mRNA_P-fluviatile_contig13.1755.1 (mRNA) Porterinema fluviatile SAG_2381

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

Overview
NamemRNA_P-fluviatile_contig13.1755.1
Unique NamemRNA_P-fluviatile_contig13.1755.1
TypemRNA
OrganismPorterinema fluviatile SAG_2381 (Porterinema fluviatile SAG_2381)
Homology
BLAST of mRNA_P-fluviatile_contig13.1755.1 vs. uniprot
Match: D7G866_ECTSI (Kinesin motor domain-containing protein n=2 Tax=Ectocarpus TaxID=2879 RepID=D7G866_ECTSI)

HSP 1 Score: 1021 bits (2639), Expect = 0.000e+0
Identity = 553/697 (79.34%), Postives = 598/697 (85.80%), Query Frame = 2
Query: 1550 GREGDTKLQEMLAAKQAELMNVLASREGQXXXXXXXXXXXXXXXXXXXXXQQ-RQEYGRRGIHLTYFEKGTSIPHFINLDEDPFRSHRFMYLLDKPRIRFGSGGDIKQLSLTIAENHCLVLREHAESAAAQPEAVSAEVGEGRGGEGASNSLASAATYILECGDGETFINGRLMSKSERVVMSCYDRVAIGGELLLFDHPGARPQGTATGEGGLEEGSPAPPTADFAVEELQAALRNKGKQAQEMLDERMKQFEEEKLQWEQQRQAAAQAGKDFDDAEPTMDEERERAWQSVDKEILDVLPKIKEAKNIVRLMDRDTLTFDVALQRTEDEVGVPKVKVRVENSSLGGEANSILLDPIDFLRGFSVLKDELVHLRNAKENGRTYVVDKHHDPIQLLFDNTFHLGTGVMFPEFMLYNLEMEHDERVVDIKNVSAPYNNVGAFEMVWTPLAGPEEEDASKEMMDVESEDDLLGKPWTYRVALKGATGLPLMVSHAFVQYELGGQLFTTETVEQDTHNPVLDYSFVHHVERVSPELIAGLKKPMQFRLWVSPYVINPKNLVSTDNPRVLSPKANGEGETRTRSGTTLGPDAVAPQEGGLSN-LSTDGSAPIDPDKITVSQEYLRGLRVALETERRRVEELEAEICRLNKELAAFKNLSPGAGPAGAQENGDASRKGSKPCSPKKRLESAVETDRALSQALE 3634
            G EGD+KLQEMLAAKQAELMNVLASREGQ XXXXXXXXXXX         QQ R+EYGRRGIHLTYFEKGTSIPHFINLDEDPFRSHRFMYLLDKPR  FGSGGDIK LSLT+A++HC+VL+E  + AA QP        EG+ G+    S AS ATY+LECGDGETFINGRLMSKSER+ +SCYDRVAIGGELLLFDHPGARP G  T  G   E +  PPTA+FAVEELQAALR+KGK+AQEMLDERMKQFEEEK++WEQQR+AAA+AGK FDD EPTMDEERERAWQSVDKEILDVLPKIKEAKNIV LMDRDTLTFDVALQRTEDEVGVPKVKVRVENS++ GEANSILLDPIDFLRGFSVLKDELVHLRNAKENGRTYVVD HHDPIQLLFDNTFHLGTGVMFPEFMLYNLEME DERVVDIKNVSAPYNNVGAFEMVWTPL GPEEEDA K+MMDVE+E+DL+GKPWTYRV LKGATGLPLMVSHAFVQYELGG LFTTETVEQDTHNP+L+YSF+HHVERV+PELIA LKKPMQFRLWVSPYVINPKNLVSTDN RVL+P A  EG    RSGT +     A Q+GG      TDGS P DP+KI+VSQEYL GLRVAL+TERRRVEELEAE+CRLNKELA  +  SP       + +GDA    S+PCSPKKRLESAV+TDR L+ AL+
Sbjct:  435 GGEGDSKLQEMLAAKQAELMNVLASREGQEXXXXXXXXXXXPDNTEERMMQQQREEYGRRGIHLTYFEKGTSIPHFINLDEDPFRSHRFMYLLDKPRTTFGSGGDIKPLSLTVAKDHCVVLKE--DVAAPQP------APEGQEGDA---SHASPATYVLECGDGETFINGRLMSKSERIAISCYDRVAIGGELLLFDHPGARPPGVPTEGGDGAEAAAVPPTAEFAVEELQAALRSKGKKAQEMLDERMKQFEEEKVKWEQQREAAAKAGKTFDDEEPTMDEERERAWQSVDKEILDVLPKIKEAKNIVGLMDRDTLTFDVALQRTEDEVGVPKVKVRVENSAIAGEANSILLDPIDFLRGFSVLKDELVHLRNAKENGRTYVVDTHHDPIQLLFDNTFHLGTGVMFPEFMLYNLEMESDERVVDIKNVSAPYNNVGAFEMVWTPLPGPEEEDAGKDMMDVETEEDLVGKPWTYRVDLKGATGLPLMVSHAFVQYELGGNLFTTETVEQDTHNPLLEYSFLHHVERVTPELIASLKKPMQFRLWVSPYVINPKNLVSTDNSRVLNPNACAEGANIHRSGTVVDQGYFAQQQGGAGGAFPTDGSGPDDPEKISVSQEYLHGLRVALDTERRRVEELEAEVCRLNKELATLRKPSPR---LAEETSGDAPPGNSEPCSPKKRLESAVKTDRVLTNALD 1117          
BLAST of mRNA_P-fluviatile_contig13.1755.1 vs. uniprot
Match: A0A835Z2N0_9STRA (P-loop containing nucleoside triphosphate hydrolase protein n=1 Tax=Tribonema minus TaxID=303371 RepID=A0A835Z2N0_9STRA)

HSP 1 Score: 713 bits (1841), Expect = 3.510e-235
Identity = 341/429 (79.49%), Postives = 382/429 (89.04%), Query Frame = 1
Query:  250 MSVSIKVAMRCRPYSIDDKLGVQLVQNGEEEGEVNLLNSDYSTNRFAFTYAWWSAYGFDRHIQSNHDEAEAMTLMNQEMVYESVGRKIKADLYEGNAVVLFAYGLSGSGKTFTVFGPDAVDIPEAWFKHAEPHPLWGIFPRLAYEMFEDKTDGWKITMKYFQNVVDTVRDLMSPVISEQHYKNGMKKDENGFMDIGWCSSKVLNDWDELRTVFMQANAKKAIAPTQFNHQSTRGHCIMTLEVEMPHPEMPGMKQKGRVYVCDLAGTEPAGDIVFAKYEKNVFPNGDIEHKYLGAHEDDRKTKELQNQGMKINLSLTEMSQFFMKMAEAVVKKKLKPGASIPGCNSYFLCKFLKDTMLQARTYLFCAIRPEVKYHSYTFSTCNFAKNASVVKLQPKKAVAASSPAERRLMEELEQMKMMMAAMRAENEKL 1536
            MSVSIKVA+RCRP++IDDKLGV L+QN +E GE+NLLNSDYSTNRF+F +AWWSAYG+ RHIQSN+ E +AM L+NQ+ VY   G KIK DL EGNAVVLFAYGLSGSGKTFTVFGPDA DIPEAWFKH+EPHPLWGIFPRLAYE+F ++ DGWK+TMKYFQNVVDTVRDL+SP+  E+ YK GM+KD +GFMDI WCSSKVLN WD+LR  FM+ANAKKAIAPTQFNHQSTRGHCIMTLEVEMPHP+ P MKQKGRVYVCDLAGTEPAGDIV+A YEK VFPNG+IEHKYLG H+D RKTKELQ QGMKINLSL+EM+QFFMKMAEAV+ KKLKPG+SIPGCNSYFLCK+LKDTMLQARTYLFCAIRPE+ Y +YTFST  FAKNASVVKLQPKKA+ A+SPAER+LM+ELE MK M   +R EN KL
Sbjct:    1 MSVSIKVAIRCRPFTIDDKLGVHLLQNSDEAGEINLLNSDYSTNRFSFNWAWWSAYGYQRHIQSNNAEGDAMPLVNQQDVYNQCGLKIKTDLMEGNAVVLFAYGLSGSGKTFTVFGPDAPDIPEAWFKHSEPHPLWGIFPRLAYEIFAERKDGWKVTMKYFQNVVDTVRDLLSPMGEEKQYKAGMRKDPDGFMDIEWCSSKVLNSWDDLRHNFMEANAKKAIAPTQFNHQSTRGHCIMTLEVEMPHPDNPAMKQKGRVYVCDLAGTEPAGDIVYALYEKQVFPNGEIEHKYLGPHQDQRKTKELQAQGMKINLSLSEMAQFFMKMAEAVMAKKLKPGSSIPGCNSYFLCKYLKDTMLQARTYLFCAIRPELTYQNYTFSTLGFAKNASVVKLQPKKAMVAASPAERKLMQELEAMKAMFDQLREENMKL 429          
BLAST of mRNA_P-fluviatile_contig13.1755.1 vs. uniprot
Match: A0A8K1CKD3_PYTOL (Uncharacterized protein n=1 Tax=Pythium oligandrum TaxID=41045 RepID=A0A8K1CKD3_PYTOL)

HSP 1 Score: 695 bits (1793), Expect = 2.170e-228
Identity = 330/429 (76.92%), Postives = 378/429 (88.11%), Query Frame = 1
Query:  250 MSVSIKVAMRCRPYSIDDKLGVQLVQNGEEEGEVNLLNSDYSTNRFAFTYAWWSAYGFDRHIQSNHDEAEAMTLMNQEMVYESVGRKIKADLYEGNAVVLFAYGLSGSGKTFTVFGPDAVDIPEAWFKHAEPHPLWGIFPRLAYEMFEDKTDGWKITMKYFQNVVDTVRDLMSPVISEQHYKNGMKKDENGFMDIGWCSSKVLNDWDELRTVFMQANAKKAIAPTQFNHQSTRGHCIMTLEVEMPHPEMPGMKQKGRVYVCDLAGTEPAGDIVFAKYEKNVFPNGDIEHKYLGAHEDDRKTKELQNQGMKINLSLTEMSQFFMKMAEAVVKKKLKPGASIPGCNSYFLCKFLKDTMLQARTYLFCAIRPEVKYHSYTFSTCNFAKNASVVKLQPKKAVAASSPAERRLMEELEQMKMMMAAMRAENEKL 1536
            MSV+IKV++RCRP++ DD+LGV L QNGEEEGEV L+NS YST RFAF+YAWWSAYGF+RH+  +  EA+ MTL+NQ+M Y+SVG KIK DL  GNAVVLFAYGLSGSGKTFTVFGPDAVDIPEAWFKH +PHP+WGIFPRLAYE+F+DK DGWK++MKYFQNVVDTVRDLMSPV  EQ YK+GMKKD +GF DI WC S VL DW++LR  FM ANA+KAIAPTQFNHQSTRGHCIMTLEVE P PE  GMKQ+GRVYVCDLAGTEPAGDIV+A+Y+K VF NGDIEHKYLG H D  K+KELQ+QG KINLSLTEM+QFFMKMAEAV   KLKPG SIPGCNSYFLCK+LKDTMLQARTYLFCAIRPEVK+H+YTFST  FAKNASV+KLQPKKA +A+SPAER+LM ELEQMK++++ ++ ENE++
Sbjct:    1 MSVTIKVSIRCRPFTCDDQLGVVLSQNGEEEGEVQLINSTYSTTRFAFSYAWWSAYGFERHVLGDPPEAQQMTLINQQMAYDSVGLKIKEDLLGGNAVVLFAYGLSGSGKTFTVFGPDAVDIPEAWFKHEKPHPMWGIFPRLAYELFQDKQDGWKVSMKYFQNVVDTVRDLMSPVAQEQQYKSGMKKDPDGFTDIEWCQSVVLKDWNDLRRTFMAANARKAIAPTQFNHQSTRGHCIMTLEVEKPDPEREGMKQRGRVYVCDLAGTEPAGDIVYAEYKKVVFDNGDIEHKYLGPHPDPSKSKELQDQGKKINLSLTEMAQFFMKMAEAVKANKLKPGMSIPGCNSYFLCKYLKDTMLQARTYLFCAIRPEVKFHNYTFSTLGFAKNASVIKLQPKKASSAASPAERKLMAELEQMKLLVSQLKGENERM 429          
BLAST of mRNA_P-fluviatile_contig13.1755.1 vs. uniprot
Match: D0N3U6_PHYIT (Kinesin motor domain-containing protein n=17 Tax=Phytophthora TaxID=4783 RepID=D0N3U6_PHYIT)

HSP 1 Score: 686 bits (1769), Expect = 1.250e-225
Identity = 331/430 (76.98%), Postives = 373/430 (86.74%), Query Frame = 1
Query:  250 MSVSIKVAMRCRPYSIDDKLGVQLVQNGEEEGEVNLLNSDYSTNRFAFTYAWWSAYGFDRHIQSNHDEAEAMTLMNQEMVYESVGRKIKADLYEGNAVVLFAYGLSGSGKTFTVFGPDAVDIPEAWFKHAEPHPLWGIFPRLAYEMFEDKTDGWKITMKYFQNVVDTVRDLMSPVISEQHYKNGMKKDENGFMDIGWCSSKVLNDWDELRTVFMQANAKKAIAPTQFNHQSTRGHCIMTLEVEMPHPEMPGMKQKGRVYVCDLAGTEPAGDIVFAKYEKNVFPNGDIEHKYLGAHEDDRKTKELQNQGMKINLSLTEMSQFFMKMAEAVVKKKLKPGASIPGCNSYFLCKFLKDTMLQARTYLFCAIRPEVKYHSYTFSTCNFAKNASVVKLQPKKAVAASSPAERRLMEELEQMKMMMAAMRAENEKLA 1539
            MSVSIKV++RCRP++ DDKLGV + QNGEEEG+V L+NS YST RF F+YAWWSAYG+ RHIQ +  +A+ M L++Q+M YESVGRKIKADL  GNAVVLFAYGLSGSGKTFTVFGPDAVDIPEAWFKH EPHPLWGIFPRLAYE+F++K DGWKI+MKYFQNVVDTVRDLMSPV  EQ YK+GM+KD +GF DI WC S VL DW++LR  FM ANAKKAIAPTQFNHQSTRGHCIMTLEVE P PE  GMKQ+GRVYVCDLAGTEPAGDIV+A Y+K VF +G+IEHKYLG H D  K+KELQ+QG KINLSLTEM+QFFMKMAEAV   KLKPG SIPGCNSYFLCK+LKDTMLQARTYLFCAIRPEVK+H YTFST  FAKNASV+KLQPKKA  A+SPAER+LM ELEQMK +++ ++ ENE  A
Sbjct:    1 MSVSIKVSIRCRPFTCDDKLGVVMTQNGEEEGDVELINSTYSTTRFPFSYAWWSAYGYKRHIQGDSLQADNMILVDQQMAYESVGRKIKADLMGGNAVVLFAYGLSGSGKTFTVFGPDAVDIPEAWFKHEEPHPLWGIFPRLAYELFKEKQDGWKISMKYFQNVVDTVRDLMSPVAQEQQYKSGMRKDPDGFTDIEWCQSVVLKDWNDLRRTFMVANAKKAIAPTQFNHQSTRGHCIMTLEVEKPDPEREGMKQRGRVYVCDLAGTEPAGDIVYADYKKVVFEDGEIEHKYLGPHPDALKSKELQDQGKKINLSLTEMAQFFMKMAEAVKANKLKPGMSIPGCNSYFLCKYLKDTMLQARTYLFCAIRPEVKFHGYTFSTLGFAKNASVIKLQPKKASTAASPAERKLMAELEQMKALVSQLKDENEPSA 430          
BLAST of mRNA_P-fluviatile_contig13.1755.1 vs. uniprot
Match: K3X4F7_GLOUD (Kinesin motor domain-containing protein n=1 Tax=Globisporangium ultimum (strain ATCC 200006 / CBS 805.95 / DAOM BR144) TaxID=431595 RepID=K3X4F7_GLOUD)

HSP 1 Score: 681 bits (1757), Expect = 2.390e-224
Identity = 327/430 (76.05%), Postives = 371/430 (86.28%), Query Frame = 1
Query:  250 MSVSIKVAMRCRPYSIDDKLGVQLVQNGEEEGEVNLLNSDYSTNRFAFTYAWWSAYGFDRHIQSNHDEAEAMTLMNQEMVYESVGRKIKADLYEGNAVVLFAYGLSGSGKTFTVFGPDAVDIPEAWFKHAEPHPLWGIFPRLAYEMFEDKTDGWKITMKYFQNVVDTVRDLMSPVISEQHYKNGMKKDENGFMDIGWCSSKVLNDWDELRTVFMQANAKKAIAPTQFNHQSTRGHCIMTLEVEMPHPEMPGMKQKGRVYVCDLAGTEPAGDIVFAKYEKNVFPNGDIEHKYLGAHEDDRKTKELQNQGMKINLSLTEMSQFFMKMAEAVVKKKLKPGASIPGCNSYFLCKFLKDTMLQARTYLFCAIRPEVKYHSYTFSTCNFAKNASVVKLQPKKAVAASSPAERRLMEELEQMKMMMAAMRAENEKLA 1539
            MSVSIKV++RCRP++ DDKLGV L Q+ EEEGEV L+NS YST RF F+YAWWSAYG+ RH+Q +  E   MTL++Q+  Y+SVG KIK+DL  GNAVVLFAYGLSGSGKTFTVFGPDAVDIPEAWFKH EP PLWGIFPRLAYE+F++K DGWKI+MKYFQNVVDTVRDLMSPV  EQ YK+GM+KD +GF DI WC S VL DW++LR  FM ANAKKAIAPTQFNHQSTRGHCIMTLEVE P PE  GMKQ+GRVYVCDLAGTEPAGDIV+A+Y+K VF NG+IEHKY+G H D  K+KELQ+QG KINLSLTEM+QFFMKMAEAV   KLKPG SIPGCNSYFLCK+LKDTMLQARTYLFCAIRPEVK+H YTFST  FAKNASV+KLQPKKA AA+S AER+LM ELEQMKM++  ++ ENE++A
Sbjct:    1 MSVSIKVSVRCRPFTCDDKLGVVLTQSAEEEGEVQLINSTYSTTRFGFSYAWWSAYGYQRHVQGDPPEVNQMTLIDQQAAYDSVGLKIKSDLLSGNAVVLFAYGLSGSGKTFTVFGPDAVDIPEAWFKHEEPQPLWGIFPRLAYELFKEKQDGWKISMKYFQNVVDTVRDLMSPVAQEQQYKSGMRKDADGFTDIEWCQSVVLKDWNDLRKNFMAANAKKAIAPTQFNHQSTRGHCIMTLEVEKPDPEREGMKQRGRVYVCDLAGTEPAGDIVYAEYKKIVFDNGEIEHKYIGPHPDASKSKELQDQGKKINLSLTEMAQFFMKMAEAVKANKLKPGVSIPGCNSYFLCKYLKDTMLQARTYLFCAIRPEVKFHGYTFSTLGFAKNASVIKLQPKKASAAASAAERKLMAELEQMKMLVNQLKEENERMA 430          
BLAST of mRNA_P-fluviatile_contig13.1755.1 vs. uniprot
Match: D7G5B6_ECTSI (Kinesin motor domain-containing protein n=1 Tax=Ectocarpus siliculosus TaxID=2880 RepID=D7G5B6_ECTSI)

HSP 1 Score: 688 bits (1776), Expect = 1.860e-223
Identity = 332/425 (78.12%), Postives = 369/425 (86.82%), Query Frame = 1
Query:  250 MSVSIKVAMRCRPYSIDDKLGVQLVQNGEEEGEVNLLNSDYSTNRFAFTYAWWSAYGFDRHIQSNHDEAEAMTLMNQEMVYESVGRKIKADLYEGNAVVLFAYGLSGSGKTFTVFGPDAVDIPEAWFKHAEPHPLWGIFPRLAYEMFEDKTDGWKITMKYFQNVVDTVRDLMSPVISEQHYKNGMKKDENGFMDIGWCSSKVLNDWDELRTVFMQANAKKAIAPTQFNHQSTRGHCIMTLEVEMPHPEMPGMKQKGRVYVCDLAGTEPAGDIVFAKYEKNVFPNGDIEHKYLGAHEDDRKTKELQNQGMKINLSLTE--MSQFFMKMAEAVVKKKLKPGASIPGCNSYFLCKFLKDTMLQARTYLFCAIRPEVKYHSYTFSTCNFAKNASVVKLQPKKAVAASSPAERRLMEELEQMKMMMAAMR 1518
            MSVSIKVA+RCRP++IDD LGV L Q+GEEEGE+++LNS YST RFAFTYAWWSAYGF RH+++N  EA  M L++QE VY SVG+KIKADL  GNAVVLFAYGLSGSGKTFTVFGPDAVD PEAWFKH EPHPLWGIFPRLAYE+F++K DGWKITMKYFQNVVDTVRDLMSPV  E HYKNGMKKD +GF DI WCSS VLN WD+LR  F  ANA+KAIAPTQFNHQSTRGHCIMTLEVEMPHP+MPGMKQKGRVYVCDLAGTEPAGDIV+A YEK  F  GDIE+K+LG H+D RKTKELQ+QG KINLSL+E  M+QFFMKMAEAV K  LKPG SIPGCNSYFLCK+LKDTMLQARTYLFCAIRPEV YH YTF+T  FAKNASVVKL+PK A   ++ AE++LMEELEQMK ++  +R
Sbjct:    1 MSVSIKVAVRCRPFTIDDNLGVNLTQSGEEEGEIDILNSAYSTTRFAFTYAWWSAYGFSRHVKNNATEAAEMELIDQEKVYLSVGKKIKADLLTGNAVVLFAYGLSGSGKTFTVFGPDAVDEPEAWFKHGEPHPLWGIFPRLAYEVFQEKKDGWKITMKYFQNVVDTVRDLMSPVGKEMHYKNGMKKDADGFTDIDWCSSAVLNSWDDLRQAFRAANARKAIAPTQFNHQSTRGHCIMTLEVEMPHPDMPGMKQKGRVYVCDLAGTEPAGDIVYALYEKKTFDGGDIEYKFLGPHQDQRKTKELQDQGKKINLSLSEVQMAQFFMKMAEAVQKNTLKPGGSIPGCNSYFLCKYLKDTMLQARTYLFCAIRPEVTYHKYTFATLGFAKNASVVKLKPKMATVKATLAEKKLMEELEQMKALVEQLR 425          
BLAST of mRNA_P-fluviatile_contig13.1755.1 vs. uniprot
Match: A0A0W8DLN6_PHYNI (Transcription initiation factor TFIID subunit 13 n=3 Tax=Phytophthora TaxID=4783 RepID=A0A0W8DLN6_PHYNI)

HSP 1 Score: 688 bits (1775), Expect = 4.570e-221
Identity = 333/433 (76.91%), Postives = 376/433 (86.84%), Query Frame = 1
Query:  250 MSVSIKVAMRCRPYSIDDKLGVQLVQNGEEEGEVNLLNSDYSTNRFAFTYAWWSAYGFDRHIQSNHDEAEAMTLMNQEMVYESVGRKIKADLYEGNAVVLFAYGLSGSGKTFTVFG---PDAVDIPEAWFKHAEPHPLWGIFPRLAYEMFEDKTDGWKITMKYFQNVVDTVRDLMSPVISEQHYKNGMKKDENGFMDIGWCSSKVLNDWDELRTVFMQANAKKAIAPTQFNHQSTRGHCIMTLEVEMPHPEMPGMKQKGRVYVCDLAGTEPAGDIVFAKYEKNVFPNGDIEHKYLGAHEDDRKTKELQNQGMKINLSLTEMSQFFMKMAEAVVKKKLKPGASIPGCNSYFLCKFLKDTMLQARTYLFCAIRPEVKYHSYTFSTCNFAKNASVVKLQPKKAVAASSPAERRLMEELEQMKMMMAAMRAENEKLA 1539
            MSVSIKV++RCRP++ DDKLGV + QNGEEEG+V L+NS YST RF F+YAWWSAYG+ RHIQ +  +A+ MTL++Q+M YESVGRKIKADL  GNAVVLFAYGLSGSGKTFTVFG   PDAVDIPEAWFKH EPHPLWGIFPRLAYE+F++K DGWKI+MKYFQNVVDTVRDLMSPV  EQ YK+GM+KD +GF DI WC S VL DW++LR  FM ANAKKAIAPTQFNHQSTRGHCIMTLEVE P PE  GMKQ+GRVYVCDLAGTEPAGDIV+A Y+K VF NG+IEHKYLG H D  K+KELQ+QG KINLSLTEM+QFFMKMAEAV   KLKPG SIPGCNSYFLCK+LKDTMLQARTYLFCAIRPEVK+H YTFST  FAKNASV+KLQPKKA  A+SPAER+LM ELEQMK +++ ++ ENE++A
Sbjct:    1 MSVSIKVSIRCRPFTCDDKLGVVMTQNGEEEGDVELINSTYSTTRFPFSYAWWSAYGYKRHIQGDALQADNMTLVDQQMAYESVGRKIKADLMGGNAVVLFAYGLSGSGKTFTVFGVGIPDAVDIPEAWFKHEEPHPLWGIFPRLAYELFKEKQDGWKISMKYFQNVVDTVRDLMSPVAQEQQYKSGMRKDPDGFTDIDWCQSVVLKDWNDLRRTFMAANAKKAIAPTQFNHQSTRGHCIMTLEVEKPDPEREGMKQRGRVYVCDLAGTEPAGDIVYADYKKVVFENGEIEHKYLGPHPDASKSKELQDQGKKINLSLTEMAQFFMKMAEAVKANKLKPGMSIPGCNSYFLCKYLKDTMLQARTYLFCAIRPEVKFHGYTFSTLGFAKNASVIKLQPKKASTAASPAERKLMAELEQMKALVSQLKDENERIA 433          
BLAST of mRNA_P-fluviatile_contig13.1755.1 vs. uniprot
Match: A0A1V9Z812_9STRA (Kinesin motor domain-containing protein n=1 Tax=Achlya hypogyna TaxID=1202772 RepID=A0A1V9Z812_9STRA)

HSP 1 Score: 675 bits (1742), Expect = 4.680e-221
Identity = 324/434 (74.65%), Postives = 371/434 (85.48%), Query Frame = 1
Query:  250 MSVSIKVAMRCRPYSIDDKLGVQLVQNGEEEGEVNLLNSDYSTNRFAFTYAWWSAYGFDRHIQSNHDEAEAMTLMNQEMVYESVGRKIKADLYEGNAVVLFAYGLSGSGKTFTVFGPDAVDIPEAWFKHAEPHPLWGIFPRLAYEMFEDKTDGWKITMKYFQNVVDTVRDLMSPVISEQHYKNGMKKDENGFMDIGWCSSKVLNDWDELRTVFMQANAKKAIAPTQFNHQSTRGHCIMTLEVEMPHPEMPGMKQKGRVYVCDLAGTEPAGDIVFAKYEKNVFPNGDIEHKYLGAHEDDRKTKELQNQGMKINLSLTEMSQFFMKMAEAVVKKKLKPGASIPGCNSYFLCKFLKDTMLQARTYLFCAIRPEVKYHSYTFSTCNFAKNASVVKLQPKKAVAASSPAERRLMEELEQMKMMMAAMRAENEKLAAAGG 1551
            MSVSIKV +RCRP++IDD LGV + Q G+EEGEV L+NS YST RFAF++AWWSAYG+ RH++ +   A+ M L++Q M Y++ G KIK DL  GNAVV+FAYGLSGSGKTFTVFGPDAVDIPEAWFKH EPHPLWGIFPRLAY +F++K DGWKITMKYFQNVVDTVRDLMSP+  EQ YKNGM+KD +GFMDI WC   VL DW++LR  FM ANA+KAIAPTQFNHQSTRGHCIMTLEVE P PE  GMKQ+GRVYVCDLAGTEPAGDIV+A Y+K VF +G IE KYLG H D  K+KELQ+QG KINLSLTEM+QFFMKMAEAV KK LKPGASIPGCNSYFLCK+LKDTMLQARTYLFCA+RPEV YH YTFST  FAKNASV+KLQPKKA  A+SPAER+LM EL++MK ++A ++AENEK+A +GG
Sbjct:    1 MSVSIKVCIRCRPFTIDDTLGVVMSQKGDEEGEVELINSTYSTTRFAFSWAWWSAYGYKRHVKGDTLPADNMLLVDQSMAYDACGTKIKDDLLGGNAVVMFAYGLSGSGKTFTVFGPDAVDIPEAWFKHEEPHPLWGIFPRLAYNLFKEKQDGWKITMKYFQNVVDTVRDLMSPMAQEQQYKNGMRKDPDGFMDIEWCQGVVLKDWNDLRKTFMSANARKAIAPTQFNHQSTRGHCIMTLEVEKPDPEREGMKQRGRVYVCDLAGTEPAGDIVYANYQKIVFDDGTIEMKYLGPHPDASKSKELQDQGKKINLSLTEMAQFFMKMAEAVQKKTLKPGASIPGCNSYFLCKYLKDTMLQARTYLFCAVRPEVTYHGYTFSTLGFAKNASVIKLQPKKASTAASPAERKLMAELDEMKNLVAMLKAENEKMAKSGG 434          
BLAST of mRNA_P-fluviatile_contig13.1755.1 vs. uniprot
Match: W4GK14_9STRA (Kinesin motor domain-containing protein n=9 Tax=Aphanomyces astaci TaxID=112090 RepID=W4GK14_9STRA)

HSP 1 Score: 675 bits (1741), Expect = 5.520e-221
Identity = 321/437 (73.46%), Postives = 374/437 (85.58%), Query Frame = 1
Query:  250 MSVSIKVAMRCRPYSIDDKLGVQLVQNGEEEGEVNLLNSDYSTNRFAFTYAWWSAYGFDRHIQSNHDEAEAMTLMNQEMVYESVGRKIKADLYEGNAVVLFAYGLSGSGKTFTVFGPDAVDIPEAWFKHAEPHPLWGIFPRLAYEMFEDKTDGWKITMKYFQNVVDTVRDLMSPVISEQHYKNGMKKDENGFMDIGWCSSKVLNDWDELRTVFMQANAKKAIAPTQFNHQSTRGHCIMTLEVEMPHPEMPGMKQKGRVYVCDLAGTEPAGDIVFAKYEKNVFPNGDIEHKYLGAHEDDRKTKELQNQGMKINLSLTEMSQFFMKMAEAVVKKKLKPGASIPGCNSYFLCKFLKDTMLQARTYLFCAIRPEVKYHSYTFSTCNFAKNASVVKLQPKKAVAASSPAERRLMEELEQMKMMMAAMRAENEKLAAAGGEGG 1560
            MSVSIKV +RCRP++IDD LGV + Q G+EEGEV L+NS YST RFAF+++WWSAYG+ RH++ +   A+ M L++Q M YE+ G KIKADL  GNAVVLFAYGLSGSGKTFTVFGPDAVDIPEAWFKH EPHP+WGIFPRLAYE+F++K DGWKITMKYFQNVVDTVRDLMSP+  EQ YK+GM+KD +GFMDI WC   VL DW++LR  FM AN++KAIAPTQFNHQSTRGHCIMTLEVE P P+  GMKQ+GR+YVCDLAGTEPAGD+V+A Y+K  F +G IE KYLG H D  K+KELQ+QG KINLSLTEM+QFFMKMAEAV KK LKPGASIPGCNSYFLCK+LKDTMLQARTYLFCA+RPEV YH+YTFST  FAKNASV+KLQPKKA  A+SPAER+LM EL++MK +++ ++AENEK+A AGG  G
Sbjct:    1 MSVSIKVCIRCRPFTIDDTLGVVMTQKGDEEGEVELINSSYSTTRFAFSWSWWSAYGYKRHVKGDPLPADNMLLVDQTMAYEACGNKIKADLLGGNAVVLFAYGLSGSGKTFTVFGPDAVDIPEAWFKHEEPHPMWGIFPRLAYELFKEKQDGWKITMKYFQNVVDTVRDLMSPMAQEQQYKSGMRKDPDGFMDIEWCQGVVLKDWNDLRRTFMSANSRKAIAPTQFNHQSTRGHCIMTLEVEKPDPDREGMKQRGRIYVCDLAGTEPAGDVVYANYQKIQFDDGTIEMKYLGPHSDPAKSKELQDQGKKINLSLTEMAQFFMKMAEAVQKKTLKPGASIPGCNSYFLCKYLKDTMLQARTYLFCAVRPEVTYHNYTFSTLGFAKNASVIKLQPKKASTAASPAERKLMAELDEMKNLVSMLKAENEKMAKAGGGSG 437          
BLAST of mRNA_P-fluviatile_contig13.1755.1 vs. uniprot
Match: A0A024TQ17_9STRA (Kinesin motor domain-containing protein n=2 Tax=Aphanomyces invadans TaxID=157072 RepID=A0A024TQ17_9STRA)

HSP 1 Score: 674 bits (1740), Expect = 8.490e-221
Identity = 321/433 (74.13%), Postives = 371/433 (85.68%), Query Frame = 1
Query:  250 MSVSIKVAMRCRPYSIDDKLGVQLVQNGEEEGEVNLLNSDYSTNRFAFTYAWWSAYGFDRHIQSNHDEAEAMTLMNQEMVYESVGRKIKADLYEGNAVVLFAYGLSGSGKTFTVFGPDAVDIPEAWFKHAEPHPLWGIFPRLAYEMFEDKTDGWKITMKYFQNVVDTVRDLMSPVISEQHYKNGMKKDENGFMDIGWCSSKVLNDWDELRTVFMQANAKKAIAPTQFNHQSTRGHCIMTLEVEMPHPEMPGMKQKGRVYVCDLAGTEPAGDIVFAKYEKNVFPNGDIEHKYLGAHEDDRKTKELQNQGMKINLSLTEMSQFFMKMAEAVVKKKLKPGASIPGCNSYFLCKFLKDTMLQARTYLFCAIRPEVKYHSYTFSTCNFAKNASVVKLQPKKAVAASSPAERRLMEELEQMKMMMAAMRAENEKLAAAG 1548
            MSVSIKV +RCRP++IDD LGV + Q G+EEGEV L+NS YST RFAF+++WWSAYG+ RH++ +   A+ M L++Q M YE+ G KIKADL  GNAVV+FAYGLSGSGKTFTVFGPDAVDIPEAWFKH EPHP+WGIFPRLAYE+F++K DGWKITMKYFQNVVDTVRDLMSP+  EQ YKNGM+KD +GFMDI WC   VL DW++LR  FM ANA+KAIAPTQFNHQSTRGHCIMTLEVE P PE  GMKQ+GR+YVCDLAGTEPAGD+V+A Y+K  F +G IE KYLG H D  K+KELQ+QG KINLSLTEM+QFFMKMAEAV KK LKPGASIPGCNSYFLCK+LKDTMLQARTYLFCA+RPEV YH+YTFST  FAKNASV+KLQPKKA  A+SPAER+LM EL++MK ++A ++AENEK+A  G
Sbjct:    1 MSVSIKVCIRCRPFTIDDTLGVIMTQKGDEEGEVELINSSYSTTRFAFSWSWWSAYGYKRHVKGDTLPADNMLLVDQTMAYEACGSKIKADLLGGNAVVMFAYGLSGSGKTFTVFGPDAVDIPEAWFKHEEPHPMWGIFPRLAYELFKEKQDGWKITMKYFQNVVDTVRDLMSPMAQEQQYKNGMRKDPDGFMDIEWCQGVVLKDWNDLRKTFMSANARKAIAPTQFNHQSTRGHCIMTLEVEKPDPEREGMKQRGRIYVCDLAGTEPAGDVVYANYQKIQFDDGTIEMKYLGPHPDPAKSKELQDQGKKINLSLTEMAQFFMKMAEAVQKKTLKPGASIPGCNSYFLCKYLKDTMLQARTYLFCAVRPEVTYHNYTFSTLGFAKNASVIKLQPKKASTAASPAERKLMAELDEMKNLVAMLKAENEKMAKGG 433          
The following BLAST results are available for this feature:
BLAST of mRNA_P-fluviatile_contig13.1755.1 vs. uniprot
Analysis Date: 2022-09-19 (Diamond blastx: OGS1.0 vs UniRef90)
Total hits: 25
Match NameE-valueIdentityDescription
D7G866_ECTSI0.000e+079.34Kinesin motor domain-containing protein n=2 Tax=Ec... [more]
A0A835Z2N0_9STRA3.510e-23579.49P-loop containing nucleoside triphosphate hydrolas... [more]
A0A8K1CKD3_PYTOL2.170e-22876.92Uncharacterized protein n=1 Tax=Pythium oligandrum... [more]
D0N3U6_PHYIT1.250e-22576.98Kinesin motor domain-containing protein n=17 Tax=P... [more]
K3X4F7_GLOUD2.390e-22476.05Kinesin motor domain-containing protein n=1 Tax=Gl... [more]
D7G5B6_ECTSI1.860e-22378.12Kinesin motor domain-containing protein n=1 Tax=Ec... [more]
A0A0W8DLN6_PHYNI4.570e-22176.91Transcription initiation factor TFIID subunit 13 n... [more]
A0A1V9Z812_9STRA4.680e-22174.65Kinesin motor domain-containing protein n=1 Tax=Ac... [more]
W4GK14_9STRA5.520e-22173.46Kinesin motor domain-containing protein n=9 Tax=Ap... [more]
A0A024TQ17_9STRA8.490e-22174.13Kinesin motor domain-containing protein n=2 Tax=Ap... [more]

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Alignments
The following features are aligned
Aligned FeatureFeature TypeAlignment Location
P-fluviatile_contig13contigP-fluviatile_contig13:1341101..1362869 +
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 score849.7
Seed ortholog evalue7.7e-244
Seed eggNOG ortholog2880.D7G866
Preferred nameSTARD9
KEGG koko:K11511,ko:K16491,ko:K17916
KEGG Pathwayko03460,map03460
EggNOG free text desc.microtubule motor activity
EggNOG OGsCOG5059@1,KOG0245@2759
COG Functional cat.Z
Best tax levelEukaryota
Best eggNOG OGNA|NA|NA
BRITEko00000,ko00001,ko03036,ko03400,ko04812
Hectar predicted targeting categoryother localisation
Exons24
Model size3688
Cds size1725
Stop1
Start1
Relationships

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

Feature NameUnique NameSpeciesTypePosition
mRNA_P-fluviatile_contig13.1755.1prot_P-fluviatile_contig13.1755.1Porterinema fluviatile SAG_2381polypeptideP-fluviatile_contig13 1342177..1351334 +


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

Feature NameUnique NameSpeciesTypePosition
1622815557.5685892-UTR-P-fluviatile_contig13:1341100..13412431622815557.5685892-UTR-P-fluviatile_contig13:1341100..1341243Porterinema fluviatile SAG_2381UTRP-fluviatile_contig13 1341101..1341243 +
1693562235.4245973-UTR-P-fluviatile_contig13:1341100..13412431693562235.4245973-UTR-P-fluviatile_contig13:1341100..1341243Porterinema fluviatile SAG_2381UTRP-fluviatile_contig13 1341101..1341243 +
1622815557.5831068-UTR-P-fluviatile_contig13:1342070..13421761622815557.5831068-UTR-P-fluviatile_contig13:1342070..1342176Porterinema fluviatile SAG_2381UTRP-fluviatile_contig13 1342071..1342176 +
1693562235.4390936-UTR-P-fluviatile_contig13:1342070..13421761693562235.4390936-UTR-P-fluviatile_contig13:1342070..1342176Porterinema fluviatile SAG_2381UTRP-fluviatile_contig13 1342071..1342176 +
1622815557.755625-UTR-P-fluviatile_contig13:1351334..13514211622815557.755625-UTR-P-fluviatile_contig13:1351334..1351421Porterinema fluviatile SAG_2381UTRP-fluviatile_contig13 1351335..1351421 +
1693562235.5551155-UTR-P-fluviatile_contig13:1351334..13514211693562235.5551155-UTR-P-fluviatile_contig13:1351334..1351421Porterinema fluviatile SAG_2381UTRP-fluviatile_contig13 1351335..1351421 +
1622815557.7662225-UTR-P-fluviatile_contig13:1352401..13526181622815557.7662225-UTR-P-fluviatile_contig13:1352401..1352618Porterinema fluviatile SAG_2381UTRP-fluviatile_contig13 1352402..1352618 +
1693562235.5650308-UTR-P-fluviatile_contig13:1352401..13526181693562235.5650308-UTR-P-fluviatile_contig13:1352401..1352618Porterinema fluviatile SAG_2381UTRP-fluviatile_contig13 1352402..1352618 +
1622815557.7773237-UTR-P-fluviatile_contig13:1354465..13546031622815557.7773237-UTR-P-fluviatile_contig13:1354465..1354603Porterinema fluviatile SAG_2381UTRP-fluviatile_contig13 1354466..1354603 +
1693562235.5741813-UTR-P-fluviatile_contig13:1354465..13546031693562235.5741813-UTR-P-fluviatile_contig13:1354465..1354603Porterinema fluviatile SAG_2381UTRP-fluviatile_contig13 1354466..1354603 +
1622815557.7870705-UTR-P-fluviatile_contig13:1354992..13551121622815557.7870705-UTR-P-fluviatile_contig13:1354992..1355112Porterinema fluviatile SAG_2381UTRP-fluviatile_contig13 1354993..1355112 +
1693562235.582947-UTR-P-fluviatile_contig13:1354992..13551121693562235.582947-UTR-P-fluviatile_contig13:1354992..1355112Porterinema fluviatile SAG_2381UTRP-fluviatile_contig13 1354993..1355112 +
1622815557.8010943-UTR-P-fluviatile_contig13:1355752..13558721622815557.8010943-UTR-P-fluviatile_contig13:1355752..1355872Porterinema fluviatile SAG_2381UTRP-fluviatile_contig13 1355753..1355872 +
1693562235.5917654-UTR-P-fluviatile_contig13:1355752..13558721693562235.5917654-UTR-P-fluviatile_contig13:1355752..1355872Porterinema fluviatile SAG_2381UTRP-fluviatile_contig13 1355753..1355872 +
1622815557.816682-UTR-P-fluviatile_contig13:1356493..13565621622815557.816682-UTR-P-fluviatile_contig13:1356493..1356562Porterinema fluviatile SAG_2381UTRP-fluviatile_contig13 1356494..1356562 +
1693562235.603545-UTR-P-fluviatile_contig13:1356493..13565621693562235.603545-UTR-P-fluviatile_contig13:1356493..1356562Porterinema fluviatile SAG_2381UTRP-fluviatile_contig13 1356494..1356562 +
1622815557.8273315-UTR-P-fluviatile_contig13:1357488..13575931622815557.8273315-UTR-P-fluviatile_contig13:1357488..1357593Porterinema fluviatile SAG_2381UTRP-fluviatile_contig13 1357489..1357593 +
1693562235.6121142-UTR-P-fluviatile_contig13:1357488..13575931693562235.6121142-UTR-P-fluviatile_contig13:1357488..1357593Porterinema fluviatile SAG_2381UTRP-fluviatile_contig13 1357489..1357593 +
1622815557.844939-UTR-P-fluviatile_contig13:1358668..13588111622815557.844939-UTR-P-fluviatile_contig13:1358668..1358811Porterinema fluviatile SAG_2381UTRP-fluviatile_contig13 1358669..1358811 +
1693562235.6206403-UTR-P-fluviatile_contig13:1358668..13588111693562235.6206403-UTR-P-fluviatile_contig13:1358668..1358811Porterinema fluviatile SAG_2381UTRP-fluviatile_contig13 1358669..1358811 +
1622815557.8601592-UTR-P-fluviatile_contig13:1359813..13599791622815557.8601592-UTR-P-fluviatile_contig13:1359813..1359979Porterinema fluviatile SAG_2381UTRP-fluviatile_contig13 1359814..1359979 +
1693562235.6301572-UTR-P-fluviatile_contig13:1359813..13599791693562235.6301572-UTR-P-fluviatile_contig13:1359813..1359979Porterinema fluviatile SAG_2381UTRP-fluviatile_contig13 1359814..1359979 +
1622815557.8742156-UTR-P-fluviatile_contig13:1360254..13603781622815557.8742156-UTR-P-fluviatile_contig13:1360254..1360378Porterinema fluviatile SAG_2381UTRP-fluviatile_contig13 1360255..1360378 +
1693562235.6400054-UTR-P-fluviatile_contig13:1360254..13603781693562235.6400054-UTR-P-fluviatile_contig13:1360254..1360378Porterinema fluviatile SAG_2381UTRP-fluviatile_contig13 1360255..1360378 +
1622815557.8866038-UTR-P-fluviatile_contig13:1361385..13614831622815557.8866038-UTR-P-fluviatile_contig13:1361385..1361483Porterinema fluviatile SAG_2381UTRP-fluviatile_contig13 1361386..1361483 +
1693562235.6512568-UTR-P-fluviatile_contig13:1361385..13614831693562235.6512568-UTR-P-fluviatile_contig13:1361385..1361483Porterinema fluviatile SAG_2381UTRP-fluviatile_contig13 1361386..1361483 +
1622815557.898672-UTR-P-fluviatile_contig13:1362092..13622271622815557.898672-UTR-P-fluviatile_contig13:1362092..1362227Porterinema fluviatile SAG_2381UTRP-fluviatile_contig13 1362093..1362227 +
1693562235.6593418-UTR-P-fluviatile_contig13:1362092..13622271693562235.6593418-UTR-P-fluviatile_contig13:1362092..1362227Porterinema fluviatile SAG_2381UTRP-fluviatile_contig13 1362093..1362227 +
1622815557.9082913-UTR-P-fluviatile_contig13:1362677..13628691622815557.9082913-UTR-P-fluviatile_contig13:1362677..1362869Porterinema fluviatile SAG_2381UTRP-fluviatile_contig13 1362678..1362869 +
1693562235.667441-UTR-P-fluviatile_contig13:1362677..13628691693562235.667441-UTR-P-fluviatile_contig13:1362677..1362869Porterinema fluviatile SAG_2381UTRP-fluviatile_contig13 1362678..1362869 +


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

Feature NameUnique NameSpeciesTypePosition
1622815557.5962965-CDS-P-fluviatile_contig13:1342176..13421941622815557.5962965-CDS-P-fluviatile_contig13:1342176..1342194Porterinema fluviatile SAG_2381CDSP-fluviatile_contig13 1342177..1342194 +
1693562235.4540715-CDS-P-fluviatile_contig13:1342176..13421941693562235.4540715-CDS-P-fluviatile_contig13:1342176..1342194Porterinema fluviatile SAG_2381CDSP-fluviatile_contig13 1342177..1342194 +
1622815557.6119087-CDS-P-fluviatile_contig13:1343455..13436351622815557.6119087-CDS-P-fluviatile_contig13:1343455..1343635Porterinema fluviatile SAG_2381CDSP-fluviatile_contig13 1343456..1343635 +
1693562235.4642189-CDS-P-fluviatile_contig13:1343455..13436351693562235.4642189-CDS-P-fluviatile_contig13:1343455..1343635Porterinema fluviatile SAG_2381CDSP-fluviatile_contig13 1343456..1343635 +
1622815557.6254358-CDS-P-fluviatile_contig13:1344415..13445891622815557.6254358-CDS-P-fluviatile_contig13:1344415..1344589Porterinema fluviatile SAG_2381CDSP-fluviatile_contig13 1344416..1344589 +
1693562235.4736087-CDS-P-fluviatile_contig13:1344415..13445891693562235.4736087-CDS-P-fluviatile_contig13:1344415..1344589Porterinema fluviatile SAG_2381CDSP-fluviatile_contig13 1344416..1344589 +
1622815557.6391914-CDS-P-fluviatile_contig13:1345535..13456691622815557.6391914-CDS-P-fluviatile_contig13:1345535..1345669Porterinema fluviatile SAG_2381CDSP-fluviatile_contig13 1345536..1345669 +
1693562235.4828308-CDS-P-fluviatile_contig13:1345535..13456691693562235.4828308-CDS-P-fluviatile_contig13:1345535..1345669Porterinema fluviatile SAG_2381CDSP-fluviatile_contig13 1345536..1345669 +
1622815557.65417-CDS-P-fluviatile_contig13:1346267..13464391622815557.65417-CDS-P-fluviatile_contig13:1346267..1346439Porterinema fluviatile SAG_2381CDSP-fluviatile_contig13 1346268..1346439 +
1693562235.4915106-CDS-P-fluviatile_contig13:1346267..13464391693562235.4915106-CDS-P-fluviatile_contig13:1346267..1346439Porterinema fluviatile SAG_2381CDSP-fluviatile_contig13 1346268..1346439 +
1622815557.6842217-CDS-P-fluviatile_contig13:1346800..13470371622815557.6842217-CDS-P-fluviatile_contig13:1346800..1347037Porterinema fluviatile SAG_2381CDSP-fluviatile_contig13 1346801..1347037 +
1693562235.500265-CDS-P-fluviatile_contig13:1346800..13470371693562235.500265-CDS-P-fluviatile_contig13:1346800..1347037Porterinema fluviatile SAG_2381CDSP-fluviatile_contig13 1346801..1347037 +
1622815557.699752-CDS-P-fluviatile_contig13:1347626..13477901622815557.699752-CDS-P-fluviatile_contig13:1347626..1347790Porterinema fluviatile SAG_2381CDSP-fluviatile_contig13 1347627..1347790 +
1693562235.508951-CDS-P-fluviatile_contig13:1347626..13477901693562235.508951-CDS-P-fluviatile_contig13:1347626..1347790Porterinema fluviatile SAG_2381CDSP-fluviatile_contig13 1347627..1347790 +
1622815557.7114105-CDS-P-fluviatile_contig13:1348300..13484691622815557.7114105-CDS-P-fluviatile_contig13:1348300..1348469Porterinema fluviatile SAG_2381CDSP-fluviatile_contig13 1348301..1348469 +
1693562235.5176306-CDS-P-fluviatile_contig13:1348300..13484691693562235.5176306-CDS-P-fluviatile_contig13:1348300..1348469Porterinema fluviatile SAG_2381CDSP-fluviatile_contig13 1348301..1348469 +
1622815557.7232144-CDS-P-fluviatile_contig13:1349620..13497321622815557.7232144-CDS-P-fluviatile_contig13:1349620..1349732Porterinema fluviatile SAG_2381CDSP-fluviatile_contig13 1349621..1349732 +
1693562235.5265617-CDS-P-fluviatile_contig13:1349620..13497321693562235.5265617-CDS-P-fluviatile_contig13:1349620..1349732Porterinema fluviatile SAG_2381CDSP-fluviatile_contig13 1349621..1349732 +
1622815557.735352-CDS-P-fluviatile_contig13:1350294..13505161622815557.735352-CDS-P-fluviatile_contig13:1350294..1350516Porterinema fluviatile SAG_2381CDSP-fluviatile_contig13 1350295..1350516 +
1693562235.536012-CDS-P-fluviatile_contig13:1350294..13505161693562235.536012-CDS-P-fluviatile_contig13:1350294..1350516Porterinema fluviatile SAG_2381CDSP-fluviatile_contig13 1350295..1350516 +
1622815557.745188-CDS-P-fluviatile_contig13:1351191..13513341622815557.745188-CDS-P-fluviatile_contig13:1351191..1351334Porterinema fluviatile SAG_2381CDSP-fluviatile_contig13 1351192..1351334 +
1693562235.5451698-CDS-P-fluviatile_contig13:1351191..13513341693562235.5451698-CDS-P-fluviatile_contig13:1351191..1351334Porterinema fluviatile SAG_2381CDSP-fluviatile_contig13 1351192..1351334 +


Sequences
The following sequences are available for this feature:

protein sequence of mRNA_P-fluviatile_contig13.1755.1

>prot_P-fluviatile_contig13.1755.1 ID=prot_P-fluviatile_contig13.1755.1|Name=mRNA_P-fluviatile_contig13.1755.1|organism=Porterinema fluviatile SAG_2381|type=polypeptide|length=575bp
MSVSIKVAMRCRPYSIDDKLGVQLVQNGEEEGEVNLLNSDYSTNRFAFTY
AWWSAYGFDRHIQSNHDEAEAMTLMNQEMVYESVGRKIKADLYEGNAVVL
FAYGLSGSGKTFTVFGPDAVDIPEAWFKHAEPHPLWGIFPRLAYEMFEDK
TDGWKITMKYFQNVVDTVRDLMSPVISEQHYKNGMKKDENGFMDIGWCSS
KVLNDWDELRTVFMQANAKKAIAPTQFNHQSTRGHCIMTLEVEMPHPEMP
GMKQKGRVYVCDLAGTEPAGDIVFAKYEKNVFPNGDIEHKYLGAHEDDRK
TKELQNQGMKINLSLTEMSQFFMKMAEAVVKKKLKPGASIPGCNSYFLCK
FLKDTMLQARTYLFCAIRPEVKYHSYTFSTCNFAKNASVVKLQPKKAVAA
SSPAERRLMEELEQMKMMMAAMRAENEKLAAAGGEGGRHQAAGDARGEAG
GADERTRVSRGAGRGCGRRRVGGSEGRRGANDAAAAAGVRPQGYPPHLLR
EGYVDPSLHQPRRGPLPVPPLHVPLGQAPNTVWLGRRHQAAVSDDRREPL
PGAKGARRERGCATGGGVGGSGRG*
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mRNA from alignment at P-fluviatile_contig13:1341101..1362869+

Legend: UTRpolypeptideCDS
Hold the cursor over a type above to highlight its positions in the sequence below.
>mRNA_P-fluviatile_contig13.1755.1 ID=mRNA_P-fluviatile_contig13.1755.1|Name=mRNA_P-fluviatile_contig13.1755.1|organism=Porterinema fluviatile SAG_2381|type=mRNA|length=21769bp|location=Sequence derived from alignment at P-fluviatile_contig13:1341101..1362869+ (Porterinema fluviatile SAG_2381)
CGGAGTGGACAGCAGCGTGTGTGCTTCTCCATCCGGCTGTACCACGAAGG CTTGGAGAGCCCGTCGGCTGCATCCTACTCACTGGGTTGCAACTACATGC TACGCTCTGAGCTTGTCTGGGAAGGCGTCCATGTTGCTTTAAGGTAAGTG TACACGACTTGTACACCAGAACACGCCACTTGTTTGCCATTTGTTCCTCT CGCTCAAGCGTATCGGCGCGGTCTCACGCCCATAACTCAAGAGTATGCTG GCCGCCAAGGGCAACACGGACCGCCTCGTTTCCGGCACGCCGTTCAGGGC GTCAATAGTCCTTCCCTCTTCGGCTGCAGAAGATATCGCAAGCTGCAGCC GGGAGACACTCGCCCACTGCCTGTGTGGTCTGGATTTCAAATTTTGTCTC GTGTGTGGTATTTACACAGCTGCAATGTAAAAAACTGGTCGCCCCAGTGG TCTAGTTGCTATCACCGTACCCTTCTTGCAGGCAACTTGATGGGTTCGAA TCCCAGCTTGAGCGACTTTTTCTTACAAGGAATGAGCTTCTTTTCACTTG CGTCCTTGCCGGCGGATAGCGCCTAGTGGGGGTGTACACAGTGGGAAAGT GGTGGCTCAAACCCTTCTCGCAACAGAAACTTTCAGTCAGCACCGCAGGA GGAAGGGAGTGGGGGCCTCAGGGAGAGGAAACTTCTGTGCGACCATGGTT CAGATGTGCAGGCAAGATGCCCCGGGTGGCAAGGCGCCCTTCGAACTCTG GAAATAAATGTGATGACAAAAAAACAAAAAGCAGTGGTTTATTGAACACA TACACGGGGTTCCTGTCCCACCCGCAAAGCACACCAGGCTACGAAGCTGC AGTTCTTTGTAGCGCTGAGGTCAACCAGCGTTGATGTATTGCGCGTGTTT TCGCCCTTATCCGCTCTCCTGTGCGCGCTTTTTGCTTTGCTCTGCACCTT TCCAATCCTGTGCATTGCAGCCGAACGCGAAACGTTACCGGTCAGTGGAG CAGACCTTCAGAGTTGGATATCCGTGTCGGTGGAACGGCCATCCATTCAG AGCTGCTTCTCTGAGAAGCCGCCGACATGAGCGTCAGTATCAAGGTGCGG AAAACTTGTGGAGTGTGGACTTTCAGAGTCAGATTTTGCTGTATTACGAA GACTCTCTCAGTTGCGCGACTTCTATCGGCTGCTAGTTCGTCATGTCGTG TGGTGCGGTCACTGCCGTCGTTCGAGTCTATGTGACGCGTTACTGTGGGC GATTCTTATTCGTGGAACAGGCGCGCAGCTTAATTAACGTGTGGAAGATT TTAAGCCGAATTTTCGGGGAGGTTCCCTTGCGTCTCCGGACTGCACAGCA CGTTTGTAACCGTGATGTCGATGTTTGCCACTTGTGGCGACTAGGGGACA GCAAAAGCAACGTTACAACAATAACAGCGACTGTCACAGCACCCGCAACA GCAAGACCGTTACCGAGATCACCAACAAATGCGAGTTGCACGGCTCCTCT CACATCTGGAACCTGCCAGGGAGTCCGTAGCAATGGTTCCACATCGACGC CCGACGTTATACTCGAATGGACTTTTAAGCTGAGGGCTTCGGGTCTGTTG TGCGCGCCATCGGTCACAAAATATGTTTCTAGGCCATTTTTTGTCGTGTT TGAGATAATGATAACAGGAACCGCCCTTTCGACGATTTACCCTCAAGCCT GCAGCGGGTGCCCTCTATTCAGGCTCGGCCTGGTCGAGAGTGTTTCGGGA ACGGTACAATTGCCTGCTTGCGCTTGTACGCCTGCGTCGCGATTGCTGCG GTGAGATTCCTCCTCCAGCAGCTTCGGCCACTTTTGTCGTGAGAAGGAAA CCCCGACGTGTTCACGCAGAGCCTCGAGGCGGGGGTGCTGACTGAGTAAC AGAGAGTTGAGAGACCTGTTGATCGCGGTGCTATTTATTGACTCCGTCGA ATGGCTTCTCTGTTTTGCATCCATTAAGTGTCACACCCGCTTGGGCCGCC TCCAATAGTATGAACGTCTTCGAGGATACACATTTTAATCAACTGGTGCA GGGCCAGACTTTGAGAAAAAAATATGTCGTCGCTGGGGTTCAATGCGCCG CGCTGGTCTGCTCTGGTCTCGGCGGAGGCACGCATCGAGAGCTGTACTCG ACAAAGTCACCCAGTGTGTGTTTTCGAAATTCCTCCGTCCGACGCCCTCC GCCTGCTGCGTACCCTTCGACTCCGGCCGCGTAAGTAGCGCGCGGTGCAC TTCTTTTGTTTACCTTACTGTGAAGAATCCAAAAAGAAAAACGGCTTTGA ACCGGCGAACGTACGTCAGCCATAGAAAGAAGCGAACCCACGTGGATGCC CGCAGGTCGCGATGCGATGTCGCCCGTACTCCATCGACGACAAGCTTGGC GTGCAGCTGGTGCAGAACGGCGAGGAGGAAGGCGAGGTCAACCTGCTCAA CTCCGACTACAGCACCAATCGGTTCGCATTCACGTATGCCTGGTGGTCAG CCTACGGCTTCGACCGCCACATCCAGTCCAACCACGTGAGCTGCGCAGCG CAGGGCTGAATAGAGCCAGGCGACAGAGCCAGGCAGAGTCAGGCATTAAG TTGCTTGTTCGACATCGTTTAAAAAACCAGGGAACAACTTAATGCACTTC TCATGCGTTGTGAAACACACACAACAGACAACGGCCGGCTACCGAAAAAA GAAAGTCGTTGCTTCCATTGTGGTAGTGGTTGCTTGCGGATAGGTTCAGA CGACGGCCAGAAAAACACGTCTCAAAAGCCAGGGATTTCAAAGTTTTTTG GCCATTTTTCGGGCCGATTGCGTTCGTAAACTTTTTGCAATGGGATGGCT ACATGAGAGTCATGCCTATCCCCGGAACTCTGCGCGCCACGACTGCAGGA GCTCTACGGCGCTCGCCGCCCCGAGAGTAAGGCGTCGCTGACTTCCACGT CCACAATCGTTGCTGCATACTTTGCCTTCTTCAGTGTGGGTCCACATCAG ATGCTTCTTGATCTTGCCATACCGTGGCAGAGCGCGCCTGCTGTGTCAGA CCCTCCGACTTTGACTACACAGCAGGGTCGTGCATGCGCGCCGAGCCTTT TTGGTTTTCGATCCGCAGCGAGCGAGCGATTTGCAACCGCTTGTGGAAAC CCTTGATTTTTGGCGAAAGCACTTCGATCTGCACACCGACGGAACTATAA CACAGCACCAGACAAGAGGTGCATCGGACCGACTCACGCGCTTTACGTGA GCGCGCGCTTGTTCCTCGAGCAACGACCACGTGTGCGTGTGTACCTCTTG CTTGATTTCAACTAGGATGAGGCGGAGGCGATGACGCTGATGAACCAGGA GATGGTGTACGAGTCGGTCGGCAGAAAGATCAAGGCCGACCTGTACGAGG GCAACGCCGTGGTGCTGTTCGCCTACGGCTTGTCCGGCTCCGGGAAAACC TTCACCGTCTTTGGCCCGGACGCGGTCGACATTCCCGAGGTTCGTTGCGC GCTCTTGATGCATTTTGAACCCGTCCGGACTCGACTTGCTGCTGCTTGGC AGTAGAGATGAGCGCCTCAAGAGTCGAGCGGATCCCGTACTCTGAGGGCT CAAATCAGAGGCGTGGCCGTGTGGGAGCGAAGCGGCAGTCGCGGTCGATT TTCCCGAGGATCTTCCTGTTTTGTCGTTCGCCCGCACAGCCTTCCCCGTC CCCACGCTCTGTGTCTGTTAACACCGCGGGCGGATATTTCTTCCCTCTCC ATGCATCAAATGCTAGAAGTACACGATTGCCCCCACATCATGAACAAATT TCAACGCGTACGCAAGGCGGAACGGCGAGAAACCTTGAAGATTTCGTGCG TTATTAGGGGCGTTTTTCGGGACGAAGGTGAGGAGGGTTTTTGGAGAGTT GCGGTGTATTTACGCCCGCGGCAGCCGCTTTGCCGAACCATCTGCGTAGT TCGGGCAGGAAAGAAGCGGATATTGTCCTCGGGTTTGAGGAACCTCCGAA TTTTCGGGTTGTCCGCTTGTGCCGGCCGCCGCAAACCCAAAGGAACGATG CTCCTGCAGAGAGACACCGATGTCACCCAGCTGTTGTGTTTGCCACGTCA CGCCGCGCGGGTAAGGAGCAACAACGCGAAACAAACTCAATTTTTGCTCC TTCGGTTCAGAGTTTTACGGGGCCAGAAGAGTCTCCTCTCTTGAGTCGTC TGTGCAGAGGCCACCGTTCCACCTCCTGAGACCGGCACAAACGACCGGTT TCGTGTGCCAGCTGTCTGCGTACGGATGTATTTTTTTGTCTAGGCGTGCT GCAATTTTTTAACCTAGCCCCGATGTCCTTAGCGGCGGTTGCCCAAATTG CTCCCGTTTGCCTAGTGCCTCCGATTGCTGTGGGCCGACCGCGGCCGCTG CTGCCTCTGCGCCTCCACTTGGCATCGCCCCGCAGGCGTGGTTCAAGCAC GCGGAGCCTCACCCGCTGTGGGGGATATTCCCGCGCCTGGCGTACGAGAT GTTCGAGGACAAGACCGACGGGTGGAAGATTACGATGAAGTACTTCCAGA ACGTCGTGGACACGGTCAGGTCAGGCGGGGGGCGAGAGCGGAGACTACCC GAAGAGGAGGGTTAGGGATCAGTCGAGGAAGGGCCGAGTACCGGGGGTCG TCTGTTGCGAGGGTAACGCCTTGAGCAATTTGGGTTGCTGCGACGCTTGG GAATGTCGCCGATTTGACTGCGGGGGAATGGGCGGGGAGGGGGGATTGTG TCCAACGTCTTTCAGCACGTGCTTAGCAGTAAATCGGAGTGACCACAGCA GAAGGAGCAGCAGCGAATGACCTAGGGTGGTCACGTACTGTTCCAAGCTT GCAGCCACAACGTCGATCGCTTGATTTTTAACGTGATGACTTCTCCCGGC TCTGTCGCTGCACTCTTGCTTTGTCCGGTGGGAGATTCTGCCCAGCAACA AGGGGCACTTTTGCTTCCTGACGACTGGTGCAGCCAGCAAATAAGATCCC CCCTCCCCCGTGCCTTCGATGCGCGTGGTCTTGATCCAAATTTTGCTGGA ATCAACCCCTCCCATGGCTGGCAACCGACCCCCTCCTCACACATTCCTTA CATTTTTTCCCAACGTTGGACCGAAAACAACACCCTTTGACGCTGGGACA CTCCGGGGGAATATCAGGGACCTCATGTCCCCTGTGATTTCAGAGCAACA CTACAAGAACGGCATGAAGAAGGACGAAAACGGTTTTATGGACATCGGTT GGTGCAGCAGTAAGGTGCTGAATGACTGGGACGAGTTACGGACGGTGTTC ATGCAGGCAAACGCCAAGAAAGCTATCGCCCCGACGCAGGTGGGGTGCTC TTCGCTGATTGTCGTTGTTGTCGCGGTCGATGTTGTTCTTGAGAGGTCGG GAGAGAAGAAATGGTGGCACGCTTTTGCTGGACCACGACGGCTCCGCTTC GCTGGCAGGATAGAGGCGGTTCAACGCTAACGTCCAGCTCTTCGGCCACG CGTGTGCTCCGCTTACCCCAAGTATCGATCCGTTGCTCACCAGCCACACT AGATTGCGTATCGGTCACTCTCCTGCTCGAGTACTGAGCACCCCACCTCC CTCCTGCCTTCTTGCCCTTTTTCCATCCCTTTCCTATCGCAAACACAATG AAACGCTGCGGGGTGCGGCCAAACAAACCGACACAAAACACGGAAATCAG TTTAACCACCAGAGCACAAGGGGGCACTGCATCATGACCCTCGAGGTGGA GATGCCTCACCCAGAGATGCCGGGCATGAAGCAGAAGGGGAGGGTCTACG TGTGCGACTTGGCGGGAACGGAGCCGGCGGGAGACATCGTGTTTGCCAAG TACGAGAAGAACGTGTTTCCGAACGGCGACATCGAGCACAAGTACCTCGG GGCCCACGAGGACGACCGCAAGACGAAAGAGCTGCAGGTTTGTTGTCCCG TTTTTCGCACATGTCCTCTTTTGCTTGTTTTTTCTCGGCACCCACCTATC TGCGTTGTAGCTCGACTGCACGGACAACTTCGGTTTTCTTGCGGTCTTTT GGGGGGAGTTGAGGCTTTGACGTTGAAAGTTGACCCGGTCGGATGCACCC GCACGGGCCTGAGTACTGAGAGGTGGCCGGTACGGACTTGAATGCGGAGA CAGCATCTACGATGCCAAATCAAGGGCGGTGGCAGTGTTGGGATATTAAT CTAAATTGCTTGAGTGAGGCTACTTCTGGGGCGGTATTCCGTGACATGGA AAGGCGTAAGAGCCGCCGCCTGCGACCTGTCTCTGATAGGATAGGCGAGC TTGCGCTCGTGGGTTTCGCTAAGCCTGCCGGATTTTTGCAGTTGCCAGGA TTATTGCACCAAGGTGAAAGCGGGGCACTGCTGCAGCTCCTGTGTTGTGT CCCCGGTATGCGTTCGCTTTGCATACAAGGTAAAAAGACCCTTCTGCATA GACCTTGGTGTTTATGGCATACGCACCCGCCCTCTACCTTTCCCCCACAC TTTTTCGCGTCCGAACACCGCTACAGAACCAAGGCATGAAGATCAACCTG TCGTTGACGGAGATGTCTCAGTTCTTCATGAAGATGGCGGAGGCCGTCGT CAAGAAGAAGCTCAAGCCGGGCGCCTCCATCCCGGGGTGCAACTCGTACT TCCTGTGCAAGTTTCTAAAGGACACCATGCTCCAGGCCAGGTGAATGCTT CCGTAAACTAATCAATACTTCGAAGTACAACTTATCAATACTTCGAAGTA CAACTCGTCCACCCTTTGAAGTAAACCAATCAGTTCTTCGAAGTAAAGCT TATCTCGTGCTCCGACAACCCCCTGGGATGGCGATATACCCCCTTTCGCC TTCTCACGCAAGTTCCCCGCCGATGCCGGTCTTGACGAAAAAAAAAGTGG TTGAGAGCATGAAGAAAAGTGGCAGAATCGGAATTATTGGTTCGCTACAG TTCCGATCCTGCACCCAACCACCCCACCGCTGTGATGCAAAACTTGGAAT GGACTCCGGAATGTCGGCCACCTGAATGGTCATTGGCCAAACAACCCGAG CCCCTGATCTCCGCGCGGTGTGCGCGGAGATACCGCTCAAGACAAGCTCA CAAACCCCACTCGGCGAAGCTCGAGCAGTGATCTTCATCCTCTTCCTGCC CTCTCCCCCCTCCCCGTTTCATCGGATTTTCTTTTGAATAATCAAACAAG GACGTACCTTTTTTGCGCCATCCGGCCGGAAGTGAAGTACCACTCCTACA CCTTCTCGACGTGCAACTTCGCCAAGAACGCGTCCGTCGTGAAGCTGCAG CCCAAGAAGGCCGTCGCCGCCAGCTCTCCGGCTGAGCGTAGGCTCATGGA GGAGCTCGAACAGATGAAGGTATCTTCCTTAGAAGTTCCCTCGCTGTCGT TGTTGTTATCGTCGTCGCTGCTGCTGCTGCTGATTCTACTGGTTTCCCTG CGGCAACCGCCGGAATCACGACTTGTTGCTGTTGTTGGATACTCGGCTGA AATAATTCTCGGCGGGGACCTTCCAAGCTTGTGCCGATTACCGTGAAGCA GTCAGAGGTGAATTCAGTCGATGAATGTGCGAAATGTAAATCGAGCCTGG TCGAGTTGTTGTAGGCCAGCCGACTTCGTTGAGCGGATGGAGGCAGGATG CTCTGTGTGTGTCATAACTCCGGCGGTTACGATCGTAAGGAGCGGGGGAA GTTGCACAGCCGAAATTCGTTACGAGTGATCGCGTGCTTGATGAACGTCG AAAGAACAGGCCAGATTTCAGAGCGAACGTAGACTGCGTCGAAAGATAGA GCGCGGAACCCTCGTCTGTATTCTCCAGCAGTTAGATTAGAGTGTCGCTT TTTGAAGGCGGATGGTAAGCGGGGGGTCCGTTTGGGTAGGAAAGCGGGGG AGGGATCGATGGCGAGAAAGAAGTACTCCGTCGAATCGTGTGAGAAATTT TGTACAGGTGTTCGGATTTGGAGGTCATGCATCAGGTTTGATGGCGTGAG TGCTCGGAACGAGGAATCGTGCGTTATACGCGATACCCCCAGGCGTTTGA GCATGACTTGGCAGAGTGGACAAGCTCAGAGCGACTGATGGACGGGGTCT CCTCGGGTCGACCCCAATCGGGCATCATCGGCTCATCAGGTTCACTAAGA GCATAGGCCCAGCTGTAGTTAAGGGGCGCGATATGTAAAGGGAAGGGGGC GAAAGGGGGGGGGGTCCGGGTCGGGAATGGCGGATGCTGTGCTGGTCGAG CGCAAGCGCTTGCTGACAAAGCCCAATGGGGGCGCACAAGGTCGGGCAAA TCGATATAGGGTCATGAAAAGGAATATTTTCGTCCGATCTGGAACCAATA CCAACGGGTAAAGGAGGCAAACACCACCATGTTCGTGTCGGGCGCCAATA ACAATAATCGCCTTTGCTTCAGCGGTCACACACCTTCGCCGCGCTTCCCT CGTTGTCTACCGGCCTTCCTCGCCCCGCGTACATCGTCCATCATGTGGCT TGACTGTTTCGTCGCTGCAGATGATGATGGCGGCCATGAGGGCGGAGAAC GAGAAGCTGGCGGCCGCCGGAGGGGAGGGAGGGAGACACCAAGCTGCAGG AGATGCTCGCGGCGAAGCAGGCGGAGCTGATGGTACGATGCGGTGCCGTG CTTTTTTATCTCTACAGCCCGTCCTGTTGGGGGGTGACCAGTCCTGCTTT ATTCTCCTCGCAGCTGCCGCTCGTGCTGCCGCTGCTGCTGTCGCCACCGC TGCTATTGTTGGCTTCCTGCACACTAGTGCATTTGTACCACTTGGTTTTG TTCCCGCTGCTTGATAGATTTTTTCCGTTTTAGATGTCGTGAAATTTGTT GGCTGTTGTTTGAGTCGACTGCCCGTTCTTCCGCCTGCCCGTGCAAGGGT CAAACGAAAGCATCTTATTGAATGGCCTCTGAATCTTGATTTACTTCTGA ATCGCACTCTCGCTTCACCACATAAACTCACTCTCTGGCTTCGGCGACCA CGTCCGGAGACAAGACGCATTTTCGAATCCAAATTCACGCATGATTCCGA CGCAAAAGCTACAAAATAGAATTTGGAACGAACATTGCTCGAGAGACGGA CGTCCACCTTGAGCTCGTACGCCAGTGTGTAAACGCTAGATTCCCGCCTT TCGCCCACGACTACGCCTTCCCCTGCTGGACCCGCGTTTCGCAGAACGTA CTCGCGTCTCGAGAGGGGCAGGAAGGGGATGCGGGCGACGGCGGGTCGGG GGGAGCGAAGGACGCCGAGGAGCAAATGATGCAGCAGCAGCGGCAGGAGT ACGGCCGCAGGGGTATCCACCTCACCTACTTCGAGAAGGGTACGTCGATC CCTCACTTCATCAACCTCGACGAGGACCCCTTCCGGTCCCACCGCTTCAT GTACCTCTTGGACAAGGTAAATGGTCATCAAGGCGGCGAGATTGGATCGC CCGCCTGTTGTTTCATTGCCTCGCCTTGTTTCTGTTTCCTCGCGATCCGG TTGACGGGAAAATTGATAAGCAGAATAATCTTTAGGCTTGCTCTCGTGGA GATCGCTTGTCCGGTTTCATTGGCTGCTTTTCCGGATCGGTCTTCCATGC GGGCTCCTGTTCAACTCCGGGTAGTCGCCCACGAATAAACGGCGTAACCT TGTGTCTCCGTCGTGTGGACGAGGTGTGAAGACGGCGATAAGGTGACTTG GTCGTCGTTGTTTTATTTAAGTGAGCTTTGGTCAGCAGTGTACAACAACG GCGGGATTTGCGCAGGTGATTTTCAGTTTTTCGGAGGATCGTTCGCAACC ATGTCGGAGTCATGGCTGCCTTGGGAACCATGCCGGAACTAGGGATCATC ATTATTTTGCAGAAGCTGATGCGTTTCCGCCACCATGTACAGAGCCGCTG ACCTCCCTCCCTTCGCGAGAAAACGAACACAGAAAAAATTGGTGCAGCAC TGCATCGACGCGCACCGCCTCCGTGTTCCTCCATGCAGGTGTCTCCGTTT TCTTCACTAACTCACTTGCGGCTTACCCGACGACATTAGTAAATTCGATG ACCAACCACCTTTGTTGTGTCTCTGCCCCCGCCCTGAACAGCCCCGAATA CGGTTTGGCTCGGGCGGCGACATCAAGCAGCTGTCTCTGACGATCGCCGA GAACCACTGCCTGGTGCTAAGGGAGCACGCCGAGAGCGCGGCTGCGCAAC CGGAGGCGGTGTCGGCGGAAGTGGGAGAGGGTAGGGGAGGGGAGGGCGCA AGCAACTCGCTCGCATCGGCGGCCACGTATATTCTCGAGTGCGGCGACGG GGAGACCTTCATCAATGGCCGGTGAGAAAGGGTTGAGGGTTGCTTGTGGC GCCGCGTGGTTATTGACGTCGACGGGGGGGAGGCAAGGCAGGGCGGACGT TCGATGTGCTTACCCTTCGCAGAAAATGGACGTCCCCGAAAAAGGCAGCA GTTGGTTGTTTTGCTGTGTGGGGGAGATCGCGCGACAAGGCGACGGGGAT GGTGCGTAGTGATAAGCCCCCCCTACCCGAACCCAACCTGGGTATGTGCT CCGCCTCATTTTTGACAATCGACCGCAGAGGAGGTACTTCATAGCGGCTC TGCGCGCGGTACCATGAGAAGCTAGTGCCACCTCAAAGTCACATCTGTGT CCTACGCCGCTTTGCTGCGCTGTCTGTGCTTTTCAGACTTCCGTTCTCTT TTGAGCGTGTGCCGAAACCCTTGAGAGCCACGGGTGGGGTGTAATGATAC CCGGTGTGGCTGCGGAAGATGTGTCGCACTCCGCCGCTAGTGAACAGAGT ACTGAAGCTGCAGTAGAGGCCAGGGAAGAACATCGAGGCACGAGGAATTC TTGTTTACACTACAAAGTGTACAAGCCCAGGAGACTTATCCACAAAAGTG ACGGAGGGACCAAGAACGTCCCCGCAAGAAATTTCGGGACCCATGTGGCT GTGTGCTAGGAGCGTCGATTCTTGGGGTCTCCTCGGGTGTTCCGGCTGGG GTAAGGTCAATCGAGCAGGAAGGTATTGGCCAGCAGTCGGTCAGCGCCCA GTGGTTGTGCGTTACTGCAGTTGTCAGCACCGGGCCCGGAAACGTCAGCA CGACCATGACACGATGCAGACAAAGCCCTCCCCTCCGTTGAGTTTAGACC ATCGAAACACTAACCGCCAGATGCTTTGGTGGCAAACGGCATTGACGGCA CACACTGTACTAGAACGCAGGCGCTAGCTCACACCCTGCTGTTCTAAACC CCCGACCCCAAAACCCGACGTTAAATCCCGATCTAAAACCCCAAACACCA GTCTCATGTCCAAGTCCGAGAGAGTGGTCATGTCCTGCTATGACCGCGTG GCCATCGGGGGGGAGCTATTGCTCTTTGATCACCCCGGCGCGAGGCCCCA AGGCACCGCGACCGGGGAGGGGGGCTTGGAAGAAGGATCTCCCGCGCCTC CAACAGCGGACTTTGCTGTGGAGGAGCTCCAGGCGGCTCTCCGGAATAAG GGAAAGCAGGCACAGGAGGTAATTTATTCGGTACATGGCATGCCGCAACG AGTTTGCACCACTGCGTTCGCTCAATGAAATCAAAGCAGCAGTTGGGGTC GGAGCACCGGGAAAGGGGGCAACCGTACACCGTGCCGTACGTTGTAGTAG TTTTCCGCATGGGTCGAGAACGGCGAGTGTGCGCAATTTTGGCGTTCAGG TGGCCCGATTGATGGGCCCGTTCTCGTCAGCTTTGGCTGCGTGTCGTCTT GTTTCGAAGCGTGGCCATTGTCGATGAAAACGTGTACAACTATGTTTTCT CAAAAGCGGTCGACATACTCGTTAGACCCGCACGCGCCGGTTCAATCGCG TCCCGGTCCAACGCGTGCAAGCGTGAAGTTGTGATCGATGAGGCGCTTTT GATGACGAGGGGACAACAGCACTGCCTCCCGCAATAACCCATCGACGTGT AGTGGAATCCGCGGTCTCCTCCGGACCACTGTACATCCTCGTAAAAGTAA GCCGCCTGCTACCTGACGGTGATGATTCTGGACTCGCTCCGTGAGGAGAC AGAGAACAGGGGACGGGAGGGGGTTGGTGTGCTGAATCCACGCATGCGTA GCCGTTTGGCCTTAGACCTCGCATGCCTACAAGGTGGTGATGGCGCGATT TGCCGGATTTTCACCGGCCCAGTCTCTTGAATTCACCAAGCGCGAAGCGC AGTGACGCATCGACGAGTCGCATGAAGGGTGGGCAGCATCCTGCGAAGGT TGTTCGGCCAAATGTGTACTGATCTTGCACACGGATAGCAGCTCAACTAA CCTGCAATTTATTTTTCGGTATCGCTTCAGAGACAATCATTGGAATGTAC TACGGCAGCGCCTCGCGGGTGCATCACCATTCGGGGGGGGGGTGTACTCA TAGTCGTGCATGCCGTAGTCGTTAGACCATTGACCTCGCATCCCTACAAA GCCGGGACGGAGCACGCCGGGTTCTCACTCTCACACCACCAAGCGCGAAG CGCCGTGAGGTACTCGGCGAGTCGCATGAAGTGTGCGAGGCATCCTGCTA AGGGTGTTCGGCATCTTGTGCTTACTTCCTTGCATACGGATGACAGCTGC GTATGGCTTAATTTATTTTCTGGTGCTTTCACTTCCAGAGACAGTTGTAA GCACTGTGTAACTGCCTCGAGGTTGCTTGACCATTTTAACACAACGTGGT GCGATCATCCCCCTTGCGCGGAGTGAGGGTTCTCCACCCCGCACAACATG ATCTTCTCGACCACCAGTATGGTTACCGCCAAAAAAAAACAGAGGAAAAA AAAGACGGTAACCTGGTTGCCGACTTCACGAAGTGAATTGGCTTGTTTTA CAACGTCGTTGCCAAGCGACGAAAACCCAATCCCGATGGCAAACACCGAC GTGAGAGCATTCGGGGGGGGGGGGTACaAAAAAGCAAGAGCAACGTCAGC AGTAGTATCAGCACATTTTCTTCCGCTGCAACGCTGTGCACGCAAGCCGG CTGGGAATGTTTCACGGGCGCGACAGAACATGTTCGTTCCTGATTCCTTC GTCTCGAGATTCCGCGTTCGTCGTCCAGCCTCATTCGATACCTCGCTCGC TGTGTACACCTGGCTTGCGTGGCGCGCCTGCACGCTATTTGATCTCTCAC ACCCGGCCCACTCTCTCAAGAGCCTTGGCGGGCGGGCGCTCGCGAGGCGC CTAGTATTTAAATATCATCATTGCCGCCATCACCACACACCATCTTCACC GTGATCACTATCATGGATGCTCCCTGCTGGCGCGCGCATTCAAATGTCAA CCGCCCCTCGTAAACACGTCACGGCACGGCGCACACGTCACGGGGCACAT GGGTGACCAACAAAGATGCTCGACGAGAGAATGAAGCAATTCGAGGAGGA GAAGCTCCAGTGGGAGCAGCAGCGGCAGGCCGCCGCGCAGGCGGGCAAGG ACTTCGACGACGCGGAGCCCACGATGGACGAGGAGAGAGAGAGGGCGTGG CAGGTGTGTGCGAAAGGGATGTTGAAGAGAATAGCCACCTTGTCCGCGCA AGGTCATTGACGGGCGGAAGGGCGACGACGGGGATTCTTTCCTGTTCGTT TTCCGTAAGTCATGAAGGAACCTCCTAAGCGTAAAACTGTATGCCCTCGA TATTAAGCACGGAGTACTGTTTTACGCTAGAAGAACGTATCTTGAACGAT TGAAGACGACATAGTCGCACACTCCGGGTAGATCGTGTCTCCAGTGTCAA GGGCGACGAGTAGAACCCGATCGTCTTCCTCGCACCTTTCTTGTGCGAGC ACGGGCGACACGTCTGTCTGCACGTTGATCCAATCGCCAGACGCTTCAAG AAGGCCATCAAGCTTTGAATTCACTCCCGTTCGTTGTCCCAGAGCGTGGA TAAGGAGATCCTCGACGTGCTGCCGAAGATCAAGGAAGCCAAGAACATCG TAAGGCTGATGGATCGGGATACGCTCACCTTCGACGTTGCACTCCAAAGG ACAGAGGACGAGGTAGGGTGCGGCGTGAGACGGAACGGCGGCAGAGTACG TTGCGTTACCGCAAGGCATGGTACGCTTTCGTTACGATAAGGTAAGGGAC GATGTGATACGGTACGGTACGGTACATTACTACACGATGAAAGCATATTT GTTTGCAAGTCATGCCCGTTTCGCGCGCTCCCGGGCTTTCCTCCGGATGT TCTCCGGGTAAGTAACTCCCTCTGCATTACTTCGCTGCAATCAATTTCAA TTGCTATCCGCTGGCCCTCGCTCCCGCTACTTCCCCTTTTCTCGAAACAT ATTTCCAACCCGTGCGCTACATGGTGAAAGATGTGCTTGCCATACATGCA GATTGACTCAAGGATGCCCAGTGTTCGACTCCTTAGCTCGACCGGTGCAG GTACACAAACAAAAGACCGGCTGGGAATGCCGTGTTTCTATGAGTGCCTT TGCCATGCGTTTGTTACCGCGGCCAATATCTTGAGTGATCCTTGAAGGAA ACGACGACGACAATAACATGTACAACTACAACTACAACAACAACAACAAC AGCAACAACAACAGCAGCAGCAGCAGCAACAACAACAACAACAACAACAA CAACAACAACAACAACAACAACTACACCTACAACTACAACAACACGAAAC AGGTGGGAGTCCCTAAGGTGAAGGTGCGAGTGGAGAACAGCTCGCTGGGC GGCGAAGCCAACAGCATCCTGCTTGACCCCATTGACTTCCTCCGAGGGTT CAGCGTGCTCAAGGACGAACTGGTGAGGTACATGCATGCGATACCGTTCA TGCTCACTCCTACTTTTGTCGTCTGTGCCGCCGCCATTGCCATTACCATA TCTACCCTCCTGATCTGTGGCCAGTATTCTCTCCTCGAATTATCAGCGCT TGTTTTTTTCCCACCATTGCTTACCCTGGACGCAAACAAGCGGGCGGGCC GAGGTACACCACGCAACTCGGACACGGCGTGGATGGCGAGGGTATGAAGA CATATAGTGGGAAGGATTGCACGAAGCAACGTCAGCTCTCGCGCGAGAAG GCTGGCTTCGCGTTCACGGAAGACTCCGCGTCCGGCTCTCCCCAACCCGT ACCCACTCGTTCCTGATACACGCTAACCTCCTTCCCTTGTAGCAAGTCTG CCCGAGCCTAGATTCCGACAGCATCTGGGGCACTTTGCCGCTTCCTTACG CCACCTTGCGCATGATCCCCCTTCCCGGAACCATGGTCTTCCCTTTGGTG GTGGCCCATTTCCAGGGCGGTCGACCCCCCCATGGCCCTGTGGTTCCGTT TGCTTCGGTGCGTGGAACCTTTACCACATGTTTCGCGAACTATTCACGGG TGCTGTACGTTTACCGCTCGCCTGCTAACTTGTCGCGGCGCAGGTGCACC TGCGCAACGCGAAGGAGAACGGGCGGACCTACGTCGTCGACAAGCATCAC GACCCTATCCAGGTGTGTGACTTGCGGCGAAAGCTCGACTGGGTTATTCG CACCCTTTGGAAGGGAGGACGCCTATTGCTTCGTCGGAGAGTGAGCTCCC GTCTGAGACAGGACTCGGGGGAGGGTGGTTCTAGGGGTGGGTGTCACGTG CACGCTCAGCTGTCTCAAGGTGGTGGTTCGGCGACGTCTAGGCCGCATTT CACGCGAGAACACCCCGTTTAAGAGCGTCAGCCTCTGACCGCGCAAGAAG CCGTCCGACGCTCCCCGGAAGAGTGCGAAACGAAGTACCTCGGACGCGGA ACGTGGTAGGTATCACGTCGCCCGTTGCTTCATTAGGTCCACACGATTTC CAATTTGTCCAAGCAATGGAAACGGCACCCGCTGCAACAGTCCCCCCCCC ATGCGCGTGTTCTAACGACTACGGCATGCACGACTATGAGTACACCCCCA TGCGCGTGTATTTTGCTTGCCTCGTTCTTGCAGTTACTTTTTGTTCAACG TGTTTCGACGGGACTCAGCTGGCCCGCAGCAGTCGCGCAGCTCTCCGTCG TATTGTTTGTGGTGGCAGGTCGCTATTCCCTGTGATTTGAATTGAAGTAC GCGCGTTTCGAGAATCAACTATACGTCAATCGAGCTCTTCATCTCGTCCG AATGGTTTGTGGCGGTGTGATGCCCACCTTGCACGCGGAATGCACTACAA TAGTGTCGACGTGTGACGTGCCTCCTTTTCCAGTGAAGTTTTCTCCATAA CACCACTTTCATCGAAGAGTCTCAAACACTTCCGTGCGTGTGGTTGAGTT TGTGTTGGCTCCATGGCGGGCACTACGATCGACAAGAATTCTTCGCTTCG ACAACGAGAACTGAATCAACCAGAAATGCTCCCAGGTTGTGAAATACTCC TAATATTTATTTGTTGCTTCTGTATTCTGGGACTACAGCTCCTGTTCGAC AACACCTTTCACCTGGGCACGGGGGTGATGTTCCCGGAGTTCATGCTTTA TAACTTAGAAATGGAGCACGACGAGCGCGTTGTAGATATTAAGGTGAGAG CGAAGGCCGGCCAAAGGATTTCCCACGTTGCTTGTCCTTATGTGTTGCTC TCTTGCTGTTGATTTCAGTCGGTACATTGTTGTATTTTCCTTGAGTTGTT TGTATTTGCTTACGTTGTCGGTGTTGCTGCTGCTGCTGCTGCTGCTGCTG CTGCTGCTGTTAACGGTGGTGGTGGTGTCCTAGTTACAGTTTCTGGACAT TTCGAAACGCTCCAAGTTTCTGCCGGGTGATCCTCAACCGGTACTTGCCC AACTTCCAATGAAGAATCTCCTGCATGGCACAATATCTGTACGTTGTAGG GAACTGTTTCTGTGTGCTCTGTGCTCCATATCATTGTCTTTTTCCGTGAT TCGATGGCTTGTCTTTTCTCTAGTCACGAGGCAAGCACCGGTAGAGGGGA AACTTTATCATATTTTCCTTCTCCACCCCAGGTGGCCCCCGGTCACCGCC CAACCTCAACTAGATATTGGCACCACAACACATACCCTGGATTCTTCCAT CCTTCATTTTTCGAGGAATTGGTGAAGAGTTGGTCGTCAGCGCATGCCCG TACACGCTGATCTTCCCTATCGTAGAGGCTGGTTGCTGGCCGCGCTAGAG TATGTTTGCTGCTTACACGCGCAGCCTACGATTCAATCAGAAACAACCTG CCCCTTTGTATTGATTACGTTAGAGTAGACAGGCAGGGAGAAACTCATCA TCGGCCAGAACGACTGAATGAAACGGCAGCTTTCTCGTGATTGCATCCAC CGGCAACTCGTGCGCGGCTGGCTCTGTAAGTTCTCGATCGATCCAGATGT CACCGTCGCAAAATGAAAATAGCACTTTTTTGCATCTGGGGATACATGCT TTGGCCACCAAAGCCGGAAAAATCCACAATCCGGCGAGGGGCCAGTTTAG GTTTGCCCCCCGGCCTCATTGGTCGGGGGTCAAAATCGCAAACCAATTCT TCGATGCTGACGGGGTGGCGCACGCTCTCTTCCCCGTCGTCGAAACGGGC CTACGACTCCAATGGACCGAATGGCACGATGCACACCCCTTGCAACGCAC ACGGGCCGGTCCGCACAGAATGTGTCGGCACCGTACAACAACGTCGGAGC GTTCGAGATGGTGTGGACCCCCCTGGCGGGCCCAGAAGAGGAAGACGCCT CGAAGGAAATGATGGACGTGGAGTCCGAGGACGACCTCTTGGGGAAGCCG TGGACGTACCGGTGGGAACAAGGGCAGGTCGACCAGTTTTTTTGCCTCGT TCAGGGGCTTGCCTCAAACAGAGAGAATGCCGATTTCCTCCTTAGCCGAG AACGCCGATGTTTCGCCGGAGCTCTTAGCGCGCCTGCTTTTTGGGACAGG GCTGCCGTGCGTATTATTTACGGGTTGATGATTTATCCAGAGTTCGTTTG TAGTGTGAGGACAAAGGTCGTTTCTTCACGGCATTGTTTGTTTTTTCGCG GGGACGGCCCGGTGAACAGGGCCTCGACGTTCTTGCCGTAGAGAAAGAGC CGCCTATTAATAGTCGTTACTCTCATCTCTTTATTGTGGCTTGAAACCGC AACAGGATAGCTTCTCCAGGAATTATCGATAGCCTGACCGTGTTGTGTGC TTCAAGCGAAATCAGCGTTTTCCCGCTCACCATGCGTCGTCATGCGTGTT GATCTGGAGGCGATGGCGGGATAGGATATGCATCCCCCCCCGCCCCGTAC ATTACATGGGGGCGCCCTGTCCCCAGGCCGCCGGCGCACCTGAAGGACGA TTCCTCACCTACCCTTTTTATGTCCCGCTCTGCACTTCAACGTCATGCGC CAATGGCTTGGTGGATCGATCCTGCTTTTGTCTACAGAAAGGTCCCACAT TTGTCGGTGACGGCCTGAGGTGTTGTTCCTCCGGCCAGCTGTCTTGGACA GTATTGTTACGCATTCAGTCGTGCCTCGATTTCCTAGTGCTTCGGTGTGC ACTTCCTCCCGCCCCCTGTTCAGCAACGTATCCGGAGAAAGTGTCATGCT GTGGAGCAAAGGAGAACGCTTCGAAGCTTCTCTGTACAGCAAGACTCTCC AAGCCTTCTTGCCCCTCCCCTCGGCCTGCTATGCCGGGGACTTGCACACC TCAAGTGCCATCGCCCGGAGCAACTCCGTCCGCCTCTCTTGAAAAAACGG CGCTGGTTGTTATCTCTTGGTGTTTCTTTGACTTCTTCTTACTTCTTTTC ATGGTCCCCTCAGGGTGGCTTTGAAAGGTGCAACCGGATTGCCGCTGATG GTGTCCCACGCGTTCGTGCAGTACGAGCTCGGGGGGCAGCTGTTCACGAC CGAGACGGTGGAGCAGGACACGCATAACCCGGTGCTGGACTACTCCTTCG TCCACCACGTGGAGCGGGTATCACCCGAGGTGCATAAATGCTGTTAGTAT CGATCTCAATCGGAGCGCATTGGGCGCAACCCCGTCCAACTGCTACAGAC TACAGACATCGTAAAGTTGAGACCTCCAGAGTCACCCCAAGGAGATGGTT AACAGACAGTGCTGAAGGCCAACCTGGACAGTACAGAGACTCCAGAAGTC GTGGACGCGAGCCTTTTGACGAAACCTCCCACCCCCTACCCCTTGCGCCC ATCCCGATGTGCTGCCGACCAACGCGTGCGGTAAAACGTCTCTGTTCGCC GTAGCTGATCGCGGGCTTGAAGAAACCAATGCAGTTCCGGCTGTGGGTGT CGCCGTACGTCATCAACCCGAAGAACTTGGTGTCGACGGACAACCCTCGA GTGCTCAGCCCGAAGGCCAACGGCGAAGGTACCTGGAGGGGGATGCTTGT TCCGTTTTCGTGCATGAGGGCTGCTGGAACGTTCGATGTCAAGTCAAGTC CACTAAACGACTGCTGTGCAGCTGCGGCAGTCATGCAGCACCCAAGGAGT GCTGCCAGGAATGCCCTCGGACCTTGTATCGTCGGTTCAACCAAGCGTAG GCCGTAAACTTGGTGGGACTGTTTATTGTCCCGTAGGGCCTTCGAACATC GTTGGTTGTGATCGGGTAAACCGCCCGATTGTGTTTGTGGTAAGAGCAAT AGCCCGTGTTTGCATATCACCCAGATGTCAGGTGACGACTCGCCCGTCGT GGTGTTCGCCCCCACCTGTTCACTCTACCACAATTCCTGTCTTGGCCACA TAAACGCCACTTTCAAACTATCCTTCTCTGCTCTGCACAAGTGTACTTGA CCGTCACACTGTGAGCCTTTACGGGCTGTCTACAAGACAGTCGCCACACA TCGGCATACCAGCAAGGTTTCGCCTCGCTCGGTCCAGAAGGGGCCACTGG CAAATGAACGCGATTGCTGCCATGCTCTGTGCGTCTCAACGCCATTACGT CTTCCACGACTTTCGTAGATGTCTCCACGTCGAGTCGTCGTTGTCAATAC AACGGTATGAAATTTGATGTCAAATGTTGCTTGCAGCTGGACGGACGTAA AGCGCAGCTAGAGGCGTCGTGGGGGCTTGGAATGCGCATGAACGCGAACG ACCAGATTCGGTTTTGCGTTTGCTCCTCCTTGCATGCTGTATTGTGTCCA GAGTCAGCTCGAGAACACAGCTGACGCTCCGTTCCCAGTCCCCATGTGCC ATCTCACCTAAGTTTCAAATAGCGGAGCCACGTGGTGTGGCGCCCGTGCT TGTTATGTGTGCGTTGGAAGGCGGGGGTAGGGGTCGCTCAACCTCAGGGA CACCTTCGGTGAAAATACGACTGCAAAGGTTGATCGCCGCACTGCCGATG TCATCTGCCCTACTGATCTTGCATTCGGATACCAGGAGAGACGAGAACGA GATCAGGGACGACCTTGGGGCCGGACGCCGTCGCGCCGCAGGAAGGGGGC TTATCGAACTTGTCAACGGATGGATCTGCGCCGGTAAATCCCGTTTTTTG TCGGTAACGTCGGTATCGTTACCACTACTTATTTTTTGTTTCCATGTTCT TCAAGGCTGTTGGAGTGGTTTTGTGGCATATGTCTTCGTCGCGCGTGCGA TCGCGGTTCTGGTGGTATTTGTTTTGATAAATCCTGCATATTTCGGCGGA AAGATCAAATGCCGCGAGGAGGCTGTACAACAGGGCGCACCAGATAATTT TGCCGCCAAGATTTCTAGCCTCTGTCGCCAACCAGCCTTACCGTTTACTA CTTGGTCAACGCTTATCTCAAACGGTATGCAGAAAAGGATGAAACCCTAC ATGATTTGCCGCATGCATCGGGTTTTGTAGTTGATGGAATCCCACGAAAT CAGAGAGACGTCTTCATCGAATGCACTCACTCTCGCCAGCCGTGCCCTCA TGTTCGTGCTTTCGCGTTTCTGGTTATTTGTGCACACCTTGAGCCCCGAA TGTCCGTGCGTTAGAGCCTCTCTGTCTCAAGTGCCTTACCGATTCGACTC TCTCAAATTTCTCTGTACGCTTTCACCCTTCTCAACATCGTTCTTCCGTC GCCTAACCCTACTCTCTGTCTCTGTCCTTTGCTGGTGTATAGATCGACCC CGACAAAATTACCGTGAGCCAGGAGTACCTCCGCGGCCTTCGCGTTGCGC TGGAGACGGAGCGCCGCCGAGTCGAGGAACTGGAGGCAGAAATATGCCGC CTCAACAAGGAGTTGGCCGCTTTCAAGGCGAGCGATTCCTCTATTCGCGG CCCCCCCTTTTCGCTGAAATACATCTAGCATATCCGACACATGTTGAGTC GTGCTGCACCCCGAAACAACCGTGTGTTGGCTGATAACCGCGAGCGATGA AATAGCAAGGGCTTTCGACAATCGTGGGAGAGGGAAAAAGAGAGCTTGCA TTGTTGTTGAGGTTTGCGCTGAACCCCCTGCGCATAGATAGTTCATTGCG GGAGAGCTGGAGGTTGGCTGATCGTGATGAATCTTTAGCTGAAGACACTC CCTTGGTTTTCAGGACTTTTCGAGAAAATCATTGGTTGAAGTGTGCAATG CGTCTTTCACCGCATCTAACCCCATCCGCCGTGACCTTTGAACTCCAGAC GGAGGGTGCAAGCACAAGACCTGTTATTTACCAAATAATTTTACCATTCG TTTTCCCTCGCTATTCTGTTCGGACAGAACCTATCGCCGGGGGCCGGCCC AGCGGGTGCACAGGAAAATGGTGACGCTTCTCGGAAAGGCTCTAAGCCTT GCTCACCGAAGAAGCGCTTAGAAAGTGCGGTGGAGACGGATCGTGCCTTG TCACAGGCGCTTGAAGCGGTCGAGGGCGTCGCGGGAGCGGCCGGGGCGGC GGCGGAGGGAGGGGGGGGG
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Coding sequence (CDS) from alignment at P-fluviatile_contig13:1341101..1362869+

>mRNA_P-fluviatile_contig13.1755.1 ID=mRNA_P-fluviatile_contig13.1755.1|Name=mRNA_P-fluviatile_contig13.1755.1|organism=Porterinema fluviatile SAG_2381|type=CDS|length=3450bp|location=Sequence derived from alignment at P-fluviatile_contig13:1341101..1362869+ (Porterinema fluviatile SAG_2381)
ATGAGCGTCAGTATCAAGATGAGCGTCAGTATCAAGGTCGCGATGCGATG
TCGCCCGTACTCCATCGACGACAAGCTTGGCGTGCAGCTGGTGCAGAACG
GCGAGGAGGAAGGCGAGGTCAACCTGCTCAACTCCGACTACAGCACCAAT
CGGTTCGCATTCACGTATGCCTGGTGGTCAGCCTACGGCTTCGACCGCCA
CATCCAGTCCAACCACGTCGCGATGCGATGTCGCCCGTACTCCATCGACG
ACAAGCTTGGCGTGCAGCTGGTGCAGAACGGCGAGGAGGAAGGCGAGGTC
AACCTGCTCAACTCCGACTACAGCACCAATCGGTTCGCATTCACGTATGC
CTGGTGGTCAGCCTACGGCTTCGACCGCCACATCCAGTCCAACCACGATG
AGGCGGAGGCGATGACGCTGATGAACCAGGAGATGGTGTACGAGTCGGTC
GGCAGAAAGATCAAGGCCGACCTGTACGAGGGCAACGCCGTGGTGCTGTT
CGCCTACGGCTTGTCCGGCTCCGGGAAAACCTTCACCGTCTTTGGCCCGG
ACGCGGTCGACATTCCCGAGGATGAGGCGGAGGCGATGACGCTGATGAAC
CAGGAGATGGTGTACGAGTCGGTCGGCAGAAAGATCAAGGCCGACCTGTA
CGAGGGCAACGCCGTGGTGCTGTTCGCCTACGGCTTGTCCGGCTCCGGGA
AAACCTTCACCGTCTTTGGCCCGGACGCGGTCGACATTCCCGAGGCGTGG
TTCAAGCACGCGGAGCCTCACCCGCTGTGGGGGATATTCCCGCGCCTGGC
GTACGAGATGTTCGAGGACAAGACCGACGGGTGGAAGATTACGATGAAGT
ACTTCCAGAACGTCGTGGACACGGTCAGGCGTGGTTCAAGCACGCGGAGC
CTCACCCGCTGTGGGGGATATTCCCGCGCCTGGCGTACGAGATGTTCGAG
GACAAGACCGACGGGTGGAAGATTACGATGAAGTACTTCCAGAACGTCGT
GGACACGGTCAGGGACCTCATGTCCCCTGTGATTTCAGAGCAACACTACA
AGAACGGCATGAAGAAGGACGAAAACGGTTTTATGGACATCGGTTGGTGC
AGCAGTAAGGTGCTGAATGACTGGGACGAGTTACGGACGGTGTTCATGCA
GGCAAACGCCAAGAAAGCTATCGCCCCGACGCAGGGACCTCATGTCCCCT
GTGATTTCAGAGCAACACTACAAGAACGGCATGAAGAAGGACGAAAACGG
TTTTATGGACATCGGTTGGTGCAGCAGTAAGGTGCTGAATGACTGGGACG
AGTTACGGACGGTGTTCATGCAGGCAAACGCCAAGAAAGCTATCGCCCCG
ACGCAGTTTAACCACCAGAGCACAAGGGGGCACTGCATCATGACCCTCGA
GGTGGAGATGCCTCACCCAGAGATGCCGGGCATGAAGCAGAAGGGGAGGG
TCTACGTGTGCGACTTGGCGGGAACGGAGCCGGCGGGAGACATCGTGTTT
GCCAAGTACGAGAAGAACGTGTTTCCGAACGGCGACATCGAGCACAAGTA
CCTCGGGGCCCACGAGGACGACCGCAAGACGAAAGAGCTGCAGTTTAACC
ACCAGAGCACAAGGGGGCACTGCATCATGACCCTCGAGGTGGAGATGCCT
CACCCAGAGATGCCGGGCATGAAGCAGAAGGGGAGGGTCTACGTGTGCGA
CTTGGCGGGAACGGAGCCGGCGGGAGACATCGTGTTTGCCAAGTACGAGA
AGAACGTGTTTCCGAACGGCGACATCGAGCACAAGTACCTCGGGGCCCAC
GAGGACGACCGCAAGACGAAAGAGCTGCAGAACCAAGGCATGAAGATCAA
CCTGTCGTTGACGGAGATGTCTCAGTTCTTCATGAAGATGGCGGAGGCCG
TCGTCAAGAAGAAGCTCAAGCCGGGCGCCTCCATCCCGGGGTGCAACTCG
TACTTCCTGTGCAAGTTTCTAAAGGACACCATGCTCCAGGCCAGAACCAA
GGCATGAAGATCAACCTGTCGTTGACGGAGATGTCTCAGTTCTTCATGAA
GATGGCGGAGGCCGTCGTCAAGAAGAAGCTCAAGCCGGGCGCCTCCATCC
CGGGGTGCAACTCGTACTTCCTGTGCAAGTTTCTAAAGGACACCATGCTC
CAGGCCAGGACGTACCTTTTTTGCGCCATCCGGCCGGAAGTGAAGTACCA
CTCCTACACCTTCTCGACGTGCAACTTCGCCAAGAACGCGTCCGTCGTGA
AGCTGCAGCCCAAGAAGGCCGTCGCCGCCAGCTCTCCGGCTGAGCGTAGG
CTCATGGAGGAGCTCGAACAGATGAAGGACGTACCTTTTTTGCGCCATCC
GGCCGGAAGTGAAGTACCACTCCTACACCTTCTCGACGTGCAACTTCGCC
AAGAACGCGTCCGTCGTGAAGCTGCAGCCCAAGAAGGCCGTCGCCGCCAG
CTCTCCGGCTGAGCGTAGGCTCATGGAGGAGCTCGAACAGATGAAGATGA
TGATGGCGGCCATGAGGGCGGAGAACGAGAAGCTGGCGGCCGCCGGAGGG
GAGGGAGGGAGACACCAAGCTGCAGGAGATGCTCGCGGCGAAGCAGGCGG
AGCTGATGATGATGATGGCGGCCATGAGGGCGGAGAACGAGAAGCTGGCG
GCCGCCGGAGGGGAGGGAGGGAGACACCAAGCTGCAGGAGATGCTCGCGG
CGAAGCAGGCGGAGCTGATGAACGTACTCGCGTCTCGAGAGGGGCAGGAA
GGGGATGCGGGCGACGGCGGGTCGGGGGGAGCGAAGGACGCCGAGGAGCA
AATGATGCAGCAGCAGCGGCAGGAGTACGGCCGCAGGGGTATCCACCTCA
CCTACTTCGAGAAGGGTACGTCGATCCCTCACTTCATCAACCTCGACGAG
GACCCCTTCCGGTCCCACCGCTTCATGTACCTCTTGGACAAGAACGTACT
CGCGTCTCGAGAGGGGCAGGAAGGGGATGCGGGCGACGGCGGGTCGGGGG
GAGCGAAGGACGCCGAGGAGCAAATGATGCAGCAGCAGCGGCAGGAGTAC
GGCCGCAGGGGTATCCACCTCACCTACTTCGAGAAGGGTACGTCGATCCC
TCACTTCATCAACCTCGACGAGGACCCCTTCCGGTCCCACCGCTTCATGT
ACCTCTTGGACAAGCCCCGAATACGGTTTGGCTCGGGCGGCGACATCAAG
CAGCTGTCTCTGACGATCGCCGAGAACCACTGCCTGGTGCTAAGGGAGCA
CGCCGAGAGCGCGGCTGCGCAACCGGAGGCGGTGTCGGCGGAAGTGGGAG
AGGGTAGCCCCGAATACGGTTTGGCTCGGGCGGCGACATCAAGCAGCTGT
CTCTGACGATCGCCGAGAACCACTGCCTGGTGCTAAGGGAGCACGCCGAG
AGCGCGGCTGCGCAACCGGAGGCGGTGTCGGCGGAAGTGGGAGAGGGTAG
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