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Homology
BLAST of mRNA_P-fluviatile_contig85.14892.1 vs. uniprot
Match: D7G4G7_ECTSI (Telomerase reverse transcriptase n=1 Tax=Ectocarpus siliculosus TaxID=2880 RepID=D7G4G7_ECTSI) HSP 1 Score: 772 bits (1994), Expect = 3.670e-244 Identity = 646/1534 (42.11%), Postives = 753/1534 (49.09%), Query Frame = 1
Query: 304 GKSQGAAGRWMLKLIYPNAASLDLYLEVWLRHMLAAAAPDSAAAAAINSAGGPACYLSRKNDGAEYKKMLKETFVAYCPSAPTA-PDEAHAPLPRHASLQHLSSMADLLDRVVKSLLRCSSIGAQGNSSGGYSAGQGGDDPRRNILSLGCRVAGPQATSELLSVQGVACAFPNTTVNVIRSPPWELLLSRIGDDLMFALLRQHAVLQRMPNRCYMQASFALSSKGQASILVGRPVPDRCRHLGLTTSALSSAAIADAPTSTTASKAVHTDRAGAPPKGSMLSRKRQRRHGQTTRSCIGSIGMSSWALCAGPNATSGTPAPSTSAVAAVNNVPGRSGAGGPAGSIGRPGVRRPAVLLPRQLHAAPYPPSAGRSTNAXXXXXXXXXAASYAAAATVTGVARSLVIDAFVHPFDGFSSGQXXXXXXXXXSVGGTSSQSGRSEVLRRRGSRLAPPSARGAGMGA--KAGVRLPLPKRLRRAVPLFEQMVGRARRCKFGRLLEAHCPLPASVRNAKPEQPAAGGRGSLRPAAGKSPAGLT----GAQVEAPYQPSPSNASTLFEGTHFSGDGVDRASVNALPQGGNSGDGYGDNDGG--------------EAENIEGREGGEGEDAMDEDQDHDESGSTLKEL-CADAGSLAVGSSSSHHGGGMLSAA--ANAAEXXXXXXXXXXXXXRRSRSIGTPTARETKRRRLLRADSTDALSSEPDSVELDEPGVCTGGSSVGGRAEEIASDAATLLEGTDLAPVFSHLVSALAAG--DSTRVPPPEGRNVHDTSHQHDSSFSMDPCMTFIDMATEHRRVIDFLCQACHRIFPTELWGSKHNMVCLARAIERFVVLRRHESMSVLEATAGMRTSDLEWMSLGGDDCHDDDVTHASSAKAPTRKQNGGSRPPIHETSPDRC----NGERKVAVRMSMLPALVVQERRAKYSALSRGSAATACGYDHSSSEARVAASRAGMLPTRSGAGTVEAETAGGRGLCKRPR---ESGGGVAAAAGARSDSRTSKGKAR----PGSRSTAQAGVRKPV----GQHRRRGGAGKGGERRGRGNSWSKVAASKGGNGNGSGKKA-------RLPPSDLAKRTQLLEALVLWTFRDVIVPLVRSLFFVTECETASQQVFFFRKPVWANFRSASLRHLTARQYRRITAQEAFRRSDGSPTAERKKGTENPPFHTPLHASTSCTQSDSPTK--SFSGGCCVGSHDGAKGKGKNRGHPGWAFPVSGVRLVPKANGVRAIVNLSKRAWVDRGRVQWVKGVPLP--APGRISTLESTSSTSKAPPGGPGTGESKETLQGVGRPPSXXXXXXXXXXXXXXXXXXXXRGKPGGPPGPW-----AGKSGRTLLPSTNMQLSNAFHVLKHEYTKKPSLVGAGVFGLDDVFARIKPFVSSNLRPLRSPPPPPLGRPGEGRGRAETGELPALYFASVDIKHCYDTVDQARLMDIVRPVLTSEDYVIQKFTKVHPFKAMGRVQVDHVKEAVAMEDMLQFQTRCEELAEESVDTIFTDQVVYGTISR 4734
GK Q GRWMLKLIYPNA +LD YL VWL+ + AAAAP SA+ AAI GGPA YLSR++DG EYKKMLKET VA+ PS A P EAHAPLPRHASLQH SSMADLLDRVVKSLLR S++G QGNS GGY A QG DDPRRN+LSLGCRVAGPQATSELLSVQGVAC FPNTTVNVIRSPPWELLLSRIGDDLMFALLRQHAVLQR+PNR YMQA A ++AG PP S H TT G AT+G + G P G PA++ + VA LV DAF G G+ +G + GR VL+R GS + P + +G A G R LPKRLRRAVPLFE+ +GRA RC GRLLEA CPLP SVR K AG RG+ G+ P G G Q AP PSPS+ STL E + V A + L Q + GD D G +E GE DE++D ++GST+KE+ D S V +H G G +S A E R S R + RL R DA S E G SDA TLL D AP + SALAAG S +PPP+ +FS+DP TFI+MATEHRRV+DFLCQACHRIFPTELWGS+ NMVCL+R IERFVVLR HE+MSVLE TAGMRTSDLEWM++G A+ KAP P + NG+RK + GG G CKRPR ++GG AR+DS G R G R + R Q +R K +++ RG +VA G G+ S ++ RLPPSDLAKR +LLEALVLWTF+DVIVPL+RSLF+V ECETASQ+VFFFRKPVWA FR+ASLRHLT+RQYRRI+ QEA +R DG + PF PLH TSCTQS SPT+ + GG S GAKG H GWAFPVS VRLVPK NGVRAI NLSKR W DR RVQWVKGVPLP AP R+S LE +S + + G GR S X RG GG G G+ + P+ + + E ++ SL+G G G RA PA RLMD+VRP++TSEDYV+QK+TK HPFKAMGRVQV+HVKEAVAMED++QFQT E+LA+ESVDTIFTDQVVYG ++R
Sbjct: 13 GKGQSPDGRWMLKLIYPNAVNLDSYLGVWLQAVAAAAAPGSASLAAIEGCGGPASYLSRQDDGPEYKKMLKETLVAFHPSPVQAVPGEAHAPLPRHASLQHRSSMADLLDRVVKSLLRSSTVGGQGNSVGGYYAAQG-DDPRRNVLSLGCRVAGPQATSELLSVQGVACTFPNTTVNVIRSPPWELLLSRIGDDLMFALLRQHAVLQRLPNRWYMQAPAAAGG----------------------------------------------EQAGPPPAAS---------HQGTT----------------GNRATNGNTS------------------GSPVGD--------PAII---------------------------------------SRVAHDLVRDAFASSLHGEDLGRQQQP------LGDAAHGKGRPGVLQRAGSGVMPKATGASGKVALGDGGARRRLPKRLRRAVPLFEERIGRAHRCNIGRLLEAQCPLPQSVRGTK-----AGKRGAGE---GEQPLGPNKREGGFQAAAP-PPSPSDVSTLHEEVGEQAEDVSAADL--LRQEVTA---SGDEDSGWEGXXXXXXXXXXXXXXXXXXKEPGE----SDEEEDVMDTGSTVKEVRMEDNDSFTV---RTHGGVGGISCADGMQGEEEEEEGIGSVLSSDRAS------AERAAEPERLFRGGCADASPWGSVSRGAHESGGXXXXXXXXXXXXGNISDA-TLL---DEAPTANG-ASALAAGVQASPPLPPPD-----------QPTFSVDPNTTFIEMATEHRRVVDFLCQACHRIFPTELWGSRRNMVCLSRGIERFVVLRWHETMSVLEVTAGMRTSDLEWMAVG-----------AADGKAPXXXXXXXXXXXXXXXEPAKTRRVNNGKRK-----------------------------------------------------------AKGGPVGGDGNCKRPRGGADAGGAANGTDRARADSHGHHGSERIHGGGGGRGSGSVEARGSFPGTSNQGTKRADTSK--KKKARGGGKGRVAV--GSKGDKSIRRXXXXXTRQRLPPSDLAKRVELLEALVLWTFKDVIVPLLRSLFYVMECETASQEVFFFRKPVWARFRTASLRHLTSRQYRRISMQEALQRRDGFAGQAEEGAANRQPFR-PLHIGTSCTQSGSPTRRRNVGGGASGQSGFGAKGGRGRLNHHGWAFPVSEVRLVPKPNGVRAIANLSKRTWADRSRVQWVKGVPLPLPAPRRVSNLERATSNAXXXXXXXXXXAKETPRVGGGRLGSEAAGLGSRRGGRGX------RGDRGGWEGAVEEDGRGGQERQQYPPALHQHAAVQRFPCPEERVRQESLLGGG-----------------------------------GGVRAGRRLCPA------------------RLMDVVRPLVTSEDYVVQKYTKSHPFKAMGRVQVNHVKEAVAMEDLVQFQTCSEKLADESVDTIFTDQVVYGIVNR 1226
BLAST of mRNA_P-fluviatile_contig85.14892.1 vs. uniprot
Match: A0A6H5K5W1_9PHAE (Telomerase reverse transcriptase n=1 Tax=Ectocarpus sp. CCAP 1310/34 TaxID=867726 RepID=A0A6H5K5W1_9PHAE) HSP 1 Score: 674 bits (1740), Expect = 5.640e-216 Identity = 403/694 (58.07%), Postives = 473/694 (68.16%), Query Frame = 1
Query: 4513 MDIVRPVLTSEDYVIQKFTKVHPFKAMGRVQVDHVKEAVAMEDMLQFQTRCEELAEESVDTIFTDQVVYGTISRDDVLDMVEDHITHNVVRVPAAGGSGRGAYFQQAVGIPQGSVVSGLLCNLFFGHIEKRLLTDIFE---PPRHSPLPAVAHQQEATARESGVVGRC-GYGCGCAGYARRCCGAVEASSSGSCRQEGRLPSSLTASGRKLTRRSLETEGEDEGQIGVERAERAGGGISTLSHPSHVLA--HVRASQGWAGPLG-GRGTEPAVGEGFAGSSSQLEAQQNASTTGWGSGGQGHNPFWP--GHVDVKREFVGG---------GETAEKENDKRPFPDPKGDCTLLRQVDDFLLISTTKAKAEAFVRVMHDTTKTGEWGFSVHEAKTVVNFDMVLEP----GGPGASG--QQVRRVEGERVGEGDMFPWCGIRFNTKTCEVMANYSRQASQAVSESLTVESRRAGACLLSKMKRFMSPKCHALMLDEGD-LGINSRSTVLLNVYEMLLVCAAKTAASALRLPQGPAGNASLLSNGALETTAYAYSLIQSRSNRRKGSFGSPKGVRCVCKVNRFEVTWLGLHAFREVFGAFSRKDRGFMRCKLDMEKALKESARLVGG-VDGNSSQVFRETRKEDXXXXXXXXXXXXXXXXSIAAGAAKSARRGRAMNRLEHVVRSPDALGLLRTLTT 6516
MDIVRP++TSEDYV+QK+TK HPFKAMGRV +HVKEAVAMED++QFQTRCEELA+E+VDTIFTDQVVYG ++R+DVLDMVEDHI HNVVRVPAAGGSG+GAY QQAVGIPQGSV+SGLLCN FFGHIEKRLL D+ + P R P + ++R G+ R G G G G + + G + G ER + + S S A RAS+G G LG G + +G G + Q +T G+GH + P G +R +GG E+ ++RPFPDP+GDCTLLRQVDDFLLIST+KAKAE+FVRVMHD KTG+WGFSVH+AKT+VNFDMVLE GGPG +QVRRVEG DMFPWCG+RF+T+TCEVMANYSR + V+ESLTV+SRRAGACL+ KMKRF+SPKCHALMLDEG+ LGINSR+TVLLNVYEMLLVCAAKTA SALRLP+GPAGNASLLSNGALETTAYAYSLIQSRSNRRKGSFG+ +GVRCVCK++RFEVTWLGLHAFREVFGAF+RKDRGF RCKLD+E+AL+E+A GG DG S ++ + KE + RRGRA RL VVRSPDAL LL+TLT+
Sbjct: 1 MDIVRPLVTSEDYVVQKYTKSHPFKAMGRV--NHVKEAVAMEDLVQFQTRCEELADENVDTIFTDQVVYGIVNRNDVLDMVEDHIKHNVVRVPAAGGSGKGAYLQQAVGIPQGSVLSGLLCNYFFGHIEKRLLGDVLDGGVPERPHLPPGGGGARGLSSRAVGLESRSDGIGAGSGGQDEGAASSFGPPTGGKRARPGERERXXXXXPVTXXXXXXXXXXXXXXXXXGERPPKFARISPSCSCLSDAAAPDSDRASRG--GVLGVPTGRDGGGSDGNRGPHETPQQQSRRNTA--NQNGRGHGSYGPVGGARGGERCRLGGDVDDGQRGRSPVEEESGEERPFPDPEGDCTLLRQVDDFLLISTSKAKAESFVRVMHDEVKTGDWGFSVHQAKTLVNFDMVLESRIGGGGPGRQPVRRQVRRVEG------DMFPWCGVRFDTRTCEVMANYSRYSKTGVAESLTVDSRRAGACLVGKMKRFLSPKCHALMLDEGEHLGINSRNTVLLNVYEMLLVCAAKTATSALRLPRGPAGNASLLSNGALETTAYAYSLIQSRSNRRKGSFGTSRGVRCVCKIHRFEVTWLGLHAFREVFGAFARKDRGFARCKLDVERALRETAGFWGGGFDGFSRKMCKG--KEGAAAAGWEGGATPDTQHGV--------RRGRAYGRLRRVVRSPDALSLLQTLTS 672
BLAST of mRNA_P-fluviatile_contig85.14892.1 vs. uniprot
Match: D7G237_ECTSI (Telomerase reverse transcriptase n=1 Tax=Ectocarpus siliculosus TaxID=2880 RepID=D7G237_ECTSI) HSP 1 Score: 532 bits (1371), Expect = 2.940e-161 Identity = 468/1131 (41.38%), Postives = 541/1131 (47.83%), Query Frame = 1
Query: 304 GKSQGAAGRWMLKLIYPNAASLDLYLEVWLRHMLAAAAPDSAAAAAINSAGGPACYLSRKNDGAEYKKMLKETFVAYCPSAPTA-PDEAHAPLPRHASLQHLSSMADLLDRVVKSLLRCSSIGAQGNSSGGYSAGQGGDDPRRNILSLGCRVAGPQATSELLSVQGVACAFPNTTVNVIRSPPWELLLSRIGDDLMFALLRQHAVLQRMPNRCYMQASFALSSKGQASILVGRPVPDRCRHLGLTTSALSSAAIADAPTSTTASKAVHTDRAGAPPKGSMLSRKRQRRHGQTTRSCIGSIGMSSWALCAGPNATSGTPAPSTSAVAAVNNVPGRSGAGGPAGSIGRPGVRRPAVLLPRQLHAAPYPPSAGRSTNAXXXXXXXXXAASYAAAATVTGVARSLVIDAFVHPFDGFSSGQXXXXXXXXXSVGGTSSQSGRSEVLRRRGSRLAPPSARGAGMGAKAG--VRLPLPKRLRRAVPLFEQMVGRARRCKFGRLLEAHCPLPASVRNAKPEQPAAGGRGSLRPAAGKSPAGLT----GAQVEAPYQPSPSNASTLFEGTHFSGDGVDRASVNALPQGGNSGDGYGDNDGGEAENIEG--------------REGGEGEDAMDEDQDHDESGSTLKEL-CADAGSLAVGSSSSHHGGGMLSAAANAAEXXXXXXXXXXXXXRRSRSIGTPTARETKRRRLLRADSTDALSSEPDSVELDEPGVCTGGSSVGGRAEEIASDAATLLEGTDLAPVFSHLVSALAAG--DSTRVPPPEGRNVHDTSHQHDSSFSMDPCMTFIDMATEHRRVIDFLCQACHRIFPTELWGSKHNMVCLARAIERFVVLRRHESMSVLEATAGMRTSDLEWMSLGGDDCHDDDVTHASSAKAPTRKQNGGSR-----PPIHETSPDRCNGERKVAVRMSMLPALVVQERRAKYSALSRGSAATACGYDHSSSEARVAASRAGMLPTRSGAGTVEAETAGGRGLCKRPRESGGGVAAAAGARSDSRTSKGKARPGSRSTAQAGVRKPVGQHRRRGGAGKGGERRGRGNSWSKVAASKGGNGNGSGKKARLPPSDLAKRTQLLEALVLWTFRDVIVPLVRSLFFVTECETASQQVFFFRKPVWANFR 3609
GK Q GRWMLKLIYPNA +LD YLEVWL+ + AAAAP SA+ AAI GGPA YLSR++DG EYKKMLKET VA+ PS A P EAHAPLPRHASLQH SSMADLLDRVV+SLLR S++G QGNS GGY A QG DDPRRN+LSLGCRVAGPQATSELLSVQGVAC FPNTTVNVIRSPPWELLLSRIGDDLMFALLRQHAVLQR+PNRCYMQA A ++AG PP S H TT G AT+G + G P V PA T++ VA LV DAF G G+ +G + GR VL+R GS + P + G A G R LPKRLRRAVPLFE+M+GRA RC GRLLEAHCPLP SVR K AG RG P G P G G Q AP PSPS+ STL E G D ++ + Q + + D D +E GE DE++D ++GST+KE+ D V +H G G +S A R S R + +RLLR DA S E G T GS SDA TLL D AP + SALAAG S +PPP+ +FS+DP MTFI+MATEHRRV+DFLCQACHRIFPTELWGS+ NMVCL+R IERFVVLRRH++MSVLE + D E A TR+ N G R P + + R G + S G G S EAR G P S GT A+T+ K+ + GGG KG+ GS+ +R+ R+ RLPPSDLAKR +LLEALVLWTF+DVIVPL+RSLF+VTECETASQ+VFFFRKPVWA FR
Sbjct: 13 GKGQSPDGRWMLKLIYPNAVNLDSYLEVWLQAVAAAAAPGSASLAAIEGCGGPASYLSRQDDGPEYKKMLKETLVAFHPSPVQAVPGEAHAPLPRHASLQHRSSMADLLDRVVQSLLRSSTVGGQGNSVGGYYAAQG-DDPRRNVLSLGCRVAGPQATSELLSVQGVACTFPNTTVNVIRSPPWELLLSRIGDDLMFALLRQHAVLQRLPNRCYMQAPAAAGG----------------------------------------------EQAGPPPAAS---------HQGTT----------------GNRATNGK-------------------------TSGSP-VEAPA---------------------------------------TISRVAHDLVRDAFASSLHGEDLGRQQQP------LGDAAHGKGRPGVLQRAGSGVMPKATGSPGKLALGGGGARRRLPKRLRRAVPLFEEMIGRAHRCNIGRLLEAHCPLPQSVRGTK-----AGKRG---PGEGGQPLGPNKREGGFQAAAP-PPSPSDVSTLHE--EVGGQAEDVSAADLWRQEVTASE---DEDXXXXXXXXXXXXXXXXXXXXXXXKEPGE----SDEEEDVMDTGSTVKEVRTKDNDYFTV---RTHGGVGGISCADGVQGEEEEGIGSVLSSDRAS------AERAAEPQRLLRGGCADASPWGSVSRGSHESGGGTSGSXXXXXXSGNISDA-TLL---DEAPTANG-ASALAAGVQASPPLPPPD-----------QPTFSVDPNMTFIEMATEHRRVVDFLCQACHRIFPTELWGSRRNMVCLSRGIERFVVLRRHDTMSVLEQ---QQQQDQE--------------------PAKTRRVNNGKRKAKGGPVGGDGNCKRPRGGADAGGAANGTDRARADSHGHHGSERIHGGGG---GRGSGSVEAR------GSFPGTSNQGTKRADTS------KKKKARGGG--------------KGRVAVGSKGDKS--IRRXXXXXTRQ----------------------------------RLPPSDLAKRVELLEALVLWTFKDVIVPLLRSLFYVTECETASQEVFFFRKPVWAKFR 869
BLAST of mRNA_P-fluviatile_contig85.14892.1 vs. uniprot
Match: D7G4G6_ECTSI (Telomerase reverse transcriptase n=1 Tax=Ectocarpus siliculosus TaxID=2880 RepID=D7G4G6_ECTSI) HSP 1 Score: 471 bits (1211), Expect = 8.590e-140 Identity = 256/383 (66.84%), Postives = 294/383 (76.76%), Query Frame = 1
Query: 5413 GHVDVKREFVGGGETAEKENDKRPFPDPKGDCTLLRQVDDFLLISTTKAKAEAFVRVMHDTTKTGEWGFSVHEAKTVVNFDMVLEP----GGPGASG--QQVRRVEGERVGEGDMFPWCGIRFNTKTCEVMANYSRQASQAVSESLTVESRRAGACLLSKMKRFMSPKCHALMLDEGD-LGINSRSTVLLNVYEMLLVCAAKTAASALRLPQGPAGNASLLSNGALETTAYAYSLIQSRSNRRKGSFGSPKGVRCVCKVNRFEVTWLGLHAFREVFGAFSRKDRGFMRCKLDMEKALKESARLVGGVDGNSSQVFRETRKEDXXXXXXXXXXXXXXXXSIAAGAAKSA--------RRGRAMNRLEHVVRSPDALGLLRTLTT 6516
G V+RE GG + PFPDP+GDCTLLRQVDDFLLIST+KAKAE+FVRVMHD KTG+WGFSVH+AKT+VNFDMVLE GGPG +QVRRVEG DMFPWCG+RF+T+TCEVMANYSR + V+ESLTV+SRRAGACL+ KMKRF+SPKCHALMLDEG+ LGINSR+TVLLNVYEMLLVCAAKTA SALRLP+G AGNASLLSNGALETTAYAYSLIQSRSNRRKGSFG+ +GVRCVCK++RFEVTWLGLHAFREVFGAF+ KDRGF RCKLD+E+AL+E+A GG S+ R+ ++ + AAG + A RRGRA RL+ VVRSPDAL LL+TLT+
Sbjct: 521 GRGPVEREESGG---------ESPFPDPEGDCTLLRQVDDFLLISTSKAKAESFVRVMHDEVKTGDWGFSVHQAKTLVNFDMVLESRKGGGGPGQPPVRRQVRRVEG------DMFPWCGVRFDTRTCEVMANYSRYSKAGVAESLTVDSRRAGACLVGKMKRFLSPKCHALMLDEGEHLGINSRNTVLLNVYEMLLVCAAKTATSALRLPRGAAGNASLLSNGALETTAYAYSLIQSRSNRRKGSFGTSRGVRCVCKIHRFEVTWLGLHAFREVFGAFAMKDRGFARCKLDVERALRETAGSRGGGFEGFSRKVRQGKE-----------------GAAAAGCEEGATSDTQHGVRRGRAHGRLQRVVRSPDALSLLQTLTS 871
BLAST of mRNA_P-fluviatile_contig85.14892.1 vs. uniprot
Match: D7FGU0_ECTSI (Telomerase reverse transcriptase n=1 Tax=Ectocarpus siliculosus TaxID=2880 RepID=D7FGU0_ECTSI) HSP 1 Score: 402 bits (1033), Expect = 1.150e-123 Identity = 217/326 (66.56%), Postives = 250/326 (76.69%), Query Frame = 1
Query: 5584 MHDTTKTGEWGFSVHEAKTVVNFDMVLEP----GGPGASG--QQVRRVEGERVGEGDMFPWCGIRFNTKTCEVMANYSRQASQAVSESLTVESRRAGACLLSKMKRFMSPKCHALMLDEGD-LGINSRSTVLLNVYEMLLVCAAKTAASALRLPQGPAGNASLLSNGALETTAYAYSLIQSRSNRRKGSFGSPKGVRCVCKVNRFEVTWLGLHAFREVFGAFSRKDRGFMRCKLDMEKALKESARLVGGVDGNSSQVFRETRKEDXXXXXXXXXXXXXXXXSIAAGAAKSA--------RRGRAMNRLEHVVRSPDALGLLRTLTT 6516
MHD KTG+WGFSVH+AKT+VNFDMVLE GGPG +QVRRVEG DMFPWCG+RF+T+TCEVMANYSR + V+ESLTV+SRRAGACL+ KMKRF+SPKCHALMLDEG+ LGINSR+TVLLNVYEMLLVCAAKTA SALRLP+GPAGNASLLSNGALETTAYAYSLIQ+RSNRR GSFG+ +GVRCVCK++R EVTWLGLHAFREVFGAF+ KDRGF RCKLD+E+AL+E+A GG S+ R+ ++ + AAG + A RRGRA RL VVRSPDAL LL+TLT+
Sbjct: 1 MHDEVKTGDWGFSVHQAKTLVNFDMVLESRKGGGGPGQPSVRRQVRRVEG------DMFPWCGVRFDTRTCEVMANYSRYSKAGVAESLTVDSRRAGACLVGKMKRFLSPKCHALMLDEGEHLGINSRNTVLLNVYEMLLVCAAKTATSALRLPRGPAGNASLLSNGALETTAYAYSLIQNRSNRRNGSFGTSRGVRCVCKIHRSEVTWLGLHAFREVFGAFAMKDRGFARCKLDVERALRETAGSRGGGFEGFSRKIRKGKE-----------------GAAAAGCEEGATSDTQHGVRRGRAYGRLRRVVRSPDALSLLQTLTS 303
BLAST of mRNA_P-fluviatile_contig85.14892.1 vs. uniprot
Match: D7FJC2_ECTSI (Telomerase reverse transcriptase n=1 Tax=Ectocarpus siliculosus TaxID=2880 RepID=D7FJC2_ECTSI) HSP 1 Score: 336 bits (861), Expect = 1.790e-101 Identity = 175/217 (80.65%), Postives = 187/217 (86.18%), Query Frame = 1
Query: 304 GKSQGAAGRWMLKLIYPNAASLDLYLEVWLRHMLAAAAPDSAAAAAINSAGGPACYLSRKNDGAEYKKMLKETFVAYCPSAPTA-PDEAHAPLPRHASLQHLSSMADLLDRVVKSLLRCSSIGAQGNSSGGYSAGQGGDDPRRNILSLGCRVAGPQATSELLSVQGVACAFPNTTVNVIRSPPWELLLSRIGDDLMFALLRQHAVLQRMPNRCYMQA 951
GK Q GRWMLKLIYPNA +LD YLEVWL+ + AAAAP SA+ AAI GGPA YLSR++DG EYKKMLKET VA+ PS A P EAHAPLPRHASLQH SSMADLLDRVV+SLLR S++G QGNS GGY A QG DDPRRN+LSLGCRVAGPQATSELLSVQGVAC FPNTTVNVIRSPPWELLLSRIGDDLMFALLRQHAVLQR+PNRCYMQA
Sbjct: 13 GKGQSPDGRWMLKLIYPNAVNLDSYLEVWLQAVAAAAAPGSASLAAIEGCGGPASYLSRQDDGPEYKKMLKETLVAFHPSPVQAVPGEAHAPLPRHASLQHRSSMADLLDRVVQSLLRSSTVGGQGNSVGGYYAAQG-DDPRRNVLSLGCRVAGPQATSELLSVQGVACTFPNTTVNVIRSPPWELLLSRIGDDLMFALLRQHAVLQRLPNRCYMQA 228
BLAST of mRNA_P-fluviatile_contig85.14892.1 vs. uniprot
Match: D7G5Y0_ECTSI (Telomerase reverse transcriptase n=1 Tax=Ectocarpus siliculosus TaxID=2880 RepID=D7G5Y0_ECTSI) HSP 1 Score: 288 bits (738), Expect = 4.720e-85 Identity = 163/254 (64.17%), Postives = 189/254 (74.41%), Query Frame = 1
Query: 5782 VMANYSRQASQAVSESLTVESRRAGACLLSKMKRFMSPKCHALMLDEGD-LGINSRSTVLLNVYEMLLVCAAKTAASALRLPQGPAGNASLLSNGALETTAYAYSLIQSRSNRRKGSFGSPKGVRCVCKVNRFEVTWLGLHAFREVFGAFSRKDRGFMRCKLDMEKALKESARLVGGVDGNSSQVFRETRKEDXXXXXXXXXXXXXXXXSIAAGAAKSA--------RRGRAMNRLEHVVRSPDALGLLRTLTT 6516
V+ YS+ V+ESLTV+SRRAGACL+ KMKRF+SPKCHALMLDEG+ LGINSR+TVLLNVYEMLLVCAAKTA SALRLP+GPAGNASLLSNGALETTAYAYSLIQ+RSNRR GSFG+ +GVRCVCK +RF+VTW+GL AFREVFGAF KDRGF RCKL +E AL+E+A GG S+ R+ ++ + AAG + A RRGRA RL VVRSPDAL LL+TLT+
Sbjct: 3 VLRMYSKAG---VAESLTVDSRRAGACLVGKMKRFLSPKCHALMLDEGEHLGINSRNTVLLNVYEMLLVCAAKTATSALRLPRGPAGNASLLSNGALETTAYAYSLIQNRSNRRNGSFGTSRGVRCVCKNHRFQVTWVGLPAFREVFGAFPMKDRGFARCKLHVESALRETAGSRGGGFEGFSRKIRKGKE-----------------GAAAAGWEEEATPDTQHGVRRGRAYGRLRRVVRSPDALSLLQTLTS 236
BLAST of mRNA_P-fluviatile_contig85.14892.1 vs. uniprot
Match: D7FKS8_ECTSI (Telomerase reverse transcriptase n=1 Tax=Ectocarpus siliculosus TaxID=2880 RepID=D7FKS8_ECTSI) HSP 1 Score: 166 bits (420), Expect = 2.100e-41 Identity = 137/322 (42.55%), Postives = 164/322 (50.93%), Query Frame = 1
Query: 4750 MVEDHITHNVVRVPAAGGSGRGAYFQQAVGIPQGSVVSGLLCN-LFFGHIEKRLLTDIFE---PPRHSPLPAVAHQQEATARESGVVGRC-GYGCGCAGYARRCCGAVEASSSGSCRQEGRLPSSLTASGRKLTRRSLETEGEDEGQIGVERAERAGGGISTLSHPSHVLAHVRASQGWAGPLG---GRGTEPAVGEGFAGSSSQLEAQQNASTTGWGS-GGQGHNPFWP---GHVDVKREFVGGGET-------AEKEND--KRPFPDPKGDCTLLRQVDDFLL-----ISTTKAKAEAFVRVMHDTTKTGEWGFSVHEAK 5637
MVEDHI +NVVRVPAAGGSG+GAYFQQAVGIPQGSV+SGLLCN FFGHIEKRLL D+ + P R P + +AR G+ R G G G + + G + G E R A + + P RAS+G G LG GRG G G G+ E Q S + G+GH + P H + G G+ AE+E + PFPDP+GDCTLLRQVDDFLL IST+KAKAE+FVRVMHD KTG+WGFSVH+AK
Sbjct: 1 MVEDHIKNNVVRVPAAGGSGKGAYFQQAVGIPQGSVLSGLLCNYFFFGHIEKRLLGDVLDGGVPERPHRPPGGGGARGLSARAVGLERRSDGIGGGSGSQGAGATSSFAPPAGGKRGRPGERXXXXXXXXXXXXXXXXXXXXXGERPPKFARISPACSRLGDAAAPDSD----RASRG--GVLGVPNGRG-----GGGSDGNRGPHETPQQQSCRNTANQNGRGHGSYGPVGGPHRGERCRLGGNGDDEQRGRGPAEREESGGESPFPDPEGDCTLLRQVDDFLLESDDGISTSKAKAESFVRVMHDEVKTGDWGFSVHQAK 311
BLAST of mRNA_P-fluviatile_contig85.14892.1 vs. uniprot
Match: A0A1Y1HJD5_KLENI (Telomerase reverse transcriptase n=1 Tax=Klebsormidium nitens TaxID=105231 RepID=A0A1Y1HJD5_KLENI) HSP 1 Score: 169 bits (429), Expect = 3.990e-38 Identity = 285/1129 (25.24%), Postives = 430/1129 (38.09%), Query Frame = 1
Query: 3436 RLPPSDLAKRTQLLEALVLWTFRDVIVPLVRSLFFVTECETASQQVFFFRKPVWANFRSASLRHLTARQYRRITAQEAFRRSDGSPTAERKKGTENPPFHTPLHASTSCTQSDSPTKSFSGGCCVGSHDGAKGKGKNRGHPGWAFPVSGVRLVPKANGVRAIVNLSKRAWV---DRGRVQWVKGVPLPAP-GRISTLESTSSTSKAPPGGP-----------GTGESKETLQGVGRPPSXXXXXXXXXXXXXXXXXXXXRG------------------KPGGPPGPWAGKSGRTL-LPST--------NMQLSNAFHVLKHEYTKKPSLVGAGVFGLDDVFARIKPFVSSNLRPLRSPPPPPLGRPGEGRGRAETGELPALYFASVDIKHCYDTVDQARLMDIVRPVLTSEDYVIQKFTKVHPFKAMGRVQVDHVKEAVAME------DMLQFQTRCEELAEESVD-TIFTDQVVYGTISRDDVLDMVEDHITHNVVRVPAAGGSGRGAYFQQAVGIPQGSVVSGLLCNLFFGHIEKRLLTDIFEPPRHSPLPAVAHQQEATARESGVVGRCGYGCGCAGYARRCCGAVEASSSGSCRQEGRLPSSLTASGRK------------------LTRRSLETEGE-------------------DEGQIGVERAERAGGGISTLSHP-------SHVLAHVRASQGWA---GPLGGRGTEPAVGEGFAGSSSQLE---AQQNASTT----GWGSGGQGHNPFWPGH-----------------------------------------VDVKREFVGGGET---AEKENDKRPFP----DPKGDCT-----LLRQVDDFLLISTTKAKAEAFVRVMHDTTKTGEWGFSVHEAKTVVNFDMVLEPGGPGASGQQVRRVEGERVGEGDMF-PWCGIRFNTKTCEVMANYSRQASQAVSESLTVE--SRRAGACLLSKMKRFMSPKCHALMLDEGDLGINSRSTVLLNVYEMLLVCAAKTAASALRLPQGPAGNASLLSNGALETTAYAYSLI-QSRSNRRKGSFGSPKGVRCVCKVNRFEVTWLGLHAFREVFGAFSRKDRGFMRCKLDM--EKALKESARLVGGVDGNSSQVF 6336
+ PP A + L + + F ++VPL+RS F+VTE E Q+VF++RKP+W + + S+RHL G P H S ++ +K G F + +RL+PKANG+R I L ++ V R + V + +P R ++L GG G + + G P XXXXXXXXXXXXXX +PG A + + LP++ N L +A +LK E + +G VFG DD+ A+++ FV R LR+ P P+ P ++ A DI YDT+ Q L IV+ + S Y + + P A G V+V K A +++ FQ L + +F DQV ISR L ++ +H+ +VVR GR AY Q GI QGS++S L C+ F+ H+E +L + E + E + V GR G G G +Q+GR S G L RRS E +EG A G++ P + + +S+ + GP GG + G G ++E A Q+ T+ GWGS G+G + WPG ++R+ GG + ++ N+KRP P P+ + L+R VDD L +ST+K A++ MH +G + AKT +NFD+ E GG A V G G F WCG+ N++T EV A+Y+R + + + +S+ V+ R GA L ++ ++ PKCHA+ D INS +TV LN+Y+ L+CA K P N L+ + Y + + +R R+ +G C KV++ +V WLGL AFR V + + ++ D +A + S L V + S VF
Sbjct: 1270 KFPPEKTAALRRRLSEWLYFLFASLVVPLLRSHFYVTESEPHKQKVFYYRKPLWRHLAALSVRHLAG---------------PGGPYC---------------HVSAGSAEALLASK------------------------GRVFGPAEMRLLPKANGMRPIARLGAKSVVRIETRADQRSVSTAGVRSPFRRRNSLGGLQRRRNGLEGGHVREQRWSSNSFGHQQDVSGRESAGLGPQADGFERXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXRPGARGFAGAATTAASCPLPTSKVLEFGAPNKLLGDAHAILKLEKWRGSEDLGCSVFGFDDIHAKLRGFV----RGLRTKPGAPM---------------PKVFMAGCDIAAAYDTIPQEFLWQIVQALFRSPVYQLLWNARATP--AFGAVRVRGEKLATSVDVSEPHVAYRAFQEALRRLTSQKAGGAVFVDQVNCSEISRGKQLQLIREHLFGSVVRY------GR-AYLHQRRGIAQGSILSTLFCSFFYAHLENNVLMPLLERKACEEALSGGSGTEPDSGTELVSGRAGAKSG---------DRASGGEPGVGQQDGRFGSERNGRGLNGMISPDRPQESDVSEAVLLRRRSKSEEANVTAGLGXXXXXXXXAGRPLEEGLFPSSPARALSDGVNEPPEPRTPEHDGTEAWLRMESSETESEAEGPDGGFSGGVEIDSGEGGCFWEIEQGYASQDEGTSPGERGWGSVGRGDD--WPGREPPWETTSRQRVTTCTAPLERAPKTGTTRAEENRGESRNIGTQLERDAAAGGTSDHGVDRRNEKRPAPANENGPRSSGSGPQSLLMRWVDDSLFLSTSKRHVAAYLGAMHAGFPA--YGAEANPAKTCLNFDLNDEQGGLRAQNMYVD-------GSGRSFIRWCGLLLNSETLEVQADYTRYSGEYIRDSMAVDVTKGRRGAILADRLCLWLRPKCHAVFFDTA---INSPTTVRLNIYQAFLLCAIKFHCFLSASGGDPRSNPEFLAREIWKAIGYLSAAVGTAREAARR------RGTGCSGKVSKSQVLWLGLRAFRRVLSRKQTQYQPLLKLLADDFGREAKQLSETLSAAVAPDLSAVF 2287
BLAST of mRNA_P-fluviatile_contig85.14892.1 vs. uniprot
Match: A0A0B7F8U8_THACB (Telomerase reverse transcriptase n=1 Tax=Thanatephorus cucumeris (strain AG1-IB / isolate 7/3/14) TaxID=1108050 RepID=A0A0B7F8U8_THACB) HSP 1 Score: 148 bits (373), Expect = 6.660e-35 Identity = 84/236 (35.59%), Postives = 135/236 (57.20%), Query Frame = 1
Query: 4222 LLPSTNMQLSNAFHVLKHEYTKKPSLVGAGVFGLDDVFARIKPFVSSNLRPLRSPPPPPLGRPGEGRGRAETGELPALYFASVDIKHCYDTVDQARLMDIVRPVLTSEDYVIQKFTKVHPFKAMGRVQVDHVKEAVAMEDMLQFQTRCEELAEESVDTIFTDQVVYGTISRDDVLDMVEDHITHNVVRVPAAGGSGRGAYFQQAVGIPQGSVVSGLLCNLFFGHIEKRLLTDIFEP 4929
+ PS N L+ AFH+L +E ++KP L+GA VFG++D++ ++ F ++ R G +P LYF +D++ C+DT+DQ +L+ I+R LT + Y+++KF+++ + G+ + K AV D F T ++A IF DQVVYG +DVLD++E+HIT N+VR+ + ++Q VGIPQGSV+S LLC +F+G +E+ L +P
Sbjct: 1 MQPSVNQVLNAAFHILNYEKSEKPELLGASVFGVNDIYRKLATFKAA--------------------ARLPDGTMPKLYFVKLDVRACFDTIDQDKLLQILRHTLTQKAYMVRKFSQLQ--FSTGQPRRSFRKRAVPDWDHTHFMTYAAKVAACLRHVIFADQVVYGFDYMEDVLDLLEEHITDNIVRIGSE-------LYRQVVGIPQGSVLSTLLCAIFYGDLERTKLVFTADP 207
The following BLAST results are available for this feature:
Alignments
The following features are aligned
Analyses
This mRNA is derived from or has results from the following analyses
Properties
| Property Name | Value |
| Taxonomic scope | Eukaryota |
| Seed ortholog score | 797.7 |
| Seed ortholog evalue | 1.3e-227 |
| Seed eggNOG ortholog | 2880.D7G4G7 |
| Preferred name | TERT |
| KEGG ko | ko:K11126 |
| KEGG Pathway | ko05165,ko05166,ko05200,ko05225,ko05226,map05165,map05166,map05200,map05225,map05226 |
| GOs | GO:0000049,GO:0000228,GO:0000333,GO:0000723,GO:0000781,GO:0000782,GO:0000783,GO:0000784,GO:0001172,GO:0001221,GO:0001223,GO:0001302,GO:0001666,GO:0003674,GO:0003676,GO:0003677,GO:0003720,GO:0003721,GO:0003723,GO:0003824,GO:0003964,GO:0003968,GO:0005488,GO:0005515,GO:0005575,GO:0005622,GO:0005623,GO:0005634,GO:0005654,GO:0005694,GO:0005697,GO:0005730,GO:0005737,GO:0005739,GO:0005759,GO:0005829,GO:0005886,GO:0006139,GO:0006259,GO:0006278,GO:0006355,GO:0006357,GO:0006396,GO:0006725,GO:0006807,GO:0006950,GO:0006996,GO:0006997,GO:0007000,GO:0007004,GO:0007005,GO:0007275,GO:0007346,GO:0007399,GO:0007568,GO:0007569,GO:0008022,GO:0008104,GO:0008134,GO:0008150,GO:0008152,GO:0008284,GO:0008285,GO:0009058,GO:0009059,GO:0009295,GO:0009628,GO:0009888,GO:0009889,GO:0009891,GO:0009892,GO:0009893,GO:0009966,GO:0009967,GO:0009968,GO:0009987,GO:0010033,GO:0010035,GO:0010038,GO:0010073,GO:0010449,GO:0010467,GO:0010468,GO:0010556,GO:0010557,GO:0010564,GO:0010604,GO:0010605,GO:0010608,GO:0010628,GO:0010629,GO:0010646,GO:0010647,GO:0010648,GO:0010721,GO:0010827,GO:0010828,GO:0010833,GO:0010941,GO:0014013,GO:0014014,GO:0014070,GO:0014910,GO:0014911,GO:0016020,GO:0016043,GO:0016070,GO:0016246,GO:0016441,GO:0016458,GO:0016604,GO:0016605,GO:0016607,GO:0016740,GO:0016772,GO:0016779,GO:0018130,GO:0019219,GO:0019222,GO:0019438,GO:0019827,GO:0022008,GO:0022603,GO:0022607,GO:0022613,GO:0022616,GO:0022618,GO:0022622,GO:0023051,GO:0023056,GO:0023057,GO:0030111,GO:0030154,GO:0030177,GO:0030334,GO:0030335,GO:0030422,GO:0030880,GO:0031047,GO:0031050,GO:0031056,GO:0031323,GO:0031324,GO:0031325,GO:0031326,GO:0031328,GO:0031379,GO:0031399,GO:0031647,GO:0031974,GO:0031981,GO:0032092,GO:0032200,GO:0032268,GO:0032501,GO:0032502,GO:0032768,GO:0032770,GO:0032774,GO:0032879,GO:0032880,GO:0032991,GO:0032993,GO:0033036,GO:0033043,GO:0033044,GO:0033365,GO:0033554,GO:0034061,GO:0034062,GO:0034502,GO:0034613,GO:0034622,GO:0034641,GO:0034645,GO:0034654,GO:0034762,GO:0034764,GO:0035194,GO:0035266,GO:0036293,GO:0036294,GO:0040007,GO:0040012,GO:0040017,GO:0040029,GO:0042127,GO:0042162,GO:0042221,GO:0042575,GO:0042592,GO:0042634,GO:0042635,GO:0042645,GO:0042802,GO:0042803,GO:0042981,GO:0043066,GO:0043067,GO:0043069,GO:0043085,GO:0043170,GO:0043226,GO:0043227,GO:0043228,GO:0043229,GO:0043231,GO:0043232,GO:0043233,GO:0043331,GO:0043393,GO:0043523,GO:0043524,GO:0043565,GO:0043933,GO:0044085,GO:0044093,GO:0044237,GO:0044238,GO:0044249,GO:0044260,GO:0044271,GO:0044422,GO:0044424,GO:0044427,GO:0044428,GO:0044429,GO:0044444,GO:0044446,GO:0044451,GO:0044454,GO:0044464,GO:0045184,GO:0045595,GO:0045596,GO:0045597,GO:0045765,GO:0045766,GO:0045787,GO:0045893,GO:0045931,GO:0045934,GO:0045935,GO:0045944,GO:0046324,GO:0046326,GO:0046483,GO:0046686,GO:0046983,GO:0047485,GO:0048364,GO:0048507,GO:0048518,GO:0048519,GO:0048522,GO:0048523,GO:0048583,GO:0048584,GO:0048585,GO:0048589,GO:0048660,GO:0048661,GO:0048699,GO:0048731,GO:0048856,GO:0048869,GO:0050000,GO:0050767,GO:0050768,GO:0050789,GO:0050790,GO:0050793,GO:0050794,GO:0050896,GO:0050999,GO:0051000,GO:0051049,GO:0051050,GO:0051087,GO:0051093,GO:0051094,GO:0051098,GO:0051099,GO:0051128,GO:0051171,GO:0051172,GO:0051173,GO:0051179,GO:0051234,GO:0051239,GO:0051240,GO:0051241,GO:0051246,GO:0051252,GO:0051253,GO:0051254,GO:0051270,GO:0051272,GO:0051276,GO:0051341,GO:0051353,GO:0051640,GO:0051641,GO:0051716,GO:0051726,GO:0051960,GO:0051961,GO:0060147,GO:0060149,GO:0060249,GO:0060251,GO:0060253,GO:0060255,GO:0060284,GO:0060341,GO:0060548,GO:0060966,GO:0060967,GO:0060968,GO:0060969,GO:0061695,GO:0065003,GO:0065007,GO:0065008,GO:0065009,GO:0070013,GO:0070034,GO:0070198,GO:0070199,GO:0070200,GO:0070482,GO:0070727,GO:0070887,GO:0070918,GO:0070920,GO:0071310,GO:0071359,GO:0071407,GO:0071453,GO:0071456,GO:0071704,GO:0071826,GO:0071840,GO:0071897,GO:0071944,GO:0072091,GO:0072594,GO:0080090,GO:0080134,GO:0080135,GO:0090065,GO:0090068,GO:0090304,GO:0090342,GO:0090344,GO:0090399,GO:0097159,GO:0097659,GO:0097747,GO:0098680,GO:0098687,GO:0098727,GO:0099402,GO:0140097,GO:0140098,GO:1900087,GO:1900180,GO:1900182,GO:1900368,GO:1900369,GO:1901099,GO:1901214,GO:1901215,GO:1901342,GO:1901360,GO:1901362,GO:1901363,GO:1901576,GO:1901698,GO:1901699,GO:1901987,GO:1901989,GO:1901990,GO:1901992,GO:1902275,GO:1902494,GO:1902680,GO:1902806,GO:1902808,GO:1902893,GO:1902895,GO:1903506,GO:1903508,GO:1903618,GO:1903620,GO:1903704,GO:1903827,GO:1903829,GO:1904018,GO:1904035,GO:1904036,GO:1904173,GO:1904705,GO:1904707,GO:1904749,GO:1904751,GO:1904752,GO:1904754,GO:1904837,GO:1904868,GO:1905323,GO:1990234,GO:1990572,GO:1990904,GO:2000026,GO:2000045,GO:2000112,GO:2000145,GO:2000147,GO:2000351,GO:2000352,GO:2000648,GO:2000772,GO:2000773,GO:2001141,GO:2001233,GO:2001234,GO:2001236,GO:2001237,GO:2001239,GO:2001240 |
| EggNOG free text desc. | telomerase RNA reverse transcriptase activity |
| EggNOG OGs | KOG1005@1,KOG1005@2759 |
| EC | 2.7.7.49 |
| COG Functional cat. | L |
| Best tax level | Eukaryota |
| Best eggNOG OG | NA|NA|NA |
| BRITE | ko00000,ko00001,ko01000,ko03032 |
| Hectar predicted targeting category | other localisation |
| Exons | 25 |
| Model size | 7158 |
| Cds size | 6273 |
| Stop | 1 |
| Start | 1 |
Relationships
The following UTR feature(s) are a part of this mRNA:
| Feature Name | Unique Name | Species | Type | Position |
| 1622817292.4019303-UTR-P-fluviatile_contig85:83189..83828 | 1622817292.4019303-UTR-P-fluviatile_contig85:83189..83828 | Porterinema fluviatile SAG_2381 | UTR | P-fluviatile_contig85 83190..83828 - |
| 1693571964.0625641-UTR-P-fluviatile_contig85:83189..83828 | 1693571964.0625641-UTR-P-fluviatile_contig85:83189..83828 | Porterinema fluviatile SAG_2381 | UTR | P-fluviatile_contig85 83190..83828 - |
| 1622817292.6925511-UTR-P-fluviatile_contig85:100697..100943 | 1622817292.6925511-UTR-P-fluviatile_contig85:100697..100943 | Porterinema fluviatile SAG_2381 | UTR | P-fluviatile_contig85 100698..100943 - |
| 1693571964.3184037-UTR-P-fluviatile_contig85:100697..100943 | 1693571964.3184037-UTR-P-fluviatile_contig85:100697..100943 | Porterinema fluviatile SAG_2381 | UTR | P-fluviatile_contig85 100698..100943 - |
The following CDS feature(s) are a part of this mRNA:
| Feature Name | Unique Name | Species | Type | Position |
| 1622817292.4119582-CDS-P-fluviatile_contig85:83828..84182 | 1622817292.4119582-CDS-P-fluviatile_contig85:83828..84182 | Porterinema fluviatile SAG_2381 | CDS | P-fluviatile_contig85 83829..84182 - |
| 1693571964.0732086-CDS-P-fluviatile_contig85:83828..84182 | 1693571964.0732086-CDS-P-fluviatile_contig85:83828..84182 | Porterinema fluviatile SAG_2381 | CDS | P-fluviatile_contig85 83829..84182 - |
| 1622817292.423106-CDS-P-fluviatile_contig85:84903..85102 | 1622817292.423106-CDS-P-fluviatile_contig85:84903..85102 | Porterinema fluviatile SAG_2381 | CDS | P-fluviatile_contig85 84904..85102 - |
| 1693571964.0811408-CDS-P-fluviatile_contig85:84903..85102 | 1693571964.0811408-CDS-P-fluviatile_contig85:84903..85102 | Porterinema fluviatile SAG_2381 | CDS | P-fluviatile_contig85 84904..85102 - |
| 1622817292.4350681-CDS-P-fluviatile_contig85:85510..85660 | 1622817292.4350681-CDS-P-fluviatile_contig85:85510..85660 | Porterinema fluviatile SAG_2381 | CDS | P-fluviatile_contig85 85511..85660 - |
| 1693571964.0891325-CDS-P-fluviatile_contig85:85510..85660 | 1693571964.0891325-CDS-P-fluviatile_contig85:85510..85660 | Porterinema fluviatile SAG_2381 | CDS | P-fluviatile_contig85 85511..85660 - |
| 1622817292.4491339-CDS-P-fluviatile_contig85:86099..86218 | 1622817292.4491339-CDS-P-fluviatile_contig85:86099..86218 | Porterinema fluviatile SAG_2381 | CDS | P-fluviatile_contig85 86100..86218 - |
| 1693571964.0967503-CDS-P-fluviatile_contig85:86099..86218 | 1693571964.0967503-CDS-P-fluviatile_contig85:86099..86218 | Porterinema fluviatile SAG_2381 | CDS | P-fluviatile_contig85 86100..86218 - |
| 1622817292.4626899-CDS-P-fluviatile_contig85:86926..86986 | 1622817292.4626899-CDS-P-fluviatile_contig85:86926..86986 | Porterinema fluviatile SAG_2381 | CDS | P-fluviatile_contig85 86927..86986 - |
| 1693571964.1044352-CDS-P-fluviatile_contig85:86926..86986 | 1693571964.1044352-CDS-P-fluviatile_contig85:86926..86986 | Porterinema fluviatile SAG_2381 | CDS | P-fluviatile_contig85 86927..86986 - |
| 1622817292.4732049-CDS-P-fluviatile_contig85:87467..87563 | 1622817292.4732049-CDS-P-fluviatile_contig85:87467..87563 | Porterinema fluviatile SAG_2381 | CDS | P-fluviatile_contig85 87468..87563 - |
| 1693571964.1143782-CDS-P-fluviatile_contig85:87467..87563 | 1693571964.1143782-CDS-P-fluviatile_contig85:87467..87563 | Porterinema fluviatile SAG_2381 | CDS | P-fluviatile_contig85 87468..87563 - |
| 1622817292.4855123-CDS-P-fluviatile_contig85:87883..88594 | 1622817292.4855123-CDS-P-fluviatile_contig85:87883..88594 | Porterinema fluviatile SAG_2381 | CDS | P-fluviatile_contig85 87884..88594 - |
| 1693571964.1263866-CDS-P-fluviatile_contig85:87883..88594 | 1693571964.1263866-CDS-P-fluviatile_contig85:87883..88594 | Porterinema fluviatile SAG_2381 | CDS | P-fluviatile_contig85 87884..88594 - |
| 1622817292.4965978-CDS-P-fluviatile_contig85:88937..89034 | 1622817292.4965978-CDS-P-fluviatile_contig85:88937..89034 | Porterinema fluviatile SAG_2381 | CDS | P-fluviatile_contig85 88938..89034 - |
| 1693571964.1341302-CDS-P-fluviatile_contig85:88937..89034 | 1693571964.1341302-CDS-P-fluviatile_contig85:88937..89034 | Porterinema fluviatile SAG_2381 | CDS | P-fluviatile_contig85 88938..89034 - |
| 1622817292.5063539-CDS-P-fluviatile_contig85:89401..89529 | 1622817292.5063539-CDS-P-fluviatile_contig85:89401..89529 | Porterinema fluviatile SAG_2381 | CDS | P-fluviatile_contig85 89402..89529 - |
| 1693571964.1427495-CDS-P-fluviatile_contig85:89401..89529 | 1693571964.1427495-CDS-P-fluviatile_contig85:89401..89529 | Porterinema fluviatile SAG_2381 | CDS | P-fluviatile_contig85 89402..89529 - |
| 1622817292.5165207-CDS-P-fluviatile_contig85:89962..90064 | 1622817292.5165207-CDS-P-fluviatile_contig85:89962..90064 | Porterinema fluviatile SAG_2381 | CDS | P-fluviatile_contig85 89963..90064 - |
| 1693571964.1510909-CDS-P-fluviatile_contig85:89962..90064 | 1693571964.1510909-CDS-P-fluviatile_contig85:89962..90064 | Porterinema fluviatile SAG_2381 | CDS | P-fluviatile_contig85 89963..90064 - |
| 1622817292.5290334-CDS-P-fluviatile_contig85:90839..91079 | 1622817292.5290334-CDS-P-fluviatile_contig85:90839..91079 | Porterinema fluviatile SAG_2381 | CDS | P-fluviatile_contig85 90840..91079 - |
| 1693571964.1593099-CDS-P-fluviatile_contig85:90839..91079 | 1693571964.1593099-CDS-P-fluviatile_contig85:90839..91079 | Porterinema fluviatile SAG_2381 | CDS | P-fluviatile_contig85 90840..91079 - |
| 1622817292.5453587-CDS-P-fluviatile_contig85:91429..91702 | 1622817292.5453587-CDS-P-fluviatile_contig85:91429..91702 | Porterinema fluviatile SAG_2381 | CDS | P-fluviatile_contig85 91430..91702 - |
| 1693571964.170274-CDS-P-fluviatile_contig85:91429..91702 | 1693571964.170274-CDS-P-fluviatile_contig85:91429..91702 | Porterinema fluviatile SAG_2381 | CDS | P-fluviatile_contig85 91430..91702 - |
| 1622817292.557135-CDS-P-fluviatile_contig85:92375..92757 | 1622817292.557135-CDS-P-fluviatile_contig85:92375..92757 | Porterinema fluviatile SAG_2381 | CDS | P-fluviatile_contig85 92376..92757 - |
| 1693571964.179249-CDS-P-fluviatile_contig85:92375..92757 | 1693571964.179249-CDS-P-fluviatile_contig85:92375..92757 | Porterinema fluviatile SAG_2381 | CDS | P-fluviatile_contig85 92376..92757 - |
| 1622817292.5686014-CDS-P-fluviatile_contig85:93368..93454 | 1622817292.5686014-CDS-P-fluviatile_contig85:93368..93454 | Porterinema fluviatile SAG_2381 | CDS | P-fluviatile_contig85 93369..93454 - |
| 1693571964.1882432-CDS-P-fluviatile_contig85:93368..93454 | 1693571964.1882432-CDS-P-fluviatile_contig85:93368..93454 | Porterinema fluviatile SAG_2381 | CDS | P-fluviatile_contig85 93369..93454 - |
| 1622817292.5792172-CDS-P-fluviatile_contig85:93831..94557 | 1622817292.5792172-CDS-P-fluviatile_contig85:93831..94557 | Porterinema fluviatile SAG_2381 | CDS | P-fluviatile_contig85 93832..94557 - |
| 1693571964.1972945-CDS-P-fluviatile_contig85:93831..94557 | 1693571964.1972945-CDS-P-fluviatile_contig85:93831..94557 | Porterinema fluviatile SAG_2381 | CDS | P-fluviatile_contig85 93832..94557 - |
| 1622817292.5900621-CDS-P-fluviatile_contig85:94950..95058 | 1622817292.5900621-CDS-P-fluviatile_contig85:94950..95058 | Porterinema fluviatile SAG_2381 | CDS | P-fluviatile_contig85 94951..95058 - |
| 1693571964.2063363-CDS-P-fluviatile_contig85:94950..95058 | 1693571964.2063363-CDS-P-fluviatile_contig85:94950..95058 | Porterinema fluviatile SAG_2381 | CDS | P-fluviatile_contig85 94951..95058 - |
| 1622817292.6013534-CDS-P-fluviatile_contig85:95603..95812 | 1622817292.6013534-CDS-P-fluviatile_contig85:95603..95812 | Porterinema fluviatile SAG_2381 | CDS | P-fluviatile_contig85 95604..95812 - |
| 1693571964.2153244-CDS-P-fluviatile_contig85:95603..95812 | 1693571964.2153244-CDS-P-fluviatile_contig85:95603..95812 | Porterinema fluviatile SAG_2381 | CDS | P-fluviatile_contig85 95604..95812 - |
| 1622817292.613274-CDS-P-fluviatile_contig85:96299..96384 | 1622817292.613274-CDS-P-fluviatile_contig85:96299..96384 | Porterinema fluviatile SAG_2381 | CDS | P-fluviatile_contig85 96300..96384 - |
| 1693571964.2244089-CDS-P-fluviatile_contig85:96299..96384 | 1693571964.2244089-CDS-P-fluviatile_contig85:96299..96384 | Porterinema fluviatile SAG_2381 | CDS | P-fluviatile_contig85 96300..96384 - |
| 1622817292.6230772-CDS-P-fluviatile_contig85:96775..97085 | 1622817292.6230772-CDS-P-fluviatile_contig85:96775..97085 | Porterinema fluviatile SAG_2381 | CDS | P-fluviatile_contig85 96776..97085 - |
| 1693571964.2343206-CDS-P-fluviatile_contig85:96775..97085 | 1693571964.2343206-CDS-P-fluviatile_contig85:96775..97085 | Porterinema fluviatile SAG_2381 | CDS | P-fluviatile_contig85 96776..97085 - |
| 1622817292.632836-CDS-P-fluviatile_contig85:97149..97377 | 1622817292.632836-CDS-P-fluviatile_contig85:97149..97377 | Porterinema fluviatile SAG_2381 | CDS | P-fluviatile_contig85 97150..97377 - |
| 1693571964.2457356-CDS-P-fluviatile_contig85:97149..97377 | 1693571964.2457356-CDS-P-fluviatile_contig85:97149..97377 | Porterinema fluviatile SAG_2381 | CDS | P-fluviatile_contig85 97150..97377 - |
| 1622817292.6424608-CDS-P-fluviatile_contig85:97616..98094 | 1622817292.6424608-CDS-P-fluviatile_contig85:97616..98094 | Porterinema fluviatile SAG_2381 | CDS | P-fluviatile_contig85 97617..98094 - |
| 1693571964.2616017-CDS-P-fluviatile_contig85:97616..98094 | 1693571964.2616017-CDS-P-fluviatile_contig85:97616..98094 | Porterinema fluviatile SAG_2381 | CDS | P-fluviatile_contig85 97617..98094 - |
| 1622817292.6521797-CDS-P-fluviatile_contig85:98368..98759 | 1622817292.6521797-CDS-P-fluviatile_contig85:98368..98759 | Porterinema fluviatile SAG_2381 | CDS | P-fluviatile_contig85 98369..98759 - |
| 1693571964.2703314-CDS-P-fluviatile_contig85:98368..98759 | 1693571964.2703314-CDS-P-fluviatile_contig85:98368..98759 | Porterinema fluviatile SAG_2381 | CDS | P-fluviatile_contig85 98369..98759 - |
| 1622817292.663295-CDS-P-fluviatile_contig85:99008..99320 | 1622817292.663295-CDS-P-fluviatile_contig85:99008..99320 | Porterinema fluviatile SAG_2381 | CDS | P-fluviatile_contig85 99009..99320 - |
| 1693571964.2817705-CDS-P-fluviatile_contig85:99008..99320 | 1693571964.2817705-CDS-P-fluviatile_contig85:99008..99320 | Porterinema fluviatile SAG_2381 | CDS | P-fluviatile_contig85 99009..99320 - |
| 1622817292.6732838-CDS-P-fluviatile_contig85:99664..99832 | 1622817292.6732838-CDS-P-fluviatile_contig85:99664..99832 | Porterinema fluviatile SAG_2381 | CDS | P-fluviatile_contig85 99665..99832 - |
| 1693571964.2904537-CDS-P-fluviatile_contig85:99664..99832 | 1693571964.2904537-CDS-P-fluviatile_contig85:99664..99832 | Porterinema fluviatile SAG_2381 | CDS | P-fluviatile_contig85 99665..99832 - |
| 1622817292.683002-CDS-P-fluviatile_contig85:100436..100697 | 1622817292.683002-CDS-P-fluviatile_contig85:100436..100697 | Porterinema fluviatile SAG_2381 | CDS | P-fluviatile_contig85 100437..100697 - |
| 1693571964.3005795-CDS-P-fluviatile_contig85:100436..100697 | 1693571964.3005795-CDS-P-fluviatile_contig85:100436..100697 | Porterinema fluviatile SAG_2381 | CDS | P-fluviatile_contig85 100437..100697 - |
The following polypeptide feature(s) derives from this mRNA:
Sequences
The following sequences are available for this feature:
protein sequence of mRNA_P-fluviatile_contig85.14892.1 >prot_P-fluviatile_contig85.14892.1 ID=prot_P-fluviatile_contig85.14892.1|Name=mRNA_P-fluviatile_contig85.14892.1|organism=Porterinema fluviatile SAG_2381|type=polypeptide|length=2091bp
MARQQTETPSSGGAGSLASGKSQGAAGRWMLKLIYPNAASLDLYLEVWLR HMLAAAAPDSAAAAAINSAGGPACYLSRKNDGAEYKKMLKETFVAYCPSA PTAPDEAHAPLPRHASLQHLSSMADLLDRVVKSLLRCSSIGAQGNSSGGY SAGQGGDDPRRNILSLGCRVAGPQATSELLSVQGVACAFPNTTVNVIRSP PWELLLSRIGDDLMFALLRQHAVLQRMPNRCYMQASFALSSKGQASILVG RPVPDRCRHLGLTTSALSSAAIADAPTSTTASKAVHTDRAGAPPKGSMLS RKRQRRHGQTTRSCIGSIGMSSWALCAGPNATSGTPAPSTSAVAAVNNVP GRSGAGGPAGSIGRPGVRRPAVLLPRQLHAAPYPPSAGRSTNADRSTNAD RDAASYAAAATVTGVARSLVIDAFVHPFDGFSSGQQQEQQQQHRSVGGTS SQSGRSEVLRRRGSRLAPPSARGAGMGAKAGVRLPLPKRLRRAVPLFEQM VGRARRCKFGRLLEAHCPLPASVRNAKPEQPAAGGRGSLRPAAGKSPAGL TGAQVEAPYQPSPSNASTLFEGTHFSGDGVDRASVNALPQGGNSGDGYGD NDGGEAENIEGREGGEGEDAMDEDQDHDESGSTLKELCADAGSLAVGSSS SHHGGGMLSAAANAAEASEIASISSSSNSRRSRSIGTPTARETKRRRLLR ADSTDALSSEPDSVELDEPGVCTGGSSVGGRAEEIASDAATLLEGTDLAP VFSHLVSALAAGDSTRVPPPEGRNVHDTSHQHDSSFSMDPCMTFIDMATE HRRVIDFLCQACHRIFPTELWGSKHNMVCLARAIERFVVLRRHESMSVLE ATAGMRTSDLEWMSLGGDDCHDDDVTHASSAKAPTRKQNGGSRPPIHETS PDRCNGERKVAVRMSMLPALVVQERRAKYSALSRGSAATACGYDHSSSEA RVAASRAGMLPTRSGAGTVEAETAGGRGLCKRPRESGGGVAAAAGARSDS RTSKGKARPGSRSTAQAGVRKPVGQHRRRGGAGKGGERRGRGNSWSKVAA SKGGNGNGSGKKARLPPSDLAKRTQLLEALVLWTFRDVIVPLVRSLFFVT ECETASQQVFFFRKPVWANFRSASLRHLTARQYRRITAQEAFRRSDGSPT AERKKGTENPPFHTPLHASTSCTQSDSPTKSFSGGCCVGSHDGAKGKGKN RGHPGWAFPVSGVRLVPKANGVRAIVNLSKRAWVDRGRVQWVKGVPLPAP GRISTLESTSSTSKAPPGGPGTGESKETLQGVGRPPSKEAGGRGGRGRGK SIGGWASRGKPGGPPGPWAGKSGRTLLPSTNMQLSNAFHVLKHEYTKKPS LVGAGVFGLDDVFARIKPFVSSNLRPLRSPPPPPLGRPGEGRGRAETGEL PALYFASVDIKHCYDTVDQARLMDIVRPVLTSEDYVIQKFTKVHPFKAMG RVQVDHVKEAVAMEDMLQFQTRCEELAEESVDTIFTDQVVYGTISRDDVL DMVEDHITHNVVRVPAAGGSGRGAYFQQAVGIPQGSVVSGLLCNLFFGHI EKRLLTDIFEPPRHSPLPAVAHQQEATARESGVVGRCGYGCGCAGYARRC CGAVEASSSGSCRQEGRLPSSLTASGRKLTRRSLETEGEDEGQIGVERAE RAGGGISTLSHPSHVLAHVRASQGWAGPLGGRGTEPAVGEGFAGSSSQLE AQQNASTTGWGSGGQGHNPFWPGHVDVKREFVGGGETAEKENDKRPFPDP KGDCTLLRQVDDFLLISTTKAKAEAFVRVMHDTTKTGEWGFSVHEAKTVV NFDMVLEPGGPGASGQQVRRVEGERVGEGDMFPWCGIRFNTKTCEVMANY SRQASQAVSESLTVESRRAGACLLSKMKRFMSPKCHALMLDEGDLGINSR STVLLNVYEMLLVCAAKTAASALRLPQGPAGNASLLSNGALETTAYAYSL IQSRSNRRKGSFGSPKGVRCVCKVNRFEVTWLGLHAFREVFGAFSRKDRG FMRCKLDMEKALKESARLVGGVDGNSSQVFRETRKEDEEKEEEEERRTKD SSESIAAGAAKSARRGRAMNRLEHVVRSPDALGLLRTLTT* back to topmRNA from alignment at P-fluviatile_contig85:83190..100943- Legend: UTRpolypeptideCDS Hold the cursor over a type above to highlight its positions in the sequence below. >mRNA_P-fluviatile_contig85.14892.1 ID=mRNA_P-fluviatile_contig85.14892.1|Name=mRNA_P-fluviatile_contig85.14892.1|organism=Porterinema fluviatile SAG_2381|type=mRNA|length=17754bp|location=Sequence derived from alignment at P-fluviatile_contig85:83190..100943- (Porterinema fluviatile SAG_2381) TGCCGCGCTCGTAAGTTCGAGCGGGTGAGTGTCCCTTGTCCCTTTATTTT
TCACTGGGGGCGATGACAACACCAAAGAAAAAGACAGGAACGAAAGGGAC
ACCAATGGCGGGTGCCTCATGATACATGTCAGATAGAGCGAGGAGTTTAG
AGCTGAAACCCCCTGCGTCGGAGGACGATTTCCTTGACAAAATAGCGTGG
GAATGTACGGTTGAATCTGCCGTTCTTCTCCATCATTCGCGTTGTCATGG
CGCGACAGCAGACCGAGACGCCCTCTTCCGGGGGTGCGGGCAGCCTTGCT
TCGGGGAAGAGCCAAGGTGCTGCCGGGCGCTGGATGTTGAAGCTCATCTA
TCCGAATGCCGCCAGTCTCGATTTGTACCTCGAGGTTTGGTTGCGGCACA
TGTTGGCGGCAGCAGCGCCAGACTCGGCGGCCGCGGCCGCCATCAACAGC
GCCGGCGGGCCTGCCTGCTACCTCAGCCGCAAAAATGACGGGGCAGAGTA
CAAGAAGGTCAGTGAGGTTGGTGACGTTTCTTCAATAGAGCTGGCGTATG
CCCCATGCGAACGATCCGGGGAAACGGCAGGGTTCGCCACGCTCCCGGCT
GCTGGTGAACTGTCGTCCGTCCGCACGATTGACGTCCACATACATGCGCA
AACCCAAAGATCAGCCGTTGTTACGCGCCGTGCCTTCGCACGCAGAGTTA
CCCCACTTTAATGCAAATGAGTCATTCACGATGGAGCCTCAAGCCTCATG
CACGTGCCAAGGTTTTTTGCTCGCACATAGGCTTGTACCTCGTACTACTT
ACGCGTTTTTTCCCCGATTTTGATCCAGCCTTTGATTCGATTCGAATTTT
ACTGAGAAAGTATGATAATGTCGCCCTGCCCCCTTCAAGAATCCGTCAAT
CGCCTACGGAGTACAAGCCTACACTACAAATTCGGTCGATGCATGAAACG
TTGATCCAACAATTCCCGAAGGCCGGGGGACGCAGGTCCATGCTAACAAA
AGCTGGAGCGACATGAACACAGTGTAGAGTGTAGAACGAACATCTCTGGC
ACAGAACGAGTACCCAAAACCATGTCATTCCACGAACATCCCCACCGTAC
GGTCGGGACAGATGCTGAAGGAGACTTTCGTGGCCTACTGCCCCTCCGCG
CCCACGGCGCCGGACGAAGCACACGCGCCGCTGCCGCGTCACGCGTCGCT
CCAGCATCTTTCCTCCATGGCAGACCTATTGGATCGCGTGGTAAAGTCGC
TCCTGCGCTGTTCAAGCATTGGGGCGCAGGTACGGAGGAGATTTTGTCTC
GGAACTCTACTTCCCATCTGTTCCTAGCTGCGTTTTTTTTTTTTTCCACC
CACGGCGGTCGAACTTGCAGCCACAGACAAAGGTGGTGCACACGGACGAT
TAGCTTCAAAGTCTGTCTTATGCGCTCGTGCCTTGTTGCTGTACGCATTC
TCAAGCGGTCTTGAAAGCCTCCGCTGCGCGTGCTGATTTTGCTGTTTCGT
GTATGCATTAATATTTGGTGGCGCGAGCCCGCACGACGTAGAGGTTGACA
CCACTCCAGCGCGTTTTCTTTGCGGCCCAGCTGCGTGATGATCCGGAATT
CGTTGATGTTCGGTTCGTTGCAGGGGAACAGCAGCGGCGGATACTCTGCA
GGCCAAGGGGGAGACGACCCCCGCCGCAATATCCTCTCCCTCGGCTGTCG
CGTAGCAGGCCCGCAGGCAACGAGCGAGCTGCTGAGCGTGCAAGGCGTGG
CGTGTGCCTTCCCCAATACAACGGTCAATGTCATCCGGTCGCCGCCGTGG
GAGCTGCTGCTGTCTAGAATAGGGGACGATTTGATGTTTGCGCTCCTGAG
GCAGCATGCCGTGTTGCAACGGATGCCCAACCGCTGCTACATGCAGGCAA
GTTTTGCTCTCAGCAGCAAGGGACAAGCCAGCATTGTTCACAGCCGCAAG
CAAATGATGTTTATCGTTAACACACACGTACGCGAGTGAGTCTAAATCGA
CCCTTCTACCCGCCGCGTTGGAAAAATCACCCTGCCGATCGACACATCGT
AGATTGGGCAACGCCTTTCTGGGACCGCTGTGCATCAAAGCAAGGGAGCT
CTCCGTTCCTGAAATCCTTCCCGCACACATCTCACTCCGTTTCATGCCTA
TGCGATTTTGCCGCCGAACGGATTCGAATGGCAGCTCGTCGGGCGTCCGG
TACCTGACCGCTGCCGCCATCTAGGCCTTACCACCAGCGCACTGTCATCC
GCAGCTATTGCAGATGCACCAACTAGCACAACTGCCTCCAAGGCAGTCCA
CACCGACCGAGCCGGTGCTCCTCCCAAGGGCTCGATGCTCAGTAGAAAGA
GACAGCGTCGACACGGGCAGACTACCAGGAGCTGCATTGGGAGCATCGGC
ATGTCGTCGTGGGCGTTGTGTGCAGGCCCGAACGCGACATCTGGGACCCC
GGCCCCATCCACCTCGGCTGTTGCTGCTGTAAACAATGTGCCCGGACGAA
GCGGTGCCGGAGGACCAGCGGGAAGTATTGGTCGGCCTGGTGTTCGGCGG
CCCGCAGTGCTCCTGCCGCGGCAGCGTATCTTCTACTCGAGCACGTTTGT
CAGGTTCGGTATCAGGGCCGAGCGGTGTTTCAGTACAGCGTGTTGCGGTC
TGGCTTGTCCCTGTTGTACCCATCTACTGCCAGCTATTAATGTTGCTGCT
GATGCAAGGGCTTTTTTCTCGTAGTCGCTCATCGTGCCCGCCTCTTTGCC
GTGGATTTTGCAGGAAGGCCGGTTTCCCTCGCGGGCACGCCTTTGAGCCC
TGCGATGATATGCCGCTGGCCGACACGAGGGCGGGACAACACGGTCCAGT
GCACGCCGCACCGTACCCCCCGAGCGCCGGCCGAAGCACGAACGCCGACC
GAAGCACGAACGCCGACCGAGACGCCGCCTCCTATGCCGCCGCCGCCACT
GTGACAGGAGTGGCCCGCAGTTTGGTGATCGACGCGTTTGTTCACCCGTT
TGACGGTTTCAGCTCAGGCCAGCAGCAGGAGCAGCAGCAGCAGCATCGCT
CGGTTGGCGGAACGAGCTCGCAGAGCGGTAGATCTGAGGTGCTGCGGCGG
AGGGGTTCGAGATTGGCACCGCCTTCAGCCCGGGGAGCGGGGATGGGAGC
CAAGGCGGGGGTGCGACTTCCGCTGCCGAAGCGATTGCGACGGGCCGTGC
CGCTGTTCGAACAGATGGTCGGGAGAGCTCGCCGCTGCAAGTTCGGGAGG
CTGTTGGAGGCCCACTGCCCTCTACCGGCATCAGTGCGCAACGCGAAGCC
TGAGCAACCTGCTGCCGGGGGGAGGGGGTACCAGCAGCAAGATCTGGGTG
GGTACTTATGCAGGGACAAAGTATAAAGAAGTTTCGAAGTGTGAAGAAGT
TTGGATGGCAAAAATTTTCAGATTCCGTGGCACGCAACCGGTGTCGATCG
CTCTTGTTGACGTAGGTTTTTCTCGTGTCCTGTAGACGTAGCTGTGTACC
ACTGATGCGCTCTAAGTTACCACCAAAGACACTTAACTTTCGTTGAGTTT
ACAGCGCATCTGACAGTTCCCTTCGACCTGCCGCAGGGAAATCACCAGCA
GGCTTGACGGGGGCCCAGGTCGAAGCTCCGTACCAGCCGAGCCCCTCAAA
TGCTTCTACGCTGTTCGAAGGGACTCATTTCTCCGGCGACGGCGTAGACC
GTGCTTCGGTCAACGCTTTGCCACAAGGAGGTAACAGCGGCGATGGGTAT
GGTGACAATGACGGAGGTGAGGCGGAGAACATCGAAGGGCGAGAGTGGGA
TTTCGGCTGTGGCGGCAGCGCTAAGGAGGAGGACGAGGAGGATAGGACAG
AGGAGGAGGGGAGGGGAAGGAGAGGATGCGATGGATGAAGATCAAGATCA
CGATGAAAGCGGGTCGACTTTGAAGGAATTATGTGCCGACGCTGGCTCTC
TCGCAGTGGGCAGCAGTAGCAGCCACCACGGCGGCGGAATGTTGAGTGCT
GCCGCCAATGCTGCGGAAGCGAGCGAGATTGCCAGCATTAGTAGCAGCAG
CAACAGCAGGAGAAGCAGAAGCATCGGGACGCCTACCGCGCGTGAGACCA
AGCGACGGCGACTCTTGAGAGCCGATTCTACCGACGCGCTTTCGAGTGAA
CCAGATTCTGTAGAATTGGTGAGAACGGAGGTTTTCCGCCTCTCGAAAGC
GTTGTCCTGATTCCTCTTGAGCCCTGTTTTTCTTATTCAAAGTGTCTTTC
GGGCACGGCGAAGGCGGGTGGCACTGCTGGTCGATCTAATCCTGACCGCT
TCGTTGGCAATAAGAAGTAACAACGGATGCAATGCATCGTTTCGCACATA
TTTTTCGGTGTCTTGGGCCCCGGTTCGTATCCGTAGTGTCCACACATTGC
TTCCTTGGCCAAGTCCTTCCGCTCCGCCACCAAACAGTGCGCTATGTCCG
TCCCACCTCTCGACCGTTGGGATATGCACGCAAGCTCGTGAGAGTACTCA
ACCATTTGTTTCGCTTGTGATGAGAAGTGAAGTGACTGTCTCCTCCCGCA
TGCCGACAGGACGAGCCGGGCGTCTGCACCGGCGGGTCGAGCGTGGGAGG
GAGGGCCGAGGAAATTGCCTCTGACGCCGCCACCCTTCTCGAAGGTGACC
ACGATGGTGAGGGAAAAGGGGAAGAGGGAGAGACGGAAAGGTTGAAAGAG
AGCCAGAGGACGAGAGGGAGAGGGGGAAAGAGGTGTTCAAGAAAACGAAA
GGAAGAGAGACAGCTAGACAGGGAATCGAGGGCCACCAAGAAATGCCGAA
TCATCTGACCGCAGTGCACCCCCTTGTTTGGAATCCCGTGCAACCGATTT
TCCACCACACCACGGGCCGAGATTGCGAGATGGGGCGGAGATATGATCTT
CGAGAGAAGACATCGCAGGAAGAATTCACGTTCACACGCAAAACGACGGA
GACGTGCGCCGGCAGCGAAGCAAGAACGTGGCACGTACCCGTGACCTCTG
AAGACCCCGTGGGTCCAATCACCCTGGGCCCTGTCCCAGGAGAGGGGCAT
CGGGTGCGGGCTACCGCTCGGCGAGGGGTCACTGTCATCGTTATCTGCCA
TCAACTTTCTTATGGTCTCCTTTTGTTCTAGGAACCGATCTCGCCCCTGT
TTTTTCACATCTCGTTTCGGCACTTGCAGCAGGAGACAGTACAAGGGTCC
CTCCTCCCGAAGGGCGAAACGTCCACGACACAAGCCACCAACACGATTCG
TCATTCAGCATGGATCCCTGCATGACGTTCATCGATATGGCCACCGAACA
CCGTCGCGTGATTGACTTCCTTTGCCAAGCATGCCACAGGGTGAGTACGA
GGGTGATTGCGCACGTTCCCACGGAAGTGTCGAAATTTGCACGCCATTCA
AGGTGGGCTGTGGACTGAGTCTTCCCTTCAGGCATTCCATACAAAACTAT
TGGGACTGGCCGAGAACGACGCGTCAAAGTAAGCATGGAACACTTGTGTC
TGGGAGCTGGATGGGAACGGCAATAAGTTGCAGACGTATTCGGCCGGGTA
GCTTTTTTCGTCGGTTGTCGGTTCACAACTCGATAAACAACCCCTAGCTT
TCAGAGCAGGCTTTTTATCGAAGGCGTGCTACTACGCTTGGCGAAGCCCA
TCTGGAGGCGCAGGAGACGCATGCTGACGAGCACCACGACAACCAAGATG
TTGTGCAGAGGTTTGGACCAATATATAGAAAGGGCCCGGACCATTTTCTG
GTTTGCTGTTGCCTTTGTCTCTCTTGCTCTCCTCTGTGCTTTGCTGTTGT
TTATGTTGCTAACTTTTCGTCTTTCATCTTCGCCCTACGTCTTGGATTTT
CCTCCGATTGGCTGGCCTCGCCTGCTATCTCGCAGATCTTCCCCACAGAG
TTGTGGGGATCAAAGCACAACATGGTGTGCCTAGCCCGAGCCATCGAGCG
GTTCGTCGTTCTTCGGAGGCACGAAAGCATGTCGGTGCTGGAGGTCAGCA
GCGCTTCTTCTCTTGTTTCATTTGCCGGGAAGCAACTCCCCGTAGATGCT
TGCCCAATCCCCGAAAACCACTGTTCTGCGCAGCCCCATCCCCCCCCAAA
AGAAATCGAGCTTGAACGGCAAGAGCGCAAGCTGTATATTTGACGTGCGT
TCTTCGGACACAGCATCGCAGGGCTGCTACCTCTCCCCCATGTACCACAA
AAATGGTGTAGTACGAGACGATCACGGAACTCATCGATTCTTCCCTCGAC
AAGAATCTATTCATTTCCCTATTACTCGTCGGTAGGCCTTCTGCAAGATA
TGCACCTGACTCCTTCGTTCAGCGAAAGCCAAAAAAGGCGACGTATGCTT
TGCCTTGTTTTTGGGTTGTCATGGTATCACTCACAGGCAACAGCAGGCAT
GCGCACGTCGGACCTAGAGTGGATGTCCCTGGGTGGTGACGATTGTCATG
ATGATGATGTCACCCACGCCTCCAGTGCCAAGGCTCCGACGCGGAAACAG
AACGGAGGTTCGAGACCGCCGATTCACGAGACTTCACCAGACCGGTGCAA
TGGCGAAAGAAAAGTCGCTGTGAGAATGTCGATGTTGCCTGCTTTGGTGG
TGCAGGAGAGAAGGGCGAAATATTCCGCCTTGAGCCGCGGGTCCGCCGCA
ACTGCTTGTGGGTATGACCATTCGAGTTCGGAAGCGAGAGTGGCTGCTTC
GAGGGCGGGGATGCTGCCTACTCGCTCGGGAGCCGGTACGGTGGAGGCAG
AGACAGCAGGGGGCAGAGGACTATGCAAACGACCAAGAGAGAGTGGGGGC
GGTGTCGCTGCTGCGGCTGGCGCCAGAAGCGACTCGCGTACGAGCAAAGG
TAAGGCACGACCCGGCAGCAGGAGCACAGCGCAAGCGGGTGTCCGAAAGC
CTGTAGGCCAACACAGGCGACGAGGCGGTGCGGGGAAAGGCGGGGAGAGG
CGAGGCAGGGGCAACAGCTGGAGCAAGGTGGCAGCTTCGAAGGGCGGCAA
CGGCAACGGTAGCGGCAAAAAGGCACGCCTTCCTCCAAGCGACCTGGCAA
AGCGGACTCAGCTTTTGGAGGCGTTGGTACTCTGGACGTTCAGAGACGTG
ATCGTGCCGCTGGTGAGTGGGACACGGCTCTGATCTCGCTGGGTGAGGCG
GATCGGCGAGTGCGCGCCCCCCATTTGCTGTGATAGCGGAGTCGGCTGCT
GCTGTTGTCCACATCACCGAACGACGATCGAAGGCTGGCTAAACGTGTTC
GATTTCTTTTTTATTTGAAGAAGTCGCCAGCTTTCGATCGGCAGTGTTTC
CTATTGATGAGGACGAACGCGCACTATCATTCGGTCAACACACCTAAAAA
CTGCCAAGGCGGCGTGCTTCCAAGTCAAGCTAAGCACGTGTCTCGAAAAC
GCCTACGGTTGCCTCGCTTTGGAATGCCATGACATGTTCCCACCATCTTG
ATTGGTCGGACAATCTCTCGTTTTTGTTTGTGCGAAAAGGTTCGGTCGCT
GTTTTTCGTCACGGAGTGCGAAACCGCGTCCCAGCAGGTGTTCTTCTTCC
GCAAGCCGGTTTGGGCAAATTTCAGGTGACTTGGTGTTCTATCGCACGTT
TATGCCGGCGTCGCCCTTCTGCATTCGAGGGGGTGTAGGACGAACGAGCT
TCATGCTGAAACGTGGCTAGTGCAAGGTTGTCCGGCCACTCGGCCTTCCA
ATGACGTTGATCTTCACCTTCGCCTTTCGCATTGCTGGTGCGTGTTTTGG
TCTGCAATGAGGCCTTCCACGAAGCTTGGCTTGACCACAGCAGAGTCGCG
GACGATTTCGAATCCATGCGGAGTGAGGTCGTTTATACCATTCTCCCGTT
TCGCCTTATCTTCAGGCCAAAATCGCAACATGATCAAACAGTCTGCTGCT
GGACGGTCTTTTTTTTTTGTACTTGACGCGCGATAGACTTGCAAGCACGC
CTGGCCTACGGGGTATGCAAAACGCGGCACGCAAGCAGCTGACCGCTAAG
CGAGTTGGTGTGTTGACACCAGATCTTCGTTTCCCGCCAAGACGCTCAGC
GCCACGGCGCCGGTAGACTGTGGGTGTTGCATTGAGTCAGCCGGACTAAG
TCATGGTCGTCCTCACCTCCCCGCTCCGTCGCTGAGTACTACTCAATGTC
TTCCAAATGCCTACCTACCTGCCTGCCTGCACAAAGGTCGGCGTCGCTTC
GGCACCTCACGGCGCGACAGTACCGCCGGATCACCGCGCAGGAAGCCTTC
CGGAGGAGCGACGGTAGTCCCACCGCGGAACGAAAGAAAGGCACGGAGAA
CCCGCCGTTCCACACACCCCTCCACGCCAGCACCTCGTGCACCCAGAGTG
ACTCTCCCACGAAGAGTTTCAGCGGCGGTTGCTGTGTTGGTTCTCACGAC
GGCGCGAAGGGTAAGGGGAAGAACAGGGGGCACCCAGGGTGGGCGTTCCC
GGTGTCCGGTGTCCGGCTGGTGCCCAAAGCCAACGGGGTGCGGGCCATCG
TGAATCTATCCAAGAGGGCGTGGGTGGACCGCGGGCGCGTGCAGTGGGTC
AAGGGCGTCCCTCTACCGGTATGGAAACGTTCGCCTCATCGTTCCAGCGT
TTTCGGTTGGCTCCGCTTTCAAAAATCAGGGAAGTTTGCCCATTTTGTGT
GTCAGGTGTTGTGTCTGCTGCGTTTTTTTGCGTTATGTGTTCGACGGTTT
GCTGCCGCTCGCGTGCGATCGCTTTGCCCATGTGCGTTGCTGGTGGGTTG
GCGTTACTTTACAGCAATTCGTATTGAACCTTGATGGTTAATATATTTCT
TATTTTGGCGTCCGAATTGTCAAGTCAAGAACTCTGCATCGTCGGCGTCT
TTGAAAATGCAGTCGCGTAGGTTCCAATGCAGAAAGTACGGGTAGTCAAG
GATTACGGATCAAGGTGTGAGATTCAACCGTTCCTGCGCCTCCATCCCCA
CCCCGAGTGCCGAGAGTTTTCAAGGGCTCCTGGACTTGGGCCTTAAGGCT
GCTTCATAAGTCGGGAGGACGCGGGCATTCATCAGACGTCGTGTTTGGGT
TCTAAGGAGGTTATCGTGGTTTTCATTTCAGAGGGACAGTAGAAATTTCG
AGCTAGCGACGACAATGCATAAAGAGTGAAGTGACCCCCCTTTTGTACAC
AAGCAGCGTGGGAAACAGCAATTTCGCGCCTGTAACGAGCAAGAGACCCC
AACTTCTTTCGTCATGGCCTTTGAAACGGAAACACCTCCAGGCTCCGGGC
AGGATTTCCACATTGGAATCCACCAGCAGCACATCAAAAGCGCCTCCCGG
CGGGCCAGGGACGGGAGAGTCGAAGGAAACGCTTCAGGGGGTTGGCCGCC
CCCCAAGCAAGGAAGCGGGAGGAAGAGGGGGACGAGGAAGAGGAAAGTCG
ATCGGAGGGTGGGCGAGCCGTGGCAAGCCGGGAGGGCCGCCCGGGCCGTG
GGCGGGCAAAAGCGGCCGCACCCTTCTACCCTCTACCAACATGCAGCTCT
CCAATGCTTTCCATGTATGTGTTTTTTGTACTTCGAAGTATGTGTTTTGG
GGGGGCAGGGGAGTGGGGTAGATGCCGGTCTCTGTTACAGTTGAATGAAT
ATTGACCTTCATCTCCTTTTGCTCGTGAAGTTTGCGTTTGTCAGATCCCA
CGTAGTACGAGCGGTGGGTGGGGCGGGAGGGGCTGAGTCTTAAGCTCTAG
GGAGATTTGTTTCACCTTGAAACTCGTCTCATTTCTCATCTCGCTGCTGT
CTCTTCCCGATCAGTACACAGATTTCGCAGCACGTGGAAGCCCTGCAGTC
AACCTTGAGATGTCTCGAGGCATTGTCTCGCCTCCAAAGGCTCGTTTATT
TCAAACGTAAACAGGTCTTGAAGCACGAGTACACCAAGAAGCCGTCCCTG
GTGGGAGCCGGCGTCTTCGGGCTCGACGACGTCTTTGCCCGAATCAAGCC
CTTCGTGTCCAGCAACCTACGCCCTCTCCGCTCTCCACCTCCTCCTCCTC
TCGGCAGGCCGGGGGAAGGGCGGGGGCGTGCCGAAACGGGCGAACTGCCT
GCCCTGTACTTTGCGTCGGTAGACATCAAGCATTGCTATGACACCGTCGA
CCAGGTGAAAGGGGTTGTGTGCCTACCCCTCCCCTTCCCCTGCACCCCCC
TCGATGGTCTTCTCGTCCCTCAGGGAAAATGTTGCAGTGCTTGCGGCGGC
AAGGTGTACAGCTTGGGATCAGTGCCGGGGGAGTATTTTGATCGGAGAAA
AGAGATTCCGTGCCGTGCAAAGTATTGCATTTTTGTGGGCCGACTTTCGC
GTCGGCGTGTGATCACGGAACGCTGCGGAACGGGACAGAAGCCGTTTGCG
CCCCAGCCGGGATGGCTTGTCTTTGAGACCTGGTTGCACGGGTGCGATTC
ACGCTCTGTGGAGATGAGGATGAGAATCGCGTCGGTTTTCCTCTTGTATT
CTTGGTATTCGTTGGTAATCACTTGATTAATGTAGAGGATAGGATTACGC
GTCCTGCCCATTGGCCGGGAGTTCCTCGCTCACCGATTGACGCCGCGCTG
TCGGCCACAGCGCAGCGGGTGCAAGCTAGTCCGGCCAGTGGTCGGAATAC
CAATAGCTGGGTGGATGGGGTGGTCGCTTTCTCGCCCAGACTTGTATTTT
GAGTGCAAGTTGGAGGGGAAAGAGGGGAAAATGACAAGGGGTGAACTAAT
CCTCAAACATTCGGAATCACGCAAAGAGACACCTACCGTGCCGGAAATAG
TCCAGGTCGCTGAGCCCCCAAGTATGACATGCGTGAGGGAACGAGCTGCT
GTGAGGGCAACGCAAATATTAGGACTAACCGCGATTGATTCGTTGCCGAT
TTACTCTGCGCCTACTCTTTTCCGCGTAGGCTCGACTCATGGACATCGTC
CGGCCCGTGTTGACGTCGGAGGACTACGTGATCCAGAAATTCACAAAGGT
GCACCCGTTCAAGGCCATGGGAAGAGTGCAGGTGAGGCTGTTACAGCGCC
GGTTTGAACCCGGCGATGCCAGCAACGCAGACCATCTAAGCCCACATCCC
AAGGGCTTGCTTAGTTTATGACACGTGATTATCGCAATCGTTTCTTCGAG
CGAACGGCTCTAGAAATTCGAGCAACGCCACAGTACTCGCTATCATGTCT
GTTTCGATTTCAATTATGGTAGCGAATCCATGTACCCCGAAAGATCATTT
CTCTCCTCGCGATCGCTAAACTCCTTTTCGTTACGCGCAGTTGCACGGTT
CATCCCCTTGCTGTCGGACACAGGAGCCAAACCCATTGTGCTGCGGTAAT
TGATAGTCTTCAAACCGCAGGTTGCCGGGATTCGAACCTGTGAGCATGCG
CATCCCCCACCACCGTTGTTACCCCTACCCGTGCTCTTTTCACGTCGTGT
GTGGCTGTTGTTAGGTTGATCACGTCAAGGAGGCGGTGGCGATGGAGGAC
ATGCTGCAGTTTCAAACTCGGTGCGAGGAGCTGGCGGAAGAAAGCGTCGA
CACCATCTTCACAGATCAAGTTGTCTATGGCACCATCTCGAGGTACAAGG
AGTGCCGCTGCGCCCGAATTCCCTCGCACATTCGAGATCCAATGGTGATT
TGAAGGAGGGCTGCCAGTCAATATCGCCGTGGAAGACCTAGCAATGCAGC
AAACGCAGGATCTCGGACAGCAAAGAGAACATCCTTGCTTTGTGCTCTTG
TTCGCCTACCACAACGATCCACCTTGCCAAGGTTGATTGTACCGCGGTCC
ATGCCGCCCATATATATCAACAATTACTTGTGTAAGCGTGAGTCGCCCAT
TGCAACTTCCTCCCCCGCTGTTGTTCCACCGTTTCCATGGGCAAGCGCGA
AAACGCTGGTCAGAATAGAAAGTTTTGAACTTACCTAGCGGTCCCTTTTT
GTTTCTTAGAGACGACGTCCTGGATATGGTAGAGGACCACATCACGCACA
ACGTCGTCCGAGTGCCAGCTGCGGGAGGGTCTGGCAGAGGCGCCTACTTC
CAGCAAGTGGGTGTAGTACCAAATGCTTATCTTGAGTGCTGACCTTCGTG
GCTTTACGGGGGATGTATCACACGTGTTTCTTCAGGAGAAGTAGAGCTCT
TACTCCAACTGCGATTTGCCCACTATCATTGCCGCTTCCTTGTGTTCTAT
TCATGGAAAAACCAGCCGGAAATAGGCAACTTCACAAAATCCCGCAGCTG
TCCTCTGCTTTTACATGCCTTCTCCTTCACGTATGTTTTGTCTTGTAAAA
TCCAAACCGCTCGTAACGACGCACGCCTTGAGCCACGAGCTCTCTCGACC
TTTGACTCCCACTCTGTCACGTATTCCTTGTTCATGCACGGCACACCAGG
CGGTGGGTATTCCGCAGGGCTCGGTGGTCTCGGGCCTCTTGTGCAACCTC
TTCTTCGGCCACATCGAGAAACGCCTCTTGACGGACATTTTCGAGCCTCC
TCGCCATTCGCCCCTGCCCGCCGTTGCGCATCAACAAGAGGCTACGGCAA
GAGAAAGCGGAGTCGTGGGTCGTTGTGGCTACGGATGCGGGTGTGCAGGC
TATGCGAGGAGGTGCTGCGGCGCGGTCGAGGCGTCATCTTCCGGAAGCTG
CCGGCAGGAAGGGCGTTTGCCGTCGTCACTTACCGCGTCCGGCAGGAAGC
TAACAAGGAGAAGCCTAGAGACGGAGGGTGAAGACGAAGGACAAATTGGA
GTCGAAAGGGCCGAACGCGCAGGGGGGGGGATCTCCACTCTCTCGCACCC
CTCGCATGTATTGGCGCATGTTCGAGCGTCACAAGGATGGGCTGGACCGT
TGGGTGGCAGAGGGACAGAACCTGCTGTTGGCGAAGGCTTCGCCGGATCA
TCGTCGCAATTAGAGGCACAGCAGAACGCCAGCACCACTGGCTGGGGATC
AGGTGGTCAAGGTCACAATCCCTTTTGGCCTGGTCATGTTGACGTGAAGA
GGGAGTTTGTGGGCGGAGGGGAGACGGCGGAAAAGGAGAACGACAAGCGG
CCGTTCCCTGACCCCAAGGGCGACTGCACGCTGCTACGGCAAGTCGACGA
TTTTCTCCTGGTGAGTGATCTCGCACAAGCTGAGATCCGCATTACGTCAT
GGCGATGTCATGTCAATGTTCACTTCAGTTCCCCTCTGCGCGTGAAATGC
GCCATCGCTTAAGTCCGTACTCATTTGAGTAGTTACTTTGCACGATCCAA
CATTTTTTCCCTTCACATGGATCTAAATGGCCGAGTTCCGAACGCGGAAG
GCGAGCGGTACCTTAATGCTGCCGACACTAGAAGCCCTGCACTTCCCTGC
GCCATTTCTGCTGCCGATGCTTGAGACCTTGCCCTCACCCGCACTTGTAT
TCTCCTTGCATCTGTGTCCGGCTATACCAGATCTCAACGACCAAGGCAAA
GGCGGAGGCGTTCGTGCGGGTGATGCACGATACGACCAAGACGGGAGAAT
GGGGTTTCAGCGTGCACGAGGCAAAGGCAAGTTGATGTGTGCGCCCGCTT
GTTTTTGCCTCCCTGCCTTGTCTCTGCAGGTTTAAGAGCTGTTCCTACGT
GAGGGTGATTTGAACACCTCCACACCTATTCTGCAAATAAAATTTATGGA
CGCCCCTTGACCGTAGTTGATTCTCCCCGAAATTGTGCTCTCCAAGATAA
AGACGGGCTATAAAAAATGCCGCGCGATAGTCCTTCATGAAACTCTTTCA
TCGTCGCGAGAAGTTTGCTGGCTGTCACGTAGTGTTGCTGAGTAGCTCGA
CCTTCGTTCTGTTTAACAGTGCATGCAGCGAGTTGGTGTTGACCTGTGAA
GTCCCCGCAGGGGGCAACACTAGGGGAGCATTATCCTGAACACAATGTGA
ATCTGTTTCATTTTCATAGCGCAGTCCTTGTTTCAGGCCGGATGGAGTAG
ATAGTCTTATAGCCTCTATCCCCCCCGGTTATGCTCTGCACTCGGCCTCT
GCTTCAGACGGTGGTGAACTTCGACATGGTTTTGGAGCCCGGAGGACCTG
GGGCATCAGGTCAACAGGTGATTGGGTTTGATCGACACCGAACCGACACG
CTGAGGCGTGTCTTCATTTAATTTGTTTTATTTTCTCCGTGTTCGATATG
ATGCTTCAAGGCATGTTGCTTGCGTCAAGGGTGGTCACGTATCGACTTTA
AGCAACATGCGGGTTTGAGGCACACCAGTGGATTGGAGGTGCGCCTGTCA
AGCTAAACGTGGTGCGTGCAGCATTTGAGCCCTCGGATTGAATGCCCAGC
GTGCGTGGGAGAAAGACTCCACGGCTGAGCTCCATTTCGTTGCGAGCACG
CTTAAGGTCAATTTACAACAACCATTCGGTGAGGAGAAGGATTGCTTCAC
AGATCGTGCCGTTCCAAGACTACCCAGCATATTTTTGTTTCTTAAACACC
TTCGTAACGCCTGACTAGCAATTGAGTGCAAAAGACATTCTCGATCAGGA
CCTATCTGCGCATTGACTGAAAAGCTTACATTGCAAAGCTTATTTCGCCC
GCTAGCTCAACCATGCCCACGGCCCTTGCCTGCGCTGCGCTGAGTTTTGC
TAGCTCTGGTCCGTGGTCCTGCACACCCCGCTCTTGTCCTGAGTGTTCTC
AACCGTCTACCTTCTTAAAGAAACTTTGATCGAAATCTCGATGGGGAGTC
CGACGCGCACTGTGCTACTGTGTGGGAAAACTGAGCGACGAACGTCTCCT
TGCCGCGGTCACGTGGTTCGCGTAGGTGCGGCGTGTCGAAGGGGAAAGGG
TCGGGGAAGGGGATATGTTTCCCTGGTGCGGCATCCGTTTCAACACCAAG
ACATGCGAGGTTATGGCCAACTACTCCAGGCAAGCAAGTCAAGCGTCGTC
TCGCATGAAGGAAACGCTTTCTGCCCTACAGTCATGGTTAACGCAGACCT
TGACCCAGGAAGCACGCTGGAATGTCAGATGCGGTTTGGTGCAACGGAGG
CTACACTCTATGATTTGGTTGCCCGCTGCTGCCCGCATTTCTAATCTCTC
GCTGCTGCGCCGGCCTTTAAGCTTGATTGTTATGGGAATCGCGCTTCAAG
AGTCTCGAGTCATGTTTTGCCTGTGCCACTTTCTGATAACGATCTGCTTG
TCAGCTGAAAGGGCCTTGTTTTATGATGTACCCCTATGCAAACAAAATGA
CCCGCCTTGACAGCTTCGGCGATATAAACGACGATTTGGGTGCCTCATAT
GTGGGACAAGGTCATTTGTCGCTTGCTTTCCACCCTTTCCAATACCATTC
CGATGCGGTCTGCAGCAGGTTCTCCAAATCCAGCGTGTCAGAGTCTTTGA
CAGTGGAATCTAGACGCGCCGGCGCCTGCTTGCTGAGCAAGATGAAGAGG
TTCATGTCGCCCAAGTGCCACGCCCTCATGCTCGATGAGGGTGATCTCGG
AATCAACTCACGGAGCACCGTGCTGCTCAACGTGTAAGCATCGAAACGCG
GTTGTACATGCTTGCATGCCATTTTTTCTTGTTGAGTGCACCTAGTTTTT
TGCCTGTTTAAGGGTGGAGATCATCCCGATTAATCTGAGATATTCGCAGC
TGGAGATCGTTTGCAAGTTCGCATGAACTGTTTCCAAAGGAAAAACCTCC
TGAAATCATTCTTGCACAGTTCCCGCAGAAAGTTCCTCAGTGGCCCGTGG
TGGTGTGTCTTGGATCTGCCCTTTTCTTTTCTTCGTTTCTTGCCTTCGGT
TCCGCTGCTTTCGGTCCATTTCCCCGCGTCATCTACACTCTGAGAGGAAG
AGTTATAAAATCGCACAAGTTGCATTGCCTCTTGCTTCACTCGTCCTTCT
TCGGCTCGTGCCCGACATCTCGTGATCTCGTGTGCCGTAAGGTACGAGAT
GCTGCTGGTATGCGCAGCAAAAACAGCGGCGTCAGCTCTCCGGCTACCCC
AGGGGCCCGCGGGCAACGCATCCCTGCTCTCGAACGGTGCCCTGGAGACC
ACGGCGTACGCCTACAGCCTCATCCAGAGCCGCTCCAATAGACGGAAGGG
AAGTTTTGGCTCCCCAAAAGGGGTGCGGTGCGTCTGCAAGGTGACGAGAA
GGACTTACTGTTGAATTGCGAAGAAACCGATGCCAGCGGTTGGAGAAAGC
CTTGGGTCCCAAACGCCCGATGGAATGTGGCTCAGGAATCACTGGTGGAT
CATGTCCTTGATCTTGTCTCGGACATAACCGCAATGTCAAATGCGAACAA
ATTTCGTCGCACAGGCCGCCCTAGATGCAAGTTCGCAAGGAGCAGGGCAA
ATCACATTATGCTAAGCGAGATTCGCACTCGATTGCAGCTCTTTTGTGCT
AGCGAAGCGATGGCGGCGATCTCCTCTCGCCGAAGATGAGAACGGTTTCC
TGAGATGCTTGGCATTGGTACGAAGACATAATTTTCGAGAAAAATACCCG
CAATATCCTTGTGCGCAAAGGCGGACCTGCCTTTTGAAAGGCCCGATGTC
GATAAGAAAAATGATTCGCTGTTGGTGTTGAAGCAAAATATACCCGCCAA
TGTTGATCTCGATCGTCCCTTGCCCTCCCTCAACCCAACCACGCCGCAAC
ATGGAACACCACGGCGCTTTTTTGGAACTCAGATATCAGTCTTATGGGCA
AGTTATACTAACGGTTGCTGTGACACCGTAAGCCCCGCGCCGTACCGAAG
AGGTACTGTCAACAATACCCTGAAAGACGACTGTTTCAGTCGGCATGCCG
AGCGCGCCACTTATTTCCCGCCCCTCCGCCCCTCCGCCCCGATCTCTGCA
TTTTGAGCCAGGTTAATCGATTTGAGGTTACTTGGCTGGGCCTGCATGCC
TTCAGGGAAGTTTTTGGCGCTTTCTCGAGGAAGGACCGCGGGTTCATGCG
CTGCAAGCTGGACATGGAGAAGGCTCTCAAAGAATCCGCTCGGTTGGTAG
GGGGCGTCGACGGGAATAGCAGCCAGGTGTTTCGGGAAACCCGGAAGGAG
GACGAGGAGAAGGAGGAGGAGGAGGAGAGGAGAACGAAGGATTCGAGCGA
GAGTATAGCAGCGGGCGCCGCGAAGAGTGCTCGGCGCGGTCGGGCGATGA
ACCGTCTCGAGCATGTCGTGCGGTCCCCAGATGCGTTAGGGTTGTTGCGC
ACGCTCACGACGTGATAAGTTTCGGAAGGCCAAACGCACGCGTGGTCTAT
CGAACAGTCGTTGGCCGCCCCACAAGGCACCCCGCACTAAACTGCGAGAA
CCTCTTGCCTCTCTCAAGGTGAGGGTTGCCGCACTGCCCAACTTATTTAT
GACCAAGCGCTCGCGTGCGCGCACTCGATGCCACCTGTTGTTCTTCTCCC
AATTGAGCGGGCGAAATCTGCAAAGCATGTAAAACCCAGTGCCGGCTCCG
TCGGGTGTTTATTTCGTTCTGGCTTGTAGACGGGGAGTGTGTCTCCTTTT
GCATTTCTTTACGTTGTGTCTGTGGAGGTCAAAGTGGTGATTGAATCTGC
TTGGGGTAACTGGACGCCCTCCTGCGACGAAGATAAAGCTGTCCTGCAGC
TGGAGTAAAGTGCGAATCAAGGGAAGGCGTTCAAGTCCACTGGTGCCACT
CATGGCGGCGGTTCTCTATGTCCCCAGGAAGCCTATAAGCTACATAAGTT
TGGCTCCCCAACGGGAGCTGTGTGCGAAGAGGTCTCACCCGGATGGCCCG
GCACGCATGGGGGAAGACAAGAACGACAGGAGGAGTTTCGAGCAACTAAC
TGACGGGAAGGCATTCGTTGCGTTGATGCCGACAAGTAAAAAAAGCATCA
CACG back to topCoding sequence (CDS) from alignment at P-fluviatile_contig85:83190..100943- >mRNA_P-fluviatile_contig85.14892.1 ID=mRNA_P-fluviatile_contig85.14892.1|Name=mRNA_P-fluviatile_contig85.14892.1|organism=Porterinema fluviatile SAG_2381|type=CDS|length=12546bp|location=Sequence derived from alignment at P-fluviatile_contig85:83190..100943- (Porterinema fluviatile SAG_2381) ATGGCGCGACAGCAGACCGAGACGCCCTCTTCCGGGGGTGCGGGCAGCCT TGCTTCGGGGAAGAGCCAAGGTGCTGCCGGGCGCTGGATGTTGAAGCTCA TCTATCCGAATGCCGCCAGTCTCGATTTGTACCTCGAGGTTTGGTTGCGG CACATGTTGGCGGCAGCAGCGCCAGACTCGGCGGCCGCGGCCGCCATCAA CAGCGCCGGCGGGCCTGCCTGCTACCTCAGCCGCAAAAATGACGGGGCAG AGTACAAGAAGATGGCGCGACAGCAGACCGAGACGCCCTCTTCCGGGGGT GCGGGCAGCCTTGCTTCGGGGAAGAGCCAAGGTGCTGCCGGGCGCTGGAT GTTGAAGCTCATCTATCCGAATGCCGCCAGTCTCGATTTGTACCTCGAGG TTTGGTTGCGGCACATGTTGGCGGCAGCAGCGCCAGACTCGGCGGCCGCG GCCGCCATCAACAGCGCCGGCGGGCCTGCCTGCTACCTCAGCCGCAAAAA TGACGGGGCAGAGTACAAGAAGATGCTGAAGGAGACTTTCGTGGCCTACT GCCCCTCCGCGCCCACGGCGCCGGACGAAGCACACGCGCCGCTGCCGCGT CACGCGTCGCTCCAGCATCTTTCCTCCATGGCAGACCTATTGGATCGCGT GGTAAAGTCGCTCCTGCGCTGTTCAAGCATTGGGGCGCAGATGCTGAAGG AGACTTTCGTGGCCTACTGCCCCTCCGCGCCCACGGCGCCGGACGAAGCA CACGCGCCGCTGCCGCGTCACGCGTCGCTCCAGCATCTTTCCTCCATGGC AGACCTATTGGATCGCGTGGTAAAGTCGCTCCTGCGCTGTTCAAGCATTG GGGCGCAGGGGAACAGCAGCGGCGGATACTCTGCAGGCCAAGGGGGAGAC GACCCCCGCCGCAATATCCTCTCCCTCGGCTGTCGCGTAGCAGGCCCGCA GGCAACGAGCGAGCTGCTGAGCGTGCAAGGCGTGGCGTGTGCCTTCCCCA ATACAACGGTCAATGTCATCCGGTCGCCGCCGTGGGAGCTGCTGCTGTCT AGAATAGGGGACGATTTGATGTTTGCGCTCCTGAGGCAGCATGCCGTGTT GCAACGGATGCCCAACCGCTGCTACATGCAGGCAAGTTTTGCTCTCAGCA GCAAGGGACAAGCCAGCATTGGGAACAGCAGCGGCGGATACTCTGCAGGC CAAGGGGGAGACGACCCCCGCCGCAATATCCTCTCCCTCGGCTGTCGCGT AGCAGGCCCGCAGGCAACGAGCGAGCTGCTGAGCGTGCAAGGCGTGGCGT GTGCCTTCCCCAATACAACGGTCAATGTCATCCGGTCGCCGCCGTGGGAG CTGCTGCTGTCTAGAATAGGGGACGATTTGATGTTTGCGCTCCTGAGGCA GCATGCCGTGTTGCAACGGATGCCCAACCGCTGCTACATGCAGGCAAGTT TTGCTCTCAGCAGCAAGGGACAAGCCAGCATTCTCGTCGGGCGTCCGGTA CCTGACCGCTGCCGCCATCTAGGCCTTACCACCAGCGCACTGTCATCCGC AGCTATTGCAGATGCACCAACTAGCACAACTGCCTCCAAGGCAGTCCACA CCGACCGAGCCGGTGCTCCTCCCAAGGGCTCGATGCTCAGTAGAAAGAGA CAGCGTCGACACGGGCAGACTACCAGGAGCTGCATTGGGAGCATCGGCAT GTCGTCGTGGGCGTTGTGTGCAGGCCCGAACGCGACATCTGGGACCCCGG CCCCATCCACCTCGGCTGTTGCTGCTGTAAACAATGTGCCCGGACGAAGC GGTGCCGGAGGACCAGCGGGAAGTATTGGTCGGCCTGGTGTTCGGCGGCC CGCAGTGCTCCTGCCGCGGCAGCCTCGTCGGGCGTCCGGTACCTGACCGC TGCCGCCATCTAGGCCTTACCACCAGCGCACTGTCATCCGCAGCTATTGC AGATGCACCAACTAGCACAACTGCCTCCAAGGCAGTCCACACCGACCGAG CCGGTGCTCCTCCCAAGGGCTCGATGCTCAGTAGAAAGAGACAGCGTCGA CACGGGCAGACTACCAGGAGCTGCATTGGGAGCATCGGCATGTCGTCGTG GGCGTTGTGTGCAGGCCCGAACGCGACATCTGGGACCCCGGCCCCATCCA CCTCGGCTGTTGCTGCTGTAAACAATGTGCCCGGACGAAGCGGTGCCGGA GGACCAGCGGGAAGTATTGGTCGGCCTGGTGTTCGGCGGCCCGCAGTGCT CCTGCCGCGGCAGCTGCACGCCGCACCGTACCCCCCGAGCGCCGGCCGAA GCACGAACGCCGACCGAAGCACGAACGCCGACCGAGACGCCGCCTCCTAT GCCGCCGCCGCCACTGTGACAGGAGTGGCCCGCAGTTTGGTGATCGACGC GTTTGTTCACCCGTTTGACGGTTTCAGCTCAGGCCAGCAGCAGGAGCAGC AGCAGCAGCATCGCTCGGTTGGCGGAACGAGCTCGCAGAGCGGTAGATCT GAGGTGCTGCGGCGGAGGGGTTCGAGATTGGCACCGCCTTCAGCCCGGGG AGCGGGGATGGGAGCCAAGGCGGGGGTGCGACTTCCGCTGCCGAAGCGAT TGCGACGGGCCGTGCCGCTGTTCGAACAGATGGTCGGGAGAGCTCGCCGC TGCAAGTTCGGGAGGCTGTTGGAGGCCCACTGCCCTCTACCGGCATCAGT GCGCAACGCGAAGCCTGAGCAACCTGCTGCCGGGGGGAGGGGTGCACGCC GCACCGTACCCCCCGAGCGCCGGCCGAAGCACGAACGCCGACCGAAGCAC GAACGCCGACCGAGACGCCGCCTCCTATGCCGCCGCCGCCACTGTGACAG GAGTGGCCCGCAGTTTGGTGATCGACGCGTTTGTTCACCCGTTTGACGGT TTCAGCTCAGGCCAGCAGCAGGAGCAGCAGCAGCAGCATCGCTCGGTTGG CGGAACGAGCTCGCAGAGCGGTAGATCTGAGGTGCTGCGGCGGAGGGGTT CGAGATTGGCACCGCCTTCAGCCCGGGGAGCGGGGATGGGAGCCAAGGCG GGGGTGCGACTTCCGCTGCCGAAGCGATTGCGACGGGCCGTGCCGCTGTT CGAACAGATGGTCGGGAGAGCTCGCCGCTGCAAGTTCGGGAGGCTGTTGG AGGCCCACTGCCCTCTACCGGCATCAGTGCGCAACGCGAAGCCTGAGCAA CCTGCTGCCGGGGGGAGGGGTTCCCTTCGACCTGCCGCAGGGAAATCACC AGCAGGCTTGACGGGGGCCCAGGTCGAAGCTCCGTACCAGCCGAGCCCCT CAAATGCTTCTACGCTGTTCGAAGGGACTCATTTCTCCGGCGACGGCGTA GACCGTGCTTCGGTCAACGCTTTGCCACAAGGAGGTAACAGCGGCGATGG GTATGGTGACAATGACGGAGGTGAGGCGGAGAACATCGAAGGGCGAGATT CCCTTCGACCTGCCGCAGGGAAATCACCAGCAGGCTTGACGGGGGCCCAG GTCGAAGCTCCGTACCAGCCGAGCCCCTCAAATGCTTCTACGCTGTTCGA AGGGACTCATTTCTCCGGCGACGGCGTAGACCGTGCTTCGGTCAACGCTT TGCCACAAGGAGGTAACAGCGGCGATGGGTATGGTGACAATGACGGAGGT GAGGCGGAGAACATCGAAGGGCGAGAGGGAGGGGAAGGAGAGGATGCGAT GGATGAAGATCAAGATCACGATGAAAGCGGGTCGACTTTGAAGGAATTAT GTGCCGACGCTGGCTCTCTCGCAGTGGGCAGCAGTAGCAGCCACCACGGC GGCGGAATGTTGAGTGCTGCCGCCAATGCTGCGGAAGCGAGCGAGATTGC CAGCATTAGTAGCAGCAGCAACAGCAGGAGAAGCAGAAGCATCGGGACGC CTACCGCGCGTGAGACCAAGCGACGGCGACTCTTGAGAGCCGATTCTACC GACGCGCTTTCGAGTGAACCAGATTCTGTAGAATTGGGGAGGGGAAGGAG AGGATGCGATGGATGAAGATCAAGATCACGATGAAAGCGGGTCGACTTTG AAGGAATTATGTGCCGACGCTGGCTCTCTCGCAGTGGGCAGCAGTAGCAG CCACCACGGCGGCGGAATGTTGAGTGCTGCCGCCAATGCTGCGGAAGCGA GCGAGATTGCCAGCATTAGTAGCAGCAGCAACAGCAGGAGAAGCAGAAGC ATCGGGACGCCTACCGCGCGTGAGACCAAGCGACGGCGACTCTTGAGAGC CGATTCTACCGACGCGCTTTCGAGTGAACCAGATTCTGTAGAATTGGACG AGCCGGGCGTCTGCACCGGCGGGTCGAGCGTGGGAGGGAGGGCCGAGGAA ATTGCCTCTGACGCCGCCACCCTTCTCGAAGGACGAGCCGGGCGTCTGCA CCGGCGGGTCGAGCGTGGGAGGGAGGGCCGAGGAAATTGCCTCTGACGCC GCCACCCTTCTCGAAGGAACCGATCTCGCCCCTGTTTTTTCACATCTCGT TTCGGCACTTGCAGCAGGAGACAGTACAAGGGTCCCTCCTCCCGAAGGGC GAAACGTCCACGACACAAGCCACCAACACGATTCGTCATTCAGCATGGAT CCCTGCATGACGTTCATCGATATGGCCACCGAACACCGTCGCGTGATTGA CTTCCTTTGCCAAGCATGCCACAGGGAACCGATCTCGCCCCTGTTTTTTC ACATCTCGTTTCGGCACTTGCAGCAGGAGACAGTACAAGGGTCCCTCCTC CCGAAGGGCGAAACGTCCACGACACAAGCCACCAACACGATTCGTCATTC AGCATGGATCCCTGCATGACGTTCATCGATATGGCCACCGAACACCGTCG CGTGATTGACTTCCTTTGCCAAGCATGCCACAGGATCTTCCCCACAGAGT TGTGGGGATCAAAGCACAACATGGTGTGCCTAGCCCGAGCCATCGAGCGG TTCGTCGTTCTTCGGAGGCACGAAAGCATGTCGGTGCTGGAGATCTTCCC CACAGAGTTGTGGGGATCAAAGCACAACATGGTGTGCCTAGCCCGAGCCA TCGAGCGGTTCGTCGTTCTTCGGAGGCACGAAAGCATGTCGGTGCTGGAG GCAACAGCAGGCATGCGCACGTCGGACCTAGAGTGGATGTCCCTGGGTGG TGACGATTGTCATGATGATGATGTCACCCACGCCTCCAGTGCCAAGGCTC CGACGCGGAAACAGAACGGAGGTTCGAGACCGCCGATTCACGAGACTTCA CCAGACCGGTGCAATGGCGAAAGAAAAGTCGCTGTGAGAATGTCGATGTT GCCTGCTTTGGTGGTGCAGGAGAGAAGGGCGAAATATTCCGCCTTGAGCC GCGGGTCCGCCGCAACTGCTTGTGGGTATGACCATTCGAGTTCGGAAGCG AGAGTGGCTGCTTCGAGGGCGGGGATGCTGCCTACTCGCTCGGGAGCCGG TACGGTGGAGGCAGAGACAGCAGGGGGCAGAGGACTATGCAAACGACCAA GAGAGAGTGGGGGCGGTGTCGCTGCTGCGGCTGGCGCCAGAAGCGACTCG CGTACGAGCAAAGGTAAGGCACGACCCGGCAGCAGGAGCACAGCGCAAGC GGGTGTCCGAAAGCCTGTAGGCCAACACAGGCGACGAGGCGGTGCGGGGA AAGGCGGGGAGAGGCGAGGCAGGGGCAACAGCTGGAGCAAGGTGGCAGCT TCGAAGGGCGGCAACGGCAACGGTAGCGGCAAAAAGGCACGCCTTCCTCC AAGCGACCTGGCAAAGCGGACTCAGCTTTTGGAGGCGTTGGTACTCTGGA CGTTCAGAGACGTGATCGTGCCGCTGGCAACAGCAGGCATGCGCACGTCG GACCTAGAGTGGATGTCCCTGGGTGGTGACGATTGTCATGATGATGATGT CACCCACGCCTCCAGTGCCAAGGCTCCGACGCGGAAACAGAACGGAGGTT CGAGACCGCCGATTCACGAGACTTCACCAGACCGGTGCAATGGCGAAAGA AAAGTCGCTGTGAGAATGTCGATGTTGCCTGCTTTGGTGGTGCAGGAGAG AAGGGCGAAATATTCCGCCTTGAGCCGCGGGTCCGCCGCAACTGCTTGTG GGTATGACCATTCGAGTTCGGAAGCGAGAGTGGCTGCTTCGAGGGCGGGG ATGCTGCCTACTCGCTCGGGAGCCGGTACGGTGGAGGCAGAGACAGCAGG GGGCAGAGGACTATGCAAACGACCAAGAGAGAGTGGGGGCGGTGTCGCTG CTGCGGCTGGCGCCAGAAGCGACTCGCGTACGAGCAAAGGTAAGGCACGA CCCGGCAGCAGGAGCACAGCGCAAGCGGGTGTCCGAAAGCCTGTAGGCCA ACACAGGCGACGAGGCGGTGCGGGGAAAGGCGGGGAGAGGCGAGGCAGGG GCAACAGCTGGAGCAAGGTGGCAGCTTCGAAGGGCGGCAACGGCAACGGT AGCGGCAAAAAGGCACGCCTTCCTCCAAGCGACCTGGCAAAGCGGACTCA GCTTTTGGAGGCGTTGGTACTCTGGACGTTCAGAGACGTGATCGTGCCGC TGGTTCGGTCGCTGTTTTTCGTCACGGAGTGCGAAACCGCGTCCCAGCAG GTGTTCTTCTTCCGCAAGCCGGTTTGGGCAAATTTCAGGTTCGGTCGCTG TTTTTCGTCACGGAGTGCGAAACCGCGTCCCAGCAGGTGTTCTTCTTCCG CAAGCCGGTTTGGGCAAATTTCAGGTCGGCGTCGCTTCGGCACCTCACGG CGCGACAGTACCGCCGGATCACCGCGCAGGAAGCCTTCCGGAGGAGCGAC GGTAGTCCCACCGCGGAACGAAAGAAAGGCACGGAGAACCCGCCGTTCCA CACACCCCTCCACGCCAGCACCTCGTGCACCCAGAGTGACTCTCCCACGA AGAGTTTCAGCGGCGGTTGCTGTGTTGGTTCTCACGACGGCGCGAAGGGT AAGGGGAAGAACAGGGGGCACCCAGGGTGGGCGTTCCCGGTGTCCGGTGT CCGGCTGGTGCCCAAAGCCAACGGGGTGCGGGCCATCGTGAATCTATCCA AGAGGGCGTGGGTGGACCGCGGGCGCGTGCAGTGGGTCAAGGGCGTCCCT CTACCGGTCGGCGTCGCTTCGGCACCTCACGGCGCGACAGTACCGCCGGA TCACCGCGCAGGAAGCCTTCCGGAGGAGCGACGGTAGTCCCACCGCGGAA CGAAAGAAAGGCACGGAGAACCCGCCGTTCCACACACCCCTCCACGCCAG CACCTCGTGCACCCAGAGTGACTCTCCCACGAAGAGTTTCAGCGGCGGTT GCTGTGTTGGTTCTCACGACGGCGCGAAGGGTAAGGGGAAGAACAGGGGG CACCCAGGGTGGGCGTTCCCGGTGTCCGGTGTCCGGCTGGTGCCCAAAGC CAACGGGGTGCGGGCCATCGTGAATCTATCCAAGAGGGCGTGGGTGGACC GCGGGCGCGTGCAGTGGGTCAAGGGCGTCCCTCTACCGGCTCCGGGCAGG ATTTCCACATTGGAATCCACCAGCAGCACATCAAAAGCGCCTCCCGGCGG GCCAGGGACGGGAGAGTCGAAGGAAACGCTTCAGGGGGTTGGCCGCCCCC CAAGCAAGGAAGCGGGAGGAAGAGGGGGACGAGGAAGAGGAAAGTCGATC GGAGGGTGGGCGAGCCGTGGCAAGCCGGGAGGGCCGCCCGGGCCGTGGGC GGGCAAAAGCGGCCGCACCCTTCTACCCTCTACCAACATGCAGCTCTCCA ATGCTTTCCATGCTCCGGGCAGGATTTCCACATTGGAATCCACCAGCAGC ACATCAAAAGCGCCTCCCGGCGGGCCAGGGACGGGAGAGTCGAAGGAAAC GCTTCAGGGGGTTGGCCGCCCCCCAAGCAAGGAAGCGGGAGGAAGAGGGG GACGAGGAAGAGGAAAGTCGATCGGAGGGTGGGCGAGCCGTGGCAAGCCG GGAGGGCCGCCCGGGCCGTGGGCGGGCAAAAGCGGCCGCACCCTTCTACC CTCTACCAACATGCAGCTCTCCAATGCTTTCCATGTCTTGAAGCACGAGT ACACCAAGAAGCCGTCCCTGGTGGGAGCCGGCGTCTTCGGGCTCGACGAC GTCTTTGCCCGAATCAAGCCCTTCGTGTCCAGCAACCTACGCCCTCTCCG CTCTCCACCTCCTCCTCCTCTCGGCAGGCCGGGGGAAGGGCGGGGGCGTG CCGAAACGGGCGAACTGCCTGCCCTGTACTTTGCGTCGGTAGACATCAAG CATTGCTATGACACCGTCGACCAGGTCTTGAAGCACGAGTACACCAAGAA GCCGTCCCTGGTGGGAGCCGGCGTCTTCGGGCTCGACGACGTCTTTGCCC GAATCAAGCCCTTCGTGTCCAGCAACCTACGCCCTCTCCGCTCTCCACCT CCTCCTCCTCTCGGCAGGCCGGGGGAAGGGCGGGGGCGTGCCGAAACGGG CGAACTGCCTGCCCTGTACTTTGCGTCGGTAGACATCAAGCATTGCTATG ACACCGTCGACCAGGCTCGACTCATGGACATCGTCCGGCCCGTGTTGACG TCGGAGGACTACGTGATCCAGAAATTCACAAAGGTGCACCCGTTCAAGGC CATGGGAAGAGTGCAGGCTCGACTCATGGACATCGTCCGGCCCGTGTTGA CGTCGGAGGACTACGTGATCCAGAAATTCACAAAGGTGCACCCGTTCAAG GCCATGGGAAGAGTGCAGGTTGATCACGTCAAGGAGGCGGTGGCGATGGA GGACATGCTGCAGTTTCAAACTCGGTGCGAGGAGCTGGCGGAAGAAAGCG TCGACACCATCTTCACAGATCAAGTTGTCTATGGCACCATCTCGAGGTTG ATCACGTCAAGGAGGCGGTGGCGATGGAGGACATGCTGCAGTTTCAAACT CGGTGCGAGGAGCTGGCGGAAGAAAGCGTCGACACCATCTTCACAGATCA AGTTGTCTATGGCACCATCTCGAGAGACGACGTCCTGGATATGGTAGAGG ACCACATCACGCACAACGTCGTCCGAGTGCCAGCTGCGGGAGGGTCTGGC AGAGGCGCCTACTTCCAGCAAAGACGACGTCCTGGATATGGTAGAGGACC ACATCACGCACAACGTCGTCCGAGTGCCAGCTGCGGGAGGGTCTGGCAGA GGCGCCTACTTCCAGCAAGCGGTGGGTATTCCGCAGGGCTCGGTGGTCTC GGGCCTCTTGTGCAACCTCTTCTTCGGCCACATCGAGAAACGCCTCTTGA CGGACATTTTCGAGCCTCCTCGCCATTCGCCCCTGCCCGCCGTTGCGCAT CAACAAGAGGCTACGGCAAGAGAAAGCGGAGTCGTGGGTCGTTGTGGCTA CGGATGCGGGTGTGCAGGCTATGCGAGGAGGTGCTGCGGCGCGGTCGAGG CGTCATCTTCCGGAAGCTGCCGGCAGGAAGGGCGTTTGCCGTCGTCACTT ACCGCGTCCGGCAGGAAGCTAACAAGGAGAAGCCTAGAGACGGAGGGTGA AGACGAAGGACAAATTGGAGTCGAAAGGGCCGAACGCGCAGGGGGGGGGA TCTCCACTCTCTCGCACCCCTCGCATGTATTGGCGCATGTTCGAGCGTCA CAAGGATGGGCTGGACCGTTGGGTGGCAGAGGGACAGAACCTGCTGTTGG CGAAGGCTTCGCCGGATCATCGTCGCAATTAGAGGCACAGCAGAACGCCA GCACCACTGGCTGGGGATCAGGTGGTCAAGGTCACAATCCCTTTTGGCCT GGTCATGTTGACGTGAAGAGGGAGTTTGTGGGCGGAGGGGAGACGGCGGA AAAGGAGAACGACAAGCGGCCGTTCCCTGACCCCAAGGGCGACTGCACGC TGCTACGGCAAGTCGACGATTTTCTCCTGGCGGTGGGTATTCCGCAGGGC TCGGTGGTCTCGGGCCTCTTGTGCAACCTCTTCTTCGGCCACATCGAGAA ACGCCTCTTGACGGACATTTTCGAGCCTCCTCGCCATTCGCCCCTGCCCG CCGTTGCGCATCAACAAGAGGCTACGGCAAGAGAAAGCGGAGTCGTGGGT CGTTGTGGCTACGGATGCGGGTGTGCAGGCTATGCGAGGAGGTGCTGCGG CGCGGTCGAGGCGTCATCTTCCGGAAGCTGCCGGCAGGAAGGGCGTTTGC CGTCGTCACTTACCGCGTCCGGCAGGAAGCTAACAAGGAGAAGCCTAGAG ACGGAGGGTGAAGACGAAGGACAAATTGGAGTCGAAAGGGCCGAACGCGC AGGGGGGGGGATCTCCACTCTCTCGCACCCCTCGCATGTATTGGCGCATG TTCGAGCGTCACAAGGATGGGCTGGACCGTTGGGTGGCAGAGGGACAGAA CCTGCTGTTGGCGAAGGCTTCGCCGGATCATCGTCGCAATTAGAGGCACA GCAGAACGCCAGCACCACTGGCTGGGGATCAGGTGGTCAAGGTCACAATC CCTTTTGGCCTGGTCATGTTGACGTGAAGAGGGAGTTTGTGGGCGGAGGG GAGACGGCGGAAAAGGAGAACGACAAGCGGCCGTTCCCTGACCCCAAGGG CGACTGCACGCTGCTACGGCAAGTCGACGATTTTCTCCTGATCTCAACGA CCAAGGCAAAGGCGGAGGCGTTCGTGCGGGTGATGCACGATACGACCAAG ACGGGAGAATGGGGTTTCAGCGTGCACGAGGCAAAGATCTCAACGACCAA GGCAAAGGCGGAGGCGTTCGTGCGGGTGATGCACGATACGACCAAGACGG GAGAATGGGGTTTCAGCGTGCACGAGGCAAAGACGGTGGTGAACTTCGAC ATGGTTTTGGAGCCCGGAGGACCTGGGGCATCAGGTCAACAGACGGTGGT GAACTTCGACATGGTTTTGGAGCCCGGAGGACCTGGGGCATCAGGTCAAC AGGTGCGGCGTGTCGAAGGGGAAAGGGTCGGGGAAGGGGATATGTTTCCC TGGTGCGGCATCCGTTTCAACACCAAGACATGCGAGGTTATGGCCAACTA CTCCAGGCAAGCAAGTCAAGCGTGCGGCGTGTCGAAGGGGAAAGGGTCGG GGAAGGGGATATGTTTCCCTGGTGCGGCATCCGTTTCAACACCAAGACAT GCGAGGTTATGGCCAACTACTCCAGGCAAGCAAGTCAAGCCGTGTCAGAG TCTTTGACAGTGGAATCTAGACGCGCCGGCGCCTGCTTGCTGAGCAAGAT GAAGAGGTTCATGTCGCCCAAGTGCCACGCCCTCATGCTCGATGAGGGTG ATCTCGGAATCAACTCACGGAGCACCGTGCTGCTCAACGTCGTGTCAGAG TCTTTGACAGTGGAATCTAGACGCGCCGGCGCCTGCTTGCTGAGCAAGAT GAAGAGGTTCATGTCGCCCAAGTGCCACGCCCTCATGCTCGATGAGGGTG ATCTCGGAATCAACTCACGGAGCACCGTGCTGCTCAACGTGTACGAGATG CTGCTGGTATGCGCAGCAAAAACAGCGGCGTCAGCTCTCCGGCTACCCCA GGGGCCCGCGGGCAACGCATCCCTGCTCTCGAACGGTGCCCTGGAGACCA CGGCGTACGCCTACAGCCTCATCCAGAGCCGCTCCAATAGACGGAAGGGA AGTTTTGGCTCCCCAAAAGGGGTGCGGTGCGTCTGCAAGGTACGAGATGC TGCTGGTATGCGCAGCAAAAACAGCGGCGTCAGCTCTCCGGCTACCCCAG GGGCCCGCGGGCAACGCATCCCTGCTCTCGAACGGTGCCCTGGAGACCAC GGCGTACGCCTACAGCCTCATCCAGAGCCGCTCCAATAGACGGAAGGGAA GTTTTGGCTCCCCAAAAGGGGTGCGGTGCGTCTGCAAGGTTAATCGATTT GAGGTTACTTGGCTGGGCCTGCATGCCTTCAGGGAAGTTTTTGGCGCTTT CTCGAGGAAGGACCGCGGGTTCATGCGCTGCAAGCTGGACATGGAGAAGG CTCTCAAAGAATCCGCTCGGTTGGTAGGGGGCGTCGACGGGAATAGCAGC CAGGTGTTTCGGGAAACCCGGAAGGAGGACGAGGAGAAGGAGGAGGAGGA GGAGAGGAGAACGAAGGATTCGAGCGAGAGTATAGCAGCGGGCGCCGCGA AGAGTGCTCGGCGCGGTCGGGCGATGAACCGTCTCGAGCATGTCGTGCGG TCCCCAGATGCGTTAGGGTTGTTGCGCACGCTCACGACGTGAGTTAATCG ATTTGAGGTTACTTGGCTGGGCCTGCATGCCTTCAGGGAAGTTTTTGGCG CTTTCTCGAGGAAGGACCGCGGGTTCATGCGCTGCAAGCTGGACATGGAG AAGGCTCTCAAAGAATCCGCTCGGTTGGTAGGGGGCGTCGACGGGAATAG CAGCCAGGTGTTTCGGGAAACCCGGAAGGAGGACGAGGAGAAGGAGGAGG AGGAGGAGAGGAGAACGAAGGATTCGAGCGAGAGTATAGCAGCGGGCGCC GCGAAGAGTGCTCGGCGCGGTCGGGCGATGAACCGTCTCGAGCATGTCGT GCGGTCCCCAGATGCGTTAGGGTTGTTGCGCACGCTCACGACGTGA back to top
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