mRNA_P-fluviatile_contig1.369.1 (mRNA) Porterinema fluviatile SAG_2381

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

Overview
NamemRNA_P-fluviatile_contig1.369.1
Unique NamemRNA_P-fluviatile_contig1.369.1
TypemRNA
OrganismPorterinema fluviatile SAG_2381 (Porterinema fluviatile SAG_2381)
Homology
BLAST of mRNA_P-fluviatile_contig1.369.1 vs. uniprot
Match: A0A6H5KPF6_9PHAE (EngB-type G domain-containing protein n=2 Tax=Ectocarpus TaxID=2879 RepID=A0A6H5KPF6_9PHAE)

HSP 1 Score: 721 bits (1861), Expect = 3.340e-246
Identity = 408/564 (72.34%), Postives = 447/564 (79.26%), Query Frame = 2
Query:  425 GGGSSGCRAFSGGKRPKIRGRG-WEGRRVAGGDERRAGVPLGMGKGSDRKKAKXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXVVVQEVQDKEGFLSVLELFRKAKAPKRIFQASGGGAFETAKRKDVDGLPDLAAAAVKEELKLSRADLATRIIESLGVEQWDTWLASDLDGAQSVVRCACAASEPAFAEELIAKAGFSCRDVGGGCEAREEYGAAAASVYPNLVTAYSRKGRRDDAMRLMEAMAGARVPVKTAAANRLLQGFHKRRDLEAVFKVLDVMAASGAEGDDETYEWLANAAVRSVDFVTGAVSMATLPKEPVLPEAAFIGRSNVGKSSLINMVCNRKALAYTSKRPGKTQQFNYFMMNKNTENAFYLVDMPGMGYARVPEKQRNEWSKLFRSYITRRSSLRVLFHLIDGRHGPVGQDHTIMRLMAELPDTARYVVALTKADKSDNTVSRQVLEGVVSALREAGVSRTPVVLTSAASKLGRDGMWRYLRLAALDKSMRDQHLTDKPRTPDKEGDGSARDKSSWTRVARQETNHDAQEQDAPAAPAGVTVPAGV 2113
            GGGS+  RA SGGKRPK+RGR  WE          RAG  LGMGKG  RKKAK         XXXXX                    V VQE+ DKEGFLS  E  RKAKAPK+IFQA     F TAKR  ++GLPDLAAAAVKEELKLSRADLA  +IE+LG EQWD WLASDLDGAQ+VVRCACAASE AFAEEL+AKAGFSC   GGG E  EE+ +AA SVYPNL+TA+SR G+R DAMRL+EAMA AR+PVKT AANRLLQGFHKRRDLEAVFKVLDVMAA+G +GDDETYEWLANAAVR VDFV GAVSMATLPKEPVLPEAAFIGRSNVGKSSLINMVCNRKALA+TSKRPGKTQQFNYF+MN NTEN+FYLVD+PGMGYA+VPEKQR EWS LFRSYITRRSSLRVLFHLIDGRHGPVGQDH IM+LMAELPDTARYVV LTKADKSDN+VSRQVLEGVV+ALREAGVSRTPVVLTSAASKLGRDGMWRYLRLAALDKSMR++ + +K     ++ + S  + + WTRV R+       + D       V+V AGV
Sbjct:  131 GGGST--RALSGGKRPKLRGRARWE--------RGRAGA-LGMGKGLGRKKAKKEQAKANKAXXXXXPAPKAAAQHSVGAAAAGQ--VAVQEISDKEGFLSAFETLRKAKAPKKIFQA-----FSTAKRNGIEGLPDLAAAAVKEELKLSRADLARSVIETLGAEQWDAWLASDLDGAQAVVRCACAASEAAFAEELVAKAGFSC---GGGDELAEEFVSAATSVYPNLITAFSRNGKRGDAMRLLEAMANARLPVKTPAANRLLQGFHKRRDLEAVFKVLDVMAAAGVDGDDETYEWLANAAVRGVDFVKGAVSMATLPKEPVLPEAAFIGRSNVGKSSLINMVCNRKALAFTSKRPGKTQQFNYFLMNNNTENSFYLVDLPGMGYAKVPEKQRKEWSTLFRSYITRRSSLRVLFHLIDGRHGPVGQDHAIMKLMAELPDTARYVVVLTKADKSDNSVSRQVLEGVVAALREAGVSRTPVVLTSAASKLGRDGMWRYLRLAALDKSMREKEVANKEGKAGEDAE-SGSEGNDWTRVVRRGVG----QADTVLNSRPVSVVAGV 668          
BLAST of mRNA_P-fluviatile_contig1.369.1 vs. uniprot
Match: A0A836C8M6_9STRA (P-loop containing nucleoside triphosphate hydrolase protein (Fragment) n=1 Tax=Tribonema minus TaxID=303371 RepID=A0A836C8M6_9STRA)

HSP 1 Score: 348 bits (893), Expect = 1.520e-107
Identity = 184/296 (62.16%), Postives = 219/296 (73.99%), Query Frame = 2
Query: 1082 AAASVYPNLVTAYSRKGRRDDAMRLMEAMAGARVPVKTAAANRLLQGFHKRRDLEAVFKVLDVMAASGAEGDDETYEWLANAAVRSVDFVTGAVSMATLPKEPVLPEAAFIGRSNVGKSSLINMVCNRKALAYTSKRPGKTQQFNYFMMNKNTE---------NAFYLVDMPGMGYARVPEKQRNEWSKLFRSYITRRSSLRVLFHLIDGRHGPVGQDHTIMRLMAELPDTARYVVALTKADKSDNTVSRQVLEGVVSALREAGVSRTPVVLTSAASKLGRDGMWRYLRLAALDKS 1942
            A A++YP+L +A  R G R  A+  +E MA  RV +   AANRL++   +RRDL AVF VLD M A+    +D+TYE +ANAAVRSV+FVTGAVSM TLP++  LPEAAFIGRSNVGKSSL+NMVCNRKALAYTSKRPGKTQQ N+F +N             +AFYLVDMPG GYA+V E+ R  W  L + Y+ +R SLRVLFHL+DGRHGPVG D  IM+ MA LP  ARYV+ LTKADK DNTVS  V+   ++ALREAGV   PVV+TSA +KLGRD MWRYLRLAALD+S
Sbjct:   10 AQAALYPSLASALFRAGARRRALAALEDMARGRVAISIDAANRLIRAAQRRRDLRAVFAVLDAMTAARVAPNDDTYEAVANAAVRSVEFVTGAVSMETLPRK-WLPEAAFIGRSNVGKSSLVNMVCNRKALAYTSKRPGKTQQLNFFEVNGGAAAAGAGDGEAHAFYLVDMPGHGYAKVSEQLRTSWQDLLKQYVAQRRSLRVLFHLLDGRHGPVGHDKAIMKEMARLPSYARYVIVLTKADKQDNTVSAGVMAATITALREAGVENAPVVITSAETKLGRDAMWRYLRLAALDRS 304          
BLAST of mRNA_P-fluviatile_contig1.369.1 vs. uniprot
Match: A0A7S1EK19_HEMAN (Hypothetical protein n=1 Tax=Hemiselmis andersenii TaxID=464988 RepID=A0A7S1EK19_HEMAN)

HSP 1 Score: 267 bits (683), Expect = 8.540e-76
Identity = 149/283 (52.65%), Postives = 190/283 (67.14%), Query Frame = 2
Query: 1094 VYPNLVTAYSRKGRRDDAMRLMEAMAGARVPVKTAAANRLLQGFHKRRDLEAVFKVLDVMAASGAEGDDETYEWLANAAVRSVDFVTGAVSMATLPKEPVLPEAAFIGRSNVGKSSLINMVCNRKALAYTSKRPGKTQQFNYFMMNKNTE--NAFYLVDMPGMGYARVPEKQRNEWSKLFRSYITRRSSLRVLFHLIDGRHGPVGQDHTIMRLMAELPDTARYVVALTKADKSDNTVSRQVLEGVVSALREAGVSR-TPVVLTSAASKLGRDGMWRYLRLAAL 1933
            VYP    A  R GR   A  L+  + G+R        N L++ F K   L+ VF VLD M  +G E D ET E+L+NAAVR ++FV GAVS+ TLP +P LPEA F GRSNVGKSSL+NM+ NRK LA++SK PGKTQQFNYF++N   +  N F+LVD+PG+GYA+VP   R EW     SY+T+R SL+VLFHL+D RHGP   D  +M+L AE   +A +VV LTK DK D  V + +++GV  AL E G SR TP++ TSA +K GRD +W YL+LAAL
Sbjct:   88 VYPVAAQAALRTGRVSLARDLVIRLKGSRDSAPVTTYNYLIKQFGKAGSLQGVFLVLDAMKEAGVEADAETLEFLSNAAVRQIEFVKGAVSVDTLP-DP-LPEACFAGRSNVGKSSLVNMLSNRKKLAFSSKTPGKTQQFNYFVVNGQDDVGNKFHLVDLPGVGYAKVPVAVRREWVGFLTSYLTQRESLKVLFHLVDSRHGPQKDDLELMKLYAETKCSAAFVVVLTKIDKIDGKVRQSIVDGVRDALVECGCSRDTPILQTSAETKRGRDEVWNYLKLAAL 368          
BLAST of mRNA_P-fluviatile_contig1.369.1 vs. uniprot
Match: A0A4D9D8J4_9STRA (EngB-type G domain-containing protein n=1 Tax=Nannochloropsis salina CCMP1776 TaxID=1027361 RepID=A0A4D9D8J4_9STRA)

HSP 1 Score: 273 bits (697), Expect = 1.780e-75
Identity = 147/286 (51.40%), Postives = 193/286 (67.48%), Query Frame = 2
Query: 1082 AAASVYPNLVTAYSRKGRRDDAMRLMEAMAGARVPVKTAAANRLLQGFHKRRDLEAVFKVLDVMAASGAEGDDETYEWLANAAVRSVDFVTGAVSMATLPKEPVLPEAAFIGRSNVGKSSLINMVCNRKALAYTSKRPGKTQQFNYFMMNKNTENAFYLVDMPGMGYARVPEKQRNEWSKLFRSYITRRSSLRVLFHLIDGRHGPVGQDHTIMRLM-AELPDTARYVVALTKADKSDNTVSRQVLEGVVSALREAGVSRT-PVVLTSAASKLGRDGMWRYLRLAAL 1933
            AA  +   +  A  +K     A RL+  +    +P      N LL+   K+R ++A+F  LD+M   GA  D ++Y+ LAN  VRSVDFV GAVSM TLP   +LPE  FIGRSNVGKSSL+NMVCNRK LAY SKRPGKTQQFNYF++N  T++AFY+VD+PG+GYA+VP  ++++W+  F SY+ +RSSL+V+FHLID RHGP+ QD   M  M A L    +YV+ LTKADK D  VS  + + V  AL    +  T PV++TSA ++LGRD +WRYLRLA +
Sbjct:  374 AALGMLTTVTKAMLKKEDISGASRLLRTVVRWHLPPPMEICNELLRLQGKQRRVDAMFVTLDLMREGGAHPDTDSYQHLANTLVRSVDFVAGAVSMETLPTR-MLPEVCFIGRSNVGKSSLLNMVCNRKDLAYVSKRPGKTQQFNYFLVNDKTKSAFYMVDVPGVGYAKVPLAEKSKWASFFESYLAQRSSLKVVFHLIDSRHGPLAQDLMTMEAMRASLRPGVQYVIILTKADKKDGKVSPSLKQQVADALDAHQLKETTPVLVTSAVNRLGRDEVWRYLRLAVI 658          
BLAST of mRNA_P-fluviatile_contig1.369.1 vs. uniprot
Match: A0A6V1PQB5_HETAK (Hypothetical protein n=1 Tax=Heterosigma akashiwo TaxID=2829 RepID=A0A6V1PQB5_HETAK)

HSP 1 Score: 248 bits (634), Expect = 4.980e-72
Identity = 127/214 (59.35%), Postives = 159/214 (74.30%), Query Frame = 2
Query: 1295 DDETYEWLANAAVRSVDFVTGAVSMATLPKEPVLPEAAFIGRSNVGKSSLINMVCNRKALAYTSKRPGKTQQFNYFMMNKNTENAFYLVDMPGMGYARVPEKQRNEWSKLFRSYITRRSSLRVLFHLIDGRHGPVGQDHTIMRLMAE-LPDTARYVVALTKADKSDNTVSRQVLEGVVSALREAGVSRTPVVLTSAASKLGRDGMWRYLRLAAL 1933
            DDET+E+LANAA ++++FVTG+VSM TLPK   LPEAA IG+SNVGKSSL+NM+CNRK LA+TSK+PGKTQQFNYF +N  +E+ FYLVD+PG+GYA+VP+  R++W +    YI+ R  L+VLFHLID RHGPV  D  IM +  + L   A+YVV LTKADK D  V R V   V +AL     S  PVV+TSA S+LGRD MW +L+ A L
Sbjct:   13 DDETFEFLANAAAKNIEFVTGSVSMETLPKTR-LPEAAIIGKSNVGKSSLVNMICNRKNLAFTSKKPGKTQQFNYFKINSGSEHEFYLVDVPGLGYAKVPKHLRDQWVQFLTQYISERKGLKVLFHLIDSRHGPVETDLEIMGMARDHLAPGAQYVVVLTKADKKDGKVPRAVRAAVAAALEAEYGSGAPVVITSAESRLGRDAMWHHLKRATL 225          
BLAST of mRNA_P-fluviatile_contig1.369.1 vs. uniprot
Match: A0A2V3IQZ2_9FLOR (Putative GTP-binding protein EngB n=1 Tax=Gracilariopsis chorda TaxID=448386 RepID=A0A2V3IQZ2_9FLOR)

HSP 1 Score: 249 bits (637), Expect = 8.040e-69
Identity = 133/256 (51.95%), Postives = 179/256 (69.92%), Query Frame = 2
Query: 1163 AMAGARVPVKTAAANRLLQGFHKRRDLEAVFKVLDVMAASGAEGDDETYEWLANAAVRSVDFVTGAVSMATLPKEPVLPEAAFIGRSNVGKSSLINMVCNRKALAYTSKRPGKTQQFNYFMMNKNT-ENAFYLVDMPGMGYARVPEKQRNEWSKLFRSYITRRSSLRVLFHLIDGRHGPVGQDHTIMRLMAELPDTARYVVALTKADKSDNT-VSRQVLEGVVSALREAGVSRT-PVVLTSAASKLGRDGMWRYLR 1921
            A  G    V+    N  ++   K + LE+VF+VLD++  +  + D+ET+E+LANAAVR V FV GAVSM TLP EP+  E AF+GRSNVGKSSL+NM+CNRKALAY S RPGKTQQFNYF++N+ + E  FYLVD+PG+GYA+VP   + EW +  R Y+  R+SLR++FHLIDGRHG +  D  +M+ +A      +YV+ LTK DK+D     R V++   +AL   G S   P+VLTSA+S+LGRD MWR+++
Sbjct:  246 AEGGKNAAVEIGLYNTAIRMLGKNKMLESVFEVLDMVRLAQVKPDNETFEFLANAAVRQVRFVKGAVSMDTLP-EPLGAEVAFVGRSNVGKSSLVNMICNRKALAYVSGRPGKTQQFNYFLVNERSPETQFYLVDLPGVGYAKVPIPVKEEWLRFMRQYLKHRTSLRIVFHLIDGRHGALADDEQLMQEIAGYGKGLQYVLVLTKMDKADKQRAKRSVMDKTRAALVRNGCSPDIPIVLTSASSRLGRDDMWRHMQ 500          
BLAST of mRNA_P-fluviatile_contig1.369.1 vs. uniprot
Match: R7Q9B2_CHOCR (EngB-type G domain-containing protein n=1 Tax=Chondrus crispus TaxID=2769 RepID=R7Q9B2_CHOCR)

HSP 1 Score: 247 bits (630), Expect = 2.690e-68
Identity = 135/253 (53.36%), Postives = 175/253 (69.17%), Query Frame = 2
Query: 1175 ARVPVKTAAANRLLQGFHKRRDLEAVFKVLDVMAASGAEGDDETYEWLANAAVRSVDFVTGAVSMATLPKEPVLPEAAFIGRSNVGKSSLINMVCNRKALAYTSKRPGKTQQFNYFMMN-KNTENAFYLVDMPGMGYARVPEKQRNEWSKLFRSYITRRSSLRVLFHLIDGRHGPVGQDHTIMRLMAELP-DTARYVVALTKADKSDNTVSRQ-VLEGVVSALREAGV-SRTPVVLTSAASKLGRDGMWRYLR 1921
            A +P+K    N  ++   K R +  VF +LD+M AS  E ++ETYE+LANAAVR VDFVTGAVSM TLP  P+  E AF+GRSNVGKSSL+NM+CNRKALAY S  PGKTQQFNYF +N K+ E+ FY+VD+PG+GYARVP   +  W +    Y+  R+SLR++FHLIDGRHG +  D  +MRL+A        YVV  TK DK D    +Q V+    SAL   G  S TP+V++S++++LGRD MWR+L+
Sbjct:  206 AALPIKEY--NNCIRVLGKSRSMPGVFAILDLMKASKVEANNETYEFLANAAVRQVDFVTGAVSMDTLPP-PITTEVAFVGRSNVGKSSLVNMLCNRKALAYVSGTPGKTQQFNYFHVNAKDQESQFYMVDLPGVGYARVPRPVQEAWIRFMEQYLQYRTSLRLIFHLIDGRHGAMTDDEQLMRLIAASGRQKGEYVVVFTKMDKMDKQKLKQAVINETRSALSRNGCRSDTPIVISSSSTRLGRDEMWRHLQ 455          
BLAST of mRNA_P-fluviatile_contig1.369.1 vs. uniprot
Match: A0A7S2FR04_9STRA (Hypothetical protein (Fragment) n=1 Tax=Dictyocha speculum TaxID=35687 RepID=A0A7S2FR04_9STRA)

HSP 1 Score: 248 bits (634), Expect = 2.730e-68
Identity = 139/259 (53.67%), Postives = 178/259 (68.73%), Query Frame = 2
Query: 1184 PVKTAAANRLLQGFHKRRDLEAVFKVLDVMAASGAEGDDETYEWLANAAVRSVDFVTGAVSMATLPKEPVLPEAAFIGRSNVGKSSLINMVCNRKALAYTSKRPGKTQQFNYFMMNK----NTENAFYLVDMPGMGYARVPEKQRNEWSKLFRSYITRRSSLRVLFHLIDGRHGPVGQDHTIMRLMAELPDTAR--YVVALTKADKSD-NTVSRQV-LEGVVSALREA----GVSRTPVVLTSAASKLGRDGMWRYLRL 1924
            PV     N+LL+ F   R L A+F ++DVM+ + A  +D T+E +ANAAVRSVDFVT AVSM TLP  P++PE AFIGRSNVGKSSL+NM+CNRKALAYTSK PGKTQQFNYF++N+    N +  F++VD+PG+GYA+VP+  R  W +    Y+  R  LRV+FHL+D R GPV QD  I+RLM ++    R  YV+ LTK DK D N     V +  V  AL ++      S+ P+V TS+ S+LGRD MWRYLRL
Sbjct:  263 PVSIELFNKLLKEFASARHLPALFHLMDVMSDTKAVANDITFEIVANAAVRSVDFVTSAVSMDTLPA-PLIPEVAFIGRSNVGKSSLVNMLCNRKALAYTSKTPGKTQQFNYFVINEASNWNPKCDFHMVDLPGLGYAKVPQAVRKNWVEFMTQYLEEREPLRVVFHLMDARLGPVAQDEEIIRLMEQISTRERFQYVIVLTKVDKKDVNEKGTLVAMASVQRALDDSFGVEAASQIPIVATSSISRLGRDQMWRYLRL 520          
BLAST of mRNA_P-fluviatile_contig1.369.1 vs. uniprot
Match: A0A7S3V5Y5_9STRA (Hypothetical protein n=1 Tax=Chaetoceros debilis TaxID=122233 RepID=A0A7S3V5Y5_9STRA)

HSP 1 Score: 235 bits (600), Expect = 3.700e-63
Identity = 131/253 (51.78%), Postives = 166/253 (65.61%), Query Frame = 2
Query: 1250 VFKVLDVMAASGAEGDDETYEWLANAAVRSVDFVTGAVSMATLPKEPVLPEAAFIGRSNVGKSSLINMVCNRKALAYTSKRPGKTQQFNYFMMN-----------------KNTENAFYLVDMPGMGYARVPEKQRNEWSKLFRSYITRRSSLRVLFHLIDGRHGPVGQDHTIMRLMAEL-PDTARYVVALTKADKS---DNT-----VSRQVLEGVVSALREAGVSRTPVVLTSAASKLGRDGMWRYLRLAA 1930
            V+ VL  M    ++ DD TYE L+NA VR   F+TGAVSM   P +    E  F+GRSNVGKSSL+NMV NRK+LAYTSKRPGKTQQFNYF +N                 +   +AFY++D+PG G+A+VPEKQR EWS     YI  R +LRV+FHLIDGRHGP+ +D  IM+ + E  P   +YV+ LTKADK+    NT     V ++VL+ +  A +E GV   P++LTSA +KLGRD MWRY+RLAA
Sbjct:  317 VYCVLKAMTTFPSDNDDRTYEALSNALVRRTLFITGAVSMEGCP-DADRGEVVFMGRSNVGKSSLVNMVTNRKSLAYTSKRPGKTQQFNYFAVNDKPGREKEVRYGDEVRGEKDPDAFYILDVPGFGFAKVPEKQRQEWSDFLSEYIETRKTLRVIFHLIDGRHGPIDEDFNIMKQVGEQKPKGVQYVIVLTKADKNIKGPNTTNSGKVQKKVLDKLRIAAKENGVGTAPILLTSAETKLGRDDMWRYMRLAA 568          
BLAST of mRNA_P-fluviatile_contig1.369.1 vs. uniprot
Match: A0A7S1BPM9_9STRA (Hypothetical protein n=1 Tax=Corethron hystrix TaxID=216773 RepID=A0A7S1BPM9_9STRA)

HSP 1 Score: 233 bits (595), Expect = 2.860e-62
Identity = 133/255 (52.16%), Postives = 165/255 (64.71%), Query Frame = 2
Query: 1250 VFKVLDVMAASGAEGDDETYEWLANAAVRSVDFVTGAVSMATLPKEPVLPEAAFIGRSNVGKSSLINMVCNRKALAYTSKRPGKTQQFNYFMMNKNTE-----------------NAFYLVDMPGMGYARVPEKQRNEWSKLFRSYITRRSSLRVLFHLIDGRHGPVGQDHTIMRLMAELPDTAR---YVVALTKADKS-------DNTVSRQVLEGVVSALREAGVSRT-PVVLTSAASKLGRDGMWRYLRLAA 1930
            V+ VL+ M    +E  +  YE LANA VR V+FVTGAVS   LPK P   E  FIGRSNVGKSSL+NM+ NRK+LAYTSK PGKTQQ+NYF +N   E                 +AFYLVD+PG G+A+VP+ QR  WS     Y+  R +LR +FHL+D RHGPV +D  IMRL A+   T +   YVV LTKADK+       +  VS++V+E V  A++ AGV R  PV+LTSA +KLGRD +WRYLR AA
Sbjct:  338 VYSVLNTMTTFPSENTNAIYEQLANALVRRVEFVTGAVSFDNLPK-PDRGEVTFIGRSNVGKSSLVNMITNRKSLAYTSKTPGKTQQYNYFAVNDKPELAREIRFGDTVPGAKDPDAFYLVDLPGFGFAKVPQAQRLAWSDFLARYLRDRPNLRTVFHLVDARHGPVAEDENIMRLAAQELKTRKDVQYVVVLTKADKNVKVAQTDEGRVSKKVMEDVRGAMQRAGVGRNVPVLLTSAETKLGRDDVWRYLRAAA 591          
The following BLAST results are available for this feature:
BLAST of mRNA_P-fluviatile_contig1.369.1 vs. uniprot
Analysis Date: 2022-09-19 (Diamond blastx: OGS1.0 vs UniRef90)
Total hits: 25
Match NameE-valueIdentityDescription
A0A6H5KPF6_9PHAE3.340e-24672.34EngB-type G domain-containing protein n=2 Tax=Ecto... [more]
A0A836C8M6_9STRA1.520e-10762.16P-loop containing nucleoside triphosphate hydrolas... [more]
A0A7S1EK19_HEMAN8.540e-7652.65Hypothetical protein n=1 Tax=Hemiselmis andersenii... [more]
A0A4D9D8J4_9STRA1.780e-7551.40EngB-type G domain-containing protein n=1 Tax=Nann... [more]
A0A6V1PQB5_HETAK4.980e-7259.35Hypothetical protein n=1 Tax=Heterosigma akashiwo ... [more]
A0A2V3IQZ2_9FLOR8.040e-6951.95Putative GTP-binding protein EngB n=1 Tax=Gracilar... [more]
R7Q9B2_CHOCR2.690e-6853.36EngB-type G domain-containing protein n=1 Tax=Chon... [more]
A0A7S2FR04_9STRA2.730e-6853.67Hypothetical protein (Fragment) n=1 Tax=Dictyocha ... [more]
A0A7S3V5Y5_9STRA3.700e-6351.78Hypothetical protein n=1 Tax=Chaetoceros debilis T... [more]
A0A7S1BPM9_9STRA2.860e-6252.16Hypothetical protein n=1 Tax=Corethron hystrix Tax... [more]

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Alignments
The following features are aligned
Aligned FeatureFeature TypeAlignment Location
P-fluviatile_contig1contigP-fluviatile_contig1:4361924..4372600 +
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 score728.4
Seed ortholog evalue3.1e-207
Seed eggNOG ortholog2880.D7G7B8
KEGG koko:K03978
EggNOG free text desc.GTP binding
EggNOG OGsCOG0218@1,KOG2486@2759
COG Functional cat.V
Best tax levelEukaryota
Best eggNOG OGNA|NA|NA
BRITEko00000,ko03036
Hectar predicted targeting categorychloroplast
Ec32 ortholog descriptionYihA4, YihA/EngB-like GTPase
Ec32 orthologEc-04_003410.1
Exons12
Model size3299
Cds size2076
Stop1
Start1
Relationships

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

Feature NameUnique NameSpeciesTypePosition
mRNA_P-fluviatile_contig1.369.1prot_P-fluviatile_contig1.369.1Porterinema fluviatile SAG_2381polypeptideP-fluviatile_contig1 4361973..4371426 +


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

Feature NameUnique NameSpeciesTypePosition
1622815327.2397664-UTR-P-fluviatile_contig1:4361923..43619721622815327.2397664-UTR-P-fluviatile_contig1:4361923..4361972Porterinema fluviatile SAG_2381UTRP-fluviatile_contig1 4361924..4361972 +
1693561503.9106987-UTR-P-fluviatile_contig1:4361923..43619721693561503.9106987-UTR-P-fluviatile_contig1:4361923..4361972Porterinema fluviatile SAG_2381UTRP-fluviatile_contig1 4361924..4361972 +
1622815327.3799772-UTR-P-fluviatile_contig1:4371426..43726001622815327.3799772-UTR-P-fluviatile_contig1:4371426..4372600Porterinema fluviatile SAG_2381UTRP-fluviatile_contig1 4371427..4372600 +
1693561504.5158548-UTR-P-fluviatile_contig1:4371426..43726001693561504.5158548-UTR-P-fluviatile_contig1:4371426..4372600Porterinema fluviatile SAG_2381UTRP-fluviatile_contig1 4371427..4372600 +


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

Feature NameUnique NameSpeciesTypePosition
1622815327.2526634-CDS-P-fluviatile_contig1:4361972..43625121622815327.2526634-CDS-P-fluviatile_contig1:4361972..4362512Porterinema fluviatile SAG_2381CDSP-fluviatile_contig1 4361973..4362512 +
1693561504.0641828-CDS-P-fluviatile_contig1:4361972..43625121693561504.0641828-CDS-P-fluviatile_contig1:4361972..4362512Porterinema fluviatile SAG_2381CDSP-fluviatile_contig1 4361973..4362512 +
1622815327.2637146-CDS-P-fluviatile_contig1:4364424..43646221622815327.2637146-CDS-P-fluviatile_contig1:4364424..4364622Porterinema fluviatile SAG_2381CDSP-fluviatile_contig1 4364425..4364622 +
1693561504.3855574-CDS-P-fluviatile_contig1:4364424..43646221693561504.3855574-CDS-P-fluviatile_contig1:4364424..4364622Porterinema fluviatile SAG_2381CDSP-fluviatile_contig1 4364425..4364622 +
1622815327.273007-CDS-P-fluviatile_contig1:4365066..43651881622815327.273007-CDS-P-fluviatile_contig1:4365066..4365188Porterinema fluviatile SAG_2381CDSP-fluviatile_contig1 4365067..4365188 +
1693561504.4047253-CDS-P-fluviatile_contig1:4365066..43651881693561504.4047253-CDS-P-fluviatile_contig1:4365066..4365188Porterinema fluviatile SAG_2381CDSP-fluviatile_contig1 4365067..4365188 +
1622815327.282848-CDS-P-fluviatile_contig1:4365650..43658101622815327.282848-CDS-P-fluviatile_contig1:4365650..4365810Porterinema fluviatile SAG_2381CDSP-fluviatile_contig1 4365651..4365810 +
1693561504.4213111-CDS-P-fluviatile_contig1:4365650..43658101693561504.4213111-CDS-P-fluviatile_contig1:4365650..4365810Porterinema fluviatile SAG_2381CDSP-fluviatile_contig1 4365651..4365810 +
1622815327.2941105-CDS-P-fluviatile_contig1:4366240..43663511622815327.2941105-CDS-P-fluviatile_contig1:4366240..4366351Porterinema fluviatile SAG_2381CDSP-fluviatile_contig1 4366241..4366351 +
1693561504.43208-CDS-P-fluviatile_contig1:4366240..43663511693561504.43208-CDS-P-fluviatile_contig1:4366240..4366351Porterinema fluviatile SAG_2381CDSP-fluviatile_contig1 4366241..4366351 +
1622815327.3061402-CDS-P-fluviatile_contig1:4366608..43666861622815327.3061402-CDS-P-fluviatile_contig1:4366608..4366686Porterinema fluviatile SAG_2381CDSP-fluviatile_contig1 4366609..4366686 +
1693561504.4420278-CDS-P-fluviatile_contig1:4366608..43666861693561504.4420278-CDS-P-fluviatile_contig1:4366608..4366686Porterinema fluviatile SAG_2381CDSP-fluviatile_contig1 4366609..4366686 +
1622815327.3174245-CDS-P-fluviatile_contig1:4367404..43675001622815327.3174245-CDS-P-fluviatile_contig1:4367404..4367500Porterinema fluviatile SAG_2381CDSP-fluviatile_contig1 4367405..4367500 +
1693561504.4513416-CDS-P-fluviatile_contig1:4367404..43675001693561504.4513416-CDS-P-fluviatile_contig1:4367404..4367500Porterinema fluviatile SAG_2381CDSP-fluviatile_contig1 4367405..4367500 +
1622815327.326927-CDS-P-fluviatile_contig1:4368294..43684081622815327.326927-CDS-P-fluviatile_contig1:4368294..4368408Porterinema fluviatile SAG_2381CDSP-fluviatile_contig1 4368295..4368408 +
1693561504.460157-CDS-P-fluviatile_contig1:4368294..43684081693561504.460157-CDS-P-fluviatile_contig1:4368294..4368408Porterinema fluviatile SAG_2381CDSP-fluviatile_contig1 4368295..4368408 +
1622815327.336122-CDS-P-fluviatile_contig1:4368848..43689681622815327.336122-CDS-P-fluviatile_contig1:4368848..4368968Porterinema fluviatile SAG_2381CDSP-fluviatile_contig1 4368849..4368968 +
1693561504.469279-CDS-P-fluviatile_contig1:4368848..43689681693561504.469279-CDS-P-fluviatile_contig1:4368848..4368968Porterinema fluviatile SAG_2381CDSP-fluviatile_contig1 4368849..4368968 +
1622815327.3468642-CDS-P-fluviatile_contig1:4369280..43694441622815327.3468642-CDS-P-fluviatile_contig1:4369280..4369444Porterinema fluviatile SAG_2381CDSP-fluviatile_contig1 4369281..4369444 +
1693561504.4797773-CDS-P-fluviatile_contig1:4369280..43694441693561504.4797773-CDS-P-fluviatile_contig1:4369280..4369444Porterinema fluviatile SAG_2381CDSP-fluviatile_contig1 4369281..4369444 +
1622815327.3569205-CDS-P-fluviatile_contig1:4370037..43701961622815327.3569205-CDS-P-fluviatile_contig1:4370037..4370196Porterinema fluviatile SAG_2381CDSP-fluviatile_contig1 4370038..4370196 +
1693561504.4906344-CDS-P-fluviatile_contig1:4370037..43701961693561504.4906344-CDS-P-fluviatile_contig1:4370037..4370196Porterinema fluviatile SAG_2381CDSP-fluviatile_contig1 4370038..4370196 +
1622815327.3693025-CDS-P-fluviatile_contig1:4371212..43714261622815327.3693025-CDS-P-fluviatile_contig1:4371212..4371426Porterinema fluviatile SAG_2381CDSP-fluviatile_contig1 4371213..4371426 +
1693561504.5052009-CDS-P-fluviatile_contig1:4371212..43714261693561504.5052009-CDS-P-fluviatile_contig1:4371212..4371426Porterinema fluviatile SAG_2381CDSP-fluviatile_contig1 4371213..4371426 +


Sequences
The following sequences are available for this feature:

protein sequence of mRNA_P-fluviatile_contig1.369.1

>prot_P-fluviatile_contig1.369.1 ID=prot_P-fluviatile_contig1.369.1|Name=mRNA_P-fluviatile_contig1.369.1|organism=Porterinema fluviatile SAG_2381|type=polypeptide|length=692bp
MGSLDVALSSTMRPWRSLYAFSCCCCLLPLSAALRPSVTAASRLAAGAAR
TAARSSNHHRSSSSLSHPATAAGGAVASAAPASARSMSSWKAASTAGRSP
RRTVLHSSGGGGGGGCAITSASPWVGGGSSGCRAFSGGKRPKIRGRGWEG
RRVAGGDERRAGVPLGMGKGSDRKKAKKEQAAANRASGKKVAAASVVALN
KQSAAAAAASQVVVQEVQDKEGFLSVLELFRKAKAPKRIFQASGGGAFET
AKRKDVDGLPDLAAAAVKEELKLSRADLATRIIESLGVEQWDTWLASDLD
GAQSVVRCACAASEPAFAEELIAKAGFSCRDVGGGCEAREEYGAAAASVY
PNLVTAYSRKGRRDDAMRLMEAMAGARVPVKTAAANRLLQGFHKRRDLEA
VFKVLDVMAASGAEGDDETYEWLANAAVRSVDFVTGAVSMATLPKEPVLP
EAAFIGRSNVGKSSLINMVCNRKALAYTSKRPGKTQQFNYFMMNKNTENA
FYLVDMPGMGYARVPEKQRNEWSKLFRSYITRRSSLRVLFHLIDGRHGPV
GQDHTIMRLMAELPDTARYVVALTKADKSDNTVSRQVLEGVVSALREAGV
SRTPVVLTSAASKLGRDGMWRYLRLAALDKSMRDQHLTDKPRTPDKEGDG
SARDKSSWTRVARQETNHDAQEQDAPAAPAGVTVPAGVQGR*
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mRNA from alignment at P-fluviatile_contig1:4361924..4372600+

Legend: UTRpolypeptideCDS
Hold the cursor over a type above to highlight its positions in the sequence below.
>mRNA_P-fluviatile_contig1.369.1 ID=mRNA_P-fluviatile_contig1.369.1|Name=mRNA_P-fluviatile_contig1.369.1|organism=Porterinema fluviatile SAG_2381|type=mRNA|length=10677bp|location=Sequence derived from alignment at P-fluviatile_contig1:4361924..4372600+ (Porterinema fluviatile SAG_2381)
GGCCGAGCGGAGACCGAGACCTAGGACAGCGAGGAGAAAGAAGGAGAGCA TGGGCTCTCTAGATGTAGCTCTATCCTCGACGATGAGGCCCTGGCGCTCT CTGTACGCCTTTTCCTGCTGCTGTTGCCTCCTTCCGCTCTCTGCGGCTCT GCGGCCCTCTGTCACAGCAGCCTCGCGCCTCGCCGCCGGAGCCGCAAGAA CAGCAGCAAGATCATCAAACCATCACCGCAGCAGCAGCAGCCTCTCCCAT CCTGCCACTGCTGCTGGTGGTGCTGTGGCTTCTGCTGCTCCAGCTTCTGC CAGATCGATGTCGTCATGGAAAGCAGCTTCAACCGCCGGACGATCCCCGC GGCGAACGGTCCTGCATTCCAGCGGCGGCGGCGGCGGCGGTGGCTGCGCA ATAACGAGTGCTTCCCCGTGGGTAGGCGGCGGCAGCAGCGGCTGTCGGGC ATTCTCGGGGGGCAAGCGACCCAAGATCAGAGGGAGGGGATGGGAGGGAC GTAGAGTGGCCGGCGGAGATGAAAGAAGAGCAGGAGTGCCACTGGGCATG GGCAAAGGGTCGGACCGCAAGAAGGCCAAAAAGGAGCAGGTACGGGCATA CCGTTGGCAAACGGAGCATGGTGTGGTCGCAGTTGAACTTGTGCTCTCTT TCTCTCTCTATCTCTGAAGAAAACCGCCAACATCAAAGAAGGATGGCACC ATGGAACAAGAATCACCGTTGAAAAGGTTAGCTTTCAGCCGACCGAGTAA AACACCTCAGTCTTCCAGATTTGCCACCCGCAGCGCTCCGCGCTCCTGTC GCCTACACTAACGTACAATTGCGCACCGGTCGCCGCGGTGGTCTAGTAGA TAACCTCGAAAATCCGCTTGCGATAAATCGTCAGTTCAAATCCTGGTGAG TGAAAAAAGTTTTCAAGTTCGGAGTAGAAAGCGAAGAACGTTGGAACGCT CGCGAGTATCTTAAATTCGACATCACCGTTGACGAGGGAATGAGACGGCT GAACTCTTCTCGCGATAACAAAATGAAGCGCACACTGCAGGAGTAAGGTG GATCACAAAAGAAAAAGAAAGAAGAAAagAGAAAAAGCCAATGTTTATTC CCCCTCCCATTGGACCCCGGCTCTTTGTAGTTGTACTGCGCTCGCAGCGT ACACCGAAACGTAGCGTACAGTTGTACCAAAATGGTCGACATCCGCCAGA AGAAACGGAACGAAAACACACAATAGCAGTAGTTGTTTGCCGAAACTTTC GTGTAAAGGCTGCGGCAACGTCATGCTTGTCGTGTTCTTTCTTGCTGGAA CAGAAGGATCAGAATATCAGACGAAGCGCTTTCTCCTGTACAAGAAGCCC ACCAAGGAAGGGCATAGCAGGTGTCTCACGAGCCATATACCTCACACAGC AACAGTTCGGGCCGCATACCGTATACGACTCAAGACTACACACCTATATT AGACAAAACACCACAACACATAGGACCCCCGATTAAAAGTTTTTTGGTCC CTGATAAACGCTTTGGACACAAAGGTGTAATCAAAAGATCACACAAGATA ACACTCCCTCCCACACCACCGCCGTTTTTTTTTTTTAATGGAAGTCAAAA TGTTATCACCGTGGTGTGTTTTCTTGTGTCATATCCGGTACGCGTGCGGA GACCTGGCGCCTTTGTTTTGGCTTGTTTCGGAGACATGAAGGAGGAGAGA GACATTCTGTGAAGTTTCAATCAGGGTGAGGCGAAAAGAAATTATTGTTG CAAATTTTCATGTCTTGATACACGTTCCTAGTGCTCTTGCCGGCTTTCGA TCGTTGATCCGGAAAAATTATTGCCAAAATCCTGCTTTGGTGGAAAGGGC GCGAAGCATGGGCTGTAGCTGATGACGAGGATCCTGGGCTGCTTCGTTAC ATCGTGAGGATGCAAAAGCCTGCTTCGAGGAGCAAGAAAGCTGTCCGCCG CGTGACCTTGTGATCATTTGCGGTATGGGACTAGAACGACTACCGTTATA CAGGTCGACCCGCTGTTTGTTCGTCTTCTTTCTCTCTATCCTCGTCGCAG TCCTTGAGCCTTGAGGCAACTGAATGAGAGCTGGAGCTCATCCTCCCACA TGCGGCGGAACCTAATATTCTGCCGTGTGTATGTCAGAATTGTGCGGCCG TTCTGGGAGAGGAGGATATCAACCCGGACCGGCATACGAACAAGATCCAA ACAAAGTACTATATCCACTACAATCCCAAAATACCACAACAACATCCCTT GCCCCCCTGCCCCGCCCCCAGCTGGAAGCTTTCCCACCAGCTGAGGCTCC TCCTGGGTGCCGACGCGGCTTGCGGGAAGAAAAGCGCGTCGAATCACAAA TCGTCTGCTCTCGCCACGTTTGCCACCGCCTTTCTAGAGATCATCTTCAC AACTGTCACTATTCAGTCAACAGCCCCCCTCCCGCCCCCCCCCCCCCCCC CCCGTTCCCCGTTGTTCGCCCGGACGATAAAAAATGCCGGGTCGAGTCTA GGCCGCCGCGAATCGGGCGTCGGGTAAGAAGGTGGCGGCGGCCTCGGTCG TCGCTCTCAACAAGCAGAGCGCGGCGGCGGCGGCCGCTAGCCAAGTGGTT GTGCAAGAAGTCCAGGACAAAGAGGGGTTCCTGAGCGTACTCGAGCTTTT CCGCAAGGCTAAAGCTCCCAAGAGAATTTTTCAGGCGAGCGGGGGCGGGG TTGTAGGTGCGGAAGTGCGGGGGTGCGAGGGTGCGGGGCTTTCTGTGTCG GCTTCGAGTGTGGTGGTTCAATGGGTGCAGAGATTTAATACATTTCCTGT CGCTTTGTCGCTGTAGAATCCTTAGTTTCAGTGGAAGTCCAGGTCTAGCG ATTCACTTTTCAACGACTTGCCCGTTTCAGCGACTCCTCAATCGCCCGGT GCTGCTGTATACACACTTGCAAAATGGAATCCGTTTTTTTTAGCGACCTG CTCTGAATACCGATCACATTTCGTAATGACACCAGCGGTCGCTAAACCGG GACCTTCATTGTACTCTCTTGCTGCCAAGTGTTGTATTCCTCAGCCATGT TCCAACCCTCCTACCCCCCCTAGCCCCACTCCAACCTGCATGCCGAGCCC CCTCTCCCGCTGACAACCAAATCGCTGCGTCCGGCGAGTGAAGGCATTTG AGACCGCCAAGAGGAAGGACGTGGACGGGTTGCCCGACCTGGCGGCGGCG GCGGTGAAGGAGGAGCTCAAGCTCAGCCGTGCAGACCTCGCCACGAGGAT CATAGAATCGCTCGGGTGAGCGAGAAAGCAGGCAGAAAAGAATGGCAACC GTGCATAGGCACGCCAGCGAGAACCCTGGCGGAAAAAAAAAAAGTAAGGT TTCCAAAAAAAGCACCGTTTACTCAGCATAGCTGCCGTCTTTCCCTCTCT CGACGTTTGGATCATTCCTTAAGAGGTGGGCAGGGTATGGAAGGATGACT GTGTACCAGCTAGGTAAACGGAGCGGGTTGATCACCTGTGGCGTCGAACA AGCACCATGACGACCCCTCCTCCCAGCGCTCGCTGCTCATCTTTTTCCTC CTCCTCCTCCGCACACCGGTAAACTTGTTGCTCCTGACCAGCACCTGGGT TATCTGCGTCTTGGCAAACGAATGTGAGATAGCTCATCGCCTCGAAACCG ACGACCCCCTGCTCCCCGGCCCCGccccCCCCCCGGCTGACCCGACCTTG CATTTTCCGACGCCGCCGCTCGATCAGCGTTGAACAGTGGGATACCTGGC TGGCGAGCGACCTGGACGGGGCGCAGAGCGTGGTGCGATGTGCTTGCGCC GCGAGCGAGCCCGCCTTCGCGGAAGAGCTGATCGCAAAGGCGGGGTTTTC CTGCCGCGACGTAGGAGGCGGCTGCGAGGCTCGGGAGGTGAGGATGGGTC GAAGCACAGCCATCGAGGCAGCCAAGGTAGCCAGCCGGACAGTCACAACG CCAGCCAGATACTTCGTTAAGGCGCAGTGGCCGACAAAAATATTGCGCGG CGGCTTGTTTTCTTCGAAGAATGATGACCTTTCTCCACCTCCCTCAGCGG TCCGCCCCCGGCGATTTCTCGTTTGACTCGGTCGCTTGGATGCTGGCACC TGCCATATCGCGCCTCGCAAGCGTATAGTGGTACAAGAATGCTCCGGAAT CGAAGCGACAACGCGGCCCGCGATTCAGAACAAACGCTTCTCCTTTCGTC CCGTTCGAGCCCGACTTGTCTCGGTTTCTTGTTTGTCTCTCTGTGCTTTT CGTGATTGATGTCGCTCTGTCGCTCGCTCTCTCTTCCGGCTCGTCCGCAC TCCCTGGAAACAAGTAGGAGTACGGCGCCGCCGCCGCTTCGGTTTACCCC AACCTCGTGACGGCCTACTCCAGGAAGGGGAGACGAGACGACGCAATGAG GCTCATGGAGGCCATGGCCGGCGCGAGGGTAAGCGGAAAGGACTAGTTCG GGGGGTGAATTCCACACAACAAGCGGCGATAAGGGCAGGGAAGCAGTGAC GTTGTTGGATCGAACATCCTCCCGCTCTTCAGGCCGTCGGGAGGGAGGGA GCTGTCGACGTTCGTTTAACACTGTCGTCTTCGCCCTTTTGCTGTTGCCT CTGTAGGACTTTGTTCTCGCCGCCTTCAACCCCTCCGCTCCCCCCTCCTC CCCCGCCTCCCTCCCATTTACTCCGTGCCTTGTAGGTGCCGGTGAAGACC GCCGCCGCGAATCGCTTGCTGCAGGGTTTCCACAAGAGGCGAGATCTCGA GGCGGTGTTCAAGGTGGGTGGTAATCAAAATTCTCTCAAATCAATCGTTC CACGGTCTTGCGATTGGCCACCCTTTCGTGCATACGCCTGAGCAGGGGTC CGTCGCTGCTAGTGGAGGAATCTTTTTCCTTCCTACATGGGGATGGAGGG CAAGGGATATCATTTTTGTTGCGCGCAGAGAAAGTCTTTCTTCGTGCTTC CCGGCCCTACCGATGGAAAGCGACGCCGAGAAACTCTGTATCCGTGTCAA CTAATGAAACACACCGCGTTTGTACAAGTCTTCAGCAGTTGCCACAGCTG GTCCGGGGTAGGAAGGGCATTGGCGTCTCGTGTCTTCAAAATGGGATATT TATCTTGTCGCTATGTGTGTAACACCAGAGGCATCGTCATTCCGAAAACC CATCCTCCCATTTGGTCCCTCGAGGGCGAGGTGGGCATGACACATTCGGC CAGTCAGGTAACAGAATCGTTGACTAGACCGGTATTGAAGATTTTTTCAT TCGACCCGCCAACCATGCAGCAATTCACCGGATGTAGCTCGTGTATCCGT GATATTCAGCTGACGATTCCAGGCTCAGCAGCCGATGTAAATAACAATAA TGGGAGGATCGCCTCACCTGCCGGGCACCACGACCGCTTCCCCGTCGGCC AACCCATTCTCCGTCGTTGGCTGTGGTGAATCTGGTTCTGGTTCTGGTTC TGGTTCTGGTTCTGGTCCTCTCACTTGTCAGGTGCTAGACGTGATGGCGG CCTCGGGGGCGGAAGGCGACGACGAAACGTACGAGTGGCTGGCCAATGCA GCCGTCAGGAGCGTAGACTTCGTGACGGTGAGCCTTGGTATGGGCGTCGG GGGACGTGCTTCTCAGGCCCCGGACGAACGCGCCCACCCTCGTGGGCGTG TGCCCGCGGCAAAGACTCGTGCTAGTTTTTCTCAGGACACTTGACTGTCC GGAGGCGCCGCGTTTTTTTTTATGTGAAGGCCCTTGCCAGGCCGGCAGGC CGGCCGGCTGGCCCTGCAGCGGCCTGAAAAGATGGCGCCCACGCAGTTCA GAGAGGTTCACAAACAAGGAGATTCCTGTTCGGCGAGAGCCATTCCACAT GGCATGCTCGTTCTACTGGCGGGGGGGGGGGAATCCCGTGCCGTGCACTC AGAGCCCTGTCCGCCCCTCTCGTGTTGGTTGTAGGGGTCGAAACAAACGG CTCGTGCGCGACCGCATCTGCTTTCAGTGCTCAGGACCAAGGTACGGCGA GTAGAAACGTGTGCGAGGCGGTCCGTGCCGCTGAGGTAGTATGACATTGT TGTTGTCGATTTATTCGTGAGTTTCCGCCGCCGCGAGCAGCAAGCTGAAC CCCTCAAAATCATGCGAGTGTGATGGATCCACGGTTCCAACACTCTACAA TCTAGCAAAAAGTACTCCGATACACGAAGTATGAGCTTACGCCGATGACC TTGCCTGGATTGCAATGCAGCCCCCTCTCCTCCCTCCGGCAACCTCCACC GCTCAATGACCCTCCGTTTGCTACGCGTGTTACAAAATTGTGTCGCGAAG TTGCTAAAACTGTCAAGATCCGGCTCTGTTTGTCTTTTTCGCTGCCTGTG TGTGTCCATGCCCCTTTCCAGGGGGCGGTGAGCATGGCGACCCTCCCGAA GGAGCCGGTTCTGCCTGAGGCGGCCTTCATCGGCAGGAGCAACGTGGGGA AAAGCAGCCTTATCAACATGGTCTGCAATCGAAAGGTGCGGGACCACAAC CCAACACCTGTTTCCGCGTGAAGATGCCGAGGCGTCGAAGTTTTGGTAAA TGGGGGGTGACGTTGAGCAGCGAGGACTCTCGACGGAATCGTGCATCCTT TGGTGGACACGCAAGAACACGTTTATTGGGCTCTGACTCTGACGAGAATC TGACACCAGGATACACTCCGCTTTGTGCTTCCCTGAATTGGAGTTCTATT ACCGTTGCCCGCAGTCGGCCGTCATGCTTTTTGTTTTCCTGCACACGAGC CGATTCCGGGCTTCCTCGAAAGGCAATGCGTACGGCTTTTATCTTGGACA CGTGCATGCGCTATCAAACAACCCAAGCCGATCATACGCCTAGCTTCCTT TACATGTCGCCAAGAAACTCCACGAAATCATCCTTCGCTCTTTCGTTCGT CTTTCTGGCGAATCTTGGCCATCAGGCGTTGGCATATACGTCCAAGCGGC CGGGGAAGACCCAGCAGTTCAACTACTTCATGATGAACAAGAATACCGAG AACGCCTTCTACCTGGTGGACATGCCTGGCATGGGCTACGCAAGGGTGAA AAAAAACTTTGTGGAGTAAAGCCCCCACCCCTCTCATGTACTCACACGAA GCCCCCTCCGACCCCTCATCGGAGACACAAAAGATCCGTCAAGGTTTGGG GAATGAGGCGTCCGCTCGGAAGCATTTTGAAGTTGCGCATGGCCGTTCGT TGGCATGACTTTCCAAAAGGAAGGAATTGCCATAGTAACGCGCAACCCAA CTCTCCCTTGCCGGCCTTTCCTTCTATTCCCTCCGCGTCCGATCTCTTTT AAACGTCCCAGGCCTTTTCCTCCCGCTTTCCGACACGACACGCGCGTACT TGCGCAGGTTCCTGAGAAGCAGCGGAACGAGTGGTCCAAGCTCTTTCGGA GCTACATCACCCGGCGGTCGTCCCTGCGCGTATTGTTCCACCTAATCGAT GGCCGACACGGGCCCGTGGGGCAGGACCACACCATCATGAGGCTCATGGC AGAGCTGCCCGACACGGCAAGGTGGGCGAATGGAACAGAATAGAAGCGAA CAGAACAAAACAAAACAAACCAGGGCAGAACAGAACAGACCAAAACAGAG GCAGGTTTACGTAAAAACAGTGAGGATGCGGAGAAGAAGCGGGCCCCGCC GAAGCTGAAATGACTGCGACTCACGAGCTCGTGGCTTGACCGGCTCGCTC GGTGTGAATTTACAAGCTGTTCCTGTCGCAAAGCTTTTCGTGCCGCTGCA GCTGGTATCGCTCCTGCTGGTGTCGCTGCTGATGATTGGTGCTGCAGCTG CCTTGACAGGTTTTGTGGCGCGGCGTTGCTCAAACCGTGCACACATCATT TCTGCAGGCCAGGACGACCAGGAAGCTCGCGGAGCTGCCTGACATGGCTT TGTTGCGTTTCATTTCCGCTGGTGGACCGGCGGTCGCGTACTGCCGACAC CAGTCGTTGTTTCCCAATATTTTGCCTGTTTCCACTCCCTTGATATCTTC AAGTTTGGTCGAATGCGGCCAAGCGTACTACCGCGTGTCGAAGTCTTTAT TTTGACTTCACCAGCCTCCCTCCGTCCTCCACACTGTCGTATTTATCTTT CCACTTCCCCGTAGATACGTAGTGGCCCTTACAAAGGCGGACAAATCGGA CAACACCGTGTCCAGGCAAGTGCTGGAAGGGGTCGTCAGCGCGCTCCGGG AGGCGGGGGTCTCTCGGACGCCCGTCGTTCTCACCAGCGCCGCTTCCAAA CTAGGGAGGGACGGAATGTGGAGGTGAGTCTGACGACGGAGGTATGGATT GTAGACTTGCGTGCTCCCTACCTCAGTACTGCCTGCGCCCTTTCCAGTTC GTGGTGATTCAGGAGAATATTTTCCTGCGTCGTGCGTGCGCGAGAAGAGC CAACGCAATGTCCGCTTCAGGGTTCGTGTGGAATACCGGCCTGCCGTGCA GAATTATGGCGAAACCTGATCTTTTCTTGGCTCCGTTTTTTGTGCTTGTA TTGGCCGCGCTGTCGGCCGGCGTAGCCCATTTGTACGGCATGGGACGTTT CACACATGAAAGAGACCGGTGAAAGATGACATCACGCACTCGGCCCTCAC GAAGGCGAAGGGTTCACGGTCAAGGACCACCAGCGACGGTTGTCGAGGCT GCAGGACGGGGCCCCCGAGGCAGTCAGACCTTGCTTTTTCAATGATCTTC GTTTCATGGAGAAGATGGGATTTGAACCAAGCCTGTCCGATTTGGATGGA GAGATTGAAGGACTACTCTACACCAGGCCGGCACTGCTGTCTGATGTGTA GCTGCGATTGAATGAGTTAGAGTCGATAAAACGCGAAATAAAAGCCGTTT ATTGCAGTTGCGGGACTGTCCAACCTGATCGGAGCTGGTGTTCACCCGGA AAGAGAGATAGCCGCGCAAGGTACGCACTTCTCATCAACAGTTGGGAGGT GCGAAAAGTGGCTACTCGCGGGCTGAAGGGGAAAGACGCGACAGCAACGA TGCTCCCCGCTACGCAGGTCGATCTCGGACTTGCAGGCAACGGATGCACT CCAGAGTAAGACGTCGTTGCTGTGATGGTATGCAGTGGCTGGTGCCATTA CTTTTCAAAAGAATTACCACTCGAATTCTGCTACGGACGTGGCGTTCTCG CTCTCTTTCTCCCCCCCCCCCCTCACTATTTGTGTGCTTGATGAGCAATG CCGTATTTGCACTGTTCGTCTACGCGGCGATTCAGCTCTAGCTTGCTATC CATTTTGTGTCGCCGCTACCGCCGCCGCCGCCGCCGAAGGTACCTCCGGC TCGCGGCTCTCGACAAGTCTATGAGAGATCAACACCTGACAGACAAGCCA AGAACCCCGGACAAGGAAGGAGACGGCTCGGCAAGAGACAAAAGCTCCTG GACTCGCGTGGCTCGACAAGAGACGAACCACGACGCGCAGGAACAAGATG CGCCCGCCGCCCCCGCAGGTGTCACTGTCCCAGCTGGCGTGCAGGGTCGG TAGCGCCGCAACTTGTCGACAAACATTTCCGCGGCTTCTCTCTTTTCCGC TGCAGCACACCCACAAGAGTATGCCTCAGGAATGTGTGGGGAGAGATGGG GGGTCGAGAGGGCGCTTCCAGCCTGCGCAGCCATTGGCCAAGAAGCTGCT GTTCTGCTCTGTACCAGACGCCGAATTGGAGGAAACGAGGTAGCAAGAAA CGCGATAACGCAGACGGGCGGCGGGCGAAACCACAAGATGTATCTGTTTG TCGTCCAGTAGGTCGGTCGGTGAAAGAAACACGTGTGGTGGAGGTTCCGC AATTCACATCCGTTCGTATCGTCGCAAGCGGCGTCGTGGCCGTCGGGGGG GGTCAGGGTCGTCGACACGGGGGCTCTTCTCGGAAGCGGTTTGACGCACG CTTCAAAAAAAATGTGAGCGATTACGAACCATTTGGCTAGAAGTTTTGGT CAGCTTATCGTTTCTTGTCCACTAGACGGGGCCGCGAAACGGGTTAAATA CCTCCGAGGGCTTGTTTTCCGGTAGGGTGGCGAAGGAGATTGGCGCCGAT GGCAGTCAATAACTTGCCTGACGAACGACGATCGATTGTGCGCAGAATGG AGCAGGTGGAGAAACGTATTTGTTGTAAATTGACACTTTGGCCGTGTTCC CCTACCCCCCGCCCCCTTTTCCACGAGAGAGATAGGTGGAGCGCGCAGGC GTCGCTTAGGTCCCTTGGTGCACCGCGGTGCCTGCTGATGTGACCACCAG TCCGTAATCCAAAAAACGATCTACACGTGCATTTGGATAGCAACGATGGC CACAAGAATCCCAAGAGGATGTGACCAGGAGGGCAACTGTTCGGCGCTGT CGCACCTCTGTTTCGATTTGCAAAGTCGAGGGAACGCCGCGTAGTTGATT GCAATCAGACGTTGCCGGGGGGATAAACACAGGCGTTGGGGGAATTGAGA AATATTTGCGAGTTAAAGTCATGGCAAAGGCCTAAAAGGCGCAGCAAGCG CCCAAGATTGGTGGCTGGTCGGTAACAGTCCGAACAACGGTGCTCGTTTC GAAAGGGTGGGTGTTCGAACCACCGCGTGGATAAGCGGGCAACCGAGTAT TTCATTCCCAATCTCCCTTGTCCAGAACACTTTTGTCACGCCGATGATGA CATGCTGGTTTCGTAGCGGAGTGTACA
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Coding sequence (CDS) from alignment at P-fluviatile_contig1:4361924..4372600+

>mRNA_P-fluviatile_contig1.369.1 ID=mRNA_P-fluviatile_contig1.369.1|Name=mRNA_P-fluviatile_contig1.369.1|organism=Porterinema fluviatile SAG_2381|type=CDS|length=4152bp|location=Sequence derived from alignment at P-fluviatile_contig1:4361924..4372600+ (Porterinema fluviatile SAG_2381)
ATGGGCTCTCTAGATGTAGCTCTATCCTCGACGATGAGGCCCTGGCGCTC
TCTGTACGCCTTTTCCTGCTGCTGTTGCCTCCTTCCGCTCTCTGCGGCTC
TGCGGCCCTCTGTCACAGCAGCCTCGCGCCTCGCCGCCGGAGCCGCAAGA
ACAGCAGCAAGATCATCAAACCATCACCGCAGCAGCAGCAGCCTCTCCCA
TCCTGCCACTGCTGCTGGTGGTGCTGTGGCTTCTGCTGCTCCAGCTTCTG
CCAGATCGATGTCGTCATGGAAAGCAGCTTCAACCGCCGGACGATCCCCG
CGGCGAACGGTCCTGCATTCCAGCGGCGGCGGCGGCGGCGGTGGCTGCGC
AATAACGAGTGCTTCCCCGTGGGTAGGCGGCGGCAGCAGCGGCTGTCGGG
CATTCTCGGGGGGCAAGCGACCCAAGATCAGAGGGAGGGGATGGGAGGGA
CGTAGAGTGGCCGGCGGAGATGAAAGAAGAGCAGGAGTGCCACTGGGCAT
GGGCAAAGGGTCGGACCGCAAGAAGGCCAAAAAGGAGCAGATGGGCTCTC
TAGATGTAGCTCTATCCTCGACGATGAGGCCCTGGCGCTCTCTGTACGCC
TTTTCCTGCTGCTGTTGCCTCCTTCCGCTCTCTGCGGCTCTGCGGCCCTC
TGTCACAGCAGCCTCGCGCCTCGCCGCCGGAGCCGCAAGAACAGCAGCAA
GATCATCAAACCATCACCGCAGCAGCAGCAGCCTCTCCCATCCTGCCACT
GCTGCTGGTGGTGCTGTGGCTTCTGCTGCTCCAGCTTCTGCCAGATCGAT
GTCGTCATGGAAAGCAGCTTCAACCGCCGGACGATCCCCGCGGCGAACGG
TCCTGCATTCCAGCGGCGGCGGCGGCGGCGGTGGCTGCGCAATAACGAGT
GCTTCCCCGTGGGTAGGCGGCGGCAGCAGCGGCTGTCGGGCATTCTCGGG
GGGCAAGCGACCCAAGATCAGAGGGAGGGGATGGGAGGGACGTAGAGTGG
CCGGCGGAGATGAAAGAAGAGCAGGAGTGCCACTGGGCATGGGCAAAGGG
TCGGACCGCAAGAAGGCCAAAAAGGAGCAGGCCGCCGCGAATCGGGCGTC
GGGTAAGAAGGTGGCGGCGGCCTCGGTCGTCGCTCTCAACAAGCAGAGCG
CGGCGGCGGCGGCCGCTAGCCAAGTGGTTGTGCAAGAAGTCCAGGACAAA
GAGGGGTTCCTGAGCGTACTCGAGCTTTTCCGCAAGGCTAAAGCTCCCAA
GAGAATTTTTCAGGCGAGCGGGGGCGGGGCCGCCGCGAATCGGGCGTCGG
GTAAGAAGGTGGCGGCGGCCTCGGTCGTCGCTCTCAACAAGCAGAGCGCG
GCGGCGGCGGCCGCTAGCCAAGTGGTTGTGCAAGAAGTCCAGGACAAAGA
GGGGTTCCTGAGCGTACTCGAGCTTTTCCGCAAGGCTAAAGCTCCCAAGA
GAATTTTTCAGGCGAGCGGGGGCGGGGCATTTGAGACCGCCAAGAGGAAG
GACGTGGACGGGTTGCCCGACCTGGCGGCGGCGGCGGTGAAGGAGGAGCT
CAAGCTCAGCCGTGCAGACCTCGCCACGAGGATCATAGAATCGCTCGGGC
ATTTGAGACCGCCAAGAGGAAGGACGTGGACGGGTTGCCCGACCTGGCGG
CGGCGGCGGTGAAGGAGGAGCTCAAGCTCAGCCGTGCAGACCTCGCCACG
AGGATCATAGAATCGCTCGGCGTTGAACAGTGGGATACCTGGCTGGCGAG
CGACCTGGACGGGGCGCAGAGCGTGGTGCGATGTGCTTGCGCCGCGAGCG
AGCCCGCCTTCGCGGAAGAGCTGATCGCAAAGGCGGGGTTTTCCTGCCGC
GACGTAGGAGGCGGCTGCGAGGCTCGGGAGCGTTGAACAGTGGGATACCT
GGCTGGCGAGCGACCTGGACGGGGCGCAGAGCGTGGTGCGATGTGCTTGC
GCCGCGAGCGAGCCCGCCTTCGCGGAAGAGCTGATCGCAAAGGCGGGGTT
TTCCTGCCGCGACGTAGGAGGCGGCTGCGAGGCTCGGGAGGAGTACGGCG
CCGCCGCCGCTTCGGTTTACCCCAACCTCGTGACGGCCTACTCCAGGAAG
GGGAGACGAGACGACGCAATGAGGCTCATGGAGGCCATGGCCGGCGCGAG
GGAGTACGGCGCCGCCGCCGCTTCGGTTTACCCCAACCTCGTGACGGCCT
ACTCCAGGAAGGGGAGACGAGACGACGCAATGAGGCTCATGGAGGCCATG
GCCGGCGCGAGGGTGCCGGTGAAGACCGCCGCCGCGAATCGCTTGCTGCA
GGGTTTCCACAAGAGGCGAGATCTCGAGGCGGTGTTCAAGGTGCCGGTGA
AGACCGCCGCCGCGAATCGCTTGCTGCAGGGTTTCCACAAGAGGCGAGAT
CTCGAGGCGGTGTTCAAGGTGCTAGACGTGATGGCGGCCTCGGGGGCGGA
AGGCGACGACGAAACGTACGAGTGGCTGGCCAATGCAGCCGTCAGGAGCG
TAGACTTCGTGACGGTGCTAGACGTGATGGCGGCCTCGGGGGCGGAAGGC
GACGACGAAACGTACGAGTGGCTGGCCAATGCAGCCGTCAGGAGCGTAGA
CTTCGTGACGGGGGCGGTGAGCATGGCGACCCTCCCGAAGGAGCCGGTTC
TGCCTGAGGCGGCCTTCATCGGCAGGAGCAACGTGGGGAAAAGCAGCCTT
ATCAACATGGTCTGCAATCGAAAGGGGGCGGTGAGCATGGCGACCCTCCC
GAAGGAGCCGGTTCTGCCTGAGGCGGCCTTCATCGGCAGGAGCAACGTGG
GGAAAAGCAGCCTTATCAACATGGTCTGCAATCGAAAGGCGTTGGCATAT
ACGTCCAAGCGGCCGGGGAAGACCCAGCAGTTCAACTACTTCATGATGAA
CAAGAATACCGAGAACGCCTTCTACCTGGTGGACATGCCTGGCATGGGCT
ACGCAAGGGCGTTGGCATATACGTCCAAGCGGCCGGGGAAGACCCAGCAG
TTCAACTACTTCATGATGAACAAGAATACCGAGAACGCCTTCTACCTGGT
GGACATGCCTGGCATGGGCTACGCAAGGGTTCCTGAGAAGCAGCGGAACG
AGTGGTCCAAGCTCTTTCGGAGCTACATCACCCGGCGGTCGTCCCTGCGC
GTATTGTTCCACCTAATCGATGGCCGACACGGGCCCGTGGGGCAGGACCA
CACCATCATGAGGCTCATGGCAGAGCTGCCCGACACGGCAAGGTTCCTGA
GAAGCAGCGGAACGAGTGGTCCAAGCTCTTTCGGAGCTACATCACCCGGC
GGTCGTCCCTGCGCGTATTGTTCCACCTAATCGATGGCCGACACGGGCCC
GTGGGGCAGGACCACACCATCATGAGGCTCATGGCAGAGCTGCCCGACAC
GGCAAGATACGTAGTGGCCCTTACAAAGGCGGACAAATCGGACAACACCG
TGTCCAGGCAAGTGCTGGAAGGGGTCGTCAGCGCGCTCCGGGAGGCGGGG
GTCTCTCGGACGCCCGTCGTTCTCACCAGCGCCGCTTCCAAACTAGGGAG
GGACGGAATGTGGAGATACGTAGTGGCCCTTACAAAGGCGGACAAATCGG
ACAACACCGTGTCCAGGCAAGTGCTGGAAGGGGTCGTCAGCGCGCTCCGG
GAGGCGGGGGTCTCTCGGACGCCCGTCGTTCTCACCAGCGCCGCTTCCAA
ACTAGGGAGGGACGGAATGTGGAGGTACCTCCGGCTCGCGGCTCTCGACA
AGTCTATGAGAGATCAACACCTGACAGACAAGCCAAGAACCCCGGACAAG
GAAGGAGACGGCTCGGCAAGAGACAAAAGCTCCTGGACTCGCGTGGCTCG
ACAAGAGACGAACCACGACGCGCAGGAACAAGATGCGCCCGCCGCCCCCG
CAGGTGTCACTGTCCCAGCTGGCGTGCAGGGTCGGTAGGTACCTCCGGCT
CGCGGCTCTCGACAAGTCTATGAGAGATCAACACCTGACAGACAAGCCAA
GAACCCCGGACAAGGAAGGAGACGGCTCGGCAAGAGACAAAAGCTCCTGG
ACTCGCGTGGCTCGACAAGAGACGAACCACGACGCGCAGGAACAAGATGC
GCCCGCCGCCCCCGCAGGTGTCACTGTCCCAGCTGGCGTGCAGGGTCGGT
AG
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