mRNA_P-fluviatile_contig9.15153.1 (mRNA) Porterinema fluviatile SAG_2381

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

Overview
NamemRNA_P-fluviatile_contig9.15153.1
Unique NamemRNA_P-fluviatile_contig9.15153.1
TypemRNA
OrganismPorterinema fluviatile SAG_2381 (Porterinema fluviatile SAG_2381)
Homology
BLAST of mRNA_P-fluviatile_contig9.15153.1 vs. uniprot
Match: D7G598_ECTSI (Uncharacterized protein n=2 Tax=Ectocarpus TaxID=2879 RepID=D7G598_ECTSI)

HSP 1 Score: 1150 bits (2976), Expect = 0.000e+0
Identity = 763/1641 (46.50%), Postives = 956/1641 (58.26%), Query Frame = 1
Query:    1 ASTACHRIALTVDGELLTWSCRSAKAGQRCRCNAEANEPCLRAMNGCRRVPAWREASAGKSA-------CL--TSPAMLHRSAVCGERGHADSFIVRQVFAHRPNVTDVACGQEHILALLETGQVCSWGNGRNGRLGLGDTKDRLSACHVEAIQGIEIEAVFCGASHSMAVCSTGVCYAWGKNNSGQCGDTNVLGSDALIPRMIESLRHIPVAAMAGGWKHTLVLTRCGTMFSFGSGFKHKCMSTGPAAVLGISAAA-SAATADGTHNKQGGSSPTKVCDDALNSARVKTIACGWDHCLAATEDGALFTWGSGRHGQLGHGDTEPRYTPTRVAFFTSSAGLWVRSIVGGRTYSAVATVDGRVFKWGLNRAPRSSSGKERNRDEERRGGADR--DLSEEDGTVALEALVPRQVAGIGMENPRALRLGEGEDFDSVLVELRSAAESHPPSLVHPSEHSTKALVSTLGLDVPDDPSCPVGRIETTVALLRHFERLAVPHTPRYAASDVDRRIYQAIRIGKRLRKRTWQKGTIPSARANREGDLSTTPGTD-QEFGVTLSN---SDSMDVSKHVPHVSLAEGQRTRQEALNIESRIPPSVAPFCVDTSVHTFRSFLDLIKAIRHRMSPVPVGIER-------ADSSPLSKRKASKSQIST-GAAGPKSCDKKIAAGGLSDLGALDNRVP---EEIREDWNGFPVASRSIAMEVLRVTLKLLKTNLFHLVGIVAMRRSCRGN-----------GDNVPRDATVEEKTISTKPRSSDRDYRDSSGIKARTATRKEIHTGQAWGQEGAPGAKECAHDMHGVIQELHAELHAILEEDIAYGDPGATNAALAVQAEAAEAFRVGFSLFYPSNPARVRVLNDIVRTVTAAGSPSPERNQRHGDKRESRRRAHHAKSHSKSRQRVRLASKLNGVLVRLAVEALTREKYAAGLITGAFSHEGWGGIGLDGAGTATGESGERFDASALDAVMRSLLSHCAGDLHKRLWG-------------EGVRDQAG-ENRSGISENGEATCPFSRLLLVLQTHVLAFWG----GTEHDGAAIAARELSLAHASRLLEQSLQIFTRFLLTEGDQADVGAQDDRCHGDGHPQLDALRNSFVSLVPVLCTSVVALPTVGEELLTRAARLLPLVIPLTRAVGRFDRPRLRDAEVDAPVQSERSSLGWLTELEAALAVLSSDLVCGLIDVRATNLQRHVGVPSQANNXXXXXXXXXXXXXYHGDQSQNDEHGDDVIARLLGSSPFLAYSHENFDWSGLQD-NIVAQRNSLAFVRAHEVIKFQESVTKEACGCSRPAQSQTSALGLASSNPTSSHQPPRQNVTSRGRRRASHDTATKLCPIDGSVYSNGLPGQLSPSS-----------APTKHQGPGGKATGEEGNXXXXXXXXVGNNRQLDRIVDEARAEGFIQDILCGQGAANALYLWMTIPPASHVPVLHATSLATQGQGWGSYQSLSATSVPSQQQQNDNSFRRRRSRALPSDIDAATRALVAVIIKGNRAVAEAATFARCRLDRASSPPRALRLVAAAAVEVREALAGLADCLETEKSAGRYTGGDPGDRRNEDGGMGGHETHDSLRNVSEETSAAGLSSTAAATLANIVRNCRFLLECTHHLPPIEVAR 4719
            A+  CH +ALT +GELLTW       GQ  R  A         M+  R V   R A+ G +A       C   +S A  +  A C   G A    V QV AH+PNVTDVACGQEH LALLETGQV SWGNG NGRLGLGDT+DR SACH+EA+QGIEIEAVFCG SHS+AVCSTG  YAWGKN+ GQCGDT+ L SDA+ PR I+ L++ PV+ MAGGW H+L LTR G +FSFG  + H      P AVLGISAAA SAA ADGT  K+GG  PT+VC  +L SA VK I  GWDHC+A T DG LFTWGSGR+GQLGH D  PR+TPTRVAFF + AG  +RS  GGRTYSA  TVDGRVFKWGL+R  R       +R     GG+ R    SE DG  A+EA +PR V G G+E                                                         VGRIE  VALLRHFERLA+PH P+   ++VDR + QA+R+GKR+RKR  +  T+    +N + ++STT   + Q+F  T  +   +D  D SKH P  S+     + QEA+   +R P  +APFCVDTS   FRSFLDLI+ +R R SP+P    R        DS+ +   K++ +  S     GP+ C  K+  G +      D +      ++  +     +ASRS+ MEVLR TL LLK NLF  V + AMRR+CRGN           GDN      V++    TK         D  G K  +        G   GQ+G  G+ E   D++GVI ELHAEL  +LE+++   DP  T  A AVQ EAAEAFR+GFS+F+ SN ARV++L D+V T+  AG  SPER Q+  D +   R     +S ++ +QRV  A + N +++RLAVE L R+ Y + +++GAF H+       +   TA GE+ E FDA+ LDAVM+S+LS+CA DL KRLWG             E  R Q+  +N      +G   CP+SRLLLVLQ HV A+WG    G E   AA   R LSL+HASRLL++S  IF+R LLTE DQ   GA   R  G        L+NSFV+LVP LC S+ +LPT GE+ LTRAA LLPLV+PL  AV RF+  R+       PV+ E S   W  +LE ALA LSSDLVC LIDV +   ++ V   S                    ++   ++  ++++  LL SSPFLA+  E F WS     +  +Q +S  F +A +V++ QE VTKE+CGC+         L   + NPT S   P QN  +RGRRRAS+D A  L PID  V  +GLP   +  S           A  + +  GG+  G  G             RQLD IVD+ARAEGF+ D+LCGQGAA +LY WMT+PPA  +PVLHATSLATQGQGWGSYQSLS+  VP QQ  ++ S RRRRSRALPSD+DAATRALVAVIIK N  V EAATFARCRLDRASSPPRAL+L+A+AA EVRE LAGLAD L+ +K        D  D +NE+GG G ++   +     E+ +A GL  TA  TL NIVRNCR LL+ +  LP I++AR
Sbjct:   49 ATDYCH-VALTTEGELLTWG------GQDGRTIAATTRQPFFVMDRFRDVHGSRSAAQGDAASDLSAGDCTYGSSDAAQNGWAGCASTGSAAMPTVWQVLAHKPNVTDVACGQEHTLALLETGQVFSWGNGSNGRLGLGDTRDRSSACHIEALQGIEIEAVFCGVSHSLAVCSTGTSYAWGKNDCGQCGDTDPLCSDAICPRSIDGLKNFPVSMMAGGWGHSLALTRRGELFSFGGSYSHGRDGDAPTAVLGISAAAASAAVADGTLGKRGGVPPTRVCTGSLGSATVKAITSGWDHCMAVTHDGTLFTWGSGRYGQLGHEDAGPRHTPTRVAFFATPAGGRIRSATGGRTYSAAVTVDGRVFKWGLDRKFRLP-----HRSATEGGGSSRGHSPSEGDGVTAVEASIPRLVIGDGVE---------------------------------------------------------VGRIEMIVALLRHFERLAIPHIPKDTTTEVDRSLRQAVRVGKRIRKRVREARTVALVSSNHDQEVSTTSSANRQQFQTTREDDIPNDEQDSSKHAPMCSVGNLHES-QEAIVSRTRSP--IAPFCVDTSWQAFRSFLDLIRVVRERKSPMPASPAREPAAADTVDSAGVPMGKSTGNPRSDPNNIGPEGCG-KLVTGSVPTAEPFDKQARMQGADLTPETTECVMASRSVQMEVLRGTLSLLKVNLFQFVRVAAMRRACRGNSFFNPSRKVQTGDN---GGNVKDNDFQTKHNDWGAQDEDGFGPKETSCAGD---GGTTLGQKGCRGSSESVEDLNGVIGELHAELQTLLEDEVTQQDPETTAKAQAVQVEAAEAFRIGFSVFFRSNLARVQLLQDVVITLKTAGPVSPERTQQPLDDKGKDR-----QSPARLQQRVYRAPRSNTLMIRLAVEGLARDNYVSAIVSGAFDHQRSEDNEQEDNRTAIGEAAEDFDATKLDAVMQSMLSYCADDLQKRLWGGSAVSEKAVFENLERPRHQSRTDNEHRFGSSGVIRCPYSRLLLVLQEHVTAYWGDADVGVERRAAA---RGLSLSHASRLLKESQHIFSR-LLTEWDQTTRGAHGSRSDG-------VLKNSFVALVPALCISITSLPTEGEDRLTRAAALLPLVLPLMGAVDRFNGLRISTEGDATPVREEPSPSDWSAQLEEALAQLSSDLVCSLIDVNSIKTRQPVLRRSHETGCDR-------------ERDWGEDDSEELVEMLLASSPFLAFGRETFSWSDQHTKDSPSQLDSPVFTQALKVMELQEGVTKESCGCA--------TLKPTTPNPTPSKLHP-QNSLARGRRRASNDNAA-LNPIDARVSPHGLPCHANRGSTGGGRXXXXXXAGVEAEENGGRTGGAPG-------------RQLDSIVDDARAEGFLNDLLCGQGAALSLYQWMTVPPAPQLPVLHATSLATQGQGWGSYQSLSSHPVPDQQD-SEGSHRRRRSRALPSDVDAATRALVAVIIKSNGVVTEAATFARCRLDRASSPPRALKLIASAAAEVREVLAGLADSLKGDKHPDLEFSSDKRDHQNEEGGAGRNDQGSA--ETREKAAATGLQQTAE-TLTNIVRNCRLLLKYSTRLPSIDLAR 1554          
BLAST of mRNA_P-fluviatile_contig9.15153.1 vs. uniprot
Match: A0A6H5JWE1_9PHAE (B30.2/SPRY domain-containing protein n=2 Tax=Ectocarpus TaxID=2879 RepID=A0A6H5JWE1_9PHAE)

HSP 1 Score: 761 bits (1965), Expect = 4.950e-225
Identity = 468/916 (51.09%), Postives = 567/916 (61.90%), Query Frame = 3
Query: 12633 PEIPFMLDAEGCGPNLRLTNSNLTVTNTGRKKWSTVRATRGFTCGVHRWNVRIDRCVSKNVFVGVMSSESRLNNYVGSDKLGWGFLANKAIWHDKSKVRSYGDLFREGDTIGVSLNMDLGTLRFARNGCDLGLAMQGLEGTLYPAFSMYNRSDRLTFMPPEDHAAPTATSAVGTAFGEKGERSPD---GGEDV-------LYGTFSAECVVRRASKVVEVLGVLNHDGKFA-SPAGVELVDTLRSRLRQWSRGKQGRSLQSPRKFAPVRVGTFNQARRGSFGLGVGDRVLTADGHATVLGETRHSLWVEVETHSSSPASPFSRRFLRGARMWDSEVPAMRVPGETGG---NRGHEATR-----PSHSPDIGGRKREITSWSRRIVRQIFCQPEKYVVIRQTSPEESAQQAGGATNDD------GQASTAA--ADIVDLLCTDELRSVLSKWTPDMDEELGRHLASLADSMPAKSLQDLPFDALDKLPQPKDMFPSSSPLASSEVWVRATLLLYINDLVVPLLPLIDTGPGCRGPLSTLVFKCRHLFFRQAKLSLLN------SNVVRPAQAAVSSEAELCTAYSTPSIDTISLIGVKSLPRFPSPVGNPAEIHYLPWIQTSREVQKSVFGQVARHFSS-SKYQFSEGAMAFLVELVDAPTLVDEADADSENLLLLDAPALYRGVFWQICAEVCSPPISMFIRQPVSQA-----GADDATRVICPAAPDTTATGTGSTGGAGNAPADHHCKAAITSAEKIADGSIPNPLFTSDGMSRVCMDPSRVALYRSFGFIVGLAVRAEISLPLAHLSTTWWMLVSN-----SLPVLGERAPRSASKSAGVKGMNCSRSLEEVDSSDIMGVSPSYRAIDGVLASLQRLEETGLAHDEIEEILADGRFVAPLSNGHVTELLPRGE 15248
            PE+PFMLD +GCGPNLRLTNSNLTVTNTG KKWS VRATRGFTCG HRW VRIDR                                         +VRSYGDLFREGDTI   LNMDLGTLRFARNG DLG+A+QGLE TL+PAFSMYNR+D+LTF+P E+HA+P      G+A G+K    P    GG DV       LYGTFSAECVVRRA+K ++VL  +++ GK A S A  +L+D +RSRL +WSRG+ GRS+ S R +APVR+ T  QARR  FGLGVGDRVL+A+  ATVLG TRH+LWV VE  SS+ A P      RG+R+W SE+P  R      G   N    AT      PSH   +G    +IT+WSR  VRQI  +PE YV+   T+P +S ++ G  T  D      GQ  TA   A + D L TD  R+VLS+WTP MDEELGRHL  LAD+M   +  DLPF+ L KLP    MFP + P+A +E+W R  LLLY+NDLV+PLLPLI T  G RGPL TL+ K RHL F+  KL LL+      S+ VRP   A SSE EL      P   TI LIGVKSLPRFP+   N A+   L W QT REV+KSVFGQVARH S   K+  SEG +AF VEL+DA  L D    + + L + DA ALYRGVFWQ+C +VCS PISMF+R P S A     GA D T     AA +      G    A   P DH           + D ++PNP FTS G+S VCMDP RV+LYRSFGFIVG+AVR  + LPL+HLS+ WWMLVSN     ++P       R+ + SA  + + CS + +E         +P    IDGV+++L  LEE GL  +E++E+LAD RFVAPLS+G  TEL+  GE
Sbjct: 1286 PEVPFMLDVDGCGPNLRLTNSNLTVTNTGHKKWSAVRATRGFTCGSHRWKVRIDR-----------------------------------------QVRSYGDLFREGDTIETILNMDLGTLRFARNGRDLGMAVQGLEDTLFPAFSMYNRNDQLTFIPSEEHASPPPVPFPGSAAGDKNGGGPTRVGGGMDVPCTYSNVLYGTFSAECVVRRAAKALQVLETMDYQGKLATSSARADLMDDIRSRLLRWSRGEHGRSVASVRPWAPVRLDTSEQARRDLFGLGVGDRVLSAEWEATVLGATRHALWVTVEATSSASACPPG--LSRGSRVWGSELPENRHGDAASGFPGNNTQAATSANVWSPSHQRFVGKSGSKITAWSRCTVRQIASRPEDYVISHHTTPTDSVERLGTTTKVDDDRDRTGQHQTAGEVALVDDFLLTDGARNVLSRWTPKMDEELGRHLTKLADTMGVVTPLDLPFNVLGKLPSSTKMFPGTDPVAPAEIWARTALLLYVNDLVLPLLPLISTTQGGRGPLGTLIHKFRHLIFKTTKLELLDNHMSRVSSAVRPIPTA-SSEFELGNG---PPAFTIPLIGVKSLPRFPAKRLNVAKPCPLSWGQTRREVEKSVFGQVARHLSHRGKHVLSEGPLAFSVELIDASKLGDGESGNRDCLQMSDAQALYRGVFWQVCEDVCSSPISMFVRTPSSPADEASLGASDPT-----AAANNDNNVDGVAFAANTPPRDH-----------VRD-TVPNPYFTSRGLSPVCMDPERVSLYRSFGFIVGVAVRTGVPLPLSHLSSQWWMLVSNGECPSAVPENEPGVTRTLADSA--RTVLCSNATKE---------APPKYTIDGVISALSHLEEAGLKQEEMDEVLADARFVAPLSSGDSTELVRGGE 2126          
BLAST of mRNA_P-fluviatile_contig9.15153.1 vs. uniprot
Match: A0A7S3NNH0_9STRA (Hypothetical protein n=1 Tax=Aureoumbra lagunensis TaxID=44058 RepID=A0A7S3NNH0_9STRA)

HSP 1 Score: 270 bits (691), Expect = 3.940e-70
Identity = 268/978 (27.40%), Postives = 415/978 (42.43%), Query Frame = 3
Query: 12636 EIPFMLDAEGCGPNLRLTNSNLTVTNTGRKKWSTVRATRGFTCGVHRWNVRIDRCVSKNVFVGVMSSESRLNNYVGSDKLGWGFLANKAIWHDKSKVRSYGDLFREGDTIGVSLNMDLGTLRFARNGCDLGLAMQGLEGTLYPAFSMYNRSDRLTFMPPEDHAAPTATSAVGTAFGEKGERSPDGGEDVLYGTFSAECVVR---RASKVVEVLGVLNHDGKFASPAGVEL--VDTLRSRLRQWSRGKQGRSLQSPRKFAPVRVGTFNQARRG--SFGLGVGDRVLTADGHATVLGETRHSLWVEVETHSSSPASPFSRRFLRGARMWDSEVPAMRVPGETGGNRGHEATRPSHSPDIGGRKREITSWSRRIVRQIFCQPEKYVVIRQTSPEESAQQAGGATNDDGQASTAAADIVDLLCTDELRSVLSKWTPDMDEELGRHLASLADSMPAKSLQDLPFDALDK----LPQPKDMFPSSSPLASSEVWVRATLLLYINDLVVPLLPLIDTGPG---------CRGPLST-------------LVFKCRHLFFRQAKLSLLNSNVVRPAQAAVSSEA------ELCTAYSTPSIDTISLIGVKSLPRFPSPVGNPAEIHYLPWIQTSREVQKSVFGQVARHFSSSKYQFS---EGAMAFLVELVDAPTLVDEADADSENLLLLDAPALYRGVFWQICAEVCSPPI---SMFIRQPVSQAGADDATRVICPAAPDTTATGTGSTGGAGNAPADHHCKAAITSAEKIADGSIPNPLFTSDGMSRVCMDPSRVALYRSFGFIVGLAVRAEISLPLAHLSTTWWMLVSNSLPVLGERAPRSASKSAGVKGMNCSRSLEEVDSSDIMGVSPSYRAIDGVLASLQRLEETGLAHDEIEEILADG--RFVAPLSNGHVT-ELLPRGEGRLSRPVGIQNLGEYVTLLARLRASGYAPQAAAFRAGLEAALPRGVLSLLTWREMKGLV 15425
            +I    D+   GPNL LTN N T+TN   KKW+  RAT  FT G++ W VR+DRCVSKNVF+GV+ +E+ L NYVGSDK GWG+LANKAIWH+K K R+YG+LF++GDT+GV L+MD G L F+RNG DLG+A++GLEG+LYPAFS+YN+ D+LT +PP+      ATS+  T+              +L+GT  AE  +     AS++++ + V +    F     V+      ++   + W R ++G S+      A  R  T + ++     F    GDR+    G AT+LG   H LW  ++    SP+         GA MW                                        S+R ++ +   P  +V I +             TND+        +  D+     +    S+WT DMD     HL    D   A +   L + A DK    +  PK    + +PL   ++  R  LLLY+N+L++PLLP +D             C   L T             + F  +   FR+A   +L  N+ R   +A ++E       E     +  S+ T  LI      R               W    + + +S FGQV    +    + +   +    F ++L +A  L DE  +D           LYR  F  +C+EV +  +   +    + ++   ADD    I                                           N +F+S    +  +D SR+A YR+FG ++G+A+R  ++LP   L+   W  ++ S P                        L ++DS  +            V+  L+ L+  G+  +  E +L D   RFV P  + +    L P G+      +  +   ++  LL   R    AP  +A  AGL + +P+ + +L T  E++  +
Sbjct:  266 DILLKFDSSAIGPNLALTNDNTTLTNHFNKKWNACRATTAFTSGLNTWEVRVDRCVSKNVFIGVVHAEATLENYVGSDKHGWGYLANKAIWHNKGKARAYGELFKQGDTVGVHLDMDAGNLWFSRNGKDLGIAVEGLEGSLYPAFSLYNKGDQLTLLPPD------ATSSNFTS-------------SILHGTALAENTISLALTASELLKDISVASMSRPFTHGTKVQSRPSQAMQKVCKYWHRWQRGESITVL--SAEGRYITIDASKEACAKFQAQHGDRIQCPLGIATILGVANHHLWYVLDGQLDSPS---------GAHMW----------------------------------------SQRQLKDLRSMPTDFVFISKNQ-----------TNDENNFCDQNYNSDDVSF---MSQCFSEWTIDMDA----HLVHCIDIAIADTFI-LSYHAADKVIALIENPK--LKTCTPL---QIKTRIALLLYLNELIIPLLPFLDLSSYEHTRFDESFCGLDLETVDLVELVRLNKNRIFFATKRRLFRRA---VLEGNI-RAGTSAKNTEKLENALPEFSIECNEESVMTRPLIEDHCNRR---------------WWNDEKALAQSQFGQVCAQLAVHSTRIAGHGDQHCVFKIKLRNATQLKDEVISDG---------TLYRNFFQTMCSEVSTNLLFTKTSNCSRALNNISADDIYHTI-------------------------------------------NTVFSSP-YPQQRLDASRLAAYRAFGQLLGIALRTNVTLPNLKLARLLWSTMACSKPTREH--------------------LAQIDSGILQ-----------VVEGLENLQGIGVDSNNFEALLGDLDIRFVVPSWDLNTAIPLCPDGQ---CHRLEFETAKKFAHLLISARIQETAPMISAICAGLSSIIPQRLSALFTETELESQI 1043          
BLAST of mRNA_P-fluviatile_contig9.15153.1 vs. uniprot
Match: A0A7S1XME8_9STRA (Hypothetical protein (Fragment) n=1 Tax=Phaeomonas parva TaxID=124430 RepID=A0A7S1XME8_9STRA)

HSP 1 Score: 217 bits (553), Expect = 2.140e-58
Identity = 115/259 (44.40%), Postives = 155/259 (59.85%), Query Frame = 3
Query: 12477 EGTIAFLLPTGCGQATEQIFSGYPPAASTVLLTHRKAVWQVEPS*PP*AWPPPEIPFMLDAEGCGPNLRLTNSNLTVTNTGRKKWSTVRATRGFTCGVHRWNVRIDRCVSKNVFVGVMSSESRLNNYVGSDKLGWGFLANKAIWHDKSKVRSYGDLFREGDTIGVSLNMDLGTLRFARNGCDLGLAMQGLEGTLYPAFSMYNRSDRLTFMPPEDHAAPTATSAVGTAFGEKGERSPDGGEDVLYGTFSAECVVRRASKV 13253
            EG  A       G   +++ SG    A  VL     AV +            PE PF LD E CG NL +  + LTVTN   K+W+TVR  R F  G H WNV I+RC SKN+F+GV+S+ + + NYVGSD+ GWG+LANKAIWH+K KVRSYG+LF+EGD I V LN+DLG + F+RNG  LG+A++GL G L+PAFS+YN+ D +T +PP+  A   + +  G  F      +     D L+    AE V +R +++
Sbjct:   68 EGNAAQAQRLRSGFLAQRVTSGSSEPAPVVLGVSLTAVTE------------PEAPFALDHEHCGHNLSIGENLLTVTNGVNKRWNTVRTMRSFLRGTHHWNVLINRCCSKNIFIGVVSAAASMENYVGSDRCGWGYLANKAIWHNKGKVRSYGELFKEGDRISVHLNVDLGIMSFSRNGRHLGIAVEGLSGELFPAFSLYNKDDCVTIVPPDYDAVTISPNVYGRGFSVSKPGADASAPDELH---HAEMVAKRLARL 311          
BLAST of mRNA_P-fluviatile_contig9.15153.1 vs. uniprot
Match: A0A836CAJ1_9STRA (Concanavalin A-like lectin/glucanase domain-containing protein (Fragment) n=1 Tax=Tribonema minus TaxID=303371 RepID=A0A836CAJ1_9STRA)

HSP 1 Score: 198 bits (504), Expect = 1.820e-54
Identity = 92/153 (60.13%), Postives = 114/153 (74.51%), Query Frame = 3
Query: 12651 LDAEGCGPNLRLTNSNLTVTNTGRKKWSTVRATRGFTCGVHRWNVRIDRCVSKNVFVGVMSSESRLNNYVGSDKLGWGFLANKAIWHDKSKVRSYGDLFREGDTIGVSLNMDLGTLRFARNGCDLGLAMQGLEGTLYPAFSMYNRSDRLTFMP 13109
            LD + CGP L ++   LTVTNT  K+WS VR  R    G H W VRIDRCVSKN+F+GV  +++ L+ YVGSD+ GWG+LAN+AIWHDK+KVRSYGDLFREGD +GV L+  L TLR+  NG D+G+A+QGL G LY AFS+YN  D+LT  P
Sbjct:    1 LDPDACGPGLVISGGGLTVTNTAHKRWSAVRGARRLRSGAHSWLVRIDRCVSKNIFIGVAHADAALDAYVGSDRHGWGYLANRAIWHDKAKVRSYGDLFREGDVVGVHLDCTLRTLRYTVNGRDMGVAVQGLRGELYAAFSLYNFEDQLTVTP 153          
BLAST of mRNA_P-fluviatile_contig9.15153.1 vs. uniprot
Match: A0A0P1AS96_PLAHL (FOG: RCC1 domain n=1 Tax=Plasmopara halstedii TaxID=4781 RepID=A0A0P1AS96_PLAHL)

HSP 1 Score: 211 bits (536), Expect = 4.740e-50
Identity = 128/319 (40.13%), Postives = 177/319 (55.49%), Query Frame = 3
Query: 12630 PPEIPFMLDAEGCGPNLRLTNSNLTVTNTGRKKWSTVRATRGFTCGVHRWNVRIDRCVSKNVFVGVMSSESRLNNYVGSDKLGWGFLANKAIWHDKSKVRSYGDLFREGDTIGVSLNMDLGTLRFARNGCDLGLAM----QGLEGT-------LYPAFSMYNRSDRLTFMPPEDHAAPTATSAVGTAFGEKGERSPDGGEDVLYGTFSAECVVRRASKVVEVLGVLNHDGKFASPAGVELVDTLRSRLRQWSRGKQGRSLQSPRKFAPVRVGTFNQARRGSF--GLGVGDRVLTADGHATVLGETRHSLWVEVETHSSS 13547
            PPE  F LD    G NL   N NLT  NT  KKW +VRA+ GF  G H W VR+D+CVSKN+FVGV + ++ + NYVGSD  G+GFLANKAIWH+K+K++SYGD+F++GD I V+LN D  TL F RN   LG+A+    +G  G+        YPA SMYN+ D++T +PP        TS +  +             D+     + E V     K+ +VL  L+H    +S   ++L +        W R K        R+    +V   ++++  +F  GL  GD VLT+ G  TVLGE RH LW E+ET +++
Sbjct: 3395 PPEPMFELDQTTSGKNLLFINRNLTAINTCSKKWHSVRASIGFERGTHSWQVRLDKCVSKNIFVGVCTMDASMENYVGSDAYGYGFLANKAIWHNKAKLQSYGDIFKQGDIIQVTLNCDANTLAFKRNDQCLGIAVSNMRRGTNGSDSNGNCKWYPAISMYNKDDKVTLIPPP------VTSVLNVS------------NDLSQNLSTLELV----EKMRDVLAYLSHVNSNSSSLSIKLFEKAFEEFDSWRRDKI-----LYREILLGQVIAIDKSKSATFKYGLASGDTVLTSKGQYTVLGEYRHELWYEMETEANA 3686          
BLAST of mRNA_P-fluviatile_contig9.15153.1 vs. uniprot
Match: A0A835YPM5_9STRA (Concanavalin A-like lectin/glucanase domain-containing protein (Fragment) n=1 Tax=Tribonema minus TaxID=303371 RepID=A0A835YPM5_9STRA)

HSP 1 Score: 184 bits (468), Expect = 1.270e-49
Identity = 89/153 (58.17%), Postives = 108/153 (70.59%), Query Frame = 1
Query: 8761 ASSHFPTIYLSNVG--IGAKRS-----GGRWYYEVTLLTGGLMQLGWAGPGFQCSPTRGQGVGDHMQSWAFDGFRQKRWCVSSALYGERWRAGDVVGVLLDTSLQEMRFSMNGRDLGAAFEGADMQGLYPAASMNAGQAALFNFGHSPFLYAP 9198
            A+SHFP++ L+ VG  +G   +     GGRW+YEV + T GLMQ+GWA   F C P  G+GVGDH  SWA+DG+R+KRWCV SA YG RW+AGD VGVLLD  L EMRF +NG DLG AF G    G++PAAS+N GQ+A FNFG  PF Y P
Sbjct:    1 AASHFPSVRLAGVGSRLGPIATAGGGWGGRWFYEVVVRTDGLMQVGWADREFGCDPVLGRGVGDHPHSWAYDGYRRKRWCVESAPYGGRWQAGDTVGVLLDADLLEMRFYLNGEDLGVAFVGFQADGIFPAASLNVGQSARFNFGQGPFAYPP 153          
BLAST of mRNA_P-fluviatile_contig9.15153.1 vs. uniprot
Match: T0Q8S5_SAPDV (Uncharacterized protein n=1 Tax=Saprolegnia diclina (strain VS20) TaxID=1156394 RepID=T0Q8S5_SAPDV)

HSP 1 Score: 209 bits (531), Expect = 1.720e-49
Identity = 151/440 (34.32%), Postives = 205/440 (46.59%), Query Frame = 1
Query: 8335 HLRCRLVRALGVQARHIGQAAAAVRKRVFGPILGLAAMPLASAVVLALGSEGAVAFGRRSEFAAVFLALRHQRTASE--ASLLSDLESASQIMWQRLISTGKGDDTERGSRCRPRPVGGHVKYRGGPALQVLGGEALVEGNRVTASSHFPTIYLSNVGIGAKRSGGRWYYEVTLLTGGLMQLGWAGPGFQCSPTRGQGVGDHMQSWAFDGFRQKRWCVSSALYGERWRAGDVVGVLLDTSLQEMRFSMNGRDLGAAFEGADM-QGLYPAASMNAGQAALFNFGHSPFLYAPTDSNRSPCQPVSGAVATDVVAHSHVAGSAELRDSSGVDEDRAEARRANGSSQDDTREVSPSAIRGRNAAAATGAXXXXXXXXXXXXXXXXXXGESDDDSRLEFERQALVQNLIAMGFPVEWALRAAGRPGSVMSESAAAAWIIERLEIE 9645
            HLR  L+R   +QA+H     A ++  + G  L LA  PLA AV    GS+  +     +  A +   L    T  +  +   + LE  S ++++RL                PR V           LQVLGG+  +E  RV    HFPTI L+ V I A    G W+YEV LLT GLMQ+GW    F+ +  +GQGVGDH  SWA+DGFR+K+W V +  YG+RW  GDVVGVLLDT   EM + +NGR LG AFEG  +   L+PA S+N  QA   +F  + FLY PT  N +  QPV+ A+   V  HS   G   +                                                              E+D ++ ++  R  L+  LI +GF  EWALR A      ++ESAA AWI+E++E +
Sbjct: 2073 HLRSSLLRLCRLQAQHTAAVDALLKPGLIG-FLQLAIQPLAEAVATVFGSDFDIISKLDTVQALLEWILDDAETPHDGGSKRRAALEMLSTVLFERL------------PYVNPREVAPWWLVNATQKLQVLGGDVEMEEYRVKGLQHFPTIKLTGVSITAGT--GMWFYEVVLLTDGLMQIGWVDTAFEANAIQGQGVGDHTNSWAYDGFRRKKWNVGALEYGDRWHVGDVVGVLLDTDRFEMTYFLNGRSLGVAFEGLHLTHALFPAMSLNVDQAVQLHFAKNQFLYCPTLDN-AKLQPVASAIVGGVCEHSPSKGRLSV--------------------------------------------------------------ETDHEAAIDRRRTDLIDGLIGLGFSPEWALRCARETSLDINESAAIAWIMEQMEAD 2434          
BLAST of mRNA_P-fluviatile_contig9.15153.1 vs. uniprot
Match: A0A067D5R0_SAPPC (Uncharacterized protein n=1 Tax=Saprolegnia parasitica (strain CBS 223.65) TaxID=695850 RepID=A0A067D5R0_SAPPC)

HSP 1 Score: 207 bits (526), Expect = 5.600e-49
Identity = 123/313 (39.30%), Postives = 171/313 (54.63%), Query Frame = 3
Query: 12633 PEIPFMLDAEGCGPNLRLTNSNLTVTNTGRKKWSTVRATRGFTCGVHRWNVRIDRCVSKNVFVGVMSSESRLNNYVGSDKLGWGFLANKAIWHDKSKVRSYGDLFREGDTIGVSLNMDLGTLRFARNGCDLGLAMQGLEGT--------LYPAFSMYNRSDRLTFMPPEDHAAPTATSAVGTAFGEKGERSPDGGEDVLYGTFSAECVVR-RASKVVEVLGVLNHDGKF-ASPAGVELVDTLRSRLRQWSRGKQGRSLQSPRKFAPVRVGTFNQARRGSFGLGVGDRVLTADGHATVLGETRHSLWVEVETHS 13541
            PE    LDA   G NL L + N+T  N   KKW  VRA+ GFT GVH W+VRID+CVSKN+FVGV +S++ L+NYVGSD  GWGFLANKA+WH+K+K+++YGD+F++GD + V L++D+GTL FARNG   G+A++ L GT         YPA SMYN+ D++T +P     AP  +S  G +              VL    S   ++  R+  +       +H  K+ A    V ++D        W                 + V T   A R  FGL  GD + T+ G  T+LG  +H L+  +E H+
Sbjct: 1766 PESVLELDAGAVGGNLELLHHNMTARNRVNKKWHAVRASVGFTSGVHAWDVRIDKCVSKNIFVGVCTSDACLDNYVGSDAYGWGFLANKAVWHNKTKLQTYGDIFKQGDVVSVVLDLDVGTLSFARNGESFGVAVENLHGTHPSVVAPAYYPAISMYNKDDQVTLLPSSSSDAPVRSSVAGAS------------STVLLALASHHKLLEMRSLSLASTAEAYDHWCKWIAREEAVVMLDDG-----TW-----------------LLVTTTPDACR-PFGLFPGDVIFTSKGMCTILGVAKHELYYSIEAHA 2043          
BLAST of mRNA_P-fluviatile_contig9.15153.1 vs. uniprot
Match: A0A024UHM2_9STRA (Uncharacterized protein n=1 Tax=Aphanomyces invadans TaxID=157072 RepID=A0A024UHM2_9STRA)

HSP 1 Score: 201 bits (512), Expect = 2.240e-47
Identity = 122/306 (39.87%), Postives = 168/306 (54.90%), Query Frame = 3
Query: 12651 LDAEGCGPNLRLTNSNLTVTNTGRKKWSTVRATRGFTCGVHRWNVRIDRCVSKNVFVGVMSSESRLNNYVGSDKLGWGFLANKAIWHDKSKVRSYGDLFREGDTIGVSLNMDLGTLRFARNGCDLGLAMQGL---EGTLYPAFSMYNRSDRLTFMPPEDHAAPTATSAVGTAFGEKGERSPDGGEDVLYGTFSAECVVRRASKVVEVLGVLNHDGKFASPAGVELVDTLRSRLRQWSRGKQGRSLQSPRKFAPVRVGTFNQARRGSFGLGVGDRVLTADGHATVLGETRHSLWVEVETHSSSPASP 13559
            LD    G NL L N N++V N   KKW  VRA+  +T GVH W+VRID+CVSKN+FVG+ ++++ + NYVGSD  GWGFLANKA+WH+KSK+++YGD+F++GD + V+LN+D GTL FARNG   G+ ++ L   E   YPA SMYN+ D++TF+P   H A  A+ A                        S    V R  + V+ L  L  D   +S   +   D   + + QW+ G+      +  +   V V     A    FGL  GD V T  G  T+LG   H +W  +E+HS  P  P
Sbjct: 1458 LDPSSMGANLELLNYNMSVRNRVNKKWHAVRASVSYTSGVHTWDVRIDKCVSKNIFVGICTADASMENYVGSDAWGWGFLANKAVWHNKSKLQTYGDIFKQGDVVTVTLNLDRGTLSFARNGDSFGVGVEHLPSHEAAYYPAISMYNKDDQVTFLP---HEAAMASKAAK----------------------SGVASVMRMVRDVQRLHALWDD---SSQPPLHDNDVYSAWV-QWTLGQLVYVTGAQGEILAVDVSDKACA---PFGLSPGDVVFTTKGMCTILGVAHHQMWYYLESHSP-PTGP 1730          
The following BLAST results are available for this feature:
BLAST of mRNA_P-fluviatile_contig9.15153.1 vs. uniprot
Analysis Date: 2022-09-19 (Diamond blastx: OGS1.0 vs UniRef90)
Total hits: 25
Match NameE-valueIdentityDescription
D7G598_ECTSI0.000e+046.50Uncharacterized protein n=2 Tax=Ectocarpus TaxID=2... [more]
A0A6H5JWE1_9PHAE4.950e-22551.09B30.2/SPRY domain-containing protein n=2 Tax=Ectoc... [more]
A0A7S3NNH0_9STRA3.940e-7027.40Hypothetical protein n=1 Tax=Aureoumbra lagunensis... [more]
A0A7S1XME8_9STRA2.140e-5844.40Hypothetical protein (Fragment) n=1 Tax=Phaeomonas... [more]
A0A836CAJ1_9STRA1.820e-5460.13Concanavalin A-like lectin/glucanase domain-contai... [more]
A0A0P1AS96_PLAHL4.740e-5040.13FOG: RCC1 domain n=1 Tax=Plasmopara halstedii TaxI... [more]
A0A835YPM5_9STRA1.270e-4958.17Concanavalin A-like lectin/glucanase domain-contai... [more]
T0Q8S5_SAPDV1.720e-4934.32Uncharacterized protein n=1 Tax=Saprolegnia diclin... [more]
A0A067D5R0_SAPPC5.600e-4939.30Uncharacterized protein n=1 Tax=Saprolegnia parasi... [more]
A0A024UHM2_9STRA2.240e-4739.87Uncharacterized protein n=1 Tax=Aphanomyces invada... [more]

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Alignments
The following features are aligned
Aligned FeatureFeature TypeAlignment Location
P-fluviatile_contig9contigP-fluviatile_contig9:1432070..1454081 +
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 score1159.4
Seed ortholog evalue0.0
Seed eggNOG ortholog2880.D7G598
KEGG koko:K17849
EggNOG free text desc.guanyl-nucleotide exchange factor activity
EggNOG OGsCOG5184@1,KOG1426@2759
EC2.3.2.26
COG Functional cat.DZ
Best tax levelEukaryota
Best eggNOG OGNA|NA|NA
BRITEko00000,ko01000,ko04121
Hectar predicted targeting categoryother localisation
Ec32 ortholog descriptionRegulator of chromosome condensation 1/beta-lactamase-inhibitor protein II
Ec32 orthologEc-14_006730.1
Exons28
Model size15431
Cds size10236
Stop1
Start1
Relationships

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

Feature NameUnique NameSpeciesTypePosition
mRNA_P-fluviatile_contig9.15153.1prot_P-fluviatile_contig9.15153.1Porterinema fluviatile SAG_2381polypeptideP-fluviatile_contig9 1432199..1447009 +


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

Feature NameUnique NameSpeciesTypePosition
1622817322.6007838-UTR-P-fluviatile_contig9:1432069..14321981622817322.6007838-UTR-P-fluviatile_contig9:1432069..1432198Porterinema fluviatile SAG_2381UTRP-fluviatile_contig9 1432070..1432198 +
1693572059.4862154-UTR-P-fluviatile_contig9:1432069..14321981693572059.4862154-UTR-P-fluviatile_contig9:1432069..1432198Porterinema fluviatile SAG_2381UTRP-fluviatile_contig9 1432070..1432198 +
1622817322.8265011-UTR-P-fluviatile_contig9:1447009..14470261622817322.8265011-UTR-P-fluviatile_contig9:1447009..1447026Porterinema fluviatile SAG_2381UTRP-fluviatile_contig9 1447010..1447026 +
1693572059.8082812-UTR-P-fluviatile_contig9:1447009..14470261693572059.8082812-UTR-P-fluviatile_contig9:1447009..1447026Porterinema fluviatile SAG_2381UTRP-fluviatile_contig9 1447010..1447026 +
1622817322.8427305-UTR-P-fluviatile_contig9:1447157..14473171622817322.8427305-UTR-P-fluviatile_contig9:1447157..1447317Porterinema fluviatile SAG_2381UTRP-fluviatile_contig9 1447158..1447317 +
1693572059.8168304-UTR-P-fluviatile_contig9:1447157..14473171693572059.8168304-UTR-P-fluviatile_contig9:1447157..1447317Porterinema fluviatile SAG_2381UTRP-fluviatile_contig9 1447158..1447317 +
1622817322.8530822-UTR-P-fluviatile_contig9:1447552..14490621622817322.8530822-UTR-P-fluviatile_contig9:1447552..1449062Porterinema fluviatile SAG_2381UTRP-fluviatile_contig9 1447553..1449062 +
1693572059.8254187-UTR-P-fluviatile_contig9:1447552..14490621693572059.8254187-UTR-P-fluviatile_contig9:1447552..1449062Porterinema fluviatile SAG_2381UTRP-fluviatile_contig9 1447553..1449062 +
1622817322.863127-UTR-P-fluviatile_contig9:1449274..14500181622817322.863127-UTR-P-fluviatile_contig9:1449274..1450018Porterinema fluviatile SAG_2381UTRP-fluviatile_contig9 1449275..1450018 +
1693572059.8347042-UTR-P-fluviatile_contig9:1449274..14500181693572059.8347042-UTR-P-fluviatile_contig9:1449274..1450018Porterinema fluviatile SAG_2381UTRP-fluviatile_contig9 1449275..1450018 +
1622817322.8735607-UTR-P-fluviatile_contig9:1450244..14503711622817322.8735607-UTR-P-fluviatile_contig9:1450244..1450371Porterinema fluviatile SAG_2381UTRP-fluviatile_contig9 1450245..1450371 +
1693572059.8450596-UTR-P-fluviatile_contig9:1450244..14503711693572059.8450596-UTR-P-fluviatile_contig9:1450244..1450371Porterinema fluviatile SAG_2381UTRP-fluviatile_contig9 1450245..1450371 +
1622817322.8846467-UTR-P-fluviatile_contig9:1450509..14506701622817322.8846467-UTR-P-fluviatile_contig9:1450509..1450670Porterinema fluviatile SAG_2381UTRP-fluviatile_contig9 1450510..1450670 +
1693572059.8650753-UTR-P-fluviatile_contig9:1450509..14506701693572059.8650753-UTR-P-fluviatile_contig9:1450509..1450670Porterinema fluviatile SAG_2381UTRP-fluviatile_contig9 1450510..1450670 +
1622817322.897392-UTR-P-fluviatile_contig9:1450910..14520501622817322.897392-UTR-P-fluviatile_contig9:1450910..1452050Porterinema fluviatile SAG_2381UTRP-fluviatile_contig9 1450911..1452050 +
1693572059.8757915-UTR-P-fluviatile_contig9:1450910..14520501693572059.8757915-UTR-P-fluviatile_contig9:1450910..1452050Porterinema fluviatile SAG_2381UTRP-fluviatile_contig9 1450911..1452050 +
1622817322.9088411-UTR-P-fluviatile_contig9:1452231..14524501622817322.9088411-UTR-P-fluviatile_contig9:1452231..1452450Porterinema fluviatile SAG_2381UTRP-fluviatile_contig9 1452232..1452450 +
1693572059.8843677-UTR-P-fluviatile_contig9:1452231..14524501693572059.8843677-UTR-P-fluviatile_contig9:1452231..1452450Porterinema fluviatile SAG_2381UTRP-fluviatile_contig9 1452232..1452450 +
1622817322.9215896-UTR-P-fluviatile_contig9:1452709..14528571622817322.9215896-UTR-P-fluviatile_contig9:1452709..1452857Porterinema fluviatile SAG_2381UTRP-fluviatile_contig9 1452710..1452857 +
1693572059.8924704-UTR-P-fluviatile_contig9:1452709..14528571693572059.8924704-UTR-P-fluviatile_contig9:1452709..1452857Porterinema fluviatile SAG_2381UTRP-fluviatile_contig9 1452710..1452857 +
1622817322.9346898-UTR-P-fluviatile_contig9:1453061..14537221622817322.9346898-UTR-P-fluviatile_contig9:1453061..1453722Porterinema fluviatile SAG_2381UTRP-fluviatile_contig9 1453062..1453722 +
1693572059.9007955-UTR-P-fluviatile_contig9:1453061..14537221693572059.9007955-UTR-P-fluviatile_contig9:1453061..1453722Porterinema fluviatile SAG_2381UTRP-fluviatile_contig9 1453062..1453722 +
1622817322.9460533-UTR-P-fluviatile_contig9:1453902..14540811622817322.9460533-UTR-P-fluviatile_contig9:1453902..1454081Porterinema fluviatile SAG_2381UTRP-fluviatile_contig9 1453903..1454081 +
1693572059.908999-UTR-P-fluviatile_contig9:1453902..14540811693572059.908999-UTR-P-fluviatile_contig9:1453902..1454081Porterinema fluviatile SAG_2381UTRP-fluviatile_contig9 1453903..1454081 +


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

Feature NameUnique NameSpeciesTypePosition
1622817322.6131911-CDS-P-fluviatile_contig9:1432198..14324141622817322.6131911-CDS-P-fluviatile_contig9:1432198..1432414Porterinema fluviatile SAG_2381CDSP-fluviatile_contig9 1432199..1432414 +
1693572059.622452-CDS-P-fluviatile_contig9:1432198..14324141693572059.622452-CDS-P-fluviatile_contig9:1432198..1432414Porterinema fluviatile SAG_2381CDSP-fluviatile_contig9 1432199..1432414 +
1622817322.6227086-CDS-P-fluviatile_contig9:1432626..14328481622817322.6227086-CDS-P-fluviatile_contig9:1432626..1432848Porterinema fluviatile SAG_2381CDSP-fluviatile_contig9 1432627..1432848 +
1693572059.6321762-CDS-P-fluviatile_contig9:1432626..14328481693572059.6321762-CDS-P-fluviatile_contig9:1432626..1432848Porterinema fluviatile SAG_2381CDSP-fluviatile_contig9 1432627..1432848 +
1622817322.6349118-CDS-P-fluviatile_contig9:1433486..14338591622817322.6349118-CDS-P-fluviatile_contig9:1433486..1433859Porterinema fluviatile SAG_2381CDSP-fluviatile_contig9 1433487..1433859 +
1693572059.6438236-CDS-P-fluviatile_contig9:1433486..14338591693572059.6438236-CDS-P-fluviatile_contig9:1433486..1433859Porterinema fluviatile SAG_2381CDSP-fluviatile_contig9 1433487..1433859 +
1622817322.6460354-CDS-P-fluviatile_contig9:1434125..14344031622817322.6460354-CDS-P-fluviatile_contig9:1434125..1434403Porterinema fluviatile SAG_2381CDSP-fluviatile_contig9 1434126..1434403 +
1693572059.655377-CDS-P-fluviatile_contig9:1434125..14344031693572059.655377-CDS-P-fluviatile_contig9:1434125..1434403Porterinema fluviatile SAG_2381CDSP-fluviatile_contig9 1434126..1434403 +
1622817322.6615286-CDS-P-fluviatile_contig9:1434646..14348171622817322.6615286-CDS-P-fluviatile_contig9:1434646..1434817Porterinema fluviatile SAG_2381CDSP-fluviatile_contig9 1434647..1434817 +
1693572059.6655023-CDS-P-fluviatile_contig9:1434646..14348171693572059.6655023-CDS-P-fluviatile_contig9:1434646..1434817Porterinema fluviatile SAG_2381CDSP-fluviatile_contig9 1434647..1434817 +
1622817322.6765435-CDS-P-fluviatile_contig9:1435004..14358831622817322.6765435-CDS-P-fluviatile_contig9:1435004..1435883Porterinema fluviatile SAG_2381CDSP-fluviatile_contig9 1435005..1435883 +
1693572059.675371-CDS-P-fluviatile_contig9:1435004..14358831693572059.675371-CDS-P-fluviatile_contig9:1435004..1435883Porterinema fluviatile SAG_2381CDSP-fluviatile_contig9 1435005..1435883 +
1622817322.6894686-CDS-P-fluviatile_contig9:1436000..14361531622817322.6894686-CDS-P-fluviatile_contig9:1436000..1436153Porterinema fluviatile SAG_2381CDSP-fluviatile_contig9 1436001..1436153 +
1693572059.6851802-CDS-P-fluviatile_contig9:1436000..14361531693572059.6851802-CDS-P-fluviatile_contig9:1436000..1436153Porterinema fluviatile SAG_2381CDSP-fluviatile_contig9 1436001..1436153 +
1622817322.7006795-CDS-P-fluviatile_contig9:1436393..14376801622817322.7006795-CDS-P-fluviatile_contig9:1436393..1437680Porterinema fluviatile SAG_2381CDSP-fluviatile_contig9 1436394..1437680 +
1693572059.700712-CDS-P-fluviatile_contig9:1436393..14376801693572059.700712-CDS-P-fluviatile_contig9:1436393..1437680Porterinema fluviatile SAG_2381CDSP-fluviatile_contig9 1436394..1437680 +
1622817322.7120936-CDS-P-fluviatile_contig9:1437930..14382991622817322.7120936-CDS-P-fluviatile_contig9:1437930..1438299Porterinema fluviatile SAG_2381CDSP-fluviatile_contig9 1437931..1438299 +
1693572059.711009-CDS-P-fluviatile_contig9:1437930..14382991693572059.711009-CDS-P-fluviatile_contig9:1437930..1438299Porterinema fluviatile SAG_2381CDSP-fluviatile_contig9 1437931..1438299 +
1622817322.7229028-CDS-P-fluviatile_contig9:1438551..14388591622817322.7229028-CDS-P-fluviatile_contig9:1438551..1438859Porterinema fluviatile SAG_2381CDSP-fluviatile_contig9 1438552..1438859 +
1693572059.7227466-CDS-P-fluviatile_contig9:1438551..14388591693572059.7227466-CDS-P-fluviatile_contig9:1438551..1438859Porterinema fluviatile SAG_2381CDSP-fluviatile_contig9 1438552..1438859 +
1622817322.7344174-CDS-P-fluviatile_contig9:1439080..14394131622817322.7344174-CDS-P-fluviatile_contig9:1439080..1439413Porterinema fluviatile SAG_2381CDSP-fluviatile_contig9 1439081..1439413 +
1693572059.7313733-CDS-P-fluviatile_contig9:1439080..14394131693572059.7313733-CDS-P-fluviatile_contig9:1439080..1439413Porterinema fluviatile SAG_2381CDSP-fluviatile_contig9 1439081..1439413 +
1622817322.7447426-CDS-P-fluviatile_contig9:1439852..14399571622817322.7447426-CDS-P-fluviatile_contig9:1439852..1439957Porterinema fluviatile SAG_2381CDSP-fluviatile_contig9 1439853..1439957 +
1693572059.739699-CDS-P-fluviatile_contig9:1439852..14399571693572059.739699-CDS-P-fluviatile_contig9:1439852..1439957Porterinema fluviatile SAG_2381CDSP-fluviatile_contig9 1439853..1439957 +
1622817322.7570627-CDS-P-fluviatile_contig9:1440286..14405271622817322.7570627-CDS-P-fluviatile_contig9:1440286..1440527Porterinema fluviatile SAG_2381CDSP-fluviatile_contig9 1440287..1440527 +
1693572059.7507281-CDS-P-fluviatile_contig9:1440286..14405271693572059.7507281-CDS-P-fluviatile_contig9:1440286..1440527Porterinema fluviatile SAG_2381CDSP-fluviatile_contig9 1440287..1440527 +
1622817322.7690206-CDS-P-fluviatile_contig9:1440688..14446921622817322.7690206-CDS-P-fluviatile_contig9:1440688..1444692Porterinema fluviatile SAG_2381CDSP-fluviatile_contig9 1440689..1444692 +
1693572059.7586727-CDS-P-fluviatile_contig9:1440688..14446921693572059.7586727-CDS-P-fluviatile_contig9:1440688..1444692Porterinema fluviatile SAG_2381CDSP-fluviatile_contig9 1440689..1444692 +
1622817322.7809155-CDS-P-fluviatile_contig9:1444874..14453921622817322.7809155-CDS-P-fluviatile_contig9:1444874..1445392Porterinema fluviatile SAG_2381CDSP-fluviatile_contig9 1444875..1445392 +
1693572059.766868-CDS-P-fluviatile_contig9:1444874..14453921693572059.766868-CDS-P-fluviatile_contig9:1444874..1445392Porterinema fluviatile SAG_2381CDSP-fluviatile_contig9 1444875..1445392 +
1622817322.7929108-CDS-P-fluviatile_contig9:1445652..14457811622817322.7929108-CDS-P-fluviatile_contig9:1445652..1445781Porterinema fluviatile SAG_2381CDSP-fluviatile_contig9 1445653..1445781 +
1693572059.7767076-CDS-P-fluviatile_contig9:1445652..14457811693572059.7767076-CDS-P-fluviatile_contig9:1445652..1445781Porterinema fluviatile SAG_2381CDSP-fluviatile_contig9 1445653..1445781 +
1622817322.8058724-CDS-P-fluviatile_contig9:1446107..14462641622817322.8058724-CDS-P-fluviatile_contig9:1446107..1446264Porterinema fluviatile SAG_2381CDSP-fluviatile_contig9 1446108..1446264 +
1693572059.7874348-CDS-P-fluviatile_contig9:1446107..14462641693572059.7874348-CDS-P-fluviatile_contig9:1446107..1446264Porterinema fluviatile SAG_2381CDSP-fluviatile_contig9 1446108..1446264 +
1622817322.8166902-CDS-P-fluviatile_contig9:1446516..14470091622817322.8166902-CDS-P-fluviatile_contig9:1446516..1447009Porterinema fluviatile SAG_2381CDSP-fluviatile_contig9 1446517..1447009 +
1693572059.799494-CDS-P-fluviatile_contig9:1446516..14470091693572059.799494-CDS-P-fluviatile_contig9:1446516..1447009Porterinema fluviatile SAG_2381CDSP-fluviatile_contig9 1446517..1447009 +


Sequences
The following sequences are available for this feature:

protein sequence of mRNA_P-fluviatile_contig9.15153.1

>prot_P-fluviatile_contig9.15153.1 ID=prot_P-fluviatile_contig9.15153.1|Name=mRNA_P-fluviatile_contig9.15153.1|organism=Porterinema fluviatile SAG_2381|type=polypeptide|length=3412bp
MNGCRRVPAWREASAGKSACLTSPAMLHRSAVCGERGHADSFIVRQVFAH
RPNVTDVACGQEHILALLETGQVCSWGNGRNGRLGLGDTKDRLSACHVEA
IQGIEIEAVFCGASHSMAVCSTGVCYAWGKNNSGQCGDTNVLGSDALIPR
MIESLRHIPVAAMAGGWKHTLVLTRCGTMFSFGSGFKHKCMSTGPAAVLG
ISAAASAATADGTHNKQGGSSPTKVCDDALNSARVKTIACGWDHCLAATE
DGALFTWGSGRHGQLGHGDTEPRYTPTRVAFFTSSAGLWVRSIVGGRTYS
AVATVDGRVFKWGLNRAPRSSSGKERNRDEERRGGADRDLSEEDGTVALE
ALVPRQVAGIGMENPRALRLGEGEDFDSVLVELRSAAESHPPSLVHPSEH
STKALVSTLGLDVPDDPSCPVGRIETTVALLRHFERLAVPHTPRYAASDV
DRRIYQAIRIGKRLRKRTWQKGTIPSARANREGDLSTTPGTDQEFGVTLS
NSDSMDVSKHVPHVSLAEGQRTRQEALNIESRIPPSVAPFCVDTSVHTFR
SFLDLIKAIRHRMSPVPVGIERADSSPLSKRKASKSQISTGAAGPKSCDK
KIAAGGLSDLGALDNRVPEEIREDWNGFPVASRSIAMEVLRVTLKLLKTN
LFHLVGIVAMRRSCRGNGDNVPRDATVEEKTISTKPRSSDRDYRDSSGIK
ARTATRKEIHTGQAWGQEGAPGAKECAHDMHGVIQELHAELHAILEEDIA
YGDPGATNAALAVQAEAAEAFRVGFSLFYPSNPARVRVLNDIVRTVTAAG
SPSPERNQRHGDKRESRRRAHHAKSHSKSRQRVRLASKLNGVLVRLAVEA
LTREKYAAGLITGAFSHEGWGGIGLDGAGTATGESGERFDASALDAVMRS
LLSHCAGDLHKRLWGEGVRDQAGENRSGISENGEATCPFSRLLLVLQTHV
LAFWGGTEHDGAAIAARELSLAHASRLLEQSLQIFTRFLLTEGDQADVGA
QDDRCHGDGHPQLDALRNSFVSLVPVLCTSVVALPTVGEELLTRAARLLP
LVIPLTRAVGRFDRPRLRDAEVDAPVQSERSSLGWLTELEAALAVLSSDL
VCGLIDVRATNLQRHVGVPSQANNGGGGGGGDGGGGGYHGDQSQNDEHGD
DVIARLLGSSPFLAYSHENFDWSGLQDNIVAQRNSLAFVRAHEVIKFQES
VTKEACGCSRPAQSQTSALGLASSNPTSSHQPPRQNVTSRGRRRASHDTA
TKLCPIDGSVYSNGLPGQLSPSSAPTKHQGPGGKATGEEGNGGNGGNGGV
GNNRQLDRIVDEARAEGFIQDILCGQGAANALYLWMTIPPASHVPVLHAT
SLATQGQGWGSYQSLSATSVPSQQQQNDNSFRRRRSRALPSDIDAATRAL
VAVIIKGNRAVAEAATFARCRLDRASSPPRALRLVAAAAVEVREALAGLA
DCLETEKSAGRYTGGDPGDRRNEDGGMGGHETHDSLRNVSEETSAAGLSS
TAAATLANIVRNCRFLLECTHHLPPIEVARKGNQMDTSIRRQRSASRSAV
DNRQRHRELSQTLSRWAAGARNNVIDEGPVKLLERIVKLMAEGLVDEALS
VAEAAPRPCLPSRSASLESLVAFAASPIPLGAVSARMGLHEISAKVRVAG
FRLIHVIINETHVPAARRQIGARLARSLSTTGGGIDNSALCNGVGAGENP
GRIGFRSAYFDLFRHVVHGAEKEDSTFKSQGGKAKTTDSSSSQMVFLQML
QSLASLLTPSILRYDPLVSSTSEYSRSWPRRQEPQTVEAINLFDNQGWPG
RTGRASSCPAITRAEVSVSKAVIPADQESTPVVIAAISILGVVLSGQGDI
LSTDDWGPGSTHKNSGIHHAAWRALGVISMRVSPSSAPAWATHTTSGGHG
FEPSRLGAGELERPPATRESWNATLATLRVIFDELTRARDWVEKLQQSRM
AEELLLIATGALRLSADDPAASLWVQPNWILPELSKEDGKEIGALSFWIY
RPLDTTDQQLSTRREKLGENVCSSSCRDKTYCTSRIKVFALLHEGRHPDK
TRNEVFDLFVRIYSSQVLPREESGMHGSSDGGEDGCYVQVVLGRIKERSG
GEINNRSELGDGKGGVFAATVRAADGTHEADEGEEAKNAGADESRNESVD
FKTECFFSACSLPRGQWTHVYCTYSIKRGSIVDKRDATSRGGADNASGDV
QSEVSIALNGSFAANHALPSSRTSGAKDAIAPQDRPPTHGEMEPGELDQY
PTRKQDLTPLASEQWNGTPTVCDVWWHSRKASPRQVRQMAESGIPRHRKS
AQRAAENYIARLVALAEDMVASSQRVAATLSSPRWRSLWLELMSVAGDRA
KRSIVRLLRPLLCVSSQPASDDDEGTRATPTAPSYNPPASPTYENGVGDR
AMVDSLCALLGQTLRPLFLCHPSSRGSEGGGGDRTWRQSSRLRQDSSMPS
EIVMLLRSLVAEVPNRWRKHVFGALSDGLASAAKGEMCSLDVASGGSGTG
LKEDDRAWTWLGAALAAAYLGGGHVEGPRLGATVLLVPSPECIPLSSSKA
GKIGCQRESWNQNNEGLLNELLGGTCSPLDTGFVSEAAVKHTCRGTIVGW
VRHKPEQLTTPPEGMLFVAVDDQHQEYLDDEDAESNRSPPKSYTRSQAAE
DRCCADASWTSRIVAVQTQQVLFQEEIVEPVTPFLFQVALPSVLALLDLP
FATTTRATSASSGEQQPPNSGVTPALVEPHRVVAAHLRCRLVRALGVQAR
HIGQAAAAVRKRVFGPILGLAAMPLASAVVLALGSEGAVAFGRRSEFAAV
FLALRHQRTASEASLLSDLESASQIMWQRLISTGKGDDTERGSRCRPRPV
GGHVKYRGGPALQVLGGEALVEGNRVTASSHFPTIYLSNVGIGAKRSGGR
WYYEVTLLTGGLMQLGWAGPGFQCSPTRGQGVGDHMQSWAFDGFRQKRWC
VSSALYGERWRAGDVVGVLLDTSLQEMRFSMNGRDLGAAFEGADMQGLYP
AASMNAGQAALFNFGHSPFLYAPTDSNRSPCQPVSGAVATDVVAHSHVAG
SAELRDSSGVDEDRAEARRANGSSQDDTREVSPSAIRGRNAAAATGAGRS
EIQVHASSGEGYGRGGESDDDSRLEFERQALVQNLIAMGFPVEWALRAAG
RPGSVMSESAAAAWIIERLEIENTKMEEEMGDMDACEEDSTGGDSAYNDD
TGGSEDGDVRNTGIGFTSEAAGVARRVEGRRVIAHEQGRNRRWHDMYSTV
SRSFLPDSNGESPATAAVLPSGSLASSPIETAFLASAEAAMMEETQQTPN
GFTRVALSANKSDLQSLTLVVDTALTILYARAAAINVLMHIVTPSATNTC
PSPRFGLATSDGSRLPTCTGEGSGELERTTAIEVAHGILEALAIPENQRR
FQSFTKALVTW*
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mRNA from alignment at P-fluviatile_contig9:1432070..1454081+

Legend: UTRpolypeptideCDS
Hold the cursor over a type above to highlight its positions in the sequence below.
>mRNA_P-fluviatile_contig9.15153.1 ID=mRNA_P-fluviatile_contig9.15153.1|Name=mRNA_P-fluviatile_contig9.15153.1|organism=Porterinema fluviatile SAG_2381|type=mRNA|length=22012bp|location=Sequence derived from alignment at P-fluviatile_contig9:1432070..1454081+ (Porterinema fluviatile SAG_2381)
GCTTCTACTGCGTGTCATCGCATCGCGCTCACTGTCGACGGGGAACTGCT AACGTGGAGCTGTAGGAGTGCAAAAGCTGGACAACGATGCAGGTGCAATG CGGAAGCCAACGAGCCTTGTCTCCGCGCGATGAATGGATGCCGACGTGTC CCCGCCTGGAGAGAAGCGAGTGCTGGAAAAAGCGCTTGCTTAACGTCCCC CGCCATGCTCCATCGCTCAGCTGTTTGCGGTGAGCGCGGCCACGCCGACT CCTTCATCGTGCGGCAAGTTTTTGCCCATAGGCCGAATGTGACAGACGTC GCATGCGGGCAGGAGCATATTCTTGCTCTTCTCGAGACTGGTCAGGTGAG AGTGTCTCGTTCAGGACGGCAGATCTCGTATGAAGTCGACGATATCGAGG TACATTCAAGTTTTATTTCGTAGCACATGGCTCTGTGGTTCATCCTGAAG TAACTTGATAAGTTGAAACGTTTGCATGCTTCGATGCATCAGCACGATGC TTGAACATGCAGAGCCCATGTTTATCGACCTCGTGACCCCTCCGGTGTGT TCCACAGGTTTGTTCGTGGGGAAATGGCCGTAACGGTAGGCTTGGCCTTG GAGACACGAAGGACCGGCTCTCCGCGTGCCATGTCGAGGCAATCCAAGGA ATTGAGATCGAAGCGGTGTTTTGCGGAGCATCGCACTCCATGGCTGTTTG CTCGACAGGAGTTTGCTACGCCTGGGGAAAGAACAACAGTGGACAGTGCG GCGACACGAATGTTTTGGGTTCAGATGCGGTGAGGACCCGGCGATTTGCT GTGGGTTTGGTGGTGTGGTCCGTGAGCGCGTAGGTTTGTCCGACATTCTC TGGCATGATCATTTACTAGAAAGGTGTTCCGCTAGCTGGAAAACGCGATG CTTTTTCGGCGGTTGGCATAAATCACTGTATACTATGTCACTTGGTGGAA CTTTCGCTTACAAAAGCGTTTTGGGTGTACCCGTTATTACGCTTGGTAGT GATCGAGTGCACATCACGCCGAGTTTTTTTATCCATTTTCATCGGCGACT AACGAGGAGTAGCACGCTCGTCAGTGTTTCTCTGTCCGTCTTAACGGCTT CTCTGCGTGGTGACAATGTCGCATTCTCATCGCCCCTTAGCTCTCCCGAC TTCCTCTGTGTTTACTTGTGACGTTTGTTTGCCTATGTTTTCCACCACAA CCTAGATTGTAGCGTTTCTCGTTTTCGTAGTTTTATTACTGAAATGTTGT AGTCCCCAAATCTACTTACGTGTCTCGGCAAAACGGAATGAGGCCAGCTT CTGCGCCAGTGCCGAGAGAAAAAAACTCGCGGTATTCTGGTTAAAACTTC TGACAGCAATCCTGGGAATGGAGGACACTAATCAAAGCTCTCCGACTGTG CCCTGTATTCGACAAAGCTCATACCTCGGATGATAGAGAGCCTCAGGCAT ATCCCAGTTGCTGCAATGGCAGGGGGCTGGAAGCACACGCTTGTGCTCAC TCGCTGTGGGACGATGTTCAGCTTCGGCAGTGGGTTCAAGCACAAGTGTA TGTCTACAGGACCTGCGGCTGTCCTCGGCATTTCTGCGGCGGCGTCTGCG GCCACGGCGGACGGCACACACAACAAGCAGGGTGGTAGTTCTCCGACAAA GGTTTGCGATGATGCCCTTAACTCTGCGAGAGTGAAAACCATTGCATGCG GATGGGACCATTGTCTCGCGGCGACGGAAGACGGCGCATTGTTTACCTGG GGCTCAGGTCGCCATGGACAACTGGGTCACGGCGATACAGGTGGGACTCG GTAGCACCGGATGTAGTTCCGCAAAGTGGTGAGAAATTGGTGGTCAGGGT CGCAGGAGTAAGCCTGAAATAGGTAGCCAAAACTAAGGATAAAACTAGCA GCGAATCCCAGGTCTGCTGGTCAATGCCGTCCGAAGTTTCCTACAACTCG CGGTGATCGGTGCCTTTTGAAAGCGATCCACGTTTCCATTCTTCACCCGC CTCGTATTTCCGCCACATCTCTGATGGATTCCCCCTCCTCGTTTTCCGCC GCACAGAGCCTCGCTATACTCCAACCCGGGTGGCCTTCTTCACATCCTCT GCTGGTCTCTGGGTTCGCTCTATCGTAGGAGGGCGGACCTACAGCGCCGT GGCGACTGTTGACGGCCGGGTGTTCAAGTGGGGTCTGAATCGTGCGCCGA GATCATCGAGTGGGAAAGAGCGAAACAGGGACGAAGAACGGAGAGGAGGT GCAGACAGAGATCTCAGCGAGGAAGATGGAACGGTTGCACTTGAGGCATT GGTCCCCCGCCAGGTGGCCGGGATCGGTATGGAGGTGAGCCCTCCTCCAC AGAAAGCGGCCAGGAATGACGTGGAGCGATCAGTTGACATAAAAATCGAG AGGCAGAACCTGTGCCCGCTGCCTGGTTCGAGGCGAGGCTCATGTTGGAC TAGGCGTTCATACTGTGGGTTTTCGGTTCTGTAGGTGCTGACAGTGTTCG CTGCCTGGTATCAACGCAAAGTTCATGTTGAACTAAGCGGTCATTCTGTG GGTTTTCGATACTGTTGGCGCTGACAGAACCCACGAGCACTACGCCTTGG CGAAGGAGAAGATTTCGACTCGGTGCTCGTCGAGCTACGGTCGGCGGCCG AATCTCACCCGCCATCCCTCGTCCACCCTAGTGAGCACTCTACGAAAGCG CTGGTATCGACTCTAGGACTGGACGTTCCTGACGACCCTTCTTGTCCGGT AAGGGTGGCACACTTTGTGCATGTACCGGGCAACAGCCGCGTAACTGCGA TGGGACGTGTAAGTTGCGAGGTCCACAGCGGTATTTCCGCTGATTCCTTA AAATATGAAGACTCGGGTTCCTGATCACGTCTCGTTGAACGCACGCATGT CACTCGTGTGGTGTCGGCCGCCAATTAATCTAAAGGTCGGCCGGATTGAG ACGACAGTAGCACTTCTTCGTCATTTCGAGAGGTTGGCTGTTCCTCACAC CCCGAGGTACGCCGCAAGCGACGTCGATCGCAGGATCTACCAAGCGATCA GGATTGGCAAAAGGCTTCGGAAGCGGACGTGGCAAAAAGGCACGATACCT TCGGCGAGGGCAAACCGCGAAGGAGACTTGTCGACGACTCCAGGCACGGA TCAGGAGTTTGGAGTAACACTTTCGAACAGCGACAGCATGGATGTGTCCA AGCACGTGCCACATGTATCCTTAGCTGAAGGGCAGAGGACGCGCCAAGAG GCGTTGAACATCGAGTCAAGGATACCACCGTCCGTTGCTCCTTTCTGTGT GGACACCTCAGTGCACACGTTCCGCTCATTTCTGGACCTCATCAAAGCCA TTCGCCACCGAATGAGTCCGGTTCCCGTGGGGATTGAACGCGCCGATTCT TCTCCACTATCCAAACGCAAGGCAAGCAAATCCCAGATTTCGACTGGCGC TGCCGGCCCCAAGAGCTGCGATAAAAAGATCGCTGCTGGTGGCCTTTCGG ACCTTGGAGCGCTAGATAATCGGGTTCCAGAAGAAATCCGCGAGGACTGG AATGGATTTCCCGTCGCGTCCCGATCGATTGCCATGGAAGTCTTGCGCGT TACGCTGAAACTCCTGAAGACAAACCTCTTTCACCTTGTCGGTATCGTCG CCATGAGGCGGAGTTGCCGAGGAAACGGCGACAACGTTCCACGTGATGCC ACGGTTGAGGAAAAAACTATTTCCACTAAGCCTCGGTCTTCGGACCGCGA TTACCGCGACTCCTCGGGAATAAAAGCCAGGACAGCCACTCGCAAAGAAA TTCATACGGGACAAGTGGAAGGCGGCTCGGACAGGCTGCAGTCGGCTGGA CCTCAGTCCAGGGATGACGTAGCAGCCGTCGGGACGACCCACAAGAATGC GCCGCCGGTGGTTCAATCGGTCATGCGTGAGGCCTGGGGGCAGGAAGGGG CACCGGGAGCGAAGGAGTGCGCTCACGATATGCACGGCGTCATTCAAGAG CTCCACGCTGAGTTGCATGCTATCTTGGAGGAAGACATCGCGTACGGCGA CCCAGGCGCGACCAACGCGGCCCTCGCTGTACAGGTGAAAGCGATTTGTG AACATTGCGGATTCGAAGCCTCTAATTGCAATGGTCTATACACCAAGCTC GGGCCGACCGGCACGTCTCCGAGAAACAAATCTTATGCCAAACCTCACCC GTGTTAAACCGGAGAAATACGTTTCTTGTGAATAAATGCACGCTTGATCG TATTCTAGAGCTAAGGATCTAGACTTCCATCCAGATATTAAGGTCTGACC ATTCATCACGCACGTTTCCGTCAGGCCGAAGCTGCAGAAGCTTTTCGGGT TGGCTTTAGCTTGTTTTACCCGTCCAACCCAGCACGCGTGCGGGTACTGA ACGACATTGTGAGAACAGTCACGGCGGCGGGGTCTCCCTCGCCCGAGCGT AATCAACGGCATGGCGACAAAAGAGAATCAAGGAGGCGAGCTCACCACGC GAAGTCGCACTCCAAGTCGCGGCAGCGGGTTCGACTTGCCTCTAAGTTGA ACGGGGTGTTGGTGCGACTCGCGGTTGAAGCTCTCACCCGGGAAAAGTAC GCTGCCGGACTTATAACGGGTGCCTTCAGCCACGAGGGGTGGGGAGGAAT AGGGCTTGACGGCGCCGGGACCGCAACGGGAGAATCTGGGGAGCGGTTCG ATGCTTCAGCGCTCGATGCTGTCATGAGATCGCTGCTTTCGCACTGCGCC GGTGATCTCCACAAGCGGCTGTGGGGCGAAGGCGTACGCGACCAGGCAGG GGAGAACAGAAGCGGTATTTCGGAAAATGGAGAAGCGACTTGCCCCTTTT CACGCTTGCTGTTGGTCCTGCAGACGCATGTTTTGGCCTTCTGGGGTGGC ACTGAGCACGACGGCGCTGCCATCGCTGCTCGTGAGTTGTCACTTGCTCA TGCCTCTCGTCTGCTGGAGCAAAGCCTCCAGATCTTCACAAGATTCCTTC TGACAGAGGGAGACCAGGCGGATGTCGGAGCTCAGGATGATCGATGCCAC GGGGATGGGCATCCCCAACTTGACGCGTTGCGGAACTCGTTTGTATCCCT TGTCCCCGTGCTCTGCACCTCTGTGGTCGCCCTGCCAACGGTAGGCGAGG AACTCCTGACTCGAGCAGCCCGACTGCTTCCATTGGTCATTCCTTTGACG AGGGCCGTGGGTCGCTTTGACAGGCCCCGCTTGCGCGACGCCGAAGTCGA TGCACCCGTGCAGAGTGAGCGTTCGTCACTGGGCTGGTTGACTGAGCTGG AGGCGGCCCTTGCAGTGCTCTCGTCAGACCTTGTGTGCGGCTTGATCGAC GTGAGAGCAACGAACCTGCAAAGGCACGTGGGAGTCCCTTCTCAAGCAAA CAATGGCGGTGGTGGTGGTGGTGGTGATGGAGGTGGTGGTGGCTATCATG GTGATCAAAGCCAAAACGATGAGCATGGCGACGACGTCATTGCTAGGTTG CTGGGATCATCCCCCTTCCTAGCCTACAGCCACGAGAATTTCGATTGGTC AGGCCTGCAGGACAACATTGTCGCACAGCGAAACAGCTTAGCGTTCGTTC GAGCTCATGAGGTGATGTTTGTGCACAAGATACAAGAAATACCTGTTAAT GCCTGTGTTCCCTCCAGTTTTGCTGTCGTCGACGGACGCCATGCTCTACC TCAAGAGCAATTGTCAGGGTACAGCATTCATTCCACTCTGAGCCACATGT CGTGTTCCCTTCACCAACTATCGTGCACTGAAACACTTCCCAGTTACTGT GCTTTGAAGCCATTGCGGTATCAGACGCCCGTGCGTTCGATTGGTCGTAC CCCTCCCTCAGGTGATCAAATTTCAGGAGAGTGTCACGAAAGAAGCGTGT GGATGCTCACGACCCGCTCAATCACAGACATCAGCGCTCGGGCTGGCATC ATCAAATCCAACGTCTAGTCATCAGCCTCCTCGCCAGAATGTGACTTCTC GTGGGCGCCGGCGTGCTAGTCACGACACCGCCACAAAGCTTTGCCCCATT GACGGCAGCGTTTACTCTAATGGGCTTCCCGGCCAGCTTTCTCCGTCCAG CGCGCCAACAAAGCATCAAGGGCCGGGAGGGAAAGCAACGGGGGAGGAAG GGAACGGCGGGAACGGCGGGAACGGTGGGGTTGGCAACAACCGCCAATTG GACCGTATTGTAGATGAAGCTCGCGCAGAGGTAACGTGCTTGCACATTGA AAAGTCATATGTGTCGAAGCGCGATGGGTGTGTGGGCGGTTTGCTTGATT TTCTTAGTGAGTCGGAGAAAAGTTTGCGAATTGCAGGCACTGTTGGTCGA ATGTATCCTGCACATGGGCGTAAATCTTGTCATCAAGTAAATCCTTTAAT TTCGTCGAATGTAGCTGCTCGACGTTTGTGCATGTATCCTCTGCTCCTTT TGCGTTCTTTTTCCTTAACCCCCTCCCCCCAGGGTTTCATCCAAGATATA CTCTGCGGGCAAGGTGCTGCCAACGCTCTGTACCTGTGGATGACGATACC ACCGGCGTCCCACGTTCCTGTCTTGCACGCCACCTCATTGGCTACGCAAG GACAAGGGTGGGGAAGCTACCAATCGTTAAGTGCTACATCGGTTCCAAGC CAGCAGCAGCAAAACGACAATAGCTTTCGGCGACGGCGATCTCGAGCGCT CCCATCCGACATTGACGCGGCCACGCGCGCCCTTGTCGCAGTAATAATCA AGGGCAATCGGGCAGTGGCTGAAGCAGCTACGTTTGCTCGGTGAGTGGTC GTGTATGCATCTGATACCACTTGAAGACCAGGCGCGTTTTTCCTCTCGCA CGGAGAAATGCAACGATTTGAGCTCCTCCGATCTCTTCCTTGATAAACGC AAAAGATTTAATTATTCATGGCGCCTGAGCAATGCGACGGGCTTATTCGG ACGTTTGGCCCTACTTGTTTTTAAGGCCCACTTTCCTTGTTGAAACTTTT GGAAAGTTCAGGTGCAGGCTTGATCGTGCGAGCTCCCCCCCTCGGGCGTT GAGACTGGTGGCTGCAGCGGCTGTCGAGGTGCGCGAAGCGCTGGCAGGGC TGGCTGATTGTCTCGAGACAGAGAAAAGCGCTGGCAGGTATACCGGCGGC GACCCTGGTGACCGCCGGAACGAAGACGGTGGCATGGGAGGACACGAAAC ACATGATTCTCTTCGGAACGTCTCGGAAGAGACCTCGGCTGCTGGTCTGA GCTCGACAGCGGCGGCGACTCTCGCAAACATCGTCCGCAATTGCCGCTTC CTACTTGAGTGCACCCACCACCTACCACCGATAGAGGTTGCGCGGTGAGT CATGGTCAGCAAGTTTTCAGATGCCGTGCTGATGCCAGCACTCGAGGCGA AGACAGAGCATTATCCCAAACACGTTGTGGTGGAGGTGCACACTGCCAGC CCTGCCCTGTTATGACGTCTAGAAGGGGTGCAAAATTCGTTAAATGGCGA CACATGTACCCCGTGTTTCAGATTTTTTCCAGACTCAACCGCGTTTCTCG TACGTTTCGCTGTTTACAGATGATGACGTAAGCTGCAAAGGGCAAGCTTC GTATTTGCCGGTGCCTTCCGCCACATGACCTTGTGCGAACTCTCGCATTG TCAAAGTAGGCCTTTCTTCTTGGAAGAGCGCTATCGCCGCACGCAACCGA CCTGGTCCTATGCAAACCCAATTACTTTTTTCGGATGTAATGCGCTTCTC GTTATGCAACCTATCCGGCACGATTGCATGCAGGAAGGGAAATCAGATGG ACACGTCGATACGCCGCCAACGTTCTGCTTCTCGTTCAGCTGTTGACAAC CGACAGAGGCATCGAGAACTGTCCCAAACTTTGAGCAGGTGTAATACTTT TGTTGCTTTCATGCGGTACGATGGAAGGCGAGGTAGAAGCAGCCATAGGC GGCTAGCATGATGAATATTATTCTGCTTTGGTGTTTTCTGCTCTGCAGTT GTTGTTCACCAAACTTCAATTTTTGGGACATGGTTATCAGTGCGTCCAAA TATCCCTACGTCAAAGTACCCTGTGCAAGCGAGCATGAGACTTGTTTCAA TCATGAGAAGAAGTGGCCAGGCTTAAAGAAGACACACACTCCGCCTCTCG CACCTCGAATCAGTTGTGAAAGGTGGTGACATTCTTTGACCCATGCCGTT GCACTCGGGCATAATAGGTGGGCTGCGGGCGCCAGGAACAATGTCATTGA TGAAGGCCCTGTAAAGTTGCTCGAGCGAATCGTAAAGCTCATGGCCGAGG GGCTCGTGGATGAAGCTCTGTCAGTCGCTGAGGCGGCGCCGAGGCCGTGC CTGCCTTCACGGAGCGCCAGCTTGGAGTCGCTTGTCGCTTTTGCGGCTAG CCCGATTCCTCTCGGGGCAGTGAGTGCAAGGATGGGCCTGCACGAGATAA GCGCCAAGGTAAGATATCCCGTGATCGTGTGTTATTGGAATAGCCGTTTG TTGACGAACGAGATTACCGACAGAGTCTGAAGTGTGGCAGCTACCTCGCT CACAGCTACTATTGGCCGCCTAAGTTTGCAATTTTTTGTTTTCTCTCTGC GATTGATTTTCGCTGCTAGGTGCGCGTAGCAGGGTTCCGGCTCATCCATG TCATCATCAACGAGACACATGTCCCAGCTGCGCGGCGGCAGATAGGAGCT AGACTCGCGCGTTCTTTGAGCACCACTGGTGGCGGTATCGACAACTCTGC CTTGTGTAATGGCGTCGGGGCAGGCGAGAACCCCGGCAGAATTGGATTTC GGTCGGCGTACTTTGACCTTTTCCGTCACGTGGTCCACGGGGCTGAGAAG GAAGACTCGACTTTCAAGTCGCAGGGAGGAAAGGCCAAGACCACTGACTC TTCCTCGTCCCAGATGGTTTTCCTGCAGATGTTGCAGTCGCTCGCGTCGT TGCTGACTCCTTCTATACTACGCTACGACCCCTTAGTGAGCTCGACTAGC GAGTATTCGAGGTCTTGGCCGCGTCGCCAAGAGCCGCAGACTGTTGAAGC GATCAATTTATTTGACAACCAGGGATGGCCTGGCCGCACAGGGCGCGCTT CTTCGTGTCCCGCGATCACGCGCGCGGAGGTAAGCGTGTCTAAAGCCGTT ATCCCAGCAGACCAAGAGTCCACACCGGTGGTCATTGCAGCCATATCCAT CTTAGGTGTGGTCCTGAGCGGCCAAGGAGATATCCTATCCACTGATGATT GGGGGCCAGGCAGCACCCACAAGAATTCTGGTATACATCATGCGGCGTGG CGGGCACTGGGGGTGATCAGCATGCGAGTGAGTCCATCGTCCGCGCCGGC GTGGGCAACGCACACGACGAGCGGTGGACACGGTTTTGAGCCCTCCAGAC TAGGAGCGGGCGAGCTTGAGAGACCCCCCGCGACGCGAGAGTCGTGGAAT GCCACCCTGGCCACGCTGCGAGTGATCTTCGACGAGCTGACGCGTGCTCG AGATTGGGTGGAGAAGCTGCAGCAAAGCAGAATGGCCGAGGAACTACTGC TGATAGCCACTGGGGCTCTTCGGCTGTCAGCCGACGACCCGGCGGCGTCG CTTTGGGTTCAACCGAACTGGATACTTCCGGAATTATCCAAGGAGGATGG GAAGGAGATCGGCGCATTGAGTTTCTGGATTTACAGGCCACTTGACACCA CTGACCAGCAGCTGAGCACGCGGCGCGAGAAGCTTGGAGAAAACGTTTGC TCGAGCTCATGCCGCGATAAGACATACTGCACTTCCCGGATAAAAGTATT CGCTCTACTCCACGAAGGACGTCATCCAGACAAGACGCGTAACGAAGTAT TTGATCTGTTCGTGAGAATCTATTCAAGTCAAGTTCTGCCACGTGAAGAA TCGGGGATGCATGGAAGCAGCGACGGCGGCGAGGACGGATGTTACGTACA GGTGGTGTTAGGCAGGATCAAGGAAAGGTCGGGGGGGGAGATAAACAATC GGAGCGAACTCGGTGATGGAAAGGGAGGTGTCTTTGCCGCGACGGTTCGT GCAGCCGATGGCACACATGAAGCAGACGAGGGCGAGGAGGCGAAAAATGC CGGCGCCGACGAAAGCAGGAATGAGTCTGTGGACTTCAAAACGGAGTGTT TTTTTTCGGCATGTTCGCTGCCTCGAGGGCAGTGGACGCATGTGTATTGT ACGTATTCCATCAAGAGAGGGAGCATTGTGGACAAGCGGGACGCGACATC CCGGGGCGGTGCGGACAACGCCAGTGGTGATGTGCAGTCGGAGGTTTCGA TTGCCCTCAACGGCAGCTTCGCCGCTAATCATGCACTTCCTTCGAGTAGG ACCAGCGGTGCGAAGGACGCAATAGCACCGCAGGATCGACCTCCGACTCA CGGTGAGATGGAACCTGGCGAACTGGATCAGTATCCGACGAGAAAACAGG ACTTAACTCCTCTCGCTTCTGAGCAATGGAACGGCACACCCACGGTTTGT GATGTCTGGTGGCACTCGCGAAAGGCTTCTCCCAGACAAGTCCGCCAAAT GGCAGAGAGCGGCATCCCAAGGCATCGAAAGAGTGCACAGCGCGCGGCCG AGAACTACATCGCCCGACTTGTTGCCCTCGCAGAGGATATGGTTGCCTCT TCCCAGCGGGTGGCGGCCACGCTGTCATCTCCACGATGGCGCTCCCTTTG GCTTGAGCTCATGTCTGTTGCCGGAGATCGTGCCAAGAGATCCATCGTCC GCTTACTTCGCCCTCTGCTATGCGTCTCCAGCCAGCCCGCCAGCGACGAT GATGAGGGTACGAGGGCGACACCGACGGCGCCGTCCTACAACCCTCCCGC TTCTCCAACTTATGAGAATGGTGTCGGAGACCGCGCAATGGTCGACAGTC TGTGCGCTTTGTTAGGTCAAACTTTGAGACCTTTATTTCTTTGCCACCCG AGCAGTCGCGGTTCGGAGGGCGGAGGTGGAGACCGGACATGGCGACAATC GAGCCGGCTGCGGCAAGACTCGTCCATGCCGTCCGAGATCGTTATGTTAC TAAGGTCGCTGGTAGCCGAAGTTCCAAACCGCTGGCGAAAGCACGTGTTT GGGGCATTGTCGGACGGGCTTGCCTCCGCTGCTAAGGGTGAGATGTGTTC TCTTGACGTAGCTTCGGGTGGAAGCGGGACTGGCCTGAAAGAAGATGATC GCGCATGGACATGGCTAGGTGCAGCGTTAGCTGCGGCATATCTCGGAGGC GGTCATGTTGAGGGGCCTCGTCTAGGTGCCACGGTACTACTAGTGCCAAG TCCCGAATGCATCCCACTTAGCAGTTCAAAAGCTGGGAAAATCGGGTGTC AAAGGGAAAGTTGGAACCAAAACAACGAAGGGCTATTAAACGAACTACTC GGCGGTACTTGCTCGCCACTAGACACGGGTTTCGTTTCCGAAGCGGCGGT GAAACACACGTGTCGTGGCACCATCGTGGGCTGGGTACGACACAAACCCG AGCAGCTGACGACGCCGCCAGAAGGGATGTTATTCGTGGCCGTCGATGAC CAGCACCAGGAATATTTGGACGATGAAGACGCGGAGAGCAACCGATCTCC ACCAAAAAGTTACACACGAAGTCAGGCTGCGGAAGACCGGTGTTGCGCGG ATGCATCGTGGACGTCTCGGATAGTTGCCGTGCAGACTCAACAGGTCCTG TTTCAGGAGGAGATAGTGGAACCGGTGACTCCCTTCTTGTTTCAGGTGGC CTTGCCGTCTGTCCTCGCTCTCCTCGATTTACCTTTCGCAACGACCACGC GGGCAACTTCGGCTTCCAGCGGTGAGCAACAACCACCAAATAGCGGTGTA ACCCCCGCCTTGGTCGAACCTCATCGAGTCGTCGCCGCACACCTCCGTTG TCGGCTTGTTCGAGCTCTGGGGGTTCAGGCTCGCCACATTGGTCAGGCCG CTGCCGCCGTGCGGAAGAGAGTTTTCGGGCCAATATTGGGTCTTGCTGCG ATGCCGCTGGCATCGGCCGTCGTCCTTGCGCTGGGTTCAGAAGGCGCGGT CGCCTTCGGTCGACGCAGCGAATTTGCCGCCGTTTTCCTTGCTCTCCGAC ATCAACGGACAGCGAGCGAAGCCTCTCTTCTCTCCGACCTGGAGTCAGCT TCTCAGATCATGTGGCAACGGCTGATCAGCACAGGAAAGGGTGACGATAC GGAGCGTGGATCGCGGTGCAGGCCTCGGCCAGTCGGTGGTCACGTGAAGT ACAGAGGAGGGCCGGCACTGCAGGTGCTAGGCGGGGAGGCGCTGGTCGAA GGCAACCGTGTCACAGCGTCCTCTCACTTCCCCACCATTTACCTTTCTAA TGTCGGGATAGGTGCAAAGCGAAGCGGAGGCAGGTGGTACTACGAGGTGA CTCTCCTCACGGGTGGCTTGATGCAGCTGGGATGGGCGGGGCCGGGGTTC CAGTGCAGCCCTACACGGGGGCAGGGTGTCGGAGACCACATGCAGTCGTG GGCTTTCGATGGGTTCCGTCAAAAACGATGGTGTGTGTCTTCGGCACTGT ACGGCGAAAGGTGGCGAGCGGGCGATGTTGTTGGTGTGCTCTTGGATACC AGCCTCCAAGAAATGCGTTTCAGGTGAAGAGATGTACACTCTTCGGAAAG AATAGCAGGAGCTGATCGTGCGTTTGTCCGTATCGGTGCATCCACTCCGT TCCAACCAAGACGAAGCCTTCAATCGTAAGCGACTGTGATCGGAAGACAA CATCAAACAATGCCTGCCTGTCTGCCTCTCACGACATTCTTGTCCTTATG AGCAGCATGAACGGACGCGACCTCGGGGCGGCGTTTGAAGGGGCTGATAT GCAGGGACTGTACCCTGCGGCATCAATGAATGCAGGGCAGGCGGCTCTCT TCAACTTCGGCCATTCTCCATTTCTGTACGCTCCGACCGACAGCAACCGG TCGCCATGCCAGCCAGTTTCAGGCGCAGTGGCAACCGATGTTGTGGCGCA TTCTCACGTAGCTGGAAGCGCGGAGCTTCGTGACAGCAGCGGCGTTGATG AGGATCGAGCTGAGGCCAGGCGCGCAAACGGTAGCTCCCAGGACGACACC CGCGAGGTTTCGCCAAGCGCGATCCGGGGACGAAACGCCGCCGCCGCCAC CGGAGCCGGGCGCAGCGAAATCCAGGTTCACGCCAGCAGCGGTGAAGGGT ACGGGCGAGGAGGAGAAAGCGATGATGATTCGCGTCTGGAGTTTGAGAGG CAGGCATTGGTGCAGAACCTGATTGCGATGGGGTTCCCCGTCGAATGGGC GCTTAGGGCTGCCGGCAGGCCCGGTGAGTGATAGTACAATAAACCGAGGG TGCCCGCTCCTCTACATGGTGCAGATTCGGTTGCCACTCTTTTCGACGAT GCCGAATCGACTGCCCACTCTTGCCGGGAATATTGTTGTCCGTCAGATGC TTGAAGTACATCGTTGTCATGCTTTCGCTCTGAAGACTTAGACCTAATTA TTGATTTTTCTTTCTATATACTACCGCCGTGTACGTCGTGATTCCCGCGT CCGACGCGGCCCGTTGCGTGGTGCCTCTTGCAGGCTCGGTGATGAGCGAG AGCGCGGCCGCAGCATGGATCATTGAACGCCTTGAAATCGAAAACACCAA AATGGAGGAGGAGATGGGCGACATGGACGCCTGCGAGGAAGATTCCACTG GTGGAGACTCAGGTTCGGCCCCTTGAGATACAACACAAAAAATCTTCTTG TAGTGACAAAGCGCACGATGCGGGATGCACGCACCACCAGGCGCGAGCGG TTACGGCATGCTCCCAAATGCTGAGCAGAGCCTCGCCTGTATCGTTGGTT TCACAATACGTTGGACATGAGGAATGAACCTGTAGATCCGCATCATCCGT GACGTTCATCGGACAACGGAGCTGTAGAGCCGCATCACCCGTGGGGTGTG CGTCGTACAACGATGCTTCGATTTTTTTCTGCGAATGTGCACACCGGGCC AACGACACTCCCTCCTCAATCCTTGGATATCGGCGAAGCGTACAACGACG ATACAGGGGGGAGCGAGGACGGAGATGTCCGAAACACCGGGATCGGTTTC ACTTCGGAAGCAGCAGGGGTCGCGCGGCGAGTGGAGGGAAGAAGGGTCAT AGCCCACGAACAAGGAAGGAACCGGAGGTGGCATGACATGTACAGGTAAT ACGGCGGTGTTTTGAACAAAAACAGAACGCTCAATTGGTTGTGGGTGGAG CACAGAATTGTCGTTACTGCCGTCAAACGTATTTCTTCACCCGACGACAT GCTGCTCGGCTAACGGAGCAAAAATACTTGATACCGGCTTTGTTCGCAAC GTACCACGACAATGCTGCTTTCAGCACCACATCCGCTCGTTCATTTGTCA TACCCCGCGCGTCACGCTTGTTGTGTGCATTTGTGTGCGTGCCTCAGCAC GGTCAGCAGAAGCTTCCTTCCCGACAGCAACGGTGAATCCCCGGCCACAG CTGCTGTGCTTCCCTCCGGATCGCTGGCGTCGTCCCCGATCGAAACAGCT TTTCTCGCCTCGGCGGAGGCAGCGATGATGGAAGAAACTCAACAAACCCC AAACGGGTTCACAAGAGTAGCTCTGTCAGCAAACAAATCGGATCTGCAAT CCCTCACCCTCGTCGTGGACACAGCATTGACAATCCTCTACGCCCGCGCG GCAGCTATCAACGTGCTCATGCATATAGTCACGCCATCTGCTACGAACAC CTGTCCGTCGCCACGGTTTGGGCTTGCAACGTCGGATGGTTCTCGGTTGC CCACGTGCACCGGAGAAGGCAGCGGAGAGCTAGAGAGGACGACAGCTATC GAAGTAGCGCACGGCATACTTGAGGCGCTTGCGATCCCGGAAAACCAGCG CCGATTCCAGAGCTTCACCAAGGCGCTCGTGACCTGGTAAGATTCCCGCT GCTTCATGTGCATACCCGCTTGCCTTATTTACGTTCTGAAACCGCTGACG ATCAAAAACCCGTGATCGAAACAGTTCACCTCGCGAACGCTGCATGCTGT TTCGCCCAGGCCGGTACAATCGCATTTGGTGGGTGCAGAGGCTACTCTCT CGGTGAGCGGTCTGTCGGTGAAGGAACCAGCAGCAGCTGGGGCGATGGAT CACGCCGTAATTAGGCGAAACGAATCCATGGAGGATTCCCGACCTGGCAT TTGCCCCAGCTGTTCAGCTGTCGCACACCCGCTTGGGCTTTATCCGGGGT GAGAATGGGCGCAATACTGTCGTGTCTGGCGTACTCACGTCGTTCTTAAA TTCCGTGAGTGTTTCGCTTCGTGCGCGCATATCGTGATGGGTTGAATTAC TGTCCGCGAGTTATGCAAAAGGTAATCTAAGCGCCACACACGTAGCCTCC AGGCCCAGGCTTTCCTGACTAGATTGACAAAATCAACCGCTTCCTCGAAC GCATCACGTGACAAATCGCCGCGCTTTCGTCAGGTCCTGCTTGTTGACCA CGCGGCGTCTCTTCGACGCTCTTGCTGCTTCCGCGAAACCGTGGAGCGAA TGGAAAGCTTGGTTTTCGGAAACGACGCCATCGGCACGGCGGGCAGAGGA AGGGCCGTCGATTTCAAGTTTGCAACGAAGTGACAGCGATTTATCTCGCA TGGCTACGGGGGAAAGTTTGCCAAGCCCAGCTCGACTCTTGGCCCTCTTT ATCCGCGAAGCGATTTCGGTTTTCGAAGGTCGCCGAAGTGTCGATTTGGG CGAATCTTTGCGCGCCGACATTTCGGCAACCGAAGACCGGGGATATGACG ATTGGGGCGCACGCGATGGTTCATGCGAACCCCTTTCTCGTCGCGCTGCA TACTCGTGGGCCTTGTGGGTGCTCGGGACGCTAATTTCGCTGGAGACAGG GAATCGCGAGAAGAGCAGAGCCACTCACACACCTGGTTTGGATGGACAGA ATGCTTCAACTGAGCCGGTGTGGGTAGCGAGGGGGCACAGTGCTGACACT GGTGACGACTCGAATTCGATGCTACCACAGCTGGTATCAGCACGATTGCC GCGGGCGTTCTCGGCAATTCTTCAATCGGCTGCCGGTTCCGACCTGGACG AAACGCTGCAGGCTTTGGCGTACTCGCTGTGCTCTAGCATACTCGATTAT TATCGCCAAGCCGCTCCGTCGGCTTTCTCCATTGCCTCACCCCCGGGTCG CAGTGAAACGGCGGCGACGGCCGATGACACCACCGATAACACCTTGAGCC AGCATCGACTGACTCCCTCGGCGGTACCAGAGGATGGGTACGAGCTACCG GCGCAGGAGCGTTCGCTCGCCCGTAGGTTCTCATCACGCCTGTGGAGCCA GGCCAGCACGCCACACCTTGCATCGGACCTGCTGCTCGAAAGTCAGCTGG AGCTTCTCGCCCAATGGGAACTCCGACGATCGACCGTCGACAACAAAAGA AGGCTCCGGGTTCGCGATGCGCACCGGCCGCGAGGAAATGGATGGGAACA GGAAGAGGCGAAGGCTGGTGTCGACAAAGCGTCGCCGTCTGACGAATGTT TCACTTCCGATCGCGACAGCTGGGATGTTGCCACCGCATGTTTTGCTGGA GTCGAAGGAGAGATTGACGAATATCAGACTACTCACGTAAGGGGCTCCCG AGCCGGAGCTAGGGCAAGGAGGATGGGGACTGGCGATAGCGAGACATCTG TGACATCGACCTTGCCCACTCCCGGCCTCCTTGGTAGGAGCATTCCTGCG AATCACAACTCGCTACTCGTCGAGGCCGTGTCAGCAACGTCCGTGACCGT GAGCTGGGGAGGTTGGGTATACTCTGACGACGATCCAGAGCTGCAGGTTG CGGTCGGCAGCAGCGATGGCTTTGCTTATCCGTCGACGCTCGAAAAGGTC CCCAGGGCCTCTCATTTGGCTCAAGCGCTCCGTACCAAGCTTAAATATGC TGCCTCCCGACGGCGACTTGACGGCGCGGGCTTGGTGCTGAAGGTACAAA CTATTTAATTTTTCCGTGTGATATTGCATGTTTCAAGCGATCCAGACATT CGAAGCTCAACCTCATCTGTAACACTTATATCCCGCCAGCTTGCTGCTTG CTGCTATGCCTTTGAGGGTGTTTATTAAAAGAGGCCATCCGCTAAAAATT TATCTTCCCGAGGTGCTACTTCATGACGTCTGTTTTCCTTCCCTTCACTA CGAAGGTGCGTGCTTGCGGACTGTGGGGCTCGGAGCCCTTGCGTGTCGCT GCCCTGGACCTTGACTGCCGTGGCTGTCTGAAAGTAAATGGCCTTGCTGC AGACACTCGCTACTTTTTTCAACTGGAGCACTTGGCGGCATCGCCCTCCC CTCCTCGTGCGACGGCGGCTGTGGATACGTCCGACGATGAGCGGTCGTAC TTTCCGTCGACAACCAACTCCGCGGGGGGATCGAGCGCCGATCAGCTCGG GGCTGATACTACAGACGGTACGAGCGCTCTCACGGGTTTGGACGGCAGCG GTAGCGGTGACGCAGGAGGAGGCGGAGGCTCGACGTGCTCGGAGGGGTGT ACAACTTTGCTCACCGACGAAAGCCGCAGGCAAGAAGGCCAACCAAGCGA CTTTGCCTCCTCAACGACGGCGGTCGCGGGAAGGGACCATAGCCTTTCTA CTGCCAACAGGCTGTGGACAAGCAACCGAACAGATTTTCAGTGGCTACCC ACCAGCGGCCAGTACCGTGTTGTTGACGCATCGGAAGGCTGTGTGGCAGG TAGAGCCGTCGTAGCCTCCATGAGCGTGGCCACCCCCAGAGATCCCGTTC ATGCTGGACGCCGAAGGTTGCGGGCCGAATCTCCGGCTCACGAACTCCAA CCTCACGGTGACCAACACCGGCCGAAAGAAGTGGAGCACGGTACGAGCAA CGCGAGGTTTCACATGCGGGGTGCACCGGTGGAACGTACGCATCGACAGG TCAGGGCTGTCGTCACGACACGAAAGCTAGACGTATACCAGCAGTTCTTC AAATCCGCGTCCGTTTCAATTTCCTTGCCATCGCTTGCCCGATACCGAGA AACTGGCCGATGTAGCTGCCTGAAAAAAAGGTAGTTTCCTAAAAGGGCGT ATACTCCCGAGTCAGATGGACGGGAAAAAGATGTGCAAATGACCTCCATT CGGATTCCCACCACTCTTATCTCAGGTGCGTCTCGAAAAATGTGTTCGTC GGGGTGATGTCCTCCGAGTCGAGGCTGAACAACTATGTCGGCTCGGACAA GCTAGGATGGGGATTCTTGGCGAACAAAGCGATTTGGCACGATAAGAGCA AGGTACGCACGAGTTACGTGTTTCCGAACAAAATTTTATCCCCACATGCG TCCAAGAGCTATCCCCCATTAAACTGAATGAGAGATTTGAAGCCTTCGTC TAAGTAGGCACTCGTGCTCGCGGGATCTCGAACTCAACAGGTTCGATCTT ACGGGGACCTCTTTCGAGAAGGAGATACGATCGGAGTGAGCTTGAATATG GACTTGGGTACGCTTCGGTTTGCACGCAACGGCTGTGACCTCGGCTTGGC GATGCAAGGTCTGGAGGGTACACTTTACCCGGCGTTTTCCATGTACAACA GGTGCGGGCGATTGCCAATCACTTTTCGCACTTAAAAGGACAAAGAGCGC GATTTGAAGCAAGCCAGGAGATAGCCATGCGTATAGAATACTTCGAATGA AACTACCAAAAGGGTAAATCGTCTCGAACGACAAATAAGGAGCGATCAAA CTGAAAAGGGACGCTATCGAAGATGCTTACCGGTTCCTGCCTTCCACATT CTAAAATGCGAAACACACTTGCCCACGTTTCTGCAAGATAGGAGCGACCG GCTGACGTTCATGCCTCCAGAGGACCATGCTGCACCGACTGCGACATCGG CGGTTGGTACTGCTTTCGGCGAGAAAGGTGAACGGAGCCCTGACGGTGGC GAGGACGTGCTGTACGGGACGTTTTCGGCAGAGTGCGTCGTCCGGAGAGC ATCAAAGGTAGTTGAGGTTCTCGGAGTCCTGAACCACGACGGGAAATTTG CCAGCCCTGCTGGCGTGGAGTTAGTTGATACTCTCCGCTCGCGTCTGCGG CAATGGTCCCGAGGGAAACAAGGAAGGTCACTGCAATCCCCACGCAAATT CGCTCCGGTGCGCGTAGGCACCTTTAATCAAGCACGCCGAGGTTCATTTG GTCTCGGCGTAGGAGACCGGGTTCTGACGGCAGACGGGCACGCTACTGTA CTCGGAGAAACGAGACACTCTCTCTGGGTCGAGGTTGAGACGCATTCGTC GTCTCCGGCTTCGCCATTCTCACGCCGTTTCCTTCGGGGGGCCCGGATGT GGGACTCTGAAGTTCCCGCCATGCGAGTACCGGGAGAGACTGGCGGCAAC CGTGGCCACGAAGCGACAAGACCCTCGCACTCACCTGATATCGGAGGAAG AAAGCGGGAGATCACATCATGGTCTCGTCGTATCGTTCGCCAGATTTTTT GCCAGCCTGAAAAGTACGTAGTCATTCGTCAGACTTCGCCTGAAGAGTCG GCACAACAGGCGGGTGGCGCCACGAACGACGACGGCCAAGCAAGCACTGC AGCAGCCGATATCGTCGACCTCCTGTGCACAGACGAACTTCGGTCTGTGC TGTCAAAGTGGACGCCGGACATGGACGAGGAACTTGGACGCCACCTAGCT AGCTTGGCGGATTCGATGCCAGCTAAAAGTCTGCAAGACCTCCCGTTTGA CGCCCTCGATAAACTTCCTCAACCAAAGGATATGTTTCCCAGCTCATCGC CCTTAGCTTCCTCTGAAGTTTGGGTGCGCGCGACGCTGTTATTGTATATC AATGACCTTGTCGTGCCTCTCCTACCCCTCATAGACACGGGGCCGGGTTG CCGCGGGCCGCTGAGCACATTAGTGTTCAAGTGCAGGCATCTCTTCTTCA GGCAGGCGAAGCTGTCGCTTTTGAACAGCAAGTGAGTGAAGGTCCCACCG AAAAATGTGTTCCGACGTAGCGGAGAACCGCCTTTGTTGGCTGCTGGGGC ACAAGTGTGCGGAAGAGGCGAGATACTCAGCGTGTTTGTTCGGGACTTTT GGAAAATTTGACTCGTGCCTGTTCGCCCCCTTGTTTCTGCACTTGCGAAA TCGTGTCCTCAGCGTGGTCCGGCCGGCTCAAGCCGCAGTATCATCGGAGG CAGAGCTCTGTACGGCCTACTCAACTCCCTCGATCGACACCATCTCATTG ATCGGAGTAAAGTCCCTGCCGAGATTCCCATCGCCCGTCGGAAATCCAGC GGAGATCCACTATCTGCCTTGGATCCAGACCAGTAGGGAAGTGCAAAAAT CGGTCTTCGGGCAGGTTGCCAGGCACTTCAGGTGAGGGCTCGCAAAGGAA AACGGAAGGAATAATGGGCGTGACATGGAATGACGTTGACTGTACTGTTA TGTCGATCTGTTAATGGAAGAGAGGACTGATCCGAATGGAAGAGGGAGTA ATCTACTCTACCCGTTCATGTCTCACGCCCCACCTGGCACCCACGTTGAA TAATAAAAAGCAAGGAACCGTAAAATTTCGCTGTCGGGTTTCCCTAATGC TTATTCGCTTGTTAATGTGGATCATGCGCTTCGACTCAAGCAGTTCCAAA TACCAGTTTTCGGAAGGGGCGATGGCGTTTTTGGTCGAGCTCGTGGACGC GCCCACGTTGGTGGACGAGGCGGATGCCGACAGTGAAAATCTTCTGCTTT TGGATGCACCTGCACTGTATCGCGGGGTGTTTTGGCAGGTGAATACTTAA CAGTAGAGCACACGCCACCAGGTGCAAACTCCGTGCGGTTACGAATCTTG TAGATCTACGACCTAAGGTGACCAAAAGGGAGCGTGTCACGGAAGAAGGC ACTACCTTGTTGAGCATATTTAGCTCACCCTACCCCTTTGTGCCCCCCTG CTGTGCTCTCTGCGACGACGGTGTTCTCCGATGCATCGAAAGATTTGCGC AGAGGTTTGCTCTCCGCCGATTTCAATGTTTATCCGCCAGCCCGTGTCAC AGGCCGGGGCGGATGACGCCACTCGTGTAATATGCCCAGCCGCACCCGAC ACGACCGCTACCGGGACGGGGAGCACAGGCGGGGCCGGTAATGCTCCCGC GGATCATCACTGCAAAGCAGCCATTACATCGGCAGAGAAAATCGCCGACG GCTCGATTCCAAACCCACTCTTTACGTCCGACGGGATGTCCCGGGTGTGT ATGGATCCCAGCAGGGTCGCGCTTTACCGTTCCTTCGGTTTTATCGTCGG ACTTGCCGTCCGAGCGGAGATATCATTGCCGCTGGCGCACCTTTCGACAA CGTGGTGGATGCTCGTTTCGAATAGCTTGCCAGTGCTAGGCGAGCGTGCC CCTCGATCAGCGAGCAAATCAGCCGGGGTCAAAGGGATGAATTGTTCTCG CTCTCTGGAAGAGGTCGATTCCTCGGACATCATGGGAGTATCGCCGTCGT ACCGGGCGATAGATGGAGTATTGGCGTCGCTCCAGCGACTTGAAGAAACA GGCTTGGCGCATGACGAAATCGAAGAAATTCTCGCGGACGGGAGGTTTGT TGCACCGCTGTCGAACGGGCACGTCACGGAGCTTCTACCACGAGGTGAGG GCCGTGGCCAGAAATGGCACCTTTTCCGCGCCTTCATTCCCTTTTCCGCG GTGTGTCAACAAGCTTCATTCAACAAATTTTGCTTTCCTGCATGACGCCT TGCTGGTGCGTAAACCCTTTCCAACTCCGTCCCTACCCAAACCGTTACAC TGGTACATGTGGTGAACGCTGTTTGATGACCAGGCTTGAGCCGTCCCGTC GGAATCCAAAATCTGGGCGAGTATGTCACCCTTTTAGCCAGGTTACGAGC CTCTGGATATGCTCCACAGGCAGCGGCCTTCCGCGCAGGTTTGGAGGCTG CCCTCCCCAGAGGAGTGCTCTCTTTACTAACGTGGAGGGAGATGAAAGGA CTCGTTTGCGGC
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Coding sequence (CDS) from alignment at P-fluviatile_contig9:1432070..1454081+

>mRNA_P-fluviatile_contig9.15153.1 ID=mRNA_P-fluviatile_contig9.15153.1|Name=mRNA_P-fluviatile_contig9.15153.1|organism=Porterinema fluviatile SAG_2381|type=CDS|length=20472bp|location=Sequence derived from alignment at P-fluviatile_contig9:1432070..1454081+ (Porterinema fluviatile SAG_2381)
ATGAATGGATGCCGACGTGTCCCCGCCTGGAGAGAAGCGAGTGCTGGAAA
AAGCGCTTGCTTAACGTCCCCCGCCATGCTCCATCGCTCAGCTGTTTGCG
GTGAGCGCGGCCACGCCGACTCCTTCATCGTGCGGCAAGTTTTTGCCCAT
AGGCCGAATGTGACAGACGTCGCATGCGGGCAGGAGCATATTCTTGCTCT
TCTCGAGACTGGTCAGATGAATGGATGCCGACGTGTCCCCGCCTGGAGAG
AAGCGAGTGCTGGAAAAAGCGCTTGCTTAACGTCCCCCGCCATGCTCCAT
CGCTCAGCTGTTTGCGGTGAGCGCGGCCACGCCGACTCCTTCATCGTGCG
GCAAGTTTTTGCCCATAGGCCGAATGTGACAGACGTCGCATGCGGGCAGG
AGCATATTCTTGCTCTTCTCGAGACTGGTCAGGTTTGTTCGTGGGGAAAT
GGCCGTAACGGTAGGCTTGGCCTTGGAGACACGAAGGACCGGCTCTCCGC
GTGCCATGTCGAGGCAATCCAAGGAATTGAGATCGAAGCGGTGTTTTGCG
GAGCATCGCACTCCATGGCTGTTTGCTCGACAGGAGTTTGCTACGCCTGG
GGAAAGAACAACAGTGGACAGTGCGGCGACACGAATGTTTTGGGTTCAGA
TGCGGTTTGTTCGTGGGGAAATGGCCGTAACGGTAGGCTTGGCCTTGGAG
ACACGAAGGACCGGCTCTCCGCGTGCCATGTCGAGGCAATCCAAGGAATT
GAGATCGAAGCGGTGTTTTGCGGAGCATCGCACTCCATGGCTGTTTGCTC
GACAGGAGTTTGCTACGCCTGGGGAAAGAACAACAGTGGACAGTGCGGCG
ACACGAATGTTTTGGGTTCAGATGCGCTCATACCTCGGATGATAGAGAGC
CTCAGGCATATCCCAGTTGCTGCAATGGCAGGGGGCTGGAAGCACACGCT
TGTGCTCACTCGCTGTGGGACGATGTTCAGCTTCGGCAGTGGGTTCAAGC
ACAAGTGTATGTCTACAGGACCTGCGGCTGTCCTCGGCATTTCTGCGGCG
GCGTCTGCGGCCACGGCGGACGGCACACACAACAAGCAGGGTGGTAGTTC
TCCGACAAAGGTTTGCGATGATGCCCTTAACTCTGCGAGAGTGAAAACCA
TTGCATGCGGATGGGACCATTGTCTCGCGGCGACGGAAGACGGCGCATTG
TTTACCTGGGGCTCAGGTCGCCATGGACAACTGGGTCACGGCGATACAGC
TCATACCTCGGATGATAGAGAGCCTCAGGCATATCCCAGTTGCTGCAATG
GCAGGGGGCTGGAAGCACACGCTTGTGCTCACTCGCTGTGGGACGATGTT
CAGCTTCGGCAGTGGGTTCAAGCACAAGTGTATGTCTACAGGACCTGCGG
CTGTCCTCGGCATTTCTGCGGCGGCGTCTGCGGCCACGGCGGACGGCACA
CACAACAAGCAGGGTGGTAGTTCTCCGACAAAGGTTTGCGATGATGCCCT
TAACTCTGCGAGAGTGAAAACCATTGCATGCGGATGGGACCATTGTCTCG
CGGCGACGGAAGACGGCGCATTGTTTACCTGGGGCTCAGGTCGCCATGGA
CAACTGGGTCACGGCGATACAGAGCCTCGCTATACTCCAACCCGGGTGGC
CTTCTTCACATCCTCTGCTGGTCTCTGGGTTCGCTCTATCGTAGGAGGGC
GGACCTACAGCGCCGTGGCGACTGTTGACGGCCGGGTGTTCAAGTGGGGT
CTGAATCGTGCGCCGAGATCATCGAGTGGGAAAGAGCGAAACAGGGACGA
AGAACGGAGAGGAGGTGCAGACAGAGATCTCAGCGAGGAAGATGGAACGG
TTGCACTTGAGGCATTGGTCCCCCGCCAGGTGGCCGGGATCGGTATGGAG
AGCCTCGCTATACTCCAACCCGGGTGGCCTTCTTCACATCCTCTGCTGGT
CTCTGGGTTCGCTCTATCGTAGGAGGGCGGACCTACAGCGCCGTGGCGAC
TGTTGACGGCCGGGTGTTCAAGTGGGGTCTGAATCGTGCGCCGAGATCAT
CGAGTGGGAAAGAGCGAAACAGGGACGAAGAACGGAGAGGAGGTGCAGAC
AGAGATCTCAGCGAGGAAGATGGAACGGTTGCACTTGAGGCATTGGTCCC
CCGCCAGGTGGCCGGGATCGGTATGGAGAACCCACGAGCACTACGCCTTG
GCGAAGGAGAAGATTTCGACTCGGTGCTCGTCGAGCTACGGTCGGCGGCC
GAATCTCACCCGCCATCCCTCGTCCACCCTAGTGAGCACTCTACGAAAGC
GCTGGTATCGACTCTAGGACTGGACGTTCCTGACGACCCTTCTTGTCCGA
ACCCACGAGCACTACGCCTTGGCGAAGGAGAAGATTTCGACTCGGTGCTC
GTCGAGCTACGGTCGGCGGCCGAATCTCACCCGCCATCCCTCGTCCACCC
TAGTGAGCACTCTACGAAAGCGCTGGTATCGACTCTAGGACTGGACGTTC
CTGACGACCCTTCTTGTCCGGTCGGCCGGATTGAGACGACAGTAGCACTT
CTTCGTCATTTCGAGAGGTTGGCTGTTCCTCACACCCCGAGGTACGCCGC
AAGCGACGTCGATCGCAGGATCTACCAAGCGATCAGGATTGGCAAAAGGC
TTCGGAAGCGGACGTGGCAAAAAGGCACGATACCTTCGGCGAGGGCAAAC
CGCGAAGGAGACTTGTCGACGACTCCAGGCACGGATCAGGAGTTTGGAGT
AACACTTTCGAACAGCGACAGCATGGATGTGTCCAAGCACGTGCCACATG
TATCCTTAGCTGAAGGGCAGAGGACGCGCCAAGAGGCGTTGAACATCGAG
TCAAGGATACCACCGTCCGTTGCTCCTTTCTGTGTGGACACCTCAGTGCA
CACGTTCCGCTCATTTCTGGACCTCATCAAAGCCATTCGCCACCGAATGA
GTCCGGTTCCCGTGGGGATTGAACGCGCCGATTCTTCTCCACTATCCAAA
CGCAAGGCAAGCAAATCCCAGATTTCGACTGGCGCTGCCGGCCCCAAGAG
CTGCGATAAAAAGATCGCTGCTGGTGGCCTTTCGGACCTTGGAGCGCTAG
ATAATCGGGTTCCAGAAGAAATCCGCGAGGACTGGAATGGATTTCCCGTC
GCGTCCCGATCGATTGCCATGGAAGTCTTGCGCGTTACGCTGAAACTCCT
GAAGACAAACCTCTTTCACCTTGTCGGTATCGTCGCCATGAGGCGGAGTT
GCCGAGGAAACGGCGACAACGTTCCACGTGATGCCACGGTTGAGGAAAAA
ACTATTTCCACTAAGCCTCGGTCTTCGGACCGCGATTACCGCGACTCCTC
GGGAATAAAAGCCAGGACAGCCACTCGCAAAGAAATTCATACGGGACAAG
TCGGCCGGATTGAGACGACAGTAGCACTTCTTCGTCATTTCGAGAGGTTG
GCTGTTCCTCACACCCCGAGGTACGCCGCAAGCGACGTCGATCGCAGGAT
CTACCAAGCGATCAGGATTGGCAAAAGGCTTCGGAAGCGGACGTGGCAAA
AAGGCACGATACCTTCGGCGAGGGCAAACCGCGAAGGAGACTTGTCGACG
ACTCCAGGCACGGATCAGGAGTTTGGAGTAACACTTTCGAACAGCGACAG
CATGGATGTGTCCAAGCACGTGCCACATGTATCCTTAGCTGAAGGGCAGA
GGACGCGCCAAGAGGCGTTGAACATCGAGTCAAGGATACCACCGTCCGTT
GCTCCTTTCTGTGTGGACACCTCAGTGCACACGTTCCGCTCATTTCTGGA
CCTCATCAAAGCCATTCGCCACCGAATGAGTCCGGTTCCCGTGGGGATTG
AACGCGCCGATTCTTCTCCACTATCCAAACGCAAGGCAAGCAAATCCCAG
ATTTCGACTGGCGCTGCCGGCCCCAAGAGCTGCGATAAAAAGATCGCTGC
TGGTGGCCTTTCGGACCTTGGAGCGCTAGATAATCGGGTTCCAGAAGAAA
TCCGCGAGGACTGGAATGGATTTCCCGTCGCGTCCCGATCGATTGCCATG
GAAGTCTTGCGCGTTACGCTGAAACTCCTGAAGACAAACCTCTTTCACCT
TGTCGGTATCGTCGCCATGAGGCGGAGTTGCCGAGGAAACGGCGACAACG
TTCCACGTGATGCCACGGTTGAGGAAAAAACTATTTCCACTAAGCCTCGG
TCTTCGGACCGCGATTACCGCGACTCCTCGGGAATAAAAGCCAGGACAGC
CACTCGCAAAGAAATTCATACGGGACAAGCCTGGGGGCAGGAAGGGGCAC
CGGGAGCGAAGGAGTGCGCTCACGATATGCACGGCGTCATTCAAGAGCTC
CACGCTGAGTTGCATGCTATCTTGGAGGAAGACATCGCGTACGGCGACCC
AGGCGCGACCAACGCGGCCCTCGCTGTACAGGCCTGGGGGCAGGAAGGGG
CACCGGGAGCGAAGGAGTGCGCTCACGATATGCACGGCGTCATTCAAGAG
CTCCACGCTGAGTTGCATGCTATCTTGGAGGAAGACATCGCGTACGGCGA
CCCAGGCGCGACCAACGCGGCCCTCGCTGTACAGGCCGAAGCTGCAGAAG
CTTTTCGGGTTGGCTTTAGCTTGTTTTACCCGTCCAACCCAGCACGCGTG
CGGGTACTGAACGACATTGTGAGAACAGTCACGGCGGCGGGGTCTCCCTC
GCCCGAGCGTAATCAACGGCATGGCGACAAAAGAGAATCAAGGAGGCGAG
CTCACCACGCGAAGTCGCACTCCAAGTCGCGGCAGCGGGTTCGACTTGCC
TCTAAGTTGAACGGGGTGTTGGTGCGACTCGCGGTTGAAGCTCTCACCCG
GGAAAAGTACGCTGCCGGACTTATAACGGGTGCCTTCAGCCACGAGGGGT
GGGGAGGAATAGGGCTTGACGGCGCCGGGACCGCAACGGGAGAATCTGGG
GAGCGGTTCGATGCTTCAGCGCTCGATGCTGTCATGAGATCGCTGCTTTC
GCACTGCGCCGGTGATCTCCACAAGCGGCTGTGGGGCGAAGGCGTACGCG
ACCAGGCAGGGGAGAACAGAAGCGGTATTTCGGAAAATGGAGAAGCGACT
TGCCCCTTTTCACGCTTGCTGTTGGTCCTGCAGACGCATGTTTTGGCCTT
CTGGGGTGGCACTGAGCACGACGGCGCTGCCATCGCTGCTCGTGAGTTGT
CACTTGCTCATGCCTCTCGTCTGCTGGAGCAAAGCCTCCAGATCTTCACA
AGATTCCTTCTGACAGAGGGAGACCAGGCGGATGTCGGAGCTCAGGATGA
TCGATGCCACGGGGATGGGCATCCCCAACTTGACGCGTTGCGGAACTCGT
TTGTATCCCTTGTCCCCGTGCTCTGCACCTCTGTGGTCGCCCTGCCAACG
GTAGGCGAGGAACTCCTGACTCGAGCAGCCCGACTGCTTCCATTGGTCAT
TCCTTTGACGAGGGCCGTGGGTCGCTTTGACAGGCCCCGCTTGCGCGACG
CCGAAGTCGATGCACCCGTGCAGAGTGAGCGTTCGTCACTGGGCTGGTTG
ACTGAGCTGGAGGCGGCCCTTGCAGTGCTCTCGTCAGACCTTGTGTGCGG
CTTGATCGACGTGAGAGCAACGAACCTGCAAAGGCACGTGGGAGTCCCTT
CTCAAGCAAACAATGGCGGTGGTGGTGGTGGTGGTGATGGAGGTGGTGGT
GGCTATCATGGTGATCAAAGCCAAAACGATGAGCATGGCGACGACGTCAT
TGCTAGGTTGCTGGGATCATCCCCCTTCCTAGCCTACAGCCACGAGAATT
TCGATTGGTCAGGCCTGCAGGACAACATTGTCGCACAGCGAAACAGCTTA
GCGTTCGTTCGAGCTCATGAGGCCGAAGCTGCAGAAGCTTTTCGGGTTGG
CTTTAGCTTGTTTTACCCGTCCAACCCAGCACGCGTGCGGGTACTGAACG
ACATTGTGAGAACAGTCACGGCGGCGGGGTCTCCCTCGCCCGAGCGTAAT
CAACGGCATGGCGACAAAAGAGAATCAAGGAGGCGAGCTCACCACGCGAA
GTCGCACTCCAAGTCGCGGCAGCGGGTTCGACTTGCCTCTAAGTTGAACG
GGGTGTTGGTGCGACTCGCGGTTGAAGCTCTCACCCGGGAAAAGTACGCT
GCCGGACTTATAACGGGTGCCTTCAGCCACGAGGGGTGGGGAGGAATAGG
GCTTGACGGCGCCGGGACCGCAACGGGAGAATCTGGGGAGCGGTTCGATG
CTTCAGCGCTCGATGCTGTCATGAGATCGCTGCTTTCGCACTGCGCCGGT
GATCTCCACAAGCGGCTGTGGGGCGAAGGCGTACGCGACCAGGCAGGGGA
GAACAGAAGCGGTATTTCGGAAAATGGAGAAGCGACTTGCCCCTTTTCAC
GCTTGCTGTTGGTCCTGCAGACGCATGTTTTGGCCTTCTGGGGTGGCACT
GAGCACGACGGCGCTGCCATCGCTGCTCGTGAGTTGTCACTTGCTCATGC
CTCTCGTCTGCTGGAGCAAAGCCTCCAGATCTTCACAAGATTCCTTCTGA
CAGAGGGAGACCAGGCGGATGTCGGAGCTCAGGATGATCGATGCCACGGG
GATGGGCATCCCCAACTTGACGCGTTGCGGAACTCGTTTGTATCCCTTGT
CCCCGTGCTCTGCACCTCTGTGGTCGCCCTGCCAACGGTAGGCGAGGAAC
TCCTGACTCGAGCAGCCCGACTGCTTCCATTGGTCATTCCTTTGACGAGG
GCCGTGGGTCGCTTTGACAGGCCCCGCTTGCGCGACGCCGAAGTCGATGC
ACCCGTGCAGAGTGAGCGTTCGTCACTGGGCTGGTTGACTGAGCTGGAGG
CGGCCCTTGCAGTGCTCTCGTCAGACCTTGTGTGCGGCTTGATCGACGTG
AGAGCAACGAACCTGCAAAGGCACGTGGGAGTCCCTTCTCAAGCAAACAA
TGGCGGTGGTGGTGGTGGTGGTGATGGAGGTGGTGGTGGCTATCATGGTG
ATCAAAGCCAAAACGATGAGCATGGCGACGACGTCATTGCTAGGTTGCTG
GGATCATCCCCCTTCCTAGCCTACAGCCACGAGAATTTCGATTGGTCAGG
CCTGCAGGACAACATTGTCGCACAGCGAAACAGCTTAGCGTTCGTTCGAG
CTCATGAGGTGATCAAATTTCAGGAGAGTGTCACGAAAGAAGCGTGTGGA
TGCTCACGACCCGCTCAATCACAGACATCAGCGCTCGGGCTGGCATCATC
AAATCCAACGTCTAGTCATCAGCCTCCTCGCCAGAATGTGACTTCTCGTG
GGCGCCGGCGTGCTAGTCACGACACCGCCACAAAGCTTTGCCCCATTGAC
GGCAGCGTTTACTCTAATGGGCTTCCCGGCCAGCTTTCTCCGTCCAGCGC
GCCAACAAAGCATCAAGGGCCGGGAGGGAAAGCAACGGGGGAGGAAGGGA
ACGGCGGGAACGGCGGGAACGGTGGGGTTGGCAACAACCGCCAATTGGAC
CGTATTGTAGATGAAGCTCGCGCAGAGGTGATCAAATTTCAGGAGAGTGT
CACGAAAGAAGCGTGTGGATGCTCACGACCCGCTCAATCACAGACATCAG
CGCTCGGGCTGGCATCATCAAATCCAACGTCTAGTCATCAGCCTCCTCGC
CAGAATGTGACTTCTCGTGGGCGCCGGCGTGCTAGTCACGACACCGCCAC
AAAGCTTTGCCCCATTGACGGCAGCGTTTACTCTAATGGGCTTCCCGGCC
AGCTTTCTCCGTCCAGCGCGCCAACAAAGCATCAAGGGCCGGGAGGGAAA
GCAACGGGGGAGGAAGGGAACGGCGGGAACGGCGGGAACGGTGGGGTTGG
CAACAACCGCCAATTGGACCGTATTGTAGATGAAGCTCGCGCAGAGGGTT
TCATCCAAGATATACTCTGCGGGCAAGGTGCTGCCAACGCTCTGTACCTG
TGGATGACGATACCACCGGCGTCCCACGTTCCTGTCTTGCACGCCACCTC
ATTGGCTACGCAAGGACAAGGGTGGGGAAGCTACCAATCGTTAAGTGCTA
CATCGGTTCCAAGCCAGCAGCAGCAAAACGACAATAGCTTTCGGCGACGG
CGATCTCGAGCGCTCCCATCCGACATTGACGCGGCCACGCGCGCCCTTGT
CGCAGTAATAATCAAGGGCAATCGGGCAGTGGCTGAAGCAGCTACGTTTG
CTCGGGTTTCATCCAAGATATACTCTGCGGGCAAGGTGCTGCCAACGCTC
TGTACCTGTGGATGACGATACCACCGGCGTCCCACGTTCCTGTCTTGCAC
GCCACCTCATTGGCTACGCAAGGACAAGGGTGGGGAAGCTACCAATCGTT
AAGTGCTACATCGGTTCCAAGCCAGCAGCAGCAAAACGACAATAGCTTTC
GGCGACGGCGATCTCGAGCGCTCCCATCCGACATTGACGCGGCCACGCGC
GCCCTTGTCGCAGTAATAATCAAGGGCAATCGGGCAGTGGCTGAAGCAGC
TACGTTTGCTCGGTGCAGGCTTGATCGTGCGAGCTCCCCCCCTCGGGCGT
TGAGACTGGTGGCTGCAGCGGCTGTCGAGGTGCGCGAAGCGCTGGCAGGG
CTGGCTGATTGTCTCGAGACAGAGAAAAGCGCTGGCAGGTATACCGGCGG
CGACCCTGGTGACCGCCGGAACGAAGACGGTGGCATGGGAGGACACGAAA
CACATGATTCTCTTCGGAACGTCTCGGAAGAGACCTCGGCTGCTGGTCTG
AGCTCGACAGCGGCGGCGACTCTCGCAAACATCGTCCGCAATTGCCGCTT
CCTACTTGAGTGCACCCACCACCTACCACCGATAGAGGTTGCGCGGTGCA
GGCTTGATCGTGCGAGCTCCCCCCCTCGGGCGTTGAGACTGGTGGCTGCA
GCGGCTGTCGAGGTGCGCGAAGCGCTGGCAGGGCTGGCTGATTGTCTCGA
GACAGAGAAAAGCGCTGGCAGGTATACCGGCGGCGACCCTGGTGACCGCC
GGAACGAAGACGGTGGCATGGGAGGACACGAAACACATGATTCTCTTCGG
AACGTCTCGGAAGAGACCTCGGCTGCTGGTCTGAGCTCGACAGCGGCGGC
GACTCTCGCAAACATCGTCCGCAATTGCCGCTTCCTACTTGAGTGCACCC
ACCACCTACCACCGATAGAGGTTGCGCGGAAGGGAAATCAGATGGACACG
TCGATACGCCGCCAACGTTCTGCTTCTCGTTCAGCTGTTGACAACCGACA
GAGGCATCGAGAACTGTCCCAAACTTTGAGCAGGAAGGGAAATCAGATGG
ACACGTCGATACGCCGCCAACGTTCTGCTTCTCGTTCAGCTGTTGACAAC
CGACAGAGGCATCGAGAACTGTCCCAAACTTTGAGCAGGTGGGCTGCGGG
CGCCAGGAACAATGTCATTGATGAAGGCCCTGTAAAGTTGCTCGAGCGAA
TCGTAAAGCTCATGGCCGAGGGGCTCGTGGATGAAGCTCTGTCAGTCGCT
GAGGCGGCGCCGAGGCCGTGCCTGCCTTCACGGAGCGCCAGCTTGGAGTC
GCTTGTCGCTTTTGCGGCTAGCCCGATTCCTCTCGGGGCAGTGAGTGCAA
GGATGGGCCTGCACGAGATAAGCGCCAAGGTGGGCTGCGGGCGCCAGGAA
CAATGTCATTGATGAAGGCCCTGTAAAGTTGCTCGAGCGAATCGTAAAGC
TCATGGCCGAGGGGCTCGTGGATGAAGCTCTGTCAGTCGCTGAGGCGGCG
CCGAGGCCGTGCCTGCCTTCACGGAGCGCCAGCTTGGAGTCGCTTGTCGC
TTTTGCGGCTAGCCCGATTCCTCTCGGGGCAGTGAGTGCAAGGATGGGCC
TGCACGAGATAAGCGCCAAGGTGCGCGTAGCAGGGTTCCGGCTCATCCAT
GTCATCATCAACGAGACACATGTCCCAGCTGCGCGGCGGCAGATAGGAGC
TAGACTCGCGCGTTCTTTGAGCACCACTGGTGGCGGTATCGACAACTCTG
CCTTGTGTAATGGCGTCGGGGCAGGCGAGAACCCCGGCAGAATTGGATTT
CGGTCGGCGTACTTTGACCTTTTCCGTCACGTGGTCCACGGGGCTGAGAA
GGAAGACTCGACTTTCAAGTCGCAGGGAGGAAAGGCCAAGACCACTGACT
CTTCCTCGTCCCAGATGGTTTTCCTGCAGATGTTGCAGTCGCTCGCGTCG
TTGCTGACTCCTTCTATACTACGCTACGACCCCTTAGTGAGCTCGACTAG
CGAGTATTCGAGGTCTTGGCCGCGTCGCCAAGAGCCGCAGACTGTTGAAG
CGATCAATTTATTTGACAACCAGGGATGGCCTGGCCGCACAGGGCGCGCT
TCTTCGTGTCCCGCGATCACGCGCGCGGAGGTAAGCGTGTCTAAAGCCGT
TATCCCAGCAGACCAAGAGTCCACACCGGTGGTCATTGCAGCCATATCCA
TCTTAGGTGTGGTCCTGAGCGGCCAAGGAGATATCCTATCCACTGATGAT
TGGGGGCCAGGCAGCACCCACAAGAATTCTGGTATACATCATGCGGCGTG
GCGGGCACTGGGGGTGATCAGCATGCGAGTGAGTCCATCGTCCGCGCCGG
CGTGGGCAACGCACACGACGAGCGGTGGACACGGTTTTGAGCCCTCCAGA
CTAGGAGCGGGCGAGCTTGAGAGACCCCCCGCGACGCGAGAGTCGTGGAA
TGCCACCCTGGCCACGCTGCGAGTGATCTTCGACGAGCTGACGCGTGCTC
GAGATTGGGTGGAGAAGCTGCAGCAAAGCAGAATGGCCGAGGAACTACTG
CTGATAGCCACTGGGGCTCTTCGGCTGTCAGCCGACGACCCGGCGGCGTC
GCTTTGGGTTCAACCGAACTGGATACTTCCGGAATTATCCAAGGAGGATG
GGAAGGAGATCGGCGCATTGAGTTTCTGGATTTACAGGCCACTTGACACC
ACTGACCAGCAGCTGAGCACGCGGCGCGAGAAGCTTGGAGAAAACGTTTG
CTCGAGCTCATGCCGCGATAAGACATACTGCACTTCCCGGATAAAAGTAT
TCGCTCTACTCCACGAAGGACGTCATCCAGACAAGACGCGTAACGAAGTA
TTTGATCTGTTCGTGAGAATCTATTCAAGTCAAGTTCTGCCACGTGAAGA
ATCGGGGATGCATGGAAGCAGCGACGGCGGCGAGGACGGATGTTACGTAC
AGGTGGTGTTAGGCAGGATCAAGGAAAGGTCGGGGGGGGAGATAAACAAT
CGGAGCGAACTCGGTGATGGAAAGGGAGGTGTCTTTGCCGCGACGGTTCG
TGCAGCCGATGGCACACATGAAGCAGACGAGGGCGAGGAGGCGAAAAATG
CCGGCGCCGACGAAAGCAGGAATGAGTCTGTGGACTTCAAAACGGAGTGT
TTTTTTTCGGCATGTTCGCTGCCTCGAGGGCAGTGGACGCATGTGTATTG
TACGTATTCCATCAAGAGAGGGAGCATTGTGGACAAGCGGGACGCGACAT
CCCGGGGCGGTGCGGACAACGCCAGTGGTGATGTGCAGTCGGAGGTTTCG
ATTGCCCTCAACGGCAGCTTCGCCGCTAATCATGCACTTCCTTCGAGTAG
GACCAGCGGTGCGAAGGACGCAATAGCACCGCAGGATCGACCTCCGACTC
ACGGTGAGATGGAACCTGGCGAACTGGATCAGTATCCGACGAGAAAACAG
GACTTAACTCCTCTCGCTTCTGAGCAATGGAACGGCACACCCACGGTTTG
TGATGTCTGGTGGCACTCGCGAAAGGCTTCTCCCAGACAAGTCCGCCAAA
TGGCAGAGAGCGGCATCCCAAGGCATCGAAAGAGTGCACAGCGCGCGGCC
GAGAACTACATCGCCCGACTTGTTGCCCTCGCAGAGGATATGGTTGCCTC
TTCCCAGCGGGTGGCGGCCACGCTGTCATCTCCACGATGGCGCTCCCTTT
GGCTTGAGCTCATGTCTGTTGCCGGAGATCGTGCCAAGAGATCCATCGTC
CGCTTACTTCGCCCTCTGCTATGCGTCTCCAGCCAGCCCGCCAGCGACGA
TGATGAGGGTACGAGGGCGACACCGACGGCGCCGTCCTACAACCCTCCCG
CTTCTCCAACTTATGAGAATGGTGTCGGAGACCGCGCAATGGTCGACAGT
CTGTGCGCTTTGTTAGGTCAAACTTTGAGACCTTTATTTCTTTGCCACCC
GAGCAGTCGCGGTTCGGAGGGCGGAGGTGGAGACCGGACATGGCGACAAT
CGAGCCGGCTGCGGCAAGACTCGTCCATGCCGTCCGAGATCGTTATGTTA
CTAAGGTCGCTGGTAGCCGAAGTTCCAAACCGCTGGCGAAAGCACGTGTT
TGGGGCATTGTCGGACGGGCTTGCCTCCGCTGCTAAGGGTGAGATGTGTT
CTCTTGACGTAGCTTCGGGTGGAAGCGGGACTGGCCTGAAAGAAGATGAT
CGCGCATGGACATGGCTAGGTGCAGCGTTAGCTGCGGCATATCTCGGAGG
CGGTCATGTTGAGGGGCCTCGTCTAGGTGCCACGGTACTACTAGTGCCAA
GTCCCGAATGCATCCCACTTAGCAGTTCAAAAGCTGGGAAAATCGGGTGT
CAAAGGGAAAGTTGGAACCAAAACAACGAAGGGCTATTAAACGAACTACT
CGGCGGTACTTGCTCGCCACTAGACACGGGTTTCGTTTCCGAAGCGGCGG
TGAAACACACGTGTCGTGGCACCATCGTGGGCTGGGTACGACACAAACCC
GAGCAGCTGACGACGCCGCCAGAAGGGATGTTATTCGTGGCCGTCGATGA
CCAGCACCAGGAATATTTGGACGATGAAGACGCGGAGAGCAACCGATCTC
CACCAAAAAGTTACACACGAAGTCAGGCTGCGGAAGACCGGTGTTGCGCG
GATGCATCGTGGACGTCTCGGATAGTTGCCGTGCAGACTCAACAGGTCCT
GTTTCAGGAGGAGATAGTGGAACCGGTGACTCCCTTCTTGTTTCAGGTGG
CCTTGCCGTCTGTCCTCGCTCTCCTCGATTTACCTTTCGCAACGACCACG
CGGGCAACTTCGGCTTCCAGCGGTGAGCAACAACCACCAAATAGCGGTGT
AACCCCCGCCTTGGTCGAACCTCATCGAGTCGTCGCCGCACACCTCCGTT
GTCGGCTTGTTCGAGCTCTGGGGGTTCAGGCTCGCCACATTGGTCAGGCC
GCTGCCGCCGTGCGGAAGAGAGTTTTCGGGCCAATATTGGGTCTTGCTGC
GATGCCGCTGGCATCGGCCGTCGTCCTTGCGCTGGGTTCAGAAGGCGCGG
TCGCCTTCGGTCGACGCAGCGAATTTGCCGCCGTTTTCCTTGCTCTCCGA
CATCAACGGACAGCGAGCGAAGCCTCTCTTCTCTCCGACCTGGAGTCAGC
TTCTCAGATCATGTGGCAACGGCTGATCAGCACAGGAAAGGGTGACGATA
CGGAGCGTGGATCGCGGTGCAGGCCTCGGCCAGTCGGTGGTCACGTGAAG
TACAGAGGAGGGCCGGCACTGCAGGTGCTAGGCGGGGAGGCGCTGGTCGA
AGGCAACCGTGTCACAGCGTCCTCTCACTTCCCCACCATTTACCTTTCTA
ATGTCGGGATAGGTGCAAAGCGAAGCGGAGGCAGGTGGTACTACGAGGTG
ACTCTCCTCACGGGTGGCTTGATGCAGCTGGGATGGGCGGGGCCGGGGTT
CCAGTGCAGCCCTACACGGGGGCAGGGTGTCGGAGACCACATGCAGTCGT
GGGCTTTCGATGGGTTCCGTCAAAAACGATGGTGTGTGTCTTCGGCACTG
TACGGCGAAAGGTGGCGAGCGGGCGATGTTGTTGGTGTGCTCTTGGATAC
CAGCCTCCAAGAAATGCGTTTCAGGTGCGCGTAGCAGGGTTCCGGCTCAT
CCATGTCATCATCAACGAGACACATGTCCCAGCTGCGCGGCGGCAGATAG
GAGCTAGACTCGCGCGTTCTTTGAGCACCACTGGTGGCGGTATCGACAAC
TCTGCCTTGTGTAATGGCGTCGGGGCAGGCGAGAACCCCGGCAGAATTGG
ATTTCGGTCGGCGTACTTTGACCTTTTCCGTCACGTGGTCCACGGGGCTG
AGAAGGAAGACTCGACTTTCAAGTCGCAGGGAGGAAAGGCCAAGACCACT
GACTCTTCCTCGTCCCAGATGGTTTTCCTGCAGATGTTGCAGTCGCTCGC
GTCGTTGCTGACTCCTTCTATACTACGCTACGACCCCTTAGTGAGCTCGA
CTAGCGAGTATTCGAGGTCTTGGCCGCGTCGCCAAGAGCCGCAGACTGTT
GAAGCGATCAATTTATTTGACAACCAGGGATGGCCTGGCCGCACAGGGCG
CGCTTCTTCGTGTCCCGCGATCACGCGCGCGGAGGTAAGCGTGTCTAAAG
CCGTTATCCCAGCAGACCAAGAGTCCACACCGGTGGTCATTGCAGCCATA
TCCATCTTAGGTGTGGTCCTGAGCGGCCAAGGAGATATCCTATCCACTGA
TGATTGGGGGCCAGGCAGCACCCACAAGAATTCTGGTATACATCATGCGG
CGTGGCGGGCACTGGGGGTGATCAGCATGCGAGTGAGTCCATCGTCCGCG
CCGGCGTGGGCAACGCACACGACGAGCGGTGGACACGGTTTTGAGCCCTC
CAGACTAGGAGCGGGCGAGCTTGAGAGACCCCCCGCGACGCGAGAGTCGT
GGAATGCCACCCTGGCCACGCTGCGAGTGATCTTCGACGAGCTGACGCGT
GCTCGAGATTGGGTGGAGAAGCTGCAGCAAAGCAGAATGGCCGAGGAACT
ACTGCTGATAGCCACTGGGGCTCTTCGGCTGTCAGCCGACGACCCGGCGG
CGTCGCTTTGGGTTCAACCGAACTGGATACTTCCGGAATTATCCAAGGAG
GATGGGAAGGAGATCGGCGCATTGAGTTTCTGGATTTACAGGCCACTTGA
CACCACTGACCAGCAGCTGAGCACGCGGCGCGAGAAGCTTGGAGAAAACG
TTTGCTCGAGCTCATGCCGCGATAAGACATACTGCACTTCCCGGATAAAA
GTATTCGCTCTACTCCACGAAGGACGTCATCCAGACAAGACGCGTAACGA
AGTATTTGATCTGTTCGTGAGAATCTATTCAAGTCAAGTTCTGCCACGTG
AAGAATCGGGGATGCATGGAAGCAGCGACGGCGGCGAGGACGGATGTTAC
GTACAGGTGGTGTTAGGCAGGATCAAGGAAAGGTCGGGGGGGGAGATAAA
CAATCGGAGCGAACTCGGTGATGGAAAGGGAGGTGTCTTTGCCGCGACGG
TTCGTGCAGCCGATGGCACACATGAAGCAGACGAGGGCGAGGAGGCGAAA
AATGCCGGCGCCGACGAAAGCAGGAATGAGTCTGTGGACTTCAAAACGGA
GTGTTTTTTTTCGGCATGTTCGCTGCCTCGAGGGCAGTGGACGCATGTGT
ATTGTACGTATTCCATCAAGAGAGGGAGCATTGTGGACAAGCGGGACGCG
ACATCCCGGGGCGGTGCGGACAACGCCAGTGGTGATGTGCAGTCGGAGGT
TTCGATTGCCCTCAACGGCAGCTTCGCCGCTAATCATGCACTTCCTTCGA
GTAGGACCAGCGGTGCGAAGGACGCAATAGCACCGCAGGATCGACCTCCG
ACTCACGGTGAGATGGAACCTGGCGAACTGGATCAGTATCCGACGAGAAA
ACAGGACTTAACTCCTCTCGCTTCTGAGCAATGGAACGGCACACCCACGG
TTTGTGATGTCTGGTGGCACTCGCGAAAGGCTTCTCCCAGACAAGTCCGC
CAAATGGCAGAGAGCGGCATCCCAAGGCATCGAAAGAGTGCACAGCGCGC
GGCCGAGAACTACATCGCCCGACTTGTTGCCCTCGCAGAGGATATGGTTG
CCTCTTCCCAGCGGGTGGCGGCCACGCTGTCATCTCCACGATGGCGCTCC
CTTTGGCTTGAGCTCATGTCTGTTGCCGGAGATCGTGCCAAGAGATCCAT
CGTCCGCTTACTTCGCCCTCTGCTATGCGTCTCCAGCCAGCCCGCCAGCG
ACGATGATGAGGGTACGAGGGCGACACCGACGGCGCCGTCCTACAACCCT
CCCGCTTCTCCAACTTATGAGAATGGTGTCGGAGACCGCGCAATGGTCGA
CAGTCTGTGCGCTTTGTTAGGTCAAACTTTGAGACCTTTATTTCTTTGCC
ACCCGAGCAGTCGCGGTTCGGAGGGCGGAGGTGGAGACCGGACATGGCGA
CAATCGAGCCGGCTGCGGCAAGACTCGTCCATGCCGTCCGAGATCGTTAT
GTTACTAAGGTCGCTGGTAGCCGAAGTTCCAAACCGCTGGCGAAAGCACG
TGTTTGGGGCATTGTCGGACGGGCTTGCCTCCGCTGCTAAGGGTGAGATG
TGTTCTCTTGACGTAGCTTCGGGTGGAAGCGGGACTGGCCTGAAAGAAGA
TGATCGCGCATGGACATGGCTAGGTGCAGCGTTAGCTGCGGCATATCTCG
GAGGCGGTCATGTTGAGGGGCCTCGTCTAGGTGCCACGGTACTACTAGTG
CCAAGTCCCGAATGCATCCCACTTAGCAGTTCAAAAGCTGGGAAAATCGG
GTGTCAAAGGGAAAGTTGGAACCAAAACAACGAAGGGCTATTAAACGAAC
TACTCGGCGGTACTTGCTCGCCACTAGACACGGGTTTCGTTTCCGAAGCG
GCGGTGAAACACACGTGTCGTGGCACCATCGTGGGCTGGGTACGACACAA
ACCCGAGCAGCTGACGACGCCGCCAGAAGGGATGTTATTCGTGGCCGTCG
ATGACCAGCACCAGGAATATTTGGACGATGAAGACGCGGAGAGCAACCGA
TCTCCACCAAAAAGTTACACACGAAGTCAGGCTGCGGAAGACCGGTGTTG
CGCGGATGCATCGTGGACGTCTCGGATAGTTGCCGTGCAGACTCAACAGG
TCCTGTTTCAGGAGGAGATAGTGGAACCGGTGACTCCCTTCTTGTTTCAG
GTGGCCTTGCCGTCTGTCCTCGCTCTCCTCGATTTACCTTTCGCAACGAC
CACGCGGGCAACTTCGGCTTCCAGCGGTGAGCAACAACCACCAAATAGCG
GTGTAACCCCCGCCTTGGTCGAACCTCATCGAGTCGTCGCCGCACACCTC
CGTTGTCGGCTTGTTCGAGCTCTGGGGGTTCAGGCTCGCCACATTGGTCA
GGCCGCTGCCGCCGTGCGGAAGAGAGTTTTCGGGCCAATATTGGGTCTTG
CTGCGATGCCGCTGGCATCGGCCGTCGTCCTTGCGCTGGGTTCAGAAGGC
GCGGTCGCCTTCGGTCGACGCAGCGAATTTGCCGCCGTTTTCCTTGCTCT
CCGACATCAACGGACAGCGAGCGAAGCCTCTCTTCTCTCCGACCTGGAGT
CAGCTTCTCAGATCATGTGGCAACGGCTGATCAGCACAGGAAAGGGTGAC
GATACGGAGCGTGGATCGCGGTGCAGGCCTCGGCCAGTCGGTGGTCACGT
GAAGTACAGAGGAGGGCCGGCACTGCAGGTGCTAGGCGGGGAGGCGCTGG
TCGAAGGCAACCGTGTCACAGCGTCCTCTCACTTCCCCACCATTTACCTT
TCTAATGTCGGGATAGGTGCAAAGCGAAGCGGAGGCAGGTGGTACTACGA
GGTGACTCTCCTCACGGGTGGCTTGATGCAGCTGGGATGGGCGGGGCCGG
GGTTCCAGTGCAGCCCTACACGGGGGCAGGGTGTCGGAGACCACATGCAG
TCGTGGGCTTTCGATGGGTTCCGTCAAAAACGATGGTGTGTGTCTTCGGC
ACTGTACGGCGAAAGGTGGCGAGCGGGCGATGTTGTTGGTGTGCTCTTGG
ATACCAGCCTCCAAGAAATGCGTTTCAGCATGAACGGACGCGACCTCGGG
GCGGCGTTTGAAGGGGCTGATATGCAGGGACTGTACCCTGCGGCATCAAT
GAATGCAGGGCAGGCGGCTCTCTTCAACTTCGGCCATTCTCCATTTCTGT
ACGCTCCGACCGACAGCAACCGGTCGCCATGCCAGCCAGTTTCAGGCGCA
GTGGCAACCGATGTTGTGGCGCATTCTCACGTAGCTGGAAGCGCGGAGCT
TCGTGACAGCAGCGGCGTTGATGAGGATCGAGCTGAGGCCAGGCGCGCAA
ACGGTAGCTCCCAGGACGACACCCGCGAGGTTTCGCCAAGCGCGATCCGG
GGACGAAACGCCGCCGCCGCCACCGGAGCCGGGCGCAGCGAAATCCAGGT
TCACGCCAGCAGCGGTGAAGGGTACGGGCGAGGAGGAGAAAGCGATGATG
ATTCGCGTCTGGAGTTTGAGAGGCAGGCATTGGTGCAGAACCTGATTGCG
ATGGGGTTCCCCGTCGAATGGGCGCTTAGGGCTGCCGGCAGGCCCGCATG
AACGGACGCGACCTCGGGGCGGCGTTTGAAGGGGCTGATATGCAGGGACT
GTACCCTGCGGCATCAATGAATGCAGGGCAGGCGGCTCTCTTCAACTTCG
GCCATTCTCCATTTCTGTACGCTCCGACCGACAGCAACCGGTCGCCATGC
CAGCCAGTTTCAGGCGCAGTGGCAACCGATGTTGTGGCGCATTCTCACGT
AGCTGGAAGCGCGGAGCTTCGTGACAGCAGCGGCGTTGATGAGGATCGAG
CTGAGGCCAGGCGCGCAAACGGTAGCTCCCAGGACGACACCCGCGAGGTT
TCGCCAAGCGCGATCCGGGGACGAAACGCCGCCGCCGCCACCGGAGCCGG
GCGCAGCGAAATCCAGGTTCACGCCAGCAGCGGTGAAGGGTACGGGCGAG
GAGGAGAAAGCGATGATGATTCGCGTCTGGAGTTTGAGAGGCAGGCATTG
GTGCAGAACCTGATTGCGATGGGGTTCCCCGTCGAATGGGCGCTTAGGGC
TGCCGGCAGGCCCGGCTCGGTGATGAGCGAGAGCGCGGCCGCAGCATGGA
TCATTGAACGCCTTGAAATCGAAAACACCAAAATGGAGGAGGAGATGGGC
GACATGGACGCCTGCGAGGAAGATTCCACTGGTGGAGACTCAGGCTCGGT
GATGAGCGAGAGCGCGGCCGCAGCATGGATCATTGAACGCCTTGAAATCG
AAAACACCAAAATGGAGGAGGAGATGGGCGACATGGACGCCTGCGAGGAA
GATTCCACTGGTGGAGACTCAGCGTACAACGACGATACAGGGGGGAGCGA
GGACGGAGATGTCCGAAACACCGGGATCGGTTTCACTTCGGAAGCAGCAG
GGGTCGCGCGGCGAGTGGAGGGAAGAAGGGTCATAGCCCACGAACAAGGA
AGGAACCGGAGGTGGCATGACATGTACAGCGTACAACGACGATACAGGGG
GGAGCGAGGACGGAGATGTCCGAAACACCGGGATCGGTTTCACTTCGGAA
GCAGCAGGGGTCGCGCGGCGAGTGGAGGGAAGAAGGGTCATAGCCCACGA
ACAAGGAAGGAACCGGAGGTGGCATGACATGTACAGCACGGTCAGCAGAA
GCTTCCTTCCCGACAGCAACGGTGAATCCCCGGCCACAGCTGCTGTGCTT
CCCTCCGGATCGCTGGCGTCGTCCCCGATCGAAACAGCTTTTCTCGCCTC
GGCGGAGGCAGCGATGATGGAAGAAACTCAACAAACCCCAAACGGGTTCA
CAAGAGTAGCTCTGTCAGCAAACAAATCGGATCTGCAATCCCTCACCCTC
GTCGTGGACACAGCATTGACAATCCTCTACGCCCGCGCGGCAGCTATCAA
CGTGCTCATGCATATAGTCACGCCATCTGCTACGAACACCTGTCCGTCGC
CACGGTTTGGGCTTGCAACGTCGGATGGTTCTCGGTTGCCCACGTGCACC
GGAGAAGGCAGCGGAGAGCTAGAGAGGACGACAGCTATCGAAGTAGCGCA
CGGCATACTTGAGGCGCTTGCGATCCCGGAAAACCAGCGCCGATTCCAGA
GCTTCACCAAGGCGCTCGTGACCTGGTAACACGGTCAGCAGAAGCTTCCT
TCCCGACAGCAACGGTGAATCCCCGGCCACAGCTGCTGTGCTTCCCTCCG
GATCGCTGGCGTCGTCCCCGATCGAAACAGCTTTTCTCGCCTCGGCGGAG
GCAGCGATGATGGAAGAAACTCAACAAACCCCAAACGGGTTCACAAGAGT
AGCTCTGTCAGCAAACAAATCGGATCTGCAATCCCTCACCCTCGTCGTGG
ACACAGCATTGACAATCCTCTACGCCCGCGCGGCAGCTATCAACGTGCTC
ATGCATATAGTCACGCCATCTGCTACGAACACCTGTCCGTCGCCACGGTT
TGGGCTTGCAACGTCGGATGGTTCTCGGTTGCCCACGTGCACCGGAGAAG
GCAGCGGAGAGCTAGAGAGGACGACAGCTATCGAAGTAGCGCACGGCATA
CTTGAGGCGCTTGCGATCCCGGAAAACCAGCGCCGATTCCAGAGCTTCAC
CAAGGCGCTCGTGACCTGGTAA
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