mRNA_P-fluviatile_contig16.2759.1 (mRNA) Porterinema fluviatile SAG_2381

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

Overview
NamemRNA_P-fluviatile_contig16.2759.1
Unique NamemRNA_P-fluviatile_contig16.2759.1
TypemRNA
OrganismPorterinema fluviatile SAG_2381 (Porterinema fluviatile SAG_2381)
Homology
BLAST of mRNA_P-fluviatile_contig16.2759.1 vs. uniprot
Match: D7FN35_ECTSI (Chorein N-terminal domain-containing protein n=1 Tax=Ectocarpus siliculosus TaxID=2880 RepID=D7FN35_ECTSI)

HSP 1 Score: 1329 bits (3439), Expect = 0.000e+0
Identity = 810/1195 (67.78%), Postives = 898/1195 (75.15%), Query Frame = 1
Query:  184 MFDDVISTGLQAVLAEIFESVDKNQLNVSLVGDIFKESHLELTDLRLKKTLLKDMNLPVDVKEGLVGKLVIQGLSGVMTGDPVTVTVGEVLLLLTPSGTLSDPEAGLAARRMAATLREMFANRYAEDFLEDALGVKLXXXXXXXXXXXXXXXXXXXXXXXVLSGVSIILQAVHVRFELPAGGLNGAAPVVSSAGVGGGGACDAVGVMLPSLTVRTCTPEHPSFAKFSAPTPVDRALSSRA-------GEGAAPPQPQRESAATIARRELEAKQRDRKNFLIVRKRASAANLQVYCDYGVDSYVTAIGAAVSVARNKATNPRPGTSGSLPGGGLTAAAGR-GAAAAAKAVRALFLQKWKSERHALLFKPLALEVGAEVHQWDKSGGRAIVPKYSVARVNVGVGDLQAVVDAEQGRVVGAVIDNIVGLVRKGRFNRFVPQAYLPLRNLPPPKVVPPKPAKDGAPAGMLPSVETWSWSAGREDGGGTAPPKSAAEAVLRGGFPKEGGAWARAMWRFAGACVRHDVRRLALTKQLPSSMPNWDGTLLPSPSLSSXXXXXXXXLPAAAATNGTRPAAAAPEPAS--WRVDYLRLVARTLTPREAKSVGSGGGGHRGVDVRRLGVPKGREPLSLEEMWEMAKVESYAPGDEIVFLRMAAKVSSHHEWSRARRARANAKAIAVQKGASPEAVAAAVGAAVVAAAWTTKDDVAVLRGLDELRAKRAAXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXRSIQDPEHLPTKGSG-----SRFSLADIAAKAKAAV------GGASGGTATXXXXXXXXXXXXXXXXXXXXXXXXXXXXVGGKVAKLWSKLLGLPRVVLQVESVGIELRTQIAGGARRPLVAASAGGLTGTLEGDEARRLLWWEVLVGQVTLRDLCGSWG---VDGGGAAAGGGVPKTLLSGSASGVDGREWVSAGDPNGAPARSFLVVRVVHDPNRTACGLFRSSAADMAQLRTHVVVGCVTGKIPPQVLTAFNAVARDILASKRMARAN--PSLASTAAAAGD-DTAARQLRVAGLSLYRSLSGSKSVMFRPKTGKGSPGAAVRAALSMARGATSSSSSSGEVDSKELYRVIAGVLPGDFEVRVHASEVIVQVASRAEDLLEAGKVALEAVGETRAAADMRAG 3687
            MFDDVISTGLQAVLAEIFESVDKNQLNVSLVGDIFKESHLELTDLR+KKTLLKDMNLPV+VKEGLVGKLVIQGLSGVMTGDPVTVTVGEVL+LLTP  TLSD EAGLAARRMAA LREMFANRYAEDFLEDALGVK                        VLSGVSIILQAVH+RFELPAGGL+GAAPV +SAGVGGGGACDAVGVMLPSLTVRTC  +HP+F KF+A TP++R  + +        G G+    PQRESA T+ARRE +A Q DRKNF+IVRKRA+AANLQVYCDYGVDSYVTA+ AAV+ ARNKATNPRPG SGSLPGGGLT AA   GAAAAAKAVRALFLQKWKSERHALLFKPLA+E+GAEVHQWD+ GG++I P Y VAR+NVGVG+LQAVVD+EQGRVVGAV+D I+ LVR+ RFNRF+PQAYLPLRNLPPPKV PPKPAKDGAPAGMLPSVETWSW++      G   PKSAAEAVL GGF KEGG+WARAMWRFAGACVRHD+R LALTK+LP+S+PNW+G +   PS S           A  ATNG  PA   P  AS  WRV YLRL ARTL  R+AK++GS  GGHRGVDVRRLGVPKGREPLSLEEMW++AKVES+APGDE+VFLR AAK+SSH+EW+RAR+ARA AK+ A Q G                          +LR LD+LRA    XXXXXXXXXXXXXXXXXXXXXXXXXXXXXXX                                            D   +  KG+G     SRF+LADIAAKAK AV       G +GGT+                              GGK AK+W KLLGLPRVVLQVES GIELRT+IAGGAR+PLVA SAGGLTGTLEGDEAR++LWWE+ VG V LRDLC SWG    +GG  AA   V KTL+SGSASGVDGR+WVSAGDP GA +R FLVVRVVHDPNR ACGLF SSAA MAQLR HVVVGCVTGKIPPQVL  FNA ARDI+ +++   A   P     +A+ GD D+AARQLRV   S++R+L G +SVMFRPK  KG P AAVRA LSMARGAT SSS+SGEVDSKELYRV+AG+LPGDFEVRVH SEVIVQV+SRAEDLLEAGKVALEA+GET+AAADM+ G
Sbjct:    1 MFDDVISTGLQAVLAEIFESVDKNQLNVSLVGDIFKESHLELTDLRIKKTLLKDMNLPVEVKEGLVGKLVIQGLSGVMTGDPVTVTVGEVLVLLTPGTTLSDSEAGLAARRMAAALREMFANRYAEDFLEDALGVKAADKLSVQSQNKLNRKLLRHIVRKVLSGVSIILQAVHIRFELPAGGLDGAAPVKNSAGVGGGGACDAVGVMLPSLTVRTCKTDHPAFTKFAAQTPLERVANPKGVQQGGADGRGS----PQRESATTMARREQDALQGDRKNFMIVRKRATAANLQVYCDYGVDSYVTAVAAAVAAARNKATNPRPGASGSLPGGGLTPAANNSGAAAAAKAVRALFLQKWKSERHALLFKPLAVEIGAEVHQWDQPGGKSIAPTYRVARLNVGVGELQAVVDSEQGRVVGAVVDEIINLVRRSRFNRFIPQAYLPLRNLPPPKVHPPKPAKDGAPAGMLPSVETWSWASEMGGKTGVGRPKSAAEAVLVGGFAKEGGSWARAMWRFAGACVRHDIR-LALTKKLPASLPNWNGAISADPSPSPGHPDVV----AKPATNGVPPAGMDPASASLSWRVAYLRLHARTLLARDAKNLGSSSGGHRGVDVRRLGVPKGREPLSLEEMWDVAKVESFAPGDEVVFLRTAAKISSHYEWNRARKARAAAKSAAXQXGXXXXXXXXXXXXXXXXXXXXXXXXXXLLRSLDDLRASXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXISKLQFAASATS-----------------------------GFSDDGGIAAKGAGGRGGGSRFTLADIAAKAKQAVPSTSASAGVAGGTSQKGGGADGGASSLARKGRGVG---------GGKAAKIWGKLLGLPRVVLQVESAGIELRTRIAGGARKPLVALSAGGLTGTLEGDEARQVLWWELRVGNVALRDLCSSWGDGAKNGGPGAAAPPVAKTLMSGSASGVDGRDWVSAGDPTGAASRCFLVVRVVHDPNRAACGLFSSSAAAMAQLRAHVVVGCVTGKIPPQVLAIFNAAARDIVINEKKTNAGMTPQHPRASASGGDSDSAARQLRVVLGSVHRALLGKRSVMFRPKKRKG-PSAAVRA-LSMARGATRSSSTSGEVDSKELYRVVAGILPGDFEVRVHVSEVIVQVSSRAEDLLEAGKVALEALGETKAAADMKGG 1146          
BLAST of mRNA_P-fluviatile_contig16.2759.1 vs. uniprot
Match: A0A6H5KF13_9PHAE (Uncharacterized protein n=1 Tax=Ectocarpus sp. CCAP 1310/34 TaxID=867726 RepID=A0A6H5KF13_9PHAE)

HSP 1 Score: 478 bits (1230), Expect = 6.190e-147
Identity = 383/586 (65.36%), Postives = 424/586 (72.35%), Query Frame = 1
Query: 1963 SGGGGHRGVDVRRLGVPKGREPLSLEEMWEMAKVESYAPGDEIVFLRMAAKVSSHHEWSRARRARANAKAIAVQKGASPEAVAAAVGAAVVAAAWTTKDDVAVLRGLDELRAKRAAXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXRSIQDPEHLPTKGSGSRFSLADIAAKAKAA-----VGGASGGTATXXXXXXXXXXXXXXXXXXXXXXXXXXXXVGGKVAKLWSKLLGLPRVVLQVESVGIELRTQIAGGARRPLVAASAGGLTGTLEGDEARRLLWWEVLVGQVTLRDLCGSWG---VDGGGAAAGGGVPKTLLSGSASGVDGREWVSAGDPNGAPARSFLVVRVVHDPNRTACGLFRSSAADMAQLRTHVVVGCVTGKIPPQVLTAFNAVARDILASKRMARAN--PSLASTAAAAGD-DTAARQLRVAGLSLYRSLSGSKSVMFRPKTGKGSPGAAVRAALSMARGATSSSSSSGEVDSKELYRVIAGVLPGDFEVRVHASEVIVQVASRAEDLLEAGKVALEAVGETRAAADMRAG 3687
            S  GGHRGVDVR+LGVPKGREPLSLEEMW++AKVES+APGDE+VFLR           +                   P A          AAAWT KDD A+LR LDELRA R AXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXX             S  RF+LADIAAKAK A      GGA GG ++                             GGK AK+W KLLGLPRVVLQVES GIELRT+IAGGAR+ LVA SAGGLTGTLEGDE   +LWWE+ VG VTLRDLC SWG    +GG  AA     KTL+SGSASGVDGR+WVSAGDP GA +R FLVVR+VHDPNR ACGLF SSAA MAQLR HVVVGCVTGKIPPQVL  FNA AR+I+ +++   A   P     + + GD D+AARQLRV   S++R+L G +SVMFRPK  KG P AAVRA LSMARGAT S ++SGEVDS ELYRV+AG+LPGDFEVRVHAS+VIVQV+SRAEDLLEAGKVALEA+GET+AAADM+ G
Sbjct:   10 SNSGGHRGVDVRKLGVPKGREPLSLEEMWDVAKVESFAPGDEVVFLRKRGPARPAPPLN------------------PPXAA---------AAAWTVKDDAALLRSLDELRASRVAXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXS--RFTLADIAAKAKQAGTPQKAGGADGGASSLARKGGVG---------------------GGKAAKIWGKLLGLPRVVLQVESAGIELRTRIAGGARKALVALSAGGLTGTLEGDE---VLWWELRVGNVTLRDLCSSWGDGAKNGGTGAAAPPAAKTLMSGSASGVDGRDWVSAGDPTGAASRCFLVVRMVHDPNRAACGLFSSSAAPMAQLRAHVVVGCVTGKIPPQVLAIFNAAAREIVINEKKTNAGMTPQHPGASDSGGDSDSAARQLRVVLESVHRALLGQRSVMFRPKKRKG-PSAAVRA-LSMARGATRSWATSGEVDSNELYRVVAGILPGDFEVRVHASDVIVQVSSRAEDLLEAGKVALEALGETKAAADMKGG 540          
BLAST of mRNA_P-fluviatile_contig16.2759.1 vs. uniprot
Match: A0A7S3YME8_HETAK (Hypothetical protein (Fragment) n=1 Tax=Heterosigma akashiwo TaxID=2829 RepID=A0A7S3YME8_HETAK)

HSP 1 Score: 89.0 bits (219), Expect = 3.410e-17
Identity = 43/103 (41.75%), Postives = 67/103 (65.05%), Query Frame = 1
Query:  184 MFDDVISTGLQAVLAEIFESVDKNQLNVSLVGDIFKESHLELTDLRLKKTLLKDMNLPVDVKEGLVGKLVIQGLSGVMTGDPVTVTVGEVLLLLTPSGTLSDP 492
            MF  +    L+ +L EIFE VD+N L +S++GD+F ESH+EL+DL LK+ ++ D+  P ++    +GKL ++G+S  + G  +TV V  V LLL P+   +DP
Sbjct:    1 MFSKLAFNQLKGILGEIFEDVDENTLEISMLGDLFSESHVELSDLYLKQDIINDLLPPFNITRAFIGKLSVRGISEFLAGGDLTVIVDSVGLLLGPATAGADP 103          
BLAST of mRNA_P-fluviatile_contig16.2759.1 vs. uniprot
Match: A0A1V9ZSH0_9STRA (Helicase ATP-binding domain-containing protein n=1 Tax=Achlya hypogyna TaxID=1202772 RepID=A0A1V9ZSH0_9STRA)

HSP 1 Score: 73.6 bits (179), Expect = 4.850e-9
Identity = 58/205 (28.29%), Postives = 97/205 (47.32%), Query Frame = 1
Query:  220 VLAEIFESVDKNQLNVSLVGDIFKESHLELTDLRLKKTLLKDMNLPVDVKEGLVGKLVIQGLSGVMTGDPVTVTVGEVLLLLTP-SGTLSDPEAGLAARRMAATLREMFANRYAEDFLEDALGVKLXXXXXXXXXXXXXXXXXXXXXXXVLSGVSIILQAVHVRFELPAGGLNGAAPVVSSAGVGGGGACDAVGVMLPSLTVRTC 831
            +L E+FE VD+  ++VS++GD+F +SHL L  L LK+ +   + +P  +  G +G+L +QG+ G +TG PVT+ + +V ++L+  S    D +A      +   L     NRY  +      G K                         L  +++ ++ VHVR +LP+  L    PVV              GV++P ++V TC
Sbjct: 1223 LLQEVFEPVDEAGVDVSVLGDLFDDSHLRLEHLFLKRDVFNALPVPFALLTGYIGQLHVQGMLGALTGAPVTLVLRDVHVVLSAKSPDWDDADALRLGNELLVALMHRLWNRYHME----GTGPK---------KVESLKSWLKMRAFGTLRHMTVKIENVHVRVQLPSPTLE--TPVV--------------GVVIPLVSVTTC 1398          
BLAST of mRNA_P-fluviatile_contig16.2759.1 vs. uniprot
Match: A0A4C1VP88_EUMVA (Vacuolar protein sorting-associated protein 13C n=1 Tax=Eumeta variegata TaxID=151549 RepID=A0A4C1VP88_EUMVA)

HSP 1 Score: 66.6 bits (161), Expect = 5.680e-7
Identity = 52/179 (29.05%), Postives = 86/179 (48.04%), Query Frame = 1
Query:  184 MFDDVISTGLQAVLAEIFESVDKNQLNVSLVGDIFKESHLELTDLRLKKTLLKDMNLPVDVKEGLVGKLVIQGLSGVMTGDPVTVTVGEVLLLLTP--SGTLSDPEAGLAARRMAATLREMFANRYAEDFLEDALGVKLXXXXXXXXXXXXXXXXXXXXXXXVLSGVSIILQAVHVRFE 714
            MF+ V++  L  +L +  + +D   LNV +        ++ LTDL+LK   L +++LPVDVK G +G++ +Q     ++  PV  +V +VLLL+ P  S T  DPE     R M A  R++  +  AE   E   G +                        V++ V I ++ +H+R+E
Sbjct:    1 MFEGVVAGVLNRLLGKYIQDLDTENLNVGIFS-----GNVNLTDLKLKPEALYELDLPVDVKIGTIGRINLQIPWSGLSSQPVVASVEDVLLLVGPAISNTYFDPER--EKRLMRAAKRKILQDLEAES--EILTGPR---------------NFFEQLFTAVINNVQIFIRNIHIRYE 155          
BLAST of mRNA_P-fluviatile_contig16.2759.1 vs. uniprot
Match: A0A1V9YW84_9STRA (USP domain-containing protein n=1 Tax=Thraustotheca clavata TaxID=74557 RepID=A0A1V9YW84_9STRA)

HSP 1 Score: 65.9 bits (159), Expect = 1.080e-6
Identity = 35/112 (31.25%), Postives = 62/112 (55.36%), Query Frame = 1
Query:  223 LAEIFESVDKNQLNVSLVGDIFKESHLELTDLRLKKTLLKDMNLPVDVKEGLVGKLVIQGLSGVMTGDPVTVTVGEVLLLLTPSGTLSDPEAGLA-ARRMAATLREMFANRY 555
            L E+FE++D++ + +S++GD+F ESHL L DL +K ++   +  P+++  G +G+L ++GL G M G P+ + V     +        D E  L  A  +   L+    NR+
Sbjct: 1489 LHEVFEALDEDAVEISVLGDLFDESHLRLEDLFVKPSVFNMLPYPIELVTGYLGQLNVEGLLGAMAGSPLQLIVRNANFVFRVKSVDWDDEKALRFANELLIALKHRLWNRH 1600          
BLAST of mRNA_P-fluviatile_contig16.2759.1 vs. uniprot
Match: A0A2N1J927_9BASI (Uncharacterized protein n=1 Tax=Malassezia vespertilionis TaxID=2020962 RepID=A0A2N1J927_9BASI)

HSP 1 Score: 63.9 bits (154), Expect = 4.350e-6
Identity = 54/182 (29.67%), Postives = 88/182 (48.35%), Query Frame = 1
Query:  184 MFDDVISTGLQAVLAEIFESVDKNQLNVSL-VGDIFKESHLELTDLRLKKTLLKDMNLPVDVKEGLVGKLVIQGLSGVMTGDPVTVTVGEVLLLLTP---SGTLSDPEAGLAARRMAATLREMFANRYAED-FLEDALGVKLXXXXXXXXXXXXXXXXXXXXXXXVLSGVSIILQAVHVRFE 714
            M + V+++ L   LA   + ++ +QLNV +  GD+       L +L+LK+T L+ +NLP+DV+EG +G+L +      + G PV V V  V LL +P   SG + DPEA        A  +E+   R A+D  L   + VK                        ++  V + +Q +H+R+E
Sbjct:    1 MLEGVLASVLNRFLAAYVDGLNTSQLNVGIWSGDV------TLKNLKLKRTALEKVNLPIDVREGYLGQLTLSIPWSNLKGKPVRVLVKNVSLLASPRDASGVV-DPEAE------EARAQELKQERLAQDEMLSSGMPVK------NDSDLEKAESFISSLVTKIVDNVQVTVQNIHIRYE 163          
BLAST of mRNA_P-fluviatile_contig16.2759.1 vs. uniprot
Match: T0R0Q4_SAPDV (Uncharacterized protein n=1 Tax=Saprolegnia diclina (strain VS20) TaxID=1156394 RepID=T0R0Q4_SAPDV)

HSP 1 Score: 61.6 bits (148), Expect = 1.610e-5
Identity = 28/82 (34.15%), Postives = 53/82 (64.63%), Query Frame = 1
Query:  220 VLAEIFESVDKNQLNVSLVGDIFKESHLELTDLRLKKTLLKDMNLPVDVKEGLVGKLVIQGLSGVMTGDPVTVTVGEVLLLL 465
            +L E+FE +D+  ++VS++GD+F ESHL   +L +K  +   +  P  V+   +G++ +QG+ G + G P+T+ V +V ++L
Sbjct:   13 ILRELFEPLDEASVDVSVLGDLFDESHLRFENLFVKLDVFNTLPWPFKVQTAYIGQVHVQGMLGAVAGAPMTLRVRDVHIVL 94          
BLAST of mRNA_P-fluviatile_contig16.2759.1 vs. uniprot
Match: A0A4P9Z1Z8_9FUNG (Uncharacterized protein n=1 Tax=Syncephalis pseudoplumigaleata TaxID=1712513 RepID=A0A4P9Z1Z8_9FUNG)

HSP 1 Score: 61.2 bits (147), Expect = 2.730e-5
Identity = 37/106 (34.91%), Postives = 57/106 (53.77%), Query Frame = 1
Query:  184 MFDDVISTGLQAVLAEIFESVDKNQLNVSL----------VGDIFKESHLELTDLRLKKTLLKDMNLPVDVKEGLVGKLVIQGLSGVMTGDPVTVTVGEVLLLLTP 471
            MF+ +++  L   L +  +++++ QLN+ +           GD+       L +LRLKK  L   NLPVD+KEG +G LV++     + G PV V V +V LL TP
Sbjct:    1 MFESLVANVLNKFLGDFVDNLEQKQLNIGIWSVKTVANTAAGDV------TLNNLRLKKEALDRFNLPVDIKEGYLGSLVLKIPWSNLKGQPVQVIVKDVYLLATP 100          
BLAST of mRNA_P-fluviatile_contig16.2759.1 vs. uniprot
Match: A0A4P9Y029_9FUNG (Vacuolar protein sorting-associated protein-like protein vps13 n=1 Tax=Thamnocephalis sphaerospora TaxID=78915 RepID=A0A4P9Y029_9FUNG)

HSP 1 Score: 61.2 bits (147), Expect = 2.830e-5
Identity = 36/97 (37.11%), Postives = 57/97 (58.76%), Query Frame = 1
Query:  184 MFDDVISTGLQAVLAEIFESVDKNQLNVSL-VGDIFKESHLELTDLRLKKTLLKDMNLPVDVKEGLVGKLVIQGLSGVMTGDPVTVTVGEVLLLLTP 471
            MF+ +++  L   L +  +++++NQLN+ +  GD+       L +LRLKK  L   +LPVDVKEG +G LV++     + G+PV V +  V LL  P
Sbjct:    1 MFETLVANVLNKFLGDFVDNLERNQLNIGIWSGDV------TLNNLRLKKDALDRFHLPVDVKEGYLGNLVLKIPWHNLKGEPVRVFIKNVYLLAAP 91          
The following BLAST results are available for this feature:
BLAST of mRNA_P-fluviatile_contig16.2759.1 vs. uniprot
Analysis Date: 2022-09-19 (Diamond blastx: OGS1.0 vs UniRef90)
Total hits: 19
Match NameE-valueIdentityDescription
D7FN35_ECTSI0.000e+067.78Chorein N-terminal domain-containing protein n=1 T... [more]
A0A6H5KF13_9PHAE6.190e-14765.36Uncharacterized protein n=1 Tax=Ectocarpus sp. CCA... [more]
A0A7S3YME8_HETAK3.410e-1741.75Hypothetical protein (Fragment) n=1 Tax=Heterosigm... [more]
A0A1V9ZSH0_9STRA4.850e-928.29Helicase ATP-binding domain-containing protein n=1... [more]
A0A4C1VP88_EUMVA5.680e-729.05Vacuolar protein sorting-associated protein 13C n=... [more]
A0A1V9YW84_9STRA1.080e-631.25USP domain-containing protein n=1 Tax=Thraustothec... [more]
A0A2N1J927_9BASI4.350e-629.67Uncharacterized protein n=1 Tax=Malassezia vespert... [more]
T0R0Q4_SAPDV1.610e-534.15Uncharacterized protein n=1 Tax=Saprolegnia diclin... [more]
A0A4P9Z1Z8_9FUNG2.730e-534.91Uncharacterized protein n=1 Tax=Syncephalis pseudo... [more]
A0A4P9Y029_9FUNG2.830e-537.11Vacuolar protein sorting-associated protein-like p... [more]

Pages

back to top
Alignments
The following features are aligned
Aligned FeatureFeature TypeAlignment Location
P-fluviatile_contig16contigP-fluviatile_contig16:1545477..1568671 -
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 score62.8
Seed ortholog evalue1.3e-06
Seed eggNOG ortholog164328.Phyra77059
EggNOG free text desc.N-terminal region of Chorein or VPS13
EggNOG OGs2BJNG@1,2S1GP@2759,3Q7MD@4776
COG Functional cat.S
Best tax levelPeronosporales
Best eggNOG OGNA|NA|NA
Hectar predicted targeting categoryother localisation
Ec32 ortholog descriptionVacuolar protein sorting-associated protein 13A N-terminal domain
Ec32 orthologEc-25_001400.1
Exons20
Model size5610
Cds size3540
Stop1
Start1
Relationships

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

Feature NameUnique NameSpeciesTypePosition
mRNA_P-fluviatile_contig16.2759.1prot_P-fluviatile_contig16.2759.1Porterinema fluviatile SAG_2381polypeptideP-fluviatile_contig16 1548488..1568488 -


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

Feature NameUnique NameSpeciesTypePosition
1622815699.1086392-UTR-P-fluviatile_contig16:1545476..15463751622815699.1086392-UTR-P-fluviatile_contig16:1545476..1546375Porterinema fluviatile SAG_2381UTRP-fluviatile_contig16 1545477..1546375 -
1693562987.7375574-UTR-P-fluviatile_contig16:1545476..15463751693562987.7375574-UTR-P-fluviatile_contig16:1545476..1546375Porterinema fluviatile SAG_2381UTRP-fluviatile_contig16 1545477..1546375 -
1622815699.1192248-UTR-P-fluviatile_contig16:1546397..15473071622815699.1192248-UTR-P-fluviatile_contig16:1546397..1547307Porterinema fluviatile SAG_2381UTRP-fluviatile_contig16 1546398..1547307 -
1693562987.7526448-UTR-P-fluviatile_contig16:1546397..15473071693562987.7526448-UTR-P-fluviatile_contig16:1546397..1547307Porterinema fluviatile SAG_2381UTRP-fluviatile_contig16 1546398..1547307 -
1622815699.1321354-UTR-P-fluviatile_contig16:1548409..15484871622815699.1321354-UTR-P-fluviatile_contig16:1548409..1548487Porterinema fluviatile SAG_2381UTRP-fluviatile_contig16 1548410..1548487 -
1693562987.762116-UTR-P-fluviatile_contig16:1548409..15484871693562987.762116-UTR-P-fluviatile_contig16:1548409..1548487Porterinema fluviatile SAG_2381UTRP-fluviatile_contig16 1548410..1548487 -
1622815699.3662663-UTR-P-fluviatile_contig16:1568488..15686711622815699.3662663-UTR-P-fluviatile_contig16:1568488..1568671Porterinema fluviatile SAG_2381UTRP-fluviatile_contig16 1568489..1568671 -
1693562987.9892423-UTR-P-fluviatile_contig16:1568488..15686711693562987.9892423-UTR-P-fluviatile_contig16:1568488..1568671Porterinema fluviatile SAG_2381UTRP-fluviatile_contig16 1568489..1568671 -


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

Feature NameUnique NameSpeciesTypePosition
1622815699.1452043-CDS-P-fluviatile_contig16:1548487..15484921622815699.1452043-CDS-P-fluviatile_contig16:1548487..1548492Porterinema fluviatile SAG_2381CDSP-fluviatile_contig16 1548488..1548492 -
1693562987.7724931-CDS-P-fluviatile_contig16:1548487..15484921693562987.7724931-CDS-P-fluviatile_contig16:1548487..1548492Porterinema fluviatile SAG_2381CDSP-fluviatile_contig16 1548488..1548492 -
1622815699.1584592-CDS-P-fluviatile_contig16:1549130..15493661622815699.1584592-CDS-P-fluviatile_contig16:1549130..1549366Porterinema fluviatile SAG_2381CDSP-fluviatile_contig16 1549131..1549366 -
1693562987.7824852-CDS-P-fluviatile_contig16:1549130..15493661693562987.7824852-CDS-P-fluviatile_contig16:1549130..1549366Porterinema fluviatile SAG_2381CDSP-fluviatile_contig16 1549131..1549366 -
1622815699.1736646-CDS-P-fluviatile_contig16:1550119..15503851622815699.1736646-CDS-P-fluviatile_contig16:1550119..1550385Porterinema fluviatile SAG_2381CDSP-fluviatile_contig16 1550120..1550385 -
1693562987.793673-CDS-P-fluviatile_contig16:1550119..15503851693562987.793673-CDS-P-fluviatile_contig16:1550119..1550385Porterinema fluviatile SAG_2381CDSP-fluviatile_contig16 1550120..1550385 -
1622815699.1843886-CDS-P-fluviatile_contig16:1550938..15510621622815699.1843886-CDS-P-fluviatile_contig16:1550938..1551062Porterinema fluviatile SAG_2381CDSP-fluviatile_contig16 1550939..1551062 -
1693562987.8108993-CDS-P-fluviatile_contig16:1550938..15510621693562987.8108993-CDS-P-fluviatile_contig16:1550938..1551062Porterinema fluviatile SAG_2381CDSP-fluviatile_contig16 1550939..1551062 -
1622815699.19628-CDS-P-fluviatile_contig16:1551974..15521681622815699.19628-CDS-P-fluviatile_contig16:1551974..1552168Porterinema fluviatile SAG_2381CDSP-fluviatile_contig16 1551975..1552168 -
1693562987.8212092-CDS-P-fluviatile_contig16:1551974..15521681693562987.8212092-CDS-P-fluviatile_contig16:1551974..1552168Porterinema fluviatile SAG_2381CDSP-fluviatile_contig16 1551975..1552168 -
1622815699.213218-CDS-P-fluviatile_contig16:1552831..15529391622815699.213218-CDS-P-fluviatile_contig16:1552831..1552939Porterinema fluviatile SAG_2381CDSP-fluviatile_contig16 1552832..1552939 -
1693562987.830882-CDS-P-fluviatile_contig16:1552831..15529391693562987.830882-CDS-P-fluviatile_contig16:1552831..1552939Porterinema fluviatile SAG_2381CDSP-fluviatile_contig16 1552832..1552939 -
1622815699.224798-CDS-P-fluviatile_contig16:1553898..15542301622815699.224798-CDS-P-fluviatile_contig16:1553898..1554230Porterinema fluviatile SAG_2381CDSP-fluviatile_contig16 1553899..1554230 -
1693562987.8457935-CDS-P-fluviatile_contig16:1553898..15542301693562987.8457935-CDS-P-fluviatile_contig16:1553898..1554230Porterinema fluviatile SAG_2381CDSP-fluviatile_contig16 1553899..1554230 -
1622815699.2369883-CDS-P-fluviatile_contig16:1554961..15550131622815699.2369883-CDS-P-fluviatile_contig16:1554961..1555013Porterinema fluviatile SAG_2381CDSP-fluviatile_contig16 1554962..1555013 -
1693562987.8646135-CDS-P-fluviatile_contig16:1554961..15550131693562987.8646135-CDS-P-fluviatile_contig16:1554961..1555013Porterinema fluviatile SAG_2381CDSP-fluviatile_contig16 1554962..1555013 -
1622815699.2498705-CDS-P-fluviatile_contig16:1555450..15557541622815699.2498705-CDS-P-fluviatile_contig16:1555450..1555754Porterinema fluviatile SAG_2381CDSP-fluviatile_contig16 1555451..1555754 -
1693562987.875506-CDS-P-fluviatile_contig16:1555450..15557541693562987.875506-CDS-P-fluviatile_contig16:1555450..1555754Porterinema fluviatile SAG_2381CDSP-fluviatile_contig16 1555451..1555754 -
1622815699.2602854-CDS-P-fluviatile_contig16:1555989..15561271622815699.2602854-CDS-P-fluviatile_contig16:1555989..1556127Porterinema fluviatile SAG_2381CDSP-fluviatile_contig16 1555990..1556127 -
1693562987.8950958-CDS-P-fluviatile_contig16:1555989..15561271693562987.8950958-CDS-P-fluviatile_contig16:1555989..1556127Porterinema fluviatile SAG_2381CDSP-fluviatile_contig16 1555990..1556127 -
1622815699.27037-CDS-P-fluviatile_contig16:1556690..15569271622815699.27037-CDS-P-fluviatile_contig16:1556690..1556927Porterinema fluviatile SAG_2381CDSP-fluviatile_contig16 1556691..1556927 -
1693562987.909077-CDS-P-fluviatile_contig16:1556690..15569271693562987.909077-CDS-P-fluviatile_contig16:1556690..1556927Porterinema fluviatile SAG_2381CDSP-fluviatile_contig16 1556691..1556927 -
1622815699.2801812-CDS-P-fluviatile_contig16:1558054..15582721622815699.2801812-CDS-P-fluviatile_contig16:1558054..1558272Porterinema fluviatile SAG_2381CDSP-fluviatile_contig16 1558055..1558272 -
1693562987.9202747-CDS-P-fluviatile_contig16:1558054..15582721693562987.9202747-CDS-P-fluviatile_contig16:1558054..1558272Porterinema fluviatile SAG_2381CDSP-fluviatile_contig16 1558055..1558272 -
1622815699.2899656-CDS-P-fluviatile_contig16:1558593..15587281622815699.2899656-CDS-P-fluviatile_contig16:1558593..1558728Porterinema fluviatile SAG_2381CDSP-fluviatile_contig16 1558594..1558728 -
1693562987.9292457-CDS-P-fluviatile_contig16:1558593..15587281693562987.9292457-CDS-P-fluviatile_contig16:1558593..1558728Porterinema fluviatile SAG_2381CDSP-fluviatile_contig16 1558594..1558728 -
1622815699.3022237-CDS-P-fluviatile_contig16:1559188..15594981622815699.3022237-CDS-P-fluviatile_contig16:1559188..1559498Porterinema fluviatile SAG_2381CDSP-fluviatile_contig16 1559189..1559498 -
1693562987.9374561-CDS-P-fluviatile_contig16:1559188..15594981693562987.9374561-CDS-P-fluviatile_contig16:1559188..1559498Porterinema fluviatile SAG_2381CDSP-fluviatile_contig16 1559189..1559498 -
1622815699.314025-CDS-P-fluviatile_contig16:1560107..15603521622815699.314025-CDS-P-fluviatile_contig16:1560107..1560352Porterinema fluviatile SAG_2381CDSP-fluviatile_contig16 1560108..1560352 -
1693562987.945552-CDS-P-fluviatile_contig16:1560107..15603521693562987.945552-CDS-P-fluviatile_contig16:1560107..1560352Porterinema fluviatile SAG_2381CDSP-fluviatile_contig16 1560108..1560352 -
1622815699.3272157-CDS-P-fluviatile_contig16:1562510..15627181622815699.3272157-CDS-P-fluviatile_contig16:1562510..1562718Porterinema fluviatile SAG_2381CDSP-fluviatile_contig16 1562511..1562718 -
1693562987.9551315-CDS-P-fluviatile_contig16:1562510..15627181693562987.9551315-CDS-P-fluviatile_contig16:1562510..1562718Porterinema fluviatile SAG_2381CDSP-fluviatile_contig16 1562511..1562718 -
1622815699.3420534-CDS-P-fluviatile_contig16:1563663..15638651622815699.3420534-CDS-P-fluviatile_contig16:1563663..1563865Porterinema fluviatile SAG_2381CDSP-fluviatile_contig16 1563664..1563865 -
1693562987.9684887-CDS-P-fluviatile_contig16:1563663..15638651693562987.9684887-CDS-P-fluviatile_contig16:1563663..1563865Porterinema fluviatile SAG_2381CDSP-fluviatile_contig16 1563664..1563865 -
1622815699.355742-CDS-P-fluviatile_contig16:1568262..15684881622815699.355742-CDS-P-fluviatile_contig16:1568262..1568488Porterinema fluviatile SAG_2381CDSP-fluviatile_contig16 1568263..1568488 -
1693562987.9786487-CDS-P-fluviatile_contig16:1568262..15684881693562987.9786487-CDS-P-fluviatile_contig16:1568262..1568488Porterinema fluviatile SAG_2381CDSP-fluviatile_contig16 1568263..1568488 -


Sequences
The following sequences are available for this feature:

protein sequence of mRNA_P-fluviatile_contig16.2759.1

>prot_P-fluviatile_contig16.2759.1 ID=prot_P-fluviatile_contig16.2759.1|Name=mRNA_P-fluviatile_contig16.2759.1|organism=Porterinema fluviatile SAG_2381|type=polypeptide|length=1180bp
MFDDVISTGLQAVLAEIFESVDKNQLNVSLVGDIFKESHLELTDLRLKKT
LLKDMNLPVDVKEGLVGKLVIQGLSGVMTGDPVTVTVGEVLLLLTPSGTL
SDPEAGLAARRMAATLREMFANRYAEDFLEDALGVKLEDKLSVQSQNKLN
RKVLRHIVRKVLSGVSIILQAVHVRFELPAGGLNGAAPVVSSAGVGGGGA
CDAVGVMLPSLTVRTCTPEHPSFAKFSAPTPVDRALSSRAGEGAAPPQPQ
RESAATIARRELEAKQRDRKNFLIVRKRASAANLQVYCDYGVDSYVTAIG
AAVSVARNKATNPRPGTSGSLPGGGLTAAAGRGAAAAAKAVRALFLQKWK
SERHALLFKPLALEVGAEVHQWDKSGGRAIVPKYSVARVNVGVGDLQAVV
DAEQGRVVGAVIDNIVGLVRKGRFNRFVPQAYLPLRNLPPPKVVPPKPAK
DGAPAGMLPSVETWSWSAGREDGGGTAPPKSAAEAVLRGGFPKEGGAWAR
AMWRFAGACVRHDVRRLALTKQLPSSMPNWDGTLLPSPSLSSSSSSHSSS
LPAAAATNGTRPAAAAPEPASWRVDYLRLVARTLTPREAKSVGSGGGGHR
GVDVRRLGVPKGREPLSLEEMWEMAKVESYAPGDEIVFLRMAAKVSSHHE
WSRARRARANAKAIAVQKGASPEAVAAAVGAAVVAAAWTTKDDVAVLRGL
DELRAKRAAAAAAAAMEAETAGVGAAGAGVEEEEEEEDDEELSKLEFAAT
AASGFSDDDDDSDADSDEDSEDDDDDDDDDRSIQDPEHLPTKGSGSRFSL
ADIAAKAKAAVGGASGGTATTGGALGRTQPGAGGGDALTPGKKGGGWAVG
GKVAKLWSKLLGLPRVVLQVESVGIELRTQIAGGARRPLVAASAGGLTGT
LEGDEARRLLWWEVLVGQVTLRDLCGSWGVDGGGAAAGGGVPKTLLSGSA
SGVDGREWVSAGDPNGAPARSFLVVRVVHDPNRTACGLFRSSAADMAQLR
THVVVGCVTGKIPPQVLTAFNAVARDILASKRMARANPSLASTAAAAGDD
TAARQLRVAGLSLYRSLSGSKSVMFRPKTGKGSPGAAVRAALSMARGATS
SSSSSGEVDSKELYRVIAGVLPGDFEVRVHASEVIVQVASRAEDLLEAGK
VALEAVGETRAAADMRAGVGCRRQRGARG*
back to top

mRNA from alignment at P-fluviatile_contig16:1545477..1568671-

Legend: UTRpolypeptideCDS
Hold the cursor over a type above to highlight its positions in the sequence below.
>mRNA_P-fluviatile_contig16.2759.1 ID=mRNA_P-fluviatile_contig16.2759.1|Name=mRNA_P-fluviatile_contig16.2759.1|organism=Porterinema fluviatile SAG_2381|type=mRNA|length=23195bp|location=Sequence derived from alignment at P-fluviatile_contig16:1545477..1568671- (Porterinema fluviatile SAG_2381)
GCCGACCTGAAGCATTGCCGCTTGGGAAAGGGTTGTGAGAGGCACTGCAG CTTTTCGCCCCTCTCTGTCTATTCCTGCACGTCTGCTTGCCAACGAGAGG GCGAGAGTACGCACGCTAGGCACAAGCACGCGGCAGAGTGGTGTGCATAA TAATACTCAAAACTCTCCTGCAGTCAGGAGCCAATGTTCGATGATGTGAT TTCGACAGGGCTGCAGGCAGTGCTCGCCGAGATCTTCGAATCGGTGGACA AGAACCAGCTCAACGTCTCGCTGGTGGGAGACATCTTCAAGGAGTCTCAC CTTGAGCTCACCGACCTTCGACTAAAGAAGACCCTGCTGAAGGACATGAA CCTGCCGGTGGACGTCAAGGAGGGCCTGGTGGGCAAGCTCGTCATCCAGG GACTTAGTGGTAAGGGCGGAAGAGGGTTGGTGCGAGCGGCGGACGTAACC GCATGGTTCATGTCCCTTTCAAGACGCTCTGAATACTGCAGTGTGCGCGC GCCATTGGACGAGCTTTCGAGAAGAGTTTGTTGTCGATTGCTGCTTTGTG ATAACTCTCGGTCCTTGTACGTGGTCAACGAACTAGGTGAGGTTGTTTAC TGCGTGACGAAACAGAGCTTGATGTCGGTTCCACGTTATTCGCTCGTTCA TGGAAGGGAGGGCGTGAGAGATCGAAGATGGAACATGAGTCGCCTGGCGT GACAAATCTGATCTGCTCTGAATCTGCGCCAACACTTTCTTGGACGAACT GCGGCGATACCGGGGGTATGGGTCCGGTGCTTGGGATTGATATTGTTCTC AAATTGCGCACGAGACGTGCTCGACGCAAGGAACCCCGGTCTCGCGTACT CCGTAGTATGGTCTCTCGGCATTTCTTTTTGCCACTTGAGATTGATGCCA GATTGATGATAGCAGCATAAAGCAGGCTTATCCTTTTGCACAACATGCAA TTTTTCATCGGTACCCAAAACAGCAGCCAGCAAGGCAGCTCCAACATCTC GAGGGTAAAAACAAATTTACGAAGTAGGCATGACCAGTGACAGTGACAGC AGGATTGAACACACATATGACCACTACAAGGCGTTGTTGCGCGGAATGGG GCGGTCGCGAAGAAAATCGCGGTTGGTGGTCTGGAACACAGGGCATTCCG GGTCTTGTGCCCATTCAACGTTTTTGCAACATGTGCAACTGCTGTGCCAC ATACACGCACGGTGTCGGACGCCACCACGGTTCATGCCTGTTGCCGCGTC GTGTGTGTGTCGGGGGGGGGCGAGTTCCAACATCCAACCTCTATCAACTT CTCCTCCGAGAATAATATTTCTCCGGCCGTGAGGCCCCTGCAGCGTCTAG TTTTTCGCCTTCCTGCGCTCTCGTGCGCTCTTTGCGATTTCTCTCGCAGC TGGACCTCCATTTGCTCTCATTTTTGCGGGATACCTTTGCCCATGTGTGT GAGGCTCGTGCGAGCGCTTCCCGCGCCAGCGTCGGATGTCGGTCGATGGA GCGGTGGCGGGCGCGAAAAGCAAGTCTCCAAGACTACCGTCATGAATTGC AGGTCTACGAACTCGAACCAATCATACAGCAAATCGGTATATCGGCTATT AGCCTACGGTCATGAGTTGTTGGAGGTCTATCACGTGCGTGGCCTGCTGT GCGTAGCACAATGCTTATCGCAAAAAAAGTGTGTGAGTACGTCGTTAGCC AACGCCCCTTCATTGCCCACGACAACAATAGCTGATGTGGTGTGATATGA ACTACAGGGCTAACGGACACGTGCAGCGCAAGCGGGGGTGTGTTCCAAGA ACAAGTCTTTGGAATTTCCACGGCGGTGCAATATGACATAAAAAGAAGTT TATACGGTTCAATGTGACATCTTTCGCACACCACGGCCTCGACCATGAAA ATATCCATGTTTGTCGTTGTTATTCTGTGATGTGGAAAGAAGAGAAGCAA CGTAAATACAGTTGTTGCCAAAAGGCAGCAACTCACGCTTTTGATAGGTT GGAAGATATTCCTGTGAGTACATGGGACATCTTTTATTCCGCGGAGTTCA GACAGAATCAACGTATTCCATCTATTCTTTTACTGCACTGGGCACGGGCA GAATGGAAAACAGAACTTGGAGAAACCCCTCTCCGTCCTTGTTGATAGTG CATGGCAGAGCTCAACATCGTATTTTCGACTTGCACCAGCATAACGCTGG CATATTCGCAGAAAATTCGTCACGCCTTTTCATTTATTGTTCTGAATTCG ACGAAACGTCCCAGATCAAAACAGGTCGACCACAAACTACATCGCATCTA CGAGCATACTTCCAACAACACTTACGTTTTTGATTGCCGTGATCGAGTGC TAGCGGAACCGATTTTCAACCGTAACAGCAGAATAGCGCAAGAAGGGTGC TGCGACATGGTTTCACGTTTTTGAATAAAACAAACTGATATATTTCGAGT CAATTGAGCTACAATAACGAATCACTACCAAACGATCAATCGCGGGAGGA CCAAGAGATTCCCAACCTGGTAAATTACTACCAGAAAGTTTCCGAGGCTA ATCTTTAAAACGGGAAAATGACACGGGAGACGCTCTAGCTGTAGTTTACC CGCAGAGGACGTCCACGATTGTCCATGACGATGACATGCATTCCCCTTTG GCTGGTAATGGTCGAAAATATTTTTCCACTGTCAAACTGCTTGTGGCCGT CCAGACCACTATATGTTGTCGTATGTTTGAACATAAATTAATGCAAATCA CCGCAGATTGTAAATCAGGAAAGGTATTTGCGAACTGGATGTTTTCTTCT ACTGTGAAGGAGCTGGTTGCACGGGGGCTCGTTGGTCTCGAATAGAATCT GGTCAGTGTGCCCTTACCATCCTGGTTTAGTGTGGGTTTTAAGGAGCGTA GACCTCACTCCTGGTATCCGGTTACCCCTTTTCCCTGAGTGGCTGAGTGG CCTGTCCTTTTCAAATGACGTCGACAAAAGACGGAAATCATGTTTTTAAA TCTCCTCGTGCTCAGCTCTTTTTCAGAGAAATTTGTGCGTGAAAAGCACT TCTTCCTTAAATCCTGGTTCGGAAAAGCATCTGGTCAGAGTACCTGATCA CTCATCATTCTGCTGCTAGTGTGGGAGGGTGTTAAGGAGCGTAGACCTCC GCCCCTGGTATCCGGTTTTCCTTTTTCCCTGAGTGACTGAGTGGTCTATC CTTCACACTGCACCATCGAATTCCAAGCGCGCAGTTTCCCTCATTGTCAT TGTGTTTTGCGATTTCATAATGATGAAGCATTCACCCACATGGACCAATG GGTTTGGGCACAATTGCCATCACCACAAATAGCGGATGGGGATCGTCGTA AAGCTGTATTCGACTTTTATGATGCATCGTCCATGTGGCGGACATGCTTT CAATGCCCCTTGCGTGACTACTGATTGAGCAACAGGAAAGACTCATTGTT GATACTTCCCGCAACCATTTCGCACATCAGCGACCGTCCATGGTGTATCG GGGCGTGTTGAATGCAAACGTACGGACAACGTGAATCGTGCAACCAATCG TAGTAGACGGCCATTGGAAAGGTTCAAACGTTGGAAACGAACGGGTGGTG TGTTGCAATCCATACCCGCTTGTTTGTTATCAGTGTAGTATATTAACGGA TGTTTTCGGCGGTGGTTCCCCACGCCGAAGTACTTCTACAAATACATCAC CAGGGGGGTCGATTAGTGTCGCGCTCGCATATGCGGTATTACCAGCGAAG TTGAGCAGTATCGCAAGACTATTAGATATTTTTTGTCCGCAGAAGCAACA TGGCGCATACTTGGGTACGACATGAAAGGTAGACAAGCTGGCCGTCATCG CGACGCCAACATCCCACCAACAACACCTGCCAGGTCAATCTCCAAGCGCT CGTTTCTGATGTTTTGTTCCTTGGGTACTATGTACGTGATCAAAAGCTAA ACATAATTTCGTAAAACCTTCAACACTTGGCATTGCATTCACGCTACCAC CTACTTATCACCATCGAGGATCGCCTTTTCCTTCACATCAATACTTCAGC GACGCGGCCGAGCGGAAGCGAGGCCTCAGCGAAAGCGGCACTTGTATATA TGTATATTTTTCTCTATAACAACCCCCCCTTCCCAGTACAACATACCGTA GGCGACAGTGTATGCCACCTGGAGGCGACGTTCGCAGCGCGAAAGTTCCA CCCGAGGATGGATGCCGAGGCCCCAACTGGGCGGTTTTGCAAAGATGTAG TCAATACCTTTCGAGAATCCATGGCTCGGCGTTTGCACCTCTTGATGGCG CAGCAATCAAGGTTTGAGAATCGGCTCGAGGGGGTCTGGTATTTGCCACC GTATACGGCAGGGCGCCCCAAGCCTGCGCTTGACCACAGAGTTATTTGTT GGCAGCAGGCATCATCATCTCCGGGGCCCCTTGTTTCAAGGCCGATCTTT TGTGGCTGTTGTGGTCGCCCCTGCGTCACTATTCTCATCGGATCGGGGGC GGGGGCGGGGGAAGATTCGGCCTTGCGATGCCACCGCGGGCGGCGCATTG GAGGTACAGCATCCTGGGTACAGATATCCATTTGCACCTGCCTTGCAGAG ACCCTTTGTCGGAAACGCCCTCCATCCGGAGAATTGCGGTATCCACGGCG ATAACTACATGATCTCTGCTCACGTCGAACTGTGTGAACTGTCCCCTACC CTCACAAGAAAAACATCAGAGACGACAAAACAGCTGACAAAATTCTGAAT GGCGAGGACCGAGCATTTATTTTGCTCCTTGTTTTTGTCGTCTTGTTCAT GAAAAGGGGTCATGACCGGGGACCCCGTGACTGTCACCGTCGGGGAGGTG CTGCTGCTGCTGACCCCGAGCGGCACCCTCTCCGACCCGGAGGCGGGCTT GGCGGCGAGGAGGATGGCGGCCACCCTCAGAGAGATGTTCGCCAACCGGT ACGCCGAGGACTTCCTGGAAGACGCCCTGGGGGTCAAGCTCGAGGACAAG CTTAGCGTGTGAGTGGTTGCTGAAGCGGACAGGTGTCGACGGGTCAGGCC TTGCAGGGCGACAGGCGCCAGGAGCGTTGGAGGAGGAGCCGTCATGTCGG ACTTGATCGTGGAGCGCAACTGATTGTTCTTGATATGTGTTTATCTGGCG CATCGGGTGCTCGTGTCAATTTGTTTCCTTGCTTTATGTTTTTGGTGGCG TTCGATATCAAGATTCAATTGGTTTGTCCCATGCTCGCAGAGTTGCTTCG TTATCGGGACAGCCCGGTGTTCTCCCTCGCCCCCCCTGCGGTGATGAGGC AGGACATCCAGATTGCTATGCCCTGTTGATGTCGATGTGCTTGTTTCGGC GTTTCTTACGAGGTTATTGACGTTGCTACTGTTGTCGTTTGTTGCAGATC TAAGTCGGCATCGTTGTCTTTTTGTTGTAGTCAGCAACCTTGCCGACCCT TATCTGCGGCCGTGACCGCTGATTTCTCCGTGCCACACCGCCTTCTTGTG GTGTGCCTTGTTTGCCGCGACTCTCTGCATTATGGCGGCCGTAGTAGCGG TGTTTCTTTCGCTACTTTGTATCAGACGCCACCTTGCCCCCCAAGGCCGT CGTTCGCGCCGCGAAATTTTTGCCAACATTACCGGAAAGGGTCGGAGAAG AAGCGAAGGCATCTTGTCGGGACTGCTCAACCTGGCCCGCCAGCCAGCCC ATCCCGTGCTGTGCCTTGCCGTTCCTTCCCCTTGTGTCCCGTTCGATGTC GTCCTGTTCGGCCCCGTTCCGTTGCGTCCATTCCTGTCCTGGGTACTGTC CCGGACCGTCTCGTCCCCGTCTCTCCCCCATCCGAAACCGTCCCGTCCCG TCCCGTCCCTCCCACGCCCGTTCCCCGTCACTTTCCCGTCCTGTGCCGTC CCGTTCCCGTCCTTTCTCCGCCCCGTCTCCGTCGGCCTTGCTCCCCCTAA CAGCCAATCCCAGAACAAGCTCAACCGCAAGGTCCTCCGGCACATCGTGA GAAAGGTGCTGTCGGGCGTGAGCATCATCCTTCAGGCGGTGCATGTCCGC TTCGAGCTCCCTGCCGGGGGGCTGAACGGCGCGGCCCCCGTGGTTTCTTC CGCAGGGGTTGGGGGGGGCGGCGCTTGCGACGCCGTGGGGGTGATGCTGC CGAGCTTGACGGTGAGTTTTTTATTCTCTCCTTTTTCGGTCGGTTGTGTT TTTTTTTGCGGCGTGCCAGTCGTTATGACCGTGATTGGCGGCAGTGTTCG TTTTGATCATCGGCCGTGACTCTTGCCCCCCCCCTCCACCCTGCCATGCT GCGTTTCTCCGTGCGAGCCGGGGGGGATCCGAATGGAGGCAGATGCAGAT GGGGCAGCTTTGTGGCACGGGCGCCTTTTTGTTGCGATTCATGCCGCGCA TCATTTGAATGTTTCCACTTTGTCCCTCCCCCCACCCCATCATACAAGGT CGGAAGAGGGTGGGAAAGCCGACATATTGTTTTTTCCTAGACGTTCAGAA AGCGTATGATACAGTATGGAGAAATGGGCTCTGGAAAAAGTTGGCGAAGT ATGGGATAAACGGGAAGATGTGGAGAATGATTAAGAAGATGACAGAGAGC ACGAAAAGCGCCGTGATGTTAGATGGAGAACTCTCGAGGTTCTTCGACAT TGAGCAGGGGTCCCACAGGGGTGCACAATGTCCCCAACGTTGTTCCAGGT ATTCATCAACGACTTACTGAAAGAGGTAGAGGCGGTAGGGAAGGGAGTAG AAGTAGGGGAAACCTCGGTATCGGGACTGCTATTTGCTGACGACTTTGTT GGGATGTCGGACACGCCTGAGGGGCTCCAACTACAGATTAACGCAGCGAA GACCTACGCTGATAAGTGGAGATTCTCGGCCAACGTCCCAAAGTGTGCCG TAATGGTATGCAATGAAGATGGTGACGAGGAAGTAGGTACCAAGTGGACG TGGGGGACAAGGAGCTGCCAAGAGTGGAAAAATACACATACCTTGGAGTA GAGATAGCAAAGGACTGTAAATGGGATGCACACATGCACAAAATAGCGGA CAAGGGCAAAGCAAGGGCAGGGAAGTTGCACCCAATCCTAGCAGACCGGC ACCTTGATACACGCGTCAAAATGACCATTCTGAAAAGTGTTATCATCCCG CCACTAGAGTACGCGGGAGAAGTTTGGGAAGGAACAAGAAAATAGTAGCA GAGTTGGAGGCAGCGCAGATGAAAGCAGCGAAGATCATTCTAGGATGCTC CCAGCGCACAAGTAACGCAGCAGTAAGAGCAGAGTTGGGGATCTACTCCT TAAGAACGGGAAGAGACAGGAGGAAGTTGACATGGCAATACCGTTTGGAA AACATGGGAAAGGAGAGGTTACCGAGAATAGCTTGGGAGGCGAGATGGAT AAACAAGGCCAAGGGTAGACAACCCATTGAGTGGGCTAAGGTTGTACAGG GAGTGTGGAGTGGGTTAGATATTGACGAACGGGAGACGACGGGAGCGGAA AGCTTAGAAGGGTACAAGAAGAGCATCTCAGAAGCCTTTGAAAATAGAGA AGACCAAAGCTTGCGGAAAGAGACCAAGGAAAAGGAGGTTCTAGAAGTGT ACGGAAGGCTGAACGAAGGAATAGGGTTCAAGGAGTACCTGAACGGACCA TTGGATGAAGGGACAAAGATGAAGGTCAAATTTAGAACGGGCGACATTGA CCTACGGGAACGTAGAAGGAGGTTTAGGAAGGTAGACGACGACGAAGACA AGTTCAAATGTGACTGCGGCGCCGAATGGGAAGACCGGGTACATGTAGTT GCGGAATGCCCGTTGTACGATCAGGAGAGAGAAGGGTACATGGTTGAGCT GGAAAAAGTAGACAGTCGTTATAGAGAGAAGTTTGAGGCATGGAACAAAG AGGAGAAGACGGTAGCGGTACTCGGGTGTAAGATGTGGCCCAGGACGGAC AGGTATAAAGTAGACAGGTTAGGGAAAACATTTTTGAGCCACCTTTGGCA AAGTAGGAAGGAACGATTGGCCATCGGTGGTCGATCCTGCGGGAACAATG CTCCGTCCTCTCGAGGACGCGTGGTCAATGGTCTAACAACTAAGGCATGC AAAACATGAGTACGCCCCCACCCCCACTTAAATCCGACTCGCCGAGTTTG TCACGACGCGCTCTGCGCTTGGTAAATGCGAGCCTGGCCGGCGAAAACCG TCGCACACTCCTCCGTCCCGGCTTTAGAGGTAAGCTATTTGAATAGGTCA ATGGTCATATGACGACGGCATGCATGACCATATCAGAGTACACCCCCCCC CCACGAATCCACGACCCAGGTACGCACATGCACCCCGGAGCACCCGTCGT TCGCCAAGTTTTCGGCCCCGACGCCGGTGGATAGAGCGCTGAGTTCCAGA GCCGGGGAAGGTGCCGCTCCTCCGCAGCCGCAGAGAGAGTCAGCCGCCAC GATAGCGAGGAGGGAGCTGGAGGCCAAGCAGCGGGACAGGAAGAACTTCT TGATCGTGAGGAAGAGGGCCTCCGCCGCGAACCTCCAAGTGTACTGTGAC TACGGTGTCGACAGGTGCGAATTGCAGAAAGAGGGGGGCCGGGAGGGGGG GTTGCCGTGTGTGTTTGGTGAGATCAAGGGGGCGGGCAGATGGAGGCATA CGCCGCCAAATCTCTGCTGGTAGGTGGGTGTTGTGCGTCGGTAGTTCGGC GAGAGACAGGGGAGTTGGGAAGTGCCTCCGGAGGTTTTGGTCCCCCGGGG TTCTCCCTGCTGTTTGCGCGGCGTGCTTGTTGTCTTCGCACGCGCCGGTG TTTGTACTGTCTTCTTTCATGAAGACAAAATCGATGGAATGAACAGGCCC TGAGTTCGAAGCGATGCTACAACGCATTCACGCCCCAAGCATCATTCGCG AACCCCGACGGGGGGGAGGGATCCATTGACTCGAGGACGCATTTTTGTGT AACCGCCGAGAGTCATGCACGCGCTGGCATCGGGCAAAATCTCGCTTAAT TCCGAAAGTCACAGAACCACACATCGTTTTGCGGCAAGCCGAATGGATCG ATGACCAATGCATGGCGTGCCCCCGTCCCTCTCTCCCCTCTCCCCTCCCT CTCTCCCTCCCTCTCCCCTCCCTGTTTCCTCATCTCTCGATCCGTCCCTC CCCCCTCCTCTGCTCCCGATCAGCTACGTGACCGCCATCGGCGCAGCCGT GTCCGTCGCGAGGAACAAGGCCACCAACCCAAGGCCGGGCACGAGCGGGT CCCTCCCGGGAGGTGGGCTGACCGCCGCCGCCGGCAGGGGCGCCGCTGCC GCCGCCAAGGCGGTCCGGGCGCTCTTCCTCCAGAAGTGGAAATCCGAGAG GCACGCGCTGCTGTTCAAGCCCCTGGCCCTCGAGGTCGGGGCGGAGGTAC ACCAGTGGGACAAGTCGGGGGGCAGGGCCATTGTGCCCAAGTACAGCGTC GCCCGGGTCAACGTCGGGGTCGGAGATCTTCAGGTGCGTGTGTGTGGGGG GGGGGGATTGCAAATTGGGCCGGGGGAGGGATCCGTTCATTTAAGTGTAG AACAAGCCGGAGAGCAGGGCAATCGCGTAGAAATGGTGTCCCCACCGCCA GTGTCGGGATTCAAGTGTCAGGTGGACAGGTGCCACAAGTACTTAGGGCG TGTCGTGGGTTTTGCGTGGGACAAGCCGGGTGATGGTCAGGGGCTTCGAG AATTTTACGTGACCGCTGTGGTAACAGAAACGGGTGTCTACGGATGGATT GTTTGTCGACAAGGAAAACCGTTGATCGATCGAACGGGGGTGTGGGGGGG GCATTTTTCTCTGGATGACGTTTGGCCGGGTGAGAGTGTTGTCCATTCTC ATTGCACCTATCCCACCCATCTGTCTGGTCCTTGCTTCTGCCAGAGACGA CACCGCTGCCTCTTTGTCGTCTGTTCGTTCGGTGGTCGTGCAGGCGGTAG TGGATGCCGAACAGGGCCGCGTCGTGGGCGCTGTAATCGACAACATCGTC GGCCTTGTCCGGAAGGGGAGGTTCAATCGCTTCGTGCCGCAGGCCTACCT GCCCCTGAGAAACCTGCCCCCCCCCAAGGTACCAAAAACTTAGTATAGAA GAACACGCACGCGAGGGAGGGCAGGCAGTCAGGCAGACATCTTTGTATTG AAAGGTGAACTGCAGCTGTGTTCGTGGTTCTTTCATCTCGGTGAGCGTCG TAGGCTTCGCCAAAAGGGGAAATGAAGGAAGCGGCGCAATTCTCTTCATT CACCAACCGCGTCTTTCACGTCCGCCGATGCGCTCAGGCATCCCTCGGTT AACACGCCGGCGTTATCGTGTGTACCGTGATCGACCTTCTCCCTTCCTTA CCCGCCCGGCGCAACTAACCCATCTCCCTCCCTTTCTTGTGCCGCGCAGG TTGTCCCGCCCAAGCCTGCCAAAGACGGGGCCCCCGCCGGCATGCTTCCT TCGGTGGAAACCTGGTCCTGGTCTGCGGGGCGAGAGGACGGGGGCGGGAC GGCACCACCAAAGTCAGCGGCAGAAGCCGTGCTTCGGGGGGGGTTCCCAA AGGAGGGGGGCGCGTGGGCGAGGGCGATGTGGCGATTCGCGGGCGCGTGC GTGCGGCACGATGTTCGGTGAGAAACATGACTACCCCCCCGCCGTTTTTT CTTGAATTCCTTGTCGGGCGAGGAACGGCTCATTCTTGATTTGTGTTTTT CATCTGTCTTTTGTTTCGTGTTCTTACGTGCTAATTATTTTGAAACGCGG CTGTTTAGAGATCTGGCAAGTCCTCGACAGAGCTCGGGCAAGTCCTCGAC ACGACTTTCGGTGAGAGAAGTCTGTCTCGGTGTGCGTGTGTGCGTGCCTC TTTATTTGTTGTGGTCGATGTTGCGGCGGTGGCGGTGTCTGGTTGCTGAC TACCCTGAGGCATGATTTTTTTTTCTTTGTGGCGGTCGTTCTTAAGCTAC TGCTGCTTTGTCCGCCAATTTGGTTCTCGTTATGTAGTGCTGTACTCAAG CCCACCGATGAGTTCGCATGTCATAGCGGGTCAGGGTGGGATAAGAGACC GACAGCCAGCAAGGGGTGGAACGGACGAGACTGTGGGCGCCGTGCATTCT TACGGCGAGGCACGCCCGTGTTTCATTAACGATGCTCTCGGTCATTCGCT GCCTCTCATCTCTCGCACGCTTTTGCGCCTGCGCCCTGTCTGACATGCCT GTGTCCCGGCGCTGGGTCTCCGATCTGAAGGTTGCCGTATGTAACATAAA ATAACACCCCCCTTCTCCCGGGCCGATTTCAACCCGCGGTGCTCCCACAC GGTGGAGCGTGTCAAACCTTGCCGCCACCGAAAAGTCGGTCTAAGGGGGC TGGTGTACAGCAATGGCCCGTACGTGTGAAACGCGCACGTGGGAAGCGGA TTTAATATCCAAGCGAATCAGAAATGCTCGTTAGGGTTGCACTGTACTTG CGTGGGACTCGTAGGGAAACCCTACCTTACACCTGAGTCCGTACTGCATG ATGATGCCGGAGTAGGATCATCAGCACGAGCCGGGGCAACAGCAAGACCA ATGACGCTACTGCTTTGCGAGAAGCAGTAGCACGAAACGAGCGAACACCT CTCGGTACGCCACTAGATCACCGCAAACAGTACCTAAGCTGTCTGAGTAA CGCTCACGTGACCCCAAAGGGTGGCCAAGGTGTCCCTTGTAATATCAACA ACGATGACGACGGCGACGGCGACGGCGTTTGATCGTGGCGCGAGCAGGTT GGCGCTGACCAAGCAGCTCCCGTCCTCGATGCCGAACTGGGACGGGACTC TTCTGCCTTCGCCGTCGCTGTCATCTTCGTCGTCGTCGCACTCGTCGTCG CTTCCTGCCGCCGCCGCCACAAACGGTACCCGGCCGGCGGCGGCGGCGCC CGAGCCGGCCTCCTGGAGGGTGGATTACCTGCGGTTGGTCGCGAGGACGC TGACACCCCGGGAGGCGAAGAGTGTCGGCAGGTGCGCAGGGAACGCGATT ATGAAAGGAAAAAGGCCCCACGGCGAGCAACATATTTTGGGCTTGTAATG CGGCCGTACTTTTTGGCCTTTTTCTAATTGCGGTAGGCTTGCGCTCAGTG GTTGATTGCCTGGTTTTCGAAGGGGGGGTGGGAGATTCATACTGAAATCA GGATAGAATAAAAGTTCGTGCATCCAAATCGGGAAACGAAATACATGTGG AGCTCTTGTCTCCATGACTCCCACCCCTGCAACTGCGGCGGCCCATCCCG CAAGGGGTTTACGTCCGTACGCGAAAGATGCCGCAGGTGTTCTTGCTACC GCCTTAGTTGTGTTGAGTTTGCCGCGCTGCTGCCGCCGTTGTTGCCTCCG CTGTCGCTTTGGCGGCGGGGTCATTTTTGCTCAGCTTCTGCTGTCACTGT CGTGGTGTCGGTTGATTGCGGGACCTGCCATTGCCGGTGTCGCTGCTGTC GACTATGTCATCGTCGCGGTCGCCAACTGTCTCCGTCGCCCTTGGTGGTC AACGCGGCGATGCTCCCCTTGGTGACGGCTTGTTTCCCGGCTAGCGGCGG CGGAGGCCACCGCGGGGTGGACGTGCGGAGGCTGGGTGTGCCCAAGGGGC GGGAGCCGCTGTCGCTGGAGGAGATGTGGGAGATGGCGAAGGTGGAGTCA TACGCTCCCGGTGACGAGATAGTTTTCTTGAGGTGAGGCGTTTGTGTGTT CCTCCTTGCCCTCGTGGTCGACGGCATGCGAGGGGAGGTGTGTGTGTCGG GGAATGAGCACACGAACGCGAGTGTAGCGATTTTCTCCATACTTTACCGT TGATTGCGTGTCGGCGGCACTGCCGACAGTGTTTACGCACAAGTCCTTGT ATTTAATCTTGCTTGCCTCATCGCTTACGTCGCCCTCCCCTCCCCGGTGC CCTCCCTACCCTTTCAGAATGGCAGCAAAGGTTTCCTCCCACCACGAATG GAGCCGCGCGCGGCGCGCTCGCGCGAACGCCAAGGCTATCGCTGTGCAGA AGGGGGCGTCGCCGGAGGCGGTGGCGGCGGCGGTTGGAGCGGCGGTAGTG GCGGCGGCGTGGACGACCAAGGACGACGTGGCCGTGCTGCGGGGCCTGGA CGAGCTGAGGGCGAAGCGGGCGGCTGCGGCCGCTGCGGCCGCTATGGAAG CAGAAACTGCTGGGGTTGGAGCCGCGGGGGCCGGCGTGGAGGAAGAGGAG GAAGAGGAGGACGACGAGGAGGTGAGTTCGCAGGTGTGTTGTTGTTGTTG CTGTTGCTGCTGCTGCTGCTGCTGTTGTTGTTGTTGTTGTTGTTGTTGTT AATGTTGTTGTCGTTGTTGTTGTTGTTGTTGTTGTTGTTGTTGTTGCTGT TGTTGTTAATGTTGTTGTTGTTGTTGTTGTTGTCGTTGTTGTTGTTGTTG TTGTTGTTGTTGTTGTTGTTGTTGTTGTTGTTGTTGTTGCTGTTGTTGTT GTTGTTGTTGTTGTTCTAGATCTTGTTTCTTGTTCTTGCCTTGGTCTACT GCTGGCGCAATTGGTACTTAACCGTTGACATCGCGCAAGCCTGCGTTTCG GTGGTAGACCCACTTTGTAGACACTGGTGTTCCGCAGCGGCCCCCACAAC CCCTGACGCTCCTACATTCCGACCCTGTCCGCTGCTGCTTTCGACTCCTG GTGTGCAGTTGTCGAAGCTGGAGTTCGCTGCGACTGCCGCCAGCGGGTTC TCTGATGACGGTGAGTCGAGGGCAGAATAGGACACAAGGTGGCCTTGTCT CAACCAAGGCTCTATTCCTTCTTGTTCAGGAGCGATCAGGGTGTACAGAC CTCCTCCAATCCGGACCTTGACAAGAAGGCATTGGGTATACACGGCTGGG ATGCTCTCTGCCGCGGACCCTGTCCACAAGGACCCGTGTTGACGCGAGAG CAAGCGCCGCAGCAAGCTTTCATGTTGTGGGCACGCGATGCGAAAGGTGT TGAACACGAGCTTGCGGCCTTCGACAACGGCTCAGCAGCCAGCGAGCAGG CAAGGACTCTTGGTTCTTGGTTGTCGACACCATCGTCGGTCGGTGTGTCC GTCACGCCCGGCCTTGGGTTCGCATCCGTTGACGAAGGAAGAGGACTTCC ATTTCGGAGGATAATCCGACCTCCACGAGGGTTGCGGATGTCTCTCGGTT GGCGTCGCCTTGGATTAGATTCTGACCAAACTGGCGTTTTGCCTCATCCT GGTGCGCCGAAGCCGTTCAGTATCCCGGCGAAGACGCTGGAGATTTCCTG TCCTACACACGTCCTCTCCACTCCGATGCTCGACCTACCGCCCAACCCCC ACCCCGACCTGTCTCGTCCCCCCGATTCGGATTTTTTGCATCCATTTTCC CGTTCGCGGTTCGGCGAAACAACGATTTTGGTTTATCTTGTTGTGATAAT TCATCTCTCCGCCACGCAACGCAACGCAACGCAACGCAAAGATGACGACA GCGACGCAGACTCGGACGAAGACTCCGAGGACGACGACGACGATGACGAC GACGACCGCAGCATCCAAGACCCCGAACATCTTCCGACTAAGGGGTCTGG CTCTCGGTTCTCGCTCGCCGACATTGCCGCCAAGGCCAAGGCCGCCGTCG GGGGCGCCTCAGGGGGTACTGCCACCACGGGTGGGGCGCTCGGGCGGACG CAGCCGGGGGCGGGGGGCGGGGACGCCCTGACGCCGGGCAAGAAAGGAGG CGGGTGGGCTGTTGGGGGGAAGGTGGCGAAGCTGTGGTCGAAGCTTCTGG GCCTCCCGCGAGTGGTGCTGCAAGTGAGTGTGAGGAGGCACGGAGGGAGG GTAATGAAGGAGGGAAGGGGAGATAGGGGGGGGGAGACTTAGTTGGAGAG TGAATAAGGGATTGTGGAAGGGAGCGGGAGGAAGGGAGGGGAGGAGGGAG GGGAGGTATGAGGGGAGAAGCGGAGGAGGATGTGCGCTCGCCGATATGAT GCCCCGAGTCAGGTCGAGTCCAGCCTCGGCCACGGCTTGCGGCGTTTCAC TTCGCGCTCTTGTTGCCGAAATATGCGGTCAGCCCGCTCTTGCGTCATGA GGGGCAATGAACATTGATTCTTGAGTGGCGGAATTGTCGTCGATACTGTG GGATGAAGCCGAGCCCGACAGCACAATGGAAATACGAAACCTGGAGGTAG CAAGAGCGTGTCTTTTTTTTTTTTCTTTTGCGTTTTGTGTTTTTTTTTCG ACGCCGACTGGAAGGAATCTCTAAATGAAGAGGCGAGGCAGGGTTGGGAG TTACCTGAAAACTCGAGAGCATGTGAGCATTCACGGGCGCTTGACAACCC GCGCGCGGAGACGATGATTGTCTTCACAGGTTTGTCCGACTTGCCTAAAT CATACTTCATTTGTGGCGTGTTCTTTCAGATTGTGTGAGTTGCTGGTGGT TTTTGGGTTTTTGGTTTTTGGTTTGTCTTTCCTCAATTTCGGCGACACCA ATGCTGACGAACATGACGCACCGCCGACATCGCTTTTTCGCTCGAAGCCT GGAGTTTGCTCTGACGCATACAGGCCAAGCAGAATGACTCCATTCGAGGG TGCGGTGTTACGCTCGCCTGCCTCCTGCTGGTCATCCTTTGGACCCATCC AAAATGTACCCGAAAAAGGGGTATGTTTATTCTCCTTGCTTATCTCGCCT TATCTCCCTCCCCCGTGCCCTCGCGACCCTCCCCCTCTCTCTCATCGATT CCTCTTCCCTTCCTCAAAACCAATCTACAAAGGTTGAGTCTGTAGGCATC GAGCTGCGGACGCAGATTGCCGGAGGGGCGAGGAGACCACTTGTCGCCGC CTCTGCAGGAGGGCTCACGGGCACATTGGAAGGCGACGAGGTAAGTCGAC ACTGAAACAGTGTTCGATGATTGCTTTCTGCTTATGTGTGTGGTTCTCTA ACATTGTCGGAAGGCAAATGACAATGACAGGAAAGTTGTTGGAAACCTTT TCTATCCGCGCGCTGAATTGATCAAGAAACACCACTGAAGCCGTGCCACA AGATTTGCCGTCGCCATGCCCGCCTCGTCGATATTCATGCACTTAACTCA GTGGGATATCCGTCAGCCGGCGGGATCTGGGCTACATGACCGCCATGCCT CGCAACTGACGCCAGAGCGAAGAAATGCGCAATGGTTGGCTAGTAGGGGC AGTATCGTGACGCCGCACCCGTCGAGTGGCATTTTTTGACAGTTTTGTGA CAACAGGCGCAGTGATGGGATGGTCGCCAATGTTTGAGAAGGGCGCCATG GTGGTACATGCTTTTTTTCTCCAAGGCCACTTTTGCCGGCTAAGCGAGCA CTGCAAGCAAACAACGTGAAGGAAGGCACCACTTCGGCGTGTTATCCGAC AACACGCACACGACACAATTTCTCGCCTTCTTTGTCCTCAGCCTCCATCC ATCTATCCATCCACCCATCCGTGCATCCGTCGATCCCTCCTCTGAAACTC TTTTTGTTTCTCGGCACCCGGTATTTGTCCTTCCCGTCGTTCTCTCCCAC TAGGCCCGGCGCTTACTCTGGTGGGAGGTATTGGTCGGACAAGTCACGCT TCGCGACCTCTGCGGCTCTTGGGGAGTCGATGGGGGGGGGGCTGCGGCAG GAGGGGGCGTGCCGAAGACGCTCTTGTCCGGGTCGGCGTCGGGGGTGGAT GGTCGGGAGTGGGTCTCTGCCGGTGACCCCAACGGGGCCCCCGCCAGGTG CGACACTCGGGCAACCTTGATCACCGCCCACGGTGATGAACATGTGTGCG CCTAGGTACTTCCCCTAATTTTCATCTACCCCGGCCGCTCCCTCTTTCCC TCCTTCCCTTCCTCGCTCTCACCCCTCTCCCTTCCTCGATATCTCTTGAT TATGTGATTGCCACCAAGAATCAATGGTATGCAAACCAAACCGTACCTTC CTTCCCTCCCTCCTTCGTTGCTTCTCGCTCTTGCTTCCTCTATCTCCCCC CTCTCTCTTCGTCCATATCTTTCGACTCATGCGACAGCCATCAAGGATTA AATGGTACGCAAATCAAGCCCCCTCGTTGCTTCTCTCTCTTGCTTTCTCT CTCTCCCCATTCTCTCTTCCTCCATATCTTTTGATTTTTGTAATAGCCAC CAAGAATTAAATGGTGCGCAAACCAAACCCCTCCTTTCTTCCCCCCCTCT CTCTCCCGCTCTCTTCCTGTCTCCCTGTTATGATTTTGTTTCGTGCCATT AATATTTTCTTTTTCGCCCACGAAAATTCGGCTTTCCAATTTGGGTCATA TCCTTGCGTTTGACATCTAAGAGTTTTGTGATGCTGCCCGCCCCAAGATT TTCAATTAATATGCCGACAAATGTTGCTGCCGCAAGCGTGTGGCTGTGAA CACACACGAGGCCCCGTTTCACTTCGAAGTGAAGCAAGCCGACAGAGCTG CGCTCGGAGGAGGATCCGTGACGATTCCGCTACCCCCTGCCCTTGGTTGA TTCCGTTTCATGCTTTTTTTGTGCAATCGGGAGTCAATTGACAGCACACG TAGCTCATAGTTGATTGGGATTATTTGTGCGTCTAAAAACACGTGTTCGT TTGCTCGCACATCCAGTCCTAGGTCTGCTCGTGTGTGTTGTCTCGGTCGT TTTCGGCAGGTCATTTCTGGTCGTCAGGGTCGTGCATGACCCCAACCGCA CGGCGTGTGGGCTGTTTCGCAGTTCCGCAGCGGACATGGCCCAGCTCCGG ACTCATGTGGTCGTCGGCTGCGTCACGGGCAAGGTGACCGCCAGCTTGTC GTTTGTGTTCCTTGCTGTTGCTGTTGCTGTTGCTGTTGTTATTGTTGTTG TTGTTGGTGGTGGTGGTGGTGGTGGAGGCGGCCGTGGAGTGTGTTATTGT TGCTGCTGCTGTTGTTGCTGTTGCTGTTGCTGTTGCTGTTGTTGTTGTTG TTGTTGTCGTTATTGTTGTTGTTGTTGCCGTCGTTTTGTATGTTGTTACT ATTGTTTTGTTGTTTGTTCTGCTGTTGTTTGTTTTGCTGTTTGTTGTCCC GTTGTTGCTGCTGCTACTGCTTTTCCGTTGCGGTTGTCTATCCACTTGTT GTTTCTGTCATCTGATAAGTGGTTGTTGGTGACATCGGGATACACATGCT ATCCATCCCCGCTCGTTCCCTCCATAGCCCCCCGCCCCCGCGCCATTCAA ACCGATAACGAGCTCCGTTCTGACTTGCTGGCATTTAGGAATGCTATCTA TCCTCAAGATCCGAAGGCAAACGCCCACTCAAAACCATGCCCCCCCTCTC CTTTCTTAGCCTCCTCCCCTCCCCCCTGCCGTTCAGATCCCGCCGCAGGT TCTGACGGCGTTCAACGCCGTCGCGCGCGACATCCTTGCGAGCAAGAGGA TGGCAAGGGCGAACCCCTCTCTTGCCAGCACTGCTGCTGCTGCCGGCGAT GACACGGCTGCGCGACAGCTCCGTGTGGCCGGCTTGTCGCTGTACCGATC CCTCTCGGGGAGCAAGTCTGTCATGTTCAGGCCGAAGACGGGGAAGGGCA GTCCCGGCGCGGCCGTGCGCGCCGCGCTGTCCATGGCGAGGGGCGCGACC AGGTGTGCAGATGGGGTGTGCAGGGGGGCAGGGGCGGGGAGGGCGTGTTT GTGGGTGAGTTCGCGCGACCACGTTGGAAGAGGCGAAGGGGAGGGGAGAG TGAATGGGGTCTTGTGCTTGCATGACGTGTGTTGGTGTGTGTGCTGTCAA ACGGCATCGGCAGCACCGACCGCCTGACCGGTGAAAATGCAGCAGATTCG ACAGCGCAAGAGAGCGACAAGTTGAAAGTCAGCCGGTTAACCGCTGAAGA ACAAGAAATTCGTCTAAGCGGAGCAAAAAGAGCGGAGATGAGCGGGTTCT CAATCACCGGACCGTGGAAGAGGATAGAGTACGTGTATACTTGTGTGCAG ACCGCACTCATCAGCTGGAGCATTGAAGTCCAACAGCCGAAACACCTGTA TGCGGTTTCCTACCATGGCTGTTGAGGCCCGACAGGGCTGTCGGGAAAGT TATCATTTTGTGTCAGCCGCCGCGCACCGTCAAGGAAACGCCATCCGATG AGTGCAACACCTGCAGCTTACAGCTGTTCGATAGTTCTGAGTCTCCTGCT CGGTTTTATCTGCGCTCGATTCGAGTATGCACTTGGTTGCAATCTCGTCG TTCGCCCTTTTCAGTCTTCTCCACACATTCACTCATTGCTTGATTCTTTC ATTCTCTCTTTCAGTCAGCCATTCCCCCATTTAAATCGTTGGTACGGAGC GCCCGGAATATTTTATTTTAATTTTTATGTTGCTCTCTTTGGTGTTGCAC CGCAGCTCATCGTCGTCCTCGGGAGAGGTGGACTCCAAGGAGCTCTACCG GGTCATCGCGGGCGTTCTTCCCGGGGACTTCGAGGTCCGCGTGCACGCGT CGGAGGTGATCGTTCAGGTCGCCTCCCGCGCGGAGGATCTCCTGGAGGCC GGGAAGGTTGCGCTGGAAGCTGTCGGGGAGACCCGGGCCGCAGCGGACAT GCGAGCCGGGGTCGGCTGCCGCCGACAGCGTGGTGCTCGAGGTCAGAATG GTGTATTGGGGTTGGTGGGGATGGGTTGGGGGTGGGTGGGCATGGGTTGT GGGTGGCGGGGTGAGTGGGTTGGTGGGTGGATGTGCGTTGCAGGCTGGAC GCGGCGGCGCGAGCGGCCACGGGATGGAGCCATCGTCTTCAGGATCGTCG TCGTTTTCGTCGTCGACCGGCCTTTCCCTTGTGGTAGTGGTAGACTAGCA GCGTGCGTGGTGCGGGAAAGGTGTTGCACGAATTGGGTGAACCGCTTATG ATGATCCGGCTGTCGATGCCAACGGCGACTTTCGTCCTGATGACTTATAC GCTATTGGATACTCGCGAAGCACCAGTGGTGATATCACAGGGCGACGAGA ACACGATTAATCCCTTTTGATTCTGGCGCCCTTCCTTCTGCTGTGCTCGC CTTGTTTGTTCACTTTTATCATTTTTTTTTGGCATGCGTGTTTTCCTTCT GTTTCGGGCAAAAAAGTTACGTGGAGAAGTTGCGTGCCGCGTTGGTGGGG AAGCGTTTGTACTAGGAGTATTTTGGTTTCATGTGAATGCGAGAGTCACA GCCGTCCCCAGCCGAGTCTGCTCTCCGATGCTAACATCTCTTCATGGCTA GTATCTTGTAATTCTGTGCGCCTTTCCAGGTTGACTTGGCCCCTGTCCAG TTCGACGCCTGCCGGAGGTCGAAACCCAGCCCAGAGTTTTGGACCGACAC CGGCATTCTGCGGTGAGACAGCCGCTCACGCACCCATCGATAATCTTGTC CGGTTTCATCGAGGTCCTTTTTTGTGAAGTATTACTTGAAGATCGAGTGC GGCTATCGGCGGAAATCGTATCCAACTTCATCGAGTTCCTTTCTTGTGAA GCATTATTTGAAGATTGCGCACGGCTATTGGCTTTCTCACATTGCTCTTA GGATTATTCGAGATCTTCGCCTGCTTCATGGCGTGCGCACAAGGGGGTCG GACGGATTCGCTGTGAGTCGGCGACATCAATGTCTTAACATTCGCGATCC ACGATTTTTTGCAGCTGACAGAGATAAACACGTGCGGCACTTGTTAATCG GCACGAGCGAAGCGTCCGCACACGTTGCCTTCTATGAAGAAAGATGACTG AAGCACTCACCGTTATTCCTCGAGCGTTCAGCAGTCCCAGGATTGCAGCA TACTTGGAAATTATGGAGCTAAGTCTCCATGGTTAAGTCGAGCCGACGCC GCGGAGGGGATGGCGGGACAGGCTGGCACAGAACAAACCTTGCGAAGTGT ATCCTGTCCACTTAGCAGTTGGATCAGTGGACCAAAGCTACCACACAACA CCGATCGTCCTTCTGTCTACACCCCGTGGCCCCCTCCGTGCACTTTGCTA TTACACCAAATCTCACTTTGCTGTAACACCAAACCTCACTTTGCTATAAC ACCAAATCTCACTGTGCTATTGCACCAAATCTCAATGTGCTATTGCACCA AATCTCACTTTGCAATAACACCAAACCTCACTTTGCTTTTACACCAAATC TCACTTTGCTATAACACCAAATCTCACTGTGCTATTGCACCAAATCTCAC TTTGCTATAACACCAAATCTCACTGTGCTATTGCACCAAATCTCACGTCG CTATCACACCAAATCTCACTTTGCTTTTACACCAAATCTCACGTTGCTAT CACACCAAATCTCAGTGCGTTTCGTCTGATGTCGGGGTGCATTCGTGACA AAAGTGTAATGATTTGACGGGACCAAGCTCCGCGTGCTTGCCACAAACAC CAAGTGTTGATGATGTTGTTGATGTCGGTATGCAATTGCGACGGAAATGC GAAAAATGTAACAGGACCAAGCTCCGTGCCCCCGACAAGGCGGTGGAGGC TGTGGTGACGGCCCTGCTCACGTCGGCGCAGAGGACGTCGTCGGTCGTGG CGCTGCTCTCGGAAACCGCTTTCGCAGTCGAGCACGCCGATGTCGCAGCA CCTTGATTTTGACTTGTTTTGGTTTCTTTCATCGACTCTGATTTCGACTC TGATATCGACTCTGATATTTCCGACCGGAATATCTTTCGGGAGTCGCGCC GGCAGCAATGGCACTACTTTGCAGCTGCCCGATCGATCTGATTTTCTTCC TTAGAGATATTTATCGGAAGAAAGACGAGGCAGATGAGTAAGCAGGGGAA GTCGACGAGGACGGCCGAACGCACGGTCTCTGCCCTCAACGTGTAAGGTA ACGTAATGGCGGGGGGGCGGCGGACGACAGCTGACAGCAGGAGGCGTAGT CTTCCTCCTGCCGCGGTACTTGGCTGCTCTGACTTTTGGCACGAATTGAG GTGCCAAGAGGTGCCAAGAGCGTTTTTTGTCGTGATTTTACCGAGTGAAA TCCTTCGTCAAATTTGTTGAATATTCGCCTGATTTCTTCCAGCAGGGAAG GTTCGGGCATATTATCGCGCTGCCCTCGATTTTCCCCCTTGAGCCTCATG ATATAACCGGTTGGAGTTCGAAAGATCGTCTGATATTCCGCATCGGTCTC TCATGCGAAAACCGAACGATGTCCATGATTTTAGGGGTGAGGTTCCTGCA ACAAGGGTCCGAAGGGGTGGGCAATGGGGAAATCGGAATTCCGCAGGGTG TGGTTTGGGCGAGCGCATTCCGGCTGCAGAGTGATGTTGGTACCACTACG TCTTTCATGTCGATATTGTCGACCTTGTGGGTCGAAATCATCCGATGTTT ACCACACATCGTCTTGCGGCGCGCCTGCCTCCTTGATCGTCGCGTTTTTT TTTTTTTTTTTTTTTTTTTTTTTTTTGGGGGCGGGTTACCTCTGGGCACT GGACATGGTGAGAGTTCTTTTCTGATTTATCCTGTGATGAATGGCAGAAC ACTCATTGATGCGGTTGCTAGGTTGCGGTTGCTAGGTTCGCATCCGTCCC CGGCGTCGTTGTTTAGAGACGCCAGCTGTGCGCGCGGTGTGTCGGTCGTG AGCCTTGTCGTGGTGGCTGTGGTTCAGTCCGCCCAGCTCAAAGCTCCTCC GCACTTTCTTATGTTGTCTCTCCGCGTTGCCTGCCGTAAAGCCTCCTTGT CTTTTTGCTCGCCCATGTGCCGCGGCAGTCGAGCCGTTTGGGCGCGGCTC GTGTTTTCCCCTGCTCGTGTTCGTGCCTCTTGAGAGTCCGGTTGTACTTT CACTCCGTTTGGTTTTGTGTTGAGGCCCAGCGCCTCGGGGCGAACGTGTG CGCGGTTTTCTATCTTGCTTGAGTCCCATTGAGAAGCCTAACATGTTTCG TTTATTGCGTCGCTTTCAAGCATGCGTGCGCGATGCTGTCGGCAGCCGGC GGAGCTGGCTTCATGTCGGCGGCAACGTCGTTCTTGCCCGAGATGTAGCA ATTTTTGAGGTTGTATCCAGCCCCCTTCTGTGATTTCCCTCCTGTGTTCG ACGGACTTGCCCGCCTGTACCACGCCTTCTGTGGCGAGAGGTTGGCCGTT ACGGTTACAGCATTTCGGTGGCAGAAGGTCAAAACCTGGAAGATACAAGT TGGCACGCCTTACAGAAACGCCCAGCTGAACGCTTGTGAAAATTCGGGAA ATTGTCATGCATGTCATACTCCAACCTTCAGAATGGAATCGTTTTTTTTC TTCCGAAAATCCGCTTTGTTTTTCAATAGGACCTTTATTAATGCC
back to top

Coding sequence (CDS) from alignment at P-fluviatile_contig16:1545477..1568671-

>mRNA_P-fluviatile_contig16.2759.1 ID=mRNA_P-fluviatile_contig16.2759.1|Name=mRNA_P-fluviatile_contig16.2759.1|organism=Porterinema fluviatile SAG_2381|type=CDS|length=7080bp|location=Sequence derived from alignment at P-fluviatile_contig16:1545477..1568671- (Porterinema fluviatile SAG_2381)
ATGTTCGATGATGTGATTTCGACAGGGCTGCAGGCAGTGCTCGCCGAGAT
CTTCGAATCGGTGGACAAGAACCAGCTCAACGTCTCGCTGGTGGGAGACA
TCTTCAAGGAGTCTCACCTTGAGCTCACCGACCTTCGACTAAAGAAGACC
CTGCTGAAGGACATGAACCTGCCGGTGGACGTCAAGGAGGGCCTGGTGGG
CAAGCTCGTCATCCAGGGACTTAGTGATGTTCGATGATGTGATTTCGACA
GGGCTGCAGGCAGTGCTCGCCGAGATCTTCGAATCGGTGGACAAGAACCA
GCTCAACGTCTCGCTGGTGGGAGACATCTTCAAGGAGTCTCACCTTGAGC
TCACCGACCTTCGACTAAAGAAGACCCTGCTGAAGGACATGAACCTGCCG
GTGGACGTCAAGGAGGGCCTGGTGGGCAAGCTCGTCATCCAGGGACTTAG
TGGGGTCATGACCGGGGACCCCGTGACTGTCACCGTCGGGGAGGTGCTGC
TGCTGCTGACCCCGAGCGGCACCCTCTCCGACCCGGAGGCGGGCTTGGCG
GCGAGGAGGATGGCGGCCACCCTCAGAGAGATGTTCGCCAACCGGTACGC
CGAGGACTTCCTGGAAGACGCCCTGGGGGTCAAGCTCGAGGACAAGCTTA
GCGTGGGTCATGACCGGGGACCCCGTGACTGTCACCGTCGGGGAGGTGCT
GCTGCTGCTGACCCCGAGCGGCACCCTCTCCGACCCGGAGGCGGGCTTGG
CGGCGAGGAGGATGGCGGCCACCCTCAGAGAGATGTTCGCCAACCGGTAC
GCCGAGGACTTCCTGGAAGACGCCCTGGGGGTCAAGCTCGAGGACAAGCT
TAGCGTCCAATCCCAGAACAAGCTCAACCGCAAGGTCCTCCGGCACATCG
TGAGAAAGGTGCTGTCGGGCGTGAGCATCATCCTTCAGGCGGTGCATGTC
CGCTTCGAGCTCCCTGCCGGGGGGCTGAACGGCGCGGCCCCCGTGGTTTC
TTCCGCAGGGGTTGGGGGGGGCGGCGCTTGCGACGCCGTGGGGGTGATGC
TGCCGAGCTTGACGCCAATCCCAGAACAAGCTCAACCGCAAGGTCCTCCG
GCACATCGTGAGAAAGGTGCTGTCGGGCGTGAGCATCATCCTTCAGGCGG
TGCATGTCCGCTTCGAGCTCCCTGCCGGGGGGCTGAACGGCGCGGCCCCC
GTGGTTTCTTCCGCAGGGGTTGGGGGGGGCGGCGCTTGCGACGCCGTGGG
GGTGATGCTGCCGAGCTTGACGGTACGCACATGCACCCCGGAGCACCCGT
CGTTCGCCAAGTTTTCGGCCCCGACGCCGGTGGATAGAGCGCTGAGTTCC
AGAGCCGGGGAAGGTGCCGCTCCTCCGCAGCCGCAGAGAGAGTCAGCCGC
CACGATAGCGAGGAGGGAGCTGGAGGCCAAGCAGCGGGACAGGAAGAACT
TCTTGATCGTGAGGAAGAGGGCCTCCGCCGCGAACCTCCAAGTGTACTGT
GACTACGGTGTCGACAGGTACGCACATGCACCCCGGAGCACCCGTCGTTC
GCCAAGTTTTCGGCCCCGACGCCGGTGGATAGAGCGCTGAGTTCCAGAGC
CGGGGAAGGTGCCGCTCCTCCGCAGCCGCAGAGAGAGTCAGCCGCCACGA
TAGCGAGGAGGGAGCTGGAGGCCAAGCAGCGGGACAGGAAGAACTTCTTG
ATCGTGAGGAAGAGGGCCTCCGCCGCGAACCTCCAAGTGTACTGTGACTA
CGGTGTCGACAGCTACGTGACCGCCATCGGCGCAGCCGTGTCCGTCGCGA
GGAACAAGGCCACCAACCCAAGGCCGGGCACGAGCGGGTCCCTCCCGGGA
GGTGGGCTGACCGCCGCCGCCGGCAGGGGCGCCGCTGCCGCCGCCAAGGC
GGTCCGGGCGCTCTTCCTCCAGAAGTGGAAATCCGAGAGGCACGCGCTGC
TGTTCAAGCCCCTGGCCCTCGAGGTCGGGGCGGAGGTACACCAGTGGGAC
AAGTCGGGGGGCAGGGCCATTGTGCCCAAGTACAGCGTCGCCCGGGTCAA
CGTCGGGGTCGGAGATCTTCAGCTACGTGACCGCCATCGGCGCAGCCGTG
TCCGTCGCGAGGAACAAGGCCACCAACCCAAGGCCGGGCACGAGCGGGTC
CCTCCCGGGAGGTGGGCTGACCGCCGCCGCCGGCAGGGGCGCCGCTGCCG
CCGCCAAGGCGGTCCGGGCGCTCTTCCTCCAGAAGTGGAAATCCGAGAGG
CACGCGCTGCTGTTCAAGCCCCTGGCCCTCGAGGTCGGGGCGGAGGTACA
CCAGTGGGACAAGTCGGGGGGCAGGGCCATTGTGCCCAAGTACAGCGTCG
CCCGGGTCAACGTCGGGGTCGGAGATCTTCAGGCGGTAGTGGATGCCGAA
CAGGGCCGCGTCGTGGGCGCTGTAATCGACAACATCGTCGGCCTTGTCCG
GAAGGGGAGGTTCAATCGCTTCGTGCCGCAGGCCTACCTGCCCCTGAGAA
ACCTGCCCCCCCCCAAGGCGGTAGTGGATGCCGAACAGGGCCGCGTCGTG
GGCGCTGTAATCGACAACATCGTCGGCCTTGTCCGGAAGGGGAGGTTCAA
TCGCTTCGTGCCGCAGGCCTACCTGCCCCTGAGAAACCTGCCCCCCCCCA
AGGTTGTCCCGCCCAAGCCTGCCAAAGACGGGGCCCCCGCCGGCATGCTT
CCTTCGGTGGAAACCTGGTCCTGGTCTGCGGGGCGAGAGGACGGGGGCGG
GACGGCACCACCAAAGTCAGCGGCAGAAGCCGTGCTTCGGGGGGGGTTCC
CAAAGGAGGGGGGCGCGTGGGCGAGGGCGATGTGGCGATTCGCGGGCGCG
TGCGTGCGGCACGATGTTCGGTTGTCCCGCCCAAGCCTGCCAAAGACGGG
GCCCCCGCCGGCATGCTTCCTTCGGTGGAAACCTGGTCCTGGTCTGCGGG
GCGAGAGGACGGGGGCGGGACGGCACCACCAAAGTCAGCGGCAGAAGCCG
TGCTTCGGGGGGGGTTCCCAAAGGAGGGGGGCGCGTGGGCGAGGGCGATG
TGGCGATTCGCGGGCGCGTGCGTGCGGCACGATGTTCGCAGGTTGGCGCT
GACCAAGCAGCTCCCGTCCTCGATGCCGAACTGGGACGGGACTCTTCTGC
CTTCGCCGTCGCTGTCATCTTCGTCGTCGTCGCACTCGTCGTCGCTTCCT
GCCGCCGCCGCCACAAACGGTACCCGGCCGGCGGCGGCGGCGCCCGAGCC
GGCCTCCTGGAGGGTGGATTACCTGCGGTTGGTCGCGAGGACGCTGACAC
CCCGGGAGGCGAAGAGTGTCGGCAGCAGGTTGGCGCTGACCAAGCAGCTC
CCGTCCTCGATGCCGAACTGGGACGGGACTCTTCTGCCTTCGCCGTCGCT
GTCATCTTCGTCGTCGTCGCACTCGTCGTCGCTTCCTGCCGCCGCCGCCA
CAAACGGTACCCGGCCGGCGGCGGCGGCGCCCGAGCCGGCCTCCTGGAGG
GTGGATTACCTGCGGTTGGTCGCGAGGACGCTGACACCCCGGGAGGCGAA
GAGTGTCGGCAGCGGCGGCGGAGGCCACCGCGGGGTGGACGTGCGGAGGC
TGGGTGTGCCCAAGGGGCGGGAGCCGCTGTCGCTGGAGGAGATGTGGGAG
ATGGCGAAGGTGGAGTCATACGCTCCCGGTGACGAGATAGTTTTCTTGAG
CGGCGGCGGAGGCCACCGCGGGGTGGACGTGCGGAGGCTGGGTGTGCCCA
AGGGGCGGGAGCCGCTGTCGCTGGAGGAGATGTGGGAGATGGCGAAGGTG
GAGTCATACGCTCCCGGTGACGAGATAGTTTTCTTGAGAATGGCAGCAAA
GGTTTCCTCCCACCACGAATGGAGCCGCGCGCGGCGCGCTCGCGCGAACG
CCAAGGCTATCGCTGTGCAGAAGGGGGCGTCGCCGGAGGCGGTGGCGGCG
GCGGTTGGAGCGGCGGTAGTGGCGGCGGCGTGGACGACCAAGGACGACGT
GGCCGTGCTGCGGGGCCTGGACGAGCTGAGGGCGAAGCGGGCGGCTGCGG
CCGCTGCGGCCGCTATGGAAGCAGAAACTGCTGGGGTTGGAGCCGCGGGG
GCCGGCGTGGAGGAAGAGGAGGAAGAGGAGGACGACGAGGAGAATGGCAG
CAAAGGTTTCCTCCCACCACGAATGGAGCCGCGCGCGGCGCGCTCGCGCG
AACGCCAAGGCTATCGCTGTGCAGAAGGGGGCGTCGCCGGAGGCGGTGGC
GGCGGCGGTTGGAGCGGCGGTAGTGGCGGCGGCGTGGACGACCAAGGACG
ACGTGGCCGTGCTGCGGGGCCTGGACGAGCTGAGGGCGAAGCGGGCGGCT
GCGGCCGCTGCGGCCGCTATGGAAGCAGAAACTGCTGGGGTTGGAGCCGC
GGGGGCCGGCGTGGAGGAAGAGGAGGAAGAGGAGGACGACGAGGAGTTGT
CGAAGCTGGAGTTCGCTGCGACTGCCGCCAGCGGGTTCTCTGATGACGTT
GTCGAAGCTGGAGTTCGCTGCGACTGCCGCCAGCGGGTTCTCTGATGACG
ATGACGACAGCGACGCAGACTCGGACGAAGACTCCGAGGACGACGACGAC
GATGACGACGACGACCGCAGCATCCAAGACCCCGAACATCTTCCGACTAA
GGGGTCTGGCTCTCGGTTCTCGCTCGCCGACATTGCCGCCAAGGCCAAGG
CCGCCGTCGGGGGCGCCTCAGGGGGTACTGCCACCACGGGTGGGGCGCTC
GGGCGGACGCAGCCGGGGGCGGGGGGCGGGGACGCCCTGACGCCGGGCAA
GAAAGGAGGCGGGTGGGCTGTTGGGGGGAAGGTGGCGAAGCTGTGGTCGA
AGCTTCTGGGCCTCCCGCGAGTGGTGCTGCAAATGACGACAGCGACGCAG
ACTCGGACGAAGACTCCGAGGACGACGACGACGATGACGACGACGACCGC
AGCATCCAAGACCCCGAACATCTTCCGACTAAGGGGTCTGGCTCTCGGTT
CTCGCTCGCCGACATTGCCGCCAAGGCCAAGGCCGCCGTCGGGGGCGCCT
CAGGGGGTACTGCCACCACGGGTGGGGCGCTCGGGCGGACGCAGCCGGGG
GCGGGGGGCGGGGACGCCCTGACGCCGGGCAAGAAAGGAGGCGGGTGGGC
TGTTGGGGGGAAGGTGGCGAAGCTGTGGTCGAAGCTTCTGGGCCTCCCGC
GAGTGGTGCTGCAAGTTGAGTCTGTAGGCATCGAGCTGCGGACGCAGATT
GCCGGAGGGGCGAGGAGACCACTTGTCGCCGCCTCTGCAGGAGGGCTCAC
GGGCACATTGGAAGGCGACGAGGTTGAGTCTGTAGGCATCGAGCTGCGGA
CGCAGATTGCCGGAGGGGCGAGGAGACCACTTGTCGCCGCCTCTGCAGGA
GGGCTCACGGGCACATTGGAAGGCGACGAGGCCCGGCGCTTACTCTGGTG
GGAGGTATTGGTCGGACAAGTCACGCTTCGCGACCTCTGCGGCTCTTGGG
GAGTCGATGGGGGGGGGGCTGCGGCAGGAGGGGGCGTGCCGAAGACGCTC
TTGTCCGGGTCGGCGTCGGGGGTGGATGGTCGGGAGTGGGTCTCTGCCGG
TGACCCCAACGGGGCCCCCGCCAGGCCCGGCGCTTACTCTGGTGGGAGGT
ATTGGTCGGACAAGTCACGCTTCGCGACCTCTGCGGCTCTTGGGGAGTCG
ATGGGGGGGGGGCTGCGGCAGGAGGGGGCGTGCCGAAGACGCTCTTGTCC
GGGTCGGCGTCGGGGGTGGATGGTCGGGAGTGGGTCTCTGCCGGTGACCC
CAACGGGGCCCCCGCCAGGTCATTTCTGGTCGTCAGGGTCGTGCATGACC
CCAACCGCACGGCGTGTGGGCTGTTTCGCAGTTCCGCAGCGGACATGGCC
CAGCTCCGGACTCATGTGGTCGTCGGCTGCGTCACGGGCAAGGTCATTTC
TGGTCGTCAGGGTCGTGCATGACCCCAACCGCACGGCGTGTGGGCTGTTT
CGCAGTTCCGCAGCGGACATGGCCCAGCTCCGGACTCATGTGGTCGTCGG
CTGCGTCACGGGCAAGATCCCGCCGCAGGTTCTGACGGCGTTCAACGCCG
TCGCGCGCGACATCCTTGCGAGCAAGAGGATGGCAAGGGCGAACCCCTCT
CTTGCCAGCACTGCTGCTGCTGCCGGCGATGACACGGCTGCGCGACAGCT
CCGTGTGGCCGGCTTGTCGCTGTACCGATCCCTCTCGGGGAGCAAGTCTG
TCATGTTCAGGCCGAAGACGGGGAAGGGCAGTCCCGGCGCGGCCGTGCGC
GCCGCGCTGTCCATGGCGAGGGGCGCGACCAGATCCCGCCGCAGGTTCTG
ACGGCGTTCAACGCCGTCGCGCGCGACATCCTTGCGAGCAAGAGGATGGC
AAGGGCGAACCCCTCTCTTGCCAGCACTGCTGCTGCTGCCGGCGATGACA
CGGCTGCGCGACAGCTCCGTGTGGCCGGCTTGTCGCTGTACCGATCCCTC
TCGGGGAGCAAGTCTGTCATGTTCAGGCCGAAGACGGGGAAGGGCAGTCC
CGGCGCGGCCGTGCGCGCCGCGCTGTCCATGGCGAGGGGCGCGACCAGCT
CATCGTCGTCCTCGGGAGAGGTGGACTCCAAGGAGCTCTACCGGGTCATC
GCGGGCGTTCTTCCCGGGGACTTCGAGGTCCGCGTGCACGCGTCGGAGGT
GATCGTTCAGGTCGCCTCCCGCGCGGAGGATCTCCTGGAGGCCGGGAAGG
TTGCGCTGGAAGCTGTCGGGGAGACCCGGGCCGCAGCGGACATGCGAGCC
GGGGTCGGCTGCCGCCGACAGCGTGGTGCTCGAGCTCATCGTCGTCCTCG
GGAGAGGTGGACTCCAAGGAGCTCTACCGGGTCATCGCGGGCGTTCTTCC
CGGGGACTTCGAGGTCCGCGTGCACGCGTCGGAGGTGATCGTTCAGGTCG
CCTCCCGCGCGGAGGATCTCCTGGAGGCCGGGAAGGTTGCGCTGGAAGCT
GTCGGGGAGACCCGGGCCGCAGCGGACATGCGAGCCGGGGTCGGCTGCCG
CCGACAGCGTGGTGCTCGAGGTTGAGTTGA
back to top