mRNA_P-fluviatile_contig58.12192.1 (mRNA) Porterinema fluviatile SAG_2381

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

Overview
NamemRNA_P-fluviatile_contig58.12192.1
Unique NamemRNA_P-fluviatile_contig58.12192.1
TypemRNA
OrganismPorterinema fluviatile SAG_2381 (Porterinema fluviatile SAG_2381)
Homology
BLAST of mRNA_P-fluviatile_contig58.12192.1 vs. uniprot
Match: D8LHX2_ECTSI (Serine/threonine protein phosphatase n=1 Tax=Ectocarpus siliculosus TaxID=2880 RepID=D8LHX2_ECTSI)

HSP 1 Score: 779 bits (2011), Expect = 1.330e-266
Identity = 419/691 (60.64%), Postives = 476/691 (68.89%), Query Frame = 2
Query:  110 MGNSLEAPVTRKDTVRFARAAAALKTQHDRQENREHKDKIHAIPGDEFSDGIAAAGCSMQGWRCTMEDRLCARMDLEGCPLGVRHVFCLFDGHGGDSVAEFCRAHLADRVVEHLRETQAGRPAAAVXXXXXXXXXXXPAERYDPAGRNGGHRRXXXXXXXXXXXXXXXXXXXXXXXEAEADPALVAACVRDACREIDAQVKGAFFTPTGRYMAPRVDDPLDVTPSQ-PRVGEQALEGAAHNLFAGSPLSQHRGTREKAGEISEVEEEGGEKREELGRALEVWAHDGGCRIDAAQSLPPANGHTVGPVDGG-------EGGVEMFSTCGTT-SLIVIVSDLHVICCNSGDSRAVLASEGASRPLSTDHKPESRGERQRIEAAGGKVEHNRVEGRLAVSRCIGDHPFKANPKLPQERQMVVCDPEVTVVARSDADEFVIMACDGVWDVMANDEACFFLRKCIQEGKKDLGKILEDMEDACLAKQSMDNMSVLVIAFRAAWAEGLRLHKSARYVLQWGCEDVSRWLSINNFGQYQNDFDRQKVDGLGLLSLTEGDLHHKLHLKKVGLRKKLWQRLSPLRLGYLGWSKGELAAWLEHVGFEVLQGTVVELDIDGRALSMMSRGALRSLAMQAGMDSASRRRLYAAVDDLKTSGAGVEWISLHGSESVLSARFHGHNASAGGNFGGPGSPGDAWPR 2155
            MGN+LEAPVT KDTVRF R A ALK Q    + R+ KD I  IPGDE SDGIAAA CSMQGWRC+MEDRLCARMDLEGCPLGVRH+FCLFDGHGGDSVAE+CR +LADR+V+ +RE QA    +A             A+   PA   G                            A A P + A CVRDACRE+DA+VKG FFTP GRY+APRVDDPLD +P Q P     +  G         P+S      EKA            KR+   +A +  A DG              G   G  DG        +GG   FSTCGTT SLIV+VSD  +ICCN+GDSRAVLASEGASR LS DHKP++R ERQRIEAAGGKVEHNRVEG+LAVSRCIGDHPFK++P LP ERQMVVCDPEVTV+ RSD DEFV+MACDGVWDVM NDEACFFLRK IQEG +DLG+ILEDMED CLAKQSMDNMSVLVIAF+AAW EGL LHKSARY+LQWGCE+VSRWL+ NNFGQYQ+DFD+  +DG+ LLSLTE DLHHKL LKKVGLRKKLWQ+LSPLR GYL WSK ELAAWLEHVG    Q  VVE DIDGR LS M++  +R LA  AG+   SRRRLY+ +DDLK  GA  EW++LHGS  +L AR++        +  G  + GDAW R
Sbjct:    1 MGNALEAPVTEKDTVRFERDARALKAQQGLGD-RKDKDTIWIIPGDECSDGIAAAACSMQGWRCSMEDRLCARMDLEGCPLGVRHIFCLFDGHGGDSVAEYCRTYLADRIVQRIREAQALATTSATTTEAATIAQS--AQARVPANGAGKEGINEHPGGGGGGRTFGDGERGSDGGTATAAPYMAAGCVRDACREVDAEVKGTFFTPAGRYVAPRVDDPLDPSPKQQPTRTSSSSGGFGEGADQARPMSMEERRLEKA------------KRKPSTQANKSPARDGDAGARKENGGETNAGFAGGWGDGSGNATDDADGGPTRFSTCGTTTSLIVVVSDAFIICCNTGDSRAVLASEGASRQLSVDHKPDNRAERQRIEAAGGKVEHNRVEGKLAVSRCIGDHPFKSDPNLPLERQMVVCDPEVTVIKRSDEDEFVVMACDGVWDVMGNDEACFFLRKSIQEGNRDLGRILEDMEDVCLAKQSMDNMSVLVIAFKAAWEEGLHLHKSARYILQWGCEEVSRWLATNNFGQYQDDFDKHYIDGVQLLSLTEADLHHKLRLKKVGLRKKLWQKLSPLRSGYLAWSKVELAAWLEHVGLRDFQRAVVEKDIDGRVLSTMTKTEMRLLARNAGLHKGSRRRLYSVIDDLKAGGADGEWVALHGS-MLLGARYN-------DDVNGGDTTGDAWLR 668          
BLAST of mRNA_P-fluviatile_contig58.12192.1 vs. uniprot
Match: A0A7S4DC67_HETAK (Hypothetical protein (Fragment) n=2 Tax=Heterosigma akashiwo TaxID=2829 RepID=A0A7S4DC67_HETAK)

HSP 1 Score: 187 bits (475), Expect = 1.720e-47
Identity = 106/273 (38.83%), Postives = 154/273 (56.41%), Query Frame = 2
Query: 1265 AVSRCIGDHPFKANPKLPQERQMVVCDPEVTVVARSDA-DEFVIMACDGVWDVMANDEACFFLRKCIQE----GKKDLGKILEDMEDACLAKQSMDNMSVLVIAFRAAW-----AEGLRLHKSARYVLQWGCEDVSRWLSINNFGQYQNDFDRQKVDGLGLLSLTEGDLHHKLHLKKVGLRKKLWQRLSPLRLGYLGWSKGELAAWLEHVGFEVLQGTVVELDIDGRALSMMSRGALRSLA----MQAGMDSASRRRLYAAVDDLKTSGAGVE 2041
            A +R  G  P +    LP E Q+V  +P + V  R+   D F+I+ACDGVWD   ++EA F +R  +      G +DLGK+L  + D CL + S DNMS +++AF  AW     A G R+H SARY+ +W   DV RWL+  +FG+YQ+ F+  ++DG+  L LT+ DL  KL LKK GLR +LW+ +S LR GYL W+  +   WL+ +  +  Q   +   IDG ALS +S+  L++L         +    +  L   V+DL+  G G E
Sbjct:    4 AATRLPG--PGEDGDLLPPEEQIVTAEPGLRVYERAPGRDLFLILACDGVWDAQTDEEAAFLVRARLDAQLAGGDRDLGKVLAALLDDCLRRASRDNMSAVLLAFPGAWEQPGGASG-RVHPSARYLEKWTVNDVLRWLAARSFGEYQDAFENNEIDGINFLQLTQEDLSTKLRLKKAGLRTRLWEEMSALRRGYLAWNVEQTVMWLKQISCQDFQEAFLANQIDGMALSKISKEDLKALTNDLVKSKTVTKGKQSMLVRRVEDLRVKGEGGE 273          
BLAST of mRNA_P-fluviatile_contig58.12192.1 vs. uniprot
Match: W4H0A2_9STRA (PPM-type phosphatase domain-containing protein n=7 Tax=Aphanomyces astaci TaxID=112090 RepID=W4H0A2_9STRA)

HSP 1 Score: 172 bits (436), Expect = 6.680e-44
Identity = 83/169 (49.11%), Postives = 117/169 (69.23%), Query Frame = 2
Query: 1067 GTTSLIVIVSDLHVICCNSGDSRAVLASEGASRPLSTDHKPESRGERQRIEAAGGKVEHNRVEGRLAVSRCIGDHPFKANPKLPQERQMVVCDPEVTVVARSDADEFVIMACDGVWDVMANDEACFFLRKCIQEGKKDLGKILEDMEDACLAKQSMDNMSVLVIAFRAA 1573
            G T++   ++D H++  NSGDSR+VLA++G   P+S DHKP + GERQRIE AGG V +NRV G LAVSR +GD  +K  P L  E Q V  +P+V  V R+   EF+++ACDGVWDVM+N++AC F+R  +  G+ ++G I E++ D CL+  S DNMS++V+ F  A
Sbjct:  120 GCTAIAAFINDTHIVVANSGDSRSVLATDGGVVPMSYDHKPNNPGERQRIENAGGSVRNNRVNGDLAVSRALGDFVYKQRPDLRAEDQQVSAEPDVKAVERTKDFEFLLLACDGVWDVMSNEDACAFVRSLLAHGESNMGLICEEVLDHCLSLGSRDNMSIVVVKFPGA 288          
BLAST of mRNA_P-fluviatile_contig58.12192.1 vs. uniprot
Match: A0A6G0WXM2_9STRA (PPM-type phosphatase domain-containing protein n=1 Tax=Aphanomyces euteiches TaxID=100861 RepID=A0A6G0WXM2_9STRA)

HSP 1 Score: 172 bits (436), Expect = 7.830e-44
Identity = 83/169 (49.11%), Postives = 117/169 (69.23%), Query Frame = 2
Query: 1067 GTTSLIVIVSDLHVICCNSGDSRAVLASEGASRPLSTDHKPESRGERQRIEAAGGKVEHNRVEGRLAVSRCIGDHPFKANPKLPQERQMVVCDPEVTVVARSDADEFVIMACDGVWDVMANDEACFFLRKCIQEGKKDLGKILEDMEDACLAKQSMDNMSVLVIAFRAA 1573
            G T++  +++D H+I  NSGDSR+VLAS+G   P+S DHKP +  ER+RIE AGG V +NRV G LAVSR +GD  +K    L  E Q V  +PE+ V +R+  DEF+I+ACDG+WDVM N+EAC ++R    +G+ +LG + E++ D CL+  S DNMS++V+ F  A
Sbjct:  120 GCTAIAAVITDTHIIVSNSGDSRSVLASDGGVVPMSFDHKPNNLPERKRIENAGGSVRNNRVNGDLAVSRALGDFVYKQRGDLKAEEQQVSAEPEIVVHSRTKDDEFLILACDGIWDVMTNEEACDYVRSLFDKGETNLGLVCEEVLDHCLSLGSRDNMSIIVVKFAGA 288          
BLAST of mRNA_P-fluviatile_contig58.12192.1 vs. uniprot
Match: A0A485LRV3_9STRA (Aste57867_24961 protein n=1 Tax=Aphanomyces stellatus TaxID=120398 RepID=A0A485LRV3_9STRA)

HSP 1 Score: 171 bits (432), Expect = 2.810e-43
Identity = 83/169 (49.11%), Postives = 118/169 (69.82%), Query Frame = 2
Query: 1067 GTTSLIVIVSDLHVICCNSGDSRAVLASEGASRPLSTDHKPESRGERQRIEAAGGKVEHNRVEGRLAVSRCIGDHPFKANPKLPQERQMVVCDPEVTVVARSDADEFVIMACDGVWDVMANDEACFFLRKCIQEGKKDLGKILEDMEDACLAKQSMDNMSVLVIAFRAA 1573
            G T++   V+D H+I  NSGDSR VLA++G   P+S DHKP + GERQRIE AGG V +NRV G LAVSR +GD  +K    L  E Q V  +P+V + ARS  +EF+++ACDG+WDVM+N++AC ++R  + +G+ ++G I E++ D CL+  S DNMSV+++ F  A
Sbjct:  120 GCTAIASFVNDTHIIVANSGDSRGVLATDGGVVPMSYDHKPNNPGERQRIENAGGAVRNNRVNGDLAVSRALGDFVYKQRGDLRPEEQQVSAEPDVKIEARSKDNEFLLLACDGIWDVMSNEDACAYVRGLMAQGENNMGLICEEVLDHCLSLGSRDNMSVVIVKFAGA 288          
BLAST of mRNA_P-fluviatile_contig58.12192.1 vs. uniprot
Match: A0A024UCH5_9STRA (PPM-type phosphatase domain-containing protein n=2 Tax=Aphanomyces invadans TaxID=157072 RepID=A0A024UCH5_9STRA)

HSP 1 Score: 170 bits (431), Expect = 3.820e-43
Identity = 82/169 (48.52%), Postives = 117/169 (69.23%), Query Frame = 2
Query: 1067 GTTSLIVIVSDLHVICCNSGDSRAVLASEGASRPLSTDHKPESRGERQRIEAAGGKVEHNRVEGRLAVSRCIGDHPFKANPKLPQERQMVVCDPEVTVVARSDADEFVIMACDGVWDVMANDEACFFLRKCIQEGKKDLGKILEDMEDACLAKQSMDNMSVLVIAFRAA 1573
            G T++   V+DL ++  NSGDSR+VLA++G   P+S DHKP + GERQRIE AGG V +NRV G LAVSR +GD  +K  P LP   Q V  +P+V V  R+  DEF+++ACDG+WDVM+N++A   +R  + +G+ ++G I E++ D CL+  S DNMS++V+ F  A
Sbjct:  120 GCTAIAAFVTDLFIVVANSGDSRSVLATDGGVIPMSYDHKPNNTGERQRIENAGGSVRNNRVNGDLAVSRALGDFIYKQRPDLPAAAQQVSAEPDVKVAERTKEDEFLLLACDGIWDVMSNEDAVALVRSLMAQGESNMGLICEEVLDHCLSLGSRDNMSIVVVKFPGA 288          
BLAST of mRNA_P-fluviatile_contig58.12192.1 vs. uniprot
Match: A0A024UAN9_9STRA (PPM-type phosphatase domain-containing protein n=2 Tax=Aphanomyces invadans TaxID=157072 RepID=A0A024UAN9_9STRA)

HSP 1 Score: 170 bits (431), Expect = 7.450e-43
Identity = 87/170 (51.18%), Postives = 122/170 (71.76%), Query Frame = 2
Query: 1067 GTTSLIVIVSDLHVICCNSGDSRAVLASEG-ASRPLSTDHKPESRGERQRIEAAGGKVEHNRVEGRLAVSRCIGDHPFKANPKLPQERQMVVCDPEVTVVARSDADEFVIMACDGVWDVMANDEACFFLRKCIQEGKKDLGKILEDMEDACLAKQSMDNMSVLVIAFRAA 1573
            G T++  IV+D H+I  NSGDSR+VLA+ G A  P+S DHKP +  E+ RIE AGG V +NRV G LAVSR +GD+ FK    L  E Q V  +P++ + ARS A+EF+++ACDGVWDV++N+EAC F+R  ++ G++D+G I E++ D CL+  S DNMSV+++AF  A
Sbjct:  123 GCTAIAAIVTDTHIIVANSGDSRSVLATCGDAVEPMSFDHKPNNPREKLRIENAGGMVRNNRVNGDLAVSRALGDYYFKERHDLAPEEQQVSPEPDIKIEARSAANEFLLLACDGVWDVLSNEEACDFVRSVMKLGERDMGLICEELLDHCLSLDSRDNMSVVLVAFDGA 292          
BLAST of mRNA_P-fluviatile_contig58.12192.1 vs. uniprot
Match: A0A7S2V4V3_9STRA (Hypothetical protein n=1 Tax=Fibrocapsa japonica TaxID=94617 RepID=A0A7S2V4V3_9STRA)

HSP 1 Score: 169 bits (428), Expect = 1.210e-42
Identity = 79/178 (44.38%), Postives = 116/178 (65.17%), Query Frame = 2
Query: 1037 EGGVEMFSTCGTTSLIVIVSDLHVICCNSGDSRAVLASEGASRPLSTDHKPESRGERQRIEAAGGKVEHNRVEGRLAVSRCIGDHPFKANPKLPQERQMVVCDPEVTVVARSDADEFVIMACDGVWDVMANDEACFFLRKCIQEGKKDLGKILEDMEDACLAKQSMDNMSVLVIAFRA 1570
            E  V+     G T++  +++  H++C ++GDSR ++ + G  R LS DHKP+   ER+RIE+AGG V   RV+G LAV+R +GD  +K  P LP +RQ V C P+V    RS  DE +++ACDG+WDVM+N + C  +R+  QEG+ D G + E++ D CL K S DNMSV+++ F A
Sbjct:  116 EADVQCGDCSGCTAICAVITPSHIVCASAGDSRGIMVTSGQVRALSEDHKPDGAIERERIESAGGCVSMRRVDGDLAVARALGDFQYKDRPDLPVDRQKVTCVPDVRTTPRSSGDEVLVLACDGIWDVMSNQDCCDCVRQIYQEGETDSGLVCEELLDTCLTKGSRDNMSVVMVQFPA 293          
BLAST of mRNA_P-fluviatile_contig58.12192.1 vs. uniprot
Match: A0A067CWE3_SAPPC (PPM-type phosphatase domain-containing protein n=2 Tax=Saprolegnia TaxID=4769 RepID=A0A067CWE3_SAPPC)

HSP 1 Score: 168 bits (425), Expect = 2.660e-42
Identity = 82/169 (48.52%), Postives = 115/169 (68.05%), Query Frame = 2
Query: 1067 GTTSLIVIVSDLHVICCNSGDSRAVLASEGASRPLSTDHKPESRGERQRIEAAGGKVEHNRVEGRLAVSRCIGDHPFKANPKLPQERQMVVCDPEVTVVARSDADEFVIMACDGVWDVMANDEACFFLRKCIQEGKKDLGKILEDMEDACLAKQSMDNMSVLVIAFRAA 1573
            G T++   V+  H+I  NSGDSR+VLA++G+  P+S DHKP +  ER+RIE AGG V +NRV G LAVSR +GD  +K    L  E Q V  +P++ +  R+  +EF+I+ACDG+WDVM N+EAC F+R  + +G+ ++G I E+M D CL   S DNMSV+V+ F  A
Sbjct:  122 GCTAIAAFVTHTHIIVANSGDSRSVLATDGSVVPMSYDHKPNNETERRRIENAGGSVRNNRVNGDLAVSRALGDFVYKQRSDLKAEEQQVSAEPDIKIEVRNKENEFLILACDGIWDVMTNEEACDFVRSLMLKGENNMGLICEEMLDHCLQLGSRDNMSVIVVKFSGA 290          
BLAST of mRNA_P-fluviatile_contig58.12192.1 vs. uniprot
Match: A0A6A3F406_9STRA (PPM-type phosphatase domain-containing protein n=3 Tax=Phytophthora TaxID=4783 RepID=A0A6A3F406_9STRA)

HSP 1 Score: 167 bits (424), Expect = 5.720e-42
Identity = 82/169 (48.52%), Postives = 115/169 (68.05%), Query Frame = 2
Query: 1067 GTTSLIVIVSDLHVICCNSGDSRAVLASEGASRPLSTDHKPESRGERQRIEAAGGKVEHNRVEGRLAVSRCIGDHPFKANPKLPQERQMVVCDPEVTVVARSDADEFVIMACDGVWDVMANDEACFFLRKCIQEGKKDLGKILEDMEDACLAKQSMDNMSVLVIAFRAA 1573
            G T++  +V+  H+I  NSGDSR+V+A  G +  +S DHKP + GER+RIE AGG V  NRV G LAVSR +GD  +KAN KLP E+Q V  +P++ V      +EF+++ACDG+WDVM+NDE C ++R+ +  G+ DL  I E++ D CL   S DNMSV+++ F  A
Sbjct:  131 GCTAIAALVTPTHIIVANSGDSRSVMAKGGRTVEMSFDHKPINAGERKRIENAGGLVRSNRVNGDLAVSRALGDFSYKANTKLPAEQQQVSAEPDIEVQMIDKTEEFLVLACDGIWDVMSNDELCAYIRQLMTNGETDLKLIAEEILDNCLRAGSRDNMSVVIVKFPGA 299          
The following BLAST results are available for this feature:
BLAST of mRNA_P-fluviatile_contig58.12192.1 vs. uniprot
Analysis Date: 2022-09-19 (Diamond blastx: OGS1.0 vs UniRef90)
Total hits: 25
Match NameE-valueIdentityDescription
D8LHX2_ECTSI1.330e-26660.64Serine/threonine protein phosphatase n=1 Tax=Ectoc... [more]
A0A7S4DC67_HETAK1.720e-4738.83Hypothetical protein (Fragment) n=2 Tax=Heterosigm... [more]
W4H0A2_9STRA6.680e-4449.11PPM-type phosphatase domain-containing protein n=7... [more]
A0A6G0WXM2_9STRA7.830e-4449.11PPM-type phosphatase domain-containing protein n=1... [more]
A0A485LRV3_9STRA2.810e-4349.11Aste57867_24961 protein n=1 Tax=Aphanomyces stella... [more]
A0A024UCH5_9STRA3.820e-4348.52PPM-type phosphatase domain-containing protein n=2... [more]
A0A024UAN9_9STRA7.450e-4351.18PPM-type phosphatase domain-containing protein n=2... [more]
A0A7S2V4V3_9STRA1.210e-4244.38Hypothetical protein n=1 Tax=Fibrocapsa japonica T... [more]
A0A067CWE3_SAPPC2.660e-4248.52PPM-type phosphatase domain-containing protein n=2... [more]
A0A6A3F406_9STRA5.720e-4248.52PPM-type phosphatase domain-containing protein n=3... [more]

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Alignments
The following features are aligned
Aligned FeatureFeature TypeAlignment Location
P-fluviatile_contig58contigP-fluviatile_contig58:221585..237940 +
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 score786.6
Seed ortholog evalue1.1e-224
Seed eggNOG ortholog2880.D8LHX2
KEGG koko:K01090,ko:K04457,ko:K14803,ko:K17499,ko:K19705
KEGG Pathwayko04010,map04010
EggNOG free text desc.protein serine/threonine phosphatase activity
EggNOG OGsCOG0631@1,KOG0698@2759
EC3.1.3.16
COG Functional cat.T
Best tax levelEukaryota
Best eggNOG OGNA|NA|NA
BRITEko00000,ko00001,ko01000,ko01009,ko03009
Hectar predicted targeting categoryother localisation
Ec32 ortholog descriptionSerine/threonine protein phosphatase
Ec32 orthologEc-18_000810.1
Exons18
Model size3347
Cds size2265
Stop1
Start1
Relationships

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

Feature NameUnique NameSpeciesTypePosition
mRNA_P-fluviatile_contig58.12192.1prot_P-fluviatile_contig58.12192.1Porterinema fluviatile SAG_2381polypeptideP-fluviatile_contig58 221694..235302 +


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

Feature NameUnique NameSpeciesTypePosition
1622816948.4825475-UTR-P-fluviatile_contig58:221584..2216931622816948.4825475-UTR-P-fluviatile_contig58:221584..221693Porterinema fluviatile SAG_2381UTRP-fluviatile_contig58 221585..221693 +
1693570573.805005-UTR-P-fluviatile_contig58:221584..2216931693570573.805005-UTR-P-fluviatile_contig58:221584..221693Porterinema fluviatile SAG_2381UTRP-fluviatile_contig58 221585..221693 +
1622816948.6876776-UTR-P-fluviatile_contig58:235302..2353591622816948.6876776-UTR-P-fluviatile_contig58:235302..235359Porterinema fluviatile SAG_2381UTRP-fluviatile_contig58 235303..235359 +
1693570574.1631722-UTR-P-fluviatile_contig58:235302..2353591693570574.1631722-UTR-P-fluviatile_contig58:235302..235359Porterinema fluviatile SAG_2381UTRP-fluviatile_contig58 235303..235359 +
1622816948.701441-UTR-P-fluviatile_contig58:236494..2366521622816948.701441-UTR-P-fluviatile_contig58:236494..236652Porterinema fluviatile SAG_2381UTRP-fluviatile_contig58 236495..236652 +
1693570574.1799212-UTR-P-fluviatile_contig58:236494..2366521693570574.1799212-UTR-P-fluviatile_contig58:236494..236652Porterinema fluviatile SAG_2381UTRP-fluviatile_contig58 236495..236652 +
1622816948.7192113-UTR-P-fluviatile_contig58:237182..2379401622816948.7192113-UTR-P-fluviatile_contig58:237182..237940Porterinema fluviatile SAG_2381UTRP-fluviatile_contig58 237183..237940 +
1693570574.1962042-UTR-P-fluviatile_contig58:237182..2379401693570574.1962042-UTR-P-fluviatile_contig58:237182..237940Porterinema fluviatile SAG_2381UTRP-fluviatile_contig58 237183..237940 +


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

Feature NameUnique NameSpeciesTypePosition
1622816948.4959855-CDS-P-fluviatile_contig58:221693..2217681622816948.4959855-CDS-P-fluviatile_contig58:221693..221768Porterinema fluviatile SAG_2381CDSP-fluviatile_contig58 221694..221768 +
1693570573.8220303-CDS-P-fluviatile_contig58:221693..2217681693570573.8220303-CDS-P-fluviatile_contig58:221693..221768Porterinema fluviatile SAG_2381CDSP-fluviatile_contig58 221694..221768 +
1622816948.5060477-CDS-P-fluviatile_contig58:223134..2232471622816948.5060477-CDS-P-fluviatile_contig58:223134..223247Porterinema fluviatile SAG_2381CDSP-fluviatile_contig58 223135..223247 +
1693570573.9987392-CDS-P-fluviatile_contig58:223134..2232471693570573.9987392-CDS-P-fluviatile_contig58:223134..223247Porterinema fluviatile SAG_2381CDSP-fluviatile_contig58 223135..223247 +
1622816948.518621-CDS-P-fluviatile_contig58:223481..2235241622816948.518621-CDS-P-fluviatile_contig58:223481..223524Porterinema fluviatile SAG_2381CDSP-fluviatile_contig58 223482..223524 +
1693570574.0148327-CDS-P-fluviatile_contig58:223481..2235241693570574.0148327-CDS-P-fluviatile_contig58:223481..223524Porterinema fluviatile SAG_2381CDSP-fluviatile_contig58 223482..223524 +
1622816948.5324392-CDS-P-fluviatile_contig58:224441..2248071622816948.5324392-CDS-P-fluviatile_contig58:224441..224807Porterinema fluviatile SAG_2381CDSP-fluviatile_contig58 224442..224807 +
1693570574.0254881-CDS-P-fluviatile_contig58:224441..2248071693570574.0254881-CDS-P-fluviatile_contig58:224441..224807Porterinema fluviatile SAG_2381CDSP-fluviatile_contig58 224442..224807 +
1622816948.5457032-CDS-P-fluviatile_contig58:225876..2259651622816948.5457032-CDS-P-fluviatile_contig58:225876..225965Porterinema fluviatile SAG_2381CDSP-fluviatile_contig58 225877..225965 +
1693570574.03589-CDS-P-fluviatile_contig58:225876..2259651693570574.03589-CDS-P-fluviatile_contig58:225876..225965Porterinema fluviatile SAG_2381CDSP-fluviatile_contig58 225877..225965 +
1622816948.5572643-CDS-P-fluviatile_contig58:226627..2269661622816948.5572643-CDS-P-fluviatile_contig58:226627..226966Porterinema fluviatile SAG_2381CDSP-fluviatile_contig58 226628..226966 +
1693570574.047845-CDS-P-fluviatile_contig58:226627..2269661693570574.047845-CDS-P-fluviatile_contig58:226627..226966Porterinema fluviatile SAG_2381CDSP-fluviatile_contig58 226628..226966 +
1622816948.5680234-CDS-P-fluviatile_contig58:227635..2277131622816948.5680234-CDS-P-fluviatile_contig58:227635..227713Porterinema fluviatile SAG_2381CDSP-fluviatile_contig58 227636..227713 +
1693570574.0602257-CDS-P-fluviatile_contig58:227635..2277131693570574.0602257-CDS-P-fluviatile_contig58:227635..227713Porterinema fluviatile SAG_2381CDSP-fluviatile_contig58 227636..227713 +
1622816948.578097-CDS-P-fluviatile_contig58:228624..2286871622816948.578097-CDS-P-fluviatile_contig58:228624..228687Porterinema fluviatile SAG_2381CDSP-fluviatile_contig58 228625..228687 +
1693570574.068679-CDS-P-fluviatile_contig58:228624..2286871693570574.068679-CDS-P-fluviatile_contig58:228624..228687Porterinema fluviatile SAG_2381CDSP-fluviatile_contig58 228625..228687 +
1622816948.5890243-CDS-P-fluviatile_contig58:229132..2292361622816948.5890243-CDS-P-fluviatile_contig58:229132..229236Porterinema fluviatile SAG_2381CDSP-fluviatile_contig58 229133..229236 +
1693570574.0769165-CDS-P-fluviatile_contig58:229132..2292361693570574.0769165-CDS-P-fluviatile_contig58:229132..229236Porterinema fluviatile SAG_2381CDSP-fluviatile_contig58 229133..229236 +
1622816948.6001847-CDS-P-fluviatile_contig58:230268..2303961622816948.6001847-CDS-P-fluviatile_contig58:230268..230396Porterinema fluviatile SAG_2381CDSP-fluviatile_contig58 230269..230396 +
1693570574.0849152-CDS-P-fluviatile_contig58:230268..2303961693570574.0849152-CDS-P-fluviatile_contig58:230268..230396Porterinema fluviatile SAG_2381CDSP-fluviatile_contig58 230269..230396 +
1622816948.6098912-CDS-P-fluviatile_contig58:230673..2307491622816948.6098912-CDS-P-fluviatile_contig58:230673..230749Porterinema fluviatile SAG_2381CDSP-fluviatile_contig58 230674..230749 +
1693570574.094752-CDS-P-fluviatile_contig58:230673..2307491693570574.094752-CDS-P-fluviatile_contig58:230673..230749Porterinema fluviatile SAG_2381CDSP-fluviatile_contig58 230674..230749 +
1622816948.620145-CDS-P-fluviatile_contig58:232116..2322111622816948.620145-CDS-P-fluviatile_contig58:232116..232211Porterinema fluviatile SAG_2381CDSP-fluviatile_contig58 232117..232211 +
1693570574.1050448-CDS-P-fluviatile_contig58:232116..2322111693570574.1050448-CDS-P-fluviatile_contig58:232116..232211Porterinema fluviatile SAG_2381CDSP-fluviatile_contig58 232117..232211 +
1622816948.6349025-CDS-P-fluviatile_contig58:232724..2328111622816948.6349025-CDS-P-fluviatile_contig58:232724..232811Porterinema fluviatile SAG_2381CDSP-fluviatile_contig58 232725..232811 +
1693570574.1189187-CDS-P-fluviatile_contig58:232724..2328111693570574.1189187-CDS-P-fluviatile_contig58:232724..232811Porterinema fluviatile SAG_2381CDSP-fluviatile_contig58 232725..232811 +
1622816948.6448815-CDS-P-fluviatile_contig58:233183..2332911622816948.6448815-CDS-P-fluviatile_contig58:233183..233291Porterinema fluviatile SAG_2381CDSP-fluviatile_contig58 233184..233291 +
1693570574.1304352-CDS-P-fluviatile_contig58:233183..2332911693570574.1304352-CDS-P-fluviatile_contig58:233183..233291Porterinema fluviatile SAG_2381CDSP-fluviatile_contig58 233184..233291 +
1622816948.654464-CDS-P-fluviatile_contig58:234057..2342501622816948.654464-CDS-P-fluviatile_contig58:234057..234250Porterinema fluviatile SAG_2381CDSP-fluviatile_contig58 234058..234250 +
1693570574.1403992-CDS-P-fluviatile_contig58:234057..2342501693570574.1403992-CDS-P-fluviatile_contig58:234057..234250Porterinema fluviatile SAG_2381CDSP-fluviatile_contig58 234058..234250 +
1622816948.6719048-CDS-P-fluviatile_contig58:234994..2353021622816948.6719048-CDS-P-fluviatile_contig58:234994..235302Porterinema fluviatile SAG_2381CDSP-fluviatile_contig58 234995..235302 +
1693570574.1507127-CDS-P-fluviatile_contig58:234994..2353021693570574.1507127-CDS-P-fluviatile_contig58:234994..235302Porterinema fluviatile SAG_2381CDSP-fluviatile_contig58 234995..235302 +


Sequences
The following sequences are available for this feature:

protein sequence of mRNA_P-fluviatile_contig58.12192.1

>prot_P-fluviatile_contig58.12192.1 ID=prot_P-fluviatile_contig58.12192.1|Name=mRNA_P-fluviatile_contig58.12192.1|organism=Porterinema fluviatile SAG_2381|type=polypeptide|length=755bp
MGNSLEAPVTRKDTVRFARAAAALKTQHDRQENREHKDKIHAIPGDEFSD
GIAAAGCSMQGWRCTMEDRLCARMDLEGCPLGVRHVFCLFDGHGGDSVAE
FCRAHLADRVVEHLRETQAGRPAAAVAVAAAAATTTTPAERYDPAGRNGG
HRRGGGRDGGSNGGGAPRGGGEGGGEEAEADPALVAACVRDACREIDAQV
KGAFFTPTGRYMAPRVDDPLDVTPSQPRVGEQALEGAAHNLFAGSPLSQH
RGTREKAGEISEVEEEGGEKREELGRALEVWAHDGGCRIDAAQSLPPANG
HTVGPVDGGEGGVEMFSTCGTTSLIVIVSDLHVICCNSGDSRAVLASEGA
SRPLSTDHKPESRGERQRIEAAGGKVEHNRVEGRLAVSRCIGDHPFKANP
KLPQERQMVVCDPEVTVVARSDADEFVIMACDGVWDVMANDEACFFLRKC
IQEGKKDLGKILEDMEDACLAKQSMDNMSVLVIAFRAAWAEGLRLHKSAR
YVLQWGCEDVSRWLSINNFGQYQNDFDRQKVDGLGLLSLTEGDLHHKLHL
KKVGLRKKLWQRLSPLRLGYLGWSKGELAAWLEHVGFEVLQGTVVELDID
GRALSMMSRGALRSLAMQAGMDSASRRRLYAAVDDLKTSGAGVEWISLHG
SESVLSARFHGHNASAGGNFGGPGSPGDAWPRRLTNAVSRGQPSTGSSAD
ESNGDAGDERYPQSCRHGHGKAQGSHLHGEHGGVGGGGAAAARGACRRRR
HPWW*
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mRNA from alignment at P-fluviatile_contig58:221585..237940+

Legend: UTRpolypeptideCDS
Hold the cursor over a type above to highlight its positions in the sequence below.
>mRNA_P-fluviatile_contig58.12192.1 ID=mRNA_P-fluviatile_contig58.12192.1|Name=mRNA_P-fluviatile_contig58.12192.1|organism=Porterinema fluviatile SAG_2381|type=mRNA|length=16356bp|location=Sequence derived from alignment at P-fluviatile_contig58:221585..237940+ (Porterinema fluviatile SAG_2381)
ATGCCGATATCCGGGACGGAAATCCCCTCGAAATTCAGAGGGAGGCTTAC CTGTGTGGCCTTATCGAGATCGAGCATATGCAGGGTAGCCTTTTGACCGG CACGGTGACATGGGAAACTCACTCGAGGCTCCCGTTACCCGAAAGGATAC CGTGCGCTTCGCGCGTGCTGCAGCGGCTCTCAAGGTGCGATCTCTGGATT TCATTAGCATTCTGTGAATTTCGTGTAACCTAAAGGTGAAGCTTTCACAC ACTTATCGACGCGTTGATGAACGTATGTGTGTTGCCCCTCGGACACCGGG ATCCAAAAGCGCGCGTCCTTCAACCACAGGTTACGCCGCAACAACAAACC TCCAAAAACCACGTTCACGCCTCGTCGACCGGTGCATCTAGCCACCCAGC TTACCATGATGTAATTCGGTGTCATGTCGATGATAGAAGAATAGCTTCAT CATACAACCTGGAGATAGATAGAATGAAGCTTTCAGAGTTGTGCCGACTT GAATCTGACCACAGCAGAAGCGCGACAAACAAAGGCAAGGATAATTTGGT TGGTGTGTCCTGGATCCTTCACCAACCAAGTGTGTAGCCTGCACAACAAG TCGGCACATTAAGGACGGATAGTCCCCCAAGCGCTGGTTGTACGCTAGTG TGTTCGTCGGGCACTGCTGTATCCAGGCTACGTGTCCTGTAGATCGTTTC CCGCAGCTACTGCGGCTAAAGCATCACCTAAACGAGCGATCGCCAAAGGC AGACAGCAGTACCTTGAGGTGGCACAGTTAGTCAATTATGATGCAAGGTT GGGTGCTTCGACGGGCTCGATCGATCATGAGCCTGCCCAAGGCGATGAAG CCCTTTTGACGCTTGTCCGATGTCGGCCACGCGCGGGGTTGGAGTTGTAC CAACCCAGCAATGCAGAACCTTTTTTCGACTTCTCTTTGTTGCCAATACT AGCAGAAAAGAAGAATGAAATCATCAGAAGTGGCGAATTGCATTTGTAGA TACTGAAAGTGTGCGGCGTTTGTTAATATCAGACGTTCGTCCAAGGAGTA TGTATCTGAAGGCACAGCAAAGTTGCAACACTGTATTTCCTGAACGTAGC AAGTCGTCAATGAGCCCGTAATAGAGCGGTCAAGACGCTAGTCGAAGACG AGATGCAGGCATGTGCAGCACTTTTATGGGGGAAATTGTCCACTAGAGTT TCTTCTCGACCGCTTTCGTTCGGGAACAACCTATCAACGCAAATACATGA GGGAACATGTACATGCAATCCAAGCTGTAGCAGGGCGAGGCGGTCGTATC CACTTGCAATCCAAGCTGTAGCAGGGCGAGGCGGTTGTATCCACTTGCAA CTTTGGATCCAGATCTTAAAACAAAATACGAGGTGAAACATCACGCTCCG TGGAAACTTCATCACGGATCTGTTGCCACATGCACTAAACTGCACGTGTA GTTCACCACACTGGCAACGAGCCGTCTCGAGTATGCCGTTACTGGATGAG CGTGGTGCTGACAAAGAAGAAAATAATATTGCCGCAAGCACGCAACGCAG ACCCAACATGATAGACAAGAGAATCGCGAACACAAGGACAAGATTCACGC CATTCCGGGGGATGAGTTCAGCGACGGGATTGCGGCAGCAGGATGCTCGA TGCAGGGTTGGAGGTGGGTGTTTATGGAAAAAGAAAGAGCAAACTTATTG AAGCAGTAGCACTCATTGCGAACGGCAATGTCGGACACCCGCAGCGAACG CGTCGGTAACAACACGAAACTTGTCTAGCTGCTGCTCTCGCCACTTGGTT GTCCTTGGTGTTACCCATTGCAGCGATAACTCATGTGGTAAGCGACCGCT CTTTTGTCTGGTGTTTCCTTTTCTTCGCCTCTTGTCACAATGAAAAGATG TACCATGGAGGACAGGCTGTGCGCCAGGATGGACTTGGAGGTGAGCAAGA GCGCAAGAAAACCGTGAAGTGTTCCTGCACACCCGTGCCTGAGTTAACTC AGCCTTAACCTTTTTTCGCGGGCACAAAGCCTTCCCACGGCCGACAATAT GAAGTCACTTCCTCCAGCGTAGGATTCGCGGGGACTGGGTTCTCTTGCTT GGGCAACATTTTTGAGCTTCAACAGCACGCGGGGAATCTTCTTAGGAAGA CGATTCTCTGTAGGAAAGTGAAGGGTAAGAACTTGTACATTTTATCGTGT AGTGTACACAATATGCCAGCTTTATTGTCGAAACCAATCGTGCCGGATTT TCTCTCGATTTCAGCGTAATTGTCTCACCAAATGCACACTATTTACTTTT CCATAGTCAGAACACTGCGACAGTGGACGGGCACCGGAAGCATACTTGTT GTCGGTGCCTAGCTGCCGATGTTGCTCTCGTTGCAGTACTTTGAATAGTG GTGAAGGAGTTACATTGAAGGCGATTTGGCAGCGTAGCTGCTCAAACATC AGCTGTGTAACGACTTGTTTTCGTCGCTGCCGTCGGAGGGTCAGAAGTTG CGCAGCTTTTTTCCGCCACCGAGACTTGGGGTTTATGTGATTTCGCTCTC GTCTCCACTTCCGTTCACCTTCTTTGCGGGAGACAGCGCTTACGCTTTCT GAGTGCCGACGTGCATCCTTCGCCGCCGGCGCCAGTCTCACCGCGGGCAA AGAAAGGATTTTCCTGTTGTCTTGAGAGCCGTCCAACCCTGCCCCTTTTG CAAACGCGCTCAAGCAAATAAAAAACTTAAGGCAACGACGACAGCACTGC CAAACACTCTCGCGACGGCAGCGCTTCCTTTCTCGCTTCCTTCCTTCTTT TGTTCCTCCCTTCCTTCCTCCCTTGGCCTCCTCTCTGGGGCAAAAAAACG TGCTCAGGGGTGCCCCCTGGGAGTCCGGCACGTGTTTTGTCTCTTCGACG GCCACGGCGGGGACTCCGTGGCCGAGTTCTGCAGGGCTCATCTCGCCGAT CGGGTTGTAGAACACCTCAGAGAAACCCAAGCCGGGAGGCCTGCCGCCGC TGTCGCAGTGGCAGCAGCAGCAGCAACAACAACGACGCCGGCCGAGCGCT ATGATCCGGCGGGGCGGAACGGCGGCCACCGTCGCGGCGGCGGTCGCGAT GGCGGAAGCAACGGCGGTGGAGCACCGCGAGGAGGGGGGGAAGGGGGTGG GGAGGAGGCCGAAGCCGACCCGGCGCTTGTTGCAGCCTGCGTGCGAGACG CCTGTAGAGAGATAGACGCGCAGGTGAGCCGGTATTTTCAGCAGGTAGCG GCAACGATACAAGACTCGAGAGGGTCCGCCGACCAGAAATCGTGTTTGTT TTAGCTCGGTATTGCTGCATGTCAACCTAATCCGTTATTCTCATACATCA ATCTAGTCCGGTATTCTCGTCTATCGATCAAAGGGAATATTTCGACAAAA CGGGTTCGTGATCGAGCGCTATTTACCCTCTCACATCCGCACATTCCCCT GCTTGGATTGCTGGATATGTCGCAGCCGCCACGTGTCTAAACTTTGGTTT CGTGGGTACAGCCCCCGCGGACACAAATTATTTTCGGGTTCATATCCGGG AAGTTTGACAAGATTTGACGCCATATTCTTGGAATATTTGCAGCAGGAAA GTGTGCAGTACACACGTGCATTGCAGTATTTCAACAACGCATTCAAGTTT AAATATCTTTCTACTTCATCGATAAAGCACTGAAAAACAAAAGGTGCCCG CGGAGATCGTAGGTTTTTTCTTTCCTTGGGTGCCGTGGTTGGTAACCTTG CTTTGTGTATCGCCATTGGGTGCTTCTTGGCTCCTTGGACGATAGCTCTT TCTTCGCTGCTTGGCACTCTCGATCGCCGTCTGCTGCTCACCGAAAATCA ACACCTGCTATATCGTACGCACGGGGCTGACCACAGCCCGCCTGTCTCGA GGTGTTGCGTGCTCGCTTTGGAACGCCTGAATTTGCAGCCCACGCGGGCA CGTAAAATCTGTTCTCGATTAACAAAAAAAGCAAGTAAAAGCATTGAATT AATGTTGGCTCGTATTATTTCACCTCAAATAATCCTACTCTCTTCAAACT TGGAGAAAAAACGTCAAATTCATTGAACCCATGAGCATAATTATATTTTG CAGGGAAAACCGGGGACAAAAAGCAGGTTTGTGTCTGTGGTGTGGCTGTA CCTCAAGGAGGCCCACAGATGCTTACCCGCGCTCGGCCCGAACAGCACAA GCCCCAGGTTGGCTCGTTGTTTTTTTTTTCCGCCCATGTGCATCACAGGA GGATTAAGATTTATTTTGGTAACTGTAAACACTGTTCCTCAGGTGAAGGG GGCATTCTTCACTCCGACGGGGCGATATATGGCCCCGAGGGTCGACGACC CGCTCGACGTAACCCCTTCGCAGCCGAGAGTGTCGGCATCATCTGCAGCG GACGAAGAGGGGGGGATCTCAAGACCAGACGGCAAGGGGCGGTGAGATTC ATGTGCTTCAGCAGCACATATTTGTGAAGGGTTTCCATTTCATCGAAGAA GAAAAGCCGAGTTGAGGTAAATTATCAGGTGCAACCAACCCTACAGTCAT CGCAGGCACAGCAGCTTTTTTTTTTTTTCGCATTCTCAACAAAAAAGAAA ACAAATGGTATAATTCACGATGTTTCTTCATCTTTTTGCAAGAAGATTCA TGCTACACACCTTCCTAATGCAAAAATTTGATAGATAATCATCAATTCCT ATTCTTCCTTTTTCCTTTGTTGAAAAACGAAGCATGTCTTTATAGTGGCG GAGGCCGTAGGGATCCACGTGTGTGGGCACCTACGTTCCTCCCTGAGGCA TCAACGCCCGCCAGGAGCCGTATCAAGGAAAGATCAGATCTGCGACGACG AAGGTCGCTGTTTGCACAATTGCCATTCTTTTTTTGTGCATAAGTGTTGT ACTTGCACTGCCGCTCCCACTGCTTTCGCGGAGCCCCCGCCCCAACTACG CCTCCCTCCAGTCGCAGGGCCGGCACCGTCAATCTGGGCACAGCGCCGAT CCGATATCAACACCGACCCTGACCCTGTCCCTCGCCTGACCAGGGGAGAA CAAGCGCTCGAGGGGGCGGCGCATAATCTGTTCGCGGGGTCGCCTTTATC GCAACATCGCGGAACGCGGGAGAAAGCCGGGGAGATTTCGGAGGTGGAGG AGGAGGGGGGTGAGAAGCGGGAGGAGTTGGGGAGGGCACTTGAAGTCTGG GCCCACGACGGCGGCTGCCGTATCGACGCTGCGCAATCACTGCCACCTGC CAACGGCCACACGGTGGGCCCCGTTGACGGCGGAGAGGGTGGCGTCGAGA TGTTCTCTACCTGTGGCACGACTTCGCTGATCGTGATAGTGTCCGACTTG CACGTCATCTGCTGCAACTCCGGCGACTCCAGGTACGCGCGAGCACCGGT GCGAACAAGAACATATCGTTGACGCTTCGTGCTGTCCGTGCGTCTCTCCG GCGTGCGCGAGGCAGAATGAGGGGCCGCGCGTCTGCTTCCGCCCCCACTG CCTCTCTCGCTCTCCATCTTTTGTTCTGCGGGCGAAAGCAAACATGTTTA TCAAAAATGGTGTTCTATCGTGGGCAACCCGGTCGGAATCTACATTCTTC TGCTGTCGATTTCGGTTCGAAGTTCGCTACCGGCGTCGCTGGTATTTGTT TGCAACAGGGCACTGCGTTTTTCACACGCGTTCCTTGATTTCGCCAGGTG TAGCGTTATTCACTTGTCGCTGCATCAATCGGCAACCGAGATCATGTCAT TCTGGTGAAACGGAAATGAAGATGTGTCCATCCGTTCGAACGTAACACCA GCAGGGACAGCAGTATCAGCAACGACGACTCCTGCACTGTGTAGTTCGGT CACCGCAGGTACTAGGAAGAGTTTGGTTTTTCAACAAAcAAAAAATACGC GTAGATTCCTTATTTCTTTTTCCAAATATCAGACGTGGAATCTTTCGCTA CTGTACTTTCTGCTGCTTCAATTCGAGTAAGAACGGACTCTCATGCCATG ATTTTTTTTTGTTTTTAGCAAAGAAGTACTCATCTTTCCTTCCTTCTGCA GGGCGGTTCTGGCCTCCGAGGGAGCATCAAGGCCACTGTCAACAGATCAC AAGCCGGAGAGCCGGGGCGAGCGACAGAGGTGCCCTTGAACCAGGGGCAA GCAGCACTCGTCGAGCAACATGTCCCCTATGATTTGTCGAAAAGACGTGG TCCCCAGTCAGCGCGCCGGATCACTGAACTGCTGAAGCAGGCAGCGTTTC GAATTTAACAATCTCGAACGCTCTCAGCAGGGAGGGTAGGTCTAGGGTCA CACCCTTCTCCTGTTGCGAGCAAATGGGCACGAGGAACGAAGCATTGCTC AACTCCGATGCCCGTCTGATGTGGGAATCACTTGCAACGATCGACCCTTC TTCGTCGACGTATGGAGTGGGTCTAGCGCCGATTGTTATGATCCGGTGGT AGTTGCAAGGAGGTGTATTTTTCAGGTTTTCGGGGTCACAACGCTCCTTA TGGTGAACCAAACTTGGTTCAATCCGATCTTGCCTATTTCCCAGGGCAAT TTTGACATCCAATGAGCTCACAAGGACGTTGACTTCTTGAGAAGCGTTGG AGCTCTCGTCCAGAGTCTCGGTGAAGCACCTGCCTAAGCTGGACGGGTTT TTTAAACTTGGACGTCCGAGCACGATTTGGCAAGATTGGTAAAGATTGTC ATCAGAAACGATGTCTGGACCACAAGAACCGGTGTCACGGGAGGTGCTTC ACCGACCAATGAGCGATAGCTCGAACTCTTCCCATGAAGTCAACGTCTGG TTCTGAGCTTCTTGCATCTCCAAATTTTCCTGAAGGCCGAGATAGGCAAT ATCGGATCTAACCAAGATTGGTTCACCACAAGAACCGGTTTCACGAGAGG TGTTTGGCCTGTCTACACCGCACGTTAAACTCCTCGCATGTGTGGCGAGC ATTCACATGTTCCAGGTTTGGACGCTGAGGGGGTTGAGGACACGGTCGGT GTTCATGCTCTTCTTGCCGCGTGTCGCGATCTCTGCACAGGATCGAAGCT GCCGGGGGAAAGGTCGAGCACAACCGGGTGGAGGGTAGACTGGCCGTCTC GAGGTGGGTGCGACACAGCGGCTGAACTAATGCGCCGCGCGGCCTGCGCT TCAAGGGAAGCTACAACTGATGAGATCGGGGGCATTCAACCACGTTCTCG CTTCACCGAGCGGCGGGAATTCCAGCGCGAGGAAGTTACCCTGGATGATT GTGGCTGAGGAGCGGTTACCGCGGAGAATTACCCTTTGCGTGTTCTGTTT GCACGGAGCGCCACGCGTGTAGCTTCATGAACGCCAGTTTACTGCTTTGA TACTCGTATTTCAAGACACTTCTCATCGGAGGGGAGGACGACATGAACGT GGAAATGGATCACTCATTTGAGGTAAACACTCGACGTATAATCGAAAGCA TCCCACGTCACTTCGAGATATGAAGATCCGCAGCGCCGTGGCAAGACTCC AACAACGCTTCAACCTAGCTCTAGCGTTGACCGCAAAATGCAACGCAGGT GCATAGGGGACCACCCTTTCAAGGCAAACCCGAAGCTCCCTCAGGAGAGG CAGATGGTGGTGTGCGATCCCGAGGTCACGGTGGTCGCGCGAAGCGATGC AGGTACTACGGCACCGATCGATCACGTTTGCAATGCTTCTTCGCGAAAGC TCCTTCACCAATTTCGGCGTACTTGTAGAGGGAGCTGGCTTAGTCCCGTC TCCTCTCACTGTTTTTCTACGGTCACTTCCGCTTGGAGGACGCCAAATTT TTTTACTTATTCGAGTCCATTACGCGGAGAAATCTTTACATCTGGTGGGA GAGGAAGCACCACTGCTCTTACAGCGACATTTAGTGTCCGTAAAGTGGAG AGAATTCCATTTTTTTCGGTGCTCATAACGCTGGCATGATTGTAGCAAAA AACTCCAGCATTCCTAAGTGCGACATGCAGACGCAGATGGCATATCAGCG TTCACACTCTATTTGGCCCTGACGGGCCGGGGGATTTCCGGCAAAAAATA TGATGCGAGGTTGGGGAACAGGCTGAAAGTCTCAGCGCGTCGTTTGGTAC TTCCCCGGCGCTATTTTGTAAGAAGCAGCACGGCTCCGCCGCGGGGGAGC CGAGAAAACTGTTGCTCGACCCTGCATGTATTTGCACAATTCCCCCAGAT GGCTGTCACAGCTGTCACACCTAGGCGTGTACTCCTCCGACGTTTCCCTC CCCTGATTGAGGTACTAATTTTGATTCGATGGAAACTTGAGCACGAACCC CCCCCCCCTTCAAAAATCGGTCGATCGCCTACAGAACACACGCCTTGATT CGCGTCGGATCGGACCGGGGTGACGAGAGACTCCTAGACGAAAAGCGGGC GGCAAAGAGAAAGCGAATTTTGTGACAAAGGCGACTTGGCACTTGCTCTT GCTGTGCCGTCTTCGTTCGCCTGCACAAGCAGCGACGACCGCTCTCCCTC CCTGGCAAACTACTCGTTCAGACGAGCTCGTTATCGCGGCGTAAGCTTTT GCCGGCACGAGCAGCGACGAACACTCTCTCTCTCCCTGGCAAACTACTCC TTCAGACGAGCTCGTTTTCGCGGCGTGTGCATTTGCCTACGCAAGCAGCG ACGTCCGCTCTCTCCCTGCAAACTCTGCGTTCAGACGAGTTCGTGATCAT GGCGTGCGACGGCGTGTGGGACGTGATGGCGAACGACGAAGCTTGCTTCT TCCTGCGCAAGTGTATCCAGGAAGGCAAAAAGGACCTCGGAAAAATCCTA GAAGACATGGAGGTGTGCTCGGAAAACATCGAGAGGATCGGAGACACAAA AATCGGTGTCACGTTTTGAAACATTCAACAAGTGCACCCCAACTTCAAGC GCATGTGGTTCACTGGCTGGTCAGGCTCGATTCAGGCTTAGGAGGGCTGG ATAGCCGTCGATGAGCGCACAAAACGCACGAATGAAACGGCACGTTCACA AACGTGCTCATCGGCGCTTCAGCGTATAATGCATGGTCCAATATCTGACG TGCGACGCAAATGTTGCCTCCTTCGACGCTTCCCTATAGGACGCGTGTCT GGCGAAGCAGAGCATGGACAACATGTCGGTGCTCGTTATTGCCTTCAGGG CAGCATGGGCCGAAGGTGACAATATATCTCCGCGTATCTCAGTCGGCGAC GAATCTACTTTGTGCGTAATATTGTGTCAATCGTCGGTATGCCTCCTTTC GTTTTCTTACTCTTCTAGAACATCGTGGTGCCCATCTGAAGGCTAGTCTG TAGCCGTCGGAGGCACAAATAGTGCGGCGTTTTTTCTTTTTTGTTGTTTT GAGAAAAGTAAAAGTAAGCCTTTCTCCACATTTTTGAAGTAGGATCCGTA TGCCGCACAGTTTTCGGCCGTGAACGTTGAAGAAAAACATGGATTACTAC GCCCGTTGAACGAAAATCGGTAGGGGGTTCTTGTGTCGGCGTGGGCAGCA GAAGTTCGTTTCCGGCACCTGATCGTCGGCAGGCGGTGTCGTGGTATGAA CGGCTGGAGAGAAGCCGGCGTAAATCCCCTCGGGCCCATCACTTCGCTTT CTCGTACTTTCAGGGCCGTCGCCCTTTTCTCGGCAGACCTGGAGCTGTTT TGAGTCAACGCTTTCTCCTCGTCAGTCTAACCTCCACAGGGAGAGAGTGT GGACACCACGGGGAGGATAATTAAGTTTTGGCGGAAGAGACGAGGGAAAC AGTCGTAGAAAGGCTGACGTTCGGTCATTCATGATTGTGCGATGATAGCG CTTGCAATCTTTAGGGATACGTGGTAGCCGCCAGAAGTCTGCTTGGAGGT GACCTATATCGAGACTCGGGATGGCGTATAAACTCCAGACAATAACTTCG TGTCAAGTACGTGCAGAGCCCTCAATGTTGTCGGCAACTCTCAGAGGAGT AGGAAGGGTGCTCATTCTCGACAGGGGTACCGTAGAAGCATGGTTCATGG TGCGGTGGGTCTTGGCAAACGCAAGTCTCAGTACTCCTCGGCCCTCCGTC CTCCTTGCCGCAGAGATGTGCGCACACGCGATTTTCCCTTCGGATCACAG TACGTGTAGACAGTCTTGAAAGAAGAAAACGTGAAGCCGCTCGATTCCGA GAATCCGCGTGCCCCCCTTTGCTGGAGTACGGGTGCACTCGATGAAATTT CCGAATGGGGGTTGATGCACCCCAGAAGGGGGAAAATACGGATGCCCTGG CTGTAACGCCAACGGTGCCCGGTGTCTGCCGAGAGGGGATCGGACGCCGC TGCTGGAGAGTCACAAGTGGGAAGCATGTGTGTCCCCGTGGAAATGTTGA CAGCGCGATATTGTGGCACGTGTGACCTTGTTGAGGAACATCTTTCCACA CCTTCGAGGAATATCGTTCCACACCTTCTAGGAATATCGTTCCACACCTT TGAGGAACATCGTTCCGCACCTCACATGGCGCTGAGTGTTTCAGTGCCAT GGCCACATATGCGTTTATCGATCGTTGTTCAGGGTTACGTCTCCACAAGT CTGCCAGGTACGTCCTGCAGTGGGGGTGCGAAGACGTCTCGAGATGGCTG TCCATTAACAACTTCGGGCAGTACCAGGTGCGGCGGCCGGGGCGCGATCG GTAATATTAAAAAGAAAATGGTTAGACAAGCGGACAAAAACCATATACAG CTGACAAACAGCGAGGCGTTTCAGCTTTGCCTGTGGTGGGGACTTGGGTT GGGAATGCAAACAATCAGCAACATCAACATTCGGGCTCAAACGACGCCTG TTCGATCTCGTAGTACTTACTACACAGCGTGGCACTCGATATGAGCGGGA TACTCAACATGGCAAGGCAGTCGATGAGAGAACACACGTTGTTGCAGCGC AGCTTCCCAACAAGCATGTGCCTGCTGCAGCAGCGGGCGAAGATTTAGAA TCAGAGTAGAACGCGTCTGCTTACCCTGTCATCCCGTTTTGTTTTTGGTC CGCGGACGACGCTCTCGGACATCCATTTTCTTTTTCGATCATTTGGGTGG AGTATCCATGTCACCCCTTTGGGATCGCGATGAATCTTGCACTGCAGAAA TATTTGCTTGCCCCCCCACCCCCTCGTCTGATCGCCTTAGAATGATTTCG ACAGGCAAAAGGTAGACGGACTCGGGCTGCTGAGCCTGACAGAGGGAGAC CTTCATCACAAACTCCACCTGAAAAAGGTCAGGGACATGAACGTGTGGTC GGGACCTTGGATCCCGCAAACCATGCCGCTGAGTGTGCTTGAGGCCGAAA TGCCGGCAATACTGCGTGCGCTTTTGGACCAGCAGAGAGGCGCGAGAGCG AGAGGGGCGGAGCGAAGGGGGGGGGCAGAAGGGGGGAGCAGAGGGATGGA GGGGGGTGGCGAAGAAATGAGAAAGAATGACAAGGGAAGACTACGGACGG CGCGGAAATGAAAGTCATGTTGTATGGACCAACGCGCCGAAATGAGACAG CAGCGGACCCGCGTCGAAGCGAGCTCGTCCTCCACCACGTGACTTGCTCC ACCACGAGAACAATCCTTTGGTGCCGTTGCACGCCCTGTCCCTGCGAAGG TGGGTCTGAGGAAGAAGCTGTGGCAGAGGCTATCGCCACTCCGACTGGGG TACCTGGGGTGGAGCAAGGGAGAGCTCGCCGCGTGGCTGGAGCATGTCGG CTTTGAGGTGCAGCAGTGGCTTAAGGACTAACAAGAAATTACCCAAGATA AAATGCCGATTAAAGAGAGTCAAATCGGTTCGTCACTACGTCGCAAAGTC AATATATTTTCTCAGTTCGATTTTAGAGAATGCCCTTATTTATGATAATC CAGCGCAGCTTGTCGAACTCCCTCCTATATTGCAACAAACAGATGCTTTG CTTGTCTGCCAGTCGGCAAATACTTCCCTCCATAAGAGTCTACCATCCGC TGTCGAGGCAGGTGCAGATTTGCTCTCCAGCTTACGGCCTACCGGGAAGA GAGAGCACCGGCAAGATTGTCACGCGATCGATCATTCGTGATCGGGTCGT CACGTCGACGCATGTCCTTCTCCTCCCCTTTGCAACTCCGAGGACCTGAT TCGCGGCGAACCACGGGGTCCAGAACCTATCCCGAGTCGTGGGGTCAAGC CGCATACCTGCCATGCTGGTTCGGACCTCGCCCCAACGTCGCGTGTGTAC GCGAGATTCGAAACGATGACCGTTCTACAACATGCCGGTCCTCTGGTCAA ACGAATATCGTAGCGAATGCAGCAAGTCTTGCTCGCGACTAAAATAGAGC GGTGGTCCCTCGCCCGCTTTTTTTGCAAATCCATTAAGCCCCACGGCACA GCACCGCACTACACCGCAACGCACCAGGTAATCCCGCCAACGCCTCGGGC TGCTTCAAAAATCGAATTCGTATCATTTTGTGCCCTCCTACCCCGGGATC CTTGCAAAACTATAACAAAGCAGGTGTTGCAAGGAACGGTGGTGGAGTTA GACATCGACGGCCGGGCGCTAAGCATGATGAGCAGGGGCGCGCTGAGGTC TTTGGCGATGCAGGCGGGCATGGACAGCGCGTCTCGACGGAGGCTGTACG CCGCGGTGGACGACCTCAAGACCAGCGGCGCGGGTGTGGAGTGGATCTCC CTGCACGGCAGTGAGTGTCTTTCGATTGGCGGTGGATGCTGCCTGAGGCG TCCCTTGCTGTTTTTCATGCCTCAAGAACCCGGTCTCGCGGGCGGAGAGT GGATCACCTTGCATGGCAGTGAGCTTCATTTCATTGGCGGTGGATGCTAC CTCAGGCGTCCCTTGAAACCGGATTCTCTTTCGCTTGAGCCACGCGAGGT TGGGATCATTGTCGCCTCGACTGGACCCCGAGGGAGGCCGCCATGCTCGC CTTCCTCTCGGTGCGACCCCCCCTGCTGCGGCGCCATTCGCGACGAAATC ATACATCCCATGAAATAAAGTGTGTCAGGGCTACGTTTGAGTCCGCGTTG TTTGAGTTGGTGTTGTCTTTGGTTTGCTTTCGTTGCTCTCTTTTAGGCTT TGATTCTCCGTTCGCGGCGAAAAAATGACCGCCCAACAAGGTAGAGTGCT TGATCCACCATCATTCAGGCTGATGCGTCGTCGCTCGTTGTTCCTTCTGT AGCAAACGGCATCACGTCGTGTGATTATGCAAGTTAAGTGGTACTGCTTT ACCCCCCAAAACTCCGCCAACTATCAGACCCTCTCTCGTAAACGAAACCT TGCAAGCATCGTTCTTCGCCGCGCTCATGCTAAAATTTGAGATGTTTAAG GTGATCCGCTATGGCGCCGACGTCCGATGCTGACCACATTGCAACCAAAA GCCGCATCGGGTGAACGCCCGACGAACGAGCTGTTTTATCCATTGCGCTT CCTACCGCAGCGGTGCTGAGCGCACGCTTCCACGGCCACAATGCCAGTGC CGGTGGCAATTTTGGCGGCCCCGGCTCCCCAGGGGACGCCTGGCCCCGCC GGCTCACCAACGCCGTCTCTAGGGGGCAGCCGTCCACGGGGTCTTCCGCG GACGAAAGCAACGGCGATGCCGGCGACGAGAGATACCCCCAGAGCTGCCG CCACGGCCATGGCAAAGCACAAGGAAGCCACCTTCACGGAGAACACGGCG GTGTCGGCGGGGGCGGAGCGGCGGCGGCGAGGGGGGCGTGCAGGCGGAGG AGGCACCCGTGGTGGTAGGGAAGGGGCCGGGCCCGTCGAGGCAGCGGAGG GGCTCGGTGCTGTTTTCGCTGCAAGGTGAGGGGGGGGCGTACTCATGTTT TCCATGCCTTAGTTGTTAGACCATTGACCACGCGTCCTCGAGAGGACGGA GCATTGTTCCCGCAGGATCGACCACCGATGGCCAATCAAGGTGAGAGGGG CGACGGTTGTAGAACAGCACGATAAATTCTCGGGCTATCTGCATGTGTGC GTGTGTGTCACACCCGCGCCTCTCTTTTTTTGGTTCTCATCACGAAGGGA ATGAGTTTGGCATCGATCATGGTTTCCCACGGAGGTGCCGTATCCCCTCT GTCCGACGGCTGGTTAGGCCGGGCTCGAGTTGTTCAGCTGCGAGGAGAAA GATGTTATCGTGAATCGAGAATGAGCACCCTGTCTAGGATTTTTTTGGCT GATGGTCCGCCTGCATGGTGTGATTCCGATCTTGCACAATTTGGGAAGGA AGTCTGATTCGAGAGAGCCACACGCGCGGTAAGAGATCGGCAGGATAGGC AGCTCGGCAGGATGGGATTCGGCCTGCTGCAGCACCGAACACCAACGCTC TTAGTCCGGAGTTTTTTTTCGTTGTTATTTGCACACGGAAACACCGCTCC CACGACCAGGAGTGCATTTCAGCCCGTTCGTGCGAGTATATCTCTTCCTG ATCGATGAAAGCTGAGCATCTGACCGCCCCGAATGATGCGCGGCCGAGGC TACATGCGACGACGTCAGACCGTGCACCTCCGTTCCAGGCCAGGAATGTG CTTCTCTGCGGGCGGATCTTTCTGCCGCTCAACCACAACTCGTTTTTGTC GCAAGATATTGTGTCGGGAGCCCTCCATACATTACATTTCATTTTTTTCA AGGGGGGTTGGTGCAGCCCACGGCGGTGCGCTTGCTACCCCCTTCTAAAC CATCCACCCATCAGTCCCCACGCACCATCGCAACGGGCCTGTGGACGCAC GGTCAAGCTGACCAACGCAACGAAACTGTAACGAGCAACAAAACTTTGGA AGAACTCTCCCTCGCCGGATGCCGTCACATTGCACCACTTCGAACTCTCC GACCACCCTCGTACATCGGACGCTTAACCGCATTTTTGTTTGATGTTGCC CTTGCTTTGGAACGGAAAACCGAAAATGACTTGGACTTGACGAACGGACA CCGCCGAAAGGGGCGCGGCGCCTTTCGCGTGCTCTGCGACGGTCTTCACG CGGGAGCGCAAGTAATATCCCGGCAGACGCCGTCGGTGGGGATGGCGTCG TCGTCAGTGGACCTGAAGAGCATGGCCACGGCGACGGCCGTCGAAGTTCC GACCCCTTGGAAGCTGCGGTGAGTTCCACGTGTCGATGAAGAGGAAGAAA TACTGGTATGCGGAGAGGCAGGCTGTGCGGACTGTCGAGTTTGATCAATT TCATTTGTGCAATTTTTACGGGAGGAAGTCGGTCTCCAAGTCTGCAGCGC ATCGGCCATTGTTGTACTCAAGCGTAGGCCTGTGATTCGCAGTCATCACG ACTCGCTCCCTCTCAGACGACCTCTCGCAACGAGGGCCAATGAATTTCGC CGCCTCCCGTTTTACCCGTCTCCAAACGTGAAAAACACGAGTGCTAATGC GTCTCCCGGGAATTGTGATTTGAATGCAGCACGAACGACAAATGAGTGGC TGTTCTCCTTTGAAGCAACAGCCGGAGACAGCAGCAGCGGTGCGGACAGT GAACAAAAAAACTCCACCAACTAACTGTGCGCAGAGGTCAGCGAAAGGAC AGAAAGAAAGGGACACGCACAACGCTCTGGACTCGCTCGCATAACGCGAC GGACACGCAATACCCCTGCGCTATTGCAAACACTCCCCCACCCCCAAGTG ACGAGTGAACGCGATAAGGAAGCGGACTCCACAGAGGGACAAACGCGAAG CAAGTCGGCGCACCATTCGGCCGGTCACTCGGTTTGCCTCCGTATGGGCT ATGAAGTGAATGAAATCCGGGCGGCCTTCTCCGGTAACAACCACGTCTCG GCTTTCCGCTTGCCAGGGATTCGCCAGCCGCAGGCCTTCGCTTTTTTAAA TGTTTATTTTATTTGTTTCCCGTCACTTTAAACCGTCGCTCGCTGTGATC GACATTTTGAACATTTTTCAAGTCCAGCATGAGTTCCTTTCGAAGGGGAT GGAACCGATCTGAAGGGACCCAAAGAGTGGTTTTTGCGCTTGAGCTCGAA GGAATATCGGAGGGCAAACTATCCTGTTTCTTTTTTCAATTATTGTTTTT CCATCGACTGCCTTTGTTAAATCTTTGCGTGCATCCCTTGAAGGCAAATG GCAGCACATGAACAAGGGAGTAATGGCCGCAAGCCCGAGGACTACCGCGA GAACCAGACGCCGATGATATTTCGCCTGTCCTCTAGCAATTAGGACTCTC TGTCGCATAATAAAGTACGTCTGTGTCAAAACGTTTGTGGTGCACAGCCA GGCGACCTCCGCCAATCATGACATCAAAGACCGCTTCAAGGTCGCCATGT TTCAAAGCCAAGTACTGAGCATGCTTCTTGCCAACGACCAACGCTTCATG AAAATATAATAATCCCCTTTTGGACAATTTCAGGGGACACCGAAGCTCTC CTAACG
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Coding sequence (CDS) from alignment at P-fluviatile_contig58:221585..237940+

>mRNA_P-fluviatile_contig58.12192.1 ID=mRNA_P-fluviatile_contig58.12192.1|Name=mRNA_P-fluviatile_contig58.12192.1|organism=Porterinema fluviatile SAG_2381|type=CDS|length=4530bp|location=Sequence derived from alignment at P-fluviatile_contig58:221585..237940+ (Porterinema fluviatile SAG_2381)
ATGGGAAACTCACTCGAGGCTCCCGTTACCCGAAAGGATACCGTGCGCTT
CGCGCGTGCTGCAGCGGCTCTCAAGATGGGAAACTCACTCGAGGCTCCCG
TTACCCGAAAGGATACCGTGCGCTTCGCGCGTGCTGCAGCGGCTCTCAAG
ACCCAACATGATAGACAAGAGAATCGCGAACACAAGGACAAGATTCACGC
CATTCCGGGGGATGAGTTCAGCGACGGGATTGCGGCAGCAGGATGCTCGA
TGCAGGGTTGGAGACCCAACATGATAGACAAGAGAATCGCGAACACAAGG
ACAAGATTCACGCCATTCCGGGGGATGAGTTCAGCGACGGGATTGCGGCA
GCAGGATGCTCGATGCAGGGTTGGAGATGTACCATGGAGGACAGGCTGTG
CGCCAGGATGGACTTGGAGATGTACCATGGAGGACAGGCTGTGCGCCAGG
ATGGACTTGGAGGGGTGCCCCCTGGGAGTCCGGCACGTGTTTTGTCTCTT
CGACGGCCACGGCGGGGACTCCGTGGCCGAGTTCTGCAGGGCTCATCTCG
CCGATCGGGTTGTAGAACACCTCAGAGAAACCCAAGCCGGGAGGCCTGCC
GCCGCTGTCGCAGTGGCAGCAGCAGCAGCAACAACAACGACGCCGGCCGA
GCGCTATGATCCGGCGGGGCGGAACGGCGGCCACCGTCGCGGCGGCGGTC
GCGATGGCGGAAGCAACGGCGGTGGAGCACCGCGAGGAGGGGGGGAAGGG
GGTGGGGAGGAGGCCGAAGCCGACCCGGCGCTTGTTGCAGCCTGCGTGCG
AGACGCCTGTAGAGAGATAGACGCGCAGGGGTGCCCCCTGGGAGTCCGGC
ACGTGTTTTGTCTCTTCGACGGCCACGGCGGGGACTCCGTGGCCGAGTTC
TGCAGGGCTCATCTCGCCGATCGGGTTGTAGAACACCTCAGAGAAACCCA
AGCCGGGAGGCCTGCCGCCGCTGTCGCAGTGGCAGCAGCAGCAGCAACAA
CAACGACGCCGGCCGAGCGCTATGATCCGGCGGGGCGGAACGGCGGCCAC
CGTCGCGGCGGCGGTCGCGATGGCGGAAGCAACGGCGGTGGAGCACCGCG
AGGAGGGGGGGAAGGGGGTGGGGAGGAGGCCGAAGCCGACCCGGCGCTTG
TTGCAGCCTGCGTGCGAGACGCCTGTAGAGAGATAGACGCGCAGGTGAAG
GGGGCATTCTTCACTCCGACGGGGCGATATATGGCCCCGAGGGTCGACGA
CCCGCTCGACGTAACCCCTTCGCAGCCGAGAGTGTGAAGGGGGCATTCTT
CACTCCGACGGGGCGATATATGGCCCCGAGGGTCGACGACCCGCTCGACG
TAACCCCTTCGCAGCCGAGAGTGGGAGAACAAGCGCTCGAGGGGGCGGCG
CATAATCTGTTCGCGGGGTCGCCTTTATCGCAACATCGCGGAACGCGGGA
GAAAGCCGGGGAGATTTCGGAGGTGGAGGAGGAGGGGGGTGAGAAGCGGG
AGGAGTTGGGGAGGGCACTTGAAGTCTGGGCCCACGACGGCGGCTGCCGT
ATCGACGCTGCGCAATCACTGCCACCTGCCAACGGCCACACGGTGGGCCC
CGTTGACGGCGGAGAGGGTGGCGTCGAGATGTTCTCTACCTGTGGCACGA
CTTCGCTGATCGTGATAGTGTCCGACTTGCACGTCATCTGCTGCAACTCC
GGCGACTCCAGGGGAGAACAAGCGCTCGAGGGGGCGGCGCATAATCTGTT
CGCGGGGTCGCCTTTATCGCAACATCGCGGAACGCGGGAGAAAGCCGGGG
AGATTTCGGAGGTGGAGGAGGAGGGGGGTGAGAAGCGGGAGGAGTTGGGG
AGGGCACTTGAAGTCTGGGCCCACGACGGCGGCTGCCGTATCGACGCTGC
GCAATCACTGCCACCTGCCAACGGCCACACGGTGGGCCCCGTTGACGGCG
GAGAGGGTGGCGTCGAGATGTTCTCTACCTGTGGCACGACTTCGCTGATC
GTGATAGTGTCCGACTTGCACGTCATCTGCTGCAACTCCGGCGACTCCAG
GGCGGTTCTGGCCTCCGAGGGAGCATCAAGGCCACTGTCAACAGATCACA
AGCCGGAGAGCCGGGGCGAGCGACAGAGGGCGGTTCTGGCCTCCGAGGGA
GCATCAAGGCCACTGTCAACAGATCACAAGCCGGAGAGCCGGGGCGAGCG
ACAGAGGATCGAAGCTGCCGGGGGAAAGGTCGAGCACAACCGGGTGGAGG
GTAGACTGGCCGTCTCGAGGATCGAAGCTGCCGGGGGAAAGGTCGAGCAC
AACCGGGTGGAGGGTAGACTGGCCGTCTCGAGGTGCATAGGGGACCACCC
TTTCAAGGCAAACCCGAAGCTCCCTCAGGAGAGGCAGATGGTGGTGTGCG
ATCCCGAGGTCACGGTGGTCGCGCGAAGCGATGCAGGTGCATAGGGGACC
ACCCTTTCAAGGCAAACCCGAAGCTCCCTCAGGAGAGGCAGATGGTGGTG
TGCGATCCCGAGGTCACGGTGGTCGCGCGAAGCGATGCAGACGAGTTCGT
GATCATGGCGTGCGACGGCGTGTGGGACGTGATGGCGAACGACGAAGCTT
GCTTCTTCCTGCGCAAGTGTATCCAGGAAGGCAAAAAGGACCTCGGAAAA
ATCCTAGAAGACATGGAGACGAGTTCGTGATCATGGCGTGCGACGGCGTG
TGGGACGTGATGGCGAACGACGAAGCTTGCTTCTTCCTGCGCAAGTGTAT
CCAGGAAGGCAAAAAGGACCTCGGAAAAATCCTAGAAGACATGGAGGACG
CGTGTCTGGCGAAGCAGAGCATGGACAACATGTCGGTGCTCGTTATTGCC
TTCAGGGCAGCATGGGCCGAAGGACGCGTGTCTGGCGAAGCAGAGCATGG
ACAACATGTCGGTGCTCGTTATTGCCTTCAGGGCAGCATGGGCCGAAGGG
TTACGTCTCCACAAGTCTGCCAGGTACGTCCTGCAGTGGGGGTGCGAAGA
CGTCTCGAGATGGCTGTCCATTAACAACTTCGGGCAGTACCAGGGTTACG
TCTCCACAAGTCTGCCAGGTACGTCCTGCAGTGGGGGTGCGAAGACGTCT
CGAGATGGCTGTCCATTAACAACTTCGGGCAGTACCAGAATGATTTCGAC
AGGCAAAAGGTAGACGGACTCGGGCTGCTGAGCCTGACAGAGGGAGACCT
TCATCACAAACTCCACCTGAAAAAGAATGATTTCGACAGGCAAAAGGTAG
ACGGACTCGGGCTGCTGAGCCTGACAGAGGGAGACCTTCATCACAAACTC
CACCTGAAAAAGGTGGGTCTGAGGAAGAAGCTGTGGCAGAGGCTATCGCC
ACTCCGACTGGGGTACCTGGGGTGGAGCAAGGGAGAGCTCGCCGCGTGGC
TGGAGCATGTCGGCTTTGAGGTGGGTCTGAGGAAGAAGCTGTGGCAGAGG
CTATCGCCACTCCGACTGGGGTACCTGGGGTGGAGCAAGGGAGAGCTCGC
CGCGTGGCTGGAGCATGTCGGCTTTGAGGTGTTGCAAGGAACGGTGGTGG
AGTTAGACATCGACGGCCGGGCGCTAAGCATGATGAGCAGGGGCGCGCTG
AGGTCTTTGGCGATGCAGGCGGGCATGGACAGCGCGTCTCGACGGAGGCT
GTACGCCGCGGTGGACGACCTCAAGACCAGCGGCGCGGGTGTGGAGTGGA
TCTCCCTGCACGGCAGTGAGTGTGTTGCAAGGAACGGTGGTGGAGTTAGA
CATCGACGGCCGGGCGCTAAGCATGATGAGCAGGGGCGCGCTGAGGTCTT
TGGCGATGCAGGCGGGCATGGACAGCGCGTCTCGACGGAGGCTGTACGCC
GCGGTGGACGACCTCAAGACCAGCGGCGCGGGTGTGGAGTGGATCTCCCT
GCACGGCAGTGAGTCGGTGCTGAGCGCACGCTTCCACGGCCACAATGCCA
GTGCCGGTGGCAATTTTGGCGGCCCCGGCTCCCCAGGGGACGCCTGGCCC
CGCCGGCTCACCAACGCCGTCTCTAGGGGGCAGCCGTCCACGGGGTCTTC
CGCGGACGAAAGCAACGGCGATGCCGGCGACGAGAGATACCCCCAGAGCT
GCCGCCACGGCCATGGCAAAGCACAAGGAAGCCACCTTCACGGAGAACAC
GGCGGTGTCGGCGGGGGCGGAGCGGCGGCGGCGAGGGGGGCGTGCAGGCG
GAGGAGGCACCCGTGGTGGTAGCGGTGCTGAGCGCACGCTTCCACGGCCA
CAATGCCAGTGCCGGTGGCAATTTTGGCGGCCCCGGCTCCCCAGGGGACG
CCTGGCCCCGCCGGCTCACCAACGCCGTCTCTAGGGGGCAGCCGTCCACG
GGGTCTTCCGCGGACGAAAGCAACGGCGATGCCGGCGACGAGAGATACCC
CCAGAGCTGCCGCCACGGCCATGGCAAAGCACAAGGAAGCCACCTTCACG
GAGAACACGGCGGTGTCGGCGGGGGCGGAGCGGCGGCGGCGAGGGGGGCG
TGCAGGCGGAGGAGGCACCCGTGGTGGTAG
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