mRNA_P-fluviatile_contig84.14884.1 (mRNA) Porterinema fluviatile SAG_2381

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

Overview
NamemRNA_P-fluviatile_contig84.14884.1
Unique NamemRNA_P-fluviatile_contig84.14884.1
TypemRNA
OrganismPorterinema fluviatile SAG_2381 (Porterinema fluviatile SAG_2381)
Homology
BLAST of mRNA_P-fluviatile_contig84.14884.1 vs. uniprot
Match: D7G6K9_ECTSI (Chaperonin n=2 Tax=Ectocarpus TaxID=2879 RepID=D7G6K9_ECTSI)

HSP 1 Score: 404 bits (1037), Expect = 1.420e-136
Identity = 214/283 (75.62%), Postives = 241/283 (85.16%), Query Frame = 1
Query:    1 MRSSTVAFVASSAXXXXXXXXXXXPTPVHLGVNLPRPAARLAPAPATGRRHTAGRSVARRATSTSMMSSSSLAITLEEEVIDRPLQPVGNYILVKLFSAVSKTAGGIVLPDEAQDAPCEGMVVAHGPGRTHPLTGTLIPMCVAEGDTVLFSRWSGRKVKYCGEDHMFILDDDLVLVYRGRELTTDSLKMVRDQVLVETEKGESETDAGIVIAASAAEKEKGSQGRVIAIGEGRTGSEGKIVPCPFKPGDSVKFLEYAPVEIKIKGKYYAVVRMVDCLAKWQGQ 849
            MRSS V+F AS A           P+ ++ GV LPR A+  +      ++  +GR+VARRATS SM   SSL ITLE++VID+PLQPVGNYILVK+F+AVS+TAGGIVLPDEAQD PCEG+VVAHGPGRTHPLTGTLIPMCV+EGDTVLFSRWSGRKVKYCGEDHMFI+DDDLVLVYRG ELT DSLKMVRDQVLV TEKGESETDAGIVIAAS AEKEK SQGRV+AIGEGRTGS G+IVPCPFK GD+VKF+EYAPVEIKIKG YYAVVRMVDC+A+W+G+
Sbjct:    1 MRSSAVSFAASCAAMLASSGAFLAPS-LNFGV-LPRSASSRS---TNQQQQHSGRAVARRATSPSM---SSLVITLEDDVIDKPLQPVGNYILVKMFAAVSRTAGGIVLPDEAQDVPCEGLVVAHGPGRTHPLTGTLIPMCVSEGDTVLFSRWSGRKVKYCGEDHMFIMDDDLVLVYRGPELTEDSLKMVRDQVLVVTEKGESETDAGIVIAASTAEKEKASQGRVVAIGEGRTGSTGEIVPCPFKAGDNVKFMEYAPVEIKIKGSYYAVVRMVDCIARWEGE 275          
BLAST of mRNA_P-fluviatile_contig84.14884.1 vs. uniprot
Match: A0A835YHA6_9STRA (Chaperonin n=1 Tax=Tribonema minus TaxID=303371 RepID=A0A835YHA6_9STRA)

HSP 1 Score: 243 bits (620), Expect = 5.850e-74
Identity = 121/209 (57.89%), Postives = 155/209 (74.16%), Query Frame = 1
Query:  214 LAITLEEEVIDRPLQPVGNYILVKLFSAVSKTAGGIVLPDEAQDAPCEGMVVAHGPGRTHPLTGTLIPMCVAEGDTVLFSRWSGRKVKYCGEDHMFILDDDLVLVYRGRELTTDSLKMVRDQVLVETEKGESETDAGIVIAASAAEKEKGSQGRVIAIGEGRTGSEGKIVPCPFKPGDSVKFLEYAPVEIKIKGKYYAVVRMVDCLAKW 840
            L  TL+++VI  PLQPV N+ILVK+  + S T GGIVLPD++ D P EG VVA GPGR+HP T  LIPMCVA G  V++S++SG+KVKY G DH  I DDDL+LVY G + T  +LKM+RDQVLV+  + E  TD GIVI+A  A KE  S+G+V+A+G GRT S G++ PC  +PG+ VKF EYA +EI ++ + YAVVRMVDCL+KW
Sbjct:   52 LVHTLDDKVIRGPLQPVSNFILVKIRDSASLTTGGIVLPDQSIDKPSEGEVVATGPGRSHPHTAELIPMCVAPGQRVMYSKYSGKKVKYDGLDHTLITDDDLLLVYEGEKPTAANLKMIRDQVLVKITRSEGRTDTGIVISAQTAGKELKSEGQVVAVGPGRTASNGQLTPCYVQPGEFVKFREYAGIEITLESESYAVVRMVDCLSKW 260          
BLAST of mRNA_P-fluviatile_contig84.14884.1 vs. uniprot
Match: A0A8J2WID0_9STRA (Hypothetical protein n=1 Tax=Pelagomonas calceolata TaxID=35677 RepID=A0A8J2WID0_9STRA)

HSP 1 Score: 196 bits (497), Expect = 5.530e-56
Identity = 97/207 (46.86%), Postives = 136/207 (65.70%), Query Frame = 1
Query:  223 TLEEEVIDRPLQPVGNYILVKLFSAVSKTAGGIVLPDEAQDAPCEGMVVAHGPGRTHPLTGTLIPMCVAEGDTVLFSRWSGRKVKYCGEDHMFILDDDLVLVYRG-RELTTDSLKMVRDQVLVETEKGESETDAGIVIAASAAEKEKGSQGRVIAIGEGRTGSEGKIVPCPFKPGDSVKFLEYAPVEIKIKGKYYAVVRMVDCLAKW 840
            TL++  I  PL+PV NYILVK+   +  T GG+ LPD+A++ P  G+VVA G G+ HP TG ++P  V EGD VL+ ++ G  VKYCGEDH  I DDD++L + G   +T   +K V D VLV+  K E ET +GI +AA  +E+ + + G V+  G GR  ++G  VP P + G+SVKF +YA  +I++ G+ Y VVR+ DCLAKW
Sbjct:   32 TLDDAPIGGPLEPVANYILVKIDDGIDATKGGVFLPDQAKEKPSAGIVVAAGAGKAHPDTGVVVPNPVTEGDRVLYGKFDGTSVKYCGEDHQLIKDDDILLSWAGDASMTLGEVKCVADNVLVQVTKVEEETASGIALAAGVSEQTRTTSGVVVKTGTGRVAADGASVPVPVEVGESVKFKDYAGADIRLDGEDYIVVRVPDCLAKW 238          
BLAST of mRNA_P-fluviatile_contig84.14884.1 vs. uniprot
Match: A0A7S1UQU6_9STRA (Hypothetical protein n=1 Tax=Grammatophora oceanica TaxID=210454 RepID=A0A7S1UQU6_9STRA)

HSP 1 Score: 182 bits (462), Expect = 3.480e-50
Identity = 96/204 (47.06%), Postives = 135/204 (66.18%), Query Frame = 1
Query:  223 TLEEEVIDRPLQPVGNYILVKLFSAVSKTAGGIVLPDEAQDAPCEGMVVAHGPGRTHPLTGTLIPMCVAEGDTVLFSRWSGRKVKYCGEDHMFILDDDLVLVYRGRELTTDSLKMVRDQVLVETEKGESETDAGIVIAASAAEKEKGSQGRVIAIGEGRTGSEGKIVPCPFKPGDSVKFLEYAPVEIKIKGKYYAVVRMVDCLA 834
            +L+ E I  P  P+GN++LVK   A++ T GGI+LPDEA++ P EG+V+A GPG+ HP TG  I   V  GD+VL+  + G  +KY  E+   I DDD++L Y G  +T D+++  RD VLVE E+ + ET +GIVIAA+   ++  +QG V  +GEGR  S GK    P +PGD VKF +YA  E++I GK Y++V+MVD LA
Sbjct:   84 SLDGEDIRGPATPLGNFVLVKTKDALTATTGGILLPDEAKERPTEGVVIAAGPGKLHPHTGIRIHNPVKAGDSVLYGMFDGAPIKYNDEECQMIRDDDVLLFYEGAAMTLDNVQPCRDYVLVELEEEDLETASGIVIAATVTSEDIPNQGIVAKVGEGRLTSSGKFSESPVQPGDMVKFKDYAGNEVRIDGKPYSLVKMVDILA 287          
BLAST of mRNA_P-fluviatile_contig84.14884.1 vs. uniprot
Match: A0A7R9UAA2_9STRA (Hypothetical protein n=1 Tax=Pinguiococcus pyrenoidosus TaxID=172671 RepID=A0A7R9UAA2_9STRA)

HSP 1 Score: 178 bits (451), Expect = 2.890e-49
Identity = 90/205 (43.90%), Postives = 134/205 (65.37%), Query Frame = 1
Query:  226 LEEEVIDRPLQPVGNYILVKLFSAVSKTAGGIVLPDEAQDAPCEGMVVAHGPGRTHPLTGTLIPMCVAEGDTVLFSRWSGRKVKYCGEDHMFILDDDLVLVYRGRELTTDSLKMVRDQVLVETEKGESETDAGIVIAASAAEKEKGSQGRVIAIGEGRTGSEGKIVPCPFKPGDSVKFLEYAPVEIKIKGKYYAVVRMVDCLAKW 840
            L+   I   LQPV N++LVKL  A+++TAGGI++P+ A+  P +G+ VA GPGR HP TG L+P+ V  G+ V++  + G K+KY  EDH+ + +D+++L Y G  +  D+++ V D+VLVE  K E +T +GIV++  A+ K +  +G ++  G GR  SEG+ +P P KP D +KF EY   E+ I+G  Y VVR  D LAKW
Sbjct:   33 LDGRPITSDLQPVSNFVLVKLRDAMAQTAGGIIMPETAKKRPNDGLAVAVGPGRYHPETGKLMPVSVKAGERVMYGEYMGTKIKYNEEDHVLVREDEVLLRYTGDIIKKDTVEPVGDKVLVEMTKEEKQTASGIVLSPEAS-KSRVCEGIILQCGPGRMSSEGETIPMPVKPDDKIKFREYGGEEVNIEGTEYMVVRANDILAKW 236          
BLAST of mRNA_P-fluviatile_contig84.14884.1 vs. uniprot
Match: W7TNB8_9STRA (20 kDa chaperonin n=2 Tax=Monodopsidaceae TaxID=425072 RepID=W7TNB8_9STRA)

HSP 1 Score: 176 bits (447), Expect = 1.840e-48
Identity = 91/208 (43.75%), Postives = 134/208 (64.42%), Query Frame = 1
Query:  217 AITLEEEVIDRPLQPVGNYILVKLFSAVSKTAGGIVLPDEAQDAPCEGMVVAHGPGRTHPLTGTLIPMCVAEGDTVLFSRWSGRKVKYCGEDHMFILDDDLVLVYRGRELTTDSLKMVRDQVLVETEKGESETDAGIVIAASAAEKEKGSQGRVIAIGEGRTGSEGKIVPCPFKPGDSVKFLEYAPVEIKIKGKYYAVVRMVDCLAKW 840
            A  L+ + I  PL+P+ N +LVK+  A   +AGGIVLPD+A++ P EG VVA GPGR HP T  L+PM V  G  VL+ ++ G  V Y G  H+ I DDD++L + G  +T D+++ VRD++LV+ +K + ++  GI++A S   K + ++G VI +G GR  S G++     KPGD VKF ++A  EIKI+ + Y V+  VD LA+W
Sbjct:   47 AHNLDGQEIPGPLEPLANVLLVKVKDAEDMSAGGIVLPDQAKEKPTEGEVVAAGPGRQHPETAVLMPMPVKPGSKVLYGKFDGMSVIYDGAPHVLIRDDDILLTWTGSSMTLDAVETVRDRILVKVKKAQEKSAGGILLAPSMT-KARPTEGEVIKVGPGRIASTGEVADVKVKPGDGVKFKDFAGTEIKIQDENYLVMYSVDVLARW 253          
BLAST of mRNA_P-fluviatile_contig84.14884.1 vs. uniprot
Match: A0A7S2XTD7_9STRA (Hypothetical protein n=1 Tax=Attheya septentrionalis TaxID=420275 RepID=A0A7S2XTD7_9STRA)

HSP 1 Score: 168 bits (425), Expect = 4.590e-45
Identity = 90/203 (44.33%), Postives = 127/203 (62.56%), Query Frame = 1
Query:  223 TLEEEVIDRPLQPVGNYILVKLFSAVSKTAGGIVLPDEAQDAPCEGMVVAHGPGRTHPLTGTLIPMCVAEGDTVLFSRWSGRKVKYCGEDHMFILDDDLVLVYRGRELTTDSLKMVRDQVLVETEKGESETDAGIVIAASAAEKEKGSQGRVIAIGEGRTGSEGKIVPCPFKPGDSVKFLEYAPVEIKIKGKYYAVVRMVDCL 831
            TL+ E I  P+ P+GN++LV+    +S T GGI+LPD+AQ+ P EG V+A GPG  HP TG LI   V +G  VL+ ++ G  + Y  ED   I DDD++L Y G  +T +++   RD VLVE  K + E  +G+VIA+S  + +   +G VI +GEGR  S+G   P P   GD VKF +YA   +KI+ K Y++VRM+D L
Sbjct:   57 TLDGETIRGPIAPLGNFVLVRTKDMLSSTEGGILLPDQAQERPTEGEVMAAGPGNIHPDTGILIDNPVIKGMNVLYGKYDGVGMVYNDEDVQMIRDDDVLLYYTGIRMTLENVTPCRDYVLVEIPKTKLEMSSGVVIASSVTKDDLPCEGAVILVGEGRMCSKGVFTPAPCAVGDRVKFRDYAGNPVKIQNKEYSLVRMIDLL 259          
BLAST of mRNA_P-fluviatile_contig84.14884.1 vs. uniprot
Match: A0A7S2LFS4_9STRA (Hypothetical protein n=1 Tax=Skeletonema marinoi TaxID=267567 RepID=A0A7S2LFS4_9STRA)

HSP 1 Score: 167 bits (422), Expect = 9.730e-45
Identity = 95/219 (43.38%), Postives = 136/219 (62.10%), Query Frame = 1
Query:  187 STSMMSSSSLAIT----LEEEVIDRPLQPVGNYILVKLFSAVSKTAGGIVLPDEAQDAPCEGMVVAHGPGRTHPLTGTLIPMCVAEGDTVLFSRWSGRKVKYCGEDHMFILDDDLVLVYRGRELTTDSLKMVRDQVLVETEKGESETDAGIVIAASAAEKEKGSQGRVIAIGEGRTGSEGKIVPCPFKPGDSVKFLEYAPVEIKIKGKYYAVVRMVDCL 831
            ST++  SS+  +T    L+ + I  P+ P+GN++LV+    +  T GGI+LPD+A+D P EG VVA GPG+ HP TG  I   V  GD+VLF ++ G  + Y  E    I DDD++L Y+G  +T  ++   RD VLV  EK ++ET +GIV+A +  +     +G+V  +GEGR  S G+    P K GD VKF +YA  E+KI+GK Y++VRMVD L
Sbjct:   35 STALFMSSTPELTKQCFLDGKKIRGPITPLGNFVLVRTKDTLDATDGGILLPDQAKDRPTEGEVVAAGPGKLHPHTGVRITNPVTTGDSVLFGKFDGHDMNYNEEPVTMIRDDDVLLYYKGVRMTLANVIPCRDYVLVAIEKQKTETSSGIVVAETVMKGYNPCEGKVAKVGEGRMTSTGEFSTPPCKEGDFVKFRDYAGNEVKIEGKEYSLVRMVDIL 253          
BLAST of mRNA_P-fluviatile_contig84.14884.1 vs. uniprot
Match: A0A7S0J0F3_9EUKA (Hypothetical protein n=1 Tax=Calcidiscus leptoporus TaxID=127549 RepID=A0A7S0J0F3_9EUKA)

HSP 1 Score: 157 bits (398), Expect = 1.740e-41
Identity = 83/197 (42.13%), Postives = 122/197 (61.93%), Query Frame = 1
Query:  250 PLQPVGNYILVKLFSAVSKTAGGIVLPDEAQDAPCEGMVVAHGPGRTHPLTGTLIPMCVAEGDTVLFSRWSGRKVKYCGEDHMFILDDDLVLVYRGRELTTDSLKMVRDQVLVETEKGESETDAGIVIAASAAEKEKGSQGRVIAIGEGRTGSEGKIVPCPFKPGDSVKFLEYAPVEIKIKGKYYAVVRMVDCLAKW 840
            PL  + N  L+KL  A  +TAGG+ +  E    P EG+VVA GPGRTHP TG L+  CV EGD VL + ++G KV+YCGE HMFI  D+++ V+ G     ++ K +RD+ LVE  +  +ET +GI +A    ++E+ + G+V+ IG+GR  S G + P P   GD V + +++  +  ++GK Y +V   DCL KW
Sbjct:   46 PLCALNNQALIKLSKADDRTAGGLFVASEESSKPREGVVVAAGPGRTHPETGKLMANCVQEGDYVLLADFTGEKVEYCGESHMFINADEILGVFDGGVPKAEAFKPMRDRALVEVAEIATETASGIALAVG--DEEQPTLGQVVKIGDGRLTSMGDLQPLPISIGDHVLYGKFSGTDTTLEGKKYKIVFASDCLGKW 240          
BLAST of mRNA_P-fluviatile_contig84.14884.1 vs. uniprot
Match: A0A7S2S5W6_9STRA (Hypothetical protein n=1 Tax=Eucampia antarctica TaxID=49252 RepID=A0A7S2S5W6_9STRA)

HSP 1 Score: 147 bits (372), Expect = 2.530e-38
Identity = 78/179 (43.58%), Postives = 115/179 (64.25%), Query Frame = 1
Query:  295 AVSKTAGGIVLPDEAQDAPCEGMVVAHGPGRTHPLTGTLIPMCVAEGDTVLFSRWSGRKVKYCGEDHMFILDDDLVLVYRGRELTTDSLKMVRDQVLVETEKGESETDAGIVIAASAAEKEKGSQGRVIAIGEGRTGSEGKIVPCPFKPGDSVKFLEYAPVEIKIKGKYYAVVRMVDCL 831
            A+S TAGGI+LPD++++ P EG V+A GPG+ HP TG  I   +  G +VL+ +++G  + Y  E    I DDD++L Y G ++T D++   RD VLVE  +   ET +GIV+AAS  + +   +G V  +GEGR  S G+  P P + G+ VKF +YA  ++KI GK Y++VRMV+ L
Sbjct:    2 ALSATAGGILLPDQSKERPTEGEVMAAGPGKLHPYTGVRIHNPLKTGFSVLYGKFTGTDIIYNEEPMTMIRDDDVMLYYEGVQMTRDNVVPCRDFVLVELSESAMETKSGIVVAASVTKDDLPCEGNVFKVGEGRMCSTGEFTPSPVQIGEKVKFKDYAGNDVKIDGKEYSLVRMVELL 180          
The following BLAST results are available for this feature:
BLAST of mRNA_P-fluviatile_contig84.14884.1 vs. uniprot
Analysis Date: 2022-09-19 (Diamond blastx: OGS1.0 vs UniRef90)
Total hits: 25
Match NameE-valueIdentityDescription
D7G6K9_ECTSI1.420e-13675.62Chaperonin n=2 Tax=Ectocarpus TaxID=2879 RepID=D7G... [more]
A0A835YHA6_9STRA5.850e-7457.89Chaperonin n=1 Tax=Tribonema minus TaxID=303371 Re... [more]
A0A8J2WID0_9STRA5.530e-5646.86Hypothetical protein n=1 Tax=Pelagomonas calceolat... [more]
A0A7S1UQU6_9STRA3.480e-5047.06Hypothetical protein n=1 Tax=Grammatophora oceanic... [more]
A0A7R9UAA2_9STRA2.890e-4943.90Hypothetical protein n=1 Tax=Pinguiococcus pyrenoi... [more]
W7TNB8_9STRA1.840e-4843.7520 kDa chaperonin n=2 Tax=Monodopsidaceae TaxID=42... [more]
A0A7S2XTD7_9STRA4.590e-4544.33Hypothetical protein n=1 Tax=Attheya septentrional... [more]
A0A7S2LFS4_9STRA9.730e-4543.38Hypothetical protein n=1 Tax=Skeletonema marinoi T... [more]
A0A7S0J0F3_9EUKA1.740e-4142.13Hypothetical protein n=1 Tax=Calcidiscus leptoporu... [more]
A0A7S2S5W6_9STRA2.530e-3843.58Hypothetical protein n=1 Tax=Eucampia antarctica T... [more]

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Alignments
The following features are aligned
Aligned FeatureFeature TypeAlignment Location
P-fluviatile_contig84contigP-fluviatile_contig84:351399..365840 -
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 score167.2
Seed ortholog evalue1.1e-38
Seed eggNOG ortholog159749.K0R458
KEGG koko:K04078
EggNOG free text desc.Belongs to the GroES chaperonin family
EggNOG OGs2XGQX@2836,COG0234@1,KOG1641@2759
COG Functional cat.O
Best tax levelBacillariophyta
Best eggNOG OGNA|NA|NA
BRITEko00000,ko03029,ko03110
Hectar predicted targeting categorychloroplast
Ec32 ortholog descriptionGroES (chaperonin 10)-like
Ec32 orthologEc-05_006580.1
Exons7
Model size1465
Cds size858
Stop1
Start1
Relationships

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

Feature NameUnique NameSpeciesTypePosition
mRNA_P-fluviatile_contig84.14884.1prot_P-fluviatile_contig84.14884.1Porterinema fluviatile SAG_2381polypeptideP-fluviatile_contig84 352006..365840 -


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

Feature NameUnique NameSpeciesTypePosition
1622817291.4647088-UTR-P-fluviatile_contig84:351398..3520051622817291.4647088-UTR-P-fluviatile_contig84:351398..352005Porterinema fluviatile SAG_2381UTRP-fluviatile_contig84 351399..352005 -
1693571960.1542072-UTR-P-fluviatile_contig84:351398..3520051693571960.1542072-UTR-P-fluviatile_contig84:351398..352005Porterinema fluviatile SAG_2381UTRP-fluviatile_contig84 351399..352005 -


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

Feature NameUnique NameSpeciesTypePosition
1622817291.4812143-CDS-P-fluviatile_contig84:352005..3520771622817291.4812143-CDS-P-fluviatile_contig84:352005..352077Porterinema fluviatile SAG_2381CDSP-fluviatile_contig84 352006..352077 -
1693571960.1668494-CDS-P-fluviatile_contig84:352005..3520771693571960.1668494-CDS-P-fluviatile_contig84:352005..352077Porterinema fluviatile SAG_2381CDSP-fluviatile_contig84 352006..352077 -
1622817291.499578-CDS-P-fluviatile_contig84:353337..3534811622817291.499578-CDS-P-fluviatile_contig84:353337..353481Porterinema fluviatile SAG_2381CDSP-fluviatile_contig84 353338..353481 -
1693571960.1773055-CDS-P-fluviatile_contig84:353337..3534811693571960.1773055-CDS-P-fluviatile_contig84:353337..353481Porterinema fluviatile SAG_2381CDSP-fluviatile_contig84 353338..353481 -
1622817291.5153134-CDS-P-fluviatile_contig84:359222..3593211622817291.5153134-CDS-P-fluviatile_contig84:359222..359321Porterinema fluviatile SAG_2381CDSP-fluviatile_contig84 359223..359321 -
1693571960.1853547-CDS-P-fluviatile_contig84:359222..3593211693571960.1853547-CDS-P-fluviatile_contig84:359222..359321Porterinema fluviatile SAG_2381CDSP-fluviatile_contig84 359223..359321 -
1622817291.5271237-CDS-P-fluviatile_contig84:360608..3606801622817291.5271237-CDS-P-fluviatile_contig84:360608..360680Porterinema fluviatile SAG_2381CDSP-fluviatile_contig84 360609..360680 -
1693571960.1943326-CDS-P-fluviatile_contig84:360608..3606801693571960.1943326-CDS-P-fluviatile_contig84:360608..360680Porterinema fluviatile SAG_2381CDSP-fluviatile_contig84 360609..360680 -
1622817291.543335-CDS-P-fluviatile_contig84:361474..3616091622817291.543335-CDS-P-fluviatile_contig84:361474..361609Porterinema fluviatile SAG_2381CDSP-fluviatile_contig84 361475..361609 -
1693571960.2041602-CDS-P-fluviatile_contig84:361474..3616091693571960.2041602-CDS-P-fluviatile_contig84:361474..361609Porterinema fluviatile SAG_2381CDSP-fluviatile_contig84 361475..361609 -
1622817291.5562942-CDS-P-fluviatile_contig84:363237..3633851622817291.5562942-CDS-P-fluviatile_contig84:363237..363385Porterinema fluviatile SAG_2381CDSP-fluviatile_contig84 363238..363385 -
1693571960.2178268-CDS-P-fluviatile_contig84:363237..3633851693571960.2178268-CDS-P-fluviatile_contig84:363237..363385Porterinema fluviatile SAG_2381CDSP-fluviatile_contig84 363238..363385 -
1622817291.568228-CDS-P-fluviatile_contig84:365652..3658401622817291.568228-CDS-P-fluviatile_contig84:365652..365840Porterinema fluviatile SAG_2381CDSP-fluviatile_contig84 365653..365840 -
1693571960.2391648-CDS-P-fluviatile_contig84:365652..3658401693571960.2391648-CDS-P-fluviatile_contig84:365652..365840Porterinema fluviatile SAG_2381CDSP-fluviatile_contig84 365653..365840 -


Sequences
The following sequences are available for this feature:

protein sequence of mRNA_P-fluviatile_contig84.14884.1

>prot_P-fluviatile_contig84.14884.1 ID=prot_P-fluviatile_contig84.14884.1|Name=mRNA_P-fluviatile_contig84.14884.1|organism=Porterinema fluviatile SAG_2381|type=polypeptide|length=286bp
MRSSTVAFVASSAAMLASSAAFLAPTPVHLGVNLPRPAARLAPAPATGRR
HTAGRSVARRATSTSMMSSSSLAITLEEEVIDRPLQPVGNYILVKLFSAV
SKTAGGIVLPDEAQDAPCEGMVVAHGPGRTHPLTGTLIPMCVAEGDTVLF
SRWSGRKVKYCGEDHMFILDDDLVLVYRGRELTTDSLKMVRDQVLVETEK
GESETDAGIVIAASAAEKEKGSQGRVIAIGEGRTGSEGKIVPCPFKPGDS
VKFLEYAPVEIKIKGKYYAVVRMVDCLAKWQGQLE*
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mRNA from alignment at P-fluviatile_contig84:351399..365840-

Legend: polypeptideCDSUTR
Hold the cursor over a type above to highlight its positions in the sequence below.
>mRNA_P-fluviatile_contig84.14884.1 ID=mRNA_P-fluviatile_contig84.14884.1|Name=mRNA_P-fluviatile_contig84.14884.1|organism=Porterinema fluviatile SAG_2381|type=mRNA|length=14442bp|location=Sequence derived from alignment at P-fluviatile_contig84:351399..365840- (Porterinema fluviatile SAG_2381)
ATGAGGTCATCCACAGTGGCGTTTGTGGCGTCCTCCGCGGCTATGCTGGC GTCCAGTGCAGCCTTCCTGGCGCCGACGCCCGTGCACCTTGGTGTTAACC TTCCTCGACCAGCCGCACGATTAGCACCAGCACCCGCGACAGGGCGACGG CACACCGCTGGCAGATCGGTCGCGCGCAGAGCTACCAGGTGCATGTTTAT CTTCGCGACCACAGCCTACTTGCGGTAGCAGTGGGGCTTTGATCCGTCAT CACAGAAACAGGAGCATCAGGAGTGCCACCGCGTTGACACATGTGTAAAC GTTCCTTTGCGGACTCCTCCTTGTGCACGCACGCGGACCCTTTGCTGGAG GGGGGTGGGGTTAGCGAGGGTCTAACTGCTATAATTGGTGAACAACGTCC AGCGAGTTCTTCTGCTGGCGGCGTGGGCATGCTTCCTTGTGCTCGGTTCT CGCGCAATCCTCTACGGTCATGTTGATACCGTGTATGATGGTGTATATCA GACCCCCTCTCAACTCTAACATTCAAACCTCGATCGCGAGCAGCACAACC ACCGAACCACACGTTTTCGGAGAGCTCTAGATGAAAGCTTTGCACAGCTG CCCTTGTTAGACCCTAGCACTATTCCTTCCGAGGAGCTTTTGTGCTCTAA AAGTCGCCGCTGGGGGTGTGGTATACACCTTCTTTAACGGCATGTTTCTG TTCAAGGCCCTGTGTTGAGGTCGCACCGCAATGCGAGATCCCTTCGTTGG TGTGGACTGACCTGTGCAAATTTGTGCACGGGGAGACACCATGATTATTG GATTCATCAGGAACTTTTGTGCCTGGCCGGCGAATGTTTCCATCTCTGTG ATACGCCTTCGAGGCGGCGACTCACAGGGGGTGCCTGTCCTGTTGATGCT GTGATTTTCTAGTTCAGAGAAGCCCGGGTCGATAGCTAGAACGCAACACG AAATCTGTGGACGCACAGATGCGGCAGGCAACAAGCTCGTTACTAGGAAA CTATATTTGACGCCAGTTACCATTCGCACCGCCGAGGCGTGATGTTCGGT CCCAAATGTGCGGTAGAATATTATTAGGTACAATGAGGGGTGGGGGGGGC TCAACGGATGGATTGTGCCGCTATGTGCCCAAGGACTTGGCCAAAACTAC ACCGGCGGCCACCGACACTATTCAGAATATGGCGTGCTATAAGGTTTTGG TACAGGAGTGGACGCTTGTTCCCAGAGACTTGACCGGCACTACAACAGGC GGCGGCACTACTAATCCGGCACTTGTGAGGCCCTGCTACTGTACTTGGAA GATCCTGGTAGGGAGGTGTTCATGCACGTGCGTGTCGCGCGCTTTTGGGG CACCCTCCGTTCTCCAACCACGAACGTGTGCCAAAAAGAGGTACCCGAGC TCAGCCGCGCCAGCGGCCCGCCCATCGTATGAAACACCTCCACAGCAAAG CTCAGCTCAAGGGCGTGCACAATTGTTGCCGTGGCGGCGCGTCGACCAAT GTTACACCTTATCAAGCGAGCAAAGCAGCAGCAGATACGGTAAATTCGGT AGAAAGATTCCAAGCGAAGGCACGCACGCGCCACGGGAATCAAATCCTCA TCACAGGTGATGCTGGAGAAAATTTGAGGAGGCAGTAATCGAAAACTGAC ACCCGGCACCCTCGACCTATTCACCAGATGGTATGTCGAACAAGTTCCAC ATGAAAGACATCGAGGCTCATGCTTTCGAATTCCCCGCCTAACCGCCGCC GTTCAAACAAAGATAGCCAAGAGCTCCGTGGCCGGCGCAACTCACTCTTA ATCTGGATAGTAGTCTTTGCTCGAAGTGTCGTTACCGCGGGTGATATCCT TCAGCAGTCTTGGCAGGCACACATAGCAACCTCACCCCTGTTTTTCAAAG AAGGAAAAGGCAGGGCGGAATCGACGATTCTCCTTCACATTCTCGCAGCG GAAAGGTGTACGGCATACAAAATTTCTGCTAAAAAGTTGAAACGAAGAAT CATCAGATTGATCGATGTGTTTTTTATGTTGGAAATGTTACGTAAGAGCG CTGTGTCTACGGTGACTGTGAGGGACACCTGGGTATGTCGCCGACCACCT TGAACATGTCATCGACAGCCGGTGAGGGTAACTGGCCATAGCACGGGCGG CACCCAAGTTTCTCCACACCACCGGGTGTCAATACATGCGTAGTCAAAGT ATATATTCAGGATTATAAAGTATCGCACCCCTGAAACGATTCTCAAAGCC CTGCTTCTGCCCATCATGGAGGTTGCCAAAAAATTCCAGTACATTCGGCG CCAAAGCCGGTCAATGTCGTCCAGCATGCGTAGGTTCGAATTGGACGTGG ATGCCCCCCCCCACAATGAAACACATCAATTTACGCGTACTTGTATTCTG ATCCTGTGATGCTCCTCCTGCTCTCTCTTCCCTTCCGCCTTTCGGTTGAA CGCAGCACCTCAATGATGTCCTCATCCTCCCTCGCTATCACCCTCGAGGA GGAGGTGATCGACAGGCCCCTACAGCCCGTAGGCAACTACATCCTCGTCA AGCTGTTCTCAGCCGTCTCGAAAACAGCCGGCGGCATCGTGCTCCCCGAT GAGGTACGGTTCCCCCTCTCCCATCTCCGTCACCCTCTATCCCCCTCACC CCCCGCCATCCCGCTTTGAAATTTTGTGCAGAGAAGGGCAAAAAAGTAAA GACCGCCAAAATGTTGGCGGTGCATACCGCGCACGGCGGTGTATACCCGA CACCCTTGATCCGATGTCGAAATCTCGTTGTTGCGTTATCGATGTTGAAA TATCAATTGATGCGTTTTCGATGTTGACATCTCGATTGTTGCATCATCGT GCAGGCACAGAAAGCTCAACGTCCCCTTTCGAGAATCCCTTGATGAGATT CTTCCGAAGCCGCCCTTATGTGGCCCATTGCTCATCGTTCCGAGGAGCTT TTACAGTCCGAAAGTCTCCTCTAGGGTGTGTGGTATACACCGTCGTTTAC GGCGCCTCAATCAGGAGTAGGGACGTTACTTCCTCCGCCTGTAAATGGAC GCGCGAGCAATGATCAACTGACTCAGGCAAGCAACAAATGAGTCTGCCCT CCAACCCCCCGGCCGCCCGTGCCCCCCCCCCCCCTCCCACACCCCTAGCA TGAACCCTCGTTGACCAACGACTGTACTTGTCCGCCTTGTCGAGAGCACC GATCAGCATGATGCTCCCTGATGAGACAGTCTGCTGTGCTGTGTGCCATA TCACAACTCCGGTGATTTTCGATATCCCCCCATCGCTCCCTCCCTCAAGG TAAATGGTCTTCCGACTACGGCATGCATGACTATGAGGGTACCCCCCCCC CCTTAGCTGAAATCGCGATTTCGAGTTGGAGATCTGGACTTGCCAGAGAC ACGGAGAAGTTACACCAATAAAGTAACGGAAGAGGAAGAGGATAGACAGG GATGCCCCTGCGGAGAGCCCGTGGCAAGTCGAACAAACAATTAGGTGCAG GATGTGAGCTGTACTGGGAGGAAGGAGGGAACCGGGAGAGAGACATGAAA ACAATCGGATGTACCATGGACGAGTTGCAAACTCGATGAAAGTGGAAAAA AATATCGCTGTCACAGGGGATAGATGGTGGCCGGCCGAAGTTAAAACAAA TGGCGGGTAAGATTGGCAAGCAATTCTTGGGTAGAGCATGGCAAAAACGT TAAGAGGGCCCGAATGTTGGAGGTATCTCTATTCGGAGTAGGAATGGAGC ACCGTCTCGCGAGGGATGCGTGGTCAACGATCAAAGGACTAAGGCAAGCA GCAAATGGTGCTCCCCGATGAGAGGGGGGGCATGTGATGGCCATGTGTGG CCCGAGGCCGCCGCATGCACCCTCTCTGGCGAGTATGTCCTCACGAAACT GATTACCAAATGCCAGACGCTCGTGGGAAGGGATGGAGGTCTCTCACAGC TGCCACATCCGCCCGACGCCCTCGATCATTGTCCACCCCTCCCTCTATAT GGCCCAACGGCTGCGAAATGCGTAACTTGAGTACGCCCCGTCCCTCCCTC CCCTTCACGGGCGTCTCAATTTATGGTGGACGCAAGATGTCCCCCTACAC AGGTTTAGTGGTTGCCCCCGAGCCCTGTCGGATACGCGGAACCCCTCCTG TTGTAGTGTATGCGCGGAGTTCAATTGCGGCGACCCTTCCGTCCTCCTCG AACTACTTGTCCCCTGTGTGCTGATATTTAGGCGCAAGACGCGCCTTGCG AAGGGATGGTGGTGGCTCACGGTCCAGGCCGGACGCACCCCCTAACCGGC ACGCTGATCCCTATGTGCGTGGCGGAAGGGGATACGGTGCTTTTCTCTCG ATGGAGCGGCCGCAAGGTGGGTGGGAAGGGGGAGGGGGCACGCGAAGCAA ATTTAGGGTGAACGGGGGAGGGTTCGATTCCCGTCCTCTTTTCGTATGTG GTACCAAGATTTTGAGTCGGAGCGAGGAGGAGAGGCAGCCGTGCTCTTCT CGCGGTGGAGCGGTCGCGAGGTGGGGAGGAGGGACTGGGGGATCAAGGGA GGGGAGCGCTCGCGGAGAAACAATAAACTGGAGGGAGGGCGTGTGTGTGC TAGATCCGATGTACCTTTTCCGGGAAACATGGATAGCGTCGTTAGCCTTT TTATGCTTTAGCGCATCTTGGTCCGCTGAGCTTATTCGCCCGAGCAGGTG AAGAACTGTAGGGAGAACCGCGACTTCCCTGACAAACACGTATTGCAGTA CCGCGTCGCATTTTGCCAAGAAACGCCCGATGTGTTGCGCCGCTCTATCC ATCTCCTCGGTCGGAAAGACATTTTCTTCTTCTTTTCCGTCGCAAGACTT TTGTTGTGCTGTTTGTTTCTATCCTGGCCTCTTGTTCGGTCTCGGAATGT GAAGAACTGCAGGGAGGACACCACTCTTCCCCGCCACTAAACACCATACT TGATGTCGTCCAGAAAGGGCGTGATGATTTTCGGGATTGTTTCGTCGCCG CTTCTCCGGCTCCCCCAGTTGAAAAGCACAATTTTCTGTCCTTCGTTCCC GTTTTTCCGTTGTTGTTCTCCGACATGTTCTCCGACATGATCTCCGACAA GAAACATCACCCATTTTCATTTTGGTTTCGTGCCGCCTCTTGCTTTATGT GTCGCGGCAGGTGAAGTACTGCGGGGAGGACCACATGTTTATCCTGGACG ACGACCTTGTCTTGGTCTACCGAGGACGAGAGGTGAGAATTCGCAGATTG TCCCCGGACCCCCCCCCCCTCCTTGGCCTTTGCCCCCTGTTCCCCCTCCT CCCGTGGTCTGGCGAATGCCTTGCGTCCTCCGTTCCGTTTGTTTAGGGAT GCCCACGACGCCATCCGTGGCTACGCATATCTTCTCCCTTCTTTCCTCCC GCCCGTTCCTTTGACAGCCCCTTGCTGCAGGGGAGGCCAGGCATGTGGGC CTCCGCACCCCATTCCGACAGCGTACCCCCTTGTGTGAGTGTTGCATATG TGTGTGTGAGGTTTGTTGGGCTGCCTGTTCGCCTGCTCTCGGCCGTGCAC GCTGTTCAAAATTGAGGCAGGCGCCTGTGGCAAAGCACACCGCTAGAGGC GGAATATCGAAAGAAGCATGTAACCCACTGGCCCCCCAGCGATCCACCTT TACAGCTGACGAAGCAGAGCAACAAACCGTTCCGCCGGCGAAGTCTTCGG GCTATTTTTTTCTCATTGGGAGGATTTCTCTTGCTTTGACTGCGCGCTGT TACGCCTCGAGTTGTCATTTGTTGTCGTGATAGCCGACCGATGGACTTCA TGACTTCATGGCTGGAGCTCACTAGCTGCCTTTTGGATAGGGTTAGTGTG GTGCCGACCTGAAATGACCGTCTGTCCCACCCATCATCTAATTTGTCCAT ATGTGACGGACGATAACCTAAAGATGCTTTCCCTTTTTCTATTTTTTGCA GTCTTGGTCCCGATTCAGCGGTTCGATGCGTAGCGGCAGTGCCCTGTTTA GTGGTTCCCTGCTTAGCGGCAGTGCCCTGTTTAGGGGTTACCTGTATAGC GGCAGTGCCCTGTTTAGCGGTTACCTGCATAGCGGCAGTGCCCTGTTTAG GGGTTACCTGTATAGCGGCAGTGCCCTGTTTAGCGGTTATCTGCTTAGCG GCAGTGCCCTGTTTAGGGGTTACCTGTATAGCGGCAGTGCCCTGTTTAGC GGTTACCTGCATAGCGGGAGTGCCCTGTTTAGCGGTTACCTGCATAGCGA CAGTGCCCTGTTTAGCGGTTACCAAATCCCGTGACACCACTAACTCCCGG ATTGAAGGATTCCTAAATGGTGATGCCCAGAAAATCGTGTACCACTAATC CGCGACGGCGGCTGGAATTGATTTACGGAGCGGCGGGTTGCGAACCCCGA GACATTTGTCTTGTCTTCTTGCTCAAATTCCCGACCCGACTGGGGCTTAA TCTTGGCTGGACTTTCGGCCTATCAACCCCTTTGCCGATCTCTCTCTCTC TCGCCCTGTATGCCGACAGCTGACGACAGACAGCCTCAAGATGGTTCGCG ACCAGGTTCTGGTGGAGACCGAGAAGGGGGAGTCGGAGACGGACGCCGGC ATCGTTATCGCGGCCTCGGTGAGCAAAGAGAACCTGGGGCATCGGGGATC GGGGGGTGGCATGGGGCATAGCGGGGGTAGGAGATTAGGGAGGGGAGCGG GGGAGGGCAGGTGGACACCGTGAAGGATGATTGGAGGTAGATGCCGGCAT CTTCATCGCTGTCGCGGTGAGTGAAGAGAGGGGGGCCCGGGGCGCGCGGG GGAAGGGGGGGTGAGGCGTACCCATTTGTTGCTTGCCGTAGTCCTTTGAC CATTGACCACGCATCCCTCGCGAGACGGAGCACCGCTCCTACTCCCAACA GGTACCTCCAACATTCGGGCGCTCTTGGTTGCCACGCTCTACCCAAGAAT TGCTTGCTTTTCTGACCCCCGTGCTTGGCTTCGCCCCTGTGACAGTGATT GTTTTTTCGCTTTCATCGAGTTTGCCAAACTCGTCCATGTTAGATCCGAT TCACCTCATCTCTTGCTCTCTGAGTCCCCTCTTTTCTCCCTGTACAGCTC ATGTGGTTCAACTGTGTGTGTTCGACTTTCCTCGGGCTCGCCGCATGGGC ATGGCTGTCTATCCTTCTCCTCTTCCGTTTTATTGCTGGTGTATCTTTTC CGAATTTCTGGCGAGGCCAGATCTCCGACTCGAAATCGCAATTCCAGCGT TTTCGCGTTGTCCATCTTGCCGTTCAAAAATATTTTTTTCCCGCTCTTCT CTTTCAGTTCCCCATGTGTCTCTAAAGTGGTCCTTACTTATCACCTTGTC TAAGCGCTCGTCTCTCCCTCCTCTGTATCATGTCCCATTGTTCGTCTTCG TACCCCTCCAGCTCTTCTAATACCGCTATTTGGCCTCCCACAATCTCGTT CCAAGTGTTCTCCACCTCCTTGTCCGACCTTTTTCCCGATCTCCCCTTCC TGGTCTTCTTTCATGACCCCTAATCAAAAGTGGCTAGTAGCCTCTGTTCC GACATTCTGTGTAAAAAGTACTGCCATTGCAACGTCCCCATGTCTCTTTC TCATTTCGACGAGTCCATGCCTAGTTCTGCCGGTACTACGGTATTGCTCG CCGTGCTTGAGCACCCCAAATATCTTCCTAGCAGCTGTCATCTGTGCTGT TTCGAGCGCCTTTACCCATTATCCATTTTTGTTCCCTTCCCATACTCCTG CGTACTCTACCTTGGGTGCGACAACGTTGCACCTTTATACCCTAGTGTCC AGATGTGGGTCTGTAAGTGTCGCATCCAGCTTTCCTACTTTAGCTTTCCC TCCCCGATGACTTGTTGGATGTGCACCTCCCAAGAACAATCTTCCGATAT CTTTACTCCACGGTCGGATTATTGGTCTACAACCGGACGCTCCTTCTCGC CCCATTCCCCTTTGCACCGTGCTGGGTTTGCCGAGCTTCCATTGCAAATC AACAATGCGCACTACGGGACGTTCAGGGTGAACCTCCGTTTTCTTGTGTA CACCAAAGCTACATCGATCCGTTGTTGGAGCCCTTCCGGTGTTTCTCTTA ACCTACACTACCATCGGCAAACATCACCCCAACACCTTATTCCTCCCTGA ATCCAATCTCAGTTTTACTCTTTCTATAGCTGCTACCAAGTCATTGATGA AACATTGATTAAGTTCGGTGACAGCGTGCATCCCAGTGCAGCTCTCTGTA AGATATGGATTGAATCCAATGTGTCCCCGTCCAACATCACCCGCGCTACC GCGCGTCTCGTACACTCGGCCAACTTTTTTCATCATTCTCCACATCTTTC CTGTGATCCCCATGTCCCACATCGTTTTCCAAAACCCATTACCACAGGCC TTTTTGAACGTCTACGAAGAAGCAGTTTGTTGTCAACCCAGCATATTTCT GCCTTGAACTACCTTGCCTTATGTGTACACACTGTATGCACAGCTCCGCT TTGGCCTAAACCCAGCTTGCCCTTACCTGGTTTTGTTTGCTTCCTCTAGC ATTACACCCAATCTATCATTCCCACATTCACAGCACGTTTTCCCCACCAC ACTCGGTAGCGTGATCCCTCGGTAGCGACATGGGTTTGTCTTGTCTCATT TTTGGAGAGGTTCACCATTACTCCTTCTCTCCATCTTCTCGGTGTATAGT CGTTTTCCCAGGTCCAATTGAAAAGCATGACAAGCATAGTCTATCATCCC TCCTCCTCCGTATTTCAAAAACTCGTTGACTATCCCATCAGCTCCTGCTG CCTGCCTATGATTAACTAAGCATTCCTCGTCTTCGTCGCGCGTGAACTCT CTCTCTCTCTCTGTTACGCTTTGGTCATTTATCTTCGCTTGTCGATTGCT CTTCGCTCTACTTTTCTCTCTGCCCACCGACTGGCTTCCTCTTCAATTAA CGCATCGAACTTCTCTCTTTCGGTGGTCATCGCCTACGGTAGTGCTCTAT TAGCACTTTCCTCTTCCCCTTCGAGCTACTAGCCATCTTGTCGTCTGGTG TTCAAAGTGAAGCTATCCCTGTGGGTGCTCCCCGTGGTTTTACCCATGAC CCAATTTATCCCTTTCCACGTTATAACCCCCTGAAAGTCGTCGTTGGTTC TCTCGTCGCTTCCCACCGCTTCTTTCTTCTTCTCCCATGTCCTTCACAAC TTTCGAGCTTCGACGCGTTTCTCCCAGCTTTCACTGGATTTCTCGGACGC GTGTTTCGCATGCGCCTCTCTCCTTGCTCCGATTGCTTGTTTGAGTTCTT CATCCCACCACTTACCAGCTTTCTTGCAAGCAACCGTCTTCGTACCCAAG ACCTTGCTTGCTATGTGTCTTTGGCGAATTCCTGCCATCCCTCGTTGATC CTCGCCCTGCCCCGCCTTTCCCGCATCAGCGCTAGTTGTGCGGATTCTTC CAGTCAACTCCGAGAGATGTCTTGTACCATCTCTGCTTGAAACCCCGGCC TCGTCTCTTCTACTTCCAAGTTTATCGATTCTCCGTCTAGTCAACTGCCT TTGTCGCCTATTGCGAATTGTTCTAGTATCTTTCAATTCTGTCGAAACCA GGCTGTGGTCTGTAGACCCTGCATGCGTTGCACAGACCCTCACTTCCGTC TCCTCGCTCCCGGTCTCCACTATGTAATCAAGGGCAAGGAGCGTTCTCCC TTTTGGACACATTGTATTGTCTATTCCGGTTCCGCTTTCTGTGCTACGCC GTTGATTATTTCCGTCTTTTTGTTCTTCGCAAAACCTTATTGTTTCCTCC TCGTTTTGGTTTTTGGCTTCCTTTCCGTGATATCTAAGGTCTTCGTTGGG AATGGTGGCATTCCTAGTTCGTGTGTTGAGATTCCCAACTGGTTTTAGCT TCCCCCCTTTTCTTACATTTCTGTGAATCATTTGGCTACTCACCAAAACT TCTCTCCATGTCCCTCACCACACTCGTCGATTCTGGTGGCATGTGAGTGT TCCCATTGAAAGCATCCTTTGCTCCCCTCTCCCCTATTGTCCGGATCGAC ATGACTTTTTTCCAAGGTAGTATCAGGAACCACCTCCATGACATGATATC GCACGTATTTCCTTGACAGTGGTTCCTACTATTAATACCCCCCCTCCCCT CTATTTTTGATTGTCTTTCCTTTCAGCTGTTTCCCTTCCACGTGTATTTG CCGACATCGACTCTCGCACTCAGACGATGCCCAAGGCGTGTATTCGTGCT GCACTCCGAAGGTGTTCAAGTCGTTTGTTTGCACTTGCACTCAGACGACG CCCAAGTCGTGTATTCGTGCTTGTTCGGCTACTTCTATCCTCTTGCGTTC CCCTGTAGCGAACCCGCGTCCGTTCCATGATCCTTTTCTCATCTTTTTGC TCCCCCGAGCCTCGCTTCTTCCACCCGCTGTTTTCACACATTCCCTGTCA CTACTCTCTCGCACCGTTACCTTGCCCGTTTCGCGCTTCCTGTGCCTGTT CTGTCCTCAATGACTTCCCCCAGGGTTTGCCTGCCCTTCCTTCCCCACTT TTCCCTCAAGCTACGCCTTACTTCCTCGATTTTTTTCTTGATGCGCACTC TCCGTCCTATTCTCGTTACTCATGCCGAGACTATTGCAGTTTGTTATCTC TCCCACTCTGCACTCGCCGCCCCTCCTAGTTTTACACATATGTGCCCCCC CCCACCCCCCTTCCTACTCCCCCCGTGCGAAGCTGTGTAGTCCTCCTTGC GCGCACTTTCTCGTGAGGTCTGATCTTGTCACGTTGATAGAGACTCCAAA GGTCAACACAACAAGTAATCCTACCTTTCCAATCTTGCTGCCTCCACCCT GACTGCCTCCTCGGCTCCCTCCTAATCTCTAGCGAGACTATTCCCATGTC ATCGAATTATCTGGTGGGAAGTCGCCAAGGAAGTGGGACTTGTTAATCCC AGCCCTCGTTCGGGCTTTGATGTCATTCAAGTGTTTTGCTAGCTCACCAA GACAAAGAAATGCCTCCGGCACGGGCTCGTGGCCTGGAGCCAAGTTCAGC GCCCTTGGCACAACTACCCCAAGTTTGTGCCAGGCAATCTGCACGGTAAC CGACCCTGGCATCCCACTATCGCGTCCTCTATGTACTAGCCTCTCTGCTG TGTTTGGCACTTGCCTCGAGTGAGGTCCAGGGAGCCTGCACATCAGAAGG GCTATAACTCACACACCGGGGTAATCCATGGCTTCCTTTTACATACTTCG ACGTAGTATATTCGCGTGAAATCTTCCTTCACAGAGGTCAGACAGGGCCA CCCCTAATCCCGATCCAATGTTCACCCCGCACTCTACGGCGTTTACCCTA TAAGGCTTCCTACGTACCGGTTGGTGCTTCTTCCCTAGTTGATCATGCGG TCGGTCGGTTGGAAACCTGCAGTCTGAGTGTGTTCGGTCGGCATTTTGTT TTGTACTATCCAGCCCTTTCTTTGGATGCTGACGATGGCATCGGACCAGA TTTCCACCGCCCAGCGGATACTGGAACTTTTTAAAAGGTACCTCACCACG AGACCTCCAACAATCATTTATTGTGTACATTCGACCCGAGAGGGCTGCTG TATCTAGAGGCAGGTTTGTTTTCATCTTTGATGGTCTTGTGTGTGATCTA TGTTTGTGTTTCTGTGATTTAGGATAAACATCAATGTTCGGATGTCCAGG CTGCACATCTTGATCTCTCATGTGACAGTTTGGGGCCCGTAGGAGGGGGG GATTGGGGGGCTAGCGGATGCAAGGGGGGGCGAGGTGGACACCGAGGAGG GGAGGGGAGTTGAAGATAGATGCTGGTATCGTTATCGCAGTCGCGGTAAG CAGGAAGGCGAGAGGGGCGCGGTGGAGGACGAGGGGGGCGCTCGAACTCG TTGTTGCCTGTTTTCAGCATCCGGTCATTGGCCAACAACGTTCGGGCGCC CTAGAGCCCTTTGCCGTACTTTCCGTGAGACCTCTCGCTAGTCTGGGCCC CCTTCTGTGCGGGGGGTCTGCAGCAGCTGCAAGGGGGAAGGGTTCTGAGG GGCTTGAGCTAGGATGAGGGTATTGGTTATGGTGTTGAGGCAGCCTGTGC TTGGTCTGGCCGGCAAGAAGCACGGGGGTTGTTTGCGACTTGCAACGGTC GGTAATGGTCGTGATGTCTTCGTTTTCTTGATACCTTTTTTTTCGTGATG CCGTTTTTTGCCCCGTCACGTTTTCTTGGTTACCCTGTGAGGCTGCCGAG GAGGGAAAGGGGACAAGAGTGAAAATATCGACTTCCGAACAGCGATCTTG TTTTGATTGTACCGTTTTGGCCCATGTTCTTTTTTTGATTGGACCTTTTT TTTTGGCAGGCTGCCGAGAAGGAGAAGGGGAGCCAGGGGCGGGTGATCGC CATCGGCGAGGGCAGAACGGGCAGCGAGGGCAAGATTGTGCCGTGCCCCT TCAAGCCGGGAGACAGCGTCAAGTTCTTGGAGTACGCGCCCGTGGAAATC AAGGTGCGCTTGGTTGTGTTTGTTCACACGTCCTCTGCGGCGATGTGTTC GGGTTATTTACTGCTTTCGAACGCAGTCAGCAAGGCGTGCATGTACCATT TTGCCGCTCTCCTCGTTCCGAGTTCGAACGCGATCGAGATGTGCGTGCAT TGTGCGGCTTCGCTTTAGTCCTCCTCTTTTTTTCTTTACCGAGAAACAAT CTCGACGTTCCTCTGGCCGCGCAGCCTAGAGATGGAAGTGTGTTTGCACG GCTACAAACTACGCCGCTCGACTGGCTTTGTGGGAAGCTGAATACTCTGT TGAACAGGAATCGGTGGCCCAGCTGTGACTGCCGGATCAAATTCAAAATG TTGTTTCGGGTCATTTTCTTTGCACAGTGTAGTCCCCTTGTCTATGAGAT GCAATCGCCTTCTTGGATATCTGTCGTTGGTCTCCGCACCGTTCTGCGGA ATCTGCCGAACGCTGAGAACAGGTCTGCATGCGTGCCTGAAATACTCCAC CAGGCAGCATATTTTGTCTGCTGCCGCGACGTCAGCACAGCAGCTCCATG TCTTTCTAGAAGCTCGCGCTTCAAGATCATCTTAGTATGTCCTCGTGGTG CAGTCGCCGTGCCCCGCACAGCCCACGCCTCACTCTGTCCCTCTACACGT CATCCCTCTCTTTCGAGAGCATGTGCCCGAGAAGTCGTCACTTCCACTGT CAAAAGTCAGTCCGGCACTCCAGGAGAGCCCTTAACCACAGGTGCTGAGA TTTTGCGGCAGCAGACAAATATCCTGTCTGGCGGAGTATTTCAGGCACGC ATGCTGACATGTTCTCAGCATTCCGCAGGTTCTGCGGAACGGTGCGGAGA ACAACGACATATATCCAAAAAGTAGGCGTTTGCATCTCAGTAACCAGGGA CCCACAAGAGCTGTTGTAATTTTTTCGCGCAGACCAGTTTCTCTGACACC CAAAAAGCTTCTCATGTGTAGCATCACTTGGTTATTTCCGAGGGAATACC TCAGGAGGTCCCCGGTGTCCATGACTCTTGCCTCCCGTTTGCCACGTCGG CACTTGGTCGTGCGAACAAAGCGAATCTCATCACAATGTCCTCGATACCT GTCTCTGCATCGACACAGTTTTGGATACTACTTGTAATACTTGTTTCACT ATTTTTTTCCCCTCAGAATTACCGGTATCGTCGCTCCTGCTTTTCATTTA CTATGGATTAACGTCGTGCCATCACGGGTATGCCTCCTTCCCCTTCTCGT CTCCCTGGCCCAGATCAAGGGCAAGTACTACGCGGTCGTGCGGATGGTCG ACTGCCTCGCCAAGTGGCAAGGACAGCTTGAATGATAGGTCGAGAGTCGT AGTGGGGGCGGGGGGAGGGGTATGGATCATGTGGTCACCATCGTGTGCCG GGAGAGGTTGACCCTGGGTGGCGAAGGATGAAAAGGATTTCAGGAAGGGG TCTGATGCAACAGAGTTTGCAGGCATCGAATGTGTAGGTGATGATACCAA ATGGGAGGAGTAGTCGGTACAGTCATCCCCGCGTTGGGGACGCTTAAGCG TTTTCTTTTTGTTTCGAGAGGTGTCGTTAAGTCGGGGCAATGTCCTCCAA GAATAAGTTAAATCGGATTGATCACGACCCAAGAAAAAAGGAATGCCCAC GTTGCGAATGTCCTTAAAGATTGTTTCCTTTATGCGGGGGCGAATGAAGC CACAAACACACAATGGAGGCGTTCTGCTGCCTGCCTCCTTTCCGCCGAAT ATCGTTCGTTCTTTACTCCAGAAAAACAATGAAACAAAAGTACTCCGCTC TCGAAACGGCGGTGGTTGCTCCTGTGCTGTCATTGTGTTGCGCTTTTGGG TACAAAATTGCCGGCTAGGGCTGTTGCTTCGAATGAAATTCGGCTCCACA TGGACAACTTCATCCGGCAAGAAACGACGGTCAGTCAAAAAA
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Coding sequence (CDS) from alignment at P-fluviatile_contig84:351399..365840-

>mRNA_P-fluviatile_contig84.14884.1 ID=mRNA_P-fluviatile_contig84.14884.1|Name=mRNA_P-fluviatile_contig84.14884.1|organism=Porterinema fluviatile SAG_2381|type=CDS|length=1716bp|location=Sequence derived from alignment at P-fluviatile_contig84:351399..365840- (Porterinema fluviatile SAG_2381)
ATGAGGTCATCCACAGTGGCGTTTGTGGCGTCCTCCGCGGCTATGCTGGC
GTCCAGTGCAGCCTTCCTGGCGCCGACGCCCGTGCACCTTGGTGTTAACC
TTCCTCGACCAGCCGCACGATTAGCACCAGCACCCGCGACAGGGCGACGG
CACACCGCTGGCAGATCGGTCGCGCGCAGAGCTACCAGATGAGGTCATCC
ACAGTGGCGTTTGTGGCGTCCTCCGCGGCTATGCTGGCGTCCAGTGCAGC
CTTCCTGGCGCCGACGCCCGTGCACCTTGGTGTTAACCTTCCTCGACCAG
CCGCACGATTAGCACCAGCACCCGCGACAGGGCGACGGCACACCGCTGGC
AGATCGGTCGCGCGCAGAGCTACCAGCACCTCAATGATGTCCTCATCCTC
CCTCGCTATCACCCTCGAGGAGGAGGTGATCGACAGGCCCCTACAGCCCG
TAGGCAACTACATCCTCGTCAAGCTGTTCTCAGCCGTCTCGAAAACAGCC
GGCGGCATCGTGCTCCCCGATGAGCACCTCAATGATGTCCTCATCCTCCC
TCGCTATCACCCTCGAGGAGGAGGTGATCGACAGGCCCCTACAGCCCGTA
GGCAACTACATCCTCGTCAAGCTGTTCTCAGCCGTCTCGAAAACAGCCGG
CGGCATCGTGCTCCCCGATGAGGCGCAAGACGCGCCTTGCGAAGGGATGG
TGGTGGCTCACGGTCCAGGCCGGACGCACCCCCTAACCGGCACGCTGATC
CCTATGTGCGTGGCGGAAGGGGATACGGTGCTTTTCTCTCGATGGAGCGG
CCGCAAGGCGCAAGACGCGCCTTGCGAAGGGATGGTGGTGGCTCACGGTC
CAGGCCGGACGCACCCCCTAACCGGCACGCTGATCCCTATGTGCGTGGCG
GAAGGGGATACGGTGCTTTTCTCTCGATGGAGCGGCCGCAAGGTGAAGTA
CTGCGGGGAGGACCACATGTTTATCCTGGACGACGACCTTGTCTTGGTCT
ACCGAGGACGAGAGGTGAAGTACTGCGGGGAGGACCACATGTTTATCCTG
GACGACGACCTTGTCTTGGTCTACCGAGGACGAGAGCTGACGACAGACAG
CCTCAAGATGGTTCGCGACCAGGTTCTGGTGGAGACCGAGAAGGGGGAGT
CGGAGACGGACGCCGGCATCGTTATCGCGGCCTCGCTGACGACAGACAGC
CTCAAGATGGTTCGCGACCAGGTTCTGGTGGAGACCGAGAAGGGGGAGTC
GGAGACGGACGCCGGCATCGTTATCGCGGCCTCGGCTGCCGAGAAGGAGA
AGGGGAGCCAGGGGCGGGTGATCGCCATCGGCGAGGGCAGAACGGGCAGC
GAGGGCAAGATTGTGCCGTGCCCCTTCAAGCCGGGAGACAGCGTCAAGTT
CTTGGAGTACGCGCCCGTGGAAATCAAGGCTGCCGAGAAGGAGAAGGGGA
GCCAGGGGCGGGTGATCGCCATCGGCGAGGGCAGAACGGGCAGCGAGGGC
AAGATTGTGCCGTGCCCCTTCAAGCCGGGAGACAGCGTCAAGTTCTTGGA
GTACGCGCCCGTGGAAATCAAGATCAAGGGCAAGTACTACGCGGTCGTGC
GGATGGTCGACTGCCTCGCCAAGTGGCAAGGACAGCTTGAATGAATCAAG
GGCAAGTACTACGCGGTCGTGCGGATGGTCGACTGCCTCGCCAAGTGGCA
AGGACAGCTTGAATGA
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