mRNA_P-fluviatile_contig11.1258.1 (mRNA) Porterinema fluviatile SAG_2381

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

Overview
NamemRNA_P-fluviatile_contig11.1258.1
Unique NamemRNA_P-fluviatile_contig11.1258.1
TypemRNA
OrganismPorterinema fluviatile SAG_2381 (Porterinema fluviatile SAG_2381)
Homology
BLAST of mRNA_P-fluviatile_contig11.1258.1 vs. uniprot
Match: A0A6H5KUD2_9PHAE (Aconitate hydratase, mitochondrial n=2 Tax=Ectocarpus TaxID=2879 RepID=A0A6H5KUD2_9PHAE)

HSP 1 Score: 1341 bits (3471), Expect = 0.000e+0
Identity = 661/706 (93.63%), Postives = 691/706 (97.88%), Query Frame = 1
Query:    1 MIRARAFASGRKAAGRYAGAAAARSMSGTPLSVLDPKGSPTIDSVYSKMEKNIYAARKTLGRPLTLSEKIVYGHFDDPATVPVRGETYLKLRPDRVAMQDATAQMAVLQFISSGLPKTACPTTIHCDHLIAAETGADSDMAAAKITNKEVYDFLASAGAKYGIGFWKPGSGIIHQIVLENYAFPGGLMIGTDSHTPNAGGLGMCAIGVGGADAVDVMAGMAWELKCPKVIGVKLTGKLSGWTSPKDIILKVAGILTVKGGTGAIVEYFGPGVDSISCTGMGTICNMGAEIGATCSTFPYNSRMQDYLKATERSGIAAAADSFKENLKADEGAPYDEIIEIDLNTLRPHVNGPFTPDLAHPVGAEFVSAVKENDWPEELSAALIGSCTNSSYEDMARCADLTEQAKKANIKFKVDMLVTPGSELVRATITRDGFTSTFEEAGATVLANACGPCIGQWNRSEKQGEKNTIITSYNRNFAKRNDGNPQTHAFVASPEMVVATALAGNVTFNPETDSIPTPDGGSFKFEAPFGKELPVKGFDPGEDTFQPSPEDASGLSVVVSPDSARLALLEPFQPWEGSDLEDLPVLIKAKGKCTTDHISMAGPWLKFRGHLDNISNNMLIGAINAENGEVNNVQNQLTGEFGKVPDVARQYKASGIGWVVIGDDNYGEGSSREHAALEPRHLGGRAVVVKSFARIHETNLKKQGMLP 2118
            MIRARAFASGRKA GRY    A RSMSGTPLSVLDPKGSPTIDS Y++MEKNI+AARKTLGRPLTLSEKI+YGHFD+P+T+PVRGETYLKLRPDRVAMQDATAQMAVLQFISSGLPKTACPTTIHCDHLIAAE+GADSDMAAAK+TNKEVYDFLASAGAKYGIGFWKPGSGIIHQIVLENYAFPGGLMIGTDSHTPNAGGLGMCAIGVGGADAVDVMAGM WELKCPKVIGVKLTGKLSGWTSPKDIILKVAGILTVKGGTGAIVEYFGPGVDSISCTGMGTICNMGAEIGATCSTFPYNSRMQDYL+ATERSGIA+AA+SFKE+L+ADEGAPYDE+IEIDL+TLRPHVNGPFTPDLAHPVGAEF +AVKENDWP++LSAALIGSCTNSSYEDMARCADLTEQAKKA +KFKVDMLVTPGSELVRATI RDGFTSTFEEAGATVLANACGPCIGQWNRSEKQGEKNTIITSYNRNFAKRNDGNPQTHAFVASPEMVVATALAG+VTFNPETDSIPT DGGSFKFEAPFGKELPVKGFDPGEDTFQPSPEDA+GLSV VSP+SARLALLEPFQ WEG+DLED+PVLIKAKGKCTTDHISMAGPWLKFRGHLDNISNNMLIGAINAEN EVNNVQNQ+TGEFGKVPD+ARQYKA+G+GWVV+GDDNYGEGSSREHAALEPRHLGGRAVVVKSFARIHETNLKKQGMLP
Sbjct:    1 MIRARAFASGRKAVGRYT---AVRSMSGTPLSVLDPKGSPTIDSAYARMEKNIHAARKTLGRPLTLSEKIIYGHFDEPSTLPVRGETYLKLRPDRVAMQDATAQMAVLQFISSGLPKTACPTTIHCDHLIAAESGADSDMAAAKVTNKEVYDFLASAGAKYGIGFWKPGSGIIHQIVLENYAFPGGLMIGTDSHTPNAGGLGMCAIGVGGADAVDVMAGMPWELKCPKVIGVKLTGKLSGWTSPKDIILKVAGILTVKGGTGAIVEYFGPGVDSISCTGMGTICNMGAEIGATCSTFPYNSRMQDYLEATERSGIASAANSFKEHLRADEGAPYDEVIEIDLDTLRPHVNGPFTPDLAHPVGAEFSAAVKENDWPDDLSAALIGSCTNSSYEDMARCADLTEQAKKAGLKFKVDMLVTPGSELVRATIARDGFTSTFEEAGATVLANACGPCIGQWNRSEKQGEKNTIITSYNRNFAKRNDGNPQTHAFVASPEMVVATALAGSVTFNPETDSIPTADGGSFKFEAPFGKELPVKGFDPGEDTFQPSPEDATGLSVAVSPESARLALLEPFQAWEGTDLEDMPVLIKAKGKCTTDHISMAGPWLKFRGHLDNISNNMLIGAINAENDEVNNVQNQMTGEFGKVPDIARQYKAAGLGWVVVGDDNYGEGSSREHAALEPRHLGGRAVVVKSFARIHETNLKKQGMLP 703          
BLAST of mRNA_P-fluviatile_contig11.1258.1 vs. uniprot
Match: A0A836CC46_9STRA (Aconitate hydratase, mitochondrial n=1 Tax=Tribonema minus TaxID=303371 RepID=A0A836CC46_9STRA)

HSP 1 Score: 1152 bits (2980), Expect = 0.000e+0
Identity = 561/692 (81.07%), Postives = 614/692 (88.73%), Query Frame = 1
Query:   46 RYAGAA-AARSMSGTPLSVLDPKGSPTIDSVYSKMEKNIYAARKTLGRPLTLSEKIVYGHFDDPATVPVRGETYLKLRPDRVAMQDATAQMAVLQFISSGLPKTACPTTIHCDHLIAAETGADSDMAAAKITNKEVYDFLASAGAKYGIGFWKPGSGIIHQIVLENYAFPGGLMIGTDSHTPNAGGLGMCAIGVGGADAVDVMAGMAWELKCPKVIGVKLTGKLSGWTSPKDIILKVAGILTVKGGTGAIVEYFGPGVDSISCTGMGTICNMGAEIGATCSTFPYNSRMQDYLKATERSGIAAAADSFKENLKADEGAPYDEIIEIDLNTLRPHVNGPFTPDLAHPVGAEFVSAVKENDWPEELSAALIGSCTNSSYEDMARCADLTEQAKKANIKFKVDMLVTPGSELVRATITRDGFTSTFEEAGATVLANACGPCIGQWNRSEKQGEKNTIITSYNRNFAKRNDGNPQTHAFVASPEMVVATALAGNVTFNPETDSIPTPDGGSFKFEAPFGKELPVKGFDPGEDTFQPSPEDASGLSVVVSPDSARLALLEPFQPWEGSDLEDLPVLIKAKGKCTTDHISMAGPWLKFRGHLDNISNNMLIGAINAENGEVNNVQNQLTGEFGKVPDVARQYKASGIGWVVIGDDNYGEGSSREHAALEPRHLGGRAVVVKSFARIHETNLKKQGMLP 2118
            R+A AA  +R+ SGTPLSVLDP GSPTI+  Y +M  NI+  RKTLGRPLTLSEKI+YGH  D  TVPVRGETYLKLRPDRVAMQDATAQMAVLQFISSGLP+TA PTTIHCDHLIAAE GAD+D+ AA  TNKEVYDFL+SAGAKYG+GFWKPGSGIIHQIVLENYAFPGGLMIGTDSHTPNAGGLGMCAIGVGGADAVDVMAGM WELKCPKVIGVKLTG+LSGWTSPKD+ILKVAGILTVKGGTGAIVEYFGPG+DSISCTGM TI NMGAEIGATC+TFP+N+RM  YL AT R G+AAAA+ F  NL+ADEGAPYDE++EI+L+ L+PH+NGPFTPDLAH  GAE  +AV++N WP E+SA LIGSCTNSSYEDMARCADL +QA+ A ++FK +MLVTPGSE VRATI RDGFT  F +AGATVLANACGPCIGQWNR+EKQGE NTI+TSYNRNFAKRNDGNPQTHAFVASPE+ VAT LAG++ FNPETD+IP PDG  FKF +P+GKELP KGFDPGEDTFQ  P    GL V VSP S+RLALLEPF  W G DLEDLPVLIKAKGKCTTDHISMAGPWLKFRGHLDNISNNMLIGA+NAENGE N VQN LTGE+GKVPDVARQYKA+G  WVV+GD+NYGEGSSREHAALEPRHLGG A++ KSFARIHETNLKKQGMLP
Sbjct:   21 RHAAAAITSRAASGTPLSVLDPPGSPTIEETYDRMASNIHTVRKTLGRPLTLSEKIIYGHLVDSKTVPVRGETYLKLRPDRVAMQDATAQMAVLQFISSGLPQTAVPTTIHCDHLIAAEKGADADLKAATTTNKEVYDFLSSAGAKYGMGFWKPGSGIIHQIVLENYAFPGGLMIGTDSHTPNAGGLGMCAIGVGGADAVDVMAGMPWELKCPKVIGVKLTGELSGWTSPKDVILKVAGILTVKGGTGAIVEYFGPGLDSISCTGMATIANMGAEIGATCTTFPFNARMATYLAATTRGGLAAAAEGFAANLRADEGAPYDELVEINLSELKPHLNGPFTPDLAHTAGAEMAAAVEKNGWPREVSAGLIGSCTNSSYEDMARCADLVQQAEMAGLRFKSEMLVTPGSEQVRATIERDGFTEIFTKAGATVLANACGPCIGQWNRAEKQGEANTIVTSYNRNFAKRNDGNPQTHAFVASPELTVATTLAGDIAFNPETDTIPLPDGKQFKFTSPYGKELPPKGFDPGEDTFQAPPVSGKGLEVHVSPSSSRLALLEPFDAWNGKDLEDLPVLIKAKGKCTTDHISMAGPWLKFRGHLDNISNNMLIGAVNAENGETNKVQNLLTGEYGKVPDVARQYKAAGKQWVVVGDENYGEGSSREHAALEPRHLGGVAIITKSFARIHETNLKKQGMLP 712          
BLAST of mRNA_P-fluviatile_contig11.1258.1 vs. uniprot
Match: A0A7S2V7X3_9STRA (Aconitate hydratase, mitochondrial n=1 Tax=Fibrocapsa japonica TaxID=94617 RepID=A0A7S2V7X3_9STRA)

HSP 1 Score: 1123 bits (2904), Expect = 0.000e+0
Identity = 545/684 (79.68%), Postives = 600/684 (87.72%), Query Frame = 1
Query:   70 RSMSGTPLSVLDPKGSPTIDSVYSKMEKNIYAARKTLGRPLTLSEKIVYGHFDDPATVPVRGETYLKLRPDRVAMQDATAQMAVLQFISSGLPKTACPTTIHCDHLIAAETGADSDMAAAKITNKEVYDFLASAGAKYGIGFWKPGSGIIHQIVLENYAFPGGLMIGTDSHTPNAGGLGMCAIGVGGADAVDVMAGMAWELKCPKVIGVKLTGKLSGWTSPKDIILKVAGILTVKGGTGAIVEYFGPGVDSISCTGMGTICNMGAEIGATCSTFPYNSRMQDYLKATERSGIAAAADSFKENLKADEGAPYDEIIEIDLNTLRPHVNGPFTPDLAHPVGAEFVSAVKENDWPEELSAALIGSCTNSSYEDMARCADLTEQAKKANIKFKVDMLVTPGSELVRATITRDGFTSTFEEAGATVLANACGPCIGQWNRSEKQGEKNTIITSYNRNFAKRNDGNPQTHAFVASPEMVVATALAGNVTFNPETDSIPTPDGGSFKFEAPFGKELPVKGFDPGEDTFQPSPEDASGLSVVVSPDSARLALLEPFQPWEGSD-LEDLPVLIKAKGKCTTDHISMAGPWLKFRGHLDNISNNMLIGAINAENGEVNNVQNQLTGEFGKVPDVARQYKASGIGWVVIGDDNYGEGSSREHAALEPRHLGGRAVVVKSFARIHETNLKKQGMLP 2118
            R  SGTPLSVLDP GSPTI+  Y  M  NI AARKTLGRPLTLSEKIVYGH D+P+ VPVRGETYLKLRPDRVAMQDATAQMAVLQFISSGLPKTA P+TIHCDHLIAAE G+  D+ AAK+TNKEVYDFLASAGAKYGIGFW+PGSGIIHQIVLENYAFPGGLMIGTDSHTPNAGGLGMCA+GVGGADAVDVMAGMAWELKCPKVIGV LTGKLS WTSPKD+ILKVA ILTVKGGTGAIVEYFG GV+S+SCTGMGTICNMGAEIGATCSTFPY  +M DYLKAT+R  +AAAAD FK+NLKADEGA YD++IE++L++L+P +NGPFTPD AH  GA   ++VKEN WPEE+SA LIGSCTNSSYEDM RCADL  QA  A +  K   L+TPGSE VRATI RDG   TFE+AG TVLANACGPCIGQWNR EKQGE N+I+TSYNRNFAKRNDGNPQTHAFV SPE+V A A AG +TF+PE+DSIPTP GG F+FEAP GKELP +GFDPGEDTFQ  PED +GL VVVSPDSARLALL+PF+ W+G+D   D PVLIKA+GKCTTDHISMAGPWLK+RGHLDNISNNMLIGA+NAE G +N V NQL+G  G VPDVAR+YKA+G+ WVV+GD+NYGEGSSREHAALEPRHLGG AV+ +SFARIHETNLKKQGMLP
Sbjct:   27 RWFSGTPLSVLDPAGSPTIEQTYESMSANIQAARKTLGRPLTLSEKIVYGHLDNPSQVPVRGETYLKLRPDRVAMQDATAQMAVLQFISSGLPKTAVPSTIHCDHLIAAEKGSSDDLHAAKVTNKEVYDFLASAGAKYGIGFWQPGSGIIHQIVLENYAFPGGLMIGTDSHTPNAGGLGMCAVGVGGADAVDVMAGMAWELKCPKVIGVNLTGKLSPWTSPKDVILKVADILTVKGGTGAIVEYFGEGVESLSCTGMGTICNMGAEIGATCSTFPYTQKMADYLKATKREKLAAAADGFKDNLKADEGAQYDQVIEVNLDSLKPMLNGPFTPDWAHEAGAGISASVKENSWPEEMSAGLIGSCTNSSYEDMTRCADLVAQAMAAGLTCKAPFLITPGSEQVRATIARDGLVETFEKAGGTVLANACGPCIGQWNRHEKQGEANSILTSYNRNFAKRNDGNPQTHAFVTSPELVTACAFAGTITFDPESDSIPTPGGGEFRFEAPHGKELPPRGFDPGEDTFQAPPEDGTGLEVVVSPDSARLALLDPFEGWDGADEAADCPVLIKAQGKCTTDHISMAGPWLKYRGHLDNISNNMLIGAVNAETGAINEVTNQLSGAAGAVPDVAREYKAAGVKWVVVGDENYGEGSSREHAALEPRHLGGIAVITRSFARIHETNLKKQGMLP 710          
BLAST of mRNA_P-fluviatile_contig11.1258.1 vs. uniprot
Match: A0A397DX41_9STRA (Aconitate hydratase, mitochondrial (Fragment) n=12 Tax=Aphanomyces TaxID=100860 RepID=A0A397DX41_9STRA)

HSP 1 Score: 1083 bits (2800), Expect = 0.000e+0
Identity = 539/685 (78.69%), Postives = 586/685 (85.55%), Query Frame = 1
Query:   70 RSMSGTPLSVLDPKGSPTIDSVYSKMEKNIYAARKTLGRPLTLSEKIVYGHFDDPAT-VPVRGETYLKLRPDRVAMQDATAQMAVLQFISSGLPKTACPTTIHCDHLIAAETGADSDMAAAKITNKEVYDFLASAGAKYGIGFWKPGSGIIHQIVLENYAFPGGLMIGTDSHTPNAGGLGMCAIGVGGADAVDVMAGMAWELKCPKVIGVKLTGKLSGWTSPKDIILKVAGILTVKGGTGAIVEYFGPGVDSISCTGMGTICNMGAEIGATCSTFPYNSRMQDYLKATERSGIAAAADSFKENLKADEGAPYDEIIEIDLNTLRPHVNGPFTPDLAHPVGAEFVSAVKENDWPEELSAALIGSCTNSSYEDMARCADLTEQAKKANIKFKVDMLVTPGSELVRATITRDGFTSTFEEAGATVLANACGPCIGQWNRSE-KQGEKNTIITSYNRNFAKRNDGNPQTHAFVASPEMVVATALAGNVTFNPETDSIPTPDGGSFKFEAPFGKELPVKGFDPGEDTFQPSPEDASGLSVVVSPDSARLALLEPFQPWEGSDLEDLPVLIKAKGKCTTDHISMAGPWLKFRGHLDNISNNMLIGAINAENGEVNNVQNQLTGEFGKVPDVARQYKASGIGWVVIGDDNYGEGSSREHAALEPRHLGGRAVVVKSFARIHETNLKKQGMLP 2118
            R+ S TPLSVLDPKGS TID  Y+K+E N+   RKTL RPLTL+EKI+YGH DDP    P RGETYLKLRPDRVAMQDATAQMAVLQFISSGLPKTA PTTIHCDHLI AE G+  D+  AK  NKEVYDFL SAGAK+G+GFW+PGSGIIHQIVLENYAFPGGLMIGTDSHT NAGGLGMCAIGVGGADAVDVMAGMAWELK PKVIGVKLTGKLSGWTSPKD+ILKVA ILTVKGGTGAIVEYFGPGV+SISCTGMGTICNMGAEIGATCSTFPY  RM DYLKAT R G+A+AADSFK NL ADEGA YD+IIEI+L+TL+P +NGPFTPD A+  G     A + N WP ELSA LIGSCTNSSYED++RCADLT+QAKKA ++FKV   VTPGSE VRATI RDG   TF EAG TVLANACGPCIGQWNR++   G KN+I+TSYNRNFAKR DGNP+THAFV SPE+V   ++AG  TF+PETDS+ TPDG  FKFEAP GKELP +GFD GEDTFQPSPED S LSV VSP S RLALLEPF  W G D E+LPVLIK KGKCTTDHISMAGPWLK+RGHLDNISNNMLIGA+NAEN E N+V +QL G + KVP VARQYKA GI WVV+GD+NYGEGSSREHAALEPRHLGGRAV+VKSFARIHETNLKKQGMLP
Sbjct:   57 RAASSTPLSVLDPKGSATIDETYAKIEHNLGVIRKTLNRPLTLAEKIIYGHLDDPHFGTPKRGETYLKLRPDRVAMQDATAQMAVLQFISSGLPKTAVPTTIHCDHLITAEKGSTIDLTTAKDVNKEVYDFLESAGAKFGMGFWRPGSGIIHQIVLENYAFPGGLMIGTDSHTVNAGGLGMCAIGVGGADAVDVMAGMAWELKAPKVIGVKLTGKLSGWTSPKDVILKVADILTVKGGTGAIVEYFGPGVESISCTGMGTICNMGAEIGATCSTFPYTDRMADYLKATTRPGLASAADSFKANLIADEGAHYDQIIEINLDTLKPLLNGPFTPDRANLAGKGIKEASEANGWPTELSAGLIGSCTNSSYEDLSRCADLTQQAKKAGLQFKVPYYVTPGSEQVRATIARDGILDTFLEAGGTVLANACGPCIGQWNRTDVPYGVKNSIVTSYNRNFAKRADGNPETHAFVTSPELVTVCSIAGTTTFDPETDSLTTPDGKLFKFEAPHGKELPPRGFDAGEDTFQPSPEDGSKLSVKVSPTSDRLALLEPFDEWNGKDFENLPVLIKTKGKCTTDHISMAGPWLKYRGHLDNISNNMLIGAVNAENDETNHVVHQLKGTYDKVPAVARQYKAEGISWVVVGDENYGEGSSREHAALEPRHLGGRAVIVKSFARIHETNLKKQGMLP 741          
BLAST of mRNA_P-fluviatile_contig11.1258.1 vs. uniprot
Match: A0A397CYM6_9STRA (Ricin B-type lectin domain-containing protein n=3 Tax=Aphanomyces astaci TaxID=112090 RepID=A0A397CYM6_9STRA)

HSP 1 Score: 1082 bits (2797), Expect = 0.000e+0
Identity = 538/685 (78.54%), Postives = 586/685 (85.55%), Query Frame = 1
Query:   70 RSMSGTPLSVLDPKGSPTIDSVYSKMEKNIYAARKTLGRPLTLSEKIVYGHFDDPAT-VPVRGETYLKLRPDRVAMQDATAQMAVLQFISSGLPKTACPTTIHCDHLIAAETGADSDMAAAKITNKEVYDFLASAGAKYGIGFWKPGSGIIHQIVLENYAFPGGLMIGTDSHTPNAGGLGMCAIGVGGADAVDVMAGMAWELKCPKVIGVKLTGKLSGWTSPKDIILKVAGILTVKGGTGAIVEYFGPGVDSISCTGMGTICNMGAEIGATCSTFPYNSRMQDYLKATERSGIAAAADSFKENLKADEGAPYDEIIEIDLNTLRPHVNGPFTPDLAHPVGAEFVSAVKENDWPEELSAALIGSCTNSSYEDMARCADLTEQAKKANIKFKVDMLVTPGSELVRATITRDGFTSTFEEAGATVLANACGPCIGQWNRSE-KQGEKNTIITSYNRNFAKRNDGNPQTHAFVASPEMVVATALAGNVTFNPETDSIPTPDGGSFKFEAPFGKELPVKGFDPGEDTFQPSPEDASGLSVVVSPDSARLALLEPFQPWEGSDLEDLPVLIKAKGKCTTDHISMAGPWLKFRGHLDNISNNMLIGAINAENGEVNNVQNQLTGEFGKVPDVARQYKASGIGWVVIGDDNYGEGSSREHAALEPRHLGGRAVVVKSFARIHETNLKKQGMLP 2118
            R+ S TPLSVLDPKGS TID  Y+K+E N+   RKTL RPLTL+EKI+YGH DDP    P RGETYLKLRPDRVAMQDATAQMAVLQFISSGLPKTA PTTIHCDHLI AE G+  D+  AK  NKEVYDFL SAGAK+G+GFW+PGSGIIHQIVLENYAFPGGLMIGTDSHT NAGGLGMCAIGVGGADAVDVMAGMAWELK PKVIGVKLTGKLSGWTSPKD+ILKVA ILTVKGGTGAIVEYFGPGV+SISCTGMGTICNMGAEIGATCSTFPY  RM DYLKAT R G+A+AADSFK NL ADEGA YD+IIEI+L+TL+P +NGPFTPD A+  G     A + N WP ELSA LIGSCTNSSYED++RCADLT+QAKKA ++FKV   VTPGSE VRATI RDG   TF EAG TVLANACGPCIGQWNR++   G KN+I+TSYNRNFAKR DGNP+THAFV SPE+V   ++AG  TF+PETDS+ TPDG  FKFEAP GKELP +GFD GEDTFQPSPED S LSV VSP S RLALLEPF  W G D E+LPVLIK KGKCTTDHISMAGPWLK+RGHLDNISNNMLIGA+NAEN E N+V +Q+ G + KVP VARQYKA GI WVV+GD+NYGEGSSREHAALEPRHLGGRAV+VKSFARIHETNLKKQGMLP
Sbjct: 1160 RAASSTPLSVLDPKGSATIDETYAKIEHNLGVIRKTLNRPLTLAEKIIYGHLDDPHFGTPKRGETYLKLRPDRVAMQDATAQMAVLQFISSGLPKTAVPTTIHCDHLITAEKGSTIDLTTAKDVNKEVYDFLESAGAKFGMGFWRPGSGIIHQIVLENYAFPGGLMIGTDSHTVNAGGLGMCAIGVGGADAVDVMAGMAWELKAPKVIGVKLTGKLSGWTSPKDVILKVADILTVKGGTGAIVEYFGPGVESISCTGMGTICNMGAEIGATCSTFPYTDRMADYLKATTRPGLASAADSFKANLIADEGAHYDQIIEINLDTLKPLLNGPFTPDRANLAGKGIKEASEANGWPTELSAGLIGSCTNSSYEDLSRCADLTQQAKKAGLQFKVPYYVTPGSEQVRATIARDGILDTFLEAGGTVLANACGPCIGQWNRTDVPYGVKNSIVTSYNRNFAKRADGNPETHAFVTSPELVTVCSIAGTTTFDPETDSLTTPDGKLFKFEAPHGKELPPRGFDAGEDTFQPSPEDGSKLSVKVSPTSDRLALLEPFDEWNGKDFENLPVLIKTKGKCTTDHISMAGPWLKYRGHLDNISNNMLIGAVNAENDETNHVVHQVKGTYDKVPAVARQYKAEGISWVVVGDENYGEGSSREHAALEPRHLGGRAVIVKSFARIHETNLKKQGMLP 1844          
BLAST of mRNA_P-fluviatile_contig11.1258.1 vs. uniprot
Match: A0A485KQT9_9STRA (Aconitate hydratase, mitochondrial n=1 Tax=Aphanomyces stellatus TaxID=120398 RepID=A0A485KQT9_9STRA)

HSP 1 Score: 1082 bits (2797), Expect = 0.000e+0
Identity = 537/685 (78.39%), Postives = 584/685 (85.26%), Query Frame = 1
Query:   70 RSMSGTPLSVLDPKGSPTIDSVYSKMEKNIYAARKTLGRPLTLSEKIVYGHFDDPAT-VPVRGETYLKLRPDRVAMQDATAQMAVLQFISSGLPKTACPTTIHCDHLIAAETGADSDMAAAKITNKEVYDFLASAGAKYGIGFWKPGSGIIHQIVLENYAFPGGLMIGTDSHTPNAGGLGMCAIGVGGADAVDVMAGMAWELKCPKVIGVKLTGKLSGWTSPKDIILKVAGILTVKGGTGAIVEYFGPGVDSISCTGMGTICNMGAEIGATCSTFPYNSRMQDYLKATERSGIAAAADSFKENLKADEGAPYDEIIEIDLNTLRPHVNGPFTPDLAHPVGAEFVSAVKENDWPEELSAALIGSCTNSSYEDMARCADLTEQAKKANIKFKVDMLVTPGSELVRATITRDGFTSTFEEAGATVLANACGPCIGQWNRSE-KQGEKNTIITSYNRNFAKRNDGNPQTHAFVASPEMVVATALAGNVTFNPETDSIPTPDGGSFKFEAPFGKELPVKGFDPGEDTFQPSPEDASGLSVVVSPDSARLALLEPFQPWEGSDLEDLPVLIKAKGKCTTDHISMAGPWLKFRGHLDNISNNMLIGAINAENGEVNNVQNQLTGEFGKVPDVARQYKASGIGWVVIGDDNYGEGSSREHAALEPRHLGGRAVVVKSFARIHETNLKKQGMLP 2118
            R+ S TPLSVLDPKGS TI+  YSKMEKNI   RKTL RPLTL+EKI+YGH DDP    P RGETYLKLRPDRVAMQDATAQMAVLQFISSGLPKTA P+TIHCDHLI AE G+ +D+  AK  NKEVYDFLASAGAK+GIGFW+PGSGIIHQIVLENYAFPGGLMIGTDSHT NAGGLGMCAIGVGGADAVDVMAGMAWELK PKVIGVKLTGKLSGWTSPKD+ILKVA ILTVKGGTGAIVEYFGPGVDSISCTGMGTICNMGAEIGATCSTFPY  RM DYL AT+R G+AAAAD+FK NL AD GA YD+IIEI+L+TL+P +NGPFTPD A+  G     A ++N WP ELSA LIGSCTNSSYED++RCADLT+QAKKA +KFKV   VTPGSE VRATI RDG   TF EAG TVLANACGPCIGQWNR++   G KN+I+TSYNRNFAKR DGNP+THAFV SPE+V   ++AG  TF+PETDSI TPDG  FKF+AP GKELP +GFD GEDTFQP P D S LSV+VSP S RLALLEPF  W G D  D+PVLIKAKGKCTTDHISMAGPWLK+RGHLDNISNNMLIGA+NAEN + N V +Q  G + KVP  AR YKA GI WVV+GD+NYGEGSSREHAALEPRHLGGRAV+VKSFARIHETNLKKQGMLP
Sbjct:   27 RAASTTPLSVLDPKGSATIEETYSKMEKNIGIIRKTLNRPLTLAEKIIYGHLDDPHFGEPKRGETYLKLRPDRVAMQDATAQMAVLQFISSGLPKTAVPSTIHCDHLITAEKGSTTDLNTAKTVNKEVYDFLASAGAKFGIGFWRPGSGIIHQIVLENYAFPGGLMIGTDSHTVNAGGLGMCAIGVGGADAVDVMAGMAWELKAPKVIGVKLTGKLSGWTSPKDVILKVADILTVKGGTGAIVEYFGPGVDSISCTGMGTICNMGAEIGATCSTFPYTQRMADYLNATKRPGLAAAADAFKHNLVADAGAHYDQIIEINLDTLKPLLNGPFTPDRANLAGKGIKEASEQNGWPTELSAGLIGSCTNSSYEDLSRCADLTQQAKKAGLKFKVPYFVTPGSEQVRATIARDGILDTFTEAGGTVLANACGPCIGQWNRTDIPMGTKNSIVTSYNRNFAKRADGNPETHAFVTSPELVTVCSIAGTTTFDPETDSITTPDGKQFKFDAPHGKELPPRGFDAGEDTFQPPPADGSKLSVIVSPTSDRLALLEPFDEWNGKDFLDMPVLIKAKGKCTTDHISMAGPWLKYRGHLDNISNNMLIGAVNAENDKTNEVLHQFKGTYDKVPATARAYKAEGISWVVVGDENYGEGSSREHAALEPRHLGGRAVIVKSFARIHETNLKKQGMLP 711          
BLAST of mRNA_P-fluviatile_contig11.1258.1 vs. uniprot
Match: K3W6K0_GLOUD (Aconitate hydratase, mitochondrial n=2 Tax=Pythiaceae TaxID=4782 RepID=K3W6K0_GLOUD)

HSP 1 Score: 1078 bits (2789), Expect = 0.000e+0
Identity = 535/679 (78.79%), Postives = 578/679 (85.13%), Query Frame = 1
Query:   88 PLSVLDPKGSPTIDSVYSKMEKNIYAARKTLG-RPLTLSEKIVYGHFDDPATVPVRGETYLKLRPDRVAMQDATAQMAVLQFISSGLPKTACPTTIHCDHLIAAETGADSDMAAAKITNKEVYDFLASAGAKYGIGFWKPGSGIIHQIVLENYAFPGGLMIGTDSHTPNAGGLGMCAIGVGGADAVDVMAGMAWELKCPKVIGVKLTGKLSGWTSPKDIILKVAGILTVKGGTGAIVEYFGPGVDSISCTGMGTICNMGAEIGATCSTFPYNSRMQDYLKATERSGIAAAADSFKENLKADEGAPYDEIIEIDLNTLRPHVNGPFTPDLAHPVGAEFVSAVKENDWPEELSAALIGSCTNSSYEDMARCADLTEQAKKANIKFKVDMLVTPGSELVRATITRDGFTSTFEEAGATVLANACGPCIGQWNRSE-KQGEKNTIITSYNRNFAKRNDGNPQTHAFVASPEMVVATALAGNVTFNPETDSIPTPDGGSFKFEAPFGKELPVKGFDPGEDTFQPSPEDASGLSVVVSPDSARLALLEPFQPWEGSDLEDLPVLIKAKGKCTTDHISMAGPWLKFRGHLDNISNNMLIGAINAENGEVNNVQNQLTGEFGKVPDVARQYKASGIGWVVIGDDNYGEGSSREHAALEPRHLGGRAVVVKSFARIHETNLKKQGMLP 2118
            PLSVLDPKGSPTID  Y KMEKN++  RKT G +PLTL+EKI+YGH D+   V VRGETYLKLRPDRVAMQDATAQMAVLQFISSGLPKTA PTTIHCDHLI AE G+ +D+  A I NKEVYDFL+SAGAK+G+GFWKPGSGIIHQIVLENYAFPGGLMIGTDSHTPNAGGLGMCAIGVGGADAVDVMAGMAWELK PKVIGVKLTGKLSGWTSPKD+ILKVA ILTVKGGTGAIVEYFGPGV+SISCTGMGTICNMGAEIGATCSTFPY  RM DYLKAT RSGIA+AADSFK NL+ADEGA YD+IIEI+L+ L+P VNGPFTPDLA+  G +  +A ++N WP ELSA LIGSCTNSSYEDM RCA+L  QA+KA +KFKV   VTPGSE VRATI RDG   TF +AG T LANACGPCIGQWNR +   G KN+I TSYNRNFAKRNDGNP THAFV SPEMV   ++AG  TFNP TDSI TP G  FKFEAPFGKELP +GFD GE+TFQ  P D S L V V   S RLALL PF  W G D E LPVLIKAKGKCTTDHISMAGPWLK+RGHLDNISNN+LIGA NAE GE N+V+NQ TG F KVP VARQYKA G+ WVV+GD+NYGEGSSREHAALEPRHLGGRAV+VKSFARIHETNLKKQGMLP
Sbjct:   34 PLSVLDPKGSPTIDQTYEKMEKNLHHVRKTWGNKPLTLAEKIIYGHLDNADQVAVRGETYLKLRPDRVAMQDATAQMAVLQFISSGLPKTAVPTTIHCDHLITAEKGSTTDLNNANIVNKEVYDFLSSAGAKFGMGFWKPGSGIIHQIVLENYAFPGGLMIGTDSHTPNAGGLGMCAIGVGGADAVDVMAGMAWELKAPKVIGVKLTGKLSGWTSPKDVILKVADILTVKGGTGAIVEYFGPGVESISCTGMGTICNMGAEIGATCSTFPYTDRMADYLKATTRSGIASAADSFKANLRADEGAQYDQIIEINLDELKPLVNGPFTPDLANEAGEQLKAASEKNGWPTELSAGLIGSCTNSSYEDMTRCAELINQAEKAGLKFKVPYYVTPGSEQVRATIERDGVLDTFLKAGGTALANACGPCIGQWNREDLNMGVKNSIFTSYNRNFAKRNDGNPATHAFVTSPEMVTVCSIAGTTTFNPATDSITTPSGEQFKFEAPFGKELPPRGFDAGEETFQAPPADGSSLKVNVDAASDRLALLSPFDEWHGKDFESLPVLIKAKGKCTTDHISMAGPWLKYRGHLDNISNNLLIGAENAETGETNSVKNQFTGVFDKVPAVARQYKAQGVSWVVVGDENYGEGSSREHAALEPRHLGGRAVIVKSFARIHETNLKKQGMLP 712          
BLAST of mRNA_P-fluviatile_contig11.1258.1 vs. uniprot
Match: M4B1W8_HYAAE (Aconitate hydratase, mitochondrial n=22 Tax=Peronosporaceae TaxID=4777 RepID=M4B1W8_HYAAE)

HSP 1 Score: 1077 bits (2786), Expect = 0.000e+0
Identity = 528/682 (77.42%), Postives = 586/682 (85.92%), Query Frame = 1
Query:   79 SGTPLSVLDPKGSPTIDSVYSKMEKNIYAARKTLG-RPLTLSEKIVYGHFDDPATVPVRGETYLKLRPDRVAMQDATAQMAVLQFISSGLPKTACPTTIHCDHLIAAETGADSDMAAAKITNKEVYDFLASAGAKYGIGFWKPGSGIIHQIVLENYAFPGGLMIGTDSHTPNAGGLGMCAIGVGGADAVDVMAGMAWELKCPKVIGVKLTGKLSGWTSPKDIILKVAGILTVKGGTGAIVEYFGPGVDSISCTGMGTICNMGAEIGATCSTFPYNSRMQDYLKATERSGIAAAADSFKENLKADEGAPYDEIIEIDLNTLRPHVNGPFTPDLAHPVGAEFVSAVKENDWPEELSAALIGSCTNSSYEDMARCADLTEQAKKANIKFKVDMLVTPGSELVRATITRDGFTSTFEEAGATVLANACGPCIGQWNRSE-KQGEKNTIITSYNRNFAKRNDGNPQTHAFVASPEMVVATALAGNVTFNPETDSIPTPDGGSFKFEAPFGKELPVKGFDPGEDTFQPSPEDASGLSVVVSPDSARLALLEPFQPWEGSDLEDLPVLIKAKGKCTTDHISMAGPWLKFRGHLDNISNNMLIGAINAENGEVNNVQNQLTGEFGKVPDVARQYKASGIGWVVIGDDNYGEGSSREHAALEPRHLGGRAVVVKSFARIHETNLKKQGMLP 2118
            S  PLSVLDP+GSPTID  Y+KMEKN++  RKT+  +PLTL+EKI+YGH DD      RGETYLKLRPDRVAMQDATAQMAVLQFISSGLPKTA PTTIHCDHLI AE G+D D++ AKI NKEVYDFL+SAGAK+G+GFWKPGSGIIHQIVLENYAFPGGLMIGTDSHTPNAGGLGMCA+GVGGADAVDVMAGMAWELK PKVIGV LTGKLSGWTSPKD+ILKVA +LTVKGGTGAIVEYFGPGV+SISCTGMGTICNMGAEIGATCSTFPY  RM DYL++T+RSGIA+AA+SF+ NL+ADEGA YD+I+EI+L+ L+P +NGPFTPDL H  GA+   A ++N WP ELSA LIGSCTNSSYEDM RCADLT+QAK+A +KFK+   VTPGSE VRATI RDG   TF E+GATVLANACGPCIGQWNR++   GEKN+I TSYNRNFAKR DGNP TH+FV SPE+V  +++AG  TF+P  D+I TPDG  FKF APFGKELP  GFDPGE+TF   P    GL+V V P+S RLALL  F  W G DL D+PVLIKAKGKCTTDHISMAGPWLK+RGHLDNISNNMLIGA+NAE GE NNV+NQLTG F KVP VARQYKASG  WVVIGD+NYGEGSSREHAALEPRHLGG AV+VKSFARIHETNLKKQGMLP
Sbjct:    9 SSVPLSVLDPEGSPTIDGTYAKMEKNLHTVRKTMSDKPLTLAEKIIYGHLDDATVKATRGETYLKLRPDRVAMQDATAQMAVLQFISSGLPKTAVPTTIHCDHLITAEKGSDKDLSNAKIINKEVYDFLSSAGAKFGMGFWKPGSGIIHQIVLENYAFPGGLMIGTDSHTPNAGGLGMCAVGVGGADAVDVMAGMAWELKAPKVIGVNLTGKLSGWTSPKDVILKVAHMLTVKGGTGAIVEYFGPGVESISCTGMGTICNMGAEIGATCSTFPYTERMGDYLRSTKRSGIASAAESFQANLRADEGAHYDQILEINLDELKPMLNGPFTPDLGHVAGADMKVASEKNGWPTELSAGLIGSCTNSSYEDMTRCADLTKQAKEAGLKFKIPYYVTPGSEQVRATIARDGILDTFLESGATVLANACGPCIGQWNRTDVAMGEKNSIFTSYNRNFAKRADGNPATHSFVTSPELVTVSSIAGVTTFDPAKDTIKTPDGKDFKFSAPFGKELPPLGFDPGEETFLAPPASGEGLTVNVDPNSERLALLSAFDEWNGEDLVDMPVLIKAKGKCTTDHISMAGPWLKYRGHLDNISNNMLIGAVNAETGETNNVKNQLTGTFDKVPAVARQYKASGCKWVVIGDENYGEGSSREHAALEPRHLGGSAVIVKSFARIHETNLKKQGMLP 690          
BLAST of mRNA_P-fluviatile_contig11.1258.1 vs. uniprot
Match: A0A7S0P924_CAFRO (Aconitate hydratase, mitochondrial n=3 Tax=Cafeteria roenbergensis TaxID=33653 RepID=A0A7S0P924_CAFRO)

HSP 1 Score: 1075 bits (2780), Expect = 0.000e+0
Identity = 535/686 (77.99%), Postives = 578/686 (84.26%), Query Frame = 1
Query:   64 AARSMSGTPLSVLDPKGSPTIDSVYSKMEKNIYAARKTLGRPLTLSEKIVYGHFDDPATVPVRGETYLKLRPDRVAMQDATAQMAVLQFISSGLPKTACPTTIHCDHLIAAETGADSDMAAAKITNKEVYDFLASAGAKYGIGFWKPGSGIIHQIVLENYAFPGGLMIGTDSHTPNAGGLGMCAIGVGGADAVDVMAGMAWELKCPKVIGVKLTGKLSGWTSPKDIILKVAGILTVKGGTGAIVEYFGPGVDSISCTGMGTICNMGAEIGATCSTFPYNSRMQDYLKATERSGIAAAADSFKENLKADEGAPYDEIIEIDLNTLRPHVNGPFTPDLAHPVGAEFVSAVKENDWPEELSAALIGSCTNSSYEDMARCADLTEQAKKANIKFKVDMLVTPGSELVRATITRDGFTSTFEEAGATVLANACGPCIGQWNRSEKQ-GEKNTIITSYNRNFAKRNDGNPQTHAFVASPEMVVATALAGNVTFNPETDSIPTPDGGSFKFEAPFGKELPVKGFDPGEDTFQPSPEDASGLSVVVSPDSARLALLEPFQPWEGSDLEDLPVLIKAKGKCTTDHISMAGPWLKFRGHLDNISNNMLIGAINAENGEVNNVQNQLTGEFGKVPDVARQYKASGIGWVVIGDDNYGEGSSREHAALEPRHLGGRAVVVKSFARIHETNLKKQGMLP 2118
            A R MS TPLSVLDP GSPTI+  Y+KM  NI  ARK+LGRPLTLSEKIVYGH +DPA+ PVRGETYLKLRPDRVAMQDATAQMAVLQFISSGLPK A P+TIHCDHLIAAE GAD+DM AAK  N+EVYDFLA+AGAK+GIGFW+PGSGIIHQIVLENYAFPGGLMIGTDSHTPNAGGLGMCA+GVGGADAVDVMAG+AWELKCPKVIGV LTG LSGWTSPKDIILKVA ILTVKGGTGAIVEYFGPGVDSISCTGMGTICNMGAEIGATCSTFPYN RM DYL+AT R GIA AAD F++NL+ADEGA YD IIEIDL+TL PHVNGPFTPDLAHPV      AV  N WP E+SA LIGSCTNSSYED++RCADLT QA  A +KFK   +VTPGSE VRATITRDG   TF EAGATVLANACGPCIGQWNR +K  GE NTI+TSYNRNFAKRNDGNP TH FV SPEM    A  G + FNP TD++   DG  F+F APFG +LP  GFD GEDTFQ  P D S + V V P S RL LL PF  W+G D + +PVLIKAKGKCTTDHISMAGPWLK+RGHL NISNNMLIGAINAE GE N VQN  T E+G+VP VA  Y+ +GIGWVVIGD+NYGEGSSREHAALEPR LGGRA++V+SFARIHETNLKKQGMLP
Sbjct:   25 ATRQMSSTPLSVLDPAGSPTIEETYAKMGANIEIARKSLGRPLTLSEKIVYGHLEDPASNPVRGETYLKLRPDRVAMQDATAQMAVLQFISSGLPKVAAPSTIHCDHLIAAENGADADMKAAKDLNREVYDFLATAGAKFGIGFWRPGSGIIHQIVLENYAFPGGLMIGTDSHTPNAGGLGMCAVGVGGADAVDVMAGLAWELKCPKVIGVHLTGSLSGWTSPKDIILKVADILTVKGGTGAIVEYFGPGVDSISCTGMGTICNMGAEIGATCSTFPYNERMGDYLRATGREGIAKAADGFRDNLRADEGAEYDRIIEIDLDTLVPHVNGPFTPDLAHPVDQLGERAVA-NGWPVEVSAGLIGSCTNSSYEDLSRCADLTRQALAAGLKFKTPFMVTPGSEQVRATITRDGLAKTFSEAGATVLANACGPCIGQWNRHDKDMGEANTIVTSYNRNFAKRNDGNPATHCFVTSPEMATIFAFTGTLDFNPMTDALTLEDGSEFRFTAPFGDQLPKAGFDHGEDTFQAPPADGSAVEVAVDPKSDRLQLLTPFSAWDGEDYKGMPVLIKAKGKCTTDHISMAGPWLKYRGHLQNISNNMLIGAINAETGETNCVQNLDTKEWGEVPAVAAAYRDAGIGWVVIGDENYGEGSSREHAALEPRFLGGRAIIVRSFARIHETNLKKQGMLP 709          
BLAST of mRNA_P-fluviatile_contig11.1258.1 vs. uniprot
Match: A0A8K1CDT1_PYTOL (Uncharacterized protein n=1 Tax=Pythium oligandrum TaxID=41045 RepID=A0A8K1CDT1_PYTOL)

HSP 1 Score: 1074 bits (2777), Expect = 0.000e+0
Identity = 529/679 (77.91%), Postives = 575/679 (84.68%), Query Frame = 1
Query:   88 PLSVLDPKGSPTIDSVYSKMEKNIYAARKTLG-RPLTLSEKIVYGHFDDPATVPVRGETYLKLRPDRVAMQDATAQMAVLQFISSGLPKTACPTTIHCDHLIAAETGADSDMAAAKITNKEVYDFLASAGAKYGIGFWKPGSGIIHQIVLENYAFPGGLMIGTDSHTPNAGGLGMCAIGVGGADAVDVMAGMAWELKCPKVIGVKLTGKLSGWTSPKDIILKVAGILTVKGGTGAIVEYFGPGVDSISCTGMGTICNMGAEIGATCSTFPYNSRMQDYLKATERSGIAAAADSFKENLKADEGAPYDEIIEIDLNTLRPHVNGPFTPDLAHPVGAEFVSAVKENDWPEELSAALIGSCTNSSYEDMARCADLTEQAKKANIKFKVDMLVTPGSELVRATITRDGFTSTFEEAGATVLANACGPCIGQWNRSE-KQGEKNTIITSYNRNFAKRNDGNPQTHAFVASPEMVVATALAGNVTFNPETDSIPTPDGGSFKFEAPFGKELPVKGFDPGEDTFQPSPEDASGLSVVVSPDSARLALLEPFQPWEGSDLEDLPVLIKAKGKCTTDHISMAGPWLKFRGHLDNISNNMLIGAINAENGEVNNVQNQLTGEFGKVPDVARQYKASGIGWVVIGDDNYGEGSSREHAALEPRHLGGRAVVVKSFARIHETNLKKQGMLP 2118
            PLSVLDPKGSPTID  Y K+EKN++  RK  G RPLTL+EKI+YGH DD     VRG+TYLKLRPDRVAMQDATAQMAVLQFISSGLPKTA PTTIHCDHLI AE G+ +D+  A   NKEVY+FL+SAGAK+G+GFWKPGSGIIHQIVLENYAFPGGLMIGTDSHTPNAGGLGMCAIGVGGADAVDVMAGMAWELK PKVIGVKLTGKLSGWTSPKD+ILKVA ILTVKGGTGAIVEYFGPGV+SISCTGM TICNMGAEIGATCSTFPY  RM DYL AT+RSGIA+AA+ F  NL+ADEGA YD+IIEI+L+ L+P VNGPFTPDLAH  G +   A ++N WP E+SA LIGSCTNSSYED+ RCA+L EQA    +KFKV   VTPGSE VRATI RDG   TF +AG T LANACGPCIGQWNR++   G+KN+I TSYNRNFAKRNDGNP THAFV SPEMV   A+AG  TFNP TDSI TP G  FKFEAPFGKELP +GFD GE+TFQ  PE A GL V V P+S RLALLEPF  W G D E +PVLIKAKGKCTTDHISMAGPWLK+RGHLDNISNN+LIGA NAE GE N+VQNQ TG F KVP VARQYKA GI WVV+GD+NYGEGSSREHAALEPRHLGGRAV+VKSFARIHETNLKKQGMLP
Sbjct:   30 PLSVLDPKGSPTIDQAYEKIEKNLFTVRKNTGNRPLTLAEKIIYGHLDDANQEAVRGQTYLKLRPDRVAMQDATAQMAVLQFISSGLPKTAVPTTIHCDHLITAEKGSITDLNTANTVNKEVYEFLSSAGAKFGMGFWKPGSGIIHQIVLENYAFPGGLMIGTDSHTPNAGGLGMCAIGVGGADAVDVMAGMAWELKAPKVIGVKLTGKLSGWTSPKDVILKVADILTVKGGTGAIVEYFGPGVESISCTGMATICNMGAEIGATCSTFPYTERMADYLHATQRSGIASAANDFSANLRADEGAHYDQIIEINLDNLKPLVNGPFTPDLAHEAGEDLRQASEKNGWPTEISAGLIGSCTNSSYEDITRCAELVEQAAAKGLKFKVPYFVTPGSEQVRATIERDGLLDTFIKAGGTTLANACGPCIGQWNRTDLPAGQKNSIFTSYNRNFAKRNDGNPATHAFVTSPEMVTVAAIAGTTTFNPATDSIKTPSGEDFKFEAPFGKELPPRGFDAGEETFQAPPESADGLKVNVDPNSERLALLEPFDKWHGKDFEAMPVLIKAKGKCTTDHISMAGPWLKYRGHLDNISNNLLIGAENAETGETNSVQNQFTGAFDKVPAVARQYKADGISWVVVGDENYGEGSSREHAALEPRHLGGRAVIVKSFARIHETNLKKQGMLP 708          
The following BLAST results are available for this feature:
BLAST of mRNA_P-fluviatile_contig11.1258.1 vs. uniprot
Analysis Date: 2022-09-19 (Diamond blastx: OGS1.0 vs UniRef90)
Total hits: 25
Match NameE-valueIdentityDescription
A0A6H5KUD2_9PHAE0.000e+093.63Aconitate hydratase, mitochondrial n=2 Tax=Ectocar... [more]
A0A836CC46_9STRA0.000e+081.07Aconitate hydratase, mitochondrial n=1 Tax=Tribone... [more]
A0A7S2V7X3_9STRA0.000e+079.68Aconitate hydratase, mitochondrial n=1 Tax=Fibroca... [more]
A0A397DX41_9STRA0.000e+078.69Aconitate hydratase, mitochondrial (Fragment) n=12... [more]
A0A397CYM6_9STRA0.000e+078.54Ricin B-type lectin domain-containing protein n=3 ... [more]
A0A485KQT9_9STRA0.000e+078.39Aconitate hydratase, mitochondrial n=1 Tax=Aphanom... [more]
K3W6K0_GLOUD0.000e+078.79Aconitate hydratase, mitochondrial n=2 Tax=Pythiac... [more]
M4B1W8_HYAAE0.000e+077.42Aconitate hydratase, mitochondrial n=22 Tax=Perono... [more]
A0A7S0P924_CAFRO0.000e+077.99Aconitate hydratase, mitochondrial n=3 Tax=Cafeter... [more]
A0A8K1CDT1_PYTOL0.000e+077.91Uncharacterized protein n=1 Tax=Pythium oligandrum... [more]

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Alignments
The following features are aligned
Aligned FeatureFeature TypeAlignment Location
P-fluviatile_contig11contigP-fluviatile_contig11:3018157..3032647 +
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 score1293.5
Seed ortholog evalue0.0
Seed eggNOG ortholog2880.D7FQN5
Preferred nameACO2
KEGG rclassRC00497,RC00498,RC00618
KEGG koko:K01681
KEGG ReactionR01324,R01325,R01900
KEGG Pathwayko00020,ko00630,ko00720,ko01100,ko01110,ko01120,ko01130,ko01200,ko01210,ko01230,map00020,map00630,map00720,map01100,map01110,map01120,map01130,map01200,map01210,map01230
KEGG ModuleM00009,M00010,M00012,M00173,M00740
GOsGO:0000002,GO:0001889,GO:0003674,GO:0003676,GO:0003677,GO:0003690,GO:0003697,GO:0003824,GO:0003994,GO:0005488,GO:0005506,GO:0005575,GO:0005576,GO:0005622,GO:0005623,GO:0005737,GO:0005739,GO:0005759,GO:0005829,GO:0006082,GO:0006091,GO:0006099,GO:0006101,GO:0006102,GO:0006520,GO:0006536,GO:0006807,GO:0006950,GO:0006996,GO:0007005,GO:0007275,GO:0008150,GO:0008152,GO:0008198,GO:0009060,GO:0009064,GO:0009295,GO:0009605,GO:0009607,GO:0009987,GO:0015980,GO:0016043,GO:0016829,GO:0016835,GO:0016836,GO:0016999,GO:0017144,GO:0019752,GO:0031012,GO:0031347,GO:0031349,GO:0031974,GO:0032501,GO:0032502,GO:0035821,GO:0035900,GO:0042645,GO:0043167,GO:0043169,GO:0043207,GO:0043209,GO:0043226,GO:0043227,GO:0043228,GO:0043229,GO:0043231,GO:0043232,GO:0043233,GO:0043436,GO:0043648,GO:0044003,GO:0044237,GO:0044238,GO:0044281,GO:0044403,GO:0044416,GO:0044419,GO:0044421,GO:0044422,GO:0044424,GO:0044429,GO:0044444,GO:0044446,GO:0044464,GO:0045333,GO:0046872,GO:0046914,GO:0048037,GO:0048513,GO:0048518,GO:0048583,GO:0048584,GO:0048731,GO:0048732,GO:0048856,GO:0050789,GO:0050896,GO:0051536,GO:0051538,GO:0051539,GO:0051540,GO:0051701,GO:0051704,GO:0051707,GO:0051817,GO:0052031,GO:0052173,GO:0052200,GO:0052251,GO:0052255,GO:0052509,GO:0052510,GO:0055114,GO:0061008,GO:0062039,GO:0062040,GO:0065007,GO:0070013,GO:0071704,GO:0071840,GO:0072350,GO:0075136,GO:0080134,GO:0097159,GO:1901363,GO:1901564,GO:1901605
EggNOG free text desc.homoaconitate hydratase activity
EggNOG OGsCOG1048@1,KOG0453@2759
EC4.2.1.3
COG Functional cat.C
BiGG ReactioniMM904.YLR304C,iND750.YLR304C
Best tax levelEukaryota
Best eggNOG OGNA|NA|NA
BRITEbr01601,ko00000,ko00001,ko00002,ko01000
Hectar predicted targeting categorymitochondrion
Exons16
Model size3365
Cds size2214
Stop1
Start1
Relationships

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

Feature NameUnique NameSpeciesTypePosition
1622815475.0041533-CDS-P-fluviatile_contig11:3018156..30181921622815475.0041533-CDS-P-fluviatile_contig11:3018156..3018192Porterinema fluviatile SAG_2381CDSP-fluviatile_contig11 3018157..3018192 +
1693561982.1645892-CDS-P-fluviatile_contig11:3018156..30181921693561982.1645892-CDS-P-fluviatile_contig11:3018156..3018192Porterinema fluviatile SAG_2381CDSP-fluviatile_contig11 3018157..3018192 +
1622815475.016931-CDS-P-fluviatile_contig11:3021287..30213941622815475.016931-CDS-P-fluviatile_contig11:3021287..3021394Porterinema fluviatile SAG_2381CDSP-fluviatile_contig11 3021288..3021394 +
1693561985.973236-CDS-P-fluviatile_contig11:3021287..30213941693561985.973236-CDS-P-fluviatile_contig11:3021287..3021394Porterinema fluviatile SAG_2381CDSP-fluviatile_contig11 3021288..3021394 +
1622815475.0318244-CDS-P-fluviatile_contig11:3021587..30217411622815475.0318244-CDS-P-fluviatile_contig11:3021587..3021741Porterinema fluviatile SAG_2381CDSP-fluviatile_contig11 3021588..3021741 +
1693561986.4460933-CDS-P-fluviatile_contig11:3021587..30217411693561986.4460933-CDS-P-fluviatile_contig11:3021587..3021741Porterinema fluviatile SAG_2381CDSP-fluviatile_contig11 3021588..3021741 +
1622815475.0427022-CDS-P-fluviatile_contig11:3022282..30224321622815475.0427022-CDS-P-fluviatile_contig11:3022282..3022432Porterinema fluviatile SAG_2381CDSP-fluviatile_contig11 3022283..3022432 +
1693561986.460793-CDS-P-fluviatile_contig11:3022282..30224321693561986.460793-CDS-P-fluviatile_contig11:3022282..3022432Porterinema fluviatile SAG_2381CDSP-fluviatile_contig11 3022283..3022432 +
1622815475.0535362-CDS-P-fluviatile_contig11:3022837..30229151622815475.0535362-CDS-P-fluviatile_contig11:3022837..3022915Porterinema fluviatile SAG_2381CDSP-fluviatile_contig11 3022838..3022915 +
1693561986.4712863-CDS-P-fluviatile_contig11:3022837..30229151693561986.4712863-CDS-P-fluviatile_contig11:3022837..3022915Porterinema fluviatile SAG_2381CDSP-fluviatile_contig11 3022838..3022915 +
1622815475.0699584-CDS-P-fluviatile_contig11:3023313..30234721622815475.0699584-CDS-P-fluviatile_contig11:3023313..3023472Porterinema fluviatile SAG_2381CDSP-fluviatile_contig11 3023314..3023472 +
1693561986.4814658-CDS-P-fluviatile_contig11:3023313..30234721693561986.4814658-CDS-P-fluviatile_contig11:3023313..3023472Porterinema fluviatile SAG_2381CDSP-fluviatile_contig11 3023314..3023472 +
1622815475.0828066-CDS-P-fluviatile_contig11:3024129..30243691622815475.0828066-CDS-P-fluviatile_contig11:3024129..3024369Porterinema fluviatile SAG_2381CDSP-fluviatile_contig11 3024130..3024369 +
1693561986.49387-CDS-P-fluviatile_contig11:3024129..30243691693561986.49387-CDS-P-fluviatile_contig11:3024129..3024369Porterinema fluviatile SAG_2381CDSP-fluviatile_contig11 3024130..3024369 +
1622815475.094534-CDS-P-fluviatile_contig11:3026367..30265531622815475.094534-CDS-P-fluviatile_contig11:3026367..3026553Porterinema fluviatile SAG_2381CDSP-fluviatile_contig11 3026368..3026553 +
1693561986.501315-CDS-P-fluviatile_contig11:3026367..30265531693561986.501315-CDS-P-fluviatile_contig11:3026367..3026553Porterinema fluviatile SAG_2381CDSP-fluviatile_contig11 3026368..3026553 +
1622815475.1103494-CDS-P-fluviatile_contig11:3027349..30274261622815475.1103494-CDS-P-fluviatile_contig11:3027349..3027426Porterinema fluviatile SAG_2381CDSP-fluviatile_contig11 3027350..3027426 +
1693561986.5086486-CDS-P-fluviatile_contig11:3027349..30274261693561986.5086486-CDS-P-fluviatile_contig11:3027349..3027426Porterinema fluviatile SAG_2381CDSP-fluviatile_contig11 3027350..3027426 +
1622815475.1238794-CDS-P-fluviatile_contig11:3028119..30282011622815475.1238794-CDS-P-fluviatile_contig11:3028119..3028201Porterinema fluviatile SAG_2381CDSP-fluviatile_contig11 3028120..3028201 +
1693561986.5160804-CDS-P-fluviatile_contig11:3028119..30282011693561986.5160804-CDS-P-fluviatile_contig11:3028119..3028201Porterinema fluviatile SAG_2381CDSP-fluviatile_contig11 3028120..3028201 +
1622815475.1392996-CDS-P-fluviatile_contig11:3028426..30286121622815475.1392996-CDS-P-fluviatile_contig11:3028426..3028612Porterinema fluviatile SAG_2381CDSP-fluviatile_contig11 3028427..3028612 +
1693561986.524508-CDS-P-fluviatile_contig11:3028426..30286121693561986.524508-CDS-P-fluviatile_contig11:3028426..3028612Porterinema fluviatile SAG_2381CDSP-fluviatile_contig11 3028427..3028612 +
1622815475.1519692-CDS-P-fluviatile_contig11:3028998..30291781622815475.1519692-CDS-P-fluviatile_contig11:3028998..3029178Porterinema fluviatile SAG_2381CDSP-fluviatile_contig11 3028999..3029178 +
1693561986.5329635-CDS-P-fluviatile_contig11:3028998..30291781693561986.5329635-CDS-P-fluviatile_contig11:3028998..3029178Porterinema fluviatile SAG_2381CDSP-fluviatile_contig11 3028999..3029178 +
1622815475.1639862-CDS-P-fluviatile_contig11:3029621..30297471622815475.1639862-CDS-P-fluviatile_contig11:3029621..3029747Porterinema fluviatile SAG_2381CDSP-fluviatile_contig11 3029622..3029747 +
1693561986.5420156-CDS-P-fluviatile_contig11:3029621..30297471693561986.5420156-CDS-P-fluviatile_contig11:3029621..3029747Porterinema fluviatile SAG_2381CDSP-fluviatile_contig11 3029622..3029747 +
1622815475.1875303-CDS-P-fluviatile_contig11:3029955..30300991622815475.1875303-CDS-P-fluviatile_contig11:3029955..3030099Porterinema fluviatile SAG_2381CDSP-fluviatile_contig11 3029956..3030099 +
1693561986.551516-CDS-P-fluviatile_contig11:3029955..30300991693561986.551516-CDS-P-fluviatile_contig11:3029955..3030099Porterinema fluviatile SAG_2381CDSP-fluviatile_contig11 3029956..3030099 +
1622815475.1990764-CDS-P-fluviatile_contig11:3030514..30307761622815475.1990764-CDS-P-fluviatile_contig11:3030514..3030776Porterinema fluviatile SAG_2381CDSP-fluviatile_contig11 3030515..3030776 +
1693561986.5609956-CDS-P-fluviatile_contig11:3030514..30307761693561986.5609956-CDS-P-fluviatile_contig11:3030514..3030776Porterinema fluviatile SAG_2381CDSP-fluviatile_contig11 3030515..3030776 +
1622815475.2118132-CDS-P-fluviatile_contig11:3031449..30314961622815475.2118132-CDS-P-fluviatile_contig11:3031449..3031496Porterinema fluviatile SAG_2381CDSP-fluviatile_contig11 3031450..3031496 +
1693561986.5703049-CDS-P-fluviatile_contig11:3031449..30314961693561986.5703049-CDS-P-fluviatile_contig11:3031449..3031496Porterinema fluviatile SAG_2381CDSP-fluviatile_contig11 3031450..3031496 +


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

Feature NameUnique NameSpeciesTypePosition
1622815475.2222645-UTR-P-fluviatile_contig11:3031496..30326471622815475.2222645-UTR-P-fluviatile_contig11:3031496..3032647Porterinema fluviatile SAG_2381UTRP-fluviatile_contig11 3031497..3032647 +
1693561986.579291-UTR-P-fluviatile_contig11:3031496..30326471693561986.579291-UTR-P-fluviatile_contig11:3031496..3032647Porterinema fluviatile SAG_2381UTRP-fluviatile_contig11 3031497..3032647 +


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

Feature NameUnique NameSpeciesTypePosition
mRNA_P-fluviatile_contig11.1258.1prot_P-fluviatile_contig11.1258.1Porterinema fluviatile SAG_2381polypeptideP-fluviatile_contig11 3018157..3031496 +


Sequences
The following sequences are available for this feature:

protein sequence of mRNA_P-fluviatile_contig11.1258.1

>prot_P-fluviatile_contig11.1258.1 ID=prot_P-fluviatile_contig11.1258.1|Name=mRNA_P-fluviatile_contig11.1258.1|organism=Porterinema fluviatile SAG_2381|type=polypeptide|length=738bp
MIRARAFASGRKAAGRYAGAAAARSMSGTPLSVLDPKGSPTIDSVYSKME
KNIYAARKTLGRPLTLSEKIVYGHFDDPATVPVRGETYLKLRPDRVAMQD
ATAQMAVLQFISSGLPKTACPTTIHCDHLIAAETGADSDMAAAKITNKEV
YDFLASAGAKYGIGFWKPGSGIIHQIVLENYAFPGGLMIGTDSHTPNAGG
LGMCAIGVGGADAVDVMAGMAWELKCPKVIGVKLTGKLSGWTSPKDIILK
VAGILTVKGGTGAIVEYFGPGVDSISCTGMGTICNMGAEIGATCSTFPYN
SRMQDYLKATERSGIAAAADSFKENLKADEGAPYDEIIEIDLNTLRPHVN
GPFTPDLAHPVGAEFVSAVKENDWPEELSAALIGSCTNSSYEDMARCADL
TEQAKKANIKFKVDMLVTPGSELVRATITRDGFTSTFEEAGATVLANACG
PCIGQWNRSEKQGEKNTIITSYNRNFAKRNDGNPQTHAFVASPEMVVATA
LAGNVTFNPETDSIPTPDGGSFKFEAPFGKELPVKGFDPGEDTFQPSPED
ASGLSVVVSPDSARLALLEPFQPWEGSDLEDLPVLIKAKGKCTTDHISMA
GPWLKFRGHLDNISNNMLIGAINAENGEVNNVQNQLTGEFGKVPDVARQY
KASGIGWVVIGDDNYGEGSSREHAALEPRHLGGRAVVVKSFARIHETNLK
KQGMLPSCSTSRRTTTASRETTRFPSRALTLSRKENR*
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mRNA from alignment at P-fluviatile_contig11:3018157..3032647+

Legend: CDSpolypeptideUTR
Hold the cursor over a type above to highlight its positions in the sequence below.
>mRNA_P-fluviatile_contig11.1258.1 ID=mRNA_P-fluviatile_contig11.1258.1|Name=mRNA_P-fluviatile_contig11.1258.1|organism=Porterinema fluviatile SAG_2381|type=mRNA|length=14491bp|location=Sequence derived from alignment at P-fluviatile_contig11:3018157..3032647+ (Porterinema fluviatile SAG_2381)
ATGATCAGAGCTCGCGCCTTCGCCAGCGGCCGCAAGGTGAGAAGGATAGT TTCCTTACTGAGTCTGCAGTTGGCCTTGCTCGAAGGCCGCGCATCCCCTA CGCAACAGTTTTTTTAACACACGCGGCAGGGAAATGCAACTGCGCCTCGA ACCCCCTCCCTGCACCAGAGAGCTTCTGGTTTGCCTCGAGCTGATCGCGA GATACCTCATGACATCAGAAACCTGAGACTTCGCTCGTGTGCGAACCAAT GCATCCCTTGCTTCATCAAGCATGCGTTTGTTCGCGTGTGTAGCACGCAG CACTTAACCGCGACCGAGACGAGCTCGCGCGGTGAAAATGCGGAGGCGAA AAGGAGAAGTTGGGTCAAGGTCACTTTTTCTCTCGCTATATCTCCTCTCG TGTTTCGTAGCGCTAACCCCTCACCCTCCCCACCATGCAGCGTGCGGTTA CGACTGATCATCGTAGCAGCACAAGGGTAGGCTTTGATCATCGCAGCAGC ACAAGCGTAGGCTTTATGCCGACGCCTCTTTGCTACTGCCGCTTGTCTGC TTCTCGCGAAACTTTTTCACTCCAAAAAAATGCGCAAATAAAAATGGTTT CGTTGTTGAAGGTCTACGAAATAATCTCCGGTTTGCGTTGAAACAGACAA GCACTGGTTGATAGTCCAGCGCCCTCGCGGTTTATTGCATCTGTGGATCG ATAGAGTGGTTAAGGCATACCCGAGACTAGAGTCCTCGCGCCATCCTTAG CATGGCCGAATTGTATTCAAAACAGAGAGCGAGAAGCCTTGTGTGTGTGC CACGTGAACGGGATGACGCCTGGTCTATTCGGATTTCAGCTTCTCGTCCC CCCCCAACCACGACTCGCTCTCTCTCTCTCTCTCTCTCTCTCGCTCTCTC TCTTCTCTCTCTCTCTCTCTCTCTCTCTCTCTCTCTCTCTCTCTCTCTCT CTCTCTCTCTCTCTCTCTCTCTCTCTCAGTCGCTCTTGATGGGGCTTAAA AACAAAGCTGTGTGTGCGAGGGACGAATAGCGCGGTCTTGCAATGGCTTT GTTGAGGGGAGAGCACGAGCGCCACACACCCGGGAGGGCAAGCGTATGTC GTTCGGCCTTTTACACACCGACCGCACATACACACAGGACGAATTTCTCT GCTGCTTTGGCAACAAGAATGACATACTTCTCTGCTGCCTCCCGGTTACA AAAATGACAGTCGACATTCGCGCCCATGGGAAACGCCCGTCGACCTGTTA CTTCGATTCTGGGTTCGCCTGGGCGTTCTCATGAAACGACTTCATTCTCA CCTGCGTTCTTGCCGGTCGATAGCGCCTGCGTGTTTTACACCGTAGTGGA AACATGGTTTCTCGCAATCGAAACTATCAGTCAGCACCGCAGGAGGAAGT GAGTAGGGGCCTCAGGGACAGAAAGCTTCAGGGCAACCACGGTTCAGGTG TTCAGGCAAGATGCCTCGGGTAGCAAGGCGCCGTTCGAACTCTGGAAATA ATTGTCATGTGAAAAAGAAGAAGCTCCCTTTTCCTTGGCCTCGGCGTGCC ACGTCGAAGAAATTTTGTTGGAATTTTCCATCACCCTCGGAAATCGAAAA TCGTGCACTTTATATTTCAAACACGATTTCATCTCTCGCCGTTCATGCGC ACACGCCAGAGATCCATTCAACACACGTAGGCAGGAAGGCGTAGGAGTGG GACAGGGTCAAACGGAAACACGGACAAGAAGCCTGGCATCCACCCTCTCT TAAGAGGATTGCTTCCATCACTGCAGCCCACCGTCCAACACATAAGAGAG TTGGAAAATCCAAGAATACCGGGGGCGGGGGGAGGGGGGGCAGCCGAAAG CACGTGCGGGTGTTGAAAGGCGGAACAACGTCGTGCATGGTGAGGTTTGC TTCTAGGCGCACACTCGGGCTGAGGCCACCGGCGTCGTACATTTTGTTCG GCTGGATCCGATTGAACTCAAACCTGCGTCTAGATGACGGCTTCCGTTCC CGACGCCCTGGCGTTTCCGTCAACGGCGTCGCGGATGTTTTCCATCCAGA CCTAAAAGGATATCGCGGTCGTATGGTGACGTCGCACGGTTTTCGTCGCT TGACGGAGGTAGTGAAGCGTGTGCAGCTGCCTCCCCACCGTTTGTGCGTG GCCATTATCTCACCACAACCCGGGTGCCCATGGATAGACCATCGATAATG GCCATCACAACGGAGAGCGATCGCTTGTACCCCTATCTCATGGATCCCAC CAACTCAAGTGAAGTTGCAAAGGTCCTCACCCTCTTTGCGGCCAAATGCA TGTGACAGCCTGCCTGCAAATGATAAAGTCTGTAAAGGCGGGGGCAGACT AAACCATCAAGACGCGCGTTTCGAAAAACACATTCCCCCCCCCCCTCGCC CCCGCTTCGCTCCATCGTGAAAGCGTTTGCTTGGTCAAAGCAAAAATGAG CACGGTTCCCTCCCCTGCCCCCTGGCAGCGTAGCACTGTTGGGGCTCTGA AGCCACCGTTGGCCAGGTACTCATGCCGCTAAACCCAATCCCCCCGCACG CACGAGCATGAAACGCAAGCAACTTGCGGCACGAAGGAACAACAAATGCC GCCGTTGCGATGATGCGCCTCCTGTTCTTCTTGCAGCAGCAGACAGTATT ATGAACGTACCACGTGTAAATCAACCCATGATGTGGAGTTTATTGAATGG TTCAAGGCTACTTTTTCTGGACAGCTTTCCGTCGGCCCGTCGTACCGCGC TGTCCCAAGTTGCTATGCTGCCAGACGCGGCGGTCGCGAAGCCCATCGGC ACGGAACTTGACGTTGGTTGATCTCACATTTTTTGTGGATCAAGAGGGAC TTCGGCGTGGACGCTAGATCTCCGTGCCCCGAATTGGACCGTCCGCTTCA TTGTCACGCTCCCGTCATGGATTGTGTGCGAGTGATCAAGACATTGGGTG TCCGGTTTGAAATGTACCGAAGCAGTGTGCAATTTTCCAGATTCAGGTTG TGGCCCGAAGACGACACACACTTTGTTGAGGACACGGCCGTCGTGCACCG CACCCATCTGCTCTTCGCACCGCTCACCATTGTCGACCGTCCTTTTTTGT TGTCTCTTGTTTGAAAAATGTCTGCCCCCAGGCCGCTGGTCGCTACGCCG GTGCCGCCGCGGCTCGGAGCATGTCGGGGACTCCCCTGAGCGTGCTGGAC CCCAAGGGAAGCCCCACCATAGACTCCGTCTACTCCAAGTAAGTGGTTGT TAGCTGATACGGCTTTCATTTCATCCCGAAGACACTGCTGCGTTCATCTC TCGATGACCCGCTTCTTCTCCTTGTTTGCTTTCAGCGGTTGCGGTGATGT TCAAGATTCTGACCCCTCCTCCCACGGCCCCTCCCCCTCCCTCCTCCCCC TCCCCCGCTCGTGCGCGCTGCTCATTTGCAGGATGGAGAAAAACATCTAC GCCGCGCGTAAGACTTTGGGGCGGCCCTTGACCCTGTCGGAGAAGATCGT CTACGGCCACTTCGACGACCCCGCCACGGTTCCGGTCCGCGGCGAGACGT ACCTCAAGCTTAGGCCCGACCGCGTGGCGATGCAGGTCAGTCAGCCGGTC GGCCGGTGTGTGAGATTGCCACGTGTCTGGGTGGTTGGGAATAGGCCCTT TTCACAGGGGGAAGAATCTGACAGGTTGCAGAATTGCTGGCTGTTGATGC TTCTTTTTTCTTTCATTCATCCATGTCGGTGCTTTGTTCGCCTGTTTGGA TTTGGACGTACCCGTTTTTTTTCTGGCTCTTTTAAGCCTGAATGAACATC GAGGGCCATTGATACCCGTCACTGCGTTGAACGCATCGTGTTCGTTATGT ATTATTCGCCGCCCGTCCTTTACACCTTTAAATCTCGCGAGTTTCGTTGA TATTTTTTATTTTATTGTACGCCGCTTCCTTTCGTTTCGATTTATGCATA CGTCTAGGCGCGCGTCGACTCGTCCATCCTTGACCTGCTGCTGCTGCTGC TGCTGCTGCTGCTGCTGCTGCTGCTGCTGCTCAACACTCTGAATACCAAC CACCGTTTCCAGTCTCCTTGACATGTCGTTGCGGTTTTAACATTAACTTG GAATCCTTCTCTGCTGTGTTCCGCAGGATGCGACGGCCCAGATGGCTGTC CTGCAGTTCATCTCGTCGGGCTTGCCGAAGACGGCGTGCCCAACTACCAT CCACTGCGACCACCTCATCGCCGCCGAGACCGGGGCCGACTCGGACATGG CCGCGGCCAAGATCACCAACAAGGAGGTACGTGTCGTGCGCAAGCTCGTC CTTCCATGCACGTATTGATCACCTGCGCCGCGTGTGCGTTGCACGCTCAA GCACCGGGTGCCAGAGAACAGTCAGGAGGCCTGCACCTCGCGCCGTGTTT GGGCGTTACTGGGTGAACTGGCTCTCGTCCTCGCTGATCACCATCGTTCG GCGCGGACGACGCGCTTTGTCAACGGTCCCAAGCGCTGGCGTGCTTGGAG TCCGTTGTGCGAAGCTCGCGCATTTCGGCTTCGTCCGCATTGCAACCGCG CGTGAAGCACGGCCGACGGAATGTCTGAAGTGCATTTTGTGGCCGCGGTG TCTCCCCTCCCCCCCCCTCCATTCGCAAGTGTTGTCGTTTTTTTCTCTCA CCGGTTTGTTATTGCACCACGTTCGCGACAGGTGTACGACTTCCTCGCCT CTGCCGGAGCCAAGTACGGCATTGGCTTCTGGAAACCCGGATCCGGCATC ATCCACCAGGTGAATTCTCGTTTTAATTTATTTTTTGTTTTCTGGCACGA GCTGTCGCATCATCCCTGTGTGGAGATTTGGCACAACCTCGCTGGCGCGA TCGTTCACATCGCCCTCCTCCCCCCTCCCCCCTTGGTCTGCTCCTGCCGC GGGGGGCGTTGCCGCCTCCTGCCACCACGAGTACGCGCCCCGAGACTTTC GGCCCTTGTCGATCTAATCTGTTTACCGACGACCACCGCTAAGGTGAACG CGCAGAACCACGCCGCAACGACCATGAATATCGGCTCTCTTCCTCGTGCA CGCGTTTATGGATCGCACCTGGAAACCCCCCCTGGCCCTCCTACCCGTCC GCGGGGAATGAAATGATTCATTTGGTTATTAAAACCCCGCTCCGCCCGAC TCCGCAGATCGTTCTCGAGAACTACGCCTTCCCCGGAGGTCTGATGATCG GGACTGACTCGCACACCCCGAACGCGGGCGGCCTCGGCATGTGCGCTATC GGCGTCGGTGGAGCGGATGCCGTGGACGTGATGGCCGGCATGGCGTGGGA GCTCAAGTGCCCCAAGGTTGGTCATGTTTCATTCCATGTCGTGTACGTTT GCGCATCTGAGAGCCCGAGCGCTTGTTCGTTTGCTCTCTCCGCGCGTTCT TTTTAAAGCATTTGTCTGAGCGGCGAAGCGGCGCGGACGTTTCATTATTT CAAAACAATAAAGATTTTTTGTCCCTGCTTCGGTGTTGGTTTCTTTCTGT GCTGGACTGGAGGGCAATGCAGGTATGCCGGTGTGCCGTGCAACGCTTGG AAATCTGTCGTGCGTATGTGATGCAGGGCGCGGAGCTGTCGAAGGTTGGT TGCCGAGCCAACCTTTCGCCATCACGGTCAAAGCCGCACGGGCGTATGCA TACCCTTGGCGCGCCCACCCGTCCTTTCGGCGGTGTTTGTGCCTTTCGGA GACATCCGCCGTCGCGTAATTTGTGTGATGGCGTTTCTGGTGCGCAGGAG CCCATCCGCTATTTTTGCGAGAAAACCCGACCCGTGCGCACACGCCACGG ATCCTCACCTTCGCTTGTGTGTACGCGCTCAATCGCGGCGTCCCATGCCC CCCAAGTGAGGTCCTCGACGGCGTGTGTCTCGTGTGTGTCGTTTTTGCTC GGGCTGATGTTAGTGCGTCTGCTTTTTTTTCGCGTTTTCCCGACTCTCGC CCCCACATGAAACATGACGACAGGTGATCGGCGTCAAGCTGACGGGCAAG CTCTCCGGTTGGACCTCGCCCAAGGACATCATCCTGAAGGTGGCCGGCAT CCTGACCGTCAAGGGCGGGACCGGCGCCATCGTCGAGTACTTCGGCCCTG GCGTGGACTCCATCTCGTGCACCGGTATGGGCACCATCTGCAACATGGGA GCGGAGATCGGCGCCACTTGCTCGACCTTCCCGTACAACTCCCGTATGCA GGACTACCTCAAGGTGCGATGACCGTGCGCGTGCCGGTCATCCAGGGTGT TTGATTGTATGTTGGCGACATGGGTTCCGTTTGTCGGGCGAGAATGGTTG ACGCGGGTGGGGGGGCGTACTCGTAGTCGTGCATGCCGTAGTCGTTAGAC CATTGACCTCGCATCCCTACAAAGCCGGGACGGAGCACGCCGGGTTCTCA CCGGACCAGGCTCTCACACCACCAAGCACGAAGCGCCGTGAGGTATTCGG CGAGTCGCATGAAGGGTGCGCTGCATCTTGCTAAGGGTGTTCGGCATCTT GTGCTTACTTCCTTGCATACGGATGACAGCTGCGTATGGCTTAATTTATT TTCTGGTGCTTTCACTTTTAGAGATAGTTGTAAGCACTGTGTAACTGCCT CGAGGGTGCTTGACCATTACAGGTGCGGGGGGGCGTACTCATGTTTTGCA TGCCTTAGTTGTTAGACCATTGACCACGCGTCCTCGAGAGGACGGAGCAT TGTTCCCGCAGGATCGACCACCGATGGCCAATCGTTCCTTCCTACTTTGC CAAAGGTGGCTCAAAAATGTTTTCCCTAACCTGTCTACTTTATACCTGTC CGTCCTGGGCCACATCTTACACCCGAGTACCGCTACCGTCTTCTCCTCTT TGTTCCATGCCTCAAACTTCTCTCTATACCGACTGTCTACTTTTTCCAGC TCAACCATGTACCCTTCTCTCTCCTGATCGTACAACGGGCATTCCGCAAC TACATGTACCCGGTCTTCGCATTCGGCGCCGCAGTCACATTTGAACTTGT CTTCGTCGTCGTCTACCTTCCTAAACCTCCTTCTACGTTCCTGTAGGTCA ATGTCGCCTGTTCTAAATTTGACCTTCATCTTTGTCCCTTCATCCAATGG TCCGTTCAGGTACTCCTTGAACCCTATTCCTTCGTCCAGCCTTCCGTACA CTTCTAGAACCTCCTTTTCCTTGGTCTCTTTCCGCAAGCTCTGGTCTTCT CTATTTTCAAAGGCTTCTGAGATGCTCTTCTTGTACCCTTCTAAGCTTTC CGCTCCTGTCGTCTCCCGTTCGTCAATATCTAACCCACTCCACACCCCTG TACAACCTTAGCCCACTCAATGGGTTGTCTACCCTTGGCCTTGTTTACCC ATCTCGCCTCCCAAGCTATTCTCGGTAACCCTCCTTTCCCATGTTTTCCA AACGGTATTGCCATGTCAACTTCCTCCTGTCTCTTCCCGTTCTTAAGGAG TAGATCCCCAACTCTGCTCTTACTGCTGCGTTACTTGTGCGCTGGGAGCA TCCTAGAATGATCTTCGCTGCTTTCATCTGCGCTGCCTCCAACTCTGCTA CTATTTTCTTGTTCCCTTCCCAAACTTCTCCCGCGTACTCTAGTGGCGGG ATGATAACACTTTTCAGAATGGTCATTTTGACGCGTGTATCAAGGTGCCG GTCTGCTAGGACTGGGTGCAACTTCCCTGCCCTTGCTTTGCCCTTGTCCG CTATTTTGTGCATGTGTGCATCCCATTTACAGTCCTTTGCTATCTCTACT CCAAGGTATGTGTATTTTTCCACTCTTGGCAGCTCCTTGTCCCCCCACGT CCACTTGGTACCTACTTCCTCGTCACCAACTTCATTGCATACCATTACGG CACACTTTGGTGCGGGGGGGGTCATTTTTTGTTTGATCTCCTGGAGAGGT ACTCATGCGCTTGATCAATGGTTGGTCTAATAAATGGCTGGTCGTGCGTG TATTTCACTCATACGTGTCCACCGGCGTGTGTCGGGTCATGACAATGGTC CGCCCACATTTTTGCCAAAATTTCTCGAGTCTTGCTCGCCTAATTTTGCT CTCCTGTGACCCGTCTCCGTCGGGTAATGCTCAGCATCTGAACTTCTCTG CGTGTGTCGGAGACGGGGTTTGGAGTGGGAAAGTTTGTCGATGCGCCGTA GATGACCCCCCCTCGTATATTCTCGCTTTGCCCCTACGACCGCCCTATTT GTCCCCCCAAGGCAACAGAGCGGTCTGGCATCGCCGCTGCGGCTGACTCT TTCAAGGAGAACCTCAAGGCGGATGAGGGCGCGCCTTACGACGAGATCAT CGAGATCGACCTCAACACGCTGCGCCCCCACGTGAACGGGCCTTTCACGC CCGACCTCGCCCACCCCGTCGGGGCCGAGTTCGTCTCTGCCGTCAAGGTG CGACCATGGCTAGGAGTGGGGGATTCATTTGAGGGCATTTTACTTATTTT TTCGCCTATTTTTTCATATAACGGGTTTTTTCTATTTCGTTGTTGTTGTT GTCGTCGTCGTCGTTATTTTATGCTGCGCGTTACCCACGGGGACCATTGC GATTGCGTCGAGGCGCTGATTACCTTCGATACGCCGGTGTGCGGTGAACG CCGGCAGCAAGCACAACGAAATCACGGTGTTTGATTTTATATCTGAAGGC TGTAACACAACGCTGGGCTAGCCATATCTTAAGCGCCGTAGCAAGCAAGC CAAATCTTTCTGTTGGATGAACTACATTTCTTCTAATCAGCACTGTGCAA TCGCTTAGCTGTGAACGCCGGCAGCAAGCACAACGAAATCACGGTGTTTG CATGTCATATCTACGAACTGTAAAACAAGGCTTAGGCATATCTTTGGCGT CGTCGCAAATCAGGTCTGTCTGTTGGATGAACAAAATTACTTCTGATCAG CACCGTGCAGTCGCTACCCTAAGACGTTTTTTCTGGAGGGGAAAGGTGAA TTTCGCCGATACTCCCGGAGTATAATCACTCCGTGTATTTTTGTTTCGAG GGAGGGAATGTCGTGTGCTGCTTGCGACGTCTAACGAGCCTACGATGGGG CGGTTCGTGCTACCAGTAACGCCAACAACGAACGAGGCCGAGAGATAAAC GCCACTTTTTGTATTTCGTGCTGATGCGGGCTCAATGATTCGGCCCCAAC CACATGCACAATCATGCTCTCCTGGTTCCTGTCGCGTGATCAGGAAAACG ACTGGCCGGAGGAGCTGTCTGCGGCGCTCATCGGCTCCTGCACGAACTCG TCCTACGAAGACATGGCCAGGTGTGTGGTTTCGTTTGTGAATGTGCGTGT TTGTGCGCGGGCGAGTGTTCTGCTGTGCACATGTGTACAATCGTGCCCTT CCCGGTGCGTTGCAGAAGTCGTTTTTTTTCTTTTTCTTTGTTTCATCATG ACGGTTTCACCTTCTCGGCGTTTTTTTGGCGTGACCCGGTGAAAACTTCT CGCGCGCACGTCATATCGTGTCCTATCTCTCCGATGTCCCTGTTGTATCT CACTCTCACACCTTCACCGACACCGGTTACGACTGATTCTGTAGCGGTTG TCTTTGGAGCGGTGAGAAGCTGATCTTTTTCACCAGTCCAGTGCATTTTT GCCTCTGTTTCCAGACGCAAGCAGCTCGTTGTGATCAAATTGAAGCAGCC GAGGGGCAAAAGCGGTGGGGATCCTTTCTCCAGATGACACGCAAGCGGAT ATGGCTTTAGTTTCGGCACAAGGAGGGTTCGAGCGTAAGGCCGCACCAGT CGGGAAACGAGGTAGCTTCTTTGGGAGGAGCGAGATGTGCAAGTGCTTCG TTGTGGTATGAAGCGAGGTCAAAGGTAGTGGCCGTGATGGCTCAATTTCT TGTTTATCGTTTATATGACGTCGCTGGTGGCAAGCATTCGGCTCGTGCTC ACTCTGAATTTCCCCAAACCTGTCGCGTTCGTGTGGGGTACGATGAATCA TGAACGGTCGCAGGTGCGCTGACCTCACGGAGCAGGCCAAGAAGGCCAAC ATCAAGTTCAAGGTGGACATGCTCGTGACGCCCGGCTCTGAGCTGGTGAG ACCCTGTGCCCATCCCTTTCTCTCGTTCTCGCTTTCCCTTTGTTTGTTAC CCTCAGCCCTTCTTCGCTATCGATCGGCTCCTGCAATTTGCACCGAAAAA CTGTTCTCTTGTCCCAGCTACCGCTCAAGCAAGTGTTGCCACCGCCCACA AATTTGTGGGTTGGCGATCCGTTGTCGTGCCTGCGAACTCTCGCACCTTG GCTCTTCGTCGCGTGCCCAGGTGCGGGCCACGATCACCCGCGACGGCTTC ACGTCCACCTTCGAGGAGGCCGGCGCGACCGTGCTGGCCAACGCGTGCGG CCCGTGCATCGGACAGTGGAACCGCTCCGAGAAGCAGGGAGAGAAGAACA CCATCATCACCTCGTACAACAGAAACTTTGCCAAGCGTAACGACGGCAAC CCCCAGGTGTGTGTGTGCATGCGTGTGTGTGTGTGGTTCTGCCGCGGCTT TAATGATTAGATCGACTGCCGCCTCGTCGCGTCGCTGAAGTTTTGTTCGT TGCGTTGTGTGTTTCGATGTCACTGCTGCTATTGTTGCCGTCGCCGTCTT CCCTGCCGCTGCTACGGTACAGAACCTTGGATCCCTGGCCAGTCGTTTCG AGTCGTCACCTCTTTTGCCGCCGCCGCATCCACCGCTGCCGCCATGTCGC GGCACCATTCCCCTCACTTGCCCATCCTCGGAAGAACTTCTACCTATGCC GAGGGCGTCCCGTCCGTCTCGGCCCGTCTCGACCCACCCCCGCCCCCTCC CGCCCGCGTCCCCGCTTTACTCCCCCTCTCCCCTCCCCGTAGACTCACGC GTTCGTTGCTTcCCCCGAGATGGTGGTGGCGACGGCGCTTGCGGGCAACG TGACCTTTAACCCGGAGACGGACTCTATTCCCACCCCCGACGGCGGGTCC TTCAAGTTCGAGGCTCCCTTCGGGAAGGAGCTGCCCGTCAAGGGCTTCGA CCCCGGAGAGGACACCTTCCAGGTACATGTTTGTGTTTGTTTCAGTGTGT GAGTGTGTGTTTTTTTTTTTGCTCTGTTTCCACTTGAAAAGGGCGCGCTC GTTTTACGGCCCACTGATGAACACCGACGTTACCCCAGCGGAGAAAGGTT TCGAAATCGCGGCAGACACTCCAGGTTCGCTCACGGAGACTGCACAGGGT GGTGTATCTCGAGGACATGACTCGTGGGCTTATCCGAGCTCCCGACGTTG TGCCTAATGTTGTTGCGCCGCATCCGAAATTGGGCATGTGATGGTCCCCG TCGACGGCCGCTTTTGCAACTCGCCTCTATCGTCGCCTCAGGTCAATGGT GTTTGTGTTCCACGGCCATCCATATTTTTGCTGCGATCGAGCTCTCGTCG CCTAATTCCCTCCTCCCATCCCTCCTGGAACCCGATCCACCCTGTCCTTC TTCATTTGCGTGCAGCCCTCCCCGGAAGACGCGTCGGGTCTGTCGGTGGT GGTTTCCCCCGACTCGGCACGCCTCGCCCTGTTGGAACCCTTCCAGCCGT GGGAGGGGTCTGACCTCGAAGATCTCCCGGTGCTCATCAAGGTCAGGAAG CCGTCCGATGTCGACGTTGCTTGACACCGTTTCCAGATAGATTGTTACGG ACTATCTCCACGGGGATGCTCACGCGTTGTGCAGCAAAAATCAAGGCTGT TGCGTGTTGGACTCGCTACCATCACGGTAAAATCATGCGCTTATTTCTCG TAATCTTGTGCACGCTTCCTTTTCCTTTTTCGTTCCCGTCCTCCCACAGG CGAAGGGCAAGTGCACGACGGACCACATCTCGATGGCGGGACCGTGGCTC AAGTTCCGCGGCCACCTCGACAACATCTCCAACAACATGCTTATCGGTGC CATCAACGCGGAGAACGGAGAGGTCAACAACGTGCAGAACCAGGTCGGTT TCATCGCAAGGCATGCTATCCAATTGCCGAGCAATAGTCAAAGCGAGGAG CTGGCGCGAAGGATGGCTTATCAAGTTTGCGTGAGCGCGCAGGCGTTTTC TTTTTGGGTCCATCCCTTCAGACGAGCACGTTTGTGCGGGCTCGTCCTTG TGTTATTGAGTCCACCAAACGACTCCACTCGAAACCGATTTTGGCCGTGC TCTCGACGAAAACCCTTTCAGCGTCTGCGGCAACACCAAAGGAGTCGGAT GCCTTCTTCGCAGGAAGCCCGCCAACAAAGGAGGGCGGGGGGGTACAAAC ACGTGCGCGCGCGCAAAAACTGTGAGAAAATGTCGCAAGTCATGCCATCT GACACACCCCACGTGAACGCGTGAAATACCAATGCCGTTCGGTCGTTGGG TTTCGCAGCTGACCGGCGAGTTCGGCAAGGTGCCCGACGTGGCCCGCCAA TACAAGGCCTCCGGGATCGGCTGGGTGGTGATCGGGGACGATAATTACGG CGAGGGGTCGTCCAGAGAACACGCGGCGCTCGAGCCGAGGCACCTGGGGG GAAGGGCGGTGGTGGTGAAGTCCTTCGCGCGCATCCACGAGACCAACTTG AAGAAGCAGGGGATGCTCCCCTCGTGTTCGACAAGCCGTCGGACTACGAC CGCATCTCGGGAAACGACAAGTGAGAAAAGAGACCGCGGGGTGGCAGCCT TTGGTGCGCGCGTCGCCGTGAGGCTTCTGCGGATGACAAAAATGGTGGCC GTTGCCACGCCGTCTAATGGTGTGGGTCGGGCTTGGTTTTCGGTTTGGCT ATTTGTTGTTGTTGGTGGTGGTGGTGGTGGTGGTTGTGGTGGTGGTGGTT GTGGTGCTGTTGATGGTGCTGGCGATGGTGGTGATGATGGTAGTGATGGT GTCGTGGGCAGTTGTTGTTTTCGTTGATGTTCATAGCGGAGATGGTATTG ATGGCGGCGTTGTTGACCGTTACGGTGGGGTTGACGTTCGTGGCACAGGA AGCGAATGTCTGCAAATCGTTGTTTCTTTTTGATGCATTCGAGAATCAGT TGTACCATCGTCGAACTTCCTTGAAGTTTCTTGGAGAAGACAACGAGCTA GCAATTTTTACAGTGTCTCCGCGATTCTCGAAAAGGGAGGAAAAGTCCGA CCCCGTCTGCACCTTTCGGCAATCTCTTTCTACTTGTATGTTGTGTTAAA GTCCGTCGATGCAGCCGTGGTTCTGtTTTTTTCAATGAAACCGCTTCTCA AATGCACGCCCAAACTCTTGACAAGCCCTTGAACGCATGCGCCCCTGCGC TCCTGCCACCCCTGACCTCGCCGCGTGTACACTTTTTTGACAGGGTTTCC ATCAAGGGCCTTGACACTTTCTCGGAAGGAAAACCGCTGACCCTCCATGT GAAGCCGGCGGCGGGAGGAGCGGCGTTTGACATCCAGGTTAACCACACCT TCAACAAGGAGCAGATCGACTGGTTCAAGGCCGGCAGCGCTTTGAACCTC ATGAAGGCGAACAACGCGTCCACCTAATTTTTTTTGGTAGGCGAGGGGAA TGATCGGACTTCCCTTTTCAAAGGGGAAAAACAAGGTGGCGACCACGCGG TTGTTCAGCGGAAAAAGACGTCGATCGGTCGGGGATGCGTTGGAGGGAGA ACGAAATCGGGCGGTTGACAGGTGGTCTTGTGGACGGAATACCACCGAAA CGCGGCGGTCTAGCTAATATTGGAGCGGGGATACACCCGGGCCTCGGACG GAAGTGTTGAGTGGATGGAGCGTGTGCGCCACACCGAACACCACGAGGCT CTCTGTTCTCGTCCATACCGACGTGTTACCGTTTTTGCAGTGTTTCTACA CGAAGGGAGGGTGCTGATATTCCGGACGGGAGTAGCGGTTATATCGGCGG TCTGGCGCGCTTCGCAACCTCGACAGCGTCAAATCGCGCTGGAGGGAGAC TGTTCTGTCGTTGCTGACAGGGATTATGCCGAAAGGCGGGGCGGGGGGGT CTGCGCCTATCACAGATCAGAAAAGTATGTTTTACGCAAGTGTAGCGAAG CGTGCACGTTTTGTTTTTTCGGAAAGCAAGTGCAGGCCCTTCTTTCGGTG CGAAGGAACGGCGGGCAGAACCCCCCCAACAGTATCGGCGAGTGGGTGTA AATGCTTTTGAATTTCTGTGGAAATGCTGCGCCTGTAAGAGTGATGGATG GGTTTCTTTCCGCACCCTGGATAGTCAGGGATCGCAGTTAGGGCAGAGGG CCCGGCCTTCATACAcCCCCTTGCTGGGCTTGTGGACGGGAACCAAGATT TTGTAAGCGATTTTGTTCGGCCATTGGGTATGCTTGACCTTGTTCTTTGT TTTATCGAATACGACATGATTCAAATTGAAAAATTGACAGGGCATCGACT GACAACATTTCGGGCAGGACTTGCGGTGCTCTTTCTCGTTTAACATACTC TGGAGTATTAATTAATCTGGTCGACCTTTTGAGGTCAGCCAGCCCAGGTA TCCTCCGCCCTGCAGTCAGCCAGGTGCCAAAAACACCAAAG
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Coding sequence (CDS) from alignment at P-fluviatile_contig11:3018157..3032647+

>mRNA_P-fluviatile_contig11.1258.1 ID=mRNA_P-fluviatile_contig11.1258.1|Name=mRNA_P-fluviatile_contig11.1258.1|organism=Porterinema fluviatile SAG_2381|type=CDS|length=4428bp|location=Sequence derived from alignment at P-fluviatile_contig11:3018157..3032647+ (Porterinema fluviatile SAG_2381)
ATGATCAGAGCTCGCGCCTTCGCCAGCGGCCGCAAGATGATCAGAGCTCG
CGCCTTCGCCAGCGGCCGCAAGGCCGCTGGTCGCTACGCCGGTGCCGCCG
CGGCTCGGAGCATGTCGGGGACTCCCCTGAGCGTGCTGGACCCCAAGGGA
AGCCCCACCATAGACTCCGTCTACTCCAAGCCGCTGGTCGCTACGCCGGT
GCCGCCGCGGCTCGGAGCATGTCGGGGACTCCCCTGAGCGTGCTGGACCC
CAAGGGAAGCCCCACCATAGACTCCGTCTACTCCAAGATGGAGAAAAACA
TCTACGCCGCGCGTAAGACTTTGGGGCGGCCCTTGACCCTGTCGGAGAAG
ATCGTCTACGGCCACTTCGACGACCCCGCCACGGTTCCGGTCCGCGGCGA
GACGTACCTCAAGCTTAGGCCCGACCGCGTGGCGATGCAGGATGGAGAAA
AACATCTACGCCGCGCGTAAGACTTTGGGGCGGCCCTTGACCCTGTCGGA
GAAGATCGTCTACGGCCACTTCGACGACCCCGCCACGGTTCCGGTCCGCG
GCGAGACGTACCTCAAGCTTAGGCCCGACCGCGTGGCGATGCAGGATGCG
ACGGCCCAGATGGCTGTCCTGCAGTTCATCTCGTCGGGCTTGCCGAAGAC
GGCGTGCCCAACTACCATCCACTGCGACCACCTCATCGCCGCCGAGACCG
GGGCCGACTCGGACATGGCCGCGGCCAAGATCACCAACAAGGAGGATGCG
ACGGCCCAGATGGCTGTCCTGCAGTTCATCTCGTCGGGCTTGCCGAAGAC
GGCGTGCCCAACTACCATCCACTGCGACCACCTCATCGCCGCCGAGACCG
GGGCCGACTCGGACATGGCCGCGGCCAAGATCACCAACAAGGAGGTGTAC
GACTTCCTCGCCTCTGCCGGAGCCAAGTACGGCATTGGCTTCTGGAAACC
CGGATCCGGCATCATCCACCAGGTGTACGACTTCCTCGCCTCTGCCGGAG
CCAAGTACGGCATTGGCTTCTGGAAACCCGGATCCGGCATCATCCACCAG
ATCGTTCTCGAGAACTACGCCTTCCCCGGAGGTCTGATGATCGGGACTGA
CTCGCACACCCCGAACGCGGGCGGCCTCGGCATGTGCGCTATCGGCGTCG
GTGGAGCGGATGCCGTGGACGTGATGGCCGGCATGGCGTGGGAGCTCAAG
TGCCCCAAGATCGTTCTCGAGAACTACGCCTTCCCCGGAGGTCTGATGAT
CGGGACTGACTCGCACACCCCGAACGCGGGCGGCCTCGGCATGTGCGCTA
TCGGCGTCGGTGGAGCGGATGCCGTGGACGTGATGGCCGGCATGGCGTGG
GAGCTCAAGTGCCCCAAGGTGATCGGCGTCAAGCTGACGGGCAAGCTCTC
CGGTTGGACCTCGCCCAAGGACATCATCCTGAAGGTGGCCGGCATCCTGA
CCGTCAAGGGCGGGACCGGCGCCATCGTCGAGTACTTCGGCCCTGGCGTG
GACTCCATCTCGTGCACCGGTATGGGCACCATCTGCAACATGGGAGCGGA
GATCGGCGCCACTTGCTCGACCTTCCCGTACAACTCCCGTATGCAGGACT
ACCTCAAGGTGATCGGCGTCAAGCTGACGGGCAAGCTCTCCGGTTGGACC
TCGCCCAAGGACATCATCCTGAAGGTGGCCGGCATCCTGACCGTCAAGGG
CGGGACCGGCGCCATCGTCGAGTACTTCGGCCCTGGCGTGGACTCCATCT
CGTGCACCGGTATGGGCACCATCTGCAACATGGGAGCGGAGATCGGCGCC
ACTTGCTCGACCTTCCCGTACAACTCCCGTATGCAGGACTACCTCAAGGC
AACAGAGCGGTCTGGCATCGCCGCTGCGGCTGACTCTTTCAAGGAGAACC
TCAAGGCGGATGAGGGCGCGCCTTACGACGAGATCATCGAGATCGACCTC
AACACGCTGCGCCCCCACGTGAACGGGCCTTTCACGCCCGACCTCGCCCA
CCCCGTCGGGGCCGAGTTCGTCTCTGCCGTCAAGGCAACAGAGCGGTCTG
GCATCGCCGCTGCGGCTGACTCTTTCAAGGAGAACCTCAAGGCGGATGAG
GGCGCGCCTTACGACGAGATCATCGAGATCGACCTCAACACGCTGCGCCC
CCACGTGAACGGGCCTTTCACGCCCGACCTCGCCCACCCCGTCGGGGCCG
AGTTCGTCTCTGCCGTCAAGGAAAACGACTGGCCGGAGGAGCTGTCTGCG
GCGCTCATCGGCTCCTGCACGAACTCGTCCTACGAAGACATGGCCAGGAA
AACGACTGGCCGGAGGAGCTGTCTGCGGCGCTCATCGGCTCCTGCACGAA
CTCGTCCTACGAAGACATGGCCAGGTGCGCTGACCTCACGGAGCAGGCCA
AGAAGGCCAACATCAAGTTCAAGGTGGACATGCTCGTGACGCCCGGCTCT
GAGCTGGTGCGCTGACCTCACGGAGCAGGCCAAGAAGGCCAACATCAAGT
TCAAGGTGGACATGCTCGTGACGCCCGGCTCTGAGCTGGTGCGGGCCACG
ATCACCCGCGACGGCTTCACGTCCACCTTCGAGGAGGCCGGCGCGACCGT
GCTGGCCAACGCGTGCGGCCCGTGCATCGGACAGTGGAACCGCTCCGAGA
AGCAGGGAGAGAAGAACACCATCATCACCTCGTACAACAGAAACTTTGCC
AAGCGTAACGACGGCAACCCCCAGGTGCGGGCCACGATCACCCGCGACGG
CTTCACGTCCACCTTCGAGGAGGCCGGCGCGACCGTGCTGGCCAACGCGT
GCGGCCCGTGCATCGGACAGTGGAACCGCTCCGAGAAGCAGGGAGAGAAG
AACACCATCATCACCTCGTACAACAGAAACTTTGCCAAGCGTAACGACGG
CAACCCCCAGACTCACGCGTTCGTTGCTTcCCCCGAGATGGTGGTGGCGA
CGGCGCTTGCGGGCAACGTGACCTTTAACCCGGAGACGGACTCTATTCCC
ACCCCCGACGGCGGGTCCTTCAAGTTCGAGGCTCCCTTCGGGAAGGAGCT
GCCCGTCAAGGGCTTCGACCCCGGAGAGGACACCTTCCAGACTCACGCGT
TCGTTGCTTcCCCCGAGATGGTGGTGGCGACGGCGCTTGCGGGCAACGTG
ACCTTTAACCCGGAGACGGACTCTATTCCCACCCCCGACGGCGGGTCCTT
CAAGTTCGAGGCTCCCTTCGGGAAGGAGCTGCCCGTCAAGGGCTTCGACC
CCGGAGAGGACACCTTCCAGCCCTCCCCGGAAGACGCGTCGGGTCTGTCG
GTGGTGGTTTCCCCCGACTCGGCACGCCTCGCCCTGTTGGAACCCTTCCA
GCCGTGGGAGGGGTCTGACCTCGAAGATCTCCCGGTGCTCATCAAGCCCT
CCCCGGAAGACGCGTCGGGTCTGTCGGTGGTGGTTTCCCCCGACTCGGCA
CGCCTCGCCCTGTTGGAACCCTTCCAGCCGTGGGAGGGGTCTGACCTCGA
AGATCTCCCGGTGCTCATCAAGGCGAAGGGCAAGTGCACGACGGACCACA
TCTCGATGGCGGGACCGTGGCTCAAGTTCCGCGGCCACCTCGACAACATC
TCCAACAACATGCTTATCGGTGCCATCAACGCGGAGAACGGAGAGGTCAA
CAACGTGCAGAACCAGGCGAAGGGCAAGTGCACGACGGACCACATCTCGA
TGGCGGGACCGTGGCTCAAGTTCCGCGGCCACCTCGACAACATCTCCAAC
AACATGCTTATCGGTGCCATCAACGCGGAGAACGGAGAGGTCAACAACGT
GCAGAACCAGCTGACCGGCGAGTTCGGCAAGGTGCCCGACGTGGCCCGCC
AATACAAGGCCTCCGGGATCGGCTGGGTGGTGATCGGGGACGATAATTAC
GGCGAGGGGTCGTCCAGAGAACACGCGGCGCTCGAGCCGAGGCACCTGGG
GGGAAGGGCGGTGGTGGTGAAGTCCTTCGCGCGCATCCACGAGACCAACT
TGAAGAAGCAGGGGATGCTCCCCTCGTGTTCGACAAGCCGTCGGACTACG
ACCGCATCTCGGGAAACGACAACTGACCGGCGAGTTCGGCAAGGTGCCCG
ACGTGGCCCGCCAATACAAGGCCTCCGGGATCGGCTGGGTGGTGATCGGG
GACGATAATTACGGCGAGGGGTCGTCCAGAGAACACGCGGCGCTCGAGCC
GAGGCACCTGGGGGGAAGGGCGGTGGTGGTGAAGTCCTTCGCGCGCATCC
ACGAGACCAACTTGAAGAAGCAGGGGATGCTCCCCTCGTGTTCGACAAGC
CGTCGGACTACGACCGCATCTCGGGAAACGACAAGGTTTCCATCAAGGGC
CTTGACACTTTCTCGGAAGGAAAACCGCTGAGGTTTCCATCAAGGGCCTT
GACACTTTCTCGGAAGGAAAACCGCTGA
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