mRNA_P-fluviatile_contig15.2524.1 (mRNA) Porterinema fluviatile SAG_2381

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

Overview
NamemRNA_P-fluviatile_contig15.2524.1
Unique NamemRNA_P-fluviatile_contig15.2524.1
TypemRNA
OrganismPorterinema fluviatile SAG_2381 (Porterinema fluviatile SAG_2381)
Homology
BLAST of mRNA_P-fluviatile_contig15.2524.1 vs. uniprot
Match: D7FV57_ECTSI (Methyltransf_11 domain-containing protein n=1 Tax=Ectocarpus siliculosus TaxID=2880 RepID=D7FV57_ECTSI)

HSP 1 Score: 383 bits (984), Expect = 3.600e-129
Identity = 181/224 (80.80%), Postives = 197/224 (87.95%), Query Frame = 1
Query:  361 MKDLFIKPTPPVAEVEQIGGLQGRIDAKLLEEVQEYDAVPSEAASYGKIAFWDERYAADEEVVDWYHSWANLAPTLTQYMDEQDDVLVCGCGNSEMSVDMFDDGFENIVNVDISRVAIHQMAETYKAYPMKWKSIDLTREEFPEAEFDVALDKACLDSIACSPHGASKVRDYLQQMDRLLQPEGAFICVSFAPPEERLELLEYWDIDVPAKCLAWDVHVDAIAK 1032
            MK+LF K +  VAE+E++G L  R+DAKLLEEVQEYDAVPSEAASYGK  FWDERYA D EVV+WYH W NLAPTLTQYMDEQD+VLVCGCGNSEMSVDM+DDGFENIVN DIS+VAIHQ+ E YKAYPM+WKSIDLTREEFPE +FDVALDKACLDSIAC+  G     +YLQQMDRLLQPEGAFICVSFAPPEERLELLEYWDID PAKCLAWDVHVD I +
Sbjct:    1 MKNLFKKQSDEVAEIEELGELNERVDAKLLEEVQEYDAVPSEAASYGKTTFWDERYAGDGEVVEWYHPWGNLAPTLTQYMDEQDEVLVCGCGNSEMSVDMYDDGFENIVNADISKVAIHQVTEIYKAYPMEWKSIDLTREEFPEEKFDVALDKACLDSIACNLRGVVNAENYLQQMDRLLQPEGAFICVSFAPPEERLELLEYWDIDQPAKCLAWDVHVDTIGE 224          
BLAST of mRNA_P-fluviatile_contig15.2524.1 vs. uniprot
Match: A0A7S1UEF3_9STRA (Hypothetical protein n=1 Tax=Phaeomonas parva TaxID=124430 RepID=A0A7S1UEF3_9STRA)

HSP 1 Score: 196 bits (497), Expect = 2.370e-55
Identity = 103/236 (43.64%), Postives = 144/236 (61.02%), Query Frame = 1
Query:  466 YDAVPSEAASYGKIAFWDERYAADEEVVDWYHSWANLAPTLTQYMDEQDDVLVCGCGNSEMSVDMFDDGFENIVNVDISRVAIHQMAETYKAYPMKWKSIDLTREEFPEAEFDVALDKACLDSIACSPHGASKVRDYLQQMDRLLQPEGAFICVSFAPPEERLELLEYWDIDVPAKCLAWDVHVDAIAKPALKLRR--GAESDGDVYYIYVCIKDPSKTVQKRI--AKERAKREQE 1161
            Y +VP++A +YGK  FWD+RYA  E   +WYH +  LA  + Q+++  D +L+ GCGNS +  DM++DG+E IV VD+SRV I Q  E Y   P++W  +++    F   +FD  +DKACLD+I C   G +  +  LQ++DR+L+PEG +  VS   PEERLE+LE  D+      LAW V V AIAKPA+ ++          VYYIYVC KD +    KR+  AK  AK+  E
Sbjct:   39 YQSVPTDACNYGKANFWDDRYARSENAFEWYHPYPALAVLIGQFVNYDDTILIMGCGNSTLPEDMYNDGYERIVCVDLSRVVIDQQQEKYADLPIQWVQMNMCDSLFENEQFDAVIDKACLDAIYCHELGEASAKAALQEVDRILKPEGVYFMVSRGLPEERLEVLEVEDVKEKGY-LAWQVQVHAIAKPAVDVKYIPNLADPTSVYYIYVCEKDEALHDAKRLWLAKLEAKKRGE 273          
BLAST of mRNA_P-fluviatile_contig15.2524.1 vs. uniprot
Match: A0A6V1PD48_HETAK (Hypothetical protein n=1 Tax=Heterosigma akashiwo TaxID=2829 RepID=A0A6V1PD48_HETAK)

HSP 1 Score: 191 bits (486), Expect = 3.660e-54
Identity = 101/243 (41.56%), Postives = 147/243 (60.49%), Query Frame = 1
Query:  463 EYDAVPSEAASYGKIAFWDERYAADEEVVDWYHSWANLAPTLTQYMDEQDDVLVCGCGNSEMSVDMFDDGFENIVNVDISRVAIHQMAETYK--AYPMKWKSIDLTREEFPEAEFDVALDKACLDSIACSPHGASKVRDYLQQMDRLLQPEGAFICVSFAPPEERLELLEYWDIDVPAKCLAWDVHVDAIAKPALKLRRGAESD--GDVYYIYVCIKDPSKTVQKRIAKERAKREQEKKLAKL 1179
            EY++ P++AA Y K AFWD RY  + EV +WYH +         +MD+ D++L  GCGNSEMS +M  +G++ + N+D S+V I QM E Y      M W  +D  +  FP+  FD+ LDK C+DS+ C   G  +    LQ++DR+L+P+GA+I +S+  P+ RL+LLE  DID P   L WDV V+AIAKP        +    G +YYIYVCIK+  K V  ++ +E  +++Q  K  +L
Sbjct:   13 EYESHPTDAAQYAKAAFWDSRYMRNPEVFEWYHPYDAFVDIFEMFMDKGDEILNIGCGNSEMSAEMALEGYDWVTNIDHSKVVIEQMKEKYADDLPDMPWYYMDAAKLRFPDNTFDIVLDKGCMDSMLCGNKGRYETGKMLQEIDRVLKPDGAYILISYGTPDLRLDLLEDADIDSPG-FLTWDVFVNAIAKPTTDNFTTPDYGDLGSMYYIYVCIKEERK-VSLKLQREAKRKKQASKAGRL 253          
BLAST of mRNA_P-fluviatile_contig15.2524.1 vs. uniprot
Match: A0A7S2DUE8_9STRA (Hypothetical protein (Fragment) n=1 Tax=Dictyocha speculum TaxID=35687 RepID=A0A7S2DUE8_9STRA)

HSP 1 Score: 179 bits (453), Expect = 8.490e-49
Identity = 91/219 (41.55%), Postives = 131/219 (59.82%), Query Frame = 1
Query:  466 YDAVPSEAASYGKIAFWDERYAADEEVVDWYHSWANLAPTLTQYMDEQDDVLVCGCGNSEMSVDMFDDGFENIVNVDISRVAIHQMAETYK---AYPMKWKSIDLT--REEFPEAEFDVALDKACLDSIACSPHGASKVRDYLQQMDRLLQPEGAFICVSFAPPEERLELLEYWDIDVPAKCLAWDVHVDAIAKPALKLRRGAESDG--DVYYIYVCIK 1101
            YD VP +A  YGK  FWDERY ++EE  DWYH ++NL   + +Y++    VL+ GCGNS +  DM DDGF  IVNVDISR+ + QM E Y       ++++ +D+   + EF + EF   +DKA +D+I C  HG+ KV+  L + DRLL   G +ICVS   PE RL+  +   I+  A  + W VHV  I KP +   +  +     ++Y++YVC+K
Sbjct:   50 YDPVPEDACQYGKPFFWDERYMSNEEAFDWYHPYSNLRGIIKKYVEPDFKVLIAGCGNSRLCEDMVDDGFSQIVNVDISRIVVDQMEEKYTDTLGDGVEFRQMDVCDMQGEFEDKEFQAVIDKALIDTIYCMEHGSKKVKQVLHEFDRLLTHTGVYICVSCGKPENRLKEFDN-SIEQDAGFMPWKVHVFTIPKPIVNPYKPIDIHDLDEMYFVYVCVK 267          
BLAST of mRNA_P-fluviatile_contig15.2524.1 vs. uniprot
Match: F0YBR1_AURAN (Methyltransf_11 domain-containing protein n=1 Tax=Aureococcus anophagefferens TaxID=44056 RepID=F0YBR1_AURAN)

HSP 1 Score: 166 bits (421), Expect = 8.330e-45
Identity = 98/237 (41.35%), Postives = 134/237 (56.54%), Query Frame = 1
Query:  496 YGKIAFWDERYAADEEVVDWYHSWANLAPTLTQYMDEQDDVLVCGCGNSEMSVDMFDDGFENIVNVDISRVAIHQMAETY--KAYP----------MKWKSIDLT--REEFPEAEFDVALDKACLDSIACSPHGASKVRDYLQQMDRLLQPEGAFICVSFAPPEERLELLEYWDIDVPAKCLAWDVHVDAIAK--PALKLRRGAESDGDVYYIYVCIK----DPSKTVQKRIAKERA 1146
            +G   FWDERY  + E  +WYH +A L P L Q+M ++  +L+ GCG+SEM+ DM++DG+ ++ NVDISRV + +MA  Y  K  P          ++WK  D T     F +  FDV +DKA LD++ CS     +   YLQ+MDR+L PEG F CVSF  PE RL+ +E  D +     LAW+V V AI K  P        +   DVYY+Y C K    D  K ++K+  K RA
Sbjct:    2 FGSPGFWDERYYVNCEPFEWYHDYAALKPLLEQFMTKEMHILLVGCGSSEMARDMYEDGYTSLFNVDISRVVVDEMAMRYDMKEIPKMYFEDDLGGIQWKQADATDLTAMFNDKIFDVVVDKALLDALYCSEVPGKQTHKYLQEMDRILTPEGLFFCVSFGLPENRLDKIEDTDEESDG-FLAWEVEVHAIPKLMPNQYKVSQLKKPEDVYYVYTCRKEEKMDNEKMLKKKAEKARA 237          
BLAST of mRNA_P-fluviatile_contig15.2524.1 vs. uniprot
Match: A0A7S2FTP6_9DINO (Hypothetical protein n=1 Tax=Alexandrium andersonii TaxID=327968 RepID=A0A7S2FTP6_9DINO)

HSP 1 Score: 158 bits (399), Expect = 4.440e-42
Identity = 82/213 (38.50%), Postives = 121/213 (56.81%), Query Frame = 1
Query:  490 ASYGKIAFWDERYAADEEVVDWYHSWANLAPTLTQYMDEQDDVLVCGCGNSEMSVDMFDDGFENIVNVDISRVAIHQMAETYKAYP-MKWKSIDLTREEFPEAEFDVALDKACLDSIACSPHGASKVRDYLQQMDRLLQPEGAFICVSFAPPEERLELLEYWDIDVPAKCLAWDVHVDAIAKPALKLRRGAESDG--DVYYIYVCIK-DPSKT 1116
            A YGK  +W+ERY  D E  DWY  WA L  TL +Y+ +Q+ +L+ G GNS +S +M+++GF NI N+DIS V    M E Y+  P M +  +D    E P++ F+V LDKA LDSI C        +  LQ++ R+L  +G +I +S   P  RL  L+  + +       W+V +  + KP + +     SD   +V+YIYVCIK +P+ T
Sbjct:    2 AQYGKSEYWEERYTRDPEPFDWYQRWAGLKDTLLEYVTQQNSILMLGAGNSRLSEEMYEEGFHNITNIDISMVVTKAMQEKYRDKPGMTYVQMDGRAMELPDSNFNVVLDKATLDSILCGEGSTHNAQKMLQEISRVLMDKGVYIAISHGQPSYRLTYLQRPEFN-------WNVKIYTVQKPMMGMTASLSSDDKDNVHYIYVCIKGEPAST 207          
BLAST of mRNA_P-fluviatile_contig15.2524.1 vs. uniprot
Match: A0A7S2V469_9STRA (Hypothetical protein n=1 Tax=Fibrocapsa japonica TaxID=94617 RepID=A0A7S2V469_9STRA)

HSP 1 Score: 158 bits (400), Expect = 4.640e-42
Identity = 84/199 (42.21%), Postives = 119/199 (59.80%), Query Frame = 1
Query:  541 EVVDWYHSWANLAPTLTQYMDEQDDVLVCGCGNSEMSVDMFDDGFENIVNVDISRVAIHQMAETYKA-YP-MKWKSIDLTREEFPEAEFDVALDKACLDSIACSPHGASKVRDYLQQMDRLLQPEGAFICVSFAPPEERLELLEYWDIDVPAKCLAWDVHVDAIAKPALKLRRGAESDG--DVYYIYVCIKDPSKTVQK 1125
            +V +WY+ +   A     YMD  DD+LV GCGNSEMS +M ++G+ +I+NVD S+V I QM E YK  YP M W  +D  + +F +  FDV +DK  LDS+ C+  G    +  LQ +D++L+P+G +I VS+  P+ RL+LLE  D+      L WD  V AIAKPA       +      +YY+YVCIK+  K + K
Sbjct:    1 DVFEWYYPYDAFADIFAMYMDVNDDILVLGCGNSEMSAEMQEEGYNHIINVDFSKVVIDQMQEKYKEDYPDMTWYVMDAMKLKFEKHTFDVVIDKGLLDSMLCTDKGIINAKMMLQNVDKVLKPDGVYIVVSYGTPDARLDLLEN-DVYESEDFLTWDAFVHAIAKPAANPFSFPDYSDYQSMYYVYVCIKEEKKVLMK 198          
BLAST of mRNA_P-fluviatile_contig15.2524.1 vs. uniprot
Match: A0A812VKP5_9DINO (EEF1AKMT4 protein n=6 Tax=Symbiodinium TaxID=2949 RepID=A0A812VKP5_9DINO)

HSP 1 Score: 156 bits (394), Expect = 2.230e-41
Identity = 76/207 (36.71%), Postives = 111/207 (53.62%), Query Frame = 1
Query:  490 ASYGKIAFWDERYAADEEVVDWYHSWANLAPTLTQYMDEQDDVLVCGCGNSEMSVDMFDDGFENIVNVDISRVAIHQMAETYKAYP-MKWKSIDLTREEFPEAEFDVALDKACLDSIACSPHGASKVRDYLQQMDRLLQPEGAFICVSFAPPEERLELLEYWDIDVPAKCLAWDVHVDAIAKPALKLRRGAESDG--DVYYIYVCIK 1101
            A YGK  +W+ERY  D E  DWY  WA L  T  +Y+     +L+ GCGNS +S +M+++GF +I N+D+       M E Y+  P M +K +D    E P+A F+V +DKACLDSI C        +  L ++ R+LQP G ++ VS   P  RL  L+  +         W+V    + KP + +     +D    V+YIYVC+K
Sbjct:    2 AQYGKAEYWEERYTRDPEPFDWYQRWAGLKDTFAEYVQPSHSILMLGCGNSRLSEEMYEEGFHSITNIDLCLTVTKAMQEKYRDKPGMTYKQMDGRSMELPDANFNVVIDKACLDSILCGEGSTHNAQKLLTEVSRILQPNGVYVAVSHGQPSYRLTYLQRPEF-------GWNVKTYTVQKPMMGMTASLSADDKDSVHYIYVCVK 201          
BLAST of mRNA_P-fluviatile_contig15.2524.1 vs. uniprot
Match: A0A812IP73_9DINO (EEF1AKMT4 protein n=1 Tax=Symbiodinium natans TaxID=878477 RepID=A0A812IP73_9DINO)

HSP 1 Score: 158 bits (400), Expect = 8.940e-41
Identity = 77/207 (37.20%), Postives = 113/207 (54.59%), Query Frame = 1
Query:  490 ASYGKIAFWDERYAADEEVVDWYHSWANLAPTLTQYMDEQDDVLVCGCGNSEMSVDMFDDGFENIVNVDISRVAIHQMAETYKAYP-MKWKSIDLTREEFPEAEFDVALDKACLDSIACSPHGASKVRDYLQQMDRLLQPEGAFICVSFAPPEERLELLEYWDIDVPAKCLAWDVHVDAIAKPALKLRRGAESDG--DVYYIYVCIK 1101
            A YGK  +W+ERY  D E  DWY  WA L  T ++Y+     VL+ GCGNS +S +M+++GF +I N+D+    I  M E Y+  P M +K +D    E P+A F++ +DKACLDSI C        +  L ++ R+LQP G ++ VS   P  RL  L+  +         W+V    + KP + +     +D    V+YIYVC+K
Sbjct:  128 AQYGKAEYWEERYTRDPEPFDWYQRWAGLKDTFSEYVQPSHSVLMLGCGNSRLSEEMYEEGFHSITNIDLCMTVIKAMQEKYRDKPGMTYKQMDGRSMELPDANFNIVIDKACLDSILCGEGSTHNAQKLLTEVSRVLQPNGVYVAVSHGQPSYRLTYLQRPEF-------GWNVKTYTVQKPMMGMTASLSADDKDSVHYIYVCVK 327          
BLAST of mRNA_P-fluviatile_contig15.2524.1 vs. uniprot
Match: A0A6U1K5P8_9STRA (Hypothetical protein n=2 Tax=Pelagomonas calceolata TaxID=35677 RepID=A0A6U1K5P8_9STRA)

HSP 1 Score: 154 bits (389), Expect = 1.190e-40
Identity = 78/207 (37.68%), Postives = 115/207 (55.56%), Query Frame = 1
Query:  490 ASYGKIAFWDERYAADEEVVDWYHSWANLAPTLTQYMDEQDDVLVCGCGNSEMSVDMFDDGFENIVNVDISRVAIHQMAETYKAYP-MKWKSIDLTREEFPEAEFDVALDKACLDSIACSPHGASKVRDYLQQMDRLLQPEGAFICVSFAPPEERLELLEYWDIDVPAKCLAWDVHVDAIAKPALKLRRGAESD--GDVYYIYVCIK 1101
            A YGK ++WDERY  D E  DWY  ++ +   L +Y+ + D VL+ GCGNS +S DMF+DGF NI NVDISRV I QM + YK  P + ++ +++   EFP+  FD  + K  +D+I C     + V     ++ R+L+P G    VS+  P+ R++ LE  D        +W V    + KP +      ++     V+YIYVC K
Sbjct:    2 AQYGKTSYWDERYTKDPEPFDWYQRYSGIQELLQKYVKKDDAVLMAGCGNSRLSEDMFEDGFANISNVDISRVVIDQMGDKYKDKPALTFQQMNVCSLEFPDESFDAVIVKGTMDAILCGEGSTANVAKMCMEVSRVLKPSGILFVVSYGVPDNRMQYLENEDY-------SWTVTTHTVPKPTVSATAVPDTKDANSVHYIYVCAK 201          
The following BLAST results are available for this feature:
BLAST of mRNA_P-fluviatile_contig15.2524.1 vs. uniprot
Analysis Date: 2022-09-19 (Diamond blastx: OGS1.0 vs UniRef90)
Total hits: 25
Match NameE-valueIdentityDescription
D7FV57_ECTSI3.600e-12980.80Methyltransf_11 domain-containing protein n=1 Tax=... [more]
A0A7S1UEF3_9STRA2.370e-5543.64Hypothetical protein n=1 Tax=Phaeomonas parva TaxI... [more]
A0A6V1PD48_HETAK3.660e-5441.56Hypothetical protein n=1 Tax=Heterosigma akashiwo ... [more]
A0A7S2DUE8_9STRA8.490e-4941.55Hypothetical protein (Fragment) n=1 Tax=Dictyocha ... [more]
F0YBR1_AURAN8.330e-4541.35Methyltransf_11 domain-containing protein n=1 Tax=... [more]
A0A7S2FTP6_9DINO4.440e-4238.50Hypothetical protein n=1 Tax=Alexandrium andersoni... [more]
A0A7S2V469_9STRA4.640e-4242.21Hypothetical protein n=1 Tax=Fibrocapsa japonica T... [more]
A0A812VKP5_9DINO2.230e-4136.71EEF1AKMT4 protein n=6 Tax=Symbiodinium TaxID=2949 ... [more]
A0A812IP73_9DINO8.940e-4137.20EEF1AKMT4 protein n=1 Tax=Symbiodinium natans TaxI... [more]
A0A6U1K5P8_9STRA1.190e-4037.68Hypothetical protein n=2 Tax=Pelagomonas calceolat... [more]

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Alignments
The following features are aligned
Aligned FeatureFeature TypeAlignment Location
P-fluviatile_contig15contigP-fluviatile_contig15:2034496..2048556 -
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 score382.9
Seed ortholog evalue1.8e-103
Seed eggNOG ortholog2880.D7FV57
EggNOG free text desc.methyltransferase activity
EggNOG OGsKOG2352@1,KOG2352@2759
COG Functional cat.S
Best tax levelEukaryota
Best eggNOG OGNA|NA|NA
Hectar predicted targeting categoryother localisation
Exons8
Model size1438
Cds size1170
Stop1
Start1
Relationships

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

Feature NameUnique NameSpeciesTypePosition
mRNA_P-fluviatile_contig15.2524.1prot_P-fluviatile_contig15.2524.1Porterinema fluviatile SAG_2381polypeptideP-fluviatile_contig15 2034707..2048499 -


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

Feature NameUnique NameSpeciesTypePosition
1622815664.333346-UTR-P-fluviatile_contig15:2034495..20347061622815664.333346-UTR-P-fluviatile_contig15:2034495..2034706Porterinema fluviatile SAG_2381UTRP-fluviatile_contig15 2034496..2034706 -
1693562800.2854822-UTR-P-fluviatile_contig15:2034495..20347061693562800.2854822-UTR-P-fluviatile_contig15:2034495..2034706Porterinema fluviatile SAG_2381UTRP-fluviatile_contig15 2034496..2034706 -
1622815664.4381757-UTR-P-fluviatile_contig15:2048499..20485561622815664.4381757-UTR-P-fluviatile_contig15:2048499..2048556Porterinema fluviatile SAG_2381UTRP-fluviatile_contig15 2048500..2048556 -
1693562810.4268029-UTR-P-fluviatile_contig15:2048499..20485561693562810.4268029-UTR-P-fluviatile_contig15:2048499..2048556Porterinema fluviatile SAG_2381UTRP-fluviatile_contig15 2048500..2048556 -


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

Feature NameUnique NameSpeciesTypePosition
1622815664.345125-CDS-P-fluviatile_contig15:2034706..20348201622815664.345125-CDS-P-fluviatile_contig15:2034706..2034820Porterinema fluviatile SAG_2381CDSP-fluviatile_contig15 2034707..2034820 -
1693562800.2951012-CDS-P-fluviatile_contig15:2034706..20348201693562800.2951012-CDS-P-fluviatile_contig15:2034706..2034820Porterinema fluviatile SAG_2381CDSP-fluviatile_contig15 2034707..2034820 -
1622815664.3549044-CDS-P-fluviatile_contig15:2045335..20454211622815664.3549044-CDS-P-fluviatile_contig15:2045335..2045421Porterinema fluviatile SAG_2381CDSP-fluviatile_contig15 2045336..2045421 -
1693562800.306093-CDS-P-fluviatile_contig15:2045335..20454211693562800.306093-CDS-P-fluviatile_contig15:2045335..2045421Porterinema fluviatile SAG_2381CDSP-fluviatile_contig15 2045336..2045421 -
1622815664.3648336-CDS-P-fluviatile_contig15:2045782..20459161622815664.3648336-CDS-P-fluviatile_contig15:2045782..2045916Porterinema fluviatile SAG_2381CDSP-fluviatile_contig15 2045783..2045916 -
1693562800.3156202-CDS-P-fluviatile_contig15:2045782..20459161693562800.3156202-CDS-P-fluviatile_contig15:2045782..2045916Porterinema fluviatile SAG_2381CDSP-fluviatile_contig15 2045783..2045916 -
1622815664.3749852-CDS-P-fluviatile_contig15:2046177..20463161622815664.3749852-CDS-P-fluviatile_contig15:2046177..2046316Porterinema fluviatile SAG_2381CDSP-fluviatile_contig15 2046178..2046316 -
1693562800.324606-CDS-P-fluviatile_contig15:2046177..20463161693562800.324606-CDS-P-fluviatile_contig15:2046177..2046316Porterinema fluviatile SAG_2381CDSP-fluviatile_contig15 2046178..2046316 -
1622815664.387471-CDS-P-fluviatile_contig15:2046774..20468581622815664.387471-CDS-P-fluviatile_contig15:2046774..2046858Porterinema fluviatile SAG_2381CDSP-fluviatile_contig15 2046775..2046858 -
1693562800.3344293-CDS-P-fluviatile_contig15:2046774..20468581693562800.3344293-CDS-P-fluviatile_contig15:2046774..2046858Porterinema fluviatile SAG_2381CDSP-fluviatile_contig15 2046775..2046858 -
1622815664.3983326-CDS-P-fluviatile_contig15:2047183..20473101622815664.3983326-CDS-P-fluviatile_contig15:2047183..2047310Porterinema fluviatile SAG_2381CDSP-fluviatile_contig15 2047184..2047310 -
1693562800.346716-CDS-P-fluviatile_contig15:2047183..20473101693562800.346716-CDS-P-fluviatile_contig15:2047183..2047310Porterinema fluviatile SAG_2381CDSP-fluviatile_contig15 2047184..2047310 -
1622815664.4149916-CDS-P-fluviatile_contig15:2047757..20478691622815664.4149916-CDS-P-fluviatile_contig15:2047757..2047869Porterinema fluviatile SAG_2381CDSP-fluviatile_contig15 2047758..2047869 -
1693562801.3746748-CDS-P-fluviatile_contig15:2047757..20478691693562801.3746748-CDS-P-fluviatile_contig15:2047757..2047869Porterinema fluviatile SAG_2381CDSP-fluviatile_contig15 2047758..2047869 -
1622815664.4270833-CDS-P-fluviatile_contig15:2048125..20484991622815664.4270833-CDS-P-fluviatile_contig15:2048125..2048499Porterinema fluviatile SAG_2381CDSP-fluviatile_contig15 2048126..2048499 -
1693562805.5114954-CDS-P-fluviatile_contig15:2048125..20484991693562805.5114954-CDS-P-fluviatile_contig15:2048125..2048499Porterinema fluviatile SAG_2381CDSP-fluviatile_contig15 2048126..2048499 -


Sequences
The following sequences are available for this feature:

protein sequence of mRNA_P-fluviatile_contig15.2524.1

>prot_P-fluviatile_contig15.2524.1 ID=prot_P-fluviatile_contig15.2524.1|Name=mRNA_P-fluviatile_contig15.2524.1|organism=Porterinema fluviatile SAG_2381|type=polypeptide|length=390bp
MPRPRGSSEESGNSSSRTSGSGSSSLTSRSEGDGRATEDSGSLLSSGNSA
SISPRELEGYESRKSSASTSASRYTSRTSGSGSSSSTSGSDDGGGDNLKN
RMKDLFIKPTPPVAEVEQIGGLQGRIDAKLLEEVQEYDAVPSEAASYGKI
AFWDERYAADEEVVDWYHSWANLAPTLTQYMDEQDDVLVCGCGNSEMSVD
MFDDGFENIVNVDISRVAIHQMAETYKAYPMKWKSIDLTREEFPEAEFDV
ALDKACLDSIACSPHGASKVRDYLQQMDRLLQPEGAFICVSFAPPEERLE
LLEYWDIDVPAKCLAWDVHVDAIAKPALKLRRGAESDGDVYYIYVCIKDP
SKTVQKRIAKERAKREQEKKLAKLLGVKAGRGRGRGRGR*
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mRNA from alignment at P-fluviatile_contig15:2034496..2048556-

Legend: UTRpolypeptideCDS
Hold the cursor over a type above to highlight its positions in the sequence below.
>mRNA_P-fluviatile_contig15.2524.1 ID=mRNA_P-fluviatile_contig15.2524.1|Name=mRNA_P-fluviatile_contig15.2524.1|organism=Porterinema fluviatile SAG_2381|type=mRNA|length=14061bp|location=Sequence derived from alignment at P-fluviatile_contig15:2034496..2048556- (Porterinema fluviatile SAG_2381)
CGAACATCCACCGTACGTCCTACTCAAGCCTTGACAAGCCACCGGTGGAC GCCGGTGATGCCGAGACCCCGCGGTTCTAGTGAAGAAAGTGGTAATAGCA GCAGCAGGACGAGCGGGTCGGGCAGCTCATCTTTGACCTCCCGTAGCGAG GGTGACGGACGAGCAACCGAAGATAGCGGATCTTTATTGTCGAGCGGCAA CAGCGCTAGCATCAGCCCCCGAGAGCTTGAAGGATATGAATCGAGAAAGA GCAGCGCTTCTACGTCCGCTTCAAGATATACCAGCCGGACGAGCGGATCA GGAAGCTCATCATCGACCTCCGGTAGTGATGATGGTGGAGGCGACAACTT GAAAAATCGGATGAAAGACCTTTTCATTAAACCAACACCACCGGTGGCTG AGGTAGAACAGATTGGGGGGCTTCAGGGCAGGTGAGGAAAGTCGATACGA ATTTGCATGAATTCGTCGATTATCCGCTGATAGGCTCGACGCGGGGTGGA AGTCTTGCGAGGGCTGGATATAAACGTATGAGTGTCATAAGGTTTACAGG CGACACAGCAGCAGCTTTTAGGTTTGTACGAAGAGAAAATATTCCTTGAA TGAGGAAGCGGAGAAGCGAGGTGACTTGACAGTCTACTGTACGGAATGCA GGTCGATGAACGCGCATGATGATACTTGTACCAACAGGATAGATGCGAAG CTCTTGGAGGAGGTACAGGAGTACGACGCGGTGCCATCCGAGGCGGCCTC CTACGGGAAGATTGCCTTTTGGGACGAACGTTACGCCGCCGACGAAGAGG TCAGAGTTGCTTGTTGAAATCCACTGCCGCGCTATCAGCGAGAAGCATGC ACCAGACCTTTCGCATTCCTCATGCCTCTGGATTTGTCTTGAAATGAAGT TTTTTGTTTCACTGTAGAGGAAGATCCTATAGGTCTAATCATAGATCCAT TGAAGCCATTAAAGCAGGAGCAAACCTCAACATGGGCGAGCTCAAAAACA AAAGTAGGACAATGAACGGTACCGTCCAACCTACCACACCGCAGCTTTGC GTGAGACAAAAGCCCTCGCCGTAAACGCGTCTCGACAACACCTTAGGATA GATTGCGCTCGCCGAATGCTTTGCGGGTAGCGATTTCTTGCTTTGGAAGA TGACGCTTTCGGATAGGCTCTGACGTGTAGGTTGAGGCTGCCTTCACCGA TAGCCATTCTGCCTCCTCGACTCGTCGATTTGTCAACGCGATGCAGGTGG TTGACTGGTACCACTCGTGGGCCAACCTGGCCCCAACCCTGACTCAGTAT ATGGACGAACAAGACGACGTGTTGGTGTGCGGTTGCGGAAATTCTGAGAT GAGCGTCGACATGTTTGACGATGGTAAGGACTCGCCTCGGTCGCCGTCGG TCTGAGGGCGCCGTCATACCACTCGCACTTTGGCGTTTTTGCACGCTCAT ATCTCGCATTTCCTGGAAATAGCACTCTGTTCTACACGTTTTTAGCTACC GGTGAACAACGTATTGTCCAAAGCTCGTGGAGCGTTGTTCGTCCTCACAA TGCACTCAATATCTCGACGACACCGCAGCAGAGTTATATGTTGTCCGAGT GGCAGGAACAACACGTTTGCCCCGTTCTACTGCATGTGCCCATGGTTATC CTTCACTTTGCTTCAGATAATCCTCCGCCTCATGTTCATACATTCAAGGG TTCGAGAACATCGTGAACGTGGACATATCCAGGGTGGCCATTCACCAGAT GGCCGAAACCTACAAAGCTTACCCCATGAAATGTGAGTGGAGCACATGTA TGGACGGGCAACTAAGCTGCGCTCCGTCCGAACCGGGCCGATGAGCCCGC AGAGTAGGCGAGCAAAGACTCAACCTTGTTTCTATCCAAATCACCCTGGC TCAAGGAAAAGTAGCTCAAAAGTCGTTGTTCGAACTGACCGATTGGCCTA TCGGCCACGTGACGGCGATCATCTTTTAGTGTGCCAGTAGGCTACGACGA CAAAATACAAAATTATTCTCTGTCATGTTGAGCGAAAGGTAAATATCCAG ATGGACTATCGAACCCGCTTTGGCTTGTTGCACGTGCGTAAGATTGAGCG CAATTGGCTTGTAGCCACTTCGTGGATGCAGCGCGTTTTAACAATTTACA CCCCCGTCAGGAGTGTACACAGCACTTTGTGCCTTGAGCCTTTATCCCTT ATTCCCGCTTCTCATTCCACTTTTCTCTCACCACAACTAGGGAAATCGAT TGATCTCACCCGCGAGGAGTTCCCTGAAGCGGAGTTTGACGTCGCCTTGG ATAAAGCGTGCCTCGATTCCATCGCGTGCAGCCCTCACGGGGCATCAAAG GTTCGAGACTATCTTCAACAGATGGACAGGTGCGCACCGGACCTATCCGT CATCTATTTTATGTGGCCATGCGTCCCCATTGCTAAGACACGAGAGAATG TTCGGTGTTCCCGTTAAGCCATTTTACTTGTTGATCATGGTCATCTATCG TAAGCTACTTTCCCTTGCCGCAGTATATTCATGGGCAGTGCGCTATCATG ACTCTTAGGTTTATGTTCATCGACCCTGGCGGTATACTTTTACGACACAA CACACTCCGTGTCCTTTTGCTTTGCACCCTTGTTTCTCAGATTGCTCCAG CCAGAAGGAGCTTTCATTTGTGTGTCCTTCGCTCCCCCAGAAGAGCGCCT GGAGCTCTTGGAATACTGGGATATAGACGTACCAGCAAAGTGCCTGGCTT GGGACGTTCACGTTGATGCGATCGGTGAGATGAACTCGTCAAGCGTTACC TTGTTGTTTTCGTTTCGCGCGGGTGTGATCGAACCCTCACAAAGCAGGAG ATCTTGGATTATCATGAGCTTGTGCGACTTGCCTGTTTTGGTTGTACCAC CCGCGAGATAGCCACGGGAATCGCGTCCGACATGTACCCTCCGAAGGTCA AACAAATTCGTGGGCGCCCTAGAAAGCACATCGTGGTACAAGCCAATTGG CCGACACATTACGCTCCTCATTCAACTTGTCGTACCTTGCTCAACTTTAT CATCAAAGAAGGAATGGACAAATTCCGTCATCCACATCTCAACGTGTTGT TGTGTGGATGCCCTCGCTCAAAATATCGACTACAGCGAAGCCAGCATTGA AGCTGCGGCGGGGGGCTGAAAGCGACGGTGACGTCTACTACATATACGTG TGTATCAAGGATCCCAGCAAGGTGAAGAATTTGGTGGTGTACCTTGCAGA AACGTTCGAACTAGTGGAGCTCACGTTTATACTCGTCGCTTGTTACTTTC AGGCCGGAGGTTGATGTTGGACGTTCTGAAAGTCTTCGTTCAAATCAACT GTAAAGAAAAGGTAGTACGGTTGGGAGCTAACAATCTTTCTGCGGCAAAT GAATCTTCCCCTGAAATCACGTCGGTGCGGACATATTAAACTAGCTTTTC CCCTGTGGCTCAATACCTTTGTACTTTGGTGGCTCCATCCGCAGCGTTTG TTCGTCCACCGTGCATCTCGGAGAATAATTGGCAGCTATTTTGGTAGCGC GAGCCTTTGCAAGTCTTTCACCCATATCGCACTTCAATTGATGGCAAGAT CACGAGAAAATATCCAAAGCCTTCGCAAGAGACCAGATGCACATATGGAA CATCTCCTGTATGTAAGATGACGTGGGCATAATTTGCCGTTCCGGCAAGG ATGATTATATTTGGCTTATGTGCCGTATCATCGCCCACTCATCACAATAA CGAACCACTAGACAAAAGAAAATAGACATTCTAAATTGGCTTCTTCTGTG GACCCTCACAAAAGAAGTGGCCTGCTACCTTTGATACTGCTGCGGCCGTT GATCGAATCACAACTATTTGTGCATCGTCAGTAGGAGGAGGAGAGTACAG ACGCGGCCCGCTGTTGCGAAACATCAAATTCGGCTTGAGACTCACTTTCT CAGCTTTGCCCCCGAAGAACGACGAGCCTTAAGCCTTTCTTCAAAAAGAT CATGTTTCCTATTTTCCTATGCTACCAGCACATGCTGGTTTCCTAAATAG TTAGTTTCTCAATCGTCATCCTGTCCCGGAACCGGAATTTCTTAGAATGC TCTGTTTTTTCTAATCTTGTCGGGTGCACAAGCGCGTCCTGCGGACCGTT CCAGCACGTGTCTATTCATCGCTATGCCCCAACGGACACGAAAATATGAA GAAATCAAGTAAAATATCAAAATAATTAAATAAGGCAACCCAAAGTTAGT TGTGGGTGTGGTCCACATACTTGTGCACACACACCGACAGCGGATGGATG GTTCTTACTCGGGGCACCCTTCCATCGCCCCTCGTTTCTTATTATCTTAG TGGGGGTGCCGGATGCATGCCTGTTTTGTAATGGGATGTTTCCCATAATT ATTAATGCTGTCTGAATCGAAGTGGATGGCGTGTTTCTTCGCTCTATATC TATATTGTTCATGAGTGAGCGTTTTCTCAATCAACGCTTTATTTCATAAC AGCGGGCCGCGTCTTTAAGATAAAATGAAGGAAAGAAGAAACTGCCATGC ACAGAAAAAGTCTCACAACTCTTCATTTAGAAGTCTAGTCACTTCCGTAG ATATTACGGACAACCGAGTTTAAAAATTCAGAACTTGATACACCCCCCCA AAAAAGTGCCCGATTCATCCACCGCGGCTCTCATCCCGGCTTCTTATAAA CAGTTTTTGAGCAACCACGTTATTATGTGTCTGTCTACCTTCAAACATTG TCAGATGTCAATGCATGCACATCCATTGCAGCCCCTTTGCGATAGATGTG GGTGGCCACATGGTCCATGCACAGGGAGAGAGGAGTTCTTGTTTGCCACG GCGCACGGAACTTCATTCCTTCGTGATCCGTCCCGAGCCCCACAATTACT CGGAGCATACTACTATGCTCGATATATATGTGGAGGCTCACATGATAAAT AATGTCAAGTACATATTATCTTTGCGTGATTTAAAAAGTGTATTCATGTG TGGAGGAGGAGCGGTTACTGTTCACTGCGTATTATTAGGCCCGCGCCACG CGGGCGGTCAAACTGCAACACAGAGAAGATGCACGCGCGTGTGATTCTGA ACGGAATGTTTCAGGTGTGAAGTTGCTCCGTCAAAAACTAAGAGGGGAGA GAGAGAGCAAGGGGGGGAGGATGGATCGAAAAGTTTTTGTTCTTTTCTGC TTGTTTGTGAGAGGATCGAGCCTTTCACCGGTCGGCGAGGGGGTGTGTGC GTGGTTGGTTGTCTTTTTTAAACAGCAACAGCAAGGTCTTATGGAGGGGA TATTCATAAGCACCGAACACTGGGGGTGACACCGAACGCTGGGGGTGACG CGATAGCGAATAGGGGGGGTAGAGAGGGAAAAAATAACACATACAAACGA ACAACACAAGACAACACGTTGTTGTGCAGGGTGCGGGTGGGCAGGGTTTG TGTGCGAGAGAGAGACGAAAGATTTTCCAGACACAAAAGAAAGCAATTTA CGCGGGAGCACGGAGAGCAGGAAGCCGCGGCAGGGGAAGGCGTCCTTTTT GAGCCCTTTCCATGTCGATCGCGGTTCTTTACGGTGGAAGACCCTCTCTG CTTGCTGTGATTCTGCCCGGGTGAGCGGGTTTTCAAGGGTGCGTCAACCC ATCCATGTCGAACGGACGCCGTAACGATAGCTTTTCGGTGCCGTAACGGG CTTTAAACGGACCATACTATGTGGAATTTAAAGCGAGGGGTAAGCGGTGT GGTGTTTGTGCGCTGTCGAGTCGAAGTAATGTGGATTGAGGAAATGGTCA AGAATGGGACGACGTCGAAACCGCCCAACGCCAGCATGGATGGATTGAGA GCGACGGACTGACAGCGTTCGTTATTGCGTGTGAATGATTTTCGGTGAAG ATCTCAATGATGAGCGCCGCCAGCAGTCAAACAAATTTTACGATGCGCGT GCTTTTTTGGCCGGACGAAGCGAATAAGAATTGCCATGATCCCTCGCACG CGCATCACTAACGTTTCCTGCTATCACCCTTTTTTTTGCCTTGTATGAAC TCGAATCGTTGCCCAGATCACTTGCCTAAATCAACCAAGACATAGATGCG CGATGCAAACACTCTTGCACTTTTCCGAAGGTGGTGCCGCTCCCTCAGCC CTTACGGCGGGAATAAAATAAAACAAATCGAATCCCTTTGATTTCCTCGC ACAGCGCAAAGCGCGTTGGGCAGGCAACTGTACGCGTTAAAAGGGATGCG TCGGGGCTGGCTTTGAACAGCGAGTCATGCTCCTCTGTGCAGCTGCACAT TGTACATACATGTCCGGTAACAAACATACTCCAGTACATGTTTTTTTTCG CCGGAGTTCAGCGAGCTGTTGTTCTCGTCTTTTTTTCTGACGGCTTGTTT TTCTCTCCCAAACCCTACACTCCCTCAAAGCATTACCCCCTCTTTGTTTC CCGCGAGAAAACCCCACAAGTATTTTGAGGACCGCGGCAACGAATCGTGC GAAGCGTAGAGTAACTCGCTTCACCCCCGCTCGACCAAGAAAAGGAGAGA CGGGAGCATGAGCGCGCGGTGGGAAGGAGTCGGCGTCAGCTTGTAGTTGG TTCAACGGGTGGGGGGCATGACACTTGCGCCACTTTTTCCACGGCCGACC ATCCATCTTGCAGTGCGAGGGATTTCAAGGGAGGAAAGATTGACATTCAT ATATAGAATCTAGACTATATCTGACGCGCTGTAAATTCGCGCAGTGGTCA TGCAAGATTTTTTTCGGGGGGCTGCCAGGGTTTCGACACACACTCACCCA CGCCACCCACACCACCATCGCCTCTTCCGTATGCAAGAATATTAAGAAGC ATACGTTTAGCAACATTATCTGAAAACATACGTGTACATTCTTCGTTCCT TTGTTGATAGTTGGCTCCGCGCGTGAGTTCTTAAGTTACACTTTCTCTTG GTTTTCCACACGTTGGGCAGGCTGTTTGACGGCCGATTTGGTGAGAGCGG GCACATTTTGGTTTTTCCATTTCCGGGAGAACAATCAAGCATAATCGAGC GCGACGAAAATTCACCAAGTTTCACTCATTCATAAGGCTACGAACGAGAA CATTAAATCAGGGATCGGATAATAGATAGGTTAAACATGGAGATTTCGAT GAGCTGTGTGCATTTTTCCGCGACTACACCGTTCAGCTGAACGCAAAGAG AAGCGCTCGCAAGCGGTTGAAAACACAAGAGCTTGCGTTAACGTGTAGCT TGGACTTCTGCCTCTGACTTATTCCAACGACTCGCAGAAGCTCGAGCCCA ACCCACTCTGCACGGATTACTTGATTCCAATTACGGAGTGTCTTTTGGAC GCAACGGCCTAACTTTCAAATTTCCCACTGTATCGCACACACAGCGGATA GTCAACTGCGTCGAATTGCGTCAACGGTTCAATATTCGATGGTGTGTCAA ACGCGAGCCGGGGGCAGCCCACTTTCCTCGTGTCTGGAGAGTACGAGATT TGACGATACCGAGTTTTACTCCCGAAACTGCGGCATGCTTGGAAAATATC GCGTTGGGTTATGAATTGGGCCTGATAATTTGTGTTTTTTTTTAAATTGG ATATTTGCTCTCTCTCTCTCTCTCTCTCTCTCTCTCAATTTTCTCTCTAG CGCACCCATAACCAATTCTTGGTGTAACGATTGAGAAGAGAAAGAACTAG TGTGTGCTATATCTCATGTTTGTGTCCATTCATGGCCGATGTGGTATATA TCCACACCATTTTCTCCTGCAGGCGGATAGGTGAAGGTTGCGGAGCGGAG TGCGTTGTCGAATGGCGTCAACAATGATGAGCCAAAGAGTCACTCTCGCC ATTCCAAAATCATGAAAAACCCGGACCCAAAACATTGCCGTACGGGCGAG ACGGCTTTGACATCTTCCTCTTGAACAACACATGGATCATGGTGTGACTG TTTGGCAGCATCACCTTTTCTCGGCGGGCGTTACAGCCGAAGGTGTGAAC TACGAAGTAGCGAGACCGTCAAGGGGTCTCGTTGTTTCTCGGTACATCTT GTTTCTTGCTCGCTCGCGTGTGCTACACCGTGACGCCCATTGCCAACCGA TGAAGCCACACGGGACGCCTCTCGTACGGCGATTCGAGTAGTCGCAAGTA GAAGAGGTGGGTGGGAGGCGAGTGTCACGTTGATACGCCAAGCCTGGCGA GGGAGTCATGCCCAAGCTCCGCCCCCTGCTCTCTGCTAGAACACCACATA TTCCATTTCGCACACAACTGCTGTAGTTGCAAGCACCGCGCCGACGTTGC TGCACTCCCTCCCCAACTCACGTGTGTGCCTAAAGCATGGACTTGTAGGC TTCCTCTTCAGCGACGGACAGAGTTTAGTAGAGAGAAGGATGAGATAGAA CGACGCGGCACACCAAGAGAGAGACAACACCCTGACAAAGACCGCCCACA CACAGACTGGAAGGCAAAGTTTCATTGTGACAAATTGTCTCGTCCGCTTG ACTGGTGAATGTTTTGTTGATTCCATGTGCAGCCTTCTTGGTGGGACAAT ACTGAAAGCTGTAATGGTCACGACTATGTTTCCAACAGCGCCGACAGCTC GTTCGTGCAAACAACGCTTCGCCAGCAGACAAGGTTGGCCCGTCAAATCC GCGCTGTGATTATTTACCGCGCTCTCGAATGGTGACATATGTTTTTTTTG CTCTTTGTTTCTCAAGAGCTGGCATGAAACGTCAGCTTTCGTCAAAAATC TCTGAATTTCAAGAGGGTCCGGAGCACCGCCATAGTATTCGGCTCACACA GCTAATGCTCTAAACTCGACGGTGCTGACCTCGTGATGAACGCTACCATT CATGTTTGGATGTCTATCATCATCGTGTCCCTGTCAAATCATGCGAAGGT AGCAGAAAATGGATGTTTTGAAAGATGTGTGTGCCGCGTAACATAGTTCG ATTATTGATTTAAATCAAAATATTTCGACCCTCTCTGCGGAAAAAACACA CATGACGTACAACGAAGGTTATCCGGTGTGTGAGACCGAGGAGCAAATGA GCACGTATGCGTGGATATTTTCATGGGGGTAAGCTTTTCGAATGACTTGA CATAAACTCGTTTCATGTGTCCACTGCTGGTTGAATGCCGTTGGGAAAGA GGGTGCGCGAACTCCTTGCATCGGGAGGATTTTCAGTGTGGCAAAATGAT TCGAGAATGGCCACCCATGCATAGGAGGTGTGCCTTTTGTGTTGTCCCGG GAAAAGGAAGGGTACACCCAGATCCGGCGGCTGGTCGTTCTTGCGTGTGC TCGCTGGCAGACGCGGACCTGCACCGCCGTCTTCACATAAAATTGGTGTG TGTGCTATCTCATGTTTGTGTCAATTCGAGACATCTGGAACGGATGGACC ATTTGTTACTCCGTTTCGCCCGCCACCCCACCCCCTCGGGAAAAATGAAG TACAGCCGTACGGTCGACCACGAGACCCTAACTAACTACAGTGACACCAT CTTTGTAGTCAGTCTGGAAGTATTGTGTTGTGTAAATCGGCGCAACACAA GGATAATTATGCCCTCTTTTCTGCCGCCCATCCACATTTATGTGCAGCTG CGTGTGTGTCGGATGCAGACTAAATGTGTACTCCGAGCTGTGGAAGATGC CAAAATAATTGTAGACTAATCTTCCAGAGTGCTCGAGTCTTGCAAAGCTT CACTTAATTATTGAGGTGTGTGCGTGTCGAAAGAGCAGATGGTAGTTGAT CTCAACAGCGTGGAACGCCTCTCTGATGAACGTCATGGGTGTGGAATCCC GAGCTTCCGAGGGAAGCTCTACTGCTGCGCGGCGCAAAACCCGTGTCCCT TGACACTTGATCGGAGAGGAAAGGCGCGCGCGGACCAGCGAGAGTGACGC CTTATTCTATTTTCTTGGCGAGAAGGATTCTGGAACGAGCGGCAGAGAAG GAGAGAGTCCAAGGCATCCCTGTCGCCGGTGCCCGAGAAAACTGTAGTGC TCATTGGTGGGGCCTCCTTATACGTCGGTAAAGTTGTGCAGCATTCGCAT TCCGCCGCCGGTCTGTGGCTTGCCTCCTCATACGGGGAAAATCGCATCCC CCTTTCCTTGTGTTCTTGTGTGCTTGCCAGTATCCAGGGTTAGTACTTCC GGCGAGATATTTCAGACTTGTTCACACAACACTGATTCTGTACACTGCGT AGCAACAAACTGCTGCTGCCGCTTTCGTCGTGAGTGGGTGTAGACACCAG AGATTATACATATTTCAGTGAGGGACAGAGAGGACGCTGGAAATACTCTC AGTTCTCGTGATTGCCGGACCAATCATTGCACACCGGATCGATCATTGGT ACTTGTTGCCTAGCAGCCAGCAGTGAGGTCGATTTGTAACGAAGAGAACA CGAGTAGTGCAAAAGGCTTCATACCGATAGTGAGAAAGGGATTTTACCGA GTATTACTTCTCTCCGTGGCTGTTTTCATTTATTGGCGGATCTTTCAACA ATTTTGTACCTGACAGTCCTGCCACAATGTAGCAATGTATTTCGTGGATA CAAGTTAGTGCTTCCACGCGTCGAAGAAAACTGTGGATTGGAACGGTAGT AAATATTGATCTCTTGATTGCCCATGTACAAGCCACACGCGCTCCAGAAC CGCTGGAATTTTCGTGCTTTCAGAATGCTGCCACTTTTTCTCATATCTTC TGAAGATTTTTCTCATACCGTTCGCCCCGGTGGTCGAGTTGGTATCCTCG TAACCTTCTAGCACCCAGGTCACGGGTTCGAATCTCGGCGAGAGTGGCTT TCCTCACTTTCGTACCTGGGAGAAGAATGCGGGGAAAAACTGGAAAGCTT CGTGAAAACACAAAATTCGACGTAGCGGTCGTCGAGGGCAAGGGACGGCT GAACCCTACTCATGATAAAAATGAAGGCAAGAACCGTAGGAGGAAGGTGG GGCACAGAAAGGAAAAGAAAAAGAAGAAAGTCCCGGTGTTTACCCCCTCC TGTGTGACCACGTTTGGTTCTGGCTGGACACAAAAATACACTGAACAAGT AGTCCTAAAAATGCGCTGCAAAGTGTAGTAGTACACGTCTCGCCTTGATC GGAGGGACTGTCGCCAGTAAAGTGACGACAATACACAACAAAACACATAG ATAGACTAGATAGACTGTACTCCGGAGTGCTCAGCATGATGATCGGCTTC TGCAAGGTTGCTGCACCACAACACCGGTTCACCTGTCGGCGTTCGTTCAA GGGCCGAAGACTGAGTGCTAAGTTGCAAGCGGTTGACTACGATCGAAAGG GGAGTGGAAGGTGTTAGATGTACGTGCACCGGGTGCACCAGCGAAAGCGG GTGACAGACACTCTTTTTGTCTTGGCAGTATACTCAGACCTCCTTCTTAT AATATCTTCACGGCTTTTCCCGCTACCTGCTGTGTGTGACTTTAATCTTT CCGTCCGTGGACTCTCAGTATTTTTTTTGGTGCTGAGATTCTTAAGATCT AATGTTTGCTCCCTGCGAGTCTGCCATCAATCGTAACCGTAACCTCACCC GTTCTGTTACCCTCCGTCTAGTACATAGTAGTCCACACATGCCTTAAGTA AATATTTGGACGATGTGTGAAATATTCTGGGAACCGTCTGGAGCACATGT TTTTTTGCCTGGCCATGACGCACTGGTTGGTGTGTACAAGTGCACGGGAT CGGTTCAAGTTCCACCGCTCGCTGTGCTTCGGGCGACTAATATATATGAG CCGCGCAATACGAGGCAGATTCCATGTACTCTGGACATTGAGGAGAGAGT TGTGGACAAGTTAACTGACGCTGTCTACCGGTTATGCGTGTAACCGTATC TTTGCTCATGGCTTCATCAACCACTGGGGCCAAACTGCATCTACCGCACG TAGCTGCCGTAACGTCATAGCATAGTCTATCCCAGTAAGATTTTTTCCCA TCCAATCGATGGCTTCACCTTGTCATACTGTTGCTTCGGACTGGCTATTA ATAGTCAACGAAAAGGGCGTGAAAAGTTTGGTAGATATGTCGTTGTGCGA TGGAAGTGCAGCAGCAGTGTAAGCAATGCTGCTGCTGGACTTGATTACCT ACCGACACATGTGGACTGTGAACAAACATTTCTGTGCAAAAGATAGATAG CGCCCGTCGGAGAAGAAATTGACTGATGACCTCGCCGGGCAGACAAGGCG AGGCGAGGGCCCTCACGCTGATCCGTGCGCTCTTTCAAATTTGCCGACAC TTGAAATAGACTATTGGCTCGTTGCAAAAGTGTGCCTGAGTTCGAACCCA CAACTGCAAGCTCGTGGGCTGTGTACGGAGTATAGTTCATGTGCTCCCCT TTCCGTCTACTGTCTGTTTGCACAACGGGCAACAGGGGGACACATGCGAA ACACCACGTCACGTAGTGGCGCGATGGAATTTTCGACATTTGCTTTTGTC TTTCATTTGCGAGACGACACGGGCGGCAGGATCTAGAGGAGATTTCTGCT GCATCCGCTGCCAAGCGCGCACCGAACAGCACCCAAAGAGCTGTTCCTAG CTGCCTCATTTCGATGAGGCGGCATGATTACAGAGACTTCGTCTAGGCTT GTAACAGATACGTGTGCATCATACATCAAATACTTCATCAATCACCCGGC TGCCAATCGCCCAGCGGTTGTTCTACTGGGATAAACGATGATAGCGTAGG TTGGGCAAGGCGGCACACCCGCTTTTCACGCCCTTTTTGTGTTCTGTTTT TTTTAAGCAGGAAAAAGCATGGTTCTTCCGGAATCTTTCAAATTGTTCTT AAACAAATCTATTCTAGGCGATTGCATTTAAATCAGGCCTTTAATCCATC GGCCGTTTTGCTTGTATGACGGAGAATAAGAAGGTGGAATTACTTGAAAT TAGTGTAAAAATAAAGTTTGTGTATCTAAATCGAAAATAAAACGGCCGAT GGAGGAAAGGCCTAAATTTAAATCGAGGCTCCCTTTTTCTTGCCTCTTCC ATTGACATTATTTTCCTGACTGTGAACATGTCTTCAATGGACTTGTTTTG CACACTCTTTGCCCACTAATGTGTTTGCTTGAAATGATGGACATCGAAAC GGGCTCCTGGCAATAAACAGTGTGCATGGACTATTGTAGAGATTGTAAAC CCTTGACTCAACGATTCATGTGCTTGTGAAATACGAACAGACAAAAGCTG ATGATGGCTTCATCGTGAAGTTGGAAACCTTTACTCCGTATGTGTTTTGG GCGAGCTTTCTCGTGAGCGGACATCAATCAGTTGAACAAAATGTTTTATC AAAGCGACAAACTCGACCATCTGCCATCCAAACTTCGTTGCAAATGGCAA ATGGTGACATCAACTTGCAAAAAACGGGAAATTGTCTCTTGGTGTTTTCG CGAGCGACGTGTCGCGTTTTGTGAACGAAGTTTGGCCTACGCGAATACTC TTTCTGCTCTCGAGTCCGGTGCTCCCCACAACCTTGGTCGACCGTCCGCG GTGTTCATGCCGACCCTGAAACGAGCACGAAAGAAGTTACCTGCGCCCCC CTTCGAATTATGTTGCATATTTTTGACACAATTGCATGTTGCATACTTTT GACAAATTTGCATCTGATGAAAAGTGTGTATATGGATGCATCACTTGCGG GCGGACGTGTTTTCTAGCGGCACTAACTGAAAGAGAGAATTTCCGTCACT TGTTCCGATTCGCTGCACGTCCGGCGGATCAACCAGACAGTGCAGAAGAG GATCGCCAAAGAAAGAGCGAAACGAGAGCAAGAGAAGAAACTGGCCAAGT TGCTTGGGGTCAAGGCGGGCAGAGGAAGAGGGAGAGGGAGAGGGAGATAG CTTCTCATTTGATCACTCGACTTCGGGCGTTCTCTTAGCTTTGATTTGCA ATTTCAGTCCGCTGATGACCCTCTATTTTGGAGGGAGGTGTTGTCAATGC TCATACGTTCATAATTTCGAACGAGGATGCGCTGAATCCGCACGGAAGGC TACGTGATGTATCTTGTACTGTAATGTCACAGGTCACGAGCACGACGAGC CTTCTGAAGCC
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Coding sequence (CDS) from alignment at P-fluviatile_contig15:2034496..2048556-

>mRNA_P-fluviatile_contig15.2524.1 ID=mRNA_P-fluviatile_contig15.2524.1|Name=mRNA_P-fluviatile_contig15.2524.1|organism=Porterinema fluviatile SAG_2381|type=CDS|length=2340bp|location=Sequence derived from alignment at P-fluviatile_contig15:2034496..2048556- (Porterinema fluviatile SAG_2381)
ATGCCGAGACCCCGCGGTTCTAGTGAAGAAAGTGGTAATAGCAGCAGCAG
GACGAGCGGGTCGGGCAGCTCATCTTTGACCTCCCGTAGCGAGGGTGACG
GACGAGCAACCGAAGATAGCGGATCTTTATTGTCGAGCGGCAACAGCGCT
AGCATCAGCCCCCGAGAGCTTGAAGGATATGAATCGAGAAAGAGCAGCGC
TTCTACGTCCGCTTCAAGATATACCAGCCGGACGAGCGGATCAGGAAGCT
CATCATCGACCTCCGGTAGTGATGATGGTGGAGGCGACAACTTGAAAAAT
CGGATGAAAGACCTTTTCATTAAACCAACACCACCGGTGGCTGAGGTAGA
ACAGATTGGGGGGCTTCAGGGCAGATGCCGAGACCCCGCGGTTCTAGTGA
AGAAAGTGGTAATAGCAGCAGCAGGACGAGCGGGTCGGGCAGCTCATCTT
TGACCTCCCGTAGCGAGGGTGACGGACGAGCAACCGAAGATAGCGGATCT
TTATTGTCGAGCGGCAACAGCGCTAGCATCAGCCCCCGAGAGCTTGAAGG
ATATGAATCGAGAAAGAGCAGCGCTTCTACGTCCGCTTCAAGATATACCA
GCCGGACGAGCGGATCAGGAAGCTCATCATCGACCTCCGGTAGTGATGAT
GGTGGAGGCGACAACTTGAAAAATCGGATGAAAGACCTTTTCATTAAACC
AACACCACCGGTGGCTGAGGTAGAACAGATTGGGGGGCTTCAGGGCAGGA
TAGATGCGAAGCTCTTGGAGGAGGTACAGGAGTACGACGCGGTGCCATCC
GAGGCGGCCTCCTACGGGAAGATTGCCTTTTGGGACGAACGTTACGCCGC
CGACGAAGAGGATAGATGCGAAGCTCTTGGAGGAGGTACAGGAGTACGAC
GCGGTGCCATCCGAGGCGGCCTCCTACGGGAAGATTGCCTTTTGGGACGA
ACGTTACGCCGCCGACGAAGAGGTGGTTGACTGGTACCACTCGTGGGCCA
ACCTGGCCCCAACCCTGACTCAGTATATGGACGAACAAGACGACGTGTTG
GTGTGCGGTTGCGGAAATTCTGAGATGAGCGTCGACATGTTTGACGATGG
TGGTTGACTGGTACCACTCGTGGGCCAACCTGGCCCCAACCCTGACTCAG
TATATGGACGAACAAGACGACGTGTTGGTGTGCGGTTGCGGAAATTCTGA
GATGAGCGTCGACATGTTTGACGATGGGTTCGAGAACATCGTGAACGTGG
ACATATCCAGGGTGGCCATTCACCAGATGGCCGAAACCTACAAAGCTTAC
CCCATGAAATGGTTCGAGAACATCGTGAACGTGGACATATCCAGGGTGGC
CATTCACCAGATGGCCGAAACCTACAAAGCTTACCCCATGAAATGGAAAT
CGATTGATCTCACCCGCGAGGAGTTCCCTGAAGCGGAGTTTGACGTCGCC
TTGGATAAAGCGTGCCTCGATTCCATCGCGTGCAGCCCTCACGGGGCATC
AAAGGTTCGAGACTATCTTCAACAGATGGACAGGGAAATCGATTGATCTC
ACCCGCGAGGAGTTCCCTGAAGCGGAGTTTGACGTCGCCTTGGATAAAGC
GTGCCTCGATTCCATCGCGTGCAGCCCTCACGGGGCATCAAAGGTTCGAG
ACTATCTTCAACAGATGGACAGATTGCTCCAGCCAGAAGGAGCTTTCATT
TGTGTGTCCTTCGCTCCCCCAGAAGAGCGCCTGGAGCTCTTGGAATACTG
GGATATAGACGTACCAGCAAAGTGCCTGGCTTGGGACGTTCACGTTGATG
CGATCGATTGCTCCAGCCAGAAGGAGCTTTCATTTGTGTGTCCTTCGCTC
CCCCAGAAGAGCGCCTGGAGCTCTTGGAATACTGGGATATAGACGTACCA
GCAAAGTGCCTGGCTTGGGACGTTCACGTTGATGCGATCGCGAAGCCAGC
ATTGAAGCTGCGGCGGGGGGCTGAAAGCGACGGTGACGTCTACTACATAT
ACGTGTGTATCAAGGATCCCAGCAAGCGAAGCCAGCATTGAAGCTGCGGC
GGGGGGCTGAAAGCGACGGTGACGTCTACTACATATACGTGTGTATCAAG
GATCCCAGCAAGACAGTGCAGAAGAGGATCGCCAAAGAAAGAGCGAAACG
AGAGCAAGAGAAGAAACTGGCCAAGTTGCTTGGGGTCAAGGCGGGCAGAG
GAAGAGGGAGAGGGAGAGGGAGATAGACAGTGCAGAAGAGGATCGCCAAA
GAAAGAGCGAAACGAGAGCAAGAGAAGAAACTGGCCAAGTTGCTTGGGGT
CAAGGCGGGCAGAGGAAGAGGGAGAGGGAGAGGGAGATAG
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