mRNA_P-fluviatile_contig12.1435.1 (mRNA) Porterinema fluviatile SAG_2381

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

Overview
NamemRNA_P-fluviatile_contig12.1435.1
Unique NamemRNA_P-fluviatile_contig12.1435.1
TypemRNA
OrganismPorterinema fluviatile SAG_2381 (Porterinema fluviatile SAG_2381)
Homology
BLAST of mRNA_P-fluviatile_contig12.1435.1 vs. uniprot
Match: A0A6H5JI70_9PHAE (5'-nucleotidase n=1 Tax=Ectocarpus sp. CCAP 1310/34 TaxID=867726 RepID=A0A6H5JI70_9PHAE)

HSP 1 Score: 444 bits (1143), Expect = 1.930e-149
Identity = 216/281 (76.87%), Postives = 244/281 (86.83%), Query Frame = 3
Query:  423 VLYRDVTDFERKRQRLLSGGSGSLQIISDFDFTMTKFFVNGRRGDSCHAVIDESGLLAEDFHERTTELRNHYYPLEVDATLSAEMRVKMMVEWVTKAHEAMVDAGITKEILSGAVAKANLKFRPGHGQLLRWVEEEGVPLLMFSAGIADVLEEAFRQHSDEPLPSTCSVISNRMAFDADGQMTGFVGECFHVFNKFASAEAVKPYFQTEQMRRRRNVLLLGDSLGDLNMAKGIEADEILTVGFLNDKVEERREAYVAAYDVVLLGDCGFDFIIDLLRDIGS 1265
            VL+RD  DFERK QR+++GG   LQIISDFDFT+TKF+VNG+RGDSCHAVID SGLL E FH+RT ELRNHYYPLEV   LS EMR++MMVEWVTKAH+AMV AGITK+ILS AV+KANL FRPGHG+LLRWV++ GVP LMFSAGIADVLEEAFRQHS EPLPST  VISNRMAFD DG MTGFVGECFHVFNK ASA AVKPYF+T++MR R NVLLLGDSLGDLNMAKG+ A+E LTVGFLNDKVEER +AY+ AYDVV+LGD  FDF+++LL  + S
Sbjct:   19 VLFRDAEDFERKWQRIVAGGVDRLQIISDFDFTLTKFWVNGKRGDSCHAVIDGSGLLGEGFHKRTWELRNHYYPLEVAPDLSPEMRLEMMVEWVTKAHDAMVAAGITKDILSAAVSKANLLFRPGHGELLRWVDKHGVPFLMFSAGIADVLEEAFRQHSAEPLPSTSRVISNRMAFDEDGNMTGFVGECFHVFNKHASASAVKPYFETDEMRCRSNVLLLGDSLGDLNMAKGLRAEETLTVGFLNDKVEERADAYLKAYDVVILGDGSFDFVLELLEQVAS 299          
BLAST of mRNA_P-fluviatile_contig12.1435.1 vs. uniprot
Match: D8LDF4_ECTSI (5'-nucleotidase n=1 Tax=Ectocarpus siliculosus TaxID=2880 RepID=D8LDF4_ECTSI)

HSP 1 Score: 415 bits (1066), Expect = 2.300e-138
Identity = 198/254 (77.95%), Postives = 229/254 (90.16%), Query Frame = 3
Query:  504 SDFDFTMTKFFVNGRRGDSCHAVIDESGLLAEDFHERTTELRNHYYPLEVDATLSAEMRVKMMVEWVTKAHEAMVDAGITKEILSGAVAKANLKFRPGHGQLLRWVEEEGVPLLMFSAGIADVLEEAFRQHSDEPLPSTCSVISNRMAFDADGQMTGFVGECFHVFNKFASAEAVKPYFQTEQMRRRRNVLLLGDSLGDLNMAKGIEADEILTVGFLNDKVEERREAYVAAYDVVLLGDCGFDFIIDLLRDIGS 1265
            +DFDFT+TKF+VNG+RGDSCHAVIDESGLL E FH+RT+ELR+HYYPLEV   LS EMRV+MMVEWVTKAHEAMV AGITK+ILS AV+KANL FRPGHG+LLRWV++ GVPLLMFSAGIADVLEEAFRQHS EPLPST  V+SNRMAFD DG MTGFVGECFHVFNK AS+ AVKPYF+T++MR R +VLLLGDSLGDLNMAKG+ A+EILTVGFLNDK+EER +AY+ AYDV++LGD GFDF+++LL ++ S
Sbjct:   12 TDFDFTLTKFWVNGKRGDSCHAVIDESGLLGEGFHKRTSELRDHYYPLEVAPDLSPEMRVEMMVEWVTKAHEAMVAAGITKDILSAAVSKANLLFRPGHGELLRWVDKYGVPLLMFSAGIADVLEEAFRQHSAEPLPSTSRVVSNRMAFDEDGNMTGFVGECFHVFNKHASSSAVKPYFETDEMRCRSSVLLLGDSLGDLNMAKGLSAEEILTVGFLNDKIEERTDAYLKAYDVIILGDGGFDFVLELLEEVAS 265          
BLAST of mRNA_P-fluviatile_contig12.1435.1 vs. uniprot
Match: A0A835YMP4_9STRA (5'-nucleotidase n=1 Tax=Tribonema minus TaxID=303371 RepID=A0A835YMP4_9STRA)

HSP 1 Score: 270 bits (691), Expect = 3.030e-82
Identity = 130/245 (53.06%), Postives = 175/245 (71.43%), Query Frame = 3
Query:  531 FFVNGRRGDSCHAVIDESGLLAEDFHERTTELRNHYYPLEVDATLSAEMRVKMMVEWVTKAHEAMVDAGITKEILSGAVAKANLKFRPGHGQLLRWVEEEGVPLLMFSAGIADVLEEAFRQHSDEPLPSTCSVISNRMAFD-ADGQMTGFVGECFHVFNKFASAEAVKPYFQTEQMRRRRNVLLLGDSLGDLNMAKGIEADEILTVGFLNDKVEERREAYVAAYDVVLLG-DCGFDFIIDLLRDI 1259
            F VNGRRG SCH  ++  GLL E++H     L+  YYPLE+D +L+ E RV  M EWV +AH+A+  AG+TK  +  AV +AN+  R  H +L   ++   +PLL+FSAG+ADVLEE  RQH+  PLP+   VISNRM+F+ A+G   GF G+ FHVFNK A A   +PYF +E+++ RRNVLLLGDSLGDL MA G+EADE+L+VGFLND+ EER  +Y+A YDVV++G D G  + +DL+R++
Sbjct:   26 FMVNGRRGSSCHGCLEYCGLLTEEYHRTVQALKQKYYPLELDTSLTQEQRVAFMEEWVEQAHDALSQAGLTKATIEQAVREANIALRGAHAELFTELDARAIPLLVFSAGLADVLEEVIRQHASAPLPAGAHVISNRMSFEPANGGFIGFTGQLFHVFNKRAGAVLDEPYFMSEEVKLRRNVLLLGDSLGDLQMASGLEADEVLSVGFLNDQAEERIGSYLAGYDVVIIGPDAGLQYALDLVREL 270          
BLAST of mRNA_P-fluviatile_contig12.1435.1 vs. uniprot
Match: A0A7S3UTG8_HETAK (5'-nucleotidase (Fragment) n=1 Tax=Heterosigma akashiwo TaxID=2829 RepID=A0A7S3UTG8_HETAK)

HSP 1 Score: 242 bits (618), Expect = 1.250e-70
Identity = 122/268 (45.52%), Postives = 168/268 (62.69%), Query Frame = 3
Query:  423 VLYRDVTDFERKRQRLLSGGSGSLQIISDFDFTMTKFFVNGRRGDSCHAVIDESGLLAEDFHERTTELRNHYYPLEVDATLSAEMRVKMMVEWVTKAHEAMVDAGITKEILSGAVAKANLKFRPGHGQLLRWVEEEGVPLLMFSAGIADVLEEAFRQHSDEPLPSTCSVISNRMAFDADGQMTGFVGECFHVFNKFASAEAVKPYFQTEQMRRRRNVLLLGDSLGDLNMAKGIEADEILTVGFLNDKVEERREAYVAAYDVVLLGDCG 1226
            V  +D      K +R  + G G +QIISDFD+T+TKF  +G+ G S H V+ E  +L+E++H     L + YYP+E + ++S   +V  MVEW    H A+V+ G+T+++L  AVA A ++ R G   L  W E  GVP+L+FSAG+ DVL E   Q+ ++PLPS   VISN M FDA G++ GF    FHV+NK A A    P+F  E ++ R+N+LL+GDS GD  MA G+E   +L +GFLN KVEER + Y   YDVVL GD G
Sbjct:   65 VTIKDRDAVFGKLERFFADGPGKIQIISDFDYTLTKFHYDGKMGKSTHGVLAECDMLSEEYHRTARALFDRYYPVETNPSMSQAEKVPAMVEWWEADHAALVEHGLTRDVLRSAVAAAGVQLRAGCVDLFDWAEGRGVPVLLFSAGLGDVLTEVLAQNLNKPLPSHVHVISNTMEFDATGKLVGFPPPLFHVYNKNAGAVKDHPFFG-ESVQARKNILLIGDSTGDARMADGLEGTTVLRIGFLNTKVEERMDTYKGLYDVVLTGDGG 331          
BLAST of mRNA_P-fluviatile_contig12.1435.1 vs. uniprot
Match: UPI001F080AC3 (cytosolic 5'-nucleotidase 3-like n=1 Tax=Hypomesus transpacificus TaxID=137520 RepID=UPI001F080AC3)

HSP 1 Score: 230 bits (587), Expect = 9.830e-67
Identity = 122/267 (45.69%), Postives = 168/267 (62.92%), Query Frame = 3
Query:  423 VLYRDVTDFERKRQRLLSGGSGSLQIISDFDFTMTKFFVNGRRGDSCHAVIDESGLLAEDFHERTTELRNHYYPLEVDATLSAEMRVKMMVEWVTKAHEAMVDAGITKEILSGAVAKANLKFRPGHGQLLRWVEEEGVPLLMFSAGIADVLEEAFRQHSDEPLPSTCSVISNRMAFDADGQMTGFVGECFHVFNKFASAEAVKPYFQTEQMRRRRNVLLLGDSLGDLNMAKGIEADE-ILTVGFLNDKVEERREAYVAAYDVVLLGD 1220
            V  +D    E     +   GS +LQ+ISDFD T+T+F  NG+R  +CH ++D S L++ED  E+  EL N YYP+E+D+TLSAE ++ +MVEW TKAH  +++  I K+ L+  V ++  K R G+      ++E  VPLL+FSAGI DVLEE  RQ           V SN M FD  G +  F GE  H++NK   A     +FQ  ++  R N+LLLGDSLGDLNMA G+   E IL +G+LNDKVEER+++Y+ A+D+VLL D
Sbjct:   10 VCMKDPQRVEEILTAMQKAGSNTLQVISDFDMTLTRFAYNGKRCPTCHNILDNSKLISEDCKEKLKELLNTYYPIEIDSTLSAEEKLPLMVEWWTKAHTLLIEQRIRKDWLAQVVQESEAKLRDGYQLFFDHLQEHSVPLLIFSAGIGDVLEEVIRQAG--VFHPNVKVFSNYMDFDEAGILKAFKGELIHIYNKREGALLNSDHFQ--ELSHRHNILLLGDSLGDLNMADGVHNTENILKIGYLNDKVEERKQSYLNAFDIVLLKD 272          
BLAST of mRNA_P-fluviatile_contig12.1435.1 vs. uniprot
Match: A0A7S3LZW9_9STRA (5'-nucleotidase n=2 Tax=Spumella elongata TaxID=89044 RepID=A0A7S3LZW9_9STRA)

HSP 1 Score: 232 bits (591), Expect = 1.240e-66
Identity = 132/301 (43.85%), Postives = 186/301 (61.79%), Query Frame = 3
Query:  384 GGVDSSITS-KGDCVLYRDVTDFERKRQRLLSGGSGSLQIISDFDFTMTKFFVNGRRGDSCHAVIDESGLLAEDFHERTTELRNHYYPLEVDATLSAEMRVKMMVEWVTKAHEAMVDAGITKEILSGAV----AKANLKFRPGHGQLLRWVEEEGVPLLMFSAGIADVLEEAFRQHSDEPLPSTCSVISNRMAFD--ADGQMTGFVGECFHVFNKFASAEAVKPYFQTEQMRRRRNVLLLGDSLGDLNMAKGIEA--DEILTVGFLNDKVEERREAYVAAYDVVLLGDCGFDFIIDLLRDI 1259
            G + SS+ S +G  V++ +   FE K ++    G   L ++SDFDFT+TKF++NG RG SCH +I++ GL+A ++H+    L+  YYPLEVD TL+ E + K M+EWV KAHE +   G+T+ +++ AV    A   +  R      L       VP L+FSAGIADVLEE  R+       S   VISNR  F+   +G++TGF     HVFNK ++A     +F TE ++ R N+LLLGDSLGD+ M++G+E   D I+ VGFLND+VE R + Y+  YDVV+L D GFD    LL++I
Sbjct:   37 GIMSSSVESFQGQRVVFANKQAFEEKLKQFKLDGPSKLSVVSDFDFTITKFYMNGVRGASCHKIIEDCGLMAAEYHDEAQGLQAKYYPLEVDPTLNMEEKTKFMIEWVEKAHELLELHGLTRSVVTRAVHSALATGKVGLREKADTFLSLASSSKVPSLIFSAGIADVLEEILREQMAVDW-SQVHVISNRCIFEESGEGKVTGFEQPLLHVFNKKSTAYLHTNFFNTEDIKDRTNLLLLGDSLGDITMSEGMEINDDRIIKVGFLNDRVE-RMDQYLEKYDVVILDDPGFDIPYYLLQEI 335          
BLAST of mRNA_P-fluviatile_contig12.1435.1 vs. uniprot
Match: W7TPE8_9STRA (5'-nucleotidase n=2 Tax=Monodopsidaceae TaxID=425072 RepID=W7TPE8_9STRA)

HSP 1 Score: 233 bits (593), Expect = 1.560e-66
Identity = 132/327 (40.37%), Postives = 181/327 (55.35%), Query Frame = 3
Query:  396 SSITSKGDCVLYRDVTDFERKRQRLLSGGSGSLQIISDFDFTMTKFFVNGRRGDSCHAVIDESGLLAEDFHERTTELRNHYYPLEVDATLSAEMRVKMMVEWVTKAHEAMVDAGITKEILSGAVAKANLKFRPGHGQLLRWVEEEGVPLLMFSAGIADVLEEAFRQHSDEPLPSTCSVISNRMAF---------DA---------------------------DGQMTGFVGECFHVFNKFA-SAEAVKPYFQTEQMRRRRNVLLLGDSLGDLNMAKGIEADEILTVGFLNDKVEERREAYVAAYDVVLLGDCGFDFIIDLLRDIGS 1265
            S +   G  V+ RD   F  K+ ++ S G   LQ++ D+DFT+T FF+NGRR  SCH  I++  LL+  +HE+   L+ +YY  EVD +LS   +V +M  WV +AH+ ++  G  + +L  AV  A+L  R G  +++       VPLL+FSAGIADVLEE  RQ    PLP T  V+SNRM F         DA                           DG + GF    FHVFNK A S      YF      +R++ +L+GDSLGDL+M+ G+E +EI+ VG LND+VEER + Y   +DVVLLGD    +II LLR++ S
Sbjct:   41 SPLPVDGGHVVIRDPASFLAKKAKIASDGPSKLQLLFDWDFTLTHFFLNGRRACSCHKAIEDCDLLSAAYHEKAQALQEYYYAKEVDPSLSVAEKVPLMEAWVRRAHDLLIHHGFRRSLLPLAVKHAHLAVREGCQEVIDLSARAAVPLLVFSAGIADVLEEVCRQQLPRPLPDTVHVVSNRMVFSPVAAASPADAGAARPSVGAPQRGGRGGLEEPSQAGAEDGVLVGFTEPVFHVFNKRAESVLNTSAYFHQIDYEKRKHAILVGDSLGDLHMSDGLELEEIIKVGLLNDRVEERLDEYSQKFDVVLLGDGDLTYIIGLLRELIS 367          
BLAST of mRNA_P-fluviatile_contig12.1435.1 vs. uniprot
Match: A0A8C5D5B1_9TELE (5'-nucleotidase n=1 Tax=Gouania willdenowi TaxID=441366 RepID=A0A8C5D5B1_9TELE)

HSP 1 Score: 229 bits (584), Expect = 2.690e-66
Identity = 119/267 (44.57%), Postives = 169/267 (63.30%), Query Frame = 3
Query:  423 VLYRDVTDFERKRQRLLSGGSGSLQIISDFDFTMTKFFVNGRRGDSCHAVIDESGLLAEDFHERTTELRNHYYPLEVDATLSAEMRVKMMVEWVTKAHEAMVDAGITKEILSGAVAKANLKFRPGHGQLLRWVEEEGVPLLMFSAGIADVLEEAFRQHSDEPLPSTCSVISNRMAFDADGQMTGFVGECFHVFNKFASAEAVKPYFQTEQMRRRRNVLLLGDSLGDLNMAKGIE-ADEILTVGFLNDKVEERREAYVAAYDVVLLGD 1220
            VL +D    +   Q +   GS +LQ+ISDFD T+T+F  NG+R  +CH ++D S L++ D  +   EL + YYP+E+D + S E ++ +MVEW TKAH+ +V+  I KE+LS AV ++    R G+      + E  +PLL+FSAGI D+LEE  RQ       S  +V SN M FD  G +  F GE  H++NK   A     +FQ  ++R R NVLL+GDSLGDLNMA G++  + IL +G+LNDKVEER+++Y+  YDVVL+ D
Sbjct:   10 VLMKDPVRVQEILQSMKKAGSNTLQVISDFDMTLTRFAYNGKRCPTCHNILDNSKLISSDCKDMLKELLDTYYPIEIDCSRSVEEKLPLMVEWWTKAHDLLVEQKIRKEMLSTAVQESEAMLREGYEFFFNHLHEHSIPLLIFSAGIGDILEEVIRQAG--VFHSNVNVFSNYMDFDDSGVLKAFKGELIHIYNKREGAMLNTGHFQ--ELRTRPNVLLMGDSLGDLNMADGVQDMENILKIGYLNDKVEERKQSYLNLYDVVLIND 272          
BLAST of mRNA_P-fluviatile_contig12.1435.1 vs. uniprot
Match: A0A3P8WJF3_CYNSE (5'-nucleotidase n=1 Tax=Cynoglossus semilaevis TaxID=244447 RepID=A0A3P8WJF3_CYNSE)

HSP 1 Score: 229 bits (583), Expect = 4.660e-66
Identity = 119/267 (44.57%), Postives = 169/267 (63.30%), Query Frame = 3
Query:  423 VLYRDVTDFERKRQRLLSGGSGSLQIISDFDFTMTKFFVNGRRGDSCHAVIDESGLLAEDFHERTTELRNHYYPLEVDATLSAEMRVKMMVEWVTKAHEAMVDAGITKEILSGAVAKANLKFRPGHGQLLRWVEEEGVPLLMFSAGIADVLEEAFRQHSDEPLPSTCSVISNRMAFDADGQMTGFVGECFHVFNKFASAEAVKPYFQTEQMRRRRNVLLLGDSLGDLNMAKGIE-ADEILTVGFLNDKVEERREAYVAAYDVVLLGD 1220
            V  RD    +   Q ++  GS +LQ+ISDFD T+T+F  NG+R  +CH ++DES L++ED  E   EL N YYP+E+D++ S E ++ +MVEW TKAHE ++   I K+ ++ AV ++  K R G+      + E  +P+L+FSAGI D+LEE    H          V SN M FD DG +  F GE  HV+NK   A     +FQ  ++R R NVLL+GDSLGDL MA G++  + IL +GFLNDKVEER+++Y+ +YD+VL+ D
Sbjct:   17 VYMRDPQRVQEILQSMMKAGSNTLQVISDFDMTLTRFEYNGKRCPTCHNILDESQLISEDGKEELKELLNTYYPIEIDSSQSIEDKLPLMVEWWTKAHELLIQQKIRKDGIATAVGESEAKLREGYQLFFDHLHEHSIPVLIFSAGIGDILEEVI--HQAGVFHPNVKVFSNYMDFDEDGVLKAFKGELIHVYNKREGALLNTGHFQ--ELRTRPNVLLMGDSLGDLTMADGVQDMENILKIGFLNDKVEERKQSYLDSYDIVLVKD 279          
BLAST of mRNA_P-fluviatile_contig12.1435.1 vs. uniprot
Match: UPI001401F492 (cytosolic 5'-nucleotidase 3A isoform X1 n=2 Tax=Amblyraja radiata TaxID=386614 RepID=UPI001401F492)

HSP 1 Score: 230 bits (586), Expect = 4.910e-66
Identity = 120/265 (45.28%), Postives = 168/265 (63.40%), Query Frame = 3
Query:  468 LLSGGSGSLQIISDFDFTMTKFFVNGRRGDSCHAVIDESGLLAEDFHERTTELRNHYYPLEVDATLSAEMRVKMMVEWVTKAHEAMVDAGITKEILSGAVAKANLKFRPGHGQLLRWVEEEGVPLLMFSAGIADVLEEAFRQHSDEPLPSTCSVISNRMAFDADGQMTGFVGECFHVFNKFASAEAVKPYFQTEQMRRRRNVLLLGDSLGDLNMAKGIEADE-ILTVGFLNDKVEERREAYVAAYDVVLLGDCGFDFIIDLLRDI 1259
            L+ GGS  LQ+I+DFD T++KF  NG+R  +CH VID   L++ED  ++  ++RN YYP+EVD T+S E +   MVEW TKAH  +V+ GI KE L+  V ++++  R G+      + E  +P+ +FSAGI DVLEE   Q       S   V+SN M FD  G + GF GE  HV+NK   A     YF  ++++   N++LLGDSLGDLNMA G++  E IL +GFLNDKVEE  E Y+ +YD+VL+G+   D +  +L+ I
Sbjct:   70 LIKGGSTKLQVITDFDMTLSKFLHNGKRCSTCHNVIDNCKLISEDCRKKLVQIRNKYYPIEVDPTISTEDKYPFMVEWWTKAHNLLVEQGIRKEKLAAVVRESDVTLRDGYELFFDKLNERNIPVFIFSAGIGDVLEEVITQVG--VFHSNVKVVSNFMDFDEKGVLKGFKGELIHVYNKRDGALRSSEYF--DKLKDNCNIILLGDSLGDLNMADGVQNTESILKIGFLNDKVEESLEKYMDSYDIVLVGEESLDLVNAILQKI 330          
The following BLAST results are available for this feature:
BLAST of mRNA_P-fluviatile_contig12.1435.1 vs. uniprot
Analysis Date: 2022-09-19 (Diamond blastx: OGS1.0 vs UniRef90)
Total hits: 25
Match NameE-valueIdentityDescription
A0A6H5JI70_9PHAE1.930e-14976.875'-nucleotidase n=1 Tax=Ectocarpus sp. CCAP 1310/3... [more]
D8LDF4_ECTSI2.300e-13877.955'-nucleotidase n=1 Tax=Ectocarpus siliculosus Tax... [more]
A0A835YMP4_9STRA3.030e-8253.065'-nucleotidase n=1 Tax=Tribonema minus TaxID=3033... [more]
A0A7S3UTG8_HETAK1.250e-7045.525'-nucleotidase (Fragment) n=1 Tax=Heterosigma aka... [more]
UPI001F080AC39.830e-6745.69cytosolic 5'-nucleotidase 3-like n=1 Tax=Hypomesus... [more]
A0A7S3LZW9_9STRA1.240e-6643.855'-nucleotidase n=2 Tax=Spumella elongata TaxID=89... [more]
W7TPE8_9STRA1.560e-6640.375'-nucleotidase n=2 Tax=Monodopsidaceae TaxID=4250... [more]
A0A8C5D5B1_9TELE2.690e-6644.575'-nucleotidase n=1 Tax=Gouania willdenowi TaxID=4... [more]
A0A3P8WJF3_CYNSE4.660e-6644.575'-nucleotidase n=1 Tax=Cynoglossus semilaevis Tax... [more]
UPI001401F4924.910e-6645.28cytosolic 5'-nucleotidase 3A isoform X1 n=2 Tax=Am... [more]

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Alignments
The following features are aligned
Aligned FeatureFeature TypeAlignment Location
P-fluviatile_contig12contigP-fluviatile_contig12:1621048..1634564 +
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 score415.2
Seed ortholog evalue2.8e-113
Seed eggNOG ortholog2880.D8LDF4
KEGG rclassRC00017
KEGG koko:K01081
KEGG ReactionR00183,R00511,R00963,R01126,R01227,R01569,R01664,R01968,R02088,R02102,R02323,R02719,R03346
KEGG Pathwayko00230,ko00240,ko00760,ko01100,ko01110,map00230,map00240,map00760,map01100,map01110
EggNOG free text desc.Belongs to the pyrimidine 5'-nucleotidase family
EggNOG OGsKOG3128@1,KOG3128@2759
EC3.1.3.5
COG Functional cat.O
Best tax levelEukaryota
Best eggNOG OGNA|NA|NA
BRITEko00000,ko00001,ko01000
Hectar predicted targeting categoryother localisation
Ec32 ortholog descriptionHAD-like domain
Ec32 orthologEc-15_000820.1
Exons8
Model size2057
Cds size990
Stop1
Start1
Relationships

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

Feature NameUnique NameSpeciesTypePosition
mRNA_P-fluviatile_contig12.1435.1prot_P-fluviatile_contig12.1435.1Porterinema fluviatile SAG_2381polypeptideP-fluviatile_contig12 1621329..1633778 +


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

Feature NameUnique NameSpeciesTypePosition
1622815510.0644867-UTR-P-fluviatile_contig12:1621047..16213281622815510.0644867-UTR-P-fluviatile_contig12:1621047..1621328Porterinema fluviatile SAG_2381UTRP-fluviatile_contig12 1621048..1621328 +
1693562087.7913756-UTR-P-fluviatile_contig12:1621047..16213281693562087.7913756-UTR-P-fluviatile_contig12:1621047..1621328Porterinema fluviatile SAG_2381UTRP-fluviatile_contig12 1621048..1621328 +
1622815510.1786199-UTR-P-fluviatile_contig12:1633778..16345641622815510.1786199-UTR-P-fluviatile_contig12:1633778..1634564Porterinema fluviatile SAG_2381UTRP-fluviatile_contig12 1633779..1634564 +
1693562087.8829727-UTR-P-fluviatile_contig12:1633778..16345641693562087.8829727-UTR-P-fluviatile_contig12:1633778..1634564Porterinema fluviatile SAG_2381UTRP-fluviatile_contig12 1633779..1634564 +


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

Feature NameUnique NameSpeciesTypePosition
1622815510.07569-CDS-P-fluviatile_contig12:1621328..16215541622815510.07569-CDS-P-fluviatile_contig12:1621328..1621554Porterinema fluviatile SAG_2381CDSP-fluviatile_contig12 1621329..1621554 +
1693562087.8116422-CDS-P-fluviatile_contig12:1621328..16215541693562087.8116422-CDS-P-fluviatile_contig12:1621328..1621554Porterinema fluviatile SAG_2381CDSP-fluviatile_contig12 1621329..1621554 +
1622815510.086648-CDS-P-fluviatile_contig12:1626674..16268171622815510.086648-CDS-P-fluviatile_contig12:1626674..1626817Porterinema fluviatile SAG_2381CDSP-fluviatile_contig12 1626675..1626817 +
1693562087.8204648-CDS-P-fluviatile_contig12:1626674..16268171693562087.8204648-CDS-P-fluviatile_contig12:1626674..1626817Porterinema fluviatile SAG_2381CDSP-fluviatile_contig12 1626675..1626817 +
1622815510.0973613-CDS-P-fluviatile_contig12:1627856..16279251622815510.0973613-CDS-P-fluviatile_contig12:1627856..1627925Porterinema fluviatile SAG_2381CDSP-fluviatile_contig12 1627857..1627925 +
1693562087.8289335-CDS-P-fluviatile_contig12:1627856..16279251693562087.8289335-CDS-P-fluviatile_contig12:1627856..1627925Porterinema fluviatile SAG_2381CDSP-fluviatile_contig12 1627857..1627925 +
1622815510.1096218-CDS-P-fluviatile_contig12:1628967..16291151622815510.1096218-CDS-P-fluviatile_contig12:1628967..1629115Porterinema fluviatile SAG_2381CDSP-fluviatile_contig12 1628968..1629115 +
1693562087.8371806-CDS-P-fluviatile_contig12:1628967..16291151693562087.8371806-CDS-P-fluviatile_contig12:1628967..1629115Porterinema fluviatile SAG_2381CDSP-fluviatile_contig12 1628968..1629115 +
1622815510.119563-CDS-P-fluviatile_contig12:1630342..16304311622815510.119563-CDS-P-fluviatile_contig12:1630342..1630431Porterinema fluviatile SAG_2381CDSP-fluviatile_contig12 1630343..1630431 +
1693562087.846102-CDS-P-fluviatile_contig12:1630342..16304311693562087.846102-CDS-P-fluviatile_contig12:1630342..1630431Porterinema fluviatile SAG_2381CDSP-fluviatile_contig12 1630343..1630431 +
1622815510.1334383-CDS-P-fluviatile_contig12:1631175..16312711622815510.1334383-CDS-P-fluviatile_contig12:1631175..1631271Porterinema fluviatile SAG_2381CDSP-fluviatile_contig12 1631176..1631271 +
1693562087.8590217-CDS-P-fluviatile_contig12:1631175..16312711693562087.8590217-CDS-P-fluviatile_contig12:1631175..1631271Porterinema fluviatile SAG_2381CDSP-fluviatile_contig12 1631176..1631271 +
1622815510.1464615-CDS-P-fluviatile_contig12:1632575..16326861622815510.1464615-CDS-P-fluviatile_contig12:1632575..1632686Porterinema fluviatile SAG_2381CDSP-fluviatile_contig12 1632576..1632686 +
1693562087.8677964-CDS-P-fluviatile_contig12:1632575..16326861693562087.8677964-CDS-P-fluviatile_contig12:1632575..1632686Porterinema fluviatile SAG_2381CDSP-fluviatile_contig12 1632576..1632686 +
1622815510.1610696-CDS-P-fluviatile_contig12:1633670..16337781622815510.1610696-CDS-P-fluviatile_contig12:1633670..1633778Porterinema fluviatile SAG_2381CDSP-fluviatile_contig12 1633671..1633778 +
1693562087.8753936-CDS-P-fluviatile_contig12:1633670..16337781693562087.8753936-CDS-P-fluviatile_contig12:1633670..1633778Porterinema fluviatile SAG_2381CDSP-fluviatile_contig12 1633671..1633778 +


Sequences
The following sequences are available for this feature:

protein sequence of mRNA_P-fluviatile_contig12.1435.1

>prot_P-fluviatile_contig12.1435.1 ID=prot_P-fluviatile_contig12.1435.1|Name=mRNA_P-fluviatile_contig12.1435.1|organism=Porterinema fluviatile SAG_2381|type=polypeptide|length=330bp
MPADMLDGAACVNIGSDEEPPVAWSSSAAVKAQDGGVDSSITSKGDCVLY
RDVTDFERKRQRLLSGGSGSLQIISDFDFTMTKFFVNGRRGDSCHAVIDE
SGLLAEDFHERTTELRNHYYPLEVDATLSAEMRVKMMVEWVTKAHEAMVD
AGITKEILSGAVAKANLKFRPGHGQLLRWVEEEGVPLLMFSAGIADVLEE
AFRQHSDEPLPSTCSVISNRMAFDADGQMTGFVGECFHVFNKFASAEAVK
PYFQTEQMRRRRNVLLLGDSLGDLNMAKGIEADEILTVGFLNDKVEERRE
AYVAAYDVVLLGDCGFDFIIDLLRDIGST*
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mRNA from alignment at P-fluviatile_contig12:1621048..1634564+

Legend: UTRpolypeptideCDS
Hold the cursor over a type above to highlight its positions in the sequence below.
>mRNA_P-fluviatile_contig12.1435.1 ID=mRNA_P-fluviatile_contig12.1435.1|Name=mRNA_P-fluviatile_contig12.1435.1|organism=Porterinema fluviatile SAG_2381|type=mRNA|length=13517bp|location=Sequence derived from alignment at P-fluviatile_contig12:1621048..1634564+ (Porterinema fluviatile SAG_2381)
GTCTCAATGGGGCTCCGATGTTGGACTGCCAACACCTCTCCTTAATGGGA TAGAGTCATCGTATCCCCCTGCCCTGGCAGACTTTGAGGGTAAGGCATAC ACAGCAGCGTATCCGGAGGTCAAGGGGTCAACTCCTGGTGCTTCAGTGTA CCCTTTCCGATCGGTAATTGCAAACGCAGCCGCCGGAGACGCCTGATCGT GTGTCTTGTAGAATTGACTCTTGAAAACAACGAGTGTTTTCTCACGAAAG GTCTCCGCGCTTGTGCTGTTAGATTTACAAGATGCCTGCGGACATGCTCG ATGGCGCGGCTTGTGTCAACATTGGAAGCGACGAAGAACCACCGGTGGCG TGGTCGTCGTCGGCAGCAGTCAAGGCCCAAGATGGTGGTGTCGACAGCAG CATTACAAGCAAGGGAGATTGCGTCCTGTACAGGGATGTAACCGACTTCG AACGGAAGCGACAACGACTCCTATCGGGAGGTTCAGGCAGCTTGCAGATC ATCTCAGGTGCGACCGAAGCAGATGCGTTGGCGGATGCTTGCTGACAGTA TCCAGGTAGTGTCACCCAGGGATCCAATGAACTCACATGCAAAATATCAC AAAATATCCATATTTTTGCGCAGGTGTTACCTTCCGTCATTAGTTTTCTT CTCACAGTGCAACATGCCGCAAACGGGTGTGCCCAGTTGCTTGACAACGA AGACGATGCCGATGCTTCAATCGAAGGTTTTCACGACTTTATCGTTGAAA GCTCGATTTGAACGTTTCGCTCGTGTTTTCGCATCGTCTCGGGGTTGCGA AGATAGCGCTCGATTTTGATTTTCAGGAGGAGGGTTGGCGCTTCGGGGGA GATAAGCCACCCTTATGTGAGACTACGGACCTGACGGCGACGGATTTAAA TGTTAAAAAGCGAAGAAGACGAAAGAAAAACATGGGCAGAAAATTCGTAG TACAAGGGCTTCGGATGCGGGGGCCTGCCGGCCCCTCGTCCTTTGGCGTG GAAAAGTGCTGAGGTTGGGTGAGTTCATGAAGGGTGAGATCGGTAGGTGG CATACCAAGGGTTGCGGAATGGACCCATGAGAAGGTGCAAAGAGGTATGA TCCATGATGGTTAACGAATCGCCGCATGTGGGAGCGAAAAGAACATAGGT CTAGTGTCGTAGCGTCATAGGTGGAATTCCCCGTAGGATGCACAGCGAGA AACTGTACGGCACGCGTTGCACGGTTGCAGTGGTCTTGCACGGTAAATCT GAATGTGTGAAGGAGAGAGGGTAAATGATTATTACTCCATATAAAATAGG GAACAAACGAGACGGAAATCCAAGATGAAATACCGTATGCGGGAGGTACC GCAGTGGCATGGACCGAAAGGGTCAACTCCTCTGTGACGACTCACCTAAC ACCGAACGGCTGGCGTACACTCTACCCTTTGACAGGTTGCAAGTCTACAT TATTACCGTGCAAATGTTGCTGTACCGACTACGGTTGACGCCCTGCGCAT GCTGAATCATGCACGATGAAGTGACTTTCGTTTACCTATTCCAGAGGCCA GAAATAAACAAATAAATCCTCAATGATCACGGGGACCCAGGCCAGGATTG GAAGATAAATAAACCGTAATGGTGAGTGAGAGAGAAAACCCAAAATGTGC CCTACGACGCAGCCCAAGTCGTGGACGGTGAAACCTCAGCCCAGAATGAA GGCGACACGACCCCGTGAAAAACAGTCGATATTCATCCTGCGCGCAAGAT GCGAAAATTCGTTATTGCGTTGATAGAAAACCCAAAATGCTCTCCTACGA CGCAGACATGTCGTGGATGATGAAATCACAGTGCAGAATCAAGGCTACAC TACCGCGCGGGAAGCAATCCGTGTCCATCTTACGTGCAAGATGCGATACT TCTATTTCCTACTACTTATTGAGAAAACACCGTAACTTTAGATATTATGC TGAAGAAGGACCTGACTTCGACATCGACGACCTCATCGCAAAGATGAGCA CCATCTTCACCCACAAGCCCGCGACATTTGTGTCATATCCCACACGTGTG CCACAGACCTCTGTCAGCTTCATCATAGCCAATTGCTGTACCGCTGGGTT TGTACCGCTGGGTTCCAGCGGTACAATTGGCTATGATGAAGCTGACAGAG GTCTGTGGCACACGTGTGGGATATGACACAAATGTCGCGGGCTTGTGGGT GAAGATGGTGCTCATCAGGTCCTCGATGTCGAAGTCAGGTTCTTCTGCAG CATATCTCAAGTTCCGGTGTTTTTTTTTCGTGGCTTGGCCCGCTCTCAGG GACGCTCAGCGCGTTTCAGACCCACGGCACGGCGGAGAGGAGTGAGCGCG CAACCTCGCAGTGCGCTCAAATGCCTAGCAACGCCCACACCGAGCGCCTC CAAGAAACCCGGAGCGAAAGCCGTCCAGGGAGCGCGTGAATCCGCCGAGA CCGTCTCTCTACGCACCACGACTCAGCATTTCGAAATGTAGCCCTGTGAG CGAGTCTCCCACTTCTTGGATGGCATCGTCTGTGGGCAGTGTCTGTAAGA AGTCCTCGATTACGTTATCCTTAAACTCACAACAGAGCTTGGGAACAGGG GCGCCGTTCAGAATGGATGAGCGTGACAAACAGGGCACGAAGTTGGCCTG CAACGTTAAACACTGAGGCCTCTTCCATGCACAAGGTATATTCTTCTTCT CCTGTAATCAATCCTGCTGCTCTTGCTGCGTCGTGGAAAGACAGATTTTT CCATCATCACCAGCAGCATGTAGCACCTCTCCCAATGTACGTCCAAAAAG CGCGTGCGTCCGCACAACTCCACTTTTTAAAATGTTGAAAATGTACAATA TCTGCTGCGTGGGCGCCTACAGTTTTCACGTTTGCAAGCCACTCGGGGGT TGCCCTGCACGAACAGAGTCTTCGTCTTGGTGGCTGGGGTGGTTGGAGCG GATGGCTTGCGCTTCAGAAACGAGCTCTTCGACAACTTGCTCATTGCTAC TTGGGAGGGTGTGAAATGTGGTGATGGTGGGATGTGCGAAGCAGCGAAGG GCGGGTGTGGGCGCATTGATCCGGCAATTTTTTTTCGGCCGCTGAAAGAT CCGTTATTTTTCTCTTCAAATCCGTAACCAAGAGTTCATGCGGAAACTAA AATATCTCTCAAGAAAGTTCGAGTGCGAAATTCCCCTAAAAACCTGCTAT TTTCTCTTAAGATCCGTAACCAACAGTCCATGCGGGAACTAAAATAACTC TTTAAAGATAGTTCGAGTGCGAATTACGCCTAAAATTACGTGGACAACAG TCCTTGCGTAAAACACCTGTAAAACGATACTCCGAGTGCGATAAAAGTTT ATGTACTCTGGAGTATGTGTCTGTCGTTGGTTTTGCTGATGGTGGCATGT GCGTATTGATCCGGCAAACCCGGCCAGTCATGGACGCGTGGACTTATATC CGCAAAGTATGGCATTCAAATAACGCGCTCATTGCTACTTGGGAGGGTGT GGAAGGTGGTTGTGGTGGGATGTGCGAATGGCGAGTGTGCGCGTCTTGAA TGAACCCAGCAATTGTATTTTGATTACTACAAAGGTCCGTTATTTTTCTC TGAAGATCCCTAACCGACAGTCCTTCCGGGGGCTAAAACACCTCATGAAA GATGGATAGAGTGCGCTTTTCCCCTAAAAATCAACAGTCCATGCGGGGAC TAAAATAACTTTCTACGTACGTGCGGTAAACAGCACATAAAAGTTCATGT GTCTGTGGTGCGTTTTGGTGATGGTGGTATGTGCGTCTTGATCGGCCAGT CATGAACGCGTGGACTATTATCCACAAAGAGAGGATGAGGTCTAAATATC CCCAAACAATGACCCAAAGATCCGTCGTCCGGCGAATTTTGGGTGCGGGC GTATGTAGGGAGACCCATGATCCTTGGGGTGCGCGTACACGCTGCAAGTA CCGGTGATTTAAGAGTTTACTCTAACTGCAACTCTGCGTACGTGCAGTAA ACAGCACGCTCGTGCTCACATATACGATATGATGCGAGGACTAAAATTTT GGGTGCGGGCGCACGTAGAGAGACCCATGATCCTTTCGTGACTGACGTGG GATCCGGGTGAACGCTGCAAGTACCGGTGATGTAAGAGTGCACTCTGACG TAAGCAGCACGCTCGCGCTCACATGTTTAATGTTTATGACGGCGTTGACG GCAAGCGAGGTGTAGATGTGGCGATGTAAGCAAAGACCGTGAAGTGAGTC CCTCCGACCACCTGGAGTCGGTCGCTTGGGTTCAGGAAGCCTGGCCGGTT TAAAAAACCTGAACAGACTGGCCCGAAGCGGGCGCATGGAAGGTGAGCGT GTATGTCCGGCCCACTCTCAGGGACTCTGAGCGTATCAGACCCACGGCAC GGCGGAGCGGAGCGAGCGCGCAACCTCGCAGCGCGCTCAAACGCCTGGCT ACGCCCACACCGAGCGCCTCCAGAAAACCGGAGAGAAAGCCGTCCGGGGA GCGCGTGAATCCGCCGAGACCATCTCTCGGCGCACCACAGCTCAGCATTT CGAAATGTAGCCCTGTGAGCGAGTCTCCCACGGATCTCCGTGAGCCAGAC CGAAAGGGTGAGAATTCGTAATATTCATTACCTCCGCAAGGGGGCTCCGC CTTGGCCCCCTAAAGGGGAGCAACGGCCCGGTCGTAACCCGAAGTTTTGC GGACGAAAGGTGATGTCTGCATACATAACGAAAGGGCATGATTTATAAAT GTGCGTTGACTTCCACCCCGCACGAATGCAACACGCAGAGTAAAAGGCAA AAAAAAAAACACGCGGCATGGACGCAGAGTAAAAGGATAAAAAAAACGGC ATGGATACCATGTATCAGGGTTGACCCTAGGAGTGTCAGCGACATGACGT TGCCGTCAAAACGTAGAGGTCATTCAAACTCTCGCGCACCATCAAAAACA AAACGGACATTGTTGCTATGGATGACAAACCGGCTCCGCCATGTCGTTCG CTTTCAAACCAAATTACAGTCAATGCGCGCTTAGGCACGCCCCCGACAGG GTTCACCGGTCCTTGCAATAACATACAATGTTCCTTTACTGAGCAACGTT GTCAAGAATGAAAATTGAAGGCACGCGCAGAACCCACCGAAAGGAAACCG ACATTTTCGCTATGTGTGAGAACACGGCGCCAGCACGAATTGTGCTTGTG AAGTCAATATTCCACCATTGGGTGCCTAGGCGGCACACGGCAAGATATAC GACACAGAGGATGTCGGCGACATAACGGTTCGCGGAAGCCTTCTAATTTG GCTCCCTACTCTACTGTAGCGGTATTGATCCATGCCTGCACCGCGCAGGA CGTAGGTTTATCCTATTACACGCGTGAAGACCCCGAATGAGAGGACCTGG TATTGCAACGTAGGGCGGTTAAAGGGAACATTAAATTAGTTGATGCCAAG TGAGGGTTTGGTAGTGACCTGGGACATAGCTCATAAAGCGTGTGTTCGGT TGGGGCACTGCAGGAGGGAGTGGGTGTTTCGTTATACGCCACTTTTTTTT TTTTTGGAGTTTCTTCTATTTGTGGTGTTTGGCAAGGTGACATGCTCCAA ACTCTCCTCGCGCGTGGCGACGCGCAGATTTCGACTTCACTATGACGAAA TTTTTCGTCAACGGGCGGAGGGGGGACTCCTGCCATGCCGTCATCGACGA GAGCGGATTGCTGGCGGAGGATTTTCACGAGCGAACCACGGAGCTGAGAA ACCACTACTATCCTCTAGAGGTAAGTGTGCGACCGCGGCAGTCCCGTGGC AGGCTGGATCAGCAAGCTGTCTCGGGGCAGAAACGGGATTCGTTCGCAGC GGTTGCAACCCTTGTTGTCTGTTGGCATGTTGCCGTTGCCAACACTGCTG TCTGCTGCTGCGGCCGTGTTTCGTTGTTGCCGCGCTGTTGTCGCCGCTGC TGTTTCGGCTGGGTTGTTGTTGTTGTTGTTGTTGTTGTTGTTGTTGTTGT TGTGGTTGTTGTTGTGGTTGTGGTTGTGGTTGTTGTTGTTGTTGTTGTTG TTTTATTGTTCTTGGAGTTGGTGTTGGTGTTGTTTTTGGTGCTGCTGCCG CCGCCGCTGCCTACTATCGCTGCTATTGCTGCTGCTTCTATTATTGCTGC TGCTGCTGTCGTTGTTTTCGCTGCGGGCGCCGATGGCTGCTGTTGACGTC ATTATCTTTCGGACTCGGTGCCACCCGTACACATTACTGGGAAGGCGCAG TGCTCGCTGGGCGACGCCGCAGCGATTGTCACACACGCCCGCGGTGACCC CTGTGAGAGATCATCATCAACTGCACCCTCGCAATTCAGTTGTGTGTGCG TTTTTACCGTGTGCTAATGCCCTCACAGGGACCACATTCGCAGGAGAACA TCGCAGCGGCAACGATAGCGCTGGCAGCATACATTGTCCACCACGCGGTG AATTTACTACGTGGCGTAGACTAATCATTTGACTTTACTTAATTACGCCA CTCGTGAAGGAGCAGCAGGGACGCATTCGCACGCAATCGTCGCAGCAGTA TCGCAGCAACAGATACGACGTTGTCCACCACGCGGTGAACCATGGAAAAA TGTGAAGACATCTGCTGCCTCGTGAATCGTCCCAGTAAGAAGGCTTTTAT GCACTCCACAGGGATAACGTGAGAATCGACGGCGGACGCTCTCCCGCTTC GCTACTCCGCTTGTTGACATCTCCTTGGTGTCTTGACGCTTGCCTGTCCC GAAAAACCGTGCGCGCCTGCCCCCGCCGCCCCCAACGATAACGATTTACC TATGACCAGGTGGATGCGACGCTCTCCGCGGAAATGAGGGTCAAGATGAT GGTGGAGTGGGTGACCAAGGCTCACGAGGTGTGGTGTGCGTGTGTGCGGT TTGTTGTTGTAGGCAGTCCCGATCCTCACAGTCCCTGTGTCGTCGTTGCT GTTGTTGTTGTAGTATTGTTGCTGTTGTCGTTTTTTCTTCTTTTTTGCTG GTGCTGGTGCTGCTACTGCCTCTGTTGGGGTTGGGGTTGGTGGTGTTGGT GTTGTTGGTGTTGTTGGTGTTGTTGTTGAGCTTGTTCCGGTTGTTTTTGA AAAGTCGTCGGCCTCTGAGATGCACACGCCTTCGTGAGATGCTTGTCCGT TCTGACGCTGTTCTGGAGAACCAACCCCGCTCATTCGTGACAAAAGGTGT TTGCGCAAGGCGTGACCGCGTGTGCGCGGCAGGGTCAGCAGCAGTTTCAA AGTTTTGCTTTCTCGTGGCAGTGGACGCCCATTGTTCCCCCCCCTCATGA GCCTTGGTCTCCGTGGTTGGCGTCTCGGTTTAGCAGGGCATGCTTCCTTT CTTTTGTCTCCTCCTCCCTCTCCTCCTCCTCCTGGCCCTCCTTTTGCGCC ACTCTTCGTCGCGCTCAAACCAAGTACCCCGCGGGACATTACGAAGAAGA TGGAGCAAAGCTAAGCTTATACTTCGCATGTAAAGAAGGGGTCCCGCTGT TGTGCGCGTTCGGAGTTTGCATACGAGCTCTCTCAATTTCTGAAATCTCT CACCTCTTCTATTTTCTGAAAAGTGCGGGTGCCCGCTAGAGTGAGGGGGA AAACTCCCGTCCCACGCCGGCACTATGGAGCACCCCCCACTGTTCCCTCA CTAACCTTCGGTTTTCGGCAATCTCAATCCCAATCTCAACTTTTCACCGC AGCAAACTCCATGGCATCCTCCCTCCCAAAAACAGTGACAAGGCGGCTCA AACTCAGGCTCGAAAGGAATCGGTGCCAGTCCTCCTCCCGCCATCCTCCT ACAGCAGCACTTGCACGTAGCAAACCGGATCCAAACTCAAGACATTCCAC GCAAGCACTTTTTAAAACCGCAACCCATTCGTTCCGCTTCGCGTCCTTGC CCTTTCTTCAACCAATGAAGGCGATGGTTGACGCGGGCATCACCAAGGAG ATCCTTAGCGGGGCGGTTGCCAAGGCCAATCTCAAGTTCAGGCCGGGGCA CGGGCAGCTCCTCCGGTGGGTGGAAGAGGAGGGGGTGCCGCTGCTCATGT TCAGCGCAGGCATTGCCGGTGAGAGGGGCGCCTGGGGTCACGCGGAGTAC GAGTGGGGTGGGATGGGGTGGGACAGAGTGGGGTAGGGTGGGATAGTATG GAGGGGAGCGGGGTGGAGGGGGCGGGGTGGAGGGGGCGGGGTTGAAAGGA GGCGGGCTGGTATGCGGCTGGATGCGTTAAATGGGGTGGGGTGGGACGGA ATGGCGTAGGATGGGACCGGATGTGGCGGAATGGGCTTAGTGAGGCGAGG TTAGGTGGAAAAGAATTTGATAGGATGGATGGGATAGAATGGAGCGGGAC GGAATTGGCGGGGGGGTCGGGTTGGGTGCGGCAGGTAGACGGGGGGGGAA AGTGCCGGTCAAGTAGCGTCTACGTTGTCATCGCCTGGTGGGGGAGCCGT GAAGTCGTGCGCGGCGGGGGGTGTACTCATAGTCGTGCATGCCGTAGTCG TTTCCGGGGGGGTGACAATTTTTCCGACGGCAGTAGCGGGCCCCGTCCTG CTGGTGTTGGGGTCCCTGGTGTCCCGCGTGAGTGAGCGCAGGCGGCTCGA GGGTCACGAATGTTTACTAGCACCACACACCCTGCCTCAAAATTTAGGCA ACGTTGATAGATTTTGCCTGGGGCGGGGGGGGCTTTTTTGCCTGCCTTTC GTCACGGGGTATATTCCGGCGCATTTGCGGGGCCACTTTCATGTAGATTT TTGTCGCTACCCACCGTGTATCGCCCGCGTGCAAAAGCGAGGTACACGGG GGGGGCTCTTCAATGCGGGGGTGGGACGGGAAATCTCACCCGTAACGAAG CAGACACCGGCAATGTTCTGAAATGCAGAATTTATATATGGTAATGTAAA AGAGAACTGTCGTGCCCACGGATTTCACCCGCACGTTGCAGAGGTTCCGC GCTAGTCAACCCCGGAGTACAGAAGGCCTCTCTATGTACATTTTCATCAC GTGGTCAGAAGTTCGAATCAGGGTTGGGGTGGGGGTTGGTACGACCGACG CGAGGGATTGTTTTTCATGTAGTTTTTCGTGAAACACAACGTCAGCGGTC TTAAGCTTCAACTGGAGAAAACTTTCCATCCTGCACCTTTTTTGCTTCTG TTGATGTCACGCGTCATTTTTTTTTTCAAGGATGTCTGAGGGGAGACGTT TCGACAGAATATGCGCATTGGGCGCATCTTTTACCGTTTGATTCGAGATG GCCAATTCCGGTTGTCCCAATATCGTATGCCTCGCCGTTTCTCAGATGTC TTGGAGGAGGCGTTCCGACAGCACTCTGACGAGCCCCTGCCTTCCACGTG CAGCGTCATTTCCAACAGGATGGCTTTCGATGCGGTGAGTGTGTTGTTGC TGGTGGTTGTGAAGCTGTTTTTTTGCTTGTTGTTGTTGTTGTTGTTGTTG CCGATTCTGTTTGAAATACAAAAAAAAAATGATTGTCCGTCACGCTCCAC CGGCGGTCAAAACAGGAAGGCGCATCGCACGAGTAGCACGCAGTCAGGAA CAAAGATCTTTTGAAGCACAAGAGAAGTCCACAAAAAATATCCACACGAA ACGCGAACGGCAAAAGAGAAAGCAAGGAGCGAGAGATGGAGGGTGTGTGA TCTATCGCGGGGGGCGATGACAAAAGTGTGGTGTTTTCCCGCCCGAGGTG CCGAACCTCGTCGAGAATCTACAGGAAACGGCGCTTCGTGTTGCTTTGCT AGGAGCCTTCAAGAGTGTAAGCCAGAGGACAGTCGTAGAGCATTGCAGCT TTGTGTAGCGCTTGCCCCATCCCCCTCCTCTCTCCTCTGTCGCACCTCCG ACCTCCTCTTTGAAACGACGCTCACCGTGATGGTGCTGTGCCTTGCTTGG TGTGTCCTTGGCGGAAGGCCACATGACTGATGATGCTGAACCTTGCTTGA TGCGTCTTTGCAGAATGGCCACATAACTAGGCTTGTACTCCACAGACGTT TTTCTCCAATTAACAAACTAGTTTGATTGCATACCAATTGAAGTATACCC CCCCCCCCCCTCCTCCAAAAATCAGCCAATCGCCTTTGGAGCACAAGCCT TACGATTACTGATGATGTGTCCTTGCAGGATGGCCAAATGACCGGGTTCG TGGGGGAGTGCTTCCACGTGTTCAACAAGTTCGCCTCGGCTGAGGCGGTC AAGCCCTACTTTCAGACAGAGCAGGTTAGTTCGGCTCACCCCCATTCCAC TCGGTTTCCCCCTCGCTTGCGCTTCCTTTGGATATGCTCCTTTTCTTCTC GATGAAGCCTCTGTTATCCACAATCTGCTTCGAAAGGAGGCGAATCCAGG CGATTTATGCTCAAAAAGTGGCAAAGGTGCTTCGTTCTACACTATACTCG AAACTTAAGCCGAGTTTACCAATAGTAATGCTAGCAGAAAGGGTATACGC CTCATGTCGGTCGCATCTAATCGTCGGTTGTCGGCGCTTATTGCTAAGAG CCCCTATATGCCGTTGTTGTTGTTGTTTTTGTTGTTGTTGTTGTTGTTGT TGTTGTTGTTGTTGTTGTTGTTGTTGTTGTTGTTCTCTCTTCTTCTTCTT CTTCTTCTTCTTCTTCTTCTTCTTCTTCTTGTTCTTGTTGATGTTGTTGC TATTGTCACTTTGTTGTCATTTTGTCGTCGTGGGTGTCGCTCTTTGGCCC AACAATGGATACCCCTCCCGCCCGCTCGTCAGTGGCGGCCTTTCTTACAC GTGACGCATCGTTGGCACCCCCGCCGAACAGATCTAGATCCGGCAGGCTC CTTTATCCGATTCGGTGGATTCATGTTGTCAGCTTCCAGCTGCTCTCATC CGATGTTTCCCCCTCTGCAGCTCCCTGGGCCGCTGCTTTCTACCGCTGCA TTCCTTTGAGAAGCTTCCTGGCAGTTTCACCTTGTTCCTTCGGCGCTTTT CCTCTTCTGTTGCTGTCCTCCCCCCCTCCGACGTACTTCTTCCGCTCTCT TTTCTTTCGATGCCTTCCCTCCACAAATTGTTGCCATCGGTACTTTACCA TCTGCCTGTCCTCCTTTCCATGCCTTCCGCTGCTATTAGCCCCCCACTTT CCATTTTCGGAACTGCCCCCTGGACCTCCTCGTTGCCCACTGCTGTGTTT TCGACCCCCCTGCGGATAATAATCCGACGCTTTCTCTTCAGCCCCTGCTG GCCTGCCGATGCTTTCCTCACGCCGCATGCGGTTCCTCCGAATATTCTGC ACCGCCCGCGCTTTGTCGTTATTTTTGGTCCTATAACAAACATGTTTCAT TATTACTTCTGCGTTCTTTTCCGATGCCCCTCCCCCCCCCCTATTTCCAT TCCTACAACCTTAATGCTTCCGTGTTCTTCTGCATCCGTTGCGAACTTTG CGATGCCTCGCCCCTCCCCCCCTGCTATTTTCAGTCCCACAACAAGAATG TTTCCTTTTTTCACTGCGTTATTTCCCGACCCTTCTCTTCTACTTCGCCT TCGCTCGCACGCGGCGTGTCGGTAATAGATGAGGCGCAGGCGCAACGTGC TGCTGCTCGGAGACAGCCTCGGCGACCTCAACATGGCCAAGGGGATCGAG GCGGACGAGATCCTAACTGTTGGTTTCCTCAACGACAAGGCGAGAGAGGG AAAGTCGAATCCGCCCTCCGGCGGTTCCCAGGGGCTGTGGGAGGCGGGGA TGAGGGGATAGGGGGAACGGGTTCGGGGAGGAGGGAGCGGGGGGCAGAGG TACACGATCTCCACCGTCGGCTTCCTCAACGACGAGGCGTGTAGAAGCTG AAAACCTACCCACTAGACCAGTCAGCGCTGACTAGTCTAGTGGGTTGGTT TTCAGCTTCTACAGGCGGGAGAGAGAGTACCACGCACACGTCGGCTGTCA CGGTAGGCGGGGGGGAAGAATGGTAAGGACAATTTTGCAGCAGGTTAGAG GAGCACCCTTGGCGGTATTCAGGGAGTTTCGTTGCGGGTTACAAAGTTGC CGCACCAAAATTATAAAATCTACCTTTTATGATTGCCTCGCGTCTGAGGA GCAGACGCATCGCTCTCATATCTGATGAGCGGTTCCGATTGGCTCTATTT TGTTTGTCTCCAGCCTCGCTGCGATGGTGCCGCTTTTCACGGGCTTTTGT GGCCAAGCTCCACACGGCGCTCCTAATTTCTTGCTCCGTGTCTCCAGCAC CGTTCCGCATGACCCCGCATCCCCCAGGTTTCCTATTGACGCAGAGGCAT GTCTCTCGCCCTCCCGCCGTCCTCAAGACGTGAAGAGCTTCGTGCACGCC CTCGCTGAGTCTTGCATGTTGCGTTCTTCTGTTTCGCCGAGGCTAGCAAC GACCCGTTGTCGTGGCCTTCTGAAATTTTCTTTGCTGTCTTCCTCTTCAA ATTTTTCTCGTTGTCCTTTGCATGTGTAGCAAGGGGGCCGATAACGTGCT GGTGAAATCACTAAGCATGAATGCGGTCTCACGTTAACAAAACCTGTATT CCCGTTCTGAATAGTTCGGTTGCCTGCCATAGTGCGGGCGAAATCGCTTG TCCCGTACCACGACTGATTACGGAATGCACGTTTTTCGGGGGCGCCATAT TTGTGTTGTTCTTCTCAAGGCAGGTTGAGGAACGAAGAGAGGCTTACGTG GCGGCGTACGACGTAGTCCTCCTCGGCGACTGCGGCTTCGATTTCATCAT AGACCTCCTTCGCGATATCGGCTCCACGTAGTTTACTTCCGATTCGCTTG TCACACTTTGGAAGTGCTTGGCCCCTATCTTGAGTTTAGCTCCTTTCTTC CTGGGGGGGTGAGGGTTGATACATTGTTTTTATTGCGGCGGCGTGGCCGC TCAGCGTATCCCTTGGAGACGTTTTATTACCGCGTACGTGCTGGGCGATT GCCGCAATGCCATTCAGAGCTGGTCATCGGGGATTCGGACGAAATTGCAT GGCACTACAAAGCAGGAGCGGCTTGCTGCTGGAAAACCTTGGTCTATGAC CCGCTGAATAGCATTGCAAGCAATGTTTTCAAGCTTGTACTCGGTAGGCG ATTGACTGATTTTGAAAAGGGGGAGGGGATATTTTGTACTGAAAGTAGTG TAAGTACAGAATCGAAGCCAGTGTACTTCAATTGGGAAAAATCGCTTATC GAGTACTAGCCCGAAGATGTTCTAGCTCTTGAAGAATCTGGTGGAACAAA GTCGATTCCAACCAGTTGCTCAGAGTCCAACCAGTGATGAGAGCCCTCAC AACTGGCGGAAGACGGTGGAGACTCGAAACTGATCGAGCTTGGCCATTCA ATTAGGAATGGATGTGTCAAGACATGTTGTGGAGGCGCACCGCGGGTGAC TCGAAGTTGTGGTATTTCCGGGAACGGTCTTGCGAGGTATTCCGGAAACC GGTTCCTGAGGAGCGCGTGCTTCGAATCTGTGACATGATGCGGCTGGACA ATGCCCATGCTGACATATTCCCGACTGAGGAGCCGACTCCGATAAGCTTC CGATTTATCGTCTCCGG
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Coding sequence (CDS) from alignment at P-fluviatile_contig12:1621048..1634564+

>mRNA_P-fluviatile_contig12.1435.1 ID=mRNA_P-fluviatile_contig12.1435.1|Name=mRNA_P-fluviatile_contig12.1435.1|organism=Porterinema fluviatile SAG_2381|type=CDS|length=1980bp|location=Sequence derived from alignment at P-fluviatile_contig12:1621048..1634564+ (Porterinema fluviatile SAG_2381)
ATGCCTGCGGACATGCTCGATGGCGCGGCTTGTGTCAACATTGGAAGCGA
CGAAGAACCACCGGTGGCGTGGTCGTCGTCGGCAGCAGTCAAGGCCCAAG
ATGGTGGTGTCGACAGCAGCATTACAAGCAAGGGAGATTGCGTCCTGTAC
AGGGATGTAACCGACTTCGAACGGAAGCGACAACGACTCCTATCGGGAGG
TTCAGGCAGCTTGCAGATCATCTCAGATGCCTGCGGACATGCTCGATGGC
GCGGCTTGTGTCAACATTGGAAGCGACGAAGAACCACCGGTGGCGTGGTC
GTCGTCGGCAGCAGTCAAGGCCCAAGATGGTGGTGTCGACAGCAGCATTA
CAAGCAAGGGAGATTGCGTCCTGTACAGGGATGTAACCGACTTCGAACGG
AAGCGACAACGACTCCTATCGGGAGGTTCAGGCAGCTTGCAGATCATCTC
AGATTTCGACTTCACTATGACGAAATTTTTCGTCAACGGGCGGAGGGGGG
ACTCCTGCCATGCCGTCATCGACGAGAGCGGATTGCTGGCGGAGGATTTT
CACGAGCGAACCACGGAGCTGAGAAACCACTACTATCCTCTAGAGATTTC
GACTTCACTATGACGAAATTTTTCGTCAACGGGCGGAGGGGGGACTCCTG
CCATGCCGTCATCGACGAGAGCGGATTGCTGGCGGAGGATTTTCACGAGC
GAACCACGGAGCTGAGAAACCACTACTATCCTCTAGAGGTGGATGCGACG
CTCTCCGCGGAAATGAGGGTCAAGATGATGGTGGAGTGGGTGACCAAGGC
TCACGAGGTGGATGCGACGCTCTCCGCGGAAATGAGGGTCAAGATGATGG
TGGAGTGGGTGACCAAGGCTCACGAGGCGATGGTTGACGCGGGCATCACC
AAGGAGATCCTTAGCGGGGCGGTTGCCAAGGCCAATCTCAAGTTCAGGCC
GGGGCACGGGCAGCTCCTCCGGTGGGTGGAAGAGGAGGGGGTGCCGCTGC
TCATGTTCAGCGCAGGCATTGCCGGCGATGGTTGACGCGGGCATCACCAA
GGAGATCCTTAGCGGGGCGGTTGCCAAGGCCAATCTCAAGTTCAGGCCGG
GGCACGGGCAGCTCCTCCGGTGGGTGGAAGAGGAGGGGGTGCCGCTGCTC
ATGTTCAGCGCAGGCATTGCCGATGTCTTGGAGGAGGCGTTCCGACAGCA
CTCTGACGAGCCCCTGCCTTCCACGTGCAGCGTCATTTCCAACAGGATGG
CTTTCGATGCGATGTCTTGGAGGAGGCGTTCCGACAGCACTCTGACGAGC
CCCTGCCTTCCACGTGCAGCGTCATTTCCAACAGGATGGCTTTCGATGCG
GATGGCCAAATGACCGGGTTCGTGGGGGAGTGCTTCCACGTGTTCAACAA
GTTCGCCTCGGCTGAGGCGGTCAAGCCCTACTTTCAGACAGAGCAGGATG
GCCAAATGACCGGGTTCGTGGGGGAGTGCTTCCACGTGTTCAACAAGTTC
GCCTCGGCTGAGGCGGTCAAGCCCTACTTTCAGACAGAGCAGATGAGGCG
CAGGCGCAACGTGCTGCTGCTCGGAGACAGCCTCGGCGACCTCAACATGG
CCAAGGGGATCGAGGCGGACGAGATCCTAACTGTTGGTTTCCTCAACGAC
AAGATGAGGCGCAGGCGCAACGTGCTGCTGCTCGGAGACAGCCTCGGCGA
CCTCAACATGGCCAAGGGGATCGAGGCGGACGAGATCCTAACTGTTGGTT
TCCTCAACGACAAGGTTGAGGAACGAAGAGAGGCTTACGTGGCGGCGTAC
GACGTAGTCCTCCTCGGCGACTGCGGCTTCGATTTCATCATAGACCTCCT
TCGCGATATCGGCTCCACGTAGGTTGAGGAACGAAGAGAGGCTTACGTGG
CGGCGTACGACGTAGTCCTCCTCGGCGACTGCGGCTTCGATTTCATCATA
GACCTCCTTCGCGATATCGGCTCCACGTAG
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