mRNA_P-fluviatile_contig10.902.1 (mRNA) Porterinema fluviatile SAG_2381

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

Overview
NamemRNA_P-fluviatile_contig10.902.1
Unique NamemRNA_P-fluviatile_contig10.902.1
TypemRNA
OrganismPorterinema fluviatile SAG_2381 (Porterinema fluviatile SAG_2381)
Homology
BLAST of mRNA_P-fluviatile_contig10.902.1 vs. uniprot
Match: D7FVQ4_ECTSI (Kinesin motor domain-containing protein n=1 Tax=Ectocarpus siliculosus TaxID=2880 RepID=D7FVQ4_ECTSI)

HSP 1 Score: 1488 bits (3853), Expect = 0.000e+0
Identity = 846/1158 (73.06%), Postives = 960/1158 (82.90%), Query Frame = 1
Query: 1051 KVEEMRHKLEDDGRALGAEAAHMRAKMSFQVVDERVRDALQEHQAREQVLIRELDALRCALDDCKQELAKTRSNAAAVAAMNNAKLAEATRASESVKEDISYRKDLEREVKRLNGELREAHTQMDVLSADLAKNNKLVEKIGELQRTTGEAQEGLRAANDRFNEEVMRMNTDVANAEDTLEKKIKECKRLEAAVDDALAEKERALTLVTAERAEVKRMTSATVSTEAALAEANSKIDGLMRQLKCVEQRLEASEGLERDLKRLGQDAEEMHEKSHRLLDEKQREIDAYRDRVEEGESLSRKLRGDLAEAEGRALQHKASADRLSARLSSLESQVLEGRAALASAEADRSGMISELEVTREAAGRVKELQAAMAEATFREEALRVETTAFKNALETAEASLERERHSMNDTRTDLVKRAEGAEERCKSFQSSTKELTQKLQDTERRCQKELEKSKARETQMWAQLQQVSSSFAEAASSKKEDENTLDVKLRDLEQHLKNAEKQLLQSQTECARMKDAAQREEKEKEAELKSLSQRXXXXXXXXXXXXXXXXXXXXXXXXXXXESRVVEESVRARCEEVSAREEEARSKLELLQDAKIAADQQAAGARXXXXXXXXXXXXXXXXXXXXXXXLREDAEVSRMGFAASTSKNEGQRRAAEESKQQTEARCVVLQETVDRLEGDLARLTAQVAAGSIDRERACGEEAQEVMGLKFKAVECQGEIEQLSSRVSELTEEKRELEVRERQERERFTRLEAASTQSRLSYDRVKEENESLKRLIDAAQVQVQEWRMKFEAERTLKRALNAKILDMQGSIRVLCRLRPLQQAEVVAIQRDQEYEDPMANITYPDVDRLTFWGVPYQFDCVFGPGTKQAQARIICPTAGNSARVFDEVQPIVASALEGYRVCVFAYGQTGSGKTYTMEGPKSDSRGVNFRALGELFALSAQDEAKEFKFRVSMLEVYNESVKDLLLEPGRPAAAANKHDIRLDKKGRVYVEGLVECEVESLEEVEELVVMGGRNRTVGNNNVNEHSSRSHLVLQVHITSTDVATGHVQHGKLNLIDLAGSERIKSTAAEGQQLKEAQNINRSLSALGDVINSLGSGSKHVPYRNSKLTFLLQDSLSSNAKVVLMFVNINPAPQSQGESSCSLNFAKRCHSVQLGTSRRL 4524
            ++EEM+ K+E+D RAL AE+  MRAKM FQV DERVR+AL+EH  REQ LI+++DALR AL +CK ELAKT+  A+A AA N+ KLAEA  AS++V++DI  RKDLE+EV+RL G+L++A  ++D LSADLA+ NK+V+KI ELQRTTGEAQEGLRAANDRFNEEVMRMN DVANAED LEK  +EC+RLEAAVDDA+A+KE+A  LV AER EVKR++ A VSTE AL EA SK++GL RQLK V+QR+EASEGLERDLKRLGQ+AEEMH+KSHR+LDEK+RE++AYR RVEEGE+LSRKLRG LAEAEGRALQ K +A+RL  R+SSLE QVLEG+AALAS EADRS ++SEL  TREAA R +EL+AA+ E+T REEALRVE  A +NALE  EASLERERH  ++TRTDLVKRAEGAE RC+S QSSTKE+TQKL+DTE+R  KELEKSK RET+MWAQLQQVSS+FAEAA+SKKE E + D KL DLE+HL   EKQLL SQ EC R+K+AAQRE KEKEAEL+SL +R                           E RVVEE +RARC EVS REEEAR+KL +LQ+A+IAA+Q+ A AR                       LRED EVSR  F A+ SK+E +RR  EES+Q+ EARC VLQ+T +RLEGDLARLTAQVAAGS+D +   G ++QE+ GLKFK VECQGEI+QLSSRVS LTEEK ELE R+ QE+ R+++LEAAS QSR  YDRVKEENE  KRL  AAQ + QEW+ KFEAER L+R LNAKILDMQGSIRVLCRLRPLQ+AEV+ I+R +EYEDPMANITYPDVDRLTFWGVPYQFD VFGPGTKQAQ             VFDEVQP+VASALEGYRVCVFAYGQTGSGKTYTMEGPKSD RGVNFRALGELF+LS QD  KEF+FRVSMLEVYNES+KDL +EPGRPAAAANKHD+RLDKKGRVYVEGLVECEVE+LEEVEELVV+GGRNRTVGNNNVNEHSSRSHLVLQVHITSTDVATG+VQHGKLNLIDLAGSERIKSTAAEGQQLKEAQNINRSLSALGDVINSLGSGSKHVPYRNSKLTFLLQDSLSSNAKV LMFVNINPAPQSQGESSCSLNFAKRC SVQLGTSRRL
Sbjct:    4 RIEEMKRKVEEDRRALSAESEQMRAKMDFQV-DERVREALEEHNTREQTLIQDIDALRLALRECKLELAKTKKEASAAAAANSTKLAEAVHASKAVEQDILCRKDLEKEVERLKGDLKQADIRLDSLSADLAQKNKMVDKIAELQRTTGEAQEGLRAANDRFNEEVMRMNADVANAEDALEKSSRECRRLEAAVDDAIADKEQAQALVEAERTEVKRLSLAAVSTETALTEAKSKVEGLARQLKNVQQRVEASEGLERDLKRLGQEAEEMHQKSHRVLDEKKREMEAYRSRVEEGEALSRKLRGSLAEAEGRALQEKGAAERLMLRVSSLEGQVLEGKAALASIEADRSAILSELTATREAAARAEELKAAITESTSREEALRVEMAATRNALEAVEASLERERHVSSETRTDLVKRAEGAETRCESLQSSTKEVTQKLRDTEQRFHKELEKSKERETEMWAQLQQVSSNFAEAANSKKEGETSFDAKLGDLEKHLNKTEKQLLGSQAECVRIKEAAQREVKEKEAELESLRERLSRKKDKFAAQKLSLEQEIKTLTDKLSEGRVVEEGIRARCREVSEREEEARNKLTVLQNARIAAEQEIAAARAEAAGLKNQLHDLRTRFDDESARLREDVEVSRTRFTAAASKDEAERRVLEESRQEAEARCAVLQDTTNRLEGDLARLTAQVAAGSMDPDAPRGGDSQEITGLKFKVVECQGEIQQLSSRVSSLTEEKSELEERQEQEKLRYSQLEAASIQSRQGYDRVKEENEGNKRLASAAQEEAQEWKTKFEAERVLRRELNAKILDMQGSIRVLCRLRPLQEAEVLVIERGKEYEDPMANITYPDVDRLTFWGVPYQFDYVFGPGTKQAQ-------------VFDEVQPMVASALEGYRVCVFAYGQTGSGKTYTMEGPKSD-RGVNFRALGELFSLSNQDHTKEFQFRVSMLEVYNESIKDLFVEPGRPAAAANKHDVRLDKKGRVYVEGLVECEVETLEEVEELVVLGGRNRTVGNNNVNEHSSRSHLVLQVHITSTDVATGYVQHGKLNLIDLAGSERIKSTAAEGQQLKEAQNINRSLSALGDVINSLGSGSKHVPYRNSKLTFLLQDSLSSNAKV-LMFVNINPAPQSQGESSCSLNFAKRCRSVQLGTSRRL 1145          
BLAST of mRNA_P-fluviatile_contig10.902.1 vs. uniprot
Match: A0A6H5KGG1_9PHAE (Uncharacterized protein n=1 Tax=Ectocarpus sp. CCAP 1310/34 TaxID=867726 RepID=A0A6H5KGG1_9PHAE)

HSP 1 Score: 635 bits (1638), Expect = 7.710e-208
Identity = 428/707 (60.54%), Postives = 513/707 (72.56%), Query Frame = 1
Query: 1054 VEEMRHKLEDDGRALGAEAAHMRAKMSFQVVDERVRDALQEHQAREQVLIRELDALRCALDDCKQELAKTRSNAAAVAAMNNAK----------------------LAEATRASESVKEDISYRKDLEREVKRLNGELREAHTQMDVLSADLAKNNKLVEKIGELQRTTGEAQEGLRAANDRFNEEVMRMNTDVANAEDTLEKKIKECKRLEAAVDDALAEKERALTLVTAERAEVKRMTSATVSTEAALAEANSKIDGLMRQLKCVEQRLEASEGLERDLKRLGQDAEEMHEKSHRLLDEKQREIDAYRDRVEEGESLSRKLRGDLAEAEGRALQHKASADRLSARLSSLESQVLEGRAALASAEADRSGMISELEVTREAAGRVKELQAAMAEATFREEALRVETTAFKNALETAEASLERERHSMNDTRTDLVKRAEGAEERCKSFQSSTKELTQKLQDTERRCQKELEKSKARETQMWAQLQQVSSSFAEAASSKKEDENTLDVKLRDLEQHLKNAEKQLLQSQTECARMKDAAQREEKEKEAELKSLSQRXXXXXXXXXXXXXXXXXXXXXXXXXXXESRVVEESVRARCEEVSAREEEARSKLELLQDAKIAADQQAAGARXXXXXXXXXXXXXXXXXXXXXXXLREDAEVSRMGFAASTSKNEGQRRAAEESKQQTEARCVVLQETVDRLEGDLARLTAQ 3108
            +EEM+ K+EDD RAL AE+  M AKM FQV DERVR+AL+EH  REQ LI+++DALR AL +CKQELAKT+ +A+A A  ++ K                      LAEA  AS++V++DI  RKDLE+EV+RL GEL++A  ++D LS DLA+ NK+V+KI ELQRTTGEAQEGLRAAN+RFNEEVMRMN DVANAE+ LEK  +EC+RLEAAVDDA+A+KE+A  LV AER EVKR++ A VSTE AL EANSK++GL RQLK V+QR+EASEGLERDLKRLGQ+AEEMH+KSHR+L EKQRE++AYR RVEEGE+LSRKL+G LAEAEGRALQ K +A+RL  R+SSLE QVLEG+AALAS EADRSG++SEL   REAA   +EL+AA+ E+T REE+LRVE  A +NALE AE SLERERH  ++TRTDLV+RAEG E+RC+S QSSTKE+TQKL+DTE+R  KELEKSK RET+MWAQLQQVSS+FA             + KL DLE+HL   EKQLL SQ EC R+K+AA RE K+KE         XXXXXXXXXXXXXXXXXXX        E RVVEE +R    EVS REEEAR+KL +LQ+A+IAA+Q+ A AR                       LRED EVSRM F A+TSK+                       T +RLEGDLARLTAQ
Sbjct:    1 MEEMKRKVEDDRRALSAESEQMHAKMDFQV-DERVREALEEHNTREQALIQDIDALRLALRECKQELAKTKKDASAAAMEDSTKFNISGETVSWSPFRVRKAWRELLAEAIHASKAVEQDILCRKDLEKEVERLKGELKQADIRLDSLSVDLAQKNKMVDKIAELQRTTGEAQEGLRAANNRFNEEVMRMNADVANAENALEKSSRECRRLEAAVDDAIADKEQAQALVEAERTEVKRLSLAAVSTETALTEANSKVEGLARQLKNVQQRMEASEGLERDLKRLGQEAEEMHQKSHRVLVEKQREMEAYRSRVEEGEALSRKLQGSLAEAEGRALQEKGAAERLMLRVSSLEGQVLEGKAALASIEADRSGILSELTAAREAAAWAEELKAAITESTSREESLRVEMAATRNALEAAETSLERERHVSSETRTDLVRRAEGTEKRCESLQSSTKEVTQKLRDTEQRFHKELEKSKERETEMWAQLQQVSSNFAXXXXXXXXXXTLFNAKLGDLEKHLNETEKQLLGSQAECVRLKEAAHREVKDKEXXXXXXXXXXXXXXXXXXXXXXXXXXXXKTLTDKLSEGRVVEEGIR----EVSEREEEARNKLTVLQNARIAAEQETAAARAEAAGLKNQLHDLRTRFDDESARLREDVEVSRMRFTAATSKD-----------------------TTNRLEGDLARLTAQ 679          
BLAST of mRNA_P-fluviatile_contig10.902.1 vs. uniprot
Match: A0A835Z6H9_9STRA (Kinesin-like protein n=1 Tax=Tribonema minus TaxID=303371 RepID=A0A835Z6H9_9STRA)

HSP 1 Score: 457 bits (1177), Expect = 7.590e-139
Identity = 239/379 (63.06%), Postives = 290/379 (76.52%), Query Frame = 1
Query: 3403 WRMKFEAERTLKRALNAKILDMQGSIRVLCRLRPLQQAEVVAIQRDQEYE---DPMANITYPDVDRLTFWGVPYQFDCVFGPGTKQAQARIICPTAGNSARVFDEVQPIVASALEGYRVCVFAYGQTGSGKTYTMEGP--KSDSRGVNFRALGELFALSAQDEAKEFKFRVSMLEVYNESVKDLLLEPGRPAAAANKHDIRLDKKGRVYVEGLVECEVESLEEVEELVVMGGRNRTVGNNNVNEHSSRSHLVLQVHITSTDVATGHVQHGKLNLIDLAGSERIKSTAAEGQQLKEAQNINRSLSALGDVINSLGSGSKHVPYRNSKLTFLLQDSLSSNAKVVLMFVNINPAPQSQGESSCSLNFAKRCHSVQLGTSRRL 4524
            WR ++E ER  +  L  ++L++QGSIRVLCR+RP+  +E+  ++R  E     DP   + YPD D+L FWG PYQF+ VF PGT QA              VF EVQP+VA+AL GYRVC+FAYGQTGSGKT+TM  P  + + RGVNFRAL ELF  +  D  + + F VSMLEVYNE ++DLL      AAA N+H+IRLD++G+VYVEGLVEC V +L+EVE LV +GGRNRTVGNNNVN HSSRSHLVLQV + +T  A+G VQ G+L+LIDLAGSER+KSTAAEGQ+LKEAQNINRSLSALGDVI +LG+GS+HVPYRNSKLTFLLQDSL + AKV LMFVN++P P SQGES CSLNFAKRC +VQLG ++RL
Sbjct:  450 WRSRWEGERAARADLQERVLELQGSIRVLCRVRPMVPSELEEMERRPELAAMGDPQVEVQYPDDDKLVFWGAPYQFERVFAPGTDQAA-------------VFREVQPVVAAALNGYRVCIFAYGQTGSGKTWTMGSPTQRGEERGVNFRALAELFGRARDDATRSYAFTVSMLEVYNEEIRDLLAPASAAAAAENRHEIRLDRRGQVYVEGLVECAVTALDEVERLVELGGRNRTVGNNNVNLHSSRSHLVLQVAVAATYSASGAVQAGRLSLIDLAGSERLKSTAAEGQRLKEAQNINRSLSALGDVIAALGAGSRHVPYRNSKLTFLLQDSLGAGAKV-LMFVNVSPHPASQGESVCSLNFAKRCRAVQLGQAKRL 814          
BLAST of mRNA_P-fluviatile_contig10.902.1 vs. uniprot
Match: A0A7S2PFW9_9STRA (Kinesin-like protein n=1 Tax=Leptocylindrus danicus TaxID=163516 RepID=A0A7S2PFW9_9STRA)

HSP 1 Score: 358 bits (918), Expect = 1.080e-101
Identity = 207/393 (52.67%), Postives = 266/393 (67.68%), Query Frame = 1
Query: 3343 KEENESLKRLIDAAQVQVQEWRMKFEAERTLKRALNAKILDMQGSIRVLCRLRPLQQAEVVAIQRDQEYEDPMANITYPDVDRLTFWGVPYQFDCVFGPGTKQAQARIICPTAGNSARVFDEVQPIVASALEGYRVCVFAYGQTGSGKTYTMEGPKSDSRGVNFRALGELFALSAQDEAKEFKFRVSMLEVYNESVKDLLLEPGRPAAAANKHDIRLDKKGRVYVEGLVECEVESLEEVEELVVMGGRNRTVGNNNVNEHSSRSHLVLQVHITSTDVATGHVQHGKLNLIDLAGSERIKSTAAEGQQLKEAQNINRSLSALGDVINSLGSGSKHVPYRNSKLTFLLQDSLSSNAKVVLMFVNINPAPQSQGESSCSLNFAKRCHSVQLGTSRR 4521
            K+ +E+L++ +D  ++  Q ++ K+  E+   + LN+K+ D+QGSIRVLCR+RPL   E    +RD E     + + + D D+L F G  Y +D VF   T+Q               V+DEV   VA+++ G  VC+FAYGQT SGKTYTMEG  +D RGVN RAL  LF +    +  ++ F VS+LEVYNESV+DLL           K D+R+   G VYVEGL + +VES  +VE+L+ +   NR   NNN+N+ SSRSHLVL  +IT T   TG   HGKLNLIDLAGSER+K+T AEG +LKEAQNINRSLSALGDV+ +LG+ SKHVPYRNSKLTFLLQ+SL +NAKV LMFVNINP+  + GES CSLNFAKRC SVQLG +R+
Sbjct:  524 KKSSEALQKEVDILKLDAQTFKEKWRNEQNRSKELNSKLADLQGSIRVLCRVRPLSFDE----KRDDESLGTNS-VQFLDYDKLLFHGTEYIYDHVFDGDTEQTA-------------VYDEVSSTVATSMNGVNVCIFAYGQTASGKTYTMEGLAND-RGVNVRALESLFEIGKSSQDIDYTFSVSILEVYNESVRDLLSRENH-----TKLDVRMGSNG-VYVEGLTKHDVESGSDVEQLIALASSNRVTANNNINDLSSRSHLVLTCYITGTKTITGATIHGKLNLIDLAGSERLKNTEAEGLRLKEAQNINRSLSALGDVVAALGNNSKHVPYRNSKLTFLLQESLRTNAKV-LMFVNINPSTDNAGESICSLNFAKRCRSVQLGKARK 890          
BLAST of mRNA_P-fluviatile_contig10.902.1 vs. uniprot
Match: A0A7S1TQ83_9STRA (Hypothetical protein n=1 Tax=Phaeomonas parva TaxID=124430 RepID=A0A7S1TQ83_9STRA)

HSP 1 Score: 355 bits (911), Expect = 4.770e-98
Identity = 207/382 (54.19%), Postives = 260/382 (68.06%), Query Frame = 1
Query: 3436 KRALNAKILDMQGSIRVLCRLRPLQQAEVV-------AIQRDQEYEDPMANITYPDVDRLTFWGVPYQFDCVFGPGTKQAQARIICPTAGNSARVFDEVQPIVASALEGYRVCVFAYGQTGSGKTYTMEGPKSDSRGVNFRALGELFALS-AQDEAKEFKFRVSMLEVYNESVKDLLLEPGRPAA-----------AANKHDIRLDKKGRVYVEGLVECEVESLEEVEELVVMGGRNRTVGNNNVNEHSSRSHLVLQVHITSTDVATGHVQHGKLNLIDLAGSERIKSTAAEGQQLKEAQNINRSLSALGDVINSLGSGSKHVPYRNSKLTFLLQDSLSSNAKVVLMFVNINPAPQSQGESSCSLNFAKRCHSVQLGTSRRL 4524
            ++ L  +IL++QG+IRV  R+RPL + E +        + RD     P   I Y D D+  F G  ++FD +F P + Q Q             VF EV+  VA AL+G+RVC+FAYGQTGSGKT+TMEGP S+ RGVNFRAL  LF L+    E  E  F+VSMLEVYNE ++DLL  PG P +           ++     R  KKG V+VEGL+ECEV +++EVEE++ +GG +R+  +NNVNEHSSRSHLVLQV +          QHG L+LIDLAGSER+K+T+A+GQ+LKEAQNIN+SLSALGDVI +LGS   HVPYRNSKLTFLLQDSL  ++KV LMFVNINPA  S GES+CSLNFA RC SVQLG +RR+
Sbjct:  930 QKELTERILELQGNIRVFARVRPLSEQERMEQDSAGEVLTRDGRSIRPEDAIRYMDEDKFNFHGTSFEFDKIFSPTSTQEQ-------------VFGEVEHAVAKALDGFRVCIFAYGQTGSGKTFTMEGPASN-RGVNFRALKHLFDLAPVVGEEDEISFKVSMLEVYNEKIRDLLAPPGTPGSDDLSVRVLGGGSSGGSKRRGAKKG-VFVEGLLECEVNNVDEVEEIMSLGGEHRSTASNNVNEHSSRSHLVLQVKVLRRGS-----QHGLLSLIDLAGSERLKNTSAQGQRLKEAQNINKSLSALGDVIAALGSSQGHVPYRNSKLTFLLQDSLGPSSKV-LMFVNINPAFNSAGESTCSLNFASRCRSVQLGPARRV 1290          
BLAST of mRNA_P-fluviatile_contig10.902.1 vs. uniprot
Match: A0A2P4XLZ0_9STRA (Kinesin-like protein n=1 Tax=Phytophthora palmivora var. palmivora TaxID=611791 RepID=A0A2P4XLZ0_9STRA)

HSP 1 Score: 315 bits (807), Expect = 7.320e-92
Identity = 189/385 (49.09%), Postives = 256/385 (66.49%), Query Frame = 1
Query: 3415 FEAERTLKRALNAKILDMQGSIRVLCRLRPLQQAEVVAIQ-------RDQEYEDPMANITYPDVDRLTFWGVP--YQFDCVFGPGTKQAQARIICPTAGNSARVFDEVQPIVASALEGYRVCVFAYGQTGSGKTYTMEGPKSDSRGVNFRALGELFALSAQDEAK---EFKFRVSMLEVYNESVKDLLLEPGRPAAAANKH-----DIRLDKKGRVYVEGLVECEVESLEEVEELVVMGGRNRTVGNNNVNEHSSRSHLVLQVHITSTDVATGHVQHGKLNLIDLAGSERIKSTAAEGQQLKEAQNINRSLSALGDVINSLGSGSKHVPYRNSKLTFLLQDSLSSNAKVVLMFVNINPAPQSQGESSCSLNFAKRCHSVQLGTSR 4518
            +  E   +R L+ K++++QG+IRV CR+RP+Q  E+ + Q       RD ++E     +     D+    G    ++FD VF P + Q Q             VF++ + +V SAL+G+ VC+FAYGQTGSGKT+TMEGP++D RGVNFRAL ELF++     A    E   ++S+LEVYNE++ DLL   GR  + A+       D+R+ K G VYVE L+E EV +  +V +L+ +G  +R+VG+++ NEHSSRSHLVL + I +   + G  +  KL+LIDLAGSER+  TAA GQ+LKEAQNINRSLSALGDVI +LG+ SKHVPYRNSKLTFLLQDSLS N+KV LMFVN++P   +  E+ CSLNFA RC SV LG ++
Sbjct:   29 YTQEMMARRKLHNKLMELQGNIRVFCRVRPIQPVELKSEQSALAVFFRDNDHESLDLFVGSEAGDKANQIGQKHAFEFDHVFQPNSTQEQ-------------VFEQTRALVVSALDGFNVCIFAYGQTGSGKTHTMEGPEND-RGVNFRALRELFSIRDDRMAGGNFECSMKLSILEVYNETIVDLLEGGGRTISGASPAVAKGLDVRVGKNG-VYVENLIEVEVFNEGDVLDLMRLGHSHRSVGSHDFNEHSSRSHLVLSIKIETGIKSDGRRRTSKLHLIDLAGSERVSKTAASGQRLKEAQNINRSLSALGDVIAALGANSKHVPYRNSKLTFLLQDSLSGNSKV-LMFVNVSPVQWNAWETLCSLNFASRCRSVALGQAK 397          
BLAST of mRNA_P-fluviatile_contig10.902.1 vs. uniprot
Match: A0A7S2WAZ0_9STRA (Kinesin-like protein n=1 Tax=labyrinthulid quahog parasite QPX TaxID=96639 RepID=A0A7S2WAZ0_9STRA)

HSP 1 Score: 311 bits (798), Expect = 5.510e-89
Identity = 182/385 (47.27%), Postives = 255/385 (66.23%), Query Frame = 1
Query: 3379 AAQVQVQEWRMKFEAERTLKRALNAKILDMQGSIRVLCRLRPLQQAEVVAIQRDQEYEDPMANITYPDVDRLTFWGVPYQFDCVFGPGTKQAQARIICPTAGNSARVFDEVQPIVASALEGYRVCVFAYGQTGSGKTYTMEGPKSDSRGVNFRALGELFAL-SAQDEAKEFKFRVSMLEVYNESVKDLLLEPGRPAAAANKHDIRLDKKGRVYVEGLVECEVESLEEVEELVVMGGRNRTVGNNNVNEHSSRSHLVLQVHITSTDVATGHVQHGKLNLIDLAGSERIKSTAAEGQQLKEAQNINRSLSALGDVINSLGSGSK---HVPYRNSKLTFLLQDSLSSNAKVVLMFVNINPAPQSQGESSCSLNFAKRCHSVQLGTSRR 4521
            A + +++E + ++  E TL++ ++ +++D++G+IRV CR+RP+   E  +       E P+ N    + D  T     ++FD VF   + Q Q             +F+++ P+V S L+GY VC+FAYGQTGSGKTYTM+GPK D+RGVNFRAL  +F + + + + +E    VS+LE+YNE+V+DLL E        +K D+R++K+G+V+V+GL E    S+ +V   + +   NR VG +N+NEHSSRSHLVL VHI +T+  +G   +G LNLIDLAGSERI  T A G +LKEAQNIN+SLSALGDVI +LG G K   HVPYRNSKLT LLQ+SL  ++KV  MFVNI+P   +  ES CSLNFA RC  VQLG +++
Sbjct:  172 ALEDKIREHKERYVRECTLRKKVHNELMDIKGNIRVFCRVRPILPVEEQSGDCMDVTEYPVENEIVLNRDEAT--ANRFEFDSVFSAASSQEQ-------------IFEDISPLVTSTLDGYNVCIFAYGQTGSGKTYTMQGPK-DNRGVNFRALERMFQIRNDRRDEEECSMTVSILEIYNETVRDLLGE------CRDKLDLRVNKEGKVFVQGLEENSANSMADVLNSMKIAQGNRAVGAHNMNEHSSRSHLVLTVHIETTNKVSGIKCNGSLNLIDLAGSERISKTDATGSRLKEAQNINKSLSALGDVIAALGEGGKKGQHVPYRNSKLTHLLQNSLGGDSKVA-MFVNISPVRWNVSESICSLNFAARCRKVQLGQAKK 533          
BLAST of mRNA_P-fluviatile_contig10.902.1 vs. uniprot
Match: A0A7S2W0I4_9STRA (Kinesin-like protein n=1 Tax=Rhizochromulina marina TaxID=1034831 RepID=A0A7S2W0I4_9STRA)

HSP 1 Score: 314 bits (805), Expect = 6.080e-88
Identity = 190/388 (48.97%), Postives = 248/388 (63.92%), Query Frame = 1
Query: 3373 IDAAQVQVQEWRMKFEAERTLKRALNAKILDMQGSIRVLCRLRPLQQAEVVAIQRDQEYEDPMANITYPDVDRLTFWGVPYQFDCVFGPGTKQAQARIICPTAGNSARVFDEVQPIVASALEGYRVCVFAYGQTGSGKTYTMEGPKSDSRGVNFRALGELFAL-SAQDEAKEFKFRVSMLEVYNESVKDLLLEPGRPAAAANKH--DIRLDKKGRVYVEGLVECEVESLEEVEELVVMGGRNRTVGNNNVNEHSSRSHLVLQVHITSTDVATGHVQHGKLNLIDLAGSERIKSTAAEGQQLKEAQNINRSLSALGDVINSLGSGSK--HVPYRNSKLTFLLQDSLSSNAKVVLMFVNINPAPQSQGESSCSLNFAKRCHSVQLGTSRR 4521
            IDAA  + +E   ++  E   ++ ++ K++++QG+IRV CR RP+  AEV + Q     +           D LT     ++FD  F P + Q               VF+ V+P + S L+GY VC+FAYGQTGSGKT+TMEGP  D+RGVNFR+L ELF+L  A+ E  EF F +S LE+YNE ++DLL++P R  +A  K   DIR    G V V GL E  V S +EV  L+  G   RTVG++++NEHSSRSH +L +      +  G     +LNLIDLAGSER+  T A G++LKEAQNINRSLSALGDVIN+LG   K  HVP+RNSKLT LLQDSLS N+KV LMF NI+PA  + GE+ CSLNFA RC SV+LG +R+
Sbjct:  335 IDAAVKEKEEHYDQYLKENRRRKEIHNKLIELQGNIRVFCRCRPIVSAEVASGQTRNVVDFTTPEDVVVQRDELT--RSKFEFDQAFHPDSNQLS-------------VFEHVRPFMTSFLDGYNVCIFAYGQTGSGKTFTMEGPP-DNRGVNFRSLEELFSLRDARAEEIEFSFVLSYLEIYNEQIRDLLVDPRRNGSADGKSKLDIRQSATGNV-VPGLTEVPVASTDEVAALMTRGAECRTVGSHDMNEHSSRSHSILTITAHGRSLTDGSTLTSRLNLIDLAGSERVSKTDATGERLKEAQNINRSLSALGDVINALGKKGKGGHVPFRNSKLTHLLQDSLSGNSKV-LMFCNISPASYNVGETMCSLNFAARCRSVELGQARK 704          
BLAST of mRNA_P-fluviatile_contig10.902.1 vs. uniprot
Match: A0A024UK57_9STRA (Kinesin-like protein n=1 Tax=Aphanomyces invadans TaxID=157072 RepID=A0A024UK57_9STRA)

HSP 1 Score: 314 bits (804), Expect = 2.290e-87
Identity = 185/376 (49.20%), Postives = 251/376 (66.76%), Query Frame = 1
Query: 3415 FEAERTLKRALNAKILDMQGSIRVLCRLRPLQQAEVVAIQRDQEY----EDP-MANITYPDVDRLTFWGVPYQFDCVFGPGTKQAQARIICPTAGNSARVFDEVQPIVASALEGYRVCVFAYGQTGSGKTYTMEGPKSDSRGVNFRALGELFALSAQDEAK---EFKFRVSMLEVYNESVKDLLLEPGRPAAAANKHDIRLDKKGRVYVEGLVECEVESLEEVEELVVMGGRNRTVGNNNVNEHSSRSHLVLQVHITSTDVATGHVQHGKLNLIDLAGSERIKSTAAEGQQLKEAQNINRSLSALGDVINSLGSGSKHVPYRNSKLTFLLQDSLSSNAKVVLMFVNINPAPQSQGESSCSLNFAKRCHSVQLGTSR 4518
            +  E   +R L+ ++++M G+IRV CR+RP+   EV +    Q       DP + ++T  +  + TF     +FD VF P T QA              VF++ + +V SA++G+ VC+FAYGQTGSGKT+TMEGP +D RGVNFRA+ ELF +  +       E   ++S+LEVYNE++ DLL +   P       ++R+ K+G  YVE L+E EV S  +V++L+ +G  +R+VG+++VNEHSSRSHLV+ + ITS+    G     KL+LIDLAGSERI  TAA GQ+LKEAQ+INRSLSALGDVI SLG  SKHVPYRNSKLTFLLQ+SLS N+KV LMFVN++P   +  ES CSLNFA+RC +V LG ++
Sbjct:  405 YAQEMKARRQLHNRVMEMAGNIRVFCRIRPVSNVEVTSADSAQVVTFRPNDPHVLDLTVAEGQKHTF-----EFDYVFQPTTGQAD-------------VFEQTKALVVSAMDGFNVCIFAYGQTGSGKTHTMEGPATD-RGVNFRAMDELFRVRDERVRSGNVECDMKLSILEVYNETIVDLLDDS--PTGERKPLEVRMGKQG-AYVENLMEVEVYSASDVDDLMKLGHSHRSVGSHDVNEHSSRSHLVVSITITSSHKLDGRKSLSKLHLIDLAGSERISKTAASGQRLKEAQHINRSLSALGDVIASLGGHSKHVPYRNSKLTFLLQESLSGNSKV-LMFVNVSPVQWNAWESLCSLNFAQRCRNVALGQAK 757          
BLAST of mRNA_P-fluviatile_contig10.902.1 vs. uniprot
Match: L1JRD3_GUITC (Kinesin-like protein n=1 Tax=Guillardia theta (strain CCMP2712) TaxID=905079 RepID=L1JRD3_GUITC)

HSP 1 Score: 300 bits (767), Expect = 2.750e-87
Identity = 178/365 (48.77%), Postives = 236/365 (64.66%), Query Frame = 1
Query: 3436 KRALNAKILDMQGSIRVLCRLRPLQQAEVVAIQRDQEYEDPMANITYPDVDRLTFWGVP--YQFDCVFGPGTKQAQARIICPTAGNSARVFDEVQPIVASALEGYRVCVFAYGQTGSGKTYTMEGPKSDSRGVNFRALGELFALSAQDEAKE--FKFRVSMLEVYNESVKDLLLEPGRPAAAANKHDIRLDKKGRVYVEGLVECEVESLEEVEELVVMGGRNRTVGNNNVNEHSSRSHLVLQVHITSTDVATGHVQHGKLNLIDLAGSERIKSTAAEGQQLKEAQNINRSLSALGDVINSLGSGSKHVPYRNSKLTFLLQDSLSSNAKVVLMFVNINPAPQSQGESSCSLNFAKRCHSVQLGTSR 4518
            ++ L+  +LD++G+IRV CR RP          R      P+ +   P+   +   G    + +D  FGP  +Q +             +F E QP+V S L+GY VC+ AYGQTGSGKT+TM+G  S S GVN RALGELFAL+A+  AKE  FK ++S+LE+YNE+++DLL EP        K D++L + G   V G++  EVES+EEV + +  G +NR+V   ++NEHSSRSH+VL V+   T  ATG    GKL+LIDLAGSER++ T AEG++LKEAQNIN+SLSALGD + SL + SKHVPYRNSKLTFLLQDSL  +AK  LMFV I+      GE+ CSLNFA R  +V LG ++
Sbjct:   30 RKRLHNLVLDLKGNIRVFCRARPA---------RSSSLAPPIVSYPAPNELLVEAGGKSQTFSYDATFGPQAQQDE-------------IFREAQPLVVSVLDGYHVCILAYGQTGSGKTHTMQGTAS-SPGVNTRALGELFALAAE-RAKEHDFKIKISLLEIYNETIRDLL-EPLDEKGEEKKLDVKLGQDGGTCVPGVLTSEVESMEEVMQALQRGEQNRSVAGTDMNEHSSRSHMVLTVYTQGTSKATGTRSFGKLHLIDLAGSERLRRTCAEGERLKEAQNINKSLSALGDCMQSLVAKSKHVPYRNSKLTFLLQDSLGGDAKA-LMFVCISSEEADAGETLCSLNFASRVRNVVLGPAK 368          
The following BLAST results are available for this feature:
BLAST of mRNA_P-fluviatile_contig10.902.1 vs. uniprot
Analysis Date: 2022-09-19 (Diamond blastx: OGS1.0 vs UniRef90)
Total hits: 25
Match NameE-valueIdentityDescription
D7FVQ4_ECTSI0.000e+073.06Kinesin motor domain-containing protein n=1 Tax=Ec... [more]
A0A6H5KGG1_9PHAE7.710e-20860.54Uncharacterized protein n=1 Tax=Ectocarpus sp. CCA... [more]
A0A835Z6H9_9STRA7.590e-13963.06Kinesin-like protein n=1 Tax=Tribonema minus TaxID... [more]
A0A7S2PFW9_9STRA1.080e-10152.67Kinesin-like protein n=1 Tax=Leptocylindrus danicu... [more]
A0A7S1TQ83_9STRA4.770e-9854.19Hypothetical protein n=1 Tax=Phaeomonas parva TaxI... [more]
A0A2P4XLZ0_9STRA7.320e-9249.09Kinesin-like protein n=1 Tax=Phytophthora palmivor... [more]
A0A7S2WAZ0_9STRA5.510e-8947.27Kinesin-like protein n=1 Tax=labyrinthulid quahog ... [more]
A0A7S2W0I4_9STRA6.080e-8848.97Kinesin-like protein n=1 Tax=Rhizochromulina marin... [more]
A0A024UK57_9STRA2.290e-8749.20Kinesin-like protein n=1 Tax=Aphanomyces invadans ... [more]
L1JRD3_GUITC2.750e-8748.77Kinesin-like protein n=1 Tax=Guillardia theta (str... [more]

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Alignments
The following features are aligned
Aligned FeatureFeature TypeAlignment Location
P-fluviatile_contig10contigP-fluviatile_contig10:3400823..3421807 -
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 score1508.4
Seed ortholog evalue0.0
Seed eggNOG ortholog2880.D7FVQ4
KEGG koko:K10406
EggNOG free text desc.microtubule motor activity
EggNOG OGsCOG5059@1,KOG0239@2759
COG Functional cat.Z
Best tax levelEukaryota
Best eggNOG OGNA|NA|NA
BRITEko00000,ko04812
Hectar predicted targeting categoryother localisation
Exons40
Model size4530
Cds size4530
Stop1
Start1
Relationships

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

Feature NameUnique NameSpeciesTypePosition
mRNA_P-fluviatile_contig10.902.1prot_P-fluviatile_contig10.902.1Porterinema fluviatile SAG_2381polypeptideP-fluviatile_contig10 3400823..3421807 -


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

Feature NameUnique NameSpeciesTypePosition
1622815410.9127145-CDS-P-fluviatile_contig10:3400822..34009421622815410.9127145-CDS-P-fluviatile_contig10:3400822..3400942Porterinema fluviatile SAG_2381CDSP-fluviatile_contig10 3400823..3400942 -
1693561779.2964513-CDS-P-fluviatile_contig10:3400822..34009421693561779.2964513-CDS-P-fluviatile_contig10:3400822..3400942Porterinema fluviatile SAG_2381CDSP-fluviatile_contig10 3400823..3400942 -
1622815410.926088-CDS-P-fluviatile_contig10:3401224..34013951622815410.926088-CDS-P-fluviatile_contig10:3401224..3401395Porterinema fluviatile SAG_2381CDSP-fluviatile_contig10 3401225..3401395 -
1693561779.309043-CDS-P-fluviatile_contig10:3401224..34013951693561779.309043-CDS-P-fluviatile_contig10:3401224..3401395Porterinema fluviatile SAG_2381CDSP-fluviatile_contig10 3401225..3401395 -
1622815410.935598-CDS-P-fluviatile_contig10:3401540..34017411622815410.935598-CDS-P-fluviatile_contig10:3401540..3401741Porterinema fluviatile SAG_2381CDSP-fluviatile_contig10 3401541..3401741 -
1693561779.3169029-CDS-P-fluviatile_contig10:3401540..34017411693561779.3169029-CDS-P-fluviatile_contig10:3401540..3401741Porterinema fluviatile SAG_2381CDSP-fluviatile_contig10 3401541..3401741 -
1622815410.944037-CDS-P-fluviatile_contig10:3402141..34022671622815410.944037-CDS-P-fluviatile_contig10:3402141..3402267Porterinema fluviatile SAG_2381CDSP-fluviatile_contig10 3402142..3402267 -
1693561779.3261597-CDS-P-fluviatile_contig10:3402141..34022671693561779.3261597-CDS-P-fluviatile_contig10:3402141..3402267Porterinema fluviatile SAG_2381CDSP-fluviatile_contig10 3402142..3402267 -
1622815410.9528491-CDS-P-fluviatile_contig10:3403015..34031091622815410.9528491-CDS-P-fluviatile_contig10:3403015..3403109Porterinema fluviatile SAG_2381CDSP-fluviatile_contig10 3403016..3403109 -
1693561779.3386374-CDS-P-fluviatile_contig10:3403015..34031091693561779.3386374-CDS-P-fluviatile_contig10:3403015..3403109Porterinema fluviatile SAG_2381CDSP-fluviatile_contig10 3403016..3403109 -
1622815410.9633548-CDS-P-fluviatile_contig10:3403261..34033831622815410.9633548-CDS-P-fluviatile_contig10:3403261..3403383Porterinema fluviatile SAG_2381CDSP-fluviatile_contig10 3403262..3403383 -
1693561779.3545275-CDS-P-fluviatile_contig10:3403261..34033831693561779.3545275-CDS-P-fluviatile_contig10:3403261..3403383Porterinema fluviatile SAG_2381CDSP-fluviatile_contig10 3403262..3403383 -
1622815410.9724386-CDS-P-fluviatile_contig10:3403667..34038441622815410.9724386-CDS-P-fluviatile_contig10:3403667..3403844Porterinema fluviatile SAG_2381CDSP-fluviatile_contig10 3403668..3403844 -
1693561779.3634393-CDS-P-fluviatile_contig10:3403667..34038441693561779.3634393-CDS-P-fluviatile_contig10:3403667..3403844Porterinema fluviatile SAG_2381CDSP-fluviatile_contig10 3403668..3403844 -
1622815410.9831555-CDS-P-fluviatile_contig10:3404423..34044711622815410.9831555-CDS-P-fluviatile_contig10:3404423..3404471Porterinema fluviatile SAG_2381CDSP-fluviatile_contig10 3404424..3404471 -
1693561779.3720415-CDS-P-fluviatile_contig10:3404423..34044711693561779.3720415-CDS-P-fluviatile_contig10:3404423..3404471Porterinema fluviatile SAG_2381CDSP-fluviatile_contig10 3404424..3404471 -
1622815411.4014401-CDS-P-fluviatile_contig10:3404741..34048671622815411.4014401-CDS-P-fluviatile_contig10:3404741..3404867Porterinema fluviatile SAG_2381CDSP-fluviatile_contig10 3404742..3404867 -
1693561779.3808892-CDS-P-fluviatile_contig10:3404741..34048671693561779.3808892-CDS-P-fluviatile_contig10:3404741..3404867Porterinema fluviatile SAG_2381CDSP-fluviatile_contig10 3404742..3404867 -
1622815411.420397-CDS-P-fluviatile_contig10:3405376..34054391622815411.420397-CDS-P-fluviatile_contig10:3405376..3405439Porterinema fluviatile SAG_2381CDSP-fluviatile_contig10 3405377..3405439 -
1693561779.3896105-CDS-P-fluviatile_contig10:3405376..34054391693561779.3896105-CDS-P-fluviatile_contig10:3405376..3405439Porterinema fluviatile SAG_2381CDSP-fluviatile_contig10 3405377..3405439 -
1622815411.436042-CDS-P-fluviatile_contig10:3406124..34062081622815411.436042-CDS-P-fluviatile_contig10:3406124..3406208Porterinema fluviatile SAG_2381CDSP-fluviatile_contig10 3406125..3406208 -
1693561779.3990388-CDS-P-fluviatile_contig10:3406124..34062081693561779.3990388-CDS-P-fluviatile_contig10:3406124..3406208Porterinema fluviatile SAG_2381CDSP-fluviatile_contig10 3406125..3406208 -
1622815411.450372-CDS-P-fluviatile_contig10:3406404..34064941622815411.450372-CDS-P-fluviatile_contig10:3406404..3406494Porterinema fluviatile SAG_2381CDSP-fluviatile_contig10 3406405..3406494 -
1693561779.4087238-CDS-P-fluviatile_contig10:3406404..34064941693561779.4087238-CDS-P-fluviatile_contig10:3406404..3406494Porterinema fluviatile SAG_2381CDSP-fluviatile_contig10 3406405..3406494 -
1622815411.4680872-CDS-P-fluviatile_contig10:3406979..34070961622815411.4680872-CDS-P-fluviatile_contig10:3406979..3407096Porterinema fluviatile SAG_2381CDSP-fluviatile_contig10 3406980..3407096 -
1693561779.4180248-CDS-P-fluviatile_contig10:3406979..34070961693561779.4180248-CDS-P-fluviatile_contig10:3406979..3407096Porterinema fluviatile SAG_2381CDSP-fluviatile_contig10 3406980..3407096 -
1622815411.4818144-CDS-P-fluviatile_contig10:3407553..34076911622815411.4818144-CDS-P-fluviatile_contig10:3407553..3407691Porterinema fluviatile SAG_2381CDSP-fluviatile_contig10 3407554..3407691 -
1693561779.427533-CDS-P-fluviatile_contig10:3407553..34076911693561779.427533-CDS-P-fluviatile_contig10:3407553..3407691Porterinema fluviatile SAG_2381CDSP-fluviatile_contig10 3407554..3407691 -
1622815411.4971302-CDS-P-fluviatile_contig10:3408076..34081671622815411.4971302-CDS-P-fluviatile_contig10:3408076..3408167Porterinema fluviatile SAG_2381CDSP-fluviatile_contig10 3408077..3408167 -
1693561779.4369361-CDS-P-fluviatile_contig10:3408076..34081671693561779.4369361-CDS-P-fluviatile_contig10:3408076..3408167Porterinema fluviatile SAG_2381CDSP-fluviatile_contig10 3408077..3408167 -
1622815411.5094528-CDS-P-fluviatile_contig10:3408304..34084061622815411.5094528-CDS-P-fluviatile_contig10:3408304..3408406Porterinema fluviatile SAG_2381CDSP-fluviatile_contig10 3408305..3408406 -
1693561779.4484167-CDS-P-fluviatile_contig10:3408304..34084061693561779.4484167-CDS-P-fluviatile_contig10:3408304..3408406Porterinema fluviatile SAG_2381CDSP-fluviatile_contig10 3408305..3408406 -
1622815411.523037-CDS-P-fluviatile_contig10:3408625..34087141622815411.523037-CDS-P-fluviatile_contig10:3408625..3408714Porterinema fluviatile SAG_2381CDSP-fluviatile_contig10 3408626..3408714 -
1693561779.459568-CDS-P-fluviatile_contig10:3408625..34087141693561779.459568-CDS-P-fluviatile_contig10:3408625..3408714Porterinema fluviatile SAG_2381CDSP-fluviatile_contig10 3408626..3408714 -
1622815411.5368845-CDS-P-fluviatile_contig10:3409032..34091551622815411.5368845-CDS-P-fluviatile_contig10:3409032..3409155Porterinema fluviatile SAG_2381CDSP-fluviatile_contig10 3409033..3409155 -
1693561779.4691265-CDS-P-fluviatile_contig10:3409032..34091551693561779.4691265-CDS-P-fluviatile_contig10:3409032..3409155Porterinema fluviatile SAG_2381CDSP-fluviatile_contig10 3409033..3409155 -
1622815411.5504794-CDS-P-fluviatile_contig10:3409554..34096081622815411.5504794-CDS-P-fluviatile_contig10:3409554..3409608Porterinema fluviatile SAG_2381CDSP-fluviatile_contig10 3409555..3409608 -
1693561779.4784324-CDS-P-fluviatile_contig10:3409554..34096081693561779.4784324-CDS-P-fluviatile_contig10:3409554..3409608Porterinema fluviatile SAG_2381CDSP-fluviatile_contig10 3409555..3409608 -
1622815411.5657783-CDS-P-fluviatile_contig10:3411443..34116051622815411.5657783-CDS-P-fluviatile_contig10:3411443..3411605Porterinema fluviatile SAG_2381CDSP-fluviatile_contig10 3411444..3411605 -
1693561779.4880748-CDS-P-fluviatile_contig10:3411443..34116051693561779.4880748-CDS-P-fluviatile_contig10:3411443..3411605Porterinema fluviatile SAG_2381CDSP-fluviatile_contig10 3411444..3411605 -
1622815411.5756876-CDS-P-fluviatile_contig10:3411883..34121141622815411.5756876-CDS-P-fluviatile_contig10:3411883..3412114Porterinema fluviatile SAG_2381CDSP-fluviatile_contig10 3411884..3412114 -
1693561779.49755-CDS-P-fluviatile_contig10:3411883..34121141693561779.49755-CDS-P-fluviatile_contig10:3411883..3412114Porterinema fluviatile SAG_2381CDSP-fluviatile_contig10 3411884..3412114 -
1622815411.5852125-CDS-P-fluviatile_contig10:3412454..34125591622815411.5852125-CDS-P-fluviatile_contig10:3412454..3412559Porterinema fluviatile SAG_2381CDSP-fluviatile_contig10 3412455..3412559 -
1693561779.5076683-CDS-P-fluviatile_contig10:3412454..34125591693561779.5076683-CDS-P-fluviatile_contig10:3412454..3412559Porterinema fluviatile SAG_2381CDSP-fluviatile_contig10 3412455..3412559 -
1622815411.594164-CDS-P-fluviatile_contig10:3412816..34130201622815411.594164-CDS-P-fluviatile_contig10:3412816..3413020Porterinema fluviatile SAG_2381CDSP-fluviatile_contig10 3412817..3413020 -
1693561779.5174906-CDS-P-fluviatile_contig10:3412816..34130201693561779.5174906-CDS-P-fluviatile_contig10:3412816..3413020Porterinema fluviatile SAG_2381CDSP-fluviatile_contig10 3412817..3413020 -
1622815411.605405-CDS-P-fluviatile_contig10:3413441..34135201622815411.605405-CDS-P-fluviatile_contig10:3413441..3413520Porterinema fluviatile SAG_2381CDSP-fluviatile_contig10 3413442..3413520 -
1693561779.5289667-CDS-P-fluviatile_contig10:3413441..34135201693561779.5289667-CDS-P-fluviatile_contig10:3413441..3413520Porterinema fluviatile SAG_2381CDSP-fluviatile_contig10 3413442..3413520 -
1622815411.6186118-CDS-P-fluviatile_contig10:3413800..34139131622815411.6186118-CDS-P-fluviatile_contig10:3413800..3413913Porterinema fluviatile SAG_2381CDSP-fluviatile_contig10 3413801..3413913 -
1693561779.5435088-CDS-P-fluviatile_contig10:3413800..34139131693561779.5435088-CDS-P-fluviatile_contig10:3413800..3413913Porterinema fluviatile SAG_2381CDSP-fluviatile_contig10 3413801..3413913 -
1622815411.6920488-CDS-P-fluviatile_contig10:3414108..34142011622815411.6920488-CDS-P-fluviatile_contig10:3414108..3414201Porterinema fluviatile SAG_2381CDSP-fluviatile_contig10 3414109..3414201 -
1693561779.5531745-CDS-P-fluviatile_contig10:3414108..34142011693561779.5531745-CDS-P-fluviatile_contig10:3414108..3414201Porterinema fluviatile SAG_2381CDSP-fluviatile_contig10 3414109..3414201 -
1622815411.7387998-CDS-P-fluviatile_contig10:3415847..34159501622815411.7387998-CDS-P-fluviatile_contig10:3415847..3415950Porterinema fluviatile SAG_2381CDSP-fluviatile_contig10 3415848..3415950 -
1693561783.0136614-CDS-P-fluviatile_contig10:3415847..34159501693561783.0136614-CDS-P-fluviatile_contig10:3415847..3415950Porterinema fluviatile SAG_2381CDSP-fluviatile_contig10 3415848..3415950 -
1622815411.783015-CDS-P-fluviatile_contig10:3416130..34162111622815411.783015-CDS-P-fluviatile_contig10:3416130..3416211Porterinema fluviatile SAG_2381CDSP-fluviatile_contig10 3416131..3416211 -
1693561783.0322263-CDS-P-fluviatile_contig10:3416130..34162111693561783.0322263-CDS-P-fluviatile_contig10:3416130..3416211Porterinema fluviatile SAG_2381CDSP-fluviatile_contig10 3416131..3416211 -
1622815411.7982252-CDS-P-fluviatile_contig10:3416330..34164101622815411.7982252-CDS-P-fluviatile_contig10:3416330..3416410Porterinema fluviatile SAG_2381CDSP-fluviatile_contig10 3416331..3416410 -
1693561783.0423422-CDS-P-fluviatile_contig10:3416330..34164101693561783.0423422-CDS-P-fluviatile_contig10:3416330..3416410Porterinema fluviatile SAG_2381CDSP-fluviatile_contig10 3416331..3416410 -
1622815411.8129764-CDS-P-fluviatile_contig10:3416587..34166781622815411.8129764-CDS-P-fluviatile_contig10:3416587..3416678Porterinema fluviatile SAG_2381CDSP-fluviatile_contig10 3416588..3416678 -
1693561783.0533035-CDS-P-fluviatile_contig10:3416587..34166781693561783.0533035-CDS-P-fluviatile_contig10:3416587..3416678Porterinema fluviatile SAG_2381CDSP-fluviatile_contig10 3416588..3416678 -
1622815411.8303802-CDS-P-fluviatile_contig10:3417475..34175491622815411.8303802-CDS-P-fluviatile_contig10:3417475..3417549Porterinema fluviatile SAG_2381CDSP-fluviatile_contig10 3417476..3417549 -
1693561783.0636334-CDS-P-fluviatile_contig10:3417475..34175491693561783.0636334-CDS-P-fluviatile_contig10:3417475..3417549Porterinema fluviatile SAG_2381CDSP-fluviatile_contig10 3417476..3417549 -
1622815411.8484592-CDS-P-fluviatile_contig10:3417714..34177971622815411.8484592-CDS-P-fluviatile_contig10:3417714..3417797Porterinema fluviatile SAG_2381CDSP-fluviatile_contig10 3417715..3417797 -
1693561783.0706465-CDS-P-fluviatile_contig10:3417714..34177971693561783.0706465-CDS-P-fluviatile_contig10:3417714..3417797Porterinema fluviatile SAG_2381CDSP-fluviatile_contig10 3417715..3417797 -
1622815411.8635418-CDS-P-fluviatile_contig10:3418653..34188191622815411.8635418-CDS-P-fluviatile_contig10:3418653..3418819Porterinema fluviatile SAG_2381CDSP-fluviatile_contig10 3418654..3418819 -
1693561783.0782914-CDS-P-fluviatile_contig10:3418653..34188191693561783.0782914-CDS-P-fluviatile_contig10:3418653..3418819Porterinema fluviatile SAG_2381CDSP-fluviatile_contig10 3418654..3418819 -
1622815411.8771312-CDS-P-fluviatile_contig10:3419139..34192691622815411.8771312-CDS-P-fluviatile_contig10:3419139..3419269Porterinema fluviatile SAG_2381CDSP-fluviatile_contig10 3419140..3419269 -
1693561783.085796-CDS-P-fluviatile_contig10:3419139..34192691693561783.085796-CDS-P-fluviatile_contig10:3419139..3419269Porterinema fluviatile SAG_2381CDSP-fluviatile_contig10 3419140..3419269 -
1622815411.8890734-CDS-P-fluviatile_contig10:3419397..34194721622815411.8890734-CDS-P-fluviatile_contig10:3419397..3419472Porterinema fluviatile SAG_2381CDSP-fluviatile_contig10 3419398..3419472 -
1693561783.1005647-CDS-P-fluviatile_contig10:3419397..34194721693561783.1005647-CDS-P-fluviatile_contig10:3419397..3419472Porterinema fluviatile SAG_2381CDSP-fluviatile_contig10 3419398..3419472 -
1622815411.9104462-CDS-P-fluviatile_contig10:3419806..34199371622815411.9104462-CDS-P-fluviatile_contig10:3419806..3419937Porterinema fluviatile SAG_2381CDSP-fluviatile_contig10 3419807..3419937 -
1693561783.1215947-CDS-P-fluviatile_contig10:3419806..34199371693561783.1215947-CDS-P-fluviatile_contig10:3419806..3419937Porterinema fluviatile SAG_2381CDSP-fluviatile_contig10 3419807..3419937 -
1622815411.9330618-CDS-P-fluviatile_contig10:3420232..34203011622815411.9330618-CDS-P-fluviatile_contig10:3420232..3420301Porterinema fluviatile SAG_2381CDSP-fluviatile_contig10 3420233..3420301 -
1693561783.1304467-CDS-P-fluviatile_contig10:3420232..34203011693561783.1304467-CDS-P-fluviatile_contig10:3420232..3420301Porterinema fluviatile SAG_2381CDSP-fluviatile_contig10 3420233..3420301 -
1622815411.9424002-CDS-P-fluviatile_contig10:3421096..34211491622815411.9424002-CDS-P-fluviatile_contig10:3421096..3421149Porterinema fluviatile SAG_2381CDSP-fluviatile_contig10 3421097..3421149 -
1693561783.1384935-CDS-P-fluviatile_contig10:3421096..34211491693561783.1384935-CDS-P-fluviatile_contig10:3421096..3421149Porterinema fluviatile SAG_2381CDSP-fluviatile_contig10 3421097..3421149 -
1622815411.951356-CDS-P-fluviatile_contig10:3421341..34214391622815411.951356-CDS-P-fluviatile_contig10:3421341..3421439Porterinema fluviatile SAG_2381CDSP-fluviatile_contig10 3421342..3421439 -
1693561783.146749-CDS-P-fluviatile_contig10:3421341..34214391693561783.146749-CDS-P-fluviatile_contig10:3421341..3421439Porterinema fluviatile SAG_2381CDSP-fluviatile_contig10 3421342..3421439 -
1622815411.961743-CDS-P-fluviatile_contig10:3421634..34218071622815411.961743-CDS-P-fluviatile_contig10:3421634..3421807Porterinema fluviatile SAG_2381CDSP-fluviatile_contig10 3421635..3421807 -
1693561783.1550603-CDS-P-fluviatile_contig10:3421634..34218071693561783.1550603-CDS-P-fluviatile_contig10:3421634..3421807Porterinema fluviatile SAG_2381CDSP-fluviatile_contig10 3421635..3421807 -


Sequences
The following sequences are available for this feature:

protein sequence of mRNA_P-fluviatile_contig10.902.1

>prot_P-fluviatile_contig10.902.1 ID=prot_P-fluviatile_contig10.902.1|Name=mRNA_P-fluviatile_contig10.902.1|organism=Porterinema fluviatile SAG_2381|type=polypeptide|length=1510bp
MSSLPFHSAPAHSVLDRRIGVAKNRLLNLAFEDGSPTQVSDDNPEEPKSV
PADVFKQGVREHAVMLGMLLPEDENFLWIAEESLLAPLPEGWVQLKDEQS
GHPYYYNQASGDSSWEHPRDSLYKEIYRQKKAASDVGLAEVSALVPPDPP
PMQSLATLLPKHTKAKGRYQEKTVRYGRGIDEPQDDGDSACEDGPPFDVT
GTKDTSFEELDRLRRQLKKSKESRRVMVEKHDEMVNELERTKEDLEEKLD
VATDELRQERRRSNTAKLERERVEKVSAKLKETIRKLEGKLDKEERLSGE
RGCTLDGLRNEMEGCRRQVIEANAQAAADLAKQEQRFQRQLVEARELSNK
KVEEMRHKLEDDGRALGAEAAHMRAKMSFQVVDERVRDALQEHQAREQVL
IRELDALRCALDDCKQELAKTRSNAAAVAAMNNAKLAEATRASESVKEDI
SYRKDLEREVKRLNGELREAHTQMDVLSADLAKNNKLVEKIGELQRTTGE
AQEGLRAANDRFNEEVMRMNTDVANAEDTLEKKIKECKRLEAAVDDALAE
KERALTLVTAERAEVKRMTSATVSTEAALAEANSKIDGLMRQLKCVEQRL
EASEGLERDLKRLGQDAEEMHEKSHRLLDEKQREIDAYRDRVEEGESLSR
KLRGDLAEAEGRALQHKASADRLSARLSSLESQVLEGRAALASAEADRSG
MISELEVTREAAGRVKELQAAMAEATFREEALRVETTAFKNALETAEASL
ERERHSMNDTRTDLVKRAEGAEERCKSFQSSTKELTQKLQDTERRCQKEL
EKSKARETQMWAQLQQVSSSFAEAASSKKEDENTLDVKLRDLEQHLKNAE
KQLLQSQTECARMKDAAQREEKEKEAELKSLSQRLARKKEKFSAQKLSLE
EEIKTLSDKLAESRVVEESVRARCEEVSAREEEARSKLELLQDAKIAADQ
QAAGARAEAAGLKIQLDDLGARLENETARLREDAEVSRMGFAASTSKNEG
QRRAAEESKQQTEARCVVLQETVDRLEGDLARLTAQVAAGSIDRERACGE
EAQEVMGLKFKAVECQGEIEQLSSRVSELTEEKRELEVRERQERERFTRL
EAASTQSRLSYDRVKEENESLKRLIDAAQVQVQEWRMKFEAERTLKRALN
AKILDMQGSIRVLCRLRPLQQAEVVAIQRDQEYEDPMANITYPDVDRLTF
WGVPYQFDCVFGPGTKQAQARIICPTAGNSARVFDEVQPIVASALEGYRV
CVFAYGQTGSGKTYTMEGPKSDSRGVNFRALGELFALSAQDEAKEFKFRV
SMLEVYNESVKDLLLEPGRPAAAANKHDIRLDKKGRVYVEGLVECEVESL
EEVEELVVMGGRNRTVGNNNVNEHSSRSHLVLQVHITSTDVATGHVQHGK
LNLIDLAGSERIKSTAAEGQQLKEAQNINRSLSALGDVINSLGSGSKHVP
YRNSKLTFLLQDSLSSNAKVVLMFVNINPAPQSQGESSCSLNFAKRCHSV
QLGTSRRLR*
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mRNA from alignment at P-fluviatile_contig10:3400823..3421807-

Legend: polypeptideCDS
Hold the cursor over a type above to highlight its positions in the sequence below.
>mRNA_P-fluviatile_contig10.902.1 ID=mRNA_P-fluviatile_contig10.902.1|Name=mRNA_P-fluviatile_contig10.902.1|organism=Porterinema fluviatile SAG_2381|type=mRNA|length=20985bp|location=Sequence derived from alignment at P-fluviatile_contig10:3400823..3421807- (Porterinema fluviatile SAG_2381)
ATGTCAAGCTTGCCGTTCCACTCGGCTCCGGCTCACTCAGTGCTTGATCG CCGGATCGGGGTTGCAAAGAACCGCCTGCTAAACCTCGCGTTCGAGGACG GCAGCCCGACTCAAGTCAGTGATGATAACCCGGAGGAGCCGAAGAGCGTC CCTGCTGATGTCTTCAAGCAAGGGTACGTGGGTGTGCCATGTCAATTTCA CATCACATCTTCATCAAACTGCTGAGTCCCTCACCAATTCGATTCGAAAC ATGTTTCCCCGCGGTGCGCGTGTAGTGTAGTTGAATGATGAAGTGTGCCT GTCATCTCACAAGGAACGGGATCGTAAAGTGCCAACTCCTCTTAATCGCC TGGCTGATTCAATCGTAGCGTCCGGGAGCACGCCGTCATGTTGGGGATGC TGCTGCCAGAAGATGAGAACTTCCTCTGGATAGCGGAGGAATCCCTTCTC GCGCCTCTCCCAGAAGGTTGGCTGCCATTTGAAGGAGTCGGCAATGGGGG TTCTGTACAACGTTCGTAAGCTTCGTAAGAACCGTGCGTTAAAGTATCTG CGACACTGTTTTGCACAGGGATAGGTGGGTAAAATCTTCGGGCAAAACGC AGCATATCTATTACATCTTGCGTTTCCTGCGTTTTTGCGCTCCTTTTTTT TGCCAAAGGTTGGGTTCAGCTGAAGGACGAACAGTCTGGGCACCCCTACT ACTACAATCAGGTAAGGCCAATGGCTCGAATAACATCCTTTATCTGCACG GGTAAAGTGTAGCCCCTCGTCCACCAGCTCGCGTGGAAGACCGGTCGTAA TACCACAACATCCCTTGAGAACGCTCCGGAGTTGATTTCTTGAAAAGCGG GGGAACTGTCTGGGTCGTAATGAACATACCCGTGTGCACACAAACCTCTT CCGCGGACCTCTTTCCCTCATGCTGGAACCGATGATGCCGTGCCTCAAGC GAATCTACGAGCAAGCATCTAACAAGCACAAAACAGGCAATAGAGAAAAC TTGTCCCCTACAGATGAGACTTGCTTGAACGGAAATTCCAGCGAACGATC AGGATGCGCCAGATATAGTAGCCGAAACGAGAACGCCCCAGGGCGAACTC AAAGGTAGAGCGGTCGAAAAACAGTTCTCCGGAGTAATGAAAGTGAGTCG GCACCCTGGAGCGTTCTGAAGTTTGTTGGATCAATTCGCATTTTGCATGG GGCGGGGGGGGATGGGGGGAGCGGGGAAGCGGAGGAGCCGTCACTTCGCG CGGTGCGTTCCCAAGGAATGTTATGGTATGCACGGTCGATTAAAAAAGTA CGGAGTATGCGATGGCGAAAATCTTTCACGTCAGGCAAGGATTACACTCT TCAACGTCAAAAGATAATCTCTTGAGTAATCCCTCCCGTGGTTCCATTCC CGAGAAGAGGTGTACCTCGGCGATCTACGTTGTTACCTGCTGAGGGCCAT GCACTTTTTCTTCGAAAACAATGGCCTTGATGATACGATTTCGCCCCTGT GTACAGGCATCGGGAGACAGCAGCTGGGAGCACCCCCGAGATAGTCTCTA CAAGGAGATTTACCGACAGAAAAAAGTGAGCACGCGCATATTGCAGGCAA GTTGTGGTGGACGCCCAACGAGCGCGCGTTCGTTCAGGACATTTCTTCTA GAAGCGTTGCTTGAGCCATCTACGGGAGGTAAGAACAGCCTAATTTAGTT CGTCGTTATCAGTAACAATTCAGCTACTGCAAATGTGGTGTATCTGGTGA GGAGAAGTCGGCACCGGCAAATACCTGAGTCCATTCAAATGCAGCAGGAC ACAATGCTCGGCCTCGGGCGCTCTCAATTATTTCCGACCGCTACAATGGT ATCGCTTGACTTGGACACAGGCTGCAAGCGATGTTGGATTGGCGGAGGTG TCGGCTCTGGTGCCTCCAGACCCACCGCCTATGCAATCATTGGCGACCTT ACTTCCCAAGCATACGAAAGCAAAAGGTCGTTACCAAGAGAAGACCGTGA GGTGCGCGTACATGAAAATCTTGTCAGCATCGCGGGTATGTACGGACTAA TATATCTGGTGACCTCGCGAGGCTAAGTTTACCACCCCACAACGCCGTTT CTAAAGTTGCAAAGACTGGTGTAGCTGCAAGCGCGCTTGCTGGCAAGCGC AGTCGGTAATGATGCATGACACACGTCCGAAAAGGACTCGGTGAATACGG CAAGATTTGACGGTTATTATTGCTGCCAAGGTTGCCTAAAACAGCATTCC TTGTTCATACTCCTGCTCGGAGAGCAGTCCAACAAGGGTTCAACCCAGTC GATCCTTCTTATTGTTCACATTTTGTGGTTTCCAGGTATGGTAGAGGAAT CGATGAACCACAGGACGACGGAGACAGCGCTTGTGAGGATGGCCCTCCAT TCGATGTCACGTGAGCATCGAGTGAATGGCGCAATGTGCTTTGAAAAAGA CTGCGATTCGCACTGGCGCCGATTGGAAAGCGCTGATAGACGCAATGTTG CATAACACATAGTTTCACACTCATTTACTGTGTGCCAGGGGCACGAAAGA TACGAGTTTTGAGGAACTCGATCGCCTCCGGAGACAGCTGAAGAAGAGCA AGGAGTCCAGGAGGGTCATGGTGGAGAAACACGATGAGATGGTCAACGAG CTTGAACGTACCAAAGAGGTGTGTTCCTGTGCAGGGCACCAACAGCAAGT GACAATGATGTATCGTAAAATTGACGGCACGTTCGCTCCTGCAGTATCTC GTGTCGACTTCCTCCGGACCAGTGTGGATAGCTGTTTAACAAGATACTCC GGAGTATCAAGTTTGACGTCGAAGCACGCCGCTTATCCAGCACGCGGTAA GTTCGGCCACCACGGATGGGACATATTTTAGGCAAGGAGGCGTGCCAAGC GAAACTTCGGAATCTGAGGAAGCGATCGACAAGCAATATGTGGTTCGTTT CGCTCACATTTCCGACTAAATGGATATCTGAACACCAGGATTTGGAGGAG AAACTAGACGTAGCCACAGATGAGCTGCGACAAGAAAGAAGACGGTCCAA CACCGCCAAGCTGGAACGAGAGAGAGTTGAGAAAGTATCGGCGAAGCTCA AGGAGACGATACGAAAACTTGAGGGCAAGTTGGACAAAGAAGAGCGGCTC TCTGGTGAGGATATGGGCGGCGCGGGCATGAAAATTAACGAGCGCTTTCC CACAGCGCACCACAGATGGCAACACGAAGCATCTACTCATCGAGCCTCGC TCATTGTGGTCCATTATTTTTTTAACAGTTGGCCTCGTTGGGAACGTTCC CGCGTTAGTAAGTATTACAGCCAGCAGTAAACGATTGCAACTATATTGTG TATCGGCGCAGCCGATGTTTTGATGTATCGAAAAAATATCGGCGGGCGCA GCGAGCGAGGCGAGCACAGCGATGCTGACGCGTAAAGGCGCAGAAGCTCG CTTTTCGAGCCTCCATCCCCCCCCCCGGCTGGTGAGCGGGGCCCGCTGGC GGCGCCACCGGAGGCGAAAAAGTTGGATTCCCGTGCTCTCACTTCCCATT ATAAGTGACCAATTTCGTCGTCGGACTGGTTTGTTTTTCATTTGAAGAAA CAAAACACGACGGCACTTTAATAAATCCCTGAAAAAAATGGCAGGGAAAA AGGACTTGGTTTTGTCGCTTGCTTTTTGGATACTTTTAGCAACTGTAGCA TAGTACCGTGTTGTCGAAGACTTATTTTGCCCGTACACAGTAGCGACGGC TTTTGGGGCTCCGTGCTTGCTTGATTGCACAACGTATGCTCGAACCCCCT AAAAAATGGCCCGCATGTCAGCACGACTGTGCGATGTTCGATATGATATG AACCGCACGATTATGTCGAAAGTATCGCTGCCGATTCACAGCCCGAATAA TAGGTGGAGCCTGCTGCGAGTGACTTGCAGCAAGTATGTGCCACGATAGG CTGCATCTCGTGTTTGCTTGAGAGCCACTCCGTCCCTTCCTCATCGCACG CGGTGTGCAGGCGAGCGGGGGTGCACCTTAGATGGCCTCCGAAACGAGAT GGAAGGGTGTCGAAGGCAAGTCATCGAGGCCAACGCTCAAGCGGTGAGTC CAGAATCGCAACAAACAAGCATCTGGCACAGTAAATTTTTTCGCTTTGCA AATTTTGAGAAGCCCAAAAAAGGTCAGGTATTCCGCGCGGCTGTCGACAT GCCACGATTTAAACACAAAGTCGTTTTCGCTTTTGTTTGTTTTTCCGGCG CTGTGCAGGCAGCCGATCTTGCAAAGCAGGAACAGAGGTTCCAGCGGCAA CTCGTAGAAGCACGAGAGCTTTCCAATAAAAAGTGAGTCAAGCTAATCAA ATGTAGTATTTAGGAGGCTGCCAGGACTGTTCGATTCCGCAGGCAGCACT CCGTGTACGATATGCCGCCACGCTAGGTCTTGGCGTTGGATAGGGCTCTT TCTAAATCCACACAAAGAACATGGAAAATTTCGGAATTTTCAATATGGTT GTATTGTTGGCGTCCGTCCCCGATTTGATCGATGAGTTTGAATTCCATCG GTTCAGTGGGATATACCCCGGAGTATATAACAATCGCCTAGTCATAAACC CTACTCGTCCGCATCACCCGGCAAGTCCGATAAAAAATCTCGAGACACTT GCAGCCTCCCCGCAGGCCATCACGTCGCCTTCAATGGCTCGCGCTACGTT TGTGTAGTTGATCGAGCAAAATACGATGCCATCCCCGGCCTCCCCTGTCA CAAAACGTTTAAGTCGAAGGCATCACCAGGTGGTGCTTTTCTGCGTAATT TACTACATTTCGAGCTATGTACTCAGAGGGCAAAGACATAATTTGAGTCT TGCTCTTTCAACAGGGGTGAATTGTCGAAATGGTGATCCTTCGGTAAACA CTCCTTATGAGGCTTTAGTCTAAGAAGCCAGTCTCCTCTCTTACGATCCG TATACAATTCCAAAATGGCTAGTACCATATTAATTCAGGGAAATTGTGCA AATCTTGAGTTCAATGTACACGAAATTGTTTGCAGGTTCACATGTATTGC ACGTCAATCTTGGTTGTTTTTGTCGCATCTTTCTCGAGCTTCTCACGAAA ATCCTTGTGGGAATTTTGCCTTATCTCAGGGTTGAGGAAATGCGGCATAA ACTTGAAGATGATGGCCGGGCTCTTGGCGCGGAGGCGGCGCACATGCGTG CTAAGATGAGCTTCCAGGTAGTCCGTTTCCTTGACCTTCCAGGTAGCGAT TTTTCCTTTTTTATCCGGGTACATCGGTAACATCGACTACAAGAGAAATG CGTGGCGTTGGACCTTCGGCGTTGGTGCTCCAGATGTTCGGTTTTGATAA ACATTTCGATCTTTACCCCAATCATGTTGTGCACTGACTCATATCAGGTA GACGAGCGGGTGAGGGACGCGCTGCAGGAGCATCAAGCGCGCGAGCAAGT CTTGATCCGAGAACTCGATGCACTCCGGTGAGACGTCTCACCAAGATTAC CGTTTAGAGTAAGTCACTTGTCCAGCTGTAGGTACAAAGGCTCGCCTGCT CTTTTTCACTCATTGTTCGCACTCGTTTCTGCACTATGTGGGCCAGGTGT GCGCTGGATGACTGTAAGCAGGAGCTAGCGAAGACCAGGAGTAATGCGGC CGCTGTTGCCGCAATGAACAACGCAAAGTAAGCTCTGCGAGAACCGTAAC AACCTAGGTGTTTCAATGCAAGCCTCGTGACTCAGCACGACTACGGGTGA ATTGTGTGGTCCAGGGACCACGTCTGCAAAATACCCCTGTATCTCATGAT CGATTCCGCCTCGGACCTCGTGTCTCCATCACGGATGGCGCGGCGCCTTG CTTTTAGGCTGGCTGAGGCTACTCGAGCATCAGAATCTGTCAAGGAGGAC ATCTCTTATCGAAAGGATCTTGAGAGGGAAGTTAAGAGACTAAATGGCGA GCTCCGAGAGGTGTGGAACCCGTTCAAGACTTCCTGCGATGAACAAGTGT GATTCAGTAGGCGGTTGTTGGTTGACTCAAGGCAGATATGATGCAAACAG CGGTATCGCATTTCATAACCAAGAGTGTCTCCGTTGGATCCGCCGGGGGC AACACCAACACTTCGCGAACAAAAGTCGATCCATGAGGAAGAAATGGCCG GGAGTCTTTTTCAGAGCGAGGCATTTTTCGAAACGATGGAGGTTATATCT TGTGCAAAGATTCATCGACACACCGGCAGGCATGGCGCATCGTTTTTCCA TGTATTTGGCCCGGTTGAAGGGCCAAACATCTGGCCAAGAAATGACCCTG CGACCCGAAAATACGTGGGGGGGAGTTCAGCAAAGTTTTCTTCTGGACGG AACCACAATTGATTCGACTCCTGGCAATTTTCACAGTCAAGCTCATGCTG TATACTTGTTCAATCCCAACAGCTTCTGCGGTGTAAAACAGATACTTGAG CAAAGAGTCGCCCCACGGGCTAGCCGGTATGGGTTACTGCATCAAACAAG CAACGTTAATAAACGCCTCGAAGGCAGATTACAAATTGGCTTTTTCGTGA GCGTTCAGCAGAGCCACATTTCCGTTCGAAGGCCACAATTCGCTTTAACG CACCCCTGAGCGTCCACACGCGCACTCATGCCAGTCTACCATTCTCCGGG CACCCCTCGGTTCGGCGGTCGCGCTCTCGTTGTTTCTCCCGCGTAGTCGA TTTTGGGCCCGTGTTCGGCTCAATTTCAGCCCTGTGAGCAGGGCTTCCGA CGTCTGTGCGTTCAATATTCTCTCCAAGGTAACATCTCGCGCTGTTGCAC ACTGTTACAGTACTCCATCATGTTCCAGGTGACACCTCTGCATCGCCGTT CGCGCTTTGGTCGGTGCACACACTCCGATGCAGAGGGTTTCGCGCCCGGT TTTCGGTTCAATTCCATCCCTGTGGCCAGGCTCTCGGCGCGTGGGCATTC AGTGAAAGAATTGTGATTCATGGGTAACAAGTCGGCTTTTTGACCCGCTT CTTGAAAGCAGGGTGCACAGGCGATAGTGAACATGCGGTGTGCGTTGATG AGATTCCGTGCCCCCGTTGAGCTTGGAATCCATACGCTTTTCCACTTCGG GTGTCTTGAAGACGTTGATCCTTTGGGTGTGTTGCACCCGGTGGTGGTGT TGTTCATGAACATGCACACTTCGAGTCGTTGCACCTTTCGGTCACAGGGA TTGCAAAACATCAGCTCTTCCTCCTTTCTCGGAATTCCACTCTCTCTCTC GTTCTCTCTCGTTGCGCACACGCCCCCACCCAATCACTCTGCTCACCCAC ACCACCAAGATACACATAGCCACACGTTCAATTCGCGAGTAATTCCCCAT TCATGGCGTCGCGAAGCATATTTTCCGCACAAATTCCTCCTTCTAAGCGC AAGGATGTAAGCAATTACAAGCTAGTTTAATAAACCCGCATCGTTCAACG ATCACACTAACAATTGGCATTTGCTTTGGAATCGCTCCACTTGGGCGGTA GCGCGAAAGCGCCAAAACACCTTTTGTATAATAGTATGCTGCACTGAAAT GCCCCTGTTCCATTGCTTTGTTGCCATGCTGGCTGGCGAATTACGTTTCG GAAAAGGCGCACACGCAGATGGACGTTCTATCCGCCGACTTGGCTAAAAA CAACAAGCTGGTGGAAAAGATCGGGGAGCTTCAAAGAACGACGGGAGAGG TTCGTGGCGTTACTAAAATACGCATGCTTTGCGATGCTGAAGCACTGTCA GTGCTCGTGGGCTCTAGCCGTAAACTTTGTTTGTTCCAGTACAGCTGGGC ACTCAGAAGTGCGGTGCGCATTTTGTAGGAAACCCTCATACCTTGCTGTT CGACTTATCGGAACATTCGCTGAATTGTGCCTTGACATATCAAGGCTCAG GAAGGGCTACGTGCGGCGAATGACCGCTTCAACGAAGAGGTGATGCGCAT GAATACCGACGTCGCCAATGCAGAGGATACGTTGGAGAAGAAAATCAAAG AGTGCAAGTGAGATATCATGCATCATCACCCGAAAAAGTGCTGCGTCTAC GTAGGAGAGCAAGCACAGAATTTCTTAGCGCAGCGTTCGCATGGGGTTCG CCGTACTGATGCCGGTTTCGTCGAGTGTTTGCGCTATTCGATGGCAAGGC CATCCGACGTCTAAAGCTCCCGCCCGCGGTGAGAATGTTGCCGGCTGGTC CATTGTAGTGGCAAGATGTCGTCGCCGGCTGTGCTCTAAACTTGAAAAGT TAGTGATGTGAACTTTGCGTCTGTATCATGTGCGCAGGAGACTAGAAGCT GCTGTGGATGATGCTCTCGCCGAGAAGGAGAGGGCACTTACGTTGGTCAC AGCTGAGAGAGCAGAGGTACTTCAGACAATTTACGGTATGACAGTACCAG ACCGATTCACAAATTATGATTGTTGATCTTAACAACTTGGCACGCGTTCG TGCTTGATGGAAAAATTAGTGTTCATCGGGGATTCTGTTGTGCCCCATAT CTTGTTTGGGGCATCGTGATCAATCCCATCTTTAGCATTTGGCTTTATTG TTCACCCAGCGGGTTGCACTGCAGGCACCCTTCCGGCGACCTTCAACGAA GCCTGGCAGGCCTGGCAGGGCAAGAACTCCCCTCCCCCCAAATGATATGA GACGCAATAGGACTTAAGAGTGCCGGGATGGTCTGTCAGGAAATCGGCGC ACCGTATGTTTTCATAGTGGATCTTTTGAGAGAAAAGTGCAAGTCTTGAA AAAACACTAAGCGGTGGCGCTACATCGCTCTCTTCAGGTGAAGCGAATGA CTTCGGCTACCGTCAGTACCGAAGCGGCGCTCGCCGAGGCCAATTCGAAG ATCGACGGGTTGATGCGGCAACTCAAGTGTGTCGAACAACGCCTGGAAGC TTCGGAGGGTCTTGAGAGAGATTTGAAAAGGTTGGGGCAGGATGCGGAGG AAATGCACGAGAAGTCTCACCGTCTTCTAGACGAGAAGCAGGTACACAGG AGCGTGGATAAACATGTACTACCCGATGGGTCCTTTCTCGATTTTGCTCG GATACTTTGCCCTTTATCGGATGGTGTTCATGGTGCGGAACAAGTGGCAC CCTTGCTTTCAAGTGTAGAAATCAGCGATCGACTGTATGTATATAGTTGC GTTCAATGCTCGGCGGTTCAAAGTCGACTCCCATCCGTACTTGTTGAATG GTTTCCAAATATCTTACCTCGGTGCTGCTCTCCTCTGGTTGCTGTCAGCG AGAGATTGATGCATACAGGGACCGTGTGGAGGAAGGGGAATCTTTGTCCA GAAAACTCCGAGGCGATCTGGCAGAAGCGGAAGGTCGTGCTCTCCAACAT AAGGTATTGCAGCACGCCTGCAGCAAAGGCATCCTTGAACTCGACGAATG TTGTACATCGCCGATCAGTGTGGTATCAATGAGTTCAGCGCTTGGTTGAT TTCGCGAAGGTGTTTTTGATAGGTGGCTCTTGATGAGGGAATTACGCGCT TCGTTGTCCGCTTAAAGCGAGGGCGCCAGGAATATCTCAAAACGACTCCA TCAAAGTTCACATAATTTATCTCCGTTTGTCTGAACTCTTTGACAGCCGC CTCGCCTCCTAGTGTGGACAAGATCCTTAAGGTTTTGGCACTATCGTCGT CGCCAAGTTCGGTAAATATTACGCCGCAATTTTCTGTATCTAGGCATCAG CAGACCGGCTGTCGGCACGCTTGTCCTCTCTCGAGAGCCAAGTCTTGGAG GGAAGAGCCGCGCTTGCTTCTGCCGAGGCTGACAGAAGCGGGATGATCTC GGAGCTAGAAGTGACCAGGGAGGCAGCCGGTCGTGTGAAAGAGCTGCAGG CGGCCATGGCAGAAGCTACTTTTAGGGAGGAAGCTCTGAGGGTGGAGACG ACTGCCTTCAAAAACGCCCTCGAGGTGGGGAGGCGCTTGTCTGCCGGGTT CTTCCTCAAATTCTTCGTCAGCTAGGAAATTATTAAGATAACTCACCGTC GGCTCTCGATTCACTCTGTCAAGCGTTGGTTTTTCAGTCTCACGTCAACA TATGCGGCTGAAGCCCGCAGGTAGGCCTGGATGTATAATATTGATTTCGA GACGTTTACGAGATCTCATTAAATAAACGGAGCTTCGAAAACTTTCGGCC GTAAACACTGAATTGATGTTCTCGTCGGTGATGTGCGGATGTGCGAGGAA AGACCGCAGAAGCTTCGCTGGAACGAGAGAGACACTCGATGAACGACACG AGGACGGATCTGGTCAAGCGTGCCGAGGGGGCCGAGGAAAGATGCAAAAG CTTTCAAAGCAGCACCAAGGAGCTTACGCAAAAACTTCAGGACACGGAAC GGAGGTGTCAAAAGGTGCACAATATGTGGGATTGTGGGCAAGCCGTACCG TCGAAGCGGATCGAATCACCCATTGGGAGATACTTCATTCAGTACGACTT TAAAACATGATTGAGAATATCAATTTGCCGCTGCCGTTGTCGTTTTCGTT GCCAATATATGTCGCTTTCACCTGGTCGGAAGTACGACACAACCGCCCCC CCTAAAACTCGTACGTATTCAGTCAGCAAGACACGCATTCCGTGTTCAGA GGTTTCACGCTTACCAAAAACGGCTTGATTGAAAAACTAATACAGGGGAC CTCCCATAGACCCTCTTACGCTGGCTCTATTTTGTCACTAAACCCAAGTT GATACGGGAATAAGCTCAAACAAGGTGGGTTTCAGAGGGGTCCCGACCTT AAGGGCTTAGCCGACAGAGAACACCATGGAGAGGCGGCCTGATGGCGGCA CGCTCAAAGGTGCTGCTGGGGCGGAGTTGTAGAGGGCCGCAGCAGCAGCT CAGAAATTCCGTAATCTGAACCCACACCCAAGATCCTCCGCTGCTGTTCT CTCCGCCATGGGCACCAATCTTCTGAACAGTGGGTTGTCCCCGGCAGCTA TTGTCAAGTGCTGTGAACCCGCAGTTCAGGAGGTTGGAATCTGTGGTGGC GAGCACAGCAGTGGCAGATGCCGGTAGTCGGTCCAGTTTGCGGACATTTC GAGCCGCTGCTGTGGCCTTCGATGAGTAACCCCCTGCAGCAGTCCTGAGT ATGCCAGCACGCTCAAAGGTGCCCCATGATGCCCCCTACTGATTTGGCCC TTCAGGTTGGACTCCTGCGAAAATTCACTTTGTTTCGGCCTACACCGTTT CGGGTGTTTTCGGCTTTGATTTTAGATCATACAGTTGAAGGAATGTTTTT CTTTTATTCAAGAGGAGGTTGGAGGTAGTCTGTGACGTGTGCGCAAAGAG TAGTCCTACCGCCGCTCCCTGCGAAAGATCTAAACATTTCTTACCGGATG CCTTTCTTCTAGTAAATTGTACCCTAAGGGGTTAACTTGTGCTTACTTTT GAATGGAGCAAACAAGGGAGGGTAGGTAGTGCTTCCTGTGACACCCATGC ACCAGCTGGGATGTCCTTTTCCTTTGTCCCCAGCCGACGATTTGAGGTTT CTGCGATGATTCCCTCTGAATCCCCTTGTCACTTCATGTGATTTTTTCGT TACAGTAGTCATATGGGGAACCTTTTCTTCGCCTGTGACCACGGAAGTCG ACTCGATAGGGTTGATCAGAACGGACATTTGCGGATACTGAGAAACGATC GGGAGTGATGACAACAACCACAACTACAACAACAACATACACGGCGTTTA TATCGCTAAGTGTAAAATAAAATCAGTCAACTCATTATTTAAGCGGCCCC CCTTAAAGCGGTCCCGAGAAACTCACCTCTCGAGGAAATCGCAGAGCACA CCTGGCTCTTGCTGAAGGAAATCAAATCTCTTCCCTCAAAGGTCAAGCGA AAAAGGGAAGCGGGAGAATCGAAGAATACCACGCCACACTGAAGGGCCTG TGCAAAACGAGTAAACACGTTGTCAGTGCCATTCTCACAGGAACTCTTTA TTCCTAGCACAGGTATGTTTCACGCATCAAGGAGACTCTTGCATGTATAC TTCCTTTCAGTAAGAAGATAAGGTGGTAGGTATTCCAAGGTGACCACAAT GGCACGGCACGATCGTTGAATCGCCCCTGTCGAGGTAGGTACAAGCGTCC GACATTGACACCACCTCGGTGTACCGTTCAGAAGGGTAGCGACACCCACT ATTGATCACGTCCTCGGCGCCCACTCGACTGCTCGAATGCACTCGACAGG AGCTGGAAAAATCGAAAGCGCGAGAGACCCAAATGTGGGCGCAGCTCCAA CAGGTCTGAAGGGGACACGCGGCATGTGCTCAATTGGACCAGAGGTCCAT CATGTTCTGTTATCCGTTATTCACCAACGAAAATTTCGCCGCCTAGTCGC ACCAAGTCTGACGAACGTCGCGAACTCGTATGAAGAAAGAAGGAAAAGGT TTGATTTTCTCAATAACATCACGGTCGATCCAACAACATACACTACCTTT CCTACACCAATGGCGTGCTTGTGGCGATATGATCAGTCAACGGTGGAGAC TAGGCGCACTCCAGTACACTTTTGTGCCGGGCTACGACAACTTGATTGCT TGTGGAGGGCCCATTTCTGGAAGATCAATCCCTCAGACGTTATGACGTGA GTTTTGTGGGCGGCCGGTATGCGTGGTGGGTACGTTCATGATAAATTCGA AGGTGTCCAGCAGTTTTGCCGAGGCAGCGAGCAGCAAGAAGGAGGACGAG AACACGCTTGACGTTAAACTGCGCGACCTGGAGCAGCATCTGAAGAATGC CGAGAAGCAGCTTTTGCAGTCGCAGGTCAGCAGGATAGATAGAACGAGTA TTGCGAGGAAAACCATCTGTGATTTTCGTACACCGGTGCCTTGTCGCCGG CTGAGCCCTTCTCTACGTGGTGTTTGTAGTAGGAATGCGCACAGTAGATT CGCTTTTACGAAGTATTTTAGCTGTCAGCCGACGTTGAGCATATCGGAAA GATGCTCGAAGCAGCTGACAGAATAAGCACGTCCTACTGGACCAAGCAAA CAGTAGGCACGTCTTTCTTAGGAATGACTGTCGTGGTTGTGCACCATTTA ATGTGCCTGACGAGCACTGTGTCACTGATGTCTCGACGGGCAGACGGAGT GCGCGCGAATGAAGGACGCCGCGCAGCGTGAGGAAAAGGAGAAGGAGGCA GAACTGAAATCTCTAAGCCAGCGACTGGCAAGGTGACCAATAGACCGTAG TGCGACACTCTGAAGCGGTAGCGGCTTGAATCTATGCGAACATGAAGATT GCAACTTGAGCTAAATTAGTCCACTCCGAGATAAACAACGACGATTGTGG TGCCCTTAAAGGAGCTGGCGTACGGTGAATTGAATTTCAATTCGTGATCG TCCTATCCGCCTCTCCTGTGAATTTCCGCCTATGTTACGCTGAGACGCCA GGAAGAAGGAGAAATTCTCAGCTCAGAAATTGTCCCTGGAGGAGGAGATT AAGACGTTAAGCGATAAGCTGGCGGAGAGCCGCGTTGTTGAAGAGAGCGT CAGGTGACTGCAAACGGGCGTTTGAATCGTTATTCGTCGAGATTCTGCCT TATGACGGGCACGGGCGTGCGGTAGCGTCCTCGGTAATAGGTCATACAAC ACCTCGTTCTCCGAAATACATGCTCCTTCGTCTTTTGCAGGGCCCGATGC GAAGAGGTGTCAGCAAGGGAAGAGGAAGCTCGAAGCAAACTAGAGCTGTT GCAAGACGCAAAAATCGCTGCCGACCAGCAGGTAAGTTCTTGCCGTGAAA TCAGACTGAAAAGGAGACCCGGTGCGGCAAAACTGTCAACCTAGAGTTGT TTGCAGGGAGGGACAAAAAAAAAAAGAAAAAATGCAAAGCAATGAGACTT TTGATACATTTGAAGTTACGAGTGATCGCCTAGAGCAAGGTTTGTGTTTT CTTGTTCCGAAAGATACAATCAATGAAGTTCTGATGAGTATTTTGCAATA GCAAGGCCTAAAACATTAGGTGAGTGATGAATAAGTATTTTTTGCGAGTC GGTTGTTTGATATGAGCTCCAAAAAAAGTCATTCTCTTGTGGGATAACGC TTTTGTCCAGAGGAAACCGCTGCCGTGGTGTTGAAGAGATGTGAAAACAA TGGTTGCTGCATCTAGGCCGCGGGAGCTCGGGCGGAGGCCGCTGGACTGA AAATCCAACTCGATGACCTAGGCGCCAGACTTGAGAACGAAACTGCAAGA CTCCGCGAGGACGCCGAAGTGTCTAGGATGGGATTCGCAGCAAGCACCTC GAAGGTGAAAGCGGCCAGCAGCGGACGTCAAAACCACTTGCGTCACTTTC TACAATCCACATGCTTACCCGATACGTCAACCGTCTTTATTTTTGATCCG TCTGAGATGGGATAGCCAATTCGTTGACACTCCTTCAAAGCTTTCCCGGC CTGGGGCCGAGAAAAGCACCCGATTAATCACGTGCTGTCCGGTAGTGGAG GACTGCTTATGTTCAGCTCCTTTTTACTTCACATTTGCCGGGGCACGTAC ACCCTTTGGGATTTTTTTTTTTCTCCATGTTGTCGAAACAAGACAAGGGT TGAGCGCGACAAAACACTTGTGATACGAAGCATGTGTCATTTCCTGTCGG TTCAACCACCAACCGCTTCCGGGTCGGTTTGACATAGTTGCTCTGCCTGC TTCGACTGTCAACAACATCACACGAGTATGACGACATCGCAATCGATTTT TTTTGGCGAAGAACGAGGGTCAGCGTCGTGCAGCGGAGGAGAGCAAGCAA CAGACAGAGGCTAGGTGCGTAGTCCTGCAGGAGACGGTGGACCGACTGGA AGGTGATCTGGCTCGTCTCACCGCCCAGGTGAGGCCGTTCCCACCGCTTT GGCCGTTTGCTGCTGGAGGAATTTGCCAAGAGTTCACTCGGAAAACTGTA TCTGGAATACGGTCACCGACATGTCAGAGAACGGCTTAGTGCGCACGCAT TAAGAGGGAGGCGTCGATGAGGAACAGATTGCTGATCAAAAGAGACAATA CGCGACATTATCCGGTGGAAACCGCCGTGGTAATGCACGTCTGGCATGAT GCTTATGGGATTGGCTTCGTTTCTGGCGGTGCATTTTTTATGTACATGAA GAGCAGTCTGATCCCCTGGCGAGCAACATCGACCTGCGCTGTAGCATAGC GCAATCTACGTCCACCAACCGAGTGTTACGGCAGAGGGGCTCAAATCTCA CGTGTAGGCAAGACTTGCGGCCCTCTCTGCATTGTTGGTTAGCTTTTCGC AGTCAAGCGACATGAACATCGTACCGCTATCCCTTCACCGCTTTCACGTA CCGCTTCACGCAGGTGGCGGCTGGAAGCATTGATCGTGAAAGGGCGTGCG GAGAGGAAGCACAAGAGGTCATGGGATTGAAATTCAAGGCCGTTGAATGT CAGGTAAGTCGTCACCATTGATGCTACCCACCAAATATTCCCCAACTTTC GGCAAGCCCAAGAAGCCCAGTGCTTCGGAGGAAATCGCACTAACAAGTCC ATGTCACAAAATCCTGTCTTTCAGGAATGCGGGAGGAAAAAAAATGCGAG CTTGCACGTAATATCACAGCCATGCGTGCCTATCCTCGACGTTTTCCAGG GAGAAATTGAGCAGCTGTCATCCCGAGTATCGGAATTGACGGAGGAGAAG CGCGAGCTCGAAGTACGAGAAAGACAAGAGAGGGTAAGAGGATCCATATA TGCACCCAGTCGTGTTTTTTGGAAGAGCGCTTGGACCATTCAAGTGATCT CTTCCCTGTGAGAATCACCAGTAGGTTGTATTATCATTTCCCAGCATGGG GCAGCAAAAACGCTGCAATGGCTACCTCACGGAATGCCGTTTTTTTGCAA GTCGATATGCTTCAGGCTTCCGCGGCTGTGGTGGCTGCAGTTGCGGGATC CAAACAACACAGTCAAACAAAACCTGAACATCGCACGTTCTTCCCCCTTC TTCAACGAAAACTGCAGACCCTTCCCAAAACCTTGGGCTTGCCGCTCTAC CCGAACAGATAATATCTCCCGTGGCAAATATCTGTGCTACAGACATTTCG TGGATTGGCCGGCGTGCGTAACCGAGTCTTCTCCCTTATCTGACGGGCCG CAAAACGGGAACCCACCACAAGCCACAGTTTACCGTATCTAACGGCCCGA GATTGCTCGGGATTCCGCCACAAGACAAACCACTTTTCATGTGCAACGTA TGGTCTTCCGTATCTAACAGCCCGCCGCAGCAGGGACCCACAACAAATGC CAAACGGACCGAATGTTTTACCGGACGACTCCGTCTACGTGTGTTGGTCA TACTGTTCCTACTGTCAGACATTGCAACGATCGCGTTTTTCCGCGTCGAT ACTGTCGCTGACTACCAGGAACGGTTCACACGGCTCGAAGCCGCCTCGAC GCAGTCAAGACTGAGCTATGATCGTGTCAAGGTGACAGCAAATTGAATGT TGTACTTCAAGCATAAATTCGTGCTGGAGTGTTCATGGTTAAATACTACG CCGCTTTCTAAAAAGATGGTATGCCCATCCCGCTACTTCAGCATAGCTCA CACAAAAGCTTTGGCTGACTGTCGGGCGCGTTGTCGTATAATTTTTGTAG GCGGATTTGCTGTCTTGAGGAAGCCAAAGACATTGATCTATGCAGGCGAT TGGGTGCAAAACGCACAGTTTTCATCTTTAGAAAAACATTTCGGAAGTGA CACCCATAAGTCGTCTGCCCTGTAGAGTTAGCTTGATCTGAGTAGCGTGA ATGAAGAAAGGCTCGCGAGGTCGCGAGGTCCGTGGCAGTTGCTTTCCAAG AACAAAAAGCGTGGTTAACAGAATAAGCGACCGCAGACGACACGTCAAGG CAAGCGCTCAAGACTATGGCGAGTTGTGCCTTGAGGCAAGGACTCCAAAT TGCGCGACGAATTGCGCAATTTTTGGCCTCCTCGGTGCAGGAAGAGAACG AAAGTTTGAAGCGACTGATCGATGCTGCCCAAGTACAAGTACAAGAATGG AGGATGAAGTTCGAAGCTGAGAGGACCCTGAAACGCGCACTTAACGCCAA GATTTTGGATATGCAGGTACGCTGAGTGGATGCACAATCACCGCTCAAGG CGCGCCAAGCAACCGCTGGTACGGAGGTTTTCCAATCTACTTTGCGTCTT TTCTCGAAGGGATGTTCATACTATCTGCGCAACGAGCAACTCCTCTCAGT TTCAGATAATTCGGTTTCCAAATCTCACCGAGGTTAGGCAAACGAACTGA GCAAAACTCCATAGTATCATCTTGAAGTCTCACCGCATCTGTTCGCTGAT GTCCTTTGCACGTTATGCAATACTCTTTTCCACAAGGGGAGTATCCGGGT CTTGTGCAGGCTACGGCCCCTACAACAGGCGGAGGTGAGCGACACCTTCG AAACCAGCCCGAAAGTGCAGTAGTTTGCCTTTGCTGCGCACTGCGAAAAG TTGAAATAGCCCCATCAGGGCGTATCCTGGTTAGGACATCAGGTCAGGGT AAGAGCAAAGGGCGGTGCCTATGCTCGGGAATCGGAGCAATAGGTTCGCA CCTGTTACGTCGTAGTAATGGTGTGCCACCAAGGGGTCACAGTACCACCA TGGGTAGGGTCGTGCCTGAAGGATTGCTAAGGATTGCTTCAGTGAAGGAA GCGTACGCTAGAAATGCAAGTTCAAATAGAACGACGATGTAGTGGTGTAC CCTTGCAAATGGTTGTCAAAGTATTGCACAGGGCGAAGGAAGGAAGAAAC TTTCCGACGTGTACGGCCCAAACGTCGGCGGGCACAACTCTATCAAATCT CGAAGCATCAGACACCCTTCGCAAATGGACGGCATCGCTTAGTTGCATAC CCCGAAGCACAACACCAACGCGCACGATGCATAAAACAATCGCCTGCCAC AAAACGCTACCTGCTATCAAAACAAATGATTCCTTGTCGTGTGTACAATC TGCTACTTCGAAGGTTGTGGCAATTCAACGGGATCAAGAGTACGAGGACC CAATGGCCAACATCACATACCCCGACGTCGATAGGCTGACGTTCTGGGGT GTGCCCTATCAGTTCGATTGTGTCTTCGGACCGGGCACGAAGCAGGCACA GGCAAGAATAATCTGCCCCACAGCAGGCAACAGTGCTCGTGTACGGCCAC CCTCCCGATGATAGATGTTTTTTGCTTCCATTTTTTGCATTTGTTTCACG TCGACCACTACGCTAGACATGATGGTTTGAAGCTTATATCGCCTGTTCCC AGGACTTTTCGTGTTGGCAGCATTCGATGCCGGAGGTCGTTGATCGAAGT CGTTCGCCCGGAATACTACCATCGTAGGGACGATGCACGAGACTTCAAGT GCGATAGATCATCAATTGAAAGATGTTTCCTGCGCTTCATGTGATATTCG TCGCCATGGGGCCGTGCGTGGCAGGTGTTTGATGAAGTTCAACCCATCGT AGCCTCCGCATTGGAAGGATATCGAGTATGCGTATTCGCATACGGCCAGA CTGGCTCGGGGAAGACGTACACCATGGAGGGGCCAAAATCCGATAGGTGG GCGACGGCGGAAGAAGAGCCGCTGGGATAAATCGATAACTCAAGCCGGTA GCGCACATGTTTATGTGGCGACCAAAACGGTCGCTGGTACACACTTCCCA CAAGAATGGGCGAACCATCTGTTTGCCTTTGCTTCCCATCTCACAAAGCA GGGGCGTCAACTTTCGAGCTCTCGGAGAGCTTTTTGCTCTTTCGGCACAA GACGAAGCGAAGGAGTTCAAATTCAGGGTCAGCATGCTCGAGGTGCGAAA TTCGACGACTAGAATCTACGAGCTTAGCGTTTGTCGGTTCTACTTTTGGA GCAACGGCAGTAAAATTCCGAGCCTGCTGTTGATACGCTTCAACTCTCCG TGGCAGTGGCGTTGCGCCATTCTGCTTGCTCAAATTCATGCGGCGTCTTG ACCATGCTCCAGCGACTTGTTCATCTAAACATTCTGAGGTTGTTTATATA CAATCAAATTTCAGGAATCATAGGGTGTGGGTCATTGCAGCACGGTACCG TGAGATCCCCTTCCACCGCGATTTCCCGGCTGGAACCAAAAAAAATTGGA TTTCCCGCGAAGTGAAGTCGATTTGAAAAGAGTCATTTTCCCCCAATGAT TCAGCGAGGAACAGGTTTGTTGTGTTGCTTCATCTATCCGTTTCTTATTT CCTGCTGGATTTTTCTTGCGATTTTGACGTCAACTCAAACCGAAGTCGCC GGCTGTAGTGAGCGAACATGCAGTTTTCGCCTTGTCTACATTTCAGAGTC CGTTCACACTCTTTGGTGAGTCATGGGGTTATTTTTTGCCATTCTTCCGG GGGAATTCAACCGCTCGGCATGACCGCCATTGCCCCTGAGGAACAAAATT CCATTTCGAAGGTCCATCACGGCGGGGTGTTTACGCGTAAGATTGTTTTT GTGAGCAAATTTCTTTTGCAACAAGCTTCAAAGTTTGCGGCGATGCTGTG TAAACACACCCTGAGTGAAGGTTTTCCAATTACATGTCAGGTTTACAACG AGTCGGTCAAGGATTTGCTTTTGGAACCGGGCCGGCCTGCAGCAGCTGCG AACAAACACGACATTCGGCTGGACAAGAAAGGAAGGGTCTACGTTGAAGG GCTGGTTGAATGCGAGGTTCGTCCTTTTGGCTGAGCTATTGTCGGCGCAT GATTTTGTTGGTGGTTTACCGGGTTGCGTAAGATTATTCCTCCAGTGGGT GAGAACGGCGGAAGTGTCGAATAACACTGCCGATTGGTTGTGAAACATTT ATGACTCTGCTTACGACACACTTAGTTTTGCGTAAAACAACGGCGACATG CTCGCGATACATGACACGTGCCCCTTACCGAGAGTGGCAAAAATCGATTC GCTGTGCACGCACAATCGCCGCACGTCACTCCCTTCTACGGAACAACCCA GGTCGCCGACCAAATCAGGCCAATTGCTTGGCAAGAGATCGTTTCCAATC GCTATAGAGATCTTCGTGCGCAACACGTCCACACTCAAAAATGGTGATGT GCATGGTGCTCGACAGGTCGAATCTCTAGAAGAGGTTGAGGAGCTCGTCG TTATGGGTGGACGAAACCGCACTGTAGGTAACAACAACGTCAACGAGCAT TCCTCGCGGAGTCATCTCGTGCTGCAGGTGCACATAACGAGCACTGATGT GGCCACCGGACACGTACAACACGGCAAGTTGAACCTCATCGACTTAGCCG GTAGCGAGCGAATAAAGGTGAGGCACATGCTCGTCAGAACCCAGAAAAAG CCTTATCGGACGGCTTGTGGATACGATACTCGCTGCACAGGCTGCTCGTA CGCTAGCTATCTCTCCTACAAATTCCGCAATGTTTCGAAAATCTTGTGAA ACTTTCATCCAGTCCACTGCGGCAGAGGGGCAGCAGCTGAAGGAAGCTCA GAACATCAATCGCTCGCTCAGCGCTCTCGGTGACGTCATCAACTCCCTGG GATCGGGAAGCAAGCATGTCCCTTACAGGAACTCCAAGCTGACGTTCTTG CTTCAGGATTCTCTGTCGTCAAACGCCAAGGTAGTTGGTGAAATCCGTGG AAATATGAATGCATCAAGTGTTTCTCTGGTATTACCAATCCGGTCGCGAC CATCACATCCTCTGCACAGCCCATAGGTTTTTTATTGTACTCTTAAGGTC GGACGGATCACCGGGACCACAGCATTAGCTCGCTCTCTCCCAATTCTGGC GAGTGACGTTTGGAGCCCCATCTCCGTCGTAGCCCTCCCCCGCAATAAAT ACCACCAAGTTGGTAAATCTCAATTTCATTCCCCTTGCTCCCCCCTTGAT ACATTTAACAACTAGGTGCTGATGTTCGTCAACATCAATCCGGCCCCGCA GAGCCAAGGAGAGTCTTCATGCAGCTTGAATTTTGCCAAAAGGTGCCATT CCGTCCAATTGGGAACTTCACGCCGCCTTCGATAA
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Coding sequence (CDS) from alignment at P-fluviatile_contig10:3400823..3421807-

>mRNA_P-fluviatile_contig10.902.1 ID=mRNA_P-fluviatile_contig10.902.1|Name=mRNA_P-fluviatile_contig10.902.1|organism=Porterinema fluviatile SAG_2381|type=CDS|length=9060bp|location=Sequence derived from alignment at P-fluviatile_contig10:3400823..3421807- (Porterinema fluviatile SAG_2381)
ATGTCAAGCTTGCCGTTCCACTCGGCTCCGGCTCACTCAGTGCTTGATCG
CCGGATCGGGGTTGCAAAGAACCGCCTGCTAAACCTCGCGTTCGAGGACG
GCAGCCCGACTCAAGTCAGTGATGATAACCCGGAGGAGCCGAAGAGCGTC
CCTGCTGATGTCTTCAAGCAAGGATGTCAAGCTTGCCGTTCCACTCGGCT
CCGGCTCACTCAGTGCTTGATCGCCGGATCGGGGTTGCAAAGAACCGCCT
GCTAAACCTCGCGTTCGAGGACGGCAGCCCGACTCAAGTCAGTGATGATA
ACCCGGAGGAGCCGAAGAGCGTCCCTGCTGATGTCTTCAAGCAAGGCGTC
CGGGAGCACGCCGTCATGTTGGGGATGCTGCTGCCAGAAGATGAGAACTT
CCTCTGGATAGCGGAGGAATCCCTTCTCGCGCCTCTCCCAGAAGCGTCCG
GGAGCACGCCGTCATGTTGGGGATGCTGCTGCCAGAAGATGAGAACTTCC
TCTGGATAGCGGAGGAATCCCTTCTCGCGCCTCTCCCAGAAGGTTGGGTT
CAGCTGAAGGACGAACAGTCTGGGCACCCCTACTACTACAATCAGGTTGG
GTTCAGCTGAAGGACGAACAGTCTGGGCACCCCTACTACTACAATCAGGC
ATCGGGAGACAGCAGCTGGGAGCACCCCCGAGATAGTCTCTACAAGGAGA
TTTACCGACAGAAAAAAGCATCGGGAGACAGCAGCTGGGAGCACCCCCGA
GATAGTCTCTACAAGGAGATTTACCGACAGAAAAAAGCTGCAAGCGATGT
TGGATTGGCGGAGGTGTCGGCTCTGGTGCCTCCAGACCCACCGCCTATGC
AATCATTGGCGACCTTACTTCCCAAGCATACGAAAGCAAAAGGTCGTTAC
CAAGAGAAGACCGTGAGGCTGCAAGCGATGTTGGATTGGCGGAGGTGTCG
GCTCTGGTGCCTCCAGACCCACCGCCTATGCAATCATTGGCGACCTTACT
TCCCAAGCATACGAAAGCAAAAGGTCGTTACCAAGAGAAGACCGTGAGGT
ATGGTAGAGGAATCGATGAACCACAGGACGACGGAGACAGCGCTTGTGAG
GATGGCCCTCCATTCGATGTCACGTATGGTAGAGGAATCGATGAACCACA
GGACGACGGAGACAGCGCTTGTGAGGATGGCCCTCCATTCGATGTCACGG
GCACGAAAGATACGAGTTTTGAGGAACTCGATCGCCTCCGGAGACAGCTG
AAGAAGAGCAAGGAGTCCAGGAGGGTCATGGTGGAGAAACACGATGAGAT
GGTCAACGAGCTTGAACGTACCAAAGAGGGGCACGAAAGATACGAGTTTT
GAGGAACTCGATCGCCTCCGGAGACAGCTGAAGAAGAGCAAGGAGTCCAG
GAGGGTCATGGTGGAGAAACACGATGAGATGGTCAACGAGCTTGAACGTA
CCAAAGAGGATTTGGAGGAGAAACTAGACGTAGCCACAGATGAGCTGCGA
CAAGAAAGAAGACGGTCCAACACCGCCAAGCTGGAACGAGAGAGAGTTGA
GAAAGTATCGGCGAAGCTCAAGGAGACGATACGAAAACTTGAGGGCAAGT
TGGACAAAGAAGAGCGGCTCTCTGGATTTGGAGGAGAAACTAGACGTAGC
CACAGATGAGCTGCGACAAGAAAGAAGACGGTCCAACACCGCCAAGCTGG
AACGAGAGAGAGTTGAGAAAGTATCGGCGAAGCTCAAGGAGACGATACGA
AAACTTGAGGGCAAGTTGGACAAAGAAGAGCGGCTCTCTGGCGAGCGGGG
GTGCACCTTAGATGGCCTCCGAAACGAGATGGAAGGGTGTCGAAGGCAAG
TCATCGAGGCCAACGCTCAAGCGGCGAGCGGGGGTGCACCTTAGATGGCC
TCCGAAACGAGATGGAAGGGTGTCGAAGGCAAGTCATCGAGGCCAACGCT
CAAGCGGCAGCCGATCTTGCAAAGCAGGAACAGAGGTTCCAGCGGCAACT
CGTAGAAGCACGAGAGCTTTCCAATAAAAAGCAGCCGATCTTGCAAAGCA
GGAACAGAGGTTCCAGCGGCAACTCGTAGAAGCACGAGAGCTTTCCAATA
AAAAGGTTGAGGAAATGCGGCATAAACTTGAAGATGATGGCCGGGCTCTT
GGCGCGGAGGCGGCGCACATGCGTGCTAAGATGAGCTTCCAGGTAGGTTG
AGGAAATGCGGCATAAACTTGAAGATGATGGCCGGGCTCTTGGCGCGGAG
GCGGCGCACATGCGTGCTAAGATGAGCTTCCAGGTAGTAGACGAGCGGGT
GAGGGACGCGCTGCAGGAGCATCAAGCGCGCGAGCAAGTCTTGATCCGAG
AACTCGATGCACTCCGGTAGACGAGCGGGTGAGGGACGCGCTGCAGGAGC
ATCAAGCGCGCGAGCAAGTCTTGATCCGAGAACTCGATGCACTCCGGTGT
GCGCTGGATGACTGTAAGCAGGAGCTAGCGAAGACCAGGAGTAATGCGGC
CGCTGTTGCCGCAATGAACAACGCAAAGTGTGCGCTGGATGACTGTAAGC
AGGAGCTAGCGAAGACCAGGAGTAATGCGGCCGCTGTTGCCGCAATGAAC
AACGCAAAGCTGGCTGAGGCTACTCGAGCATCAGAATCTGTCAAGGAGGA
CATCTCTTATCGAAAGGATCTTGAGAGGGAAGTTAAGAGACTAAATGGCG
AGCTCCGAGAGGCTGGCTGAGGCTACTCGAGCATCAGAATCTGTCAAGGA
GGACATCTCTTATCGAAAGGATCTTGAGAGGGAAGTTAAGAGACTAAATG
GCGAGCTCCGAGAGGCGCACACGCAGATGGACGTTCTATCCGCCGACTTG
GCTAAAAACAACAAGCTGGTGGAAAAGATCGGGGAGCTTCAAAGAACGAC
GGGAGAGGCGCACACGCAGATGGACGTTCTATCCGCCGACTTGGCTAAAA
ACAACAAGCTGGTGGAAAAGATCGGGGAGCTTCAAAGAACGACGGGAGAG
GCTCAGGAAGGGCTACGTGCGGCGAATGACCGCTTCAACGAAGAGGTGAT
GCGCATGAATACCGACGTCGCCAATGCAGAGGATACGTTGGAGAAGAAAA
TCAAAGAGTGCAAGCTCAGGAAGGGCTACGTGCGGCGAATGACCGCTTCA
ACGAAGAGGTGATGCGCATGAATACCGACGTCGCCAATGCAGAGGATACG
TTGGAGAAGAAAATCAAAGAGTGCAAGAGACTAGAAGCTGCTGTGGATGA
TGCTCTCGCCGAGAAGGAGAGGGCACTTACGTTGGTCACAGCTGAGAGAG
CAGAGGAGACTAGAAGCTGCTGTGGATGATGCTCTCGCCGAGAAGGAGAG
GGCACTTACGTTGGTCACAGCTGAGAGAGCAGAGGTGAAGCGAATGACTT
CGGCTACCGTCAGTACCGAAGCGGCGCTCGCCGAGGCCAATTCGAAGATC
GACGGGTTGATGCGGCAACTCAAGTGTGTCGAACAACGCCTGGAAGCTTC
GGAGGGTCTTGAGAGAGATTTGAAAAGGTTGGGGCAGGATGCGGAGGAAA
TGCACGAGAAGTCTCACCGTCTTCTAGACGAGAAGCAGGTGAAGCGAATG
ACTTCGGCTACCGTCAGTACCGAAGCGGCGCTCGCCGAGGCCAATTCGAA
GATCGACGGGTTGATGCGGCAACTCAAGTGTGTCGAACAACGCCTGGAAG
CTTCGGAGGGTCTTGAGAGAGATTTGAAAAGGTTGGGGCAGGATGCGGAG
GAAATGCACGAGAAGTCTCACCGTCTTCTAGACGAGAAGCAGCGAGAGAT
TGATGCATACAGGGACCGTGTGGAGGAAGGGGAATCTTTGTCCAGAAAAC
TCCGAGGCGATCTGGCAGAAGCGGAAGGTCGTGCTCTCCAACATAAGCGA
GAGATTGATGCATACAGGGACCGTGTGGAGGAAGGGGAATCTTTGTCCAG
AAAACTCCGAGGCGATCTGGCAGAAGCGGAAGGTCGTGCTCTCCAACATA
AGGCATCAGCAGACCGGCTGTCGGCACGCTTGTCCTCTCTCGAGAGCCAA
GTCTTGGAGGGAAGAGCCGCGCTTGCTTCTGCCGAGGCTGACAGAAGCGG
GATGATCTCGGAGCTAGAAGTGACCAGGGAGGCAGCCGGTCGTGTGAAAG
AGCTGCAGGCGGCCATGGCAGAAGCTACTTTTAGGGAGGAAGCTCTGAGG
GTGGAGACGACTGCCTTCAAAAACGCCCTCGAGGCATCAGCAGACCGGCT
GTCGGCACGCTTGTCCTCTCTCGAGAGCCAAGTCTTGGAGGGAAGAGCCG
CGCTTGCTTCTGCCGAGGCTGACAGAAGCGGGATGATCTCGGAGCTAGAA
GTGACCAGGGAGGCAGCCGGTCGTGTGAAAGAGCTGCAGGCGGCCATGGC
AGAAGCTACTTTTAGGGAGGAAGCTCTGAGGGTGGAGACGACTGCCTTCA
AAAACGCCCTCGAGACCGCAGAAGCTTCGCTGGAACGAGAGAGACACTCG
ATGAACGACACGAGGACGGATCTGGTCAAGCGTGCCGAGGGGGCCGAGGA
AAGATGCAAAAGCTTTCAAAGCAGCACCAAGGAGCTTACGCAAAAACTTC
AGGACACGGAACGGAGGTGTCAAAAGACCGCAGAAGCTTCGCTGGAACGA
GAGAGACACTCGATGAACGACACGAGGACGGATCTGGTCAAGCGTGCCGA
GGGGGCCGAGGAAAGATGCAAAAGCTTTCAAAGCAGCACCAAGGAGCTTA
CGCAAAAACTTCAGGACACGGAACGGAGGTGTCAAAAGGAGCTGGAAAAA
TCGAAAGCGCGAGAGACCCAAATGTGGGCGCAGCTCCAACAGGAGCTGGA
AAAATCGAAAGCGCGAGAGACCCAAATGTGGGCGCAGCTCCAACAGGTGT
CCAGCAGTTTTGCCGAGGCAGCGAGCAGCAAGAAGGAGGACGAGAACACG
CTTGACGTTAAACTGCGCGACCTGGAGCAGCATCTGAAGAATGCCGAGAA
GCAGCTTTTGCAGTCGCAGGTGTCCAGCAGTTTTGCCGAGGCAGCGAGCA
GCAAGAAGGAGGACGAGAACACGCTTGACGTTAAACTGCGCGACCTGGAG
CAGCATCTGAAGAATGCCGAGAAGCAGCTTTTGCAGTCGCAGACGGAGTG
CGCGCGAATGAAGGACGCCGCGCAGCGTGAGGAAAAGGAGAAGGAGGCAG
AACTGAAATCTCTAAGCCAGCGACTGGCAAGACGGAGTGCGCGCGAATGA
AGGACGCCGCGCAGCGTGAGGAAAAGGAGAAGGAGGCAGAACTGAAATCT
CTAAGCCAGCGACTGGCAAGGAAGAAGGAGAAATTCTCAGCTCAGAAATT
GTCCCTGGAGGAGGAGATTAAGACGTTAAGCGATAAGCTGGCGGAGAGCC
GCGTTGTTGAAGAGAGCGTCAGGAAGAAGGAGAAATTCTCAGCTCAGAAA
TTGTCCCTGGAGGAGGAGATTAAGACGTTAAGCGATAAGCTGGCGGAGAG
CCGCGTTGTTGAAGAGAGCGTCAGGGCCCGATGCGAAGAGGTGTCAGCAA
GGGAAGAGGAAGCTCGAAGCAAACTAGAGCTGTTGCAAGACGCAAAAATC
GCTGCCGACCAGCAGGGCCCGATGCGAAGAGGTGTCAGCAAGGGAAGAGG
AAGCTCGAAGCAAACTAGAGCTGTTGCAAGACGCAAAAATCGCTGCCGAC
CAGCAGGCCGCGGGAGCTCGGGCGGAGGCCGCTGGACTGAAAATCCAACT
CGATGACCTAGGCGCCAGACTTGAGAACGAAACTGCAAGACTCCGCGAGG
ACGCCGAAGTGTCTAGGATGGGATTCGCAGCAAGCACCTCGAAGGCCGCG
GGAGCTCGGGCGGAGGCCGCTGGACTGAAAATCCAACTCGATGACCTAGG
CGCCAGACTTGAGAACGAAACTGCAAGACTCCGCGAGGACGCCGAAGTGT
CTAGGATGGGATTCGCAGCAAGCACCTCGAAGAACGAGGGTCAGCGTCGT
GCAGCGGAGGAGAGCAAGCAACAGACAGAGGCTAGGTGCGTAGTCCTGCA
GGAGACGGTGGACCGACTGGAAGGTGATCTGGCTCGTCTCACCGCCCAGA
ACGAGGGTCAGCGTCGTGCAGCGGAGGAGAGCAAGCAACAGACAGAGGCT
AGGTGCGTAGTCCTGCAGGAGACGGTGGACCGACTGGAAGGTGATCTGGC
TCGTCTCACCGCCCAGGTGGCGGCTGGAAGCATTGATCGTGAAAGGGCGT
GCGGAGAGGAAGCACAAGAGGTCATGGGATTGAAATTCAAGGCCGTTGAA
TGTCAGGTGGCGGCTGGAAGCATTGATCGTGAAAGGGCGTGCGGAGAGGA
AGCACAAGAGGTCATGGGATTGAAATTCAAGGCCGTTGAATGTCAGGGAG
AAATTGAGCAGCTGTCATCCCGAGTATCGGAATTGACGGAGGAGAAGCGC
GAGCTCGAAGTACGAGAAAGACAAGAGAGGGGAGAAATTGAGCAGCTGTC
ATCCCGAGTATCGGAATTGACGGAGGAGAAGCGCGAGCTCGAAGTACGAG
AAAGACAAGAGAGGGAACGGTTCACACGGCTCGAAGCCGCCTCGACGCAG
TCAAGACTGAGCTATGATCGTGTCAAGGAACGGTTCACACGGCTCGAAGC
CGCCTCGACGCAGTCAAGACTGAGCTATGATCGTGTCAAGGAAGAGAACG
AAAGTTTGAAGCGACTGATCGATGCTGCCCAAGTACAAGTACAAGAATGG
AGGATGAAGTTCGAAGCTGAGAGGACCCTGAAACGCGCACTTAACGCCAA
GATTTTGGATATGCAGGAAGAGAACGAAAGTTTGAAGCGACTGATCGATG
CTGCCCAAGTACAAGTACAAGAATGGAGGATGAAGTTCGAAGCTGAGAGG
ACCCTGAAACGCGCACTTAACGCCAAGATTTTGGATATGCAGGGGAGTAT
CCGGGTCTTGTGCAGGCTACGGCCCCTACAACAGGCGGAGGGGAGTATCC
GGGTCTTGTGCAGGCTACGGCCCCTACAACAGGCGGAGGTTGTGGCAATT
CAACGGGATCAAGAGTACGAGGACCCAATGGCCAACATCACATACCCCGA
CGTCGATAGGCTGACGTTCTGGGGTGTGCCCTATCAGTTCGATTGTGTCT
TCGGACCGGGCACGAAGCAGGCACAGGCAAGAATAATCTGCCCCACAGCA
GGCAACAGTGCTCGTGTTGTGGCAATTCAACGGGATCAAGAGTACGAGGA
CCCAATGGCCAACATCACATACCCCGACGTCGATAGGCTGACGTTCTGGG
GTGTGCCCTATCAGTTCGATTGTGTCTTCGGACCGGGCACGAAGCAGGCA
CAGGCAAGAATAATCTGCCCCACAGCAGGCAACAGTGCTCGTGTGTTTGA
TGAAGTTCAACCCATCGTAGCCTCCGCATTGGAAGGATATCGAGTATGCG
TATTCGCATACGGCCAGACTGGCTCGGGGAAGACGTACACCATGGAGGGG
CCAAAATCCGATAGGTGTTTGATGAAGTTCAACCCATCGTAGCCTCCGCA
TTGGAAGGATATCGAGTATGCGTATTCGCATACGGCCAGACTGGCTCGGG
GAAGACGTACACCATGGAGGGGCCAAAATCCGATAGCAGGGGCGTCAACT
TTCGAGCTCTCGGAGAGCTTTTTGCTCTTTCGGCACAAGACGAAGCGAAG
GAGTTCAAATTCAGGGTCAGCATGCTCGAGCAGGGGCGTCAACTTTCGAG
CTCTCGGAGAGCTTTTTGCTCTTTCGGCACAAGACGAAGCGAAGGAGTTC
AAATTCAGGGTCAGCATGCTCGAGGTTTACAACGAGTCGGTCAAGGATTT
GCTTTTGGAACCGGGCCGGCCTGCAGCAGCTGCGAACAAACACGACATTC
GGCTGGACAAGAAAGGAAGGGTCTACGTTGAAGGGCTGGTTGAATGCGAG
GTTTACAACGAGTCGGTCAAGGATTTGCTTTTGGAACCGGGCCGGCCTGC
AGCAGCTGCGAACAAACACGACATTCGGCTGGACAAGAAAGGAAGGGTCT
ACGTTGAAGGGCTGGTTGAATGCGAGGTCGAATCTCTAGAAGAGGTTGAG
GAGCTCGTCGTTATGGGTGGACGAAACCGCACTGTAGGTAACAACAACGT
CAACGAGCATTCCTCGCGGAGTCATCTCGTGCTGCAGGTGCACATAACGA
GCACTGATGTGGCCACCGGACACGTACAACACGGCAAGTTGAACCTCATC
GACTTAGCCGGTAGCGAGCGAATAAAGGTCGAATCTCTAGAAGAGGTTGA
GGAGCTCGTCGTTATGGGTGGACGAAACCGCACTGTAGGTAACAACAACG
TCAACGAGCATTCCTCGCGGAGTCATCTCGTGCTGCAGGTGCACATAACG
AGCACTGATGTGGCCACCGGACACGTACAACACGGCAAGTTGAACCTCAT
CGACTTAGCCGGTAGCGAGCGAATAAAGTCCACTGCGGCAGAGGGGCAGC
AGCTGAAGGAAGCTCAGAACATCAATCGCTCGCTCAGCGCTCTCGGTGAC
GTCATCAACTCCCTGGGATCGGGAAGCAAGCATGTCCCTTACAGGAACTC
CAAGCTGACGTTCTTGCTTCAGGATTCTCTGTCGTCAAACGCCAAGGTAT
CCACTGCGGCAGAGGGGCAGCAGCTGAAGGAAGCTCAGAACATCAATCGC
TCGCTCAGCGCTCTCGGTGACGTCATCAACTCCCTGGGATCGGGAAGCAA
GCATGTCCCTTACAGGAACTCCAAGCTGACGTTCTTGCTTCAGGATTCTC
TGTCGTCAAACGCCAAGGTAGTGCTGATGTTCGTCAACATCAATCCGGCC
CCGCAGAGCCAAGGAGAGTCTTCATGCAGCTTGAATTTTGCCAAAAGGTG
CCATTCCGTCCAATTGGGAACTTCACGCCGCCTTCGATAAGTGCTGATGT
TCGTCAACATCAATCCGGCCCCGCAGAGCCAAGGAGAGTCTTCATGCAGC
TTGAATTTTGCCAAAAGGTGCCATTCCGTCCAATTGGGAACTTCACGCCG
CCTTCGATAA
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