mRNA_P-fluviatile_contig1.4.1 (mRNA) Porterinema fluviatile SAG_2381

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

Overview
NamemRNA_P-fluviatile_contig1.4.1
Unique NamemRNA_P-fluviatile_contig1.4.1
TypemRNA
OrganismPorterinema fluviatile SAG_2381 (Porterinema fluviatile SAG_2381)
Homology
BLAST of mRNA_P-fluviatile_contig1.4.1 vs. uniprot
Match: D7FS91_ECTSI (Uncharacterized protein n=1 Tax=Ectocarpus siliculosus TaxID=2880 RepID=D7FS91_ECTSI)

HSP 1 Score: 302 bits (774), Expect = 1.360e-95
Identity = 169/272 (62.13%), Postives = 188/272 (69.12%), Query Frame = 1
Query:  337 GSLNMVASGSGSRSSTLMGIMKDQTRVDESAAVSAPPSPSLRPLLPAERGINTAMNSFNAGVVNVLKGLMIQYYGERTYARFYALETIARVPYFGYLCVLHLYETLGQWRQAEYLKVHFAESYNELHHLLIMEELGGNLLFRDRWFAQHAAFFYXXXXVVLYLSNPRNAYNLNQHVEEHAFSTYDKFLTENEEELRQQPAPKIAAKYYGQDKLYVFNGLHDDNAPGGLTFEERDLARPVITNLFDTFVAVRNDEWEHVKTMKAMQEDVSSER 1152
            G L MVAS     +     ++ +Q+    S + +   SP  RP LPAER +N  MN FNAGVV+ LKGLM+QYYGERTYARFYALETIARVPYFGYLCVLHLYETLG+WRQAEYLKVHFAESYNELHHLLIMEELGGN+LFRDRWFAQHAAFFY    V LYLSNPRNAYNLNQHVEEHAFSTYD FL++N+E L+QQPAP+ +                     G L                     VRNDEWEHVKTMKAMQ DV  +R
Sbjct:   29 GRLGMVASNPMDVAPKGRPLLDEQSPTSASDSSATVVSPG-RPRLPAERNVNAFMNDFNAGVVDFLKGLMVQYYGERTYARFYALETIARVPYFGYLCVLHLYETLGKWRQAEYLKVHFAESYNELHHLLIMEELGGNVLFRDRWFAQHAAFFYFFVVVGLYLSNPRNAYNLNQHVEEHAFSTYDSFLSDNQEALKQQPAPEASL--------------------GCL---------------------VRNDEWEHVKTMKAMQLDVPPQR 258          
BLAST of mRNA_P-fluviatile_contig1.4.1 vs. uniprot
Match: A0A835Z1V4_9STRA (Putative alternative oxidase n=1 Tax=Tribonema minus TaxID=303371 RepID=A0A835Z1V4_9STRA)

HSP 1 Score: 288 bits (736), Expect = 4.590e-90
Identity = 143/226 (63.27%), Postives = 168/226 (74.34%), Query Frame = 1
Query:  478 ERGINTAMNSFNAGVVNVLKGLMIQYYGERTYARFYALETIARVPYFGYLCVLHLYETLGQWRQAEYLKVHFAESYNELHHLLIMEELGGNLLFRDRWFAQHAAFFYXXXXVVLYLSNPRNAYNLNQHVEEHAFSTYDKFLTENEEELRQQPAPKIAAKYYGQDKLYVFNGLHDDNAPGGLTFEERDLARPVITNLFDTFVAVRNDEWEHVKTMKAMQEDVSSERR 1155
            +  + T   S N  +V  LKGL+  YYG+R YARFYALETIARVPYF YL VLHLYETLG WRQA+YLK+HFAES+NELHHLLIMEELGGN  F DRW AQH AFFY     VLY++NP+NAYNLNQHVEEHAF+TYDKFL  + +EL+  PA  +A +YY +DKLYVFNGLH+ N      F+E D ARP +  L+D F  +RNDE EHVKTM AMQ+  +   R
Sbjct:   13 DAAVRTEGGSINKTLVGFLKGLLDTYYGQRDYARFYALETIARVPYFSYLSVLHLYETLGWWRQADYLKIHFAESWNELHHLLIMEELGGNDKFFDRWLAQHTAFFYYWFVCVLYITNPQNAYNLNQHVEEHAFATYDKFLKAHGQELKNAPATPVAKQYYRKDKLYVFNGLHNSNQD----FDELDQARPEVETLYDVFQCIRNDEAEHVKTMAAMQDQAAERAR 234          
BLAST of mRNA_P-fluviatile_contig1.4.1 vs. uniprot
Match: B8CC74_THAPS (Uncharacterized protein n=1 Tax=Thalassiosira pseudonana TaxID=35128 RepID=B8CC74_THAPS)

HSP 1 Score: 230 bits (587), Expect = 2.260e-67
Identity = 125/225 (55.56%), Postives = 155/225 (68.89%), Query Frame = 1
Query:  487 INTAMNSFNAGVVNVLKGLMIQ--YYGE-RTYARFYALETIARVPYFGYLCVLHLYETLGQWRQAEYLKVHFAESYNELHHLLIMEELGGNLLFRDRWFAQHAAFFYXXXXVVLYLSNPRNAYNLNQHVEEHAFSTYDKFLTENEEELRQQPAPKIAAKYYGQDKLYVFNGLHDDNAPGGLTFEERDLARPVITNLFDTFVAVRNDEWEHVKTMKAMQE--DVSS 1146
            ++ ++   N   +  LKG +    + GE R YARFYALETIARVPYF YL VLHLYETLG+WR+ +YLK+HFAES+NE+HHLLIMEELGG+  F DR+ AQH AF Y    + LYL NP  AYNLNQ VEEHAF+TYD FL EN E L+ +PAPK+A +YY    +Y+F+              E +L RP I NL+D FVA+R+DE  HVKTM+ +Q   DVSS
Sbjct:   66 LSDSVKEANRFAIGFLKGTIFDTFFVGEDRAYARFYALETIARVPYFSYLSVLHLYETLGKWRRVKYLKLHFAESWNEMHHLLIMEELGGSERFFDRFLAQHCAFGYFLIVITLYLINPVQAYNLNQDVEEHAFATYDTFLKENAEMLKTKPAPKVAIEYYRHGDMYMFDEFQT----------ECELRRPEINNLYDVFVAIRDDEMAHVKTMEKLQTELDVSS 280          
BLAST of mRNA_P-fluviatile_contig1.4.1 vs. uniprot
Match: K0SXL9_THAOC (Uncharacterized protein n=1 Tax=Thalassiosira oceanica TaxID=159749 RepID=K0SXL9_THAOC)

HSP 1 Score: 228 bits (580), Expect = 9.160e-67
Identity = 122/221 (55.20%), Postives = 152/221 (68.78%), Query Frame = 1
Query:  487 INTAMNSFNAGVVNVLKGLMIQYYGE---RTYARFYALETIARVPYFGYLCVLHLYETLGQWRQAEYLKVHFAESYNELHHLLIMEELGGNLLFRDRWFAQHAAFFYXXXXVVLYLSNPRNAYNLNQHVEEHAFSTYDKFLTENEEELRQQPAPKIAAKYYGQDKLYVFNGLHDDNAPGGLTFEERDLARPVITNLFDTFVAVRNDEWEHVKTMKAMQEDV 1140
            I+ A+   N   ++ LK  +   + E   R YARFYALETIARVPYF YL VLHLYETLG+WR+A+YLK+HFAES+NELHHLLIMEELGG+  F DR+ AQH AF Y    ++LY+ NP  AYNLNQ VEEHAF TYDK+L +NEE+L+  PAPK A  YY    +Y+F     D    G  F      RP I NL+D FVA+R+DE  HV+TM+ +Q ++
Sbjct:   36 ISDALKELNKSSIDFLKSTVFDSFFEGEDRAYARFYALETIARVPYFSYLSVLHLYETLGKWRRAKYLKLHFAESWNELHHLLIMEELGGSERFLDRFLAQHIAFGYYAVVILLYVLNPVQAYNLNQDVEEHAFETYDKYLKDNEEKLKNLPAPKAAIDYYVDGDMYMF-----DEFQTGCEFR-----RPKIENLYDVFVAIRDDEAAHVQTMEQLQTEL 246          
BLAST of mRNA_P-fluviatile_contig1.4.1 vs. uniprot
Match: A0A7S2R6W0_9STRA (Hypothetical protein n=1 Tax=Eucampia antarctica TaxID=49252 RepID=A0A7S2R6W0_9STRA)

HSP 1 Score: 224 bits (571), Expect = 6.050e-65
Identity = 128/217 (58.99%), Postives = 150/217 (69.12%), Query Frame = 1
Query:  499 MNSFNAGVVNVLKGLMIQ--YYG-ERTYARFYALETIARVPYFGYLCVLHLYETLGQWRQAEYLKVHFAESYNELHHLLIMEELGGNLLFRDRWFAQHAAFFYXXXXVVLYLSNPRNAYNLNQHVEEHAFSTYDKFLTENEEELRQQPAPKIAAKYYGQDKLYVFNGLHDDNAPGGLTFEERDLARPVITNLFDTFVAVRNDEWEHVKTMKAMQEDV 1140
            M  FN   V  LKG +    + G +R YARFYALETIARVPYF YL VLHLYETLG+WR+A Y+K+HFAES+NE+HHLLIMEELGG   F DR+ AQH A  Y    V LY+ NP  AYNLNQ +EEHAFSTYD F+ EN EEL + PAP IA +YY    LY+F    D+   G  T E R   RP +  L+D FVA+R+DE EHVKTM  +QEDV
Sbjct:   72 MKEFNKFTVGFLKGSIFDNIFKGKDRDYARFYALETIARVPYFSYLSVLHLYETLGKWRKANYIKIHFAESWNEMHHLLIMEELGGADNFFDRFLAQHIAVVYYWIVVCLYIWNPIMAYNLNQAIEEHAFSTYDVFVKENPEELGKYPAPAIAKEYYRDGDLYMF----DEFQTG--TCEPR---RPKMVTLYDCFVAIRDDEAEHVKTMAYLQEDV 279          
BLAST of mRNA_P-fluviatile_contig1.4.1 vs. uniprot
Match: A0A7S1GJA0_CYCTE (Hypothetical protein n=1 Tax=Cyclophora tenuis TaxID=216820 RepID=A0A7S1GJA0_CYCTE)

HSP 1 Score: 222 bits (565), Expect = 5.010e-64
Identity = 124/221 (56.11%), Postives = 148/221 (66.97%), Query Frame = 1
Query:  487 INTAMNSFNAGVVNVLKGLMIQ--YYGE-RTYARFYALETIARVPYFGYLCVLHLYETLGQWRQAEYLKVHFAESYNELHHLLIMEELGGNLLFRDRWFAQHAAFFYXXXXVVLYLSNPRNAYNLNQHVEEHAFSTYDKFLTENEEELRQQPAPKIAAKYYGQDKLYVFNGLHDDNAPGGLTFEERDLARPVITNLFDTFVAVRNDEWEHVKTMKAMQEDV 1140
            +   M  FN   V  +K L     + GE R +ARFYALETIARVPYF YL VLHLYET+G+WRQA YLK+HFAES+NELHHLLIMEELGG   + DR+ AQH A  Y      LYL NP  AYN+N  +EEHAF TYD+FL ++EEEL+ Q AP IA +YY    LY+F+ +         T E R   RP I NL+D FVA+R+DE EHVKTM  +Q DV
Sbjct:   68 LGNEMQEFNKQAVGFVKNLFFDSVFSGEGRDFARFYALETIARVPYFSYLSVLHLYETIGRWRQANYLKIHFAESWNELHHLLIMEELGGADRWFDRFVAQHVAVGYYWVVAFLYLYNPTLAYNINHAIEEHAFLTYDQFLKDHEEELKNQAAPTIAKEYYRDGDLYMFDEMQTG------TCEPR---RPEIKNLYDVFVAIRDDEAEHVKTMAFLQTDV 279          
BLAST of mRNA_P-fluviatile_contig1.4.1 vs. uniprot
Match: UPI00201FF935 (hypothetical protein n=1 Tax=Chroococcidiopsis sp. CCMEE 29 TaxID=155894 RepID=UPI00201FF935)

HSP 1 Score: 218 bits (555), Expect = 2.680e-63
Identity = 114/210 (54.29%), Postives = 147/210 (70.00%), Query Frame = 1
Query:  520 VVNVLKGLMIQYYGERTYARFYALETIARVPYFGYLCVLHLYETLGQWRQAEYLKVHFAESYNELHHLLIMEELGGNLLFRDRWFAQHAAFFYXXXXVVLYLSNPRNAYNLNQHVEEHAFSTYDKFLTENEEELRQQPAPKIAAKYYGQDKLYVFNGLHDDNAPGGLTFEERDLARPVITNLFDTFVAVRNDEWEHVKTMKAMQEDVSSE 1149
            +VN L+ L+  +Y  R Y RF+ LET+ARVPYF Y  VLHLYET+G WR+A++LKVHFAES+NELHHLLI E LGG+  + DR+ A   AF Y    V++Y+ +PR+AYN  Q VEEHA+ TYD FL E+ EEL+  PAP+IA KYY +  LY+F+     + P     +ER   RP+I NL+D FVA+R+DE EHVKTM A Q+  S E
Sbjct:    5 LVNFLEALLNTFYRSRLYPRFFVLETVARVPYFAYTSVLHLYETMGWWRKADWLKVHFAESWNELHHLLIAESLGGSRYWIDRFVAHTGAFVYYWIIVLVYIFSPRSAYNFMQQVEEHAYHTYDAFLKEHGEELKTLPAPEIAIKYYREGDLYMFDEFQTTHPP-----QER---RPIIQNLYDVFVAIRDDELEHVKTMIACQQPDSQE 206          
BLAST of mRNA_P-fluviatile_contig1.4.1 vs. uniprot
Match: A0A6S9CEJ6_9STRA (Hypothetical protein n=2 Tax=Ditylum brightwellii TaxID=49249 RepID=A0A6S9CEJ6_9STRA)

HSP 1 Score: 220 bits (561), Expect = 3.110e-63
Identity = 121/221 (54.75%), Postives = 148/221 (66.97%), Query Frame = 1
Query:  487 INTAMNSFNAGVVNVLKGLM--IQYYGE-RTYARFYALETIARVPYFGYLCVLHLYETLGQWRQAEYLKVHFAESYNELHHLLIMEELGGNLLFRDRWFAQHAAFFYXXXXVVLYLSNPRNAYNLNQHVEEHAFSTYDKFLTENEEELRQQPAPKIAAKYYGQDKLYVFNGLHDDNAPGGLTFEERDLARPVITNLFDTFVAVRNDEWEHVKTMKAMQEDV 1140
            +N  +  FN  +V  +K ++  I Y GE R YARFYALETIAR PYF YL  LH YET G WR+A YLK+HFAE +NELHHLLIMEELGG   + DR+ AQH A  Y    + +Y  NP  AYNLNQ VEEHA++TYD+FL +    L++QPAP++A  YY    LY+F+    D      T E R   RPVI NL+D FVA+R+DE EHVKTMK +Q DV
Sbjct:   86 LNEDIEEFNRNIVGFIKKIVFDILYRGEGREYARFYALETIAREPYFAYLGALHFYETAGVWRKANYLKIHFAEEWNELHHLLIMEELGGADKWIDRFIAQHIAVAYYWIVLAMYFYNPTLAYNLNQAVEEHAYATYDQFLNKYSAGLKEQPAPQVALDYYRDGDLYMFDEFQTD------TCESR---RPVINNLYDVFVAIRDDEAEHVKTMKLLQADV 297          
BLAST of mRNA_P-fluviatile_contig1.4.1 vs. uniprot
Match: UPI001684229E (plastoquinol terminal oxidase n=1 Tax=Leptolyngbya sp. FACHB-261 TaxID=2692806 RepID=UPI001684229E)

HSP 1 Score: 217 bits (552), Expect = 4.030e-63
Identity = 114/205 (55.61%), Postives = 143/205 (69.76%), Query Frame = 1
Query:  520 VVNVLKGLMIQYYGERTYARFYALETIARVPYFGYLCVLHLYETLGQWRQAEYLKVHFAESYNELHHLLIMEELGGNLLFRDRWFAQHAAFFYXXXXVVLYLSNPRNAYNLNQHVEEHAFSTYDKFLTENEEELRQQPAPKIAAKYYGQDKLYVFNGLHDDNAPGGLTFEERDLARPVITNLFDTFVAVRNDEWEHVKTMKAMQE 1134
            V+NVL       Y +R + RFY LET+ARVPYFG+L VLHLYETLG WR+A++LKVHFAES+NELHHLLIME LGGN  + DR+ AQHAA  Y    V LY+ +PR+AY+  + +EEHAF TYD+FL  NE +L+ QPAP++A  YY    LY+F+     + PG          RPVI  L+DTFV +R+DE EHVKTM A Q+
Sbjct:   12 VINVL-------YRDRPFPRFYVLETVARVPYFGFLSVLHLYETLGAWRKADWLKVHFAESWNELHHLLIMESLGGNQKWVDRFLAQHAALVYYWIVVGLYILSPRSAYHFMELIEEHAFHTYDEFLKLNEADLKTQPAPQVAIDYYRDGDLYMFDEFQSCSVPGD--------RRPVIETLYDTFVNIRDDEAEHVKTMVACQQ 201          
BLAST of mRNA_P-fluviatile_contig1.4.1 vs. uniprot
Match: A0A252DRM1_9NOSO (Plastoquinol terminal oxidase n=3 Tax=unclassified Nostoc TaxID=2593658 RepID=A0A252DRM1_9NOSO)

HSP 1 Score: 217 bits (552), Expect = 5.200e-63
Identity = 119/239 (49.79%), Postives = 155/239 (64.85%), Query Frame = 1
Query:  520 VVNVLKGLMIQYYGERTYARFYALETIARVPYFGYLCVLHLYETLGQWRQAEYLKVHFAESYNELHHLLIMEELGGNLLFRDRWFAQHAAFFYXXXXVVLYLSNPRNAYNLNQHVEEHAFSTYDKFLTENEEELRQQPAPKIAAKYYGQDKLYVFNGLHDDNAPGGLTFEERDLARPVITNLFDTFVAVRNDEWEHVKTMKAMQEDVSSERRP*RGMEFIGYILVDGTKIRCVKSMIGN 1236
            +V+VL  ++   Y +R Y RFY LET+ARVPYF YL VLHLYETLG WR+A++LKVHFAES+NELHHLLIME LGG   + DR+ A+  A  Y    V LY+ +PR+AY+  + VEEHA+S+Y KFLT+NE EL+ QPAP+IA  YY    LY+F+     + P      ER   RP I NL+D FVA+R+DE EHVKTM A Q+  +        + F     ++   +   KS +GN
Sbjct:    5 LVSVLVFVVNTIYRDRPYPRFYVLETVARVPYFSYLSVLHLYETLGFWRKADWLKVHFAESWNELHHLLIMESLGGAAFWGDRFLAKTTALVYYWIIVALYMISPRSAYHFMELVEEHAYSSYHKFLTDNETELKAQPAPEIAISYYRNGDLYLFDEFQTSHTPA-----ER---RPAIDNLYDVFVAIRDDEMEHVKTMVACQKSNAQ-------LSFKSPHSLEAETVMLEKSAVGN 228          
The following BLAST results are available for this feature:
BLAST of mRNA_P-fluviatile_contig1.4.1 vs. uniprot
Analysis Date: 2022-09-19 (Diamond blastx: OGS1.0 vs UniRef90)
Total hits: 25
Match NameE-valueIdentityDescription
D7FS91_ECTSI1.360e-9562.13Uncharacterized protein n=1 Tax=Ectocarpus silicul... [more]
A0A835Z1V4_9STRA4.590e-9063.27Putative alternative oxidase n=1 Tax=Tribonema min... [more]
B8CC74_THAPS2.260e-6755.56Uncharacterized protein n=1 Tax=Thalassiosira pseu... [more]
K0SXL9_THAOC9.160e-6755.20Uncharacterized protein n=1 Tax=Thalassiosira ocea... [more]
A0A7S2R6W0_9STRA6.050e-6558.99Hypothetical protein n=1 Tax=Eucampia antarctica T... [more]
A0A7S1GJA0_CYCTE5.010e-6456.11Hypothetical protein n=1 Tax=Cyclophora tenuis Tax... [more]
UPI00201FF9352.680e-6354.29hypothetical protein n=1 Tax=Chroococcidiopsis sp.... [more]
A0A6S9CEJ6_9STRA3.110e-6354.75Hypothetical protein n=2 Tax=Ditylum brightwellii ... [more]
UPI001684229E4.030e-6355.61plastoquinol terminal oxidase n=1 Tax=Leptolyngbya... [more]
A0A252DRM1_9NOSO5.200e-6349.79Plastoquinol terminal oxidase n=3 Tax=unclassified... [more]

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Alignments
The following features are aligned
Aligned FeatureFeature TypeAlignment Location
P-fluviatile_contig1contigP-fluviatile_contig1:41590..54250 +
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 score304.7
Seed ortholog evalue5.8e-80
Seed eggNOG ortholog2880.D7FS91
KEGG rclassRC00061
KEGG koko:K17893
KEGG ReactionR09504
GOsGO:0003674,GO:0003824,GO:0005575,GO:0005622,GO:0005623,GO:0006629,GO:0006720,GO:0006721,GO:0006996,GO:0008150,GO:0008152,GO:0008299,GO:0008610,GO:0009058,GO:0009579,GO:0009657,GO:0009916,GO:0009987,GO:0016043,GO:0016108,GO:0016109,GO:0016114,GO:0016116,GO:0016117,GO:0016491,GO:0016679,GO:0016682,GO:0042440,GO:0044237,GO:0044238,GO:0044249,GO:0044255,GO:0044424,GO:0044464,GO:0046148,GO:0055114,GO:0071704,GO:0071840,GO:1901576
EggNOG free text desc.ubiquinol:oxygen oxidoreductase activity
EggNOG OGs2CMS2@1,2QRMM@2759
EC1.10.3.11
COG Functional cat.C
Best tax levelEukaryota
Best eggNOG OGNA|NA|NA
BRITEko00000,ko01000
Hectar predicted targeting categorysignal peptide
Ec32 ortholog descriptionAlternative oxidase
Ec32 orthologEc-05_004910.1
Exons8
Model size1825
Cds size1083
Stop1
Start1
Relationships

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

Feature NameUnique NameSpeciesTypePosition
mRNA_P-fluviatile_contig1.4.1prot_P-fluviatile_contig1.4.1Porterinema fluviatile SAG_2381polypeptideP-fluviatile_contig1 41668..53586 +


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

Feature NameUnique NameSpeciesTypePosition
1622815271.7468827-UTR-P-fluviatile_contig1:41589..416671622815271.7468827-UTR-P-fluviatile_contig1:41589..41667Porterinema fluviatile SAG_2381UTRP-fluviatile_contig1 41590..41667 +
1693561324.3507352-UTR-P-fluviatile_contig1:41589..416671693561324.3507352-UTR-P-fluviatile_contig1:41589..41667Porterinema fluviatile SAG_2381UTRP-fluviatile_contig1 41590..41667 +
1622815271.8507602-UTR-P-fluviatile_contig1:53586..542501622815271.8507602-UTR-P-fluviatile_contig1:53586..54250Porterinema fluviatile SAG_2381UTRP-fluviatile_contig1 53587..54250 +
1693561324.587341-UTR-P-fluviatile_contig1:53586..542501693561324.587341-UTR-P-fluviatile_contig1:53586..54250Porterinema fluviatile SAG_2381UTRP-fluviatile_contig1 53587..54250 +


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

Feature NameUnique NameSpeciesTypePosition
1622815271.7566707-CDS-P-fluviatile_contig1:41667..419211622815271.7566707-CDS-P-fluviatile_contig1:41667..41921Porterinema fluviatile SAG_2381CDSP-fluviatile_contig1 41668..41921 +
1693561324.430669-CDS-P-fluviatile_contig1:41667..419211693561324.430669-CDS-P-fluviatile_contig1:41667..41921Porterinema fluviatile SAG_2381CDSP-fluviatile_contig1 41668..41921 +
1622815271.7649992-CDS-P-fluviatile_contig1:45969..461751622815271.7649992-CDS-P-fluviatile_contig1:45969..46175Porterinema fluviatile SAG_2381CDSP-fluviatile_contig1 45970..46175 +
1693561324.4455383-CDS-P-fluviatile_contig1:45969..461751693561324.4455383-CDS-P-fluviatile_contig1:45969..46175Porterinema fluviatile SAG_2381CDSP-fluviatile_contig1 45970..46175 +
1622815271.773843-CDS-P-fluviatile_contig1:46612..467431622815271.773843-CDS-P-fluviatile_contig1:46612..46743Porterinema fluviatile SAG_2381CDSP-fluviatile_contig1 46613..46743 +
1693561324.5068681-CDS-P-fluviatile_contig1:46612..467431693561324.5068681-CDS-P-fluviatile_contig1:46612..46743Porterinema fluviatile SAG_2381CDSP-fluviatile_contig1 46613..46743 +
1622815271.7834768-CDS-P-fluviatile_contig1:47557..476551622815271.7834768-CDS-P-fluviatile_contig1:47557..47655Porterinema fluviatile SAG_2381CDSP-fluviatile_contig1 47558..47655 +
1693561324.521803-CDS-P-fluviatile_contig1:47557..476551693561324.521803-CDS-P-fluviatile_contig1:47557..47655Porterinema fluviatile SAG_2381CDSP-fluviatile_contig1 47558..47655 +
1622815271.7990398-CDS-P-fluviatile_contig1:48220..483111622815271.7990398-CDS-P-fluviatile_contig1:48220..48311Porterinema fluviatile SAG_2381CDSP-fluviatile_contig1 48221..48311 +
1693561324.5304132-CDS-P-fluviatile_contig1:48220..483111693561324.5304132-CDS-P-fluviatile_contig1:48220..48311Porterinema fluviatile SAG_2381CDSP-fluviatile_contig1 48221..48311 +
1622815271.8101897-CDS-P-fluviatile_contig1:50296..503801622815271.8101897-CDS-P-fluviatile_contig1:50296..50380Porterinema fluviatile SAG_2381CDSP-fluviatile_contig1 50297..50380 +
1693561324.5379076-CDS-P-fluviatile_contig1:50296..503801693561324.5379076-CDS-P-fluviatile_contig1:50296..50380Porterinema fluviatile SAG_2381CDSP-fluviatile_contig1 50297..50380 +
1622815271.8233762-CDS-P-fluviatile_contig1:51081..512221622815271.8233762-CDS-P-fluviatile_contig1:51081..51222Porterinema fluviatile SAG_2381CDSP-fluviatile_contig1 51082..51222 +
1693561324.554229-CDS-P-fluviatile_contig1:51081..512221693561324.554229-CDS-P-fluviatile_contig1:51081..51222Porterinema fluviatile SAG_2381CDSP-fluviatile_contig1 51082..51222 +
1622815271.836116-CDS-P-fluviatile_contig1:53508..535861622815271.836116-CDS-P-fluviatile_contig1:53508..53586Porterinema fluviatile SAG_2381CDSP-fluviatile_contig1 53509..53586 +
1693561324.5733032-CDS-P-fluviatile_contig1:53508..535861693561324.5733032-CDS-P-fluviatile_contig1:53508..53586Porterinema fluviatile SAG_2381CDSP-fluviatile_contig1 53509..53586 +


Sequences
The following sequences are available for this feature:

protein sequence of mRNA_P-fluviatile_contig1.4.1

>prot_P-fluviatile_contig1.4.1 ID=prot_P-fluviatile_contig1.4.1|Name=mRNA_P-fluviatile_contig1.4.1|organism=Porterinema fluviatile SAG_2381|type=polypeptide|length=361bp
MTQNACVRRSLALRAAAALSILLLSPSPNQRASAFSLQLPRTTAARLREG
RDAGGSGRPLKAAYCGVRRKPSDDVGDRGFRRSAGMGSLNMVASGSGSRS
STLMGIMKDQTRVDESAAVSAPPSPSLRPLLPAERGINTAMNSFNAGVVN
VLKGLMIQYYGERTYARFYALETIARVPYFGYLCVLHLYETLGQWRQAEY
LKVHFAESYNELHHLLIMEELGGNLLFRDRWFAQHAAFFYFFVVVVLYLS
NPRNAYNLNQHVEEHAFSTYDKFLTENEEELRQQPAPKIAAKYYGQDKLY
VFNGLHDDNAPGGLTFEERDLARPVITNLFDTFVAVRNDEWEHVKTMKAM
QEDVSSERRP*
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mRNA from alignment at P-fluviatile_contig1:41590..54250+

Legend: UTRpolypeptideCDS
Hold the cursor over a type above to highlight its positions in the sequence below.
>mRNA_P-fluviatile_contig1.4.1 ID=mRNA_P-fluviatile_contig1.4.1|Name=mRNA_P-fluviatile_contig1.4.1|organism=Porterinema fluviatile SAG_2381|type=mRNA|length=12661bp|location=Sequence derived from alignment at P-fluviatile_contig1:41590..54250+ (Porterinema fluviatile SAG_2381)
CATCAAGCTTCGATTCGACTGCCGCCCCACACAACCTCATCTCCCTCTTG TGTATCTCTCCTCCACTGCTCAATAAAAATGACTCAGAACGCTTGCGTGC GTCGTTCACTAGCTTTGCGAGCGGCTGCAGCGCTGTCTATCCTCCTCCTA TCCCCGTCACCAAACCAGAGAGCTTCCGCTTTCTCCTTGCAGCTTCCGCG GACGACGGCAGCGAGACTCCGGGAGGGACGGGACGCAGGAGGGAGTGGCA GGCCATTGAAAGCAGCCTACTGCGGGGTACGGCGGAAACCTTCTGATGAT GTGGGAGATCGCGGATTTAGAAGGAGCGCCGGGTGAGTGGAGGCGGAGTG GATGTCGCCGAGCGGTGTCTTGCTTGCAGAAGAAGAGAATGACAGAGCAA AGCGAGGAAGAGAGAGCGACCCCTCTCAGGGAGGGAGCCTCGACGGAGTG GTAGATGGCGTACGTGGGACGTATGAAGTCGGTGATGGCACGTGGCCGAT GAGCTCTACGTACATCGATACGCCTATTCGCTTTCCCACACCACGAATGC TGTTGCAAATGCGCGACTTGTTTCCGTGGAAAGATTGGAAAGATCATGCA CCCCAACAGAAACGGCCCATACCGTCCGGCGGTATCGTTGCCACGCGCGG CGGCGGCGGCGCGTCGATAACCAACCGCTGTCCTCGACGTCTGGCGTGTC GGCTGGGCAACTTCATCGACCGTGCATTCCACTTCGATATTCCCATTTGC TTCTTCGTAGGCTCGCGGGAAGTGCGGGATGTGTACGAGGTGTGGTCTGA AAGTTGTTGTTGATGTTTACGCTGAACCGCAACATTCCCTCTCGCCGGGG GCACCGGAGCCGCGTCCCACTCCACACTCGCAGAAGCAGGCACGCACCGT AGCAGGCGCGCGTTCTGCTCGTCTGTCGGGTTCGCCAAGGGGAGGGGAGG GAGAACCATAGCTTCACGGTTTTTGCTGTTCGCGGCGTGATTGTGAAAAC TCTTAAGCTGTTTTCAGTTTGTTTTGTAGCTCGCTTGTGGGCTGGCTAAG AGCCAGAGATTTCAACGCGTTACTTCCTCTCTTCCTGATGCGAATCCCCG CACGCGCAGCCTCGCCCCGGCTTTTTGCGACCTACTCACCACTCACAATG AAGGCCAGTACCGCATGTGGAAGGTCGGGGCGACTGCGCGAGAAATACAG GAAGAAAACGGCCCCTTTGTGTCCTTCCTCATGAAGCATGCTTCCATCAT TTCGTGGAGGCACGTGTACTATCATATGTCAGGCATGAAAACGAGTGTTC CGTCATCACGGACGGTCAGGATACGCTTCCCTTGTAAGGGTAGTATTCAC ACCACCCCTGTTGTCTCGAGTGTTTTCCCTGTTCGTGGGCAACCGGAACC CGACCGGCTTGCGGCCGGTAGACAGCCCTTCTTTTTTCCAACAATCTTCT GAGCGTTTTGAGCGGACCAATCACCACCTCCGCCAAGGCTTGTCAGACCG ACAGGCTTGCGGCGAGTAGACGGCCCTTTTTTCCCCCAATAGTCTTCTTA GCGTGTTCAGCGGGCCAACCCACCACGTCCGCGATGACTTATCAGAAGTT TCGAGCATTCGGTTATCAGCTGTTAGTTCGATCTGCCTCGGCACAAAAAG CTTCTTTTTTCAGAATCGTGGACAACATCACGAGAAGAGAAAGAAGACAG GGCCGGATTCGAACCCGCGACATTTCGCTTTCAAAGTGGACGCCTTGTCG CCGACGCCATCGTGGAAACGAGTGTTCCGCCCTCGACAGACGGTCACGAT ACGCTTCCGTTGCAAGGGTAGTATCCACAGAGGAGATTATTGTCTTTTCG TCGCACCTCACGGCGGCCTATTCTGTCATTTCTCCAGCACGAGGGTCTCC TCGCGGGGATTTATGTCGAGTTGCTGGTTGCCGTGTATCCACTATCCGAA AGACCTTGAAATTGAAAAGTAATAGTTCAATACCGCATTTTTTCGAGTCA GCGCACCGGTACAGTGGTTTCTCACACCCCGGAGTCATCGCACCGGGGTG CGCAGAAAATACAAGGGTGTGACCAAAATCGATTTTCGCACTGGGCACGG CGTCATGGCACCGGTGCAATTCCACCGATATGAAAGTTCGCTCCGGGCGT ACGATTTCGAGCTACCGCATGTGGCTCGGGGCCACTGTCGGGAGAGGATC GGCGTGCCACCCTTACCGTGTTCACACCATTGCGGAGCATGCGAAAGGAT GAACCGAGTGGTTTTCACGTGCGGTCCTGAATCGGTGATTTTGAACAACC AGTCAGACATTTTCCATACATCCCCGCAACGTGCAACCAACCGGTTGCGG AAGGAACTCATCTGGTGTACCACTGGCGACAAGAACTACAGAGCGGAGGA CACAGGAGACGAAAAGCCATGCGGAGACGACCTGATGCCCGCGTACGCAC CAGGGAATCACATGGAAACCCGTAGCACGCCCCGTCATCTCACACACCCG ACAGCGTACCGTATTGCTGGTTCCCAGCCGCTGCATTGGTACACAAAATC CTATGAATCGCCTACTACTACGCCTTGCAGACGGCAAGGTACCTAAACAG ATCACGCAACAGTTTGGTTCACAGCACGAAAAGACGGCATCTGCTGATCT TGCGTGGTTCAGACAACACCGTGGGACGACGTTGTCGTATTCATTATCGC ACCGGGGTTTCTTTATACAGCTCAATAGATCAGAGGTAGGGGTGCTGTAT TGTTCAGTTTCGCGCCTATCAGGGTCATCGCACCGGAGAGGTGCGTTGGA AATGCAAGATAGAATGATTTCATCGTATTTTCGCACAGGGCACGGTGACT TCGCACCCCTCGGATTCGTCGCACCCCGTTGCGATGAAGAACCGAAAGAC ATTGGTCTTGACCCATTCGCACTTCGGTCGCTGACTCGAAAAAATGCGGT AGATCACATGAATATTTGAATACGTTGCGAGCCGGCGGGTATCTCTTGGA CTATTCGACTACCGCGAACAACAACCGTCGCAGCATAGCAGCAGAGTTGA GCAGCGCCAGCACGACATTGCCGATAAATATTATCCACCCCAAGCCACGT GTTAGTCACTTTGTCTAATAGTGCACTCGACCATTCGGGTTCTTCATGTA GAGCAAGGAGTAGTCGCAGTCCACCGCGGGATATTGTTGTTATTTACTCT CCTGGGTGAAAAAACACCGTGTCGCGTTGTGTTTTGCTGTGCTGTCTTTT TGCCGTGCCTAGTTGAGTCGGCTCTTGGTTTGAGTTCCCGCAGCGGCGAT CGTGTACAGCAGTTTTCGTGACGATGAGTTTACCGGAGACTCATTTTGCT CGACAGGTCCAGGCGTTGTCCTCGGACAAGTATCACCCCGCGACCGGCGC TCGTCGCTTTTTTCTGTTCTTGTTTTTTTCGTCACGTTAAAGCAGCATCG CTCGCAGGGGAGGTTCTCGCCGAAGCGCTGATCCGTTGTCGTACACAAAG CTCTTGAAGAGTATTTTCGATTTCTTCGTCTCAAGTTGTGCGACCGACTT CTCTCTCCGCACGCGTTGCAGAATCTGTCGCAACATATAAAAAGGGCGAA CAGGAATGACCGAACCCACAGATTCCGCAACGAATCATCAACCGTTGACC TGTGCGGGATCGGAATCTGACCGCGGTGTAGTGTAGATAGTTTCCGCAAA TGTGCTGCAGGAGCACCGGCCATGACGCCCCCCTTTGTGTTGCCACTGTC CGTTTCTTCAATGAAAAGCTCGGTGCAAAATCGGCCTCAAACCGGGTTAT CCAGACATCACACGAGCCCCTCGATGTCCCACGCTGTACGAGATCGGAAT GCGTCTGGAGATATTTGATCCGGGTCGCCATCTCGCCAATTTTGCAGGCC AAATGATGAAATCGAGTAGAGCATCCCCCCTCTGCGCTCGCCTTGGCTTT TGCAATTGTGCGATGTTTATATTGAACCCCTCACTTAACACGAAGGACTG TCTCTTAATTTCATCGAGGTAAAATCTTCCTGCTGCTGCACGAAAGTCTC GACAAATGTTCTTTGCTTTTCTGCCAGTGGGCTACTTTGCGTCTCTCCCA CACTGCCAGCAGCCGAAAGGCCGAAGATCGATGTTTGACTACATATGGCC ACGCGTTGTCGATGCAGTTGGCAGTGATGATGCATTCGTCGCCTGCCGCA GAAGGTTGGCTCGTCACCTAGCCAATGTTAATATGGACGCGACCAAATAG TCAAAGACCCATATCAAAGATGTCGCCTTGTGCTTGCCCTTTGATCTCTT GCCCCTCACCCTTCCACGCTCAATTTCCCCGTGTCGGGGTGTCAACGTCG AAACTCGCGTCAACTGCACGACTTCTGCAGAATGGGATCATTGAACATGG TGGCCAGCGGGAGTGGCAGCAGGAGCAGCACCCTGATGGGCATCATGAAA GACCAAACGCGGGTCGACGAGTCTGCAGCCGTTTCGGCGCCGCCATCGCC TTCGCTGCGGCCGCTGCTGCCAGCCGAGCGCGGCATCAACACCGCCATGA ACAGCTTCAACGCCGGCGTCGTGAACGTTCTCAAGGGTAAGCAAGCAGGC CTCGTGTGCGTAAAGCAGGGACAGATGAAACGTTTTTGCCAAGACCCTCG AACATCGTGCGTACGCCCTGCCGAGACCGTGATTGCCCGCGTCGCCGCGC TTGATTCAACCTTCTGAATGCCTAAATGGAACGCCGGAATCTAAACATTT TCAGCAGGCACGTTCCCCAGCAAAAATGCTCACGAGTCTGCGATGAAGTC CTGGGCCCTGGTTTTAAAAGCATTTTACGAAAACGGTTTCCCTGAGGTGG CTGTTACGCCGGTCCGCGAAACACGAGAAACTGTGCACCCCATCTCTTAG AAAGCTTGCCACGGTTTTGCATTCGGTCCTCATCGTGTTGCTCGCGGGGC TCATCCCGCCCCAACCCTCATTAATCGCCACGTTCGCAGTCAACCTCGCC TCTTGTCTGTCCGCATTTGCTAGGCCTCATGATTCAATACTACGGCGAGC GGACGTACGCGAGATTCTACGCGTTGGAGACGATCGCCCGCGTGCCGTAC TTCGGGTACCTGTGCGTCCTCCACCTCTACGAGACGCTCGGGCAGTGGAG ACAGGTGTGTCGGCGGAGCCCCCTCCCCTCAATTGTTGCCCCTCCTCGTT CGGCTCTTGTTCTGCGTTCCGAGTCTTTGGTTGCTGTTGTTTTTTTCACT CTATGTTCTCGTCGTCGTTGTTGTGTGTAAGTTAGGTGTGTTGGTTTTAA TATTGCCACTTGCTTTGCCGTCGGCTGCGTTTGTCGGGTGTCCGACGCAC ACGCGCTATCGTGTTCGTCTTGATCAGGACCCGCTGTCGTCGCCGCCCCC CCTCATGACGTACCTTCCGTATTGGTTGAACGCCGTGCCCCTCTCCACTT GTTGACTTCTGCTACCCACGGTATTTTCATTCGTGGCGAGGACATCTGCT GCTGATGGCCTGTTGTTTGTGACAGTGTCGGTGGTTGTGGTAGTTGCTCG TCTCCCGGCGTTTATGTTGCTGGCACAAGGTACCTCACCATTTCCAAGGA TTTTGTTCCTCCCAGAACCCCCGCTCTCGACGCTCCCACTCAAGAATTGA GTGAACCCAGATTGTGTCTCAGCCGGATATCACGCGTTTGCAGATGGTCT CGTGGGTGAGACAATCTGGCAGACAAAAGACGTGATCGCAGGATCCGACC CCGTTTCGCATCAAGCAGGGATTTCCGGGAGGGGCACTCCCCCCCCTCGC CGATGCTGCTGCTAGTGTTGGCAGCCACTCCGCCTTCCATCCGACGTTCG CTTGTCCTCAAAGGCGTACCCGTATGTCTGCGCTTGGTGTCGCGCACGCT CTCGACGCTCCGTGGCTGACGATTGGTAACTTTTCATGCTGATACGTCTC TCCGTGTTCAAAAAACAGGCTGAGTACCTGAAGGTGCACTTTGCCGAGAG CTACAACGAGCTCCACCACCTGCTGATCATGGAGGAGCTAGGAGGGAACC TGCTGTTCCGAGATAGGTACGTAAGCAGGACTGTGTGTGCTGCCAGCTTT GGTTGTCCCTGTTGATTGTCGGCTCTTTGTTTTGAGCCGCTCGTACATCG GGTACAGGGTGTTCGTCTTCGTCGAAACGGATCGTGGTGTTGCCCATTCC TAGTATTGATAGCGTCATTATTCCTCTACCTCCCGAAAATCGCTGGCTGT GGCTCTTTTCTTGTTTTCCCTTTACTGGAGCTCTCGCGCTCAGATCGACG ATGGCCCTTGGTGAGGATGGTTTTATTCCTGAGCCAAGTGATTAATCATA AATCGAGCGCCCAGAGTGTGCACAATCCACCGGGCGTTCTTGTGGTGTTG TTTTTATTCACAGGTTGCTGGCGCGTCTCCTGTTTTGTGAACTTTTGCTG GACCTTTCGCAATGTAACCGTTACTAGGTACGACAAGTTTCATATCTGCC GCAGATCCCATTATGTTGCTCAACCTTCGATCGAGGTCTCCTTTGCGGAG GTTTGCTTGCACGGTAAGCAACTTTGTGTCGGTGCCTTTTGTTCCCTCTC TTTTGCCTCCCCATCCCATGCCCCCCGCAAGGTGGTTTGCGCAGCACGCC GCGTTTTTCTACTTCTTCGTGGTGGTTGTGCTCTACCTGTCCAACCCCAG GAACGCGTACAATCTCAACCAGGTCTGGCCTGGCTTGCCCTGCTGTCGTT TCTCAGTCGTTTCCATGACGTCTTCGTGTTTTCGCCCCGCGTTGAAACAA GGAAGTAGGGCGTTGCACTGACAGCCGATCCACCGTGTGTTGCATGTTTC CGGCGCTGGGTCGGGAGTTGCGACCGAAAATTGTCGTTGGCGAAACCAGC CCGCATAGAGCCCGAACAGACCCCCCCATCCTCCCCGCGCTACCGCTGGC TCTCACCTCGGTGTTTGCCATCGGGATTGGGTTTTCGTCGCTTAGCAACG ACGTTGTAAACCAAGCCAATTCACTTCGTGAACTCGGCAACCAGGTTACC GTCTTTTTTTTTCCTCTGTTTTTTTTGGCGGTAACCATAATGGTGGTCGA GAAGATCATGTTGTGCGGGGTGGAGAACCCTCACTCCGCGCAAGGGGGAT GATCGCACCACGTTGTGATAAGATGGTCAAGCACTCTCGAGGCAGTTACA CAGTGCTTACAACTGTCTCTGGAAGTGAAAGCACCAGAAAATAAATTAAG CCATACGCAGCTGTCATCCGTATGCAAGGAAGTAAGCACAAGATGCCGAA CACCCTTAGCAGGATGCAGCGCACCCTTTATGCGACTCGCCGAATACCTC ACGGCGCTTCGCGCTTGGTGGTGTGAGAGCCTGGTCTGGTGAGAACCCGG CGTGCTCCATCCCGGCTTTGTAGGGATGCGAGGTCAATGGTCTAACGACT ACGGCATGCACGACTATGAGTACACCCCCCCCCATCCTCCCCCAGTAAGA GCAGAGTTGGGGATTAACTCCTTAAGAACGAGAAGAGACAGGAGGAAGTT GACATGGCAATACCGTATGGAAAACATGGGAAAGGAGAGGTTACCGAGAA TACCTTGGGAGGCGAGATGGGTAAACAAGGCCAAGGGTAGACAACCCATT GAGTGGGCTAAGGTTGTACAGGGAGTGTGGAGTGGGTTAGACATTGACGA ACGGGAGACGACGGGAGCGGAAAGCTTAGAAGGGTACAAGAAGAGTATCT CAGAAGCCTTTGAAAATCGAGAAGACCAGAGCTTGCGGAAAGAGACCAAG GAAAAGGAGGTTCTAGAAGTGTACGGAAAGCTGAACGAAGGAATAGGATT CAAGGAGTACCTGAACGGACCATTGGATGAAGGGACAGAGATGAAGGTCA AATTTAGAACGGGCGACATTGACCTTCGGGAACGTAGAAGGAGGTTTAGG AAGGTAGACAACGACGAAGACAAGTTCAAATGTGACTGCGGTGCCGAATG CGAAGACCGGGCACATGCAGTTGCGGAATGCCCGTTATACGATCAGGAGA GCGAAGGGTACATGGTTGAGCTGGAAAAAGTAGACAGTCGGTACAAAGAG ATGTTTGAGGCATGGAACAACAAGGAGAAGACTGTAGCGGTACTCAGGTG TAAGATGTGGCCCAGGAAGGACAGGTATACAGTAGACAGGTTAGGGAAAA CATTTTTGAGCCACCTGGCAAAGTAGGAAGGAACGATTGGCCATCGGTGG TCGATCCTGCGGGAAAATTGCTCCGTCCTCTCGAGGACGCGTGGTCAATG GTGTAACAACTAAGGCATGCAAAACATGAGTACGccccccCCCCCCATCC TCCCCCCCCATCGCCTGGCGTGTTTATTCCCCGCGTAGCGACCTTTGCGC TGTGTTGGTAAGCAGTCTCCAAAATGACGCGCGACGCGCACGCACGGGCA TTAAAAATCGGATTCATGCGCAACAATCCGATATTTGGAAACATCAACTG GCCACCCAGCTAACCAACCCAGCTAACCAGAAGAAGCTGGGCGAGGGTGT CGAGAGAGTCGTGCGCTTCCTTGGGGCACTTGTGCGGCAACAGGTTGTCC TCGTGTACCTCGGTCCCGCCACTCGGCCCACCCGCCTCCCGTTCGTGCAC GCCGTCTCTTTGTTTGCTACCTACGAAACAAAATTGGGTGTATTGGCGGA AACACAGCACGTGGAGGAACACGCATTTTCCACTTACGACAAGTTTCTCA CGGAAAACGAGGAGGAGCTCAGGCAACAGCCCGCGCCGAAGGCGAGTCTG GCGTCCCGACTGCCTGCCTGCCTGCCTGCCTGCCTGCCTGCCTGACTGAC TGACTGACTGACTGACTGGCTGACTGAATGCCTTCATTAATGGCCAGTTG ATGCCTCCGAATGTGTTTTCCCTTGCACATCATGCCCTTCGTTTTTCTGC ATTGTTTCTCGCTGTCGGCGGCGTTGCCTTTGGTGGTGGTGATGCTACAG TTTTCTTGCTGGGGCAGTCGATGTTGCGCCACGCCCGCTGCTGCTGTTGT TGATTTGGTAGATTTGGCTAACTATAGGTGTTGGTAGATTTAGCTATGAG GATTCTTTAGGACGCCACATGCGAGCCCCAGAGGGAGAACGGAAATGCAA CGTCCTTAAGTCGGAAAATTAGTTCCAGGTACGGCGGGGGGGCCTGTGTT GTGTTGCTTGAACAGAGCGGGTCCCCGGTAAAGTGCGGGTAAAATCGCTT GGCGTGAAAGCTCCCTAGTTTGCTACTCGGAGTAGAATAAAACAAAAAAG TGCTAGTGCTCGCTTTTTTGTGGTTGACACTTCCCGTCCTACCCCCTCAC GCACAATAGCCCCCCACTGTACTGTTCAAACAACTTGACTCCCGGCCCCC AACCTCTGCACCACGCTTGCGCTCGCCCCGTCAAATTTCCCGCGGCGCTG GGTTGCGCCGAATTCTGTGGATCGATTGATGTGCCGCCGCAGATCGCCGC GAAGTACTACGGCCAGGACAAGCTGTACGTGTTCAACGGTCTGCACGACG ACAACGCCCCGGGAGGGCTGACCTTCGAGGAGAGGGACCTGGCGCGGCCG GTGATCACAAACCTCTTCGACACGTTCGTCGCGGTGAGGGATTTTTTTTT TTTTTGTTTTGGCGGGCCTTTTGAAAAACCAAGTTGCCAAGTACTCTTTT TTTCCAGGTGCTTCACAAACGTTCTCGTGTCGGTAACTCCGTCGCGACGA TTTATTCGCGATCGTATCCGTAGGTAAAAGTTCATCGGCTTTGGAGCCTC AGGCACGGGGGTCATGAACACCTCAACCATCATCCATGTACGCAAAGAAA CAAACGAGGGCAAATCAGCACATCAGAAGAGCCACCGACCACAGGACGAC AAACGCGTTGAAATGCAAACAAAAAGTAGTGCACCCATGTAGCATGTCGT CCCAGGCCGCAAGCTTTGCGGTGTCAAAACACAAGGGCGAGGGCGAGGTG AGATGGGCGTTCCCGTGGGGCGAGGTTTGGTGTTTCGTGCAGGGCTTCAA AGGTTGCGGGTGGGAGATGAGGTTGTACGTGGAAGGACTGAAATGAACCA AAGACACACGGCACCACCGGAGGAGCCAGGCTGTCCCTACCAAGGGGACA CACGGATGCCAATCCCGCTCGTCCTGCCCAAACTTCGACTAGGTCAAAAA TTCGGGGGGGGATCGTCCTATAGCGGAAGGGGCATTATTTTCCGGTCATC GCGGTCGGGGATGTTTGTTCTCCATCCCCGTCATTCCCCCACGAGTGCGG GGGTACAGGGCGTGGTGGACTACATTGCGTGTACTTCGGCGGTTGACAAG CGTGGGTGCCGCAGCAGGTAGGGGCGGGGAATGTTGACGTGTAGGCTTCC GTTCAAGCGCGTTGTGCGTGGGTGCGTCCTCGCGGTGTTCGTGCTGCGGT CTTCTTGGTCGTTGCCCAGGCTCAAGCGGCACCGGCCGAAGCCGAGGAAG GCCGCAGCAGCGGCGAAGAGATAGCCGGTGGCGAGGACAACGATTCTCAG GCCGAAGATACCGTGGGCTCCAAGCGCAACGACAGCGCGGCCACACTCAC CGCAAAACGTGCTGGAAGCCAAAATATCGAGCGCAGCGATGCGGTTAAAG CTGGCTAACACCCCCCGCTCCTCTCTGCTGCGACACCCACGCATTTCAAC CGCCGAAAGCCCGCATAGGGCGCATCCAACCCTAGACACGCTTGAACCTA TTCTTCAGGGCATCCCTCTTCTGAAAACCGAAGCGGGTGTCATGAGTGTC GGGCTTCGGGTGGCCGGGGTACTCGCACTTACGTTTGGATTTCTAGTTTT TCAATGGCTGCCAGACTGGGCGCGCTATCCTCCCGTTCGACACCATCAGT GGAAACGACGGTTGCATCCTCGACATACGTCTGGGAAATCCGACCCTGGT ACTGGTATTATCCATATTGCCACCCCCTTAATAGACCCCCCCCTCCCGCT GGCTCTCACCTCGGTGTTTGCAATCGGGATTGGGTTTTCGTCGCTTGGCA ACGACGTTGTAAAACAAGCCAATTCACTTCGTGAACTCGGCAACCAGGTT ACCGTCTTTTTTTTCCTCTGGTTTTTTTGGCGGTAACCATAATGGTGGTC GAGAAGATCATGTTGTGCGGGGTGGAGAACCCTCACTCCGCGCAAGGGGG ATGATCGCACCACGTTGTGTTAAAATGGTCAAGCGCCCTCGAGGCAGTTA CACAGCGCTTACAACTGTCTCTGGAAGTGAAAGCACCAGAAAATAAATTA ACCCATACGCTGCTGTCATCCGAATGCAAGGAAGTAAGCACAAGATGCCG AACACCCTTAGCAGGAGGCAGCGCACCCTTCATGCGACTCGCCGAATACC TCACGGCGCTTCGCGCTTGGTGGTGTGAGAGCCTGGTCCGGTGAGAACCC GGCGTGCTCCGTCCCGGCTTTGTAGGGATGCGAGGTCAATGGTCTAACGA CTACGGCATGCACGACTATGAGTACACCCCCCCCCCTTAATAGAGCCTTA TTCTTCGTGGCTGAGCAAGAAGACTCTTGAGAGTAACCGGACCCGTCTCT TCGTCTACGCGCCATCGTAGGACGGAGGGCTCCGTCCTCGACGGACGTTT GGAATGCCCGCTCCTTGAAGGGTAGTATCCCCATACACCATCTTCTCCAA GCCGTGGAGACGGCGCGTCTGGTGGGCTGTCCCTCTTGCCATCGCGCGAC TAAGAAATTGGTGGAGTAGTATGACCAGCATTGGGCTACAGCAACAACGA CGGTACAGGTCGAGCGAGAGAAGAATTGTAGGAATATCACGTGGCGTGCT GCCGTTGTGTAAACAGTAGTTCACCCGTCCGCCTCCCACGGATGTCGTTT TTGGTTTCTCGGCCCGCAGGTGCGCAACGACGAGTGGGAGCACGTGAAGA CCATGAAGGCCATGCAGGAGGATGTATCGTCGGAGAGGCGACCATAACGT GGAATGGAATTCATCGGATATATCCTTGTGGATGGGACGAAAATCCGTTG CGTGAAATCCATGATAGGCAATCCCTTGGCTTTGTTATTTCCGGGATCAC TTTTGTTTGAACAATTAGCAAGCTCAGCCGTGGCTCTTCATTTTGGCAGC AAACGAATCGTAGGACTGTCAGCGAGGAAGATGCGTTGTGGAACAACTGT GGGTGGGTCGTGTGGAGTCGTGATATGGGTTGACGCTGGATTGGCATTTT TGTTTTTTTCGCCGTTCTCGATCGTTCGATCGATGAGAAGAGGGGGCAGT ATGGTATTCTTTCTCTGCTGCGCTTGTTCGCCGCTGCGTTGTTGGGCTGT CGCGTGTATGTTTCGACGCAATCGTGACATTTTGATTTATTTTTGGCTTT TCGAGGGGGGGTGCGGGGGAAGGGAGAGCAGAAAAGCCGAGAGGCAAGCT GCCCGCTGGGGAGCAACCAAATATGTGCGTTTAGTGCTACAAGCGCGTTG GATCCTGAAAATTGAACGCTTGTGGAATGTGGGTATGCACTCATGTGGTC GTCCCGTTTGTTTTGGCACCAGTCCAGACACCAACTTCTTCCGGTGTCCT TTTTCGACGGACCAACCGGGGTCACAGGACGAAGGACACAGTGGAATGCG CGAACCAAAAG
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Coding sequence (CDS) from alignment at P-fluviatile_contig1:41590..54250+

>mRNA_P-fluviatile_contig1.4.1 ID=mRNA_P-fluviatile_contig1.4.1|Name=mRNA_P-fluviatile_contig1.4.1|organism=Porterinema fluviatile SAG_2381|type=CDS|length=2166bp|location=Sequence derived from alignment at P-fluviatile_contig1:41590..54250+ (Porterinema fluviatile SAG_2381)
ATGACTCAGAACGCTTGCGTGCGTCGTTCACTAGCTTTGCGAGCGGCTGC
AGCGCTGTCTATCCTCCTCCTATCCCCGTCACCAAACCAGAGAGCTTCCG
CTTTCTCCTTGCAGCTTCCGCGGACGACGGCAGCGAGACTCCGGGAGGGA
CGGGACGCAGGAGGGAGTGGCAGGCCATTGAAAGCAGCCTACTGCGGGGT
ACGGCGGAAACCTTCTGATGATGTGGGAGATCGCGGATTTAGAAGGAGCG
CCGGATGACTCAGAACGCTTGCGTGCGTCGTTCACTAGCTTTGCGAGCGG
CTGCAGCGCTGTCTATCCTCCTCCTATCCCCGTCACCAAACCAGAGAGCT
TCCGCTTTCTCCTTGCAGCTTCCGCGGACGACGGCAGCGAGACTCCGGGA
GGGACGGGACGCAGGAGGGAGTGGCAGGCCATTGAAAGCAGCCTACTGCG
GGGTACGGCGGAAACCTTCTGATGATGTGGGAGATCGCGGATTTAGAAGG
AGCGCCGGAATGGGATCATTGAACATGGTGGCCAGCGGGAGTGGCAGCAG
GAGCAGCACCCTGATGGGCATCATGAAAGACCAAACGCGGGTCGACGAGT
CTGCAGCCGTTTCGGCGCCGCCATCGCCTTCGCTGCGGCCGCTGCTGCCA
GCCGAGCGCGGCATCAACACCGCCATGAACAGCTTCAACGCCGGCGTCGT
GAACGTTCTCAAGGAATGGGATCATTGAACATGGTGGCCAGCGGGAGTGG
CAGCAGGAGCAGCACCCTGATGGGCATCATGAAAGACCAAACGCGGGTCG
ACGAGTCTGCAGCCGTTTCGGCGCCGCCATCGCCTTCGCTGCGGCCGCTG
CTGCCAGCCGAGCGCGGCATCAACACCGCCATGAACAGCTTCAACGCCGG
CGTCGTGAACGTTCTCAAGGGCCTCATGATTCAATACTACGGCGAGCGGA
CGTACGCGAGATTCTACGCGTTGGAGACGATCGCCCGCGTGCCGTACTTC
GGGTACCTGTGCGTCCTCCACCTCTACGAGACGCTCGGGCAGTGGAGACA
GGCCTCATGATTCAATACTACGGCGAGCGGACGTACGCGAGATTCTACGC
GTTGGAGACGATCGCCCGCGTGCCGTACTTCGGGTACCTGTGCGTCCTCC
ACCTCTACGAGACGCTCGGGCAGTGGAGACAGGCTGAGTACCTGAAGGTG
CACTTTGCCGAGAGCTACAACGAGCTCCACCACCTGCTGATCATGGAGGA
GCTAGGAGGGAACCTGCTGTTCCGAGATAGGCTGAGTACCTGAAGGTGCA
CTTTGCCGAGAGCTACAACGAGCTCCACCACCTGCTGATCATGGAGGAGC
TAGGAGGGAACCTGCTGTTCCGAGATAGGTGGTTTGCGCAGCACGCCGCG
TTTTTCTACTTCTTCGTGGTGGTTGTGCTCTACCTGTCCAACCCCAGGAA
CGCGTACAATCTCAACCAGGTGGTTTGCGCAGCACGCCGCGTTTTTCTAC
TTCTTCGTGGTGGTTGTGCTCTACCTGTCCAACCCCAGGAACGCGTACAA
TCTCAACCAGCACGTGGAGGAACACGCATTTTCCACTTACGACAAGTTTC
TCACGGAAAACGAGGAGGAGCTCAGGCAACAGCCCGCGCCGAAGCACGTG
GAGGAACACGCATTTTCCACTTACGACAAGTTTCTCACGGAAAACGAGGA
GGAGCTCAGGCAACAGCCCGCGCCGAAGATCGCCGCGAAGTACTACGGCC
AGGACAAGCTGTACGTGTTCAACGGTCTGCACGACGACAACGCCCCGGGA
GGGCTGACCTTCGAGGAGAGGGACCTGGCGCGGCCGGTGATCACAAACCT
CTTCGACACGTTCGTCGCGATCGCCGCGAAGTACTACGGCCAGGACAAGC
TGTACGTGTTCAACGGTCTGCACGACGACAACGCCCCGGGAGGGCTGACC
TTCGAGGAGAGGGACCTGGCGCGGCCGGTGATCACAAACCTCTTCGACAC
GTTCGTCGCGGTGCGCAACGACGAGTGGGAGCACGTGAAGACCATGAAGG
CCATGCAGGAGGATGTATCGTCGGAGAGGCGACCATAAGTGCGCAACGAC
GAGTGGGAGCACGTGAAGACCATGAAGGCCATGCAGGAGGATGTATCGTC
GGAGAGGCGACCATAA
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