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Homology
BLAST of mRNA_P-fluviatile_contig13.1967.1 vs. uniprot
Match: D8LT97_ECTSI (Formin-like 2 n=1 Tax=Ectocarpus siliculosus TaxID=2880 RepID=D8LT97_ECTSI) HSP 1 Score: 669 bits (1727), Expect = 5.390e-209 Identity = 577/873 (66.09%), Postives = 625/873 (71.59%), Query Frame = 1
Query: 1 MVAAKDHPDFEKYFKMLKMGLPREAALHKMTQDGVDQAILDTPDAMVPLGPA---AGTAATGGGIPSPPPLPGMXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXRXXXMXXPLPGMPRG-------------------PGXXXXXXXXXXXXXXXXXXXRG-----------------LVAPPPRGL------------PKKPKDKRRKLHWKTIPKARLQQAEETVWGAAEVNNDISDIKIDLEEFEELWVEKADKVAEKQKLDEAKKNDSKKKDGPKLISLLDGKRAMNTSIAIARIKLTHAETRQAIMDMDENALSSNVVQSLQEFMPTTDEEKVLLSYNGDLKLLGTAEKFMLEMIKVPKREQRLQGMLYKQLLQGRQEDMRSMAGLINSACLDVRLSRRLKKLLGIILKLGNQLNEGQTTGFTLDSLLKLNTAKAFDRKTSILHYLVMLARRNDPSLLDFKDDLKHVFPASRLLISTVTTELNDLEKGYASLKRLVEGDPNLRPPTPMRSP-----VPPSPAHLTRSPSAVSNGGGSTDGAGSTT----LYSNRSEKVASLSRQKTENRKTTATTGKVILHFDRARHA-----VGGGEGGGDGTT-----------------------ERVSRSGWIAPGLACCSLPMPRGLRAXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXSSKSSTSSASDGMXXXXXXXXXXXXXXXXXXXAPGKRSPPPPPTPGRTXXXXXKKIDKREALGLWMRSVEDELKASKTLVEEMQSNFAGALSYFGEDPELTPQEFFTTLHSFIKAFDEARAYVDRQAEK 2355
MVAAKDHPD++KYFKMLKMGLPR AAL KM +G DQAILDTPDA+VPL PA A A G GIP+PP LPGMXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXX XXX XX G XXXXXXXXXXXXXXXXXX RG A PPRG PKKPKDKRRKLHWKTIP ARLQ+ E ++W EV +DI+IDLEEFEELWVEKA+KVA K+KLDEAKK D KK + PK ISLLDGKRAMNTSIAIARIK+T+AETRQA+M+MDE LSSNV+QSLQEFMPTT+EEK LL+YNGD LLG AEKFMLEMIKVPKRE RL+GML+KQLLQ RQ+DMRSMAGLINSACLDVRLSRRLKKLLGIILKLGNQLNEGQTTGFTLDSLLKLNTAKAFD+KTSILHYLVMLARRNDP+LLDFKDDLKHVFPASRLLISTVT EL+DL KGYAS KRLVEGDPNLRP P SP PPS L S+RSEK+A+LSRQKT NR++ GK I++FD A A + G+ + T + + SGW GLA CSLPMPRGL + XXXXXXXXXX + XXXXXXXXXXXXXXXXAPGKRSPPPP TPGRT KK++ REALG+WM+ E+EL AS+TLVEEMQSNF+GALSYFGEDPELTPQEFFTTLHSFIKAFDEARAYVDRQA+K
Sbjct: 1946 MVAAKDHPDYQKYFKMLKMGLPRGAALQKMATEGKDQAILDTPDALVPLAPAPSPATDATPGKGIPTPPLLPGMXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXGGGGXXXXXXXXGSGXXXIXXXXXXXXXXXXXXXXXXXXXXXARGPAXXXXXXXXXXXXXXXXXALPPRGPGGMARXXXRPAGPKKPKDKRRKLHWKTIPHARLQKTE-SIWMETEV---ATDIQIDLEEFEELWVEKAEKVAPKKKLDEAKKKDVKK-EAPKEISLLDGKRAMNTSIAIARIKMTYAETRQAVMNMDETVLSSNVLQSLQEFMPTTEEEKTLLNYNGDPALLGNAEKFMLEMIKVPKRELRLKGMLFKQLLQARQDDMRSMAGLINSACLDVRLSRRLKKLLGIILKLGNQLNEGQTTGFTLDSLLKLNTAKAFDKKTSILHYLVMLARRNDPTLLDFKDDLKHVFPASRLLISTVTAELSDLNKGYASFKRLVEGDPNLRPRPPEASPKGGAGAPPSXXXXXXXXXXXXXXXXXXXXXXXXXXXXXLSSSRSEKLATLSRQKTHNRESKCNAGKTIINFDMATEAGRAAALKAGQSASELETIPEASSXXXXXXXXXXXXXXXXXXKGTESGWFGQGLAKCSLPMPRGLVSGSDEPRAPSGGGGKRISKXXXXXXXXXXSSL-----APKVLPPVEAVRWIAXXXXXXXXXXXXXXXXAPGKRSPPPPVTPGRTPKKSPKKLEPREALGVWMKHAEEELAASETLVEEMQSNFSGALSYFGEDPELTPQEFFTTLHSFIKAFDEARAYVDRQAKK 2808
BLAST of mRNA_P-fluviatile_contig13.1967.1 vs. uniprot
Match: A0A6H5JR06_9PHAE (FMN protein n=1 Tax=Ectocarpus sp. CCAP 1310/34 TaxID=867726 RepID=A0A6H5JR06_9PHAE) HSP 1 Score: 630 bits (1624), Expect = 2.370e-194 Identity = 576/996 (57.83%), Postives = 619/996 (62.15%), Query Frame = 1
Query: 1 MVAAKDHPDFEKYFKMLKMGLPREAALHKMTQDGVDQAILDTPDAMVPLGPAAGTAAT---GGGIPSPPPLPGMXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXX-----------------------------RXXXMXXPLPGMPRGPGXXXXXXXXXXXXXXXXXXXRGLVAPPPRGL------------PKKPKDKRRKLHWKTIPKARLQQAEETVWGAAEVNNDISDIKIDLEEFEELWVEKADKVAEKQKLDEAKKNDSKKKDGPKLISLLDGKRAMNTSIAIARIKLTHAETRQAIMDMDENALSSNVVQSLQEFMPTTDEEKVLLSYNGDLKLLGTAEKFMLEMIKVPKREQRLQGMLYKQLLQGRQEDMRSMAGLINSACLDVRLSRRLKKLLGIILKLGNQLNEGQTTGFTLDSLLKLNTAKAFDRKTSILHYLVMLARRNDPSLLDFKDDLKHVFPASRLLISTVTTELNDLEKGYASLKRLVEGDPNLRPPTPMRSP-----VPPSPAHLTRSPSAVSNGGGSTDGAGSTTLYS-----NRSEKVASLSRQKTENRKTTATTGKVILHFDRARHA-----------------------VGGGEGGGDG-----------------------------------------------------TTERV-------------------------------------SRSGW--------------------------------------------IAPGLACCSLPMPRGLRAXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXSSKSSTSSASDGMXXXXXXXXXXXXXXXXXXXAPGKRSPPPPPTPGRTXXXXXKKIDKREALGLWMRSVEDELKASKTLVEEMQSNFAGALSYFGEDPELTPQEFFTTLHSFIKAFDEARAYVDRQAEK 2355
MVAAKDHPD+EKYFKMLKMGLPR AAL KM +G DQAILDTPDA++PL PA A G GIP+PPPLPG XXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXX XXX XX RGP XXXXXXXXXXXXXXXX A PPRG PKKPKDKRRKLHWKTIP ARLQ+AE ++W EV +DI+IDLEEFEELWVEKA+KVA K+KL+EAKK D KK + PK ISLLDGKRAMNTSIAIARIK+T+AETRQA+M+MDE LSSNV+QSLQEFMPT +EEK LL+YNGD LLG AEKFMLEMIKVPKRE RL+GML+KQLLQ RQ+DMRSMAGLINSACLDVRLSRRLKKLLGIILKLGNQLNEGQTTGFTLDSLLKLNTAKAFD+KTSILHYLVMLARRNDP+LLDFKDDLKHVFPASRLLISTVT EL DL KGYAS KRLVEGDPNLRP P SP PPSP L+R +RSEK+A+LSRQKT NR++ GK I++FD A A GG G G T ERV S W GLA CSLPMPRGL + XXXXXXXXXX + XXXXXXXXXXXXXXXXAPGKRSPPPP TPGRT KK++ REALG+WM+ E+EL ASKTLVEEMQSNF+GALSYFGEDPELTPQEFFTTLHSFIKAFDEARAYVDRQA+K
Sbjct: 2831 MVAAKDHPDYEKYFKMLKMGLPRGAALQKMATEGKDQAILDTPDALIPLAPAPSPATDTTPGKGIPTPPPLPGARGGXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXGGGGXXXXXXXXGSGXXXIXXXXXXXXXXXXXXXXXXXXXXXARGPAXXXXXXXXXXXXXXXX------XALPPRGPGGMARXXXRPAGPKKPKDKRRKLHWKTIPHARLQKAE-SIWMETEV---ATDIQIDLEEFEELWVEKAEKVAAKKKLEEAKKKDVKK-EAPKEISLLDGKRAMNTSIAIARIKMTYAETRQAVMNMDETVLSSNVLQSLQEFMPTKEEEKTLLNYNGDPALLGNAEKFMLEMIKVPKREMRLKGMLFKQLLQARQDDMRSMAGLINSACLDVRLSRRLKKLLGIILKLGNQLNEGQTTGFTLDSLLKLNTAKAFDKKTSILHYLVMLARRNDPTLLDFKDDLKHVFPASRLLISTVTAELADLNKGYASFKRLVEGDPNLRPRPPEASPKGGPGAPPSPGSLSRXXXXXXXXXXXXXXXXXXXXXXXXXXXSRSEKLATLSRQKTHNRESKCNAGKTIINFDMATEAGRAAALKAGQSASELETIPEASSSAGGSSAGVGXXXXXXXXXXKGTESGWFGQEGMRGSTQIPELHVDVQAAGDRVIEGWESIVNATAERVVGTKVVRCGVSVKWWDDELKEEIGERREVFKQYLSEASEESWEKYRAKRKQVKGLVKKKKKCIWDEVVQKANGGLEGNVKQMWEGISGMGLAKCSLPMPRGLESGSDEPRASSGGGGTRISKXXXXXXXXXXSTL-----APKVLPPVEAVRWIAXXXXXXXXXXXXXXXXAPGKRSPPPPVTPGRTPKKSPKKLEPREALGVWMKHAEEELAASKTLVEEMQSNFSGALSYFGEDPELTPQEFFTTLHSFIKAFDEARAYVDRQAKK 3810
BLAST of mRNA_P-fluviatile_contig13.1967.1 vs. uniprot
Match: A0A836C9A0_9STRA (FH2 domain-containing protein (Fragment) n=1 Tax=Tribonema minus TaxID=303371 RepID=A0A836C9A0_9STRA) HSP 1 Score: 267 bits (683), Expect = 5.300e-74 Identity = 160/307 (52.12%), Postives = 205/307 (66.78%), Query Frame = 1
Query: 616 RRKLHWKTIPKARLQQAEETVWGAAEVNNDISDIKIDLEEFEELWVEKADKVAEKQKLDEAKKNDSKKK--------------------------DGPKL---ISLLDGKRAMNTSIAIARIKLTHAETRQAIMDMDENALSSNVVQSLQEFMPTTDEEKVLLSYN---GDLKLLGTAEKFMLEMIKVPKREQRLQGMLYKQLLQGRQEDMRSMAGLINSACLDVRLSRRLKKLLGIILKLGNQLNEGQTTGFTLDSLLKLNTAKAFDRKTSILHYLVMLARRNDPSLLDFKDDLKHVFPASRLLIS 1440
RRK+HW +IP+ R+ AE++VW +E + IKID++E EEL+VEK LDE KK K DGP I+LLDGKR MN +IAIAR+K+ +AE R+ ++ + E AL+ + L EFMPT +EE L Y D++ LG AEKFMLEM VP+R R++ ML+K+ L GR +++R AGL+ +AC DV+LS RLK+LL IILKLGN+LN+ TTGFTL+SLLKLNTAKAFD+KTSILHYLVMLA RNDP+LLDFKDDLKHVFPASR+L++
Sbjct: 433 RRKIHWTSIPRERVLNAEDSVWAGSEES-----IKIDMDELEELFVEK---------LDEQKKXXXXXKEVRPYTTTSRLRLNCICSGCMNIYGKDGPAKAAKIALLDGKRGMNCAIAIARVKMAYAEIREVVLTLREGALTEEQLTQLLEFMPTEEEEGTLRGYKDSGADVEALGEAEKFMLEMAAVPQRAPRIKAMLFKEQLFGRIDELRGTAGLVEAACDDVKLSLRLKRLLSIILKLGNELNQHATTGFTLESLLKLNTAKAFDKKTSILHYLVMLADRNDPTLLDFKDDLKHVFPASRVLLT 725
BLAST of mRNA_P-fluviatile_contig13.1967.1 vs. uniprot
Match: A0A7S3HTK0_9STRA (Hypothetical protein (Fragment) n=1 Tax=Spumella elongata TaxID=89044 RepID=A0A7S3HTK0_9STRA) HSP 1 Score: 197 bits (501), Expect = 1.910e-51 Identity = 118/301 (39.20%), Postives = 189/301 (62.79%), Query Frame = 1
Query: 604 PKDKRRKLHWKTIPKARLQQAEETVWGAAEVNNDISDIKIDLEEFEELWVEKADKVAEKQKLDEAKKNDSKKKDGPKLISLLDGKRAMNTSIAIARIKLTHAETRQAIMDMDENALSSNVVQSLQEFMPTTDEEKVLLSYNGDLKLLGTAEKFMLEMIKVPKREQRLQGMLYKQLLQGRQEDMRSMAGLINSACLDVRLSRRLKKLLGIILKLGNQLNEGQT-TGFTLDSLLKLNTAKAFDRKTSILHYLVMLARRNDPSLLDFKDDLKHVFPASRLLISTVTTELNDLEKGYASLKRLVE 1503
PK ++KLHWK + + +++ + +W E + + D+ +D EEF+ L+V+ A+K ++ K K K ++L++ KRA N IA+ARI+ + ++ IMDMD L+++ ++SL+E++P +EE ++ +Y GD K LG AE++M M+ +R++ M++KQ + R D + I +AC DV+LS RLKK+L IL++GNQLN+G+ GFTLDSLLKL +AKAFDRKTS+L Y++ L RND L F +DLKH+ ASRL + V TE L + + + ++++
Sbjct: 38 PKVTKKKLHWKALDREKVKNS---LWAEDEDDGE-DDLYMDEEEFKRLFVQSESASAKKAEVKVVAKEVKKTK-----VALINMKRAQNAGIALARIRFPYPTLKEKIMDMDGEGLTTDQLKSLEEYLPNNEEEGLISAYKGDFKDLGQAEQYMKVMLGFKSAPKRIRAMIFKQTYRIRINDCATKLTKIENACDDVKLSGRLKKVLKTILRVGNQLNDGEKHEGFTLDSLLKLQSAKAFDRKTSVLQYVITLISRNDADCLLFPEDLKHISEASRLTLDAVNTERKGLREEFDNNYKIID 329
BLAST of mRNA_P-fluviatile_contig13.1967.1 vs. uniprot
Match: A0A485KBM7_9STRA (Aste57867_4360 protein n=1 Tax=Aphanomyces stellatus TaxID=120398 RepID=A0A485KBM7_9STRA) HSP 1 Score: 188 bits (477), Expect = 4.050e-45 Identity = 122/312 (39.10%), Postives = 181/312 (58.01%), Query Frame = 1
Query: 574 APPPRGLPKKPKDKRRKLHWKTIPKARLQQAEETVWGAAEVNNDISD-IKIDLEEFEELWVEKADKVAEKQKLDEAKKNDSKKKDGPKLISLLDGKRAMNTSIAIARIKLTHAETRQAIMDMDENALSSNVVQSLQEFMPTTDEEKVLLSYNGDLKLLGTAEKFMLEMIKVPKREQRLQGMLYKQLLQGRQEDMRSMAGLINSACLDVRLSRRLKKLLGIILKLGNQLNEGQTT-----GFTLDSLLKLNTAKAFDRKTSILHYLVMLARRNDPSLLDFKDDLKHVFPASRLLISTVTTELNDLEKGYASLK 1491
A PP+ +P K +R+KL W+ IP+ RLQ+AE T+W D SD I++D++E E L+ + A KK +K + ++L+DGKRAMN +IA+ARIKL++ E AI D L+ + ++ EF+PT +E V+ Y GD +LG AEKF L + KVP+ ++ ++ KQ ++ + + +AC DV+ SR LK LLG +LKLGN LN G+ T GF++DSLL+L K D+KT++LHYLV + R+N P +L+F+ +L HV A+R I T+ LE K
Sbjct: 1177 ASPPKPVPVKRIVRRKKLFWQPIPEDRLQRAESTIW------EDKSDNIQLDMDEIETLFFKDTSAAA--------KKPAAKPLARKQAVTLVDGKRAMNAAIALARIKLSYEEVASAIYSYDAKGLTLEQLTTINEFLPTDEEVGVVQRYTGDPAVLGEAEKFFLAISKVPRFAIKMDCLISKQAFMSHVVEISNSVDNVANACEDVKASRLLKLLLGTVLKLGNTLNGGEETEHAIRGFSVDSLLRLGHTKTNDQKTTVLHYLVRVVRKNQPQVLEFQSELTHVPSAAREAIETIDQMYTALENEVKKTK 1474
BLAST of mRNA_P-fluviatile_contig13.1967.1 vs. uniprot
Match: A0A421GQ79_9STRA (FH2 domain-containing protein n=2 Tax=Phytophthora kernoviae TaxID=325452 RepID=A0A421GQ79_9STRA) HSP 1 Score: 178 bits (451), Expect = 1.180e-44 Identity = 113/313 (36.10%), Postives = 184/313 (58.79%), Query Frame = 1
Query: 565 GLVAPPPRGLPKKPKDKRRKLHWKTIPKARLQQA-EETVWGAAEVNNDISDIKIDLEEFEELWVEKADKVAEKQKLDEAKKNDSKKKDGPKLISLLDGKRAMNTSIAIARIKLTHAETRQAIMDMDENALSSNVVQSLQEFMPTTDEEKVLLSYNGDLKLLGTAEKFMLEMIKVPKREQRLQGMLYKQLLQGRQEDMRSMAGLINSACLDVRLSRRLKKLLGIILKLGNQLNEGQTT----GFTLDSLLKLNTAKAFDRKTSILHYLVMLARRNDPSLLDFKDDLKHVFPASRLLISTVTTELNDLEKGYASL 1488
G P +G KPK R+KLHW+ I + RL ++T+W E +D +D++E E L+ A++ K +K K+K ++L+DGKRAMN +I++AR+KL+++E +A+ + N L+ + + +F+PT++E ++ Y GD LLG AEKF++E+ KV + R++ ++Y+ R ++ + + AC +V+ SR LK LL ++LKLGN LN + GFT+DSLL+L KA + KT++LHYLV L ++N P +L F+D+L+ V A+R + + L+KG ASL
Sbjct: 142 GDAKPATKGATLKPKRARKKLHWQPISEDRLSNINQQTIW---EDEDDGVAFDMDMDELEALFF--ANQNTGSMKKTSSKGKTLKRKQS---VTLIDGKRAMNAAISLARVKLSYSEIAEAVTQFNSNGLTIEQLIGINDFLPTSEEVALVSGYTGDKGLLGEAEKFIIEISKVKRYAPRMESLVYRLSFASRNTELSASLSNLRKACEEVKGSRLLKILLAMVLKLGNTLNGSEEANGIKGFTVDSLLRLGHTKAVNLKTTVLHYLVRLMKKNHPQVLGFQDELRSVPLAARESFEAIDEDFKKLQKGLASL 446
BLAST of mRNA_P-fluviatile_contig13.1967.1 vs. uniprot
Match: A0A2D4BTV1_PYTIN (FH2 domain-containing protein n=1 Tax=Pythium insidiosum TaxID=114742 RepID=A0A2D4BTV1_PYTIN) HSP 1 Score: 184 bits (467), Expect = 1.300e-44 Identity = 109/297 (36.70%), Postives = 185/297 (62.29%), Query Frame = 1
Query: 613 KRRKLHWKTIPKARLQQAE-ETVWGAAEVNNDISDIKIDLEEFEELWVEKADKVAEKQKLDEAKKNDSKKKDGPKLISLLDGKRAMNTSIAIARIKLTHAETRQAIMDMDENALSSNVVQSLQEFMPTTDEEKVLLSYNGDLKLLGTAEKFMLEMIKVPKREQRLQGMLYKQLLQGRQEDMRSMAGLINSACLDVRLSRRLKKLLGIILKLGNQLN----EGQTTGFTLDSLLKLNTAKAFDRKTSILHYLVMLARRNDPSLLDFKDDLKHVFPASRLLISTVTTELNDLEKGYASL 1488
+R+KLHW+ I RL + ET+WG A+ +I+DI++D++E E L+ + K+ +K K+ ++L+DGKRAMN +I++ARIKL++++ +AI + D L++ + ++EF+PT +E + +Y+GD +LG AEKFM E+ KV + R + ++++ Q R+++++ + AC +V+ SR LK LLG++LKLGN LN E + GFT+DSLL+L KA ++KT++LHYLV L +++ PS+LDF+ +++ V A+R + + L+ G L
Sbjct: 303 RRKKLHWQPISDDRLSTIDRETIWGGAD--EEIADIEMDMDELESLFFANTENSTSKKSTAHSKPLKRKQ-----AVTLIDGKRAMNAAISLARIKLSYSDIARAIQNFDAAGLTTQQLIGIREFLPTPEEVSAIAAYSGDESVLGEAEKFMREIGKVKRYVSRTECLVFQLSFQSRRDELQRSLDNVIEACGEVKDSRLLKTLLGMVLKLGNTLNGSGEENEIRGFTVDSLLRLGHTKAVNQKTTVLHYLVRLVKKHHPSVLDFQSEIQTVEKAARESFDVIDEDFRKLQSGLTLL 592
BLAST of mRNA_P-fluviatile_contig13.1967.1 vs. uniprot
Match: A0A7S1XVY3_9STRA (Hypothetical protein n=1 Tax=Phaeomonas parva TaxID=124430 RepID=A0A7S1XVY3_9STRA) HSP 1 Score: 182 bits (461), Expect = 1.720e-44 Identity = 113/313 (36.10%), Postives = 194/313 (61.98%), Query Frame = 1
Query: 619 RKLHWKTIPKARLQQAEETVWGAAEVNNDISDIKIDLEEFEELWVEKADKVAEKQKLDEAKKNDSKKKDGPKLISLLDGKRAMNTSIAIARIKLTHAETRQAIMDMDENALSSNVVQSLQEFMPTTDEEKVLLSYNGDLKLLGTAEKFMLEMIKVPKREQRLQGMLYKQLLQGRQEDMRSMAGLINSACLDVRLSRRLKKLLGIILKLGNQLNEGQTTGFTLDSLLKLNTAKAFDRKTSILHYLVMLARRNDPSLLDFKDDLKHVFPASRLLISTVTTELNDLEKGYASLKRLVE----GDPNLRPPTPMRSP 1545
++LHW+ + +L+ +++W A + + D+K L + E+L+V+K Q+ + +K + KK+ K + L+DG+RA N IAIARIKL++ R+ IM+++++ ++ +++LQ F+PT DE L Y GD+ L AEKFM+EM+K+ K +RL+ M+YK R + +R I AC D+++S + + +L IL++GNQ+NE + F+LD+L KL+++KAFD +T++L YLVM+ +RND +LLD ++L V ASR+++ T+ + ++KG + VE P++ P+P SP
Sbjct: 139 KRLHWQAVDHTKLEG--DSIWTAPHEDGAM-DLK--LHDLEDLFVQK-------QETKKVEKKAAAKKEKVK-VDLIDGRRATNAGIAIARIKLSYQGMREKIMNLEDSVFTTVQMRTLQTFLPTNDEIPKLKGYKGDINDLNEAEKFMMEMLKLDKGSKRLEAMIYKSQFVERIQQIREDIQTIAKACDDLKMSGKFRTILRYILQIGNQMNEHEHKAFSLDALKKLSSSKAFDNRTTVLDYLVMVVKRNDETLLDIAEELTGVQAASRVMMDTLRADFGQMKKGIEVVDVFVEELEANAPDIPLPSPSASP 438
BLAST of mRNA_P-fluviatile_contig13.1967.1 vs. uniprot
Match: A0A662XIZ2_9STRA (Uncharacterized protein (Fragment) n=1 Tax=Nothophytophthora sp. Chile5 TaxID=2483409 RepID=A0A662XIZ2_9STRA) HSP 1 Score: 184 bits (468), Expect = 4.510e-44 Identity = 113/309 (36.57%), Postives = 190/309 (61.49%), Query Frame = 1
Query: 601 KPKDKRRKLHWKTIPKARLQQA-EETVWGAAEVNNDISDIKIDLEEFEELWVEKADKVAEKQKLDEAKKNDSKKKDGPKLISLLDGKRAMNTSIAIARIKLTHAETRQAIMDMDENALSSNVVQSLQEFMPTTDEEKVLLSYNGDLKLLGT--------AEKFMLEMIKVPKREQRLQGMLYKQLLQGRQEDMRSMAGLINSACLDVRLSRRLKKLLGIILKLGNQLN----EGQTTGFTLDSLLKLNTAKAFDRKTSILHYLVMLARRNDPSLLDFKDDLKHVFPASRLLISTVTTELNDLEKGYASL 1488
KPK R+KLHW+ I + RL ++T+W E +D + ++D++E E L+ ++ + K+ + K+K + ++L+DGKRAMN +I++AR+K++++E A++ D N L+ + + + EF+PT++E ++ Y G+ +LG AEKF+LE+ KV + R++G++YK ++ + ++ AC +V+ SR LK LLG++LKLGN LN E + GFT+DSLL+L KA ++KT++LHYLV L ++N P +LDF+D+L+ V A+R T+ + L+KG ASL
Sbjct: 942 KPKRARKKLHWQPIAEDRLSNVNQQTIW---EDEDDDVEFEMDMDELEALFFANSNTGSMKKTSSRGQMKPMKRK---QTVTLIDGKRAMNAAISLARVKISYSEIAAAVVKFDPNGLTLDQLIGINEFLPTSEEAALVSGYTGEKAMLGEVRRSFTDCAEKFILEIAKVKRYAPRMEGLVYKLSFPLHSTELAASFSNLHKACEEVKGSRLLKILLGMVLKLGNTLNGSGEENEIRGFTVDSLLRLGHTKAVNQKTTVLHYLVRLVKKNHPQVLDFQDELRSVPLAARESFETIDEDFKKLQKGLASL 1244
BLAST of mRNA_P-fluviatile_contig13.1967.1 vs. uniprot
Match: F0WP85_9STRA (Forminhomology 2 domaincontaining protein putative n=1 Tax=Albugo laibachii Nc14 TaxID=890382 RepID=F0WP85_9STRA) HSP 1 Score: 184 bits (467), Expect = 6.100e-44 Identity = 111/299 (37.12%), Postives = 188/299 (62.88%), Query Frame = 1
Query: 610 DKRRKLHWKTIPKARLQQA-EETVWGAAEVNNDISDIKIDLEEFEELWVEKADKVAEKQKLDEAKKNDSKKKDGPKLISLLDGKRAMNTSIAIARIKLTHAETRQAIMDMDENALSSNVVQSLQEFMPTTDEEKVLLSYNGDLKLLGTAEKFMLEMIKVPKREQRLQGMLYKQLLQGRQEDMRSMAGLINSACLDVRLSRRLKKLLGIILKLGNQLN----EGQTTGFTLDSLLKLNTAKAFDRKTSILHYLVMLARRNDPSLLDFKDDLKHVFPASRLLISTVTTELNDLEKGYASLK 1491
++R+KLHW+ I ++RL ++T+W + N+ D ++D+ E E L+ D VA K K+D K K++ + I+L+DGK+AMN I++AR+K++H E I ++ +L+ + S++EF+PT +E V+ +Y GD+ LLG AEKF+LE+ K+ + + ++ ++Y +GR +++ I AC +V+ SR LK LLG++LKLGN LN + + GFT+DSLL+L KA ++KT++LHYLV L +RN P +L+F+++++ V ASR + + ++ L G L+
Sbjct: 1037 NRRKKLHWQPIAESRLSSINQQTIWEDEDHNS--LDFEMDMNELEALFFTSND-VARK-KVDSTKPKQLKRR---QTITLIDGKKAMNAGISLARVKVSHRELACGIHQLNACSLTVEQLMSIREFLPTAEEVNVVTNYKGDVSLLGDAEKFILEIAKIKRYQFKMDALIYIMSFEGRSKEVERSLQHIKDACREVKDSRSLKILLGMVLKLGNTLNGSGHDNEIRGFTVDSLLRLGHTKAINKKTTVLHYLVKLIKRNHPQVLNFQEEMRSVSLASRESMDAIESDYAKLTHGLQMLQ 1328
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 | 682.2 |
| Seed ortholog evalue | 3.4e-193 |
| Seed eggNOG ortholog | 2880.D8LT97 |
| KEGG ko | ko:K04512,ko:K05745,ko:K10293,ko:K11238 |
| KEGG Pathway | ko04011,ko04310,ko04810,map04011,map04310,map04810 |
| GOs | GO:0003674,GO:0003779,GO:0005488,GO:0005515,GO:0005522,GO:0005543,GO:0005575,GO:0005622,GO:0005623,GO:0005737,GO:0005856,GO:0005886,GO:0005938,GO:0006928,GO:0006996,GO:0007010,GO:0007015,GO:0008064,GO:0008092,GO:0008150,GO:0008154,GO:0008289,GO:0009987,GO:0010638,GO:0015629,GO:0016020,GO:0016043,GO:0016477,GO:0022607,GO:0030029,GO:0030036,GO:0030041,GO:0030832,GO:0030833,GO:0030838,GO:0030865,GO:0030866,GO:0031254,GO:0031334,GO:0031344,GO:0031345,GO:0032153,GO:0032154,GO:0032155,GO:0032271,GO:0032273,GO:0032535,GO:0032956,GO:0032970,GO:0033043,GO:0034622,GO:0035091,GO:0040011,GO:0043167,GO:0043168,GO:0043226,GO:0043228,GO:0043229,GO:0043232,GO:0043254,GO:0043933,GO:0044085,GO:0044087,GO:0044089,GO:0044424,GO:0044425,GO:0044444,GO:0044459,GO:0044464,GO:0044877,GO:0045010,GO:0048518,GO:0048519,GO:0048522,GO:0048523,GO:0048870,GO:0050789,GO:0050794,GO:0051015,GO:0051128,GO:0051129,GO:0051130,GO:0051179,GO:0051258,GO:0051493,GO:0051495,GO:0051674,GO:0060491,GO:0065003,GO:0065007,GO:0065008,GO:0071840,GO:0071944,GO:0090066,GO:0097435,GO:0098590,GO:0099568,GO:0110053,GO:0120032,GO:0120033,GO:0120035,GO:1902903,GO:1902905,GO:1904170,GO:1904171 |
| EggNOG free text desc. | actin binding |
| EggNOG OGs | KOG1922@1,KOG1922@2759 |
| COG Functional cat. | E |
| Best tax level | Eukaryota |
| Best eggNOG OG | NA|NA|NA |
| BRITE | ko00000,ko00001,ko03029,ko04121,ko04147 |
| Hectar predicted targeting category | other localisation |
| Exons | 14 |
| Model size | 2723 |
| Cds size | 2721 |
| Stop | 0 |
| Start | 1 |
Relationships
The following polypeptide feature(s) derives from this mRNA:
The following CDS feature(s) are a part of this mRNA:
| Feature Name | Unique Name | Species | Type | Position |
| 1622815586.9392889-CDS-P-fluviatile_contig13:3225591..3226002 | 1622815586.9392889-CDS-P-fluviatile_contig13:3225591..3226002 | Porterinema fluviatile SAG_2381 | CDS | P-fluviatile_contig13 3225592..3226002 - |
| 1693562354.4242115-CDS-P-fluviatile_contig13:3225591..3226002 | 1693562354.4242115-CDS-P-fluviatile_contig13:3225591..3226002 | Porterinema fluviatile SAG_2381 | CDS | P-fluviatile_contig13 3225592..3226002 - |
| 1622815586.9503946-CDS-P-fluviatile_contig13:3226547..3226626 | 1622815586.9503946-CDS-P-fluviatile_contig13:3226547..3226626 | Porterinema fluviatile SAG_2381 | CDS | P-fluviatile_contig13 3226548..3226626 - |
| 1693562354.436276-CDS-P-fluviatile_contig13:3226547..3226626 | 1693562354.436276-CDS-P-fluviatile_contig13:3226547..3226626 | Porterinema fluviatile SAG_2381 | CDS | P-fluviatile_contig13 3226548..3226626 - |
| 1622815586.9614835-CDS-P-fluviatile_contig13:3227209..3227292 | 1622815586.9614835-CDS-P-fluviatile_contig13:3227209..3227292 | Porterinema fluviatile SAG_2381 | CDS | P-fluviatile_contig13 3227210..3227292 - |
| 1693562354.4461231-CDS-P-fluviatile_contig13:3227209..3227292 | 1693562354.4461231-CDS-P-fluviatile_contig13:3227209..3227292 | Porterinema fluviatile SAG_2381 | CDS | P-fluviatile_contig13 3227210..3227292 - |
| 1622815586.9743705-CDS-P-fluviatile_contig13:3227878..3228007 | 1622815586.9743705-CDS-P-fluviatile_contig13:3227878..3228007 | Porterinema fluviatile SAG_2381 | CDS | P-fluviatile_contig13 3227879..3228007 - |
| 1693562354.4559238-CDS-P-fluviatile_contig13:3227878..3228007 | 1693562354.4559238-CDS-P-fluviatile_contig13:3227878..3228007 | Porterinema fluviatile SAG_2381 | CDS | P-fluviatile_contig13 3227879..3228007 - |
| 1622815586.987822-CDS-P-fluviatile_contig13:3228406..3228511 | 1622815586.987822-CDS-P-fluviatile_contig13:3228406..3228511 | Porterinema fluviatile SAG_2381 | CDS | P-fluviatile_contig13 3228407..3228511 - |
| 1693562354.465292-CDS-P-fluviatile_contig13:3228406..3228511 | 1693562354.465292-CDS-P-fluviatile_contig13:3228406..3228511 | Porterinema fluviatile SAG_2381 | CDS | P-fluviatile_contig13 3228407..3228511 - |
| 1622815587.0006018-CDS-P-fluviatile_contig13:3229101..3229197 | 1622815587.0006018-CDS-P-fluviatile_contig13:3229101..3229197 | Porterinema fluviatile SAG_2381 | CDS | P-fluviatile_contig13 3229102..3229197 - |
| 1693562358.6858714-CDS-P-fluviatile_contig13:3229101..3229197 | 1693562358.6858714-CDS-P-fluviatile_contig13:3229101..3229197 | Porterinema fluviatile SAG_2381 | CDS | P-fluviatile_contig13 3229102..3229197 - |
| 1622815587.0218875-CDS-P-fluviatile_contig13:3230206..3230308 | 1622815587.0218875-CDS-P-fluviatile_contig13:3230206..3230308 | Porterinema fluviatile SAG_2381 | CDS | P-fluviatile_contig13 3230207..3230308 - |
| 1693562358.9840987-CDS-P-fluviatile_contig13:3230206..3230308 | 1693562358.9840987-CDS-P-fluviatile_contig13:3230206..3230308 | Porterinema fluviatile SAG_2381 | CDS | P-fluviatile_contig13 3230207..3230308 - |
| 1622815587.0362492-CDS-P-fluviatile_contig13:3230621..3230939 | 1622815587.0362492-CDS-P-fluviatile_contig13:3230621..3230939 | Porterinema fluviatile SAG_2381 | CDS | P-fluviatile_contig13 3230622..3230939 - |
| 1693562359.000783-CDS-P-fluviatile_contig13:3230621..3230939 | 1693562359.000783-CDS-P-fluviatile_contig13:3230621..3230939 | Porterinema fluviatile SAG_2381 | CDS | P-fluviatile_contig13 3230622..3230939 - |
| 1622815587.050266-CDS-P-fluviatile_contig13:3231251..3231389 | 1622815587.050266-CDS-P-fluviatile_contig13:3231251..3231389 | Porterinema fluviatile SAG_2381 | CDS | P-fluviatile_contig13 3231252..3231389 - |
| 1693562359.012175-CDS-P-fluviatile_contig13:3231251..3231389 | 1693562359.012175-CDS-P-fluviatile_contig13:3231251..3231389 | Porterinema fluviatile SAG_2381 | CDS | P-fluviatile_contig13 3231252..3231389 - |
| 1622815587.0613601-CDS-P-fluviatile_contig13:3231936..3232137 | 1622815587.0613601-CDS-P-fluviatile_contig13:3231936..3232137 | Porterinema fluviatile SAG_2381 | CDS | P-fluviatile_contig13 3231937..3232137 - |
| 1693562359.019973-CDS-P-fluviatile_contig13:3231936..3232137 | 1693562359.019973-CDS-P-fluviatile_contig13:3231936..3232137 | Porterinema fluviatile SAG_2381 | CDS | P-fluviatile_contig13 3231937..3232137 - |
| 1622815587.072968-CDS-P-fluviatile_contig13:3232725..3232806 | 1622815587.072968-CDS-P-fluviatile_contig13:3232725..3232806 | Porterinema fluviatile SAG_2381 | CDS | P-fluviatile_contig13 3232726..3232806 - |
| 1693562359.0330882-CDS-P-fluviatile_contig13:3232725..3232806 | 1693562359.0330882-CDS-P-fluviatile_contig13:3232725..3232806 | Porterinema fluviatile SAG_2381 | CDS | P-fluviatile_contig13 3232726..3232806 - |
| 1622815587.085554-CDS-P-fluviatile_contig13:3233277..3233469 | 1622815587.085554-CDS-P-fluviatile_contig13:3233277..3233469 | Porterinema fluviatile SAG_2381 | CDS | P-fluviatile_contig13 3233278..3233469 - |
| 1693562359.0460613-CDS-P-fluviatile_contig13:3233277..3233469 | 1693562359.0460613-CDS-P-fluviatile_contig13:3233277..3233469 | Porterinema fluviatile SAG_2381 | CDS | P-fluviatile_contig13 3233278..3233469 - |
| 1622815587.0958014-CDS-P-fluviatile_contig13:3234005..3234104 | 1622815587.0958014-CDS-P-fluviatile_contig13:3234005..3234104 | Porterinema fluviatile SAG_2381 | CDS | P-fluviatile_contig13 3234006..3234104 - |
| 1693562359.0565946-CDS-P-fluviatile_contig13:3234005..3234104 | 1693562359.0565946-CDS-P-fluviatile_contig13:3234005..3234104 | Porterinema fluviatile SAG_2381 | CDS | P-fluviatile_contig13 3234006..3234104 - |
| 1622815587.1055288-CDS-P-fluviatile_contig13:3234653..3235340 | 1622815587.1055288-CDS-P-fluviatile_contig13:3234653..3235340 | Porterinema fluviatile SAG_2381 | CDS | P-fluviatile_contig13 3234654..3235340 - |
| 1693562359.0642688-CDS-P-fluviatile_contig13:3234653..3235340 | 1693562359.0642688-CDS-P-fluviatile_contig13:3234653..3235340 | Porterinema fluviatile SAG_2381 | CDS | P-fluviatile_contig13 3234654..3235340 - |
Sequences
The following sequences are available for this feature:
protein sequence of mRNA_P-fluviatile_contig13.1967.1 >prot_P-fluviatile_contig13.1967.1 ID=prot_P-fluviatile_contig13.1967.1|Name=mRNA_P-fluviatile_contig13.1967.1|organism=Porterinema fluviatile SAG_2381|type=polypeptide|length=907bp
MVAAKDHPDFEKYFKMLKMGLPREAALHKMTQDGVDQAILDTPDAMVPLG PAAGTAATGGGIPSPPPLPGMGGGIPRPPPLPGMGGGIPPPPPLPGMGGG IPPPPPLPGMGDGIPPPPPLPGIGGGIPRPPPLSGMGGGIPPPPPLPGMG GRGPPMPPPLPGMPRGPGGLPPPPPLTGMSGRGLPTPRGLVAPPPRGLPK KPKDKRRKLHWKTIPKARLQQAEETVWGAAEVNNDISDIKIDLEEFEELW VEKADKVAEKQKLDEAKKNDSKKKDGPKLISLLDGKRAMNTSIAIARIKL THAETRQAIMDMDENALSSNVVQSLQEFMPTTDEEKVLLSYNGDLKLLGT AEKFMLEMIKVPKREQRLQGMLYKQLLQGRQEDMRSMAGLINSACLDVRL SRRLKKLLGIILKLGNQLNEGQTTGFTLDSLLKLNTAKAFDRKTSILHYL VMLARRNDPSLLDFKDDLKHVFPASRLLISTVTTELNDLEKGYASLKRLV EGDPNLRPPTPMRSPVPPSPAHLTRSPSAVSNGGGSTDGAGSTTLYSNRS EKVASLSRQKTENRKTTATTGKVILHFDRARHAVGGGEGGGDGTTERVSR SGWIAPGLACCSLPMPRGLRAGGSGDVRSLRTRKRISEGLAECRLPMPSC LAPGGSSSKSSTSSASDGMRISEGLADCSLPMPSNLAPAPGKRSPPPPPT PGRTPRKSPKKIDKREALGLWMRSVEDELKASKTLVEEMQSNFAGALSYF GEDPELTPQEFFTTLHSFIKAFDEARAYVDRQAEKKERERKLEEKKAAAA AKKKRLEEEKRLKAAELLRVGSSGSSSEKVLSSATANGTSADPRDGLEPP LGGRKGSGNSDAGASEKKSVVVVVSTSKGASDGGGGKEANGDAAAPPNEA ATATDSA back to topmRNA from alignment at P-fluviatile_contig13:3225592..3235340- Legend: polypeptideCDS Hold the cursor over a type above to highlight its positions in the sequence below. >mRNA_P-fluviatile_contig13.1967.1 ID=mRNA_P-fluviatile_contig13.1967.1|Name=mRNA_P-fluviatile_contig13.1967.1|organism=Porterinema fluviatile SAG_2381|type=mRNA|length=9749bp|location=Sequence derived from alignment at P-fluviatile_contig13:3225592..3235340- (Porterinema fluviatile SAG_2381) ATGGTGGCCGCGAAGGACCACCCGGACTTCGAGAAGTACTTCAAGATGCT
CAAGATGGGGCTGCCGCGCGAGGCGGCACTCCACAAGATGACTCAGGACG
GCGTGGACCAGGCAATCCTCGATACTCCGGACGCGATGGTACCTCTCGGC
CCTGCTGCCGGCACCGCCGCCACAGGCGGAGGGATTCCCTCGCCGCCGCC
GCTGCCAGGAATGGGTGGTGGCATCCCTCGCCCGCCGCCCCTGCCGGGAA
TGGGTGGCGGTATCCCGCCCCCGCCACCCCTACCGGGAATGGGTGGCGGA
ATCCCCCCCCCGCCACCCCTACCGGGAATGGGTGACGGTATCCCGCCCCC
GCCGCCGCTCCCCGGGATAGGTGGGGGCATCCCCCGCCCGCCGCCGCTGT
CCGGAATGGGTGGTGGCATCCCTCCCCCGCCGCCGTTGCCGGGAATGGGA
GGGCGGGGGCCCCCCATGCCGCCTCCGCTGCCCGGCATGCCCCGGGGACC
TGGAGGACTTCCGCCCCCGCCACCACTGACGGGGATGTCGGGTAGAGGAT
TGCCGACACCGAGGGGATTGGTGGCCCCGCCCCCACGCGGCCTGCCGAAG
AAGCCCAAGGACAAGCGCCGGAAGCTCCACTGGAAGACCATTCCGAAAGC
GCGGTTGCAGCAGGCGGAGGAGACCGTCTGGGGAGCGGTGAGAGGATTTT
TCGGGCGTGTTTTGCGCGGCAGAGTTCAGAAGTGGGGGGGGGGGGAGGGG
GCATTCTCTCGAGGAGGGATGGGGCGTTGCGGCAAGTTGGTCGGTGTATG
TCACCGCGGGTTTTACGTTGGAGTGTGTTCATTTTTCGGCCCTGGCGTGC
GTTCAACAAAGACCTACGTGAGGCTTGCTTTCGCGGCCGTCTGTGCTTTG
GCTCGAGGTGACCTGTTGCTCCACGGGTTACAGACGGTTCTCGACGGGGT
CATTTTTCGTTTTCGACTCAACGGCGAGGGTCTCGGCACCTCCCTCCCTA
TTGCGTCGGATCGGACTAGCCACTGCTGGTGTCGGGAAACAACCCCTGGA
GGTGTCCCGTCGGCAAAGCAAGAGCGAGGTTTGGGCGGGGGTTTTGCTCG
TGGCGGATAATTCGCGCTCTTCTGATTGGAGAGTACTCACGTTTTGACCC
TAGGCTGCTGTCGTCGCCGCGTGTGTTTGTGTGTTTTTGCGTTTGTGTGT
GTATTATGTCCTGCTGTTGCGTGCTCCGGCCGCCAGGCGGAGGTGAACAA
CGACATCAGCGACATTAAGATCGACCTGGAAGAGTTCGAGGAGCTGTGGG
TCGAGAAGGCGGACAAAGTCGCCGAAAAGCAGAAGGTGTGTCAGTTGTCG
CGTGTGCGGTGAAGAAGGGTGGTTTGGAATCGAGTCGAGTATTTTTTGGG
GGGGGCTCGCGGTCTGCGATCGCTGCGGGCCCCGGCCACCGCCCTCCGTC
TGCGCCGAAACGCACTTTTGGACTGAAACAGGACGGGGCGGAAGGAGGTG
GGGCAAAGGCAAGGAAGGTTTTGTATGAATCGTGCTACGCAGGTCTCAGC
AGAAGACGAGAAAAGCTAAAACGCACCGGAAACGTCACGCGCAGCTGTAG
ACTGCTGCTGCGACCGCCCGTTTCGTGTACCTTATCACGCTCTTGAATAT
AGTGAGTTGGAGTAGGCGCTTCTTTCTCTTGCCACAAGTCGACCAGAAAC
CTGAGTAAAAACAGTTGATGTAAAAACACACACATCTGTAGTTTGTAGAC
ACCGACAACTATGTTTGCGGCTTGAGCCACGTCCCCTCCCCCATCCCCGT
TCCGTCCCCCGCCTCTCACTTGTGCTCGTGAACCGTGCGATGACGAATGA
TGATTTGTGGTGAAAAAGCAGCTGGACGAGGCGAAGAAAAATGACTCGAA
GAAGAAGGACGGTCCCAAACTGATCTCGCTGCTCGACGGCAAGCGCGCCA
TGAACACGTCCATCGCCATCGCGCGCATCAAGCTGACCCATGCCGAGACC
CGCCAGGCCATCATGGACATGGACGAGAACGCGCTCTCTTCGAACGTCGT
GCAATCGCTGCAGGTTCGGCGTGGCCCAGCTTGGTTACATTCTGGGTGTT
GCTGGCGCTGTTGCTGGCGCGTGTTTTACGATTGTTGTCGACGGCGTCGG
CCGCAGTGTGGATGGAGATGGGGGTGAGTGTGGGGGTGGGGGCGGAGGTT
ACAGTGACGATAATTGTTGTGACCCATGCTCCAGAAGGAAGCAACACGGC
CTGCTGTTCTTCTTCGGTCATGCTCTCCACGTGCACACTTGTGAGGCTAC
TGGCTATTGCCTCAAAAGTCGGTCACGTAACGGTGGCAAGACTGCACACG
CACCCCTCGCGAGATGGGCAGGACGGATGTCAATGGCTACATATTTCCGG
GGACGTTGCAATCGCGAAACCGGTGGCTGGCCTCCTACTTGTCACTTGCG
CTCGAAGCCTGAAGCAGCACTTCGATCCCTTGCCCCCTTCGCCACCTCAT
CCACATCCATTTCGCCACTTGACCAATGCCTCAGGAATTCATGCCGACGA
CGGACGAGGAGAAGGTTTTGCTAAGCTACAACGGCGACCTCAAGTTGCTC
GGAACGGCAGAGAAGGTACGCCCGCGCGTGTGTGGCTGCTGCGCGTGTTT
CTCGAATTATTGTCGCGAGTCGTTGTCGCCGTTTGTTTTGACTTGTTTCA
GGGTGGCGCCTTGCTCAGTGGCACGTCCTTTGTATCGCGTGCCTGGGTGC
TTGGCGTGCTTGCCAACGTGCGTCTGCCACATTTTTGGGGTGGATCGCAC
GTTTTTCGGGGGTACAGCAGTCTGTTAAGTAGCTGTGCTGCATTCGTTCC
CTGAAAGAAGATGCGATGTCATTTCTGGGCCTGCGCTGCCGTCGTGGGTG
ATCAGCAGGCTCGTTGCCCGCAGGGACCCACTGAACGAGAGGACAATCAA
TACAGGGAATCAATCACGGCGTTGTGCGATTTCCCTACGATTAAATCTCC
CGACTGACATCGTTTTGGTGCTGCTTTTTCCGCGGAAGCACGGGAAGAAG
TGACACCGTTTCGGCCCTCTCGCCTTATCCCCCTTCCCCTTTTCCATCGC
CTCCCTCCGCCCCCCTCCCTTCCTCCCCCTCGCGCGTGATCGCCCGGCTC
GCCACGTTGCTTTGCTTACCCTGACCGGTCGGCTGACGAACTTGACCTGA
CAGTTCATGCTCGAGATGATCAAGGTGCCGAAGCGGGAGCAGCGCCTGCA
GGGCATGCTCTACAAGCAGCTGCTGCAAGGCAGGCAGGAGGACATGCGGT
CCATGGCCGGGCTGATCAACTCGGCGTGCCTCGACGTACGGCTGAGTCGG
CGGCTGAAGAAGCTCTTGGGCATCATCCTCAAGCTCGGGAACCAGCTCAA
CGAGGCGAGTTTGGAAGAAGGCGCGTCTTTTCTCGTTTTCTTGATTCGTT
GCTGGGTCGTTTCGTTTGTTTTTTGAGGCAATGTTTACATCCTTCGAGAG
TACTAATGTTTTTTACAGGGAAAGGGTTGGTTTTTGGATTGAACCCTTAT
TTCGCCCCTACCTCAAACCAAGTTGGTGTCGGTGTCAACGACGTGATCGA
GGTGGTGACGGTGATTCGTGCGCCGCGGTGGTGTTGAGCCCATCCTGCGT
GTTGCGGTTGGAGGTGGTGGCGGTAGTAATCTTGTTGCGCTTGTCTTCCC
TTTCCTGGTGCGTCGACAAGGGTTTCGTCATTGCGCCTCGTCTTCGTAAT
AGTTGATGGGTGATGAGGTTTGTTGCAGACAACGGCGCTGATCCTGCTGC
TGCTGCTTCTGCGGCTACGGTTGATGTCTGTTCTGAACAAGGGTTGCGCT
GCGACGACTCTTGCCGTCTACGTCCGCTCTTGTCGTGACTACTGTCTGTC
GCCATTTCCTGTTGGCCTTGTCGGGACGCCGGGCGGCACGACACTCAACA
GGGCCAGACCACGGGCTTCACGCTTGACTCTCTCCTCAAGCTCAACACCG
CGAAGGCGTTCGACAGGAAGACCAGCATCCTGCACTACCTCGTGATGCTC
GCCAGGAGGAACGACCCGTCGCTGCTGGACTTCAAAGATGTGAGTGGACA
ACGAGCCGAGACGAGAAGGCGAGGCGGGGGCACGCACACCTTAGGCGTGT
CGAGGGAGGTCCACCGCAGTGGGGGGTACGCTTGCGGCCTGCGTTCGCCG
GTGTTGACGAGAGACGCAGCCGCCGATGTCAAGCCCCAAGGAGAGGATTC
GGCGGCCCGGCAAGGATGAGGTCGAGCCGGGCGGCGGACACGGAGAATTC
GGAAACCTGTTCAACCGACACGGCCCATTCTTTCACCGCCCCTCCGCTTG
CCTCCTTACCCCTCACTCTCCCCTCCCGGCTCGCTCTCCGCCCTTGTTCA
GGACCTGAAACACGTCTTCCCGGCGTCCCGGCTCCTGATTTCTACGGTCA
CGACGGAGCTCAACGACCTCGAGAAGGGCTACGCTTCTCTGAAGCGCCTG
GTCGAAGGGGACCCCAACCTGCGGCCGCCCACGCCCATGAGGTCGCCCGT
GCCACCCTCCCCCGCGCATCTGACGCGCTCGCCGAGCGCCGTTAGCAACG
GCGGCGGCAGCACAGACGGGGCGGGAAGCACGACGTTGTACAGCAACAGG
TCGGAGAAGGTTGCGTCGCTCTCGAGGCAGAAAACGGAGAACAGGAAGAC
TACGGCCACGACCGGCAAGGTGGGCGGCGTTTTTCGCCCGGGATTGCCTT
TGCACCTTTCCCCCTCCCCCTTCCCCCTCCTGAACCATCATATAAGGGTA
GGTTAGAGATGTCCCGATCGTTGCTGTTGCGTACATGTTTTCGCGATGAG
CAAGAGGCGCCAGATCCGCGCGAAGGAATTGAGACAAGAGGTGAACGCGT
GAGGATATACTCAAAACGAAGTACTCCGTATTCACAAATCTTCTCCAAAG
GTGAACAACGCCGATTGACCTAGGGCACCAAAAAAAGCTATATCGTGCGT
GTGCGTTGGCTGGGGTTTTGTGTCGGCGCCAGGTGATTCTCCACTTTGAC
AGAGCGAGGCACGCTGTGGGCGGCGGCGAGGGCGGTGGCGATGGGACGAC
GGAGCGGGTATCGAGAAGCGGGTGGATCGCGCCGGTGAGAGCGGGATTCT
GGGGTTACATACGGAAAACGCAAAGCAAAGGGATGGGGTTGGCATTGTTG
GAATGAGAGCGTAGCATTGGGGCCCAATCAACAAATACCGTGCAGCTCGG
AGCTTGCAATCATGACATTCGTTGGCCACGGGCCCACATCGGTACTTTTC
ATTTGCCACGGCGCGTCGCCTGCTGCTCGTATTCACGGGCCAGATCAGCA
TACCTCGTTTGCCGGTGCCACGAAGCGCTAACTGCTGTCCTTTGCCAGCT
GCAAACCCATAGTGTGGGGCAATGGTGTGCGTTGGTAGTATCGGAACCCA
ACCGGCGTGTGTATGCAGTTACAAGGGAAGGGAGTGGGCAAGGGAAACGA
AAACGAAAGGCAAAGAGAGATGTCGTGTCGTAGTGTTCAGGACGGAGAGG
GGGGGAGCCCCGTCGATGAGTCGGCGGCGGGGGGCAGGGCGGCGTGTGAC
AGGGCCATGACAGGGGAAGGGCTGTGCTCTAAAACGAGAGGAAGCAGCAC
TCGCAACAACAGCAACAACACCGGCCGCACGAATCGTTTACATTTTTAGA
GAGTGACGAGGGAGGTAAACGGGCCAGCGAGGAATCTAGGGAAAGCGAGA
GAGAGAGAGATGGCTGTGTGCAATGGGCAACCAATCGGGGAAACCATGAG
CCGTTGGCTCTTGTAGCTACCGCCGTCTCGCCTAAAGTGCCGCGTATGTG
ATAAAATGGTACCACCCCCCCCGACCGATTTTCAAAGCTCCGTTCCTCCT
CACCATAGAATTGAGGGTGCCAACACGTGCCGATACACCTACGGGAAAGA
CATCGGCGGAGAAAATCGAACGTCATCCATTTCCGCATTATTGCTCTCAA
TGTTGTTTTGTCTTGGATCATGTGCGACATTGCAAAGAATAAGCCAAAGC
GGCTCGTCGGCGCGCTTGTCGCTACCATCAAGGTCGTGTGCGATGTTGTA
CCTTGTTGTGTTGCTTGCCTTGCCGTGGTACGCTGCTCGGTAGGGTCTTG
CGTGCTGCTCTCTCCCGATGCCGCGCGGCCTGCGCGCTGGCGGGAGCGGG
GACGTTCGTAGCCTCCGCACTCGAAAACGAATTTCCGAGGTGAGGCATGA
TGCTTGCGCGCCTAAGAGTCTTCTAGGGGGGATGAATGTGCTATCGCTCT
CAGCTGTAAGAAAGTACAGCCGAAGGCTTTGAAGGTCCCCTACGGGTTGA
CTGGCCCCACGGGTGGGGACAGTGCAAGTCTCGATTCTCGGTATATATCT
CTAATGCTTTGTGTTTGCTTGCCAATTCTCCAATTTTCGAAATTTCCGAT
AACCGACTTCCAAAAGCATAGCGCCTTGCAATGGGTTGCTTCGGAAATAA
TTGGGAATTCTTGCGAAACTGGGATACACCCGGAAGTCCACAATTCGGGG
CGAAATGTTGCGCTTGGATGGAGCTCGCCGGGTTTCAAATTTCTGGAATA
TCACGAGAAACTCGAAAGTTGAAAACGGCCCTTTCATGACCTTAAAAGCA
TCAAGGTCATAGATCGAGTCGCATCCCCAACGGTAGTGCTGAAATAGTTG
GCGTGGATCGGCCTATCATTTGCCAGTGCGGGGGACTGCAACCCGTCATT
GAGGAGACTTGCGGTCAATGCACGAAACACTCGAGCACCCACTGACTTCG
CCCTCCTCCCTTCCGCTCCTCCTTCCCAGGGTCTCGCCGAATGCCGGCTA
CCCATGCCGAGTTGTCTCGCACCTGGCGGCAGCAGCAGCAAGAGCAGCAC
AAGCTCTGCGTCCGATGGGATGAGAATAAGCGAGGTGCACGTTGTTGCGG
CTTTTCCCCCACCTGTTTTGTCTGAAATGTGTTTTATGTTTCGAGTTTTG
TTCTTGGACCTACAGCGTTAGCATCTGTTTCTTCTTCCGTGTTTCTGGGA
CAAAAATAAGTTGGGGAAGCGACGGATGTAAGATGTGTTCGCTCGTCACC
GAACACCCAAGCCGTGCCTCAGGGTAATGGTCGTTGCCCACCGTGGTGGG
GGGATTCTTGCTGAGGATGGCTGATGTACTGTATGCTGGGGTTTTTCTGC
CGTCACCCTCTCAACGTCCGCCGCCGCCGCCGCCGCCTCTGCTGTTTTGC
TTCACCCTCCCGCCCCTATTGCTGCTGCTGCTGCTGCTGCTGCTGCTGCT
GCTGCTGCTGCTGCTGCTCGTGGTTTTGCGCAGGGCCTGGCGGACTGCTC
CCTCCCGATGCCGTCAAACCTCGCTCCCGCACCGGGGAAGCGCTCCCCGC
CACCCCCGCCAACGCCGGGGCGGACGCCGCGGAAGTCTCCGAAGAAAATC
GACAAGCGAGAGGTTCGAGCGGCAAAATACATGGTCCTGGTGTGCGACCT
AGAAGTTATTCTGGGATGGATTTGGATTTGACAAGTGTCTGTCGCTGTCT
GGTGCGCGACACTCCACGTGCAGGGGGGTTGGAATGAATATTGTTCGTCT
TTTTTGTCGACAGGCGGACAGACAGCCAGACCGCAAGCAGCAGCAGCAAG
AGCAAGCGGGTCGGCACGCACCAGTGATGAATGGGTGCACAGACGGACAC
CAAGGTAGTGAGACAGACAGATGGTAGCAGGGAGCGGAAAGCGGGCACGC
AGAGAGGAGGGCAGCATGGAGCGACGGATGTCAAGGTTTCATATGCCTGT
CCGAGCCTCCTCTGGGCTGGGTCGGCGCGCGCGCAAAGTCTCATCAGACG
GTGCAATAGGATTAGCCACGAAGCAGCGGACGACGAGTCGTGCTTGCTTG
TTGGGATTTAGTCCACGTTTCACGAATATCCTTCTGGGCTTGTTTCGGCA
CTCTGAATTACCTTGCGCCTGCCGCCGCCCCCGCTCCCGTCCCCGCTCCC
GCCCCCGCTCCCGCCCCGCCTCTATTTTGACGACGATTGCAATGGCAGGC
TCTCGGACTTTGGATGAGGAGCGTGGAGGACGAGCTGAAGGCATCCAAGA
CGCTGGTGGAGGAGATGCAGTCCAACTTCGCGTGAGTTACCTCATCACGA
GTTAGACGTCAACAACGATTAGTTACGAGGCCGCCATTGCAGCTCACCCT
TCCCGAGCACGGCTTGCTTGGAGGCACGCAGCCTGCTTCGAGGCACGCAC
GCACGAGCGCACACACACGCGGCCGTTGGTCGACGATGTGTGACGTTAGG
CGCATTTGTCGAGGGGCTCGATATCGTGATCGTTGGTGCTCCTTGCTCTG
CTGGACCTGCCTATGAGACCCCCCGCGGTGTGTTTACCGTGGCAGTCGAG
GAGGGGTGCACGTGGGTTGCGTGCGAGCACCGCAACGTGGTTCTGGAGGC
GTATCTGCAAAGCTGATCCAGCGTGCCCCCCCTCGCCGTCCGAGCAATAA
CCCCTCGGGCAGCGAGCAATACCTGCAAACTTGCGCTCTGTACTCTTCCT
ACGCGCTCGCTACTATCCGTCGACCTTCACCCAATCAACTGCTGGCTGCT
GCTTGCTCCCCCTGCCTTTGCGTCGGTGTGGGTCTCGCTCGTCCGTTGCG
CGTCGATCTATCCGTTCATCGGTATGTCGATGCATTGGTTCGTCAATCGA
CCGATTGGCCACAGCGGCGCGCTTTCGTACTTCGGAGAGGACCCCGAGCT
GACCCCCCAGGAGTTCTTCACCACCCTTCACTCCTTCATCAAGGTTGGTT
GGCTTTTGTTGCCCGCGTCCGTCGCCATCTCCGACATAGTCGTGGTTCGT
TTGTCGTGGCAGTTGGTATCGATCGGTTGAGGTTTTCTGACGAGGCCATT
TTTCTTTGTGTTAAGTGTCCTTTTTCGATGTATCGCCGAGAAGACCTGAG
CAACCGCTCTCCTGGTGGCTAGAGGCGTATTTGTTGTAAGTGTGGTCGTG
TACGCGTCCAGCTTCCAATGAGATGCGGTAAACTGACTGATGGCGATATT
GGTATGAGTCTCCTATCCGACAGAGCGGGAAGGTTCGCAAAACAGGTCAT
ACGGCAGCCTCTGGTCGAACGCACGCGTCTCGGAGATTCCGCGTGCATAC
GCTCGTCAGCCCCCCCACCAACATCCACACGGGTGTGACCGCGTCGCGGC
TTTCTTCGGGCGTGTTGCTTCTTCTCAAATTGTCAACCACCGCGACCCGT
GGGCTAAAATTCGCTCGCGCTTTTGATTGTTTGCCGCATTGGTCCGGCCG
ACCGGCGACACGGCATTACACGACACATGACACGTCAGGCGTTCGACGAG
GCGCGGGCGTACGTGGACCGGCAGGCGGAGAAGAAGGAGCGGGAGCGCAA
GCTCGAGGAGAAGAAGGCCGCGGCGGCCGCCAAGAAGAAGCGCCTGGAGG
AGGAGAAGCGGCTGAAGGCCGCCGAGCTCCTACGCGTAGGCTCGTCGGGC
TCGTCCTCCGAGAAGGTACTGTCGTCGGCGACGGCCAATGGAACGTCGGC
GGACCCCCGGGACGGGCTTGAGCCTCCGCTGGGGGGCAGGAAGGGGTCGG
GGAACTCCGACGCGGGTGCCTCAGAGAAGAAGAGCGTCGTGGTGGTGGTG
TCTACCTCGAAGGGCGCTAGTGATGGGGGTGGCGGCAAGGAGGCGAACGG
TGACGCCGCCGCGCCGCCGAACGAGGCTGCCACTGCTACCGATTCCGCT back to topCoding sequence (CDS) from alignment at P-fluviatile_contig13:3225592..3235340- >mRNA_P-fluviatile_contig13.1967.1 ID=mRNA_P-fluviatile_contig13.1967.1|Name=mRNA_P-fluviatile_contig13.1967.1|organism=Porterinema fluviatile SAG_2381|type=CDS|length=5442bp|location=Sequence derived from alignment at P-fluviatile_contig13:3225592..3235340- (Porterinema fluviatile SAG_2381) ATGGTGGCCGCGAAGGACCACCCGGACTTCGAGAAGTACTTCAAGATGCT CAAGATGGGGCTGCCGCGCGAGGCGGCACTCCACAAGATGACTCAGGACG GCGTGGACCAGGCAATCCTCGATACTCCGGACGCGATGGTACCTCTCGGC CCTGCTGCCGGCACCGCCGCCACAGGCGGAGGGATTCCCTCGCCGCCGCC GCTGCCAGGAATGGGTGGTGGCATCCCTCGCCCGCCGCCCCTGCCGGGAA TGGGTGGCGGTATCCCGCCCCCGCCACCCCTACCGGGAATGGGTGGCGGA ATCCCCCCCCCGCCACCCCTACCGGGAATGGGTGACGGTATCCCGCCCCC GCCGCCGCTCCCCGGGATAGGTGGGGGCATCCCCCGCCCGCCGCCGCTGT CCGGAATGGGTGGTGGCATCCCTCCCCCGCCGCCGTTGCCGGGAATGGGA GGGCGGGGGCCCCCCATGCCGCCTCCGCTGCCCGGCATGCCCCGGGGACC TGGAGGACTTCCGCCCCCGCCACCACTGACGGGGATGTCGGGTAGAGGAT TGCCGACACCGAGGGGATTGGTGGCCCCGCCCCCACGCGGCCTGCCGAAG AAGCCCAAGGACAAGCGCCGGAAGCTCCACTGGAAGACCATTCCGAAAGC GCGGTTGCAGCAGGCGGAGGAGACCGTCTGGGGAGCGATGGTGGCCGCGA AGGACCACCCGGACTTCGAGAAGTACTTCAAGATGCTCAAGATGGGGCTG CCGCGCGAGGCGGCACTCCACAAGATGACTCAGGACGGCGTGGACCAGGC AATCCTCGATACTCCGGACGCGATGGTACCTCTCGGCCCTGCTGCCGGCA CCGCCGCCACAGGCGGAGGGATTCCCTCGCCGCCGCCGCTGCCAGGAATG GGTGGTGGCATCCCTCGCCCGCCGCCCCTGCCGGGAATGGGTGGCGGTAT CCCGCCCCCGCCACCCCTACCGGGAATGGGTGGCGGAATCCCCCCCCCGC CACCCCTACCGGGAATGGGTGACGGTATCCCGCCCCCGCCGCCGCTCCCC GGGATAGGTGGGGGCATCCCCCGCCCGCCGCCGCTGTCCGGAATGGGTGG TGGCATCCCTCCCCCGCCGCCGTTGCCGGGAATGGGAGGGCGGGGGCCCC CCATGCCGCCTCCGCTGCCCGGCATGCCCCGGGGACCTGGAGGACTTCCG CCCCCGCCACCACTGACGGGGATGTCGGGTAGAGGATTGCCGACACCGAG GGGATTGGTGGCCCCGCCCCCACGCGGCCTGCCGAAGAAGCCCAAGGACA AGCGCCGGAAGCTCCACTGGAAGACCATTCCGAAAGCGCGGTTGCAGCAG GCGGAGGAGACCGTCTGGGGAGCGGCGGAGGTGAACAACGACATCAGCGA CATTAAGATCGACCTGGAAGAGTTCGAGGAGCTGTGGGTCGAGAAGGCGG ACAAAGTCGCCGAAAAGCAGAAGGCGGAGGTGAACAACGACATCAGCGAC ATTAAGATCGACCTGGAAGAGTTCGAGGAGCTGTGGGTCGAGAAGGCGGA CAAAGTCGCCGAAAAGCAGAAGCTGGACGAGGCGAAGAAAAATGACTCGA AGAAGAAGGACGGTCCCAAACTGATCTCGCTGCTCGACGGCAAGCGCGCC ATGAACACGTCCATCGCCATCGCGCGCATCAAGCTGACCCATGCCGAGAC CCGCCAGGCCATCATGGACATGGACGAGAACGCGCTCTCTTCGAACGTCG TGCAATCGCTGCAGCTGGACGAGGCGAAGAAAAATGACTCGAAGAAGAAG GACGGTCCCAAACTGATCTCGCTGCTCGACGGCAAGCGCGCCATGAACAC GTCCATCGCCATCGCGCGCATCAAGCTGACCCATGCCGAGACCCGCCAGG CCATCATGGACATGGACGAGAACGCGCTCTCTTCGAACGTCGTGCAATCG CTGCAGGAATTCATGCCGACGACGGACGAGGAGAAGGTTTTGCTAAGCTA CAACGGCGACCTCAAGTTGCTCGGAACGGCAGAGAAGGAATTCATGCCGA CGACGGACGAGGAGAAGGTTTTGCTAAGCTACAACGGCGACCTCAAGTTG CTCGGAACGGCAGAGAAGTTCATGCTCGAGATGATCAAGGTGCCGAAGCG GGAGCAGCGCCTGCAGGGCATGCTCTACAAGCAGCTGCTGCAAGGCAGGC AGGAGGACATGCGGTCCATGGCCGGGCTGATCAACTCGGCGTGCCTCGAC GTACGGCTGAGTCGGCGGCTGAAGAAGCTCTTGGGCATCATCCTCAAGCT CGGGAACCAGCTCAACGAGTTCATGCTCGAGATGATCAAGGTGCCGAAGC GGGAGCAGCGCCTGCAGGGCATGCTCTACAAGCAGCTGCTGCAAGGCAGG CAGGAGGACATGCGGTCCATGGCCGGGCTGATCAACTCGGCGTGCCTCGA CGTACGGCTGAGTCGGCGGCTGAAGAAGCTCTTGGGCATCATCCTCAAGC TCGGGAACCAGCTCAACGAGGGCCAGACCACGGGCTTCACGCTTGACTCT CTCCTCAAGCTCAACACCGCGAAGGCGTTCGACAGGAAGACCAGCATCCT GCACTACCTCGTGATGCTCGCCAGGAGGAACGACCCGTCGCTGCTGGACT TCAAAGATGGCCAGACCACGGGCTTCACGCTTGACTCTCTCCTCAAGCTC AACACCGCGAAGGCGTTCGACAGGAAGACCAGCATCCTGCACTACCTCGT GATGCTCGCCAGGAGGAACGACCCGTCGCTGCTGGACTTCAAAGATGACC TGAAACACGTCTTCCCGGCGTCCCGGCTCCTGATTTCTACGGTCACGACG GAGCTCAACGACCTCGAGAAGGGCTACGCTTCTCTGAAGCGCCTGGTCGA AGGGGACCCCAACCTGCGGCCGCCCACGCCCATGAGGTCGCCCGTGCCAC CCTCCCCCGCGCATCTGACGCGCTCGCCGAGCGCCGTTAGCAACGGCGGC GGCAGCACAGACGGGGCGGGAAGCACGACGTTGTACAGCAACAGGTCGGA GAAGGTTGCGTCGCTCTCGAGGCAGAAAACGGAGAACAGGAAGACTACGG CCACGACCGGCAAGGACCTGAAACACGTCTTCCCGGCGTCCCGGCTCCTG ATTTCTACGGTCACGACGGAGCTCAACGACCTCGAGAAGGGCTACGCTTC TCTGAAGCGCCTGGTCGAAGGGGACCCCAACCTGCGGCCGCCCACGCCCA TGAGGTCGCCCGTGCCACCCTCCCCCGCGCATCTGACGCGCTCGCCGAGC GCCGTTAGCAACGGCGGCGGCAGCACAGACGGGGCGGGAAGCACGACGTT GTACAGCAACAGGTCGGAGAAGGTTGCGTCGCTCTCGAGGCAGAAAACGG AGAACAGGAAGACTACGGCCACGACCGGCAAGGTGATTCTCCACTTTGAC AGAGCGAGGCACGCTGTGGGCGGCGGCGAGGGCGGTGGCGATGGGACGAC GGAGCGGGTATCGAGAAGCGGGTGGATCGCGCCGGTGATTCTCCACTTTG ACAGAGCGAGGCACGCTGTGGGCGGCGGCGAGGGCGGTGGCGATGGGACG ACGGAGCGGGTATCGAGAAGCGGGTGGATCGCGCCGGGTCTTGCGTGCTG CTCTCTCCCGATGCCGCGCGGCCTGCGCGCTGGCGGGAGCGGGGACGTTC GTAGCCTCCGCACTCGAAAACGAATTTCCGAGGGTCTTGCGTGCTGCTCT CTCCCGATGCCGCGCGGCCTGCGCGCTGGCGGGAGCGGGGACGTTCGTAG CCTCCGCACTCGAAAACGAATTTCCGAGGGTCTCGCCGAATGCCGGCTAC CCATGCCGAGTTGTCTCGCACCTGGCGGCAGCAGCAGCAAGAGCAGCACA AGCTCTGCGTCCGATGGGATGAGAATAAGCGAGGGTCTCGCCGAATGCCG GCTACCCATGCCGAGTTGTCTCGCACCTGGCGGCAGCAGCAGCAAGAGCA GCACAAGCTCTGCGTCCGATGGGATGAGAATAAGCGAGGGCCTGGCGGAC TGCTCCCTCCCGATGCCGTCAAACCTCGCTCCCGCACCGGGGAAGCGCTC CCCGCCACCCCCGCCAACGCCGGGGCGGACGCCGCGGAAGTCTCCGAAGA AAATCGACAAGCGAGAGGGCCTGGCGGACTGCTCCCTCCCGATGCCGTCA AACCTCGCTCCCGCACCGGGGAAGCGCTCCCCGCCACCCCCGCCAACGCC GGGGCGGACGCCGCGGAAGTCTCCGAAGAAAATCGACAAGCGAGAGGCTC TCGGACTTTGGATGAGGAGCGTGGAGGACGAGCTGAAGGCATCCAAGACG CTGGTGGAGGAGATGCAGTCCAACTTCGCGCTCTCGGACTTTGGATGAGG AGCGTGGAGGACGAGCTGAAGGCATCCAAGACGCTGGTGGAGGAGATGCA GTCCAACTTCGCCGGCGCGCTTTCGTACTTCGGAGAGGACCCCGAGCTGA CCCCCCAGGAGTTCTTCACCACCCTTCACTCCTTCATCAAGCGGCGCGCT TTCGTACTTCGGAGAGGACCCCGAGCTGACCCCCCAGGAGTTCTTCACCA CCCTTCACTCCTTCATCAAGGCGTTCGACGAGGCGCGGGCGTACGTGGAC CGGCAGGCGGAGAAGAAGGAGCGGGAGCGCAAGCTCGAGGAGAAGAAGGC CGCGGCGGCCGCCAAGAAGAAGCGCCTGGAGGAGGAGAAGCGGCTGAAGG CCGCCGAGCTCCTACGCGTAGGCTCGTCGGGCTCGTCCTCCGAGAAGGTA CTGTCGTCGGCGACGGCCAATGGAACGTCGGCGGACCCCCGGGACGGGCT TGAGCCTCCGCTGGGGGGCAGGAAGGGGTCGGGGAACTCCGACGCGGGTG CCTCAGAGAAGAAGAGCGTCGTGGTGGTGGTGTCTACCTCGAAGGGCGCT AGTGATGGGGGTGGCGGCAAGGAGGCGAACGGTGACGCCGCCGCGCCGCC GAACGAGGCTGCCACTGCTACCGATTCCGCTGCGTTCGACGAGGCGCGGG CGTACGTGGACCGGCAGGCGGAGAAGAAGGAGCGGGAGCGCAAGCTCGAG GAGAAGAAGGCCGCGGCGGCCGCCAAGAAGAAGCGCCTGGAGGAGGAGAA GCGGCTGAAGGCCGCCGAGCTCCTACGCGTAGGCTCGTCGGGCTCGTCCT CCGAGAAGGTACTGTCGTCGGCGACGGCCAATGGAACGTCGGCGGACCCC CGGGACGGGCTTGAGCCTCCGCTGGGGGGCAGGAAGGGGTCGGGGAACTC CGACGCGGGTGCCTCAGAGAAGAAGAGCGTCGTGGTGGTGGTGTCTACCT CGAAGGGCGCTAGTGATGGGGGTGGCGGCAAGGAGGCGAACGGTGACGCC GCCGCGCCGCCGAACGAGGCTGCCACTGCTACCGATTCCGCT back to top
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