mRNA_P-fluviatile_contig1.211.1 (mRNA) Porterinema fluviatile SAG_2381

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

Overview
NamemRNA_P-fluviatile_contig1.211.1
Unique NamemRNA_P-fluviatile_contig1.211.1
TypemRNA
OrganismPorterinema fluviatile SAG_2381 (Porterinema fluviatile SAG_2381)
Homology
BLAST of mRNA_P-fluviatile_contig1.211.1 vs. uniprot
Match: D7G072_ECTSI (HpcH_HpaI domain-containing protein n=2 Tax=Ectocarpus TaxID=2879 RepID=D7G072_ECTSI)

HSP 1 Score: 546 bits (1408), Expect = 1.020e-188
Identity = 272/285 (95.44%), Postives = 279/285 (97.89%), Query Frame = 1
Query:  313 LRSVLYTPGSSRHLYKIREIACDASLVDLEDGVAPEAKDKARERVCSEIGKGGYGRKAVVVRINSLDSPWGEDDIREVAKLTLDAVVIPKVESAADVKRVADLLRQHGAYDTDLWCMIETPLGVTRANEIASAHETVSCLVLGTSDLTRDLQANHTPDRTPLLYSLSRVILAARTYGLRCLDGVHLDMTDAEGFERACRQGRDMGMDGKTLIHPSTVAVANWFFGPNASEVEQAYRVVQAHEEAAARGEGCAVLDGSLVERLHAENARRVIELHESIAALEAGQD 1167
            +RSVLYTPGSSRHLYKIREIACDASL+DLEDGVAPEAKD ARERVCSE+ KGGYGRKAVVVRINSLDSPWGEDDIREVAKLT+DAVVIPKVESAADVKRVADLLR HGA DTDLWCMIETPLGVTRANEIASAHETVSCLVLGTSDLTRDLQANHTPDRTPLLYSLSR ILAARTYGLRCLDGVHLDMTDAEGFERACRQGRDMGMDGKTLIHPSTVAVANWFFGPNASEVEQAYRVV+AHEEAAARGEGCAVLDGSLVERLHAENARR+IELHESIAALEAG +
Sbjct:    1 MRSVLYTPGSSRHLYKIREIACDASLIDLEDGVAPEAKDNARERVCSEVAKGGYGRKAVVVRINSLDSPWGEDDIREVAKLTVDAVVIPKVESAADVKRVADLLRHHGAKDTDLWCMIETPLGVTRANEIASAHETVSCLVLGTSDLTRDLQANHTPDRTPLLYSLSRCILAARTYGLRCLDGVHLDMTDAEGFERACRQGRDMGMDGKTLIHPSTVAVANWFFGPNASEVEQAYRVVEAHEEAAARGEGCAVLDGSLVERLHAENARRIIELHESIAALEAGHE 285          
BLAST of mRNA_P-fluviatile_contig1.211.1 vs. uniprot
Match: A0A835ZHS4_9STRA (Pyruvate/Phosphoenolpyruvate kinase-like domain-containing protein n=1 Tax=Tribonema minus TaxID=303371 RepID=A0A835ZHS4_9STRA)

HSP 1 Score: 327 bits (838), Expect = 9.680e-103
Identity = 166/298 (55.70%), Postives = 215/298 (72.15%), Query Frame = 1
Query:  274 SSTGGSGKPLL--KPLRSVLYTPGSSRHLYKIREIACDASLVDLEDGVAPEAKDKARERVCSEIGKGGYGRKAVVVRINSLDSPWGEDDIREVAKLT-LDAVVIPKVESAADVKRVADLLRQHGAYD-TDLWCMIETPLGVTRANEIASAHETVSCLVLGTSDLTRDLQANHTPDRTPLLYSLSRVILAARTYGLRCLDGVHLDMTDAEGFERACRQGRDMGMDGKTLIHPSTVAVANWFFGPNASEVEQAYRVVQAHEEAAARGEGCAVLDGSLVERLHAENARRVIELHESIAALE 1155
            S+  GS    L  +PLRSVLYTPG  +HL K++    D +L+DLEDGVAP +K  AR+ V      GG   + + VR+N LD+ WG DD++ VAKL  +DA+ +PKVES A+V+ VA  L + GA   T +W +IETP GV   + IA+AH   S LV+GTSDL R+L   HT DR PLLYSLS+ ++AAR   L  LDGVHLD+ D+ GFE+AC+QG+++GMDGKTLIHPSTVAVANWFFGP+A +VEQ+YR+V+A +EA ARG+G  +LDG L+E LHA+NA R+I LHE+I A E
Sbjct:    6 STVAGSAAQKLQGRPLRSVLYTPGFGKHLAKVKTSVADCALIDLEDGVAPSSKVAARKAVAELFQAGGLSNRMLTVRVNGLDTEWGWDDLKAVAKLERVDAIALPKVESPAEVQEVAAYLEKEGASQHTTIWSLIETPKGVQNVDAIAAAHPRQSALVMGTSDLCRELHCLHTKDREPLLYSLSKCVVAARANDLLILDGVHLDLEDSTGFEQACKQGKELGMDGKTLIHPSTVAVANWFFGPSAEDVEQSYRIVEAMQEAMARGQGACLLDGKLIENLHADNALRIIALHEAIQAFE 303          
BLAST of mRNA_P-fluviatile_contig1.211.1 vs. uniprot
Match: A0A3S0HXF6_9PROT (CoA ester lyase n=2 Tax=Azospirillum TaxID=191 RepID=A0A3S0HXF6_9PROT)

HSP 1 Score: 314 bits (805), Expect = 4.430e-98
Identity = 160/286 (55.94%), Postives = 206/286 (72.03%), Query Frame = 1
Query:  304 LKPLRSVLYTPGSS-RHLYKIREIACDASLVDLEDGVAPEAKDKARERVCSEIGKGGYGRKAVVVRINSLDSPWGEDDIREVAKLTLDAVVIPKVESAADVKRVADLLRQHGAYDT-DLWCMIETPLGVTRANEIASAHETVSCLVLGTSDLTRDLQANHTPDRTPLLYSLSRVILAARTYGLRCLDGVHLDMTDAEGFERACRQGRDMGMDGKTLIHPSTVAVANWFFGPNASEVEQAYRVVQAHEEAAARGEGCAVLDGSLVERLHAENARRVIELHESIAALE 1155
            ++P RSVLY PGS+ R L K R +  D  ++DLED VAP+AK +AR+ +   I  GGYG + +V+R N L++PWG DD+R  A    DAV++PKVESA  V++   LLR  GA D+  LWCM+ETPLG+  A EIA A  T+  LVLGTSDL +DL A HT DR P+L SL   +LAAR YGL  LDGVHLD+ D EGF ++CRQGR++G DGKTLIHP T+A  N  FGP+A E+ QA+R++ AH EAAA+G+G  ++DG LVE LH ENARR++ L ++IAALE
Sbjct:    5 VRPRRSVLYMPGSNARALDKGRSLPADGLILDLEDAVAPDAKAQARDTIAQAIAAGGYGGRELVIRTNGLNTPWGYDDLRMAATSGADAVLLPKVESADAVRQAESLLRAAGAPDSLRLWCMMETPLGMLNAKEIAGASPTLGALVLGTSDLAKDLHAAHTRDRLPMLTSLGLCLLAARAYGLAVLDGVHLDLNDEEGFAQSCRQGRELGFDGKTLIHPKTIAACNAVFGPDAEEIAQAHRLIAAHAEAAAQGKGVVLVDGKLVENLHVENARRLVALSDAIAALE 290          
BLAST of mRNA_P-fluviatile_contig1.211.1 vs. uniprot
Match: A0A2E6QIK9_9PROT (CoA ester lyase n=1 Tax=Rhodospirillaceae bacterium TaxID=1898112 RepID=A0A2E6QIK9_9PROT)

HSP 1 Score: 308 bits (790), Expect = 7.140e-96
Identity = 151/285 (52.98%), Postives = 204/285 (71.58%), Query Frame = 1
Query:  307 KPLRSVLYTPGSS-RHLYKIREIACDASLVDLEDGVAPEAKDKARERVCSEIGKGGYGRKAVVVRINSLDSPWGEDDIREVAKLTLDAVVIPKVESAADVKRVADLLRQHGA-YDTDLWCMIETPLGVTRANEIASAHETVSCLVLGTSDLTRDLQANHTPDRTPLLYSLSRVILAARTYGLRCLDGVHLDMTDAEGFERACRQGRDMGMDGKTLIHPSTVAVANWFFGPNASEVEQAYRVVQAHEEAAARGEGCAVLDGSLVERLHAENARRVIELHESIAALE 1155
            +P RSVLY PGS+ R L K R +  DA ++DLED V P+AK +AR+R+   +G GGYG++ +VVR+N+L +PWG DD+  +A    DAV++PKVESA +V++   +L ++GA  D  +WCM+ETP G+    EIA+AH  V+CLV+GTSDLT+DL ANHTP R PL+ S+   +LAAR +GL  LDGVHLD+ D  GF  ACRQGRD G DGKTLIHP T+A AN  FGP+  E+  + R++ AHEEAA  G+G  ++DG L+E LH   A+R++ + E IAA+E
Sbjct:    5 RPRRSVLYMPGSNQRALEKGRTLPADALILDLEDAVTPDAKAEARDRIAEAVGTGGYGKREIVVRVNALSTPWGYDDLAGLAGCGADAVLLPKVESAGEVRQAVAVLEENGAPEDLAVWCMMETPRGILAVAEIAAAHPRVACLVMGTSDLTKDLHANHTPGREPLMTSIGLCLLAARAHGLAILDGVHLDLDDEAGFAAACRQGRDWGFDGKTLIHPKTIAAANAAFGPSDDEIAWSRRIIAAHEEAAREGKGVVLVDGKLIENLHVAEAQRLVVMAEMIAAME 289          
BLAST of mRNA_P-fluviatile_contig1.211.1 vs. uniprot
Match: UPI000E5D605A (CoA ester lyase n=1 Tax=Algihabitans albus TaxID=2164067 RepID=UPI000E5D605A)

HSP 1 Score: 308 bits (790), Expect = 7.380e-96
Identity = 158/286 (55.24%), Postives = 201/286 (70.28%), Query Frame = 1
Query:  307 KPLRSVLYTPGSS-RHLYKIREIACDASLVDLEDGVAPEAKDKARERVCSEIGKGGYGRKAVVVRINSLDSPWGEDDIREVAKLTLDAVVIPKVESAADVKRVADLLRQHGAYDT-DLWCMIETPLGVTRANEIASAHETVSCLVLGTSDLTRDLQANHTPDRTPLLYSLSRVILAARTYGLRCLDGVHLDMTDAEGFERACRQGRDMGMDGKTLIHPSTVAVANWFFGPNASEVEQAYRVVQAHEEAAARGEGCAVLDGSLVERLHAENARRVIELHESIAALEA 1158
            +P RSVLY PGS+ R L K R I  DA ++DLED VAP+AK +AR  V + + +GGYGR+ ++VR+N LDSPWG DDI  +A    DA++IPKVESA  V+ V  L+   GA     + CM+ETP G+  A EIA A   ++CLV+GTSDL +DL A HTP+R P+L SLS  +LAAR YGL  +DGVHLD+ DAEGF+  C QGR++GMDGKTLIHP TVA AN  F P+  +V QA R+++AH EA   G+G  VLDG L+E LH E+A+R + L ESI  LEA
Sbjct:    7 RPRRSVLYMPGSNTRALEKGRGIPADALILDLEDAVAPDAKAEARANVVAALAEGGYGRREIIVRVNGLDSPWGRDDIAAIAPTGADAILIPKVESAEMVQEVERLMVSAGAAGAMGIMCMMETPRGILHAGEIAGASARLTCLVMGTSDLVKDLNAKHTPERLPVLTSLSLCVLAARAYGLAVVDGVHLDLNDAEGFDAQCNQGRELGMDGKTLIHPKTVAAANTAFAPSEDDVAQAKRIIEAHSEATRAGKGVVVLDGKLIENLHVEDAQRTVALAESITDLEA 292          
BLAST of mRNA_P-fluviatile_contig1.211.1 vs. uniprot
Match: A0A3B8ZVP8_9DELT (CoA ester lyase n=3 Tax=Desulfuromonadales TaxID=69541 RepID=A0A3B8ZVP8_9DELT)

HSP 1 Score: 307 bits (786), Expect = 3.520e-95
Identity = 154/287 (53.66%), Postives = 202/287 (70.38%), Query Frame = 1
Query:  304 LKPLRSVLYTPG-SSRHLYKIREIACDASLVDLEDGVAPEAKDKARERVCSEIGKGGYGRKAVVVRINSLDSPWGEDDIREVAKLTLDAVVIPKVESAADVKRVADLLRQHGAYDT-DLWCMIETPLGVTRANEIASAHETVSCLVLGTSDLTRDLQANHTPDRTPLLYSLSRVILAARTYGLRCLDGVHLDMTDAEGFERACRQGRDMGMDGKTLIHPSTVAVANWFFGPNASEVEQAYRVVQAHEEAAARGEGCAVLDGSLVERLHAENARRVIELHESIAALEA 1158
            ++P RS+L+ PG ++R L K RE+  D  + DLED VAP AK +AR  V + +  GGYGR+ +VVR+N LD+PWG DD+   A+   DAV++PKVES A V+R  DLL +  A D  ++WCM+ETP G+ RA EIA+A   V+ LV+GTSDLT++L+A HTPDR PLL SL   +L AR YGL  LDGVHLD+ D  GF  ACRQG D+G DGKTLIHP T+AVAN  F P+A+ +  A +V+  H  A  RGEG  V+DG L+E LH ++ARR++ L  +I+ALEA
Sbjct:    5 MRPRRSLLFMPGVNARALAKARELPADGLIFDLEDAVAPAAKGEARAAVGTALAAGGYGRRELVVRVNGLDTPWGRDDLAAAARCGCDAVLLPKVESGASVRRTLDLLEEFAAPDNLEIWCMLETPRGILRAEEIATASTRVAALVMGTSDLTKELRARHTPDRRPLLASLGHCLLVARAYGLTALDGVHLDLHDDTGFAAACRQGVDLGFDGKTLIHPKTIAVANSLFAPDAAALAWARKVITVHSAAMERGEGIVVVDGQLIENLHVDDARRLVALAAAISALEA 291          
BLAST of mRNA_P-fluviatile_contig1.211.1 vs. uniprot
Match: A0A2S2CSW4_9PROT (CoA ester lyase n=1 Tax=Azospirillum thermophilum TaxID=2202148 RepID=A0A2S2CSW4_9PROT)

HSP 1 Score: 301 bits (771), Expect = 4.460e-93
Identity = 157/288 (54.51%), Postives = 199/288 (69.10%), Query Frame = 1
Query:  304 LKPLRSVLYTPGSS-RHLYKIREIACDASLVDLEDGVAPEAKDKARERVCSEIGKGGYGRKAVVVRINSLDSPWGEDDIREVAKLTLDAVVIPKVESAADVKRVADLLRQHGAYDTD-LWCMIETPLGVTRANEIASAHETVSCLVLGTSDLTRDLQANHTPDRTPLLYSLSRVILAARTYGLRCLDGVHLDMTDAEGFERACRQGRDMGMDGKTLIHPSTVAVANWFFGPNASEVEQAYRVVQAHEEAAARGEGCAVLDGSLVERLHAENARRVIELHESIAALEAG 1161
            ++P RSVLY PGS+ R L K R +  D  ++DLED VAP+AK  AR  +   I  GGYG + +V+R N L++PWG DD+   A    DAV++PKVESA  V++   +LR  GA D   LWCM+ETPLG+  A EIA+A   +  LVLGTSDL +DL A HTPDR P++ SL   +LAAR YGL  LDGVHLD+ D EGF  +CRQGR++G DGKTLIHP T+A  N  + P A EV+ A R++ AH EA AR +G  ++DG LVE LH ENARR++ L E+IAALEAG
Sbjct:    5 VRPRRSVLYMPGSNARALEKGRSLPADGLILDLEDAVAPDAKAAARTTIREAIAAGGYGGRELVIRSNGLNTPWGYDDLVMAAASGADAVLLPKVESADMVRQAEAVLRAAGAPDGQRLWCMMETPLGILNAREIAAASPRLGALVLGTSDLAKDLHAAHTPDRLPMITSLGLCLLAARAYGLAVLDGVHLDLNDDEGFAASCRQGRELGFDGKTLIHPKTIAACNAAYAPAAEEVDHARRIIAAHAEAVARDQGVVLVDGRLVENLHVENARRLVALAEAIAALEAG 292          
BLAST of mRNA_P-fluviatile_contig1.211.1 vs. uniprot
Match: G7Z9B5_AZOL4 (Citryl-CoA lyase n=7 Tax=Azospirillum TaxID=191 RepID=G7Z9B5_AZOL4)

HSP 1 Score: 301 bits (770), Expect = 5.480e-93
Identity = 152/285 (53.33%), Postives = 198/285 (69.47%), Query Frame = 1
Query:  304 LKPLRSVLYTPGSS-RHLYKIREIACDASLVDLEDGVAPEAKDKARERVCSEIGKGGYGRKAVVVRINSLDSPWGEDDIREVAKLTLDAVVIPKVESAADVKRVADLLRQHGAYDTD-LWCMIETPLGVTRANEIASAHETVSCLVLGTSDLTRDLQANHTPDRTPLLYSLSRVILAARTYGLRCLDGVHLDMTDAEGFERACRQGRDMGMDGKTLIHPSTVAVANWFFGPNASEVEQAYRVVQAHEEAAARGEGCAVLDGSLVERLHAENARRVIELHESIAAL 1152
            ++P RSVLY PGS+ R L K R +  D  ++DLED VAP+AK  AR+ +   +  GGYG + +++R+N L++PWG DD+R  A    DAV++PKVESA  V++   +LR  GA  +  +WCM+ETPLGV  A EIA A   V  LVLGTSDL +DL A HT  R P++ SL   +LAAR YGL  LDGVHLD+ D EGF  +CRQGR++G DGKTLIHP T+A  N  F P+A E+  A+R++ AH EAAA G+G  ++DG LVE LH ENARR++ L E+IAAL
Sbjct:    5 VRPRRSVLYMPGSNARALEKGRSLPADGLILDLEDAVAPDAKAAARDTIAQALAAGGYGGRELIIRVNGLNTPWGYDDLRMAAASGADAVLLPKVESADSVRQAEAVLRTAGAPASQTIWCMMETPLGVLNAKEIAGASPAVGALVLGTSDLAKDLHAAHTAQRLPMITSLGLCLLAARAYGLAVLDGVHLDLNDDEGFAASCRQGRELGFDGKTLIHPKTIAACNAAFAPDADEIAHAHRIIAAHAEAAASGKGVVLVDGKLVENLHVENARRLVALAEAIAAL 289          
BLAST of mRNA_P-fluviatile_contig1.211.1 vs. uniprot
Match: UPI0018723A97 (CoA ester lyase n=1 Tax=Pelagibius sp. NBU2595 TaxID=2762760 RepID=UPI0018723A97)

HSP 1 Score: 300 bits (769), Expect = 8.520e-93
Identity = 144/286 (50.35%), Postives = 208/286 (72.73%), Query Frame = 1
Query:  307 KPLRSVLYTPGSS-RHLYKIREIACDASLVDLEDGVAPEAKDKARERVCSEIGKGGYGRKAVVVRINSLDSPWGEDDIREVAKLTLDAVVIPKVESAADVKRVADLLRQHGAYDT-DLWCMIETPLGVTRANEIASAHETVSCLVLGTSDLTRDLQANHTPDRTPLLYSLSRVILAARTYGLRCLDGVHLDMTDAEGFERACRQGRDMGMDGKTLIHPSTVAVANWFFGPNASEVEQAYRVVQAHEEAAARGEGCAVLDGSLVERLHAENARRVIELHESIAALEA 1158
            +P RSVLY PGS+ R L K R +  D  ++DLED VAP+AK+ ARE++ + + +GGYG++ + VR+N LDSPWG+DD++ +A    DA+++PKVE+AA +  +  L+   GA  +  + CM+ETPLG+  A E+A A + ++CLV+GTSDL +DLQA HTP+R P+L SL   ILAAR YG+   DGVHLD++D EGF  +CRQG+++G DGKTLIHP T+A AN  F P+ +E++ +++++ AH EA A G+G  V+DG L+E LH E+A+R++ L E+I  LEA
Sbjct:    5 RPRRSVLYMPGSNARALEKGRSLPADGLILDLEDAVAPDAKETAREQIVAALKEGGYGKREIAVRVNPLDSPWGKDDVKAMATSGADAILLPKVETAAMIHELEKLMDAAGAPQSMGIQCMMETPLGMLNAQEVAGASKRITCLVMGTSDLVKDLQAAHTPERLPVLTSLGLCILAARAYGIAITDGVHLDLSDEEGFAASCRQGKELGFDGKTLIHPKTIAAANEVFAPSQAEIDWSHKIIAAHAEATAEGKGVVVVDGKLIENLHVESAQRLVALSEAIKELEA 290          
BLAST of mRNA_P-fluviatile_contig1.211.1 vs. uniprot
Match: D3NT03_AZOS1 (Citrate lyase beta chain n=17 Tax=Alphaproteobacteria TaxID=28211 RepID=D3NT03_AZOS1)

HSP 1 Score: 300 bits (767), Expect = 1.520e-92
Identity = 153/285 (53.68%), Postives = 198/285 (69.47%), Query Frame = 1
Query:  304 LKPLRSVLYTPGSS-RHLYKIREIACDASLVDLEDGVAPEAKDKARERVCSEIGKGGYGRKAVVVRINSLDSPWGEDDIREVAKLTLDAVVIPKVESAADVKRVADLLRQHGA-YDTDLWCMIETPLGVTRANEIASAHETVSCLVLGTSDLTRDLQANHTPDRTPLLYSLSRVILAARTYGLRCLDGVHLDMTDAEGFERACRQGRDMGMDGKTLIHPSTVAVANWFFGPNASEVEQAYRVVQAHEEAAARGEGCAVLDGSLVERLHAENARRVIELHESIAAL 1152
            ++P RSVLY PGS+ R L K R +  D  ++DLED V PEAK  AR+ +   +  GGYGR+ ++VR+N L++PWG +D+R  A    DAV++PKVESA  V++   +LR  GA     +WCM+ETPLG+  A EIA A + V  LVLGTSDL +DLQA HT  R PL+ SL   +LAAR Y L  LDGVHLD+ D EGF  +CRQGR++G DGKTLIHP T+   N  F P+A E+ QA+R++ AH EAAA G+G  ++DG LVE LH ENARR++ L E+IAAL
Sbjct:    5 VRPRRSVLYMPGSNPRALEKGRGLPADGLILDLEDAVTPEAKTAARDGIAQALAAGGYGRRELIVRVNGLNTPWGYEDLRMAAASGADAVLLPKVESADAVRQAEAVLRAAGAPAGQAIWCMMETPLGILNAKEIAGATQAVGALVLGTSDLAKDLQAAHTAGRLPLITSLGLCLLAARAYRLAVLDGVHLDLNDDEGFAASCRQGRELGFDGKTLIHPKTIGACNAAFAPDAGEIAQAHRIIAAHAEAAAAGKGVVLVDGKLVENLHVENARRLVTLAEAIAAL 289          
The following BLAST results are available for this feature:
BLAST of mRNA_P-fluviatile_contig1.211.1 vs. uniprot
Analysis Date: 2022-09-19 (Diamond blastx: OGS1.0 vs UniRef90)
Total hits: 25
Match NameE-valueIdentityDescription
D7G072_ECTSI1.020e-18895.44HpcH_HpaI domain-containing protein n=2 Tax=Ectoca... [more]
A0A835ZHS4_9STRA9.680e-10355.70Pyruvate/Phosphoenolpyruvate kinase-like domain-co... [more]
A0A3S0HXF6_9PROT4.430e-9855.94CoA ester lyase n=2 Tax=Azospirillum TaxID=191 Rep... [more]
A0A2E6QIK9_9PROT7.140e-9652.98CoA ester lyase n=1 Tax=Rhodospirillaceae bacteriu... [more]
UPI000E5D605A7.380e-9655.24CoA ester lyase n=1 Tax=Algihabitans albus TaxID=2... [more]
A0A3B8ZVP8_9DELT3.520e-9553.66CoA ester lyase n=3 Tax=Desulfuromonadales TaxID=6... [more]
A0A2S2CSW4_9PROT4.460e-9354.51CoA ester lyase n=1 Tax=Azospirillum thermophilum ... [more]
G7Z9B5_AZOL45.480e-9353.33Citryl-CoA lyase n=7 Tax=Azospirillum TaxID=191 Re... [more]
UPI0018723A978.520e-9350.35CoA ester lyase n=1 Tax=Pelagibius sp. NBU2595 Tax... [more]
D3NT03_AZOS11.520e-9253.68Citrate lyase beta chain n=17 Tax=Alphaproteobacte... [more]

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Alignments
The following features are aligned
Aligned FeatureFeature TypeAlignment Location
P-fluviatile_contig1contigP-fluviatile_contig1:2679817..2693974 +
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 score547.7
Seed ortholog evalue4.2e-153
Seed eggNOG ortholog2880.D7G072
EggNOG free text desc.regulation of cobalamin metabolic process
EggNOG OGs2QQPK@2759,COG2301@1
COG Functional cat.G
Best tax levelEukaryota
Best eggNOG OGNA|NA|NA
Hectar predicted targeting categorymitochondrion
Ec32 ortholog descriptionPyruvate/Phosphoenolpyruvate kinase-like domain
Ec32 orthologEc-05_004060.1
Exons8
Model size2259
Cds size1164
Stop1
Start1
Relationships

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

Feature NameUnique NameSpeciesTypePosition
mRNA_P-fluviatile_contig1.211.1prot_P-fluviatile_contig1.211.1Porterinema fluviatile SAG_2381polypeptideP-fluviatile_contig1 2679835..2692897 +


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

Feature NameUnique NameSpeciesTypePosition
1622815305.1563663-UTR-P-fluviatile_contig1:2679816..26798341622815305.1563663-UTR-P-fluviatile_contig1:2679816..2679834Porterinema fluviatile SAG_2381UTRP-fluviatile_contig1 2679817..2679834 +
1693561454.0641265-UTR-P-fluviatile_contig1:2679816..26798341693561454.0641265-UTR-P-fluviatile_contig1:2679816..2679834Porterinema fluviatile SAG_2381UTRP-fluviatile_contig1 2679817..2679834 +
1622815305.2640595-UTR-P-fluviatile_contig1:2692897..26939741622815305.2640595-UTR-P-fluviatile_contig1:2692897..2693974Porterinema fluviatile SAG_2381UTRP-fluviatile_contig1 2692898..2693974 +
1693561454.157561-UTR-P-fluviatile_contig1:2692897..26939741693561454.157561-UTR-P-fluviatile_contig1:2692897..2693974Porterinema fluviatile SAG_2381UTRP-fluviatile_contig1 2692898..2693974 +


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

Feature NameUnique NameSpeciesTypePosition
1622815305.170391-CDS-P-fluviatile_contig1:2679834..26802181622815305.170391-CDS-P-fluviatile_contig1:2679834..2680218Porterinema fluviatile SAG_2381CDSP-fluviatile_contig1 2679835..2680218 +
1693561454.0762267-CDS-P-fluviatile_contig1:2679834..26802181693561454.0762267-CDS-P-fluviatile_contig1:2679834..2680218Porterinema fluviatile SAG_2381CDSP-fluviatile_contig1 2679835..2680218 +
1622815305.1858976-CDS-P-fluviatile_contig1:2685378..26854201622815305.1858976-CDS-P-fluviatile_contig1:2685378..2685420Porterinema fluviatile SAG_2381CDSP-fluviatile_contig1 2685379..2685420 +
1693561454.0838647-CDS-P-fluviatile_contig1:2685378..26854201693561454.0838647-CDS-P-fluviatile_contig1:2685378..2685420Porterinema fluviatile SAG_2381CDSP-fluviatile_contig1 2685379..2685420 +
1622815305.1952798-CDS-P-fluviatile_contig1:2686162..26863001622815305.1952798-CDS-P-fluviatile_contig1:2686162..2686300Porterinema fluviatile SAG_2381CDSP-fluviatile_contig1 2686163..2686300 +
1693561454.0918014-CDS-P-fluviatile_contig1:2686162..26863001693561454.0918014-CDS-P-fluviatile_contig1:2686162..2686300Porterinema fluviatile SAG_2381CDSP-fluviatile_contig1 2686163..2686300 +
1622815305.2051282-CDS-P-fluviatile_contig1:2686558..26866321622815305.2051282-CDS-P-fluviatile_contig1:2686558..2686632Porterinema fluviatile SAG_2381CDSP-fluviatile_contig1 2686559..2686632 +
1693561454.100342-CDS-P-fluviatile_contig1:2686558..26866321693561454.100342-CDS-P-fluviatile_contig1:2686558..2686632Porterinema fluviatile SAG_2381CDSP-fluviatile_contig1 2686559..2686632 +
1622815305.2192242-CDS-P-fluviatile_contig1:2687706..26878561622815305.2192242-CDS-P-fluviatile_contig1:2687706..2687856Porterinema fluviatile SAG_2381CDSP-fluviatile_contig1 2687707..2687856 +
1693561454.123554-CDS-P-fluviatile_contig1:2687706..26878561693561454.123554-CDS-P-fluviatile_contig1:2687706..2687856Porterinema fluviatile SAG_2381CDSP-fluviatile_contig1 2687707..2687856 +
1622815305.2324336-CDS-P-fluviatile_contig1:2688618..26887721622815305.2324336-CDS-P-fluviatile_contig1:2688618..2688772Porterinema fluviatile SAG_2381CDSP-fluviatile_contig1 2688619..2688772 +
1693561454.133823-CDS-P-fluviatile_contig1:2688618..26887721693561454.133823-CDS-P-fluviatile_contig1:2688618..2688772Porterinema fluviatile SAG_2381CDSP-fluviatile_contig1 2688619..2688772 +
1622815305.242909-CDS-P-fluviatile_contig1:2689547..26896161622815305.242909-CDS-P-fluviatile_contig1:2689547..2689616Porterinema fluviatile SAG_2381CDSP-fluviatile_contig1 2689548..2689616 +
1693561454.1420393-CDS-P-fluviatile_contig1:2689547..26896161693561454.1420393-CDS-P-fluviatile_contig1:2689547..2689616Porterinema fluviatile SAG_2381CDSP-fluviatile_contig1 2689548..2689616 +
1622815305.2547333-CDS-P-fluviatile_contig1:2692744..26928971622815305.2547333-CDS-P-fluviatile_contig1:2692744..2692897Porterinema fluviatile SAG_2381CDSP-fluviatile_contig1 2692745..2692897 +
1693561454.1499195-CDS-P-fluviatile_contig1:2692744..26928971693561454.1499195-CDS-P-fluviatile_contig1:2692744..2692897Porterinema fluviatile SAG_2381CDSP-fluviatile_contig1 2692745..2692897 +


Sequences
The following sequences are available for this feature:

protein sequence of mRNA_P-fluviatile_contig1.211.1

>prot_P-fluviatile_contig1.211.1 ID=prot_P-fluviatile_contig1.211.1|Name=mRNA_P-fluviatile_contig1.211.1|organism=Porterinema fluviatile SAG_2381|type=polypeptide|length=388bp
MKVLTAVARRTRAVRNVPPSGRSTNVAYGGVSREMSSMWSCAAGSPTHAP
SLNPQQGVPGNSRLPAASKELYARRLCGSRWRYSSSSTGGSGKPLLKPLR
SVLYTPGSSRHLYKIREIACDASLVDLEDGVAPEAKDKARERVCSEIGKG
GYGRKAVVVRINSLDSPWGEDDIREVAKLTLDAVVIPKVESAADVKRVAD
LLRQHGAYDTDLWCMIETPLGVTRANEIASAHETVSCLVLGTSDLTRDLQ
ANHTPDRTPLLYSLSRVILAARTYGLRCLDGVHLDMTDAEGFERACRQGR
DMGMDGKTLIHPSTVAVANWFFGPNASEVEQAYRVVQAHEEAAARGEGCA
VLDGSLVERLHAENARRVIELHESIAALEAGQDTNES*
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mRNA from alignment at P-fluviatile_contig1:2679817..2693974+

Legend: UTRpolypeptideCDS
Hold the cursor over a type above to highlight its positions in the sequence below.
>mRNA_P-fluviatile_contig1.211.1 ID=mRNA_P-fluviatile_contig1.211.1|Name=mRNA_P-fluviatile_contig1.211.1|organism=Porterinema fluviatile SAG_2381|type=mRNA|length=14158bp|location=Sequence derived from alignment at P-fluviatile_contig1:2679817..2693974+ (Porterinema fluviatile SAG_2381)
TTTCTCGCAACAAGACAGATGAAGGTCCTGACTGCTGTTGCTCGTCGGAC AAGAGCAGTACGGAACGTACCACCAAGTGGTCGCAGCACAAACGTTGCTT ATGGCGGCGTTTCTAGAGAGATGTCATCTATGTGGTCATGTGCTGCGGGC TCTCCTACTCACGCTCCTTCACTTAATCCCCAACAAGGAGTGCCCGGCAA CAGCCGCTTGCCGGCTGCTTCAAAGGAATTATATGCCCGACGCTTATGCG GATCCCGATGGAGATACAGCAGCAGCAGCACCGGGGGTTCAGGGAAGCCG CTGCTGAAACCCCTTAGGTCTGTCCTCTATACGCCGGGATCATCGAGACA TCTCTACAAGATCAGAGAGATTGCTTGCGATGCTTCTCTAGTTGATCTCG AGGTAAGATACATGTCCAGCCCTAAACAGCAGCTGTTGCTGGGTTGCAGC AATCCCCAAGAATACAAAAGAGAGCGAGGAAATATTCGTTTTCGCGCCCT TTTTCAGCTTGGGCGCTCCTCACTGCCTCGACCAAACATCAGCTCGTACA TTAGTGCATACAAGTAGATGCACAACACATCTGACGCTGTCGTCAATCCC AACCGTAGACTAGTTCGCCGGTCTCGCCTGTTGCAGTCCCCTCCTTTAAT TAGTTTCCAAGTGCTGTGCACACCTGAACTGTATTGATAGGGCTCTCCCT TCTGGGTGCCGGACATGATATTTATGTCCAGCTATCTCGTCGAGCAGTGC GAGCCTCTCCCAACGCCAACACGAACTACCGTTAGAAGCGGGTCTTGTTG GATCCGCGGCCCTGGCAATTGGACTGTCCTCGGGTGACTGAACGTTCCAG AGCTCCGATGTGTTTTGCTCTGCGCGTCATTCACGCCGGGGTGTGTACGA CGTGCAGCAATTGCCTCGTGAACGGGGATCGGATTATAGGTGCAAGTCTG GAGTCTGCACGCCATGTTACCACGTTGTTGTGTTGAACGCACGACTTCGC GCGGCATGGCGCGTGTACGAAGCAGATAGCAGATAAGTTATCCTCCTTCG AACGAGGCAGCGGGCCGGTATTGATATTGAAACGGAGGAGCGGAACCATC CGACACTTGCGGTAGGTATTATGTACCACACCCACCGCCGGCACGGGCCT ACCTCGTCTGGTAGAATGCGGGCAAGTGTGGACCTACGGGAGAGAGCTCG AGTAGCTCCCAGGAAGAGACAAGGATTTCGGACGAAAGGGGCGAGAGCCG AAATACTCATCTTCCCGTTCGCTTGTGCGCCATCACGTGGCGCTTAGAAG CATTGCAGTAGCCTACGCAGGTTTCGATGAGCAGACGGGATAAAGTTTGG GGTTAGTGTTTTTTTGGGGTCCCAGTAGCCTCCGCAAGGTTTCATCAAGC AAACTTGTTGGATAGAGTGTAGGATTCGTGTTCTTTGGGGTCGTGTTCTT TGGGGTTCGGGTGTAGGGTTAGCGTTAGATCCCACTTGCCCTTTTCATAT GCACCAAACTCGAATTTCTTTGCTTGGCCGGTCCAAGCATTGGGTTTGCG GAAGGAGTTTCTTTGTATGACTTCCTGCGGTGCGGAGCGGAGTAACAACA TACCCAAGCCGGATACATGAAGCAACCCTTTGCCAGCGCTTTCATGTGCT TGCCCCATGTCTGACACCTATCATCGGCATAGCAACCCTCTGTGTAAATT CTGTCCAAATGCATCTCGCTGGACACATGCCTGAGGGGACATGATTCGAT GGGTCTGAGTCGTCTCTGACATCTGTCACTATCTGATACAGGAGTGGTTT GAGGCGATAGCCCTGCGCTTGACATGCGCGCGGTAGCATGACGTCCCGTC CTCGATCGATCACACTATACTTTGATTCTAGCCACAAAACTAGCTTGTTT AGGTATTCCGCCACGAATTTTTATAGAAATGTACGTGCTCGCACGAGAGG GAAGTGCAAAAAATCGCACACATTTTACGGGCCAGGCGAATGTTCGACGC GTGCACTTCACTTTGAAACGGTCACATGGAAAGAAATCTCCGCCGGCTAC GAATTCCATTAACGTCACCACCGGTGCTTTCACTTCTATTGTTTGCTCAC CCAGCTCTCCAGATGCGCGTGATTTTTCTTTGAGCACCAGCTTTTGACAC ACCACTTTTGCGTGCCCTTTTTTGTTTTACTGCTACCAGTACGTCGGCGT TATGAACGGCGTGTCTTCCCTTCCTCGAGGGGAAAGTCCTCACAACACTA GGTTTTCGGAGATGATTCGTGATTGACGTTGAGTGGGGGAACATTCTTGC CTTCCATCTCCCCAGAGAAATCACCGACTGTCTTCCTTCCGCATCGACCC CATCGAATCCCCCCCGCCCCCCCAAACAGTGGCAATACCGTACAGCTTCT GCGTCGCCTTGAAATCAGCACCGTGGATGCATTGCAGTGGTCAAAACAAC TGAAGCAAGAAATGACCTATACCGTCCCCCCCCCCTCTCCTAGACGTTCA GAAAGCGTATGATACAGTATGGAGAAATGGGCTTTGGAAAAAGTTGGCGA AGTATGGGGTAAACGGGAAGATGTGGAGAATGATTAAGTTGACAGAGAGC ACGAAAAGCGCCGTGATGTTAGATGGAGAACTCTCGAGGTTCTTCGACAT TGAGCAGGGGGTCCCACAGGGGTGCACAATGTCACCAACGTTGTTCCAGG TATTCATCAACGACTTACTGAAAGAGGTAGAGGCGGTAGGGAAGGGAGTA GAAGTAGGGGAAACCTCGGTATCGGGACTGCTGTTTGGAATGCAGACAGC GTAGAACAAGTAAGGGAACTGATGGGGAAAGCGGGAGAGGAAGAAGACAT CCAAGTAAAAGGGGACAGAGTAATCGCAGGATGGGAAAACATAGTGAACA CAACCGCAGAGGAAGTGGTAGGAAAAAAGATGGTCCGGTGTGGTCAGGCG GTTAAGTGGTGGGACGAAGAATTAAGGGAAGAAATAGGGGAACGAAGAGA ACTGTTTAAGCGGCACATGGATGAGAAGACAGAGGAGAGTTGAGAAACCT ACAGAGCCAAGAGGAAACATGTGAATAGAGTAGTGAAAAAGACGAAGAAA GGCATCTGGGACGAAGTGGTGCAGGAAGCGAACGGGGGTTGGAGGGTAGC GTAAAACAGATGTGGCAGGGAATTAATGGATTGGTaAAAAAGAATGAACA TGGGGGGGAAACAGGAGTAGCAACATTGCGAAGCGTAGACGGTAAACTAG TCAGCAGTGGCAAGGGTAAGAGACAGGTACTAGCAGGACACTATAGGAGA CTCGGGGTGCCGTCGGAAAAGGCAGACTTCGACCAAGTATTCAAGGAAGA GGTAGACGCGTGGGCCCAAGCAGAAGAGAGAGCTTCGATGGAGGACGTCG GGAATGCAGAGCTCCAAAAGAAGTTCACCGAGGAAGAGGTTGAGAATTGT GTGAAAAAACTACAGTGTCACAAGGCCGCAGGGGTAGACGGGATAGTGAA CGAAATCATGATGTTCGGGGGGGAGGGGATGATTCAGATGATGGTGCTGT TGTTCAACTGGGTATGGGAAAGCGAATACGCACCGAGTAGATGGAGGGAA GGGGTGGTGGTGAACCTATTTAAGAAAGGAGATAAGACTGACCCAGGAAA CTATAGGGAAATCACCCTGTTGAGCACAGTGGGGAAAGTGTTCTTCAAGA TCCTCAACAACAGAATAGTACGAGTACTGGAGATGGAAAAGAGAATTAGT GAGGGTCAAGCAGGTTTCAGGGAGGCTAGGGGGTGTGGAGATCACCTATA CACGGTAGGGAGAATCATACAAGGTCGGAAGAGGGTGGGAAAGCCGACAT ATTGTTTTTTCCTAGACGTTCAGAAAGCGTATGATACAGTATGGAGAAAT GGGCTCTGGAAAAAGTTGGCGAAGTATGGGATAAACGGGAAGATGTGGAG AATGATTAAGAAGATGACAGAGAGCACGAAAAGCGCCGTGATGTTAGATG GAGAACTCTCGAGGTTCTTCGACATTGAGCAGGGGGTCCCACAGGGGTGC ACAATGTCCCCAACGTTGTTCCAGGTATTCATCAACGACTTACTGAAAGA GGTAGAGGCGGTAGGGAAGGGAGTAGAAGTAGGGGAAACCTCGGTATCGG GACTGCTATTTGCTGACGACTTTGTTGGGATGTCGGACACGCCTGAGGGG CTCCAACTACAGATTAACGCAGCGAAGACCTGCGCTGATAAGTGGAGCTT CTCGGCCAACGTCCCAAAGTGTGCCGTAATGGTATGCAATGAAGATGGTG ACGAGGAAGTAGGTACCGAGTGGACGTGGGGGGACAAGGAGCTGCCAAGA GCGGAAAAATACACATACCTTGGAGTAGAGATAGCAAAAGACTGTAAATG GGATGCACACATGCACAAAATAGCGGACAAGGGCAAAGCAAGGGCAGGGA AGTTGCACCCAATCCTAGCAGACCGGCACCTTGATACACGCGTCAAAATG ACCATTCTGAAAAGTGTTATCATCCCGCCACTAGAGTACGCGGGAGAAGT TTGGGAAGGGAACAAGAAAGTAGTAGCAGAGTTGGAGGCAGCGCAGATGA AAGCAGCGAAGATCATTCTAGGATGCTCCCAGCGCACAAGTAACGCAGCA GTAAGAGCAGAGTTGGGGATCTACTCCTGAAGAACGGGAAGAGACAGGAG GAAGTTGACATGGCAATACCGTATGGAAAACATGGGAAAGGAGAGGTTAC CGAGAATAGCTTGGGAGGCGAGATGGGTAAACAAGGCCAAGGGTAGACAA CCCATTGAGTGGGCGAAGGTTGTACAGGGAGTGTGGAGTGGGTTAGATAT TGACGAACGGGAGACGACGGGAGCGGAAAGCTTAGAAGGGTACAAGAAGA GCATCTCAGAAGCCTTTGAAAATAGAGAAGACCAAAGCTTGCGGAAAGAG ACCAAGGAAAAGGAGGTTCTAGAAGTGTACGGAAGGCTGAACGAAGGAAT AGGGTTCAAGGAGTACCTGAACGGACCATTGGATGAAGGGACAAAGATGA AGGTCAAATTTAGAACGGGCGACATTGACCTACGGGAACGTAGAAGGAGG TTTAGGAAGGTAGACGACGAAGACAAGTTCAAATGTGACTGCGGCGCCGA ATGCGAAGACCGGGTACATGTAGTTGCGGAATGCCCGTTGTACGATCAGG AGAGAGAAGGGTACATGGTTGAGCTGGAAATAGTAGACAGTCGGTATAGA GAGAAGTTTGAGGCATGGAACAAAGAGGAGAAGACGGTAGCGGTACTCGG GTGTAAGATGTGGCCCAGGACGGACATGTATAAAGTAGACAGCTTAGGGA AAACATTTTTGAGCCACCTTTGGCAAAGTAGGAAGGAACGATTGGCCATC GGTGGTCGATCCTGCGGGAACAATGCTCCGTCCTCTCGAGGACGCGTGGT CAATGGTCTAACAACTAAGGCATGCAAAACATGAGTACGCCCCCCCTCTC CGTTTTTTTGCACCTCGTCTACACGTGTCTCTCTTGATATTTGTGCGACT GTCGCTCGACAGGACGGCGTTGCCCCGGAGGCGAAGGACAAGGCGCGCGA GAGGGTGAGCGCTTTTTGTGGCCTTTCTGTGATAAAAAGGCGCGTCGTTC GAGATCACTCGTGATTGTGCGGCGTGTGGTACGTGGGGTGTGCGTGGTAT GTGTGAAACCGAACTGGTGTCGACCGCGTGAATCGGCTGGCCCCATGGAT TGACGCCCTAGTCTTAGCGGGGGAAGAAAAACTACGACGATGATATTCCT AAGAGTGACGCCAAGTCTCAGCGGAAAAAAAACACAATGGCGATTATTGC TAAATATTGTACCTCGCCCGCGTGGGGCTTGCTCGCGAACGGACACTCGA CGGGTTCGTCTGGGCAACCTGAGAGGAGCGTTGTTTTACCCTTGCGTGCG CTCGTTGTGCGTGTGTTTCTATGGTTGCTGCTGTCCATGCCATTCATCCG CGCAGAGCATCCAAACGATTCAAGGAGAGCGACTAAGACATGCACACACG TGGAACAGACGGCGGTCTTACACACCTGCACACCGCGTATTTTCCTAGCG GATTTTGAGTGTCGAAAACGCACTCGGCTGAATTGTGTGTGCGCGCGTCG AGGATGCTTCGAATCTCGTCCACCCTTGATTTCTGCCATTTATCTTGTTC AAGCTACCGCCCTGAGTCACAATCCTCCAATTCATCGAATTCACTGCGCC GTCGCTCCTCATTTTCCTTGCCAATACTTTTTCTTCATGTATTGTTGCTC TCCGGACGCCCGGTTCGGACAAAAAAATATGGTGTAATGGGAGAAGGTGT GCTCGGAAATTGGCAAAGGGGGCTACGGTCGAAAAGCCGTGGTGGTGAGA ATCAACTCTCTTGACTCGCCCTGGGGGGAAGACGACATCAGGGAGGTGGC CAAGCTCACGCTGGACGCCGTCGTCATCCCCAAGGCAAGAGAGTGAGCAC CTTGATATGAGTAACACGCTTGCTTTGCGTTTGTTTTCACCAGTGATTTT TTTTTGCTACGGGTCGTGCTGCTTGCTTGATTGCTTGCTTACACCCCCGC CCCGGGCCCTGTTCATCTCGTTCTCGCGAAGGGAACAAGCTTATCTCACG CGTTGCTCGCTTTCCAAAGCCTTTGCGCGTTGTAACCCTCTCTGCCCTCC CTGTGTGGCACCCTCGATGCCGCCGCTGCATCACGAAAAAAGGTGGAGAG TGCGGCGGACGTGAAGCGGGTGGCAGATCTCCTCCGCCAACACGGGGCCT ACGACACCGATTTGTGGTGAGTCAAGGGACTGGAAGGACGAACATGAGAC GGGCAGGACGAACAACCCTTTCCTGTCCTGGCGGGACTTACCCAGAAAGG GGTGCAGGCGTGTCTTTCGCACTTGTAGGTTCATCCTCACATCTGCCGCC CGCACGAAACGGGATACTTGAGCGTTGCTCGCGTTGCTCGCTTCACGATC ATCGGAGTGCCGTATCCGACATGCTTGTGTACGGTCTACACGCGCATTGT CGCTGAGGGCTGTCCGCTCCGCGGTGTGTCGGATCTTGGATACCCGTGGA ATTTCAACAGGTAATTCGTATAATACTCAAGACAGCTTTTGCTGGGGAGG AGTTGATGCACAAACATGCACATCGTGCATGTAGGATATTGCAAATGCGT TAGTAAAAATATCAAGGAGATCAGGAACCTGGCTTGCATTTTCGTTCAAT ACAACAACGGCGGCTTTCGATGACGACTTATCACACCTCGCGCCAAGTCG TGCCCTGGTGTAATGATCGCCCAAGTCGTCCATCTTGATGACCCCATGCC CTCGTAGGCCAGCCCTGCTGTGCTCACCGGCTGCGAATTTCTTTGTCGCG AAAAGACTATTAATAGCAGCTATTTCGAGCACCCAGGCGAGGGCATCAAG CAGCGAAGCTACCCAAGCTGATTACTCTCGATGCCAGCGCCGCGTCCCAT GCTCGTTGTTCAAAGATTTCGAACAAAAATGGAAAAAACACTTTCGCGCA AATTACGCCTCGTACTACTGAGGCGTCTCGTGCTGAAAGGAGCCGAGAGG AGACCGACTTCGCGAAGGCATCCTGTTAATTCATCGCATTGCTTCGAACA TGCCCGCTCGCTGCTTCTGCCGAGGTGCCCTGCGGGCGACCTTCCTGCTG TATCCTCCCTAACGAACGAAGCGTAGCCCCGTATCTCCGTTGGCTCGGTA CTCCCCCCCGTAGCCTCCGTTTTCCAGTACCCTCCTCCCCCCCTCGCCTA CCACTCTACTGATTTTGACGCCGAACGTCGACTACGGCGGAATTTCGGGT TGCTCGTGTGCGCTGACTGACGTAACAATAATCCAATCAGGTGCATGATT GAAACGCCCCTAGGCGTCACTAGAGCCAACGAAATCGCCTCCGCGCACGA GACGGTGTCGTGCCTGGTGCTGGGGACGTCGGACCTGACGCGAGACCTAC AGGCGAACCACACCCCCGACCGCACCCCGCTCCTCTACAGGTGTGCCGGG TGCCGGGGGGAGGGGGGCGGCGGGGAGAGGGGCAACGGGGGTGGGGCAGG GGGCGACGAGAAATGAGGCGTCTTCGTTTTTTTCTGTTTCATCTCGTCAC AGCCGTCGCCCAGGCAGCAAAGCAAGCTGCTTATTTCCAGAGAAAAGCAT TTAATGCTTTAGAGTCGTTCGCCGGTGTGTGTGGCTGTGGCACATGATTT CTTCTCAGGGTTCAGAGGGAGCCGAGCTCTCTTTTTTGAGGGGGTGCGGT CGGTATTCGTGAACGTAAAAGGCAATCCCGATGACAGTGAGCGATCGTTT CAACGACGAAGGGAAACCGATAAAGCCGTCGTTCGCAATGGTATTGGGGG TATCCGTTGGAGGTTAAGTTAGGTTAGGACGTGTGACAGACCCTACAAAC AACATGCAACTTGTGAACAAGATTTCTTACCGGTGTACACCACGCGTTTG GTTGCAAGTAGCAGCACACTCGTACTGTTTAGGCCTCGAGTCATTTTTTG GGTTTGCCCTCTTCGAGCACCTGCGGGGTGTGTTTGAGGACACATCGCGA CTTTGCTTATGCGTACAATCGCCCCCTCACCACCACCATTGTCAACGGCA ATCCTTACGAGACACCGTGGCGGCGTTGTGATGAACCTTACGCCCCCGTC CCTCCTGTCCCCCCTTCATGGTCCGTGCCCGCCGCCGCTTCCCTGCTCCT TCCGTCGTTCGTCCCTCTTGCGTTTTGCCACCGCCGCCGCGCGGGGTCGC AGCCTGTCTCGCGTGATCTTGGCGGCGCGCACTTACGGCCTTCGCTGCCT TGATGGCGTCCACCTGGACATGACCGACGCCGAGGGCTTCGAGCGCGCTT GCCGCCAGGGGAGGGACATGGGCATGGACGGGAAGACGCTCATCCACCCC AGCACGGTGAGAGAGAGAGAGAGAGAGAGAGAGAGAGAGACAGACAGACA GACAGACAGACAGAGAGAGAGAGAGAGAGAGAGACACACAGAGACATAGA GAGACAGAGGAAGGGTGTGAAAGGAGAAGTAATTTGTGAGCGAAGGAGAT AGGAGAGACGTAGAGTACGATTGAGGGAGAGAGTGCGTCCCGATCCCCTC GTTCTCCCTCTTTGTTATCATCATCCCTGCGGTGCTCCTCCGCCTCCCCT TGCCTTTCCCGTCCCTGGTGGGCTTAAATTTTTTTTCTTTTTTTTTCTTT CTCATATCGGGCTAGCGTAAAGTTGATAAGCTTTTTGAGTTTCGAAGTCC TGAAGTAGGATTTGGGACGTGTTTTTTCTCAGCCGTGCGTGTCATCGGGG TGTGTATCGACTCATGGGTTTTCTCTCTGAATCGACCTTCCCGAGTTTCC CTCGCTCTCTCTCTTTCCCGTCCATCCCACATGTGCATGGTGACCCCACT GCTGCCGTTTGTGTCATCGTTTGTCGTGTCTGTCTGGTCCCCTGTCTGTC TAATTGCCTCCCTCCCCTCTCTTTCTCCCTCTGCTTTCGAACTCTCTCTC TCTTTCTCCCTCTGCTTTCGAACTCTCTCTCCCTCTCTCTCTCTCTCTCT CTCTCTCTCTCTCTCTCTCTCTCTCTCTCTCGCTCTCGCGCTCTCTCGCG CTCGCTCTCGCTCTCGCTCTCGCTCTCGCTCTCGCTCTTGCTCTCTCTGT CCCTGTCTCTCTCATCCTTGTCGTAATTCAGGTCGCCGTGGCGAACTGGT TTTTCGGCCCCAACGCCAGCGAAGTGGAGCAGGCTTACAGGGTAGTCCAG GTGAGAACGGCGAGCGTGGTATTATTATTGCTGCTGCTGCGCTGCCCTTC CCGCCCCCCCGATCTTCACATGAGGGCTCGTTGGGATCCGGACAGCAGCT GCCTTCGCCACTGACACCAACATTGTCGTTTTGTCAGCTCCTTCCTGCTA CGTCCAAGGCGAGCACTTTCGATTTGTGGGCACGTCTGGTGACCACAATC CCGTCGGACCCCGTCCCTCGAGTCTAGCGACCCTGATCCTAGAGATACTT TCACGGTGGCACACAAGTACCAGGAGCAAATTCTCCCTTGTCTTGGCGCC TGTTTTTTTTTATGGAGGCGTCAACAACTTCTTTTTCTCCAAAGCAGAAA AAAAGCTTTTGCTTTGAAGAGGCGTACTTCAATATATATGCACCGCAAAC CAATGACCAGTATACCCAATGAAAGAAGAGTGTAGCGTTCGAACACACCT AGTATTGATTTCGTCAGATGACCACAACGTACACCAGCCGCTGGCGAATA CAGGGTACTTTTTCGTTTTATTGAACGGGCATGGTAGTGTGGGTTCGGGA GGACCAAATAATTGTGGCGCGTGGAACCAGATATTTTCTCTGTGGTCCCG CGGCCCGGAGCAGCATCTCAAGCCTTTTGAACAACCCAGCCGTTCTCGAG GAACACGCGATCAAAGAGGGGCTTGTCAGCTATCAGCCTATGACACCCCA AAGGGTAGGCGGAAGCCAACCGGCGGTCCCATTGGAAACCTGGATAAGGG GAAGAAGAGGGCCAAAACAGCGGCGGCGAGAAGGGCGGCGGACGTTGATA TGATCCAGACAGCGAGAATGTAGCGCTCGCGGCAGCCGCAGCAAAGATGG CTGCAAGGGAGAGAGAGAGCTCCTAAAGCGAACGAGTCTGCCCTCGCCAA GGAGAAGGAAGAGCTGGAGCGCTCTGCTGCCAAGCGGAAAGCGACGGAAC AGCGGCAGCAGCAGCGTGTCGAAGAAGCTGCTGATGCCGCGGCGTGGAAA ATATCGCAGCGAACATTGGAATTCATACTCAAATCTCATCTCAGCAGGAG GTGAAGCCCAAGGTTGGCGAAGTCCTGTCCAAAGTGCAGTCCAGGGCGGT CCTCATGTCACTCTTCGATCTTCGGAAGCAAGGTCACTCTGAGAACTCGG CGGCGTTGAAGGTCAGTACAGCAGGGACAGTCGGATGCTTTTTTTGTTGA AGTGAGCATAAAACAAGTACAGCAGTATAGTTTACAGCAGTTTATGTTGC GGCTGCACTTCGTGGTGGAAAATACTCTCAGGATGTGTCGTTCAACAACT GCGGCCGAAATGACATCGCACAAGACTGACGTTGTCATTTTTCTTCTCTG GAAGTATCTATGCTGGAAGGTGGCACAAATCTTCCAGATCGGACATGCGA AGATCAGAGTCGTGAACAACCACTAGTGGGAGCTCCGACAGTTGTGCGAG ACCACCACCGCTGGGAGAGGGAAGACGACGAAGAAGGACGACGGGCGACG CCGTCTCAGCGACGAGCAAGAGGATCGACTTCGAGAGTTCATCGACAGCA AGCACAAGGCCATGCGTCAAATCTTCTGACGCACGGTGGCGGAGTGGATG CGCAGGACGTGAGATGGAGAAGCAGCCGTCGAATCGTTTGGCAGAAGGGC TGCTGTGTAGGCTCGGCTACCGCCGTTGTTGAGGCAGGATCAAAACTCCA CCATTGGATGCCAAGAGGCTTGCTCGTATTCGCCTGTTTCTTGTTGAAAT GGACATCGCAAAGAGGGCCGAGGATGCTGGACTGGCAGTCGTTGTGGTCG AATCCATGGTTGTTGACCACTCCGACCTTCGCATGTCCGATCTGGAAGAT TTGTGCCACCTTCCAGCATAGATACGTCCAGAGAAAAGAATGGCAACCTC AGTCTTGTGCGATGTCATTTCGGCCGCAGTTGTTGAACGACACATCCTGA GAGTATTTTCGTCCGCGAAGTGCGGCTGCAACATAAACTGCTGTAAACTA TACTGCTGTACTTGTTTTATGCACACTTCAACAAAAAAAGCATCCGACTG TCCCTGCTGTACTGAGCTTCAACACCGCCGAGTTTACAGAGTGACCTTGC TTCCGAAGTTCGAAGAGTGACATGAGGACCGCCCTGGACTGCACTTTGGT CAGGACTTCGCCAACCTTGGGCTTCACCTCCTGCTGAGATGAGATTTGAG TATGAATTCCAATGTTCGCTGCGATATTTTCCACGCCGCGGCATCAGCAG CTTCTTCGACACGCTGCTGCTGCCGCTGTTCCGTCGCTTTCCGCTTGGCA GCAGAGCGCTCCAGCTCTTCCTTCTCCTTGGCGAGGGCAGACTCGTTCGC TTTAGGAGCTCTCTCTCTCCCTTGCAGCCATCTTTGCTGCGGCTGCCGCG AGCGCTACATTCTCGCTGTCTGGATCATATCAACGTCCGCCGCCCTTCTC GCCGCCGCTGTTTTGGCCCTCTTCTTCCCCTTATCCAGGTTTCCAATGGG ACCGCCGGTTGGCTTCCGCCTACCCTTTGGGGTGTCATAGGCTGATAGCT GACAAGCCCCTCTTTGATCGCGTGTTCCTCGAGAACGGCTGGGTTGTTCA AAAGGCTTGAGATGCTGCTCCGGGCCGCGGGACCACAGAGAAAATATCTG GTTCCACGCGCCACAATTATTTGGTCCTCCCGAACCCACACTACCATGCC CGTTCAATAAAACGAAAAAGTACCCTGTATTCGCCAGCGGCTGGTGTACG TTGTGGTCATCTGACGAAATCAATACTAGGTGTGTTCGAACGCTACACTC TTCTTTCATTGGGTATACTGGTCATTGGTTTGCGGTGCATATATATTGAA GTACGCCTCTTCAAAGCAAAAGCTTTTTTTCTGCTTTGGAGAAAAAGAAG TTGTTGACGCCTCCATAAAAAAAAACAGGCGCCAAGACAAGGGAGAATTT GCTCCTGTTACTTGTGTGCCAACGTGATAGCAATCATTCCAAAAGGAAGC CGTTGTTGAGGACGGGTGACTTGCAGCGTGTGGTGGCAAAGTCGAGCCCC CACCCCCTCCCCTTCCCCGCCCCGTCACACCCGTGCTGCGCGCACTCCCC TTGGCCCTCTTGCTTCTTCTGGGGCTAGGCACACGAGGAGGCAGCAGCGA GAGGCGAAGGGTGCGCCGTCTTGGACGGAAGCCTGGTGGAAAGATTGCAC GCCGAAAATGCCCGGAGAGTGATCGAGCTGCACGAGTCCATCGCCGCGCT CGAGGCTGGCCAGGACACCAACGAGTCGTAGCCGTTTCCTGCCTCTCCTT CCGCAGCGGCTACGATTGTAGAGAGAGTTCGACTTGCCATGCCGGGCATT CATCAGTGGGGCTTTCTCGCCAATCGAACGGAGGAGCTGTTTTTACTTTT TACGGGTTCGTGACAAGCCGTTCTTACCCACCTCAGCCGGCGATGTTCCT TTTCCTAAGGAATGTTTAATCGTGGCCACTACCGACAAGTCGTAGCCCTT TCCAGCATCTCCCGATCCTCGACCGGGAGTCCAATCAACTGCTGTAATTC GACTTTGTCCCTTATCATGGTGTGATTGTTGAGCTGCGTTGCGGATGGGT AAGCTTAAGGGTAGGGGGTATGGGTGGCGTTCGCAACCAACAGCAATGTT TTTGATCGTTGGTTTTGTTTCACGTGTTAATGCACAAGTCGGTCATCGGC CGCGTACGTGCTGCCGCAGTGGAGAGGATTCGAGCGCCTTGTCATTTGGA CGACACTTTGTCGCAGTTTTGCGGAGCTTACGCGCACGGCGGGCGTGGGG CTTGATCGACCTCTTTGTTTTTTTGGACGAAATGATGTCGAAGTTTGGGA AGAGCGGGAAGTCAGGTTTGTCGTGATTGATGGGGAGGGAGGGAATCGAA GCGCTTCCTTTTCGGTCACACTGCTTGGGATCGGCAAAGCCAGCAGCTAG CCGTCGCAAACAAGGTGCCCACAGCAGAGGGGTCGCGCTGAGGGCTGAGA AAAGGGCTCCGGGATTGAGAGAGCAAGGGGGTAGCGGAACCCCAGAGCTG GAGGGAGCAGACTATCGTACTTTCATCGGGGAACACATGACAAGGCGGCC ACAGGGTTGTAGGCGGTATACGGGAAGTGTGTCTTGACAGCATTTTCTTT TGTAATTTTGCAGTGGTTCCGTTGTTGAGCTGCTTCAACCAGTGACGCAA AGCCAAGTTGTTAACATTAATTGTCGTCTTTTTCTGGGCTGAGAGAGGCA CGGATGATGCAAGTACCAAGGTCGCCCATGTTGGGCTGAGGATGGTGGAA GCTGCACATGGCGGCCGGCCGACTGAGACAGCGCGTTACATCCAGCACGC AGCGTGGG
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Coding sequence (CDS) from alignment at P-fluviatile_contig1:2679817..2693974+

>mRNA_P-fluviatile_contig1.211.1 ID=mRNA_P-fluviatile_contig1.211.1|Name=mRNA_P-fluviatile_contig1.211.1|organism=Porterinema fluviatile SAG_2381|type=CDS|length=2328bp|location=Sequence derived from alignment at P-fluviatile_contig1:2679817..2693974+ (Porterinema fluviatile SAG_2381)
ATGAAGGTCCTGACTGCTGTTGCTCGTCGGACAAGAGCAGTACGGAACGT
ACCACCAAGTGGTCGCAGCACAAACGTTGCTTATGGCGGCGTTTCTAGAG
AGATGTCATCTATGTGGTCATGTGCTGCGGGCTCTCCTACTCACGCTCCT
TCACTTAATCCCCAACAAGGAGTGCCCGGCAACAGCCGCTTGCCGGCTGC
TTCAAAGGAATTATATGCCCGACGCTTATGCGGATCCCGATGGAGATACA
GCAGCAGCAGCACCGGGGGTTCAGGGAAGCCGCTGCTGAAACCCCTTAGG
TCTGTCCTCTATACGCCGGGATCATCGAGACATCTCTACAAGATCAGAGA
GATTGCTTGCGATGCTTCTCTAGTTGATCTCGAGATGAAGGTCCTGACTG
CTGTTGCTCGTCGGACAAGAGCAGTACGGAACGTACCACCAAGTGGTCGC
AGCACAAACGTTGCTTATGGCGGCGTTTCTAGAGAGATGTCATCTATGTG
GTCATGTGCTGCGGGCTCTCCTACTCACGCTCCTTCACTTAATCCCCAAC
AAGGAGTGCCCGGCAACAGCCGCTTGCCGGCTGCTTCAAAGGAATTATAT
GCCCGACGCTTATGCGGATCCCGATGGAGATACAGCAGCAGCAGCACCGG
GGGTTCAGGGAAGCCGCTGCTGAAACCCCTTAGGTCTGTCCTCTATACGC
CGGGATCATCGAGACATCTCTACAAGATCAGAGAGATTGCTTGCGATGCT
TCTCTAGTTGATCTCGAGGACGGCGTTGCCCCGGAGGCGAAGGACAAGGC
GCGCGAGAGGGACGGCGTTGCCCCGGAGGCGAAGGACAAGGCGCGCGAGA
GGGTGTGCTCGGAAATTGGCAAAGGGGGCTACGGTCGAAAAGCCGTGGTG
GTGAGAATCAACTCTCTTGACTCGCCCTGGGGGGAAGACGACATCAGGGA
GGTGGCCAAGCTCACGCTGGACGCCGTCGTCATCCCCAAGGTGTGCTCGG
AAATTGGCAAAGGGGGCTACGGTCGAAAAGCCGTGGTGGTGAGAATCAAC
TCTCTTGACTCGCCCTGGGGGGAAGACGACATCAGGGAGGTGGCCAAGCT
CACGCTGGACGCCGTCGTCATCCCCAAGGTGGAGAGTGCGGCGGACGTGA
AGCGGGTGGCAGATCTCCTCCGCCAACACGGGGCCTACGACACCGATTTG
TGGTGGAGAGTGCGGCGGACGTGAAGCGGGTGGCAGATCTCCTCCGCCAA
CACGGGGCCTACGACACCGATTTGTGGTGCATGATTGAAACGCCCCTAGG
CGTCACTAGAGCCAACGAAATCGCCTCCGCGCACGAGACGGTGTCGTGCC
TGGTGCTGGGGACGTCGGACCTGACGCGAGACCTACAGGCGAACCACACC
CCCGACCGCACCCCGCTCCTCTACAGGTGCATGATTGAAACGCCCCTAGG
CGTCACTAGAGCCAACGAAATCGCCTCCGCGCACGAGACGGTGTCGTGCC
TGGTGCTGGGGACGTCGGACCTGACGCGAGACCTACAGGCGAACCACACC
CCCGACCGCACCCCGCTCCTCTACAGCCTGTCTCGCGTGATCTTGGCGGC
GCGCACTTACGGCCTTCGCTGCCTTGATGGCGTCCACCTGGACATGACCG
ACGCCGAGGGCTTCGAGCGCGCTTGCCGCCAGGGGAGGGACATGGGCATG
GACGGGAAGACGCTCATCCACCCCAGCACGCCTGTCTCGCGTGATCTTGG
CGGCGCGCACTTACGGCCTTCGCTGCCTTGATGGCGTCCACCTGGACATG
ACCGACGCCGAGGGCTTCGAGCGCGCTTGCCGCCAGGGGAGGGACATGGG
CATGGACGGGAAGACGCTCATCCACCCCAGCACGGTCGCCGTGGCGAACT
GGTTTTTCGGCCCCAACGCCAGCGAAGTGGAGCAGGCTTACAGGGTAGTC
CAGGTCGCCGTGGCGAACTGGTTTTTCGGCCCCAACGCCAGCGAAGTGGA
GCAGGCTTACAGGGTAGTCCAGGCACACGAGGAGGCAGCAGCGAGAGGCG
AAGGGTGCGCCGTCTTGGACGGAAGCCTGGTGGAAAGATTGCACGCCGAA
AATGCCCGGAGAGTGATCGAGCTGCACGAGTCCATCGCCGCGCTCGAGGC
TGGCCAGGACACCAACGAGTCGTAGGCACACGAGGAGGCAGCAGCGAGAG
GCGAAGGGTGCGCCGTCTTGGACGGAAGCCTGGTGGAAAGATTGCACGCC
GAAAATGCCCGGAGAGTGATCGAGCTGCACGAGTCCATCGCCGCGCTCGA
GGCTGGCCAGGACACCAACGAGTCGTAG
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