mRNA_P-fluviatile_contig8.14478.1 (mRNA) Porterinema fluviatile SAG_2381

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

Overview
NamemRNA_P-fluviatile_contig8.14478.1
Unique NamemRNA_P-fluviatile_contig8.14478.1
TypemRNA
OrganismPorterinema fluviatile SAG_2381 (Porterinema fluviatile SAG_2381)
Homology
BLAST of mRNA_P-fluviatile_contig8.14478.1 vs. uniprot
Match: A0A6H5L8Q2_9PHAE (Nop domain-containing protein n=2 Tax=Ectocarpus TaxID=2879 RepID=A0A6H5L8Q2_9PHAE)

HSP 1 Score: 793 bits (2049), Expect = 8.850e-282
Identity = 439/551 (79.67%), Postives = 455/551 (82.58%), Query Frame = 3
Query:  252 MATLADSFLDDLDELGESSDDETQQEGGDASAARVGXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXAGWRDNGEAAGTA-----------------ESALGRIADRTVDSVAKLRKSDRFKNQMAEIDECLKREPAPRTGALEDDPEYKLVVSSNELIQDIDPEMVEVHRFVVDRYSQKFPELDSLIPQPADYIRTVQVMKNEMDMTQVELESALPQTTVMVVSVTGSTTSGRPLQEEDLQECLKGCEEYEALAAAKASILDFVETRMLSMAPNVCALVGSRITAQLLALTGGLTAMSKTPSCNLQ---VMGQEKKTLSGFSSKATVSHAGLLYQCEAVQGAPPYLRTKALRVVAAKVSLASRFDSYGNDPSGHMGRQWRAEVEDKIEKWQELQTAKTKKALPKPDDMPARKRGGKRVRSFKQKFAMTDVRKEANRMGFASMADEYSDTAMGLDFGMLGKSGSGRVRAPMKKETKQNVSKKLRVANLSSGQTNGLNSSLVFTPIQGLELVNPNADKEKKVMAANKKWFDSSSGFMSAKPK 1844
            MATLADSFLDDLDELGESSD                XXX                                       G   N  A G                   ES LGRI DRTVD+VAKLRKS+RFK+QMAEIDECLKREPAPR GALEDDPEYKLVV+SNELIQDIDPEMVEVHRFVVDRYSQKFPELDSLIPQPADY+RTVQVM+NEMDMTQVEL+SALPQTTVMVVSVTGSTTSG+PL EEDL EC+KGCEEYEALAAAKASILDFVETRM SMAPNVCAL+GSRITAQLL LTGGLTAMSKTPSCNLQ   VMGQEKKTLSGFSSKATVSHAGLLYQ + VQ APPYLRTKALRV AAKVSLASRFDSYGNDPSGH+GRQWRAEVEDKIEKWQE+QTAKTKKALPKPDDMPARKRGG+RVRSFKQKFAMTDVRKEANRMGFASMADEYSDTAMG D+GMLGKSGSGRVRAPMKKE KQNVSKKL+VANLSSGQTNGLNSSLVFTPIQGLELVNPNADKEKKVMAANKKWFDSSSGFMSAKPK
Sbjct:    1 MATLADSFLDDLDELGESSDXXXXXXXXXXXXXXXXXXXSGEGDRDDDMEVHDTRKNESDRAGTDEVPTGRRREKGLDGTAGNETAGGGQXXXXXXXXXXXXEGEGLESTLGRIGDRTVDAVAKLRKSERFKSQMAEIDECLKREPAPRVGALEDDPEYKLVVASNELIQDIDPEMVEVHRFVVDRYSQKFPELDSLIPQPADYVRTVQVMRNEMDMTQVELDSALPQTTVMVVSVTGSTTSGQPLSEEDLHECIKGCEEYEALAAAKASILDFVETRMTSMAPNVCALIGSRITAQLLGLTGGLTAMSKTPSCNLQEFPVMGQEKKTLSGFSSKATVSHAGLLYQSDVVQLAPPYLRTKALRVTAAKVSLASRFDSYGNDPSGHVGRQWRAEVEDKIEKWQEMQTAKTKKALPKPDDMPARKRGGRRVRSFKQKFAMTDVRKEANRMGFASMADEYSDTAMGKDYGMLGKSGSGRVRAPMKKEMKQNVSKKLKVANLSSGQTNGLNSSLVFTPIQGLELVNPNADKEKKVMAANKKWFDSSSGFMSAKPK 551          
BLAST of mRNA_P-fluviatile_contig8.14478.1 vs. uniprot
Match: A0A836CKH5_9STRA (Nop domain-containing protein n=1 Tax=Tribonema minus TaxID=303371 RepID=A0A836CKH5_9STRA)

HSP 1 Score: 490 bits (1261), Expect = 2.610e-163
Identity = 261/450 (58.00%), Postives = 348/450 (77.33%), Query Frame = 3
Query:  528 ALGRIADRTVDSVAKLRKSDRFKNQMAEIDECLKR-----EPAPR----TGALEDDPEYKLVVSSNELIQDIDPEMVEVHRFVVDRYSQKFPELDSLIPQPADYIRTVQVMKNEMDMTQVELESALPQTTVMVVSVTGSTTSGRPLQEEDLQECLKGCEEYEALAAAKASILDFVETRMLSMAPNVCALVGSRITAQLLALTGGLTAMSKTPSCNLQVMGQEKKTLSGFSSKAT-VSHAGLLYQCEAVQGAPPYLRTKALRVVAAKVSLASRFDSYGNDPSGHMGRQWRAEVEDKIEKWQELQTAKTKKALPKPDDMPARKRGGKRVRSFKQKFAMTDVRKEANRMGFASMADEYSDTAMGLDFGMLGKSGSGRVRAPMKKETKQ-NVSKKLRVANLSSGQTNGLNSSLVFTPIQGLELVNPNADKEKKVMAANKKWFDSSSGFMSAKPK 1844
            AL  +  R V SVAK+ +S+R+ N M  + E ++      +P+       G++E DP+Y+L+V SNE I DID E+V+VHRFVVD YS KFPEL+S++  P DYIRTVQ+MKNEMDMT++ L++ LPQT+VMVVSVTGSTT G+ L E +L+  L+GC E+ ALA AK+++L FVE +M ++APN+CA++GSRI AQL+   GGL A+S  P+CNLQ MGQE++ L+GF++ AT  +HAGL++  + VQ AP YLR K L+V +AKV+LA R D +  DP+  +GR++R+E+E K+EKWQE   AK K+ALPKPD+ P  KRGGKRVR  K+KF +TD++KE N+MGFAS A EY D+AMG DFGMLGK+G+ R+RAP +K+T+Q  V+KKLR+A +SSG TNGL+SS++FTP+QG+ELVNPNADKE KV AAN KWFD++SGFMSAKPK
Sbjct:   57 ALKALESREVTSVAKVLRSERYLNHMKAVLESMQHADDDGKPSANGEGAVGSVEQDPQYQLIVKSNEFIADIDDELVQVHRFVVDAYSPKFPELESIVTDPGDYIRTVQLMKNEMDMTRLPLDTVLPQTSVMVVSVTGSTTPGKALGEAELKRVLEGCAEFTALAEAKSTLLTFVEGKMSAIAPNMCAIIGSRIAAQLMGQAGGLAALSNIPACNLQTMGQERRHLAGFATTATGTAHAGLIFYSDLVQSAPVYLRRKLLKVASAKVTLAVRCDLHNQDPA--VGRRFRSELEAKLEKWQEPDQAKIKRALPKPDEAPKSKRGGKRVRRLKEKFTLTDIQKEQNKMGFASQAYEYGDSAMGRDFGMLGKAGN-RMRAPAQKKTQQLGVAKKLRMAAVSSGNTNGLSSSIIFTPVQGIELVNPNADKEAKVKAANAKWFDTTSGFMSAKPK 503          
BLAST of mRNA_P-fluviatile_contig8.14478.1 vs. uniprot
Match: A0A7S2XZL3_9STRA (Hypothetical protein n=1 Tax=Fibrocapsa japonica TaxID=94617 RepID=A0A7S2XZL3_9STRA)

HSP 1 Score: 484 bits (1247), Expect = 6.030e-162
Identity = 266/450 (59.11%), Postives = 339/450 (75.33%), Query Frame = 3
Query:  522 ESALGRIADRT-VDSVAKLRKSDRFKNQMAEIDECLKREPAPRTGA--------LEDDPEYKLVVSSNELIQDIDPEMVEVHRFVVDRYSQKFPELDSLIPQPADYIRTVQVMKNEMDMTQVELESALPQTTVMVVSVTGSTTSGRPLQEEDLQECLKGCEEYEALAAAKASILDFVETRMLSMAPNVCALVGSRITAQLLALTGGLTAMSKTPSCNLQVMGQEKKTLSGFSSKATVSHAGLLYQCEAVQGAPPYLRTKALRVVAAKVSLASRFDSYGNDPSGHMGRQWRAEVEDKIEKWQELQTAKTKKALPKPDDMPARKRGGKRVRSFKQKFAMTDVRKEANRMGFASMADE-YSDTAMGLDFGMLGKSGSGRVRAPMKKETKQNVSKKLRVANLSSGQTNGLNSSLVFTPIQGLELVNPNADKEKKVMAANKKWFDSSSGFMSAKP 1841
            ++ LG+IA +  +DSV +LRKS RF+  M  ++   +++ +  +G         LED+ EY+L+V SN+LI DID E++ VHRFV D YS+KFPEL+SL+    DYIR V+ + NEMDMT VEL   L   +VM+VSVTGSTTSG+PL  +DL +CL+G  E + L  AK SIL+FVE+RM ++APN+CAL+GSR+ AQLL L+GGLT +SK PSCNLQVMGQEK+ L+G+ + A++ H GL+Y CE VQ APPYLR+KAL+V AAK+ LA+R DS+  D  G +G++ R E+EDKIEKWQE Q AKTKKALP PD  P +KRGGKRVR +K+KF  T+VRK  NR  FA +  E Y+D AMGL+FG+LGKSG G +RAP KKE KQ V +K +V+ LSSG TNGL SSLVFTPIQG+ELVNPNA  EK V AANKKWF+++SGFMSAKP
Sbjct:    6 DAVLGQIAGQQGLDSVVRLRKSRRFQGHMQRLERLQQQQDSSSSGMAQSQDGGRLEDNEEYQLIVESNQLILDIDEEVINVHRFVCDLYSKKFPELESLLTNRLDYIRVVERIGNEMDMTLVELGDLLAPASVMLVSVTGSTTSGQPLSPQDLDQCLQGAREVQDLEQAKTSILEFVESRMTAIAPNICALIGSRLAAQLLGLSGGLTQLSKIPSCNLQVMGQEKRALAGYGAAASLPHCGLIYHCELVQDAPPYLRSKALKVTAAKLVLAARVDSFQQDMEGALGKKLRTELEDKIEKWQEPQKAKTKKALPAPDSKPKKKRGGKRVRRYKEKFEQTEVRKGLNRRSFAKLDTESYADDAMGLEFGLLGKSG-GTLRAPKKKEQKQ-VVRKRKVSTLSSGATNGLASSLVFTPIQGIELVNPNAQAEK-VAAANKKWFNANSGFMSAKP 452          
BLAST of mRNA_P-fluviatile_contig8.14478.1 vs. uniprot
Match: A0A7S2C7I0_9STRA (Hypothetical protein n=1 Tax=Dictyocha speculum TaxID=35687 RepID=A0A7S2C7I0_9STRA)

HSP 1 Score: 471 bits (1213), Expect = 3.170e-156
Identity = 276/544 (50.74%), Postives = 343/544 (63.05%), Query Frame = 3
Query:  252 MATLADSFLDDLDELGESSDDET------------QQEGGDASAARVGXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXAGWRDNGEAAGTAESALGRIADRT-VDSVAKLRKSDRFKNQMAEIDECLKREPAPRTGALEDDPEYKLVVSSNELIQDIDPEMVEVHRFVVDRYSQKFPELDSLIPQPADYIRTVQVMKNEMDMTQVELESALPQTTVMVVSVTGSTTSGRPLQEEDLQECLKGCEEYEALAAAKASILDFVETRMLSMAPNVCALVGSRITAQLLALTGGLTAMSKTPSCNLQVMGQEKKTLS-GFSSKATVSHAGLLYQCEAVQGAPPYLRTKALRVVAAKVSLASRFDSYGNDPSGHMGRQWRAEVEDKIEKWQELQTAKTKKALPKPDDMPARKRGGKRVRSFKQKFAMTDVRKEANRMGFASMADEYSDTAMGLDFGMLGKSGSGRVRAPMKKETKQNVSKKLRVANLSSGQTNGLNSSLVFTPIQGLELVNPNADKEKKVMAANKKWFDSSSGFMSAKP 1841
            M TLADSFL+DLD+L   SDDE              +EGGDA      X                                                     +  LG I D   + SVA LR SD F   M  I+  L+R P P TG +E+DPEY+LVV+ NEL+Q ID EMV VH++VVD YS+KFPEL+SL+PQ  DY++ VQ + NEMDMT V+L   LP   V+ VS+TGSTTSG+PL E DL +C++GC E   L   K   L FVE+RM  +APNVCAL+ + I AQL+ L GGL  MSK PSCNLQ++GQ+K+ L  GF+S A + H GL+Y   AVQ APPYLR +AL++VAAKV+LA+R D +  +PS  +GR+ R EV+DKI+KWQE   AKTKK+LP PD+ PA+KRGGKR R  K+KF MT++RKE NR  F++   EY D AMGLD GMLGK G G++R P KKE+K     K R   +SSG TNGL+SSLVFTP+QGLEL NP A+ E KV  ANKKWF  S+GF+SAKP
Sbjct:    1 MTTLADSFLEDLDDLEGDSDDEQVDEMAVSDDKDGDEEGGDAXXXXXXXEPDL-------------------------------------------------DDMLGNIHDEAGIRSVATLRTSDYFVKHMTAINAALERPPQPITGNVEEDPEYQLVVTCNELVQKIDDEMVNVHKYVVDTYSKKFPELESLVPQRLDYMQVVQTIGNEMDMTMVDLSDILPNAVVISVSMTGSTTSGQPLSESDLSQCMQGCREAVELEEDKMKSLTFVESRMNMVAPNVCALIDTIIAAQLMGLAGGLVMMSKIPSCNLQILGQQKQVLGHGFASVAAMPHTGLIYYSTAVQRAPPYLRMRALKLVAAKVALAARMDLHQKEPSDALGRKLREEVDDKIDKWQEPPKAKTKKSLPAPDNRPAKKRGGKRARKHKEKFGMTEMRKETNRRTFSNFEGEYGDDAMGLDLGMLGK-GGGKLRMPQKKESKNAAKIKKRAIQMSSGATNGLSSSLVFTPVQGLELANPTAN-EAKVSDANKKWFSQSNGFLSAKP 493          
BLAST of mRNA_P-fluviatile_contig8.14478.1 vs. uniprot
Match: A0A7S4DKU2_HETAK (Hypothetical protein n=1 Tax=Heterosigma akashiwo TaxID=2829 RepID=A0A7S4DKU2_HETAK)

HSP 1 Score: 452 bits (1164), Expect = 1.090e-149
Identity = 245/398 (61.56%), Postives = 302/398 (75.88%), Query Frame = 3
Query:  657 LEDDPEYKLVVSSNELIQDIDPEMVEVHRFVVDRYSQKFPELDSLIPQPADYIRTVQVMKNEMDMTQVELESALPQTTVMVVSVTGSTTSGRPLQEEDLQECLKGCEEYEALAAAKASILDFVETRMLSMAPNVCALVGSRITAQLLALTGGLTAMSKTPSCNLQVMGQEKKTLSGFSSKATVSHAGLLYQCEAVQGAPPYLRTKALRVVAAKVSLASRFDSYGNDPSGHMGRQWRAEVEDKIEKWQELQTAKTKKALPKPDDMPARKRGGKRVRSFKQKFAMTDVRKEANRMGFASMADEYSDTAMGLDFGMLGKSGSGRVRAPMKKETKQNVSKK--LRVANLSSGQTNGLNSSLVFTPIQGLELVNPNADKEKKVMAANKKWFDSSSGFMSAKPK 1844
            LE +PEY+L+V SN+L+QDID E++ +HR+V D YS+KFPEL+SL+P   +Y++ VQ + NEMDMT+VEL   LP  +VM+VSVTGSTTSG+PL E DL ECL+G     AL AAKA +L FVE+RM  +APN+ AL+GSR+ A L+AL GGL A+SK P CNLQVMGQEK+ L+GF + A + H G++Y  E VQ  P  LR KAL+V AAK +LA+R DSY + PSG  G++ R E+EDKI+KWQE Q  KTKKA PKP+     KRGGKRVR FK+KFAMTDVRKE  R  FAS+  EY D +MGL+FG+LGK G GR+RAP KKE KQ +S K   RVAN+SSG TNGL SSLVFTP+QG+ELV+P+    KKV  ANKKWFD SSGF+SAKPK
Sbjct:   46 LERNPEYQLIVDSNQLMQDIDDEIINIHRYVCDVYSKKFPELESLLPNKLEYMQVVQRIGNEMDMTEVELSDILPSASVMLVSVTGSTTSGQPLPEADLAECLEGARAALALDAAKAKVLGFVESRMALIAPNLVALLGSRLAAVLMALAGGLLALSKIPCCNLQVMGQEKRALAGFGNAAAMKHTGIIYYSELVQSCPVGLRQKALKVTAAKCALAARVDSYQSAPSGQKGQELRQEIEDKIQKWQEPQEGKTKKARPKPEGGRKSKRGGKRVRKFKEKFAMTDVRKELGRRTFASLDAEYGDDSMGLEFGLLGKKG-GRLRAPPKKEKKQKLSAKNQRRVANVSSGATNGLASSLVFTPVQGIELVDPS----KKVEEANKKWFDPSSGFLSAKPK 438          
BLAST of mRNA_P-fluviatile_contig8.14478.1 vs. uniprot
Match: A0A7S2SGQ5_9STRA (Hypothetical protein n=1 Tax=Rhizochromulina marina TaxID=1034831 RepID=A0A7S2SGQ5_9STRA)

HSP 1 Score: 446 bits (1148), Expect = 7.430e-146
Identity = 244/444 (54.95%), Postives = 316/444 (71.17%), Query Frame = 3
Query:  522 ESALGRIA-DRTVDSVAKLRKSDRFKNQMAEIDECLKREPAPRTGALEDDPEYKLVVSSNELIQDIDPEMVEVHRFVVDRYSQKFPELDSLIPQPADYIRTVQVMKNEMDMTQVELESALPQTTVMVVSVTGSTTSGRPLQEEDLQECLKGCEEYEALAAAKASILDFVETRMLSMAPNVCALVGSRITAQLLALTGGLTAMSKTPSCNLQVMGQEKK-TLSGFSSKATVSHAGLLYQCEAVQGAPPYLRTKALRVVAAKVSLASRFDSYGNDPSGHMGRQWRAEVEDKIEKWQELQTAKTKKALPKPDDMPARKRGGKRVRSFKQKFAMTDVRKEANRMGFASMADEYSDTAMGLDFGMLGKSGSGRVRAPMKKETKQNVSKKLRVANLSSGQTNGLNSSLVFTPIQGLELVNPNAD-KEKKVMAANKKWFDSSSGFMSAKPK 1844
            +  LG IA    + SVA LR+S  F + M  I+E L+  P+   GA+EDDPEY+L+VS NELIQ ID E++ V++FV D Y  KFPEL+SL+P   DY+R VQ + NEMDMT V+L + LP   V+ VS+TGSTTSG+PL E+DL +C  GC+E   L  AK  IL FVE+RM  +APN+CA++ + I AQL+ L GGL+AMSK P+CNLQV+GQ K   L GF + A + H GL+Y   AVQ APPYLR +AL++VAAKV+LA+R D + ++PSG  G + R E++DK+ KWQE Q A+TKKALP PD+ P++KRGGKR R FK+KF +T+++KE N+  FA+   EY D AMG D GMLGKS SGR+R P KKE K    K  +   +SSG TNGL+SSLVFTP+QGLEL   +   +E +V  AN+KWF  SSGFMSA+PK
Sbjct:   95 DDVLGSIAAGGDITSVATLRRSAYFTDHMQRIEEALEAPPSAVRGAVEDDPEYQLIVSCNELIQKIDDEILTVYKFVADLYGTKFPELESLVPNRLDYVRVVQAIGNEMDMTMVDLSAILPNALVISVSMTGSTTSGQPLPEKDLLQCNSGCQEALDLEDAKRKILHFVESRMSMVAPNICAVLDTVIAAQLMGLAGGLSAMSKIPACNLQVLGQNKLGNLGGFGAAAALPHTGLIYFTTAVQQAPPYLRMRALKLVAAKVALAARIDLHQSEPSGTAGAKLRVEIDDKVTKWQETQQARTKKALPIPDEKPSKKRGGKRARKFKEKFGLTELQKETNKRTFANFEGEYGDDAMGNDLGMLGKS-SGRLRLPAKKEQKLAAKKVKKAIQMSSGATNGLSSSLVFTPVQGLELAAEDTGAREARVKEANQKWFSQSSGFMSARPK 537          
BLAST of mRNA_P-fluviatile_contig8.14478.1 vs. uniprot
Match: A0A7S1U3H0_9STRA (Hypothetical protein n=1 Tax=Phaeomonas parva TaxID=124430 RepID=A0A7S1U3H0_9STRA)

HSP 1 Score: 417 bits (1072), Expect = 1.080e-134
Identity = 234/451 (51.88%), Postives = 314/451 (69.62%), Query Frame = 3
Query:  543 ADRTVDSVAKLRKSDRFKNQMAEIDECLKREP----APRTGALEDDPEYKLVVSSNELIQDIDPEMVEVHRFVVDRYSQKFPELDSLIPQPADYIRTVQVMKNEMDMTQVELESALPQTTVMVVSVTGSTTSGRPLQEEDLQECLKGCEEYEALAAAKASILDFVETRMLSMAPNVCALVGSRITAQLLALTGGLTAMSKTPSCNLQVMGQEKK-TLSGFSSKATVSHAGLLYQCEAVQGAPPYLRTKALRVVAAKVSLASRFDSYGNDPSGHMGRQWRAEVEDKIEKWQELQTAKTKKALPKPDDMPARKRGGKRVRSFKQKFAMTDVRKEANRMGFASM-ADEYSDTAMGLDFGMLG-KSGSGRVRAPMKKETKQNVSKKLRVANLSSGQT----------NGLNSSLVFTPIQGLELVNPNADKEKKVMAANKKWFDSSSGFMSAKPK 1844
            A+ T++SVAKLR+S  ++  MA +D  L+ E     A  TG  E DP Y+LVV+ NE    I+ E  +V RFV D+Y+ KFPEL+SL+  P D+ +TV  + NEMD+T V+L   LP  TVMVVSVTGSTT+G  L+ E L ECLKGCEE   L A + ++L FVE RM+ +APNVCAL+G+++ A+LLA+ GGL AMS+ PSCNLQV+GQ+K  TL+GFS+ A   H G++   +  Q APPYLR KAL+V AAKV LA+R D++G D SG +G ++R ++E+KIEKWQE       KALPKPD +  ++RGG+R R+ K++F +T++ KEANR  F +M   EY + AMGL FG LG K+GSGR+RA MK+ TK +     R      GQT          +G++SSLVFTP+QGLELV+P A+ +++V  ANKKWF++SSGF+SAKPK
Sbjct:   73 AEETLESVAKLRRSRAYREHMAAVDAALEAEASGSQAEWTGPPEQDPSYQLVVACNEFTSQIEEETAKVFRFVADQYAVKFPELESLVSNPLDFAKTVSAIGNEMDLTNVDLNDILPSATVMVVSVTGSTTAGVALRPEVLAECLKGCEEVNGLDADRRTLLSFVEGRMMGLAPNVCALIGAQVAARLLAIAGGLNAMSRVPSCNLQVLGQDKAHTLAGFSNTAIDRHMGIIGYSDLCQSAPPYLRMKALKVTAAKVVLAARTDAFGGDKSGDLGLKFRQDIEEKIEKWQEPTQGSRTKALPKPDPVTKKRRGGRRARAAKERFKITELAKEANRSTFGNMDTAEYGEDAMGLGFGQLGSKAGSGRLRA-MKEVTKTSKLGMKRQRQAMGGQTPAPNAKKDRNSGISSSLVFTPVQGLELVDPTAEAKRRVEEANKKWFNASSGFLSAKPK 522          
BLAST of mRNA_P-fluviatile_contig8.14478.1 vs. uniprot
Match: A0A4D9DF62_9STRA (Nop domain-containing protein n=1 Tax=Nannochloropsis salina CCMP1776 TaxID=1027361 RepID=A0A4D9DF62_9STRA)

HSP 1 Score: 408 bits (1049), Expect = 1.970e-130
Identity = 253/500 (50.60%), Postives = 317/500 (63.40%), Query Frame = 3
Query:  492 RDNGEAAGTAESALGRIADRTVDSVAKLRKSDRFKNQMAEIDECLKREPAPRTGA-LEDDPEYKLVVSSNELIQDIDPEMVEVHRFVVDRYSQKFPELDSLIPQPADYIRTVQVMKNEM----------------DMTQVELESALPQTTVMVVSVTGSTTSGRPLQEEDLQECLKGCEEYEALAAAKASILDFVETRMLSMAPNVCALVGSRITAQLLALTGGLTAMSKTPSCNLQVMGQEKKTLSGFSSKATVSHAGLLYQCEAVQGAPPYLRTKALRVVAAKVSLASRFDSY---------GNDPSGHMGRQWRAEVEDKIEKWQELQTAKTKKALPKPDDMPARKRGGKRVRSFKQKFAMTDVRKEANRMGFA--SMADEYSDTAMGLDFGMLGKSGSGRVRAPMKKETKQNVSKKL-----------------RVANL--SSGQTNGLNSSLVFTPIQGLELVNPNADKEKK--VMAANKKWFDSSSGFMSAKPK 1844
            +D  E  G    AL +   +++D+VA L K+ R++  +  +   L  E AP     LE+DPEY+L++SSN L+QDID E++ VHRFVVD YSQKFPEL+SL+P   DY+RTVQ + NEM                D+T ++L   LP  +VMVVSVT S+TSGRPL    LQECL GC E  AL  A+  IL FVE RM  +APN CAL+GS+I +QL+ L GGL A+S+ P+ ++QVMGQEKK+L G ++   + HAG+L  CE V GAPP LR KALR+VA+KV+L +R D+Y         G    G  GR  RAE EDKI KWQE    K KKALP P+    +KR GKRV   K+KFAMT++RKE  R  FA  S   EY D AMG+D GMLG  G GR+R P  KE +Q+V KK                  RV ++  SSG TNG+ SSLVFTP QGLEL+NP A +EK+  V  ANK WFDSSSGFMSAKP+
Sbjct:   85 QDAMEMEGAVPKALSKGTGQSLDAVATLSKTKRYRAHLERVTTGLALEEAPSMSLPLENDPEYQLILSSNRLVQDIDEEILNVHRFVVDVYSQKFPELESLLPNKLDYVRTVQRIGNEMVRPFSSSLPVAKSVFSDLTVIDLNDLLPTASVMVVSVTASSTSGRPLPPPLLQECLGGCAEVLALFEARTLILSFVERRMSVLAPNTCALIGSKIASQLMGLAGGLVALSRIPANHVQVMGQEKKSLQGLAAAQGIPHAGVLIGCEVVLGAPPALRQKALRLVASKVALTARMDAYQPEGEGGKEGGREKGAGGRALRAECEDKILKWQEPSKGKEKKALPVPEMSARKKRAGKRVTKAKEKFAMTELRKEYGRRQFAGASAGAEYGDEAMGMDTGMLGAVG-GRLRIPGAKEQRQSVGKKKKAELAKMSGAGXXXXGGRVLSMGGSSGATNGMASSLVFTPTQGLELMNPIAAEEKRRRVEEANKSWFDSSSGFMSAKPR 583          
BLAST of mRNA_P-fluviatile_contig8.14478.1 vs. uniprot
Match: A0A662X2E6_9STRA (Nop domain-containing protein n=2 Tax=Nothophytophthora sp. Chile5 TaxID=2483409 RepID=A0A662X2E6_9STRA)

HSP 1 Score: 388 bits (997), Expect = 2.590e-123
Identity = 241/541 (44.55%), Postives = 326/541 (60.26%), Query Frame = 3
Query:  252 MATLADSFLDDLDELGESSDDETQQEGGDASAARVGXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXAGWRDNGEAAGTAESALGRIADRTVDSVAKLRKSDRFKNQMAEIDECLKREPAPRTGALED-DPEYKLVVSSNELIQDIDPEMVEVHRFVVDRYSQKFPELDSLIPQPADYIRTVQVMKNEMDMTQV-ELESALPQTTVMVVSVTGSTTSGRPLQEEDLQECLKGCEEYEALAAAKASILDFVETRMLSMAPNVCALVGSRITAQLLALTGGLTAMSKTPSCNLQVMGQEKKTLSGFSSKATVSHAGLLYQCEAVQGAPPYLRTKALRVVAAKVSLASRFDS--YGNDPSGHMGRQWRAEVEDKIEKWQELQTAKTKKALPKPDDMPARKRGGKRVRSFKQKFAMTDVRKEANRMGFASMADEYSDTAMGLDFGMLGKSGSGRVRAPMKKETKQNVSKKLRVANLSSGQT------NGLNSSLVFTPIQGLELVNPNADKEKKVMAANKKWFDSSSGFMSAKPK 1844
            M++LADSFL+DLDEL   S DE +  G   S+  V                                              +  +    AE        R + +VA L++S ++   + +I +        +   LE+   EY LVV+SN+L+  ID E+  VHRF+ + Y+ KFPELDSL+P   DY R V+ + NEMD+T + +L   LP T V+ +SVTGS TSG+PL  E+L  C+  C+E  +L A K+ IL FVE+RM  +APNV  LVG+RI AQLL L GG+  +++ PSCNLQV+GQEKK LSGFSS A + H G+L+ C+ VQ  PPYLR KA R VA K++L +R DS  + ND  G +G ++R+E+  K++KWQE Q AKTKKALP PD+ P RKRGGKR R  K++  MTDVR+E NR  FA+  +EY D AMG+  G LG+ GSG +R  ++KE KQ+ SKKLR AN ++         +GL SSL FTP+QG+EL+NP A K + V  ANKK+F ++SGF+S   K
Sbjct:    1 MSSLADSFLEDLDELSGGSSDEEETAG--VSSGFVAPEDGAMGEGDDEDGDEKMPETLNQSGLSGFKSAKRKRGDAEQDEEEE-KPQDLAEMLRSGAKQRGIAAVATLKRSPKYLAHVQKIQQYADSSSTVQAHRLEEGSAEYDLVVTSNDLMVQIDDEIEAVHRFIAEVYTPKFPELDSLVPNALDYARVVKAIGNEMDLTLISDLSKLLPSTAVIGISVTGSGTSGKPLSPEELDTCMTACDELLSLDADKSMILRFVESRMKFLAPNVSQLVGTRIAAQLLGLAGGVAQLARIPSCNLQVLGQEKKVLSGFSSAAALKHTGILFFCDLVQSVPPYLRMKACRAVAGKLALMARVDSQPHQNDTEGVVGARFRSELVGKMDKWQEPQKAKTKKALPIPDEKPRRKRGGKRYRKMKERLQMTDVRREINRQSFATADEEYGDNAMGITSGRLGQEGSGNLRI-VRKEQKQS-SKKLRAANFAASSAGGKPPLSGLASSLAFTPVQGIELMNPEAAKAR-VREANKKYFSAASGFVSVVKK 535          
BLAST of mRNA_P-fluviatile_contig8.14478.1 vs. uniprot
Match: A0A225X1E4_9STRA (U4/U6 small nuclear ribonucleoprotein Prp31 n=1 Tax=Phytophthora megakarya TaxID=4795 RepID=A0A225X1E4_9STRA)

HSP 1 Score: 387 bits (995), Expect = 2.840e-123
Identity = 248/548 (45.26%), Postives = 329/548 (60.04%), Query Frame = 3
Query:  252 MATLADSFLDDLDEL-GESSDDETQQEGGDASAARVGXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXAGWRDNGEAAGTAESALGRIADRTVDSVAKLRKSDRFKNQMAEIDECL-------KREPAP-RTGALEDDPEYKLVVSSNELIQDIDPEMVEVHRFVVDRYSQKFPELDSLIPQPADYIRTVQVMKNEMDMTQVE-LESALPQTTVMVVSVTGSTTSGRPLQEEDLQECLKGCEEYEALAAAKASILDFVETRMLSMAPNVCALVGSRITAQLLALTGGLTAMSKTPSCNLQVMGQEKKTLSGFSSKATVSHAGLLYQCEAVQGAPPYLRTKALRVVAAKVSLASRFDS--YGNDPSGHMGRQWRAEVEDKIEKWQELQTAKTKKALPKPDDMPARKRGGKRVRSFKQKFAMTDVRKEANRMGFASMADEYSDTAMGLDFGMLGKSGSGRVRAPMKKETKQNVSKKLRVANLSSGQTN-----GLNSSLVFTPIQGLELVNPNADKEKKVMAANKKWFDSSSGFMSAKPK 1844
            M+TLADSFL+DLDEL G SSD+ET      +  A+                                                  E A  AE+       R V +VA L++S ++   + +I + +         +P P + G++E    Y LVV+SN+L+  ID E+  VHRF+ + Y+ KFPELDSL+P   DY R VQ + NEMD+T VE L   LP + V+ +SVTGS TSG+PL  EDL+ C + C+E  +L   K  IL FVE+RM  +APNV  LVG+RI AQL+ L GG+  +++ PSCNLQV+GQEKK LSGFSS A + H G+L+  + VQ  PPYLR KA R VA K++L +R DS  + ND  G +G ++R E+  K+EKWQE Q AKTKKALP PD+ P RKRGGKR R  K++  MTDVR+E NR  FA+  +EY D AMG+  G LG+ GSG +R   +KE KQ+ SKKLR AN ++   +     GL SSL FTP+QG+EL+NP A K + V  ANKK+F ++SGF+S   K
Sbjct:    1 MSTLADSFLEDLDELSGGSSDEETPAVAAPSEEAQDDVDEEMPDTPQPRPKRSRPPEELE-------------------------EPADLAEALRSNAKQRGVATVANLKRSSKYVEHVQKIQQYVDVGNASTSAKPQPLQEGSVE----YDLVVTSNDLMVQIDDEIEAVHRFIAEIYAAKFPELDSLVPNALDYARVVQAIGNEMDLTLVEELPKLLPSSAVIGISVTGSGTSGKPLGPEDLKTCTEACDELLSLDKDKNMILRFVESRMKYLAPNVSQLVGTRIAAQLIGLAGGVAQLARIPSCNLQVLGQEKKVLSGFSSAAALKHTGVLFFSDLVQSVPPYLRMKACRAVAGKLALMARVDSQPHQNDTEGLVGARFRTELVGKMEKWQEPQKAKTKKALPIPDEKPRRKRGGKRYRKMKERLQMTDVRREMNRQSFATADEEYGDNAMGITAGRLGQEGSGHLRI-QRKEQKQS-SKKLRAANFAASSASKPPHSGLASSLAFTPVQGIELMNPEAAKAR-VAEANKKYFSAASGFVSVVKK 516          
The following BLAST results are available for this feature:
BLAST of mRNA_P-fluviatile_contig8.14478.1 vs. uniprot
Analysis Date: 2022-09-19 (Diamond blastx: OGS1.0 vs UniRef90)
Total hits: 25
Match NameE-valueIdentityDescription
A0A6H5L8Q2_9PHAE8.850e-28279.67Nop domain-containing protein n=2 Tax=Ectocarpus T... [more]
A0A836CKH5_9STRA2.610e-16358.00Nop domain-containing protein n=1 Tax=Tribonema mi... [more]
A0A7S2XZL3_9STRA6.030e-16259.11Hypothetical protein n=1 Tax=Fibrocapsa japonica T... [more]
A0A7S2C7I0_9STRA3.170e-15650.74Hypothetical protein n=1 Tax=Dictyocha speculum Ta... [more]
A0A7S4DKU2_HETAK1.090e-14961.56Hypothetical protein n=1 Tax=Heterosigma akashiwo ... [more]
A0A7S2SGQ5_9STRA7.430e-14654.95Hypothetical protein n=1 Tax=Rhizochromulina marin... [more]
A0A7S1U3H0_9STRA1.080e-13451.88Hypothetical protein n=1 Tax=Phaeomonas parva TaxI... [more]
A0A4D9DF62_9STRA1.970e-13050.60Nop domain-containing protein n=1 Tax=Nannochlorop... [more]
A0A662X2E6_9STRA2.590e-12344.55Nop domain-containing protein n=2 Tax=Nothophytoph... [more]
A0A225X1E4_9STRA2.840e-12345.26U4/U6 small nuclear ribonucleoprotein Prp31 n=1 Ta... [more]

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Alignments
The following features are aligned
Aligned FeatureFeature TypeAlignment Location
P-fluviatile_contig8contigP-fluviatile_contig8:1781633..1802453 -
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 score803.9
Seed ortholog evalue4.5e-230
Seed eggNOG ortholog2880.D8LKU3
Preferred namePRPF31
KEGG koko:K12844
KEGG Pathwayko03040,map03040
KEGG ModuleM00354
GOsGO:0000244,GO:0000375,GO:0000377,GO:0000387,GO:0000398,GO:0001654,GO:0003674,GO:0003676,GO:0003723,GO:0005488,GO:0005575,GO:0005622,GO:0005623,GO:0005634,GO:0005654,GO:0005681,GO:0005684,GO:0005687,GO:0005690,GO:0005737,GO:0005739,GO:0006139,GO:0006259,GO:0006325,GO:0006342,GO:0006346,GO:0006355,GO:0006396,GO:0006397,GO:0006725,GO:0006807,GO:0006950,GO:0006996,GO:0007275,GO:0007423,GO:0008150,GO:0008152,GO:0008380,GO:0009266,GO:0009409,GO:0009628,GO:0009791,GO:0009845,GO:0009889,GO:0009890,GO:0009892,GO:0009987,GO:0010467,GO:0010468,GO:0010556,GO:0010558,GO:0010605,GO:0010629,GO:0015030,GO:0016043,GO:0016070,GO:0016071,GO:0016458,GO:0016569,GO:0016604,GO:0016607,GO:0017069,GO:0019219,GO:0019222,GO:0022607,GO:0022613,GO:0022618,GO:0030532,GO:0030621,GO:0030622,GO:0031323,GO:0031324,GO:0031326,GO:0031327,GO:0031974,GO:0031981,GO:0032501,GO:0032502,GO:0032991,GO:0033554,GO:0034622,GO:0034641,GO:0034708,GO:0035097,GO:0040029,GO:0043010,GO:0043021,GO:0043170,GO:0043226,GO:0043227,GO:0043229,GO:0043231,GO:0043233,GO:0043412,GO:0043933,GO:0044085,GO:0044237,GO:0044238,GO:0044260,GO:0044422,GO:0044424,GO:0044428,GO:0044444,GO:0044446,GO:0044451,GO:0044464,GO:0044665,GO:0044877,GO:0045292,GO:0045814,GO:0045892,GO:0045934,GO:0046483,GO:0046540,GO:0048513,GO:0048519,GO:0048523,GO:0048731,GO:0048856,GO:0050789,GO:0050794,GO:0050896,GO:0051171,GO:0051172,GO:0051179,GO:0051252,GO:0051253,GO:0051276,GO:0051641,GO:0051716,GO:0060041,GO:0060255,GO:0065003,GO:0065007,GO:0070013,GO:0070417,GO:0070990,GO:0071005,GO:0071011,GO:0071166,GO:0071339,GO:0071704,GO:0071826,GO:0071840,GO:0080090,GO:0090304,GO:0090351,GO:0097159,GO:0097525,GO:0097526,GO:0120114,GO:1901360,GO:1901363,GO:1902494,GO:1902679,GO:1903506,GO:1903507,GO:1990234,GO:1990904,GO:2000112,GO:2000113,GO:2001141
EggNOG free text desc.spliceosomal tri-snRNP complex assembly
EggNOG OGsCOG1498@1,KOG2574@2759
COG Functional cat.J
Best tax levelEukaryota
Best eggNOG OGNA|NA|NA
BRITEko00000,ko00001,ko00002,ko03041
Hectar predicted targeting categoryother localisation
Exons11
Model size2241
Cds size1596
Stop1
Start1
Relationships

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

Feature NameUnique NameSpeciesTypePosition
1622817238.5739322-UTR-P-fluviatile_contig8:1781632..17820261622817238.5739322-UTR-P-fluviatile_contig8:1781632..1782026Porterinema fluviatile SAG_2381UTRP-fluviatile_contig8 1781633..1782026 -
1693571635.3196547-UTR-P-fluviatile_contig8:1781632..17820261693571635.3196547-UTR-P-fluviatile_contig8:1781632..1782026Porterinema fluviatile SAG_2381UTRP-fluviatile_contig8 1781633..1782026 -
1622817238.7189178-UTR-P-fluviatile_contig8:1802202..18024531622817238.7189178-UTR-P-fluviatile_contig8:1802202..1802453Porterinema fluviatile SAG_2381UTRP-fluviatile_contig8 1802203..1802453 -
1693571635.485572-UTR-P-fluviatile_contig8:1802202..18024531693571635.485572-UTR-P-fluviatile_contig8:1802202..1802453Porterinema fluviatile SAG_2381UTRP-fluviatile_contig8 1802203..1802453 -


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

Feature NameUnique NameSpeciesTypePosition
1622817238.5841951-CDS-P-fluviatile_contig8:1782026..17821341622817238.5841951-CDS-P-fluviatile_contig8:1782026..1782134Porterinema fluviatile SAG_2381CDSP-fluviatile_contig8 1782027..1782134 -
1693571635.3436863-CDS-P-fluviatile_contig8:1782026..17821341693571635.3436863-CDS-P-fluviatile_contig8:1782026..1782134Porterinema fluviatile SAG_2381CDSP-fluviatile_contig8 1782027..1782134 -
1622817238.5959065-CDS-P-fluviatile_contig8:1782760..17829001622817238.5959065-CDS-P-fluviatile_contig8:1782760..1782900Porterinema fluviatile SAG_2381CDSP-fluviatile_contig8 1782761..1782900 -
1693571635.3560474-CDS-P-fluviatile_contig8:1782760..17829001693571635.3560474-CDS-P-fluviatile_contig8:1782760..1782900Porterinema fluviatile SAG_2381CDSP-fluviatile_contig8 1782761..1782900 -
1622817238.608211-CDS-P-fluviatile_contig8:1783461..17835861622817238.608211-CDS-P-fluviatile_contig8:1783461..1783586Porterinema fluviatile SAG_2381CDSP-fluviatile_contig8 1783462..1783586 -
1693571635.3718536-CDS-P-fluviatile_contig8:1783461..17835861693571635.3718536-CDS-P-fluviatile_contig8:1783461..1783586Porterinema fluviatile SAG_2381CDSP-fluviatile_contig8 1783462..1783586 -
1622817238.6202314-CDS-P-fluviatile_contig8:1784514..17846931622817238.6202314-CDS-P-fluviatile_contig8:1784514..1784693Porterinema fluviatile SAG_2381CDSP-fluviatile_contig8 1784515..1784693 -
1693571635.3834648-CDS-P-fluviatile_contig8:1784514..17846931693571635.3834648-CDS-P-fluviatile_contig8:1784514..1784693Porterinema fluviatile SAG_2381CDSP-fluviatile_contig8 1784515..1784693 -
1622817238.6322672-CDS-P-fluviatile_contig8:1785359..17855031622817238.6322672-CDS-P-fluviatile_contig8:1785359..1785503Porterinema fluviatile SAG_2381CDSP-fluviatile_contig8 1785360..1785503 -
1693571635.3930633-CDS-P-fluviatile_contig8:1785359..17855031693571635.3930633-CDS-P-fluviatile_contig8:1785359..1785503Porterinema fluviatile SAG_2381CDSP-fluviatile_contig8 1785360..1785503 -
1622817238.6445355-CDS-P-fluviatile_contig8:1797177..17973601622817238.6445355-CDS-P-fluviatile_contig8:1797177..1797360Porterinema fluviatile SAG_2381CDSP-fluviatile_contig8 1797178..1797360 -
1693571635.4035482-CDS-P-fluviatile_contig8:1797177..17973601693571635.4035482-CDS-P-fluviatile_contig8:1797177..1797360Porterinema fluviatile SAG_2381CDSP-fluviatile_contig8 1797178..1797360 -
1622817238.657212-CDS-P-fluviatile_contig8:1798071..17981941622817238.657212-CDS-P-fluviatile_contig8:1798071..1798194Porterinema fluviatile SAG_2381CDSP-fluviatile_contig8 1798072..1798194 -
1693571635.4237006-CDS-P-fluviatile_contig8:1798071..17981941693571635.4237006-CDS-P-fluviatile_contig8:1798071..1798194Porterinema fluviatile SAG_2381CDSP-fluviatile_contig8 1798072..1798194 -
1622817238.673212-CDS-P-fluviatile_contig8:1799597..17997321622817238.673212-CDS-P-fluviatile_contig8:1799597..1799732Porterinema fluviatile SAG_2381CDSP-fluviatile_contig8 1799598..1799732 -
1693571635.4363968-CDS-P-fluviatile_contig8:1799597..17997321693571635.4363968-CDS-P-fluviatile_contig8:1799597..1799732Porterinema fluviatile SAG_2381CDSP-fluviatile_contig8 1799598..1799732 -
1622817238.683225-CDS-P-fluviatile_contig8:1800585..18006901622817238.683225-CDS-P-fluviatile_contig8:1800585..1800690Porterinema fluviatile SAG_2381CDSP-fluviatile_contig8 1800586..1800690 -
1693571635.4469059-CDS-P-fluviatile_contig8:1800585..18006901693571635.4469059-CDS-P-fluviatile_contig8:1800585..1800690Porterinema fluviatile SAG_2381CDSP-fluviatile_contig8 1800586..1800690 -
1622817238.693075-CDS-P-fluviatile_contig8:1801201..18014141622817238.693075-CDS-P-fluviatile_contig8:1801201..1801414Porterinema fluviatile SAG_2381CDSP-fluviatile_contig8 1801202..1801414 -
1693571635.4595668-CDS-P-fluviatile_contig8:1801201..18014141693571635.4595668-CDS-P-fluviatile_contig8:1801201..1801414Porterinema fluviatile SAG_2381CDSP-fluviatile_contig8 1801202..1801414 -
1622817238.704645-CDS-P-fluviatile_contig8:1802061..18022021622817238.704645-CDS-P-fluviatile_contig8:1802061..1802202Porterinema fluviatile SAG_2381CDSP-fluviatile_contig8 1802062..1802202 -
1693571635.4716475-CDS-P-fluviatile_contig8:1802061..18022021693571635.4716475-CDS-P-fluviatile_contig8:1802061..1802202Porterinema fluviatile SAG_2381CDSP-fluviatile_contig8 1802062..1802202 -


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

Feature NameUnique NameSpeciesTypePosition
mRNA_P-fluviatile_contig8.14478.1prot_P-fluviatile_contig8.14478.1Porterinema fluviatile SAG_2381polypeptideP-fluviatile_contig8 1782027..1802202 -


Sequences
The following sequences are available for this feature:

protein sequence of mRNA_P-fluviatile_contig8.14478.1

>prot_P-fluviatile_contig8.14478.1 ID=prot_P-fluviatile_contig8.14478.1|Name=mRNA_P-fluviatile_contig8.14478.1|organism=Porterinema fluviatile SAG_2381|type=polypeptide|length=532bp
MATLADSFLDDLDELGESSDDETQQEGGDASAARVGAAETGGSDDMETDE
VPTGRRRDNNTADGTAAGGGSAGAAAAAGWRDNGEAAGTAESALGRIADR
TVDSVAKLRKSDRFKNQMAEIDECLKREPAPRTGALEDDPEYKLVVSSNE
LIQDIDPEMVEVHRFVVDRYSQKFPELDSLIPQPADYIRTVQVMKNEMDM
TQVELESALPQTTVMVVSVTGSTTSGRPLQEEDLQECLKGCEEYEALAAA
KASILDFVETRMLSMAPNVCALVGSRITAQLLALTGGLTAMSKTPSCNLQ
VMGQEKKTLSGFSSKATVSHAGLLYQCEAVQGAPPYLRTKALRVVAAKVS
LASRFDSYGNDPSGHMGRQWRAEVEDKIEKWQELQTAKTKKALPKPDDMP
ARKRGGKRVRSFKQKFAMTDVRKEANRMGFASMADEYSDTAMGLDFGMLG
KSGSGRVRAPMKKETKQNVSKKLRVANLSSGQTNGLNSSLVFTPIQGLEL
VNPNADKEKKVMAANKKWFDSSSGFMSAKPK*
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mRNA from alignment at P-fluviatile_contig8:1781633..1802453-

Legend: UTRpolypeptideCDS
Hold the cursor over a type above to highlight its positions in the sequence below.
>mRNA_P-fluviatile_contig8.14478.1 ID=mRNA_P-fluviatile_contig8.14478.1|Name=mRNA_P-fluviatile_contig8.14478.1|organism=Porterinema fluviatile SAG_2381|type=mRNA|length=20821bp|location=Sequence derived from alignment at P-fluviatile_contig8:1781633..1802453- (Porterinema fluviatile SAG_2381)
GACCCTGAAGCCCTTTAAACGCACATCTCGCGCTCTCTACACGTCCAGGG AATTCGTTTCAATATCTCGAGCGATAGAAGCGAACACGTGTGAAGTCGAA GCTCGTTGTGCATTCCCAGCGAACTGGTGGAAGTCAAGACACTCAATCGA GTTCAGGAACTCAAAGCAGCAATTCGGCACACACATCTCAAGGATCGCAC TCAAGACTCAAGGCGTGTGTGTTGACAAGTACACGACAGGAGCGTTAGAC AATGGCGACCTTGGCGGACAGCTTCCTGGACGATTTAGACGAGCTGGGAG AGAGCTCAGATGACGAGACGCAACAGGAGGGCGGCGATGCCTCGGCGGCC CGGGTTGGTGCGGCAGAAACGGGCGGGAGTGACGATATGGAGGTACCGCT CGCGTGCTGTTCGGGGAAGAGAGCGTGCTTGGTGTGCGGGAAAGGCGTCG ATCATCTTGTAGTTGTAGAACTGTGTCGCCGAGATGATTGAGGGAGGCGC CAATGCAGGGAAAGCGGGTAACTGCCTGCTGCGGCTGCACACAAATTTGA CGTGTGCGAACCGGCGTGCTGACGGGGTGCCGGGTGTGTACAATGATCAA AACCAGAGCGGGAACGCCTCTGACTCTCGCGATAGACGGAAGTCTCTTGT CATGCGATACCTCATTGTTTCTCTGATTGTATTCGATTTTTTCTCCGAAG GGGTTGTCGCGATCAAAGTAAAGCATACCTTGGCACCCTCATTGAATGCA ACAGGATTGGCGGCGGTGCATGCAGCGACCGCAGTGGCGGTTTCAACAAG CCACCTCACGGAAGGCGAAGTCCATTGTGTTGTCTCGACTTAAATTTAAA ACTTACAACGGAAATCAAGAGGGTGAGAGGGGCGGCGTGATGTTGCACGG GGGATAAGAGATTGAGGGGGCGAGAGAGGCAGGGAAAATCACTTGTCCGT GACCGTGTACCTGCGGACCTCTTACCGCATCACGTTTTCTGCTTTTGGTG CTGCCGCTTTCCCATCGCGTTTCTATCCTTCACCCACAGACGGACGAAGT TCCCACCGGCAGAAGACGAGATAATAACACCGCAGATGGGACAGCGGCAG GGGGTGGGAGCGCCGGCGCCGCCGCCGCGGCCGGGTGGAGGGACAACGGC GAAGCGGCTGGTACGGCGGAGTCGGCACTGGGGCGGATAGCGGACCGCAC AGTGGATTCGGTGGCCAAGCTTCGCAAGAGCGACCGCTTCAAGAACCAGA TGGTAGGTTGTGGCCGTGAGCAGCGCCGCTGGCCCTGGGCAGCAGTGCTG TGTTCATCTTTGTCTGGATCATGCCGGCGCTAAAAGCACCAGCACTACTC AACGTGGAGCGCTCGACAGCGACTTCTTTCTCGGCAAGGTTAACCACGCA ATCTTGTCGTGGTTTGATCAGCCATGAAGGCAGTCACAGCGACTCAACTG GTATGAGATATCGCGGATGAATGGATAGCTGGGCAGGCGGGCGGATCGGT GGGTGGGTGGGTAGATGGATGGATGGGTGGATGGATGGATGGATGAACGG ATCGATGGATCGATGGGTCGGGTGGCTGGATACATGCTCAGCGCGAAACA ACACCGTTTTGGTTTTTGTCATTTTCGTCCATCGACCCGCTGCTGGCAGA GTAGGTGAAACAACAACAAGCACGCAGCTTGGGTGAATCGGTGGTGGGTG TATGAATGACACACGAACGTACTCATGTTTGCACTCATTTTTTCTCGTCA TCGTTTCATATAGGCGGAGATAGACGAATGCCTGAAGAGGGAGCCAGCTC CGAGAACGGGTGCGTTGGAGGACGACCCTGAGTACAAGCTGGTCGTCAGC AGCAACGAGCTCATTCAGGTTGGTGGTGGTTTGGAGGAGCAGCAGCTGTG AGGGCACGGTCGACGTGGCCGTGAGGAAGAGCGGGGCAGGGCCGGCCCAA GGGAGGGAGGGCAGCAAGGATGGGGTGGAAGGTTGACGGGGAGATAGCAG TCAAGCGCAAACGGGAAGGGAGAGATATACAGACCGAGAGAGAAAAGAGA GAGAAAGAGAGAGAAAGAGAGAGAGAGAGAGAGGGCGGGTGGAGGGAGAT GCTCAAGGAAGACAGGCACATCGGACCCTTGAGTTGCTGGATACCAACGG CTGACGTGCACTTCTTACCGTGAATCCTTCGCCACCCGAAGCGCTGTGTC GCCCATCAGGCGAAGTGAAACCTCTGCCACGTACGAAACATTATATCGCC CATCGGGAGAAGTCCATCCCGGCAGACGCAGGCGCGATGGATTAGAGAGG TGGTACGTGTCGCCCCTTTCACTGCAGTAAGGCAGGATTCTGGATTCTTC ACATACGCAAGTGCTCATCATCGCCTGCGGAATGCATTTTTTTGCGGGAG AAGAACCAGCTCCTGGCTGGCTGGCTGGCTGGCTGGCTGGTTACCTCGCT GACTAGGCTGATGTTCCCCTGTTGTTTCTCTCGAATTCTCCGCCTTTCGG TCGTATGCGTTTCTGGTTTCTCACTCAGTCTCTGTCTCTGTCTCTCGCTC TCGCCCTCTCTCTTTCTCTCTCTCTCCCTGCCTGTGTGAGATTCATCAGC CTGCCTGCCTGCCTGACTGCCTGCCTGCCTGCTCTTCTTACTTCCCTCAC TCATCGGCCTGCCCGCCCTGCCTGCCTGAGTTTATGTGACCAACCGCGTG CGCACCGCGTGCTGCCAACAGGACATCGACCCGGAGATGGTCGAGGTGCA CCGCTTCGTTGTGGACAGGTACTCGCAGAAGTTCCCCGAGCTCGACAGCC TCATCCCGCAGCCGGCGGACTATATCCGGACGGTGCAGGTCATGAAGAAT GAGATGGTGAGTGGCATACCTCGTTGGTGTACGTTAGTACCTTTTTATTC GTGCAGGTGAGTACGTTTCGTTCAGGTCATCAAGAACGAGATTATGAGTG GCGTACCTCGTTGGTGTAGGTGAGTATCTTATTCGTGTACCACGTGAGTA CATTGTTGCAGGTCTTGAAGAACTGAATGGTGAGTGGCACAACTTGTTGG TGTAGGTGAGGTACTTGTCATTGGTGTTCGTGAGTACTTTCTTGCAGGTC ATAAAGAACGAGATGGTGAGTGGAGCACCTCGTCAGTGCACGTGAGTGCC TTTTTGGTGTACGCGACGCACAGGTGAGATTTACCAAACGTCCTGGACCT AAGTCCCACATATTTTCGTGGGCAAAGCAATGACTGAGTCGCGACATTCA GTGTGCAAAGACGAACATGATAAAATACGGAGAGTCTGTGCCGTACCCTG CGGCGAGCTTTCCCCGAGGCGAATGGAGAGTGGGCGGTATTTCGGTTACG TGAACACGCCTCACCATGAAGCTGTCAAGAAACGAATCGTGTTCGCGGCC CTTCGTGTGCGTTTCACAGCGCACGGGAAGTCTGGCTCTTTCCAAATGTT AGCCTCAAATCCAAAGCTCGTGGGGTCGATGAACGTCGTAAGCAAGCAGC CCAGTTGCTTTCTTGGACGTGCTTGACCGCGCCGCGCACGGGTGCCTTTT GTCCGCACACCATGAACCTGCCACTTTCCAGGTGGACTTTTGCTATCGAA TATCCTTCCGTTCAAGCATGAAACCCGTCCTTCTTCAGCCTGCCTACTTG GGGTGTTTGCCCCGCTCCTTCCCCCATAGGCCCTACGGCCACGTCAGGCG TGAATTGAGTACACACACACATTCCCCTCCTACAACCCCTTTCTCTGTTT ACCTGCGCTATATGTTTTTTCTTATCCTTTTCACGTTGACGACCTGCAAG CTTTTCCCTTACGCCTAATCTTCACTACTCAGTTGGGAATTTCAGACATG CGAGACTAAGTCGAGCGGGGAAGATGCACACAACAGCATCCTTGCCGACC GCAGTCTCTCTCTCCCCCCCCGATCAGCTCTCTACGCCCATTCGGCGAAT TTCGACAAAATTAGTGTTAGACGATTTGCAGAGGAGAAAATGGAGTCATT AGCCACCTCTTACCACAGGAAGGCCCCTTATTACCCCCCGCAGGAGGGTC TCTTCACTTGCGTCTACGGTTTGCTTTTTTTTCGTGTAATTTTGCTGACA GATGCTCGCGCACTTCTTGTAGCAGTTCACAAACTCGACGGCCGCAATCC CCACCCATCCGCCTACCCACCCACCTCCATCCCTTCCCTGTCCCCCATTC CCCCCCCCCCTCCCCTCGGACCTTCGAATACAACACGCAACCCTGAAACG TTGTCTCAGGACATGACGCAAGTGGAGCTGGAATCCGCCTTGCCGCAAAC GACGGTCATGGTCGTCAGCGTGACCGGCTCCACCACCAGCGGCCGCCCGC TGCAGGAGGAGGACCTGCAGGAATGCCTGAAGGTGGGGGAGAGGAAGGGA GGGAGGGGACGGGGAAGCGAGGGAGGGAGGAGGGTGGCTAGGGGGGGTAG GCGTGAGTGCAAGGGATTGAGGCGGCTGTTGAGAGAGAAAACAGGAAGAG CGGTAGCGCATATCGTTTGCTTCACTCTAAATGTTGTCGGAAGGATACCG TAGAAGCGAGAGTGTTCGTCACGAAGAACGGCGGGGCGGGGATTTGTAAG TGGAAGTCGCTCGCTCGTGGCGTGCTCAAAGAGTACGTATTCCAATATGC GATTCATGTAACACGAGCGTTTTTCTGTTTTCGCCGCATTAATTGGCTTG CCCACGCGGTTTGTCGTGCGGGACCATCCCATCGTCGGCGACGGACGAAG GAGTTTGACGGACTCAACAGACCTTTTGGGTGGGCAGGGAGGATGGAACA AGATAATACGGACTACCCCCCTCGTCCCCACTCGCATTCCCCGCCCGCCT CGAATGAGAAATTTTTCGTAATGGTTTCTGTTTGTAGTTCCATGAAGTCT GAAGCCTCTTATTGTCCGTTTGAAATTCTCCTCTCAAACATTGCTGCGCA TTCTCTTCGGGATCACATCCCTGAAAACGGCAGCAGCACGCCCGCGTCTT TCGCACCGTGCGATATCCCGTAATTTTTTGTTTCTCGTTTCCTGCATTCC ACGCTTTGCCACCGCCGCCGCCACCACCTCCTCGTCATCTCAGGGGTGCG AGGAGTACGAGGCTCTAGCGGCGGCGAAGGCTTCCATCCTGGACTTCGTG GAGACGAGGATGCTCAGTATGGCGCCGAACGTGTGCGCCCTGGTCGGTAG CCGCATCACGGCCCAGCTGCTGGCGCTGACGGGCGGGCTCACGGCCATGT CCAAGACCCCGTCCTGTAACTTGCAGGTGCGTCTTTTGGTGGTGGTGGTG TTGTTGTTGTTGTTGTTGTTGTTGTTGTTGTTGTTGTTGTTGTTGTCGTC GTTGTTGTTGTTGTTGTTGTTGTTGTTGTTGTCGTCGTTGTTGATGTTGT CCGTGTTCACTGCTGCGTATTTTTTTTCTCTCGGTTGTGTTGGTTCGTCT TCTGTTTACTCGCCCGTGGTTTCTGATCTCTACCATTTTTGTGCTAAACC TGTCAGCCGGTCCCACAGAGGAAAGTGTTTTTGGAAAGGTTGCATGTTTG GGGTACACGGTGGAGATGTGCAGAGCCCCTGATGGGTGTTTCGTGGGTAT GATGTGTGTGAGATGGAGCCCTACGGGCTGGTGAGGGGATCTCACTTCGT ATGTTTCAAGGGACCAAATTCAAACTATTTGTGTAGAGTGCCTCGGGATA AGGCAGCTGCGCGCGTGGTCACAGGGGACACGCGCCGACATACAAACACG ACATCGTGTACGCGTGCGCGCGTCGGCAGTAGCTATAGGTCCCGTAGGGG AACAAAACTTCGCCAGTGTGGAATCCTCGGCGATCGTATGTGAGTGTTCA AGTTGACAGTAAAGGTTGGCGGTTGAGGTGTATCGTGGGTGTTTTGTGGA AGACTTTTTACATATGGATGAACGGAGAAAGGAGCGAGCTGATGTGGCGA GGTTGAGAGAGGAGCTCATCGCTGCAACGCTGCAAAAGGGGAAGTCTGAT AAAATGACAGCAGCAACAGTAGAGGCGCAGCGAAAAAGCAGCTGTTGCTG CAGCAGCAGCGGCGAAGAGGATAGCGGCACCACCACCCTCTGAGGCAGCA GCGTGGCGGATGTCCGCGGGTGCGGCTGGAGGGGCTGCTAATCAAGGGGT GAGTTCGAGCACGCGCGAGTTTGTGAACTTTGTCAGCAACGCGAAGCCAC CCAAGCTGCACACCGATGCCAACAAGCGAGCGCAGTGGATGCGCGCGTTT ATGTGTTCCCTCGAGCGCGCAAAATCTCGAGCACATCCTCGAGCGGAAAG CAGCTTTCGATATCATCGGCACCCAGTACTGGATGTCGTTATACGGTCTT GACCTCGTACGCGACAACAAGCGGGCGTGGCAGTACCTGACGGATGCCAC CTACGACACGCCCATTGCGGAGAGGCTTGTGGCGTGTAGTTCTGTTCATG ACGCGTGGGCGATGATCACGAAATCTGCATCCCCCAATCTGTGGCGGAGA AGGACCTGCTGATGAAGGAGTTTGAAAATGTATCCAACTGCGATGGAGTA AACCCCGCACTGTACTGTGCCCGCTTCGACACGTTGCTCAGCTTTGCCCG CGACAACGGTTTGGAGCTGGATCAGGACCGGTTCCAGCACATTTTCGTTC GTCAGCTGTCGGACGACTATGTTATCCATAAAGCGATGATCACGTTACGG TGTCTAGTTCTTCTATTGCGCCCTAAAGTCGCCTCGAAGTCGAGAAGATC GTCCGCGATGGGTACGCTACCCGTCGGGCGGAAGAAATCGGGAAGAATCC CCATTCGTCGGGACAACACGACCCCCACGCGCTTGCCGTCAGTGGTCAAC GTCCCGGGGGGGTGGTGGTGGCCATGGCGGGTGAGGAGGCGGTCAACAGC GTCGCGGTTCTGGTGGGGAGCAACAGCATGGTGGCGGTTTTGGCAACGGA GGTGGCCAGCAGCAGCACGGTGATGGCTTCAGCGGAGGTGAACGGCACCA GTGGTCACCGCAGCAACAGCAGCAGCAACAGCAGCAGCAACAGCAGCAGC CGGTTTACCAACAACCGCGTCCTCAGCACCTCCCCTCCCCCCAACTATCC TCGGTGGGCACCTGGTGGGGATTTCGACAACGGCAGCAATGCCGTCCTCC CGCAGGAGGATACACCTCCCCCTCCAGGTGCCCCAATGGTTGGTGTGTAC TGCTGTAAGCGATGCACCAATTGGACACAACTATGCCTTCTACGCAGCCC CGAGACATTTTGAAGGCAACTGCGGGGCCTTCGGTCAAAATAGCGACAAG TGTCGCTACTGCGTCACGAGAACGTCGTCCACGGAGTGAAGAACGATGTC CAAAGACTAAAACCACTCCACCGCCAGGGCGACACCGTTCGCAAGGTGAA GCCGCGATTCAACCGAGGACCAGCGGCGCCTGTTGCACACGAACCGACGA GAACCAGTCGCATGCACGGAAGTCGCGCTGTTCCCGATCCAAAGTCGACC CAGGAAGGGTGCAGGGGAAGAGGCGAGGCAGATGGGCGATTGGAGATGAC CCTAGCGCGAACGAAAAGCGGACGTTCCTATCGCCATCCGGCGGCGGCGT TGTCACCCCTAAAGTACCGGAGAGCAAGCCACCACCACCGTAGGTAGCTC CCTCGGCCCCCGTCGCGTTAACAACCTCCTCTGCGCCACCTCCAAAGACT GCTCCATCGTTGCTGGCCCAAGGAATGCTGCTGCTGCGCCTGTTGTTGCT GTTGCGGCGCCTACTGCTGCGGCTGCGTCGGCTGCCACTGCTGCTGCTAT TGTGGCTGTTGTGGCTGCTGTGGCTGTTGCGGTACCCCCAGAAAGTCACC TCCGACGTCGCTCCACTCGAAACTGCAACTGGTGGCGCCTCCACCGCGGT ACGCGACGTTGGCATGCTGGGAAGGCGTCTGACGGACTCTTACGAGGTCG CCGTCGCGCCGTCGCTGGCGCACGACCTGATGTCGTTCAACCGCATCCAG GAGAAACACGACGTCCTGATGAACCACGAAGGCACCTGGCTGCTGCATGG TAAGGTTTGCTTCGTCGGGCAAACCAACGGCAACGAAACCGTCGCCTCGC GTGTGGCGCCGGGCAGCAGCGGAATTCCAAGGAGTTGAGTGGCGGCGGCT GGCGGCACCTGCGGCGGCTGGCGGTGACGACGGTAGTGTCTCTCCCGCCG CGTCGGCGGGTATGACTGCCGGTGCCCCCTCTACCGCAGTAGGAGCGACT TCGGCACCTGCGACCCACCGCAGGCGGCCGCCGCGTCGGCGGGCGTGACG GCCGGTGCCCCCCCTGCCGTGGGAAGGAGCGGAGCGGCGAGCGGAGCGGC GGCATCAGCACCTGCGGTGGCTCGCGGTGCCGGCGGTACTGTCTCCCCCG CCGCGTGGGCGGGTGTGACGGCCGGCGCACGCTTTGCGATGGAATCAAGA TCGGCACCCGCGGAGCCTGGCGGTATCGGTAACGCCGTTCCTGCCGCGAT GACGAGGATGGCGGCCGGTGTCCCCACTGCCGCGGCTGTTTGTGATGAGG ATGGGGACGAATGGTGGGACGCAAATAGCGGAGAGTCCGCCCCTGCCGCG ACGGTTTGGGGGGCAGCTGACGTGTCCTGGCGGACCCTTCGAGCGACTCC AGCTATGACGGGGGGATGTCGGGCGACCTTCCGATGCCGAATGCGCTGAC TTCGGAGTTGCCGACGCCGAAGTCGTACGGTGACGCGCACGGAGGGCCGC ATGACATCTGCCACCACTTCCTGCGTGTGAAATGCTATGGGTGATTTCAG GGTTGTGTATCTAAGCTGCAGCACGCGGACTTCCTTGCGAGACCGCTGCA CAAGGACGAGTTCTACCTGCAACGCAATAGACCTACGTGCACCGCAATTT TGTCATGAACCTTTGGTCTCTTTGCATGGCCACCGTTCTAGTTGCCGCCC AACGATCGTTCAGCTTTGCGCCGTTCACGATTTCACTTTTGCGATGGAGC GGGGAGGCACGTTGTATTTGTTGTGTGTCTTACCCCTGAGTGTTTATTTT TTAAGCTTGATTTGATTCTTTCATTCTTTTTTTGGATTAATGCTCTGCCG CGTCTGCACGAGAATATTGAGGGGGGAATTGATCGGATTCGTTGATGAAG TAAGAGATATACCCCGGAGTATAATTTTGCGGAGATGGAGTTGTATGATG ATCTCTGCGAGATTGAATGTCTTTGGAGCGACGCCTTTTGACGGATTGGC GAAAGGAGTTTTGTTTGAGTATAATGTCTTGAGTGAATATTGAAATAGGT TGACTTTGGAATTTGATTTATTGCCTTTTTCCCTGGTAATTTGTGAAATG GTCTTGACTGAGTATCAGTATCCCGCACCGAGTAGGGGGGGCTGGTTGGG GTTAGCGGTGGAGATACTGACGTGCGGAACACCTTATGAGGGTTTCGTGG ATGTGATGGTGTGTGTGAGATGGATCCCCCACGGGCTGGTGTGGGGATCT CACTTCGTGTTTCCTTCAAGAGACCAAAATCAAACCGTTTGTGTGTAGTG CCTCGGGACAAGACAGTGCGCGCGTGATTGCAGGGGACACGCACCGACAT ACAAATATTTCATATTCATCACCTGTTTTACACCCCCCCCATCGATTCTC GTTCTATAGTCCAGACAGTCATTTTTTTCCAGCGGCTACCGAATAACTCC GGAATTAATTTTGAGCGACTGACATATCCCCTGGTGACGTTCGGCATATC GTAAAAAAGCCCTGTGTCAGGCGAATCGTTTGATCGGAGCAGTTTTTTTT TTTTTTTTTTTTTGGCGAGATAATCGAGATTCCGTCGAGATTTTGGGATA TTTTGCGTGGTTTTATATGGGCTAGTGTGAACTCGATTTTTTTTTTTTAG ACCGGTTTTGGACAGCTCGCACCACGGGGCTCATGGCGAACCGACTCAGT TTTTTTTTCGCTGGGGTTTGGTCGAATAACGGGCAGAAAACCGCTTTCAG CCGGAGCTGGCGGGGTGGTTTTTTAAAGACTTTTGAACCGATAGAACACA AGAAACTCAACGGATTCGGACGATTTGGACCTGCACCCAGGCGGCAAACT TTTCCTTTTTCCCAAAAAAAATTTTTTGGGTGAGATATGGCCTCTCAAAG TTTTGGTGTTGACGTGTTTACACACAACACTCCAGAACCAGCACACGAAC ACCAACAGCAGTACACACACACACACGGGCCACGCACGTGCCCACACATG TCTGGGAAACGGGCTGGGCGCCCTCCCGGCAGCAAGAAAACCAAGCGCGG CGGCTTCCAAACAAGAACAGCTGGCCAGTTCGGCGGCAAAAAAAACTGCC GCACCACCATCTCCTGCGGCACCACCCGATCTCGACATCGAACACGACAG CGAGACACCATATCATGGAGACGAGGAGGACATCAGCAGCGGCGGTGAAC ACAGCCAAGACAGCGAATGCAGCAGTGGAAGCGAGGGAGACGTCACCTAC GATGGAACGAGCGGGCGGCAGCAGCGGCGCCTCAGAAAAAGGCGGCGAGA TAAGGAGAACAAGAGAGGGCGGCGGACGCTTTTCGATATGTGGCCATCCC TTCGGCCCAGCGCAAGCACTCCAGGCACAGCCTTGCCCGTCGAACAAGGG GAGGCGGGAGAGGTCAAGGATAACGCGCTGGTGTTCGCGATAGTGGGAGG TGATGATGGAGACGAGATGGCCGGTTGGTTTGGAGGAGAGGACATGCAAG ACGTCGATTTTCGGCGATGCGTTGACAGCAGTTCGGAGTCGGAGGGGCTG CTCTTCGGCGGATACAATGGCGACTCGGGGGATTGCACATCTTCCGAGGA GTCCGTCATGGAATGGAGCGACAGCGGGGGGATGACGCAGCCGGTCGAGG GAGCTCCAGAGGATCCGCAGGAGAAAATATCTCCTGTGCCGTCTCCAGAG TTGCTGCTGGATCCCGCCGCGCGACGATCCCGCCGCATCTTGCCCACTGC GACCGCCGCCGCAAAGCCGCCTCTGGCGCGGCCGAAGGGTGGAGACGCTG GAACGGGAAGAGGCAATAAGCTAAAGGGAACGGGAAGAGGCACCAGGAGA AAGGACAAGCGCAACAGGGCGCAGGTGAAGCTGGATAGGCGCAACAGGAG GGCCGCAAAAAGGCGCGCAGCCAGCGACTCCGCGCGGTTGGCGGCCCAAC AAGAACGAGAGAAGATTTTTGTGGAGGCGCGCGAAATCCTTGGCCCGGTG AGCAAACAGCAGTAGTCCACCCTGCACTGCTGTAGTCGTCCGTCTGGTTG TAAGGGCGGCCGCATGTAGGTATGGGTTGTCTGAGAAAAGTGTTGAAAAA ATGCGCTGCTGTTTGAACATGCTCCCTCTCCCGTCTCCCCGCTCTCTCCA TTCCGCTCTCTCCCAAGGTTGGTGTATGTGTGTGTAAGTCGTCGACTGTT AATGGATTGGTTTCGAGGAGGAAAAACATGTGCTCGGTTGCTGTTTATAT GGCTGTCTTGTGCATGTGCCTGTGCACGTCACGGTGTGCACGTGGCACAG CTGTGTTCGTGTTGTATTTTTTGTGTGTGTGATGAACACTTGCTTCGCAC CGCTGTGCATGTGTGCCTGCGAACAAAACCCACTTTTTTATTCGCTCACT ATTTAGTGCTGGTGCTCCCGCCTCTTCCGTCCCTCCCATATTTTTAGGCT CTCCGGCAGGTCCGGTTGGACAGTGTCGTGGAGAACGCAGACGAATTAGC CACACCGAAGAAGAACGGGGACGCGTTTCGGCAAGCTGCGGGCATCTACG GCTTCTTCTCGTTGGAGTGAGTATATGGTCACATGTGTTGCAGCAGTTGG AAATTGCATCAGTCTTCGCAGGATTTCGTACCGTTTCCGCAATTAGGCAT AAACCACAATGCGCGAGACCCTGACTTGTGCACGCCTTACCCCCTGTTCC CGCTGATGAACCAGGCTGGAACATGGCACCCACCCTCTGACGCACAGCGA GGTGGCCGCGCTCACGGCAGGTGTGACGGGTCGAACAGTTCGTTCGTGGG TTCGGGATTTCGTCAGAGACAGGAAGTTCAAGCTTCACGTGCGGCAGTAC AACCAACATGGCCTGCACTCACTCATCGACCACGAGGACTTGCGAGAGGA ACTGCGTGAGTGGCTGGACGACAAAATCTACCGCCGCAAGAACGGGGACC CGCAGCTTCGCGTTCGAGACTTCCAGACGTGCGTATTTGGTTGTTGTGGT TTCATGTTTGAGCTGCATGCCCACGTTTTTGGTCAGCAAATATTCCAAAG GGTCGATGTGCGTAGTCTTAGATGAGCGGCGGTGAAGCTCGGTAGATGTG TTTTCACGAACGTATATAGGCCTACCATTAAGCGGCACTCCCACCTCCGA CATTTTGCTTGCTTCCTTGGTAGACACATCAACGACACCGTCCTCAAGCC GTACAAGGAAGCGGATGAGCGAGGGATTTCCTTGAAGACAGCGCACAACT GGCTGCAGAGTCTGGGCTTTCGGTGGCGGGGCGCCACCGAAAGTGTGTCT ACGTGGATGGCCACAACAGGCCCGACGTCGTCAAGAGGAGGATGGAGTAC GTCAAGGAGATGCTGGAGTTCCTCAAGCGCTGCTGCAAGTGCGTAACCTA CTCTGTATGCTGTGCGTTATTTGCTCTATTTAGATGCTCCATTTCCCCCC TTTAAGATCCGAGGTTGCAAGCTTGATAATCATTGACCGGGTGCACGCAT GTACTTCGCCCTATTTCTGCCAGGTCAGGATGTCCGTTTTCCAGCCTCTT GACAAACACATGTGCGTGTTTATTTTGCTTGGCTCCCCGCCGTGCCCTGT AGGCTTGTCAAGGCAGGGGAGGGTTCTGGGGCCGAAGAGATTGCTCTTTG GCCGGCGGTGTGCGAGAGCGAAGGGGCCCTAGCTCATACATGCACGTTGA GCTCGAGGGTGAGTGCAGCTGGGAAAAGCAGCACAACCTCAGCACCAGCG GAAAGCTGGAGGAGATGTCGCGCGAGGAGCAGTTCGAGCTGTGGTGCACG GTGAGGGAGCGTGCTCCTGCGGTACCTCTCCCGGACGGGTTTCGCTTGCT GGAACCGAAGGAGGTGATGGAGGTGGTGTACCATGACGAGTGCGCCTACA AGCAGAACGATAGCGGGGGGGCAGCGTGGGAAAATGACGGCAAGGGCGCA GCGATGAACCCGAAGAACGAGGGGCGCCGCTGCCATGGTGTCGGACATCA TAGGCGAGGAGCGTGGGCAGCTGGACATCCCCCGCGGTGTATTCCTTCAT GAAGGACAAAGGGCAAATTCCGAAGGTGATTTTTTTTTTCTTGCTCTCCT GCGAACGAAGGAGGTAGCCATGAACACCACCTATTCTGTTTGGAACAAAC TGGGGGTGGCCAAAATCATCCGGGTGGAGTCTTTGCTAACAAACGCGTTT AATTTTCTTCAACGCTTGCGTTGGTATTGTTTCGTGGTCGTCCCGCAGGT GGAGCGCACGGACGAGGGGCCCAAGCTCTCCGGTAGTGATTTCTACCTGG GACGCTGCGCACCGAGCGAAGAGTACCCCGACGGCGTGAAGACGAAGAAG GTGACCGATGCAGTAGCGATTCTGGAGGGCGTTCTCAAGGAGCTTGGCAT CGACTGCAAGGAAGACGGCCCCAAGTACAACCTCGCGAGCTCCGCCAGGA TCCTCCTTCGCGTCGGGAAGAACCTGGACGGGTATTGGGACTGCAACCGC TTGTGCGAACAGCTTCCGGTGGGTGGAGACCGTTCTTTCTCGTATTTATT GCACCGTTATTTAGCGTCTCTGAGATTTCCTCGGGGTGCGATGGATTTTG TCGGTCGTCGGGGATTGTATCCTACCCTATACGCAGAGCGTTGTTTAGTC TGCCAAAGGCGGGCGAGCAATTCGTTTTTTTTTTTTCGAATGGACGTTTG ACCATGTGCTCTCGCTCAAAACGCTTGCTCTCCCATCAACAGGCCATATT CGCGGCTTTCGAGATCTCGAGGGAGCCAGGCCGGCAAATGCTAGCTGTCT TCGACAACTCCACAGGGCACAACGCCTTCAGCCCCGATGCCTTGAGGGCG CAGAACATCGCGGCCGGTGTCGGGGGCGAGCAGATTCCCCAAGGACTTCC AGTACGACGGCAGAACGATCTATACGACGTTCAAGTTGGGTGACAAGCTC CGCTTCGACACCAACCCCAACGCCCGAAAAGACTCAAGCAGAGATCGATG GTGAGTCGCTTCGGCAGAGAGGGCCGTTGGCACTTCCTTTTGTTTCATCA TGCAGTTGGCGGTTGGTTGTGGGCAATTGTTGTTGTCGTTTGGGTGGGGG CGTTTGGTTGGGGGCAATACTTTTGTGGCTTGAATCACTGCGGTAGTCAG TGTTTGTCGCTGTCTCGAATAAACACTCATCTCTTTATCGTGTCTGCATT CTGTTATTGTCTTCCTGATTATGATGCCGTTGAAAAAAAAGCCAAGCGGC GCAGTGGAAAGAAGCTAGGGTTTTTCAAGGTAGGAACACTCATCGAGGAG GGCGCCGACTCCGAGGTTCTGGTCGGTGTCGCGAAGGGGATGAAGGAAAT TCTGGAGGACATGAGACTCTTTCGACTGTTCGGCGAGTCGAAGGCGCCGT TGCTGGAGTGTCGAAGGTGACCACCTCGTTGGTTGTTGTTTTCTCGGGGA CGAGGTGGGGGATCGAATCACGAATTTTTTTATTGTTGGTGGACGTTTCT CATCCGCACCGATTCTGAGTAATTTGTATTTAGAGTATACTCTTCGATTA CCCACGAGATCACACATAGGTGAGTAAACACAGAAATCTCAACAAGCGCT ATTCCTATTTGCATGGGTCTCTCAACTGCTTGTCCATTAGGTGTAAAGAC GAGGCCAAGGCCAAGCGAGACAAGGCAATGATGTACAATAAGGGAGGGAG AGCCGGCAGCAGGCGCTGGAGGAGGACTACGAGCCCGAAGAAGACGGAAG CGAGGGCGGTGACGGGGGTGGAGGTTCGTCTCGCAGATGCTGCTGCCGCT GGATCATCAGCCAGGTGCAGGCCTTCAAGGAGCAAATGAACCGCGTGGAA GAACTCTTCTTGGCTGCCGGCCATGTGTGCATCTTCTTGGCGAAGTGAGT GTAAAACCCTGTGGACATCTCTACTGTCTCTACAGCAATCTAGAGTTAAG GCAACGACGACTTTGGATTTGTATACTATTTATCTGCCTCAAGGCTGCTA GGTGGATACCTAGTATATTACCCAGTAAATTTATAGGTTTTCCATTAGAT TACTCGCGCTCGAAAACGTTTCGGTGATTTACCGATGACTGCTCTGTGTG GGTCAGCTTCCGGGTGAGTATTCTGATCCGCCCGCCCTTGCTTGGTGTTT GCAGGTATCACCCGGAGTGCAATGCCATTGAGCGTTTCTGGGGTACACCA AGTGTATCGAGCGCCGCATGTGCAACTACTCCGTCAAGAGTCTGCTCGCA AGACTTCCTGTTACGCTGAGCACCGTCCCGCTGGCACTGGTTCGGAAGTG GTGCAGGGTGTCCTGGCTTTACGTCGAGGCCTACAACACCGGACTCGATG GATACCTGAAGACCAGGGACCTGACGAAGTGGACGAGCCACCGTTCCCCC ACTGACATGGCCGACAAAGTGGTGTTGGCCCGCAGCCGCGCGACAACCCC GGAGAGCCGCGCGGCCAGAGAGGGCGGCGGCTCTCGCGGCGGCGAAGGAG GCCAGACTTGAGTCTAACAAGGCTATTGATAGGATGCTGAAGAAGTTCAT CAAGGAGATGAACCCAATCTCTCTGTAGCGATAAAGGGCAGCATCGCCGC CCCAGAGATGTAATTATTGTTCAAAGTTTACCTATATAGGTTCGGCGCGT GTTGAATCGATCTATCGTTGTTGCTTGGTTGTTCGTGGTCGATCTGATGT TCGCCGGAGGGCGCGATCGTATCAATTGGGACTGGCTACACCGCAGAGAT GCCTGTGTATAATATGTAAATATACATGGGTGCGATCTATATTGCGTGAC AACACAATCATTTTCTCGAGCGGGTCAATTGCAGTCGTTCGAAGGAAATA TATCGTCATTCGGGTCAATTCTAGTGCCTCTCAGGACAATTTCAGGGGTA ATTTCAGGGGTAATTATTTCCGAAAATGGCCATTTTGACCGATTTTATTT TTGACACCGGATTTGGATTCCTCTCGTCCGTGCGGTTCATGCCCACTTTA TTTCACGTCTCAACTCACAAAATTAAGCGAGAAAAAGGGGGTCACACGTG GTGGAAAAATTTAACTGTCTAGACCCTACAATGACGCTTAGGATGTCAGA TTAGAGGTTCATCGCTCGAGGGAGGAGCAGTTTCTCTCGGGTGAACTTTC GGTATGCTCTCTGCACTTTTGCAACAACTCCAAGAGACAGCACATGCTTT GCTCCCTTCCTCCCCTGAAGCGATTCGAAGACAACGAGCGAGAGAAGGAG AGAGATAACATGGAGTGAGTTTTCTAGGCTTCGACCTGATGAAGTCAGAC GCTCGTCTACTATCGAAGGGGCGTCTTCCTTCTCCTTGATACCTGCTCCG AGTTTTCATGGATACACGAAAACCACCACGAGTAACTTGTCGAACCGTGT TCACAGAGCGCGTTCATCAAACACTCTTCTGCGTCTGCCTCTGTATCTGT TCCGCACCTCTGCCCTGCCTCCGCGCTCCCACTTGCTCGTGACCATTCCT TTCTACTTGTGCCCCTTCGTTGCTCCTTCCTGACTTCATGCCACTTTTGG TTTTGGATGGCGGGCGTCGATGAAACGAATGGCGAACACGGGCGGGGACT GTGACGGTGACTGTCGGAACCGCCGGTCGCCCTCCTCCCCCCCCCCCCCC CCCCTCCCTCCCCCCCCCCCCCTCCCTCCTCCCCCCTCCCCGTGGCACAG GTGATGGGGCAGGAGAAGAAGACGCTAAGCGGGTTCTCGTCCAAGGCCAC GGTGTCCCACGCGGGGCTGCTGTACCAGTGCGAAGCGGTGCAGGGGGCGC CACCGTACCTCCGTACCAAGGCCCTGCGAGTCGTTGCCGCTAAGGTACGA AGTTGCTTCGTTGCATTCTTTTTAGTCTTCTTGTTTTCTTTCGCCCTCGT GTTTCGAAGTCGTTCGTTGGTGCTCCATGTATGTGCTTATGCGGCGGCTG CAAGTGGTGGAGGTATGGGGTTGTCGCTGTTGGTGCAGGTTGTTGTCGGC GTTGTTGTTCTTGGCGTGGTGGTGGTAGTGATCGGGGCTCTGGTTGTACT TTGGTTGAGCGTGTCAATCTTGAGAAACCTTTGATCGTGCCGTTGGATGT GGCTTTCCACGAAAATATCCTCGAAGCTAAAGCGTGCGTGACGACAGCTG CAATCCAAAAACAAGTCTGATGACCCGTGTGTTGTATAAAAAAAAGTCGC GGATGCTCAAAATACGTCGATGAAATGTGTTTTCTACATTCAATACACGG TGAAACCCAGAAATCGAGTGTGCAAAATGCATCATCAGGTAAGCATGGCG TCGATGTTCGACAGCCACGGCGGTGTTTCAATAAATATATGTATACACGT CCTAGTGTCGCTCAGACCTGATGGCGGAAAGGTGCTCACCAGGCGAGTCT GAGATAAATGATCGACGGCAAGGGCAACAATCTTTATTTCAAACATGTAT GCCGAATCATCATTCAAGTCAATGAAGGTCGTGGCTCGATGATGGGATAT CGATCATCAGGTGAGCCTTGCGTCGAGGTTCGACAGCTACGGCAACGATC CATCGGGGCACATGGGGCGGCAGTGGAGGGCGGAGGTTGAGGACAAGATC GAGAAGTGGCAGGAGCTACAGACAGCCAAGACCAAGAAGGCGCTGCCCAA GCCAGACGACATGCCCGCCAGAAAACGCGGCGGCAAAAGGTACGGTGTCT TGTTGTTGTGTTGTTGTTGTTGTTGTTGTTGTTGTTGTACGTGTACTTGT TGTTACTGTTGTTGTACGTGTACTTGTTGTTTCTGTTGTTGTACTTGTAC TTGTTGACGTTTTATTGTTGTTGGTGCACTTGTTGAAGTTTTTGTCGGCG GCGGCGGCGGCGGCATCGTCGGCATCGTCGGCGTCGTCATTTTCTTTGCT TTGGTGGTGATGGTGGTAGTGGGGTTGGTGATGCTGTCTTGTTGCTTCAG GTGGTGGTGGTGGTTTTGCTTTTGCTGTTGCCGTTGCAGGAGGAAGTGCA TTGTGCGGCAATCGAAAACATTTTCCGTAACGGTTGGTCGGGTTCATAGT TCGGCCTTCGATGCACCGGAACTACCTTGCCTAACACTGTGTATCGTGAC GGTCTCACCTGTTCCGAGGACGGGACGACGCCCACGACGAGCACAGCCAC TTGCAGACACATAAGAAGGGGAACAACCGACTCTCTCAGGAACGTGGCCG CGCCGGACGCATCTTCAGCCGTCGCGTCTTCCTCATTTCCATTTTATGGG GCGCCGTGGATGGATCGCATATTGCGGGCATGGGCGAAAGCGATTTTATC CGCGCTGCAGAGGGCACCCGCACTATTTGATAGAACGGGAGTGATGAAGG TTTCGAGTGTATTTCATCCGCGCCGTTTGCGGCCACGGCACTATTCGAAC AATTGAGGGCCACCCACTGCAGAACAAATTCCATCGCACTCACACCGAAA CATACAGCTTCTTCCCCCTGATTGATGGACGTTTGTTTTTGCTAGGCGAG ATGTGACTTTCCGGCAGGATTCGCCAAAAATCAGATAAAGCCACTGATAT ACACGTTCTCTCCCCCTAGTCTCTGTTGTAATTTTGCTTGGTTTGTGTAA CGCTTTTTCGCGCACAGGGTGCGATCATTCAAGCAGAAGTTCGCTATGAC GGACGTGCGGAAGGAGGCCAACCGGATGGGCTTCGCCTCCATGGCCGACG AGTACAGCGACACTGCCATGGGGTTGGACTTCGGGATGCTGGGTGAGCAT CAGGCATAAGGTCGCATCCTTGGTGGCTTTTCTTTCTTTTCCTCCTCCTC CTCCTCCTCCTCCTCCTCCTCCTCCTCCTCCTCCTCCTCCTCCTCCTCCT CCTGTGCTTGTATTCGTCTCATGCTTATATCATCTCCCTGTTCCCCCCTT GTTGTATTTATCTCTCGCCTCCGTCTATCGGTACATTCCCGTGTATCTCT GTAGCCCTAGCTCGAGTCCTGCTACGTTTCCGAGCGTCGGCGGTGAATTT GTTGGGGTTACGGACATGATCCTCCATCTTGAAACGGATGCGAGATCAAT GCCAATTTTCGTTGGCAGCAGCAAATAGATACTCCCTCCCCCCCAAATGA AGCAAGCATGGGAGTTGAATCCAACAACTGCATGAAGATTCGACGATGAA GATTGGGGTGTTTTTTTTCATGGCTCTTGTTTTTGTTTTGTTTTTTCTTT TCAATTTTTTGCAAGACAAGTCATGTGTGCCGTCGGAAAGGAAAGGGAAA AGTCGAGATTGAACTGATGCTTCTCTGTTCCATCTTGGATTCTCACGCTG CAGGCAAGTCCGGTAGCGGCCGCGTCCGCGCGCCGATGAAGAAGGAAACC AAGCAGAACGTCAGCAAGAAGCTCAGGGTGGCAAACCTGAGCTCCGGACA GACGAACGGCCTCAACTCGAGTCTCGTCTTCACCCCCATCCAGGTGTGTG TGCGTGCGCGGTTGGATGAAGATACATCAAGGAGAGAGACAGAGACAGAG AAATTCGGGTCGCCCACTTCGCTTTTTCTCGCATGTTGTAATTCGATTGT CATGTTCACCCAATCTGCTTTATCATTTTCTCTCACCGTAAGGTAGTTGT ATTTCGCTGCTCTCTCTGGGTTGCCCTTGGGTGTGCTGGAATGTATCAAG AACATTGTGGTCGAGCGCCGTTCGCGAGGCACGTGTGCCGCGTAGAGCAC ATTCGAAATCCATCGTCTCTCGCGATCCATGACCTTTGTACTTATGTACA GGACGCGGCACCGGCGCCTGTTCGCTGTTGTTGTCATTTCTGAAGTCAGG CTGTTGTACTGTCCGCATCACCGGAAAATACGTCAGCTTTGTGAGGTCGA GCCACCAAGAGCTCTCGCCAACCATCCCTTCCCCCCCTTCACCCCGGAAA CTACTCCGCATGCGCGGCTACCAGAACCCCCCTTATCCTCAAAGGGCCGT ATGTAAGGATGGACATACGGATTTTCCCTCAAAAGTCATTTCAAAGACCT CGCACAGAGGAACTTTATCATGACCGTTTGCGTGTTCGTGTCTTTTCCAT GCTTTCCGCGAAACGGCAGGGCCTTGAGCTGGTGAACCCGAACGCCGATA AGGAGAAGAAGGTCATGGCGGCCAACAAGAAGTGGTTCGACTCCAGCAGC GGCTTCATGTCCGCGAAGCCAAAATAGAGACATCGTTGTGGTGTACAATG GTGACTGGCTGGCTGGCTGGCTGACTGCCACTGGTTTGTGGCGCGTGTTT TGCACCGCGCCATTTATTTGGACGTCTCGTGTACGTGTCCGCTGTCGATG TTGCGGTCGTCGCCAGCAGGAGAGTCGGGTCTGGGGGTGGAGTGGGTCGT GACGGCGATCAACGACGAAAACAGTGTGATGTAGGGAGGAGAGTGGCGAA TGGAAAATGTGGTGGTGGTCAGGGCTGAAACCCTGGCGGCGCAGTCATCC GCTCTCGTCACCCGTGTTGTCACCTCGGCGGGTGTTTTTGTGGCCACGTA CTTGTGGAGACAGGATCGCAGTGACGAAAATAAGGCGATGGCAATGGCGA TGGCCACGCGTCAGAGACGGG
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Coding sequence (CDS) from alignment at P-fluviatile_contig8:1781633..1802453-

>mRNA_P-fluviatile_contig8.14478.1 ID=mRNA_P-fluviatile_contig8.14478.1|Name=mRNA_P-fluviatile_contig8.14478.1|organism=Porterinema fluviatile SAG_2381|type=CDS|length=3192bp|location=Sequence derived from alignment at P-fluviatile_contig8:1781633..1802453- (Porterinema fluviatile SAG_2381)
ATGGCGACCTTGGCGGACAGCTTCCTGGACGATTTAGACGAGCTGGGAGA
GAGCTCAGATGACGAGACGCAACAGGAGGGCGGCGATGCCTCGGCGGCCC
GGGTTGGTGCGGCAGAAACGGGCGGGAGTGACGATATGGAGATGGCGACC
TTGGCGGACAGCTTCCTGGACGATTTAGACGAGCTGGGAGAGAGCTCAGA
TGACGAGACGCAACAGGAGGGCGGCGATGCCTCGGCGGCCCGGGTTGGTG
CGGCAGAAACGGGCGGGAGTGACGATATGGAGACGGACGAAGTTCCCACC
GGCAGAAGACGAGATAATAACACCGCAGATGGGACAGCGGCAGGGGGTGG
GAGCGCCGGCGCCGCCGCCGCGGCCGGGTGGAGGGACAACGGCGAAGCGG
CTGGTACGGCGGAGTCGGCACTGGGGCGGATAGCGGACCGCACAGTGGAT
TCGGTGGCCAAGCTTCGCAAGAGCGACCGCTTCAAGAACCAGATGACGGA
CGAAGTTCCCACCGGCAGAAGACGAGATAATAACACCGCAGATGGGACAG
CGGCAGGGGGTGGGAGCGCCGGCGCCGCCGCCGCGGCCGGGTGGAGGGAC
AACGGCGAAGCGGCTGGTACGGCGGAGTCGGCACTGGGGCGGATAGCGGA
CCGCACAGTGGATTCGGTGGCCAAGCTTCGCAAGAGCGACCGCTTCAAGA
ACCAGATGGCGGAGATAGACGAATGCCTGAAGAGGGAGCCAGCTCCGAGA
ACGGGTGCGTTGGAGGACGACCCTGAGTACAAGCTGGTCGTCAGCAGCAA
CGAGCTCATTCAGGCGGAGATAGACGAATGCCTGAAGAGGGAGCCAGCTC
CGAGAACGGGTGCGTTGGAGGACGACCCTGAGTACAAGCTGGTCGTCAGC
AGCAACGAGCTCATTCAGGACATCGACCCGGAGATGGTCGAGGTGCACCG
CTTCGTTGTGGACAGGTACTCGCAGAAGTTCCCCGAGCTCGACAGCCTCA
TCCCGCAGCCGGCGGACTATATCCGGACGGTGCAGGTCATGAAGAATGAG
ATGGACATCGACCCGGAGATGGTCGAGGTGCACCGCTTCGTTGTGGACAG
GTACTCGCAGAAGTTCCCCGAGCTCGACAGCCTCATCCCGCAGCCGGCGG
ACTATATCCGGACGGTGCAGGTCATGAAGAATGAGATGGACATGACGCAA
GTGGAGCTGGAATCCGCCTTGCCGCAAACGACGGTCATGGTCGTCAGCGT
GACCGGCTCCACCACCAGCGGCCGCCCGCTGCAGGAGGAGGACCTGCAGG
AATGCCTGAAGGACATGACGCAAGTGGAGCTGGAATCCGCCTTGCCGCAA
ACGACGGTCATGGTCGTCAGCGTGACCGGCTCCACCACCAGCGGCCGCCC
GCTGCAGGAGGAGGACCTGCAGGAATGCCTGAAGGGGTGCGAGGAGTACG
AGGCTCTAGCGGCGGCGAAGGCTTCCATCCTGGACTTCGTGGAGACGAGG
ATGCTCAGTATGGCGCCGAACGTGTGCGCCCTGGTCGGTAGCCGCATCAC
GGCCCAGCTGCTGGCGCTGACGGGCGGGCTCACGGCCATGTCCAAGACCC
CGTCCTGTAACTTGCAGGGGTGCGAGGAGTACGAGGCTCTAGCGGCGGCG
AAGGCTTCCATCCTGGACTTCGTGGAGACGAGGATGCTCAGTATGGCGCC
GAACGTGTGCGCCCTGGTCGGTAGCCGCATCACGGCCCAGCTGCTGGCGC
TGACGGGCGGGCTCACGGCCATGTCCAAGACCCCGTCCTGTAACTTGCAG
GTGATGGGGCAGGAGAAGAAGACGCTAAGCGGGTTCTCGTCCAAGGCCAC
GGTGTCCCACGCGGGGCTGCTGTACCAGTGCGAAGCGGTGCAGGGGGCGC
CACCGTACCTCCGTACCAAGGCCCTGCGAGTCGTTGCCGCTAAGGTGATG
GGGCAGGAGAAGAAGACGCTAAGCGGGTTCTCGTCCAAGGCCACGGTGTC
CCACGCGGGGCTGCTGTACCAGTGCGAAGCGGTGCAGGGGGCGCCACCGT
ACCTCCGTACCAAGGCCCTGCGAGTCGTTGCCGCTAAGGTGAGCCTTGCG
TCGAGGTTCGACAGCTACGGCAACGATCCATCGGGGCACATGGGGCGGCA
GTGGAGGGCGGAGGTTGAGGACAAGATCGAGAAGTGGCAGGAGCTACAGA
CAGCCAAGACCAAGAAGGCGCTGCCCAAGCCAGACGACATGCCCGCCAGA
AAACGCGGCGGCAAAAGGTGAGCCTTGCGTCGAGGTTCGACAGCTACGGC
AACGATCCATCGGGGCACATGGGGCGGCAGTGGAGGGCGGAGGTTGAGGA
CAAGATCGAGAAGTGGCAGGAGCTACAGACAGCCAAGACCAAGAAGGCGC
TGCCCAAGCCAGACGACATGCCCGCCAGAAAACGCGGCGGCAAAAGGGTG
CGATCATTCAAGCAGAAGTTCGCTATGACGGACGTGCGGAAGGAGGCCAA
CCGGATGGGCTTCGCCTCCATGGCCGACGAGTACAGCGACACTGCCATGG
GGTTGGACTTCGGGATGCTGGGGTGCGATCATTCAAGCAGAAGTTCGCTA
TGACGGACGTGCGGAAGGAGGCCAACCGGATGGGCTTCGCCTCCATGGCC
GACGAGTACAGCGACACTGCCATGGGGTTGGACTTCGGGATGCTGGGCAA
GTCCGGTAGCGGCCGCGTCCGCGCGCCGATGAAGAAGGAAACCAAGCAGA
ACGTCAGCAAGAAGCTCAGGGTGGCAAACCTGAGCTCCGGACAGACGAAC
GGCCTCAACTCGAGTCTCGTCTTCACCCCCATCCAGGCAAGTCCGGTAGC
GGCCGCGTCCGCGCGCCGATGAAGAAGGAAACCAAGCAGAACGTCAGCAA
GAAGCTCAGGGTGGCAAACCTGAGCTCCGGACAGACGAACGGCCTCAACT
CGAGTCTCGTCTTCACCCCCATCCAGGGCCTTGAGCTGGTGAACCCGAAC
GCCGATAAGGAGAAGAAGGTCATGGCGGCCAACAAGAAGTGGTTCGACTC
CAGCAGCGGCTTCATGTCCGCGAAGCCAAAATAGGGCCTTGAGCTGGTGA
ACCCGAACGCCGATAAGGAGAAGAAGGTCATGGCGGCCAACAAGAAGTGG
TTCGACTCCAGCAGCGGCTTCATGTCCGCGAAGCCAAAATAG
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