mRNA_P-fluviatile_contig11.1026.1 (mRNA) Porterinema fluviatile SAG_2381

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

Overview
NamemRNA_P-fluviatile_contig11.1026.1
Unique NamemRNA_P-fluviatile_contig11.1026.1
TypemRNA
OrganismPorterinema fluviatile SAG_2381 (Porterinema fluviatile SAG_2381)
Homology
BLAST of mRNA_P-fluviatile_contig11.1026.1 vs. uniprot
Match: A0A6H5JKW8_9PHAE (Polynucleotide adenylyltransferase n=1 Tax=Ectocarpus sp. CCAP 1310/34 TaxID=867726 RepID=A0A6H5JKW8_9PHAE)

HSP 1 Score: 977 bits (2525), Expect = 0.000e+0
Identity = 569/703 (80.94%), Postives = 595/703 (84.64%), Query Frame = 2
Query:  272 MAGRGSGPGAGARPIGSTGAMVGGKSRAGGHVPRPMYEPINTSGPSKADLELDAKLEAFMADNVPVMTSADLRRREQVLGKLRTMFLQWVIDSALEAGMSEEAAKAAGGKIYTSGSYRLRIHEPNSDIDAICVAPQFCTSELFFTTLKARLMENPLVTNVNAIETAAVPIITFDFDEVNIDLGLACLPVPTVPPTLDIDDDQVLDGVDRPTEKCVNGPRVTNMIYRLIPNYDSFLPVVRCVRKWAKSRGLYSNKMGYLGGVNFNIMVAFACQMYPNAGPSTLLHRFFKLMAGWNWPNAIQLVQPYDAELGLEVWNARANSWHCMPIITPAYPVMNSSANVSRFTLDVMTSEFSRGLEVVNGIIKEKGSLSSFSQLFEPSDFFIRYNHYLAVDMMASSEDEHRAWVGWVESRLRKLVEGLGLSGLPFKRVHLWPKRFDGCVGGGVGGELPAHCVAYFVGLEIDPRRSKKGAVLDVDKVTTRFRMESVGHATNRGFHRPGMDVMATAQTWKELPPFVFESIGGTAAAXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXTGSAVNGQDSAAATV----------PPIPAXXXXXXXXXXXXXXXXXXDLEEEGATRLVLSGARAALALPGGQKRKRAVDVVDLVDLAPVVPSWKTPSAA---LLSGCGGVGMKRLTVELLP 2341
            MAGRG G         + G   GG  RA GHVPRPMYEPINTS PSK DLELDAKLEAFM DNVPVMTS DLRRREQVLGK+R MFLQWVIDSALEAGMSEEAAKAAGGKIYTSGSYRLRIHEPNSDIDAICVAPQFCTSELFFTTLK RL+ +PLV NVNAI+TAAVPII   FDE++IDLGLACLPVPTVPPTLDIDDDQVLDGVDRPTEKCVNGPRVTNMI+RL+PNYDSFLPVVRCVRKWAKSRGLYSNKMGYLGGVNFNIMVAFACQMYPNAGPSTLLHRFFKLMAGWNWPNAIQLVQPYDAELGLEVWNARANSWHCMPIITPAYPVMNSSANVSRFTLDVMTSEFSRGLEVVNGI+KEKGSLS+FS+LFEPSDFF+RYNHYLAVDMMASSE+EHRAWVGWVESRLRKLVEGLGLSGLPFKRVHLWPK+F+GCVGGGVGGELPAH VAYF+GLEIDPRRSKKGAVLDVDKVT RFRMESVGHAT+RGFHRPGMDVMATA++WK+LP FVFESIGG+ A XXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXX                         PP PA                  DL++EGAT+LVLSGARAAL    GQKRKRAVDV          PSWK                 MKRLTV+LLP
Sbjct:    1 MAGRGLGA--------AGGPSSGGGKRAAGHVPRPMYEPINTSAPSKTDLELDAKLEAFMRDNVPVMTSVDLRRREQVLGKIRAMFLQWVIDSALEAGMSEEAAKAAGGKIYTSGSYRLRIHEPNSDIDAICVAPQFCTSELFFTTLKERLIAHPLVANVNAIQTAAVPIIELVFDEIDIDLGLACLPVPTVPPTLDIDDDQVLDGVDRPTEKCVNGPRVTNMIHRLVPNYDSFLPVVRCVRKWAKSRGLYSNKMGYLGGVNFNIMVAFACQMYPNAGPSTLLHRFFKLMAGWNWPNAIQLVQPYDAELGLEVWNARANSWHCMPIITPAYPVMNSSANVSRFTLDVMTSEFSRGLEVVNGIMKEKGSLSAFSKLFEPSDFFLRYNHYLAVDMMASSEEEHRAWVGWVESRLRKLVEGLGLSGLPFKRVHLWPKKFEGCVGGGVGGELPAHSVAYFIGLEIDPRRSKKGAVLDVDKVTNRFRMESVGHATSRGFHRPGMDVMATAKSWKDLPGFVFESIGGSEAXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXPPTPAEAAAVSVKPEAALEG---DLDDEGATKLVLSGARAALP---GQKRKRAVDVXXXXXXXXXXPSWKNRPGLPXXXXXXXXXXXMKRLTVQLLP 689          
BLAST of mRNA_P-fluviatile_contig11.1026.1 vs. uniprot
Match: D7FWT4_ECTSI (Polynucleotide adenylyltransferase n=1 Tax=Ectocarpus siliculosus TaxID=2880 RepID=D7FWT4_ECTSI)

HSP 1 Score: 776 bits (2003), Expect = 4.610e-271
Identity = 436/693 (62.91%), Postives = 457/693 (65.95%), Query Frame = 2
Query:  272 MAGRGSGPGAGARPIGSTGAMVGGKSRAGGHVPRPMYEPINTSGPSKADLELDAKLEAFMADNVPVMTSADLRRREQVLGKLRTMFLQWVIDSALEAGMSEEAAKAAGGKIYTSGSYRLRIHEPNSDIDAICVAPQFCTSELFFTTLKARLMENPLVTNVNAIETAAVPIITFDFDEVNIDLGLACLPVPTVPPTLDIDDDQVLDGVDRPTEKCVNGPRVTNMIYRLIPNYDSFLPVVRCVRKWAKSRGLYSNKMGYLGGVNFNIMVAFACQMYPNAGPSTLLHRFFKLMAGWNWPNAIQLVQPYDAELGLEVWNARANSWHCMPIITPAYPVMNSSANVSRFTLDVMTSEFSRGLEVVNGIIKEKGSLSSFSQLFEPSDFFIRYNHYLAVDMMASSEDEHRAWVGWVESRLRKLVEGLGLSGLPFKRVHLWPKRFDGCVGGGVGGELPAHCVAYFVGLEIDPRRSKKGAVLDVDKVTTRFRMESVGHATNRGFHRPGMDVMATAQTWKELPPFVFESIGGTAAAXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXTGSAVNGQDSAAATVPPIPAXXXXXXXXXXXXXXXXXXDLEEEGATRLVLSGARAALALPGGQKRKRAVDVVDLVDLAPVVPSWKTPSAA---LLSGCGGVGMKRLTVELLP 2341
            MAGRG G         + G   GG  RA GHVPRPMYEPINTS PSK DLELDAKLEAFM DNVPVMTS DLRRREQVLGK+R MFLQWVIDSALEAGMSEEAAKAAGGKIYTSGSYRLRIHEPNSDIDAICVAPQFCTSELFFTTLK RL+ +PLV NVNAI+TAAVPII   FDE++IDLGLACLPVPTVPPTLDIDDDQV                         PNYDSFLPVVRCVR+WAKSRGLYSNKMGYLGGVNFNIMVAFACQMYPNAGPSTLLHRFFKLMAGWNWPNAIQLVQPYDAELGLEVWNARANSWHCMPIITPAYPVMNSSANVSRFTLDVMTSEFSRGLEVVNGI+KEKGSLS+FS+LFEPSDFF+RYNHYLAVDMMASSEDEHRAWVGWVESRLRK                                                              VT RFRMESVGHAT+RGFHRPGMDVMATA++WK                                                                         G AV  +D+A  TV P                     DL++EGAT+LVLSGARAAL    GQKRKRAVDVVDLVDLAPVVPSWK                GMKRLTV+LLP
Sbjct:    1 MAGRGLGA--------AGGPSGGGGKRAAGHVPRPMYEPINTSAPSKTDLELDAKLEAFMRDNVPVMTSVDLRRREQVLGKIRAMFLQWVIDSALEAGMSEEAAKAAGGKIYTSGSYRLRIHEPNSDIDAICVAPQFCTSELFFTTLKERLIAHPLVANVNAIQTAAVPIIELVFDEIDIDLGLACLPVPTVPPTLDIDDDQV-------------------------PNYDSFLPVVRCVRRWAKSRGLYSNKMGYLGGVNFNIMVAFACQMYPNAGPSTLLHRFFKLMAGWNWPNAIQLVQPYDAELGLEVWNARANSWHCMPIITPAYPVMNSSANVSRFTLDVMTSEFSRGLEVVNGIMKEKGSLSAFSKLFEPSDFFLRYNHYLAVDMMASSEDEHRAWVGWVESRLRK--------------------------------------------------------------VTNRFRMESVGHATSRGFHRPGMDVMATAKSWKATKT--------------------------------------------------------------------GGPAVKKEDAATPTVSPPTPVEAEAEAVSVKPEAVLEGDLDDEGATKLVLSGARAALP---GQKRKRAVDVVDLVDLAPVVPSWKNRPGLPXXXXXXXXXXGMKRLTVQLLP 527          
BLAST of mRNA_P-fluviatile_contig11.1026.1 vs. uniprot
Match: A0A835ZG61_9STRA (Polynucleotide adenylyltransferase n=1 Tax=Tribonema minus TaxID=303371 RepID=A0A835ZG61_9STRA)

HSP 1 Score: 529 bits (1363), Expect = 6.150e-173
Identity = 269/496 (54.23%), Postives = 340/496 (68.55%), Query Frame = 2
Query:  365 VPRPM--YEPINTSGPSKADLELDAKLEAFMADNVPVMTSADLRRREQVLGKLRTMFLQWVIDSALEAGMSEEAAKAAGGKIYTSGSYRLRIHEPNSDIDAICVAPQFCTSELFFTTLKARLMENPLVTNVNAIETAAVPIITFDFDEVNIDLGLACLPVPTVPPTLDIDDDQVLDGVDRPTEKCVNGPRVTNMIYRLIPNYDSFLPVVRCVRKWAKSRGLYSNKMGYLGGVNFNIMVAFACQMYPNAGPSTLLHRFFKLMAGWNWPNAIQLVQPYDAELGLEVWNARANSWHCMPIITPAYPVMNSSANVSRFTLDVMTSEFSRGLEVVNGIIKEKGSLSSFSQLFEPSDFFIRYNHYLAVDMMASSEDEHRAWVGWVESRLRKLVEGLGLSGLPFKRVHLWPKRFDGCVGGGVGGELPAHCVAYFVGLEIDPRRSKKGAVLDVDKVTTRFRMESVGHATNRGFHRPGMDVMATAQTWKELPPFVFESIGGTAAA 1846
             P+P+  +  IN   P+  D   DAKL  ++A NVPVM+  ++  RE+VL ++  +F +WV ++ L  G+ EE A+AAGG I TSGSYRL IHEP SDIDA C+AP  CT   FFT+L+  L ++P VTN NAIETAAVPI+TFDFD VNIDLGL CLPV +V    +IDDD VL GVD  TEKC+NGPRVTN+I+RL+PNY SFLPVVR VR WAK RG+Y NKMGYLGGVNFNI+VAFACQ+YP A PS LL  FFK+M  W WPN I L +P+DA LGL+VW A  N WH MPIITPAYP MNSS  VS  +L+VM  EF RG  +   ++      +S+ +L  PS+FF  Y+HYLA+D+MA  E+E R W G++ESR+RKL++      +P + +HL+P+ FD C  GGV GELPAHCV +FVG  +D  R   G  LDV     +F  ES   AT   + + GM +  TA ++K LP +  + +GG  AA
Sbjct:    5 TPKPVQCFPVINNDPPTDKDRANDAKLFEYIAANVPVMSKQEMMHRERVLTEVTQIFKRWVRETCLAKGVPEEVARAAGGIIRTSGSYRLAIHEPGSDIDAHCIAPMPCTRADFFTSLRKLLQDHPEVTNFNAIETAAVPIMTFDFDGVNIDLGLGCLPVESVSEDFNIDDDAVLKGVDSATEKCLNGPRVTNLIHRLVPNYASFLPVVRLVRVWAKRRGIYGNKMGYLGGVNFNILVAFACQLYPRASPSKLLASFFKVMHSWAWPNPIHLTRPHDAALGLQVWQAAQNPWHVMPIITPAYPAMNSSLAVSAHSLEVMRREFRRGDAICRRVLDGGAEGASWDELVRPSEFFAMYSHYLAIDVMAGGEEEFRGWRGYMESRVRKLLDNFTYMRIPARDLHLYPRAFDRCCSGGVNGELPAHCVCFFVGFNVDRARLAAGRRLDVGHAFQKFE-ES---ATGVPWLKEGMCLALTAYSFKTLPAWTADELGGRDAA 496          
BLAST of mRNA_P-fluviatile_contig11.1026.1 vs. uniprot
Match: A0A485KNG9_9STRA (Poly(A) polymerase n=1 Tax=Aphanomyces stellatus TaxID=120398 RepID=A0A485KNG9_9STRA)

HSP 1 Score: 456 bits (1173), Expect = 7.780e-145
Identity = 241/500 (48.20%), Postives = 326/500 (65.20%), Query Frame = 2
Query:  353 AGGHVPRPMYEPINTSGPSKADLELDAKLEAFMADNVPVMTSADLRRREQVLGKLRTMFLQWVIDSALEAGMSEEAAKAAGGKIYTSGSYRLRIHEPNSDIDAICVAPQFCTSELFFTTLKARLMENPLVTNVNAIETAAVPIITFDFDEVNIDLGLACLPVPTVPPTLDIDDDQVLDGVDRPTEKCVNGPRVTNMIYRLIPNYDSFLPVVRCVRKWAKSRGLYSNKMGYLGGVNFNIMVAFACQMYPNAGPSTLLHRFFKLMAGWNWPNAIQLVQPYDAELGLEVWNARA--NSWHCMPIITPAYPVMNSSANVSRFTLDVMTSEFSRGLEVVNGIIKEKGSLSSFSQLFEPSDFFIRYNHYLAVDMMASSEDEHRAWVGWVESRLRKLVEGLGLSGLPFKRVHLWPKRFDGCVGGGVGGELPAHCVAYFVGLEIDPRRSKKGAVLDVDKVTTRFRMESVGHATNRGFHRPGMDVMATAQTWKELPPFVFESIGGTAAA 1846
            A G V    Y+PI T+ P   DLEL  KL A+M  + P  T  +++RR  +LG+LR++F  WV D  ++ G+ EE A  AGG I  SGSYRL ++EP +DID ICVAP+F T E FF++LK  L++N  VTN+ +IE A VPI+TFD+ E+NIDL +A L   ++P  +++ DD +L GVD PTEK +NGPRVT ++ +L PN  SF+ V+R VR+WAK RGLYSNK+GYLGGVN+ I+V F  Q+YP A PSTLL RFF +++ W WP+AIQL + YDA+LGLE+WNA    N +  MPI+TPAYP MNSS NVS  +L+VM  EFSRGLE+V  II + G+   +S+LFEPS++F+ + HYLAV+M  S   +  AW G+ ESRLRK +E L        R+ ++PK+F         G+   H V YFV  ++D ++ + G  + +D     F++ S+     R     GMDV  T   WK LP  VFE +GG   A
Sbjct:    8 APGTVLEQAYKPIRTTPPEPIDLELSQKLLAYMEKHFPTETEKNIQRRTIILGELRSIFRAWVKDVCIQRGVLEEIANEAGGIILVSGSYRLGVNEPGADIDTICVAPKFVTREDFFSSLKDILLKNSKVTNLVSIEGATVPIMTFDYQEINIDLQIAILDRSSIPDDINVLDDNILAGVDTPTEKSLNGPRVTELMIKLTPNRSSFIAVLRIVRRWAKKRGLYSNKLGYLGGVNWCILVCFINQLYPTAAPSTLLLRFFMVLSQWKWPSAIQLCKTYDAKLGLEIWNASVGGNRYQVMPILTPAYPSMNSSYNVSVHSLNVMKEEFSRGLEMVKAIINDGGA--DWSRLFEPSEYFVDHQHYLAVEMYVSDPADEGAWCGFAESRLRKFIESLAYHNPQLCRLRVYPKKFPLSFVNNDAGKDEKHGVTYFVAFDVDKQKIR-GKEVRLDSAVEDFKINSLYRWPKRV---EGMDVKITPLGWKGLPEHVFEDLGGLKTA 501          
BLAST of mRNA_P-fluviatile_contig11.1026.1 vs. uniprot
Match: A0A6G0WNJ7_9STRA (Poly(A) polymerase n=1 Tax=Aphanomyces euteiches TaxID=100861 RepID=A0A6G0WNJ7_9STRA)

HSP 1 Score: 454 bits (1167), Expect = 2.860e-144
Identity = 243/500 (48.60%), Postives = 327/500 (65.40%), Query Frame = 2
Query:  353 AGGHVPRPMYEPINTSGPSKADLELDAKLEAFMADNVPVMTSADLRRREQVLGKLRTMFLQWVIDSALEAGMSEEAAKAAGGKIYTSGSYRLRIHEPNSDIDAICVAPQFCTSELFFTTLKARLMENPLVTNVNAIETAAVPIITFDFDEVNIDLGLACLPVPTVPPTLDIDDDQVLDGVDRPTEKCVNGPRVTNMIYRLIPNYDSFLPVVRCVRKWAKSRGLYSNKMGYLGGVNFNIMVAFACQMYPNAGPSTLLHRFFKLMAGWNWPNAIQLVQPYDAELGLEVWNAR--ANSWHCMPIITPAYPVMNSSANVSRFTLDVMTSEFSRGLEVVNGIIKEKGSLSSFSQLFEPSDFFIRYNHYLAVDMMASSEDEHRAWVGWVESRLRKLVEGLGLSGLPFKRVHLWPKRFDGCVGGGVGGELPAHCVAYFVGLEIDPRRSKKGAVLDVDKVTTRFRMESVGHATNRGFHRPGMDVMATAQTWKELPPFVFESIGGTAAA 1846
            A G V    Y+PI T+ P   DLE+ AKL+A+M  N P  T  +++RR  +LG LR +F  WV D  ++ G+ EE A  AGG I  SGSYRL ++EP +DID ICVAP+F T E FF++LK  L+++  VTN+ AIE A VPI+TFD++E+NIDL +A L   ++P  L I DD +LDGVD  TEK +NGPRVT ++ +L PN +SF+ V+R VR+WAK RGLYSNK+GYLGGVN+ I+V F  Q+YP A PSTLL RFF +++ W WP+AIQL + YDA+LGLEVWNA   AN +  MPI+TPAYP MNSS NVS  +L+VM  EF+RGL+VV  II   G+   +S LFEPS++F+ + HYLAV++     ++ +AW G+ ESRLRK +E L        R+ ++PK+F        G E   H   YFV  ++D ++ + G  + +D     F++ S+     R     GMDV  T   WK LP  VF+ +GG  AA
Sbjct:    8 APGTVLEQAYKPIRTTPPEPIDLEMSAKLQAYMDKNFPTETEKNIQRRTIILGDLRRIFRAWVKDVCIQRGVLEEIANEAGGIILVSGSYRLGVNEPGADIDTICVAPKFVTREDFFSSLKDILLKHSKVTNLVAIEGAVVPILTFDYEEINIDLQIAILDRSSIPDDLRILDDNILDGVDTATEKSLNGPRVTELMIKLTPNRESFIAVLRIVRRWAKRRGLYSNKLGYLGGVNWCILVCFINQLYPTAAPSTLLLRFFMVLSQWKWPSAIQLCKTYDAKLGLEVWNANFGANRFQVMPILTPAYPSMNSSYNVSIHSLNVMKEEFTRGLDVVKSIINNGGA--DWSPLFEPSEYFVDHQHYLAVEIYTIDPNDQQAWCGYAESRLRKFIESLAYHNPQLCRLRVYPKKFPLSFVNEPGKE-EKHGATYFVAFDVDKQKIR-GKEVRLDSAVEDFKINSLYRWPKRV---EGMDVKITPLGWKALPEHVFDDMGGLKAA 500          
BLAST of mRNA_P-fluviatile_contig11.1026.1 vs. uniprot
Match: A0A067BQE6_SAPPC (Poly(A) polymerase n=2 Tax=Saprolegnia TaxID=4769 RepID=A0A067BQE6_SAPPC)

HSP 1 Score: 452 bits (1164), Expect = 1.020e-143
Identity = 240/502 (47.81%), Postives = 322/502 (64.14%), Query Frame = 2
Query:  347 SRAGGHVPRPMYEPINTSGPSKADLELDAKLEAFMADNVPVMTSADLRRREQVLGKLRTMFLQWVIDSALEAGMSEEAAKAAGGKIYTSGSYRLRIHEPNSDIDAICVAPQFCTSELFFTTLKARLMENPLVTNVNAIETAAVPIITFDFDEVNIDLGLACLPVPTVPPTLDIDDDQVLDGVDRPTEKCVNGPRVTNMIYRLIPNYDSFLPVVRCVRKWAKSRGLYSNKMGYLGGVNFNIMVAFACQMYPNAGPSTLLHRFFKLMAGWNWPNAIQLVQPYDAELGLEVWNARA--NSWHCMPIITPAYPVMNSSANVSRFTLDVMTSEFSRGLEVVNGIIKEKGSLSSFSQLFEPSDFFIRYNHYLAVDMMASSEDEHRAWVGWVESRLRKLVEGLGLSGLPFKRVHLWPKRFDGCVGGGVGGELPAHCVAYFVGLEIDPRRSKKGAVLDVDKVTTRFRMESVGHATNRGFHRPGMDVMATAQTWKELPPFVFESIGGTAAA 1846
            S A   V    Y+ I T+ P   D+E+  KL+A+M ++ P+    +++RR  +LG+LR++F  WV D  L+ G+ EE A  AGG I  SGSYRL ++EP +DID ICVAP+F T + FF++LK  L+++  VTN+ AIE A VPI+TFD++E+NIDL +A L   ++P  L++ DD +L GVD PTEK +NGPRVT ++ +L PN  SF+ V+R VR+WAK RGLYSNKMGYLGGVN+ I+V F  Q+YP A PSTLL RFF ++  W WP AIQL + +DA LGLEVWNA    N +  MPI+TPAYP MNSS NVS  +L VM  EF RGLEVV  IIK+ G    +S LFEPS +F+ + HYLA+++  S+ ++  AW G+ ESRLRKLV+ L        R+ + PK+F  C       E   H  AYF+  ++D  + +    + ++     F+M S+     R     GMDV  T   WK LP FVFE IGG   A
Sbjct:    5 SAAAAMVLEQAYKAIRTTPPEAVDVEMSEKLQAYMDEHFPMEVEKNIQRRTIILGELRSIFRAWVKDVCLKRGLPEEIANEAGGIILVSGSYRLGVNEPGADIDTICVAPKFVTRDDFFSSLKDILLKHAKVTNLVAIEGAIVPILTFDYEEINIDLQIAILERNSIPENLNVLDDNILVGVDTPTEKSLNGPRVTELVIKLTPNRSSFIAVLRIVRRWAKKRGLYSNKMGYLGGVNWCILVCFINQLYPTAAPSTLLLRFFMILTNWKWPLAIQLCKTHDAHLGLEVWNANVGGNKYQVMPILTPAYPSMNSSYNVSVHSLSVMKEEFKRGLEVVKTIIKDGGR--DWSALFEPSPYFVDHQHYLAIEIYTSNVEDQAAWCGYAESRLRKLVDSLAYYNPQLCRLRVHPKKFPLCFASDPDDEK--HGGAYFLAFDVDKLKLRNSKEIHLNGAVDDFKMNSLYRWPKRV---DGMDVKITPVVWKNLPEFVFEDIGGKKIA 499          
BLAST of mRNA_P-fluviatile_contig11.1026.1 vs. uniprot
Match: A0A1V9ZUP3_9STRA (Poly(A) polymerase n=1 Tax=Achlya hypogyna TaxID=1202772 RepID=A0A1V9ZUP3_9STRA)

HSP 1 Score: 449 bits (1156), Expect = 1.980e-142
Identity = 238/491 (48.47%), Postives = 318/491 (64.77%), Query Frame = 2
Query:  380 YEPINTSGPSKADLELDAKLEAFMADNVPVMTSADLRRREQVLGKLRTMFLQWVIDSALEAGMSEEAAKAAGGKIYTSGSYRLRIHEPNSDIDAICVAPQFCTSELFFTTLKARLMENPLVTNVNAIETAAVPIITFDFDEVNIDLGLACLPVPTVPPTLDIDDDQVLDGVDRPTEKCVNGPRVTNMIYRLIPNYDSFLPVVRCVRKWAKSRGLYSNKMGYLGGVNFNIMVAFACQMYPNAGPSTLLHRFFKLMAGWNWPNAIQLVQPYDAELGLEVWNARA--NSWHCMPIITPAYPVMNSSANVSRFTLDVMTSEFSRGLEVVNGIIKEKGSLSSFSQLFEPSDFFIRYNHYLAVDMMASSEDEHRAWVGWVESRLRKLVEGLGLSGLPFKRVHLWPKRFDGCVGGGVGGELPAHCVAYFVGLEIDPRRSKKGAVLDVDKVTTRFRMESVGHATNRGFHRPGMDVMATAQTWKELPPFVFESIGGTAAA 1846
            Y+ I T+ P   DLEL  KL+++M ++ P+    +++RR  +LG+LR++F  WV D  L  G+ EE A  AGG I  SGSYRL ++EP +DID ICVAP+F T E FFT+LK  L+++  VTN+ AIE A VPI+TFD++E+NIDL +A L   ++P  L++ DD +  GVD  TEK +NGPRVT ++ +L PN  SF+ V+R VR+WAK RGLYSNKMGYLGGVN+ I+V F  Q+YP A PSTLL RFF ++  W WP AIQL + +DA+LGLEVWNA    N +  MPI+TPAYP MNSS NVS  +L+VM  EF RGLEVV  IIK+ GS   +S LFEP+ +F+ + HYLAV++  S+ D+  AW G+ ESRLRKLV+ L        R+ + PK+F          E P H   YFV  ++D  + +    + ++     F++ S+     R     GMDV  T   WK LP FVFE +GG   A
Sbjct:   15 YKAIRTTPPEPVDLELSTKLQSYMDEHFPMEVEKNIQRRTIILGELRSIFRAWVKDVCLTRGLPEEIANEAGGIILVSGSYRLGVNEPGADIDTICVAPKFVTREDFFTSLKDILLKHVKVTNLVAIEGAVVPILTFDYEEINIDLQIAILERNSIPDNLNVLDDNIFVGVDTATEKSLNGPRVTELVIKLTPNRASFIAVLRIVRRWAKKRGLYSNKMGYLGGVNYCILVCFINQLYPTAAPSTLLLRFFMILTNWKWPLAIQLCKTHDAKLGLEVWNANVGGNKYQVMPILTPAYPSMNSSYNVSVHSLNVMKEEFKRGLEVVKTIIKDGGS--DWSALFEPTPYFVDHQHYLAVEIFTSNPDDSAAWCGYAESRLRKLVDSLAYYNPQLCRLRVHPKKFP-LTYVNDDPEDPKHGGTYFVAFDVDKLKLRNSKEIHLNGAVDDFKLTSLYRWPKRV---EGMDVKITPVVWKNLPEFVFEDLGGKKVA 499          
BLAST of mRNA_P-fluviatile_contig11.1026.1 vs. uniprot
Match: A0A024TSM9_9STRA (Poly(A) polymerase n=2 Tax=Aphanomyces invadans TaxID=157072 RepID=A0A024TSM9_9STRA)

HSP 1 Score: 446 bits (1148), Expect = 3.090e-141
Identity = 240/505 (47.52%), Postives = 322/505 (63.76%), Query Frame = 2
Query:  353 AGGHVPRPMYEPINTSGPSKADLELDAKLEAFMADNVPVMTSADLRRREQVLGKLRTMFLQWVIDSALEAGMSEEAAKAAGGKIYTSGSYRLRIHEPNSDIDAICVAPQFCTSELFFTTLKARLMENPLVTNVNAIETAAVPIITFDFDEVNIDLGLACLPVPTVPPTLDIDDDQVLDGVDRPTEKCVNGPRVTNMIYRLIPNYDSFLPVVRCVRKWAKSRGLYSNKMGYLGGVNFNIMVAFACQMYPNAGPSTLLHRFFKLMAGWNWPNAIQLVQPYDAELGLEVWNARA--NSWHCMPIITPAYPVMNSSANVSRFTLDVMTSEFSRGLEVVNGIIKEKGSLSSFSQLFEPSDFFIRYNHYLAVDMMASSEDEHRAWVGWVESRLRKLVEGLGLSGLPFKRVHLWPKRFDGCVGGGVGGELPA-----HCVAYFVGLEIDPRRSKKGAVLDVDKVTTRFRMESVGHATNRGFHRPGMDVMATAQTWKELPPFVFESIGGTAAA 1846
            A G V    Y+PI  + P  ADLEL AKLEAFMA + P  T  +++RR  +L +LR +F  WV D  L+ G+ EE A  AGG +  SGSYRL ++EP +DID  CVAP+F T E FF++LK  L++NP VTN+ AIE A VPI+TFD++++NIDL +A L   ++P  ++I DD +L GVD  TEK +NGPRVT ++ RL PN  SF+ V+R VR+WAK RGLYSNK+GYLGGVN+ I+V F  Q+YP A PSTLL RFF +++ W WP+AIQL + YDA+LGLE+WNA    N +  MPI+TPAYP MNSS NVS  +L VM  EFSRGLE V  II   G+   ++ LF PS++F+ + +YLAV+M  +  ++  AW G+ ESRLRK +E L        R+ ++PK+F       V   +P      H   YFV  ++D +   +G  + +D     F++ S+     R     GMD+  T   WK LP  VFE +GG   A
Sbjct:    8 APGTVLEQAYKPIRITPPDPADLELSAKLEAFMASHFPTETEKNIQRRTMILAELRRIFRAWVKDVCLQRGVLEEIANEAGGIVLVSGSYRLGVNEPGADIDTNCVAPKFVTREDFFSSLKDILLKNPKVTNLVAIEGATVPILTFDYEDINIDLQIAILDRSSIPDNINILDDNILSGVDSATEKSLNGPRVTELMIRLTPNRSSFIAVLRIVRRWAKRRGLYSNKLGYLGGVNWCILVCFINQLYPTAAPSTLLLRFFMVLSQWKWPSAIQLCKTYDAKLGLEIWNANVGGNRFQVMPILTPAYPSMNSSYNVSVHSLSVMKEEFSRGLETVKAIIASGGT--DWAPLFAPSEYFVDHQYYLAVEMYVADPNDQGAWCGFAESRLRKFIETLAYHNPQLCRLRVYPKKFPLFF---VNESIPLDQDKKHGCTYFVAFDVD-KTKLRGKEVRLDSAVDDFKVNSLYRWPKRV---EGMDIRITPLGWKSLPESVFEEMGGLKVA 503          
BLAST of mRNA_P-fluviatile_contig11.1026.1 vs. uniprot
Match: A0A1W0AAC0_9STRA (Poly(A) polymerase n=1 Tax=Thraustotheca clavata TaxID=74557 RepID=A0A1W0AAC0_9STRA)

HSP 1 Score: 445 bits (1145), Expect = 4.360e-141
Identity = 238/491 (48.47%), Postives = 319/491 (64.97%), Query Frame = 2
Query:  380 YEPINTSGPSKADLELDAKLEAFMADNVPVMTSADLRRREQVLGKLRTMFLQWVIDSALEAGMSEEAAKAAGGKIYTSGSYRLRIHEPNSDIDAICVAPQFCTSELFFTTLKARLMENPLVTNVNAIETAAVPIITFDFDEVNIDLGLACLPVPTVPPTLDIDDDQVLDGVDRPTEKCVNGPRVTNMIYRLIPNYDSFLPVVRCVRKWAKSRGLYSNKMGYLGGVNFNIMVAFACQMYPNAGPSTLLHRFFKLMAGWNWPNAIQLVQPYDAELGLEVWNAR--ANSWHCMPIITPAYPVMNSSANVSRFTLDVMTSEFSRGLEVVNGIIKEKGSLSSFSQLFEPSDFFIRYNHYLAVDMMASSEDEHRAWVGWVESRLRKLVEGLGLSGLPFKRVHLWPKRFDGCVGGGVGGELPAHCVAYFVGLEIDPRRSKKGAVLDVDKVTTRFRMESVGHATNRGFHRPGMDVMATAQTWKELPPFVFESIGGTAAA 1846
            Y+ I T+ P  ADLEL AKL+A+M ++ P+    +++RR  +LG+LR++F  WV D  L+ G+ EE A  AGG I  SGSYRL ++EP +DID ICVAP+F T E FFT+LK  L+++  VTN+ AIE A VPI+TFD++E+NIDL +A L   ++P  +++ DDQ+L GVD  TEK +NGPRVT ++ +L PN  SF+ V+R VR+WAK RGLYSNKMGYLGGVN+ I+V F  Q+YP A PSTLL RFF ++  W WP AIQL +  DA LGLEVWNA    N +  MPI+TPAYP MNSS +VS  +L VM  EF RGLEVV  II+  G+   +S LFEPS FF+ + HYL V++    E +  AW G+VESRLR+L+E L        R+ + PK++       VGGE   H   YFV  ++D  + +    + ++     F+ + +    N   +  GM+   T  TWK LP FVFE +GG   A
Sbjct:    7 YKAIRTTPPEPADLELSAKLQAYMDEHYPMELDVNIQRRTIILGELRSIFRAWVKDVCLKRGLPEEIANEAGGIILVSGSYRLGVNEPGADIDTICVAPKFVTREDFFTSLKEILLKHAKVTNLVAIEGALVPILTFDYEEINIDLQIAILDRNSIPDNINVLDDQILSGVDPATEKSLNGPRVTELVIKLTPNRASFIAVLRIVRRWAKRRGLYSNKMGYLGGVNYCILVCFVNQLYPTAAPSTLLLRFFMILTNWKWPLAIQLCKTIDANLGLEVWNASNGTNKYQVMPILTPAYPSMNSSYSVSSHSLSVMKEEFKRGLEVVKTIIENGGT--DWSPLFEPSPFFVDHQHYLIVEVFTYDEKDSAAWCGYVESRLRRLIESLAKHNPQLCRLRVHPKKYPLTF---VGGE-EKHGGTYFVAFDVDKLKLRNQKEVHLNVAVDDFKAKHLYGWQN---YVGGMESKITPVTWKNLPEFVFEELGGRKPA 488          
BLAST of mRNA_P-fluviatile_contig11.1026.1 vs. uniprot
Match: W4GFD2_9STRA (Poly(A) polymerase n=11 Tax=Aphanomyces astaci TaxID=112090 RepID=W4GFD2_9STRA)

HSP 1 Score: 444 bits (1142), Expect = 1.750e-140
Identity = 236/500 (47.20%), Postives = 320/500 (64.00%), Query Frame = 2
Query:  353 AGGHVPRPMYEPINTSGPSKADLELDAKLEAFMADNVPVMTSADLRRREQVLGKLRTMFLQWVIDSALEAGMSEEAAKAAGGKIYTSGSYRLRIHEPNSDIDAICVAPQFCTSELFFTTLKARLMENPLVTNVNAIETAAVPIITFDFDEVNIDLGLACLPVPTVPPTLDIDDDQVLDGVDRPTEKCVNGPRVTNMIYRLIPNYDSFLPVVRCVRKWAKSRGLYSNKMGYLGGVNFNIMVAFACQMYPNAGPSTLLHRFFKLMAGWNWPNAIQLVQPYDAELGLEVWNARA--NSWHCMPIITPAYPVMNSSANVSRFTLDVMTSEFSRGLEVVNGIIKEKGSLSSFSQLFEPSDFFIRYNHYLAVDMMASSEDEHRAWVGWVESRLRKLVEGLGLSGLPFKRVHLWPKRFDGCVGGGVGGELPAHCVAYFVGLEIDPRRSKKGAVLDVDKVTTRFRMESVGHATNRGFHRPGMDVMATAQTWKELPPFVFESIGGTAAA 1846
            A G V    Y+PI  + P   D+EL AKLEAFMA + P  T  +++RR  +L +LR +F  WV D  L+ G+ EE A  AGG +  SGSYRL ++EP +DID  CVAP+F T E FF++LK  L+++P VTN+ AIE A VPI+TFD++++NIDL +A L + ++P  ++I DD +L GVD  TEK +NGPRVT ++  L PN  SF+ V+R VR+WAK RGLYSNK+GYLGGVN+ I+V F  Q+YP A PSTLL RFF +++ W WP+AIQL + YDA+LGLE+WNA    N +  MPI+TPAYP MNSS NVS  +L VM  EF+RG  +V  II   G+   ++ LF+PS++F+ + HYLAV+M  +   +  AW G+ ESRLRK +E L        R+ ++PK+FD C     G         YFV  ++D +   +G  + +D     F++ S+     R     GMDV  TA  WK LP  VF  +GG  AA
Sbjct:   10 APGTVLEQAYKPIRMTPPEPVDVELSAKLEAFMASHFPTETEKNIQRRTMILAELRRIFRAWVKDVCLQRGVLEEIANEAGGTVLVSGSYRLGVNEPGADIDTNCVAPKFVTREDFFSSLKEILLKHPKVTNLVAIEGATVPILTFDYEDINIDLQIAILNLSSIPDNINILDDNILRGVDSATEKSLNGPRVTELMINLTPNRSSFIAVLRIVRRWAKRRGLYSNKLGYLGGVNWCILVCFINQLYPTAAPSTLLLRFFMVLSQWKWPSAIQLCKTYDAKLGLEIWNANVGGNRFQVMPILTPAYPSMNSSYNVSVHSLSVMKEEFARGYAMVKTIIAAGGA--DWAPLFDPSEYFVDHQHYLAVEMYVADAADQGAWCGFAESRLRKFIESLAYHNPQLCRLRVYPKKFDLCSEDAQG----KFGCTYFVAFDVD-KTKLRGKEVRLDSAVDDFKLNSLYRWPKRV---DGMDVRITALGWKSLPEAVFHDMGGLKAA 499          
The following BLAST results are available for this feature:
BLAST of mRNA_P-fluviatile_contig11.1026.1 vs. uniprot
Analysis Date: 2022-09-19 (Diamond blastx: OGS1.0 vs UniRef90)
Total hits: 25
Match NameE-valueIdentityDescription
A0A6H5JKW8_9PHAE0.000e+080.94Polynucleotide adenylyltransferase n=1 Tax=Ectocar... [more]
D7FWT4_ECTSI4.610e-27162.91Polynucleotide adenylyltransferase n=1 Tax=Ectocar... [more]
A0A835ZG61_9STRA6.150e-17354.23Polynucleotide adenylyltransferase n=1 Tax=Tribone... [more]
A0A485KNG9_9STRA7.780e-14548.20Poly(A) polymerase n=1 Tax=Aphanomyces stellatus T... [more]
A0A6G0WNJ7_9STRA2.860e-14448.60Poly(A) polymerase n=1 Tax=Aphanomyces euteiches T... [more]
A0A067BQE6_SAPPC1.020e-14347.81Poly(A) polymerase n=2 Tax=Saprolegnia TaxID=4769 ... [more]
A0A1V9ZUP3_9STRA1.980e-14248.47Poly(A) polymerase n=1 Tax=Achlya hypogyna TaxID=1... [more]
A0A024TSM9_9STRA3.090e-14147.52Poly(A) polymerase n=2 Tax=Aphanomyces invadans Ta... [more]
A0A1W0AAC0_9STRA4.360e-14148.47Poly(A) polymerase n=1 Tax=Thraustotheca clavata T... [more]
W4GFD2_9STRA1.750e-14047.20Poly(A) polymerase n=11 Tax=Aphanomyces astaci Tax... [more]

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Alignments
The following features are aligned
Aligned FeatureFeature TypeAlignment Location
P-fluviatile_contig11contigP-fluviatile_contig11:504956..517768 -
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 score780.8
Seed ortholog evalue5.4e-223
Seed eggNOG ortholog2880.D7FWT4
KEGG koko:K09254,ko:K14376
KEGG Pathwayko03015,ko04014,ko04624,ko05202,ko05203,map03015,map04014,map04624,map05202,map05203
GOsGO:0000003,GO:0002682,GO:0002683,GO:0003006,GO:0003674,GO:0003824,GO:0004652,GO:0005575,GO:0005622,GO:0005623,GO:0005634,GO:0005654,GO:0005847,GO:0005849,GO:0006139,GO:0006378,GO:0006396,GO:0006397,GO:0006725,GO:0006807,GO:0007275,GO:0008150,GO:0008152,GO:0008285,GO:0009653,GO:0009791,GO:0009908,GO:0009987,GO:0010467,GO:0016070,GO:0016071,GO:0016740,GO:0016772,GO:0016779,GO:0022414,GO:0031123,GO:0031124,GO:0031347,GO:0031348,GO:0031974,GO:0031981,GO:0032501,GO:0032502,GO:0032991,GO:0034641,GO:0042127,GO:0043170,GO:0043226,GO:0043227,GO:0043229,GO:0043231,GO:0043233,GO:0043631,GO:0044237,GO:0044238,GO:0044422,GO:0044424,GO:0044428,GO:0044446,GO:0044451,GO:0044464,GO:0045088,GO:0045824,GO:0046483,GO:0048366,GO:0048367,GO:0048437,GO:0048438,GO:0048441,GO:0048444,GO:0048446,GO:0048449,GO:0048451,GO:0048465,GO:0048519,GO:0048523,GO:0048583,GO:0048585,GO:0048608,GO:0048646,GO:0048731,GO:0048827,GO:0048856,GO:0050776,GO:0050777,GO:0050789,GO:0050794,GO:0061458,GO:0065007,GO:0070013,GO:0070566,GO:0071704,GO:0080134,GO:0090304,GO:0090567,GO:0090696,GO:0090697,GO:0090698,GO:0099402,GO:1901360,GO:1905392,GO:1905393
EggNOG free text desc.interspecies interaction between organisms
EggNOG OGsCOG5186@1,KOG2245@2759
EC2.7.7.19
COG Functional cat.A
Best tax levelEukaryota
Best eggNOG OGNA|NA|NA
BRITEko00000,ko00001,ko01000,ko03000,ko03019
Hectar predicted targeting categoryother localisation
Exons17
Model size3041
Cds size2109
Stop1
Start1
Relationships

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

Feature NameUnique NameSpeciesTypePosition
1622815440.6848762-UTR-P-fluviatile_contig11:504955..5056161622815440.6848762-UTR-P-fluviatile_contig11:504955..505616Porterinema fluviatile SAG_2381UTRP-fluviatile_contig11 504956..505616 -
1693561866.5428762-UTR-P-fluviatile_contig11:504955..5056161693561866.5428762-UTR-P-fluviatile_contig11:504955..505616Porterinema fluviatile SAG_2381UTRP-fluviatile_contig11 504956..505616 -
1622815440.8849025-UTR-P-fluviatile_contig11:516616..5168261622815440.8849025-UTR-P-fluviatile_contig11:516616..516826Porterinema fluviatile SAG_2381UTRP-fluviatile_contig11 516617..516826 -
1693561866.821725-UTR-P-fluviatile_contig11:516616..5168261693561866.821725-UTR-P-fluviatile_contig11:516616..516826Porterinema fluviatile SAG_2381UTRP-fluviatile_contig11 516617..516826 -
1622815440.9015281-UTR-P-fluviatile_contig11:517707..5177681622815440.9015281-UTR-P-fluviatile_contig11:517707..517768Porterinema fluviatile SAG_2381UTRP-fluviatile_contig11 517708..517768 -
1693561866.8306797-UTR-P-fluviatile_contig11:517707..5177681693561866.8306797-UTR-P-fluviatile_contig11:517707..517768Porterinema fluviatile SAG_2381UTRP-fluviatile_contig11 517708..517768 -


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

Feature NameUnique NameSpeciesTypePosition
1622815440.695963-CDS-P-fluviatile_contig11:505616..5057691622815440.695963-CDS-P-fluviatile_contig11:505616..505769Porterinema fluviatile SAG_2381CDSP-fluviatile_contig11 505617..505769 -
1693561866.5563762-CDS-P-fluviatile_contig11:505616..5057691693561866.5563762-CDS-P-fluviatile_contig11:505616..505769Porterinema fluviatile SAG_2381CDSP-fluviatile_contig11 505617..505769 -
1622815440.707259-CDS-P-fluviatile_contig11:506682..5069041622815440.707259-CDS-P-fluviatile_contig11:506682..506904Porterinema fluviatile SAG_2381CDSP-fluviatile_contig11 506683..506904 -
1693561866.5726562-CDS-P-fluviatile_contig11:506682..5069041693561866.5726562-CDS-P-fluviatile_contig11:506682..506904Porterinema fluviatile SAG_2381CDSP-fluviatile_contig11 506683..506904 -
1622815440.7186959-CDS-P-fluviatile_contig11:507454..5076611622815440.7186959-CDS-P-fluviatile_contig11:507454..507661Porterinema fluviatile SAG_2381CDSP-fluviatile_contig11 507455..507661 -
1693561866.5888944-CDS-P-fluviatile_contig11:507454..5076611693561866.5888944-CDS-P-fluviatile_contig11:507454..507661Porterinema fluviatile SAG_2381CDSP-fluviatile_contig11 507455..507661 -
1622815440.7277339-CDS-P-fluviatile_contig11:508376..5084751622815440.7277339-CDS-P-fluviatile_contig11:508376..508475Porterinema fluviatile SAG_2381CDSP-fluviatile_contig11 508377..508475 -
1693561866.600058-CDS-P-fluviatile_contig11:508376..5084751693561866.600058-CDS-P-fluviatile_contig11:508376..508475Porterinema fluviatile SAG_2381CDSP-fluviatile_contig11 508377..508475 -
1622815440.7362912-CDS-P-fluviatile_contig11:509164..5093501622815440.7362912-CDS-P-fluviatile_contig11:509164..509350Porterinema fluviatile SAG_2381CDSP-fluviatile_contig11 509165..509350 -
1693561866.6133564-CDS-P-fluviatile_contig11:509164..5093501693561866.6133564-CDS-P-fluviatile_contig11:509164..509350Porterinema fluviatile SAG_2381CDSP-fluviatile_contig11 509165..509350 -
1622815440.7453792-CDS-P-fluviatile_contig11:509698..5097891622815440.7453792-CDS-P-fluviatile_contig11:509698..509789Porterinema fluviatile SAG_2381CDSP-fluviatile_contig11 509699..509789 -
1693561866.623484-CDS-P-fluviatile_contig11:509698..5097891693561866.623484-CDS-P-fluviatile_contig11:509698..509789Porterinema fluviatile SAG_2381CDSP-fluviatile_contig11 509699..509789 -
1622815440.7633853-CDS-P-fluviatile_contig11:510335..5104151622815440.7633853-CDS-P-fluviatile_contig11:510335..510415Porterinema fluviatile SAG_2381CDSP-fluviatile_contig11 510336..510415 -
1693561866.633003-CDS-P-fluviatile_contig11:510335..5104151693561866.633003-CDS-P-fluviatile_contig11:510335..510415Porterinema fluviatile SAG_2381CDSP-fluviatile_contig11 510336..510415 -
1622815440.7744129-CDS-P-fluviatile_contig11:510760..5108061622815440.7744129-CDS-P-fluviatile_contig11:510760..510806Porterinema fluviatile SAG_2381CDSP-fluviatile_contig11 510761..510806 -
1693561866.6453888-CDS-P-fluviatile_contig11:510760..5108061693561866.6453888-CDS-P-fluviatile_contig11:510760..510806Porterinema fluviatile SAG_2381CDSP-fluviatile_contig11 510761..510806 -
1622815440.7849877-CDS-P-fluviatile_contig11:511184..5112731622815440.7849877-CDS-P-fluviatile_contig11:511184..511273Porterinema fluviatile SAG_2381CDSP-fluviatile_contig11 511185..511273 -
1693561866.653592-CDS-P-fluviatile_contig11:511184..5112731693561866.653592-CDS-P-fluviatile_contig11:511184..511273Porterinema fluviatile SAG_2381CDSP-fluviatile_contig11 511185..511273 -
1622815440.7988064-CDS-P-fluviatile_contig11:512247..5123671622815440.7988064-CDS-P-fluviatile_contig11:512247..512367Porterinema fluviatile SAG_2381CDSP-fluviatile_contig11 512248..512367 -
1693561866.704316-CDS-P-fluviatile_contig11:512247..5123671693561866.704316-CDS-P-fluviatile_contig11:512247..512367Porterinema fluviatile SAG_2381CDSP-fluviatile_contig11 512248..512367 -
1622815440.8148577-CDS-P-fluviatile_contig11:513027..5131621622815440.8148577-CDS-P-fluviatile_contig11:513027..513162Porterinema fluviatile SAG_2381CDSP-fluviatile_contig11 513028..513162 -
1693561866.7165399-CDS-P-fluviatile_contig11:513027..5131621693561866.7165399-CDS-P-fluviatile_contig11:513027..513162Porterinema fluviatile SAG_2381CDSP-fluviatile_contig11 513028..513162 -
1622815440.827458-CDS-P-fluviatile_contig11:513788..5138631622815440.827458-CDS-P-fluviatile_contig11:513788..513863Porterinema fluviatile SAG_2381CDSP-fluviatile_contig11 513789..513863 -
1693561866.7268784-CDS-P-fluviatile_contig11:513788..5138631693561866.7268784-CDS-P-fluviatile_contig11:513788..513863Porterinema fluviatile SAG_2381CDSP-fluviatile_contig11 513789..513863 -
1622815440.8458521-CDS-P-fluviatile_contig11:514471..5145761622815440.8458521-CDS-P-fluviatile_contig11:514471..514576Porterinema fluviatile SAG_2381CDSP-fluviatile_contig11 514472..514576 -
1693561866.735433-CDS-P-fluviatile_contig11:514471..5145761693561866.735433-CDS-P-fluviatile_contig11:514471..514576Porterinema fluviatile SAG_2381CDSP-fluviatile_contig11 514472..514576 -
1622815440.8557072-CDS-P-fluviatile_contig11:515030..5151231622815440.8557072-CDS-P-fluviatile_contig11:515030..515123Porterinema fluviatile SAG_2381CDSP-fluviatile_contig11 515031..515123 -
1693561866.789813-CDS-P-fluviatile_contig11:515030..5151231693561866.789813-CDS-P-fluviatile_contig11:515030..515123Porterinema fluviatile SAG_2381CDSP-fluviatile_contig11 515031..515123 -
1622815440.864577-CDS-P-fluviatile_contig11:515863..5160071622815440.864577-CDS-P-fluviatile_contig11:515863..516007Porterinema fluviatile SAG_2381CDSP-fluviatile_contig11 515864..516007 -
1693561866.8044808-CDS-P-fluviatile_contig11:515863..5160071693561866.8044808-CDS-P-fluviatile_contig11:515863..516007Porterinema fluviatile SAG_2381CDSP-fluviatile_contig11 515864..516007 -
1622815440.8738182-CDS-P-fluviatile_contig11:516352..5166161622815440.8738182-CDS-P-fluviatile_contig11:516352..516616Porterinema fluviatile SAG_2381CDSP-fluviatile_contig11 516353..516616 -
1693561866.813355-CDS-P-fluviatile_contig11:516352..5166161693561866.813355-CDS-P-fluviatile_contig11:516352..516616Porterinema fluviatile SAG_2381CDSP-fluviatile_contig11 516353..516616 -


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

Feature NameUnique NameSpeciesTypePosition
mRNA_P-fluviatile_contig11.1026.1prot_P-fluviatile_contig11.1026.1Porterinema fluviatile SAG_2381polypeptideP-fluviatile_contig11 505617..516616 -


Sequences
The following sequences are available for this feature:

protein sequence of mRNA_P-fluviatile_contig11.1026.1

>prot_P-fluviatile_contig11.1026.1 ID=prot_P-fluviatile_contig11.1026.1|Name=mRNA_P-fluviatile_contig11.1026.1|organism=Porterinema fluviatile SAG_2381|type=polypeptide|length=703bp
MAGRGSGPGAGARPIGSTGAMVGGKSRAGGHVPRPMYEPINTSGPSKADL
ELDAKLEAFMADNVPVMTSADLRRREQVLGKLRTMFLQWVIDSALEAGMS
EEAAKAAGGKIYTSGSYRLRIHEPNSDIDAICVAPQFCTSELFFTTLKAR
LMENPLVTNVNAIETAAVPIITFDFDEVNIDLGLACLPVPTVPPTLDIDD
DQVLDGVDRPTEKCVNGPRVTNMIYRLIPNYDSFLPVVRCVRKWAKSRGL
YSNKMGYLGGVNFNIMVAFACQMYPNAGPSTLLHRFFKLMAGWNWPNAIQ
LVQPYDAELGLEVWNARANSWHCMPIITPAYPVMNSSANVSRFTLDVMTS
EFSRGLEVVNGIIKEKGSLSSFSQLFEPSDFFIRYNHYLAVDMMASSEDE
HRAWVGWVESRLRKLVEGLGLSGLPFKRVHLWPKRFDGCVGGGVGGELPA
HCVAYFVGLEIDPRRSKKGAVLDVDKVTTRFRMESVGHATNRGFHRPGMD
VMATAQTWKELPPFVFESIGGTAAAAAERKRRRKVERDRLAAIAAAAPKP
EQLRAAKEAEAAVAAATAAAAAATASAEASKTGSAVNGQDSAAATVPPIP
AAVAVKAEAAPEGEEEGEGDLEEEGATRLVLSGARAALALPGGQKRKRAV
DVVDLVDLAPVVPSWKTPSAALLSGCGGVGMKRLTVELLPLHSRSDAARP
PV*
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mRNA from alignment at P-fluviatile_contig11:504956..517768-

Legend: UTRpolypeptideCDS
Hold the cursor over a type above to highlight its positions in the sequence below.
>mRNA_P-fluviatile_contig11.1026.1 ID=mRNA_P-fluviatile_contig11.1026.1|Name=mRNA_P-fluviatile_contig11.1026.1|organism=Porterinema fluviatile SAG_2381|type=mRNA|length=12813bp|location=Sequence derived from alignment at P-fluviatile_contig11:504956..517768- (Porterinema fluviatile SAG_2381)
CGTTTCTCCCTTTGGCGATCGACGAGGCAAGAGTGTGGTATTATTTCGGA ATTACAACCGGGTGAGTTTTGTATCTTTTATGGGGGGAGGGTTGACGGCG TATGGCAGCGTAAGGTAAATTGATATAACTCTCTTGCGAATGTGTCTCCG TAGATCTCTGTAGACCTCTTGCCTCTACCATTTTGGGACAGTCCGGGTGT GCAGTGGTGAAGGATATTACCCCTCACCCTCACCTCTCTTGAGTCGGGCG TTCGTCTTGTGGCGAAATCTGATTTTAACCCGCAGAGTTTCTACGCCGTT CGCCCGCCACGCGCACTCGCGTATCTGCGGCTGCCGTCTGATTGTCATCT CCGTAGACCCCTCGCTGTAAGGTAGCTCTTGGGCCCGGCCCGTACGTACA CTTGTCGTATGGTCGCCCATGGGCACTTTCACAAAAAATCACTCGAAATA TAGTGTAATTCCAATCTGCTGCCGCTGATGGCAGCTATTCTGGGGATAGG TTAGAGTGTGGTTTCCTCCCGGCCAAGAAGAGCAGGCGGCCGTGGGCAAG GGCGCTGCAGTTATCAATTTGACATGAAGATGGGGCGGAACTACACGAAG TGTTATTTTCAAGATTACGGATAGTGCCCGAATGGACAAAAATACACAGC GTATGTTCGGTGGCTGTAGAATAAGGCCGACAGGCTTGCTCGTCACCTCC TGGAGCATGCACGCCGGCACGGCTGCATGTTGGCCGGAGAGTGACTGCTC TCCCCCTGCCTCTTGGATGTGTGTCGTGGGGCTCTCTCTCTGTATGCTGC CTAGATGATGTCTCTCTTCGCTGCTATGTCTCGTCTGCCTCTCTCTCCAT CTGAACGAAGGATGAGATACCCCCGCCCCCGCCCCCGCCCCCGCCCTATT CCCCTTGCCCGTCTCCCCGCCCCTCCTTCACCTACCGCCAAGAGTGCAAC CGTACGAACAACAGGACATGCGCGAGTCGAACACAAGGGAGAGCGCTCAG AGAGTCACACAATACAGAAAAAAACTCCCCGCCTCAAGAATTCCCGCGCG AACGAAGGCGTATGCAATCGCATGCGTGCGATTAACCGGCAGCCACAGCT AAAGGCGAACCTCAAACATCAAACCCAGGCGTAAACAAAACCGGATAAAA TCATGGCGGGTAGGGGATCGGGGCCAGGGGCGGGAGCACGACCCATAGGG TCGACTGGGGCGATGGTCGGAGGCAAGAGTAGGGCGGGGGGACACGTCCC CCGGCCCATGTACGAGCCCATCAACACGTCGGGCCCCTCGAAGGCGGACC TGGAGTTGGACGCGAAGCTCGAGGCCTTCATGGCAGACAACGTGCCGGTA ATGACGAGCGCCGACCTGCGAAGGAGGGAGCAAGTCCTCGGGAAGCTTCG AACGATGTTCCTCCAGGTATGCGGTGGGGGTTCCACTCCGATCCGCACAA CGACGTGTGCGATGCTAACACGGGTACGCGTCGTGCGTGTGTCTGCACCA GCGGTATGCGTGTTGTCGACTCAGCAGTGAAGCTTGAAGGAATTTTTTCC TGGCATATAGAGCGCCCGAAGTGCGTTCAGCAAGTAAAATCCTCCCCATT TCTTTTTTTGCTCGTCTTTGTTCTTATTCTCGGTGTGGTTAATCTTGTTC TTGCTTGTTTTCGCCCTGCTTGCCGTTCCTCGCCCTTTTGCTCCTGTTGG TGATTTTTGTTGTCGTTCGCTTTCCTCCGTGCTTTCCCGCCCTCTCCTGT TGGTACTGCAGTGGGTCATCGACTCGGCGTTGGAAGCCGGCATGTCGGAG GAGGCCGCCAAAGCCGCGGGGGGCAAGATCTACACCAGCGGGTCTTACCG ACTCAGAATACATGAGCCGAACTCGGACATCGACGCCATCTGCGTTGCTC CTCAGGTTGGTAATTGTTTGCTGGTGGTGGGGGTGGTGTTGGTGTTGTGA GTGCGGGTGTCGTTGTTGTTGTTGTCGTTGTTCTGGTCGTCGTTGTTGAT GCCGTCGTCGTTGTTGCTACTGTTGTTGTCGTTGTTGTCGTTGCTGCTGT TGTGGGTTTTGTGGTGTTTGCGGCGGCGGTGGCGGTGGCGATGGCGTTGC TATTGGTCGTGCCCACGTAGTCGGTCGTGAAATCGCACCCGGGGTCCCCC CTGTCGGCTGGCACGAGAGCTTGTGTTTGCCATCGTCTTCTCGATGCCCG CTTCACGGTAGTCAGCGCGAGGACGGGGTATGGGCTGGGCGACGAAACGT CGAGTCATTCTATTTTCAAAATGGGATGCCACAATTGGAAATATCCCTGC ACGGCTAGCGAAAGCTTCTCCGTTCCTCTACAAAGCACAAGGACATGGAA AGTGGTGGTGTTGTCCAAGGCCGCGGGTATCTACCTACCTGCGTGCATGT ACAAACGTTGGTTTCACTTGATGCAGAGGGCTTCTCGCGCCGTGTCAACG CCCCCACACTCAAACTGCCATGGGCGTGGATGACCCTCGCCTGTCCCCCC CCTCTCCTCCCCTTAAATCTATTTCATTATCTCACACCCTCGTACACGAG TATGCGCGGGCGTGCGTATGGGTATAAAATACGCACGCGCGCAAAAAAAA CTGACGCGTGCATGTCCACGCGCGCACGCGCGCGCACTACAACAGTTCTG CACGTCGGAGCTCTTCTTCACGACGCTCAAGGCTAGACTTATGGAGAATC CGCTCGTGACCAACGTCAACGCCATCGAGACCGCTGCGGTGAGTTTGGTG TTGAGTCAGTGTCGCACTGTGGGTTGGTTTCTCCTGTATTTGGTGAGATT AAAATCGCGAGACGAAAAGGGGCGGCTAGCTTGTTGACATCGGAGTCGAG CGAGGATTCGAGGAGGATCCGCATTTTTACGTTTGAAATATCGTTTAGAT ATTTCGTGATGACTCGTGCTTGTATCACCGGCAACACAACCTTAAACCTG CGCGCAGATTAAAAATGACGGAGGAAGACCATCCAGAAGACTCTGATGCG GTGGGTTCGGCTCGGCCTTGACCATGAGTGGGTTGACCCTGATAAGAACT TGTTATAAACCATTCTGAAGGCTGCGACCTCCACATGTTGCACAAGAGTT CCCTCCCCCTTCCTCCTCGTAGCCCAAGCCCAAGCCCAGTTCGGCAGCTC ACCGTCTCTCCCGTCCACTTTCATTCACGCCGCGTGGTTTAGGTGCCCAT CATCACGTTCGACTTCGACGAGGTCAACATCGACTTGGGCCTCGCGTGCT TGCCGGTTCCGACCGTGCCCCCGACACTCGACATCGACGACGACCAGGTG GGGAGGTGAACGGGGGCATAACGGACGGAAAGGGGCAATTTGTAGGGGTT CGTGGCGTTCCCGTCCTCACGGGGCACACGCGGGTGCGGGAAGGAGCCGG GCGTGGGTTGAAGGCGGAGGGGGAGGAGGGCAACGGGAGGGGGGGGGGCC TTGTCATTACTTCGTTATCTTCGTTATCTGCCCCCGATACTCGACATCGA AGATGGTCCCTTGAGCTCGACGTCATAGGGTGTACTGCTGCAGTTCCTTT TAGTTTGAGGAGCGCCAGGTCGTTCCATTAACGAGCTTTCAAAGATTCCT AAACTGGCAGCCGTTAATGCTGTCTCCCGTCTCACGCCATCCTGTTCGTC GTCCTTCCTTCTAGGGAGGGATCGGCTCTTTCCGTCAGTTTTAGTGCCCT TGTCATTTAGGCCATGGTTTCTATGGATCATGGTGCGCGTTCTGCAACAA CACGTGTTCCCAACATGCCCTTGTGTCCCGTCGAGTAAAAAATTCGTGGC CGCTGTCGATGTTTTCCACGATTGCGGTGTGTGCAATTGAACGGTCTTAC AAACCAATCACGACCCGTAAACCCGCGCCCTTACCTGCTATGATATGTTG GCCAGGTTCTCGACGGCGTGGACAGGCCGACGGAGAAGTGTGTCAACGGC CCGAGGGTGACCAACATGATTTACAGGCTGGTGAGACAGACTCGAGCCCC ATCTTTCCAACCGTGGCGAATGGCGTGCGTACGAGGGTTGGTGGGGGATG CCTCCCCGGAGCGTTCTCGGTACTCGAAGTGGAGGTTTTGGCGGGGTTTG AATTCGGCGAGAGGGGGAGGGGGCATGTACGTTGTCCCCATCCCGGGGTT TGGAAGCCGCTAGTGGTTCATGACTCTCACCTTTGAGGCAGTCCCAAAAG GTTAAAACCAATATTGACGAAGATTGAGTTTCGTGCTGGTCGAGTTCGCT ACACATTTTCGTCGAGTTCGCTGCACATTTTCGGCTCTATCGTAGAATTA GAGCCGATAGCCGACGCGATCAGGTTGTGGCCGTTCACGCAAGGTGCCAT CAACACCGAATAACTTGTGCTTTGTACATGTTTTCGCCCCAAGCGAACCA AGAAAGCGTTGCTGCTGTAGCTGCTGCTGGCGCTTCAATTGGCGATGAAT GGCTGCTTCTTTTTCTCCAAGCACGAGCCGCGTCAGTCACCGCACCCTGC GAGCTTCATCATTCCGCACCAAATGAGAGACGAAACAGCAACGCCCGCCC TTGCCACTTCCGGCGTGCCGCGTGTTATTCTGCTTACTCCTGGATCAATT CGGAAGATCCCGAACTATGACTCTTTCCTGCCGGTGGTGAGATGCGTCAG GAAATGGGCTAAGTCGAGAGGCCTGTACAGCAACAAGATGGGCTACTTGG GCGGCGTGAATTTTAACATTATGGTGGCGTTCGCGTGCCAGGTGCGCTCC CGACCAAGTTTTCTCACGCTTCTATTAATGGTACGGTGGATGGGTTGGCG GGTGTCCAGCTGCTTGTTACAACAGGGATGCAGAGGTTGGGAAGGGCGGG GGGTTCGGGGGGGCAGGTGGCAGAGGCGAGGGCTTAGCCATCATGGTGGC GTCTGCCTGCCTCTTTGCGGCATGACCATCGAAGGTGGAAGATGGGCTAC TTGTAGTGTTTGCATTGGAAAGCGCGGAGCAGAGGCTTCATCTCATGGTC TTCGGAAAGAAATAGGGAAACATTCGGCCGAAGAGTGACATCTGGACGCC TTTCCATCCTGTTTCGAGCAAGAAATCACGGCACGTGGCGATGAAAGGTG TCGCGGGAAATCGTCTTGCGACGAAGGAGCCTTGTCCTTCCAGGGCTCTC TCCACTGGAGCGCGCCTGGCCCATAAAATCGCTTCGGTAGCGCAACGCTG GGCTTCGATGCAGACTCGAGTGATTGTGGCTTGCTCTAGGCTTGATCCCG CCTCTATTTCAATGTCACGAACGTCACACGTCGAACGATCTGATGATTCA CATCTCATCCCCGTCACGCGCTCACCACCGCCTTCGGTTGACTGCTTTCT TCTTGTGGGTGTTCCCTTCGCGGTGTGGAAATGGTTCCATTACGTCATCA GATGTACCCCAACGCAGGGCCGTCGACCCTCCTGCACCGATTCTTCAAGC TCATGGCCGGTTGGAACTGGCCCAACGCTATACAGCTGGTGCAGCCATAC GACGCGGAGCTAGGACTCGAGGTGCGTGAGAGAGGGGGCGAGGGGGCGGA GGAGGCAGCGGGAATTAATGAAGGAGATGGTGGCCGGGTATCATCCTACG ATTTTACCGAGGATCATCGTGTTTCAACCGGGGGGCCAGGGGTTGATCGG AGAAAGCACTGATACAGGGATTAATGGGGAGGGGCGGTGGTACATCCCTT GTTGCTTGTCTGCGTCGTGTGCCTGGCTATCGTTGACCACGCAACTTTTT TTCGAAAAGAAGGGACTAGACTAGAGCAGTGCTCATCCACTCTCCTGACT ATTAGGGCAGCAACTAGGCGCTCTCCGTGTCAAGTTGTTTTTTGGCGGGT GGGTTCCGATAGATCACTGTGTTGATGGAGGGTAGAGTGGAGCCCGTCGT AAGTTACGGTGCGGAGTCTCCATTGACGACTTACATCGGGGCATACCGGA TCTACAAGGTCGCTTACTTTGTTCGCAAGATATGCCGCCCCAAAACGCGA TTTGTTGCTGAGGGAGGGGGTGACGGCGAGGGGGTCGATTTTCCGTTCTC TTCTGATAACGTACCCTCGCTTTCGTGTTAACCCTTTCGTAATTTGTGTT GCACATTTTCAATGCCTCGAGCACATGGTTGCAGGCGCAAGCTTTATTTT GGCTCTCATCTCTCATCCGCCTTCCCTCTCCATTTAAAAATGGCAACGAG CGTTTCGGCATGGAAACTATGGCTAGGGCCGAGCGCATTCAAAAGCTGCC CCCCCTTGCCCGTCTCACCTCTCCGAAACGTTTGGCCACCGCCTTCCATG CGAGAGGCGACGTTCGTGTTTTGGTATTGACCAATCGGCCGTTGTCTACA GCGCCCGGGAGATCGCACGAAGGGGGGATCCAAAGCCGAATTCACTCAGA AAAAGTGAAGATTTGCCTCTCGCTCCACACCGCCCCGTCCCAACCCTGCC CCCTGGCGTCTCTGGTGCCACACTTCCTGCTTCTGGCGTGCTCAGGTGTG GAATGCCCGCGCGAACAGCTGGCACTGCATGCCTATCATCACTCCGGCCT ACCCGGTCATGAACTCCTCGGCAAACGTTTCCAGGTGCTACTCTTCTTCA TCTTCAGCAACTGGCGGACGACAAAACGAACCAATCCCGTTGCATTTGTT CCGAAAAAAAATATACGGAGTATATGTTTCCACAATGCGCACGATAACGC GCCTTCAACTCCGCGCTAAGATGAGGAGGTATCTGATCCATGAGGTCAAC CATTCCCATTCCCATGGCGTATTTTTGCCATAGCTCATGATTTTGTAGGG ATCGAATATGTCCATAACCGGATTATCTTTCCACGTTTCTGCGTCTGCTC GAAAGCGCCCTGTCCCATAGCTTTGGATCGTTCAAACGAACCTCTCCCTC CCCTCGCGCCCACGAAATTTGGTGTGAAACCGCGTCCGGCTGTCGATCTC GTTCCTTCGCAGATTCACACTGGATGTGATGACGTCAGAGTTCTCCAGGG GGCTTGAGGTGAATTGTCTATCTAGTGGTGGGTGAACATGATGTCTATCC GTCTCTCGATACGTGCGATGAAGCACGTGCTGTACCGGGCGCGCTTTTCT GCAGCTTCGCGCTCCACTCGTGCTATTGTTTTCGTTGCTCTTGACACCTC CGCCCCCTTATTCACCCTCTCGTTGTTGTTTGCTTTGTGAGGTTGACGTC ATTGACGTTGGACATCCTCGCTGGCATTTACACTGCTTCGTTCGGGGAAG GCATCTTCGCGTCAGGCTGCGGTGTGTGTTGCCAGGGTCCCGACGGAGTG CCGAATTTTTCAACCCCTCCCCTCTCTCTTGTTAATGTTGCTGATGCGGG CAGGTCGTGAACGGGATCATCAAGGAGAAGGGGTCTCTGTCCTCGTTCTC CCAGCTCTTCGAACCGTCGGACTTCTTCATCAGGTGAAGGACACACCGCA GTAACTCGTTTGCCCCAGGCGGCCCAACCGTATTTGACAGAATTCGTTGC CAGTGTCACGCACCCTTCTTCCCGTCCAGCGCACGTAGCATGTATAGTGT CGCTGGTCAACCTATGGTGTACCGAACCTCTTTTTTTATCCTCTATCTGA ACTGCCGCAGATTTACCTTTTGTTTTTGAGATGATGAGCTCCAATCCTAG GGCTCGCAGTAGACTACGGTTATGAGTTCGTGGTATCGCAAGAGCTGGGT TTAGCCGCCGCCAGAGCTGTTTTTGCAGAGGGATAATTCAAGACGTCATA TCGCGTCGCACGATGCGTATCTCTCCTGGGCAACCGTGAGAAGTTAGTCA ACTAGTGAGTCAGTCGACCATCAAGATTGGTAGTCTGGCAGACAGAAGAT TGGTAGTTTGCAGACGTCGGATTCCTTCCTCACATTTGTTTTGGTCTCGG GACGTCGCTCGCGTTTCAATCGATGTCGTGAACGTGATCGTTGTTCATCG TCTGTGGTGTTTTTTTTTCCGTGCGCCAGATATAACCACTATTTGGCGGT GGACATGATGGCCAGCAGCGAGGACGAGCACAGGGCCTGGGTGGGCTGGG TCGAATCACGCCTTCGGAAGGTGAGGATAGGAAACCCTTCGTGCTGAATG CTTCACTGTCTTTCCTCGCTTGTAAAACTTGCGCTTGAGCTCTCTGTGCA GCTGAAGTATGTCCTGTTCCTTGCCCCTCCGCGCATCCTGACTCCAAACT CTCCGTCTACCGGTATGTGAGGTGCATTCGGGCCCCGTAGCCGCATGTTG GGTTCTCCGTCTGGTGGGAGGATCCCCAACCTTTAATGAAGTATGTTGCG GCTAATACAAGAGTTCCGAGATGAGGGCTGCATGACAAGCGACGAATGAG AAGCCCCCGCCCACGCCCACGCCCCCGCCCCCGCCATTAAATTGGAATGA AAAATCGACGATCTGAAGCTTGTGGAGGGTCTAGGACTATCCGGCCTCCC GTTTAAGCGCGTTCACCTGTGGCCGAAAAGGTTCGACGGGTGCGTTGGGG GCGGGGTGGGGGGCGAGCTGCCGGCCCACTGCGTGGCGTACTTCGTGGGC CTTGAGATCGATCCGAGAAGGAGCAAGAAGGGGGCCGTGCTGGACGTCGA CAAGGTAATACGAGAGCGGGAGCGAGGGGATCCATTCGCAAGTAATGTTT CGGAACTAAAGAAGTGCTTGGCGTCCTTCTCTCGTGGCGACTTTTCGCCA AGCACGCACCACATGAAAAACGGGCTCATTCTTGTCGTGATTTTTTCAAG TGTTGAAACACAATTCCAAGCTTTTTTTTTTTGGTCCCTGCTGGAATCTT CCGGCAGGCCAGTCGTAATTAATGTTTTGAAGGGGTGCGAAGGGATGTTC GCGTGTGTTTGACCCGACCTTTTGTGAGACTTTACATCTTGCATGGGTGG TTGGGCGGTGGAAAGGTACTCGTTCATTTCGGATGGAGATCGGTGGTGGC CGTGGTCTTGAGATAGTTCCCTGTTTGGCCTTCATTTTCCCTTCCGCTGG TGTGGTGCTAGGTGGGTGGTAACTGCTTGCCAGCGTTTGATTTATATCTC TTTGCAGTATGTGCTAGGCTGCCGTTTTAAATTTTACCCGTACGCGAAGA TATCGGCCGGTGGACAGGTAATCGGGGCGCTCTCATACAGCACGGGCAGA TGAGAGAAAAAATGACATTGGTTTGCCCCCCTCCAAGCTGTGTTTTTCAC GCGCAAGCAGTCAAGCTTTTTGGACACGCCCAGGGACGGGTCTAGACCAA TTCAATGTTTTCTATTCTAATTCGTTTGTCGTTCTCTTTTCAGGTGACCA CTCGATTCCGCATGGAATCCGTGGGGCATGCCACAAACAGGGGGTTCCAC AGGCCAGGTATGGACGTCATGGCCACAGCGCAAACTTGGAAGGTGAGCCA GCTCCTTCGCCTCGATTGATGCCATTCGCGCCCCTCGCTGCTGATGTAAA ACAATGACTGGTTCCGTTTTGCTCTCGTTCTTGGGATTGGTTGCGGCCTG CTCGCGAGGAACGCTGTCGTCTTGCCCGAAAGGAGCCCCAAGTTTTTTCT TATTTTTTCAGTCACTACATCAAATTCGAGAATCCGAACCATCTTGAGTG ATGAAGCAGCAAACTTTTGCTTATTTTCTTTTGAGATTATGAAGGAATAC GGCAGCGTGGTTTAAATCATTTTTTCGCCGGGTATTTGCATTTTATTTGG ACGCAAAACGCCGGCGTTGTGTCCTGTGTACATACGGAAAGGCACGAACG ACCTCCTGGAACGAAGGGAAAAAAAGTCACCGAATGAAGGCAAAAAATGC AAGGAAAGCGGTACCAGATTTTCAGTAACTCATGGGTTCAGCTAATTTTC TCCTTTTACGTCGACCGACCCAGCGTTGAATCCTCTCTTGCCCACACAGG CACACACACACCAATTTCGTTTCTTAACGCTCTCCGGGGTCTCCGGGCTT CGTCTTCGAGAGGCAACCTCAACCACGATTCCGCCCGTGATCAACTTCCA AGCGCAAATCTTCCGCCCTCTCCCGACCCCCGGACCCCCGGCGACATACC GCCACCCTTCGCCCCCCCCCTGCGGGCCCCCCTGCTGTACGTCGCCCTGC CTCTCAGGAACTCCCCCCCTTTGTGTTCGAGTCGATCGGAGGCACCGCCG CGGCCGCGGCGGAGAGAAAGAGGAGGAGGAAGGTCGAGAGGGACCGCCTT GCCGCCATCGCCGCTGCCGCGCCCAAGCCGGAGCAGCTCAGGGCCGCCAA GGAGGCGGAGGCGGCGGTGGCTGCAGCTACCGCCGCCGCCGCCGCTGCTA CTGCGTCTGCCGAGGTGCGCTCGTGTACACTAGCATTTGAAGGGGGGGAG GGAGCATTTGGTGGCAGCTCTGTGTGTTCCAGTGCGTTCGTAGTGTGCGC AAGAGGGTAAGGAAGAAGCTGGTCAAGAGCCACCCCATGCGGGGAGGGAG AGGGCCCACGGTGCGATGCAGGAGGGGAGGGTCGAATTGGTGCTGTCAAT GCGGTGTGCAGACTACAGGCATGGGATGGTTCATTTGTTGTTGGGGCTGG AAGGTTGCTTTTTGCACGGTTGTTGGAGTCACTCGCTTGCTGCCCACACA AACCTGAGCTCGAAATCGACGAAACATAGTGCTTCACGCGAGATCAACAA AGGCGCTACGCTATTGTTCTAGGGGGCTCATTCTGGAGCTCGTCGTCGAA TGGCACACAAAGACTCTAGATGGGCTCTCCGAACATCTCAAGACTAACAA ATGAAATGGATGCCGATGCTCCCACCGACAGCCCGCCACGGCAGCATTTG CAGCTACAGCGAAAGCGAAAATAATGTCACGTAACCCCCCGTGCCCGCAT CGACACCCCACCAGGCGAGTAAGACCGGCTCAGCAGTGAATGGTCAAGAC TCCGCCGCCGCTACGGTGCCACCTATCCCGGCGGCGGTGGCGGTTAAGGC CGAGGCTGCGCCGGAGGGGGAGGAGGAAGGGGAGGGCGACCTGGAGGAAG AAGGCGCCACACGGCTCGTGCTGAGCGGGGCGAGGGCAGCATTAGCCTTA CCGGGCGGCCAGAAGCGGAAGCGAGCTGTCGACGTTGTGAGTGGCCCTAG ACCAGCATCCTTTCATGCTGGCAAATGCCGGTGATTGCGAACGTGTTTTT GACGGGCGGAAGTAGGTCTGTGCCTTGCAATGCTTTTGTGGGCCTATATT GTGACGTGAAATGCCTTGCTCGACGCATATGTTCCTGTTTTTGTAGTTCT TGTTGTTTTTCAGCTCCTTCGGATGAGGGGGGACGGTAGAAGAAGGACTT TGGGGGGCGGGGTCCGGGGGTGCAGAGGAAGTTTGGCCGTCCACCCGCCT GCATGTGGTAGGGTCAAGCCGTCGTTGCCATGCACAGACTCCTCGTCACC ACTTAGAATATCTTTGACGCCCTCCAGAAACTCTCGACATTTTCAAAGCA CGCTCTCGATGTTTTTGTGATCCTGTGGTTATCAGTGACGATTCCGTGAC ATGTCTTCGAGGCGTGCTCGACAATCGATGCCTTTTTCTTTGCACTTGAA TCTCGTGTTCCCGTACACGTCTTCATCAGGTTTGACCACCTTTACACGCA AAAGTAACAGGGCACTGATATGAAGCGCTTTGCGCTGCAATCATGTCGCA GGCTTCCCAGTTTTCCAATTTTTCACAGCCTGCCAAGAACTGGCGCGCAG GAATCGACTTCCAACTTTCGCCCTCCAGGAGTTGTTTGAAATTTTCGAAA ACTCCAGGGACGGGAAAAAAAAGTGGAATTACTGACGGAGCCTCCTTCGC GATGTTTTTTTGGGAGATGAAAAGCGGGCGGGAGGCGAGAACTCATTTGA CAAGCTTGGAATGCACAGAAGATGAGTTTCGGTCGTGGAAGCCGATCCAC ACCTTTCCTTTAGCGTCCCCTGCTCCTTCCACGTGAACTCTTCCTCTAAC CGCGTTCGAGGGCGACTCTTGTTCATATTGTGATTCTGTTAAAACCAAGG TGGATCTGGTCGACCTTGCGCCCGTCGTCCCTTCCTGGAAAACCCCGTCG GCGGCACTGCTAAGTGGGTGCGGCGGCGTCGGCATGAAGCGATTGACAGT GGAGCTCTTGCCTCTCCACAGCAGAAGTGATGCCGCCCGACCTCCCGTCT AAAGACAAGCAGCGCTATAGAGACCCGGAGTGGTTTGTGATTCACGTGCT TCGTACTTTGGTGGAAAAAGGTAGAGCTCTCACCAGAAGTTGGCGGCGCC CCTGGTGTTCGGGTGCGAGCGGCTTTGTTTTGCCGTTTCGTGGGAGAGGC TTGACAGCTACAAGTATTAAATAGTGCTGTTTCGGCCCAGCAGCTGTTTG ACTGGATGAAGGAGTCTGCTCCTTCTCTCTCCTTTTCGGCCATGGCGTCG GTGATGGGACTGACAGCATTCGTGGTCGCGTTGCCGGTTTTAAATCCGAG CCTCGTCGACTGGTGCTCCGTTCGTAGCCGTTTCACATTTCTTCTGCATA GTCTACTTGTAAATGAGGAACGACCGAGCTTTGACGATTTTGATACTCAG TTTCTTGATTCCCCGTTCTGGGGCGATCACGCTCGATTTGTTATTGGCAT ACAAGGGGAAGCCAACTGGAGTATGTCTGGTATCTGCTCACTGGATGTAG ACCATGTCTGGTGCACACCGTCTATGATCGAAGAAGCGAATGAATCGTTC CTGTGGCTAGGCTCGCTGGCGGAAAAGAATTCGCGCGCCTGGCTTCAATA AAATTCTCTACGGCAAAACTTCTAATTCAAAGAAGGAATGCACGACCGCT CGCGAGACGCAGG
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Coding sequence (CDS) from alignment at P-fluviatile_contig11:504956..517768-

>mRNA_P-fluviatile_contig11.1026.1 ID=mRNA_P-fluviatile_contig11.1026.1|Name=mRNA_P-fluviatile_contig11.1026.1|organism=Porterinema fluviatile SAG_2381|type=CDS|length=4218bp|location=Sequence derived from alignment at P-fluviatile_contig11:504956..517768- (Porterinema fluviatile SAG_2381)
ATGGCGGGTAGGGGATCGGGGCCAGGGGCGGGAGCACGACCCATAGGGTC
GACTGGGGCGATGGTCGGAGGCAAGAGTAGGGCGGGGGGACACGTCCCCC
GGCCCATGTACGAGCCCATCAACACGTCGGGCCCCTCGAAGGCGGACCTG
GAGTTGGACGCGAAGCTCGAGGCCTTCATGGCAGACAACGTGCCGGTAAT
GACGAGCGCCGACCTGCGAAGGAGGGAGCAAGTCCTCGGGAAGCTTCGAA
CGATGTTCCTCCAGATGGCGGGTAGGGGATCGGGGCCAGGGGCGGGAGCA
CGACCCATAGGGTCGACTGGGGCGATGGTCGGAGGCAAGAGTAGGGCGGG
GGGACACGTCCCCCGGCCCATGTACGAGCCCATCAACACGTCGGGCCCCT
CGAAGGCGGACCTGGAGTTGGACGCGAAGCTCGAGGCCTTCATGGCAGAC
AACGTGCCGGTAATGACGAGCGCCGACCTGCGAAGGAGGGAGCAAGTCCT
CGGGAAGCTTCGAACGATGTTCCTCCAGTGGGTCATCGACTCGGCGTTGG
AAGCCGGCATGTCGGAGGAGGCCGCCAAAGCCGCGGGGGGCAAGATCTAC
ACCAGCGGGTCTTACCGACTCAGAATACATGAGCCGAACTCGGACATCGA
CGCCATCTGCGTTGCTCCTCAGTGGGTCATCGACTCGGCGTTGGAAGCCG
GCATGTCGGAGGAGGCCGCCAAAGCCGCGGGGGGCAAGATCTACACCAGC
GGGTCTTACCGACTCAGAATACATGAGCCGAACTCGGACATCGACGCCAT
CTGCGTTGCTCCTCAGTTCTGCACGTCGGAGCTCTTCTTCACGACGCTCA
AGGCTAGACTTATGGAGAATCCGCTCGTGACCAACGTCAACGCCATCGAG
ACCGCTGCGTTCTGCACGTCGGAGCTCTTCTTCACGACGCTCAAGGCTAG
ACTTATGGAGAATCCGCTCGTGACCAACGTCAACGCCATCGAGACCGCTG
CGGTGCCCATCATCACGTTCGACTTCGACGAGGTCAACATCGACTTGGGC
CTCGCGTGCTTGCCGGTTCCGACCGTGCCCCCGACACTCGACATCGACGA
CGACCAGGTGCCCATCATCACGTTCGACTTCGACGAGGTCAACATCGACT
TGGGCCTCGCGTGCTTGCCGGTTCCGACCGTGCCCCCGACACTCGACATC
GACGACGACCAGGTTCTCGACGGCGTGGACAGGCCGACGGAGAAGTGTGT
CAACGGCCCGAGGGTGACCAACATGATTTACAGGCTGGTTCTCGACGGCG
TGGACAGGCCGACGGAGAAGTGTGTCAACGGCCCGAGGGTGACCAACATG
ATTTACAGGCTGATCCCGAACTATGACTCTTTCCTGCCGGTGGTGAGATG
CGTCAGGAAATGGGCTAAGTCGAGAGGCCTGTACAGCAACAAGATGGGCT
ACTTGGGCGGCGTGAATTTTAACATTATGGTGGCGTTCGCGTGCCAGATC
CCGAACTATGACTCTTTCCTGCCGGTGGTGAGATGCGTCAGGAAATGGGC
TAAGTCGAGAGGCCTGTACAGCAACAAGATGGGCTACTTGGGCGGCGTGA
ATTTTAACATTATGGTGGCGTTCGCGTGCCAGATGTACCCCAACGCAGGG
CCGTCGACCCTCCTGCACCGATTCTTCAAGCTCATGGCCGGTTGGAACTG
GCCCAACGCTATACAGCTGGTGCAGCCATACGACGCGGAGCTAGGACTCG
AGATGTACCCCAACGCAGGGCCGTCGACCCTCCTGCACCGATTCTTCAAG
CTCATGGCCGGTTGGAACTGGCCCAACGCTATACAGCTGGTGCAGCCATA
CGACGCGGAGCTAGGACTCGAGGTGTGGAATGCCCGCGCGAACAGCTGGC
ACTGCATGCCTATCATCACTCCGGCCTACCCGGTCATGAACTCCTCGGCA
AACGTTTCCAGGTGTGGAATGCCCGCGCGAACAGCTGGCACTGCATGCCT
ATCATCACTCCGGCCTACCCGGTCATGAACTCCTCGGCAAACGTTTCCAG
ATTCACACTGGATGTGATGACGTCAGAGTTCTCCAGGGGGCTTGAGATTC
ACACTGGATGTGATGACGTCAGAGTTCTCCAGGGGGCTTGAGGTCGTGAA
CGGGATCATCAAGGAGAAGGGGTCTCTGTCCTCGTTCTCCCAGCTCTTCG
AACCGTCGGACTTCTTCATCAGGTCGTGAACGGGATCATCAAGGAGAAGG
GGTCTCTGTCCTCGTTCTCCCAGCTCTTCGAACCGTCGGACTTCTTCATC
AGATATAACCACTATTTGGCGGTGGACATGATGGCCAGCAGCGAGGACGA
GCACAGGGCCTGGGTGGGCTGGGTCGAATCACGCCTTCGGAAGATATAAC
CACTATTTGGCGGTGGACATGATGGCCAGCAGCGAGGACGAGCACAGGGC
CTGGGTGGGCTGGGTCGAATCACGCCTTCGGAAGCTTGTGGAGGGTCTAG
GACTATCCGGCCTCCCGTTTAAGCGCGTTCACCTGTGGCCGAAAAGGTTC
GACGGGTGCGTTGGGGGCGGGGTGGGGGGCGAGCTGCCGGCCCACTGCGT
GGCGTACTTCGTGGGCCTTGAGATCGATCCGAGAAGGAGCAAGAAGGGGG
CCGTGCTGGACGTCGACAAGCTTGTGGAGGGTCTAGGACTATCCGGCCTC
CCGTTTAAGCGCGTTCACCTGTGGCCGAAAAGGTTCGACGGGTGCGTTGG
GGGCGGGGTGGGGGGCGAGCTGCCGGCCCACTGCGTGGCGTACTTCGTGG
GCCTTGAGATCGATCCGAGAAGGAGCAAGAAGGGGGCCGTGCTGGACGTC
GACAAGGTGACCACTCGATTCCGCATGGAATCCGTGGGGCATGCCACAAA
CAGGGGGTTCCACAGGCCAGGTATGGACGTCATGGCCACAGCGCAAACTT
GGAAGGTGACCACTCGATTCCGCATGGAATCCGTGGGGCATGCCACAAAC
AGGGGGTTCCACAGGCCAGGTATGGACGTCATGGCCACAGCGCAAACTTG
GAAGGAACTCCCCCCCTTTGTGTTCGAGTCGATCGGAGGCACCGCCGCGG
CCGCGGCGGAGAGAAAGAGGAGGAGGAAGGTCGAGAGGGACCGCCTTGCC
GCCATCGCCGCTGCCGCGCCCAAGCCGGAGCAGCTCAGGGCCGCCAAGGA
GGCGGAGGCGGCGGTGGCTGCAGCTACCGCCGCCGCCGCCGCTGCTACTG
CGTCTGCCGAGGAACTCCCCCCCTTTGTGTTCGAGTCGATCGGAGGCACC
GCCGCGGCCGCGGCGGAGAGAAAGAGGAGGAGGAAGGTCGAGAGGGACCG
CCTTGCCGCCATCGCCGCTGCCGCGCCCAAGCCGGAGCAGCTCAGGGCCG
CCAAGGAGGCGGAGGCGGCGGTGGCTGCAGCTACCGCCGCCGCCGCCGCT
GCTACTGCGTCTGCCGAGGCGAGTAAGACCGGCTCAGCAGTGAATGGTCA
AGACTCCGCCGCCGCTACGGTGCCACCTATCCCGGCGGCGGTGGCGGTTA
AGGCCGAGGCTGCGCCGGAGGGGGAGGAGGAAGGGGAGGGCGACCTGGAG
GAAGAAGGCGCCACACGGCTCGTGCTGAGCGGGGCGAGGGCAGCATTAGC
CTTACCGGGCGGCCAGAAGCGGAAGCGAGCTGTCGACGTTGCGAGTAAGA
CCGGCTCAGCAGTGAATGGTCAAGACTCCGCCGCCGCTACGGTGCCACCT
ATCCCGGCGGCGGTGGCGGTTAAGGCCGAGGCTGCGCCGGAGGGGGAGGA
GGAAGGGGAGGGCGACCTGGAGGAAGAAGGCGCCACACGGCTCGTGCTGA
GCGGGGCGAGGGCAGCATTAGCCTTACCGGGCGGCCAGAAGCGGAAGCGA
GCTGTCGACGTTGTGGATCTGGTCGACCTTGCGCCCGTCGTCCCTTCCTG
GAAAACCCCGTCGGCGGCACTGCTAAGTGGGTGCGGCGGCGTCGGCATGA
AGCGATTGACAGTGGAGCTCTTGCCTCTCCACAGCAGAAGTGATGCCGCC
CGACCTCCCGTCTAAGTGGATCTGGTCGACCTTGCGCCCGTCGTCCCTTC
CTGGAAAACCCCGTCGGCGGCACTGCTAAGTGGGTGCGGCGGCGTCGGCA
TGAAGCGATTGACAGTGGAGCTCTTGCCTCTCCACAGCAGAAGTGATGCC
GCCCGACCTCCCGTCTAA
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