGGAGAA CGCCGACGTTACACGGAGAACCCGCAATTGTGTATGTATGTGTATGTGAT GGAAAACCTACCGCTGTGCGACAATAAATTGTTCGATGTGAAACTGTTTA CCCGCCGCTGGCAAACGGAACCCCCGCCGCCACCGGACATCTCGTCAATC TTAAACGGAATACCTGCTGGTGTGAAACGCTAAGCCTTTCGATGTGTCAC GGAAAACCAGTCCATGTGAAACGGCCACCTGCCGGTATGAAACTGGAAAC CCGCCAATTTGTAAGGGAATACCCGCAGATATGAAAACGGAAAACCGTTC AATGTGATTCTTAAAATTTACCCGCGGATGTGAAACGGAAATCTCGTTCG ACGGAAACCCGCCGTAGCGGAAAACCCGCCCATGTGTGACGAGAACTATG CTGGTGTGTGAAGGGAAACCGTCTTGTGTGAAGACGAAAACCGGCTCGTG TGTACCGCAAACATTCTCGTGTGAGACAGAAACCCACTCTGGTGGGACGA CCTTCTACTTTGAAATGGAAATCCGGAGGCGTTGCAGTGGGAAATCGTTT GATTTGTGGCGGGAATCGTTTCAATGCGGAAGCGAAGTCAGGCTGATCTG GAAATGGTCTATGCACATATTCTGGTGCTTCTCGAGCAACATCACCAGTC GTTGTCTTCCTATATTTCAAGACGTGACTCTCTCCAACACCTTTATCTCC ACGGATGCGCACGTATTTCGATGCTCGTGTCAAACGGAACGATGGCGAAG GTGTGGCGAGAGAGGGCACTCAGGGTGCAGGAGAAGGCCGACTCGAGGCG AGGTGTGGTGCGCGCGCAGGCGCTCATCCGCGGCTACCTCACGCGGTCCA AGTCGAGGGCGCGCTTCCTGCCGGACAATTGAGCCTCCGACGATGGCTGG GCGAACGGCGTCCAGGGCATCTTCTCTTTGGTTTTCTCCTCCTGCTTGTT GGGCTTGTCGTCCGGTCCTGTCGAGCGTTCATCGTTTGGTGGTTAGACCG TTGCCTTGGTGACCTTCACCCCTGGGTTTTGGCAGAAGGCGTACATGGAG CCGTGGACAGGCTACCGTGACGGATTTTGTTCGTGTCGTTCATGCATTTC CCGCCCGCAGCTTGGACTTATGAATTTAGGCTCGAGTCTCGGTCTCGTGT CTTGCGGTCGGGATTTTCTGTGTTTCCGCAGTATTGGCAAACGTAGTGCG AAGTGTCATGTGTCAGGTGGGAAGGCAGGCGTTCTGATCAGCACTTTCCC GTGAGCAGGGCAGCGCTCATTTATTAAGGTTGATGCTGAGTCGAGGTGGC ACACTTTCTTCATTTTCCACTCAGTAGGCGCGCCCCTGCAATTGCATGCA TGAACGTATTTTATCGACGTGGTGTTTCCACGCTCATGTGTAAAATATTT CCCCCAACTGGTTGCTGG
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Coding sequence (CDS) from alignment at P-fluviatile_contig6:1826257..1850724-

>mRNA_P-fluviatile_contig6.12502.1 ID=mRNA_P-fluviatile_contig6.12502.1|Name=mRNA_P-fluviatile_contig6.12502.1|organism=Porterinema fluviatile SAG_2381|type=CDS|length=7344bp|location=Sequence derived from alignment at P-fluviatile_contig6:1826257..1850724- (Porterinema fluviatile SAG_2381)
ATGTCGAACTCTCAAATGCAGGGTGAGGTCACTGTCCACCACTTTCCCGG
GCTCTTGGGGACATTAGGCTGGGGATGGCTGCACCCTAGATGTCGAACTC
TCAAATGCAGGGTGAGGTCACTGTCCACCACTTTCCCGGGCTCTTGGGGA
CATTAGGCTGGGGATGGCTGCACCCTAGGTTTCTGGTGCTTGAGCACGCC
GTCCTGCTGGTGTACGCGAGCGAGGACGACTGGGTAGAGCACCAGGAGCC
GCTGGACGACGTCGCGCTCTCCGCGGACTCGACCGTGGAGACTTCGCAGG
AAGGCGGAGAGGTTTCTGGTGCTTGAGCACGCCGTCCTGCTGGTGTACGC
GAGCGAGGACGACTGGGTAGAGCACCAGGAGCCGCTGGACGACGTCGCGC
TCTCCGCGGACTCGACCGTGGAGACTTCGCAGGAAGGCGGAGAGGTGCTT
GTGAAGGTCCGCTGCCCAGGCCACCCCCCACTGTGCTTCAGCGCCTTCTC
CTCCGACAATGTCGGCGGCGACGACAGCGACTCCGTTGACGACGGCTTCG
ACAGTGAGGCCTGGAGGAAGGCAGTCGCCCGAGAGATCGACAGGCTCAGG
AGGGAGGAGGAGGGGGACGGGAGACAGCAGCAGCGGGCGGATGCGGCAGC
GGCGACCGGGGGGCTCAGCTCTTGGCGTCTATGGAATGCGGTCAGCGGCC
TCGTGGGAGCGGGGGCGGCGGCGACCGGGTCCGGCGCAGCGGGGGTGCTT
GTGAAGGTCCGCTGCCCAGGCCACCCCCCACTGTGCTTCAGCGCCTTCTC
CTCCGACAATGTCGGCGGCGACGACAGCGACTCCGTTGACGACGGCTTCG
ACAGTGAGGCCTGGAGGAAGGCAGTCGCCCGAGAGATCGACAGGCTCAGG
AGGGAGGAGGAGGGGGACGGGAGACAGCAGCAGCGGGCGGATGCGGCAGC
GGCGACCGGGGGGCTCAGCTCTTGGCGTCTATGGAATGCGGTCAGCGGCC
TCGTGGGAGCGGGGGCGGCGGCGACCGGGTCCGGCGCAGCGGGGGACTCC
ACCGGCGGCGGCGGCGATGATGCCCCCGAAGAAGACGAAGACGCCGTTTC
CTTGGATGCCGCGCTCGCCGGGGGGGCGGAAGCGGACGGACACGGCGGCG
GCGGCGAGCGGGAGGAGAAACAAGATCGGCCGGATATCGGCGACGGTGGA
GGGGGAGGAGCGGAGCACGGGGGGCGGAAAGCAAGCGCGAGGCCGGCACC
CCGAGAGCAGTCGACTGCTCGGTTCCGGAGGACTCCACCGGCGGCGGCGG
CGATGATGCCCCCGAAGAAGACGAAGACGCCGTTTCCTTGGATGCCGCGC
TCGCCGGGGGGGCGGAAGCGGACGGACACGGCGGCGGCGGCGAGCGGGAG
GAGAAACAAGATCGGCCGGATATCGGCGACGGTGGAGGGGGAGGAGCGGA
GCACGGGGGGCGGAAAGCAAGCGCGAGGCCGGCACCCCGAGAGCAGTCGA
CTGCTCGGTTCCGGAGGTGGCCGCTCAGACGGGGCAGCGTCAATCACCAA
ATCCCCGAATACGACTCGGCGGGGAACCCGGTCGCCACCGCCTCCACTGC
CAACAGAAGTGCAGCGACGACGGCTGCGGTGCGCGGCGGTGGGCCAAGCT
ATTCGAGCGCCAGCGGGGGGACGTCGCTCTGGAGAAAGGTCGCCGGGGTT
GTCCGCAAGAAGGACTGCGCGAACTGCACGTGCAAGTGGTGCAGGGACCG
GGGAACCGGAAGGTGGCCGCTCAGACGGGGCAGCGTCAATCACCAAATCC
CCGAATACGACTCGGCGGGGAACCCGGTCGCCACCGCCTCCACTGCCAAC
AGAAGTGCAGCGACGACGGCTGCGGTGCGCGGCGGTGGGCCAAGCTATTC
GAGCGCCAGCGGGGGGACGTCGCTCTGGAGAAAGGTCGCCGGGGTTGTCC
GCAAGAAGGACTGCGCGAACTGCACGTGCAAGTGGTGCAGGGACCGGGGA
ACCGGAAGTCACTCTCGGCCGAGATTGGAGCGCAGGTCGAGCAGTAGTTA
TCGGCACGAGTGCTCCTGGAGCAAGGGCCGCGCAGGTGTCCGAGCGGAGA
CGTCGCCGGCGGTGGACAGTCACTCTCGGCCGAGATTGGAGCGCAGGTCG
AGCAGTAGTTATCGGCACGAGTGCTCCTGGAGCAAGGGCCGCGCAGGTGT
CCGAGCGGAGACGTCGCCGGCGGTGGACAGATGGGAATATCTGGTGGGGC
GCTGGATACCCCTGCAGATGGCCAGATCCGGGGACGTGATGGGCATCCAG
AGATGGGAATATCTGGTGGGGCGCTGGATACCCCTGCAGATGGCCAGATC
CGGGGACGTGATGGGCATCCAGAGGTTTTTGGAGAAGTTTCCCAGCTTTC
CGGACAAGAACAACCTTCTTCGGGCGGCGGTGCGCTACAAGCAATACGCC
CTTGTGGAGTACTTGCTGGAGGAGCAGGTTTTTGGAGAAGTTTCCCAGCT
TTCCGGACAAGAACAACCTTCTTCGGGCGGCGGTGCGCTACAAGCAATAC
GCCCTTGTGGAGTACTTGCTGGAGGAGCAGCACATGGACGTGAATCTGAA
GAACGTGGTGGGCATGCCGCTGGTATGGTTCAGTGTGGTGTACATGCAGC
GAGGGGACAGCGGCGTCATGCTCCGGTACCTCATGCAGAAGGGCGCGGAT
ATCCACACTAAGAGCTTCACCGGGCAGAACGTTCTCTTCCTCGTGGTGTC
AAGCCGCGGGAAGGAGGCCATCCCGATGCTCAACACATGGACGTGAATCT
GAAGAACGTGGTGGGCATGCCGCTGGTATGGTTCAGTGTGGTGTACATGC
AGCGAGGGGACAGCGGCGTCATGCTCCGGTACCTCATGCAGAAGGGCGCG
GATATCCACACTAAGAGCTTCACCGGGCAGAACGTTCTCTTCCTCGTGGT
GTCAAGCCGCGGGAAGGAGGCCATCCCGATGCTCAAGTACCTCGTGGAAG
AGTGCGGCGTCTCTTTGACTGACAAGGACGAGTTCGGGTCTCAGCCGCTC
CACTGGGCGGTGCTTTCGGGGCACCTCGACACGGTGCAGTGGATCAGCCG
CTATACGCGAAATCAAGGGGTTCGGGCCAACTGGATGAAGGCGTTCGAAA
GGGTACCTCGTGGAAGAGTGCGGCGTCTCTTTGACTGACAAGGACGAGTT
CGGGTCTCAGCCGCTCCACTGGGCGGTGCTTTCGGGGCACCTCGACACGG
TGCAGTGGATCAGCCGCTATACGCGAAATCAAGGGGTTCGGGCCAACTGG
ATGAAGGCGTTCGAAAGGATGCAACAAATTCGTATGGTGAGGCCCGAGCA
CATGGGCGCGATGCGGTCGTGGCGGATGCGCGGGCTGCAGAAGAACGCGA
GGTCCCTTACACCGCTCGGGGTGGCCGTCCTGCACAACCACGAGCACATC
GCCAAGTGGCTCATGGGATGCAACAAATTCGTATGGTGAGGCCCGAGCAC
ATGGGCGCGATGCGGTCGTGGCGGATGCGCGGGCTGCAGAAGAACGCGAG
GTCCCTTACACCGCTCGGGGTGGCCGTCCTGCACAACCACGAGCACATCG
CCAAGTGGCTCATGGGATATGGCACCGAGAGCCAGGACAGCATCTCGCGC
AAGCGGGAAAACCTCTTCAGCGAGCAGAACAAGGACCTCGCGCTCGTCGC
CAAGACCTGGCCCGAGCTCCTGCCCGAGATATGGCACCGAGAGCCAGGAC
AGCATCTCGCGCAAGCGGGAAAACCTCTTCAGCGAGCAGAACAAGGACCT
CGCGCTCGTCGCCAAGACCTGGCCCGAGCTCCTGCCCGAGGTGTTGCGGG
GGTTTGAGCAGAAGGCGAGTTCCGGGCACTCGTGGGACACGGTCGAGAGG
CAGACAGTGGTACCGACGGGGTGGTCGGAGAGGACGTACGACATCAAGCT
CCTGTACGGGCTTCCCGAGGTGTTGCGGGGGTTTGAGCAGAAGGCGAGTT
CCGGGCACTCGTGGGACACGGTCGAGAGGCAGACAGTGGTACCGACGGGG
TGGTCGGAGAGGACGTACGACATCAAGCTCCTGTACGGGCTTCCCGAGGT
GCCGCCAAACCGCTCTCCGCTGAGTGTCCTGCTCAGCACGGACTACCCGA
GGCTGTTCGAGGTGAAGACGGTTCAGATGGTGGTGGCTCTCAAGTGGTCG
GTGTTCGGGCACAGGCGAGTGATCTCAGCGTGCCGCCAAACCGCTCTCCG
CTGAGTGTCCTGCTCAGCACGGACTACCCGAGGCTGTTCGAGGTGAAGAC
GGTTCAGATGGTGGTGGCTCTCAAGTGGTCGGTGTTCGGGCACAGGCGAG
TGATCTCAGCGTACTACCTCTGGGAGCTGGGCCGGTACCTGACGCTGTCC
TTGAGCTTCATTTTAGGCTTCGTTGTGTGGGGCGACTCCCGAAATTGGGC
CAACCCTCTCCAATCGGGGGATGACCACGTGCGGGTACTACCTCTGGGAG
CTGGGCCGGTACCTGACGCTGTCCTTGAGCTTCATTTTAGGCTTCGTTGT
GTGGGGCGACTCCCGAAATTGGGCCAACCCTCTCCAATCGGGGGATGACC
ACGTGCGGGTGGTGGGCGGAACTATCTCGAGGCTGCTGTGCTGGGCGCTG
ACGCTGTACAACCTCGTTGTGGAAGAGGGGAGGGAGCTCAAGGCGTCGAA
AAGCCTCAAGAAGTGGTGGGCGGAACTATCTCGAGGCTGCTGTGCTGGGC
GCTGACGCTGTACAACCTCGTTGTGGAAGAGGGGAGGGAGCTCAAGGCGT
CGAAAAGCCTCAAGAAATACTTAGTCGGGGGCTGGAACATGCAGTCGGTG
GCCGCCTACATCCTCGTGCTGGCGCTCATTCCCGTGTTCAGGCCGTGGAA
GGCGGAAGTCGAGTGGGAGACCGACATGTTCGAGTATACCACAGCCGGGA
TCATACTTAGTCGGGGGCTGGAACATGCAGTCGGTGGCCGCCTACATCCT
CGTGCTGGCGCTCATTCCCGTGTTCAGGCCGTGGAAGGCGGAAGTCGAGT
GGGAGACCGACATGTTCGAGTATACCACAGCCGGGATCATTCGTCGAGTG
ATGACGGGCCCCGCGGCCTTGCTCCTCTTCTTGCGGCTGATGGAACACCT
GGCGGTGTGGAAGTCGACAGGCGTTTTCATCGCGGTGATCCGAATGGTCA
TCGCCGACACGGCCAGCTGGAGCGTCCTGTTCATCCTCTTCGAGATTCGT
CGAGTGATGACGGGCCCCGCGGCCTTGCTCCTCTTCTTGCGGCTGATGGA
ACACCTGGCGGTGTGGAAGTCGACAGGCGTTTTCATCGCGGTGATCCGAA
TGGTCATCGCCGACACGGCCAGCTGGAGCGTCCTGTTCATCCTCTTCGAG
GTAGCCTTCGCGCTGGCGTTCTACGCCCTGTTGCAGGGGAGCCCGGGATT
TACGACGGTCTGGGAGAGCATGGTCACGCTGTTCGTTATGTCGATGGGGG
AGCTCAGGATGCCGTTGAGCGAGAACGAGTAGCCTTCGCGCTGGCGTTCT
ACGCCCTGTTGCAGGGGAGCCCGGGATTTACGACGGTCTGGGAGAGCATG
GTCACGCTGTTCGTTATGTCGATGGGGGAGCTCAGGATGCCGTTGAGCGA
GAACGAGACCGTCGACGTCGTGGCCGTGATCACGTTTGTGACGTTCATGC
TGGTGGTGGCGGTCGTGTACCTGAACCTCCTGGTCGCCATGATGACGTCC
GGCTACACTGAGGACCGTCGACGTCGTGGCCGTGATCACGTTTGTGACGT
TCATGCTGGTGGTGGCGGTCGTGTACCTGAACCTCCTGGTCGCCATGATG
ACGTCCGGCTACACTGAGGTGTTGAAGGGAGCAACCGCGCAGGCGATGAT
GAATCGTGCGGCCGCTCTCGTGAAGTGGGAAGGGATCATGTCTGACAAAA
CTCGCAGAGAGGTGTTGAAGGGAGCAACCGCGCAGGCGATGATGAATCGT
GCGGCCGCTCTCGTGAAGTGGGAAGGGATCATGTCTGACAAAACTCGCAG
AGAGGCGTTCCGACGTGTCGCCCCTGGCAAGGGAAAGCGCGCGCACATCA
CCCTCACCGGCTGGTTCGGCGGGGCGGCCACCGAGGTGTTCTGCGGCGAA
GAGGCGTTCCGACGTGTCGCCCCTGGCAAGGGAAAGCGCGCGCACATCAC
CCTCACCGGCTGGTTCGGCGGGGCGGCCACCGAGGTGTTCTGCGGCGAAG
AGGGAGCGACCGCGGTAGAGCCGGAGCAGAGCACCATTGGCAAGCGAATC
GACCGGCACGCGGTGGTCATGAAGGAACTCGAAGAGATAAGGGAGCGACC
GCGGTAGAGCCGGAGCAGAGCACCATTGGCAAGCGAATCGACCGGCACGC
GGTGGTCATGAAGGAACTCGAAGAGATAAGGGACATGATCTCGAGGGCCT
CGGCGCCGGAAAGGAGTGGCGCCAGCGGCGGCGACGGCGGCGTTTTCGCT
CGCAAAACCCCGGCCGACGGCGAGAGCGCGCACGCCTCCAGCAACGGACG
CGATGCCAGCTTCCGAAAGCGGCAGGCGGGGATGCTTGTCCAGGGGAAGG
GTCTTTCTGCGCTCAGGCTGGGTGACAGCAGCAGCAGTGGAGGAGGAGGT
GGCGGTGGCAGCGTGCGCAGGGGGAGCGTGAGCAGCCGAGGCGAGGGGAT
GAGGACGACGGAGCGAACGGGTTCCGCGCGCTCGGTGACCACGGAAGAAT
TGCAGGGACATGATCTCGAGGGCCTCGGCGCCGGAAAGGAGTGGCGCCAG
CGGCGGCGACGGCGGCGTTTTCGCTCGCAAAACCCCGGCCGACGGCGAGA
GCGCGCACGCCTCCAGCAACGGACGCGATGCCAGCTTCCGAAAGCGGCAG
GCGGGGATGCTTGTCCAGGGGAAGGGTCTTTCTGCGCTCAGGCTGGGTGA
CAGCAGCAGCAGTGGAGGAGGAGGTGGCGGTGGCAGCGTGCGCAGGGGGA
GCGTGAGCAGCCGAGGCGAGGGGATGAGGACGACGGAGCGAACGGGTTCC
GCGCGCTCGGTGACCACGGAAGAATTGCAGGTGTGGCGAGAGAGGGCACT
CAGGGTGCAGGAGAAGGCCGACTCGAGGCGAGGTGTGGTGCGCGCGCAGG
CGCTCATCCGCGGCTACCTCACGCGGTCCAAGTCGAGGGCGCGCTTCCTG
CCGGACAATTGAGTGTGGCGAGAGAGGGCACTCAGGGTGCAGGAGAAGGC
CGACTCGAGGCGAGGTGTGGTGCGCGCGCAGGCGCTCATCCGCGGCTACC
TCACGCGGTCCAAGTCGAGGGCGCGCTTCCTGCCGGACAATTGA
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