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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:
Alignments
The following features are aligned
Analyses
This mRNA is derived from or has results from the following analyses
Properties
| Property Name | Value |
| Taxonomic scope | Eukaryota |
| Seed ortholog score | 780.8 |
| Seed ortholog evalue | 5.4e-223 |
| Seed eggNOG ortholog | 2880.D7FWT4 |
| KEGG ko | ko:K09254,ko:K14376 |
| KEGG Pathway | ko03015,ko04014,ko04624,ko05202,ko05203,map03015,map04014,map04624,map05202,map05203 |
| GOs | GO: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 OGs | COG5186@1,KOG2245@2759 |
| EC | 2.7.7.19 |
| COG Functional cat. | A |
| Best tax level | Eukaryota |
| Best eggNOG OG | NA|NA|NA |
| BRITE | ko00000,ko00001,ko01000,ko03000,ko03019 |
| Hectar predicted targeting category | other localisation |
| Exons | 17 |
| Model size | 3041 |
| Cds size | 2109 |
| Stop | 1 |
| Start | 1 |
Relationships
The following UTR feature(s) are a part of this mRNA:
| Feature Name | Unique Name | Species | Type | Position |
| 1622815440.6848762-UTR-P-fluviatile_contig11:504955..505616 | 1622815440.6848762-UTR-P-fluviatile_contig11:504955..505616 | Porterinema fluviatile SAG_2381 | UTR | P-fluviatile_contig11 504956..505616 - |
| 1693561866.5428762-UTR-P-fluviatile_contig11:504955..505616 | 1693561866.5428762-UTR-P-fluviatile_contig11:504955..505616 | Porterinema fluviatile SAG_2381 | UTR | P-fluviatile_contig11 504956..505616 - |
| 1622815440.8849025-UTR-P-fluviatile_contig11:516616..516826 | 1622815440.8849025-UTR-P-fluviatile_contig11:516616..516826 | Porterinema fluviatile SAG_2381 | UTR | P-fluviatile_contig11 516617..516826 - |
| 1693561866.821725-UTR-P-fluviatile_contig11:516616..516826 | 1693561866.821725-UTR-P-fluviatile_contig11:516616..516826 | Porterinema fluviatile SAG_2381 | UTR | P-fluviatile_contig11 516617..516826 - |
| 1622815440.9015281-UTR-P-fluviatile_contig11:517707..517768 | 1622815440.9015281-UTR-P-fluviatile_contig11:517707..517768 | Porterinema fluviatile SAG_2381 | UTR | P-fluviatile_contig11 517708..517768 - |
| 1693561866.8306797-UTR-P-fluviatile_contig11:517707..517768 | 1693561866.8306797-UTR-P-fluviatile_contig11:517707..517768 | Porterinema fluviatile SAG_2381 | UTR | P-fluviatile_contig11 517708..517768 - |
The following CDS feature(s) are a part of this mRNA:
| Feature Name | Unique Name | Species | Type | Position |
| 1622815440.695963-CDS-P-fluviatile_contig11:505616..505769 | 1622815440.695963-CDS-P-fluviatile_contig11:505616..505769 | Porterinema fluviatile SAG_2381 | CDS | P-fluviatile_contig11 505617..505769 - |
| 1693561866.5563762-CDS-P-fluviatile_contig11:505616..505769 | 1693561866.5563762-CDS-P-fluviatile_contig11:505616..505769 | Porterinema fluviatile SAG_2381 | CDS | P-fluviatile_contig11 505617..505769 - |
| 1622815440.707259-CDS-P-fluviatile_contig11:506682..506904 | 1622815440.707259-CDS-P-fluviatile_contig11:506682..506904 | Porterinema fluviatile SAG_2381 | CDS | P-fluviatile_contig11 506683..506904 - |
| 1693561866.5726562-CDS-P-fluviatile_contig11:506682..506904 | 1693561866.5726562-CDS-P-fluviatile_contig11:506682..506904 | Porterinema fluviatile SAG_2381 | CDS | P-fluviatile_contig11 506683..506904 - |
| 1622815440.7186959-CDS-P-fluviatile_contig11:507454..507661 | 1622815440.7186959-CDS-P-fluviatile_contig11:507454..507661 | Porterinema fluviatile SAG_2381 | CDS | P-fluviatile_contig11 507455..507661 - |
| 1693561866.5888944-CDS-P-fluviatile_contig11:507454..507661 | 1693561866.5888944-CDS-P-fluviatile_contig11:507454..507661 | Porterinema fluviatile SAG_2381 | CDS | P-fluviatile_contig11 507455..507661 - |
| 1622815440.7277339-CDS-P-fluviatile_contig11:508376..508475 | 1622815440.7277339-CDS-P-fluviatile_contig11:508376..508475 | Porterinema fluviatile SAG_2381 | CDS | P-fluviatile_contig11 508377..508475 - |
| 1693561866.600058-CDS-P-fluviatile_contig11:508376..508475 | 1693561866.600058-CDS-P-fluviatile_contig11:508376..508475 | Porterinema fluviatile SAG_2381 | CDS | P-fluviatile_contig11 508377..508475 - |
| 1622815440.7362912-CDS-P-fluviatile_contig11:509164..509350 | 1622815440.7362912-CDS-P-fluviatile_contig11:509164..509350 | Porterinema fluviatile SAG_2381 | CDS | P-fluviatile_contig11 509165..509350 - |
| 1693561866.6133564-CDS-P-fluviatile_contig11:509164..509350 | 1693561866.6133564-CDS-P-fluviatile_contig11:509164..509350 | Porterinema fluviatile SAG_2381 | CDS | P-fluviatile_contig11 509165..509350 - |
| 1622815440.7453792-CDS-P-fluviatile_contig11:509698..509789 | 1622815440.7453792-CDS-P-fluviatile_contig11:509698..509789 | Porterinema fluviatile SAG_2381 | CDS | P-fluviatile_contig11 509699..509789 - |
| 1693561866.623484-CDS-P-fluviatile_contig11:509698..509789 | 1693561866.623484-CDS-P-fluviatile_contig11:509698..509789 | Porterinema fluviatile SAG_2381 | CDS | P-fluviatile_contig11 509699..509789 - |
| 1622815440.7633853-CDS-P-fluviatile_contig11:510335..510415 | 1622815440.7633853-CDS-P-fluviatile_contig11:510335..510415 | Porterinema fluviatile SAG_2381 | CDS | P-fluviatile_contig11 510336..510415 - |
| 1693561866.633003-CDS-P-fluviatile_contig11:510335..510415 | 1693561866.633003-CDS-P-fluviatile_contig11:510335..510415 | Porterinema fluviatile SAG_2381 | CDS | P-fluviatile_contig11 510336..510415 - |
| 1622815440.7744129-CDS-P-fluviatile_contig11:510760..510806 | 1622815440.7744129-CDS-P-fluviatile_contig11:510760..510806 | Porterinema fluviatile SAG_2381 | CDS | P-fluviatile_contig11 510761..510806 - |
| 1693561866.6453888-CDS-P-fluviatile_contig11:510760..510806 | 1693561866.6453888-CDS-P-fluviatile_contig11:510760..510806 | Porterinema fluviatile SAG_2381 | CDS | P-fluviatile_contig11 510761..510806 - |
| 1622815440.7849877-CDS-P-fluviatile_contig11:511184..511273 | 1622815440.7849877-CDS-P-fluviatile_contig11:511184..511273 | Porterinema fluviatile SAG_2381 | CDS | P-fluviatile_contig11 511185..511273 - |
| 1693561866.653592-CDS-P-fluviatile_contig11:511184..511273 | 1693561866.653592-CDS-P-fluviatile_contig11:511184..511273 | Porterinema fluviatile SAG_2381 | CDS | P-fluviatile_contig11 511185..511273 - |
| 1622815440.7988064-CDS-P-fluviatile_contig11:512247..512367 | 1622815440.7988064-CDS-P-fluviatile_contig11:512247..512367 | Porterinema fluviatile SAG_2381 | CDS | P-fluviatile_contig11 512248..512367 - |
| 1693561866.704316-CDS-P-fluviatile_contig11:512247..512367 | 1693561866.704316-CDS-P-fluviatile_contig11:512247..512367 | Porterinema fluviatile SAG_2381 | CDS | P-fluviatile_contig11 512248..512367 - |
| 1622815440.8148577-CDS-P-fluviatile_contig11:513027..513162 | 1622815440.8148577-CDS-P-fluviatile_contig11:513027..513162 | Porterinema fluviatile SAG_2381 | CDS | P-fluviatile_contig11 513028..513162 - |
| 1693561866.7165399-CDS-P-fluviatile_contig11:513027..513162 | 1693561866.7165399-CDS-P-fluviatile_contig11:513027..513162 | Porterinema fluviatile SAG_2381 | CDS | P-fluviatile_contig11 513028..513162 - |
| 1622815440.827458-CDS-P-fluviatile_contig11:513788..513863 | 1622815440.827458-CDS-P-fluviatile_contig11:513788..513863 | Porterinema fluviatile SAG_2381 | CDS | P-fluviatile_contig11 513789..513863 - |
| 1693561866.7268784-CDS-P-fluviatile_contig11:513788..513863 | 1693561866.7268784-CDS-P-fluviatile_contig11:513788..513863 | Porterinema fluviatile SAG_2381 | CDS | P-fluviatile_contig11 513789..513863 - |
| 1622815440.8458521-CDS-P-fluviatile_contig11:514471..514576 | 1622815440.8458521-CDS-P-fluviatile_contig11:514471..514576 | Porterinema fluviatile SAG_2381 | CDS | P-fluviatile_contig11 514472..514576 - |
| 1693561866.735433-CDS-P-fluviatile_contig11:514471..514576 | 1693561866.735433-CDS-P-fluviatile_contig11:514471..514576 | Porterinema fluviatile SAG_2381 | CDS | P-fluviatile_contig11 514472..514576 - |
| 1622815440.8557072-CDS-P-fluviatile_contig11:515030..515123 | 1622815440.8557072-CDS-P-fluviatile_contig11:515030..515123 | Porterinema fluviatile SAG_2381 | CDS | P-fluviatile_contig11 515031..515123 - |
| 1693561866.789813-CDS-P-fluviatile_contig11:515030..515123 | 1693561866.789813-CDS-P-fluviatile_contig11:515030..515123 | Porterinema fluviatile SAG_2381 | CDS | P-fluviatile_contig11 515031..515123 - |
| 1622815440.864577-CDS-P-fluviatile_contig11:515863..516007 | 1622815440.864577-CDS-P-fluviatile_contig11:515863..516007 | Porterinema fluviatile SAG_2381 | CDS | P-fluviatile_contig11 515864..516007 - |
| 1693561866.8044808-CDS-P-fluviatile_contig11:515863..516007 | 1693561866.8044808-CDS-P-fluviatile_contig11:515863..516007 | Porterinema fluviatile SAG_2381 | CDS | P-fluviatile_contig11 515864..516007 - |
| 1622815440.8738182-CDS-P-fluviatile_contig11:516352..516616 | 1622815440.8738182-CDS-P-fluviatile_contig11:516352..516616 | Porterinema fluviatile SAG_2381 | CDS | P-fluviatile_contig11 516353..516616 - |
| 1693561866.813355-CDS-P-fluviatile_contig11:516352..516616 | 1693561866.813355-CDS-P-fluviatile_contig11:516352..516616 | Porterinema fluviatile SAG_2381 | CDS | P-fluviatile_contig11 516353..516616 - |
The following polypeptide feature(s) derives from this mRNA:
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* back to topmRNA 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 back to topCoding 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 back to top
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