mRNA_P-fluviatile_contig13.1901.1 (mRNA) Porterinema fluviatile SAG_2381

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

Overview
NamemRNA_P-fluviatile_contig13.1901.1
Unique NamemRNA_P-fluviatile_contig13.1901.1
TypemRNA
OrganismPorterinema fluviatile SAG_2381 (Porterinema fluviatile SAG_2381)
Homology
BLAST of mRNA_P-fluviatile_contig13.1901.1 vs. uniprot
Match: D7G1B0_ECTSI (Uncharacterized protein n=1 Tax=Ectocarpus siliculosus TaxID=2880 RepID=D7G1B0_ECTSI)

HSP 1 Score: 607 bits (1566), Expect = 2.840e-193
Identity = 330/547 (60.33%), Postives = 385/547 (70.38%), Query Frame = 3
Query:  603 IASLSNSYLDLPILSVGGAGARSDSQGDGTEAGAGYLVHVQPAIMPQMEALVRLILDMKLARDAVDGRSEITERVWVAHTSDTYGTAAVAAFNVAANVITVALPAGGSASGLTDDDGGGAALRASVEVAGTFVLPASSDASFASELTVLLDQQASIVVLLAEGYDGAIIRAVLTQANDAGLVSQGVQWYLPDAAAFDHIFDHNSTYRDASLAFDMRGTLGVRSCMPRTGDGSGVAESLTAEWVLLDPNEYPGAGPNGVTADGQIEPFLAFAYDAVFLAAATAQVAQDTVSLA---GRDLTGIELDSCPFPEN-PWLDGAVMRNSILAASADLIGATGPLRMSIGEEDIVRDMDTTTYCAFNLRPDASQGARFEVISTVNGGTLEAEDGQGFQAIGQFLEPQTFPRGASTYPPDRPILQGRHLDVVMRRDAPPFVFVKGDGLSISDYTGITPEFLKANNGGGGSGALSENAGFTYSLRAPPSGTTTVETIEMVRNGSAEMTGSWITITAERSEFVSFTYPYFDLRIAFVYKPLIFRGLDLLKAFAPLN 2231
            + SLSN YLDLP++SV G  AR++S+    E   GYL+H QP ++PQM+ LVRLILDMKLARDAVDGRSE TERVW+ HTSDT+GT A AAFN AA  I+VALP                    +VEVAGT V+ ASS+  F SEL  L+D +ASI+VLLAEG+DGAIIR VL+QAN+AGL ++GVQWYLP+ AAFDH+FD NSTYRDASLAFDMRG LGVR+C PRTG                                                     ++AQDT++LA   G  L GI LDSCPFP N  W DGA+MR+S+L+AS  L+GATGPL MS+GE+D  RD DT T+CA NL+PDA+ GARFEVIST++G TLE+EDG+GFQAI  F E QTFP GA TYPPDRPILQGRH+DVVMRRDAPPFVFV GDG SI D+TGITPEFLK          L++  GFTYSLRAPP GTTT ETIEMVRNGSA+MTGSWITIT+ER+E+VSFTYPYFDL IAFVY P I  G++  KAFAP  
Sbjct:    1 MGSLSNEYLDLPLMSVAGTAARAESR---NETEGGYLLHTQPGVVPQMQVLVRLILDMKLARDAVDGRSETTERVWLVHTSDTFGTIATAAFNAAATTISVALPDTSDXXXXXXXXXXXXXXXXTVEVAGTVVIAASSETMFDSELATLVDNEASIIVLLAEGFDGAIIRTVLSQANEAGL-TEGVQWYLPNVAAFDHVFDRNSTYRDASLAFDMRGALGVRACTPRTG-----------------------------------------------------KMAQDTLTLANVNGSGLQGIALDSCPFPRNGSWADGALMRDSLLSASGTLVGATGPLGMSVGEDDDGRDADTVTFCAVNLKPDATHGARFEVISTLDGATLESEDGEGFQAISPFQEAQTFPAGALTYPPDRPILQGRHMDVVMRRDAPPFVFVDGDGSSIDDFTGITPEFLKQ---------LADVVGFTYSLRAPPEGTTTPETIEMVRNGSADMTGSWITITSERAEYVSFTYPYFDLGIAFVYLPTIDEGVNFWKAFAPFE 481          
BLAST of mRNA_P-fluviatile_contig13.1901.1 vs. uniprot
Match: A0A6H5JES6_9PHAE (PBPe domain-containing protein n=1 Tax=Ectocarpus sp. CCAP 1310/34 TaxID=867726 RepID=A0A6H5JES6_9PHAE)

HSP 1 Score: 348 bits (893), Expect = 2.820e-102
Identity = 180/272 (66.18%), Postives = 212/272 (77.94%), Query Frame = 3
Query: 1452 VAQDTVSLAGRD---LTGIELDSCPFPEN-PWLDGAVMRNSILAASADLIGATGPLRMSIGEEDIVRDMDTTTYCAFNLRPDASQGARFEVISTVNGGTLEAEDGQGFQAIGQFLEPQTFPRGASTYPPDRPILQGRHLDV--------VMRRDAPPFVFVKGDGLSISDYTGITPEFLKANNGGGGSGALSENAGFTYSLRAPPSGTTTVETIEMVRNGSAEMTGSWITITAERSEFVSFTYPYFDLRIAFVYKPLIFRGLDLLKAFAPLN 2231
            +AQDT++LA  +   L GI LDSCPFP N  W DGA+MR+S+L+AS  L+GATGPL MS+GE+D  RD+DT T+CA NL+PDA+ GARFEVIST++G TL++EDG+GFQAI  F E QTFP GA TYPPDRPILQGRH+DV        VMRRDAPPFVFV GDG SI D+TGITPEFL+          L++  GFTYSLRAPP GTTT +TIEMVRNGSA+MTGSWITIT+ER+E+VSFTYPYFDL IAFVY P I  G++  KAFAP  
Sbjct:    1 MAQDTLTLANVNDSGLQGIVLDSCPFPRNGSWADGALMRDSLLSASGTLVGATGPLGMSVGEDDDGRDVDTVTFCAVNLKPDATHGARFEVISTLDGATLDSEDGEGFQAISPFQEAQTFPAGALTYPPDRPILQGRHMDVRTPPGGGVVMRRDAPPFVFVDGDGSSIDDFTGITPEFLEK---------LADVVGFTYSLRAPPEGTTTPDTIEMVRNGSADMTGSWITITSERAEYVSFTYPYFDLGIAFVYLPTIDEGVNFWKAFAPFE 263          
BLAST of mRNA_P-fluviatile_contig13.1901.1 vs. uniprot
Match: D7FGS3_ECTSI (PBPe domain-containing protein n=1 Tax=Ectocarpus siliculosus TaxID=2880 RepID=D7FGS3_ECTSI)

HSP 1 Score: 324 bits (830), Expect = 2.440e-88
Identity = 215/610 (35.25%), Postives = 302/610 (49.51%), Query Frame = 3
Query:  453 LTGNNTLKVSTAAVAKEHGLAAVADLCLALDGHNDTVAVVSNLGTRSTSSIASLSNSYLDLPILSVGGAGARSDSQGDGTEAGAG----YLVHVQPAIMPQMEALVRLILDMKLARDAVDGRSEITERVWVAHTSDTYGTAAVAAFNVAANVITVALPAGGSASGLTDDDGGGAALRASVEVAGTFVLPASSDASFASELTVLLDQQASIVVLLAEGYDGAIIRAVLTQANDAGLVSQGVQWYLPDAAAFDHIFDHNSTYRDASLAFDMRGTLGVRSCMPRTGDGSGVAESLTAEWVLLDPNEYPGAGPNGVTADGQIEPFLAFAYDAVFLAAATAQVAQDTVSLAGRDLTGIELDSCPFPENPWLDGAVMRNSILAASADLIGATGPLRMSIGEEDIVRDMDT----------TTYCAFNLRPDASQGARFEVISTVNGGTLEAEDGQ--GFQAIGQFLEPQTFPRGASTYPPDRPILQGRHLDVVMRRDAPPFVFVKGDGLSISDYTGITPEFLKANNGGGGSGALSENAGFTYSLRAPPSGTTTVETIEMVRNGSAEMTGSWITITAERSEFVSFTYPYFDLRIAFVYKPLIFRGLDLLKAFAPLNR 2234
            L GN TL V   A     G  A+  LC AL+        V   GT   S + ++SN +  LP+++   + AR+++       G G    YL  VQP +  +MEAL RLILDMK+ RD   G    TERV + +  DTYG  A +AF  A               G+  D      + +S+E+A +  +       +   L+ L++  ASIVV L+EGYDGA +R+VL QA + GL ++ VQWYL   +A D IF HN +Y D+ LA+D RG LGVR+C    G GS    +LT+ W  LD ++YPGAG   +T  G+++P LA+AYDAVF+ AA     Q T +  G  L G            W DGA +R + L    +++G TGP+        +     T          T +CA NL+  AS GA F         T    +G    F+ I  + + QTFP G+  YP DRP L  +H  V+    A PF  + G      DYTGI  + L+          LS   GFTY++    +  +T E I  V NG+ +M  SW+TI   R + VSF+YP+    ++FVY+P +   ++  K F P  R
Sbjct:   25 LDGNLTLSVVEVAT----GSRAIEGLCDALE-------YVGENGTFGASLLETVSNDFFGLPMVTPSASAARANTYFSSGAYGLGGEGSYLFGVQPDVFSEMEALARLILDMKVERDLDRGWYRTTERVSMIYPDDTYGAVAASAFVRAVR----------GTEGINIDSNAAGEMPSSMELAKSEPVDPILGTDYRPTLSALVEDHASIVVFLSEGYDGAFVRSVLEQALEVGLANEDVQWYLSGPSAMDGIFSHNESYHDSQLAYDFRGMLGVRACPAIKGSGSEALANLTSRWAALDSDKYPGAGFGTLTPGGRLDPLLAYAYDAVFVLAAAVATVQSTATDWGGVLEGFVTGKSA---GLWQDGAFIREAALGT--EIVGVTGPVAFRESTSAVTSGAGTAGSGWRRTNGTEFCALNLQAHASLGATFATTMLWKPETFVDSNGTLATFENISPYQKNQTFPAGSDVYPFDRPTLSRQHFKVITEEAAVPFAVITGRENQTGDYTGIALDLLEV---------LSGRLGFTYNISVANASISTDEVIGYVSNGTYDMVASWVTINERRLDTVSFSYPFMATGLSFVYRPEVLDKVNWWKMFQPFER 599          
BLAST of mRNA_P-fluviatile_contig13.1901.1 vs. uniprot
Match: D7FGS4_ECTSI (PBPe domain-containing protein n=2 Tax=Ectocarpus TaxID=2879 RepID=D7FGS4_ECTSI)

HSP 1 Score: 315 bits (806), Expect = 2.540e-86
Identity = 197/561 (35.12%), Postives = 284/561 (50.62%), Query Frame = 3
Query:  603 IASLSNSYLDLPILSVGGAGARSDSQGDGTEAGAG----YLVHVQPAIMPQMEALVRLILDMKLARDAVDGRSEITERVWVAHTSDTYGTAAVAAFNVAANVITVALPAGGSASGLTDDDGGGAALRASVEVAGTFVLPASSDASFASELTVLLDQQASIVVLLAEGYDGAIIRAVLTQANDAGLVSQGVQWYLPDAAAFDHIFDHNSTYRDASLAFDMRGTLGVRSCMPRTGDGSGVAESLTAEWVLLDPNEYPGAGPNGVTADGQIEPFLAFAYDAVFLAAATAQVAQDTVSLAGRDLTGIELDSCPFPENPWLDGAVMRNSILAASADLIGATGPLRMSIGEEDIVRDMDT----------TTYCAFNLRPDASQGARFEVISTVNGGTLEAEDGQ--GFQAIGQFLEPQTFPRGASTYPPDRPILQGRHLDVVMRRDAPPFVFVKGDGLSISDYTGITPEFLKANNGGGGSGALSENAGFTYSLRAPPSGTTTVETIEMVRNGSAEMTGSWITITAERSEFVSFTYPYFDLRIAFVYKPLIFRGLDLLKAFAPLNRD 2237
            + ++SN +  LP+++   + AR+++       G G    YL  VQP +  +MEAL RLILDMK+ RD   G    TERV + ++ DTYG  A +AF  A               G+  D      + +S+E+A +  +       +   L+ L++ +ASIVVLL+EGYDG  +R+VL QA + GL ++ VQWYL  A+A D IF HN +Y D+ LA+D RG LGVR+C    G GS    +LT+ W  LD ++YPGAG   +T  G+++P LA+AYDA F+ A      Q T +  G  L G            W DGA +R + L    +++G TGP+        +     T          T +CA NL+  AS GA FE        T    +G    F+ I    + QTFP G   YP DRP L  +H +V+      PF F+        +YTGI  + L+          LS   GFTY++    S  +T E I  V NG+ +M  SW+TI+  R + VSF+YP+    ++FVY+P +   ++  K F P  R 
Sbjct:    9 LETVSNDFFGLPMVTPSASAARANTYFSSGAYGLGGKGSYLFGVQPDVFSEMEALARLILDMKVERDLDRGWYRTTERVSMIYSDDTYGAVAASAFVRAVR----------RTEGMNIDSTAAGEMPSSIELAKSEPVNTILGTDYRPTLSALVEDRASIVVLLSEGYDGTFVRSVLEQALEVGLANEDVQWYLSGASAMDGIFSHNESYHDSQLAYDFRGMLGVRACPAIQGSGSEALANLTSRWEALDSDKYPGAGIGTLTPGGRLDPLLAYAYDAAFVLATAVAAVQSTAADWGGVLEGFVTGKAA---GLWQDGAFIREAALGT--EIVGVTGPVAFRESASTVTSGAGTAGSGWRRTNGTEFCALNLQAHASLGATFEATMLWRPETFVDTNGTLATFEKISPNQKNQTFPSGGDVYPFDRPTLSRQHFEVITEEATVPFAFITRRENQTEEYTGIALDLLEV---------LSGRLGFTYNISVANSSVSTDEVIGYVSNGTYDMVASWVTISERRLDTVSFSYPFMATGLSFVYRPEVLDKVNWWKMFQPFERQ 545          
BLAST of mRNA_P-fluviatile_contig13.1901.1 vs. uniprot
Match: A0A6H5J962_9PHAE (Uncharacterized protein n=1 Tax=Ectocarpus sp. CCAP 1310/34 TaxID=867726 RepID=A0A6H5J962_9PHAE)

HSP 1 Score: 266 bits (681), Expect = 2.580e-77
Identity = 149/247 (60.32%), Postives = 179/247 (72.47%), Query Frame = 3
Query:  603 IASLSNSYLDLPILSVGGAGARSDSQGDGTEAGAGYLVHVQPAIMPQMEALVRLILDMKLARDAVDGR------------------SEITERVWVAHTSDTYGTAAVAAFNVAANVITVALPAGGSASGLTDDDGGGAALRASVEVAGTFVLPASSDASFASELTVLLDQQASIVVLLAEGYDGAIIRAVLTQANDAGLVSQGVQWYLPDAAAFDHIFDHNSTYRDASLAFDMRGTLGVRSCMPRTG 1289
            + SLSN YLDLP++SV G  AR++S+    E   GYL+H QP ++PQM+ALVRLILDMKLARDAVDGR                  SE TERVW+ HTSDT+GT A AAFN AA  I+VALP   ++         G   RA+VEVAGT V+ ASS+A F SEL  L+D +ASI+VLLAE +DGAI+R VL+QAN+AGL ++GVQWYLP+ AAFDH+FD NSTYRDASLAFDMRG LGVR+C PRTG
Sbjct:    1 MGSLSNEYLDLPLMSVAGTAARAESR---NETEGGYLLHTQPGVVPQMQALVRLILDMKLARDAVDGRREGGGAEARERERNPLLLSETTERVWLVHTSDTFGTIATAAFNNAATTISVALP--NTSDXXXXXXXIGEEERATVEVAGTVVIAASSEAMFDSELATLVDNEASIIVLLAEAFDGAIVRTVLSQANEAGL-TEGVQWYLPNVAAFDHVFDRNSTYRDASLAFDMRGALGVRACTPRTG 241          
BLAST of mRNA_P-fluviatile_contig13.1901.1 vs. uniprot
Match: A0A6H5JG95_9PHAE (Uncharacterized protein n=1 Tax=Ectocarpus sp. CCAP 1310/34 TaxID=867726 RepID=A0A6H5JG95_9PHAE)

HSP 1 Score: 217 bits (552), Expect = 1.670e-56
Identity = 119/302 (39.40%), Postives = 175/302 (57.95%), Query Frame = 2
Query: 2222 PFEPGLWLALLLALLVTVFLLWLFEGAKNDEF-----SRGGWDRRHRNFTRGFSRSVYVTSSLMMSQLTHKPETLEGYLLTTGWLFTSFVLAASYTAELASFLTATRTMTTNLSIEGLKNGEIPHSNVALLQGGNTQFLYERDFQRCGTPQECSQGDT---PQPCYSTAECFDMVMNGTALTALADSATAEYELMNDFCGLTTLPQELYPQHYGFVVPLDSELVKDFQTATLNLREDGTLSSIIDNYLRPTQICAPASTDNGNDT--NLTVADVSGVFVVLAFFLAISTISWCFRRSPWAKR 3097
            PFE  LW+ ++   +V   LLWLF+GAKN+ F     +  G  RR    + G + S YVT +L+M Q+ H+P T+E Y+LT+GW+F  F+L AS+TAELASFL+A +    +  ++ LKNG +PH+ VA+ Q    Q  YE +   C    EC  G+    P  CY+  ECF++V N T    L DS TA Y + +++CGL  L       H+G V+  DS  + +F+ A L L E GTL+ I + Y   ++       ++ + T  NLT+ D++GVF+VL  F+A S + W FR+S  AK+
Sbjct:   25 PFERPLWMLIVGTTVVMFTLLWLFDGAKNELFMDKVPTATGSKRR---LSSGMAMSSYVTGALLMGQMAHEPYTVESYILTSGWMFACFILGASFTAELASFLSAEKEEALSFGVDDLKNGAVPHTQVAVRQDDTLQAFYEEEIMGCYGAAECYGGEDENFPVTCYTIEECFELVDNETVKVTLVDSVTAAYRVADEYCGLDILSDTFNKAHFGLVLEEDSPYLGEFELALLELEEAGTLAEIAEPYFDTSRCAYLEDYEDASSTSQNLTLVDLAGVFLVLTMFVAASLVVWVFRKSFRAKK 323          
BLAST of mRNA_P-fluviatile_contig13.1901.1 vs. uniprot
Match: D7G990_ECTSI (Uncharacterized protein n=1 Tax=Ectocarpus siliculosus TaxID=2880 RepID=D7G990_ECTSI)

HSP 1 Score: 167 bits (422), Expect = 1.970e-41
Identity = 112/241 (46.47%), Postives = 145/241 (60.17%), Query Frame = 2
Query: 2831 HYGFVVPLDSELVKDFQTATLNLREDGTLSSIIDNYLRPTQICAPASTDNGNDTNLTVADVSGVFVVLAFFLAISTISWCFRRSPWAKRSRARRQERLRTQDSDIERSVFENYAKMSRRQQKAFAMQATVSLLQNSREVNAASKILLNA-RRGDSKDPGGDGDPRGDRKGSD--------------GAPGDPKGTTVRRKKPFQDEIASGRPVVTLGGGGEDSSNHSWPSRSASTSSLLFR 3508
            HYG V+P  S L ++ Q ATL LREDGTLS I + YL P+ +C P +T     +N+TV+DVSGVF VL FF+  +T+SWCFRRSPWAKR++ RR  RL  +    E+SV ++YAKMSR QQKAFAMQATV+LLQ+SRE++A+SK L+     G  K P   G                         APG+ +         F+ E+A GRPVV +GGG  DS +  +  R+ S S LL R
Sbjct:   61 HYGLVLPYGSGLTEELQAATLQLREDGTLSDIEETYLDPSAVCVPVTTSEEESSNMTVSDVSGVFFVLGFFVIAATVSWCFRRSPWAKRAKERR--RLE-KGGAAEQSVMDSYAKMSRGQQKAFAMQATVNLLQHSRELSASSKTLMEGISEGAKKVPDAAGXXXXXXXXXXXXXXXXXXXXXXXRAAPGEAE---------FRREMAEGRPVVGIGGGMGDS-DQGFTRRAPSLSGLLSR 288          
BLAST of mRNA_P-fluviatile_contig13.1901.1 vs. uniprot
Match: A0A5J4YXE4_PORPP (Glutamate receptor ionotropic, delta-1 n=1 Tax=Porphyridium purpureum TaxID=35688 RepID=A0A5J4YXE4_PORPP)

HSP 1 Score: 148 bits (374), Expect = 5.080e-32
Identity = 86/288 (29.86%), Postives = 147/288 (51.04%), Query Frame = 2
Query: 2222 PFEPGLWLALLLALLVTVFLLWLFEGAKNDEFSRGGWDRRHRNFTRGFSRSVYVTSSLMMSQLTHKPETLEGYLLTTGWLFTSFVLAASYTAELASFLTATRTMTT-NLSIEGLKNGEIPHSNVALLQGGNTQFLYERDFQRCGTPQECSQGD-TPQPCYSTAECFDMVMNGTALTALADSATAEYELMNDFCG-LTTLPQELYPQHYGFVVPLDSELVKDFQTATLNLREDGTLSSIIDNYLRPTQICAPASTDNGNDTNLTVADVSGVFVVLAFFLAISTISWCFR 3076
            PF   +WLA+ L L +     +  EG        G +D   +N+   + RS Y++ +L+++QL+H+P+T+ GY+LTTGWL  +F++ ASY AELASFL  +   +  +  I  L++G    S + +L  G T+         CG+  EC++ D T   C    EC+  V++G     + D+  A Y  + ++CG +T      +  +YG ++P +S L  DF    + +REDG+L++   NYL     C+   T        T+  + G+F+++   + +    W  R
Sbjct:  619 PFSWQIWLAIFLFLFLVTTCFFALEGV------HGNFDFTDKNYFSMYGRSCYISFALLLNQLSHEPQTVSGYVLTTGWLIFAFIVTASYVAELASFLVGSDVESLFSRGIVVLRDGTKDVSAIGVLDDGATEAYIRNHVIGCGS--ECTEQDMTYMKCADPTECYQAVIDGKIEAFVTDAPIAMYSALTEYCGQITVTGASFHHSNYGMMLPRNSALADDFNRILMEMREDGSLAAATQNYLPDASTCSADETLRP----FTITSLGGLFIIVGVIMGVGFTIWVLR 894          
BLAST of mRNA_P-fluviatile_contig13.1901.1 vs. uniprot
Match: A0A5J4YHV8_PORPP (Glutamate receptor ionotropic, kainate 2 n=1 Tax=Porphyridium purpureum TaxID=35688 RepID=A0A5J4YHV8_PORPP)

HSP 1 Score: 110 bits (276), Expect = 8.860e-21
Identity = 106/327 (32.42%), Postives = 155/327 (47.40%), Query Frame = 2
Query: 2120 VGIRLVHLPVLRPTNRLRLQAPDLPRAGLVEGVCPFEPGLWLALLLALLVTVFLLWLFEGAKNDEFSRGGWDRRHRNFTRGFSRSVYVTSSLMMSQLTHKPETLEGYLLTTGWLFTSFVLAASYTAELASFLTATRTMTTNLSIEGLKNGEIPHSNVA-------LLQGGNTQFLYERDFQRCGTPQECSQGDTPQPCYSTAECFDMVMNGTALTALADSATAEYELMND--FCGLTTLPQELYPQHYGFVVPLDSELVKDFQTATLNLREDGTLSSIIDNYLRPTQICAPASTDNGNDTNLTVADVSGVFVVLAFFLAISTISWCF 3073
            +G+R+VH P  RP ++      DL R  +     PFEP +W  +++A +V +    LFE   ND   RG      R     F  S+Y      + Q T  PET EG LL  G     F+LAA+YTAELASFLTA +       ++  +NGEI   +VA       LL   + +  + ++  +   P+        Q CY + EC +MV NGTA   + D+  AEY L  +  F  L  L   + PQ YG V+  D      F  A L LRE   L+ +   +    ++     +D+  D  +T+ +V G+F++LA  L I+   W F
Sbjct:  228 LGLRIVHNP--RPDSQ------DLWRIFV-----PFEPLVWGLIVVAFVVILLSYALFEHGLNDAEFRG------RPIKDVFL-SLYYVFQTAVQQSTPLPETTEGRLLMIGSTAFFFILAATYTAELASFLTANKVFELISDVD--QNGEINEIDVASVSEILTLLADSSIESWFVQNALQ-NAPRNY------QYCYRSFECLEMVANGTAGATILDAPAAEYLLGTEASFSSLELLGAVMNPQGYGIVLRQDDPNTPFFNRAILLLRETSMLAQLRALWFPALRV---GDSDDALDP-VTIQEVGGIFIILAIILGIA---WLF 518          
BLAST of mRNA_P-fluviatile_contig13.1901.1 vs. uniprot
Match: A0A7S1TK83_9RHOD (Hypothetical protein n=1 Tax=Erythrolobus australicus TaxID=1077150 RepID=A0A7S1TK83_9RHOD)

HSP 1 Score: 109 bits (272), Expect = 2.340e-20
Identity = 93/332 (28.01%), Postives = 146/332 (43.98%), Query Frame = 2
Query: 2120 VGIRLVHLPVLRPTNRLRLQAPDLPRAGLVEGVCPFEPGLWLALLLALLVTVFLLWLFEGAKNDEFSRGGWDRRHRNFTRGFSRSVYVTSSLMMSQLTHKPETLEGYLLTTGWLFTSFVLAASYTAELASFLTATRTMTTNLSIEGLKNGEIPHSN-------VALLQGGNTQFLYERDFQRCGTPQECSQGDTPQPCYSTAECFDMVMNGTALTALADSATAEYELMN--DFCGLTTLPQELYPQHYGFVVPLDSELVKDFQTATLNLREDGTLSSIIDNYLRPTQICAPASTDNGNDTN----LTVADVSGVFVVLAFFLAISTISWCFR 3076
            +G+R+VH P     +  R+               PFE  +W  +     +    L  FE + ND   R        N       S+Y T   ++ Q++ + ET EG L   G +   F++AA+YTAELASFLT ++       ++   NGEI   +       +A+L G + +     +    G P+        + CYS+ EC  MV NG+    + D   AEY L +  DF GL  L   +  Q YG ++      +  F  A L+LRE G L  +   +        PA   + N+ +    +T+ ++SG+F++L  FLA + I W  R
Sbjct:  197 LGLRIVHEPKPLEPSVFRI-------------FIPFEGAVWGCIAGCFALIALCLAFFEASYNDSEFRS-------NSINNLFLSMYYTFQTVVQQVSMQAETTEGRLTLMGAMAFFFIIAATYTAELASFLTLSKVFQIITDVD--HNGEINQIDLAEYVHVIAILAGSSIESWLLNEVMDPGQPRSY------RVCYSSVECLTMVKNGSVAGTVLDGPFAEYLLASNSDFDGLELLGSPMNLQGYGVILREADPNLNLFDQAVLSLRESGALEELRQKWF-------PALLVSTNEDDQLQAVTLDEISGIFIILGLFLAAAWIYWIIR 493          
The following BLAST results are available for this feature:
BLAST of mRNA_P-fluviatile_contig13.1901.1 vs. uniprot
Analysis Date: 2022-09-19 (Diamond blastx: OGS1.0 vs UniRef90)
Total hits: 25
Match NameE-valueIdentityDescription
D7G1B0_ECTSI2.840e-19360.33Uncharacterized protein n=1 Tax=Ectocarpus silicul... [more]
A0A6H5JES6_9PHAE2.820e-10266.18PBPe domain-containing protein n=1 Tax=Ectocarpus ... [more]
D7FGS3_ECTSI2.440e-8835.25PBPe domain-containing protein n=1 Tax=Ectocarpus ... [more]
D7FGS4_ECTSI2.540e-8635.12PBPe domain-containing protein n=2 Tax=Ectocarpus ... [more]
A0A6H5J962_9PHAE2.580e-7760.32Uncharacterized protein n=1 Tax=Ectocarpus sp. CCA... [more]
A0A6H5JG95_9PHAE1.670e-5639.40Uncharacterized protein n=1 Tax=Ectocarpus sp. CCA... [more]
D7G990_ECTSI1.970e-4146.47Uncharacterized protein n=1 Tax=Ectocarpus silicul... [more]
A0A5J4YXE4_PORPP5.080e-3229.86Glutamate receptor ionotropic, delta-1 n=1 Tax=Por... [more]
A0A5J4YHV8_PORPP8.860e-2132.42Glutamate receptor ionotropic, kainate 2 n=1 Tax=P... [more]
A0A7S1TK83_9RHOD2.340e-2028.01Hypothetical protein n=1 Tax=Erythrolobus australi... [more]

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Alignments
The following features are aligned
Aligned FeatureFeature TypeAlignment Location
P-fluviatile_contig13contigP-fluviatile_contig13:2714621..2740604 -
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 score607.1
Seed ortholog evalue9.9e-171
Seed eggNOG ortholog2880.D7G1B0
KEGG koko:K05313
KEGG TC1.A.10.1.14,1.A.10.1.15,1.A.10.1.16,1.A.10.1.17
EggNOG free text desc.ionotropic glutamate receptor activity
EggNOG OGsKOG1052@1,KOG1052@2759
COG Functional cat.U
Best tax levelEukaryota
Best eggNOG OGNA|NA|NA
BRITEko00000,ko04040
Hectar predicted targeting categorysignal peptide
Ec32 ortholog descriptionIonotropic glutamate receptor
Ec32 orthologEc-12_005170.1
Exons21
Model size6624
Cds size1962
Stop1
Start1
Relationships

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

Feature NameUnique NameSpeciesTypePosition
1622815579.230416-UTR-P-fluviatile_contig13:2714620..27180031622815579.230416-UTR-P-fluviatile_contig13:2714620..2718003Porterinema fluviatile SAG_2381UTRP-fluviatile_contig13 2714621..2718003 -
1693562328.0290093-UTR-P-fluviatile_contig13:2714620..27180031693562328.0290093-UTR-P-fluviatile_contig13:2714620..2718003Porterinema fluviatile SAG_2381UTRP-fluviatile_contig13 2714621..2718003 -
1622815579.2430599-UTR-P-fluviatile_contig13:2718546..27187801622815579.2430599-UTR-P-fluviatile_contig13:2718546..2718780Porterinema fluviatile SAG_2381UTRP-fluviatile_contig13 2718547..2718780 -
1693562328.0406148-UTR-P-fluviatile_contig13:2718546..27187801693562328.0406148-UTR-P-fluviatile_contig13:2718546..2718780Porterinema fluviatile SAG_2381UTRP-fluviatile_contig13 2718547..2718780 -
1622815579.2548494-UTR-P-fluviatile_contig13:2719664..27197871622815579.2548494-UTR-P-fluviatile_contig13:2719664..2719787Porterinema fluviatile SAG_2381UTRP-fluviatile_contig13 2719665..2719787 -
1693562328.0504508-UTR-P-fluviatile_contig13:2719664..27197871693562328.0504508-UTR-P-fluviatile_contig13:2719664..2719787Porterinema fluviatile SAG_2381UTRP-fluviatile_contig13 2719665..2719787 -
1622815579.2651289-UTR-P-fluviatile_contig13:2720622..27206761622815579.2651289-UTR-P-fluviatile_contig13:2720622..2720676Porterinema fluviatile SAG_2381UTRP-fluviatile_contig13 2720623..2720676 -
1693562328.401283-UTR-P-fluviatile_contig13:2720622..27206761693562328.401283-UTR-P-fluviatile_contig13:2720622..2720676Porterinema fluviatile SAG_2381UTRP-fluviatile_contig13 2720623..2720676 -
1622815579.2753973-UTR-P-fluviatile_contig13:2721611..27217221622815579.2753973-UTR-P-fluviatile_contig13:2721611..2721722Porterinema fluviatile SAG_2381UTRP-fluviatile_contig13 2721612..2721722 -
1693562328.4132779-UTR-P-fluviatile_contig13:2721611..27217221693562328.4132779-UTR-P-fluviatile_contig13:2721611..2721722Porterinema fluviatile SAG_2381UTRP-fluviatile_contig13 2721612..2721722 -
1622815579.2876647-UTR-P-fluviatile_contig13:2722364..27224141622815579.2876647-UTR-P-fluviatile_contig13:2722364..2722414Porterinema fluviatile SAG_2381UTRP-fluviatile_contig13 2722365..2722414 -
1693562328.7676485-UTR-P-fluviatile_contig13:2722364..27224141693562328.7676485-UTR-P-fluviatile_contig13:2722364..2722414Porterinema fluviatile SAG_2381UTRP-fluviatile_contig13 2722365..2722414 -
1622815579.3046439-UTR-P-fluviatile_contig13:2722854..27229361622815579.3046439-UTR-P-fluviatile_contig13:2722854..2722936Porterinema fluviatile SAG_2381UTRP-fluviatile_contig13 2722855..2722936 -
1693562328.7855692-UTR-P-fluviatile_contig13:2722854..27229361693562328.7855692-UTR-P-fluviatile_contig13:2722854..2722936Porterinema fluviatile SAG_2381UTRP-fluviatile_contig13 2722855..2722936 -
1622815579.3178642-UTR-P-fluviatile_contig13:2723448..27234961622815579.3178642-UTR-P-fluviatile_contig13:2723448..2723496Porterinema fluviatile SAG_2381UTRP-fluviatile_contig13 2723449..2723496 -
1693562328.7976987-UTR-P-fluviatile_contig13:2723448..27234961693562328.7976987-UTR-P-fluviatile_contig13:2723448..2723496Porterinema fluviatile SAG_2381UTRP-fluviatile_contig13 2723449..2723496 -
1622815579.3360445-UTR-P-fluviatile_contig13:2724021..27241071622815579.3360445-UTR-P-fluviatile_contig13:2724021..2724107Porterinema fluviatile SAG_2381UTRP-fluviatile_contig13 2724022..2724107 -
1693562328.8061233-UTR-P-fluviatile_contig13:2724021..27241071693562328.8061233-UTR-P-fluviatile_contig13:2724021..2724107Porterinema fluviatile SAG_2381UTRP-fluviatile_contig13 2724022..2724107 -
1622815579.3459146-UTR-P-fluviatile_contig13:2724546..27246401622815579.3459146-UTR-P-fluviatile_contig13:2724546..2724640Porterinema fluviatile SAG_2381UTRP-fluviatile_contig13 2724547..2724640 -
1693562328.813897-UTR-P-fluviatile_contig13:2724546..27246401693562328.813897-UTR-P-fluviatile_contig13:2724546..2724640Porterinema fluviatile SAG_2381UTRP-fluviatile_contig13 2724547..2724640 -
1622815579.3562026-UTR-P-fluviatile_contig13:2724890..27250031622815579.3562026-UTR-P-fluviatile_contig13:2724890..2725003Porterinema fluviatile SAG_2381UTRP-fluviatile_contig13 2724891..2725003 -
1693562328.8219368-UTR-P-fluviatile_contig13:2724890..27250031693562328.8219368-UTR-P-fluviatile_contig13:2724890..2725003Porterinema fluviatile SAG_2381UTRP-fluviatile_contig13 2724891..2725003 -
1622815579.526183-UTR-P-fluviatile_contig13:2740320..27406041622815579.526183-UTR-P-fluviatile_contig13:2740320..2740604Porterinema fluviatile SAG_2381UTRP-fluviatile_contig13 2740321..2740604 -
1693562329.2926617-UTR-P-fluviatile_contig13:2740320..27406041693562329.2926617-UTR-P-fluviatile_contig13:2740320..2740604Porterinema fluviatile SAG_2381UTRP-fluviatile_contig13 2740321..2740604 -


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

Feature NameUnique NameSpeciesTypePosition
1622815579.3689864-CDS-P-fluviatile_contig13:2725003..27250511622815579.3689864-CDS-P-fluviatile_contig13:2725003..2725051Porterinema fluviatile SAG_2381CDSP-fluviatile_contig13 2725004..2725051 -
1693562328.8299007-CDS-P-fluviatile_contig13:2725003..27250511693562328.8299007-CDS-P-fluviatile_contig13:2725003..2725051Porterinema fluviatile SAG_2381CDSP-fluviatile_contig13 2725004..2725051 -
1622815579.3797317-CDS-P-fluviatile_contig13:2725342..27255581622815579.3797317-CDS-P-fluviatile_contig13:2725342..2725558Porterinema fluviatile SAG_2381CDSP-fluviatile_contig13 2725343..2725558 -
1693562328.8376722-CDS-P-fluviatile_contig13:2725342..27255581693562328.8376722-CDS-P-fluviatile_contig13:2725342..2725558Porterinema fluviatile SAG_2381CDSP-fluviatile_contig13 2725343..2725558 -
1622815579.3897095-CDS-P-fluviatile_contig13:2725946..27260691622815579.3897095-CDS-P-fluviatile_contig13:2725946..2726069Porterinema fluviatile SAG_2381CDSP-fluviatile_contig13 2725947..2726069 -
1693562328.8451648-CDS-P-fluviatile_contig13:2725946..27260691693562328.8451648-CDS-P-fluviatile_contig13:2725946..2726069Porterinema fluviatile SAG_2381CDSP-fluviatile_contig13 2725947..2726069 -
1622815579.4046812-CDS-P-fluviatile_contig13:2726935..27270281622815579.4046812-CDS-P-fluviatile_contig13:2726935..2727028Porterinema fluviatile SAG_2381CDSP-fluviatile_contig13 2726936..2727028 -
1693562328.8527825-CDS-P-fluviatile_contig13:2726935..27270281693562328.8527825-CDS-P-fluviatile_contig13:2726935..2727028Porterinema fluviatile SAG_2381CDSP-fluviatile_contig13 2726936..2727028 -
1622815579.421528-CDS-P-fluviatile_contig13:2727660..27279161622815579.421528-CDS-P-fluviatile_contig13:2727660..2727916Porterinema fluviatile SAG_2381CDSP-fluviatile_contig13 2727661..2727916 -
1693562328.860148-CDS-P-fluviatile_contig13:2727660..27279161693562328.860148-CDS-P-fluviatile_contig13:2727660..2727916Porterinema fluviatile SAG_2381CDSP-fluviatile_contig13 2727661..2727916 -
1622815579.4336257-CDS-P-fluviatile_contig13:2728220..27284431622815579.4336257-CDS-P-fluviatile_contig13:2728220..2728443Porterinema fluviatile SAG_2381CDSP-fluviatile_contig13 2728221..2728443 -
1693562328.867459-CDS-P-fluviatile_contig13:2728220..27284431693562328.867459-CDS-P-fluviatile_contig13:2728220..2728443Porterinema fluviatile SAG_2381CDSP-fluviatile_contig13 2728221..2728443 -
1622815579.4458976-CDS-P-fluviatile_contig13:2729091..27292511622815579.4458976-CDS-P-fluviatile_contig13:2729091..2729251Porterinema fluviatile SAG_2381CDSP-fluviatile_contig13 2729092..2729251 -
1693562328.8749046-CDS-P-fluviatile_contig13:2729091..27292511693562328.8749046-CDS-P-fluviatile_contig13:2729091..2729251Porterinema fluviatile SAG_2381CDSP-fluviatile_contig13 2729092..2729251 -
1622815579.4604826-CDS-P-fluviatile_contig13:2730159..27302921622815579.4604826-CDS-P-fluviatile_contig13:2730159..2730292Porterinema fluviatile SAG_2381CDSP-fluviatile_contig13 2730160..2730292 -
1693562328.8821757-CDS-P-fluviatile_contig13:2730159..27302921693562328.8821757-CDS-P-fluviatile_contig13:2730159..2730292Porterinema fluviatile SAG_2381CDSP-fluviatile_contig13 2730160..2730292 -
1622815579.4739482-CDS-P-fluviatile_contig13:2731121..27313101622815579.4739482-CDS-P-fluviatile_contig13:2731121..2731310Porterinema fluviatile SAG_2381CDSP-fluviatile_contig13 2731122..2731310 -
1693562328.8927703-CDS-P-fluviatile_contig13:2731121..27313101693562328.8927703-CDS-P-fluviatile_contig13:2731121..2731310Porterinema fluviatile SAG_2381CDSP-fluviatile_contig13 2731122..2731310 -
1622815579.491239-CDS-P-fluviatile_contig13:2732009..27322481622815579.491239-CDS-P-fluviatile_contig13:2732009..2732248Porterinema fluviatile SAG_2381CDSP-fluviatile_contig13 2732010..2732248 -
1693562328.901528-CDS-P-fluviatile_contig13:2732009..27322481693562328.901528-CDS-P-fluviatile_contig13:2732009..2732248Porterinema fluviatile SAG_2381CDSP-fluviatile_contig13 2732010..2732248 -
1622815579.5074074-CDS-P-fluviatile_contig13:2740038..27403201622815579.5074074-CDS-P-fluviatile_contig13:2740038..2740320Porterinema fluviatile SAG_2381CDSP-fluviatile_contig13 2740039..2740320 -
1693562328.909291-CDS-P-fluviatile_contig13:2740038..27403201693562328.909291-CDS-P-fluviatile_contig13:2740038..2740320Porterinema fluviatile SAG_2381CDSP-fluviatile_contig13 2740039..2740320 -


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

Feature NameUnique NameSpeciesTypePosition
mRNA_P-fluviatile_contig13.1901.1prot_P-fluviatile_contig13.1901.1Porterinema fluviatile SAG_2381polypeptideP-fluviatile_contig13 2725004..2740320 -


Sequences
The following sequences are available for this feature:

protein sequence of mRNA_P-fluviatile_contig13.1901.1

>prot_P-fluviatile_contig13.1901.1 ID=prot_P-fluviatile_contig13.1901.1|Name=mRNA_P-fluviatile_contig13.1901.1|organism=Porterinema fluviatile SAG_2381|type=polypeptide|length=654bp
MTLLGVGVAVLLGFSVLTLGAGTSVVVTVPEANAPLSDAINSVIRFAQER
VNEEGVLTGNNTLKVSTAAVAKEHGLAAVADLCLALDGHNDTVAVVSNLG
TRSTSSIASLSNSYLDLPILSVGGAGARSDSQGDGTEAGAGYLVHVQPAI
MPQMEALVRLILDMKLARDAVDGRSEITERVWVAHTSDTYGTAAVAAFNV
AANVITVALPAGGSASGLTDDDGGGAALRASVEVAGTFVLPASSDASFAS
ELTVLLDQQASIVVLLAEGYDGAIIRAVLTQANDAGLVSQGVQWYLPDAA
AFDHIFDHNSTYRDASLAFDMRGTLGVRSCMPRTGDGSGVAESLTAEWVL
LDPNEYPGAGPNGVTADGQIEPFLAFAYDAVFLAAATAQVAQDTVSLAGR
DLTGIELDSCPFPENPWLDGAVMRNSILAASADLIGATGPLRMSIGEEDI
VRDMDTTTYCAFNLRPDASQGARFEVISTVNGGTLEAEDGQGFQAIGQFL
EPQTFPRGASTYPPDRPILQGRHLDVVMRRDAPPFVFVKGDGLSISDYTG
ITPEFLKANNGGGGSGALSENAGFTYSLRAPPSGTTTVETIEMVRNGSAE
MTGSWITITAERSEFVSFTYPYFDLRIAFVYKPLIFRGLDLLKAFAPLNR
DCG*
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mRNA from alignment at P-fluviatile_contig13:2714621..2740604-

Legend: UTRpolypeptideCDS
Hold the cursor over a type above to highlight its positions in the sequence below.
>mRNA_P-fluviatile_contig13.1901.1 ID=mRNA_P-fluviatile_contig13.1901.1|Name=mRNA_P-fluviatile_contig13.1901.1|organism=Porterinema fluviatile SAG_2381|type=mRNA|length=25984bp|location=Sequence derived from alignment at P-fluviatile_contig13:2714621..2740604- (Porterinema fluviatile SAG_2381)
AGCCAGAGAACAGAGAAAGAAAATCGTTCACGTGTCCGAGAAGACACAGG GTTTCCTCGGCGCACGCTCCTTCGTACCGTGGCGAGGGCAGATAACGAAA GCTGCAAGCGTTGAAAGCGCGGTAGCTAGGCTGAGAAGCGCTCTGCGTCG CCGGAGATCCTGGACGATGGGCTACGCGCGGTTTTGAAGCAGTCTCGCAT ACAACACCAGGCACACCCCGGTTCTCTCTCTCGAGAGAGAGAAGGCTATT TCTCTCTCGAGAGAGAGAGAAAGAGCGTAGAACGATGACATTGCTGGGCG TTGGAGTGGCAGTATTGCTGGGGTTCTCGGTGCTGACGTTGGGGGCGGGC ACCAGTGTGGTCGTGACGGTACCTGAAGCGAACGCTCCGCTGTCGGATGC AATCAACTCGGTAATCCGGTTCGCCCAGGAGCGCGTGAATGAAGAAGGGG TGTTGACTGGCAATAATACCCTCAAGGTGTCGACAGCGGCCGTGGCAAAG GAGCACGGGCTGGCAGCTGTGGCAGACCTTTGCCTCGCGCTCGATGGGCA CAACGACACCGTTGCGGTGAGTGAAAAAAAGGATCATCCCGTGTTCCTTT GCTAGTAGTAATATTAACACTCAGGAGTAGTATGTGTATTGGAGGAGCAC CTCCCTTCACAAACCGGGCAAAGATGCCAGCGATGCTAAGGCAGGCGTTG ACATAGTGGTAGCACCTTGTTCCAGCCTCACTGGCGTTCATCAAACACAG TCTGCTCTCAAAAGCTCGTCTGGAGGAGAATTTCTTTTACAATTACACGG AGAGAGGGGCACACCGCAGCAACACGGCACCCAGTTTTTTTGTGTTCACT TTCCTTTTTCACTCTGTGGTGACCTTTGCTTCGTTCGACCTCCGGCCTCC TCCCCTGCTTTTTGTCGTTGGCCACACCGTGGGTGAGGAACCTTTGCTCC TCTGTTGGTTGGCCCGGGGGGCAGCAACTCGACATGAAAAAGACACGGCT AGTCGCCCAGACCTAATGATTTATATATCTGAAAGCAGTTATGAAAATCG TTGGAAGAATATCTTCCCTCACTTGTTTGCTGAGTTACATGTGTCGACAA CTGCTTGTCGAGAATTAAGGTGATTTCTCAGAGATCTTGCCCGGACGCCA TCACTACACTTTTGTTCAATGCTTCCGGAGTTTGGACAACATTAGTTTGG ACAACAGTAGTTAATATGCATCCCCTGCTCGCCGGGGGGGGGGAAGAGTG GGAACCACTCGGGGACAGCACGAAGCCCCGCCAGCACAACAACCAGTCAC TACGCCACCAGACAGACGGGAAGGCTCTGGGTGCCCCACGTGATGCCCAA AGGGAATAAATCTATGGAAGAAGCACTATTTGAAGTACAACGAAGTATTA CAGGCTTCCTCTCTCAGGCTCGTGGGTCTTCGACTGAGTGCTTAATTTCG GCTGGCTACCGGACTATCGACACGAAGTAAATTGCACGCACACTTCTTGC ACGTCAGCCAATAATGCTACACCTTACTGCAAGATATGTTTGCAATCGAT AGAATACACAGTCTCACACACCCTTCTCTTTCCCGCACATCATTGCAGAT CTGGAATGATCTATACACCTCCATTCGTGCCGCAATAAAGTAACTGCACT GAACTGGCCACATTTCATCATTCCCTGTACGAACTGCCAACGGATTGCGC ATTCCACTTGCCGTCGTGCGACTACAAAGACCGCTGTTCGCTCAAAGCTG ACAGCGCCCACATTGCGCGTCCTGCCAACGTACCTCGACGGGGCACCCGG TCACACCACAACATCGCGTCGGTACAAAATATTGCTGTGCGCAATCACTC CTATCGCAATAGGACGACCAACGTTCAAGGATCGCTCACACTTCACGAAC TTTCCAAATAATACAAAAAATCTTGATCTTGACTTGCACAGCAGTGGTAT TGGTGTGACCACGTTTTCAACGTCACTACTGTGTGACGTTCCAACTTCCC CTTCCCCTTCCCGCGAAAGCTCAAAAGCACGGGCGGGTGGATGGGAAAGA AGGTTCGTCTACACCAGAACCCCCTTGGCTTTACAGCGCTCTCGCTCACG TCCGTTCGTACGTGAACAGCAAGAGGGTTCACGTAATGGGGGTTCACATC AGACGCAGGGGCCACCTTCCTCCTGAAATTCTCATTTGCTAACGGGTCTC TTCTCCCGCCCTCACAGAACGCAGCTTGCTCCGCTTCTCTCTCAATCTTT CGCTCTGTTCAATGCTTCCGAGGTTTGGTTTACAGTACTTAATATGCATT CCCTGCTCGCCGGAGGTGGGAAGAGTGGGAACCACCAGGGGACAGCACAA AGCCCCCCCGGCGCGAGACGCCAACACGAAAACCAGTCATCACACCAACA GGCATACGGAAAGGCTCTGCCTGCCCCCACACAGGGAACTAATTTGCTGC GCTGACGCTTACCCCCCCCCCCCTTTTCCCTCCCGCTGGCTCTCACCTCG GTGTTTGCCATCGGGATTGGGTTTTCGTCGCTTGGCAACGACGTTGTAAA ACAAAGCCAATTCACTTCGTGAACTCGGCAACCAGGTTACCGTCTTTTTT TTCCTGGTTTTTTGGCGGTAACCATAATGGTGGTCGAGAAGATCATGTTG TGCGGAGTGGAGAACCCTCACTCCGCGCAAGGGGGATGATCGCACCACGT TGTGTTGAAATGGTCAAGCACCCTCGAGGCAGTTACACAGTGCTTACAAC TGTCTCTGGAAGTGAAAGCACCAGAAAATAAATTAAGCCATACGCAGCTG TCATCCATATGCAAGGAAGTAAGCACAAGATGCCGAACACCTTAGCAGGA TGCAGCGCACCCTTCATGCGACTCGCGGAATACCTCACGGCGCTTCGCGC TTGGTGTTGTGAGAGCCTGGTCCGGTGAATACCCGGCGTGCTCCGTCCCG GCTTCGTAGGGATGCGAGGTCAATGGTCTAACGACTACGGCATGCACGAC TATGAGTACACCCCCCTTTTGCCCACAAATGCATCCCTCCCTTCATCGAA CAATATCCACGAACTTGCGATACTTCACCTCCAGCCCTCGTGCCAGATAT GGTCGAGACAGCGACACTTACACTGCCCTCACAAACACTCACACGTCCCA AACGGTACCCTGTCCTGGCTGCCTCACTGCCTCTCTGCCCGATGCCAACA GCCATATACCCACGCCGCCTCCGCGACGTTGCTAAGTACGTATGGCCGAC ATCTATCCGCGGCCCAGCGCCCTTCCTTCCGAAGCAGCCCCGTCTGTGCG CCGCCCGCGGCCAAAGTAGTGGTGCCCCAATCGGAAGGCAATGCAACGCG TACTCGACGGGCGGCAGACCCGCCAACGACACAAATTGCCGCAGGGCCGC CGTCGCCTGATCTCGGGTCGACCTTGACCACCTGCCACCACCAACCTCGT ACGCAACCAACGGTGCACTCAGGCGAAGAAATTGTCGGAGGACATGACCT GTACCAATGCGCCGTCCCCCATCTCCTCCCTTCCCCACCGGAAGGTGAAC CCCGTCTCGCACAGGAGTGCACACTGCGCCCTTCCGAAACTGATCTCCTG TGGGCGACCGAAAGCGAACCTCCACGCGATCGGCCAACGCACAGCACTCG AAGGGACGGATTTGCTCAGATCCTCGACAAAATGCTATATCTCCCCTATG AGCGCCGAGTTTCTCGTGCGTCGCGCTGTGCGACATTGCAAAAAACTCGC ACGCTCTGGTCAAAAGGAAACGGCCTGTACACCGACCCAAATACTGCACA CGACCGCCGTCCCCCCACTGCTTCGCCAATACCCCACCGTCCCTGAGCAC TGCCCACGAAATAGGCCTCCGCAACCGCTGCGGCGCATCTATTTCTGCGT GCCCTCTCTCTGCCCTACAAGCCTTCGACAGCAGCGGGTGCCGCGTGTCC AACTCACCTGCGCCCACGAGACGGGGATAAAAATCCCACCGCACAAAGGT GGCTCGGAATCGTCGAACGATGCATCCCCGACACGGAAAGGGAATAAGCA ATGTACTGCGAAAGACCCCACACCGTCGCCGGCTCCGACAAGCAAGGAAC ACAGGCAGACAAGCGATATTTTCTCGAAAGCACCAACTTCAATGCCCCAA GTCGGTTCTTTCCGACGTGCCCGCAACCGAGTTGCGCACAAGCTCGAAGC CAGAACGCCAGAGCACAATTCTCGCGCTGCTTGAACCTCTCCTGCCACGG GAAGGACGGTGAAGCAGCGCAAAATATAGCGTGAACTTCAGCGGCAGGGC AATGAGAGATCCCATCAGCAAGGGAGTTGAGCATACGGAGCACGTGTAAC GCTTGAAAGTGCCCCCAATAGAGACTTGGAGCGCCCCCAACATGCGCATG AGAGCGCCAGACCGCGGTTCTTTGCCCCCCACGGCACCTCTGCATCCACG CGACACTCGGTTCTTTGTCGCCCCGCAGCAACACGCGATCCAGAGCCTCC GCGGTAGCGTGTTCCTGCTCAACGATGAGGATCCATGCTCCAAAAAATAT GCCAAGCAACGTCAGCACGTTGATGCTGATGTTTTCAAAGACGACCGGCT TGCTTGAGCCCACAAAATGTGCTTTCTCATCGTCGGACAAGGGGTGCTCG CCCCCGTCATCGCATTGCATGCCCCCACCGCGTTTCGGGATGCATCCGAA AACACCGCGATTTTGGGGGCGAACGACGAAGTTGTACACAGTAGAGTACA GGCTTTCCCCTCTCGCTGCAAGGCCTTTACAGGCAAAGCATCGCCAGAAA CCGAGATCCCCATGGAATCGCGGACCCAACACCACACGTTCGTTTAGGTT TAGATATTGGAGGGGAAAATCTGGGAATGCGACACGCCCACAGCCTCCAA CAGGCATCCCACGGCGAACCTCCTCGGCCGCAGGGCAAACGGCAAGTGCA TCAGAAAACCTGTGAGTAGCGGAATCTGCCGTTTCGTCGGCAGCGTGCGA GGCTGTGGCCACTCTTTCAACAACATTACGAGCTTTTCGTGCTTGCGGGG CGTCATCGTAACCGAGAGATCTCGTGTGTCAAGAGTCCATCCCAGCACTC CAACCGAGTCGTGAAAACCCGTGAGCTTTGTCGCCTACAACAACGGAGGG TCATTTGGCCCCCGACCGCCGAGCAAGCTGGAGTCTGAACCGTTTGTGTA TGTTAGAATGTCCGAGGGCAGACGAGAACAGCGACCAAAAGCCTGGACTC GAGTAAAACCAAAGTGGCATCTCAGATCAACCAGGCCGTGATCTCCCATG GTGTATGCGATCACAGCTGCACCGGAAGGATCAATCAGCACCTGCCGAAA TGCGTCCTTCACATCCACCCGGCACAGCAGAATTTTCAACTATTCACGAT GCAGGTGTTGCAAAAAACATTACTCCACCAAACAAATTGAAATCGCAGGC CTTAGAGGCCGTCATTCCTCTTAATATGCATGCCCCACCCGCAATTGAAG CGCAGACATCGGGCATGCCGCTGGCGTCCGATGCTGGAGACCAGCCCAAC AGTCACCTCAGACTGCTCCACACCTTGCGACGGCAACATCTCACCGTACG TCTCGACCCGAGAGGCGAGACAAGGTTGCTTCCATGGCTGTAGCATACAA CGGCGGCGTGCGACAAGACGGCGTGGTTTGCTTCGGTCAGCAACACGCTC TGGAGTGCTGATGAGCACACGCAGTGCACCAGCCCACTCGAGGCATCAGC TCGGCCACCACTGCGTCGCTTGTAAACACACGGCAACATCCCGCCCTACG TTGGCTCGCACGACCCGAGATGTAACACCAAGGTCGCTTGCTGCTGCTGT GTCAGGATACGGCGCCGTGACACATTAAAGTGTGTGCGGCATTTTTGTTT GTAATGCGCGACAGTGCGGAGTGAAGCCGCGCCAGCGGCTCAAGCGTGCG GTCAGTTGCCCTACGTCACACGGACCGGACATTGTGCCCATTGATTGTGG CGCGGTTTGTTGTCCACCAATGGAGAAAACCTGAAATTTCATGTCACAAG GGACCACTCACTGGACCGGATAATCACCTTGGTAAGATGATCCAGCTTGT CCGGCAAAAGTAGCCCAATGTGGATAGAATATGTTTGAGGGCACACAAGT ACAGCTGCACGCAAGCAGCACGATTTCGCTGCACATGCAATTTTGCAAAG TGGCCACGTCGCATACTCGAGGGACAAGCGAACTCAAACCTCCTCAAACG CTTCAAGTATGAAACCCATCTCACATGAGGTCGAACATGCATCCCTGCAA AACGAAGACCCATTATTTGCTTTGGCGCGGCACTTGACAGCTCCCGCGTA CGCCAACCAGCGTGAGAATCCTGTATTTGATACACAGCGCTATCGCTCAC GTCCGGTCGTACGTGAACAAGAGGGTTCACATCACATGGGTTCACATCAG GCAAAGGGGCCACCTTCCTCCTGTATTCTGATTGACTAACGGGTCTGTTC TCCCGCTTTCGTGAAACGCAGCTTGCTCCGCTTCTCTCTAAATCTTTAGC GTTGCATTTTCGCTCTTCACGTTTCCCCATGGAGCAAAGCTGCGCTCAAA ATGTGTTGAACAAGTCACCTGTCCTGGTTCCTCCTTCTCGAGGGTCCGTT TAACGATCACCTCCTGATAATTTTGTGTGAATAACGAACACTTGGAGGAC GATTGATGCGATTATCGATGCAGGCAGCAACGTCAATTATCGTGAATCAG AGTTATGATTCAGAACCAGGACCTCTCAGGTATCAACATCTCCACCTGCA AACTGCGAGGTTTCTGGGCCGATCTCAGTACTCCTTGGACAAGGGGTTTC AAACCTGCTGTTCACGCGCCTTTTCAAGTTTGTCTGACCGCCGAGGCCTT CTTGGCCAAAATCGGTGGCCAGGCGTAAAATCGCGGATGCAAAAATTTGA ACGTCTAGGGAAGCGATTAACACAGCCCACAGAAGGCCCCATCATTCGAC ATGTATTGACGCGCTCCGTCACACCACCTTCGTTCACCCACGAATCCGAG CACGAACCACGGAGGCTTTCTCTATGTGTCGAGAAGCCTCTCCGGGCAGA CAAGGGCGTTGATTGCTCTCTACGCTTTGCCGCCCTGCCTGCTCGCTAGT CTCTCTTTCCGAGAGCGTCAGGGATCGCAATGACAGACAGACACACGGGC TGGTGACACCAATCCGATCGACCGGAGGAAACCTAACACATACCTTCCAT CTCACCACTGCTCGAGTACAGGGGCTGCCGTACCACCATCACGTACAGAT TTTTCGCTCTTGCCGTATATGTAGATGGTGCACGTGTAATGCTCTCCTTT TAGTGGCACAGAGGTGGAGCGGAGGGGTATGTAGGTGCTGCACGTGTAAT GCTCTCCTTTTAGTGGCACAGAGGTGGGGCGGAGGGATATGTAGGTGGTG CACGTGTAATGCTCTCCTTTTAGTGGCACAGAGGTGGAGCGGAGGGATAT GTAGGTGGTGCACGTGTAATGCTCTCCTTTTTGTCGCGTCGCCGTAGTGG GGCGGGGGGCTTATGCTCTGCGTTCGCTCTCGGCTGTAACCCGGTATGCT GTTTGTTTGGCGTTGTCAGAAAGGAGAAGACTCGCTGCGCTCCCAGTAAT CTCTCTCACCTCCAGAGAACGTGCATGCACGATTACCGACGCCTGGCACT GCTTTACTTGGAGTATGTGCATTCTCAGGTTTTTGTTGCCTTGGCTTTGA GAATTTCAGCAGAGGACTGCAGCAGGATCGGCACTGGCTACGCGAGAAAA GGGGTACACGGCCGTGATGCGGAGGACGCGGGAAATTCGTTTGGATCGAA AAGCACGGAAACTGTTGTGAAATTTTATGAGTGCGAGTGGGTGCGCGTGT CTGATGTCTAATGTCTGATGTCTGATGACCAGCTGCGCGGAGAGAGTCAC GCCCGCCTAACGCCGGCTGGCCGGCTGGCCGTCCCCCGCGTTGTGAAGCG TGGCTCACCCTCATCGCATCCTCTTCTGCTCCCCTTCCCTTAATTTCACA CCTACCCGGCACCGTACGGTCACGTGACTCATGCTTCCCCCCCTTCCCGC CCGACCTTCCCTGCTTCTTCTGCACACCTACACCCTGCTTACTTTGCTCC GCTCTGCTCCTGCCCCTTGTTCTCCATCCTCAGTTCCACGAAATTCACAT TTTTCGGAGTGGTTCCGTGTTAACTCAGCCAATAAAAAAAAAGAAGACGA CCCACAGCTGCATGCGTGAACGATTCCTGTTTCAATACGACCTGCAAACC GACAACGTGACACTATACCTACCGTAACGTTCGTCCTCTGCTTTCGCCTA GAACAGGTCGTGAGCAATCTCGGCACGCGCAGCACGAGCTCGATCGCGTC TCTCTCGAACAGTTACCTCGACTTGCCTATACTGAGCGTCGGCGGCGCGG GTGCGAGGTCCGACTCGCAGGGCGACGGTACTGAGGCCGGCGCCGGGTAC CTCGTCCACGTGCAGCCAGCCATCATGCCCCAGATGGAGGCTCTCGTGCG GCTGATTTTGGACATGAAGCTTGCCCGGGACGCGGTGGACGGAAGGTGAC ACAACCGCCGAGAAAGACAAGTGGGGCCGGGGGCGATAGGAGAGAGGGCG GTGGAGGTAGAGAGGGAAATCGAGAAAGGGAAGGGGAGAAAGTTCGAAAG GGGAGGGGGGAGCGAGGGAAAGAGATGGAGGGAGGGAGGGAGGGAGGGAG GTAGTATCCAGAGTGCAGCACGCGTTTTTTTTTGGGCTTGTGCTGTTCTC TGTTTTGTCGTGTACTTCGTTTCTTGTGCTTTTTCTGTCCTGTTGGAGAA ACGAGAGCAGCAGATTTGAGATGCAGACCAGCAGGCATACATATCTGGTG GTGGATAAATGTTTGCCGGGGTTGGCACCGACTCGTCAGCACGACCATCC ATTCTGCAGCGAGGCGCTGCCGTCAAGTATTTTTCGAGTTTGCGCAAGAT TTCAGCGCACGAAATCTGTTCGCAAAGCGATGCTCTCGTGGAAGCGAGCG CGTACGCACGCCGTTGCGCGCGCGCAAACGTTTCCAGTGTGCCGAAGAAT AGACGCTGGTTGCCGCGCTTGACGAAAGCGTTCGCTTCTATCCCGTTTCA TTCCACCAAGTCCCATCCCATCGCACCTCATCCCATCGTACCTCATCCAA TCTCATCCCGTCCCATCCCATTTCGCCCTTTCCTTTCCTTTCCCACCTCC ATTCATTCCACTCCATTCGGTTCGGCGCTGTCCCGATTGTTCAGGTCGGA GATCACCGAGAGGGTGTGGGTGGCGCACACGAGCGATACTTACGGAACGG CAGCCGTGGCAGCGTTTAACGTGGCCGCCAACGTTATCACCGTAGCGCTC CCCGCCGGTGGCTCTGCAAGCGGCTTGACCGACGACGACGGCGGAGGCGC AGCCTTGAGAGCGTCCGTCGAGGTCGCTGGAACGTGAGAACACGAAGAGC AGCGTGCATGTTAGCAAGGGGAAAGAGAGAGGGAGAGAGAGAGAGAGAGA GGGAGAGGGAGAGAGACAGAGAGACAGATACAGAGATACAGAGATACACA CACAGAGAGAGAGAGAGAGAGAGAGAGAGAGAGAGATACAGAGACACAGA GACAGAGAAGTGCCTGCATGCGACGGGTACCGATGATTTCCCACTACCCA CCACGGTGGTCACCACACGAGAGCCGCTTGATTCCGGATGCTGGAAGGGG TGTCTTTCGTCGCTGTTGTCGTTCCCGTCGTCGTTGGTGTTGTTATGTCG TTGAGTTTATCGGCGCTTTCCCACCGCCGGCAACTGAGCGACTGTGGTTG TTACCTGTTTTTTGCATCTGTCAACGCGCTCACATTCACTCCCCCCTCTC CCCTGCCTCCGTCACACATTTATCCCATCCTTCCCTCGGCGACGTTGTGT TCCTGAGAGCTCTTGCATGGGGTCAAATCTAGTGAAGTCAGTGATGTCTC ATTCGCACGAAGGGCCGAAGCTCGCTCGGGGTGTCGCTTGGGAGTGTGCG GCTGGTCGATTTCTCCGAGTGGGAGTTGACCAGGTGTTTGGAGGCGAAAC TCCGAGTGCTCCGTCTAACCGCGACTATAGTATCTCTTGAAGGCGACACG TGCGCGTTGTGGCATCGATGTCCGAGGTCCGTATCGCGGGAGCTCACCCC CCGCCCTTCTCCTTCCACCCCTTCCCCTCCTCCTCCTCCTCCTCGTCCTC GTCCTCCTTCTCCTCCTCCTCCTCCTCCTTCACCGCCACCGCCACCGCCA TCTCTTGCTCAGTTTCGTTTTGCCTGCTTCCAGCGACGCCAGTTTCGCCT CGGAGCTGACGGTGCTGCTAGACCAGCAGGCGTCTATCGTGGTGCTGCTG GCGGAAGGATATGATGGCGCTATCATCAGGGCGGTCCTGACTCAGGTCTG TCGACAGGATGGGCAAGGGAAGGGAAGGGGTGTTCGGGTACCCAGGTGTC ACAGGTGCTTTGAGAAATCGCTCGTTGTTTGCAAGTCCTCAAATAATGAC GCTGACCCCCGGAGACCGCTATACCGCAGCGACAGGCAGAAATTTCTCCA CAGCTCTGCCTTGGCCAGGACCCAAAATCCGTGAAATCCCTGGAAGTATC TCCGTGCAACTTATCGATCCGTTTCTGATACAAACGAAAGTGCTGCTCGG CGGATTGCGACGGGTTTCTACACGTTCCTTGCCTCTCATGCAACTTCAAA TTGGACCCGTGTTGATATGGAGGCTGCTCATCAATGGTTGAGAGGCAGAC CGAGGGGGGTTGGGTAATGGATGAACCGACTTCAATAATCGCCGGACCGA CCGTCGCCATCGTCGCGGCTCACAAGATCCCCTAGCCCCCATTGTTCGCT AAAGTTTTCGGCCGCTGGACAGGCAATGCCACAGTACCACGGGCGAACCG AATACGCGACCCATGTCGATGTGGGTTGTTTCGGTGCTGAGATCGGCGAA ACGAGGCTTGGATCAAGCGTTCTCTCACCTGTGTGGGCGCGTCAGCTATT TGGAAAAAAAAAAATGGGGAGCTTCAACCGCCTTCGCGTGTCGCGTCGGT AGTGCCTGAGTCCTACCACTGACTCCATTTGGCGGGAAGCTGCCGTCGCA TTCATTCCTGCTTTGTGCAATCATCTCTCTGGTACACGGGGTCATTTCGT GGCTGCCGACTTCTTTGGGTTTGCTTTTCGGTCCCCTTCTTCGTTCATTG GTTCATCGCTCGCACCAATGTCCTGTTTGCGCTGCTGCTGCTGCTGCTCC TACTGCTGGCTCTCCTTTGTTCGCTGATGTCCGCGCCTACCCACCACGAG CAGGCGAACGACGCCGGGCTGGTGTCGCAGGGGGTGCAGTGGTACCTGCC GGACGCCGCCGCCTTCGACCACATCTTCGACCACAACTCGACGTACCGCG ACGCGAGCCTAGCTTTCGACATGCGAGGGACGCTCGGAGTTCGGTCCTGC ATGCCACGCACGGGTGAGTTGGTCCGCCTGCCCTCGGACCCGTCTGCCTG CCTGCCTGCCTGCCGTCCGCCCGCCCGCCGGTCCGCCTACATGCACATCT ACCTGCTTCCCTGCCTGCGTGTCTGTCTGCATGAGTGCACGCGTTCCTCA GGCCGAGGCTGAGCCGAGACTCGCTGAACGGTCGTGCAGCACAGCGCAGA ACAGGAAGGCACCGGCGGTGTTTTCCCGCTCCCTATCTTGCTTGCTTCCT CCCTTCCTCCCTGCACGAACAAGCCCAGAAGTTACGCAGTTGCACGGGTG GTGGCTGTGGCATCCCCACCGTCGGTTCAGTCGCGTCTCGACCCACGAAC ATTTTTGTAGTTTGCGGGTACCTTTTGGTGAGGCCCGGCTTGTCGCTGCT CCTTTTCTCTGAAAGAACCGCTGTTCGTTTGTCTGAGCGACAACGCGACT AAGCTGGAGCCCGAAAAACGAATCGGTCGGCGAGGTAAACAGATATCGTC CGAGAGCTTAAACGGTCAAGGAGAGCATTTGCTGCGTAAATCCTCCTCCA CTCTCTTTCAAGTCTTCGTTTGTCCCCCTCACGTAATCCTACTTCCTCCC CTCCTCCCCCCCCCTTTCCTTCACACGGGCTGTGTCCCCCTGCCCCCCGC CAATACCCCAGGTGACGGGTCAGGCGTGGCGGAATCACTCACAGCGGAGT GGGTCCTGCTGGATCCGAACGAGTACCCGGGAGCCGGTCCGAACGGCGTT ACGGCGGACGGTCAGATTGAACCCTTCCTGGCCTTCGCGTACGACGCCGT CTTCCTGGCAGCCGCGACGGCGCAGGTTGCGCAGGACACGGTCAGCCTCG CTGGCCGAGACCTGACCGGGATCGAGCTTGACAGGTACGCGGACAGAGGG TTAAGAAGGGGGAATGGCGGCGGGGGGGAGGCGTGGTCCGCACCAGGATA ACTTCGTAGGCTAGCGCTGGGAGGGGATGGGGAGAAAGACGGGGGGATTC GAAGGAAGAAGGCTTCTGTTGCTCTTCCCTTTCCTCACGGCATATTCGCC CTCAGAGGACAGTATCAATTGGTTGCATTCCTTACTTTAGAAAGGATGCG CGTGGTCGAATGTCTCACGACGAATACGCAAATGGCACCCCCGCATGTCT CCGCTCCCCCTCTTCATTGCTGTGTGTTCCTTTCGCAGCTGCCCGTTCCC CGAGAATCCGTGGCTGGACGGCGCTGTGATGCGCAACTCCATCCTGGCCG CGTCCGCAGACCTCATTGGCGCCACGGGTCCGCTGCGCATGTCGATCGGC GAGGAAGACATCGTCCGAGACATGGACACCACCACCTACTGCGCCTTCAA CTTGAGGCCTGATGCTTCCCAGGGGGCGAGGTTCGAGGTGATAAGCACGG TCAACGGCGGAACTCTCGAAGCCGAGGACGGTCAAGGTTTCCAGGTGCAT GTCGTGGTTGTTGTTGTTTCTCACGTAGCTGTTCTCTATGCATCCAGGGC CCGCGGACACAACTTGAGACAGTCGCACCGAGAAGAAATTATGAACATGC ACGTATACCCACGTCGAAGACCCCCCTCCCCCCCCCGGCACGGGGTCCCT GTTTCTACACGCCGGTACAAACTAACAGTCGGTTTGTTGTGGCGGGGCGA GTGCATCCGTACGGACGTCGCGTGGTAGCGCCATACGGTTTCGGCCGGCG CCCACACGTGGGCATCGTACAGTTGTAATCGAGGGTCAATTCGTGACTTC GCAGCGACCGTCCACAAACTTTTCTTTTCCAGATTGGATGATACGCTTCT ACCATGGACGTGAAAGCCGTGTTGATAAATGTTGTTCCTCATTCTGCAAG ACGCTCCGGGATGTTTGAGTGGAAACTGTTTCGAAAGTTGCGGGGCCCGT ATCTGGACGTGACGGTAGTCCGTGCCAGTAGTTATGAAGGGTTTCCCTTG CTTGGCTTCTGTCGATGATTGACCCCCTCCTCATCAACCCAACGCTTCCT TGTTCATCTCTCTCTATCCCTCTGTCTTTCTCTCTCTCTCCCCCCTCTCA CTCTCTCACTCTCATTTTCGGCGCAGGCTATCGGCCAGTTCCTCGAGCCG CAAACCTTTCCGCGAGGCGCTTCGACGTACCCGCCAGACCGGCCGATTCT TCAAGGTCGTCACTTGGATGTGCGTGGTGGAGTCAAAAACATACGTTGCG GCCTTCCTACGATGGTGATGAACCGGTTTCATTAATGGAATCGTATGGAA AAGCGGATTCAGTCCTCGACAGACGTTTGGGATACCCGAGCCTGGCCAGG GTACTGTCCACACGCTGGGTGCAAAGATAAAGTCGGCTTTCCCCGGCATC GCCATCATTTACCCCGTGTGCGTAGCAGGCGGCCCGCCCGGGCATTTTGA TCCGACGGTGACACGGCACGGCGCGTCCGGCGGCGGCTGTGGCACCCCCA ACCTTTCGAGATGAACATGGACTAGATGTAGGGATTTTGACGGACTCCGA GCGATCGAGGCTCCTCCGCTTAGAACAATGGCGTGCAGCAGCAGCGGCAA CAGCAGCAGCAGAAGCATACATGGGTGTCGATTTCATCGGGGCAGGAGTA GACCCCTTGTAGTGCATTGGACGAAGCTTGACATGCGCAGCAGCCAAGGA TTCATCTGAAAGCGCAGCAGCGGTGCACGGCACGTACTCTCCGGCGCGCG AGGGGTCGTGAATTCATCCCCGCCGTCGGTCGGGCTCCGCCGATACAACG GCAGCCGGCGAAGACAAATACCGGGGGGGGGCGTGGGCTGACACATCGGG GTTGGGCGGGCGGGGAACGGCGGGAATGGCGTTTAGGTTGCCCTCCCCTC ATTCACGCGTATACCCTTCGCCTTCCAACAGTCAGAGGCTAGGTATGCGC AGGACGGGAAACGCCTTCTGAGGTGCGACTGGTGGCTTTGCAACCTCGAT GTTCGTTTTGCGCGCAGCAGGGTCACGTTATTGACCCCCCCCCCCCCCCT GCTGCCGTTTTTGTCGGTTTTGATCGTTCGGGCAGGTGGTCATGAGGCGC GACGCCCCTCCGTTTGTCTTCGTGAAGGGAGACGGCCTCAGCATCAGCGA TTACACCGGCATCACGCCAGAGTTTTTGAAGGCAAATAATGGGGGGGGGG GGTCGGGGGTCTGGGGATCGGGGGCGCACGCGCAGAATTTCCTGTCGTAG AACGTGTTTTTCGAACGTTGCGGCCTCGACGTCGGGAGGACGAACACCGC CCATCACGTGAGGGTTACTCCGTAAAGGGCGGTAGCAACATGCAGCCGGC GCTGTCACACTTCGCGAGCTTTGCATCGATGTGCTCGACTTCAGGGCCAA GCACTTGGTTTGCGATTGGTTTCCATGCAAACACTTCGTGAACACGCAGC GCGCCCGACGACGGAGTAACAAAGCTGCATTGAGGCGATTTCTCTCTCAT TCCTCAACTTCTCCACCCCCCCCTCCCGCCGATGTCCCCTTTAACTTACT TGGTTGCCTACCGCCGATACGCTACAAACGCGTATGCACGTCGCAGGCAC TATCAGAGAACGCGGGATTCACGTACTCGCTGAGAGCACCGCCCTCGGGG ACCACCACCGTGGAGACGATTGAGATGGTGCGGAATGGGTCAGCAGAGAT GACCGGGAGCTGGATCACCATCACAGCGGAGCGGTCGGAATTCGTCTCGT TCACCTACCCGTACTTCGACCTACGAATCGCCTTCGTTTACAAGCCCCTG ATCTTCCGAGGGGTGAGAGTCGTAAGCCAGAGGGAGGGGATGGAGGAGGG GGGAAGCGAAGGAGGGGGGAGCGGCAAGCTTTTGTCCCACCGACCCCAGC CCTAGGTGCCTGTTTCTATGCTGTGGAACCCCTCTTGTCCACGTTCCTTT GCACCTGCCCCAGTCCGCCTCCGTTCGATTACGCCCCATGTTTTAACTCG ATTTCCCGACAAATATATACCAGCCGCCGCATCCCATGTCATCATGTCAT CCCCACCCCCGTACCACTCACCCTCCCCGCTCCTTGCGCCCGCTTCGGCG CAGCTGGACTTGTTGAAGGCGTTTGCCCCTTTGAACCGGGACTGTGGCTA GCGCTTCTGTTAGCCCTCCTCGTGACGGTGTTTTTGCTGTGGCTCTTCGA GGGCGCCAAGAACGACGAATTTTCCAGGGGCGGCTGGGACAGGAGGCACC GGAATTTCACCCGGGTGAGACGGAAAAATAACAAAACTATGGGTCGTGCT CTGCCCGCGTCCTCGCCACGCTGGTTTCCGGCGACTTCGGTGGTCTAGTC CAATCGGGTAGAGTGGAGTGGAGTGATCAGAATTGGGTGTATTTCTTGTT CAGGCCAAGCCGTTACGGGCGAAGCAGGACCACTGAAAAGCTTTGGCTTT TACCGCCTCCGCCGCCGCAGCAGCCCTCATCGTCGTCGTCGCCGTCGCTG TCACTGTTGCACAGGGTTTCAGTCGCTCGGTGTACGTGACGTCATCTTTA ATGATGTCGCAGCTTACGCACAAGCCTGAGACCTTGGAAGGGTATCTCCT CACCACGGGTACGACTCGTCACGTCATGATTCGCACTTTCTTTGCCGTTC TTGATTCGTTTTTGCTCGGCCCTCTTCCGGGTTTTGTCAATTTCCCAAAT GCGGTGTGTTTTCATTGTCCGAACTGGCCAGTTGCGTAGCCTGCAGTACG TCGTACTCAGGCAAGTACCCTGGCAGATTGTTCCCGTCTGCCGCCCCCTG TCCCCTCCCGGTGCTGCTGTCGTGTTGGAGTCAGGGTGCGGTTTCTCGCC TTGTCGACTTGCAGCCCTCTCCGGCAGGAGGTTGCTCACTAGTGGATGTG AGAAGAACCATCATACGCGCTTCGAGCTGTTTCGTAGCACCGCCCCACTC CGCTTTCTTTTGTTCTGCCGCCGCCGCCGCCGCCGCCGCTGCTTCGTGCG CCTCCCTCGCTGATTCGGTTGGTCGGCGGGCTTGTCGTTGCCGGCAGGCT GGCTGTTCACGTCCTTCGTCCTTGCCGCCTCCTACACCGCCGAGCTCGCC TCGTTCCTCACGGCAACGAGGACAATGACGACGGTCAGGCAGCCACGGGC GGGCTCCCACCCAGACATGCGTAGGCCATGCAACAAACAGGGCACGAAAC CCTCCATCGATTCTTTGAGTTTGCGTGTACAGCAAGCACGGCATGAATCT GCTTCCAAGTATATGGCGAGCGTACTGCCGTTTGGGTATGGCTTGGAAGG CCTTGCCCTCAGTCCTGGATTTTTTTTACACTTTCTCTTGGCTCGTCGGA GGAATGTAAATTAGAATTTAAGGTATCGCACCACGAGTTCCCTGCCTCTT CGGAGTTAGATTCTTGCCCTTCTCTCCCAAAGTATGCCGTAAGCTTCAAA ACCGTAAACTGTGATCCCTCTCGTCCACGCGAGCTCGGCCCTTCGAGTCG AGTCCCAGCCGATGGCCAACGGTAGACATCCGTCGATTCACTGCCTGCTG ACGTGCCAGACTCAAAGCCCTTACCTCAACGGCTCCGTGTGCCGTTGCTT GTGACTTGTCGTGTCCCCCCACCCGCCGCACCGCGGTTTCCTCTTCATTC GTCTGCAGAATCTCAGCATCGAGGGCCTCAAGAACGGGGAAATTCCGCAC TCCAATGTGAGCCAGGTTGGTCCACAACGGACGTCAGAATGAGTTGCCCG TCTTGTAGGAGGACATGTTGAATCGTCGCCGTCGCTTTGATGTTCGCGCA CGGAACGGCTCTGTCATGTCTGCGTTTGATCCGTGCTGCCTCTGTTCTTG TTGTGGTAGTCGAGCCAGTCGCGACGGGAAGTGAACAGCTAAATGGCAGC ACTTCGGTTTCAGATCGAGGATATGGCTCCGTGCACCTGATGTGTAAGCG CTGGCGTAAAAAAAAAACCGCGCCAAACCTAAGTGTGTAATAGATTGAAG GGGGGGTCGGGAAGGCCTTGAACTGTGACCGGCTTTAGATCGGGCGGCCC GATCAACCGCAGCCCCCGAGCACACACAGCCGTACGAAGGGTGGTCTTTT TGTGGGCTCATTGGGCGCCTCGACGAGCGTGCTGAGATGGCTCCCTGCTC CGAACGAACTCTCACGCGTGGCGGTGCCGTCCGTTGCGCTTCTCGCCTTC ATTTTTACTGCGCGCCAGGTGGCGCTGCTCCAAGGGGGCAACACCCAGTT TCTATACGAGAGGGATTTCCAGCGATGCGGCACCCCTCAAGAGTGCAGCC GTGAGCCCTATTTGACTAGACTCCGGGGTGGGGTCGTGGGGGGGATTAAG CATCGTTCCTTCCTTGCGCGTGGGGATGTCGTTGAATCGTTTGAATTAGT TGTAAATTTTCCTTTGCAGGGGGGAGATACTGGGCATCGAGTTCCCGCTT GATCCTGAGTTTCTTCGCGTCGTTTTCTGTTTTTCTGTATCTTTGTTGGG GAGATGTGCATCAACTCTCCTATCGATGTCGCAAGTCCCGCAGTTATCCT CGTTTTTTTTTTTTTCGGGTTTTATCAGTACACGATATCACGCTCAGAAG ACCACTGAAAATTGCTGCAAGCTGATGACGCAGCCGTTTTTTTGTTGTGT GTTTCCTCTCCTGTGTCCGGATCCCCCCCGCCGTCGAACCGCCGTCGAAC CGCCCTTCTTCTTTTTCTACTGCATCTCGGACAACATCAGAGGGTGACAC ACCTCAGCCGTGCTACTCAACGGCCGAGTGCTTCGATATGGTGAGAGAGC GGGCGACCGAGACAGCGCCAGGCGTGTGCCTCTTGGCATGCTGCGCAAAT CAATTGTTGCCGACGAACGTGTCTGGTGGAAGACCATGCCGTTTCCATTT AGATCGTGGCTTTTTGATGCCGGTCGTTCGATCGGCATACCTTCCTGGTA ACGTGTTCGCTGTTGCCGTTGCTTCATGATTTATTGCCTCGCCGTTGGCT TTGGCACCCGACAAGCCCGGGCAAAACCACTCGTGTAGCCCCCCCCCCCC ACGTCAGCGCGGGCGCCCACAAACGTTGAAAATGTTGGTTGACGATTTTT TCATCTACACAGGCAGACTCCAGTAAAGTGTATATAAAGCTTGACTCGAA GCGCACGGCGTAACGTTTGGTGACATTGGCCTTCCGTGGGTTTCTCCTCG GTTCGAGCCTTGCTTCCAATTTGAGTCCCTCGGTTGTGTTGGCCGTTTCC CGCGGGGCTACCTTTCCACGGCAGGGCGGACCGGCCGCGGCGAGTTACCC GTCTCTGTTGTTGTTCTTGGTCCGTTCCGTCGAGTCTACTCGTGGCTTAG TCTGCCTTCTCTCGCCTTTTTCATCCTGTTCCGTCCCTTCTGTCTCGGCT GTGTGCTGGTGATGGTGATGGTGACGGTGCAGGTGATGAACGGGACGGCG CTGACCGCGCTGGCTGATTCCGCAACGGCGGAGTACGAGCTGATGAACGA CTTCTGCGGGCTGACCACGCTCCCGCAAGAGCTGTATCCTCAGGTCTGCC CTTATCCGCATCATATATTTCAACACAGACGAGGTTCCCACGTTGCAGCG AGCCTTAACGCAGTCCGGCATGTAAGGCTGGTGAGTCTCTCATGGAGCAG AAAAAAAGGAAAATTGGATTGGTTGTTCTCGATTTTGCGTGAATCATTTT TCTGCGACAAATCGGGGCGAAACGAAGGTTGCCGCCCCCTGTTGACCACA AAAGTGTGCCACCGATGTTCCCGTGCCCCAACCACGACCCCTCTCACCCC GTTGTCTTTTGGCATCGAGAAAATCGGTGAAGCAGCCTCAGCAGCATGCC TGCCTACACGCGCGTAAAAGAGCTGCAGCAGCCGCGGTACACTTACGTTT CCACGAAAGATTCATAAAAATGCTGCGGGAGGAGCGATCTCTGCTGCTTA CGCGCCGGTGCTGTTCTGCCTCGCCGGGAAGAGAAGAGCGGTTTTAGACT GGGGAGGAAGGAAGCACCGACGCGACAGCCACGTCCTTGGACTTAAGAGG CCAAAGCTTAGGGAGAAAGTTCCAGTGGCATGAGCAAGTACGGCTTTCAG CACACCCACACGCAAGACGCGGGACAATGAGAAAGGGGGACAGGGGGACA GAGGGACAGAGAGGGCGGATATACGAGAACCTCTTTCTCAGTAAGGGCGA GAGTGCAAGGAATGGAGCTGCAGAAAATGCACGCGCCCCGCCCCCGGGAA GCACATCTCATATGTAAGGGACGGCAAGATTATGTCGAACACCGCCTTGG ACCCAGAGACTACACTGTCTTTCCTGCCCTTGGTGCCCCCCTCCCCTCCT CCTGCCCACTCTGGCTGGCATCCCGCCGTTGTTACTGGCCCCCTCCCCCT GAAAATTGCTGTCTGATCTCACCCGCATTCCCTGTAACCCTTGCCCCTTT TTCTGCATCACTTTTCTATGCGTTCCAGCATTACGGCTTCGTGGTACCGC TTGACTCGGAACTGGTGAAAGATTTTCAAACGGTGAGAGCGCGCTCGGAG AACCAGACACTCGATTCGAACTGAGGGTACAGGGGAAGAGGCTTGGAGAA GCGCGAGCTTCGCCTAGTTTTTTCTTTCAGATGGAGGCCTTATCCATGAA ACCTTCTGGTTGGCGGAACAACAGCTTCACTCACCTGAACAGCGAGGCTG AGCCACGAGGAAGTGTTTTTCAACACGCCCGCGAATTTCTGACAAGCTAT CATTTTGGGGGATGATGGGTCGAGGGCCTTCGCCGCCATTGTTGACCTTG CACTTTCTGTAGCAGTCTTTCCTTGAATTGAACATTCGGAAACGCGAGTC GTCGTCGCCCTGTATCCAGCTTTTGCGGCTACACAGACTGCTGTACTTCG TGTTCCACATATCAATACGCTGATTGAACGAGCGTGCTTGTGCTTGTGCT TGTCTTTGTGAAGGTTTCTCCGCCCAGCCGCCGAGCCTTCGGTGGGGCCA AACGCTCTTGTCCGCAATATGCCCTGGCTAATGCGACTGGCCGCCGCACG CGTCTCCTGTTGGCTGGTACTGTTTCGTGGGTTTCGATCGCGCTGACCGC CTGTCAGATTCGAGAAAGATCCGGTTGTTTCGTGCGGCCCCGAGCAACGA CCGCAATACGCGCGTGCTCTTCCAATCCACGTTGCAGTCAATGCCTCTTC ACGCCGCGGAACCCCTGCTTGCGCTCATGCCTCTCATCACCGTCACCGTG GTGGTGATCGTTTTCTTCTTCGTTTCCCTCGCGCTTGTGCCGGCGGGCTG GCCTCGCCCGTCCGCACTCGCTATCCCCTCTGCCCTCCACTCCACAACCG CCGGACGACCTTTGCAGGCAACGTTGAACCTCAGAGAGGACGGCACGCTC AGCAGCATCATCGACAACTACCTCCGCCCAACCCAAATCTGCGCTCCCGC ATCAACAGACAACGGAAATGACACGAACTTGACCGTGGCGGTGAGTTCCG AAGAGGCATAAAAATGGGAGGAGGTTGGTGCGGAGAAGCCGGGTGAGGCG GAAAGAAAACGGGTCTTTTTAGGTTTTTGGTACGATCCAGGCATTGTGGT GTCTGTTCCAAGCTACTTCGGCGACTTGCCCTGCTTGGAGCGCATTAGGC CCGTGATGCAAAGTGTAAAACCGTGCCCCGGCGCCTCTTTTAGACGGTCG CGAAACGAAGGCTCATGCTCCAAGAGTGAGTTGGCGGCCGAGCGGTTAGA CACTCGTTTTTTGGTCGAGAATATCCCTGGGAGGCTTTGCTGGTGCCAGC TCCGATGGGCTCTTAAGACCTTTCTCTTCTCTCCTCGCTTCTCTGCTCTG TTGTTCGTTTGCCCCTGGTTTTCTACGGTCCCTATTGCCGTCACCGTCGA TTCTCAGTCGGTCATGATCGAAAGCTAGCACGCACGTGCTTGGTAGTGCT GCTGTTACAACTGCTGTCGCCGCTGCTGCTATTGCTGCTGCTGCATTGCT CTGGTGGGGGGTGTTGCTGCTGCCTCGCTTCCGCTCTGCGTGATGTCGCA CGCCGCGCTTCGTTGTTGCGCAAGTGAGTATCGGATCGCTGCTGTTGATT TTCTCAGCGGAGGCGTGTCACGTAAATCGACTGTTGTTGGCCAGCAACTC AGTCCGTTTACTTTTACCGGCTTTCAATCACCTGGTACATGTGGCAATCA CGCTGAGGATGATTGTGCGTGAGATGGTGGTGATTCGTGCGTGTGACTGA CTCGCTCGCGCTTTGGCCGTGCTGCTCCCGCTCTTTCGTGGGCGGTCGTT CCGGGTGTGCCGTGTGTGCCCCCGCCGCCGCCGCCGCCGCCGCTCGCGAT GAAACGTGACGGCCGACGTGGCAGGATGTGTCCGGGGTTTTCGTCGTGCT CGCCTTTTTCTTGGCCATCTCGACGATATCGTGGTGCTTCCGACGGTCGC CATGGGCGAAAAGATCTAGGGCGAGGCGGCAGGAGCGGCTGCGGACGCAA GACAGCGACATCGAGCGGAGTGTCTTCGAGAACTACGCCAAGATGTCGCG GCGCCAGCAGAAGGCGTTCGCGATGCAGGCCACGGTCAGCCTGTTGCAAA ACTCGAGGGTGCGTGCAATGTATCGTTGCGTGCTTTTCATGGCCGCATCG AGAGCGGTGGTTTCGTGCCGCGGCGGAGTTGCGGCCGCTGCGGGCGCTGC CCCGGGCCCAGGCTCCGCTCGTGGCGGGGCCTCGTCGCGATTGTTGTGCC CTCGTTCCTCGCGAGATCGTGAGTCCCCACCGGTGTTGATGGGTATCACG CTTCAATCTGTTTTGCCCGTTCCCGGTGCCCCAGACGAGTTATACCCTCC CCTTCGCCGGGTCCAAGCAAGCTCTGGCTTCGTGTGATCGGACTGAAACC TCGGAAGCAGTAGGGGGAGAGGGCGGGTCTATCGCCTGTATGCCCCCCAA ACCAAGCGTGTCGCAGCTCTTTCCCAGCGTGCGGAGGACTGGCGCTGGCC GCTCATGCCATTTCGCACCCAACCGCGGGATGTACGCGCTTTGCAGCTTG TCCTCCCCCCTCCCACGCCCCGCCCCTGCCTACCCGTTCACCTCTGCAAC GCTTGCTACGCCGCTACAACAACAAACATGAACATCCACTTCTTTTCGCA GGAGGTGAACGCTGCTTCGAAGATTTTGTTGAATGCACGCAGAGGGGACT CGAAAGACCCCGGCGGGGATGGCGACCCTCGGGGAGATAGAAAGGGCTCC GACGGGGCCCCCGGCGACCCTAAGGGGACTACTGTGCGACGAAAAAAACC GTTTCAAGACGAGATCGCTTCAGGCAGGCCCGTGGTGACTCTGGGCGGCG GCGGCGAGGACAGTTCCAACCATAGCTGGCCGAGTCGCAGCGCGTCGACG AGCTCGCTCTTGTTCAGAAGAGTTCCGAGCCAGCAGCCGTTGTCGCACCA GCGAGATAATTCCTCCGCCAGCCACAGACGGGACGGGTCTCATGTGGGCG CCAATCGGATGATGTCCTTCAATCGGGGCAGGAGCGGCGGTGGGTTCAGC ACCTTGGGGTCCTCGTCGGGGTTTCTGCCCACACCGCCGAAGCAGCCGGC CGCAGACGACGAAGTCTCGCCCCTCCCCGCCGCGAACAAAGGGGGCTTGG CGGTAAGGAGCGCAGCGTCCAAGTGGTTGGCTAGACGGGGAGGAAATGGA GGAAAAGGAAGAGAAGGACGAGGAGGAGGAGCATGTCGACGAGGAGGAGT GCAGTACGCTGGCTCGAATGACAACGGCATGGCTGCTGCTGCTGCCGAAG CTGCTGCGACTGTTGACGTCGCTGACAACAACTCGACCGCTGTGGATGAG AAAGAGGAGAGAGGTGCGGCGATTGCGAGCACCGTTGGCTGCTCTTCAGA CAGAAGCTGGCGCTTCAGCAGCGACGACGGCGCAGGTGCGATGAGCGATG CCCTTGTGGGCGCGGCCGAAGCCCTGGCGGGCGCGGCTGCAGCAGCAGAG GGCAGGCAGAGTGCGGCGGGGTCGCTTAGGTCTGATGAATCCGACACGGA AGGGAAGGAATGACGAGGGAGGCACCCGCGGCCGCTTTTACGGTGCGCAT GGCGTGGGTGGTGTGTTGCCGAATCCCCGCCCCCGTGGATCTCTTTACGG ACGCGCACGGGCAAGCGTCAACTTCGCTCGGACGCTCTTATAGTGCCGAT TCTCGTGGCCGCACGCGCAAAAAATGAGGTGCCCGACACGCCGGGGGTGC TTCCGCGACGACCAGGGGAGTTTCAAATCGTGGCACAACTCAAAGCGCTA TTTAATAGCAGAAGTACGCCACAACGGGAGGTTCGGGTCTCAACGTTCTT TTTCTTCTTCGCCCATCCATATGGGATGCTCGACCCGTTTTCCCTGGCCT TGATTTTAGTACCTATTGATCGTCGAAGCCGCAAGAGAATCCCGCCTCTG GTGCATGGTGTTACGCCTTGTGTTCGTGTCCGTGTTCGTGTTCCGTGCCC GTGGTCGTTCTCGTGCTCGTGCTGGCGCTCGTGCTCTTTTTTAGGCGCCC CCAAAGAAATGGTTTAGGCTCGGCAAGATGGTGAGTGGCTACTGTCCAAC GGAAAGTTGCAAATTGGTGGATGTGTTGCGACTGCTTCGGCTCTCGTGGA TGGACGACTTTCGGGGACGATCTATGCACACTGGTTTGCGCAGGTGTGAG CTTTTGAAAGGGTGTTCCCAAACTTGCGTGCATTTTTCGTCGGGTCGACA ACGGAGATTCAGCGTTTTCGGTCAAAAGGTGGTGTGTGTGTTTGGGGTAC TTCAAAAAATCCCGTAGACGTGTCGGGTTGTGTTCTACACGTGCTGTGTC GTGATTGATGACCGTGAGGAGGCGCTTTGATGTCAGCGTTGAAAGGCAGC GACTTTCGCGGCAGTTTTTTGTTTGTGTTTTGTTGTGCGTGAGATTCGAG AGCTTGATTCTGGGTTGCAATTCCAGCGGAATTGTGATAGAAGCAGCAGA CCACCCTCCCCAGCTGCCCTTGTCCTTCCCCGCGCCTCTCGCTGATTTTG TCTTTGAGTGGTGGCGAGGTGCAAGCCATTGCGTGACTGCAGTTTCGCCG TGTCGGCTCTACTATTTGCTCCGCATTTGTCGTCGTTCTCGGACAATGTC TGGTCCGTCGATGTGTGGGGCACACGAGCGTGACGTCAATCAAGAGCAGA GTTGCCAGGTCGGGTTGGGTGGTTTTGCCCTCTCGTCTCATACCTCGCTT GCCTTGGCTAGCGAAGGACGGCAGGCATTGATTTGAGACTCAGGCCGACG ACGTTGAATATATATTTTTTCCCAGGTGTGGGGATCGGCTACCCTCGGAC GCCCGGACAAGACAATCCGCTGCTTAAATATGTCTGCGCTACACCCATCC TCAGCAGCCAAATTTGTATCGTGTAAATGAAAAAGGACGTGTACGTGCGC TTACTGATAATGAGCACTAAGAAGTTTTTGCCTTTTTCCTTGGGAGACGA ATCCTGTAGTTCGTTTTTTATGGTTTTTTACCAATGTCGGGGAGGTCATT TTCTCAAGCCTAACTTGGCCGGGATGTGGTTTCAGTCTTCGGCACGTCGG GTGTTGGTGGATGGGAAGGCAGGGAAAGGGTGGTCCTGACGGCTGTGGTG TTGTGTCTTGATGCACGTCTTCTCTCTTTGGGTTGGTTGCTGCTTCGCTT GCGGCAGAAAGTGTCGCAACGTCGACGGTGGCGATAATCAGCATAGAGTA CAAGTCAAACCGACCGTCAGCTACGAGTCACAGCAGCAGCAGTGTCCGTG GGACTTCCGTGTTCTCTTGTTTAGTCGTTTGTACTTCGCATGTTGTGGTC GTTGTTGTATTTCGCATGATTTGCTTTGATGCGGGGCTGCCTCCAGTTCT TCGCTATTGGTTTCTTCCCCGCCGCGCACACCAGGCCAGCGGGGAAGGGT TGGGATGTAGCCGGGAAGAACACAGGTTAGAGATCGCGCGCGGGGGGGGG TGTCGGCGAGGCTCGCTCGCTGCCGTTGGTGCGGACTGCGTTGATGTATG GGTTGTTCACGGCGGGCCGCCTAGCGAAGAATAGAGGGCAGCCCCTACGA GGTCACAGGTTACACTTGACTAATAACGCGATGATTGAAAAGAAAAAACA GCCCTGCAGAGGGTCGAAAAATCGCCGTTTGTCACGCCGTTCTCCCTGAG GGTGTGCGGTTGAGAAAATTTTGCATCCCGGTGAAGGCGCGCAAGGCCTG TCTGCGCATTCAGAGTCACAAGTTGTTCCGACGACGTCGGGGGCCGACGA TAGAGAGTGCAGAGCGCTTTCTGGGGGACAGCGCAAAAGGGAGAGGACGC GCGCAGAGCAGCGGGAAGGGAAGTCTTCTATTGCTGCCGTTGCCGCGGTA ACGTGAGGCAGAAGCGGTGGACCACAGTGAGCTCTGGTAGAGCGCCACGA AACCTGAACATAACGGGGAAGCGACGACCCGCCTCGCAAGAATAACTTCA CCGGCTGGCATTCCCAGATTCGCGTGTGCTACAC
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Coding sequence (CDS) from alignment at P-fluviatile_contig13:2714621..2740604-

>mRNA_P-fluviatile_contig13.1901.1 ID=mRNA_P-fluviatile_contig13.1901.1|Name=mRNA_P-fluviatile_contig13.1901.1|organism=Porterinema fluviatile SAG_2381|type=CDS|length=3924bp|location=Sequence derived from alignment at P-fluviatile_contig13:2714621..2740604- (Porterinema fluviatile SAG_2381)
ATGACATTGCTGGGCGTTGGAGTGGCAGTATTGCTGGGGTTCTCGGTGCT
GACGTTGGGGGCGGGCACCAGTGTGGTCGTGACGGTACCTGAAGCGAACG
CTCCGCTGTCGGATGCAATCAACTCGGTAATCCGGTTCGCCCAGGAGCGC
GTGAATGAAGAAGGGGTGTTGACTGGCAATAATACCCTCAAGGTGTCGAC
AGCGGCCGTGGCAAAGGAGCACGGGCTGGCAGCTGTGGCAGACCTTTGCC
TCGCGCTCGATGGGCACAACGACACCGTTGCGATGACATTGCTGGGCGTT
GGAGTGGCAGTATTGCTGGGGTTCTCGGTGCTGACGTTGGGGGCGGGCAC
CAGTGTGGTCGTGACGGTACCTGAAGCGAACGCTCCGCTGTCGGATGCAA
TCAACTCGGTAATCCGGTTCGCCCAGGAGCGCGTGAATGAAGAAGGGGTG
TTGACTGGCAATAATACCCTCAAGGTGTCGACAGCGGCCGTGGCAAAGGA
GCACGGGCTGGCAGCTGTGGCAGACCTTTGCCTCGCGCTCGATGGGCACA
ACGACACCGTTGCGGTCGTGAGCAATCTCGGCACGCGCAGCACGAGCTCG
ATCGCGTCTCTCTCGAACAGTTACCTCGACTTGCCTATACTGAGCGTCGG
CGGCGCGGGTGCGAGGTCCGACTCGCAGGGCGACGGTACTGAGGCCGGCG
CCGGGTACCTCGTCCACGTGCAGCCAGCCATCATGCCCCAGATGGAGGCT
CTCGTGCGGCTGATTTTGGACATGAAGCTTGCCCGGGACGCGGTGGACGG
AAGGTCGTGAGCAATCTCGGCACGCGCAGCACGAGCTCGATCGCGTCTCT
CTCGAACAGTTACCTCGACTTGCCTATACTGAGCGTCGGCGGCGCGGGTG
CGAGGTCCGACTCGCAGGGCGACGGTACTGAGGCCGGCGCCGGGTACCTC
GTCCACGTGCAGCCAGCCATCATGCCCCAGATGGAGGCTCTCGTGCGGCT
GATTTTGGACATGAAGCTTGCCCGGGACGCGGTGGACGGAAGGTCGGAGA
TCACCGAGAGGGTGTGGGTGGCGCACACGAGCGATACTTACGGAACGGCA
GCCGTGGCAGCGTTTAACGTGGCCGCCAACGTTATCACCGTAGCGCTCCC
CGCCGGTGGCTCTGCAAGCGGCTTGACCGACGACGACGGCGGAGGCGCAG
CCTTGAGAGCGTCCGTCGAGGTCGCTGGAACGTCGGAGATCACCGAGAGG
GTGTGGGTGGCGCACACGAGCGATACTTACGGAACGGCAGCCGTGGCAGC
GTTTAACGTGGCCGCCAACGTTATCACCGTAGCGCTCCCCGCCGGTGGCT
CTGCAAGCGGCTTGACCGACGACGACGGCGGAGGCGCAGCCTTGAGAGCG
TCCGTCGAGGTCGCTGGAACTTTCGTTTTGCCTGCTTCCAGCGACGCCAG
TTTCGCCTCGGAGCTGACGGTGCTGCTAGACCAGCAGGCGTCTATCGTGG
TGCTGCTGGCGGAAGGATATGATGGCGCTATCATCAGGGCGGTCCTGACT
CAGTTTCGTTTTGCCTGCTTCCAGCGACGCCAGTTTCGCCTCGGAGCTGA
CGGTGCTGCTAGACCAGCAGGCGTCTATCGTGGTGCTGCTGGCGGAAGGA
TATGATGGCGCTATCATCAGGGCGGTCCTGACTCAGGCGAACGACGCCGG
GCTGGTGTCGCAGGGGGTGCAGTGGTACCTGCCGGACGCCGCCGCCTTCG
ACCACATCTTCGACCACAACTCGACGTACCGCGACGCGAGCCTAGCTTTC
GACATGCGAGGGACGCTCGGAGTTCGGTCCTGCATGCCACGCACGGGCGA
ACGACGCCGGGCTGGTGTCGCAGGGGGTGCAGTGGTACCTGCCGGACGCC
GCCGCCTTCGACCACATCTTCGACCACAACTCGACGTACCGCGACGCGAG
CCTAGCTTTCGACATGCGAGGGACGCTCGGAGTTCGGTCCTGCATGCCAC
GCACGGGTGACGGGTCAGGCGTGGCGGAATCACTCACAGCGGAGTGGGTC
CTGCTGGATCCGAACGAGTACCCGGGAGCCGGTCCGAACGGCGTTACGGC
GGACGGTCAGATTGAACCCTTCCTGGCCTTCGCGTACGACGCCGTCTTCC
TGGCAGCCGCGACGGCGCAGGTTGCGCAGGACACGGTCAGCCTCGCTGGC
CGAGACCTGACCGGGATCGAGCTTGACAGGTGACGGGTCAGGCGTGGCGG
AATCACTCACAGCGGAGTGGGTCCTGCTGGATCCGAACGAGTACCCGGGA
GCCGGTCCGAACGGCGTTACGGCGGACGGTCAGATTGAACCCTTCCTGGC
CTTCGCGTACGACGCCGTCTTCCTGGCAGCCGCGACGGCGCAGGTTGCGC
AGGACACGGTCAGCCTCGCTGGCCGAGACCTGACCGGGATCGAGCTTGAC
AGCTGCCCGTTCCCCGAGAATCCGTGGCTGGACGGCGCTGTGATGCGCAA
CTCCATCCTGGCCGCGTCCGCAGACCTCATTGGCGCCACGGGTCCGCTGC
GCATGTCGATCGGCGAGGAAGACATCGTCCGAGACATGGACACCACCACC
TACTGCGCCTTCAACTTGAGGCCTGATGCTTCCCAGGGGGCGAGGTTCGA
GGTGATAAGCACGGTCAACGGCGGAACTCTCGAAGCCGAGGACGGTCAAG
GTTTCCAGCTGCCCGTTCCCCGAGAATCCGTGGCTGGACGGCGCTGTGAT
GCGCAACTCCATCCTGGCCGCGTCCGCAGACCTCATTGGCGCCACGGGTC
CGCTGCGCATGTCGATCGGCGAGGAAGACATCGTCCGAGACATGGACACC
ACCACCTACTGCGCCTTCAACTTGAGGCCTGATGCTTCCCAGGGGGCGAG
GTTCGAGGTGATAAGCACGGTCAACGGCGGAACTCTCGAAGCCGAGGACG
GTCAAGGTTTCCAGGCTATCGGCCAGTTCCTCGAGCCGCAAACCTTTCCG
CGAGGCGCTTCGACGTACCCGCCAGACCGGCCGATTCTTCAAGGTCGTCA
CTTGGATGCTATCGGCCAGTTCCTCGAGCCGCAAACCTTTCCGCGAGGCG
CTTCGACGTACCCGCCAGACCGGCCGATTCTTCAAGGTCGTCACTTGGAT
GTGGTCATGAGGCGCGACGCCCCTCCGTTTGTCTTCGTGAAGGGAGACGG
CCTCAGCATCAGCGATTACACCGGCATCACGCCAGAGTTTTTGAAGGCAA
ATAATGGGGGGGGGGGGTCGGGGGTGGTCATGAGGCGCGACGCCCCTCCG
TTTGTCTTCGTGAAGGGAGACGGCCTCAGCATCAGCGATTACACCGGCAT
CACGCCAGAGTTTTTGAAGGCAAATAATGGGGGGGGGGGGTCGGGGGCAC
TATCAGAGAACGCGGGATTCACGTACTCGCTGAGAGCACCGCCCTCGGGG
ACCACCACCGTGGAGACGATTGAGATGGTGCGGAATGGGTCAGCAGAGAT
GACCGGGAGCTGGATCACCATCACAGCGGAGCGGTCGGAATTCGTCTCGT
TCACCTACCCGTACTTCGACCTACGAATCGCCTTCGTTTACAAGCCCCTG
ATCTTCCGAGGGGCACTATCAGAGAACGCGGGATTCACGTACTCGCTGAG
AGCACCGCCCTCGGGGACCACCACCGTGGAGACGATTGAGATGGTGCGGA
ATGGGTCAGCAGAGATGACCGGGAGCTGGATCACCATCACAGCGGAGCGG
TCGGAATTCGTCTCGTTCACCTACCCGTACTTCGACCTACGAATCGCCTT
CGTTTACAAGCCCCTGATCTTCCGAGGGCTGGACTTGTTGAAGGCGTTTG
CCCCTTTGAACCGGGACTGTGGCTAGCTGGACTTGTTGAAGGCGTTTGCC
CCTTTGAACCGGGACTGTGGCTAG
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