mRNA_P-fluviatile_contig20.4363.1 (mRNA) Porterinema fluviatile SAG_2381

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

Overview
NamemRNA_P-fluviatile_contig20.4363.1
Unique NamemRNA_P-fluviatile_contig20.4363.1
TypemRNA
OrganismPorterinema fluviatile SAG_2381 (Porterinema fluviatile SAG_2381)
Homology
BLAST of mRNA_P-fluviatile_contig20.4363.1 vs. uniprot
Match: D7FLG3_ECTSI (Uncharacterized protein n=1 Tax=Ectocarpus siliculosus TaxID=2880 RepID=D7FLG3_ECTSI)

HSP 1 Score: 449 bits (1154), Expect = 3.720e-138
Identity = 289/417 (69.30%), Postives = 309/417 (74.10%), Query Frame = 3
Query:  267 PPSPDFNSKLPAA-AFRREGEGAPDHGLHHPTGLLSPYNAAGRSLMPEQPSVAAGSLNAFLNGAYAGKPVAGSRARDGVGGS-------VRGSSIGXXXXXXXXXSVFGGADA-PLRQLIETKERELQEIHDFRIRSLEGLLEEREVALADSFARYDKLKEDFKFNLGLIEDRDLELGRYEAAVQGLKECLRDKEVEASEVKMRLDEALSVQRQATARENEQQGYWQAKCKALRDEMDGLRWAREEESRAGREWAEAQKAALTRQLREREDELEAQRADSAEAFDRIMQQRQEEMHARESELTLQLREAESRCADQARRRERAEREAVELRESSGKIRRALEAEEKVARGLRWELEDRQQIAVAESEESARKFVDLESNYESALRAGEERLREVLGSLHAVEKAFVQHKDRQRSEEQ 1490
            P  P F+SK+PA  AFR  GEGA      H  G     +A  R ++ EQPSV AGSLNAFLN AYAG P  G  A    GG               XXXXXXXXXSVFGG    PLRQLIETKEREL EIHDFR+RSLEGLLEERE  LADSFARYDKLKEDFKFNLGLIEDRD+ELGRYEAA+QGLKE LRDKEVEASEVKMRLDEAL V RQA ARENEQQGYWQAKCKALRDEMDGLRWAREEESRA RE AEAQ+AALTR                                  E ELTLQLRE ESRCADQARRRERAEREA EL+ESS K R+ALEAEEKV+RGLRWELEDRQQIA AE+EE+AR+  +LE+ YE+A+ +GEERLREVLGSLHAVEKAFVQHKDRQR EEQ
Sbjct:   54 PARPSFSSKIPATTAFR--GEGAATAVARH--GSPRCDDAGIRGVVQEQPSVVAGSLNAFLNSAYAGGPATGEAA----GGXXXXXXXRAXXXXXXXXXXXXXXXSVFGGVGGGPLRQLIETKERELHEIHDFRLRSLEGLLEEREATLADSFARYDKLKEDFKFNLGLIEDRDVELGRYEAALQGLKESLRDKEVEASEVKMRLDEALCVNRQAAARENEQQGYWQAKCKALRDEMDGLRWAREEESRASRERAEAQRAALTR----------------------------------EGELTLQLREVESRCADQARRRERAEREAAELKESSKKFRQALEAEEKVSRGLRWELEDRQQIAAAENEEAARRAGELENEYEAAVCSGEERLREVLGSLHAVEKAFVQHKDRQRLEEQ 428          
BLAST of mRNA_P-fluviatile_contig20.4363.1 vs. uniprot
Match: D0N7X4_PHYIT (Uncharacterized protein n=2 Tax=Phytophthora infestans TaxID=4787 RepID=D0N7X4_PHYIT)

HSP 1 Score: 142 bits (359), Expect = 9.540e-31
Identity = 113/336 (33.63%), Postives = 173/336 (51.49%), Query Frame = 3
Query:  585 LRQLIETKERELQEIHDFRIRSLEGLLEEREVALADSFARYDKLKEDFKFNLGLIEDRDLELGRYEAAVQGLKECLRDKEVEASEVKMRLDEALSVQRQATARENEQQGYWQAKCKALRDEMDGLRWAREEESRAGREWAEAQKAALTRQLREREDELEAQRADSAEAFDRIMQQRQEEMHARESELTLQLREAESRCADQARRRERAEREAVELRESSGKIRRALEAEEKVARGLRWELEDRQQIAVAESEESARKFVDLESNYESALRAGEERLREVLGSLHAVEKAFVQHKDRQRSEEQAFL-RKEEELRSALEACEARVAGLEQALSEGAQR 1589
            +R LI  KE+EL +I+++RIR+LE LL ++E A   +  +  KL+EDFK+NL L+E RD EL  Y+A    LK  LRD+E E SE + R  E  +  ++   R  EQ+ ++Q K K  + +++G RW  ++E R   +     +  + RQLRE+++++E QR +    FD +M+QR+ E      EL   LRE E +     R  +     A EL+  +  ++  L+  +K  + L W L D +     +  E                        E+L SLHAVEKAFVQ K +   E Q F+ RK+ E + A    EA++  L   L E  +R
Sbjct:   23 IRSLILEKEKELHDINEYRIRTLEALLRDKETAATAAKQKLSKLQEDFKYNLKLLEGRDEELALYDANFASLKNVLRDREAELSENRAREAELQAELQRMKQRTGEQEAHYQQKLKDAKAQLEGARWKFDDELRRQEDATGTLRRNIERQLREKDEDIENQRRELTVTFDDVMRQRETEFKRAIDELQGNLRELELKNKAMTRDTDAQRARAEELKTKNENLQVMLQENDKELKSLEWTLADVKAAKDVKIGEXXXXXXXXXXXXXXXXXXXXXXXAELLQSLHAVEKAFVQQKTQYDEELQQFMDRKKSEAQEASTRSEAKLEALTVRLRESEER 358          
BLAST of mRNA_P-fluviatile_contig20.4363.1 vs. uniprot
Match: A0A7S2WNF5_9STRA (Hypothetical protein n=1 Tax=labyrinthulid quahog parasite QPX TaxID=96639 RepID=A0A7S2WNF5_9STRA)

HSP 1 Score: 136 bits (343), Expect = 8.880e-29
Identity = 110/335 (32.84%), Postives = 173/335 (51.64%), Query Frame = 3
Query:  570 GADAPLRQLIETKERELQEIHDFRIRSLEGLLEEREVALADSFARYDKLKEDFKFNLGLIEDRDLELGRYEAAVQGLKECLRDKEVEASEVKMRLDEALSVQRQATARENEQQGYWQAKCKALRDEMDGLRWAREEESRAGREWAEAQKAALTRQLREREDELEAQRADSAEAFDRIMQQRQEEMHARESELTLQLREAESRCADQARRRERAEREAVELRESSGKIRRALEAEEKVARGLRWELEDRQQIAVAESEESARKFVDLESNYESALRAGEERLREVLGSLHAVEKAFVQHKDRQRSEEQAFLR-KEEELRSALEACEARVAGLEQAL 1571
            G  + LR LI+ KE+EL +I+D+RIRSLE  L E+E  L     R+ KLKEDF++NL LIEDRD EL +Y+AA   +K  +RDKE E S++K+++ E  +  ++AT + NE +GY+  K K ++  MD  +W+ E+  R  RE  + QK                     +  +D I +++  E   +  EL   +RE E++   +       E +   LRE    +  +++  EK  + L W          A   E  ++   L    +  L   E ++ ++L +LH VEK+ VQ K++  S+ QA  + K+EE R   E  E+R+  L Q L
Sbjct:   89 GTGSNLRNLIQQKEKELHDINDYRIRSLEQSLREKESQLEVQRERFSKLKEDFQYNLKLIEDRDTELTKYDAAFAQVKSVVRDKEGEVSDLKIQVAEVETQLKRATNKSNELEGYYSEKIKDMKATMDSSKWSLEDAMRRDRESFDVQKXXXXXXXXXXXXXXXXXXXXLSATYDEISRKKHLEHQRKVEELQAHVRELETKLDARGTEHGDLEDQNKTLRERVSDLEGSVQTLEKKNKSLHWXXXXXXXXXXARIAELEQETTKLSKVKQQILDEYETKMTQLLHTLHNVEKSVVQQKEQYESQLQAATQEKDEESRIKCEGFESRLLVLTQQL 423          
BLAST of mRNA_P-fluviatile_contig20.4363.1 vs. uniprot
Match: A0A1V9YBR2_9STRA (Uncharacterized protein n=1 Tax=Achlya hypogyna TaxID=1202772 RepID=A0A1V9YBR2_9STRA)

HSP 1 Score: 130 bits (328), Expect = 3.950e-27
Identity = 105/326 (32.21%), Postives = 173/326 (53.07%), Query Frame = 3
Query:  585 LRQLIETKERELQEIHDFRIRSLEGLLEEREVALADSFARYDKLKEDFKFNLGLIEDRDLELGRYEAAVQGLKECLRDKEVEASEVKMRLDEALSVQRQATARENEQQGYWQAKCKALRDEMDGLRWAREEESRAGREWAEAQKAALTRQLREREDELEAQRADSAEAFDRIMQQRQEEMHARESELTLQLREAESRCADQARRRERAEREAVELRESSGKIRRALEAEEKVARGLRWELEDRQQIAVAESEESARKFVDLESNYESALRAGEERLREVLGSLHAVEKAFVQHK----DRQRSEEQAFLRKEEELRSALEACEARV 1550
            +R LI  KE+EL +I+++RIR+LEG+L+E+E A+A    ++ KL+EDFK+NL L+E RD EL  Y+     +K  LRD+E E  E++++L +  S  +    +  EQ  ++  K K  R +++  RW+ ++  R  ++  EA K    R+LRE++++LE  R +    FD +++ R+ E  A   +L  +LRE E +     R  +  +                           +WEL D + +  A+  E     VDL+   ++ L   E ++ E+L SLHAVEKAF+Q K    D  R  +Q   RK++E++      EAR+
Sbjct:    8 IRSLILEKEKELHDINEYRIRTLEGMLKEKEAAMAGYKQKFYKLQEDFKYNLKLLEGRDEELALYDNNFATMKIVLRDRENEIGELRIQLADMTSDIKAEKQKHIEQDAFYNQKLKDARGQVEAARWSYDDAVRKQKDDFEAYKRRTERELREKDEDLEGLRREMTVTFDELLRARELEFKAATDDLQGKLRETELKAKSIGREVDTTKERNTXXXXXXXXXXXXXXXXXXXXXXXQWELSDVRGLKDAKIAELEADKVDLQQVKQALLDEYEGKMAELLQSLHAVEKAFLQQKAQFDDEVRRVQQ---RKDQEMKDHSTKFEARI 330          
BLAST of mRNA_P-fluviatile_contig20.4363.1 vs. uniprot
Match: A0A2R5GES0_9STRA (Proteasome assembly chaperone 2 n=1 Tax=Hondaea fermentalgiana TaxID=2315210 RepID=A0A2R5GES0_9STRA)

HSP 1 Score: 127 bits (318), Expect = 9.090e-26
Identity = 99/295 (33.56%), Postives = 149/295 (50.51%), Query Frame = 3
Query:  585 LRQLIETKERELQEIHDFRIRSLEGLLEEREVALADSFARYDKLKEDFKFNLGLIEDRDLELGRYEAAVQGLKECLRDKEVEASEVKMRLDEALSVQRQATARENEQQGYWQAKCKALRDEMDGLRWAREEESRAGREWAEAQKAALTRQLREREDELEAQRADSAEAFDRIMQQRQEEMHARESELTLQLREAESRCADQARRRERAEREAVELRESSGKIRRALEAEEKVARGLRWELEDRQQIAVAESEESARKFVDLESNYESALRAGEERLREVLGSLHAVEKAFVQHKD 1469
            L  LI+ K+RELQE+++FR++SLE  L  ++  L  +  ++ KL EDF +NL LI DRD EL +++ A   +KE + DKE EASE++M++D+  +    A  R  E +   + +   LR  M+G R A E   R  R   E   A L  +L+E++D+LEAQR + A  +D + +QR  +   R  EL    +E + R   Q   +               ++    +A EK  + L WELED Q++  A  E                          +L SLHAVE+AFVQ K+
Sbjct:  348 LETLIQQKQRELQEMNEFRLQSLERTLRGKDEQLRVAEEKFAKLSEDFNYNLQLIADRDAELDKFDTAFAKVKEIISDKEAEASELRMQIDDLEAQLEAAAVRARENEDAHERRLADLRTNMEGGRVALETRHRKERLALEEALAQLEHRLQEKDDDLEAQRREMAATYDELSRQRYRDYEHRIEELQNANKELQDRVKQQTEAQTXXXXXXXXXXXXXAELGAQFDASEKRCKQLVWELEDTQRLKDARIEXXXXXXXXXXXXXXXXXXXXXXXXXXLLSSLHAVEQAFVQQKE 642          
BLAST of mRNA_P-fluviatile_contig20.4363.1 vs. uniprot
Match: A0A3F2RUD4_9STRA (Uncharacterized protein n=1 Tax=Phytophthora kernoviae TaxID=325452 RepID=A0A3F2RUD4_9STRA)

HSP 1 Score: 126 bits (316), Expect = 1.280e-25
Identity = 110/345 (31.88%), Postives = 170/345 (49.28%), Query Frame = 3
Query:  585 LRQLIETKERELQEIHDFRIRSLEGLLEEREVALADSFARYDKLKEDFKFNLGLIEDRDLELGRYEAAVQGLKECLRDKEVEASEVKMRLDEALSVQRQATARENEQQGYWQAKCKALRDEMDGLRWAREEESRAGREWAEAQKAALTRQLREREDELEAQRADSAEAFDRIMQQRQEEMHARESELTLQLREAESRCADQARRRERAEREAVELRESSGKIRRALEAEEKVARGLRWELEDRQQIAVAESEESARKFVDLESNYESALRAGEERLREVLGSLHAVEKAFVQHKDRQRSEEQAFL-RKEEELRSALEACEARVAGLEQALSEGAQREEHMRNSVR 1616
            +R LI  KE+EL +I+++RIR+LE LL ++E A   +  +  KL+EDFK+NL L+E RD EL  Y+A    LK  LRD+E E SE++ R  E     ++A  R +EQ+  +Q K K  R +M+G RW                                    + +  FD +M+QR+ E      EL  ++R+ E +    AR  +     A EL+  +  +++ L+  +K A+ L W L D +    A+  E   + V L    +  L   E ++ E+L SLH+VEKAFVQ K +   E Q  + RKE E + A    EA+   L   L    +R E ++  ++
Sbjct:   22 IRSLILEKEKELHDINEYRIRTLEALLRDKETAANAAKQKLSKLQEDFKYNLKLLEGRDEELALYDANFASLKNVLRDREAELSELRAREAELQVELQRAKQRSDEQEVQYQQKLKDARAQMEGARWXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXELSVTFDDVMRQRETEFKRTTDELQAKVRDLELKNKAMARDVDAQRARAEELKTKNENLQQMLQENDKEAKSLEWTLADVRAAKDAKVGELEDEVVKLNEVKQKLLDEYESKMAELLQSLHSVEKAFVQQKAQYDEELQRHMQRKESEAQEASSRSEAKFEALATKLRTSEERVEALQAELK 366          
BLAST of mRNA_P-fluviatile_contig20.4363.1 vs. uniprot
Match: A0A8K1CMT4_PYTOL (Uncharacterized protein n=1 Tax=Pythium oligandrum TaxID=41045 RepID=A0A8K1CMT4_PYTOL)

HSP 1 Score: 123 bits (308), Expect = 1.360e-24
Identity = 98/309 (31.72%), Postives = 155/309 (50.16%), Query Frame = 3
Query:  585 LRQLIETKERELQEIHDFRIRSLEGLLEEREVALADSFARYDKLKEDFKFNLGLIEDRDLELGRYEAAVQGLKECLRDKEVEASEVKMRLDEALSVQRQATARENEQQGYWQAKCKALRDEMDGLRWAREEESRAGREWAEAQKAALTRQLREREDELEAQRADSAEAFDRIMQQRQEEMHARESELTLQLREAESRCADQARRRERAEREAVELRESSGKIRRALEAEEKVARGLRWELEDRQQIAVAESEESARKFVDLESNYESALRAGEERLREVLGSLHAVEKAFVQHKDRQRSEEQAFLRKEE 1511
            +R LI  KE+EL +I+++RIR+LE LL E+E A      +++KL+EDFK+NL L+E RD EL  Y+     LK  LRD+E E SE+K ++ +  +  +Q   R +EQ+ ++Q K K  R +M+G RW  ++E                               +    FD +M+QR+ E                 +     R  E A+    EL+     +++ L   EK A+ + W+L D +    A+  E   + + L+   +S L   E ++ E+L SLH+VEKAFVQ K +   + Q F+RK+E
Sbjct:   35 IRSLILEKEKELHDINEYRIRTLETLLREKETAAHAYKQKFNKLQEDFKYNLKLLEGRDEELALYDTNFASLKNVLRDREAEISELKAQVADLQTDVKQEQKRASEQEVFFQQKLKDARAQMEGARWNFDDELXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXEITLTFDDVMRQREAEFXXXXXXXXXXXXXXXLKVKSTTRESEMAKERCEELKMKMENMQKMLNESEKEAKAMEWQLSDVRASKDAKIAELEDEILKLQEVKQSLLDEYEGKMAELLQSLHSVEKAFVQQKAQYEDDLQRFIRKKE 343          
BLAST of mRNA_P-fluviatile_contig20.4363.1 vs. uniprot
Match: A0A662WKQ3_9STRA (Uncharacterized protein n=2 Tax=Nothophytophthora sp. Chile5 TaxID=2483409 RepID=A0A662WKQ3_9STRA)

HSP 1 Score: 122 bits (305), Expect = 2.760e-24
Identity = 106/332 (31.93%), Postives = 163/332 (49.10%), Query Frame = 3
Query:  585 LRQLIETKERELQEIHDFRIRSLEGLLEEREVALADSFARYDKLKEDFKFNLGLIEDRDLELGRYEAAVQGLKECLRDKEVEASEVKMRLDEALSVQRQATARENEQQGYWQAKCKALRDEMDGLRWAREEESRAGREWAEAQKAALTRQLREREDELEAQRADSAEAFDRIMQQRQEEMHARESELTLQLREAESRCADQARRRERAEREAVELRESSGKIRRALEAEEKVARGLRWELEDRQQIAVAESEESARKFVDLESNYESALRAGEERLREVLGSLHAVEKAFVQHKDRQRSEEQAFL-RKEEELRSALEACEARVAGLEQALSE 1577
            +R LI  KE+EL +I+++RIR+LE LL ++E A + +  +  KL+EDFK+NL L+E RD EL  Y+A    LK  LRD+E E SE++ R  E  +  ++   R  EQ   +Q K K  R +M+G RW  ++E                               +    FD +M+QR+ E      EL  + R+ E +     R  +     A EL+  +  +++ L+  +K ++ L W L D +     +  E  ++   L    +  L   E ++ E+L SL AVEKAFVQ K +   E Q    RKE EL++   A EA++  L   L E
Sbjct:   24 IRSLILEKEKELHDINEYRIRTLEALLRDKETAASGAKQQLSKLQEDFKYNLKLLEGRDEELALYDANFASLKNVLRDREAENSELRAREAELQAELQRMRQRTTEQDALFQQKLKDARAQMEGARWKFDDEXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXELTVTFDDVMRQRESEFKRVTDELQAKARDLELKHKAMTREGDAQRARAEELKLKNENLQQLLQETDKESKALEWTLADVRAAKDTKVGELEKEVAALNEVKQKLLDEYESKMAELLQSLQAVEKAFVQQKTQFDGELQRHSQRKESELQATRAANEAKLEALTTKLRE 355          
BLAST of mRNA_P-fluviatile_contig20.4363.1 vs. uniprot
Match: A0A6G0W5R1_9STRA (Uncharacterized protein n=1 Tax=Aphanomyces euteiches TaxID=100861 RepID=A0A6G0W5R1_9STRA)

HSP 1 Score: 120 bits (302), Expect = 5.190e-24
Identity = 99/323 (30.65%), Postives = 165/323 (51.08%), Query Frame = 3
Query:  585 LRQLIETKERELQEIHDFRIRSLEGLLEEREVALADSFARYDKLKEDFKFNLGLIEDRDLELGRYEAAVQGLKECLRDKEVEASEVKMRLDEALSVQRQATARENEQQGYWQAKCKALRDEMDGLRWAREEESRAGREWAEAQKAALTRQLREREDELEAQRADSAEAFDRIMQQRQEEMHARESELTLQLREAESRCADQARRRERAEREAVELRESSGKIRRALEAEEKVARGLRWELEDRQQIAVAESEESARKFVDLESNYESALRAGEERLREVLGSLHAVEKAFVQHKDRQRSEEQAFLR-KEEELRSALEACEARV 1550
            +R LI  KE+EL +I+++RIR+LEGLL+E+E  +     ++ KL+EDFK+NL L+E RD EL  Y++    LK  +RD+E E S +K++L +  S  +    + +E   Y Q K K LR  M+  RW+ +E+ R  +E                         +    FD +++QR++E      E+  + R+AE +     R  ER +    +LR    ++             L+WEL D + +   +  E     V+L+   ++ L   E ++ ++L SLHAVEKAF+  K++   + +  L+ K+EEL+      EAR+
Sbjct:    7 IRSLILEKEKELHDINEYRIRTLEGLLKEKETTMQTYKQKFYKLQEDFKYNLKLLEGRDEELAMYDSNFATLKMVVRDRESEISNLKIQLADVQSDLKTEKQKASEGDVYVQQKLKELRGAMESTRWSYDEDLRKAKEDXXXXXXXXXXXXXXXXXXXXXXXRELTVTFDEVLRQREQEFRHSHDEVAGKARDAELKVKSLGRENERLKERNNDLRRKVDELVXXXXXXXXXXXALQWELADVRALKDDKIRELEADTVELQKVKQAVLDEYEGKMADLLQSLHAVEKAFLAQKNKFEDDVKHTLQTKDEELKQNTAKLEARI 329          
BLAST of mRNA_P-fluviatile_contig20.4363.1 vs. uniprot
Match: A0A024TS95_9STRA (Uncharacterized protein n=2 Tax=Aphanomyces invadans TaxID=157072 RepID=A0A024TS95_9STRA)

HSP 1 Score: 117 bits (294), Expect = 4.950e-23
Identity = 94/323 (29.10%), Postives = 166/323 (51.39%), Query Frame = 3
Query:  585 LRQLIETKERELQEIHDFRIRSLEGLLEEREVALADSFARYDKLKEDFKFNLGLIEDRDLELGRYEAAVQGLKECLRDKEVEASEVKMRLDEALSVQRQATARENEQQGYWQAKCKALRDEMDGLRWAREEESRAGREWAEAQKAALTRQLREREDELEAQRADSAEAFDRIMQQRQEEMHARESELTLQLREAESRCADQARRRERAEREAVELRESSGKIRRALEAEEKVARGLRWELEDRQQIAVAESEESARKFVDLESNYESALRAGEERLREVLGSLHAVEKAFVQHKDRQRSE-EQAFLRKEEELRSALEACEARV 1550
            +R LI  KE+EL +I+++RIR+LEGLL+E+E A+     ++ KL++DFK+NL L+E RD EL  Y++    LK  +RD+E E SE+K++L +  +  +    + +E   Y Q K K +R  M+  RW+ +E+ R  +E                         +    FD +++QR++E  A   ++  + R+ E +     R  +  +    +LR    ++   L   +K  + L+WE+ D + +  A+  E  ++               E ++ ++L SLHAVEKAF+  K +   + ++A   KE+EL++     EAR+
Sbjct:   17 IRSLILEKEKELHDINEYRIRTLEGLLKEKEQAMQGYKQKFYKLQDDFKYNLKLLEGRDEELAMYDSNFATLKIVVRDRESEVSELKIQLADLQNDLKMEKQKGSEGDMYMQQKLKEVRGAMESTRWSYDEDMRKAKEXXXXXXXXXXXXXXXXXXXXXXXXRELTVTFDEVLRQREQEFRAAHDDVGGKARDLELKVKSMGRENDTLKERNHDLRRKVDELVDQLAESDKAQKALQWEVADVRALKEAKISELEQETXXXXXXXXXXXXEYEGKMADLLQSLHAVEKAFLAQKAQFDEDLKRAVRMKEDELKAQTAKMEARI 339          
The following BLAST results are available for this feature:
BLAST of mRNA_P-fluviatile_contig20.4363.1 vs. uniprot
Analysis Date: 2022-09-19 (Diamond blastx: OGS1.0 vs UniRef90)
Total hits: 25
Match NameE-valueIdentityDescription
D7FLG3_ECTSI3.720e-13869.30Uncharacterized protein n=1 Tax=Ectocarpus silicul... [more]
D0N7X4_PHYIT9.540e-3133.63Uncharacterized protein n=2 Tax=Phytophthora infes... [more]
A0A7S2WNF5_9STRA8.880e-2932.84Hypothetical protein n=1 Tax=labyrinthulid quahog ... [more]
A0A1V9YBR2_9STRA3.950e-2732.21Uncharacterized protein n=1 Tax=Achlya hypogyna Ta... [more]
A0A2R5GES0_9STRA9.090e-2633.56Proteasome assembly chaperone 2 n=1 Tax=Hondaea fe... [more]
A0A3F2RUD4_9STRA1.280e-2531.88Uncharacterized protein n=1 Tax=Phytophthora kerno... [more]
A0A8K1CMT4_PYTOL1.360e-2431.72Uncharacterized protein n=1 Tax=Pythium oligandrum... [more]
A0A662WKQ3_9STRA2.760e-2431.93Uncharacterized protein n=2 Tax=Nothophytophthora ... [more]
A0A6G0W5R1_9STRA5.190e-2430.65Uncharacterized protein n=1 Tax=Aphanomyces euteic... [more]
A0A024TS95_9STRA4.950e-2329.10Uncharacterized protein n=2 Tax=Aphanomyces invada... [more]

Pages

back to top
Alignments
The following features are aligned
Aligned FeatureFeature TypeAlignment Location
P-fluviatile_contig20contigP-fluviatile_contig20:1697803..1713693 -
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 score141.0
Seed ortholog evalue3.6e-30
Seed eggNOG ortholog4787.PITG_06714T0
Preferred nameCCDC57
EggNOG OGs28KF3@1,2QSW3@2759,3Q767@4776
Best tax levelPeronosporales
Best eggNOG OGNA|NA|NA
Hectar predicted targeting categoryother localisation
Exons17
Model size3619
Cds size3516
Stop0
Start1
Relationships

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

Feature NameUnique NameSpeciesTypePosition
mRNA_P-fluviatile_contig20.4363.1prot_P-fluviatile_contig20.4363.1Porterinema fluviatile SAG_2381polypeptideP-fluviatile_contig20 1697803..1713592 -


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

Feature NameUnique NameSpeciesTypePosition
1622815910.190002-CDS-P-fluviatile_contig20:1697802..16985501622815910.190002-CDS-P-fluviatile_contig20:1697802..1698550Porterinema fluviatile SAG_2381CDSP-fluviatile_contig20 1697803..1698550 -
1693563701.305338-CDS-P-fluviatile_contig20:1697802..16985501693563701.305338-CDS-P-fluviatile_contig20:1697802..1698550Porterinema fluviatile SAG_2381CDSP-fluviatile_contig20 1697803..1698550 -
1622815910.2014618-CDS-P-fluviatile_contig20:1700472..17006451622815910.2014618-CDS-P-fluviatile_contig20:1700472..1700645Porterinema fluviatile SAG_2381CDSP-fluviatile_contig20 1700473..1700645 -
1693563701.317089-CDS-P-fluviatile_contig20:1700472..17006451693563701.317089-CDS-P-fluviatile_contig20:1700472..1700645Porterinema fluviatile SAG_2381CDSP-fluviatile_contig20 1700473..1700645 -
1622815910.2166092-CDS-P-fluviatile_contig20:1701291..17014111622815910.2166092-CDS-P-fluviatile_contig20:1701291..1701411Porterinema fluviatile SAG_2381CDSP-fluviatile_contig20 1701292..1701411 -
1693563701.3263414-CDS-P-fluviatile_contig20:1701291..17014111693563701.3263414-CDS-P-fluviatile_contig20:1701291..1701411Porterinema fluviatile SAG_2381CDSP-fluviatile_contig20 1701292..1701411 -
1622815910.2309988-CDS-P-fluviatile_contig20:1702630..17027181622815910.2309988-CDS-P-fluviatile_contig20:1702630..1702718Porterinema fluviatile SAG_2381CDSP-fluviatile_contig20 1702631..1702718 -
1693563701.3368516-CDS-P-fluviatile_contig20:1702630..17027181693563701.3368516-CDS-P-fluviatile_contig20:1702630..1702718Porterinema fluviatile SAG_2381CDSP-fluviatile_contig20 1702631..1702718 -
1622815910.2429261-CDS-P-fluviatile_contig20:1703118..17032761622815910.2429261-CDS-P-fluviatile_contig20:1703118..1703276Porterinema fluviatile SAG_2381CDSP-fluviatile_contig20 1703119..1703276 -
1693563701.3461494-CDS-P-fluviatile_contig20:1703118..17032761693563701.3461494-CDS-P-fluviatile_contig20:1703118..1703276Porterinema fluviatile SAG_2381CDSP-fluviatile_contig20 1703119..1703276 -
1622815910.2560186-CDS-P-fluviatile_contig20:1703547..17037781622815910.2560186-CDS-P-fluviatile_contig20:1703547..1703778Porterinema fluviatile SAG_2381CDSP-fluviatile_contig20 1703548..1703778 -
1693563701.3568802-CDS-P-fluviatile_contig20:1703547..17037781693563701.3568802-CDS-P-fluviatile_contig20:1703547..1703778Porterinema fluviatile SAG_2381CDSP-fluviatile_contig20 1703548..1703778 -
1622815910.2692277-CDS-P-fluviatile_contig20:1704641..17047611622815910.2692277-CDS-P-fluviatile_contig20:1704641..1704761Porterinema fluviatile SAG_2381CDSP-fluviatile_contig20 1704642..1704761 -
1693563701.3667867-CDS-P-fluviatile_contig20:1704641..17047611693563701.3667867-CDS-P-fluviatile_contig20:1704641..1704761Porterinema fluviatile SAG_2381CDSP-fluviatile_contig20 1704642..1704761 -
1622815910.2821095-CDS-P-fluviatile_contig20:1705323..17054581622815910.2821095-CDS-P-fluviatile_contig20:1705323..1705458Porterinema fluviatile SAG_2381CDSP-fluviatile_contig20 1705324..1705458 -
1693563701.376548-CDS-P-fluviatile_contig20:1705323..17054581693563701.376548-CDS-P-fluviatile_contig20:1705323..1705458Porterinema fluviatile SAG_2381CDSP-fluviatile_contig20 1705324..1705458 -
1622815910.2946546-CDS-P-fluviatile_contig20:1706472..17066921622815910.2946546-CDS-P-fluviatile_contig20:1706472..1706692Porterinema fluviatile SAG_2381CDSP-fluviatile_contig20 1706473..1706692 -
1693563701.3884218-CDS-P-fluviatile_contig20:1706472..17066921693563701.3884218-CDS-P-fluviatile_contig20:1706472..1706692Porterinema fluviatile SAG_2381CDSP-fluviatile_contig20 1706473..1706692 -
1622815910.309612-CDS-P-fluviatile_contig20:1707363..17075161622815910.309612-CDS-P-fluviatile_contig20:1707363..1707516Porterinema fluviatile SAG_2381CDSP-fluviatile_contig20 1707364..1707516 -
1693563701.399604-CDS-P-fluviatile_contig20:1707363..17075161693563701.399604-CDS-P-fluviatile_contig20:1707363..1707516Porterinema fluviatile SAG_2381CDSP-fluviatile_contig20 1707364..1707516 -
1622815910.3222713-CDS-P-fluviatile_contig20:1707991..17081281622815910.3222713-CDS-P-fluviatile_contig20:1707991..1708128Porterinema fluviatile SAG_2381CDSP-fluviatile_contig20 1707992..1708128 -
1693563701.40707-CDS-P-fluviatile_contig20:1707991..17081281693563701.40707-CDS-P-fluviatile_contig20:1707991..1708128Porterinema fluviatile SAG_2381CDSP-fluviatile_contig20 1707992..1708128 -
1622815910.3327951-CDS-P-fluviatile_contig20:1708466..17086681622815910.3327951-CDS-P-fluviatile_contig20:1708466..1708668Porterinema fluviatile SAG_2381CDSP-fluviatile_contig20 1708467..1708668 -
1693563701.415072-CDS-P-fluviatile_contig20:1708466..17086681693563701.415072-CDS-P-fluviatile_contig20:1708466..1708668Porterinema fluviatile SAG_2381CDSP-fluviatile_contig20 1708467..1708668 -
1622815910.3424594-CDS-P-fluviatile_contig20:1709613..17098251622815910.3424594-CDS-P-fluviatile_contig20:1709613..1709825Porterinema fluviatile SAG_2381CDSP-fluviatile_contig20 1709614..1709825 -
1693563701.427169-CDS-P-fluviatile_contig20:1709613..17098251693563701.427169-CDS-P-fluviatile_contig20:1709613..1709825Porterinema fluviatile SAG_2381CDSP-fluviatile_contig20 1709614..1709825 -
1622815910.353464-CDS-P-fluviatile_contig20:1710218..17103171622815910.353464-CDS-P-fluviatile_contig20:1710218..1710317Porterinema fluviatile SAG_2381CDSP-fluviatile_contig20 1710219..1710317 -
1693563701.4442391-CDS-P-fluviatile_contig20:1710218..17103171693563701.4442391-CDS-P-fluviatile_contig20:1710218..1710317Porterinema fluviatile SAG_2381CDSP-fluviatile_contig20 1710219..1710317 -
1622815910.364274-CDS-P-fluviatile_contig20:1710779..17108971622815910.364274-CDS-P-fluviatile_contig20:1710779..1710897Porterinema fluviatile SAG_2381CDSP-fluviatile_contig20 1710780..1710897 -
1693563701.4541698-CDS-P-fluviatile_contig20:1710779..17108971693563701.4541698-CDS-P-fluviatile_contig20:1710779..1710897Porterinema fluviatile SAG_2381CDSP-fluviatile_contig20 1710780..1710897 -
1622815910.3778436-CDS-P-fluviatile_contig20:1712469..17125261622815910.3778436-CDS-P-fluviatile_contig20:1712469..1712526Porterinema fluviatile SAG_2381CDSP-fluviatile_contig20 1712470..1712526 -
1693563701.4624867-CDS-P-fluviatile_contig20:1712469..17125261693563701.4624867-CDS-P-fluviatile_contig20:1712469..1712526Porterinema fluviatile SAG_2381CDSP-fluviatile_contig20 1712470..1712526 -
1622815910.3885615-CDS-P-fluviatile_contig20:1713047..17135921622815910.3885615-CDS-P-fluviatile_contig20:1713047..1713592Porterinema fluviatile SAG_2381CDSP-fluviatile_contig20 1713048..1713592 -
1693563701.4706955-CDS-P-fluviatile_contig20:1713047..17135921693563701.4706955-CDS-P-fluviatile_contig20:1713047..1713592Porterinema fluviatile SAG_2381CDSP-fluviatile_contig20 1713048..1713592 -


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

Feature NameUnique NameSpeciesTypePosition
1622815910.3991313-UTR-P-fluviatile_contig20:1713592..17136931622815910.3991313-UTR-P-fluviatile_contig20:1713592..1713693Porterinema fluviatile SAG_2381UTRP-fluviatile_contig20 1713593..1713693 -
1693563701.4805686-UTR-P-fluviatile_contig20:1713592..17136931693563701.4805686-UTR-P-fluviatile_contig20:1713592..1713693Porterinema fluviatile SAG_2381UTRP-fluviatile_contig20 1713593..1713693 -


Sequences
The following sequences are available for this feature:

protein sequence of mRNA_P-fluviatile_contig20.4363.1

>prot_P-fluviatile_contig20.4363.1 ID=prot_P-fluviatile_contig20.4363.1|Name=mRNA_P-fluviatile_contig20.4363.1|organism=Porterinema fluviatile SAG_2381|type=polypeptide|length=1172bp
MLKETREVDVLKTCLKQSKHDTKRPNGLSISVAAAAGKTAAGNDSSNNDA
HMDPPPPSPDFNSKLPAAAFRREGEGAPDHGLHHPTGLLSPYNAAGRSLM
PEQPSVAAGSLNAFLNGAYAGKPVAGSRARDGVGGSVRGSSIGGGGGGGG
GGSVFGGADAPLRQLIETKERELQEIHDFRIRSLEGLLEEREVALADSFA
RYDKLKEDFKFNLGLIEDRDLELGRYEAAVQGLKECLRDKEVEASEVKMR
LDEALSVQRQATARENEQQGYWQAKCKALRDEMDGLRWAREEESRAGREW
AEAQKAALTRQLREREDELEAQRADSAEAFDRIMQQRQEEMHARESELTL
QLREAESRCADQARRRERAEREAVELRESSGKIRRALEAEEKVARGLRWE
LEDRQQIAVAESEESARKFVDLESNYESALRAGEERLREVLGSLHAVEKA
FVQHKDRQRSEEQAFLRKEEELRSALEACEARVAGLEQALSEGAQREEHM
RNSVRAAREEHSREAAALRQQAKKEESSLRKELDQAKSAAGALKDANLSL
EGTVAALTDREAALESDLREEKEESARALSEVERSLGSAGQEAAHLRGQL
AEARHAAEGIGAELEQAKRELEQIKEAARKDRRDLQGRVDALEDTLAAAA
KSASHGPAPAAPLPHTSAGKGSSPLFSEDQGLPSPVLLPPAPPPTLGSFG
KISQAAAGRHSPAPRGGAGVDGEGGAFVIPGGGATASSRGGQEEFMELQA
ANLRLRGVVADMRREMESFRDPEGAGAGSGRFGREQRLEAQNENLREELA
DLRARLEHAEGPAAIELEEEVSRLQNRCRRLSEEVDRLTGERDKLMDIGN
SLRAELNRALSNSFEHGGPNGTTAAVAAAEAEKRTVERIKEAVSRAQRET
RRKYRSRVSEVEVAFAQLAGDNRRLKARVAQLTADDGGQAAPYHFGGGDL
DLVGEHQRPRRGQSTAAAAAAGVKAKAKRPHSPSAAPSAAADAAKSAADL
AISGSTAAGSGSPWQIGGRGRGGVRGGVRGLGTAAATAAAEGVGGRRRRR
PLDREDYQDADGDDGVVAGMSVDVGAWGATYPQFGDGDGAAAAAADDDDE
SRPRQRQQQRGEQGISRSRNNLSSTDTGIGASGQRLRQRQMQSRQTDGQR
AAAMRLRAWQERRRLEEAGGTG
back to top

mRNA from alignment at P-fluviatile_contig20:1697803..1713693-

Legend: UTRpolypeptideCDS
Hold the cursor over a type above to highlight its positions in the sequence below.
>mRNA_P-fluviatile_contig20.4363.1 ID=mRNA_P-fluviatile_contig20.4363.1|Name=mRNA_P-fluviatile_contig20.4363.1|organism=Porterinema fluviatile SAG_2381|type=mRNA|length=15891bp|location=Sequence derived from alignment at P-fluviatile_contig20:1697803..1713693- (Porterinema fluviatile SAG_2381)
GCGTAGCATTGCATGGCGTCGGCCCTGCAGTGACTTCGTTCGGAGACGGC CTTGACGCCGTCGAAGCACAAATTCATGGATGTATTAAGAGTTGCACATG AATGCTGAAAGAAACTAGAGAGGTCGATGTCCTTAAGACATGTTTGAAAC AGTCAAAACACGACACCAAACGACCAAACGGCCTTTCCATATCTGTTGCG GCAGCAGCGGGGAAGACAGCAGCAGGCAACGACAGCAGTAACAACGACGC CCACATGGATCCCCCTCCCCCCTCTCCTGATTTCAATTCTAAGCTTCCCG CGGCCGCTTTCCGCCGCGAAGGAGAAGGAGCACCAGACCACGGCTTACAC CACCCGACAGGACTGCTGTCGCCGTACAACGCCGCAGGGCGGAGCCTCAT GCCAGAGCAACCTTCCGTGGCGGCCGGCTCTCTCAATGCGTTTCTAAACG GAGCGTACGCCGGTAAGCCGGTGGCCGGGAGCAGGGCTCGCGACGGCGTA GGGGGGTCCGTAAGAGGGTCGTCTATTGGCGGCGGCGGAGGCGGCGGCGG AGGCGGGTCAGTGTTCGGCGGAGCAGACGCCCCCTTGCGGCAGCTAATCG AAACAAAGGAGCGAGAGCTACAAGAGATACACGACTTCCGGATCAGGTGA TACATTGTGTAGATTCACGATCGATTGATGATGTGAAAACCGCTGTGCAG TGCTGCAGAAGCAATGTGCCGAAGGTTGTGGCCGGGATGCGAGAGAGTGC AAAGCGGCACAACCTACTTGCTGACGGAATTTGAAAGGCCATGTCGTCAA ACGTCGGCATCGGGCTGATCTCACATAATTAGCAGACGGTACTTGCGGAT AAAAGCATGCATACATTGAGAGGGAGAGAGATAAAGATATCTGTTTACAT AGAGAGAGAGAGTTGGCATTGTTATGCAGGCATTAGGGTCTTGTTCCTGA GAGCGAAAGGCTTGGCGTGATGCTTGTGTCGAAAGCCGAGGGCGGACGCA CCCCGTTGCCGTTGAACGCTTCCGTGATCAAGATAAATCTTGCCTCCTCA CCCGCACTAAAGTGCCGCCGATCCAAAAGGGCAAAGCCTTTGGGCCAACC CTAAGCCTAAGCCTAAAGATTGGAGTTCGTGTATTCACGCTTTCTTTTTT CCCTCAAACGCGGACAGATCTCTCGAGGGCCTCTTGGAGGAGCGCGAGGT CGCTCTTGCTGACTCCTTCGCAAGGTATGTACGGTCTGTCTCGTGCATTC TGTTGATGTTGATGTTGTTGTTGTTGTTGATGATGATGATGATGTTGTTG TTGTTGGGGATGATGATATTGTTGTTGCTGTTTTAGGTGGTATTGTTGTT TTTCATGTTGACGGTTGTGGTATTGGTGTTGTCGTTATCGTCGTCGTCGT CGTTTTTGTTGTTGTTGTTGTTGTTGTTGTTGTTGTTGTTGTTGTTGTTG CTGTTGTTGTTGTTGTCGTCGTCGTCGTCGTTGTTGTTGATGTTGTTCCT GTCGTTGTTGCAGGTGTTCGCGTTGCTGCTGCCGTTTTCGTCTGTTTTGT TGTTATTGTTATCGTGCCCTCCGGTCTCCGACAGCCTACCTGGAAAATAC GCTGCGAAATGTGATGTAGTGGAAAACATCTATTGAATGGTTGCTGCCAA CGGGGCGATGTGTTTGGGCCCTTGTCGCCTCTTCTGCTTAAGACGAAAAC GCTCACCTCCGTGATAGTGCAGTCCCCCCTCTCCGAGATGCGGACGCTTC AATGGTCCGTCATGCGAGGAAGTGTCCTGAAGAGTCAGAGGAAAATGACT CACCATACCTCCTGCGATACGCTTTGAGCGAGGACGACTGCATTGGAACG TACCCACGGTGGTAATGTGAGGCAGATACCGCCGTGGCAGTGTGCGCACG AGCACGTCCTTATTGGTGGCACAGAAGTGCACGAGCGCAAGCATTTCTGT ACTCGTGGCACCAGGCCATTCTCCACCATGTAACGGGCTAAGTTTAGGGT CAATCATGGGTACTCCATGGACACACCTAACTCACACCGGCGGGGGTTCA TAGGGGAAAGTATAGGGGAAAGTACAGCTCATTTCACGGGGTAGTCAGGA CACATACACACACATGGATCTCATTACATGAACTCAGCACATACATGCTT CACACGTTCACATACCGTTGATTAACGTCCCCTAGGACTAGCGTTGGACT CACAGTCTCGTTTCGTTTGGCACCAGTGGTAATTGGCTTCAGGCTCAGTT TCTTTGCTTCGTGGGCAGAGTTGAGTAAAACTCTAGGTAGTTTCGCCAAG GGATCCCAAGAAGCGGGATCCTCGACATGATTCGGGGTACCAAGGGGTTA CGTTACACACTCCTTGGATTTCCCTAGCCCTCATCGATTAACATACGAAC GACCTCACGATCGAACGATAGTTAATTGAATCATCGTATTTCTGAGACGC TGAAGCCGCCGTGACATGTGCGCTGGACATCACAAAAGGATTGTGCGCTG ACCATCTAATCCGTAGTGTGCTGCCGTGTCTGTCTTTCGCCAATTCCTCC CTCTCACGCGAAAGTTTAAGCGCTTTGTCTCAAGCTTTCTTAACCATTCT CACATACACATGAATTTGCAGACTTTCTCCCACTCTATATTTCCCTCACA AACGGTGCCGCGACGCGGAATGCAGCGCAGTACTTCCCGACCATAACGGC GCGGCGTTGATTGTGTTTGCTTCGTTCTTTTGCATGACGCGCCTTGCTTG ATGTAATGGTTTAGTGATGAGACGATGTACCAAACTTGATTGTCAGGTAC GACAAGCTCAAGGAAGATTTCAAGTTTAACCTTGGCTTGATCGAAGACCG CGACCTCGAGCTAGGGAGATACGAGGCAGCTGTCCAGGGTCTGAAGGAGT GCCTGAGAGACAAAGTGAGGAGTGACCGTATAGTTCAGGATGCAGGATAT CATGGAGAAATCATGTCACCCACTCTGACGTGCTTTTTATGACGATGAGA CAAACAGGCCGACTTGTGTGCGAAGTCCATTGACATTCAGGCCAAGCCGC GCAGCTGTCCGCCAGATCTCGCCATTGAGGCGCTACCGATGGCGTGTGTC GTGGCTCCGAGGGTACCGTGGAGTGCGAGGTGGGGAGTGGAGGCAATGCG TACTTATTTGCTGCCTACAATTAGGTTTTGTGGCAATTGCGGTGCCCCTG AGATCAACGATGCCTTTTTCGAGACGGAGCGTCTTTCCTCTCAGCTCCCC CGTAGAGGCACTGCCAAAATGTGGGCGTTGCCCTCATATATTTTTCGTCA TCTTCCCTATCGCTTGCCTGCTGTCTTGTGGCACCCCCTTCTCAACGGGG GCCTGTTGGGGTGGGGGGGGGTACAGGAGGTGGAGGCTAGTGAGGTCAAG ATGCGGCTTGATGAGGCTCTGAGTGTGCAAAGGCAGGCGACGGCGAGGGA GAACGAGCAGCAGGGATATTGGCAGGTAGTTTTCATTCCGATGTGTAGAA TGCGATTTCCAGCGCAATAACCCTTGAGTTTGCATTTGCACAATGCAACA TCATTCGTGTACAATGTTCCGGCCTCTACTTGCCGCAATCAGCTGCCGCC TGAAACCAGTGGTGTGTGCGCATCGAGTTTTTCCTTCTGTTTGTTTACGT TCAGCGCGCTGTGCGCCATGTTCGAACCTCGAGACCCAACCCCACGAGCG GGAAGCCGGGACTGGTTCCGAACCACAGGCGGAATTTCACATGCACGCCT CTTCTAATTGCTCAATCGCTTCACCCTCATTGCTCACCGCAGCTAATCTC CCGCTGCCGCTGCAGCCGCTGTCCGGTTGCTATGCTTTGACCGACGCTGC CGTCCACGCATACTTCAGGCCAAGTGCAAGGCTCTGCGCGACGAGATGGA CGGGCTAAGGTGGGCCCGGGAGGAGGAGTCGAGGGCTGGCAGGGAGTGGG CGGAGGCGCAGAAGGCGGCGCTCACGCGGCAGCTGAGGGAGAGGGAGGAT GAGCTCGAGGCGCAGAGGGCGGACTCCGCGGAGGCATTTGATAGGATCAT GCAGCAGCGGCAGGAGGAGATGCATGCCAGGTGGGCGGGGAAAGTGATTT GTGGCAGTGGTGGTGGTGATTTTTCGTATTGGTGGTGGTGGTGGCGTGGT GATGGTAAGGGTGATGCTGGTGTTGTTGTCGATGTTATTGTTGTTGTTGT TGTTGTTGTTGTTGTTGGTGGTGGTGGTGGTGGTGGTGGTGGTGGTGGTG GTGGTGGTGGTCGTGGTGGTGGTCGTGGTGGTGGTCGTGGTGGTGGTGGA GGTGGCGGGTTCTACAACAGTTTTTTCAACCCTGCTCCGCAGGATACTAC GGCGATGACGTAGAGCGCGCCCAATTCGTTGGGAGAACTAGCCGGGAACA AGGCCAGCGATCGCGGTTTCGAGGGCGATGCGTCGCTTTCAAGTCGATCG TCTCAGACGAAGCTTTTTTGCACACTAGAAAGAGTGCAACCCCCCCTGCG CACATCCTACTTGAACGGCAGCCCCCGTCTACATTCCCCCGATATCGATT CGCAGTACATGCGCGCGCTCTTGATTCTCAAGCCGTGGTTCCCAGCCACA ACTTGTATGTTTGGCCTACATAAGCACGCTCGAGTTCGATAAGCGTTCGG GTGAAGATGTAGATGTGGAGGTAAAACCTCGTTGGACAGTTTTTCTAGCG GCAGGTTCCCCTACAAAACCTGTTCATTCTCGTGCGATCCCTTCGCACCC TCCGCCTCGTTCCCTTCCCGTCCCTGGCCAGAAGTCACCGCATCATGGAG TAGGGGGGCCTGTGCAGTGCGGGGGTGGGACGGGAACGCTCATCCGCACT TTAGCAAGCACCCGCACTATTCAGAAGTGGGTATTTAATTCCTAGAGTTA AGTGTGTGAGAGGCTTCATGCAAACTGATTTCACCCACAATTTAGCGAGC ACCCGCACTATTTGGGGGCCCCCACTGTACCTTGTTTCGACTTCCTCCCG TCTCCTTACCTCTCTCTCTTGGCAGGGAGTCTGAGCTGACCCTCCAGCTA CGGGAGGCGGAGTCAAGGTGCGCCGACCAGGCGCGGCGACGCGAAAGGGC AGAGCGAGAGGCGGTGGAGCTCAGAGAATCTTCCGGGAAAATTCGCCGGG CCTTAGAAGCGGAAGAGAAGGTCGCGCGGGGCCTTCGGTGGGAGCTGGAG GACCGGCAACAGATAGCAGTGGCCGAGGTGGGTCGCGGCGTGGTTGTTTT TGCATGCTGAGGCCGTTGATTCAGTCAGTGCTGTTGGCTAGGTCGGGTAC CATTATCAGCTTGTTATTTTGTTTGTTTTTTTGGCAGTAAAATTTTTGCA GCAATGGATTGTCTAGCCGATTCGTGAATCTCGCATTCTTTGGTTATCCG GCGTACTTGCCCAATGATCTCCTTGTCCGTTGTTGCTTGCTTGTCTATTG CCGTGTTTACTTGCTTGAGAGCTCACCAGCTTCATCGCTCGTTTGTTGCT CGTTCATGTGTTCGTTTTTCGTCTGTTGTTTCATTATAATTTCTTAATGT TTTCTCTCTTTTTAGAGCGAGGAGTCGGCCAGGAAGTTCGTTGATCTCGA GAGTAACTACGAGTCCGCCTTACGGGCCGGGGAGGAGAGGCTTCGGGAGG TGCTGGGGTCCCTCCACGCCGTTGAAAAGGCGTTCGTGCAGCACAAAGAC AGGTTGGTAGGTGGGGTAGGGAAGATCACGTGCAAGGGAGGGAGGAAGGG AGCGTTGTTGAATGTGGGGGACAAAGGCGTTCGTACAGGTAGTCTTGAAC GAGGAGGTGCAATAGAGGGAGGGAGAGGAGCAGGGGCGGAGGGTGGTCGG GGGGGAAGGAGGTGGTATTGCCTGCGGGTTATTCTAAAGCTGACAATGGC GGTAGGAAGTTACACTCCAGGGTTGGCGCAGGCAATCGAAGCGGAGGGAA CGCTGTGCGGATTTGATTATTGATCCAGCCGTCAGCCGGGCATTCTTCTG CACCACTGCTCCGTCGTGTTTCCTGAACACCAATTGGACCGTCGCCGCCA CCTTCCCCCCTCCCCTTCATGAGCCCCGTCCCCCACATCCTCGTACCCCG GCTGCAGCCCCGGCAACCTTTAACCCCCCGCCCCACTTATCGCACCCGCC GACCCCACTCGGCCGAACAATCGGCAGGCAAAGGTCGGAGGAGCAGGCGT TTCTGCGAAAGGAAGAGGAGCTGAGGTCCGCGCTTGAGGCCTGCGAGGCG AGGGTGGCTGGGCTCGAGCAGGCGCTGTCGGAGGGGGCCCAGAGAGAAGA GCACATGCGGAACTCCGTGCGCGCCGCGAGGTCAGGGAGTATCTCAAGGG AAGGGGCCGACTTTGAGCGGCCGGAGGGCAATTGCTTTTGTGGTTGCTTA ACACCTGGTATGCAGTCGGGTTTTTTTTTTTTTCCTGTTTCGTGCCTTCG TCCTGTTCATTGAGAGTGTGCGCGTACGGCCGTCGAATACCGAGGACGAG AGCTCGTTGCTAAAGTTTCTTTTCCTACGTTGTTTGTTGCTGTTGTTTTT CGCGTTGTTCTTGTTCGGGTTCTTGATGTTGCTGTTGTTGTTGTTGTCGT TGTTGTCTTTGATTTTAAGCCCTGCGTGCCATGGCTTGTGACACACGGAA AATACCCACTCTTTAAGTGCAAAGAACAGAACATATGTCTGGTGTTCCCG GCGAAGAACTTGAGATCCACGGGGCTGTTCCCAGGTGGCGTGTATGTGAC GGGGTAGGAAAGATGCTGCAACCCCATCAATTGCGCCCGTAACTTAAAGT TAACGAACAACGAACAACGAACAAGACTCAAAGTGCATCTAAGGGAAGAA GCCAACACGCAGTGGCACTCACGGAGCCCCCTTCCTTCGCTCCTTACTTC ACCTTCCCCACGCTTCGAAAAATATAAGAGCATGAATAGACGCGTTAATT GAAAACTTTCTCATTAACACACGGACCCCCCCCCCCCCAAAAACAATGCA GAGAGGAGCACAGCAGGGAAGCCGCCGCCCTCCGCCAGCAGGCGAAGAAA GAAGAGTCGTCCCTTCGGAAGGAACTGGACCAGGCCAAGAGCGCCGCGGG GGCGCTGAAGGACGCGAATCTCTCCCTCGAGGGCACGGTCGCGGCTTTGA CGGATAGGGAGGCGGCCCTCGAGAGCGACCTCCGCGAGGAGAAGGAGGAG AGCGCGAGGGCGCTCAGTGAGGTAGAGATTGCCGGGTGAAGGGGGGTGGA CGGGGGAGGGCAGTCACGGTCTCGCGTGCTGTGATGAAAACGAAGACGAA ATCAGTGAGGGCTGTATTGGGTAGGCGAGGGCCATCCTGCCAGCAAGTCG GGGGTTGAGGTTGTAGCCGGAGCTCGGACCGGTAGCGCTTTTTGTTGAGG TGGCTGCTGTCGTTCTGTTGTTGTTGTTGTTGTTGCTTGTCTTCCTCGAG TCGTCATCGTCATCGTCTCCGTCGTCGTCGGTATTGCTATTGCTATTTTT TTTGTTGCGGTTGTTGTTATTGTTGTTGCACTGTTATTGCTGCTGCCGCC ACTGCGACGCGGGTAGCAGGTCGTGGCGCTACTGTTGGCGACAACGACGC CAACGTGCCTTGGGATGCATGACTCAACTGGGGACAAAAATTCTGTGCTA GCTGGCGGCATGGCACCTGGGTGGGGCTTGCAGAGTTGTCGGGGCAAATC TTTGGCTTGAGATTTGACAATGATGCAAGGGCACTTGTCGATATGACTGC ACATTCACTTGCGAAACACACACGCACCGATTGGAGGCTTTGTAGAGCCG ACCGCGGCTGACCCTGCTACCAAGAGTTTCGGCAAAGCGCATCTATGCGC CGCTGACTGGCCGGCGAATCTAGTCGCGACGGCGTATTTGATGCCGTCCA AACGACGGCGCGAAGCAGCGCCACGGCCAAGTCGGAGACTTCCCAATCGT CGCCGATGGCAGCGGCGGCGGCGGCGGCAGCAGCGGCGGCTGGAGTGCAC GGGGCATACATTCAAATCACGACACGCGCCCGCCGAAATTCGCAATGGTC AACGGCGTCTTGATCACAAGAAAACCTCTGAGTTTTGTCACCCCTTCTCT CGCTCTCGCGGCACGTTTTGTTGCTTTGAAATTCTGCTAACATGCTCGTG CTTGCCGCCGCCGTCACGCTCGCAATGATTGCGCATCCCGGCGCGCTCCC ACGGCGCTCCGCGGCACGACTCGCAAACCGTCCAGGTCGAGCGATCCCTG GGCTCGGCAGGGCAGGAGGCCGCGCATCTGCGGGGACAGCTGGCAGAGGC GAGACATGCGGCGGAGGGCATCGGCGCGGAGTTGGAGCAGGCGAAGCGGG AGCTCGAGCAGATCAAGGAGGTTGGTATAGGCTCGTCAGTTTTGTTCGCT CGTTGCTAACAGTCCAGTTGTTGTTGTTATTGTCATTGTTGTTGTCATTG TTATTGTTGTTGTTGTTGTTGTTGATGATGATGATGATGATGATGATGAT GTTGTTGTTGTTTATAATGACGGTGGTGGTGGCGGTGATGATGATGGTGG TGGTGGTGATGGTGGTGGTGGTGGCGCTGTTGTTGTTGCTGTTGTCGTTG ATGATGATGTTGGTTGATGCAATTGTAGGTGGTGTTGGTGTTGGAGTTGT TCATGTTGACAGCGGTGGTATTGTTGTTGCTGCTGCTGCTGCTGCTGTTG TTGTTGTGGATGATGATGATGATGATGATGATGTTGCTGCTGCTGCTGCT GCTGCTGCTGCTGCTGCTTTTTCGTCGGAGGTATCTGGTAAAGCGTCCAT CGTGCGTTGTATTCATTTCTGCCTTGTCAATGCAGTTGCTGGCACTTCAC GTGAAGGCGAACCACCAGCAACAACAGTCTCCCACCAAACACCGTTTGCT CTGGCCTTCCCCCCTCCACTTAACTCACCCAGGCCGCCCGGAAAGACCGT CGTGATCTTCAAGGCCGGGTGGACGCTCTTGAAGACACCTTAGCGGCTGC GGCGAAGAGCGCCTCGCACGGGCCCGCCCCGGCTGCCCCTCTCCCCCACA CGGTGCGTTCGTGCTTTTTGTCGCCTGCGAAATGACTAATTGCCGAAAGA GCACGACAGCCTGTGGATGTGGCCAAAGGCGGGTGGCAACTTGTTTCGCG CCTTGTGTTTGTGTGCCTGAGATTGTGTTTCTGTGGTTGGATTTTCTTTG TTTCCGTTTTTTTATCTTTTTTTTCTCTTTTTTTTTTTTTTTTTCTTTTT TTTTTTTTTTTTTTTTCTCTGCAAATTGCCATCGGAAGAAATGCCTATCC ACAATGGCGCATAGCGATCAATGTCAGGTTACACTTCAGAATCTTAGGCA AGCAATGGTCCCCTCACATTTTCTGCGTGGAGAGTGCGGCAGGGGGCCCA ATATTAGGCGGTTTGAGAAAGGCGATTGCCCGGATGTGAGGCGGGTGGAA TCGCTTCGCATGAAAGTTGACGCACATTCTGAAATCTACCAGGTATCCGA CAGGATTCCCATTCTGCATAAGGCGGTTGCCCGGTATACGGCGGTAGTTT GCAGATGCCCCCCGCCGCTTATTAGCGGGCGCCCCACTGTACCAGCATGG TTGACAGGAAGAGAGGCACGTTCCTGCTCATATTTTTTCTTCAGCAAACT TTCAACAGCTATTTTTTTTTTTTATTTGTTTGTGTCAAGGTTTACCTCTT TTTGGGTACGTTAGTCGTGATCACGGAATTCTTCTACGGAGCGACTGTTA ATGTTTAGAAAACAACAACCCGAGTGTGTCGTTTGTCGCTTTCTTCGGTT CGTTTTCATTTTTCGATTTTATTTGTGTTTTGTTGTTCGTTTCCGTTTTC GTTTTGATGCGGCTCGCCTTCACGTGGCGCCAACCAAACGCGACTCGAAC TCGATCAAATCGCAGTCAGCGGGAAAGGGCAGCAGCCCGCTTTTCTCCGA AGACCAGGGGCTCCCGTCTCCGGTCCTGCTGCCCCCTGCGCCACCTCCCA CGCTCGGTAGTTTCGGAAAAATCTCCCAGGCCGCCGCCGGGCGTCACTCG CCGGCTCCGCGTGGGGGTGCGGGCGTCGATGGGGAGGGAGGGGCGTTCGT GATCCCCGGCGGGGGCGCTACTGCAAGTAGTCGAGGGGGGCAGGAGGTGA GAGGGGAGGCCGGGGGGTCTTGTGGGAAGAAATATACCGTCCCAGGACAT GCTTGCAATAGCTGTGGCTTTTCGTGCTTCTTAAGTTTTTGAAGGGTCGA TTGCTAACAAGGGTTGCGCGCCGTGACAGCAGCTCGTTTTTCTGCAACAG TGTCCACGCCCGTCCCCCCCTCCGTTCCGTTTCCCCACCCGAGTTCATTT TCCTCGCGTTGTGGTTCCACAAACCTCTCACTCACGGTCTCCCCCGTCTT GTTGCATTGTTGTTAAGGAGTTCATGGAGCTCCAGGCGGCCAACCTCAGG CTCCGAGGGGTGGTGGCCGATATGCGCAGGGAGATGGAGTCCTTCAGGGA CCCCGAGGGGGCCGGGGCGGGCAGCGGAAGGTTTGGGCGGGAGCAGCGGC TGGAGGCGCAGAACGAGAACCTCAGGTTAGAAAAACGAATTTTATGCATA GAAGCACCCATTTCATAAGCATATCCGTGCGAATTCTGAATGCTGGACTC GGACACATCTATCTACGCGTGTTCCCAGCTTATCTTACTTTTCATGTGCT GGCGGTTTCGAGTTGTACCGGCACAACCTTTGGCCCACGCCGTTGTCGCA CGACAGGCAGCGTGCGTTCGGTTCGGGAGTTTGTCTGGCCTCTGCATGTC TTGCATTGACTACCCCGAGATCAGCAACATGCTTCCACGATCCCACGGGC GGGATACATAGTTTGCTGTTGTTGCTGTTGTTGTTGTTGTTGTGACCGGT CATGCTATTGCGTTCGACAATGGGTTCCTTCACTGCGTTCTGCGCTGCGC GGTGCCCGGTGCCCTGCGATTCCAGGGAAGAACTTGCTGACCTGCGGGCA CGTCTGGAACACGCGGAAGGGCCGGCAGCCATTGAGCTGGAGGAGGAGGT GTCTCGGCTTCAGGTTAGACTTGACAGTCCCGTCGTGTCTGTTGTTGATG GTGTTGTTTGTTGTTGCTGTTCTTCCGCTGCTGCTGCTGCTGCTGCCGCT GCTGCTGATGTTTGTTTTTTTGTTGTTCGTGTTGTTGTTGTTGATGGTGT TGTTGCTGCTGCTGCTGCCGCTGCTGCTGCTGCTGCTGCTGATGTTTGTT TTTTTGTTGTTCGTGTTGTTGTTGTTGATGGCGTTGTTGCTGCTGCTGCC GCCGCTGCTGCTGCTCCTATTCTTGTCGTCGCGACTGTTGTCTTTTCCGG TTATGGCTAGCGTTGCCGTTATTGTCGTCGTTGCTTTCGCGTGTTTTTGT TCCTGCTGCGGCGATCATTTCTCGTCGCTCTGCGTGCTGCGCTCATTCCC CGCCGGCCGGCTTCATGCACCCGATTGATATTCTGGGCGTGCTTCGAAAG AGTGTGTGTTAGTGTTTGTCCACTATCTTTGCGCCGTCGGTCTTGTTTCC AAATTAACCGCCTTCATAGTCGAGCTTGCCGCCTGTTGGACACAATGTCG AGTTGTGCTTGCGTTCTTCTTCTCAACCGGCGGTTTTTCCTTCGCAACAA GGTGATTTGAAATCTGTTTTCGAATCTGTTGACTACACCAGCATTGGTGA ATCTTGAAAACATTGAGCCATTTCGTCCGATCAAAGACATGAGAAAATGC ACTTCGTGCACCTCTCGCCCTTGCTTTTCACCCCACTTGCGATATCTGAA ATCGCTTCGTCTCCTTTCCCACGAATTGGTTCACTTGAAGTTGTTTAATG GTTTACTACTTTAATACCAAATACCACTTCTCGAATTTTCTCTGTTTTCC CCACGGGAAATACCGGACCTCTCGTCTCAACCACAATTTTCCCACAAATT TGTTCACTTGCAAAACCATCGATCCTATCCTTACTTCCTTGCCGTTCTTC CTGACGCCACACGCTACGCTCCACATGAATGACCGTCCGCCCTGTCCGTC TACATGGCGTGGAACATATCTTGTACCTCTTGCCCTTGCTTTGCGTTTCG ACCCACGTCAGGAATTGGTCTCTTGGTCGCTTTCCTCGACGAGTTTGTTC ACCCGGAGTTCTCCAGTGCGTTACAAAATTCGATGCTGTTGCCGGTTCTC GTTATTTCCCCCCCCCCTCGCCATTCACCACGCCCCGAAAACGGCCGCCC GCCCGGCCGCCCTCTGCGCGACAACGACGTAGAATCGGTGCCGTAGGCTG TCCGAGGAAGTGGACAGACTCACCGGCGAACGGGACAAACTCATGGACAT CGGGAACAGCCTCAGAGCAGAGCTCAATCGAGCGTTGTCCAACAGCTTCG AGGTGAGCTGATGCTGGCGCCCGCGAGGCCGTCGCAGATTTTTGGGGTTT TCTTTTTGTAACTGCTTTCCAATCACATGTTAGGCGATGAGTTTGATTGA AGAGAAGAACAAGCACCCCCTCAACCACAAGTTCGGACGCCGGTTATCAC AACAGCAGGCAAAGACAACGCACGTATTTCGTTCCGCGATGCTGCGAAAG TTTTTTCGAGCTCCGTGTGCGAAAATGCGAGCTCGGCCACCACGCCGCCG TCCACCACCTCTTGAGGTACACCGTTGTCGATGGTTTCCGATTTTGTGCA TGTAGGCCGCTTGTTGGCGAAACCGAAACAGCATGCTCAAGCTTTCATGT TTTCTCAGCGCGTGTACTTTGGTATGCCGACGACAATGGTGCTGGAGTGA TGAAGTGGTGAATTCTGCTTTATTTTCGCGTGTCCTTGAGGGCACACCCT GCATCAAGACCACGAGTTCCGCCGCAGCTCGAGGGTAGTGCCGGCTTACA ACTTTGGAAGGCCTTCGTTCACGAACGGGTTTGCTTTTGTGGGGAATGGG TGTGTAATACTTTTTGTCTTGATCCCGTCCCTCCCAAACCACCAACCCAA ACATCCGGCGTGCCCACGCCCCCCCTCCCCGCTCTCCAAACACGAAAGCA CGGTGGCCCAAACGGAACGACGGCGGCGGTGGCGGCGGCGGAGGCGGAAA AGCGCACGGTGGAGAGAATAAAAGAGGCGGTGTCGCGAGCGCAAAGGGAA ACGCGGCGGAAGTACCGGAGCAGGGTCTCCGAGGTGGAGGTCGCTTTTGC GCAGCTCGCCGGCGACAACAGGTGAGGGAGGGGTCTATGCCGCTTGGAGT ATGAATAGGTGGGGGCGGCTCAGCTATTGTCCCGTCCTGGGTACTTTGAA TCAAGAGGGGAGGGAGGGTTCCTGTGGCTTGGAAATGAGGGGAGGGGGGG AAGGGGCACATGACTTGAACGGGGGAGGAGAGGATAAACTGAACAGAGCG ACGTGCGTGTCGCGCGATGTGAGCTGAGAGCGTTGTGCGCGGTGGAAGGT CCCGATAGTGCACGGTAGACTCACGTGGGTTTGTTTTTAATCGTATGATT GAAAGAGCCCTCGGGTTGTGGAGTCACGACCTATTGCCACCGAAAAATTC GCTTCTTGCTTGTACGAAGTCATAGGCAAGCATGCGGTTCACTTAACCAA ACGAAAAACGGCGTGCAGTGGGGGACCCCTCACAGTGCGGGTGGGGGACA GGTGATTTTATCCGCACTACAGCGGGCACCCACACTATGTAGGATTGGGC GTGGATAACACAGGACCCGCACTATTCAGGGTATCAATCCCGGAATAGCG CGGGATCCGCACTATTTCAGGTGTATTGCCCCTCGTTGTGGTAGGCCATG CCTGGCTGCAACCCCAAGCAGTACGGCGGAGATACACGGTTCATCCAGAA GCCTGTGCGTCTCCCCCAACCACCCCTGTGAAGGTGCGGCGGTTATGTAT TTGCATTGCATCCGCAATGTATGCTTGGCACGTGGCCGCAAGGCGACTTG TATCCCATGTCTGGTAATGATGGATCGTGTCTCATTTTCCGCCATCACAA AATGTTTCGTGTGGTCCGAAGAGCTTGCGAAAGAAGGAAACGAAAGGGTA GGGGTACTAGACAGCACGGAGGGAGGCCAAGACAACGCCGAGGAGGGTGT TGTCCACGGTGACCACAAAGTAGGCCAGGTGCACAGAAGTAGAAGGAATC GGAAAGGAACACAGAAACACGTAGGCAGAACTAAGACGGGGCCACGCTCC AGAGCAAATACAAGGGGGAAGCAGAAAGATGCAGCGTTTTGTCTCAAGCC CCGTCCCTCACCCCCCCCCCCACAACGCCAAATACGTTTGTACTCCAGCT GCGTTCACCGATGTACGCACATGAACAGACCTCGGTGCCCTCAGCACGTG AACTCAGAATGGATTGGCGCCATTTCCCATGGAAAGCAACCAACCAATAG ATAGGTGATGTGTGCCGCGGTTGTGAACGAGGGGGTTCAACCGTTGTTGT GGCATGTGACCCGCACGATGACGGGATCTGTCTATGCCAAGAGATTTCAC CCTCACTACTCTACATCTGCAGCACGCACTCTTTAGCCCGCACTATGCCG GGCCCCCCACTGTATGTTGTCCTCAACTTTCTGATGGGCCTCTCTGTTCG CAAGCTGACTCGGTGGGTACCATGCGGGGGGCCCAGGGGAGATTATTGAT GTGGGAGGAAGGGTCCACGCTGACCTAGCCTATGCTATCGCGTGGCATCG CCGAGACTTTTGTGTCTGTTGTGTGTAGCTTGGTGTGGGAGGATGGATCC ACGCCGATCTAGCCTGTGCTACCGCGAGACATCGCCGAAGCTTGTATGTC TGTTGCGTGTTTCTTGGTTTGTTGCAAGTACCGAGGGTATGATCGCTGAA AGTGCTGCGTCGAGATGGCACAGATACTTGAATTTTTATCACGCCTTCGC CACCTCATCAACCTCCCAATCGCCCACATCACCGCCTTCATTCCTTCGCC AGTTGTGTTGGCCGGCAACAGTAATCCCTGCGTCTCAAGCCCCCACTCGC TTTACCGTACCTTGCCTTGATTTTTCTCGCCTCTCCTTGCGCCATTCTTC GCCCTGGTGCGCCGTTCTTCGCCCTGGTTCGCCGTTCTTCCCCCTGGTGC GCCGTTCGTCGCCTTGTCCACACCCCTTTTGGCGTCGCTCAAGGAGACTG AAGGCGAGGGTGGCGCAGCTGACGGCAGACGATGGCGGCCAGGCAGCACC GTACCATTTTGGCGGGGGCGACCTCGACCTGGTCGGCGAGCATCAACGGC CACGACGCGGACAATCGACGGCCGCCGCCGCCGCCGCGGGAGTGAAGGCG AAGGCGAAGCGTCCCCATTCTCCTTCGGCAGCGCCGTCGGCTGCTGCCGA CGCCGCCAAATCTGCCGCCGACCTAGCTATCTCGGGTAGTACGGCCGCCG GAAGCGGCAGCCCATGGCAGATTGGTGGACGCGGTCGCGGCGGCGTCCGC GGTGGCGTCCGTGGCTTGGGGACGGCGGCGGCGACAGCGGCGGCTGAGGG CGTGGGAGGGCGGCGGCGGCGGAGACCGCTAGACCGAGAAGACTACCAGG ACGCTGACGGCGACGATGGTGTTGTTGCTGGCATGAGTGTCGATGTCGGC GCTTGGGGTGCTACATACCCACAGTTCGGCGATGGCGACGGTGCCGCTGC CGCAGCTGCCGACGACGACGACGAGTCGCGCCCCCGGCAGCGGCAGCAGC AGAGGGGCGAGCAAGGGATATCGCGGAGCCGGAATAACTTGAGTAGCACC GACACGGGCATAGGCGCGAGCGGGCAACGGCTGAGGCAGAGGCAGATGCA AAGCAGGCAGACTGACGGGCAGCGGGCGGCGGCCATGCGCTTGAGGGCTT GGCAGGAGCGGAGGAGGCTGGAAGAAGCCGGGGGCACGGGC
back to top

Coding sequence (CDS) from alignment at P-fluviatile_contig20:1697803..1713693-

>mRNA_P-fluviatile_contig20.4363.1 ID=mRNA_P-fluviatile_contig20.4363.1|Name=mRNA_P-fluviatile_contig20.4363.1|organism=Porterinema fluviatile SAG_2381|type=CDS|length=7032bp|location=Sequence derived from alignment at P-fluviatile_contig20:1697803..1713693- (Porterinema fluviatile SAG_2381)
ATGCTGAAAGAAACTAGAGAGGTCGATGTCCTTAAGACATGTTTGAAACA
GTCAAAACACGACACCAAACGACCAAACGGCCTTTCCATATCTGTTGCGG
CAGCAGCGGGGAAGACAGCAGCAGGCAACGACAGCAGTAACAACGACGCC
CACATGGATCCCCCTCCCCCCTCTCCTGATTTCAATTCTAAGCTTCCCGC
GGCCGCTTTCCGCCGCGAAGGAGAAGGAGCACCAGACCACGGCTTACACC
ACCCGACAGGACTGCTGTCGCCGTACAACGCCGCAGGGCGGAGCCTCATG
CCAGAGCAACCTTCCGTGGCGGCCGGCTCTCTCAATGCGTTTCTAAACGG
AGCGTACGCCGGTAAGCCGGTGGCCGGGAGCAGGGCTCGCGACGGCGTAG
GGGGGTCCGTAAGAGGGTCGTCTATTGGCGGCGGCGGAGGCGGCGGCGGA
GGCGGGTCAGTGTTCGGCGGAGCAGACGCCCCCTTGCGGCAGCTAATCGA
AACAAAGGAGCGAGAGCTACAAGAGATACACGACTTCCGGATCAGATGCT
GAAAGAAACTAGAGAGGTCGATGTCCTTAAGACATGTTTGAAACAGTCAA
AACACGACACCAAACGACCAAACGGCCTTTCCATATCTGTTGCGGCAGCA
GCGGGGAAGACAGCAGCAGGCAACGACAGCAGTAACAACGACGCCCACAT
GGATCCCCCTCCCCCCTCTCCTGATTTCAATTCTAAGCTTCCCGCGGCCG
CTTTCCGCCGCGAAGGAGAAGGAGCACCAGACCACGGCTTACACCACCCG
ACAGGACTGCTGTCGCCGTACAACGCCGCAGGGCGGAGCCTCATGCCAGA
GCAACCTTCCGTGGCGGCCGGCTCTCTCAATGCGTTTCTAAACGGAGCGT
ACGCCGGTAAGCCGGTGGCCGGGAGCAGGGCTCGCGACGGCGTAGGGGGG
TCCGTAAGAGGGTCGTCTATTGGCGGCGGCGGAGGCGGCGGCGGAGGCGG
GTCAGTGTTCGGCGGAGCAGACGCCCCCTTGCGGCAGCTAATCGAAACAA
AGGAGCGAGAGCTACAAGAGATACACGACTTCCGGATCAGATCTCTCGAG
GGCCTCTTGGAGGAGCGCGAGGTCGCTCTTGCTGACTCCTTCGCAAGATC
TCTCGAGGGCCTCTTGGAGGAGCGCGAGGTCGCTCTTGCTGACTCCTTCG
CAAGGTACGACAAGCTCAAGGAAGATTTCAAGTTTAACCTTGGCTTGATC
GAAGACCGCGACCTCGAGCTAGGGAGATACGAGGCAGCTGTCCAGGGTCT
GAAGGAGTGCCTGAGAGACAAAGTACGACAAGCTCAAGGAAGATTTCAAG
TTTAACCTTGGCTTGATCGAAGACCGCGACCTCGAGCTAGGGAGATACGA
GGCAGCTGTCCAGGGTCTGAAGGAGTGCCTGAGAGACAAAGAGGTGGAGG
CTAGTGAGGTCAAGATGCGGCTTGATGAGGCTCTGAGTGTGCAAAGGCAG
GCGACGGCGAGGGAGAACGAGCAGCAGGGATATTGGCAGGAGGTGGAGGC
TAGTGAGGTCAAGATGCGGCTTGATGAGGCTCTGAGTGTGCAAAGGCAGG
CGACGGCGAGGGAGAACGAGCAGCAGGGATATTGGCAGGCCAAGTGCAAG
GCTCTGCGCGACGAGATGGACGGGCTAAGGTGGGCCCGGGAGGAGGAGTC
GAGGGCTGGCAGGGAGTGGGCGGAGGCGCAGAAGGCGGCGCTCACGCGGC
AGCTGAGGGAGAGGGAGGATGAGCTCGAGGCGCAGAGGGCGGACTCCGCG
GAGGCATTTGATAGGATCATGCAGCAGCGGCAGGAGGAGATGCATGCCAG
GCCAAGTGCAAGGCTCTGCGCGACGAGATGGACGGGCTAAGGTGGGCCCG
GGAGGAGGAGTCGAGGGCTGGCAGGGAGTGGGCGGAGGCGCAGAAGGCGG
CGCTCACGCGGCAGCTGAGGGAGAGGGAGGATGAGCTCGAGGCGCAGAGG
GCGGACTCCGCGGAGGCATTTGATAGGATCATGCAGCAGCGGCAGGAGGA
GATGCATGCCAGGGAGTCTGAGCTGACCCTCCAGCTACGGGAGGCGGAGT
CAAGGTGCGCCGACCAGGCGCGGCGACGCGAAAGGGCAGAGCGAGAGGCG
GTGGAGCTCAGAGAATCTTCCGGGAAAATTCGCCGGGCCTTAGAAGCGGA
AGAGAAGGTCGCGCGGGGCCTTCGGTGGGAGCTGGAGGACCGGCAACAGA
TAGCAGTGGCCGAGGGAGTCTGAGCTGACCCTCCAGCTACGGGAGGCGGA
GTCAAGGTGCGCCGACCAGGCGCGGCGACGCGAAAGGGCAGAGCGAGAGG
CGGTGGAGCTCAGAGAATCTTCCGGGAAAATTCGCCGGGCCTTAGAAGCG
GAAGAGAAGGTCGCGCGGGGCCTTCGGTGGGAGCTGGAGGACCGGCAACA
GATAGCAGTGGCCGAGAGCGAGGAGTCGGCCAGGAAGTTCGTTGATCTCG
AGAGTAACTACGAGTCCGCCTTACGGGCCGGGGAGGAGAGGCTTCGGGAG
GTGCTGGGGTCCCTCCACGCCGTTGAAAAGGCGTTCGTGCAGCACAAAGA
CAGAGCGAGGAGTCGGCCAGGAAGTTCGTTGATCTCGAGAGTAACTACGA
GTCCGCCTTACGGGCCGGGGAGGAGAGGCTTCGGGAGGTGCTGGGGTCCC
TCCACGCCGTTGAAAAGGCGTTCGTGCAGCACAAAGACAGGCAAAGGTCG
GAGGAGCAGGCGTTTCTGCGAAAGGAAGAGGAGCTGAGGTCCGCGCTTGA
GGCCTGCGAGGCGAGGGTGGCTGGGCTCGAGCAGGCGCTGTCGGAGGGGG
CCCAGAGAGAAGAGCACATGCGGAACTCCGTGCGCGCCGCGAGGCAAAGG
TCGGAGGAGCAGGCGTTTCTGCGAAAGGAAGAGGAGCTGAGGTCCGCGCT
TGAGGCCTGCGAGGCGAGGGTGGCTGGGCTCGAGCAGGCGCTGTCGGAGG
GGGCCCAGAGAGAAGAGCACATGCGGAACTCCGTGCGCGCCGCGAGAGAG
GAGCACAGCAGGGAAGCCGCCGCCCTCCGCCAGCAGGCGAAGAAAGAAGA
GTCGTCCCTTCGGAAGGAACTGGACCAGGCCAAGAGCGCCGCGGGGGCGC
TGAAGGACGCGAATCTCTCCCTCGAGGGCACGGTCGCGGCTTTGACGGAT
AGGGAGGCGGCCCTCGAGAGCGACCTCCGCGAGGAGAAGGAGGAGAGCGC
GAGGGCGCTCAGTGAGAGAGGAGCACAGCAGGGAAGCCGCCGCCCTCCGC
CAGCAGGCGAAGAAAGAAGAGTCGTCCCTTCGGAAGGAACTGGACCAGGC
CAAGAGCGCCGCGGGGGCGCTGAAGGACGCGAATCTCTCCCTCGAGGGCA
CGGTCGCGGCTTTGACGGATAGGGAGGCGGCCCTCGAGAGCGACCTCCGC
GAGGAGAAGGAGGAGAGCGCGAGGGCGCTCAGTGAGGTCGAGCGATCCCT
GGGCTCGGCAGGGCAGGAGGCCGCGCATCTGCGGGGACAGCTGGCAGAGG
CGAGACATGCGGCGGAGGGCATCGGCGCGGAGTTGGAGCAGGCGAAGCGG
GAGCTCGAGCAGATCAAGGAGGTCGAGCGATCCCTGGGCTCGGCAGGGCA
GGAGGCCGCGCATCTGCGGGGACAGCTGGCAGAGGCGAGACATGCGGCGG
AGGGCATCGGCGCGGAGTTGGAGCAGGCGAAGCGGGAGCTCGAGCAGATC
AAGGAGGCCGCCCGGAAAGACCGTCGTGATCTTCAAGGCCGGGTGGACGC
TCTTGAAGACACCTTAGCGGCTGCGGCGAAGAGCGCCTCGCACGGGCCCG
CCCCGGCTGCCCCTCTCCCCCACACGGCCGCCCGGAAAGACCGTCGTGAT
CTTCAAGGCCGGGTGGACGCTCTTGAAGACACCTTAGCGGCTGCGGCGAA
GAGCGCCTCGCACGGGCCCGCCCCGGCTGCCCCTCTCCCCCACACGTCAG
CGGGAAAGGGCAGCAGCCCGCTTTTCTCCGAAGACCAGGGGCTCCCGTCT
CCGGTCCTGCTGCCCCCTGCGCCACCTCCCACGCTCGGTAGTTTCGGAAA
AATCTCCCAGGCCGCCGCCGGGCGTCACTCGCCGGCTCCGCGTGGGGGTG
CGGGCGTCGATGGGGAGGGAGGGGCGTTCGTGATCCCCGGCGGGGGCGCT
ACTGCAAGTAGTCGAGGGGGGCAGGAGTCAGCGGGAAAGGGCAGCAGCCC
GCTTTTCTCCGAAGACCAGGGGCTCCCGTCTCCGGTCCTGCTGCCCCCTG
CGCCACCTCCCACGCTCGGTAGTTTCGGAAAAATCTCCCAGGCCGCCGCC
GGGCGTCACTCGCCGGCTCCGCGTGGGGGTGCGGGCGTCGATGGGGAGGG
AGGGGCGTTCGTGATCCCCGGCGGGGGCGCTACTGCAAGTAGTCGAGGGG
GGCAGGAGGAGTTCATGGAGCTCCAGGCGGCCAACCTCAGGCTCCGAGGG
GTGGTGGCCGATATGCGCAGGGAGATGGAGTCCTTCAGGGACCCCGAGGG
GGCCGGGGCGGGCAGCGGAAGGTTTGGGCGGGAGCAGCGGCTGGAGGCGC
AGAACGAGAACCTCAGGAGTTCATGGAGCTCCAGGCGGCCAACCTCAGGC
TCCGAGGGGTGGTGGCCGATATGCGCAGGGAGATGGAGTCCTTCAGGGAC
CCCGAGGGGGCCGGGGCGGGCAGCGGAAGGTTTGGGCGGGAGCAGCGGCT
GGAGGCGCAGAACGAGAACCTCAGGGAAGAACTTGCTGACCTGCGGGCAC
GTCTGGAACACGCGGAAGGGCCGGCAGCCATTGAGCTGGAGGAGGAGGTG
TCTCGGCTTCAGGGAAGAACTTGCTGACCTGCGGGCACGTCTGGAACACG
CGGAAGGGCCGGCAGCCATTGAGCTGGAGGAGGAGGTGTCTCGGCTTCAG
AATCGGTGCCGTAGGCTGTCCGAGGAAGTGGACAGACTCACCGGCGAACG
GGACAAACTCATGGACATCGGGAACAGCCTCAGAGCAGAGCTCAATCGAG
CGTTGTCCAACAGCTTCGAGAATCGGTGCCGTAGGCTGTCCGAGGAAGTG
GACAGACTCACCGGCGAACGGGACAAACTCATGGACATCGGGAACAGCCT
CAGAGCAGAGCTCAATCGAGCGTTGTCCAACAGCTTCGAGCACGGTGGCC
CAAACGGAACGACGGCGGCGGTGGCGGCGGCGGAGGCGGAAAAGCGCACG
GTGGAGAGAATAAAAGAGGCGGTGTCGCGAGCGCAAAGGGAAACGCGGCG
GAAGTACCGGAGCAGGGTCTCCGAGGTGGAGGTCGCTTTTGCGCAGCTCG
CCGGCGACAACAGCACGGTGGCCCAAACGGAACGACGGCGGCGGTGGCGG
CGGCGGAGGCGGAAAAGCGCACGGTGGAGAGAATAAAAGAGGCGGTGTCG
CGAGCGCAAAGGGAAACGCGGCGGAAGTACCGGAGCAGGGTCTCCGAGGT
GGAGGTCGCTTTTGCGCAGCTCGCCGGCGACAACAGGAGACTGAAGGCGA
GGGTGGCGCAGCTGACGGCAGACGATGGCGGCCAGGCAGCACCGTACCAT
TTTGGCGGGGGCGACCTCGACCTGGTCGGCGAGCATCAACGGCCACGACG
CGGACAATCGACGGCCGCCGCCGCCGCCGCGGGAGTGAAGGCGAAGGCGA
AGCGTCCCCATTCTCCTTCGGCAGCGCCGTCGGCTGCTGCCGACGCCGCC
AAATCTGCCGCCGACCTAGCTATCTCGGGTAGTACGGCCGCCGGAAGCGG
CAGCCCATGGCAGATTGGTGGACGCGGTCGCGGCGGCGTCCGCGGTGGCG
TCCGTGGCTTGGGGACGGCGGCGGCGACAGCGGCGGCTGAGGGCGTGGGA
GGGCGGCGGCGGCGGAGACCGCTAGACCGAGAAGACTACCAGGACGCTGA
CGGCGACGATGGTGTTGTTGCTGGCATGAGTGTCGATGTCGGCGCTTGGG
GTGCTACATACCCACAGTTCGGCGATGGCGACGGTGCCGCTGCCGCAGCT
GCCGACGACGACGACGAGTCGCGCCCCCGGCAGCGGCAGCAGCAGAGGGG
CGAGCAAGGGATATCGCGGAGCCGGAATAACTTGAGTAGCACCGACACGG
GCATAGGCGCGAGCGGGCAACGGCTGAGGCAGAGGCAGATGCAAAGCAGG
CAGACTGACGGGCAGCGGGCGGCGGCCATGCGCTTGAGGGCTTGGCAGGA
GCGGAGGAGGCTGGAAGAAGCCGGGGGCACGGGCGAGACTGAAGGCGAGG
GTGGCGCAGCTGACGGCAGACGATGGCGGCCAGGCAGCACCGTACCATTT
TGGCGGGGGCGACCTCGACCTGGTCGGCGAGCATCAACGGCCACGACGCG
GACAATCGACGGCCGCCGCCGCCGCCGCGGGAGTGAAGGCGAAGGCGAAG
CGTCCCCATTCTCCTTCGGCAGCGCCGTCGGCTGCTGCCGACGCCGCCAA
ATCTGCCGCCGACCTAGCTATCTCGGGTAGTACGGCCGCCGGAAGCGGCA
GCCCATGGCAGATTGGTGGACGCGGTCGCGGCGGCGTCCGCGGTGGCGTC
CGTGGCTTGGGGACGGCGGCGGCGACAGCGGCGGCTGAGGGCGTGGGAGG
GCGGCGGCGGCGGAGACCGCTAGACCGAGAAGACTACCAGGACGCTGACG
GCGACGATGGTGTTGTTGCTGGCATGAGTGTCGATGTCGGCGCTTGGGGT
GCTACATACCCACAGTTCGGCGATGGCGACGGTGCCGCTGCCGCAGCTGC
CGACGACGACGACGAGTCGCGCCCCCGGCAGCGGCAGCAGCAGAGGGGCG
AGCAAGGGATATCGCGGAGCCGGAATAACTTGAGTAGCACCGACACGGGC
ATAGGCGCGAGCGGGCAACGGCTGAGGCAGAGGCAGATGCAAAGCAGGCA
GACTGACGGGCAGCGGGCGGCGGCCATGCGCTTGAGGGCTTGGCAGGAGC
GGAGGAGGCTGGAAGAAGCCGGGGGCACGGGC
back to top