mRNA_P-fluviatile_contig1.427.1 (mRNA) Porterinema fluviatile SAG_2381

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

Overview
NamemRNA_P-fluviatile_contig1.427.1
Unique NamemRNA_P-fluviatile_contig1.427.1
TypemRNA
OrganismPorterinema fluviatile SAG_2381 (Porterinema fluviatile SAG_2381)
Homology
BLAST of mRNA_P-fluviatile_contig1.427.1 vs. uniprot
Match: A0A6H5KE48_9PHAE (Uncharacterized protein n=1 Tax=Ectocarpus sp. CCAP 1310/34 TaxID=867726 RepID=A0A6H5KE48_9PHAE)

HSP 1 Score: 666 bits (1718), Expect = 1.200e-228
Identity = 334/356 (93.82%), Postives = 342/356 (96.07%), Query Frame = 3
Query:  693 GKLPLPFFDVESVGLRGRWEEMGGNFLLRPPNGERPKALVHFLGGAFVGAAPHLTYNYLLSGLAELGFLVVATPYPLGFDYLNVCDGILDRFEQAAVPLAAQYGALPVVGIGHSCGALLQLLITCLFPDTPRAANALISFNNKPVSEAVPGFEELVLPLVMQVLKEGGGKSTLFSTLEMLRETVDNLVDG-----VAASRFAPAVLENEVVPLVRQVLQITDQLPALFQSIADGTREFTPTPEETRDVVSKMYRARRTIMIRFENDSIDESEGMKDVIQEGKTLLRMRRPLVDMELRYEIIKGNHITPLTQNVFLDTPVDSIDPLLGVRQGMKKEFLKTVNQLGQILVDWLEESAP 1745
            G+LPLPFFDVESVGL+GRWEEMGGNFLLRPP+ + PKALVHFLGGAFVGAAPHLTYNYLLSGLAE+GFLVVATPYPLGFDYLNVCDGILDRFEQAAVPLAAQYGALPVVGIGHSCGALLQLLITCLFPDTPRAANALISFNNKPVSEAVPGFEELVLPLVMQVLKEGGG+STLFSTLEMLRETVDNLVDG     VA SRFAPAVLENEVVPLVRQVLQITDQLPAL QSIADG REFTPTPEETRDVVSKMYRARRTIMIRFENDS+DESE MKDVIQEGKTLLRMRRPLVDMELRYE+IKGNHITPLTQNVFL TPVDSIDPL GVRQGMKKEFLKTVN LGQILVDWLEESAP
Sbjct:   36 GRLPLPFFDVESVGLKGRWEEMGGNFLLRPPDDQAPKALVHFLGGAFVGAAPHLTYNYLLSGLAEMGFLVVATPYPLGFDYLNVCDGILDRFEQAAVPLAAQYGALPVVGIGHSCGALLQLLITCLFPDTPRAANALISFNNKPVSEAVPGFEELVLPLVMQVLKEGGGQSTLFSTLEMLRETVDNLVDGQVLGVVAESRFAPAVLENEVVPLVRQVLQITDQLPALLQSIADGAREFTPTPEETRDVVSKMYRARRTIMIRFENDSLDESERMKDVIQEGKTLLRMRRPLVDMELRYEVIKGNHITPLTQNVFLKTPVDSIDPLFGVRQGMKKEFLKTVNHLGQILVDWLEESAP 391          
BLAST of mRNA_P-fluviatile_contig1.427.1 vs. uniprot
Match: D7G7C9_ECTSI (Uncharacterized protein n=1 Tax=Ectocarpus siliculosus TaxID=2880 RepID=D7G7C9_ECTSI)

HSP 1 Score: 513 bits (1322), Expect = 5.580e-171
Identity = 260/269 (96.65%), Postives = 262/269 (97.40%), Query Frame = 3
Query:  939 NVCDGILDRFEQAAVPLAAQYGALPVVGIGHSCGALLQLLITCLFPDTPRAANALISFNNKPVSEAVPGFEELVLPLVMQVLKEGGGKSTLFSTLEMLRETVDNLVDGVAASRFAPAVLENEVVPLVRQVLQITDQLPALFQSIADGTREFTPTPEETRDVVSKMYRARRTIMIRFENDSIDESEGMKDVIQEGKTLLRMRRPLVDMELRYEIIKGNHITPLTQNVFLDTPVDSIDPLLGVRQGMKKEFLKTVNQLGQILVDWLEESAP 1745
             VCDGILDRFEQAAVPLAAQYGALPVVGIGHSCGALLQLLITCLFPDTPRAANALISFNNKPVSEAVPGFEELVLPLVMQVLKEGGG+STLFSTLEMLRETVDNLVDGV  SRFAPAVLENEVVPLVRQVLQITDQLPAL QSIADGTREFTPTPEETRDVVSKMYRARRTIMIRFENDS+DESEGMKDVIQEGKTLLRMRRPLVDMELRYEIIKGNHITPLTQNVFL TPVDSIDPL GVRQGMKKEFLKTVN LGQILVDWLEESAP
Sbjct:   14 TVCDGILDRFEQAAVPLAAQYGALPVVGIGHSCGALLQLLITCLFPDTPRAANALISFNNKPVSEAVPGFEELVLPLVMQVLKEGGGQSTLFSTLEMLRETVDNLVDGVVESRFAPAVLENEVVPLVRQVLQITDQLPALLQSIADGTREFTPTPEETRDVVSKMYRARRTIMIRFENDSLDESEGMKDVIQEGKTLLRMRRPLVDMELRYEIIKGNHITPLTQNVFLKTPVDSIDPLFGVRQGMKKEFLKTVNHLGQILVDWLEESAP 282          
BLAST of mRNA_P-fluviatile_contig1.427.1 vs. uniprot
Match: A0A4D9DB40_9STRA (Uncharacterized protein n=2 Tax=Monodopsidaceae TaxID=425072 RepID=A0A4D9DB40_9STRA)

HSP 1 Score: 430 bits (1105), Expect = 3.240e-135
Identity = 214/363 (58.95%), Postives = 278/363 (76.58%), Query Frame = 3
Query:  711 FFDVESVGLRGRWEEMGGNFLLRPPNGER--PKALVHFLGGAFVGAAPHLTYNYLLSGLAELGFLVVATPYPLGFDYLNVCDGILDRFEQAAVPLAAQYGALPVVGIGHSCGALLQLLITCLFPDTPRAANALISFNNKPVSEAVPGFEELVLPLVMQVLKEGG---------------GKST-LFSTLEMLRETVDNLVDGVAASRFAPAVLENEVVPLVRQVLQITDQLPALFQSIADGTREFTPTPEETRDVVSKMYRARRTIMIRFENDSIDESEGMKDVIQEGKTLLRMRRPLVDMELRYEIIKGNHITPLTQNVFLDTP--VDSIDPL-LGVRQGMKKEFLKTVNQLGQILVDWLEE 1736
            F DV+++GL GRWEE+GGNFLLRPP+ E   PKA++HFLGGAFVGAAPHLTY YLL+GLAE G+LVVATPY L FDY+ VCD +L+RFE+ A+PLA +YGALPVVGIGHSCGALLQ+LITCLFPDTPR ANALISFNN+   +A+P FEELV+PL + ++ E G               G  T L  +L  LR+  + +V+  AAS  AP+V++NEVVPLV+Q + + DQLP L QSI+DG REF PTP++TR+V  +MYRARRT+++RFE+DSIDESE +  V+QE ++++RM+RPLV M++R E IKG HITPLTQ++F + P  VD ++P    VR+  +++FL TV  +  +LV+WLEE
Sbjct:  190 FLDVKTMGLMGRWEEIGGNFLLRPPDHETSPPKAVLHFLGGAFVGAAPHLTYRYLLTGLAEQGYLVVATPYNLSFDYVQVCDTVLERFERVAIPLAKEYGALPVVGIGHSCGALLQVLITCLFPDTPRLANALISFNNQMAQKAIPAFEELVVPLSLSLMGEDGLGAETPSMTGEGGALGPGTALRQSLGRLRQNFEEVVEAYAASPLAPSVVQNEVVPLVKQAMSVVDQLPPLLQSISDGAREFAPTPDDTREVCRRMYRARRTLLVRFEDDSIDESENLMKVLQESRSIMRMKRPLVKMDVRLETIKGTHITPLTQDIFQNPPQVVDVLNPFGPPVRRFAQQQFLTTVRSVQALLVEWLEE 552          
BLAST of mRNA_P-fluviatile_contig1.427.1 vs. uniprot
Match: A0A835ZET8_9STRA (Uncharacterized protein n=1 Tax=Tribonema minus TaxID=303371 RepID=A0A835ZET8_9STRA)

HSP 1 Score: 393 bits (1010), Expect = 8.170e-125
Identity = 197/329 (59.88%), Postives = 244/329 (74.16%), Query Frame = 3
Query:  771 LLRPPNGERPKALVHFLGGAFVGAAPHLTYNYLLSGLAELGFLVVATPYPLGFDYLNVCDGILDRFEQAAVPLAAQYGALPVVGIGHSCGALLQLLITCLFPDTPRAANALISFNNKPVSEAVPGFEELVLPLVMQVLKEGGGKSTLFSTLEMLRETVDNLVDGVAASRFAPAVLENEVVPLVRQVLQITDQLPALFQSIADGTREFTPTPEETRDVVSKMYRARRTIMIRFENDSIDESEGMKDVIQEGKTLLRMRRPLVDMELRYEIIKGNHITPLTQNVFLDTPVDSIDPLLG-------VRQGMKKEFLKTVNQLGQILVDWLEE 1736
            +LRPP G   + ++HFLGGAFVGAAPHLTY+YLLSGLAE+GF+VVATPY LGFDYL VCD IL+RFE AA+PLA +YGALPV+GIGHS GALLQLLITCLFPDTPRAANAL+SFNNKPV +A                            +   R +  +LV+    S  APA  E E++PL +Q L++ +QLP LFQ +ADG REFTPTP+E  +VV +MYRARRT+++RF+NDSIDESE +++VIQ GKTLLRMRRP+VDM+LRYE++ GNHITPLTQ++F  TP     PL G       +RQ  +++FL+TVN LGQ+LV+WLEE
Sbjct:    1 MLRPPEGTAARGVIHFLGGAFVGAAPHLTYSYLLSGLAEVGFVVVATPYQLGFDYLQVCDAILERFELAALPLAEEYGALPVIGIGHSLGALLQLLITCLFPDTPRAANALVSFNNKPVKQAAA------------------------EAIWEARTSAMDLVESFVKSPLAPAAAETELLPLAKQALELVEQLPPLFQQVADGAREFTPTPDEVEEVVRRMYRARRTLVVRFDNDSIDESEEVREVIQAGKTLLRMRRPMVDMDLRYEVLTGNHITPLTQDIF--TPPQ---PLAGPLPDACPIRQRARQDFLRTVNDLGQVLVEWLEE 300          
BLAST of mRNA_P-fluviatile_contig1.427.1 vs. uniprot
Match: A0A0G4G6R9_VITBC (Uncharacterized protein n=2 Tax=Vitrella brassicaformis TaxID=1169539 RepID=A0A0G4G6R9_VITBC)

HSP 1 Score: 385 bits (990), Expect = 2.940e-116
Identity = 183/345 (53.04%), Postives = 248/345 (71.88%), Query Frame = 3
Query:  726 SVGLRGRWEEMGGNFLLRPPNGERPKALVHFLGGAFVGAAPHLTYNYLLSGLAELGFLVVATPYPLGFDYLNVCDGILDRFEQAAVPLAAQYGALPVVGIGHSCGALLQLLITCLFPDTPRAANALISFNNKPVSEAVPGFEELVLPLVMQVL--KEGGGKSTLFSTLEMLRETVDNLVDGVAASRFAPAVLENEVVPLVRQVLQITDQLPALFQSIA-DGTREFTPTPEETRDVVSKMYRARRTIMIRFENDSIDESEGMKDVIQEGKTLLRMRRP-----LVDMELRYEIIKGNHITPLTQNVFLDTPVDSIDPLLGVRQGMKKEFLKTVNQLGQILVDWLEE 1736
             VGL G WEEM GNFLLRPP   RP+AL+HFLGGAFVGAAPHLTY Y L+GLAE GFLVVA+PY L FDYL  CD ILDRFE+ A+PLA +YGALPVVG+GHSCGALL LLI+CLFP TPRA N LISFNNKP +EA+P FEE+V+P+  Q++  +       L   +  LR +VD+  +  +     P+  + EV+PL +Q L++ DQ+P L  +IA +  REF PTP E ++  ++MYR RRT++++F+ND+IDE++ ++ V+++  +++R++ P        +E+R E+I+G H+TPLTQN+FLDTP D IDPLL +R+  +  FL+TV  +   +  WL E
Sbjct:  382 GVGLMGEWEEMSGNFLLRPPPDLRPRALIHFLGGAFVGAAPHLTYRYFLTGLAEQGFLVVASPYRLSFDYLETCDSILDRFEKIAIPLAREYGALPVVGVGHSCGALLHLLISCLFPGTPRAGNVLISFNNKPAAEAIPFFEEVVVPIASQLMNSRTQSVPGNLRELVRFLRTSVDDFAEASSNFILTPSFYKREVIPLFKQTLEVIDQVPGLLDAIAKEDVREFEPTPAEVKEAATRMYRTRRTLLVQFDNDAIDETDAVETVLKDAASIVRLQAPGNGRGPSSLEIRKEVIRGTHVTPLTQNIFLDTPFDPIDPLLPIRRVARGNFLRTVEGVQTSITRWLSE 726          
BLAST of mRNA_P-fluviatile_contig1.427.1 vs. uniprot
Match: A0A7R9U991_9STRA (Hypothetical protein n=1 Tax=Pinguiococcus pyrenoidosus TaxID=172671 RepID=A0A7R9U991_9STRA)

HSP 1 Score: 339 bits (870), Expect = 1.400e-101
Identity = 164/344 (47.67%), Postives = 231/344 (67.15%), Query Frame = 3
Query:  708 PFFDVESVGLRGRWEEMGGNFLLRPPNGERPKALVHFLGGAFVGAAPHLTYNYLLSGLAELGFLVVATPYPLGFDYLNVCDGILDRFEQAAVPLAAQYGALPVVGIGHSCGALLQLLITCLFPDTPRAANALISFNNKPVSEAVPGFEELVLPLVMQVLKEGGGKSTLFSTLEMLRETVDNLVDGVAASRFAPAVLENEVVPLVRQVLQITDQLPALFQSIADGTREFTPTPEETRDVVSKMYRARRTIMIRFENDSIDESEGMKDVIQEGKTLLRMRRPLVDMELRYEIIKGNHITPLTQNVFLDTPVDSIDPLLGVRQGMKKEFLKTVNQLGQILVDWLEES 1739
            P FD+ES+G+ G WEE+GGN +LRPP+G +P+A++HFLGGAFVGA P + Y YLL  LA+ GFL+VATPY L FDYL +CD I++RF+QAA+PLA +YG LPVVGIGHS GALL  LIT LFP+TPRA N LIS+NN+P ++A+P FEE ++P+   V  +      L   +   R     L+D        P   + E+ PLV+Q      QLP+L + +ADG REF+PTP +TR+V+ K+YRARRT++I F++D+IDESE +   ++E  ++ RM+RP++D+E+    + G HITPL+Q++  +  V      LG        FL+ V     +++ WL E+
Sbjct:  161 PAFDIESLGIGGDWEELGGNLVLRPPDGAQPRAVIHFLGGAFVGATPAIAYRYLLQNLAKEGFLIVATPYKLQFDYLKICDSIIERFDQAAIPLAEEYGGLPVVGIGHSAGALLHSLITSLFPETPRAGNVLISWNNRPAADAIPAFEETIVPVSKAVWGDSAPARDLRRRIATTRRRSFALLDTALKQGLLPTFWKKELYPLVQQADGALQQLPSLLKEVADGVREFSPTPADTRNVLRKLYRARRTLVIGFDDDTIDESEVVVACLRESTSVWRMKRPMIDVEMDVATLTGTHITPLSQDLVPEQVVRKEQRRLG--------FLEDVEGATDVILSWLTET 496          
BLAST of mRNA_P-fluviatile_contig1.427.1 vs. uniprot
Match: A0A7S1U6M1_9STRA (Hypothetical protein n=1 Tax=Phaeomonas parva TaxID=124430 RepID=A0A7S1U6M1_9STRA)

HSP 1 Score: 337 bits (865), Expect = 7.760e-101
Identity = 162/345 (46.96%), Postives = 227/345 (65.80%), Query Frame = 3
Query:  705 LPFFDVESVGLRGRWEEMGGNFLLRPPNGERPKALVHFLGGAFVGAAPHLTYNYLLSGLAELGFLVVATPYPLGFDYLNVCDGILDRFEQAAVPLAAQYGALPVVGIGHSCGALLQLLITCLFPDTPRAANALISFNNKPVSEAVPGFEELVLPLVMQVLKEGGGKSTLFSTLEMLRETVDNLVDGVAASRFAPAVLENEVVPLVRQVLQITDQLPALFQSIADGTREFTPTPEETRDVVSKMYRARRTIMIRFENDSIDESEGMKDVIQEGKTLLRMRRPLVDMELRYEIIKGNHITPLTQNVFLDTPVDSIDPLLGVRQGMKKEFLKTVNQLGQILVDWLEES 1739
            LP FD+ES+GL G WE++GGN +LRPP G+  +A+VHFLGGAFVGA P L Y YLL  LA  GF++VATPY L FDYL++CD +++RF+ AA+PLA +YGA+PVVG+GHSCGALLQ LIT LFP+TPR  N LIS+NN+P +EAVPGFE  ++PL   +  E      L   +   R      V+        P V   E+ PLV Q      QLP+L + +A+G REFTP P +TR ++ K+YRARRT+++ F++D+IDESE +   ++E  ++ RM+RP++ +E+    + G H+TPL+QNV  +  +      LG+        L+ V     +++ WLEE+
Sbjct:  174 LPAFDIESLGLSGDWEDIGGNLVLRPPEGQEARAVVHFLGGAFVGATPSLAYRYLLKRLAAEGFVIVATPYKLEFDYLSICDAVIERFDAAALPLAQEYGAIPVVGVGHSCGALLQSLITSLFPETPRVGNVLISWNNRPAAEAVPGFETTIIPLSKALFAESRAAKDLRKRIAQTRRRSFMFVESALKQGLLPTVWRKELYPLVCQADDAISQLPSLLKEVAEGKREFTPDPSQTRILLRKLYRARRTLVLGFDDDTIDESEVVVSCLRESTSVWRMKRPMISVEMDVATLTGTHVTPLSQNVVPEQVIRKEQRQLGL--------LEDVEGATDLILSWLEET 510          
BLAST of mRNA_P-fluviatile_contig1.427.1 vs. uniprot
Match: A0A7S0CE30_9STRA (Hypothetical protein n=1 Tax=Proboscia inermis TaxID=420281 RepID=A0A7S0CE30_9STRA)

HSP 1 Score: 310 bits (794), Expect = 2.720e-92
Identity = 167/380 (43.95%), Postives = 236/380 (62.11%), Query Frame = 3
Query:  723 ESVGLRGRWEEMGGNFLLRPPNGERPKALVHFLGGAFVGAAPHLTYNYLLSGLAELGFLVVATPYPLGFDYLNVCDGILDRFEQAAVPLAAQYGALPVVGIGHSCGALLQLLITCLFPDTPRAANALISFNNKPVSEAVPGFEELVLPLVMQVLKEGGGKSTLFSTL--------------EMLRETVDNLVDGVA------------------ASRFAP---AVLENEVVPLVRQVLQITDQLPALFQSIADGTREFTPTPEETRDVVSKMYRARRTIMIRFENDSIDESEGMKDVIQEGKTLLRMRRPLVDMELRYEIIKGNHITPLTQNVFLDTPVDSIDPLLGVRQGMKKEFL------KTVNQLGQILVDWLEES 1739
            E +   GRWEEM GN++L PP+ ++P+AL+HFLGGAFVGAAPH+ Y Y+L  L++ G+L+VATP+ L FDYL  CD I+D+FE+ A  LA QYGA+PVVG+G SCGALLQLLIT LFPDTPRAAN L+SFNNK VSEAVP FEE+  PL + + +  GG + L S L              E+L +  +N   G+                   AS   P   A+ E  ++ ++ Q L + DQ+P L   +ADG R+F P P+  +    + YRARRT++I+++ND IDESE ++++++E ++++RM+RP+V M +  ++++GNH TPL     L  P+D    L  V      E L       TVN++ +    WLEE+
Sbjct:   21 EKLTRIGRWEEMHGNYVLAPPSMQQPRALIHFLGGAFVGAAPHVAYRYILERLSDRGYLIVATPFNLSFDYLTTCDSIIDKFERIAPMLARQYGAVPVVGVGQSCGALLQLLITSLFPDTPRAANVLLSFNNKEVSEAVPFFEEVFAPLFVGISEGVGGTAKLESLLDLARAAALGELPSDELLSDVSNNFASGLPLPFTQEQMSIPSALRENIASAIQPTSTALNEAGILSILNQGLDVIDQIPLLVNEVADGARDFVPPPDMVKTAARRAYRARRTLLIQYKNDGIDESEEVEELLKEAESIMRMKRPMVTMGIERKVLEGNHATPL-----LAPPLDLASRLEDVLGETAPERLLYAQADDTVNEIAK----WLEEA 391          
BLAST of mRNA_P-fluviatile_contig1.427.1 vs. uniprot
Match: A0A1E7FSL7_9STRA (Uncharacterized protein n=1 Tax=Fragilariopsis cylindrus CCMP1102 TaxID=635003 RepID=A0A1E7FSL7_9STRA)

HSP 1 Score: 292 bits (747), Expect = 1.980e-85
Identity = 154/360 (42.78%), Postives = 220/360 (61.11%), Query Frame = 3
Query:  717 DVESVGLRGRWEEMGGNFLLRPPN----GE-------------RPKALVHFLGGAFVGAAPHLTYNYLLSGLAELGFLVVATPYPLGFDYLNVCDGILDRFEQAAVPLAAQYGALPVVGIGHSCGALLQLLITCLFPDTPRAANALISFNNKPVSEAVPGFEELVLPLVMQVLKEGGGKSTLFSTLEMLRETVDNLVDGVAASRFAPAVLENEVVPLVRQVLQITDQLPALFQSIADGTREFTPTPEETRDVVSKMYRARRTIMIRFENDSIDESEGMKDVIQEGKTLLRMRRPLVDMELRYEIIKGNHITPLTQNVFLDTPVD---SIDPLLGVRQGMKKEFLKTVNQLGQILVDWLEE 1736
            D  + G+ G WE + GN++LRP +    GE              P+A++HFLGGA VG APH+TY +LL  LA+ GFL+VATPY L FD+L  CD +L +FE  A  LA QYGALPVVGIGHSCGALLQ+LI+CLFPDTPRAANAL+SFNNKPVSEAVP FE+   P+  ++                 R+T     +   A     A+ E  ++P++ + +   +Q+P L   +ADG R+F PTP   R    K YRARRT+++ +++D IDES  +++V++E +++ RMRRP+V+++++   + G H++PL     L  P+D     + LLG+    ++   K      + LV WL+E
Sbjct:   71 DDINAGVVGNWENLYGNWVLRPTSTKSSGEDNEIVENDPTTNITPRAVIHFLGGALVGKAPHITYRFLLEKLADEGFLIVATPYDLSFDHLTTCDDVLTKFENVAPTLARQYGALPVVGIGHSCGALLQVLISCLFPDTPRAANALLSFNNKPVSEAVPFFEDFFAPIPSEI-----------------RDTYAKWAEPAVA-----ALTEVGLLPVIHETIVTLEQIPRLIDEVADGARDFNPTPAMVRSAAGKAYRARRTLILGYDDDPIDESAEVEEVLREARSITRMRRPMVEIDVQRTSLSGGHVSPL-----LAPPLDVAGRAEDLLGLETSQERLGYKEAAATVEALVRWLDE 403          
BLAST of mRNA_P-fluviatile_contig1.427.1 vs. uniprot
Match: A0A6V2E2I3_9STRA (Hypothetical protein n=3 Tax=Ditylum brightwellii TaxID=49249 RepID=A0A6V2E2I3_9STRA)

HSP 1 Score: 291 bits (744), Expect = 4.930e-84
Identity = 154/375 (41.07%), Postives = 226/375 (60.27%), Query Frame = 3
Query:  741 GRWEEMGGNFLLRPP-NGERPKALVHFLGGAFVGAAPHLTYNYLLSGLAELGFLVVATPYPLGFDYLNVCDGILDRFEQAAVPLAAQYGALPVVGIGHSCGALLQLLITCLFPDTPRAANALISFNNKPVSEAVPGFEELVLPLVMQVLKEG----GGKSTLFSTLEMLRETVDN--------------LVDGVAASRFAPAV--------------------LENE-VVPLVRQVLQITDQLPALFQSIADGTREFTPTPEETRDVVSKMYRARRTIMIRFENDSIDESEGMKDVIQEGKTLLRMRRPLVDMELRYEIIKGNHITPLTQNVFLDTPVD---SIDPLLGVRQGMKKEFLKTVNQLGQILVDWLEE 1736
            GRWEEM GN++LRPP    +P+AL+ FLGGA VGA+PH+ Y Y+L  L+E G+L+VATPY L FD+L  CD ++ +FE+ A  LA QYGA+PVVG+GHSCGALLQ+LIT LFPDTPRAANAL+S+NNKP+ EAVP F+E+  PL   V  +      G   +   LE+ R   D                + G+ +S    +V                    L+N  V+P++++ +++ +QLP L   +ADG R+F P  E       + YRARRT+++++END IDESE +  +++E + ++RM+RP+++ +L+ + +KG H TPL     L  P+D     + LLG +   ++      ++    L+ WLEE
Sbjct:  110 GRWEEMEGNYILRPPPEFGQPRALISFLGGALVGASPHIAYRYILERLSEAGYLIVATPYNLSFDHLATCDAVIGKFERIAPTLARQYGAVPVVGVGHSCGALLQVLITSLFPDTPRAANALLSYNNKPIKEAVPFFDEVFAPLFTAVAAKNETYPSGTEAMALGLELARTVTDGKIPSDELLSDISKFAIPGLFSSALPESVALPTELRDTLQGLVEPTHTALKNAGVMPMLKEGVEVAEQLPLLINEVADGARDFIPQNEAVSTAARRAYRARRTLILKYENDGIDESEDIAALLRESERVMRMKRPMINFDLQLKEVKGGHATPL-----LAPPLDIATRAEDLLGAQTARERLLYMEADETVDALLKWLEE 479          
The following BLAST results are available for this feature:
BLAST of mRNA_P-fluviatile_contig1.427.1 vs. uniprot
Analysis Date: 2022-09-19 (Diamond blastx: OGS1.0 vs UniRef90)
Total hits: 25
Match NameE-valueIdentityDescription
A0A6H5KE48_9PHAE1.200e-22893.82Uncharacterized protein n=1 Tax=Ectocarpus sp. CCA... [more]
D7G7C9_ECTSI5.580e-17196.65Uncharacterized protein n=1 Tax=Ectocarpus silicul... [more]
A0A4D9DB40_9STRA3.240e-13558.95Uncharacterized protein n=2 Tax=Monodopsidaceae Ta... [more]
A0A835ZET8_9STRA8.170e-12559.88Uncharacterized protein n=1 Tax=Tribonema minus Ta... [more]
A0A0G4G6R9_VITBC2.940e-11653.04Uncharacterized protein n=2 Tax=Vitrella brassicaf... [more]
A0A7R9U991_9STRA1.400e-10147.67Hypothetical protein n=1 Tax=Pinguiococcus pyrenoi... [more]
A0A7S1U6M1_9STRA7.760e-10146.96Hypothetical protein n=1 Tax=Phaeomonas parva TaxI... [more]
A0A7S0CE30_9STRA2.720e-9243.95Hypothetical protein n=1 Tax=Proboscia inermis Tax... [more]
A0A1E7FSL7_9STRA1.980e-8542.78Uncharacterized protein n=1 Tax=Fragilariopsis cyl... [more]
A0A6V2E2I3_9STRA4.930e-8441.07Hypothetical protein n=3 Tax=Ditylum brightwellii ... [more]

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Alignments
The following features are aligned
Aligned FeatureFeature TypeAlignment Location
P-fluviatile_contig1contigP-fluviatile_contig1:4821325..4830588 +
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 score516.5
Seed ortholog evalue1.6e-143
Seed eggNOG ortholog2880.D7G7C9
EggNOG free text desc.Protein of unknown function (DUF1350)
EggNOG OGs2QU9N@2759,COG1084@1
COG Functional cat.S
Best tax levelEukaryota
Best eggNOG OGNA|NA|NA
Hectar predicted targeting categoryother localisation
Ec32 ortholog descriptionAlpha/Beta hydrolase fold
Ec32 orthologEc-04_003270.1
Exons8
Model size3298
Cds size1803
Stop1
Start1
Relationships

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

Feature NameUnique NameSpeciesTypePosition
mRNA_P-fluviatile_contig1.427.1prot_P-fluviatile_contig1.427.1Porterinema fluviatile SAG_2381polypeptideP-fluviatile_contig1 4821372..4829140 +


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

Feature NameUnique NameSpeciesTypePosition
1622815334.0143657-UTR-P-fluviatile_contig1:4821324..48213711622815334.0143657-UTR-P-fluviatile_contig1:4821324..4821371Porterinema fluviatile SAG_2381UTRP-fluviatile_contig1 4821325..4821371 +
1693561528.5335567-UTR-P-fluviatile_contig1:4821324..48213711693561528.5335567-UTR-P-fluviatile_contig1:4821324..4821371Porterinema fluviatile SAG_2381UTRP-fluviatile_contig1 4821325..4821371 +
1622815334.1044102-UTR-P-fluviatile_contig1:4829140..48305881622815334.1044102-UTR-P-fluviatile_contig1:4829140..4830588Porterinema fluviatile SAG_2381UTRP-fluviatile_contig1 4829141..4830588 +
1693561529.0098069-UTR-P-fluviatile_contig1:4829140..48305881693561529.0098069-UTR-P-fluviatile_contig1:4829140..4830588Porterinema fluviatile SAG_2381UTRP-fluviatile_contig1 4829141..4830588 +


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

Feature NameUnique NameSpeciesTypePosition
1622815334.0274222-CDS-P-fluviatile_contig1:4821371..48216171622815334.0274222-CDS-P-fluviatile_contig1:4821371..4821617Porterinema fluviatile SAG_2381CDSP-fluviatile_contig1 4821372..4821617 +
1693561528.546543-CDS-P-fluviatile_contig1:4821371..48216171693561528.546543-CDS-P-fluviatile_contig1:4821371..4821617Porterinema fluviatile SAG_2381CDSP-fluviatile_contig1 4821372..4821617 +
1622815334.0373833-CDS-P-fluviatile_contig1:4823236..48235091622815334.0373833-CDS-P-fluviatile_contig1:4823236..4823509Porterinema fluviatile SAG_2381CDSP-fluviatile_contig1 4823237..4823509 +
1693561528.5565581-CDS-P-fluviatile_contig1:4823236..48235091693561528.5565581-CDS-P-fluviatile_contig1:4823236..4823509Porterinema fluviatile SAG_2381CDSP-fluviatile_contig1 4823237..4823509 +
1622815334.0473127-CDS-P-fluviatile_contig1:4823850..48242251622815334.0473127-CDS-P-fluviatile_contig1:4823850..4824225Porterinema fluviatile SAG_2381CDSP-fluviatile_contig1 4823851..4824225 +
1693561528.5675097-CDS-P-fluviatile_contig1:4823850..48242251693561528.5675097-CDS-P-fluviatile_contig1:4823850..4824225Porterinema fluviatile SAG_2381CDSP-fluviatile_contig1 4823851..4824225 +
1622815334.057185-CDS-P-fluviatile_contig1:4825624..48258611622815334.057185-CDS-P-fluviatile_contig1:4825624..4825861Porterinema fluviatile SAG_2381CDSP-fluviatile_contig1 4825625..4825861 +
1693561528.5851216-CDS-P-fluviatile_contig1:4825624..48258611693561528.5851216-CDS-P-fluviatile_contig1:4825624..4825861Porterinema fluviatile SAG_2381CDSP-fluviatile_contig1 4825625..4825861 +
1622815334.067893-CDS-P-fluviatile_contig1:4826199..48262821622815334.067893-CDS-P-fluviatile_contig1:4826199..4826282Porterinema fluviatile SAG_2381CDSP-fluviatile_contig1 4826200..4826282 +
1693561528.958045-CDS-P-fluviatile_contig1:4826199..48262821693561528.958045-CDS-P-fluviatile_contig1:4826199..4826282Porterinema fluviatile SAG_2381CDSP-fluviatile_contig1 4826200..4826282 +
1622815334.0785325-CDS-P-fluviatile_contig1:4826856..48269621622815334.0785325-CDS-P-fluviatile_contig1:4826856..4826962Porterinema fluviatile SAG_2381CDSP-fluviatile_contig1 4826857..4826962 +
1693561528.977169-CDS-P-fluviatile_contig1:4826856..48269621693561528.977169-CDS-P-fluviatile_contig1:4826856..4826962Porterinema fluviatile SAG_2381CDSP-fluviatile_contig1 4826857..4826962 +
1622815334.0873597-CDS-P-fluviatile_contig1:4827700..48278741622815334.0873597-CDS-P-fluviatile_contig1:4827700..4827874Porterinema fluviatile SAG_2381CDSP-fluviatile_contig1 4827701..4827874 +
1693561528.9919155-CDS-P-fluviatile_contig1:4827700..48278741693561528.9919155-CDS-P-fluviatile_contig1:4827700..4827874Porterinema fluviatile SAG_2381CDSP-fluviatile_contig1 4827701..4827874 +
1622815334.0960062-CDS-P-fluviatile_contig1:4828831..48291401622815334.0960062-CDS-P-fluviatile_contig1:4828831..4829140Porterinema fluviatile SAG_2381CDSP-fluviatile_contig1 4828832..4829140 +
1693561529.0017881-CDS-P-fluviatile_contig1:4828831..48291401693561529.0017881-CDS-P-fluviatile_contig1:4828831..4829140Porterinema fluviatile SAG_2381CDSP-fluviatile_contig1 4828832..4829140 +


Sequences
The following sequences are available for this feature:

protein sequence of mRNA_P-fluviatile_contig1.427.1

>prot_P-fluviatile_contig1.427.1 ID=prot_P-fluviatile_contig1.427.1|Name=mRNA_P-fluviatile_contig1.427.1|organism=Porterinema fluviatile SAG_2381|type=polypeptide|length=601bp
MVRPQPPLPAAGRNWSRPGSRRRGRECGGGAGATIVLCCCYVAAAGGRFA
AAFTGVSQPPLVPSAYGEWTPSYTVKNQPSKLHQQRHRSLSSRTGGFPAA
AEAASASSSSRRCPDGDGGHSSGRNTCGSSRSSRKNSNTALWSSRSEPRY
AADTTMAMDAEFSDIPAARDSFSVSAADEAEAQARGGRARGAPGVGGRGG
GGGSRGGGGRGSGGSGKLPLPFFDVESVGLRGRWEEMGGNFLLRPPNGER
PKALVHFLGGAFVGAAPHLTYNYLLSGLAELGFLVVATPYPLGFDYLNVC
DGILDRFEQAAVPLAAQYGALPVVGIGHSCGALLQLLITCLFPDTPRAAN
ALISFNNKPVSEAVPGFEELVLPLVMQVLKEGGGKSTLFSTLEMLRETVD
NLVDGVAASRFAPAVLENEVVPLVRQVLQITDQLPALFQSIADGTREFTP
TPEETRDVVSKMYRARRTIMIRFENDSIDESEGMKDVIQEGKTLLRMRRP
LVDMELRYEIIKGNHITPLTQNVFLDTPVDSIDPLLGVRQGMKKEFLKTV
NQLGQILVDWLEESAPPVPPPPSSSASATSAAAASAAGGLPPPTASGRGR
*
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mRNA from alignment at P-fluviatile_contig1:4821325..4830588+

Legend: UTRpolypeptideCDS
Hold the cursor over a type above to highlight its positions in the sequence below.
>mRNA_P-fluviatile_contig1.427.1 ID=mRNA_P-fluviatile_contig1.427.1|Name=mRNA_P-fluviatile_contig1.427.1|organism=Porterinema fluviatile SAG_2381|type=mRNA|length=9264bp|location=Sequence derived from alignment at P-fluviatile_contig1:4821325..4830588+ (Porterinema fluviatile SAG_2381)
CTCCTTGGAGCACGCTTAAATACACGCTGACGAAGCAGAACGAGGCAATG GTTCGACCTCAACCTCCATTACCTGCGGCAGGTAGGAATTGGTCCCGTCC GGGATCTCGGAGAAGAGGCAGGGAATGCGGAGGAGGAGCGGGTGCCACGA TCGTGCTCTGCTGCTGTTACGTCGCTGCTGCCGGGGGTCGCTTTGCCGCC GCGTTCACGGGGGTGTCGCAGCCACCGCTGGTCCCATCTGCTTACGGAGA GTGGACACCTTCTTACACGGTGAAGAACCAACCTTCAAAGCTGGCAAGAA GCTGTTGAGACTTCATGAACCGCCCCCGATTTTCGAAAGAAGTGTGACGA TAGCGTCTACCGGTACACAGCTGAGGTTTGAGACGGCGTCGGTCGCACGT GCGACTTTTACGTGCAACTGGATGGAGAATCTGCGAGAGTGACAGGGGTG GCTCAGACCGCAGGGGCTGGTTGCTTTTGATCGCACTGTTGTAATGTGTT GTGTCTATTGTTCGTTGGCCGTGTGTTTGTTTTGGCTCTCTCGCCGATAG CGTCCGTTTTACCGCCTTTTTCGGCCCGTGCCGGCTGTGCTTGGGTGTGC GAAGTAGCGGCACTCTAGCTCGGCACATACTTTTCACGTGGAATGCGGAC GCCATTCCCTGCTTCTCTGCCGTCGTTACCCCTACTTTTGCGGCTTTCAG GCTTGTCGGGAACCGGCACATGACTCATCCAGTCGAGGCATCTCTTCTCG CAGGTCGACGTTGACAACTACGTAGTCCAGCATCGACAAGCCGCTAGCCT CCACCCTCCCTCTTATTTTAGCGCCGATAACCTTCCCCATCGTTGTCGAT AAAACTTTCTTTTTTGTGGCGTAAATGATCATAGCATGCGAAGCTGCCGC TCTCTACCTGGCAGCTTGAAAGCTGAAACTACTCTGAAGACATTATATTG GAAATGGTCAGCAGCAAACTGACGGAGCCCCTTTATTCGGAAAGTGCGCG AATTACATGGTACAAGCAAGTTGCACACCATGCCCTTCTCGCTTTCAAAG CAGAGGTATCTCCACGTCGATGGACAAACAGCGGTAGTATCTCGAGCACG TGCGTTGTTCAGATAGGGATGCGCCACGAGAGGTCCTGAGAGCTACGATC CCTTTACGTCAATGCTGCAACTCTCCTTTCCTCTCGTCCATTCCACTAAA ATTATGGCTCGTTCAATCTGGCCTTGACCTCAGTCGGAGCCATCTTCCCT GTCGAGTTTCCGGCCACCACTGCTACCCCTACTGAATGAAACATGGGCTA CCTCACCTCCTTTTGCTGGTGCCACGCGTCACACGTGCAGAACCCCCCGC CTCCATCCCCCGAGCGAGATGCGTGTATTTTGAAAGGAACTCTGTCTCGT GAAATCGAAAAAAAGCCACGCGTTTGGGACACCACACAAAGTAAGCAGGC GACGATTCGGCCGTGTTTTTTACGTTTCTTTGCCTTGTCCCCTTTCGACT TTAGCTTCCAGTACAACGCGTTACTTGTCTCGGGCAGGCCGCGTGCATAC TCTTGGTGATTTGAGTGACAATGCCCAATCAACCCAAGAGGAAAACTTAT TCGATGAGCTGTGCGAGCGATTATAACTAGTGTCTACGACTATTAATAGC TCGTCTCGACGGGGGCAGCTATTGAGGGGAGGGGTTGGCGTGACCAATAA TCAATGTCGAAAACAGGCCGGCTGCATTGATGTCGTATCTCCTTGTTTAT CTCTATCAAAATCTCGCTCCTTTCGTCCTTCTTCCGCCTCTACTTCTCTC CGCCTACTCGACGTAGTCGTCCGACGAACGCTCACATCAAGTGCGCCCCT TCTTCCTCATTTACTCTCCTCGCCCTCCTCCTCCTCCGTTGTCGCTGTCT CCGCACTGGCAGCACCAGCAGCGGCATCGCAGCCTTTCGTCGCGAACAGG AGGGTTTCCGGCGGCAGCCGAGGCGGCGTCAGCGTCGTCCTCCTCTCGGA GATGTCCAGACGGCGACGGCGGCCACAGTAGTGGCCGTAACACCTGCGGC AGCAGCAGAAGCAGCAGAAAAAATAGCAACACCGCCTTGTGGTCGAGCCG CTCAGAGCCTCGGTACGCGGCGGACACGACGATGGCCATGGACGCGGAGT TCAGCGATATTCCGGCGGCTCGAGATAGCTTTAGCGTGAGTTTTGCTTTA TCTCTCGTCTTACTTCTGCGTCGTGCAGGCTTGCTACGATCTAGCCGGAC TTCAAGTTGTGGCCGAGGTTTTGCCTATGCTTTTTGGTCTTGGTTATCCG AATTCATGCAAGTCTCAAAGCGGAGGAAGGAAATGGAATTGGCAAAGCGT TTTTTTGTGTCGAACATTGGCCGGGATTTGTCTTGGCGATGTGTTTTTCA TAAAGCGCAACGCGCGAAAGAAGAAAGGGATCGGACTTCATGCTTCCGCC ATCGCCTCCCCTCTGCTGCCCCCGCCTACTTCACAAATCTTGAATAATGA AACGATACATGACTGAACAAAAAAAGGTTTCCGCGGCAGACGAAGCCGAA GCACAAGCGCGAGGAGGGCGCGCACGAGGGGCTCCAGGCGTTGGCGGGCG CGGCGGCGGTGGGGGTAGCCGCGGCGGTGGAGGGCGCGGCAGCGGCGGCA GCGGGAAGCTGCCCCTACCTTTTTTCGACGTCGAGAGCGTGGGGCTGCGG GGCAGGTGGGAGGAGATGGGCGGCAACTTTCTCCTGCGGCCTCCCAACGG AGAGCGGCCGAAGGCGCTGGTCCACTTTCTCGGCGGGGCGTTCGTCGGGG CGGCGCCGCACCTCACCTACAACTACTTGCTCAGTGGGCTGGCGGAGCTG GGTTTCCTCGTGGTGGCCACGCCCTACCCCTTGGGGTTCGACTACTTGAA CGTGAGCGACACTTTTATTCGGGCAGCAGGAGCAATACCTGCAGCAGCTG TGCTTTGGTGGCAGTTGTAATGTTGTCGGTGGTGGTGATGATGATAAGTG TTTGATTTTTATTTGCGATGGCAGCTTGTCGACGGTAATTCGCTTGGCAT GGATTGTCGTTGTTCGGGAAAGGCCCTGTCTTGTGTGCGTGATGGTGGGT TTGTGTTTACAAGGTTGTGACTACTGGCCGCCTACGGCGCGAAATGGCCG GCTCATCATTTGCGTAGATGTCCCTCTCAGCAGCGTTGCAAAGGCCGACA ACGACTTCTGAATTCCGGCATACCTCCCGCAGGCGGGGTTTGCGTACGAG ACTCGACGTAAAGGGTCCAGTGCGCGCATGCGTGTGTGGGGTCGTCTAGC GGTTTTGCTCTTTTTTGGCTCTCGTCTGCTGAGCCCCCCTCTGTCTCGGC TCCCGGCTTCGTGTCCTTCTGCCTTCCCCCCTCTCCCCGACAAAATCCCT CCCTCCACTCCCCCTCCCAAGTGGTACCTATGTTGAATTGATGCCTCAGC TTCATCTTTCCGCATGGTTCTATTTAACAGCAACGGCGACAGCAGTCTGG TTCCCTTGTTCGTGTATCGCTTGTCGTTCTTACTATCTGTTGCCCGCGTG TGGGGGTGGGCCTCCGGAAGTTCGCAAGGAAACCCTTGCGCGCTTCATTC TTAAAACAGTTCTCCCTCTCTCCCAAGTCAACGCTGATTCCCGCGCTCAC CGCCATGTCGACTTGTCGACTTTCTGCGCCGTGGTGGCTGCGATTCTTTT CTGTTCTTCAGCAAATGTTCGCATTCGATGGCTGTTTGGACACCAGCTGG CGCAGAGGGCATCGACAGTCCCGACACTCTTCACACCCCGGCGCTCCCTT GCCCTTCCTCCTCCGTTTTTGAAACGAACCCACACCAGCCAAGAAAGTGT GAAAGACAAAGGGATTTCCACCGCTCCTGCGCATGAATATTTTCTGATCA AGTTTTATCAAGGCTCTTTTTGCGGGTGCGCACAGCTTTCGGCCGGCGCA CGCTGGAACGCTAGCAGCGGGGCGAGGAGAAGGGTGGTGGAGGATAATAA AACAGGAGAAAAGGAAGCAGAATGGATCAATCCATGACCATCGGGAATGA GTGCTCGCCCTCACACAAGCGCCCGTATCCTCGGGGTTCGTTCCAGCGTG CTCCCACTGccCCCCCCCTCCTTCGTCCCCCGGTTCCCCTTGCTCCCCTT CCCGCTCCCTTCGCTCACTTGTcccCCCCCCATCCCCCTCCATATCCTAT GTTCCCCGGACAAAAGCACACCATAACGCAATAGGCGCGCTTGGCTCGCT GCTGCTGCTGCTGCTGCTTCCGCTGCTGCTTTACCACTGCATTGAAACAG GTGTGCGATGGCATTCTAGACAGGTTCGAGCAGGCGGCGGTCCCGCTCGC GGCGCAGTACGGGGCACTCCCGGTGGTGGGCATCGGGCACTCGTGTGGCG CCCTTCTGCAGCTGCTCATCACGTGCCTCTTCCCGGACACGCCCCGGGCC GCGAACGCGCTCATCTCTTTCAACAACAAGCCCGTCTCAGAGGCGGTGCC CGGGTTCGAGGAGCTGGTGCTGCCGCTCGTGATGCAGGTGCGTCCACCCT AGCACGCCCGTCCGCCCATCGTCCCTCCGTCTCACTGTGCTGCCCAACGA TTCTGTGTCTTGTCGTCCCATCGGTCCTTCTCTCTGCATTTTTTCTGTCA TCATTTTTCTGCCCTGCCTGGCTGTCTGTGTGGCTGTCACTGTACGCGTG TCTGTGCGCACGCTGCCTCTCTCGCGTCGCTCTCTCTTCCTCCCGCTGTC TCGCTACATCCGTATATTTGTAGCAATCATTCACTTTCGTGGTCGCTTCA TTTGATGTTATTCTCGTTGTCAACATTAGTGATTAGCTATGCATGTCTCA CAACAACCAAGCACGCTGCCGTCAGGTGCTGAAGGAGGGAGGAGGGAAGT CGACGCTTTTCTCGACGCTCGAGATGCTTCGAGAGACGGTCGACAACCTC GTTGACGGGTGGGTCAGGGGAGATGGCTCGCGATAGAGGGGTCCGAAAGA GATCGAAACAGAGACGGGAGGAGGGGGAGGGATCGCGGGGGTAGGAAGCG ATGTCGGGCATACTTGTATCGCACCTGCTCTTCTTCATTCTCTCATCTCG CTCTCAGATATTGTCTTGCTGAGGCTGAACTTTCCCCCACACGCGCCACG AGTGCTTGGTGCGTCTTCCCCATACGATGTGTCGAATCGTTTGCACGTCT CATGTCATCTCATGTCGCCTGGTCTGGCGTAGCGTGCTCGTCGCCTCTCA AGGTGCCCCAGACATGTGCATGACCATGTGCACGTGCGGCCTCGGACGCA CGAAGGTGGCTTTGTCTGGACCCATTCCATCCCATCGTGTCCCGCACCCT TGCATCCCATCCCACTCCATCCCGTGTGGCGTCGTCTACTAGACGGGGCC CGAAAGACGCCCTATCTGATCCTATCCCCTCCCCTCCTTTCCATCCCCCT TGCCCTCCCATGCCATATGGTCGCGGCTGCTGGAAACATGTTTTTGCGGC CCGTCTCAAACGTCTCATATTTGATGGAGCAGAGTGGCGGCGTCGCGCTT TGCGCCGGCGGTGCTCGAGAACGAGGTGGTGCCCTTAGTGCGGCAGGTGC TGCAGATCACTGACCAGCTCCCAGCTCTTTTCCAGTCGGTGCGTTTGCCG CTTGCTTTTGGTCGCAGAGCCAGTCGCCTGGTTTGTCGTTGTTTGTTGTT GTTTGTTGTTGTTGTTGTTGTTGTTGTTGTTGTTGTTGTTGCTGTTGTTG TTGTCGGTTTTGTCGTTGAATCTGCTGCTGGTGGCGATGGCGTTGCTGCC GTCACTGCTTTTCAAAGGGAAAGCCTCGACACCGTGGGAGTACCGTGCGT GGCTTGCTTCAATCGTATCGCGCCCTTAGTGCCCTCGCAAGCACAAGTGC GTAGACGATCGACAAGCTCAACCTTGTTTTTTCTGACGTGCTCTCCGGCT CTCGCGAGCGTGGACCGTGCTGTCCTGAGTCCAAGAGCAAAACAACGGAA GCATTTTCCTGCCTTTACCCGCTCCACAGTGTATCCTAACCCTTTCCCCC CCTCCATTCCATGCCTTTCACGACCTGAATTCTTAGCCCTGATTTCACGA AACAGCACCCGTCCCCCCCTCCCCACACGCAAGCGCATGTTCTTTCACTA AAGAGTTCATGTTTTGACAATCTTCTAGTGCCTTGCGCACGATCAAGGAT TCCGATCTTTTATTTGTGCCTGTGTTGGTCACCGTGCTCCTTTACCTCGT GCCATTTATCTCCTCTTGTCGATCTGCCTCTCGATTTCTTCTGAATTCAT CACACGCTCATGTCTTGGCTGCGTCTGCCCCCCCTTCTCTTCACCCCCCT CCCCCGGCACCAACCACTGAATGGAGATCGCGGACGGTACGCGGGAGTTC ACCCCGACCCCGGAGGAAACCCGGGACGTGGTGTCCAAGATGTACAGGGC CAGGAGGACCATCATGATCCGCTTCGAGAACGACTCGATCGACGAGAGCG AGGGCATGAAGGACGTCATCCAGGAGGGCAAGACCTTGCTCAGGATGAGG GTGAGTTAGCAAATAATTTGTCCGGTCATTTGCGAGCGGTTCAATTGCGT GTCTTTTCGTGAGTGAGGCAGCGGTATTTGCGTGTGTTCGGGCCCCCTCG AGGAGCGGGAGCCCGTTTGCTTTCGTTTTTTCTGTTTCGTAAAGTCTTTT GTGCGATTGTGCCCGTGTTTTGCATCCGTGAGTGTGTGGTGCGTGTGCGC TCTTTCTTCCTTCCCCCAGCCTGTGCGGCAGTTCAGGTTGGAGACCAGAG ATGGGTACGGCGAAGTAGTGGGGGAAGGGGGTGGGCTAGGTGTAGATGGA GGAGGGAGGGCGCGGGGGGGGGGGGGAAGGAGGGAAGGACGGAGACAGAG CACCGAGGAGAGAGATTTCCGAAACGGGGGGGCGGCCTGGCCAGGCGCAG GGGGTTGTTGGCGGAGGGGTTGTTGAGCAGGAACCGTGCACCTCGTGCGT GACAAGTTAGGAGAAGGTGGGAGTGTTCGAGAAGATCGTGTGTTAAGCGA GAGAAAGGGTGTATGGTATGTCCGTGAGAGCGAGCGGAGGAGCGACAAAG CCGGAGAGGTTAGCCCCCCAGAACGACCAAGCGAGACAGACGCCCAAATT AGCTGATATTTGCTTCATGGCGTAGCGCTCGGTCGCTGACTCGGAGCTGG AAAACCTGTGGGTTGGAGAACTCGATAAACATCCCTCTTCGTGGAGCGGC GAGAGGTCGACTATGATAGCAAGCTTGTGCAGTGGGCTTCGGCTTCCCCA TTGACGTTGTTTTTTTGTCGAGCAACGCAAACCCGTTTGCTTGTGCGAGC GGCCCCCCACCCCTCTCTCCCTCCTCCAGCCCCCTCTCCTCCCGACCCCT GTTCCTTCGCCCCGTAAATACCCCACTTCTTTGGCCCGTCACTGACCTTA GCTGACGCGACGTTCACGTGGTGCTAATCGTGCTTTTGCCTCCTCCGACA CCCGCAGCGGCCGCTGGTGGACATGGAGCTGCGATACGAGATCATCAAGG GCAATCACATCACACCCCTGACGCAGAACGTGTTCCTCGACACGCCGGTG GACTCGATCGATCCGCTACTCGGGGTCAGGCAGGGCATGAAGAAGGAGTT CCTCAAGACGGTGAACCAGCTCGGACAGATCCTCGTCGACTGGCTGGAGG AGTCGGCGCCTCCGGTGCCACCACCTCCGAGCAGCAGTGCCTCGGCTACC TCCGCCGCCGCCGCGAGTGCGGCGGGGGGGCTGCCGCCCCCGACTGCTTC TGGCCGGGGTAGGTAGATCAGGCCAGAGGCAGAAACGTTTTTTGCGGGGG GCGACGGGCAGAATGGAGCGTTGTGGGGAAACGCCGCCGCTTCCGCCGCG TGACCAAGGAACACAATCAGCGTGGGTGCGGTCCGCCGGCGGCGCTGTGA AAGTCGACCGTCGTGTTGGGCACATCTCCGGCAGTAGGCTTCACAAGTTT ATCCCGCTTTGCCGTTGCGATCACGAGTGCCAAGAAACAGTTGTTGCGCG TCATGCAGCAACTCACCAAAAGGAAGCTAGTTAGTGGTTTGCTGATTTTG ATTGTGGATGAGCGCGTTTTTTTTCTGGAAAATCACGGCTGCTTTTTTCC TGCTGTCGACGACAAAACCACTTCTCTTGCTGGCGGCCTCCCCCTGCCTG ACCTCTTTGTCTTGGGGAGTGAGTACGGGCAAATCAACGAGGCCAAGTGC CTCTGTTGTCGTGGTCGGCTGCGGTTACGGGGGCTCCGCCAGGGGCGCAT CACCGGTCAGCAGCTGCCTTTCGGGGCTCGGCGGCACCGTCTTCCCCTCC CCCATTCTGGACCCCCTCTCGTCGGCGGCGACTTTATACTTCGAAGCACG TACCCCTTATATTCGTAAATCCTGAATCCGCGCTCGCCCCCACCCGCCGC TTTCGGGGCCTCCCGTCGACTTGAAATGGGCATGGTCCAGGGAACGGGTT GACGAGAGAGCATACACCGACGTGGCGCCCCGTTGCTTTTCTTGCCTCTT CCCTTCTCTGCTTCCCTTCTCTCTTCCCTTCTCTGCTTCCTACCTCTCTT CCCTTCGGTTCATTCAAAGTCCTCTTCTCGGTTCTTTCTCGTCCCCTGCG AGGCCTACTCTGGCCGCGCGGAGGGCCTTCTCTCACCATCCTTCCCAGCG AATCCTCCCGTGCCGCCAGACATGGAACGGCACTATTTTCTACCTCTTCA AATCAAAGAGACGCGACCGACGGCCTGCCTTTAGTGATTCCACTCGGAAT GGCACTTGTGTGAAGATTGTTATTCTCTGCCGCACGACACATTGCGAAAA ACCGAAGAAAGCGAAGGCATCGTCTTTTTGCAACCGAGCCATTTTCGGAC GCACCAAGTTTCGCAAATGCTTCCTCGGCAGATGCGCAGCATGAGCTCTT GTTAATGCTACCAGAGGGTGGGGAGAATCGGATGGGCATCAAATCCGCCG ACGCGTGCGGCACACAAACTTCGCGAGGCATAGAACGGCTGGCTACGAAG GAGCCTCACCGCCCCAAAGTTGGAATTTTCAAGAGTTTTGGGAGGGGTAC ACTGCTGCAACGCTCCCTCGGGGTAGTAGTACAGACACCACTTTCCCTTT TGACCACGTCTGCCCCATAGCACCCGCCCTCCGCCAACACCCCGAGTCCC CCACCCCCCACCCCGGGCCGGTGGGAAGAGCAACGGAACAACAGTGGCGG AAAATACGCCTCCC
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Coding sequence (CDS) from alignment at P-fluviatile_contig1:4821325..4830588+

>mRNA_P-fluviatile_contig1.427.1 ID=mRNA_P-fluviatile_contig1.427.1|Name=mRNA_P-fluviatile_contig1.427.1|organism=Porterinema fluviatile SAG_2381|type=CDS|length=3606bp|location=Sequence derived from alignment at P-fluviatile_contig1:4821325..4830588+ (Porterinema fluviatile SAG_2381)
ATGGTTCGACCTCAACCTCCATTACCTGCGGCAGGTAGGAATTGGTCCCG
TCCGGGATCTCGGAGAAGAGGCAGGGAATGCGGAGGAGGAGCGGGTGCCA
CGATCGTGCTCTGCTGCTGTTACGTCGCTGCTGCCGGGGGTCGCTTTGCC
GCCGCGTTCACGGGGGTGTCGCAGCCACCGCTGGTCCCATCTGCTTACGG
AGAGTGGACACCTTCTTACACGGTGAAGAACCAACCTTCAAAGCTGATGG
TTCGACCTCAACCTCCATTACCTGCGGCAGGTAGGAATTGGTCCCGTCCG
GGATCTCGGAGAAGAGGCAGGGAATGCGGAGGAGGAGCGGGTGCCACGAT
CGTGCTCTGCTGCTGTTACGTCGCTGCTGCCGGGGGTCGCTTTGCCGCCG
CGTTCACGGGGGTGTCGCAGCCACCGCTGGTCCCATCTGCTTACGGAGAG
TGGACACCTTCTTACACGGTGAAGAACCAACCTTCAAAGCTGCACCAGCA
GCGGCATCGCAGCCTTTCGTCGCGAACAGGAGGGTTTCCGGCGGCAGCCG
AGGCGGCGTCAGCGTCGTCCTCCTCTCGGAGATGTCCAGACGGCGACGGC
GGCCACAGTAGTGGCCGTAACACCTGCGGCAGCAGCAGAAGCAGCAGAAA
AAATAGCAACACCGCCTTGTGGTCGAGCCGCTCAGAGCCTCGGTACGCGG
CGGACACGACGATGGCCATGGACGCGGAGTTCAGCGATATTCCGGCGGCT
CGAGATAGCTTTAGCCACCAGCAGCGGCATCGCAGCCTTTCGTCGCGAAC
AGGAGGGTTTCCGGCGGCAGCCGAGGCGGCGTCAGCGTCGTCCTCCTCTC
GGAGATGTCCAGACGGCGACGGCGGCCACAGTAGTGGCCGTAACACCTGC
GGCAGCAGCAGAAGCAGCAGAAAAAATAGCAACACCGCCTTGTGGTCGAG
CCGCTCAGAGCCTCGGTACGCGGCGGACACGACGATGGCCATGGACGCGG
AGTTCAGCGATATTCCGGCGGCTCGAGATAGCTTTAGCGTTTCCGCGGCA
GACGAAGCCGAAGCACAAGCGCGAGGAGGGCGCGCACGAGGGGCTCCAGG
CGTTGGCGGGCGCGGCGGCGGTGGGGGTAGCCGCGGCGGTGGAGGGCGCG
GCAGCGGCGGCAGCGGGAAGCTGCCCCTACCTTTTTTCGACGTCGAGAGC
GTGGGGCTGCGGGGCAGGTGGGAGGAGATGGGCGGCAACTTTCTCCTGCG
GCCTCCCAACGGAGAGCGGCCGAAGGCGCTGGTCCACTTTCTCGGCGGGG
CGTTCGTCGGGGCGGCGCCGCACCTCACCTACAACTACTTGCTCAGTGGG
CTGGCGGAGCTGGGTTTCCTCGTGGTGGCCACGCCCTACCCCTTGGGGTT
CGACTACTTGAACGTTTCCGCGGCAGACGAAGCCGAAGCACAAGCGCGAG
GAGGGCGCGCACGAGGGGCTCCAGGCGTTGGCGGGCGCGGCGGCGGTGGG
GGTAGCCGCGGCGGTGGAGGGCGCGGCAGCGGCGGCAGCGGGAAGCTGCC
CCTACCTTTTTTCGACGTCGAGAGCGTGGGGCTGCGGGGCAGGTGGGAGG
AGATGGGCGGCAACTTTCTCCTGCGGCCTCCCAACGGAGAGCGGCCGAAG
GCGCTGGTCCACTTTCTCGGCGGGGCGTTCGTCGGGGCGGCGCCGCACCT
CACCTACAACTACTTGCTCAGTGGGCTGGCGGAGCTGGGTTTCCTCGTGG
TGGCCACGCCCTACCCCTTGGGGTTCGACTACTTGAACGTGTGCGATGGC
ATTCTAGACAGGTTCGAGCAGGCGGCGGTCCCGCTCGCGGCGCAGTACGG
GGCACTCCCGGTGGTGGGCATCGGGCACTCGTGTGGCGCCCTTCTGCAGC
TGCTCATCACGTGCCTCTTCCCGGACACGCCCCGGGCCGCGAACGCGCTC
ATCTCTTTCAACAACAAGCCCGTCTCAGAGGCGGTGCCCGGGTTCGAGGA
GCTGGTGCTGCCGCTCGTGATGCAGGTGTGCGATGGCATTCTAGACAGGT
TCGAGCAGGCGGCGGTCCCGCTCGCGGCGCAGTACGGGGCACTCCCGGTG
GTGGGCATCGGGCACTCGTGTGGCGCCCTTCTGCAGCTGCTCATCACGTG
CCTCTTCCCGGACACGCCCCGGGCCGCGAACGCGCTCATCTCTTTCAACA
ACAAGCCCGTCTCAGAGGCGGTGCCCGGGTTCGAGGAGCTGGTGCTGCCG
CTCGTGATGCAGGTGCTGAAGGAGGGAGGAGGGAAGTCGACGCTTTTCTC
GACGCTCGAGATGCTTCGAGAGACGGTCGACAACCTCGTTGACGGGTGCT
GAAGGAGGGAGGAGGGAAGTCGACGCTTTTCTCGACGCTCGAGATGCTTC
GAGAGACGGTCGACAACCTCGTTGACGGAGTGGCGGCGTCGCGCTTTGCG
CCGGCGGTGCTCGAGAACGAGGTGGTGCCCTTAGTGCGGCAGGTGCTGCA
GATCACTGACCAGCTCCCAGCTCTTTTCCAGTCGAGTGGCGGCGTCGCGC
TTTGCGCCGGCGGTGCTCGAGAACGAGGTGGTGCCCTTAGTGCGGCAGGT
GCTGCAGATCACTGACCAGCTCCCAGCTCTTTTCCAGTCGATCGCGGACG
GTACGCGGGAGTTCACCCCGACCCCGGAGGAAACCCGGGACGTGGTGTCC
AAGATGTACAGGGCCAGGAGGACCATCATGATCCGCTTCGAGAACGACTC
GATCGACGAGAGCGAGGGCATGAAGGACGTCATCCAGGAGGGCAAGACCT
TGCTCAGGATGAGGATCGCGGACGGTACGCGGGAGTTCACCCCGACCCCG
GAGGAAACCCGGGACGTGGTGTCCAAGATGTACAGGGCCAGGAGGACCAT
CATGATCCGCTTCGAGAACGACTCGATCGACGAGAGCGAGGGCATGAAGG
ACGTCATCCAGGAGGGCAAGACCTTGCTCAGGATGAGGCGGCCGCTGGTG
GACATGGAGCTGCGATACGAGATCATCAAGGGCAATCACATCACACCCCT
GACGCAGAACGTGTTCCTCGACACGCCGGTGGACTCGATCGATCCGCTAC
TCGGGGTCAGGCAGGGCATGAAGAAGGAGTTCCTCAAGACGGTGAACCAG
CTCGGACAGATCCTCGTCGACTGGCTGGAGGAGTCGGCGCCTCCGGTGCC
ACCACCTCCGAGCAGCAGTGCCTCGGCTACCTCCGCCGCCGCCGCGAGTG
CGGCGGGGGGGCTGCCGCCCCCGACTGCTTCTGGCCGGGGTAGGTAGCGG
CCGCTGGTGGACATGGAGCTGCGATACGAGATCATCAAGGGCAATCACAT
CACACCCCTGACGCAGAACGTGTTCCTCGACACGCCGGTGGACTCGATCG
ATCCGCTACTCGGGGTCAGGCAGGGCATGAAGAAGGAGTTCCTCAAGACG
GTGAACCAGCTCGGACAGATCCTCGTCGACTGGCTGGAGGAGTCGGCGCC
TCCGGTGCCACCACCTCCGAGCAGCAGTGCCTCGGCTACCTCCGCCGCCG
CCGCGAGTGCGGCGGGGGGGCTGCCGCCCCCGACTGCTTCTGGCCGGGGT
AGGTAG
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