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Homology
BLAST of mRNA_P-fluviatile_contig83.14848.1 vs. uniprot
Match: D7G7G5_ECTSI (Nuclear pore protein n=1 Tax=Ectocarpus siliculosus TaxID=2880 RepID=D7G7G5_ECTSI) HSP 1 Score: 975 bits (2521), Expect = 0.000e+0 Identity = 491/675 (72.74%), Postives = 570/675 (84.44%), Query Frame = 2
Query: 755 PVSDLPPPTADVASRLSTLEAGHLEVIQALNDTDDKFPLATRLAASAGKAVTPGVKNGPDHAYYNALKMLEAMFEGEGWESSPESTPRSRLDGTLDFLQKQFKQVIEDKVKKAREAGTVDALSLQDRETGLPFRVRAFMRLDRKGKFDVGAGGATVSGLPVWPQIYLCLRCGGRGEASSIARAAVNASENSRCTAEEMALLGKVADVLVQGKIENVFGGVIQQAFHSMRDGEDMFKQSVLNVLSRADDKKVARINKETIEDYMWFKLSFVGSDVDNSDVLGAAKERVSGRDARRRFDPDGRSTYSYVNVLLYTQQLDAAVAFLSWKGQHLAALHMALVMSHHNAYNAVDNPSATM-----YPGDNDGEPGPAPTLRELMERALQGRVDSDPQMCVEYLLRLPLPIASDCLGGLAVRLGAIKAAPLLGYMQTDGSRKKGGLDRFLMDNTVEDIAFDAAQKAEREGRREDAMTFYGLGCDYEKVAELLQQKLAEKLDPQAAKRSFWKELGAKIHKVLVIMSEGPEATESRELAAEGVGQMLRLMDFFAFVQNRALSKALVELEGAGLLPSSHDEAALLASRLRLRGPHDAFTGVIPQALETGMQCLRHYHLEVKRELLGSAVG-RVDAEQWRASRERKLEELEAKGRAMVGLAGRLSDLLPASFVADLSRVEANIIN 2761
PVS +PP T D ASRLS LE GHL VI+ALNDTD KFPLATRLAASA VTPGVKNGP+HAY+NALKMLE M EGEGWE + ST RSRLDGTLDFLQKQFKQVI+D+VK+AREAGTVDA +++D +TGLPF+VRAFMRLDRK KF VG GGA +S LPVWPQI+LCLRCGGR +AS+IARAA + ENSRCT +E+ LL KV+++L QGK EN FGG IQQAFHSMRDGED FKQSVLN+LS +DDKKV RINKETIEDYMWFKLSFVGSDV++S++L +AK RVSGRDARRRFDPDG +TY+YVNVLLYTQQL+AAVAFL WKGQHLAALHMAL MSHHNAY A + S T YPGD GEPGPAPTL +LM R ++GR+DSDPQMCVEY+LRLP+P+A +C+G L V +GA KAA LGY+QTDG+RK+G LDRFL ++TVED+AF+AAQKAE GR+EDAMTF+GL CD+EK+A LLQ+KLAE LDPQA KR+FWKELG I+ +L +S+GP+++ESR LA +GVGQMLRLMDF+ F+ NR L KAL+ELEGAG+LPSS +EAA LA +R RGP D T V+P ALE GMQC+RH+HLEVKREL G G R+D +QW ASRE++L ELEAKGRAMVG AGRLSD+LPASFVADLSRVEANIIN
Sbjct: 220 PVSAVPPTTTDTASRLSALEVGHLAVIRALNDTDGKFPLATRLAASASTVVTPGVKNGPEHAYFNALKMLETMLEGEGWEGAGASTSRSRLDGTLDFLQKQFKQVIDDQVKRAREAGTVDASTVRDTDTGLPFKVRAFMRLDRKSKFVVG-GGAMLSQLPVWPQIFLCLRCGGRADASAIARAAAESPENSRCTPQELELLTKVSELLAQGKTENAFGGAIQQAFHSMRDGEDSFKQSVLNILSASDDKKVTRINKETIEDYMWFKLSFVGSDVESSEILESAKARVSGRDARRRFDPDGTNTYAYVNVLLYTQQLEAAVAFLHWKGQHLAALHMALAMSHHNAYTAGERTSGTPHDHNHYPGDG-GEPGPAPTLVDLMARVVEGRIDSDPQMCVEYMLRLPVPVAVECIGALCVEMGAEKAARFLGYIQTDGNRKRGDLDRFLTEDTVEDVAFNAAQKAEDAGRKEDAMTFFGLSCDWEKMAGLLQEKLAENLDPQAEKRAFWKELGTTIYTLLNTLSQGPDSSESRALATKGVGQMLRLMDFYVFLSNRELFKALIELEGAGMLPSSQEEAAGLADTIRRRGPQDTVTAVLPHALENGMQCVRHHHLEVKRELHGGGTGGRIDGQQWIASREKRLAELEAKGRAMVGFAGRLSDMLPASFVADLSRVEANIIN 892
BLAST of mRNA_P-fluviatile_contig83.14848.1 vs. uniprot
Match: A0A0K2UTL3_LEPSM (Nuclear pore protein n=3 Tax=Lepeophtheirus salmonis TaxID=72036 RepID=A0A0K2UTL3_LEPSM) HSP 1 Score: 108 bits (271), Expect = 2.680e-20 Identity = 125/525 (23.81%), Postives = 218/525 (41.52%), Query Frame = 2
Query: 1202 GAGGATVSGLPVWPQIYLCLRCGGRGEASSIARAAVNASENSRCTAEEMALLGKVADVLVQGKIENVFGGVIQQAFHSMRDGEDMFKQSVLNVLSRADDKKVARINKETIEDYMWFKLSFVGSDVDNSDVLGAAKERVSGRDARRRFDPDGRSTYSYVNVLLYTQQLDAAVAFLSWKGQHLAA--LHMALVMSHHNAYNAVDNPSATMYPGDN-DGEPGPAPTLRELMERALQGRVDSDPQMCVEYLLRLPLP-------IASDCLGGLAVRLGAIKAAPLLGYMQTDGSRKKGGLDRFLMDNTVEDIAFDAAQKAEREGRREDAMTFYGLGCDYEKVAELLQQKLAEKLDPQAAKRSFWKELGAKIHKVLVIMSEGPEATESRELAAEGVGQMLRLMDFFAFVQNRALSKALVELEGAGLLPSSHDEAALLASRLRLRGPHDAFTGVIPQALETGMQCLRHYHLEVKRELLGSAVGRVDAEQWRASRERKLEELEAKGRAMVGLAGRLSDLLPASFVADLSRVE 2746
G V G+P+WP IY CLRC G+ + +AA +A + ++ +D + + EN+ V S+R D +K++V +L D +++DY+W KLS + D +S + + + + + Y VL T Q ++A+ FL ++ L A +H+AL M +N N A + ++ D +P L + ++ SDP+ + Y L + + C+ L ++ +++ LLG + +DGSR G +D+F + I + A +E +G ED++ Y L +EKV ELL + L++ + S L K + T SRE A +L LM FF + A+ + ++P + + + S RL D +P L M L + + K + G+ GR ER LE L + ++++ AG + +P A L ++E
Sbjct: 301 GLEDGLVDGVPIWPLIYFCLRC---GDLEAAIKAATSAGHGLGEMTKLLSEASNSSDRRLSPQSENI---VRLSYRRSLRQSTDPYKRAVYCMLGACDHSDEHAEIATSLDDYLWIKLSMIREDEADSGLTLSQFQILMVEEYGESHFSAFDQPLLYFQVLFLTGQFESAIEFL-FRVDRLRAHSVHIALSMFENNQLLLPSNIQAPLLSRESSDKKPIKRLNLARCIILFVRKFEFSDPKEALHYFYFLRSMKGAKGDNLFTSCVSELVLK--SLEFDRLLGVINSDGSRSTGLIDKFSQHIDTQKIIENVASDSEHKGMFEDSVKLYDLAKKHEKVIELLNKLLSQVVSQSPVAESRRDRLQRKAVDIAKRYRANGH-TASRETIATFF-LLLDLMTFFDLYHMKKYDDAIDAVLNIKVVPLNQSDIDFMVSNFRLTS--DEVRRNLPDLLLAVMNILFSQYKQTKSKGRGNEGGR----------ERNLETLRNRAKSLITFAGIIPYRMPGDTNARLVQME 802
BLAST of mRNA_P-fluviatile_contig83.14848.1 vs. uniprot
Match: UPI001425AFB8 (nuclear pore complex protein Nup93-like n=1 Tax=Anneissia japonica TaxID=1529436 RepID=UPI001425AFB8) HSP 1 Score: 104 bits (259), Expect = 7.450e-19 Identity = 143/604 (23.68%), Postives = 246/604 (40.73%), Query Frame = 2
Query: 1025 LDGTLDFLQKQFKQVIEDKVKKAREAGTVDALSLQDRETGLPFRVRAFMRLDRKGKFDVGAGGATVSGLPVWPQIYLCLRCGGRGEASSIARAAVNASENSRCTAEEMALLGKVADVLV------QGKIENVFGGVIQQAFH-SMRDGEDMFKQSVLNVLSRADDKKVARINKETIEDYMWFKLSFVGSDVDNSDVLGAAKERVSGRDARRRFDPD--------GRSTYSYVNVLLYTQQLDAAVAFLSWKGQHLA--ALHMALVMSHHNAYNAVDNPSATMYPG-DNDGEPGPAPTLRELMERALQGRVDSDPQMCVEY--LLRLPLP-----IASDCLGGLAVRLGAIKAAPLLGYMQTDGSRKKGGLDRFLMDNTVEDIAFDAAQKAEREGRREDAMTFYGLGCDYEKVAELLQQKLAEKLDPQAAKRSFWKELGAKIHKVLVIMSEG--PEATESRELAAEGVGQMLRLMDFFAFVQNRALSKALVELEG---AGLLPSSHDEAALLASRLRLRGPHDAFTGVIPQALETGMQCLRHYHLEVKRELLGSAVGRVDAEQWRASRERKLEELEAKGRAMVGLAGRLSDLLPASFVADLSRVE 2746
++ L +L+K + Q I + +A+ + + G+ V+AF+R+ G A V GLP+WP +Y C+RC G+ + +A AS++ +G+V D L Q ++ I+ + R D +K+ V VL D + +DY+W KLS V D D LGAA + S D +R+ D ++ Y VLL + Q + A+ FL W+ + L+ A+H+A+V+ N + A M ND EP L+ +DP+ ++Y LLR + + C+ L + LLG ++ DG+R+ G +D+F DNT I A+ E +G EDA+ Y L + EKV EL+ + L+ + S ++H + + +++ + + +L L FF + + +AL +E L P S D+ + + D +P L M L + + + + ++ LE L + +A++ AG L +P A L ++E
Sbjct: 256 VNQALRYLEKTYCQYILGYISEAQHQARLGGIP------GIYPLVQAFLRIKLLPLGMPGLEEAEVDGLPLWPMVYYCMRC---GDLEAALQAFNKASKD----------VGEVRDFLQEYMHSDQNRLSPASETKIKLQYRREARHSSDPYKRIVFCVLGNCDPSDSHSEVADKTDDYLWLKLSQVCLDPD----LGAAADHTSLSDLQRQLYQDYGEVHFNAQQNPLLYFKVLLLSAQFEPALEFL-WRNEALSSHAVHIAIVLFEMGLLNVPQSIGAQMLSKVSNDAEPMRRLNYARLVSLYAAKFQTTDPREALQYFYLLRKLTDSKGENLFTKCISELVTETREFEM--LLGQIKEDGTRRPGAIDKF-QDNTQR-IIETVAKDTENKGLFEDAVKLYDLADNSEKVLELMNKLLSPLVSSPPTTHSN----RDRLHNLAISIAKRYTKQCLSGTRGTTDTFYLLLDLFTFFDIYYAKDIDRALDTIEKLKLVALTPESVDDRVAGFKQYK-----DEIRRSMPDVLIATMNILYTKYKMNRSKPPYTPRSMTPQRGMDGGKDSYLEYLRRQAKALITFAGMLPYRMPGDINARLVQLE 822
BLAST of mRNA_P-fluviatile_contig83.14848.1 vs. uniprot
Match: A0A7M7N7N2_STRPU (Nuclear pore protein n=2 Tax=Echinacea TaxID=7674 RepID=A0A7M7N7N2_STRPU) HSP 1 Score: 101 bits (252), Expect = 5.140e-18 Identity = 154/596 (25.84%), Postives = 238/596 (39.93%), Query Frame = 2
Query: 1067 VIEDKVKKAREAGTVDALSLQDRETGLPFRVRAFMRLDRKGKFDVGAGGATVSGLPVWPQIYLCLRCGGRGEASSIAR-AAVNASENSRCTAEEMALLGKVADVLVQGKIENVFGGVIQQAFHSMRDGEDMFKQSVLNVLSRADDKKVARINKETIEDYMWFKLS---FVGSDVDNSDVLGAAKERVSGRDARRRF-DPDGRSTYS-------YVNVLLYTQQLDAAVAFLSW--KGQHLAALHMALVMSHHNAYNAVDNPSATMYPGDNDGEPGPAPTLR--ELMERALQGRVDSDPQMCVEYLLRLP-LPIASD------CLGGLAVRLGAIKAAPLLGYMQTDGSRKKGGLDRFLMD--NTVEDIAFDAAQKAEREGRREDAMTFYGLGCDYEKVAELLQQKLAEKLDPQAAKRSFWKELGA-KIHKVLVIMSEG----PEATESRELAAEGVGQMLRLMDFFAFVQNRALSKALV---ELEGAGLLPSSHDEAALLASRLRLRGPH---DAFTGVIPQALETGMQCLRHYHLEVKRELLGSAVGRVDAEQWRASRERKLEELEAKGRAMVGLAGRLSDLLPASFVADLSRVE 2746
+I D +++AR G L V+ F+++ G V GLPVWP IY C+RCG A R AA E S E M + + K+ ++R+ D FK++V +L R D E EDY+W KLS F S +S A+ +R++ + + + G S +S Y +L + Q +AA+ FLS G A+H A+V+ N A + D +P P L L+ +DP+ ++Y L L S+ CL L + + LLG + DG+R+ G +D+F +D + +E +A D E +G EDA+ Y L + +KV EL+ + L+ + + +S + L A I S+G P T+S L +L LM FF NR L +AL +L+ L P S D+ R+ G D +P L M L + + S R +E L L + +A++ AG L +P A L ++E
Sbjct: 277 IIGDNLRQARLGGVPGVYQL----------VKGFLKVKLPAAVP-GLEDGLVEGLPVWPVIYYCIRCGDLDAAKITTRKAAQGLGEFSEYLEEYMQNEDRRLSPSTETKLR-------LHNRRAVRNSTDPFKRAVYCLLGRCDTMDNHAEVCEKTEDYLWLKLSQVQFGESPSSSSSSSQASSDRLTLQQLQTTLLEEYGESHFSAHQNPYLYFKILFLSAQFEAAIEFLSRHDSGLRSHAVHAAIVLHELGLLALPGNIQAQLLSRDPQ-DPLPMHRLNFVRLISMYTSKFESTDPREALQYFYLLRNLRDTSEKSYFVRCLSELVIETREFET--LLGRRERDGARRPGAVDKFQVDTQSIIETVAMDT----ETKGLFEDALKLYDLAGNTDKVLELMTRLLSPIIASSNSPQSNRERLQALSISIAERYQSKGLTGSPANTKSFYL-------LLDLMTFFDAYHNRDLDRALTTISQLQLIALSPESVDD--------RVHGFKQYTDEIRRTLPDVLLATMTILYTKYRSCRSSGTQSPQARAGQRHENGGKESFLAHLRKQAKALITFAGMLPYRMPGDTNARLVQME 832
BLAST of mRNA_P-fluviatile_contig83.14848.1 vs. uniprot
Match: A0A7S1TQX7_9STRA (Hypothetical protein (Fragment) n=1 Tax=Phaeomonas parva TaxID=124430 RepID=A0A7S1TQX7_9STRA) HSP 1 Score: 91.7 bits (226), Expect = 1.290e-17 Identity = 50/157 (31.85%), Postives = 87/157 (55.41%), Query Frame = 3
Query: 84 DLQALMMGSESLLTHIARPDGIPRLDKSLAEIERGSLRMGAEAAARSRREAMALGVTAEVAEQK-QELKGGS--MLARNRFDPESLVRAVNAVQLRGGYQPLQPLGETDIEGYLAHHHDMIVLTAVDETRRAAAECSLVRQREWEVDSWRQTKKALM 545
D L++ SE L++ + GI + K + E+E S AL + + +Q+ +L G+ +LA F+ E L R V ++L+ Y+P++PLG+TDI GYL HHH+M+++TA++ET+ AAA + Q +W +D W +++ +
Sbjct: 5 DFNELLVESERLVSRLGAETGIKPVHKDIMELESAS---------------RALFQSEPIGQQRAHDLNAGAIRLLAERNFNAEELTRNVRHLELQAQYEPMEPLGQTDIAGYLQHHHEMVIITAIEETKLAAARDAAAAQDQWLLDDWLAQRESTL 146
BLAST of mRNA_P-fluviatile_contig83.14848.1 vs. uniprot
Match: A0A1Y2GCW5_9FUNG (Nuclear pore protein n=1 Tax=Lobosporangium transversale TaxID=64571 RepID=A0A1Y2GCW5_9FUNG) HSP 1 Score: 100 bits (248), Expect = 1.620e-17 Identity = 145/649 (22.34%), Postives = 265/649 (40.83%), Query Frame = 2
Query: 956 KMLEAMFEGEGWESSPESTP-----RSRL-DGTLDFLQKQFKQVIEDKV-KKAREAGTVDALSLQDRETGLPFRVRAFMRLD--RKGKFDVGAGGATVSGLPVWPQIYLCLRCGGRGEASSIARAAVNASENSRCTAEE-----MALLGKVADVLVQGKIENVFGGVIQQAFHSMRDGEDMFKQSVLNVLSRADDKKVARINKETIEDYMWFKLSFVGSDVDNSDVLGAAKERVSGRDA------RRRFDPDGRSTYSYVNVLLYTQQLDAAVAFLS-WKGQHLAALHMALVMSHHN-----AYNAVDNPSATMYPGDNDGEPGPAPTLRELMERALQGRVDSDPQMCVEYLLRLPLPI----------ASDCLGGLA-VRLGAIKAAPLLGYMQTDGSRKKGGLDRFL----MDNT---VEDIAFDAAQKAEREGRREDAMTFYGLGCDYEKVAELLQQKLAEKLDPQAAKRSFWKELGAKIHKVLVIMSEGPEATESRELAA----EGVGQMLRLMDFFAFVQNRALSKALVELEGAGLLPSSHDEAALLASRLRLRGPHDAFTGVIPQALETGMQCLRHYHLEVKRELLGSAVGRVDAEQWRASRERKLEELEAKGRAMVGLAGRLSDLLPASFVADLSRVEANII 2758
K L+ + + SP +P R RL G+ FL+KQF IE V EA SL + VRAF++L R G + +G +W QIY LR G EA A N +E S A+ +A + D + ++ Q D D +K ++ ++ R + K +ED++W +LS + +D + K ++ A ++F+P+G + Y VL+Y+QQ + A+ +LS ++ L +H+++ ++++ + + V +P+ D G+ +L+ + + P + YL + L S C + + L A + LLG + G + G ++++L + N+ V+DI +AA+ +EGR EDA+ Y + Y +V ELL ++LAE + + + E G I + +++E + + E +LRL++F A+ + L+P D + + + +G + P L M+ L + +K A R +E L+ + R+++ AG + +PA A L+R++ I+
Sbjct: 261 KTLKERAYADAYLMSPRKSPAAALLRERLIKGSKTFLEKQFMNHIEASVASNPAEANLGGVPSLLN-------TVRAFVQLKYLRYGSWSQ-PNLEIANGQAMWAQIYYLLRTGHGHEALKFA----NENEGSFTPADRQFVTYLAAYLESEDRTLPAPMQERLLSDFNQRIRYSSDTVDPYKLTLYKIIGRCELNKRTTPVVGALEDFIWLQLSMIRES--KNDTMPQDKYELADFQALILKYGAKQFNPNGNNPLQYFQVLIYSQQFERAIHYLSSFRAYTLETVHISIALTYYGLLRIPSVHRVSDPNPFSITTDAHGQEVAHFNFTQLIHYQARIIAEHYPTEALTYLYLICLNTDLTPAINQEHISLCHSYIQELVLQAKDYSTLLGNTR-HGIKTPGVIEKYLPLIKIQNSSQFVKDITIEAAKSKSKEGRIEDAIQLYSIAEAYNQVVELLNRQLAEAISNPGLQGTS--ESGVNIPAIRRMINEYVSDPKVNQQIVPKNLETCSILLRLVEFTELYDRGKYEAAVSVIIELDLIPLEADMSVIAKKADQFQGLDECVARNFPDVLLKTMESLNRLYQALKNSPYDEA-----------GRRGNMEMLKRRARSLMMFAGSIKFRMPADTYAKLNRLDVMIV 881
BLAST of mRNA_P-fluviatile_contig83.14848.1 vs. uniprot
Match: A0A7M6DL20_9CNID (Nuclear pore protein n=1 Tax=Clytia hemisphaerica TaxID=252671 RepID=A0A7M6DL20_9CNID) HSP 1 Score: 98.2 bits (243), Expect = 5.870e-17 Identity = 132/559 (23.61%), Postives = 226/559 (40.43%), Query Frame = 2
Query: 1142 GLPFRVRAFMRLDRKGKFDVGAGGATVSGLPVWPQIYLCLRCGGRGEASSIARAAV-NASENSRCTAEEMALLGKVADVLVQGKIENVFGGVIQQAFHSMRDGEDMFKQSVLNVLSRADDKKVARINKETIEDYMWFKLSFVGSDVDNSDVLGAAK-----ERVSGRDARRRFDPDGRSTYSYVNVLLYTQQLDAAVAFLSWKGQ-HLAALHMALVMSHHNAY---NAVDNPSATMYPGDNDGEPGPA-----PTLRELMERALQGRVDSDPQMCVEYLLRLPL-------PIASDCLGGLAVRLGAIKAAPLLGYMQTDGSRKKGGLDRFLMDNTVEDIAFDAAQKAEREGRREDAMTFYGLGCDYEKVAELLQQKLAEKLDPQAAKRSFWKELGAKIHKVLV-IMSEGPEATESRELAAEGVGQMLRLMDFFAFVQNRALSKALVELEGAGLLPSSHDEAALLASRLRLRGPHDAFTGVIPQALETGMQCLRHYHLEVKRELLGSAVG-RVDAEQWRASRERKLEELEAKGRAMVGLAGRLSDLLPASFVADLSRVE 2746
GL V++F+++ + G V+G+PVWP IY CLRCG + A E E + + KI+ + VI R D FK+ + ++ D + + EDY+W KL+ + ++ D++ + G R F+ Y Y VL T Q +AA+ FLS + A+H+ + + N NA+ + + P D P P P L + R + +DP+ +EY L + + C+ L + + +LG + DGS+K G + +F +D V++I A+ AE +G EDA Y L ++EKV ELL + + + + +S + + + + G + + SR + ++ LM FF + +AL ++ L+P S +E + + D +P L M L + + L S +G R + + E +L+ K RA+V AG L +P A L ++E
Sbjct: 286 GLYNLVQSFLKI-KVVSSSSGFEDGLVNGVPVWPLIYFCLRCGDKVATQRAAEGLPPQYGEFKTSLKEYLTSPDNRLHPNNEAKIKLQYKRVI-------RSSPDPFKRIIFCIIGHCDANEAHTEVAKKTEDYIWLKLNQIDFATEDEDIVTLPRFQKLLHEEYGESHFRAFE----QPYLYAQVLFLTGQFEAAIEFLSRQDHCRCHAIHIGIALHAENLLLVPNAIHSSLLSADPND----PVPLKRLNYPRLITIYTRKFEV---TDPREALEYFYLLRNIDGANGDDLFASCVSELTLETREFET--ILGSVNHDGSKKPGCVSKFKLD--VKNIVSTIAKDAENKGSFEDAAMLYDLADNHEKVLELLSNLICQFVALANSPKSSRERIQTMARGIAERYKTRGHDGSRSR---SSTFYLLVDLMFFFDLYHQKQNEEALDVIQKIKLIPLSMEEVEQKVNSFKQYS--DEIRQCMPDVLLKTMNILYEKFKQSRSTLRPSVLGIRKEKD------ETYTTDLKTKARALVTFAGLLPYRMPGDTNARLVQLE 810
BLAST of mRNA_P-fluviatile_contig83.14848.1 vs. uniprot
Match: A0A3M7REP2_BRAPC (Nuclear pore protein n=1 Tax=Brachionus plicatilis TaxID=10195 RepID=A0A3M7REP2_BRAPC) HSP 1 Score: 97.8 bits (242), Expect = 8.280e-17 Identity = 113/450 (25.11%), Postives = 198/450 (44.00%), Query Frame = 2
Query: 947 NALKMLEAMFEGEGWE----SSPESTPRSRLDGTLDFLQKQFKQVIEDKV----KKAREAGTVDALSLQDRETGLPFRVRAFMRLDRKGKFDVGAGGATVSGLPVWPQIYLCLRCGGRGEASSIARAAVNASENSRCTAEEMALLGKVADVLVQGKIENVFGGVIQQAFHS-MRDGEDMFKQSVLNVLSR--ADDKKVARINKETIEDYMWFKL-SFVGSDVDNSD--VLGAAKERVSGRDARRRFDPDGRSTYSYVNVLLYTQQLDAAVAFL-SWKGQHLAALHMALVMSHHNAYNAVDNP-SATMYPGDNDGEPGPA-----PTLRELMERALQGRVDSDPQMCVEYLLRLPLPIASDCLGGLAVRLGAIKAA-------------PLLGYMQTDGSRKKGGLDRFLMDNTVEDIAFDAAQKAEREGRREDAMTFYGLGCDYEKVAEL 2194
N + L AM E ++ E T S ++ ++ L++ FK +I++ V K+A+ G + L L V ++RL K+ + P+WP IYLC+RCG A ++A +NA + A + + K + +G++ N+ ++ + S ++ D +K++V LSR DD + + + ++D++WFKL S V NSD + ++S + F + R+ + Y+ VLL T Q + AV FL ++ + +HMA+ + N + NP S+ + G EP P L + R + +DP+ +EY L S + G R+ A L G ++ + RK G +D+F D I A++ E +G E+A+ Y L +++V EL
Sbjct: 253 NTMTNLPAMDYDEKLNYLDRNNAEKTQSSYVNQAINHLERSFKDLIQNTVNANLKQAKLGGGLGTLRL----------VSGYLRLSSSEKYHQFSEETFDDKQPLWPTIYLCIRCGDIEAAKTVA---LNAKKEE--IANYLNEITKDSANNGRGRLNNISENKLKIEYKSKIKRVNDAYKRAVYCYLSRYSGDDDSINEV-LDNVDDFLWFKLNSVVFKKEPNSDNMTFHEFQSKMSVEFGEKYFTQN-RNPFIYLQVLLLTAQFELAVEFLLKYESMIVHGVHMAIGLFDKQMLNILKNPASSQLIVGGEQSEPKSLRRINLPFLIRMYTRKFEC---TDPREALEYYFFLRNLKVSTQISGEFKRISNYFALYISELALETREFEVLFGRLEKNAVRKPGVIDKFSSDEEANSIISLVAEEIENKGLIEEAVKLYDLCKQHQRVLEL 682
BLAST of mRNA_P-fluviatile_contig83.14848.1 vs. uniprot
Match: A0A8I6SBX1_CIMLE (Nuclear pore protein n=1 Tax=Cimex lectularius TaxID=79782 RepID=A0A8I6SBX1_CIMLE) HSP 1 Score: 95.1 bits (235), Expect = 5.300e-16 Identity = 139/640 (21.72%), Postives = 263/640 (41.09%), Query Frame = 2
Query: 956 KMLEAMFE----GEGWESSPESTPRSR---LDGTLDFLQKQFKQ----VIEDKVKKAREAGTVDALSLQDRETGLPFRVRAFMRLDRKGKFDVGAGGATVSGLPVWPQIYLCLRCGGRGEASSIARAAVNASENSRCTAEEMA-----LLGKVADVLVQGKIENVFGGVIQQAFHSMRDGEDMFKQSVLNVLSRADDKKVARINKETIEDYMWFKLSFVGSDVDN---SDVLGAAKERVSGRDARRRFDPDGRSTYSYVNVLLYTQQLDAAVAFLSWKGQHLA-ALHMALVMSHHNAYNAVDNPSATMYP----GDNDGEPGPAPTLRELMERALQGRVDSDPQMCVEYLLRL--------PLPIASDCLGGLAVRLGAIKAAPLLGYMQTDGSRKKGGLDRFLMDN-TVEDIAFDAAQKAEREGRREDAMTFYGLGCDYEKVAELLQQKLAEKLDPQAAKRSFWKELGAKIHKVLVIMSEGPEATESRELAAEGVGQML-------RLMDFFAFVQNRALSKALVELEGAGLLPSSHDEAALLASRLRLRGPHDAFTGVIPQALETGMQCLRHYHLEVKRELLGSAVGRVDAEQWRASRERKLEELEAKGRAMVGLAGRLSDLLPASFVADLSRVEANI 2755
KML M + G+G + P+ + ++ L++L++++K+ V+ + A+ G L VR F+ + G ++G + GLP+WP +Y CLRCG G A + A + ++ ++ L A++ V+ V +R D +K++V +L D + +T +DY+W KL + + + + + + + ++ G + + +L+ T Q ++A+ FL ++ A A+HMA+ + + N + P++ P ++D P L L+ + SDP+ + Y L S C+ L + K +LGY++ DG+R G LD+F + V I A AE G EDA++ Y L ++EKV LL L++ L ++ ++ + LV M+E EA R L + L +L+ FF + + +KAL + ++P+S DE + R+ D+ + I L M + + EL +++ ++ ++L + K R + AG + +P + L ++E +
Sbjct: 223 KMLSFMTQLPPQGKGDPLVARAQPQVQECMVEQALNYLEQRYKEYMNMVVSGNMGTAKRGGVPGTYPL----------VRGFLSVKNIGS-ELGLEETYIDGLPLWPLVYYCLRCGDIGAAFQCVQQAGPSKKDMVMVLLDLKDSPQRRLSTQAEMEVRCNYRRV-----------VRSSTDPYKRAVYCLLGACDVNDDHKSLVKTADDYLWMKLWQLREEEPEPVPDRLYYSLLQTLVLEEYGEQYYKAGEQPHLFFQMLVLTGQWESAIDFLIRVDKYRAHAVHMAIAI---HELNLLALPASMNSPLLVIDESDKVPMRRLNLLRLILLYTRKFESSDPKETLHYYYTLRNFPGLDDDRDAFSSCVINLVIETKEYKT--ILGYLEVDGTRHSGLLDKFETGHINVRTIIESVASTAESRGLIEDAISLYDLSENHEKVLSLLNSMLSQVLSSPSSDKTSQRAR-------LVQMAEKIEA-RYRNLTVKCKASTLTTFIILHQLIQFFDMYRFKEYNKALDIIHACKIIPTSEDEMEDRINNFRVL--EDSISRNISDILLATMHIYHWQYQQTIGELKKGTGPKLED----INQSKQLNFIREKARLLTSFAGTIPYRMPGDTNSRLVQLEIRM 821
BLAST of mRNA_P-fluviatile_contig83.14848.1 vs. uniprot
Match: A0A7D9DK16_PARCT (Nuclear pore protein (Fragment) n=2 Tax=Alcyonacea TaxID=40677 RepID=A0A7D9DK16_PARCT) HSP 1 Score: 93.2 bits (230), Expect = 1.600e-15 Identity = 145/615 (23.58%), Postives = 251/615 (40.81%), Query Frame = 2
Query: 959 MLEAMFEGEGWESSPES-TPRSRLDGTLDFLQKQFKQVIEDKVKKAREAGTVDALSLQDRETGLP---FRVRAFMRLDRKGKFDVGAGGATVSGLPVWPQIYLCLRCGGRGEASSIARAAVNASENSRCTAEEMALLGKVADVLVQGKIENVFGGVIQQAFHSMRDGEDMFKQSVLNVLSRADDKKVARINKETIEDYMWFKLSFVGS-----DVDNSDVLGAAKERVSGRDARRRFDPDGRSTYSYVNVLLYTQQLDAAVAFLSWKGQHLA-ALHMALVMSHHNAYNAVDNPSATMYPGDNDGEPGPAPTLRELMERALQGRVDSDPQMCVEY---LLRLPLP----IASDCLGGLAVRLGAIKAAPLLGYMQTDGSRKKGGLDRFLMDNTVEDIAFDAAQKAEREGRREDAMTFYGLGCDYEKVAELLQQKLAEKLDPQAAKRSFWKELGAKIHKVLV-IMSEGPEATESRELAAEGVGQMLRLMDFFAFVQNRALSKALVELEGAGLLPSSHDEAALLASRLRLRGPHDAFTGVIPQALETGMQCLRHYHLEVKRELLGS-AVGRVDAEQWRASRERKLEELEAKGRAMVGLAGRLSDLLPASFVADLSRVE 2746
+++ M + + S+ S T R D F+Q Q + +E + +K E L Q + G+P F V++F++L V G+P+WP +Y C+RCG A +A+ + + + + E+ + D + +E Q S+ +G D FK++V VL D + +DY+W KL + S D +S + + + + + + Y VL+ + Q +AA+ FLS + + A+H A+VM + A + D L++ + +DP+ ++Y L +L P + S C+ L + LLG+M+ DG+RK G +D+F D VEDI A+ E +G E+A Y L ++EK E+L + L++ + + S L A V S+G A+ R + + L+ FF + +A + L+P S + S R D +P L M L + E + + S AV D +A R+ + + RA++ AG L +P A L ++E
Sbjct: 63 LVDQMTDLQTHSSTTSSETTRFSTDSQTFFIQ-QARSFLEKRYQKYIERIVYSNLQ-QAQLGGVPGVFFLVKSFLKLRPLVSISHELEDGEVDGVPLWPLLYYCIRCGDLDAAMQVAQMSPHHTTKLKEYLEDYM---RSEDKRLHPSLEEELR---LQYRRSVNNGTDPFKRAVYTVLGHISDAEELSDVITKTDDYLWLKLCQIVSTGEKRDHSHSTLTLQNLQVLLLEEYGEAYFKAVDNPLLYFQVLMLSAQFEAAIEFLSRIETYRSHAVHFAIVMYLRKLLILPETVQAQLLTKDPTDAGVRKMNFARLIKSYTRKFEITDPREALQYFYLLRKLRSPHGENLFSKCVSELVLETREFDV--LLGHMEADGTRKLGCIDKFQGD--VEDIIEMVAKDTEEKGLFEEAARLYDLAKNHEKTVEVLNKLLSQVVSAAPSPHSNRDRLKALAFSVAERYKSQGNNASRVR---SNTFYLLCDLIQFFDLYHLNKMDEAFEVMRKLQLVPLSGESVDQKVSSFRQYT--DEIRRCLPDILIATMTILYSKYKERRPDYPSSPAVLHRDEGGLQAFRK----NVRQQARALITFAGLLPYRMPGDTSARLVQLE 656
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 | 875.2 |
| Seed ortholog evalue | 1.8e-251 |
| Seed eggNOG ortholog | 2880.D7G7G5 |
| Preferred name | NUP93 |
| KEGG ko | ko:K14309 |
| KEGG TC | 1.I.1 |
| KEGG Pathway | ko03013,map03013 |
| KEGG Module | M00427 |
| GOs | GO:0000003,GO:0000054,GO:0000055,GO:0000070,GO:0000132,GO:0000226,GO:0000278,GO:0000280,GO:0000819,GO:0001655,GO:0001667,GO:0001822,GO:0002064,GO:0003006,GO:0003674,GO:0003676,GO:0003677,GO:0003682,GO:0005198,GO:0005488,GO:0005515,GO:0005575,GO:0005622,GO:0005623,GO:0005634,GO:0005635,GO:0005643,GO:0006323,GO:0006403,GO:0006405,GO:0006406,GO:0006606,GO:0006611,GO:0006810,GO:0006886,GO:0006913,GO:0006928,GO:0006996,GO:0006997,GO:0006998,GO:0006999,GO:0007010,GO:0007017,GO:0007049,GO:0007059,GO:0007076,GO:0007088,GO:0007154,GO:0007163,GO:0007165,GO:0007166,GO:0007167,GO:0007178,GO:0007275,GO:0007276,GO:0007281,GO:0007292,GO:0007346,GO:0008104,GO:0008150,GO:0008152,GO:0009790,GO:0009792,GO:0009794,GO:0009888,GO:0009966,GO:0009967,GO:0009987,GO:0010256,GO:0010389,GO:0010467,GO:0010564,GO:0010631,GO:0010646,GO:0010647,GO:0010941,GO:0012505,GO:0015031,GO:0015833,GO:0015931,GO:0016020,GO:0016021,GO:0016032,GO:0016043,GO:0016477,GO:0016973,GO:0017038,GO:0017056,GO:0019953,GO:0022402,GO:0022412,GO:0022414,GO:0022607,GO:0022613,GO:0023051,GO:0023052,GO:0023056,GO:0030010,GO:0030154,GO:0030261,GO:0030717,GO:0030855,GO:0031090,GO:0031224,GO:0031490,GO:0031503,GO:0031965,GO:0031967,GO:0031974,GO:0031975,GO:0031981,GO:0032501,GO:0032502,GO:0032504,GO:0032535,GO:0032835,GO:0032991,GO:0033036,GO:0033043,GO:0033044,GO:0033045,GO:0033047,GO:0033365,GO:0033750,GO:0034399,GO:0034504,GO:0034613,GO:0034622,GO:0035850,GO:0036228,GO:0040001,GO:0040011,GO:0042254,GO:0042886,GO:0043170,GO:0043226,GO:0043227,GO:0043229,GO:0043231,GO:0043233,GO:0043933,GO:0044085,GO:0044403,GO:0044419,GO:0044422,GO:0044424,GO:0044425,GO:0044428,GO:0044446,GO:0044464,GO:0044612,GO:0044615,GO:0044703,GO:0045184,GO:0045995,GO:0046907,GO:0046931,GO:0048285,GO:0048468,GO:0048477,GO:0048513,GO:0048518,GO:0048519,GO:0048522,GO:0048523,GO:0048583,GO:0048584,GO:0048585,GO:0048609,GO:0048731,GO:0048856,GO:0048869,GO:0048870,GO:0050000,GO:0050657,GO:0050658,GO:0050789,GO:0050793,GO:0050794,GO:0050896,GO:0051028,GO:0051128,GO:0051168,GO:0051169,GO:0051170,GO:0051179,GO:0051234,GO:0051236,GO:0051239,GO:0051276,GO:0051292,GO:0051293,GO:0051294,GO:0051321,GO:0051640,GO:0051641,GO:0051649,GO:0051653,GO:0051656,GO:0051674,GO:0051704,GO:0051716,GO:0051726,GO:0051783,GO:0051983,GO:0060390,GO:0060391,GO:0060395,GO:0060429,GO:0060548,GO:0060623,GO:0061005,GO:0061024,GO:0061318,GO:0061982,GO:0061988,GO:0065003,GO:0065007,GO:0065008,GO:0070013,GO:0070192,GO:0070727,GO:0071103,GO:0071166,GO:0071426,GO:0071427,GO:0071428,GO:0071702,GO:0071704,GO:0071705,GO:0071840,GO:0072001,GO:0072006,GO:0072009,GO:0072010,GO:0072015,GO:0072073,GO:0072112,GO:0072310,GO:0072311,GO:0072594,GO:0072657,GO:0080134,GO:0080135,GO:0090066,GO:0090092,GO:0090100,GO:0090130,GO:0090132,GO:0090435,GO:0090521,GO:0097159,GO:0097240,GO:0097298,GO:0098813,GO:0140014,GO:1900407,GO:1900408,GO:1901031,GO:1901032,GO:1901363,GO:1901987,GO:1901990,GO:1902749,GO:1902850,GO:1902882,GO:1902883,GO:1903046,GO:1903047,GO:1903201,GO:1903202,GO:1903205,GO:1903206,GO:1903379,GO:1990893,GO:2000026,GO:2001023,GO:2001024,GO:2001038,GO:2001039 |
| EggNOG free text desc. | nuclear pore complex assembly |
| EggNOG OGs | KOG2168@1,KOG2168@2759 |
| COG Functional cat. | U |
| Best tax level | Eukaryota |
| Best eggNOG OG | NA|NA|NA |
| BRITE | ko00000,ko00001,ko00002,ko03019 |
| Hectar predicted targeting category | other localisation |
| Ec32 ortholog description | Nucleoporin interacting component Nup93/Nic96 |
| Ec32 ortholog | Ec-02_000170.1 |
| Exons | 23 |
| Model size | 3937 |
| Cds size | 1806 |
| Stop | 1 |
| Start | 1 |
Relationships
The following UTR feature(s) are a part of this mRNA:
| Feature Name | Unique Name | Species | Type | Position |
| 1622817285.5890872-UTR-P-fluviatile_contig83:210462..210641 | 1622817285.5890872-UTR-P-fluviatile_contig83:210462..210641 | Porterinema fluviatile SAG_2381 | UTR | P-fluviatile_contig83 210463..210641 + |
| 1693571944.3932643-UTR-P-fluviatile_contig83:210462..210641 | 1693571944.3932643-UTR-P-fluviatile_contig83:210462..210641 | Porterinema fluviatile SAG_2381 | UTR | P-fluviatile_contig83 210463..210641 + |
| 1622817285.6013672-UTR-P-fluviatile_contig83:211919..212033 | 1622817285.6013672-UTR-P-fluviatile_contig83:211919..212033 | Porterinema fluviatile SAG_2381 | UTR | P-fluviatile_contig83 211920..212033 + |
| 1693571944.4064069-UTR-P-fluviatile_contig83:211919..212033 | 1693571944.4064069-UTR-P-fluviatile_contig83:211919..212033 | Porterinema fluviatile SAG_2381 | UTR | P-fluviatile_contig83 211920..212033 + |
| 1622817285.6168978-UTR-P-fluviatile_contig83:213060..213174 | 1622817285.6168978-UTR-P-fluviatile_contig83:213060..213174 | Porterinema fluviatile SAG_2381 | UTR | P-fluviatile_contig83 213061..213174 + |
| 1693571944.418088-UTR-P-fluviatile_contig83:213060..213174 | 1693571944.418088-UTR-P-fluviatile_contig83:213060..213174 | Porterinema fluviatile SAG_2381 | UTR | P-fluviatile_contig83 213061..213174 + |
| 1622817285.6310644-UTR-P-fluviatile_contig83:214818..214947 | 1622817285.6310644-UTR-P-fluviatile_contig83:214818..214947 | Porterinema fluviatile SAG_2381 | UTR | P-fluviatile_contig83 214819..214947 + |
| 1693571944.4273927-UTR-P-fluviatile_contig83:214818..214947 | 1693571944.4273927-UTR-P-fluviatile_contig83:214818..214947 | Porterinema fluviatile SAG_2381 | UTR | P-fluviatile_contig83 214819..214947 + |
| 1622817285.6460884-UTR-P-fluviatile_contig83:215842..216007 | 1622817285.6460884-UTR-P-fluviatile_contig83:215842..216007 | Porterinema fluviatile SAG_2381 | UTR | P-fluviatile_contig83 215843..216007 + |
| 1693571944.4376051-UTR-P-fluviatile_contig83:215842..216007 | 1693571944.4376051-UTR-P-fluviatile_contig83:215842..216007 | Porterinema fluviatile SAG_2381 | UTR | P-fluviatile_contig83 215843..216007 + |
| 1622817285.665609-UTR-P-fluviatile_contig83:216782..216934 | 1622817285.665609-UTR-P-fluviatile_contig83:216782..216934 | Porterinema fluviatile SAG_2381 | UTR | P-fluviatile_contig83 216783..216934 + |
| 1693571944.44771-UTR-P-fluviatile_contig83:216782..216934 | 1693571944.44771-UTR-P-fluviatile_contig83:216782..216934 | Porterinema fluviatile SAG_2381 | UTR | P-fluviatile_contig83 216783..216934 + |
| 1622817285.6784546-UTR-P-fluviatile_contig83:217539..217644 | 1622817285.6784546-UTR-P-fluviatile_contig83:217539..217644 | Porterinema fluviatile SAG_2381 | UTR | P-fluviatile_contig83 217540..217644 + |
| 1693571944.4574797-UTR-P-fluviatile_contig83:217539..217644 | 1693571944.4574797-UTR-P-fluviatile_contig83:217539..217644 | Porterinema fluviatile SAG_2381 | UTR | P-fluviatile_contig83 217540..217644 + |
| 1622817285.8910062-UTR-P-fluviatile_contig83:232246..233419 | 1622817285.8910062-UTR-P-fluviatile_contig83:232246..233419 | Porterinema fluviatile SAG_2381 | UTR | P-fluviatile_contig83 232247..233419 + |
| 1693571944.6505353-UTR-P-fluviatile_contig83:232246..233419 | 1693571944.6505353-UTR-P-fluviatile_contig83:232246..233419 | Porterinema fluviatile SAG_2381 | UTR | P-fluviatile_contig83 232247..233419 + |
The following CDS feature(s) are a part of this mRNA:
| Feature Name | Unique Name | Species | Type | Position |
| 1622817285.691065-CDS-P-fluviatile_contig83:217644..217652 | 1622817285.691065-CDS-P-fluviatile_contig83:217644..217652 | Porterinema fluviatile SAG_2381 | CDS | P-fluviatile_contig83 217645..217652 + |
| 1693571944.4671738-CDS-P-fluviatile_contig83:217644..217652 | 1693571944.4671738-CDS-P-fluviatile_contig83:217644..217652 | Porterinema fluviatile SAG_2381 | CDS | P-fluviatile_contig83 217645..217652 + |
| 1622817285.703825-CDS-P-fluviatile_contig83:218252..218367 | 1622817285.703825-CDS-P-fluviatile_contig83:218252..218367 | Porterinema fluviatile SAG_2381 | CDS | P-fluviatile_contig83 218253..218367 + |
| 1693571944.4772937-CDS-P-fluviatile_contig83:218252..218367 | 1693571944.4772937-CDS-P-fluviatile_contig83:218252..218367 | Porterinema fluviatile SAG_2381 | CDS | P-fluviatile_contig83 218253..218367 + |
| 1622817285.7161112-CDS-P-fluviatile_contig83:218866..218977 | 1622817285.7161112-CDS-P-fluviatile_contig83:218866..218977 | Porterinema fluviatile SAG_2381 | CDS | P-fluviatile_contig83 218867..218977 + |
| 1693571944.48738-CDS-P-fluviatile_contig83:218866..218977 | 1693571944.48738-CDS-P-fluviatile_contig83:218866..218977 | Porterinema fluviatile SAG_2381 | CDS | P-fluviatile_contig83 218867..218977 + |
| 1622817285.7260668-CDS-P-fluviatile_contig83:219750..219901 | 1622817285.7260668-CDS-P-fluviatile_contig83:219750..219901 | Porterinema fluviatile SAG_2381 | CDS | P-fluviatile_contig83 219751..219901 + |
| 1693571944.4986737-CDS-P-fluviatile_contig83:219750..219901 | 1693571944.4986737-CDS-P-fluviatile_contig83:219750..219901 | Porterinema fluviatile SAG_2381 | CDS | P-fluviatile_contig83 219751..219901 + |
| 1622817285.7389853-CDS-P-fluviatile_contig83:220862..220953 | 1622817285.7389853-CDS-P-fluviatile_contig83:220862..220953 | Porterinema fluviatile SAG_2381 | CDS | P-fluviatile_contig83 220863..220953 + |
| 1693571944.5079193-CDS-P-fluviatile_contig83:220862..220953 | 1693571944.5079193-CDS-P-fluviatile_contig83:220862..220953 | Porterinema fluviatile SAG_2381 | CDS | P-fluviatile_contig83 220863..220953 + |
| 1622817285.7491226-CDS-P-fluviatile_contig83:221944..222032 | 1622817285.7491226-CDS-P-fluviatile_contig83:221944..222032 | Porterinema fluviatile SAG_2381 | CDS | P-fluviatile_contig83 221945..222032 + |
| 1693571944.5171182-CDS-P-fluviatile_contig83:221944..222032 | 1693571944.5171182-CDS-P-fluviatile_contig83:221944..222032 | Porterinema fluviatile SAG_2381 | CDS | P-fluviatile_contig83 221945..222032 + |
| 1622817285.7604778-CDS-P-fluviatile_contig83:223321..223405 | 1622817285.7604778-CDS-P-fluviatile_contig83:223321..223405 | Porterinema fluviatile SAG_2381 | CDS | P-fluviatile_contig83 223322..223405 + |
| 1693571944.526909-CDS-P-fluviatile_contig83:223321..223405 | 1693571944.526909-CDS-P-fluviatile_contig83:223321..223405 | Porterinema fluviatile SAG_2381 | CDS | P-fluviatile_contig83 223322..223405 + |
| 1622817285.7721226-CDS-P-fluviatile_contig83:223801..223942 | 1622817285.7721226-CDS-P-fluviatile_contig83:223801..223942 | Porterinema fluviatile SAG_2381 | CDS | P-fluviatile_contig83 223802..223942 + |
| 1693571944.53646-CDS-P-fluviatile_contig83:223801..223942 | 1693571944.53646-CDS-P-fluviatile_contig83:223801..223942 | Porterinema fluviatile SAG_2381 | CDS | P-fluviatile_contig83 223802..223942 + |
| 1622817285.7835205-CDS-P-fluviatile_contig83:224999..225167 | 1622817285.7835205-CDS-P-fluviatile_contig83:224999..225167 | Porterinema fluviatile SAG_2381 | CDS | P-fluviatile_contig83 225000..225167 + |
| 1693571944.5463316-CDS-P-fluviatile_contig83:224999..225167 | 1693571944.5463316-CDS-P-fluviatile_contig83:224999..225167 | Porterinema fluviatile SAG_2381 | CDS | P-fluviatile_contig83 225000..225167 + |
| 1622817285.7938714-CDS-P-fluviatile_contig83:225838..225973 | 1622817285.7938714-CDS-P-fluviatile_contig83:225838..225973 | Porterinema fluviatile SAG_2381 | CDS | P-fluviatile_contig83 225839..225973 + |
| 1693571944.5564725-CDS-P-fluviatile_contig83:225838..225973 | 1693571944.5564725-CDS-P-fluviatile_contig83:225838..225973 | Porterinema fluviatile SAG_2381 | CDS | P-fluviatile_contig83 225839..225973 + |
| 1622817285.805136-CDS-P-fluviatile_contig83:226563..226629 | 1622817285.805136-CDS-P-fluviatile_contig83:226563..226629 | Porterinema fluviatile SAG_2381 | CDS | P-fluviatile_contig83 226564..226629 + |
| 1693571944.56742-CDS-P-fluviatile_contig83:226563..226629 | 1693571944.56742-CDS-P-fluviatile_contig83:226563..226629 | Porterinema fluviatile SAG_2381 | CDS | P-fluviatile_contig83 226564..226629 + |
| 1622817285.814615-CDS-P-fluviatile_contig83:227445..227583 | 1622817285.814615-CDS-P-fluviatile_contig83:227445..227583 | Porterinema fluviatile SAG_2381 | CDS | P-fluviatile_contig83 227446..227583 + |
| 1693571944.5775847-CDS-P-fluviatile_contig83:227445..227583 | 1693571944.5775847-CDS-P-fluviatile_contig83:227445..227583 | Porterinema fluviatile SAG_2381 | CDS | P-fluviatile_contig83 227446..227583 + |
| 1622817285.8248491-CDS-P-fluviatile_contig83:228377..228440 | 1622817285.8248491-CDS-P-fluviatile_contig83:228377..228440 | Porterinema fluviatile SAG_2381 | CDS | P-fluviatile_contig83 228378..228440 + |
| 1693571944.5914767-CDS-P-fluviatile_contig83:228377..228440 | 1693571944.5914767-CDS-P-fluviatile_contig83:228377..228440 | Porterinema fluviatile SAG_2381 | CDS | P-fluviatile_contig83 228378..228440 + |
| 1622817285.84136-CDS-P-fluviatile_contig83:229169..229246 | 1622817285.84136-CDS-P-fluviatile_contig83:229169..229246 | Porterinema fluviatile SAG_2381 | CDS | P-fluviatile_contig83 229170..229246 + |
| 1693571944.6038144-CDS-P-fluviatile_contig83:229169..229246 | 1693571944.6038144-CDS-P-fluviatile_contig83:229169..229246 | Porterinema fluviatile SAG_2381 | CDS | P-fluviatile_contig83 229170..229246 + |
| 1622817285.8536463-CDS-P-fluviatile_contig83:230214..230344 | 1622817285.8536463-CDS-P-fluviatile_contig83:230214..230344 | Porterinema fluviatile SAG_2381 | CDS | P-fluviatile_contig83 230215..230344 + |
| 1693571944.6126213-CDS-P-fluviatile_contig83:230214..230344 | 1693571944.6126213-CDS-P-fluviatile_contig83:230214..230344 | Porterinema fluviatile SAG_2381 | CDS | P-fluviatile_contig83 230215..230344 + |
| 1622817285.8662043-CDS-P-fluviatile_contig83:231155..231272 | 1622817285.8662043-CDS-P-fluviatile_contig83:231155..231272 | Porterinema fluviatile SAG_2381 | CDS | P-fluviatile_contig83 231156..231272 + |
| 1693571944.6215472-CDS-P-fluviatile_contig83:231155..231272 | 1693571944.6215472-CDS-P-fluviatile_contig83:231155..231272 | Porterinema fluviatile SAG_2381 | CDS | P-fluviatile_contig83 231156..231272 + |
| 1622817285.8790526-CDS-P-fluviatile_contig83:232123..232246 | 1622817285.8790526-CDS-P-fluviatile_contig83:232123..232246 | Porterinema fluviatile SAG_2381 | CDS | P-fluviatile_contig83 232124..232246 + |
| 1693571944.6307652-CDS-P-fluviatile_contig83:232123..232246 | 1693571944.6307652-CDS-P-fluviatile_contig83:232123..232246 | Porterinema fluviatile SAG_2381 | CDS | P-fluviatile_contig83 232124..232246 + |
The following polypeptide feature(s) derives from this mRNA:
Sequences
The following sequences are available for this feature:
protein sequence of mRNA_P-fluviatile_contig83.14848.1 >prot_P-fluviatile_contig83.14848.1 ID=prot_P-fluviatile_contig83.14848.1|Name=mRNA_P-fluviatile_contig83.14848.1|organism=Porterinema fluviatile SAG_2381|type=polypeptide|length=602bp
MLEAMFEGEGWESSPESTPRSRLDGTLDFLQKQFKQVIEDKVKKAREAGT VDALSLQDRETGLPFRVRAFMRLDRKGKFDVGAGGATVSGLPVWPQIYLC LRCGGRGEASSIARAAVNASENSRCTAEEMALLGKVADVLVQGKIENVFG GVIQQAFHSMRDGEDMFKQSVLNVLSRADDKKVARINKETIEDYMWFKLS FVGSDVDNSDVLGAAKERVSGRDARRRFDPDGRSTYSYVNVLLYTQQLDA AVAFLSWKGQHLAALHMALVMSHHNAYNAVDNPSATMYPGDNDGEPGPAP TLRELMERALQGRVDSDPQMCVEYLLRLPLPIASDCLGGLAVRLGAIKAA PLLGYMQTDGSRKKGGLDRFLMDNTVEDIAFDAAQKAEREGRREDAMTFY GLGCDYEKVAELLQQKLAEKLDPQAAKRSFWKELGAKIHKVLVIMSEGPE ATESRELAAEGVGQMLRLMDFFAFVQNRALSKALVELEGAGLLPSSHDEA ALLASRLRLRGPHDAFTGVIPQALETGMQCLRHYHLEVKRELLGSAVGRV DAEQWRASRERKLEELEAKGRAMVGLAGRLSDLLPASFVADLSRVEANII N* back to topmRNA from alignment at P-fluviatile_contig83:210463..233419+ Legend: UTRpolypeptideCDS Hold the cursor over a type above to highlight its positions in the sequence below. >mRNA_P-fluviatile_contig83.14848.1 ID=mRNA_P-fluviatile_contig83.14848.1|Name=mRNA_P-fluviatile_contig83.14848.1|organism=Porterinema fluviatile SAG_2381|type=mRNA|length=22957bp|location=Sequence derived from alignment at P-fluviatile_contig83:210463..233419+ (Porterinema fluviatile SAG_2381) GCTACAGCTGCACCTTCGCCGCGATGGACAGAGATGGCACAGGATCGGAT
GGTGGGGGCGGTGCGGGGGGGTCGGTGGAGATGGACCTGCAGGCCCTGAT
GATGGGCAGCGAGAGCCTTCTCACGCACATCGCGCGGCCGGACGGCATCC
CTCGCCTAGACAAGAGCTTGGCGGAGATCGTGAGTTGTACACTACCGTTG
GGCGTTCCACACCCACTCTTTGACCCCCTCTCTGTCATTCGTAGTCACCG
TGGGCGTCCTCGTGACTTGATCCAATGGGTGTGTTGCCCTCTGCCCTTGG
CGAGAGTTTTCTCTCTCGCGTGCAGTGTTGGTGTCAACTGACCCAAACGG
CCACCATTTGTGTTTTGTTTTTCCAAACTATTACGAGTATAGCGGATTTA
GACAGCGAGTTCGTCACGGCATGTTTGGTGTGCTCTAGCTTGGTGCGTTG
GGACGAGGCCTATGCAGAGAGAACAAGCCCATCACACTCCATGTCGTGCC
TTGGTGCCCGCTGATTGTTGCGAAGTTTGCGACCTGCATTGTGCATCGGC
CGTGCTACGGGGCTGTAGGGCCCCAGGTGTGGAGGTAACCTTACGTGTAG
GGACGGATAGGAAAATAAAAGGTGTGAAGCCTTTCTCCTCTGTGTTCAAC
AGTATTCCTGCTGTATCGCTAAATGTGGCAACTACATGTTGTTGTCGTAG
ACACGCCGATACTACCGTGATATTCGACCCCGCCGGCCTCATCAACACGC
TTGCGTCCATTGAAACCGTCCTGTAACCCACGAACAACTGCAGGTGTTCC
TCAGTCAGTAAGGGCTACATGGTTATTGCCTGACCTCTGCATCATTTTGA
AAAACACGAAAATGCGAGACACTACGTTAAAAAATCCTCTCACACAGCCA
TCCTGCGATGAGAAAATTTCGAGAAAGCACGACATGAAATTCAGAAATGC
GATCGTGCAAGGGTACAAGAGGTTTCGACACACGCCGCTACTGCGAACCT
TGTTTCAATTGCGCCCCATCCGACAAGCCCCATTTCCCTCCCTCCCCAAG
AGCGAGGGTCTTGCGCATTGGTTGACATAGCCGCCCAAGCGCTAGTAGCA
GGCAATAGCTCTCTGCTATAATCATGGCGATGATTTTGCAGCTCTTCAAG
CACGACGTTTCTTGCGATTTCGGCGCTTTGTGCCCCGCACTTGGACCCAC
TGCTATCGTTCCATCCTGTCTGTGCGATTCATCCACTCTCTGCGTTTACT
TCTTCTTGGGGGGGGAGAAAGGGACATCACTGCGCATGAGAGCCGAGGCG
GTGGCTAGAAGCTGGAGGGAGGACATAGCATGTATCGGCTATATTGAAAA
TGGTTATGTAGCCGTGATGTCTTTCGAAACGCAAACTCCGACCTCCGACC
TGTTCCAAGCTTCTGGCATACTTATCCCCATTATTTGTGTATCATTTTTT
TCTCCAGGAGCGAGGGTCATTGCGCATGGGAGCCGAGGCGGCGGCGAGGA
GCCGGAGGGAGGCCATGGCGCTTGGAGTGACCGCCGAAGTCGCAGAACAG
AAGCAGGAGCTCAAGGGTGGGGTAAGTGCACCCGGGCCGTTAAGTTTTTC
ATTATTCCCTTCGACAGAATTTAGGGAGCGAAAGAGCAAGATATTTGAGG
GCTAGCTTGCCCAGGCTGTTAAGCTTTTCCACAACATTCTTCAATATAAT
TCGGAGATTGAAAGATGGGAAGGTATTACTCTCAAATATACCATATTTAG
GTATCTTCGAGGGTGAACGTAGCTTTTCCCTTCGATTTGTTAATGCAAGC
AGGATCTCAAGGTCGGGGCGGGCTTCTTTTTGTAACGCAATAGCATTGTC
GTCATACCGAGGAGGTTTGAGTTTTGGCACTTGGCTGTGTGATGGGCGGC
TGTGGTTTTATCGGGCTAGGGAGCGCGCCCGCTGTGCGATGTATTATTTA
CTGTGAGAGACGTCGTCAGGTACCGCAGATCGCATAGGAAACCACCGCCC
CCAAAGAAACAACGCCCCCACAAGAAGTCACCTTGTGATGGGCGTTTTTC
ATTTTTTTTTAGTCGTGGTGTGCTTCCTTATGCAATCTACGGTATGGCGA
TGGCGCGTAGGGGATCGTGCACGGTGCATGGGTGAGGGCGCTTGGTGCAG
CTTGGATGGTGCACCATGATGGCGGAAGGCCGGCAATCCGTATGCGATGG
GCTCAATTTTGGAGGGGGCAGGGTTCCTACTTTAGTTTGTAACAGCACTT
ACGTATAATCGCAACAACATTCGCCTGAGTACAAGCCTAGATGGCGGCCG
CTGACGACATGCTTGCCGATCAACTCCAACGAGACCTTTCCGAATGGCCG
CGTGACACCGTCAGCTTTGACTTGCGTCGACCGCCCTTGTCGGCTGACGA
GTGATGATTCGTTAGTACAATATGGAGTCTTACGGTCATCCCTCGCGCTT
CCTCCCTCACTCTTTCCGTCCCTTACCTCTCCTCCCCTCCCCGTCCCTCC
TTCCCTCCCTCCTTCCCTCCCTCCCTCCTTCCCTCCCGTTTTTTCTCACC
CCTCGTGTGCTGTGTACATCCCTTCCTCGTTGGTCGCTGTTAATCCAGAG
CATGCTGGCGCGAAACCGCTTCGACCCGGAGTCTTTGGTTCGGGCTGTCA
ATGCCGTTCAGCTGAGGGGGGGGTACCAGCCCTTGCAGCCACTGGGCGAA
ACGGACATCGAGGTGGGTCTTTGCGAACACGGACTcccccCCCCCCTCTG
GCCTTGGTTCGGGCGGTTAGCAATTCAGCTGATAGGGGTAGGGGAAACTA
GCCCTTGCAGCTACTGAGCGTGACCGACATGCAGGTGGGTGTCGACAAAC
ATGGACCCCCCTCCCCTCGAACGAAAGAGCTGCGTAGGCAAGAACAAATG
AAAAGTGGCCGACGAAAGTGAAAGCCATTATTCATTGCTTGGCAGGGTGT
GTTGTCGGGGAGAGGAGCCCCGCCTTTTGCCGTTTGTAGAGGCTTAGGTG
ATGGCGAGAAACTCTTGTTTGTTGGTTGTTGGTATGCACTTGGTAGATTG
CCTATCTGGTTTGAGTCCTGAACGGGGAGGAGGGGCAATGAGCGTGGGGG
CGTGCGGCGGAAGTTCATCACCCGGGTGTTTCCAGTTTCAAGTCGGAACC
AGATATATTGACGCCGGACATTGGGGTCCCCCTGGAGTTCGAGTTGAAAC
GTGCCGGTCCTCGGTATTGAACGGGTGAAATCAGTTGTTGGCACAAACGT
CCTCTCACAAACTAATTTATTCGTATCGCGCACTTGTGCATCGTGCGGAT
GCCTGAGTGAAAACTCCCGTCCCGCCCCGGCACAATTGAGGGCCCCCCAC
TGCATCGTTCCCCCCTCCCCCCGGCTCTCACCTCGGTGTTTGCCATCGGG
AATGGGTTTTCGTCGCTTGGTAACGACGTTGTAAAACAAGCCAATTCACT
TCGTGAACTCGGCAACCAGGTTACCGTCTTTTTTCCTCTTTTTTTTTTTG
CGGTAACCATAATGGTGGTCGAGAAGATCATGTTGTGCGGGGTGGAGAAC
CCTCACTCCGCGCAAGGGGATGATCGCATCACGTTGTGTTAAAATGGTCA
AGCACCCTCGAGGCAGTTACACAGTGCTTACAGCTGTCTCTGGAAGTGAA
AGCACCAGAAAATAAATTAAGCCATACGCAGCTGTCATCCGTATGCAAGG
AAGTAAGCACAAGATGCCGAACACCCTTAGCAGGATGCAGCGCACCCTTC
ATGCGACTCGCCGAATACCTCACGGCGCTTTGCGCTTGGTGGTGTGAGCC
TGGTCCGGTGAGAACCCGGCGTGCTCCGTCCCGGCTTTGCAGGGATGCGA
GGTCAATGGTCTAACGACTACGGCATGCACGACTATGAGTACACCCCCCA
CTGCACCGTTCAAGAGCTGCACCTGAATTGGGGTGTAAGAGGGTGGAGAC
TCTACCAAAGTTTGTGCACCTAAATCGAAAATGAGATCGCCTGGGGAGTA
CACAAGCCTATGTGGGGCAGACGCAACACAGAGGCACTGTCATCAGTTGC
TCGCATGAATCGTTTGTCTATCAACGAGCTGCAAAATATGTGATGATGTT
CGTGGGACTTGTTCTTGACAGTGCCACCACAAATTTGTGCTGACGAGCTA
TCATGGTGCGTGACGCCTCTCCCGCCCTTCTTGTTGATTCCATTGGGCTC
TCTGGCGCACTAATGCAACGAAATTGTACCTCGGCTTCTTTGTGTGAGGC
GTTGTCCTCCCTCTGCAAGAGGACATCAGGCGCGCCCCTACACCAACGTG
GCGCTGACGATTTCTCTTGGGGCCACCCTCTGCACTCCGTATTTCTGACA
AGCCAGGGGTACCTGGCCCACCACCACGACATGATCGTGCTGACGGCCGT
GGACGAGACGAGACGGGCCGCGGCGGAGTGCTCGCTCGTGAGGCAGAGAG
AGTGGGAAGTGGACTCTTGGAGGCAGACCAAAAAGGTGTAAGGCGCACAG
TTCGTCTGCGGATCCAAGATGTCGTTCTCTCTGTTGTGATCGTTGCTGAA
TCTGGTACCGTCGTCTTCGTCGTCCTCGTTGTTGTTATTGTCATTTTCGT
TTTGGCAGGCTGTGGTGCTGTCGTTCTTGATGTCGGTAGCGGTAGCGGCA
GTGGTAGTGACGGTGGCGACGGTGGTGGTGATGGTGACGGTGGTGACGGT
GACGGTGGTGGGGTGGTGGTGGTGGTGGTGGTGGTGGCAGTGGTGGCGGT
GTTGGCAGTGGTGGTGGTGGTGAAAAAGAGGCATCAGTGTCATTTCGCGA
CAGCCTGGAAGTCTGCACGCGATTACCGCATCTTTTGTTGTGGCACCCAA
AGGGTCGTCCTTGACTGATTACGGCGGCATGGAGGTCATGGCCCAGGCGC
TCGAATGTGGAATGTTTCAACTTCTACCAGATCTCGTGCAGCGGGTTCAA
AATTCGGTGTCGCGATTGACTTTAAAGAATCAATATTGCGATAGTTTTGA
TGTCTCGATTTTGCGATTAATTTTGGAAACGCAATTTTTAGCTCTTTCCG
CGACAAAGGGGCAACCACTACCTAACGGCACTGTGAACGGGCTATCTTGA
TCATCCCCGGGGCATTTCGGCCAGTTTGGTGCTCTCGACGATGCGGAGGT
TCCGGGGGCGTGTGGTTCTCACGACGTAGTACAAGCCGTTCATCGATGTT
TCCCTTTTCAATTCCACACCGAGAGAGAGGTGTTTCGATGGTGAATGTGT
TGGACGGGATTCGGTCTCGCGGAACCGCGGCTCGTCTCGATGACCTCTCT
CCCTCCCTTTCTCCCTTGTCTCCCTACCCCCTCTTCTcCCCCCCTCTTCC
TCTGTTTTCGTGTCTCTCCGTCCGGATCAGGCCTTGATgGGGGAGGGCTT
GAACGGAGGATTCCTGGAGAGCTCCTTCGGGGGCAACGGGCAGTCATTCC
TCGGCGCGTCGATGCTCAAAGGGGGGCCCGTCACGGGCCTTCGATCCTCT
GGAGACCACGGCAGGGTGCACCCCAAAACCCCCCGAAATGACGGGGTAAG
TGGCTGACTCTTCTTGCATTTATTACCGAAGGCGTGTACATGCCGCAGGT
AATGGTCAGGGGAGGGGGTTGTGAGTGGCTAAGTCTTCTCGCACTTAATA
CCGAAGGCATGTACACGTCGCAGGGAATGGTCGGGGGGCTCAGGATGATA
TTCGGGGGCCGCAGGAGGAATGCTCGGCGGGGGCGCAGGGAGAAGATATA
CTTGCGTGTGAGCCCCCTACGGACCTTGGACAGAGGGACCTGCAAGCGCT
GGATAATTGTGAGAAAAAGTGCCCAGAAATAACTATGGACAGATCATAAC
GATCTCCTTGCACCGGGCAACCGACTTGCGAACGACAGGGAAACAGCAGT
ACTTGAATCAAGTGTTGGTGTTTAGCTAAGGTGTTTACTTGTTTGCGAAG
TGGTTCCACCCGCCTTACGTGAAACATCACTATGCTCAGACCGCTCTCTA
CGTTATCTTGTATGCCAACCCCGCTACCCTCTCTGATTGACATTTCCCCC
GCTCTGATCACGTTTGATTTACCAGTCGCTAGCGACGTTGCCGGCAGATC
CCTCCTCTGAAGGCGTCTTTTCCGCCCCCCACCCATCAAATTCCGGCCCA
ATGCCCTCGTTCACCTTCCCGTCCTCCTGCCCGATCAATGTCTTGTCGGG
ACGTATCAGTCTCTGGCGGTCATGCCGGTAGGCTCCTCCTCTGCGGGCGT
AGGGATCACCCCTCGCCCTCTCCTGCATGAACGTTCCCAGCGTAACCCAC
CCCCCATGTTGTCTGACCAGTCGCTGGCGGTGGTGCCGGCGAGCTCCTCC
TCCGCAGGCGTTGCGGTGATACCCCCGTCTCCGACCTGCCGCCGCCGACG
GCCGACGTTGCCAGCCGGCTGTCCACCCTCGAGGCCGGCCACCTTGAGGT
TATTCAGGCCCTTAACGACACGGTGAGCGCGGATAAGTTCAGCCGACGTG
TAAAGACGGAAGATGGTGTTCGTTGGAAGCACGTGCGTTTTTTCAATCAA
TTTGAAATTCGGTGCCCCCATCGTATAGCCTTTTTGGGCTCTCAACGACG
CGGTGAGTAGGTGAGATTCGACGGAGGGTTTTGGTTTGGTTGCCGGCCTC
TTGCTGGAAGCTGTGGATCATTTCATCGGACGTTTGTACACCTTTTCTTT
CGATGCAGAAATCGTGCCCCCCCCACCTCAGCTGTTCTAGCTGTCCGTGG
TACGGCGATTAGGCGGTGTTTTGGGCTCGATTCAGCGGTGTAGGATCTGG
CGGTTTTGTGTGAATGAAGATTCTCGTACGGCAGTGCGAAAATGGTACGC
TACGATCGTTGAAGTTTGCAAAGGTTTCTCGCCTCGTCGACGCCGAGTCT
GTCCCCAGAACTGCACAAATGTCGAGCGATTTCTTGCCTGAAAGTCGTAG
TTTTGACGACCGCATGGTCGGTTGTTCCCCCCCCGCAAGCTTAGAGCGTT
CTAGAAGTCCCGTTTGACGCCCCACCCCCGTCTCCCGTTTTCTCACCTTA
TCGTCGTGACCGTCACGGGACTGTCAGGATGACAAGTTTCCGCTGGCGAC
GCGTTTGGCCGCTTCTGCCGGCAAGGCGGTGACCCCCGGGGTCAAGAACG
GACCGGACCACGCCTACTACAATGCGCTCAAGATGCTAGAGTGAGTCAGG
CTTTGTTGCTGTATTGATGTGCGGAAGATGTTCGGCTTGTTGTCGTCGTG
GTCATCACCGTCGATGTCGTCGATGACATTAACGTAGTTTTTGATGCTGG
ACGACATCGATAGCTCGGGCTCAAGCAGCGTCCTTTTCCCCCACATATGG
TGTCCCATGTCGATGGTCGCATGATGCCGGCCACGCGAAGACGGTGTCCA
GTTCGCGTGGTGCTGCACGCGCCGCGGGGCCCTGTCGTGCTCGATACGCT
TTTCGTGGCGATCGTGCCCGGCGGCGAGGACTTTTCATCATTGGGTGTCC
CACGTTGTCGATGTTGGGCATCGATGTGTGTGAGCGTGTGGCGGGCACGA
TGCGAGGCGTAATTGTGGACGCAAGTGACAGAGCCTGACCACGTTCGGTT
TGGTCCAATATCCCAATACACCACCCTACTAGTTCAACTGGTCCTGTGGA
CCGGTGCCCAATTCCGATGAAGTGTGCCAGGCAGGACCAATACACGCGCG
GAATCCCACCTCAGCGTTCCGTTTTCCAAACCAGTTTGTAATATTCCAAA
TGTCGTATCACCACCCTTCTGTAACCTATTTGCCGGGCAGGGCAATGTTT
GAAGGCGAAGGGTGGGAGAGCAGCCCCGAGAGCACCCCCCGCTCTCGCCT
GGACGGCACGCTGGACTTCCTTCAGAAGCAGTTTAAGCAGGTCATCGAAG
ACAAGGTGCGCACCAGCAGTCTCGTCGCGTTACTTTATTCTTGTTTTTCG
TTTTCACGGGACGTCTGTCACAGAGTTTGTGGCCGGTCGCCGAAGGTGAC
CAAGTCAGGCTACTTTTTTCGCCCTTGCTATCGCGGACCCCCCCTTTCCA
TTTCTCGAGCATCCGGCTTTTTCTCTTGCGGCGGTAAACTCCTGCCGTCA
ATCTTTGAGAAACGCAGTCGGAATGATGCCCTGTCCCCCCTCTCCTTTTC
AATTTTCTATCGTTGCAGGGCTCTCTTGGAGCGCGTGAACAAAGCCGGTC
ACGCGGCATGCGCTCCTCGCGTGGCGTCCGCGTTGCGCGGACCTGCGCAA
CTGGTCTTCATGTTCTATCTGAAAATATTAACCGGACCAAAAATGACGAA
TAGCGCGCGCGTGGCGTCCGTAATGCGCCCATTTCCTTAAGTTGTTTTTT
TTTCGTTTCCGTTCCCCTGAAAACGTCGGACTCGACTGTACATGAATGGC
GCAGGTGAAGAAGGCGAGAGAGGCGGGGACGGTGGATGCCCTGAGCCTGC
AAGACCGGGAAACGGGCTTGCCCTTCAGGGTCCGAGCGTTTATGCGCCTC
GATAGGAAAGGCAAGGTCAGTCCATACGTCGTTACCACTTTTCTGGAGTA
TGCGTGCGGTTTTCTGCTGTCAAGAGTGTGGACGACGCGGGTGGCCAAAA
GGGTCAGTCGATTGCTGCACCTTCCTTACCTTTTTGCCTGCCTGTTGTAT
GCAAGGTATAGAGGTCGCTCGGATGTTTCCGTCCTCTTGAGCTCCAGGCA
CTTGCTGGAATATATATTTGCTCCATTTTCTTTAGGTGGTCACCGACACA
GACACACCCGATTCCGGTTTCATTCTCTAGCAAGTTTTTCAAACCGCTCG
ATCTCTCCAGGCGTCTCGCCGGCGCTGCAGGGGCACCAAGGTCATAAATT
TGTTGATGGACAGACGGAGCCATAGTGATGGGGTCCCCAATGTTTGCGTT
GCGTGGCCGATGGTCGGGTCCACCATTTGGAGCGCCTTCAGGTGATCGGC
AGATCTTGCATACAAAGCTACCGACACAGACAATGCAGCTGCATTGCCAT
TCAACGTGCGGTGCCTCTCGCAGCGCTGTGACCATGGACCCTGTCGACGC
GACTCCTGAATCCCTAGTCAACGCCCCCCAGGGTTTGCGTCGCTCAGTAC
CTCAATCAGTAGCAGGCTCCACCGTTGCTTCGCTAAACTTTTGCATTTTT
AGGCCTGGTCTTTCTCACCCTTGTATTCACGCACGTCTTCCTCACGCTCC
CCCCCGACACCACTCATCGTTCGCCCCTCCTACAATCGATTCTACCTGCT
TGCTTGGAACCCTCGCCTTTGATTTTCTGTGCCTTCAGTTCGACGTGGGT
GCGGGGGGCGCGACGGTGTCGGGCCTGCCGGTGTGGCCGCAGATCTACCT
TTGCCTCCGCTGCGGCGGGAGGGGGGAAGCCAGCTCCATCGCTCGCGCCG
CGGTGAACGCTTCGGAGAACTCCCGGTGCACCGCTGAAGGTGATGGATCG
ATTTGTCGGGTATTATTGTTGTTGTTGTTGTTGTTGCTGCTGCTGCTGTT
GCCTTTGTGGGGGCGGGAATGGTGGCGGTATTGGTGGCGATGAAGCCTGT
ACTCCGGAGGCGACTGGCCGATTTTCGAAAGGGGGGATCGAATACCACAA
TGAGAACTCAAGTTGGTGTATCTACATCGGGAACATCATTGCTTGAGGAG
TACAAGCCTTGTGACGATGTTGATAGTGTCGTATTGTTGCCTTGTGATGA
TGTTGAAAGCGTCGTATTGTTGCCGTTTTTCGTTCTTTCTCTTTTCGCTC
GTCCCGGTACCTCGAGTAGGTCCTCGGCTAAAGGACTTTGGTGTGATCAG
ACCTCGCCACACAGCTTACTCGCGCACTGCTGCTGCTGTTGCTGCTGCTG
CTGCTGCTGCTGCTGCTGTCGTAGTCACAAACAGCCGTGTTTGTGAAGCC
CGTGTGTCGCTGCTGCGACGCCGTAACCCCTTTGCCTCCGCTAACGCTCA
AATGTGCGAGAATCGTGCGCCCCCGCCTTCACCTAGTTTTCATTTCGTTC
GTTCGCAACACGTTGCTTTGACTGTGAGCCTTTTCGCTTCACATACCTCA
TTGTGATACACCCCATTCATTGTCCCTATGGTTCCGCGTCGGCGTGTCGA
TTGATCGTCTCGAGGCGGGATCACTTTGTGTCTCGTTGGCAGGCTCGTTA
TTTCTCTTACCGTCTTGACGGCGTTCTCTCTTTTGTTGTCTTCGTCATTT
TGTTCACGGTTTCACGTCCGGCCCCAATTTTTTAGCGGAACACTGCCACA
AAATGTAACATTCTTGAAACCGCTCAAAATGCTTTTTACTGGCGACAAAT
TACCCTTCGTTTACTCTCCATGGATGACCGCTGTTGGGCTTGGTGCGGTG
GCATCTCGTCTTCGCCGTCTTGTGATGCCTTTCCTTGGGCCTACGTGCAG
AGATGGCGCTGCTGGGCAAGGTGGCGGACGTCCTCGTCCAAGGGAAGATC
GAGAACGTCTTCGGCGGAGTCATCCAGCAGGCGTTCCACAGGTGACGGCC
CGGTTTCTCGACAGTCGCATCATCACGACAGTCACTGCCGCATTCTAGAT
TGAAGATGCCTGCTCTCTTGCCTATGTCGTTTTTTTTTGTTGTTGTAATC
CTTCTCGGCCTTCAGATTAGTCAAGGCAGGCACCCAGCGTCCCGGTCGTT
GGTGACGTCGTCCGTTGATGGATTTTCCGCTATTAATAGGCGCGTAGGAG
CCTAGCACCGTGCAGGTTTCGAATTTTCTGCCCGGTTTCCCAACCAGCCC
AATCAGCGCGCCGGAGATCTGTGCGGCTTCCGCGGTTCGTGTTTTCTGTT
TTGCGTCCCGCTTCGTTTTTTTTTTGCGCCGCGGGTTTGCTGATCTTAgG
GGGCTATACGATTTTGCTCGCCCAGGTGTCGATATTCACATTTCCGGTCA
AGCTTATTTCCCAGGGTGTTCTATTTTTCAACACTGGGTGACGCCGGCGT
CGAAGGTGCCATTTCCGCTAGCTCGTGTCTCGTTTTCGTGGGAATGCAGA
GAAACTTCGGTCGGACCTGGCCCAATCAAACGCTTCGATGACGTCAACGA
CTCGACTGGTTTGTTGATGTGCCGATGCCTACTTCCCGTCCACGCCCTTC
TCCGTTCGCTTGTTTTCCCTCTTGAACCTATCGAACCATTTCCACCAGCG
CCGTTGCCGTAATTTCCACCAGCGTGCCTCGTTTTTTGTCTATCTTGCCC
ATCTCCCTAGTGTTTTCCTTGTATCCAGTCCTTCAGCTTTCAACAATATT
ACACGGGTGCCGTCGCTGTTTTTTGTAATCTTTTGCTTCTTGACATCGGT
GCCTTTCTGTCTTGGTGCTCTCAAGTCTCAATGGTTGATGATCGGGACCG
TGGCGGTTTTCGTCGGCGGTTTTGCTACCGGTGTGCCTCTTTTTGGGCAC
CTTCCCTGTGCTGTCCGTCGTCTTGGTTGTTATAACTCAACAACTCTACA
CCGGCGCCATTTGGGAATAACTTGAAATTCAGCATGCGGGACGGCGAGGA
CATGTTCAAGCAGTCCGTGCTCAACGTACTCTCCCGGGCCGACGACAAGA
AGGTCGCCCGCATCAACAAGGTAACCGTGACTGGATGCCGTGTGTAACGC
AAGAATCGACGACCCTTTCACCACGGGACGGCCGATGGTGCCGTACACCC
CTAGGCATTGTTGAGGCAAGTCGCTCGGAAGAGTAACGTTTCGTTTTGGA
AAACCGCGGAGAAAAGAATCCCTTGTTGTCGATCCCCCCCCCCTCTTGTA
CATGAGTCGAACCTTTTGCCTAGGAATTGACTTATCACTTCGTGCCGAGG
ACCCCTGGACATCGCTGACCCACGTCGCTCGGGAGATTAAAATATTGTTT
TCTTACCACAAAGGATAGTTACTCGTTGCTGTCTACTTCCTCGCCCTTTT
GGTTATGGTTCATCCATCGATGCGCCAGTGCCCAAGGATGTTTACTCCGA
GAACAGTTGCTCCAACCTCGGCCTTCACGGCATGGGCCCCGGTTATCGTG
TGTGATGACCGCTGTCACGCTAGGGACATACCGCATGAGCACCCAATCTC
CCTGGAGTCGATAAACTTGCGTAGTTGACGACCCTCCGTAATCCCCACTG
AATCGTCGGCTTCGCAATTTACGTCGAAAATAAATTGAAATACATTTACG
TAAGGTTCACCGGCAATTCATCCTCCCTCTGTTGTTCGAAGTCGTTCTTT
CTAAAGCTGGTTTCACGGAGTAGCCCATCGTAGGAAAGCGTTTCTTTTGA
GGGAGAGGATATTGTGTTGATGTTCGGTGTCCTTTCAGATGGCAGGCAAG
GAAGACCTAGACTGAGACACCCCGTTATCGTTATATGCGTAGTATGCCCT
TTCAGGAGGCAGGCGAATGGGTGCGAGTCCATCGTCCTCGTCCCGTCATG
TGGACCACTTTGGTGGTCTGATGTTGCGCCTGCTTGCGGAGACGACCGAT
GGGAAACGCCGTTCTTGGCTCCTTTCACGGTCGACCGTTGTAGCTTGCCA
AAGGTCCCGTTGGAAACACGAAGACAGTAAGCCCGCACGCTTTCTACTTC
CAGAACACGACTTAGCGCCCCCGACTTGCGCCCTCTTGTGTTTTGAGGAG
GGGAACAACCCACGAACGGGAGACTATCACTTTCTTCGTGGTGCGTTGTG
CTGATTGCTCCACCGAGGGCTCTTTCGACGCAGTCGACAACGTTGCGTTT
TTTTAAATCGAGTGGCTTCTTTTTCGATTGTGCGCATGTTTTTTTACGCT
TTGGCGGTTTCCTCTCCTCTCTGGCCATTGCTGTTGCACGACGAACGAAA
TCCTCCAAGTTAAACCCTCCCGTTTCGCATGCTTGCGCCGATTGATCCTG
AATCCGCAGGAGACGATTGAAGACTACATGTGGTTCAAGCTCTCGTTCGT
CGGATCGGATGTCGACAATTCGGACGTGCTCGGAGCGGCTAAGGTACATT
CCGGTAACGTTTTCGTCCAACACCACGTGACGTCATACCTTGTATGGTGC
CCTGGTCATGAAATGTAGTGTGATTTGATGTGACATTCTTGATGCGATGC
GATGTGAAACTAGGTGGTGTGATCGTGTGAGGGGCGGAGGCTCCGTGGAT
ATGCAAAGTACCAAGGCATGAACGACTAGCTGCCTCTCAGGGACTCGTCA
CTTCAAGAGGCTGAACACATTTCAGCAAGGGTGTATCCAGGCTGCCCACT
CCGGCTCAACTCACGCGACTAAAACAAATTCTTACAAAGCAAGGATTGCG
AGATAGTTAAGCGATCGTTGACAACAAAATTCTGATTTTTATATTTTTCT
CCCCGCATCTCCTTTTATTTTCTGCCTTGATTAACACAGGAGCGTGTAAG
CGGGAGAGACGCGAGACGGCGTTTCGACCCCGATGGCAGAAGCACCTACT
CCTACGTCAACGTCCTGCTGTACACCCAGCAGCTGGACGCCGCGGTGGCC
TTCCTCAGCTGGAAGGGACAGCACCTAGCGGTAGGCGTAATTTTTCGATT
TGTTGAGTAAGAAGACGAGAATGCCAGATCAGTGTATGTTGTTAAATTAG
GTCACTCGTTGTCGGTAAATTACATTGATTGGCAACGAACTTCAAGAAAT
GATTTGAGCTGAAAGGGGCGGCACCTGGCTTCAAGCACCATTATGTGAGT
TGGTTGAACGAGAGGACATTACGAGCTAGGTCAGTGCATTTTGATATCAA
GGCACTCGTTGAAAGATCAAGTTGGTTTGCGCCAAAACGTGTACAAATGT
GTTTGGCTATATTGGAAGGGGCAACATCTGGCGGTAAGCGCGACTTTTTG
AAGCCGTTCAAGAAGGAGTATTTCATGCATGACACGACAAAACCGCCAGT
AACCTGCAGTTGATATCGTGGCACTCGCTGTTGATGACTCAACTTGATTC
GCACCAAAACTTGCCAAACATATGAGATCGCCAAAACTGATGAAGTGAAC
TACCAAGTTGGGTAGCTGGATTGGACACATGGCGGTAAGCGCCCGCCTGG
CATTTCAGTTCCGTGAACAGTTGTCCCCGCTTTGAGGACACCAAAATCGA
GGACACTCCCCGCTGATCTTTCATCAAGCGGGGGGGTCATGATGAGTCCT
CTTCCACTGTATCTAACCACACTTCCCCGGTGAAAGGCACTCGAAGTATT
ACAAAACGCATTGATATCGAAGCGGAGCTGGCTGTAACCCGAATCATCCT
CGTCTGCAGCCGTTTCCGAAGGGAGAGGCCGTGCTTCAGCGGATGCACGG
TTAAGCGGAAGCAAGTGGGTAGCGAGGAAGCGTCCTTCCTGGTTGTTTGT
CCAAGCTATTTAGAACTCGGTTCCCGGCCATCTCGATGTTAGTACTTTCC
TGGACACGGCCCCGTACGACACTTGACAAACTTTCACAACAAGAGTACGG
TTCTTCGCGTGTGAGCCAACAACTGCATCGAGAATCGCATCGGAAATTGC
ATCAAAATCTGCGTGGGAGATTGCATCCAATTGCTTTTCTCCCCCTCCCC
CCTCGCCCGGCTGTTATCCCCTGTCTCCACGACCTAGGCGCTACACATGG
CCCTCGTCATGAGCCACCACAACGCATACAACGCCGTCGACAACCCCAGC
GCCACAATGTACCCCGGGGACAATGATGGGGAACCCGGCCCCGCCCCCAC
CCTGCGCGAGCTGATGGAGCGGGCCCTTCAGGGCCGTGTCGACAGCGATC
CGCAGGTGCAGCACGTCTCATTAGTGCGCACAGCAGCCATCACACGCACA
CAATATATTTGTTTTTGTTTTCGAAATGAAAAAGAAGGTAAGGTATGATT
TTTTGTTGAGTCTTTTTGCAACAAGTCGTCGTCGAACTTCGCACTGCTTG
AGTTTGGAGCCACAAAGTCGAATCTCATCCACTTTCTCACTTTATACCTG
CCGAATCGCTTTTGGTTTGTGACTGTGGAGGCGATAGGTAGACCTTTAAG
AAGCTTTGAACCAACCCGCTAGACTAGTTAGCGCTGACTAGTCTAGTGGG
TTGGTGTTCAGCTTTTATAACCTGGACGAGGCTTTTGCCGAGCTGTTGGC
AGCTTTGATGCCTTTTCGTGGCTGCGCCGCTTCGGAGATGTGATGCATCA
GGCGTAGCAGGCCACGCATGAATGGAATTCTTCGACGTATGGTCAGAATT
AGTCGAGGTAAGGCTTGAGTATAGTTCTCACATAACTCTCCACTTTTCAC
TTTCGAGTTCCTGCTCTTTCTCAATTTTCTTGCGTAGGCGGTCCGACTGG
CACGCGCTGGTTGGCTCTACCGAGAGCCACTGCTCCTGTTGCACTTGTTT
GACGCCCCACTCTCGAATGCGAGCTCTCAAGTCTTTCTCACGATTCTGAC
CTTGACACTTCGGTACGCACGATCAGATGTGTGTCGAGTACCTACTGCGC
CTCCCGCTGCCGATCGCCAGCGACTGCCTCGGAGGGCTGGCCGTGCGTCT
GGGCGCTATCAAGGCGGCGCCGTTGTTGGGGTACATGCAGACCGACGGGA
GCCGGAAGAAGGTGGGAAGTGCCAAAGATCAGCGTAGGAGGTTGTCCTCC
TGCGGAGGTGGTGTCAACGTCCGATGAATCCTCTTCATCGGCGGGACTCC
TCTTGCTGCTGTTGCTGCTGTTGCTGTTGTTTCGGCGATGATGCTCGTCG
TGGCGCTTTCGACAGTCCCGCTGAACATGTGTGTGTAGCAAATGGCCGAA
AACGGAAGAGACAACCTGTGCACGACTCGGGCGTACCTCGTCAACTATCA
TGCGCTCCATTCCTGCTCCAAACTTTTCCATCCCATCGCCCGTGTCACGT
TTGTCCGTACTTTCATTCTGGCCTGGACCTTGGCGTTGCATACCACGTCA
GTACGGTGTCACCCCTGCCAGCCCACCGGGTCTCCCCCACATGCCACGTC
CCATCGTTTTCAACTCGTCGGATGCCATTTCGTTCACAAACCGGACCAAT
CCGCGTGTAACTTACCGTACCATAGCACGACGCATCGTTCAGATTTTGAG
GTAGACTCGAAAGTTTCCTTCGATGCCATCCCGCACCGTTATCACAAACA
GTCCCGTCCCCCCAACCGTGCCTCATCCTTCACTTGCGGTTGCTTTTGTA
GGGGGGACTCGACCGGTTCCTTATGGACAACACAGTGGAAGACATCGCTT
TCGACGCGGCACAAAAGGTAAGCGGGAGTGCTTACCGGTACAGCTGCGCG
GAACCTAGGAGATGAGACAACAAATTTTGCCGTAGCAAAAGGAATTCTAG
CAGACGCAGCGGGCATAAAATTATCCAATACTTCACCGAGGGAATAGAAT
CGAAGGAAACAACGTGCAACAGTCGTATTTGGGGGCTCAGTGACGTGTAC
TACTTGCTGTTTGTCACTTCGCAGTCCTGCGTGAGATCCGAGGTAAGCGT
GCCGTTTCTATCGATCCCGGCTTGCTTCGGCCGGGTGTGTAGATTTAATC
TATCCCGCGCCATTTCCACCGATCCCGAGATTCCGCACCGTTTCCGTCGT
TTCCGTCGATCCCGTCCCGTCCCTACTGATTCCGTGTCGTCCGAATTCGT
ACCGTCTCCATCGATCCCGTGCCTTTTCCATGGATCCCGCCTCGCTCTTG
GCCCTTTGTGTAGACCCCATGCCGGCTTTGTGAGTGACGTCTGTGAGGTC
ATTACGCTAATGATCGGTTTTCGAACACGTCAACGGAGGGGCGAATTTTA
GCTAGTCTGACTGCGGTTACCGCAGGCACAGCTTCCTCCTTCTCTTTTTT
CAAAGCGAGAAGAGGATGGCATTAGAATCAGTACTTTTCCTTCAAATAGT
CAGTGCTTTTCCTTCACATGTTCGTGGCAGAAAGTTGCAGCATATGATAT
AGCGGTACGCCTAACAAGCTTCCGATCGACGGCAGGTCTGAGCGCGGAGG
AAGGGCGTGGCTCAAGCGCGCTAGGCTATCGGAAGTATTCCCAATCACTA
ACGACTGCGTTTCGGTTTCCCCATCGACGGCAGGCCGAGCGCGAAGGGCG
GCGGGAAGACGCGATGACGTTCTACGGCCTCGGATGCGACTATGAGAAAG
TGGCGGAGTTGCTGCAGCAAAAGCTTGCGGAGAAGCTCGACCCGCAGGCG
GCAAAGCGCTCGTTCTGGAAGGTGACTCAATCAACGTATTTTTTGTTCTT
GTTTTACGAGATACGCCGAGGTGCTTGTTTTCTTCCCTTGCACGAGAAAA
GGCAAGAAGCAAAGTAAAATAAGTCCATCAATGAAGTCTCTAACACACCT
TTATTTCCTGTTTAATATTTCATCGTTCAACATCCTTATGTTAATAGTTG
CGGTTTTACTATATTATATTCTTTTTGCAATAAAAGTGTTGCATATCCTT
ACAGTTCCTGTGCACCGGGACTTTTAGAGGCTTGTCTTTGCACCCTCCTC
TCCGCTACATCGAACGAGAGGATGTCAGGCCATTGCCGGTAAGGAGGGAA
CGGCAGCACCGTTTTAAACAAATTAGCCGCCGGATCCCAATACACTCTGA
GTATTTGGAATGGAAAACATGTTAGGCGTTTTTTTTGCGCTTCTTCGCAT
TCGACGATATTGCTCGTGCAGCAAGAACGCCGAAACCCTTCCGCGGTGTT
TGTGGTTTCCGAGGAGGGACGAATACAATGTTGTTGTTGGCTTCTTGACA
ATACGATCATGACCTCCAACCGTTCGGGCTGAAATTCCAACAATACCCCG
CAGAGGTACAAAAAAATCAGTAGTGCATCCCAGAAGTCAAAGCCAAGCGA
AAATATCGCACTCAATAGGGAACAGTGGGAAACCATGCGCTTTGAATTTG
GAAGGAACGGGTGTTGGCTCGTGAGAAGGCGAACAGCAAGGGCACGAAGC
CAACAATTGAGCAGAATGTCCCCACCACCTCCGCCCTTGTCCTCCCAATA
TTGTGCGCTGTCCAGGAGCTTGGCGCGAAGATCCACAAGGTGCTGGTGAT
CATGTCGGAAGGCCCGGAAGCCACTGAGGTGAGTTTGTGTGTCGGAGTGA
TTTTGGACCGGAGTCCGAGATTATGTAGCTGTATTGTTGGACGATTTGGC
ACACGGGAACGGTGCCCAACACACTTAGGCCAGCGTCGTGGTCGCGATTG
TGCGGTGCATTAGCTTCGCTGCTTTTGATTCTGCAACCGCTGTTCAGGGC
AAATCGCCTGATCAGGGTAGGCGTCGTCGTACCACGGCAACAGTGCTTGT
GTGCCACATGTGATTCGTGCCAACTGCTGGTGCAAAGAGGTATGAGATTT
TGTCGATTGAGACACGGCCACACCCTGTTTGAGCATATCGTTTTTCGCCA
TTCTAGCAATAACGAGCCATCCAATTTTTAACGTCGATTTGAGTTCGACC
GACCGAGTGAGTAGCGTCACCCCCCCTCCCCTTTCCCCCCCTCCCCGGCG
CATGCTTCACAGTAGCCACTTCAGTCTACTCCGGAGAGGCAGGCTGTTTT
ACGGACGCATTGAACGTTCATCCACGGCGCCCTTGCGGAGTCTGTTGTGC
CGAGTCGGGGTCTGCGTAGAGACTAATGCCCAATGAAACAGTGTTTTCTT
TCACGGTGCTCGTCCAGCTTGTCGCCAAGTCTGTTCATCCCACGATTTCT
TTGTTGCATCCGGAACGGCGTGTTTCTGCTTCCTGTCATGGGGGTTGAAC
ACCTCCTTGAACATCTCCTTGAACATCCCCCTCGCTTCGTCGCTCGCTCG
ATAACAGTCACGGGAACTGGCTGCGGAGGGAGTCGGGCAGATGCTCCGCC
TCATGGATTTCTTCGCCTTCGTCCAGAATCGAGCGTGAGTCGAGAACGTG
GAGGGGGCACGCGAAGCAAAATTGGCTCTGAAGTGACGTTTCGTGTGTAC
CGATAATCGCACCCATGATCCGTGAACAATCGTGATCAAGCGATTGTACG
GCGTATCGTGCGCGTTCGATGTGATTGTTCGGCTAACCATGCGCATTCGG
TGTTTTCGGAAGTAAGGCGACAGCAAACAAGTGGCATCTCGGCGTTCCAC
TTCTTGAATATTTCTCTTGAATATTTCTCTTGAATATTTCTCTTGAATAT
TTCTCTTGAACATTTCTCTTGAATATTTCTCTTGAATATTTCTCTTGAAC
ATTTCTCTTGAATATTTCTCTTGAACATTTCTCTTGAATACTTTTTGAAG
TGCCGCAGACAGCACTCGATGTCGTCGGGAAACGCGTGTCCTTGCCAATC
TTGTTCCTACCTGCAGGACATGCACCGGTCTTGGTTTGTCCTCTTCTTGG
CTGCCTCTTAGTTGTGCTGTCAAGCCGTTGTTTTCTTGCTTAATTCACCG
AAGACCAGGTCCGCCTCTTACCAGGACGGCTCTTCAACAATGGCCTGGAC
TGGCTCCCTAGCCGGCCTTTCTGTGTCACATGAATTTCGCAGGACCGACC
GAAAGACTAGGCGACATGAAATACGTGGATCAAAGAATAGTCGCCGGTCG
GACAATTTGCTGGTGTTGTCGAAAGTCAGCAAATCCGACATCGGACGGGC
CTGAGTTGAAAAGTGCCGGCTTGTTCTGAACGGCATGTGTGCCCTGTCTT
TATTCTCGACAGCGACCACCTCCTGTACTTGCAGACTGTTGACCTCCTTT
TGTTTTTTTCGCCCATTCCGCCAATCTCATTCCGTGGAATCTCCCGCTCC
GTTCATCTCGCATTCCAATTTCCTCCCATCCCATTTACCTCCCTTTCTGC
TTCAACTCCCATCCCATGAACCTCCTGTTCCGTTTGCCTCACGTTTTTGC
AGCCTGTCTAAGGCGCTCGTTGAACTCGAGGGGGCCGGCTTGCTGCCGTC
CTCCCATGACGAGGCCGCTTTGCTAGCCTCGCGGCTAAGGCTCAGGGGCC
CGCACGATGCCTTCACCGGCGTGATTCCTCAGGTACCGTAGGGTCTCGTG
ATATATCGCACCGTCTGGGTCGTTTTTCAGCACTTAGGGTTAGCCCGCGG
TGACAGAGGTACTTTCAAGAATGCAGCGGGTAGGGAAATTATGTCAAGAG
GATTGTATGGACACATCGTTCGGTATTTGTCAACCCCTAGCTGTCGAGCT
TTCGAACTTCGAAATCTACCCAGAGGGCGCTATGAACTACGTATGTTGCC
GAGGATGAACGCGTGCTGTCACACCCGGTTGGTATCGGCAAGGTGACCTA
CGACAGTAACGGGAGGAGCGTTGGTGCTGAAGGGTTGGCAGACGGCACTC
TATCTACTTGCAAACACCCTGCGTCCCCTCCGTCCTACACACAGTTTGCG
ATCCCGCGCCAGAACACGAAGCTTGTCGTAATGCCGTATGTGAGCGCAGA
CCTGGCAAAAGCTATCCTTGCATCTGCTCCCTTTCACCGTTGCATTCTCC
TCCGCGTTCGGGCACGACTTGCCTCGGGAATATATGACGTGCCTCTGATG
AAGGAATGACACCAAACGGGACGTAGACCCTTGGCTACCCCAGGAATCCC
GTAAAATGCGGCTTCCTTACAATTGTTGCCCTTTCACAATATTATGCAAT
TCATTCATTTGGACATTCACGTTCCGTGTTTTGGTGTTGATTTTCTTGCG
GTAGTGCGCAACGCGCTTCATTGCATGAACGTAGCACTGCAATTTCACGC
AATTCGAAACGCTCTCCCCGCCCTGCATTCCATTTTGACCCGTCGACGAT
CATTTCCAAGTTGACCTCGCCGTTTGTTCGGGGCGCTTTCCAGGCCCTTG
AGACCGGGATGCAGTGCCTCAGGCATTACCACCTGGAGGTGAAACGGGAG
CTGCTCGGGAGCGCCGTGGGAAGAGTCGATGCTGAGCAGTGGAGGGCATC
TAGAGAAAGAGTGAGCATGTTTTGTGTTCTTTTGCATGCCTGGCTTGTCT
TGGGATCTGGTGTCCCTGCATTTGCTCGCATAACCGAGCGGCTTCAACCT
GACCTCTCTTGCCTTTTGTCTTTTCATTTTCCCTTCGGCGGGGGAGGGAC
TTGTAATCATTGCTGTCAACGAGAGATACTGGAGACGGCCTTCGTAACCG
CGATTTTTTCTGAGTCATTGTTGGCCGTACTCTCTTCTTCCTGTTCTCTT
GGACGAGAACGCTTGAGCTTCCCTCAGGCCCCATCTTTCACCTTCTGCAT
CAAGCGCTGTAGCTGAGGGAGAATCGAAATTGAGGAACCATGTTCTCTCC
GGCCCACGTATCGGAGTTATTACACGTCTCGGCGGCATGACACATGCCGG
AGCCAGGACACGATGACAAGTCGCGGGCGGAAATTTTGTGAAATCACTGT
ATCGCACAGGTCTCCTAACATGTGCACCCTGAAAGTCGTCATTCAGTTCA
AATGGGCTTTGCTTTCGCTGTCACGTAGGATATTGGACGTCGTTTTGAAA
TCGAAGAATTGCCCAAAGAACTGTTAAAGCCACTCCTGTTACCGCGAAGC
CACGGCTACGGCTATTTCCATCGCAAAGGTCGCGACGACGAACGCTTCCC
TCCCTACCTGAAATCTCCGAGAACTGGCCCTGTTGACGTTTTATATGTGT
TCCCCTCACCCCCTCCCTTAGTCTCCTCGCCGTAAGCCATAAACTGAAGG
GTCGAGAGGCCAGAGGTCGGGACAACAAGTGATTCCCTTCGCATCTGAAT
ATTCTTGGGGCTCCCTATTTGACGCCTTGTTATGTTGTCTCCAACCCCTT
ATTCTCACCAGAAACTAGAGGAGCTGGAGGCTAAGGGGCGGGCGATGGTG
GGGCTGGCCGGCAGACTCTCGGACCTGCTGCCCGCGAGCTTCGTCGCCGA
TCTCAGCCGCGTCGAGGCCAACATCATCAACTAGTTGCCGACAATTACCG
GTCTCTTCAAAACGTTCTGAATAGTGTTTTATGCTTTCCAAGACCTTCCA
TCTCGATACGCAAGTTGTGATGCATCGTTTTCGTGCTCCTTCAACTCCTG
CCATTTCATGAGTGCCATTTCATTGAGCATTATCGGTGTCCCTTTTGTTA
TCGTCGGTCGTTGTGAGGGGTCGTCCGTCGCACTTGGCGGAGGCATTCTT
ATGAGGCGTGAAGGCCGGTGGGGTATCGGCTGGGAACCTGTTGGGGGTGG
CGTGGCGTGTGCCTCGGTATCACTTGCGTGGGCGCACGCACGGTATTTGG
CCATCTTTGAGAAGCCAAGCAAGAGGGTCTGGTGCATTTCTGCTGCCGGC
TTTGGTGTTTCGACCCCCCTCCAGAGGATTGTGTTGGAAGCTGTGGTTCC
TCGTTTCGACCATCCACAACGGCGCTACCACTTGACTGCGGGGTGACAAC
GAACAGATGTGCAATCAAGCGGTAGCAACTCACGGAGTTCAACCCCGAGG
CGTGCAGTGATGAATCCAAACCCATTGCCGCGTGGGGGGCTCTCAATAAT
AGCGCCTGCTGATCAGTGTCGCTGACCGTGGGCACCAGCGTCCACTCTTG
TACGAGAGCCCATATGCACCATGTTCTGGATATCGCCGGTCGACTCTGTG
GGCGTGAACTACCGGCGCTATCGAGGGCCCCTCTACCGTGTTCCGACCGT
TGAATCAGTACTGCACCCCCTCGCCGCAGAAAGCATGTTTCGGCGACCGG
CCTGCAGGTGGGGGCACGGCTCTCGTGATAAACTCGTGAGTGATCGCTGG
CGAGGAGGAACTTTGGGCAGAATTCCCACGTGATTTGCGGGGATAAGTTT
TGGGGCAGGTGCATCTCTCGCCGGTGCTACTTCTGGGGGGGGATGTAGAA
ACGTCGACATTTTGAAAATTATCGAAAATCTTGTGGTAATCCTACTCCCG
TTTGTTGTGATCCACGTTTGGCGGAACTTCGTGACCAGTGGCCAACATAT
GGTGGCCCTCGCTGCCACCCACCGGGTACCGTAGGGCTTGAGCGGCTGCC
TTGGCGTCGTTCATCGGTCACCGTACATTAATGTGTGCATCCTTTGATTT
CACCAACTTGAGGCAATTTCTTTTTCAAGCGAGGGCGGGTTTCGTCTGCG
GTGTGGC back to topCoding sequence (CDS) from alignment at P-fluviatile_contig83:210463..233419+ >mRNA_P-fluviatile_contig83.14848.1 ID=mRNA_P-fluviatile_contig83.14848.1|Name=mRNA_P-fluviatile_contig83.14848.1|organism=Porterinema fluviatile SAG_2381|type=CDS|length=3612bp|location=Sequence derived from alignment at P-fluviatile_contig83:210463..233419+ (Porterinema fluviatile SAG_2381) ATGCTAGAATGCTAGAGGCAATGTTTGAAGGCGAAGGGTGGGAGAGCAGC CCCGAGAGCACCCCCCGCTCTCGCCTGGACGGCACGCTGGACTTCCTTCA GAAGCAGTTTAAGCAGGTCATCGAAGACAAGGGCAATGTTTGAAGGCGAA GGGTGGGAGAGCAGCCCCGAGAGCACCCCCCGCTCTCGCCTGGACGGCAC GCTGGACTTCCTTCAGAAGCAGTTTAAGCAGGTCATCGAAGACAAGGTGA AGAAGGCGAGAGAGGCGGGGACGGTGGATGCCCTGAGCCTGCAAGACCGG GAAACGGGCTTGCCCTTCAGGGTCCGAGCGTTTATGCGCCTCGATAGGAA AGGCAAGGTGAAGAAGGCGAGAGAGGCGGGGACGGTGGATGCCCTGAGCC TGCAAGACCGGGAAACGGGCTTGCCCTTCAGGGTCCGAGCGTTTATGCGC CTCGATAGGAAAGGCAAGTTCGACGTGGGTGCGGGGGGCGCGACGGTGTC GGGCCTGCCGGTGTGGCCGCAGATCTACCTTTGCCTCCGCTGCGGCGGGA GGGGGGAAGCCAGCTCCATCGCTCGCGCCGCGGTGAACGCTTCGGAGAAC TCCCGGTGCACCGCTGAAGTTCGACGTGGGTGCGGGGGGCGCGACGGTGT CGGGCCTGCCGGTGTGGCCGCAGATCTACCTTTGCCTCCGCTGCGGCGGG AGGGGGGAAGCCAGCTCCATCGCTCGCGCCGCGGTGAACGCTTCGGAGAA CTCCCGGTGCACCGCTGAAGAGATGGCGCTGCTGGGCAAGGTGGCGGACG TCCTCGTCCAAGGGAAGATCGAGAACGTCTTCGGCGGAGTCATCCAGCAG GCGTTCCACAGAGATGGCGCTGCTGGGCAAGGTGGCGGACGTCCTCGTCC AAGGGAAGATCGAGAACGTCTTCGGCGGAGTCATCCAGCAGGCGTTCCAC AGCATGCGGGACGGCGAGGACATGTTCAAGCAGTCCGTGCTCAACGTACT CTCCCGGGCCGACGACAAGAAGGTCGCCCGCATCAACAAGCATGCGGGAC GGCGAGGACATGTTCAAGCAGTCCGTGCTCAACGTACTCTCCCGGGCCGA CGACAAGAAGGTCGCCCGCATCAACAAGGAGACGATTGAAGACTACATGT GGTTCAAGCTCTCGTTCGTCGGATCGGATGTCGACAATTCGGACGTGCTC GGAGCGGCTAAGGAGACGATTGAAGACTACATGTGGTTCAAGCTCTCGTT CGTCGGATCGGATGTCGACAATTCGGACGTGCTCGGAGCGGCTAAGGAGC GTGTAAGCGGGAGAGACGCGAGACGGCGTTTCGACCCCGATGGCAGAAGC ACCTACTCCTACGTCAACGTCCTGCTGTACACCCAGCAGCTGGACGCCGC GGTGGCCTTCCTCAGCTGGAAGGGACAGCACCTAGCGGAGCGTGTAAGCG GGAGAGACGCGAGACGGCGTTTCGACCCCGATGGCAGAAGCACCTACTCC TACGTCAACGTCCTGCTGTACACCCAGCAGCTGGACGCCGCGGTGGCCTT CCTCAGCTGGAAGGGACAGCACCTAGCGGCGCTACACATGGCCCTCGTCA TGAGCCACCACAACGCATACAACGCCGTCGACAACCCCAGCGCCACAATG TACCCCGGGGACAATGATGGGGAACCCGGCCCCGCCCCCACCCTGCGCGA GCTGATGGAGCGGGCCCTTCAGGGCCGTGTCGACAGCGATCCGCAGGCGC TACACATGGCCCTCGTCATGAGCCACCACAACGCATACAACGCCGTCGAC AACCCCAGCGCCACAATGTACCCCGGGGACAATGATGGGGAACCCGGCCC CGCCCCCACCCTGCGCGAGCTGATGGAGCGGGCCCTTCAGGGCCGTGTCG ACAGCGATCCGCAGATGTGTGTCGAGTACCTACTGCGCCTCCCGCTGCCG ATCGCCAGCGACTGCCTCGGAGGGCTGGCCGTGCGTCTGGGCGCTATCAA GGCGGCGCCGTTGTTGGGGTACATGCAGACCGACGGGAGCCGGAAGAAGA TGTGTGTCGAGTACCTACTGCGCCTCCCGCTGCCGATCGCCAGCGACTGC CTCGGAGGGCTGGCCGTGCGTCTGGGCGCTATCAAGGCGGCGCCGTTGTT GGGGTACATGCAGACCGACGGGAGCCGGAAGAAGGGGGGACTCGACCGGT TCCTTATGGACAACACAGTGGAAGACATCGCTTTCGACGCGGCACAAAAG GGGGGACTCGACCGGTTCCTTATGGACAACACAGTGGAAGACATCGCTTT CGACGCGGCACAAAAGGCCGAGCGCGAAGGGCGGCGGGAAGACGCGATGA CGTTCTACGGCCTCGGATGCGACTATGAGAAAGTGGCGGAGTTGCTGCAG CAAAAGCTTGCGGAGAAGCTCGACCCGCAGGCGGCAAAGCGCTCGTTCTG GAAGGCCGAGCGCGAAGGGCGGCGGGAAGACGCGATGACGTTCTACGGCC TCGGATGCGACTATGAGAAAGTGGCGGAGTTGCTGCAGCAAAAGCTTGCG GAGAAGCTCGACCCGCAGGCGGCAAAGCGCTCGTTCTGGAAGGAGCTTGG CGCGAAGATCCACAAGGTGCTGGTGATCATGTCGGAAGGCCCGGAAGCCA CTGAGGAGCTTGGCGCGAAGATCCACAAGGTGCTGGTGATCATGTCGGAA GGCCCGGAAGCCACTGAGTCACGGGAACTGGCTGCGGAGGGAGTCGGGCA GATGCTCCGCCTCATGGATTTCTTCGCCTTCGTCCAGAATCGAGCTCACG GGAACTGGCTGCGGAGGGAGTCGGGCAGATGCTCCGCCTCATGGATTTCT TCGCCTTCGTCCAGAATCGAGCCCTGTCTAAGGCGCTCGTTGAACTCGAG GGGGCCGGCTTGCTGCCGTCCTCCCATGACGAGGCCGCTTTGCTAGCCTC GCGGCTAAGGCTCAGGGGCCCGCACGATGCCTTCACCGGCGTGATTCCTC AGCCTGTCTAAGGCGCTCGTTGAACTCGAGGGGGCCGGCTTGCTGCCGTC CTCCCATGACGAGGCCGCTTTGCTAGCCTCGCGGCTAAGGCTCAGGGGCC CGCACGATGCCTTCACCGGCGTGATTCCTCAGGCCCTTGAGACCGGGATG CAGTGCCTCAGGCATTACCACCTGGAGGTGAAACGGGAGCTGCTCGGGAG CGCCGTGGGAAGAGTCGATGCTGAGCAGTGGAGGGCATCTAGAGAAAGAG CCCTTGAGACCGGGATGCAGTGCCTCAGGCATTACCACCTGGAGGTGAAA CGGGAGCTGCTCGGGAGCGCCGTGGGAAGAGTCGATGCTGAGCAGTGGAG GGCATCTAGAGAAAGAAAACTAGAGGAGCTGGAGGCTAAGGGGCGGGCGA TGGTGGGGCTGGCCGGCAGACTCTCGGACCTGCTGCCCGCGAGCTTCGTC GCCGATCTCAGCCGCGTCGAGGCCAACATCATCAACTAGAAACTAGAGGA GCTGGAGGCTAAGGGGCGGGCGATGGTGGGGCTGGCCGGCAGACTCTCGG ACCTGCTGCCCGCGAGCTTCGTCGCCGATCTCAGCCGCGTCGAGGCCAAC ATCATCAACTAG back to top
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