mRNA_P-fluviatile_contig1.70.1 (mRNA) Porterinema fluviatile SAG_2381

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

Overview
NamemRNA_P-fluviatile_contig1.70.1
Unique NamemRNA_P-fluviatile_contig1.70.1
TypemRNA
OrganismPorterinema fluviatile SAG_2381 (Porterinema fluviatile SAG_2381)
Homology
BLAST of mRNA_P-fluviatile_contig1.70.1 vs. uniprot
Match: D7FJJ1_ECTSI (Uncharacterized protein n=1 Tax=Ectocarpus siliculosus TaxID=2880 RepID=D7FJJ1_ECTSI)

HSP 1 Score: 843 bits (2179), Expect = 3.820e-302
Identity = 415/498 (83.33%), Postives = 461/498 (92.57%), Query Frame = 1
Query:    1 MENASYAKIRLESAPYTTKFGIGLLSGAYVVGLLLCLLLGAFQGPKVFDKSDPEAVETNSLNVTWYGQISGMERWHQVLYLHMRLNKPDVISGGVSYEQQYSVSSWGSVEPIDAVACPDGCTSECNVGGQCVELAQTTM-DRVIQCRSNEQWCGWTTLLTEEFVEYGIYYMQVDMEEPKIFKDSLDFTLEFEIVFITKAFTQYQMAWHYAWILITLVFMFVPKIGFFYEMMQLHQNFWSRQQQARVGLLLMALLFFNNVFFGFQIFSPYPRFFFSLYVVFVATFIALMLFFWLELFGDLAAGNMQGTDTALEWERNRKKAVLEYLPKLVLVGLIWIATVLVYIYVRVQQTGDPSYSTFDDLSTYTSVKVIGLLLATVYFLWLGTLVVSSFSHIEAMNSEYIFIMVITLVTIVGAMAAVYTGALAPDQHGSKVFAYFYGMFNIYVLLLAFCYTPAGSIYGDISTNDNVEMMAKDQQSIPAYKDDTAFTIVESNNEHTVL 1491
            MENASYAK+RLESAPY+T+FGIG+LS  YV+GLL CL++G  +GP VF+KS P AVETNSLNVTWYG+I GMERWHQVLYLHMRLNKPD+ISG VSYEQ+YSVSSW S EP+D +ACPDGCTSECNVGGQCVELAQ  + DRVIQC SNEQWCGWTTLLTEEFVE+G YYMQVDM+EP++F ++ +FTL+FEIV+ITK FT YQM WHY WI+ITLVFMFVPKIGFFYEMMQLHQNFWSRQQ ARVG+LL++LLFFNNVFFGFQIFSP+PRFFFSLY+VFVATF+ALMLFFWLELFGDLAAGNMQGTDTALEWERNRKK VLEYLPKLVLVGLIWI TVL YIYVRVQQTGDPSYSTFDDLSTYT VKV+GLLLAT+YFLWLG+LV  SF+HIE+MNSEYIFIMVITLVTIVG M+AVYTGALAPDQHGSKVFAYFYGMFNIYVLLLAFCYTPAGSIYGDI+TNDN+EM+A+   ++P+  DDTAFTIVESNN+HT+L
Sbjct:    1 MENASYAKVRLESAPYSTRFGIGILSAVYVIGLLACLIVGTIKGPNVFEKSPPAAVETNSLNVTWYGKIDGMERWHQVLYLHMRLNKPDMISGAVSYEQRYSVSSWASEEPVDDIACPDGCTSECNVGGQCVELAQGIVTDRVIQCPSNEQWCGWTTLLTEEFVEFGTYYMQVDMQEPQLFSNAPEFTLDFEIVYITKEFTTYQMYWHYGWIVITLVFMFVPKIGFFYEMMQLHQNFWSRQQ-ARVGVLLLSLLFFNNVFFGFQIFSPFPRFFFSLYIVFVATFLALMLFFWLELFGDLAAGNMQGTDTALEWERNRKKTVLEYLPKLVLVGLIWIVTVLTYIYVRVQQTGDPSYSTFDDLSTYTGVKVVGLLLATLYFLWLGSLVFRSFTHIESMNSEYIFIMVITLVTIVGTMSAVYTGALAPDQHGSKVFAYFYGMFNIYVLLLAFCYTPAGSIYGDINTNDNLEMVAE-TGTVPSAGDDTAFTIVESNNQHTML 496          
BLAST of mRNA_P-fluviatile_contig1.70.1 vs. uniprot
Match: A0A7S2XXX3_9STRA (Hypothetical protein n=1 Tax=Fibrocapsa japonica TaxID=94617 RepID=A0A7S2XXX3_9STRA)

HSP 1 Score: 134 bits (337), Expect = 8.140e-30
Identity = 125/471 (26.54%), Postives = 230/471 (48.83%), Query Frame = 1
Query:    1 MENASYAKIRLESAPYTTKFGIGLLSGAYVVGLLLCLLLGAFQGPKVFDK-SDP----------EAVETNSLNVTWYGQISGMERWHQVLYLHMRLNKPDVISGG-VSYEQQYSVSSWGSVEPIDAVACPDGCTSECNVGGQCVELAQTTMDRVIQCRSNEQWCGWTTLLTEEFVEYGIYYMQVDMEEPKIFKDSLDFTLE--FEIVFITKAFTQYQMAWHYAWILITLVFMFVPKIGFFYEMMQLHQNFWSRQQQARVGLLLMALLFFNNVFFGFQIFSPYPRFFFSLYVVFVATFIALMLFFWLELFGDLAAGNMQGTDTALEWERNRKKAVLEYLP-KLVLVGLIWIATVLVYIYVRVQQTGDPSYS----TFDDLSTYTSVKVIGLLLATVYFLWLGTLVVSSFSHIEAMNSEYIFIMVITLVTIVGAMAAVYTGALAPDQHGSKVFAYFYGMFNIYVLLLAFCYTP 1356
            MEN ++  +R+E      K  I ++  A+ VGL+LC+++GA  GP VF + +DP          E  E  S  + W G ++GM++ H+++++    ++PD ++      E  +    + ++E +           E ++    VE      DR + C +++  C    +  + ++ +  Y ++V    P    D ++  L+   +  FI + +TQ+++ W Y ++ +T +   V  +   Y +    +  W+ QQ+  V +LL  L FFN+ FF  Q+          L + F+ATF+A++L +WL L   +       TD       +RK A   ++  K +L  +IW+  +  +I +   QT DP++     + D+  +        L +A +Y +W+  L+VS+F HI+ M   Y F+  +TL+ I+  + AV+  +L P Q     F   YGM+N+Y+ +LAF YTP
Sbjct:    1 MENETHFPVRVEHHT-KGKMHIIVMGCAFFVGLILCIIVGA-AGPDVFSEHADPDGSTVTIRPSEEGEGVSQGI-WMGLLTGMKKKHRIMWVTGSFDRPDFLNNDRPEIELTFDQKMFITIEGLHG-------EDERHILADRVER-----DRKVVCPAHQDRCSDFLIFFQTYIRFPQYRVEVQFIHPGEIADGVNPELKCFMKFFFINEDYTQFELGWGYLFMALTTIVCVVFFLQLVYRLGWWKE--WNTQQRWLV-ILLPFLWFFNDPFFAGQVVEAPAHGLPELNIFFIATFVAVLLLYWLCLMDQIR------TDHHATSVGSRKIAWPRWVIWKSILCFVIWLIIMSTFIELYTTQTKDPTFDGITESTDERKSMAFTAATSLFMA-IYIIWMIYLIVSAFHHIKEMLPCYHFLFGVTLLVIIITVVAVFLASLFPVQSTPVQFLGLYGMYNMYIWMLAFAYTP 446          
BLAST of mRNA_P-fluviatile_contig1.70.1 vs. uniprot
Match: A0A6H5L106_9PHAE (Uncharacterized protein n=1 Tax=Ectocarpus sp. CCAP 1310/34 TaxID=867726 RepID=A0A6H5L106_9PHAE)

HSP 1 Score: 117 bits (294), Expect = 3.680e-28
Identity = 55/69 (79.71%), Postives = 63/69 (91.30%), Query Frame = 1
Query:  520 MEEPKIFKDSLDFTLEFEIVFITKAFTQYQMAWHYAWILITLVFMFVPKIGFFYEMMQLHQNFWSRQQQ 726
            M+EP+IF ++ +FTL FEIV+ITK FT YQM WHYAWI+ITLVFMFVPKIGFFYEMMQLHQNFWSRQQ+
Sbjct:    1 MQEPQIFSNAPEFTLAFEIVYITKEFTTYQMYWHYAWIVITLVFMFVPKIGFFYEMMQLHQNFWSRQQE 69          
BLAST of mRNA_P-fluviatile_contig1.70.1 vs. uniprot
Match: A0A0L0D4N3_THETB (Transmembrane protein 181 n=1 Tax=Thecamonas trahens ATCC 50062 TaxID=461836 RepID=A0A0L0D4N3_THETB)

HSP 1 Score: 100 bits (248), Expect = 2.990e-18
Identity = 109/450 (24.22%), Postives = 191/450 (42.44%), Query Frame = 1
Query:   73 LSGAYVVGLL---LCL-----LLGAFQGPKVFDKSDPEAVET------NSLNVTWYGQISGMERWHQVLYLHMRLNKPDVISGGVSYEQQYSVSSWGSVEPIDAVACPDGCTSECNVGGQCVELAQTTMDRVIQCRSNEQWCGWTTLLTEEFVEYGIYYMQV---DMEEPKIFKDSLDFTLEFEIVFITKAFTQYQMAWHYAWILITLVFMFVPKIGFFYEMMQLHQNFWSRQQQARVGLLLMALLFFNNVFFGFQIFSP--YPRFFFSLYVVFVATFIALMLFFWLELFGDLAAGNMQGTDTALEWERNRKKAVLEYLPKLVLVGLIWIATVLVYIYVRVQQTGDPSYSTFDDLSTYTSVKVIGLLLATVYFLWL---GTLVVSSFSHIEAMNSEYIFIMVITLVTIVGAMAAVYTGALAPDQHGSKVFAYFYGMFNIYVLLLAFCYTP 1356
            +S A +VGL    LCL     ++GA  GP +FD     A+        N+    W  +I  +++ +Q+L   + L        G++       S +GS +     A                 +      R I+C      C    LL E FV Y IY + V   + EE    +D++     F       +FT +++ + + ++++T    FV  + F + +     + WS +Q+    LL  +LL +NN  F   I +   +P F   L V F  TFIAL+L FWL +   +       T                YLPK+ LVG +W+ +V+V+ +  + +  +P+YST +D+  +   +V+ +LL   Y  WL     L V        ++    ++ ++T+  +   +  +  G +    + +  F  F+ +FN+Y+  LA  Y P
Sbjct:   14 MSKATLVGLFTIFLCLFSISVIIGA-AGPPIFDSYQTTALSQGVDMRYNTSQFNW--EIQHLDKLNQMLIFKVALVNGRAAREGINTRLTMKTSLYGSKDGFAFNAI----------------VVDKIESRKIKCSQGNIHCDEVALLHEPFVHYPIYRVDVRFLNAEEEDWIQDAVFIWRVFN-----HSFTLFELWFRFTFLVLT----FVMLVWFSHRLRAYKSSEWSIEQKWMTALLF-SLLAYNNPLFPLTILADSWFPEF---LDVCFFVTFIALLLLFWLCILDSIRKPATARTYIGF------------YLPKVALVGTLWLISVVVFTWQELHELDNPTYSTANDIPGFIFFRVVQILLLIGYTFWLIFVAILGVKDRRAFPRLSVRIKYLGILTIFVLAITITGIVLGVVGTIHNNAAQFLSFFSLFNLYIFFLAIVYAP 419          
BLAST of mRNA_P-fluviatile_contig1.70.1 vs. uniprot
Match: A0A3B3QNW8_9TELE (Transmembrane protein 181 n=2 Tax=Paramormyrops kingsleyae TaxID=1676925 RepID=A0A3B3QNW8_9TELE)

HSP 1 Score: 96.3 bits (238), Expect = 4.530e-17
Identity = 87/325 (26.77%), Postives = 162/325 (49.85%), Query Frame = 1
Query:  484 FVEYGIYYMQVDMEEPKIFKDSLDFTLEFEIVFITK----AFTQYQMAWHYAWILITLVFMFVPKIGFFYEMMQLHQNFWSRQQQARVGLLLMALLFFNNVFF--GFQIFSPYPRFFFSLYVVFVATFIALMLFFWLELFGDLAAGNMQGTDTALEWERNRKKAVLEYLPKLVLVGLIWIATVLVYIYVRVQQTGDPSYSTFDDLSTYTSVKVIGLLLATVYFLWLGTLVVSSFSHIEAM---NSEYIFIMVITLVTIVGAMAAVY------------TGALAPDQHGSKVFAYFYGMFNIYVLLLAFCYTPAGSIYGDISTNDN 1395
            ++ Y  Y++ V  +      ++L F +  E+ F+ K    +F+Q ++ + + ++++T    FV    F + + +     W  +Q+  + +LL  LL +N+ FF   F + S +P    +L  +F A F+  +L FWL ++  +    +QG           +K +  YLPKLV+VGLIW++++ + I+  V +  DP+Y    D+  +  +K+I L++ +VY L+L  L+V + S ++ M   +    F+  +T + ++ +M  +Y              AL+     S  F  FYG+ N Y+  LAF Y+P+ S   D    DN
Sbjct:  187 YLNYTRYHVNVSFKG----LENLTFGIR-EVTFMWKTYNPSFSQVEIWFRFVFVVLT----FVVTCMFAHSLRKFSMRDWGIEQKW-MSILLPLLLLYNDPFFPLSFLVNSWFPG---TLDALFQAVFLCALLLFWLCVYHGI---RVQG----------ERKCMTFYLPKLVIVGLIWLSSITLGIWQTVNELHDPTYQYKVDIGNFQGMKIIFLVVVSVYILYLIFLIVRACSELKNMPYTDLRLKFLTALTFIVLIISMVILYLRFGAKVLQDNFVAALSTHYKNSAEFLSFYGLLNFYLYTLAFVYSPSKSALYDSQLKDN 485          
BLAST of mRNA_P-fluviatile_contig1.70.1 vs. uniprot
Match: UPI0015D0C931 (transmembrane protein 181 isoform X1 n=2 Tax=Electrophorus electricus TaxID=8005 RepID=UPI0015D0C931)

HSP 1 Score: 96.3 bits (238), Expect = 4.550e-17
Identity = 87/342 (25.44%), Postives = 162/342 (47.37%), Query Frame = 1
Query:  421 RVIQCRSNEQWCGWTTLLTEEFVEYGIYYMQVDMEEPKIFKDSLDFTLEFEIVFITKAFTQYQMAWHYAWILITLVFMFVPKIGFFYEMMQLHQNFWSRQQQARVGLLLMALLFFNNVFF--GFQIFSPYPRFFFSLYVVFVATFIALMLFFWLELFGDLAAGNMQGTDTALEWERNRKKAVLEYLPKLVLVGLIWIATVLVYIYVRVQQTGDPSYSTFDDLSTYTSVKVIGLLLATVYFLWLGTLVVSSFSHIEAMNSEYI---FIMVITLVTIVGAMAAVY------------TGALAPDQHGSKVFAYFYGMFNIYVLLLAFCYTPAGSIYGDISTNDN 1395
            RV+ C + ++ C    ++   ++ Y  Y + V +++ +    ++   + F +      F+Q ++ + + +++IT    F     F + + +     W  +Q+  + +LL  LL +N+ FF   F   S +P     L  +F A F+  +L FWL ++       +QG           +K +  YLPKLVLVGL+W + V++ I+  V +  DP+Y    D+  +  +KV  LLL  +Y L+LG L++ ++S ++ M    +   F+  +T + ++ +M  +Y               L+     S  F  FYG+ N Y+  LAF Y+P+ +   D    DN
Sbjct:  167 RVLHCATPQELCDEIIIVHLGYLNYTQYKINVTLKDLEGISQNIQ-NVTFVVKTYNPTFSQVEIWFRFVFVVIT----FTVTCMFAHSLRKFPMRDWGIEQKW-MSILLPLLLLYNDPFFPLSFLTNSWFPG---MLDAIFQALFLCALLLFWLCVYHGF---RVQG----------ERKCLTFYLPKLVLVGLLWFSAVILGIWQLVNELQDPTYQYDIDIKHFQGMKVFFLLLVAMYVLYLGFLLLRAWSELKNMPYSDLRLKFLTALTFLVLIISMIILYLRFGSKALQDNFVAELSIHYQNSAEFVSFYGLLNFYLYTLAFIYSPSKNTLYDSQLKDN 486          
BLAST of mRNA_P-fluviatile_contig1.70.1 vs. uniprot
Match: A0A3Q2C7Q3_CYPVA (Transmembrane protein 181 n=3 Tax=Cyprinodon TaxID=28741 RepID=A0A3Q2C7Q3_CYPVA)

HSP 1 Score: 94.7 bits (234), Expect = 1.090e-16
Identity = 96/374 (25.67%), Postives = 173/374 (46.26%), Query Frame = 1
Query:  454 CGWTTLLTEEFVEYGIYYMQVDMEEPKI-FKDSLDFTLEFEIVFITKA----FTQYQMAWHYAWILITLVFMFVPKIGFFYEMMQLHQNFWSRQQQARVGLLLMALLFFNNVFF--GFQIFSPYPRFFFSLYVVFVATFIALMLFFWLELFGDLAAGNMQGTDTALEWERNRKKAVLEYLPKLVLVGLIWIATVLVYIYVRVQQTGDPSYSTFDDLSTYTSVKVIGLLLATVYFLWLGTLVVSSFSHIEAMNSEYI---FIMVITLVTIVGAMAAVY------------TGALAPDQHGSKVFAYFYGMFNIYVLLLAFCYTPAGSIYGDISTNDNVEM-MAKDQQSIPAYKDDTAFTIVESNNEHTVL*AAQD 1506
            CG    + +E +   + YM     +  + FKD  + + E ++ F+ K     F+Q ++ + + ++++T    F+    F + + +     W  +Q+  + +LL  LL +N+ FF   F + S +P    +L   F A F+  +L FWL ++  +    +QG           +K +  YLPKLV+VGL+W++ V + I+  V +  DP++S   D++ +  +KV  L++   Y L+L  L+V + S ++ M    +   F+  +T V +V +M  +Y               L+   H S  F  FYG+ N Y+  LAF Y+P+ +   D    DN    M  D      Y  D     +++   + V    QD
Sbjct:  128 CG---AICDEIIVLHLGYMNYTQYQVTVSFKDLENVSYEIKVKFVWKTYNPTFSQVEIWFRFVFVVLT----FMVTCMFAHSLRKFSMRDWGIEQKW-MSVLLPLLLLYNDPFFPLSFLVNSWFPG---TLDAFFQALFLCALLLFWLCVYHGI---RVQG----------ERKFLTFYLPKLVIVGLLWLSAVTLGIWQTVNELQDPTFSINLDIANFQGMKVFFLIVVAFYILYLIFLLVRACSELKNMPYSDLRLKFLTALTFVVLVISMVILYLRFGAKALQDNFVAELSTHYHNSAEFLSFYGLLNFYLYTLAFVYSPSKNALYDSQLKDNPAFSMVNDSDDEVIYGSDYEDLPLQNGRANKVTTKYQD 477          
BLAST of mRNA_P-fluviatile_contig1.70.1 vs. uniprot
Match: A0A1S3S9U8_SALSA (transmembrane protein 181 isoform X1 n=27 Tax=Euteleosteomorpha TaxID=1489388 RepID=A0A1S3S9U8_SALSA)

HSP 1 Score: 94.7 bits (234), Expect = 1.380e-16
Identity = 87/325 (26.77%), Postives = 158/325 (48.62%), Query Frame = 1
Query:  484 FVEYGIYYMQVDMEEPKIFKDSLDFTLEFEIVFITK----AFTQYQMAWHYAWILITLVFMFVPKIGFFYEMMQLHQNFWSRQQQARVGLLLMALLFFNNVFF--GFQIFSPYPRFFFSLYVVFVATFIALMLFFWLELFGDLAAGNMQGTDTALEWERNRKKAVLEYLPKLVLVGLIWIATVLVYIYVRVQQTGDPSYSTFDDLSTYTSVKVIGLLLATVYFLWLGTLVVSSFSHIEAM---NSEYIFIMVITLVTIVGAMAAVY------------TGALAPDQHGSKVFAYFYGMFNIYVLLLAFCYTPAGSIYGDISTNDN 1395
            ++ Y  Y + V       FK   + T E ++ F+ K    +F+Q ++ + + ++++T    F+    F + + +     W  +Q+  + +LL  LL +N+ FF   F + S +PR   +L   F A F+  +L FWL ++  +    +QG           +K +  YLPKLV+VGL+W++ V + I+  V +  DP+Y    D++ +  +K+  L++ T+Y L+L  L+V + S ++ M   +    F+  +T V ++ +MA +Y               L+     S  F  FYG+ N Y+  LAF Y+P+     D    DN
Sbjct:  184 YLNYTQYQINVS------FKGLENITYEVKVNFMWKMYNPSFSQVEIWFRFVFVVLT----FMVTCMFAHSLRKFSMRDWGIEQKW-MSILLPLLLLYNDPFFPLSFLVNSWFPR---TLDAFFQALFLCSLLLFWLCVYHGI---RVQG----------ERKCLTFYLPKLVIVGLLWLSAVTLGIWQTVNELQDPTYQYKVDIANFQGMKIFFLVVVTLYILYLIFLIVRACSELKNMPYTDLRLKFLTALTFVVLIISMAILYLRFGAKALQDNFVAELSTHYQNSAEFLSFYGLLNFYLYTLAFVYSPSKDAIYDSQLKDN 481          
BLAST of mRNA_P-fluviatile_contig1.70.1 vs. uniprot
Match: A0A6P6NR95_CARAU (transmembrane protein 181-like isoform X3 n=2 Tax=Carassius auratus TaxID=7957 RepID=A0A6P6NR95_CARAU)

HSP 1 Score: 94.0 bits (232), Expect = 2.400e-16
Identity = 91/346 (26.30%), Postives = 165/346 (47.69%), Query Frame = 1
Query:  418 DRVIQCRSNEQWCGWTTLLTEEFVEYGIYYMQVDMEEPKI-FKDSLDFTLEFEIVFITKAFTQYQMAWHYAWILITLVFMFVPKIGFFYEMMQLHQNFWSRQQQARVGLLLMALLFFNNVFF--GFQIFSPYPRFFFSLYVVFVATFIALMLFFWLELFGDLAAGNMQGTDTALEWERNRKKAVLEYLPKLVLVGLIWIATVLVYIYVRVQQTGDPSYSTFDDLSTYTSVKVIGLLLATVYFLWLGTLVVSSFSHIEAMNSEYI-----FIMVITLVTIVGAMAAVY------------TGALAPDQHGSKVFAYFYGMFNIYVLLLAFCYTPAGSIYGDISTNDN 1395
            +R + C + +Q C    +L   ++ Y  Y + V   + +   KD +   + F        F+Q ++ + + ++++T    F+    F + + +     WS +Q+  + +LL  LL +N+ FF   F + S +P    +L   F A F+  +L FWL ++  +    +QG          +++ +  YLPKL++VGL+W++ V + I+  V +  DP+Y    D+  +  +KV  LLL  VY L+L  LV+ + S ++  N+ Y      F+  +TL+ +V ++  +Y               L+     S  F  FYG+ N Y+  LAF Y+P+ S   D    DN
Sbjct:  157 NRSLHCAAQKQACEEIIVLHLGYLNYTQYKISVSFRKLQDDLKDRIK-NVTFAFKMYNATFSQVEIWFRFVFVVMT----FIVTCVFAHSLRKFSMRDWSIEQKW-MSVLLPLLLLYNDPFFPLSFLVNSWFPG---ALDAFFQALFLCALLLFWLCVYHSI---RVQG----------QRRLLTFYLPKLLVVGLLWLSAVTLGIWQTVNELQDPTYQYKVDIQNFQGMKVFFLLLVAVYVLYLLFLVLCACSELK--NAPYTDLRLKFLTALTLLVLVISVVILYLRFGSKALQDNFVSELSTHYQNSAEFLSFYGLLNFYLYTLAFVYSPSRSALYDSQLKDN 478          
BLAST of mRNA_P-fluviatile_contig1.70.1 vs. uniprot
Match: A0A6P6NR18_CARAU (transmembrane protein 181-like isoform X1 n=1 Tax=Carassius auratus TaxID=7957 RepID=A0A6P6NR18_CARAU)

HSP 1 Score: 94.0 bits (232), Expect = 2.420e-16
Identity = 91/346 (26.30%), Postives = 165/346 (47.69%), Query Frame = 1
Query:  418 DRVIQCRSNEQWCGWTTLLTEEFVEYGIYYMQVDMEEPKI-FKDSLDFTLEFEIVFITKAFTQYQMAWHYAWILITLVFMFVPKIGFFYEMMQLHQNFWSRQQQARVGLLLMALLFFNNVFF--GFQIFSPYPRFFFSLYVVFVATFIALMLFFWLELFGDLAAGNMQGTDTALEWERNRKKAVLEYLPKLVLVGLIWIATVLVYIYVRVQQTGDPSYSTFDDLSTYTSVKVIGLLLATVYFLWLGTLVVSSFSHIEAMNSEYI-----FIMVITLVTIVGAMAAVY------------TGALAPDQHGSKVFAYFYGMFNIYVLLLAFCYTPAGSIYGDISTNDN 1395
            +R + C + +Q C    +L   ++ Y  Y + V   + +   KD +   + F        F+Q ++ + + ++++T    F+    F + + +     WS +Q+  + +LL  LL +N+ FF   F + S +P    +L   F A F+  +L FWL ++  +    +QG          +++ +  YLPKL++VGL+W++ V + I+  V +  DP+Y    D+  +  +KV  LLL  VY L+L  LV+ + S ++  N+ Y      F+  +TL+ +V ++  +Y               L+     S  F  FYG+ N Y+  LAF Y+P+ S   D    DN
Sbjct:  159 NRSLHCAAQKQACEEIIVLHLGYLNYTQYKISVSFRKLQDDLKDRIK-NVTFAFKMYNATFSQVEIWFRFVFVVMT----FIVTCVFAHSLRKFSMRDWSIEQKW-MSVLLPLLLLYNDPFFPLSFLVNSWFPG---ALDAFFQALFLCALLLFWLCVYHSI---RVQG----------QRRLLTFYLPKLLVVGLLWLSAVTLGIWQTVNELQDPTYQYKVDIQNFQGMKVFFLLLVAVYVLYLLFLVLCACSELK--NAPYTDLRLKFLTALTLLVLVISVVILYLRFGSKALQDNFVSELSTHYQNSAEFLSFYGLLNFYLYTLAFVYSPSRSALYDSQLKDN 480          
The following BLAST results are available for this feature:
BLAST of mRNA_P-fluviatile_contig1.70.1 vs. uniprot
Analysis Date: 2022-09-19 (Diamond blastx: OGS1.0 vs UniRef90)
Total hits: 25
Match NameE-valueIdentityDescription
D7FJJ1_ECTSI3.820e-30283.33Uncharacterized protein n=1 Tax=Ectocarpus silicul... [more]
A0A7S2XXX3_9STRA8.140e-3026.54Hypothetical protein n=1 Tax=Fibrocapsa japonica T... [more]
A0A6H5L106_9PHAE3.680e-2879.71Uncharacterized protein n=1 Tax=Ectocarpus sp. CCA... [more]
A0A0L0D4N3_THETB2.990e-1824.22Transmembrane protein 181 n=1 Tax=Thecamonas trahe... [more]
A0A3B3QNW8_9TELE4.530e-1726.77Transmembrane protein 181 n=2 Tax=Paramormyrops ki... [more]
UPI0015D0C9314.550e-1725.44transmembrane protein 181 isoform X1 n=2 Tax=Elect... [more]
A0A3Q2C7Q3_CYPVA1.090e-1625.67Transmembrane protein 181 n=3 Tax=Cyprinodon TaxID... [more]
A0A1S3S9U8_SALSA1.380e-1626.77transmembrane protein 181 isoform X1 n=27 Tax=Eute... [more]
A0A6P6NR95_CARAU2.400e-1626.30transmembrane protein 181-like isoform X3 n=2 Tax=... [more]
A0A6P6NR18_CARAU2.420e-1626.30transmembrane protein 181-like isoform X1 n=1 Tax=... [more]

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Alignments
The following features are aligned
Aligned FeatureFeature TypeAlignment Location
P-fluviatile_contig1contigP-fluviatile_contig1:1060508..1080468 +
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 score101.3
Seed ortholog evalue1.3e-18
Seed eggNOG ortholog529818.AMSG_02717T0
Preferred nameTMEM181
GOsGO:0003674,GO:0005488,GO:0008150,GO:0009405,GO:0015643,GO:0044419,GO:0051704
EggNOG free text desc.toxic substance binding
EggNOG OGs28HK3@1,2QPXU@2759
COG Functional cat.S
Best tax levelEukaryota
Best eggNOG OGNA|NA|NA
Hectar predicted targeting categorysignal anchor
Ec32 ortholog descriptionconserved unknown protein
Ec32 orthologEc-04_006310.1
Exons12
Model size2291
Cds size1494
Stop1
Start1
Relationships

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

Feature NameUnique NameSpeciesTypePosition
1622815282.6461842-CDS-P-fluviatile_contig1:1060507..10605741622815282.6461842-CDS-P-fluviatile_contig1:1060507..1060574Porterinema fluviatile SAG_2381CDSP-fluviatile_contig1 1060508..1060574 +
1693561384.2058246-CDS-P-fluviatile_contig1:1060507..10605741693561384.2058246-CDS-P-fluviatile_contig1:1060507..1060574Porterinema fluviatile SAG_2381CDSP-fluviatile_contig1 1060508..1060574 +
1622815282.6575089-CDS-P-fluviatile_contig1:1060748..10609121622815282.6575089-CDS-P-fluviatile_contig1:1060748..1060912Porterinema fluviatile SAG_2381CDSP-fluviatile_contig1 1060749..1060912 +
1693561384.220046-CDS-P-fluviatile_contig1:1060748..10609121693561384.220046-CDS-P-fluviatile_contig1:1060748..1060912Porterinema fluviatile SAG_2381CDSP-fluviatile_contig1 1060749..1060912 +
1622815282.6740382-CDS-P-fluviatile_contig1:1071453..10716711622815282.6740382-CDS-P-fluviatile_contig1:1071453..1071671Porterinema fluviatile SAG_2381CDSP-fluviatile_contig1 1071454..1071671 +
1693561384.2363946-CDS-P-fluviatile_contig1:1071453..10716711693561384.2363946-CDS-P-fluviatile_contig1:1071453..1071671Porterinema fluviatile SAG_2381CDSP-fluviatile_contig1 1071454..1071671 +
1622815282.6873045-CDS-P-fluviatile_contig1:1073613..10736771622815282.6873045-CDS-P-fluviatile_contig1:1073613..1073677Porterinema fluviatile SAG_2381CDSP-fluviatile_contig1 1073614..1073677 +
1693561384.2465036-CDS-P-fluviatile_contig1:1073613..10736771693561384.2465036-CDS-P-fluviatile_contig1:1073613..1073677Porterinema fluviatile SAG_2381CDSP-fluviatile_contig1 1073614..1073677 +
1622815282.6978943-CDS-P-fluviatile_contig1:1074030..10742401622815282.6978943-CDS-P-fluviatile_contig1:1074030..1074240Porterinema fluviatile SAG_2381CDSP-fluviatile_contig1 1074031..1074240 +
1693561384.2572412-CDS-P-fluviatile_contig1:1074030..10742401693561384.2572412-CDS-P-fluviatile_contig1:1074030..1074240Porterinema fluviatile SAG_2381CDSP-fluviatile_contig1 1074031..1074240 +
1622815282.7088802-CDS-P-fluviatile_contig1:1075358..10754561622815282.7088802-CDS-P-fluviatile_contig1:1075358..1075456Porterinema fluviatile SAG_2381CDSP-fluviatile_contig1 1075359..1075456 +
1693561384.2733562-CDS-P-fluviatile_contig1:1075358..10754561693561384.2733562-CDS-P-fluviatile_contig1:1075358..1075456Porterinema fluviatile SAG_2381CDSP-fluviatile_contig1 1075359..1075456 +
1622815282.719889-CDS-P-fluviatile_contig1:1076284..10763751622815282.719889-CDS-P-fluviatile_contig1:1076284..1076375Porterinema fluviatile SAG_2381CDSP-fluviatile_contig1 1076285..1076375 +
1693561384.2828019-CDS-P-fluviatile_contig1:1076284..10763751693561384.2828019-CDS-P-fluviatile_contig1:1076284..1076375Porterinema fluviatile SAG_2381CDSP-fluviatile_contig1 1076285..1076375 +
1622815282.7310789-CDS-P-fluviatile_contig1:1078064..10781771622815282.7310789-CDS-P-fluviatile_contig1:1078064..1078177Porterinema fluviatile SAG_2381CDSP-fluviatile_contig1 1078065..1078177 +
1693561384.2908726-CDS-P-fluviatile_contig1:1078064..10781771693561384.2908726-CDS-P-fluviatile_contig1:1078064..1078177Porterinema fluviatile SAG_2381CDSP-fluviatile_contig1 1078065..1078177 +
1622815282.743415-CDS-P-fluviatile_contig1:1078338..10784141622815282.743415-CDS-P-fluviatile_contig1:1078338..1078414Porterinema fluviatile SAG_2381CDSP-fluviatile_contig1 1078339..1078414 +
1693561384.3040779-CDS-P-fluviatile_contig1:1078338..10784141693561384.3040779-CDS-P-fluviatile_contig1:1078338..1078414Porterinema fluviatile SAG_2381CDSP-fluviatile_contig1 1078339..1078414 +
1622815282.7556758-CDS-P-fluviatile_contig1:1078996..10791731622815282.7556758-CDS-P-fluviatile_contig1:1078996..1079173Porterinema fluviatile SAG_2381CDSP-fluviatile_contig1 1078997..1079173 +
1693561384.3147502-CDS-P-fluviatile_contig1:1078996..10791731693561384.3147502-CDS-P-fluviatile_contig1:1078996..1079173Porterinema fluviatile SAG_2381CDSP-fluviatile_contig1 1078997..1079173 +
1622815282.7671006-CDS-P-fluviatile_contig1:1079314..10794311622815282.7671006-CDS-P-fluviatile_contig1:1079314..1079431Porterinema fluviatile SAG_2381CDSP-fluviatile_contig1 1079315..1079431 +
1693561384.32236-CDS-P-fluviatile_contig1:1079314..10794311693561384.32236-CDS-P-fluviatile_contig1:1079314..1079431Porterinema fluviatile SAG_2381CDSP-fluviatile_contig1 1079315..1079431 +
1622815282.7777467-CDS-P-fluviatile_contig1:1079572..10796711622815282.7777467-CDS-P-fluviatile_contig1:1079572..1079671Porterinema fluviatile SAG_2381CDSP-fluviatile_contig1 1079573..1079671 +
1693561384.3299205-CDS-P-fluviatile_contig1:1079572..10796711693561384.3299205-CDS-P-fluviatile_contig1:1079572..1079671Porterinema fluviatile SAG_2381CDSP-fluviatile_contig1 1079573..1079671 +


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

Feature NameUnique NameSpeciesTypePosition
1622815282.7878592-UTR-P-fluviatile_contig1:1079671..10804681622815282.7878592-UTR-P-fluviatile_contig1:1079671..1080468Porterinema fluviatile SAG_2381UTRP-fluviatile_contig1 1079672..1080468 +
1693561384.3391523-UTR-P-fluviatile_contig1:1079671..10804681693561384.3391523-UTR-P-fluviatile_contig1:1079671..1080468Porterinema fluviatile SAG_2381UTRP-fluviatile_contig1 1079672..1080468 +


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

Feature NameUnique NameSpeciesTypePosition
mRNA_P-fluviatile_contig1.70.1prot_P-fluviatile_contig1.70.1Porterinema fluviatile SAG_2381polypeptideP-fluviatile_contig1 1060508..1079671 +


Sequences
The following sequences are available for this feature:

protein sequence of mRNA_P-fluviatile_contig1.70.1

>prot_P-fluviatile_contig1.70.1 ID=prot_P-fluviatile_contig1.70.1|Name=mRNA_P-fluviatile_contig1.70.1|organism=Porterinema fluviatile SAG_2381|type=polypeptide|length=498bp
MENASYAKIRLESAPYTTKFGIGLLSGAYVVGLLLCLLLGAFQGPKVFDK
SDPEAVETNSLNVTWYGQISGMERWHQVLYLHMRLNKPDVISGGVSYEQQ
YSVSSWGSVEPIDAVACPDGCTSECNVGGQCVELAQTTMDRVIQCRSNEQ
WCGWTTLLTEEFVEYGIYYMQVDMEEPKIFKDSLDFTLEFEIVFITKAFT
QYQMAWHYAWILITLVFMFVPKIGFFYEMMQLHQNFWSRQQQARVGLLLM
ALLFFNNVFFGFQIFSPYPRFFFSLYVVFVATFIALMLFFWLELFGDLAA
GNMQGTDTALEWERNRKKAVLEYLPKLVLVGLIWIATVLVYIYVRVQQTG
DPSYSTFDDLSTYTSVKVIGLLLATVYFLWLGTLVVSSFSHIEAMNSEYI
FIMVITLVTIVGAMAAVYTGALAPDQHGSKVFAYFYGMFNIYVLLLAFCY
TPAGSIYGDISTNDNVEMMAKDQQSIPAYKDDTAFTIVESNNEHTVL*
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mRNA from alignment at P-fluviatile_contig1:1060508..1080468+

Legend: CDSpolypeptideUTR
Hold the cursor over a type above to highlight its positions in the sequence below.
>mRNA_P-fluviatile_contig1.70.1 ID=mRNA_P-fluviatile_contig1.70.1|Name=mRNA_P-fluviatile_contig1.70.1|organism=Porterinema fluviatile SAG_2381|type=mRNA|length=19961bp|location=Sequence derived from alignment at P-fluviatile_contig1:1060508..1080468+ (Porterinema fluviatile SAG_2381)
ATGGAAAACGCAAGTTATGCCAAGATTCGCCTGGAATCAGCTCCTTACAC AACCAAGTTCGGTATAGGTAAGCGTCAATCCCGCGATTTGTCCGCCCCTG GGGATTGTTCTCGCGCTCTCTCTCTCCGCGCTGATGCCATCGGCAAGAGA CTGGCAACGGCAATATCTGTACACCCCCGTTCGCCCTCTTGCCCTGTGAC ACACAGCCCGCTCTCGTCGCCGCCGTCTTTTGTATTTCCAGGCTTGTTGA GTGGAGCATATGTCGTAGGATTGCTGCTGTGCCTTCTTCTTGGTGCTTTC CAAGGACCGAAGGTCTTCGACAAATCGGATCCGGAGGCCGTCGAGACGAA CTCTCTGAACGTCACATGGTATGGGCAAATCTCAGGCATGGAGAGGTGGC ATCAGGTGAGGCCTGTGAAATAGGCAGAGGGCTGCCCAAGTCTGATATCA GCATCTCACCCACACACGAGCAGCGGCACCATTTTGTTGCTTCACAAGAA AGCGCGAGCGTGCCTGTACGCTTGACATTTACACCCAGAAGGCATTTGCC TTTCCTGTCTACCACCACACTCAACACCAGGAGCTGGCAAGTCGCCCGAT AAGGGGCCCTTGCTGTGGTGGTGTACACCCCACGCTGGGTTGTACATCGC CGGTTCCTTCGTATGCCCTCGGCTAGAAAAAAACAACCGGATGGGGTACC ACCGATCTTGACTCCCTGCTGCACCACACACGGAATCAGCGCCAGACTAG GGAAATTGCGCTCACAAATCCCTGCCGAAGTACCTCAGTCGGTCGAAAAC TCCTTTACCGCCGAGCCGGAATAATCTTGTATGAGCGAATACGCGGAACA AAGGGGAAAATTAACCAAACACACACGGCAGATAGATGGCAGACAACCGA GCAAGCGTGTCATCCGCGGTTGTTGTCACGCTGGTCTTCTCGTATCCGTA CACGAGCCCTGCCTATGCTGAAAGCGTCGTGCAGCTTAAATCCTCAGCAC AGGTGCAGTACGCTTTCTCTGATGCACACCGCAGGGCGGTATTGGGTGCG TAGGGCACACTTGAAGGCAGGTGATCATGTGACATGGGTGTGACCTCCAT TACCCTCCCAATTCGGGGGAGGCATGTATGTATGGCGGGGCTTCCCTCCA CAGGCCCGCGGTACCCGACGGCCGATCAATGTGGTTCGGGTTAGGGGAAT CCGAACGCGGCGATAAGCTGCTCCGCGTTTTGGCGACTCGACAGGGCGAA TTAACTCTCGTGCGCGTACGCCTTTTTCGTCGGTGACGAGGAAGTCTAGT CCAGACTTGTGCTCCCTCCGGCAGACGTGTGACCGTGGATCAAGTCATCA GGAAACCTCTGAAACAAGTCGTCATGCGCACAGTCCCGGTGACGAAGCAT TTTTTCCCGTTCTGCACACGTTCGCGCGCCGATGGGTTTGCAGTGAGAGG GGGAATCAAGGATTTGGTCGCGTAGCAAGCTGGATTTAGTCCGCACAATC ATCAAAGCTCGCTGTACTTGTTCTTCGCGAGAAATGTTCTTCCCGATCAC TTCTCCTATTATTTTACTCAAATGTCTGCACTGTTGAATCCTTCCGATAT ACTCCGTATCAACAGTCAAAGACAAACCTCACTGGGGGTTCAAAAACAAT GCTCCGGAGTATAGTGGATCACAGAGTCAATGATGAAGCGAAAAAATCGA AAAAACGGAACGAAGCAGCAACCCAGCAACAACTGCCGTGTGGGCGGAGA AGTCGCAAGGACGCATGACCTTGCGTACTCCGAATAGAAAGCAAATCTTC CCCGCATCGCTCTAGGCCCCAGCAGTACATTGCCAGATTTTCACCGGCCA GCTTCCCCTCCCCATATCCCACTACCTTATGTCTTTGTTGCAAAGACATC TAAGCACTACGGGGCTACAACGAATAGCGCACAACGTGGAAGCAATCACC CACAGAGTCTCACGCACCCCAGAGCCGCCCCGGGACTACGCAAAATATGT ATCGAAGGGAGATGTGGGTGCATCGGGAGGGGGGCGAACGTTACGCAGGC GGACAATATCATTAGATTCAAATATTCCGACAAGGAGCGAATCGCAAAGA GTTCAGTAGCTGAAGCAATCATAAGGAGCACACACAGACGAGGGGAAAAA TCAGCGAAAGCAGTTGTCTCCCCGGCTCCTCGCCATCTCGCAGCAGGAAA AATCAAGCGGGAACGCATTTCAAGCGCTTTTCTGTGCCAGGCCTTTGGTG TTGGCACTTTGCCTCGTTTCATGGATGAAATAAACAAACGCCGGAAGTCG ATTTCACGATAGCGCCGCGCGTTCTTGCGTTTTATGTTGGTCAACGGGCT GCCGGGATAAAGTCTCCTCTCTAGGTGTCTTTTTGCGGCCCGGCATACGA TGAAACGAATCGTGCGGAGCTCCGTGAGTCCAGGCTCAAGGAGAAAATCT TTGTTGTGATGTTCACTGTTTTCAAAATTACGGACACATAACTGGCGCCC CCACCCCCCGCCGCCATGTTACGCCTAGAAGGGAAAACAACAAACGAAAG TAGTCATACAATTAAATGTTGACAGGGAGCCCCGTCCAGGATAATATTCG AGTGCTGCTCCCCCACGGGTGGAATCGCAACCACATGTCCCCCCCATGGA AATGTAAGAAATTTCCGTAGGAAACCTTGAGTGTCCCTGAAGCTGGGACG ACTGCATGCCTGACGTCGGTTGCGCATAATTTTCTTTGTCAGAGATCGTC CATGCACAGCATTTGGTCCGTTCATGTTTCTTGCAACGACTTTTGTCAAA ACAATTTTTGGAACGTAAAACAGAGGTATTTGTAATCGCCTCATCGAGCT TCGTCGATAGAAGTTTTCTATTGGACATGCAACATTTTTGGCCCACTTAA CCCACGCCCCCCCCTCGTTTGATGAACTCCCCCTTTTCACCGTCGCGGAA CCCAAGACATTCACGGACCCCCCTCTGCAAGCCACTGACCGCTTTTTTTC TCCCCGTCCAACTTGTCACTAATTTGCGTGCCGGACACTGAATTTCGAGT AGTACATGATTGACTACATTCTGCAGCCGATTGAACACCCACTATATTCA AGTTCATACCTCAACAAAAATAATTGCTTCACATATTTCTGACCTCTACA CACGGCCAGCACACGGCAATCTTTCGCATGATGTCGTGAGAAATGTCACC TGGAGCGGAAAGCGTATTGGTCAGCTGCGATATGGCTTCCGCGGGGGGCA GCCGTACCTTGGTTTTTATGCTCGGGAAAAAACAGAAACAAAAAAATAGA AAAAAGTACAAAGCTTCTGGTGGGCCATGCGCCATTTCGTCCATCTATGA ATAGACGCATCACTCCACATGCTATCTAAGCGTCGTCTGCCTCCTTTCCC CCTTCTTCAGCGTTTACAAATACAGAAAATAGCAAAAAAAATGCTAGAAT GATAAAAAAACTAATGGTAAAGAGCTGCTTCGCCAAGCACAAAAGTGTCC CACGAAAGGTCACCCCACACCACATCACAACGCAGTGTCTTCGGCCTACT TCTCCGCGGCCCGCTCCTGCTTCCATTTTTCGAATCTTCGTTTCGCCCTG CAGTTAGGCAAGGTTTGGCAATCCTACGAAGCTGCCAACGCCCTCGCCTG CTGCTCAGTTCGCCTCGGCAGTTCCAACCGCCCCCATTGCCACCACTGCG GCGTCTCCCTTGGCCGACGCTTCCCGGTGCGTCGACCACCCCTTGAGGTC GCGACTCTGAAGGTACTCCTCGAGCCCCTCGTCGTACGGTGCAATCTACA GCCACGACACCCTGCTCCATGCGCCGGTGAACTCCAACGGCACGCCTGGC GTCCGCCAGAATCTTGAGGATATGAGGCAGGGAGTACTCGTAGTGCAGAC GAAACAGGTGCTTCATGCATCTCCGTATCCGCTCAATGGCGTTGAGCTCA GGATGGTAGTTGGGCATGCGCGGTAGTCCGCCGCCTTGTAGATCTGCTCG ACCTCGTTGAGAACCCCTGAGAGGCCTTGAGGTCGGAGAATACTCCAGGC ACAGTACTGCTGCCTCCTTGCCCCCGTCCCTGTGGGTTCCTGCCGCCTCT TCCGGGCTTGGTGGAGAATTTCCCGCCCCTCCCCTCTCCGGTTGAGTGCG GTGGTCGCTTGGCGCGATGCCTTGTTGTCACCCTTGCAACTACTTGCAGC AAAGAACAAGCCCCTGTTTGTCGCCATCGAGTTTCTACAACCTCATATCC CTGAGCAATTGCTGAACCCTTGTGTGAGGCCCAGCAGCGGCGAGCCAGCC TCAACTCAAATCCCCACCGCCAACTTCTCGAGTGCCGCGCCGTGCTTGCG TTTCGGGTCCTTCTTCTAAGCTGTCTCGGGCAAGAAAACCTTCTTGCCGG TCAGGAGTTTGTCTCCAATCTGGAATGTAGGGTACACCTTGTTCCCGTTG TAGTGCTGGAGTCGGACGAAGGCGACCTGTTCCCCGCCCTGTGCCAAGTG GATATTCTAGGGCAGCAAAGGGTTCTCGTCGTTAGCGCCATGCCCGGTAG AGTTGTCGAAGATGAAACCCACCTGCCGATGTGGCTCCATCGTCGGCTCG GTCACGGCGATTATCGCCGCCACGTGAGCGCACATGCGGGCGCACGTCCC GTAGCCATCTACATGTTGGCCCGCGGTCATGATGACGGCAACCATGGAAG GGTCTTAGGCGGCTTTCCCAACTCCGCCGTCCTTCGCGGTGCTATTCAGC ACTTTGACGGCTTCCGGCACCGACTTGACGGCCAGGCCATCCACTTCCTC ACCCTCCTTTCTGCCGAAGTAGATTCCAGAGCGACCCGATTTCTCTGTCC CGTACAACGTCCGCGGCGACCGTGCCTGGCGCCTCCCCCTCCGTGCCATC GTCGACGACTTGGGCGACGTCTGTCTCTATGACGACGTCCTTGTCTTCCT GCATCATGCCCCAAGCCTCCATGCCGATGCTTAGCCCTCCGTTGTCGACA CCGATTGCGTCCGAGATGTGCGCGGCGCGGCCTTCTTTCTTGACTCTAAT CGCCACACTCCCGGCGCCGACATCCACTGGTGCTCTCCGTCGTCGTTCTC ACACGGCTGTCTCGCCGTGGAAGAATAGGGACAACATTTCGTGATCAGGC ATCATGCGAAAGTCTGGCTTGCCATCGGTCGCCACCAGGTCGCGGCTATC GAACGAGATCCGCGTCGAGTCGACGAAAGGCTGGCGCTTGCAGTCGTGTC CGCAGTTGGGCGGGATGTTCTTGCCGTTCACCCTCCTTTTCGCGCAGTTC TCGCAGTTCACCTGCTCAACGTGGGCGCGCACGTATTTATGCCACACCTT GCCATCGACCGTCCGCACGGCTGGCCAAAATAGCACCTCACGCTCCACCT ACTTCGGCCGGTAAAACTCCGTCACCTCTAGGTCAGAGAACAAGCTGTAG GCCCCTTTCGAGTCGGACGCTGCCAAGTCGCGCCCGTCGAACGGGAGACG CGTGCAGTCACCGGCACGCGCCTCGTCGTGTCGCCGTTGACGCGCATGTT CTTGCACTCCAGTATGCCGTCAACCTCCCTCCGAGCCGGCCAGAAGAGCG GTCCCCGACCCGTCACTCCCCCGTTCCTCACCTGTTTATCGCTGCCGTCG TCCATGCCCACCACACTGCCGGTGCAATCGTCGTCGCTATCGCTGTCGTC CGTTCCCCCACTTGCCGAGCTTTTCCACTACTGGTTGCCACCATCATCAC CGTGTCTTCTGGTCGGAAAGGGCTGCCAACGGGGCGAGGACATGTCAGAA GCAAGAGAGGAGGGCGGGCGTCAGCATCCGAAAGCACTTAACAGCCAATA ATAATAGAGCTTCGTTTGTTTGATATTTGTTTTGGTTCCGCCTTTTGAGG AGCGCGTTACATTTTTTCAAACACGACTTTCGAAGACACGTGAATGCTGA AGAGTAACGCTTTTACTTTTGCGGGCAGCCGGTGAAAGAGAAATATATCG AAGGTATATGCTGCACTTTCCGGCAGACGTACAGCGCCGAGGCAGTGCGG GGGGCGGGGCGCTACAGCGGCGAAGACGGCTACGTGTTTCTCTGCGGTGT CTTCCTATACAGAGGAGCACACAGCACCTGTCATATGTGGATCTTTGAAC GCAATCAAGGCGAAAAACAAAGGAAGCACCTCTGCATCACCCAGCGCATT GCGTGATGAAGCACGTGACAAATCGCCGGCCCTCGTCAACGACAGCTGAC CAGGCGGAAACTTCGAGCTTCTCCTTCGATACTCCCATGGATATCCTTTG GCGAAGAGCGAGCATCTTGAGCACGAACTCCCGACGGGCTTCCACGACGT CTTGCCTGTTATGGCCGTCTACGAACACGCACTTCTGGTGTCGAATCCAC TTGAAGCCGGGCTCCTGCATCCACTTGTGCCCTGTCCTCCGAGAAATACC GTTGGAGTCGCCGAGCTCCTCCTTCAGGAGCTCCTCCTTGATCCACCTGT ACCGGCAAACAAAAGCGTGGCTATTAAAAAAAGGGGAGGGGGCTGATGTC AGGGGCTGAGGGTAGAGAGGTTGAAAGAGTTCGACACACAGAGGCGCACA ATCACCAAAATCACAAAAGCGAAACCGAAGGGGGGAATAGGTTTGTCGCA AGGTGTTGAGAGCACGTGCTACCTTCTGCATTTTTACTCAGGAGAAGAGG GCGGACTGCATTTTACGAAACATCGACTCATGTACTTCGCTGACATGGTC GATTTAGATTGCGATTGGTTGGACGATCTTTTGACTGGCAGTTCAATCGT GTCTGAGAAGGTAGTGGGGTAGTGGCTCATTTTTGTGTGGGGATTGGCCG CGGAAATTTTATGTTATTTAAAGGCACATGCAGAACTGTCTCAAAACATC CCTCTGCCACAGCAACACATCCCTCTATTTCGGAAATCGCTTGAGCCACA TCGAACTCCTGCGCTCCAACAAGATCACTTTTGCACGTCTCCCACTCGAA GGCGCGGCTCGTCCTTCTAGCTTGTACAGTTCCGATCGATGTACTCACGG AGACGCTCACGGATACCCTAGTCGTCGATGAAGGAGTGCGACTGCGGCTT GTCGTAGGGCCGGATGGGAACGACGAACTTGCAATCCTGGCAGAACTCGT TCACCCACTGTCGTACTGTCTTCGATTCGACGCTGAAGTTGTCGGCGATC GTTCTGCTGCACTCCATTTTCTCCACCACGTTGTCGATCATATCGTTCGT TTAAGGTGCCGTTCGATTTCGTGCAGAGTGCGCAAATGGCATGCCATGGC GTACAAGCAGACCAGTGAAGATACGCTACAGCAACAGACAATAACCCATT ATCAAGAGGCCGCACCGCAACGAACGGGCAAAGCAAAGGCCTTGCGGAAA ATCTTCGGTTCCCACTCACTCAAGGACAGGGAAGACCCTCACGGCCATGA CGCTGCAAATTTGAACCAGCCTTTCTTCATCCAGCATCGTTAGTGGACTT GCACTACCGACCTGAAGTTGCTCCTCGAATCAACTTGCGTGGAAACAGAA AGCACACTGCAGCACAGATGAAAGCACAGCTGTCAGATGGGGGGAAATGG GGAGCTTTCTTGAAGGTGCTAGGTTCGAGTTGGGACACCGTGAAGCGGGC TTGCCGTGTGGGATGCGGCAAAACTCGTGCACACGAAAGGGATCATAAAC AGCGGTAGCGGCGATTCCGTAGTCAGATATACTTTCCGTTTGGCGGCGGC AACCAACGCGCATAGCGGTATCACCAAAACATGATGAACGGGGAAAAGTA ATGCGTTCAAGCAACAGTGAAGCAACAGTGCTCATCGCAACCGGGGGCGT GGTCAATCAACGCATGAGCAAAAAAGCAACAGCACGCGACATTTTCAACA CGTTCAAATAATCAGTTGTACCCTTAATGTAATTTACGAGCCACACGTCT TAACTCGTCGAGTTCGGCGAAGGCTTCGCGGTAGGTCTCCGTCAGCAGAT CCTGCTGTCTAATCCAGTGCTCGCGCGTTCGCCCGCTCACCCACCCCAGC TGCTTTCGCCCGTATCTCCCCCCCCCCTGTGTTGCCCTGTGCCTGCGGAT GTAGCGTCGCCGCGTCGCTCCTAAACTGCCACGAAATTACTGCTTTCGCG GGGTTCCTCCTCCAGCAGGTATTTGTTTCCACTCCCCGTCTCTGCTCTGT GGTTGTCTTGAGGGTACGCGCGCGTGAGTGCCTGAAACTCGCCGCCGAAA TGAGTCACGCGAGCGCTTCGGTGGGGAGCGACAGGTTCTTCGGCGGCGGG TACTTGCGTTTTTGTCGACCTTCACCAACATCGCTGTTCGCCGCTGCTCC TTATGGAAAGTTCTCCAGAACCCTTGTCGCGAGGCTTATGCGCGCCTGAA TCTACTATGCAAGACGTAGGGTGCCGTCGCTCTCGCCGCCGCGGCCTCTG CTGCTGCTGTCGCTGAAGTACTCGTCGCTGTTGAAAGATGAAGCCGTCGG AGAAGGTATTGCAGCACTCGCCCAAAACTGCAGCTGCATGCTCCATTGCA TGGCCATCAACCCACTCCTCAAATCCGAAGTCATGGCCTAAAGATATCGA CATGTCGCCATCGCTGCAGCAGCTTTCGACTTCCGCGCCACCGTGACATG GAGGTGTTGCGGGCGGAACAACCTCGCCCATCGTAGCAGCCTCTTCTATA ACAACTCGCCGCCAGCAGAACAGGAGCTCCCTTCCTCCTCCTCCTTCTCC TCGTCCTCCTCGTCCTCCTCCTCTTCCTCCTGCTGCTGCTGCTACTGCTG CTGCTTCGTCTGCATTCTCAGAAAGTTGGCCAGTGTTTGCACAACGCCCA CATTCTCTCGGCTTTACATTACCTTGCGGCGGCGAAAAGTTGGCTGCGGG AGAGATGCGGCGGAACCTATTTCTTCGCCGCGTCATTGGCTGCGGACACC ACACTGTGCAAAATTCAGTTTTGACTCAATTTCCACTGTGCGCACTTCTG GGATCACACTGTACAAAATTCAGTTTTGACTTACCCTCCACTGTGCACAC TGCTGGGATCTTCATCACACCACTCCTGATCCTTGTTCTCGCCTGCTCCA GCCTTCTTCCTAATATCCACGGAAGCTGCTGTGATGGCGAGACTCGTCTC CGACGACATAAGCAGCACCATCATGTACCGATGGATATAATGTTGCGGCT TCGCAGATATACTTGACACGCGTTGGCCGGCCTCGTTGTATTTTAAGTCC CACTTCCTCCTCCTCAGGCGCCCCATGGGGACTCTTGTGAATGCGCTCAG GGCATGCGCGTGTGGGGTATGTGTGGAGCAGCTGTGTCCCCTCCCCTGCT GCTGCTGTGCGCCGCCACAGGTCGATTTTCAAGAAAGAGGACTTTTTGTT CTTCGAAACAGAAAAGGTCAACAGAGATTTGTCACAGGAATCGTTTGTCG GCCCTTTAATCGGAAATCATACGGCTCAATTTTCCATATAGGAAACAGCT TCACCTCCGATTTCAAGTTTTTGCTCGATATCTTGGTCAATATTGTACAA ATCAAACGAAAAAGACGCTCACGCCAAAATCTGAGAGCTGCTCCGTTGAG ATACTGGAATCGGTAAAAATTACGATCTTCCAAGCTGGAAACAAGTTTAT CCACTTATCAAGGAAAAGAGGCAGACAACAAAATGAGGTCACCAGTGCCT GGAGATAGCGCGTTCGCCGGGTTTTCGGATTCGGGAACACCGACACCTAC CGCGAGAAAAGTGCACCTTGATGTTGGGGAGATTTGGGATTTCGTGTTGT GCGTGGACCATATGTCGATTCTGGGTCACGACGAAATGGTTACATTCCTC TGCCCTCCCTGTACATGCCGCGATTCTTTATGCACTTTGTTTCGTGCCCT TCGAAACAACTACTTTCATCACCTGCTCGCGGAGCTGCGGCGGTTCACTG TATGTCTTCATCCAAGAGGGAACGAACGGAACGCCGTAGTCAAGGCAGAT AAAGCGAAACCAGTTAACTTTTTCCAAGGTAATAAATGCAGCTCGGCCAA ATGCGATTCCTTCAATACCTCGTTCTATCCTCCGAATTGCTGGCATGGTG CAAAGTGGTCTCTGTGCATATTTGGAGAAAAACGTCGCATGCATTTCGGG ATGAGCACCACAGAGGGATGGACTTGTTTCGGAACCGCTGATTCTGGCGT CGGCGCCTCGGCCTTGTTGACAAAGGCGTTCCTCTTTTTGCCGCTTGGGT AACGAAGTATTGTGAACTGTCACTGCTGCGCGAGCAGGAGATGCACGTAC TTGTTTTGCAGGGTACGAAACAAAGCTTTCATAGAAAATCGCGGCATGTG TGGGGGGTACAGAGGAATGTGTTAATCTCGTCGGGCCAGGACCAAGTGAC TGACGCGAAGGGAGAGACATTCATCTTGTTGAACAAGTCTAAAGCAAATG TCCACAGCGACAAACCAACACGTTAGCAAGGAGACGCGGCGAGATGCGCG TGCCGAATACCTGATGGAACGGAACCCGCCAGACACAATACCTGCTCCGG CGGCGATTGCAGGTCGTAGATGAGTGAGCTGTCGGAACCAGGGAGCGCCT GAAGAATCGCACCGACTTTGGTAGAAGTGAAGGATGATCAATTTCCTGGA GACGTATTTCAGCACCCCATACACAAGGACAATGGATCTGCCCACATTGC ATTGGCGGTGCAAGGCGACAGTCTCCCCGTGGTCGTGGTGCTGCGGTTGT GGAGATCGGCGAATGCCGGCGGCAGCTACTGCTTCTGGCCCGAGAAATTC TTCTCGAGAAAAAAATGGGGTCAAACGCGGAAACAGTACACCTTTACGTG ACTCTGTTCGAGTTGCTGGAGGTTGAAGATCACGAAGTATGGCGCTTTTT AAATCATTCCACCAATGTACATCGCACTGTGTTTGTACTGTTGCAGGTTC TCTACTTGCACATGCGCCTGAACAAGCCGGACGTGATCTCGGGAGGGGTG TCCTACGAACAGCAGTACTCGGTGTCCTCCTGGGGATCAGTGGAGCCGAT TGACGCTGTAGCGTGTCCGGATGGATGCACATCCGAGTGCAACGTTGGTG GCCAGTGTGTTGAGCTAGCCCAAACCACCATGGATCGCGTGATCCAGTGC CGCTCCAACGAGCAGTGAGTACCTGGATTGGCCGTTTGGGAGCGAATCGA GTTTGTCGTATCGAAATAGGTCCTGACGTTCATATGGTCCATCCAGAACC CCCGTATCAATGCCCCCCCCAAACACTCAATTTCATATGCAATCAGCCGA CATAGATAACACACGTATCCACAGAAGATTGGAGTTCAGAAAGCAGTTCT TCCAACCGCGTAAATTTTATTTCATTTCCTTTTGGGATAACTTACCACCC TCGCCAAAGTTTTCAAAACGTAACACGACGATCCTACGCTTATCGACAGC AGCGTAGCCGATACCACCACACCATAGGTTCGGAGTAAATGTAGTATCGC TTGATGCTGGTTTCTGTACGCTGCAAGAAAGTGCTACACCACCTCGCCAC GCAGCAGCCAGTGGGGTGGCCACGAATGACGGGCTATGGTATCATCGATC GGCTACAGCAGGAAGCGCGTCGAGGCGTTCAGCTCACAGAGATAGAACAT TTCTTGTGAACTACCACCGCAGGGTCCTGATGCCAGATTGAAACCACCCG ACGCGACTTTGTAGCCTGAGCAGCATCACAAGATAATTTCAACTCAAAAT CAAGATCGGGCAAACTAGACGGCAGGCAGGGTGCCCGCGTACGATCACGC AGTACTGGAATGCGATGCTCCGTGAGCGTTCCCCATCCACAATCCAAAAA GCGGCGTGGGATATCAATCGCACGCTCATTTCCTCCCACCTTTCGATATG ATCCGAGAATGAACGTATTTGATCACAACCGCGTCGCTCCTGGATCGGGT AAGAAAAGGGCCACAAAACATTTCTTCCGACGACTGTCCATGTCACATTC ATCGCGATGCCAGAAGACGCGAGATCACGTGTAGACTTCGTGAGGAATCG CCGTCAAAGCACACAGGCTGGCTGGTCGCGTCTGACGGCGGCTTGGAAAG ACAAAGTATCAACCATTCGACCGCTGGCATGCACGCGCAAGCCATCGCAG AGAGTAGATAATTGCTTAGATGTAGCTGCACCCGTTTCGGCCTCTCTGTT GCCATTGCTGTAACGAGTATCTGCACTTTGTGCCTGCTTAGGCCCGGGCA CTGCATGAGGCTCTCGCGGTGTAACTTCAGCGACAGCCCTCTCACCGGCC CTCCTCGCGAAAGATCACCGCCCTCGTGGTCCTGAATTATGTCCTTACAC CCCCCTCCTCCCTTGGACGATGTACAGGTATTGTAGGATGAGGTAAGTAT TGCAATGGGCCACAAACTCGGTGAAACTTCGATGTTCGAACTCGACGACC GAAATATTTCACGAGGCAAAACAGGGTTGTCTTGCTGAACATGAGCTGTG GATGGTCTTGCCCCGCGTGGATACCGGGAACAGGACCGCCAGCCTCGATT AACATGAGTCCCATGTGGAAGAGTGGGAAAGAGGGAAAATCGAAGTGAAG GGGATGAAGATGTGGAGACGGGTTTGAATGCCAGAAAAAAAATAGAGATA ATAAAGTGGACCGTGTTTTTCGTGGTAACATCCCCAAGAGGTCCAACTAT TCATGTGGCCCCATGTTACTCCAGCACAAATTGTTCCTCTTCTGAGGATA GTAGCGGTCAAGGGTCGAATGGGCGAGGCGAGCGACGGATTGGCCCGCCG CGTTTCCTCTGGGAGCTACAAATAACCTTTCGAACTTATCACGGCGGCCG ACTTTTCAAACAGAATATTTGTACATCAAACCCCAACAAGGGTCTTGAAA TACAATGTTTTTTCTCGAAGGGCTGCAGCTCCCTTTAGTAGGCGAATATG GGCAGGCAACACTGCTTCCCTTAATCAGATTTCGCGTAAATTGCCCAAGA GTAAAACAGGATGCACTGCTTTTGGCGTGTGTGCAGTACGCGCTTTGCTT GGCTCCGTTGCAGCAGTTGCTATCCCTTACTTGCCGCACTCATTTTTCTG TGGCAGGTGGTGCGGATGGACTACGCTGCTCACGGAAGAATTCGTGGAGT ATGGAATTTACTACATGCAGGTCTGGTTGTAAGCGACCCTCTCGAGGGTT TGGCGGAGAAAAGTCGTGGAGCTTTGGTGGCCGCAGAATCGAGAGCAACA TTAGAGCATTGTTGACGTGTGGACAAGAATTGCTCGAGGCTGTCAACTTC CATTCTGATTGCATGACTTCACACAATGTGACTACGAGAGGGGGGTCTAG CCATTGTGTAACAGCTTACTAAAGGTGCCCAGCGACCGTCCTGACCATCT GTCGTCTGCTGTTTGATCGCGTGCCCTCTCGGCCGAACGTGTTGGCATCA GTAAAGTTATCATGACTCACACGTTATGTCGCTCAATTTCATCGGGATTC CTCGAAATTTTTATTGCTTTCAGGTGGATATGGAGGAACCCAAGATCTTC AAAGATTCGCTGGACTTCACCCTTGAGTTTGAGATCGTATTCATCACGAA GGCATTCACACAATATCAAATGGCGTGGCACTATGCCTGGATTCTGATCA CGCTGGTATTCATGTTTGTCCCCAAGATTGGCTTCTTCTACGAGATGATG CAGCTTCACCAGAACTTTTGGTCACGACAACAGGTGAGAGTGCGAATCTA CTTTTCGAAATATGAACCGGAGAGTCGGATGGAGTAGGAGTAATGGACAG TGAAGCGTTGTAGACCGACAGGTGTTCTTGATACCCAACCCAAGCGATTT ACTCTGGATTTTTTTCACGTCTCATGTGTCTAGTTTAAGCGGGTGTGACA CTCGGGGTGGCTCTGGACGTCGAGCATGCCGAACCGAGATCAAAGTTGAA ATCGAAGATCCGCCGATTGGCTAACGTGAACTATTTTGCCGCGAAAAATG GTTGTGGGCGATTTTGGTTCTGAAAGTGATACGAAATGAAAGTATCAAAA GCGATGGCTGAAAAGATTGACAGGGCGGCCCAAACGGGGAAATGGAACAG AAGCAACTGCTGCCATCTCTGTCTCAATATTGGACACGTGTCTTGGTCGT CACTCTCCCACCCACCTGGAGATGTTTGGACGGTTCGATCTATCCGGTGT GGAAGCTGTGCATCTAGCAGATGTATGAATCATACATTTGAGTGCGATCT CCTTTGATCCACAAGGAAAGGTAGTCGTGACGTGAAATGCTTTTTTATCC ACGGCATGCAGCTATCCCGACCTTTTTTCTTTCACATGGCACCCTTTCAT CACGCGTTGTTCGCTGGCTCCTTGCCGGTTCGACACGAGACCGGGTCTAC GGATCGGCCTTGCTGACGCCGCCGTTTTTTCTTTCACATGGCACCCTTTC ATCACGCGTTGTTCGCTGGCTCCTTGCCGGTTCGACACGAGACCGGGTCT ACGGATCGGCCTTGCTGACGCCGCCGTCCTGACCTATCGTTTTTTTTTAT GTGGGACGCCCGGCATCTCTTTTGGTTGTCATTATATTACTTCAACGGGC CTTCCAGGCCTTTCGCCTCGCCTTTTGATTTGGATTTTGGATTCCAACGG TGCAAACAGCTTGAAACAATGTTGCATCAAAAATCGATACCATATTTCGA CTTCGATTTTGGTTCGGACTTGGTTGATGTCCAAGACCTACATCCAGTAG AGACGGCTGAAACAATTTTACCCTTGACGCAGTCCGAGAGCATCGATTAT CTTCATCTTATGTCGTTTCTTGCTCTTGTTCGATGTGGTCTGCTTGGAGA GCAGGCACGAGTGGGGCTTCTGCTGATGGCACTGTTGTTTTTCAACAACG TTTTCTTCGGGTTCCAAATTTTTTCTCCTTACCCTCGCTTCTTTTTCAGG TAAGCTCGACGGTTGGGTGCTGTATGTACGAGCACGGAATCGCGACAGAG TTTTCACGGCAGCTGGCCGATCCAAATATCAAGTCGCAATCTTGCAAATT CTCAGTAGGCTGGACTGGGAGTTCAATCCTTGAGGAAATTGTGTGGTCGT CTAGCTTCCTCTCGTCAGCGCTGTGACCTTCCTTCGCCATGTCTTCAGAT CGCACCCGCTGAGTAATAACATATTTGCATGCGCGGAAAGTATCCTGGAT TTTTCCAGCCACGTGGAAAACCTTTCGCCACCGCTCGAAAGTGCCAACGC ACGCAAGCGGACTTTACACACCTGTGATTTATGTTGGCGACAGCCCGAAA AATGCTTTGAGATTTGCAGCCTTGCAAACGAGTGCACCAAACGAAGGCAT CATTACTGCCAGAATCCTGCATCGAGGTGCGTGAACAAGCCGGGAACAGA TTTTTTGCGTTCAAGTTTCTGCACTTCCCTCGCTCTCGGAGTTAAGGTAT CCCCGGAAATTTTGTCTTTGGGGGAAAGGTCAAGCGTGTTACGTTTTTTA TTTGCTCTCACGTGCTGTGGCAGCACTGTCGTAGTGCTTTGCTGCATGGG CTCGACCGCTCCAGGAGTGATGCTGTGCCGATGGACTGCAGGAAAGAGTA TGGTCATCTTGATTGAATTGATAGTTGGCTAATCACTTCATGCTTAAGAC GACCAAATCGTTGTGTAGAAATCGTCCGCTCTGGCCTTATGACTTGGGAA GAATCTGAACTTGGGTTTTGCACGAACTTCTCCTGAGCAGCCCATTTTTC GCTGTTCCTTTGTGCTGCGGGCAACAGCCTGTACGTGGTTTTTGTGGCGA CATTCATCGCGCTGATGTTGTTCTTCTGGCTCGAGTTGTTCGGAGACCTC GCTGCGGGAAACATGCAGGTTAGATGATCATCAGATCGCCGTTGTTGTAT GTTTAATCCCTGATTTTTTTCTCGGGGTTGATGTAATCTACCATACCAGT GTAAGCTTTTTCTGACTTGCTGGTGCCACGGGTTTGCACCTATAGGTGAG CGGCTCGAAGTCGAAGTGGTCCAAAGTGAATCGAATGGAGGCGCTCATGT CCTCGCCGCCCCGCCTCGTCAAGGCCACGTCACAAGTGTAGCCTCGTAGC CTGTAGGGGTTTGCCGTTGGGCAAAAAATGTGCTCATCTGCGGTAGGGCC GGGTGTTCTAACCCGAACATCCACAGACATCGGGTTGGTTGCAGACACTG AAGGCTGAATGAAGTCGAAGTGTGGAACATTCTCCCAAAGCGTCTCAAAC GCGGGGAGGCGTCTTAAACGTTTCAGAGGATGATTTCTCACATTCCCAGG GGTCAAAGGAAGCATACAACGCGTCGAACGTCTTGACACGATATATGGTA GGGCGAAAGGACACATACCACACGAGGTGGCAGGGACACCTTGGAAACAT GTGTTTCATGATCATTACCTGCTGAAAGTCACGTGCACTTTTGTTGACAC GACGACGAGTAAGCTATCGGCCCACGGTACATTACACTCCCGCTTGCAAG GCGAGTGCATTGCAGCGACGTGGCTCACCAAACACAACTTTCTTCAACCA TATCAGAACTTTGGGGGAGTACTGCAGCAGCCGCGTGTGCAAAAGTGATC GAGCCCTGTCAAATATTGCGAATGGTTGGCGGCACCTCCGCCCGCTGGTT TCCCAACCTCTTGACATGAGTTTCGTGAGTGAACAGCGGCACAGCGTTGG AATTGAGATTCTGCCCTACGCCGTGTTCGCTACATCGCCTCCTTCCATTT ACAATCCAGAGCGAATTTCTTAAGAAGCGCGTGCGCTTCGCGTAGACCAG CATGTGCACTTAAACCTCATGCCTGTATTCTGTCCACTGGGGCCTCAAGA GGTGTTTTTTTTATTGTGCGGAAGGTCAAGATGACAATATGCCGTCCAAG TCAAATCACGGGGGCACCACGTTCATGGAAACAAATTTACGCGGGGATTT GACTTCACCCGAGCGTCTTTAAAGGGACAACTGTATCTTAACAGGACACA AGACTGTATCTTTTTTAACACTGGGACCGACAGCTTGCGGATCTTGACAT GTACAGTATCGAAAAGTTGAGGCCGACAGCAGACCGATTTTGGTAGGACA TTGTTGGCGAGAACAAGTGTTTGGAGCTCTGAAAAAATATGGCGTGAGTA GGATGAACCATCGGGAAAACAAGAGAACAAGGCACTCAATATCATCACTC AGACTTCCATGTCTTCGGTTTTGCATCGTACAATTCGGGTGACTGAACAC CTCTCAGTTTGATATTGGGGTAATCACGATGAGAGTTGAAGGGAACTGAC TAAACTTTTGCGTCGGAGGACGCCTCTATCTTCACCCCTCTCACCAGTCG GAGACGACCGATGGGGTTCGCACAGCAAGTTTACATCCCAGTCTGTTCGC CGCTCGCACTCATGTGGTGTTTCAATCACCATCACCCTTGGATTGGCCGA CCACCACTTCCTTGGCCGCACTGACAGAGATGCTATTGTCGCCCTGCCGT CGATTGATTGACCGCACATGGCATACTTTGAACCAAACTCTACCGTCGTT GATTCAGGGAACTGACACAGCGCTCGAGTGGGAGCGCAATCGCAAGAAGG CTGTTCTTGAGTACCTGCCGAAGCTGGTCCTTGTGGGCCTCATCTGGATC GCCACCGTTCTCGTTTATATGTGAGTCCCCATCGTATTCGCCGCTCCTCT TTGCTTACTGCGCGCTAGCAGAGCTGCGACATCAATTTCAAATGCGCACA AACACGTTTCATATGTTGGGAGCACAACCGTGCGGGCTCAGCTGTAACTG AATGCCCATTCGATTTGTGGCTTTCGAGCAGTTACGTGCGGGTTCAGCAA ACCGGGGACCCGTCGTACAGCACGTTCGATGACCTGTCCACGTACACCAG CGTCAAGGTACGAAAGTTTGCAAGATGAGAGTGGTTTAAGGTTCTGATAT TTCGGCGTCACTCCCTCCCTGCATGACTGGCGAAGATGTTGCGTTTGAGC CCCCTTGCGTGAGGAATATCACCAATTCAACGCATTCTGCCGCGTCCGCC AAGAAAGAATGTGGTGTGTGGGGGTGTGTTGATTCAGGCAAAATTTTACC TACGCGCTAGCTCGACACCCCCAAGGTACATTTCGACGCCCTTGTCTGTA TCCTTGTGAGGTGAAACCGAAAACTCGAAGCAATAATAGGAAGATTTGCA TCGTCCAGCACACGAGTCTGCGTGAGAGTACGGTGCAGATATCAAAAGAC GACCCTAGTGTCCGAAAAGCCGTAAACGATGATGACGAACATGCTTACGC CTGTGGCTGGCTCTACGCCGGTAGTTTTGTATCTTGAAATATCTCTACCG AGGAGTGGGATGTAGATGAGAAGCTATTCGAGCGACAATCAATTATGCTC ATCGTGGCTGTCGACGATCTACGGCCGAAGAAATGCCATTGCATGGGTTC GCCTTGCCCAACACTTGGCTGCCATACCTAACACTGCAGGTGATCGGGCT TCTGCTTGCCACGGTTTATTTCCTGTGGCTGGGAACGCTGGTCGTCAGTA GCTTCTCTCACATCGAAGCTATGAACTCAGAGTACATCTTCATCATGGTG ATTACCTTGGTCACCATCGTTGGCGCTATGGCTGCTGTTTACACCGGAGC CTTAGCACCAGACCAGGTGAACACTTGGCACTCTTGCAGAAAAATCATAA ACTCTGACAGCGCCTCAAGGGACTGAATCGGGAAGCAGCGCGTTGAAAAT GATGAAAATCGTAATCCCACTGACTCCGACGGCGCTATCGGCCATTTGCC TCTGCAGCATGGGTCCAAGGTTTTCGCCTACTTCTACGGGATGTTCAACA TCTACGTCCTTCTTCTGGCATTTTGTTACACCCCGGCGGGCTCGATCTAC GGAGATATCAGCACCAACGATAACGTGAGAATTTTCTTGTTTGTCCACCT GTCGAATCGCTTCAGTCAATTCTACTTTAATTCGTTTGTTGCCTGTCCCG AACTCATGGCACTCTTGCATTTTACGTGCGTTGCTGCGCCTGTCCGCCCT GGGTATCACATGAAGGTGGAGATGATGGCCAAAGACCAACAGAGCATTCC TGCCTACAAAGATGACACAGCCTTCACGATTGTGGAGAGCAACAACGAAC ACACCGTGCTTTAGGCGGCGCAAGACACAAAAAAGGGCAGTGTAACATGG GAGGAGCGGCCTCTTCCTGGCGACAGCCTTTCCTTGTGGCTTTTCCATCG TAGTTTTGGTTTGTTAGTCTTCGTTGGTTGATACGTGGCTTGTCCATTGG TATGCTCTGTGAGAGCTATGTGGTTGACTGGCTTCAACAGCGACAAGCAT AATTTTATTTTATTGACAAAATTTTTGACTTGCCGACAGTCGAAAATGAC GTAAATACTTTATTCTGAATTTCGCCGTGAATCAGGCCACAGGAGGCATA CCTGCCGCATATGATGTCATCAACGGCGACCGCAAGGCTCGAGAGATAAC GGTCAAATTTACAACTCTTTACGCCGAGAAAAGGAACGCCATTTGCCCGA AGTTTGCTGCCTGATTTGGTCACCTGCATGTCCTCTGCCCGTCAGCTTCA TTTTGTCTTTGTTTAACCATCATTCGTCGGTTGCCTTGCTCGCCCAACAG TCACCCTTGGCGTATGAATTCACACGAGTTGCCATCCGCCGTCGATCATG GAATATGAGGTGTGGCACGAAGTTTTGGGGTTCATTGTTTGAAATCCTCT GTGAAAAGGACGATACACCTCATTATCCTTGTCCCTCTCCTCCCGACCAA ACTTTTGCGTGGAAGTTCAAAAGAATGCAACAGTCTGCGAAATTTTGGTC GGTCCCGTAATTATCCGTTATTCATCCTGAGAGGTGTGTTAGGATAATGA AAACCTTAAAATTTAGTAGAGGAAATGGTAGGCTTTTGTACCAGACCAAG GCCAAGCACAG
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Coding sequence (CDS) from alignment at P-fluviatile_contig1:1060508..1080468+

>mRNA_P-fluviatile_contig1.70.1 ID=mRNA_P-fluviatile_contig1.70.1|Name=mRNA_P-fluviatile_contig1.70.1|organism=Porterinema fluviatile SAG_2381|type=CDS|length=2988bp|location=Sequence derived from alignment at P-fluviatile_contig1:1060508..1080468+ (Porterinema fluviatile SAG_2381)
ATGGAAAACGCAAGTTATGCCAAGATTCGCCTGGAATCAGCTCCTTACAC
AACCAAGTTCGGTATAGATGGAAAACGCAAGTTATGCCAAGATTCGCCTG
GAATCAGCTCCTTACACAACCAAGTTCGGTATAGGCTTGTTGAGTGGAGC
ATATGTCGTAGGATTGCTGCTGTGCCTTCTTCTTGGTGCTTTCCAAGGAC
CGAAGGTCTTCGACAAATCGGATCCGGAGGCCGTCGAGACGAACTCTCTG
AACGTCACATGGTATGGGCAAATCTCAGGCATGGAGAGGTGGCATCAGGC
TTGTTGAGTGGAGCATATGTCGTAGGATTGCTGCTGTGCCTTCTTCTTGG
TGCTTTCCAAGGACCGAAGGTCTTCGACAAATCGGATCCGGAGGCCGTCG
AGACGAACTCTCTGAACGTCACATGGTATGGGCAAATCTCAGGCATGGAG
AGGTGGCATCAGGTTCTCTACTTGCACATGCGCCTGAACAAGCCGGACGT
GATCTCGGGAGGGGTGTCCTACGAACAGCAGTACTCGGTGTCCTCCTGGG
GATCAGTGGAGCCGATTGACGCTGTAGCGTGTCCGGATGGATGCACATCC
GAGTGCAACGTTGGTGGCCAGTGTGTTGAGCTAGCCCAAACCACCATGGA
TCGCGTGATCCAGTGCCGCTCCAACGAGCAGTTCTCTACTTGCACATGCG
CCTGAACAAGCCGGACGTGATCTCGGGAGGGGTGTCCTACGAACAGCAGT
ACTCGGTGTCCTCCTGGGGATCAGTGGAGCCGATTGACGCTGTAGCGTGT
CCGGATGGATGCACATCCGAGTGCAACGTTGGTGGCCAGTGTGTTGAGCT
AGCCCAAACCACCATGGATCGCGTGATCCAGTGCCGCTCCAACGAGCAGT
GGTGCGGATGGACTACGCTGCTCACGGAAGAATTCGTGGAGTATGGAATT
TACTACATGCAGGTGGTGCGGATGGACTACGCTGCTCACGGAAGAATTCG
TGGAGTATGGAATTTACTACATGCAGGTGGATATGGAGGAACCCAAGATC
TTCAAAGATTCGCTGGACTTCACCCTTGAGTTTGAGATCGTATTCATCAC
GAAGGCATTCACACAATATCAAATGGCGTGGCACTATGCCTGGATTCTGA
TCACGCTGGTATTCATGTTTGTCCCCAAGATTGGCTTCTTCTACGAGATG
ATGCAGCTTCACCAGAACTTTTGGTCACGACAACAGGTGGATATGGAGGA
ACCCAAGATCTTCAAAGATTCGCTGGACTTCACCCTTGAGTTTGAGATCG
TATTCATCACGAAGGCATTCACACAATATCAAATGGCGTGGCACTATGCC
TGGATTCTGATCACGCTGGTATTCATGTTTGTCCCCAAGATTGGCTTCTT
CTACGAGATGATGCAGCTTCACCAGAACTTTTGGTCACGACAACAGCAGG
CACGAGTGGGGCTTCTGCTGATGGCACTGTTGTTTTTCAACAACGTTTTC
TTCGGGTTCCAAATTTTTTCTCCTTACCCTCGCTTCTTTTTCAGCAGGCA
CGAGTGGGGCTTCTGCTGATGGCACTGTTGTTTTTCAACAACGTTTTCTT
CGGGTTCCAAATTTTTTCTCCTTACCCTCGCTTCTTTTTCAGCCTGTACG
TGGTTTTTGTGGCGACATTCATCGCGCTGATGTTGTTCTTCTGGCTCGAG
TTGTTCGGAGACCTCGCTGCGGGAAACATGCAGCCTGTACGTGGTTTTTG
TGGCGACATTCATCGCGCTGATGTTGTTCTTCTGGCTCGAGTTGTTCGGA
GACCTCGCTGCGGGAAACATGCAGGGAACTGACACAGCGCTCGAGTGGGA
GCGCAATCGCAAGAAGGCTGTTCTTGAGTACCTGCCGAAGCTGGTCCTTG
TGGGCCTCATCTGGATCGCCACCGTTCTCGTTTATATGGAACTGACACAG
CGCTCGAGTGGGAGCGCAATCGCAAGAAGGCTGTTCTTGAGTACCTGCCG
AAGCTGGTCCTTGTGGGCCTCATCTGGATCGCCACCGTTCTCGTTTATAT
TTACGTGCGGGTTCAGCAAACCGGGGACCCGTCGTACAGCACGTTCGATG
ACCTGTCCACGTACACCAGCGTCAAGTTACGTGCGGGTTCAGCAAACCGG
GGACCCGTCGTACAGCACGTTCGATGACCTGTCCACGTACACCAGCGTCA
AGGTGATCGGGCTTCTGCTTGCCACGGTTTATTTCCTGTGGCTGGGAACG
CTGGTCGTCAGTAGCTTCTCTCACATCGAAGCTATGAACTCAGAGTACAT
CTTCATCATGGTGATTACCTTGGTCACCATCGTTGGCGCTATGGCTGCTG
TTTACACCGGAGCCTTAGCACCAGACCAGGTGATCGGGCTTCTGCTTGCC
ACGGTTTATTTCCTGTGGCTGGGAACGCTGGTCGTCAGTAGCTTCTCTCA
CATCGAAGCTATGAACTCAGAGTACATCTTCATCATGGTGATTACCTTGG
TCACCATCGTTGGCGCTATGGCTGCTGTTTACACCGGAGCCTTAGCACCA
GACCAGCATGGGTCCAAGGTTTTCGCCTACTTCTACGGGATGTTCAACAT
CTACGTCCTTCTTCTGGCATTTTGTTACACCCCGGCGGGCTCGATCTACG
GAGATATCAGCACCAACGATAACCATGGGTCCAAGGTTTTCGCCTACTTC
TACGGGATGTTCAACATCTACGTCCTTCTTCTGGCATTTTGTTACACCCC
GGCGGGCTCGATCTACGGAGATATCAGCACCAACGATAACGTGGAGATGA
TGGCCAAAGACCAACAGAGCATTCCTGCCTACAAAGATGACACAGCCTTC
ACGATTGTGGAGAGCAACAACGAACACACCGTGCTTTAGGTGGAGATGAT
GGCCAAAGACCAACAGAGCATTCCTGCCTACAAAGATGACACAGCCTTCA
CGATTGTGGAGAGCAACAACGAACACACCGTGCTTTAG
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