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Homology
BLAST of mRNA_P-fluviatile_contig1.488.1 vs. uniprot
Match: A0A6H5KLR8_9PHAE (Gal_mutarotas_2 domain-containing protein (Fragment) n=1 Tax=Ectocarpus sp. CCAP 1310/34 TaxID=867726 RepID=A0A6H5KLR8_9PHAE) HSP 1 Score: 1150 bits (2974), Expect = 0.000e+0 Identity = 568/684 (83.04%), Postives = 599/684 (87.57%), Query Frame = 2
Query: 137 MAPAMRRLASSLALSLVVLIAPPLTGPSSRLGLGPLGAAAVDKKKFRKCADTGFCRRNRERTSPPKSPFRVDPASVRSDRDGITADVLPAEDGGGSAPLSLRVRFYSNGVCRLKVDEHSPGGAQRWEPPDVFLEQQLERAEFVLLPLGDPSLPPALRELPEGWNGILAAYGSVE---TGGGGSCDRRYVLSVRYDPFQADLYAGDELAVSANRRGLMHFEQTRAKGDRSVGGAGG-GGKTVDLHRGKKVKDYGEDGLAIYEDGTRETREEHNRLLEEA-SARQGKDESGLGLWEESFDGHPDSKPDGPTSVGIDVYFPGSDHVYGIPEHATSMALKTTTAGDNADADTGAGDSNGDGKGNEVPLAPPPPPHFSEPYRLYTLDVFEYELDSPAALYGSIPVMLGHRKGITAGVFWFNPTETFVDVEQGGAGEGKRARWISEGGALDLVLLPGPTAGEVFRQYAEVTGKPELPPMFSLGFHQCRWNYRDEQDVLAVDAGFEERDFPYDVIWLDIEHTDGKRYFTWDQRLFPDPKRMLDKVAAHGRRMVTIVDPHIKRDPNYAVHKEATAKGLYIKDKDGNDFDGWCWPGQSSYLDFTDERVRAWWASRFSLDQYEGSTLDLYTWNDMNEPSVFNGPEVVSMKKDCLSLAGVEHRHWHNVYGMYMQRATAEGLELPRKGNARGGGGG 2173
M P R LASSLALSLV PPLTGP + G GPLGAAAVD+KKFRKCADTGFCRRNR+RTSPP++PFRV+P SV+S +GITAD+ P + GGSAPLSLRVRFY NGVCRLKVDE SPGGAQRWEPPDVFLE QLE AE LL GDPSLPPAL+ELPEGW G+LAAYG GGGG RYVLSVRY+PFQADLYAGDELAVSANRRGLMHFEQTR K D + G GG GGKTVDLHRGKKVKDYGEDGLAIYEDGTRET+EEH+RLLEEA +ARQGKDESGLGLWEESFDGHPDSKPDGPTSVG+DVYFPGSDHVYGIPEHA SM+LKTTT D + A PPHFSEPYRLYTLDVFEYELDS AALYG+IPVMLGHR+G TAGVFWFNPTETFVDVEQGGAGEGKRARWISEGGALDLVLLPGPT G VF+QYAEVTGKPELPPMFSLGFHQCRWNYRDEQDVL+VDAGFEERDFPYDVIWLDIEHTDGKRYFTWD+ LFPDPKRM+DKVAAHGRRMVTIVDPHIKRD YAVHKEATAKGLYIKDKDGNDFDGWCWPGQSSYLDFTDE VR WWASRF+L++YEGSTLDLYTWNDMNEPSVFNGPEV SMKKDCLSLAG+EHRHWHN YGMYMQRATAEGLELPR+GNARGGGGG
Sbjct: 1 MTPVRRGLASSLALSLVAFNTPPLTGPLAGRG-GPLGAAAVDQKKFRKCADTGFCRRNRDRTSPPQTPFRVNPESVQSSAEGITADIWPGD--GGSAPLSLRVRFYENGVCRLKVDEQSPGGAQRWEPPDVFLEHQLEAAEHTLLSPGDPSLPPALQELPEGWRGVLAAYGKYGGNVAGGGGGSSGRYVLSVRYEPFQADLYAGDELAVSANRRGLMHFEQTRGKDDAAAAGEGGAGGKTVDLHRGKKVKDYGEDGLAIYEDGTRETQEEHSRLLEEAEAARQGKDESGLGLWEESFDGHPDSKPDGPTSVGMDVYFPGSDHVYGIPEHAASMSLKTTTXXTTPDGEIAA------------------PPHFSEPYRLYTLDVFEYELDSSAALYGAIPVMLGHRRGQTAGVFWFNPTETFVDVEQGGAGEGKRARWISEGGALDLVLLPGPTPGAVFKQYAEVTGKPELPPMFSLGFHQCRWNYRDEQDVLSVDAGFEERDFPYDVIWLDIEHTDGKRYFTWDKGLFPDPKRMIDKVAAHGRRMVTIVDPHIKRDGKYAVHKEATAKGLYIKDKDGNDFDGWCWPGQSSYLDFTDEGVREWWASRFALEEYEGSTLDLYTWNDMNEPSVFNGPEV-SMKKDCLSLAGIEHRHWHNTYGMYMQRATAEGLELPRRGNARGGGGG 662
BLAST of mRNA_P-fluviatile_contig1.488.1 vs. uniprot
Match: A0A7S2STM5_9STRA (Hypothetical protein n=2 Tax=Rhizochromulina marina TaxID=1034831 RepID=A0A7S2STM5_9STRA) HSP 1 Score: 1046 bits (2705), Expect = 0.000e+0 Identity = 554/1030 (53.79%), Postives = 675/1030 (65.53%), Query Frame = 2
Query: 254 AVDKKKFRKCADTGFCRRNRERTSPPKSPFRVDPASVR-SDRDGITADVLPAEDGGGSAPLSLRVRFYSNGVCRLKVDEHSPGGAQRWEPPDVFLEQQLERAEFVLLPLGDPSLPPALRELPEGWNGILAAYGSVETGGGGSCDRRYVLSVRYDPFQADLYAGDELAVSANRRGLMHFEQTRAKGDRSVGGAGGGGKTV--DLHRGKKVKDYGEDGLAIYEDGTRETREEHNRLLEEASARQGKDESGLGLWEESFDGHPDSKPDGPTSVGIDVYFPGSDHVYGIPEHATSMALKTTTAGDNADADTGAGDSNGDGKGNEVPLAPPPPPHFSEPYRLYTLDVFEYELDSPAALYGSIPVMLGHRKGITAGVFWFNPTETFVDVEQGGAGEGKRARWISEGGALDLVLLPGPTAGEVFRQYAEVTGKPELPPMFSLGFHQCRWNYRDEQDVLAVDAGFEERDFPYDVIWLDIEHTDGKRYFTWDQRLFPDPKRMLDKVAAHGRRMVTIVDPHIKRDPNYAVHKEATAKGLYIKDKDGNDFDGWCWPGQSSYLDFTDERVRAWWASRFSLDQYEGSTLDLYTWNDMNEPSVFNGPEVVSMKKDCLSLAGVEHRHWHNVYGMYMQRATAEGLELPRKGNARGGGGGDGRPFVLSRAFFAGSQRWGAVWTGDNAARWDHLAASAPMLLSMSLAGLPFVGADVGGFFGDPSAELFLRWMQAAAYQPFFRSHAHHDSKRREPWVFGDPWTTRIRSVVMARYALLPYWYTLFQEASDTGMPMMRPMWVQYPDDANTFDMDDQWMVGSDLLVKPIVTEGATVSAVYLPGRSGAGXXXXXXXXXXXXXXGLWYDVDTLGAVRGSGEYRSVEAPIDKIPAFQRGGSIIPRKQRLRRSSLMMAGDPYTLVVALDEAAAAQGSLYLDDEESHDYRDREGGGGWATRRFSFEGGVLAGRAAEG--SGVYRPANTIERVVIAGVDTEPSSVMLQVVSAPASDDGRVEQAATAAVPLSFTYDAPARVLTVRKPDVCVAEDFDLRL 3328
AVD+ KFR C DTGFCRR+R T+PP F V P SV + DG++A +L ED S PL L + FY NG+ R++V E +P RWEPPDV LE QL + P L+E E +G+ Y R+V + + PF L+ E VS N R L HFE R+K D + T D H+GK++ Y EDGLAIYEDGTRE + N EE R +G G W+E+F GH DSKP GP SVG+D+ FPG+ H++GIPEHAT ++L+ TT G NA H+S+PYR+YTLDVFEY+LD P ALYG IP+++GH + G FWFNPTETF+DVE+ G + R WISE G +DL+LLPGPT ++ Q+ G ELPP+F+LG+HQCRWNY+DE+DV V+A FEE DFPYDV+WLDIEHTDGKRYFTWD+ LFP+PK M++ ++AHGRRMVTI+DPHIKRD NY +H+EAT KGLYIK+KDG+DFDGWCWPG SSYLDFT VR WWA + +LD+YEGST+DLYTWNDMNEPSVFNGPEV +M+KDC +L GVEHR WHN+YGMY QRATAEG ++ R G G RPFVLSR+F+AGSQRWGA+WTGDN A W HLA +APMLLS+ L GL F GADVGGFFGDP AEL +RWMQA AY PFFR HAHHDSKRREPW+FG+P TT++R+ VM RYALLPYWYTLF EA TG+P MRP+W++YP D TFDMDDQW+VGSD++VKP+ G T + VYLPG WYDVDT G G Y + PIDKI A QRGGSIIPRK RLRRSS +M DPYTL VALD+ A G LY+DDEE+ ++D G + RRF F+ L A G SG + P N IER+VI G+ P +V + AS+ + L F YD + LT+RKP + +F LRL
Sbjct: 50 AVDRSKFRTCQDTGFCRRHRAPTAPPPK-FSVLPDSVVVNGADGLSA-LLQDEDF-TSPPLRLTLLFYQNGIARMQVREANPA-MPRWEPPDVVLEDQLG------------PVAPQLQERSEA-SGLRLEY----------MPGRHV-ELGFSPFSLALFIDGEKVVSVNERNLFHFEFHRSK-DTPDAASSAEAATAGEDRHKGKRIVGYWEDGLAIYEDGTREEKVRDN--AEEEKLR-----NGDGFWQETFAGHTDSKPLGPASVGMDIDFPGAQHLFGIPEHATRLSLQPTT-GPNA--------------------------HYSDPYRMYTLDVFEYDLDVPMALYGGIPMVMGHTASASVGAFWFNPTETFIDVEKDG--KASRTHWISESGIVDLMLLPGPTPKDILHQFTSAVGTQELPPLFALGYHQCRWNYKDEKDVAQVEAKFEELDFPYDVLWLDIEHTDGKRYFTWDKNLFPNPKAMIEGLSAHGRRMVTIIDPHIKRDNNYYIHREATEKGLYIKNKDGDDFDGWCWPGSSSYLDFTQPHVREWWAQQLALDKYEGSTMDLYTWNDMNEPSVFNGPEV-TMQKDCKNLKGVEHREWHNLYGMYQQRATAEG-QIMRSG-------GQLRPFVLSRSFYAGSQRWGAIWTGDNRAEWSHLAIAAPMLLSIGLGGLTFAGADVGGFFGDPDAELMVRWMQAGAYTPFFRGHAHHDSKRREPWMFGEPTTTQLRNAVMTRYALLPYWYTLFFEAFVTGVPTMRPLWMEYPQDTATFDMDDQWLVGSDIVVKPVTAPGVTSTEVYLPGTQ------------------PWYDVDTFLPYEGPG-YTKFDTPIDKIAALQRGGSIIPRKLRLRRSSKLMRHDPYTLFVALDKQGQAVGELYMDDEETFAFKD----GNYVLRRFHFKDSELTASPAAGHSSGNFSPGNEIERIVILGLPVAPKAVHV------ASESPQRA--------LGFEYDPSKKALTIRKPLLPADANFQLRL 968
BLAST of mRNA_P-fluviatile_contig1.488.1 vs. uniprot
Match: A0A4D9D2P9_9STRA (Gal_mutarotas_2 domain-containing protein n=2 Tax=Monodopsidaceae TaxID=425072 RepID=A0A4D9D2P9_9STRA) HSP 1 Score: 1031 bits (2666), Expect = 0.000e+0 Identity = 551/1042 (52.88%), Postives = 681/1042 (65.36%), Query Frame = 2
Query: 254 AVDKKKFRKCADTGFCRRNRERTSPPKSPFRVDPASVRSDRD-GITADVLPAEDGGGSAPLSLRVRFYSNGVCRLKVDEHSPGGAQRWEPPDVFLEQQLERAEFVLLPLGDPSLPPALRELPEGWNGILAAYGSVETGGGGSCDRRYVLSVRYDPFQADLYAGDELAVSANRRGLMHFEQTRAKGDRSVGGAGG---GGK----TVDLHRGKKVKDYGEDGLAIYEDGTRETRE-------EHNRLLEEASARQGKDESGLGLWEESFDGHPDSKPDGPTSVGIDVYFPGSDHVYGIPEHATSMALKTTTAGDNADADTGAGDSNGDGKGNEVPLAPPPPPHFSEPYRLYTLDVFEYELDSPAALYGSIPVMLGHRKGITAGVFWFNPTETFVDVEQG-GAGEGKRARWISEGGALDLVLLPGPTAGEVFRQYAEVTGKPELPPMFSLGFHQCRWNYRDEQDVLAVDAGFEERDFPYDVIWLDIEHTDGKRYFTWDQRLFPDPKRMLDKVAAHGRRMVTIVDPHIKRDPNYAVHKEATAKGLYIKDKDGNDFDGWCWPGQSSYLDFTDERVRAWWASRFSLDQYEGSTLDLYTWNDMNEPSVFNGPEVVSMKKDCLSLAGVEHRHWHNVYGMYMQRATAEGLELPRKGNARGGGGGDGRPFVLSRAFFAGSQRWGAVWTGDNAARWDHLAASAPMLLSMSLAGLPFVGADVGGFFGDPSAELFLRWMQAAAYQPFFRSHAHHDSKRREPWVFGDPWTTRIRSVVMARYALLPYWYTLFQEASDTGMPMMRPMWVQYPDDANTFDMDDQWMVGSDLLVKPIVTEGATVSAVYLPGRSGAGXXXXXXXXXXXXXXGLWYDVDTLGAVRGSGEYRSVEAPIDKIPAFQRGGSIIPRKQRLRRSSLMMAGDPYTLVVALDEAAAAQGSLYLDDEESHDYRDREGGGGWATRRFSFEGGVLAGRAAEGSGVYRP-ANTIERVVIAGVDTEPSSVMLQVVSAPASDDGRVEQAATAAVPLSFTYDAPARVLTVRKPDVCVAEDFDLRL 3328
AVD+ KFRKCADTGFC+ R+ FRVD AS++ D G L + D A L+ ++FY++G RLK+ E P +RWEPPDV +E+ L+ A+R +G L + + VL V+ DPFQ DL G A++ N+ GL+HF+ RAK D++ G+GG G K VD H GKK+ Y EDGLAIYEDG+RE + E RL E A+A + K WEE F GH DS+P GP SVGIDV FPG++H+YG+PEHA+S LKTT G NA ++EP+RLY LDVFEYELD P ALYGSIP + H ++AGVF FNP+ETFVDVE G G G+G + W+SE G LDL LLPGPT V +Q +TG LPP+FSLG+HQCRWNY+DE+DV V FEE DFPYDV+WLDIEHTDGKRYFTWDQ +FPDP M + +AA GR+MVTI+DPHIKRD N+A+H EATAKGLY+KDK G DFDG+CWPGQSSYLDFTD VR WWA RF+LD+Y GST +LYTWNDMNEPSVFNGPEV SM+KDC +LAGVEHR WHN+YGMYMQRATAEGL L RPFVLSRAF+AGSQR+GA+WTGDN A W+HL +APMLLS++LAGL F GADVGGFF D AEL RWMQA A+QPFFR HAHHD+KR+EPWV+G+P T+RIR+ VMARY LLPYWYT F A G+P+MRP+W++YP + TFDMDDQW++G DLLVKP+ T GAT +VY P GLWYD++TL + G R+V AP++KIP +QRGGSIIPRK RLRRSS +M DP+TLVVA++ A+G +Y+DDE + + E G + R+ + G++ +G RP N +ER+V+ G +P +V L P S+ G E+ AT L F YDA RVLT+RKP+V + ED+ + L
Sbjct: 61 AVDRSKFRKCADTGFCKEFRDVVPGALPRFRVDAASLKHDEHAGFLGGQLLSSDVNAKA-LNFSLQFYNDGTSRLKIKECDPL-RERWEPPDVVIEESLDST--------------AIRVDTSKSDGSLHVEFANDK----------VLRVQLDPFQVDLLVGGVPALTVNKGGLLHFQAYRAKKDKANAGSGGEESGEKIEEEVVDKHGGKKIVGYWEDGLAIYEDGSREEKPSAEEEAAEARRLQEAAAADEDK-------WEEYFGGHTDSRPHGPASVGIDVRFPGAEHLYGLPEHASSFRLKTTK-GPNA--------------------------QYAEPFRLYNLDVFEYELDEPMALYGSIPFVASHTAALSAGVFLFNPSETFVDVEAGSGHGDGYQTHWMSECGVLDLFLLPGPTPRAVAKQMTTLTGTQALPPLFSLGYHQCRWNYKDEKDVAQVHGKFEELDFPYDVLWLDIEHTDGKRYFTWDQGVFPDPVSMQNSLAAQGRKMVTIIDPHIKRDDNFAIHSEATAKGLYVKDKFGADFDGFCWPGQSSYLDFTDAGVRRWWAERFALDKYTGSTSNLYTWNDMNEPSVFNGPEV-SMQKDCRNLAGVEHREWHNLYGMYMQRATAEGLTLRDSKGLE-------RPFVLSRAFYAGSQRFGAIWTGDNKAAWEHLQVAAPMLLSINLAGLSFSGADVGGFFQDTDAELMTRWMQAGAFQPFFRGHAHHDTKRKEPWVYGEPTTSRIRAAVMARYTLLPYWYTTFYIAYAEGLPVMRPLWMEYPTEMATFDMDDQWLIGQDLLVKPVTTAGATSLSVYFP-------------------QGLWYDIETLSPISGPAT-RTVPAPLEKIPVYQRGGSIIPRKMRLRRSSSLMTHDPFTLVVAMNAKGLAEGLVYMDDEHTLKH---EKTGEFVLRKVTLADGMMR-NVRQGGAEDRPFRNQVERIVVLGWMAKPKAVTL-----PVSEQGGAEKQATTQRSLEFMYDAKKRVLTIRKPEVMLDEDWTIGL 1005
BLAST of mRNA_P-fluviatile_contig1.488.1 vs. uniprot
Match: A0A835Z3X1_9STRA (Alpha-glucosidase II n=1 Tax=Tribonema minus TaxID=303371 RepID=A0A835Z3X1_9STRA) HSP 1 Score: 1007 bits (2604), Expect = 0.000e+0 Identity = 537/1042 (51.54%), Postives = 644/1042 (61.80%), Query Frame = 2
Query: 254 AVDKKKFRKCADTGFCRRNRERTSPPKSPFRVDPASVRSDRDGITADVLPAEDGGGSAPLSLRVRFYSNGVCRLKVDEHSPGGAQRWEPPDVFLEQQLERAEFVLLPLGDPSLPPALRELPEGWNGILAAYGSVETGGGGSCDRRYVLSVRYDPFQADLYAGDELAVSANRRGLMHFEQTR---AKGDRSVGGAGGGGKTVDL-----HRGKKVKDYGEDGLAIYEDGTRETREEHNRLLEEASARQGKDESGLGLWEESFDGHPDSKPDGPTSVGIDVYFPGSDHVYGIPEHATSMALKTTTAGDNADADTGAGDSNGDGKGNEVPLAPPPPPHFSEPYRLYTLDVFEYELDSPAALYGSIPVMLGHRKGITAGVFWFNPTETFVDVEQGGAGEGKRARWISEGGALDLVLLPGPTAGEVFRQYAEVTGKPELPPMFSLGFHQCRWNYRDEQDVLAVDAGFEERDFPYDVIWLDIEHTDGKRYFTWDQRLFPDPKRML----DKVAAHGRRMVTIVDPHIKRDPNYAVHKEATAKGLYIKDKDGNDFDGWCWPGQSSYLDFTDERVRAWWASRFSLDQYEGSTLDLYTWNDMNEPSVFNGPEVVSMKKDCLSLAGVEHRHWHNVYGMYMQRATAEG-----LELPRKGNARGGGGGDGRPFVLSRAFFAGSQRWGAVWTGDNAARWDHLAASAPMLLSMSLAGLPFVGADVGGFFGDPSAELFLRWMQAAAYQPFFRSHAHHDSKRREPWVFGDPWTTRIRSVVMARYALLPYWYTLFQEASDTGMPMMRPMWVQYPDDANTFDMDDQWMVGSDLLVKPIVTEGATVSAVYLPGRSGAGXXXXXXXXXXXXXXGLWYDVDTLGAVRGSGEYRSVEAPIDKIPAFQRGGSIIPRKQRLRRSSLMMAGDPYTLVVALDEAAAAQGSLYLDDEESHDYRDREGGGGWATRRFSFEGGVLAGRAAEGSGVYRPANTIERVVIAGVDTEPSSVMLQVVSAPASDDGRVEQAATAAVPLSFTYDAPARVLTVRKPDVCVAEDFDLRL 3328
AVD KKFR C DTGFCRRNR P +S +DPAS+ +G+ ++ GG+ PL L V Y +GV R+++ E + P+ P R++P + D Y +AN GL+HFEQ + A+G+R++ G G D H GK+V DYGEDG A+Y DGT E+ +H + GL EE FDGH D+KP G TSVG+DV+FPGS +YGIPEHA SMALK TT GDG +S+PYRLYTLDVFEYELD P ALYG+IP+ + H G TA FW+NP+ETFVD GK RW+SE G +DL++LPGPT ++F+QY +TG P +PP FS+ FHQCRWNYRDE DV AVDAGFE D PYDV+WLDIEHTDGKRYFTWD+ FPDP M +K+AAHGR+MVTIVDPHIKRD + +HK+ATA G YIKD G DFDGWCW G SSYLDFT VR WWA +F+L+ Y+GST L+ WNDMNEPSVFNGPEV SM+KDCLS AGVEHR WHN+YGMYM RATAEG LE ARG FVLSR+F G+QRWG +WTGDN A W+HL + PMLLS+S+AG+PF GADVGGFFGDPS ELF RWMQA AYQPFFRSHAHHDSKRREPWVFG PWT+RIR+ +MARYALLPYWYTLF +A GMP MR +W+QYP DA TF MDDQW+VG+DLLVKP+ T GA+ VY PG LWYDVDTL R S + V AP+DKIP +QRGGSIIP++ RLRRSS +M DPYTLV+ALD A AA+G+LYLDD ES DY +G A RRF++ G L+ SG+Y+P N IER+VI G+ TEP+++ A D+ L F + L +RKP V VA DF LR+
Sbjct: 2 AVDVKKFRTCQDTGFCRRNRRAIPPRRS---LDPASLEVAENGVIRGLVAGGTSGGAPPLQLEVALYESGVARVRITEAAA-----------------------------PNQKP-----------------------------------RFNPLRFDAYVNGAPVAAANAAGLLHFEQRKRDGAQGERALPGDAGDAPPADADVPQAHSGKEVIDYGEDGKAVYADGTHESDSQHRQ--------------DPGLGEERFDGHVDTKPFGATSVGMDVWFPGSQELYGIPEHAASMALKATT---------------GDGAS------------YSDPYRLYTLDVFEYELDVPMALYGAIPLAVSHGAGGTAAAFWWNPSETFVDG-------GKGVRWLSESGVVDLMILPGPTPADMFKQYMLLTGAPAMPPHFSVAFHQCRWNYRDEADVAAVDAGFEAEDIPYDVLWLDIEHTDGKRYFTWDKTHFPDPITMQASVENKLAAHGRKMVTIVDPHIKRDDGFYIHKKATALGHYIKDHTGKDFDGWCWSGSSSYLDFTAPEVRQWWAEQFTLENYKGSTRSLHIWNDMNEPSVFNGPEV-SMRKDCLSRAGVEHREWHNIYGMYMHRATAEGVQARGLETRPSDPARG--------FVLSRSFGPGTQRWGPIWTGDNKASWEHLRIATPMLLSISIAGVPFAGADVGGFFGDPSPELFTRWMQAGAYQPFFRSHAHHDSKRREPWVFGVPWTSRIRAAIMARYALLPYWYTLFAQAHSDGMPPMRALWIQYPTDAATFAMDDQWLVGADLLVKPVTTSGASTVEVYFPGAD---------------QGTLWYDVDTLEVQRASTHLQQVNAPVDKIPVYQRGGSIIPKQMRLRRSSALMRADPYTLVIALDGAGAAEGTLYLDDGESFDYTTDQG---HALRRFTYANGTLSATGV--SGLYQPGNAIERIVIIGMVTEPTAIT-------AGDEQ-----------LDFRWMQATSELVIRKPGVLVASDFVLRV 881
BLAST of mRNA_P-fluviatile_contig1.488.1 vs. uniprot
Match: A0A7S2FWR3_9STRA (Hypothetical protein n=1 Tax=Dictyocha speculum TaxID=35687 RepID=A0A7S2FWR3_9STRA) HSP 1 Score: 986 bits (2548), Expect = 0.000e+0 Identity = 518/1028 (50.39%), Postives = 663/1028 (64.49%), Query Frame = 2
Query: 254 AVDKKKFRKCADTGFCRRNRERTSPPKSPFRVDPASVRSD-RDGITADVLPAEDGGGSAPLSLRVRFYSNGVCRLKVDEHSPGGAQRWEPPDVFLEQQLERAEFVLLPLGDPSLPPALRELPEGWNGILAAYGSVETGGGGSCDRRYVLSVRYDPFQADLYAGDELAVSANRRGLMHFEQTRAK-GDRSVGGAGGGGKTVDLHRGKKVKDYGEDGLAIYEDGTRETREEHNRLLEEASARQGKDESGLGLWEESFDGHPDSKPDGPTSVGIDVYFPGSDHVYGIPEHATSMALKTTTAGDNADADTGAGDSNGDGKGNEVPLAPPPPPHFSEPYRLYTLDVFEYELDSPAALYGSIPVMLGHRKGITAGVFWFNPTETFVDVEQGGAGEGKRARWISEGGALDLVLLPGPTAGEVFRQYAEVTGKPELPPMFSLGFHQCRWNYRDEQDVLAVDAGFEERDFPYDVIWLDIEHTDGKRYFTWDQRLFPDPKRMLDKVAAHGRRMVTIVDPHIKRDPNYAVHKEATAKGLYIKDKDGNDFDGWCWPGQSSYLDFTDERVRAWWASRFSLDQYEGSTLDLYTWNDMNEPSVFNGPEVVSMKKDCLSLAGVEHRHWHNVYGMYMQRATAEGLELPRKGNARGGGGGDGRPFVLSRAFFAGSQRWGAVWTGDNAARWDHLAASAPMLLSMSLAGLPFVGADVGGFFGDPSAELFLRWMQAAAYQPFFRSHAHHDSKRREPWVFGDPWTTRIRSVVMARYALLPYWYTLFQEASDTGMPMMRPMWVQYPDDANTFDMDDQWMVGSDLLVKPIVTEGATVSAVYLPGRSGAGXXXXXXXXXXXXXXGLWYDVDTLGAVRGSGEYRSVEAPIDKIPAFQRGGSIIPRKQRLRRSSLMMAGDPYTLVVALDEAAAAQGSLYLDDEESHDYRDREGGGGWATRRFSFEGGVLAGRAAEGSGVYRPANTIERVVIAGVDTEPSSVMLQVVSAPASDDGRVEQAATAAVPLSFTYDAPARVLTVRKPDVCVAEDFDLRLS 3331
+VD+ KFR C +TGFCRRNR R PP F V P+SV + +DG+TA L + + PL + + Y +GV R+++ E +P RWE D+ L+ L E PS+ + +E G G + L + Y+PF L E + N RGL HFE R++ G+ S+ D H+GKK+ Y EDGLAIYEDG+RE + + + EE + G+++ G WEESF GH DSKP GP SVGIDV FPGS H+YGIPEHA+SMALK TT G AD +S+PYRLYTLDVFEY+LD P ALYG IP++ H T G FWFNPTETF+D+E+ + R+RWISE G +DL+L+PGPT + Q+ ++ G +LPPMFSLG+HQCRWNY+DE DV V A FEE +FPYDV+WLDIEHTDGKRYFTWD +FP+P M + ++ +GR+MVTIVDPH+KRD NY +H EAT KGLYIK+KDG+D+DGWCWPG SSYLDFT VR WWA +F L+ Y+GST+DL+TWNDMNEPSVFNGPEV +M+KD ++L G+EHR WHN+YGMY QRATAEG L GG RPFVLSR+FFAGSQRWGA+WTGDN A W+HLA ++PMLLS+ L GL F GADVGGFFG+ +EL +RWMQA ++ PFFR HAHHDSKRREPW+FG+P T+++RSVVMARY+LLPYWYTLF A +G+P MRP+W+ YP D TF+MDDQWMVG+D++VKP+ G T + +YLPG G WYDV++L A S ++ P+ KI A QRGGSIIPRK RLRRS+ M DPYTL +ALD+ A G LY+DDE + +++ G +A R F+F+ VL + + + N +ER+V G++ P +V + S S L+F YD+ ++LTVRKPDV EDF + +S
Sbjct: 35 SVDQSKFRTCKETGFCRRNRNRPGPPPQ-FSVLPSSVATHGKDGLTA--LLQSNQLEAPPLKMGISVYDSGVVRMQIREANPE-KPRWEAADILLDDALTSIE--------PSMQAQESSM------------RLEFGEGRA------LVLEYEPFSVTLLIDGEASAVVNGRGLFHFEYHRSREGEPSLAAPT---DDEDRHKGKKIVGYWEDGLAIYEDGSREVKVK-DETSEEPAKGDGEED---GFWEESFGGHTDSKPLGPASVGIDVDFPGSKHLYGIPEHASSMALKATT-GPGAD--------------------------YSDPYRLYTLDVFEYDLDVPMALYGGIPLVWSHTTRGTVGAFWFNPTETFIDIEKDD--KSARSRWISESGIVDLMLIPGPTPADAISQFTQLVGTTDLPPMFSLGYHQCRWNYKDEADVAQVHAKFEELNFPYDVLWLDIEHTDGKRYFTWDDNVFPNPIAMQENISKYGRKMVTIVDPHLKRDNNYYIHTEATDKGLYIKNKDGSDYDGWCWPGSSSYLDFTQPHVREWWAEQFKLENYKGSTMDLFTWNDMNEPSVFNGPEV-TMQKDVVNLDGIEHREWHNLYGMYQQRATAEGHILRS--------GGVDRPFVLSRSFFAGSQRWGAIWTGDNKADWEHLAIASPMLLSIGLGGLTFSGADVGGFFGNTDSELMVRWMQAGSFTPFFRGHAHHDSKRREPWMFGEPTTSQLRSVVMARYSLLPYWYTLFYAAYTSGLPTMRPLWINYPKDEATFEMDDQWMVGADIVVKPVTAPGVTKTEIYLPG------------------DGPWYDVESLEAY--SAGKVTLATPLAKIAALQRGGSIIPRKLRLRRSTKFMINDPYTLYIALDKQGKASGDLYIDDETTFNHKS----GNFALRHFNFDSLVLESTSGVPT-TFTANNRVERLVFIGLERAPKTVSVSSKSKTGS--------------LTFDYDSRKKILTVRKPDVFATEDFKITVS 948
BLAST of mRNA_P-fluviatile_contig1.488.1 vs. uniprot
Match: A0A5A8DPS0_CAFRO (Gal_mutarotas_2 domain-containing protein n=2 Tax=Cafeteria roenbergensis TaxID=33653 RepID=A0A5A8DPS0_CAFRO) HSP 1 Score: 954 bits (2466), Expect = 0.000e+0 Identity = 518/1047 (49.47%), Postives = 643/1047 (61.41%), Query Frame = 2
Query: 233 LGPLGAAAVDKKKFRKCADTGFCRRNRERTSPPKSPFRVDPASVRSDRDGITADVLPAEDGG--GSAPLSLRVRFYSNGVCRLKVDEHSPGGAQRWEPPDVFLEQQLERAEFVLLPLGDPSLPPALR----ELPEGWNGILAAYGSVETGGGGSCDRRYVLSVRYDPFQADLYAGDELAVSANRRGLMHFEQTRAKGDRSVGGA----GGGGKTVDLHRGKKVKDYGEDGLAIYEDGTRETREEHNRLLE---EASARQ--GKDESGLGLWEESFDGHPDSKPDGPTSVGIDVYFPGSDHVYGIPEHATSMALKTTTAGDNADADTGAGDSNGDGKGNEVPLAPPPPPHFSEPYRLYTLDVFEYELDSPAALYGSIPVMLGHRKGITAGVFWFNPTETFVDVEQGGAGEGKRARWISEGGALDLVLLPGPTAGEVFRQYAEVTGKPELPPMFSLGFHQCRWNYRDEQDVLAVDAGFEERDFPYDVIWLDIEHTDGKRYFTWDQRLFPDPKRMLDKVAAHGRRMVTIVDPHIKRDPNYAVHKEATAKGLYIKDKDGNDFDGWCWPGQSSYLDFTDERVRAWWASRFSLDQYEGSTLDLYTWNDMNEPSVFNGPEVVSMKKDCLSLAGVEHRHWHNVYGMYMQRATAEGLELP-RKGNARGGGGGDGRPFVLSRAFFAGSQRWGAVWTGDNAARWDHLAASAPMLLSMSLAGLPFVGADVGGFFGDPSAELFLRWMQAAAYQPFFRSHAHHDSKRREPWVFGDPWTTRIRSVVMARYALLPYWYTLFQEASDTGMPMMRPMWVQYPDDANTFDMDDQWMVGSDLLVKPIVTEGATVSAVYLPGRSGAGXXXXXXXXXXXXXXGLWYDVDTLGAVRGSGEYRSVEAPIDKIPAFQRGGSIIPRKQRLRRSSLMMAGDPYTLVVALDEAAAAQGSLYLDDEESHDYRDREGGGGWATRRFSFEGGVLAGRAAEGSGVYRPANTIERVVIAGVDTEPSSVMLQVVSAPASDDGRVEQAATAAVPLSFTYDAPARVLTVRKPDVCVAEDFDLR 3325
L A AVD+ KFR C DTGFCRR+R + K + +DP S+ A + DGG G+ PLSL VR G R++V E+ G A RWE PDV LE L + D ++ A LP + L + S RR + +VR+ PF D+Y+ + V+ N +G +FE R + + + A G GG G+++ D+GEDG IY DG + E +AS Q ES G+ ESF GH D++P GPTSVG+D FPGS HVYGIPEHA ++AL+ T G ++ GA SEPYRLY LDVFEYEL +P ALYGSIPVM+ H +G TAGVFW NP+ETFVDV + A G ARW+SE G DL ++PGP+A EVFRQY +TG +PP F+LG+HQCRWNY+DE DV AVDA FEE FPYDV+WLDIEHTDGKRYF+WD+ LFP+P M +++A GR+MVTIVDPHIKRD ++ +H EAT KGLYIK KDG DF+GWCWPG SSYLDFT VR WWA +FSL Y+GST LYTWNDMNEPSVFNGPEV SM K+ SL GVEHR WHN+YG+Y Q ATA G EL GN R PFVLSRAFFAGSQR+GA+WTGDNAA WDHL +APML+S+SL+GL F GADVGGFF +P EL +RW QA A+QPFFR+HAH D+KRREPW+FGD +RS V RYALLP+WYT F +G P++ P+WV YP D TF M+ QW++GSDL+V+P+V GAT + VY PG W DV ++ + +V AP+DKIP +QR GS++PR+ R RR S +MA DP+TL V LD A A G LYLDD S+D++ + + RRF FEG VL A GS + AN+IER+V+ G+ P+ + DG A + F YDA V+TVRKP V A DF +R
Sbjct: 12 LAAQSALAVDRSKFRTCQDTGFCRRHRSKAVEAK--WALDPKSLSF----AGATLSGRLDGGEAGAPPLSLTVRLLDTGAARIRVVEND-GRAPRWESPDVVLEDALRDSSDAAQVRADDAVVRAAAGETTSLPADSDATLLHWTSAS-------GRRQLAAVRFAPFSVDVYSEGKHVVAVNSQGNFYFEHRRVQNEAAAEAASAALGSGGSAGS---GRRILDWGEDGKPIYADGDDDAASAEAAPAEGQGDASGTQLLSNSESEEGMGAESFGGHTDNRPHGPTSVGVDTAFPGSTHVYGIPEHADTLALRATAPGS---SEAGA---------------------HSEPYRLYNLDVFEYELHNPMALYGSIPVMIAHGQGRTAGVFWNNPSETFVDVAK--ASPGASARWMSESGVFDLTVMPGPSAREVFRQYTAMTGTQAMPPRFALGYHQCRWNYKDEADVAAVDAKFEEHSFPYDVLWLDIEHTDGKRYFSWDKALFPEPAAMQNRLAERGRKMVTIVDPHIKRDSSWRIHTEATDKGLYIKSKDGGDFEGWCWPGSSSYLDFTAPHVRDWWAQQFSLQNYQGSTGSLYTWNDMNEPSVFNGPEV-SMHKESKSLGGVEHREWHNLYGLYQQMATARGQELRVADGNTR--------PFVLSRAFFAGSQRYGAIWTGDNAAHWDHLRIAAPMLMSISLSGLSFAGADVGGFFENPDTELMIRWYQAGAFQPFFRAHAHIDTKRREPWLFGDEVLANLRSTVRTRYALLPFWYTQFYHTHASGEPVIAPLWVDYPTDETTFAMETQWLIGSDLMVRPVVDAGATTADVYFPGTE------------------QWLDVASMERLAPG--RATVAAPLDKIPVYQRAGSVVPRQVRPRRCSALMANDPFTLTVFLDSAGKASGDLYLDDGISYDFQRSKS---FRLRRFDFEGRVLKSSLAAGSKAFAVANSIERIVVVGLGAAPAKAFAT------NQDG-------AETEVDFAYDASKDVVTVRKPGVKAAYDFSVR 970
BLAST of mRNA_P-fluviatile_contig1.488.1 vs. uniprot
Match: D7G789_ECTSI (Alpha-glucosidase II alpha subunit, family GH31 n=1 Tax=Ectocarpus siliculosus TaxID=2880 RepID=D7G789_ECTSI) HSP 1 Score: 907 bits (2344), Expect = 0.000e+0 Identity = 452/601 (75.21%), Postives = 475/601 (79.03%), Query Frame = 2
Query: 1538 MFSLGFHQCRWNYRDEQDVLAVDAGFEERDFPYDVIWLDIEHTDGKRYFTWDQRLFPDPKRMLDKVAAHGRRMVTIVDPHIKRDPNYAVHKEATAKGLYIKDKDGNDFDGWCWPGQSSYLDFTDERVRAWWASRFSLDQYEGSTLDLYTWNDMNEPSVFNGPEVVSMKKDCLSLAGVEHRHWHNVYGMYMQRATAEGLELPRKGNARGGGGGDGRPFVLSRAFFAGSQRWGAVWTGDNAARWDHLAASAPMLLSMSLAGLPFVGADVGGFFGDPSAELFLRWMQAAAYQPFFRSHAHHDSKRREPWVFGDPWTTRIRSVVMARYALLPYWYTLFQEASDTGMPMMRPMWVQYPDDANTFDMDDQWMVGSDLLVKPIVTEGATVSAVYLPGRSGAGXXXXXXXXXXXXXXGLWYDVDTLGAVRGSGEYRSVEAPIDKIPAFQRGGSIIPRKQRLRRSSLMMAGDPYTLVVALDEAAAAQGSLYLDDEESHDYRDREGGGGWATRRFSFEGGVLAGRAAEGSGVYRPANTIERVVIAGVDTEPSSVMLQVVSAPASDDGRVEQAATAAVPLSFTYDAPARVLTVRKPDVCVAEDFDLRLSWAA 3340
MFSLGFHQCRWNYRDEQDVLAVD+GFEERDFPYDVIWLDIEHTDGKRYFTWD+ LFPDPKRM+DKVAAHGRRMVTIVDPHIKRD YAVHKEATAKGLYIKDKDGNDFDGWCWPGQSSYLDFTDE VR WWASRF+L++YEGSTLDLYTWNDMNEPSVFNGPEV SMKKDCLSLAG+EHRHWHN YGMYMQRATAEGLELPR+GNARGGGGGDGRPFVLSRAFFAGSQRWGAVWTGDNAA+WDHLAASAPMLLSMSLAGLPFVGADVGGFFGDPSAELFLRWMQAAAYQPFFRSHAHHDSKRREPWV+GDPWT RIRSVVMARYALLPYWYTLFQEASDTGMPMMRPMWVQYP DANTFDMD+Q + P+ +P QR KQRLRRSSLMMA DPYTLVVALD+ A G+LYLDDEES+DYRD EGGGG TRRFSFEGGVL GR EGSG Y PANTIERVVI GV+ PSSV L + +A A A L FTYDA RV+TVRKPDVCV +DFDL LS+AA
Sbjct: 1 MFSLGFHQCRWNYRDEQDVLAVDSGFEERDFPYDVIWLDIEHTDGKRYFTWDKGLFPDPKRMIDKVAAHGRRMVTIVDPHIKRDAKYAVHKEATAKGLYIKDKDGNDFDGWCWPGQSSYLDFTDEGVREWWASRFALEEYEGSTLDLYTWNDMNEPSVFNGPEV-SMKKDCLSLAGIEHRHWHNTYGMYMQRATAEGLELPRRGNARGGGGGDGRPFVLSRAFFAGSQRWGAVWTGDNAAKWDHLAASAPMLLSMSLAGLPFVGADVGGFFGDPSAELFLRWMQAAAYQPFFRSHAHHDSKRREPWVYGDPWTARIRSVVMARYALLPYWYTLFQEASDTGMPMMRPMWVQYPGDANTFDMDNQ-----------------------------------------------------------------TQHPLPSLPP-QRS------KQRLRRSSLMMASDPYTLVVALDDGGRADGNLYLDDEESYDYRDTEGGGGRTTRRFSFEGGVLKGRVVEGSGTYSPANTIERVVIVGVNAAPSSVTLHMAAA-----------AGTASSLDFTYDALTRVVTVRKPDVCVVDDFDLTLSFAA 517
BLAST of mRNA_P-fluviatile_contig1.488.1 vs. uniprot
Match: A0A7S0LRM7_9EUKA (Hypothetical protein n=1 Tax=Coccolithus braarudii TaxID=221442 RepID=A0A7S0LRM7_9EUKA) HSP 1 Score: 897 bits (2319), Expect = 6.330e-308 Identity = 498/1052 (47.34%), Postives = 627/1052 (59.60%), Query Frame = 2
Query: 227 LGLGPLG----AAAVDKKKFRKCADTGFCRRNRERTSPPKSPFRVDPASVRSDRDGITADVLPAEDGGG--SAPLSLRVRFYSNGVCRLKVDEHSPGGAQRWEPPDVFLEQQLERAEFVLLPLGDPSLPPALRELPEGWNGILAAYGSVETGGGGSCDRRYVLSVRYDPFQADLYAGDELAVSANRRGLMHFEQTRAKGDRSVGGAGGGGKTVDLHRGKKVKDYGEDGLAIYEDGTRETREEHNRLLEEASARQGKDESGLGLWEESFDGHPDSKPDGPTSVGIDVYFPGSDHVYGIPEHATSMALKTTTAGDNADADTGAGDSNGDGKGNEVPLAPPPPPHFSEPYRLYTLDVFEYELDSPAALYGSIPVMLGHRKGITAGVFWFNPTETFVDVEQ-GGAGEGKRARWISEGGALDLVLLPGPTAGEVFRQYAEVTGKPELPPMFSLGFHQCRWNYRDEQDVLAVDAGFEERDFPYDVIWLDIEHTDGKRYFTWDQRLFPDPKRMLDKVAAHGRRMVTIVDPHIKRDPNYAVHKEATAKGLYIKDKDGNDFDGWCWPGQSSYLDFTDERVRAWWASRFSLDQYEGSTLDLYTWNDMNEPSVFNGPEVVSMKKDCLSLAGVEHRHWHNVYGMYMQRATAEGLELPRKGNARGGGGGDGRPFVLSRAFFAGSQRWGAVWTGDNAARWDHLAASAPMLLSMSLAGLPFVGADVGGF------FGDPSAELFLRWMQAAAYQPFFRSHAHHDSKRREPWVFGDPWTTRIRSVVMARYALLPYWYTLFQEASDTGMPMMRPMWVQYPDDANTFDMDDQWMVGSDLLVKPIVTEGATVSAVYLPGRSGAGXXXXXXXXXXXXXXGLWYDVDTLGAVRGSGEYRSVEAPIDKIPAFQRGGSIIPRKQRLRRSSLMMAGDPYTLVVALDEAAAAQGSLYLDDEESHDYRDREGGGGWATRRFSFEGGVLAGRAAEGSGVYRPANTIERV-----VIAGVDTEPSSVMLQVVSAPASDDGRVEQAATAAVPLSFTYDAPARVLTVRKPDVCVAEDFDLRL 3328
L LG L A VD+ KFR C+ T FCRR RE +P + + P+S+ D A L A+ GG PL+L + YS+G R+++ E SP RWEP D+ L Q A L P LP + + +AY E GG V+ + PF+ LY G + N G +FE R + D ++ A GK D+H GK + DYGEDGLA+Y DGT++ + + E +A + G WEESF H DSKP GP+SVG+DV FP + +VYG+ EH + L +TT G+ A +SEPYRL+TLDV++YELDSP ALYG +P++LGH T G+ WFNP+E F+D+ + GG A W+SE G +D+++LPGP +VF QYA +TG LPP+FSLG+HQCRWNY DE DV V FE D P+DV+WLDIEHTDGKRYFTWD F +PK M +++AA GR+MVTIVDPHIK D NYAV++EA K LY++ KDGN+FDGWCWPG S+YLDFT VR WWA RF+ D+Y GST LYTWNDMNEPSVFNGPEV SM KD S+AGVEHR WHN+YGMYM RATAEGL L R D RPFVLSR+F++GSQRWG +WTGDNA +WDHL AS PML+++ L G+ F GADVGGF +GDP ELF RW + AY PFFR HAHHDS RREPW FGD T R+R + RY LL YWY+LF A TGMP+M P+WV YP D +F ++Q++VG+DLLV P+ ++GAT + V PG WY V G+V S V AP+ IP FQRGGSI+PR+ RLRRSS+ M DPYTLVVA D A AA G L+LD + + Y+ GG+ F+F G L A S Y P N +ERV V AG+ PS V L V DG L F++ L +RKPDV +A+++ + +
Sbjct: 24 LALGVLSLLVPAVCVDRSKFRTCSQTSFCRRRRE--APSAREYLIAPSSLALD----AAGKLSAQLHGGPYGVPLALSLETYSSGSVRMRIVESSPLHGPRWEPQDILLPQT--GAPLRKLSADSPELPAEIAAAAA--SADASAYAVGEAGGA-------VVVLHLHPFRVSLYQGGVKTLDLNNGGKFYFEHHRKREDAAI--ALPAGKAEDVHAGKTIVDYGEDGLAVYSDGTKQEKGADAEAVAETTADSAASD---GEWEESFGSHHDSKPFGPSSVGMDVTFPSTHYVYGLAEHTGPLNLASTT-GEQA--------------------------KYSEPYRLWTLDVYDYELDSPMALYGGVPLLLGHNANSTTGLLWFNPSEAFIDISRSGGPPASTSAYWMSESGVVDVMMLPGPRPADVFAQYASLTGVTPLPPLFSLGYHQCRWNYNDEADVKYVHNQFETLDIPFDVLWLDIEHTDGKRYFTWDSFKFGNPKAMQEELAATGRKMVTIVDPHIKIDSNYAVYQEAHEKKLYVQTKDGNEFDGWCWPGSSAYLDFTSADVREWWAGRFAYDKYLGSTPTLYTWNDMNEPSVFNGPEV-SMSKDSKSIAGVEHREWHNLYGMYMHRATAEGL-LQRNEPQ------DKRPFVLSRSFYSGSQRWGPIWTGDNACKWDHLEASLPMLMALGLCGITFSGADVGGFLGKGGGYGDPDHELFTRWFETGAYTPFFRGHAHHDSARREPWTFGDETTARLREIAKERYQLLAYWYSLFHLAETTGMPVMVPVWVHYPADEASFGTENQYLVGTDLLVHPVTSKGATSATVAFPGSE------------------PWYGVRD-GSVFTSAS-AEVAAPLGTIPVFQRGGSIVPRQMRLRRSSVPMVRDPYTLVVAPDTAGAASGILFLDSGDGYAYQQ----GGYHLCEFTFADGKLTNTAKHASNSYMPPNKLERVELLLPVKAGL---PSRVSLLV-------DGSETD-------LGFSFSEETNRLVLRKPDVLMAKEWAITI 977
BLAST of mRNA_P-fluviatile_contig1.488.1 vs. uniprot
Match: A0A7S2PTL2_9STRA (Hypothetical protein n=2 Tax=Leptocylindrus danicus TaxID=163516 RepID=A0A7S2PTL2_9STRA) HSP 1 Score: 897 bits (2319), Expect = 6.330e-308 Identity = 496/1071 (46.31%), Postives = 639/1071 (59.66%), Query Frame = 2
Query: 254 AVDKKKFRKCADTGFCRRNRERT-------------SPPKSPFRVDPAS--VRSDRDGITADVLPAEDGGGSAPLSLRVRFYSNGVCRLKVDEHSPGGAQRWEPPDVFLEQQLERAEFVLLPLGDPSLPPALRELPEGW----NGILAA---------YGSVETGGGGSCDRRYVLSVRYDP-FQADLYAGDE--LAVSANRRGLMHFEQTRAKGD---RSVGGAGGGGKTVDLHRGKKVKDYGEDGLAIYEDGTRETREEHNRLLEEASARQGKDESGLGLWEESFDGHPDSKPDGPTSVGIDVYFPGSDHVYGIPEHATSMALKTTTAGDNADADTGAGDSNGDGKGNEVPLAPPPPPHFSEPYRLYTLDVFEYELDSPAALYGSIPVMLGHRKGITAGVFWFNPTETFVDV---EQGGAGEGKRARWISEGGALDLVLLPGPTAGEVFRQYAEVTGKPELPPMFSLGFHQCRWNYRDEQDVLAVDAGFEERDFPYDVIWLDIEHTDGKRYFTWDQRLFPDPKRMLDKVAAHGRRMVTIVDPHIKRDPNYAVHKEATAKGLYIKDKDGN-DFDGWCWPGQSSYLDFTDERVRAWWASRFSLDQYEGSTLDLYTWNDMNEPSVFNGPEVVSMKKDCLSLAGVEHRHWHNVYGMYMQRATAEGLEL--PRKGNARGGGGGDGRPFVLSRAFFAGSQRWGAVWTGDNAARWDHLAASAPMLLSMSLAGLPFVGADVGGFFGDPSAELFLRWMQAAAYQPFFRSHAHHDSKRREPWVFGDPWTTRIRSVVMARYALLPYWYTLFQEASDTGMPMMRPMWVQYPDDANTFDMDDQWMVGSDLLVKPIVTEGA---TVSAVYLPGRSGAGXXXXXXXXXXXXXXGLWYDVDTLGAVRGSGE--YRSVEAPIDKIPAFQRGGSIIPRKQRLRRSSLMMAGDPYTLVVALDEAAAAQGSLYLDDEESHDYRDREGGGGWATRRFSFEGGVLAGRAAEGSGVYRPANTIERVVIAGVDTEPSSVMLQVVSAPASDDGRVEQAATAAVPLSFTYDAPARVLTVRKPDVCVAEDFDLRLS 3331
AVD+ KFR C T FCRR+R + +P P VR +TADV+P ++ + L+ + + NG+ R ++ + + + + L E +++ D ++ + E W +G+ +A YGS + + + + + ++ +P + L+ + L S N L HFE R KGD V D H GKKV + EDGLAIYEDG+RE +++HN L A +D++ +WEE F H DSKP GP S+GIDV FP S H++G+PEHA+S LK T KG H++EPYR+Y LDVFEYELD ALYG++P+++ T G FW NP+ETFVDV +QGG EG WISE G DL LLPGP+ +++ QYA +TG+ E+PPMF+LG+HQCRWNYRDE DV AV FEE D+PYDV+WLDIEHTDGKRYFTWD+ LFP+P M D++A GR+MVTIVDPHIKRD Y +H EAT KGLYIKDK G D+DGWCWPG SSYLDFTD VR WWA +F+ ++Y GST +LYTWNDMNEPSVFNGPEV SM+KD L+LAGVEHR WHN+YG + RATAEGL L P K RPFVLSR+FFAGSQ++GA+WTGDN + W HL +APMLLS+++ GL FVGADVGGFFG+P AEL RW+QA AYQPFFR HAHHDSKRREPWVFG+ +R ARYALLPYWYT+F EA +TGMP+MR MW++YP + F +D+QWM+GSDLLVKP+ T+ T+ V P S LWYDVDTL GE V P+DKIP +QRGGSII RK RLRRS+ +M DPYTL +ALDE A+GSLY DD+ + DY+ G + +F G L + IER+VI G+D P+ V + + + +++ Y+ ++VL +RKP V + D+ + LS
Sbjct: 2 AVDRSKFRTCEQTSFCRRHRNKQPQISYTLQNIKFHNPNNQSTNTPPMDEYVRGPNAAVTADVIP-DNSATAHNLAFSLYLFQNGMSRFRITDVT-------QTRPTYDADVLNVEELMMVGASDYTVVESFDV--EEWMFEQSGLRSAGNNHAKLITYGSSDN----NKQQPFGVLIQSEPSIEIHLFNLQDRSLLASVNAEQLFHFEHHRVKGDVQAARVAVEDSNDSDEDRHGGKKVVGFWEDGLAIYEDGSREEKKDHNNAL----ATDNEDDA---MWEERFHEHVDSKPKGPASIGIDVAFPKSRHLFGLPEHASSTQLKIT-------------------KGEGA--------HYAEPYRMYNLDVFEYELDETMALYGAVPLVVSQTADATVGAFWLNPSETFVDVSNYKQGG--EGLSTHWISESGVFDLFLLPGPSPRDLYAQYAVLTGRLEMPPMFALGYHQCRWNYRDEADVFAVHEKFEELDYPYDVLWLDIEHTDGKRYFTWDKHLFPNPIPMQDRLAKQGRKMVTIVDPHIKRDNKYRIHSEATKKGLYIKDKTGKKDYDGWCWPGSSSYLDFTDASVRQWWAEQFAFNKYIGSTKNLYTWNDMNEPSVFNGPEV-SMQKDLLNLAGVEHREWHNLYGQFQHRATAEGLVLRHPSKNE---------RPFVLSRSFFAGSQKYGAIWTGDNESHWSHLQIAAPMLLSLNVGGLSFVGADVGGFFGNPDAELMTRWIQAGAYQPFFRGHAHHDSKRREPWVFGEETMKILRHATAARYALLPYWYTVFHEARETGMPVMRTMWMEYPKEEALFGLDNQWMIGSDLLVKPVTTQTGGKTTLLDVRFPRSSK-----------------LWYDVDTLQVASPEGEDNVEWVTCPMDKIPVYQRGGSIIARKLRLRRSTELMVNDPYTLYIALDEHGNAEGSLYSDDQHTFDYKS----GKYTMSKFVMSGNSLYHESISQEKWNNSEGEIERIVIMGMDYVPAEVSVVISGGEP-------------LKVAYMYEGASKVLVIRKPGVSTSADWSIALS 978
BLAST of mRNA_P-fluviatile_contig1.488.1 vs. uniprot
Match: A0A7S2SFF9_9STRA (Hypothetical protein n=1 Tax=labyrinthulid quahog parasite QPX TaxID=96639 RepID=A0A7S2SFF9_9STRA) HSP 1 Score: 896 bits (2315), Expect = 8.780e-308 Identity = 491/1022 (48.04%), Postives = 627/1022 (61.35%), Query Frame = 2
Query: 242 LGAAAVDKKKFRKCADTGFCRRNRERTSPPKSPFRVDPASVRSDRDGITADVLPAEDGGGSAPLSLRVRFYSNGVCRLKVDE-HSPGGAQRWEPPDVFLEQQLERAEFVLLPLGDPSLPPALRELPEGWNGILAAYGSVETGGGGSCDRRYVLSVRYDPFQADLYAGDELA-VSANRRGLMHFEQTRAKGDRSVGGAGGGGKTVDLHRGKKVKDYGEDGLAIYEDGTRETREEHNRLLEEASARQGKDESGLGLWEESFDGHPDSKPDGPTSVGIDVYFPGSDHVYGIPEHATSMALKTTTAGDNADADTGAGDSNGDGKGNEVPLAPPPPPHFSEPYRLYTLDVFEYELDSPAALYGSIPVMLGHRKGITAGVFWFNPTETFVDV-EQGGAGEGKRARWISEGGALDLVLLPGPTAGEVFRQYAEVTGKPELPPMFSLGFHQCRWNYRDEQDVLAVDAGFEERDFPYDVIWLDIEHTDGKRYFTWDQRLFPDPKRMLDKVAAHGRRMVTIVDPHIKRDPNYAVHKEATAKGLYIKDKDGN-DFDGWCWPGQSSYLDFTDERVRAWWASRFSLDQYEGSTLDLYTWNDMNEPSVFNGPEVVSMKKDCLSLAGVEHRHWHNVYGMYMQRATAEGLELPRKGNARGGGGGDGRPFVLSRAFFAGSQRWGAVWTGDNAARWDHLAASAPMLLSMSLAGLPFVGADVGGFFGDPSAELFLRWMQAAAYQPFFRSHAHHDSKRREPWVFGDPWTTRIRSVVMARYALLPYWYTLFQEASDTGMPMMRPMWVQYPDDANTFDMDDQWMVGSDLLVKPIVTEGATVSAVYLPGRSGAGXXXXXXXXXXXXXXGLWYDVDTLGAVRGSGEYRSVEAPIDKIPAFQRGGSIIPRKQRLRRSSLMMAGDPYTLVVALDEAA-AAQGSLYLDDEESHDYRDREGGGGWATRRFSFEGGVLAGRAAEGSGVYRPANTIERVVIAGVDTEPSSVMLQVVSAPASDDGRVEQAATAAVPLSFTYDAPARVLTVRKP 3292
L AVD+ KFR CA TGFC+ NR++ P+ ++V SV+++ DG + + G PL++ Y GV R+++ E SP A R+E PD+ +E++ ++ V L + D S PA GS + G V +PF+ D+ D V+ N R + HFEQ V ++ K++ D+GEDG A+Y DG+++ EE + + QG+D++ ESF GH D+KP GP SVGIDV FPG+ HVYGIPEHA+ ALKTT G G G + EP+RL+ LDVFEYE+D+ ALYG IPV++GH+KG T VFW NP+ETFVDV +Q G+ K WISE G D++++ GPT +VFRQY+ +TG +PP+FS+ +HQCRWNYRDE+DV V+A FE+ DFPYDVIWLDIEHTDGKRYFTWD+ FP PK M +A GRRM+TIVDPHIK D +Y +HKEAT GLYIKDK+GN DF GWCWPG SSYLDFT +VR+WWA +FS D+Y+GST LYTWNDMNEPSVFNGPEV +M K+ LSL +EHR WHN+YG Y ATAEGL K + RPFVLSRAF+AGSQR GA+WTGDN A+W HL ++ MLLS+++AGLPF GADVGGFF +P EL RW QA ++QPFFR+HAH D+KRREPWVFG+ RI V RY LLP+WYT++ E TGMP+MRP+W PDD TF + D+W+VG+DLLVKP+ EG + VYLP + WY + A G + + AP+DKIP FQR GSI+PRK RLRRSS M+ DPYT VALD A A GSLY+DDE + Y+D G G VL A G+G + P +ER+VI GVD +PS +++ S++ E LS YDA AR+LT+RKP
Sbjct: 17 LSVYAVDRSKFRTCAQTGFCKWNRDKV--PEKKYQVLAGSVKANGDGSVHAQVGLD---GEGPLNVAFIAYKEGVLRVRIVEPESPDIAPRYESPDILVEEKTLQSMIVSLEVTDES--PA-----------HFVVGSKQAG--------IKAKVTMNPFKVDVLGNDNSPIVTLNGRNIFHFEQREKMDAPKVDEVKKEDESXXXXXKKEIVDWGEDGKAVYADGSKDE-EEESAEEKTVEPTQGRDKNAP----ESFGGHTDNKPLGPQSVGIDVLFPGAKHVYGIPEHASDFALKTTNPG-------GGG--------------------YDEPFRLFNLDVFEYEIDNSMALYGHIPVVIGHKKGQTTSVFWNNPSETFVDVTDQDGS---KEIHWISETGIPDIMIMVGPTPSKVFRQYSSMTGTTPIPPLFSIAYHQCRWNYRDEKDVRDVNAEFEKYDFPYDVIWLDIEHTDGKRYFTWDKDKFPTPKDMQANIAHFGRRMITIVDPHIKADNDYYIHKEATDLGLYIKDKNGNSDFKGWCWPGDSSYLDFTHPKVRSWWADQFSYDRYQGSTDILYTWNDMNEPSVFNGPEV-TMHKESLSLDKIEHREWHNLYGFYQHMATAEGLTRRSKNSQE-------RPFVLSRAFYAGSQRHGAIWTGDNFAKWSHLKIASDMLLSLNVAGLPFAGADVGGFFENPGEELVQRWYQAGSFQPFFRAHAHIDTKRREPWVFGEEVMGRIAKAVKTRYTLLPFWYTVYHEHEVTGMPVMRPLWSLAPDDEETFAIGDEWLVGNDLLVKPVTDEGVVEANVYLPKGT------------------AWYQFEHPHAFHNGGVHITESAPLDKIPVFQRAGSIVPRKMRLRRSSKTMSQDPYTFAVALDPATNVAHGSLYIDDEHTFAYKD----GASCLVEMDMNGEVLKAEAKCGNG-FHPVLDVERIVILGVDAKPSKIVVS-----GSNNNNQE--------LSSQYDASARLLTIRKP 933
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 | 909.4 |
| Seed ortholog evalue | 1.5e-261 |
| Seed eggNOG ortholog | 2880.D7G789 |
| Preferred name | ROT2 |
| KEGG rclass | RC00028,RC00049,RC00077 |
| KEGG ko | ko:K01187,ko:K05546 |
| KEGG Reaction | R00028,R00801,R00802,R05980,R05981,R06087,R06088 |
| KEGG Pathway | ko00052,ko00500,ko00510,ko01100,ko04141,map00052,map00500,map00510,map01100,map04141 |
| KEGG Module | M00073,M00074 |
| GOs | GO:0000271,GO:0000902,GO:0003674,GO:0003824,GO:0004553,GO:0005575,GO:0005622,GO:0005623,GO:0005737,GO:0005739,GO:0005783,GO:0005788,GO:0005975,GO:0005976,GO:0006073,GO:0006464,GO:0006486,GO:0006487,GO:0006491,GO:0006807,GO:0006950,GO:0006952,GO:0008150,GO:0008152,GO:0009058,GO:0009059,GO:0009100,GO:0009101,GO:0009250,GO:0009272,GO:0009507,GO:0009536,GO:0009605,GO:0009607,GO:0009617,GO:0009653,GO:0009826,GO:0009987,GO:0010035,GO:0010038,GO:0010383,GO:0012505,GO:0015926,GO:0016043,GO:0016049,GO:0016051,GO:0016787,GO:0016798,GO:0017177,GO:0019538,GO:0030243,GO:0030244,GO:0030587,GO:0031288,GO:0031974,GO:0032502,GO:0032989,GO:0032991,GO:0033692,GO:0033919,GO:0034406,GO:0034637,GO:0034645,GO:0036211,GO:0040007,GO:0042221,GO:0042546,GO:0042742,GO:0043170,GO:0043207,GO:0043226,GO:0043227,GO:0043229,GO:0043231,GO:0043233,GO:0043412,GO:0043413,GO:0043687,GO:0044036,GO:0044038,GO:0044042,GO:0044085,GO:0044237,GO:0044238,GO:0044249,GO:0044260,GO:0044262,GO:0044264,GO:0044267,GO:0044422,GO:0044424,GO:0044432,GO:0044444,GO:0044446,GO:0044464,GO:0046686,GO:0048589,GO:0048856,GO:0048869,GO:0050896,GO:0051273,GO:0051274,GO:0051278,GO:0051703,GO:0051704,GO:0051707,GO:0060560,GO:0070013,GO:0070085,GO:0070589,GO:0070592,GO:0070879,GO:0070880,GO:0071554,GO:0071704,GO:0071840,GO:0071852,GO:0071966,GO:0090599,GO:0090600,GO:0090702,GO:0098542,GO:0099120,GO:1901135,GO:1901137,GO:1901564,GO:1901566,GO:1901576 |
| EggNOG free text desc. | alpha-1,3-glucosidase activity |
| EggNOG OGs | COG1501@1,KOG1066@2759 |
| EC | 3.2.1.20,3.2.1.84 |
| COG Functional cat. | G |
| CAZy | GH31 |
| Best tax level | Eukaryota |
| Best eggNOG OG | NA|NA|NA |
| BRITE | ko00000,ko00001,ko00002,ko01000 |
| Hectar predicted targeting category | signal peptide |
| Ec32 ortholog description | Glycoside hydrolase family 31 |
| Ec32 ortholog | Ec-04_003740.1 |
| Exons | 20 |
| Model size | 3879 |
| Cds size | 3222 |
| Stop | 1 |
| Start | 1 |
Relationships
The following polypeptide feature(s) derives from this mRNA:
The following UTR feature(s) are a part of this mRNA:
| Feature Name | Unique Name | Species | Type | Position |
| 1622815343.0148683-UTR-P-fluviatile_contig1:5399859..5400380 | 1622815343.0148683-UTR-P-fluviatile_contig1:5399859..5400380 | Porterinema fluviatile SAG_2381 | UTR | P-fluviatile_contig1 5399860..5400380 - |
| 1693561555.870313-UTR-P-fluviatile_contig1:5399859..5400380 | 1693561555.870313-UTR-P-fluviatile_contig1:5399859..5400380 | Porterinema fluviatile SAG_2381 | UTR | P-fluviatile_contig1 5399860..5400380 - |
| 1622815343.2833395-UTR-P-fluviatile_contig1:5420760..5420778 | 1622815343.2833395-UTR-P-fluviatile_contig1:5420760..5420778 | Porterinema fluviatile SAG_2381 | UTR | P-fluviatile_contig1 5420761..5420778 - |
| 1693561556.8668134-UTR-P-fluviatile_contig1:5420760..5420778 | 1693561556.8668134-UTR-P-fluviatile_contig1:5420760..5420778 | Porterinema fluviatile SAG_2381 | UTR | P-fluviatile_contig1 5420761..5420778 - |
| 1622815343.2947738-UTR-P-fluviatile_contig1:5421811..5421929 | 1622815343.2947738-UTR-P-fluviatile_contig1:5421811..5421929 | Porterinema fluviatile SAG_2381 | UTR | P-fluviatile_contig1 5421812..5421929 - |
| 1693561556.9399872-UTR-P-fluviatile_contig1:5421811..5421929 | 1693561556.9399872-UTR-P-fluviatile_contig1:5421811..5421929 | Porterinema fluviatile SAG_2381 | UTR | P-fluviatile_contig1 5421812..5421929 - |
The following CDS feature(s) are a part of this mRNA:
| Feature Name | Unique Name | Species | Type | Position |
| 1622815343.027568-CDS-P-fluviatile_contig1:5400380..5400618 | 1622815343.027568-CDS-P-fluviatile_contig1:5400380..5400618 | Porterinema fluviatile SAG_2381 | CDS | P-fluviatile_contig1 5400381..5400618 - |
| 1693561555.8834624-CDS-P-fluviatile_contig1:5400380..5400618 | 1693561555.8834624-CDS-P-fluviatile_contig1:5400380..5400618 | Porterinema fluviatile SAG_2381 | CDS | P-fluviatile_contig1 5400381..5400618 - |
| 1622815343.0378268-CDS-P-fluviatile_contig1:5401740..5401977 | 1622815343.0378268-CDS-P-fluviatile_contig1:5401740..5401977 | Porterinema fluviatile SAG_2381 | CDS | P-fluviatile_contig1 5401741..5401977 - |
| 1693561555.895793-CDS-P-fluviatile_contig1:5401740..5401977 | 1693561555.895793-CDS-P-fluviatile_contig1:5401740..5401977 | Porterinema fluviatile SAG_2381 | CDS | P-fluviatile_contig1 5401741..5401977 - |
| 1622815343.0492868-CDS-P-fluviatile_contig1:5403020..5403198 | 1622815343.0492868-CDS-P-fluviatile_contig1:5403020..5403198 | Porterinema fluviatile SAG_2381 | CDS | P-fluviatile_contig1 5403021..5403198 - |
| 1693561555.9035542-CDS-P-fluviatile_contig1:5403020..5403198 | 1693561555.9035542-CDS-P-fluviatile_contig1:5403020..5403198 | Porterinema fluviatile SAG_2381 | CDS | P-fluviatile_contig1 5403021..5403198 - |
| 1622815343.0616703-CDS-P-fluviatile_contig1:5403843..5403919 | 1622815343.0616703-CDS-P-fluviatile_contig1:5403843..5403919 | Porterinema fluviatile SAG_2381 | CDS | P-fluviatile_contig1 5403844..5403919 - |
| 1693561555.912268-CDS-P-fluviatile_contig1:5403843..5403919 | 1693561555.912268-CDS-P-fluviatile_contig1:5403843..5403919 | Porterinema fluviatile SAG_2381 | CDS | P-fluviatile_contig1 5403844..5403919 - |
| 1622815343.071699-CDS-P-fluviatile_contig1:5404703..5404806 | 1622815343.071699-CDS-P-fluviatile_contig1:5404703..5404806 | Porterinema fluviatile SAG_2381 | CDS | P-fluviatile_contig1 5404704..5404806 - |
| 1693561555.921723-CDS-P-fluviatile_contig1:5404703..5404806 | 1693561555.921723-CDS-P-fluviatile_contig1:5404703..5404806 | Porterinema fluviatile SAG_2381 | CDS | P-fluviatile_contig1 5404704..5404806 - |
| 1622815343.0838163-CDS-P-fluviatile_contig1:5405213..5405350 | 1622815343.0838163-CDS-P-fluviatile_contig1:5405213..5405350 | Porterinema fluviatile SAG_2381 | CDS | P-fluviatile_contig1 5405214..5405350 - |
| 1693561555.929464-CDS-P-fluviatile_contig1:5405213..5405350 | 1693561555.929464-CDS-P-fluviatile_contig1:5405213..5405350 | Porterinema fluviatile SAG_2381 | CDS | P-fluviatile_contig1 5405214..5405350 - |
| 1622815343.0959496-CDS-P-fluviatile_contig1:5405656..5405786 | 1622815343.0959496-CDS-P-fluviatile_contig1:5405656..5405786 | Porterinema fluviatile SAG_2381 | CDS | P-fluviatile_contig1 5405657..5405786 - |
| 1693561555.9376326-CDS-P-fluviatile_contig1:5405656..5405786 | 1693561555.9376326-CDS-P-fluviatile_contig1:5405656..5405786 | Porterinema fluviatile SAG_2381 | CDS | P-fluviatile_contig1 5405657..5405786 - |
| 1622815343.1164207-CDS-P-fluviatile_contig1:5406948..5407178 | 1622815343.1164207-CDS-P-fluviatile_contig1:5406948..5407178 | Porterinema fluviatile SAG_2381 | CDS | P-fluviatile_contig1 5406949..5407178 - |
| 1693561555.9458437-CDS-P-fluviatile_contig1:5406948..5407178 | 1693561555.9458437-CDS-P-fluviatile_contig1:5406948..5407178 | Porterinema fluviatile SAG_2381 | CDS | P-fluviatile_contig1 5406949..5407178 - |
| 1622815343.136224-CDS-P-fluviatile_contig1:5408030..5408204 | 1622815343.136224-CDS-P-fluviatile_contig1:5408030..5408204 | Porterinema fluviatile SAG_2381 | CDS | P-fluviatile_contig1 5408031..5408204 - |
| 1693561555.9540608-CDS-P-fluviatile_contig1:5408030..5408204 | 1693561555.9540608-CDS-P-fluviatile_contig1:5408030..5408204 | Porterinema fluviatile SAG_2381 | CDS | P-fluviatile_contig1 5408031..5408204 - |
| 1622815343.1486013-CDS-P-fluviatile_contig1:5409402..5409525 | 1622815343.1486013-CDS-P-fluviatile_contig1:5409402..5409525 | Porterinema fluviatile SAG_2381 | CDS | P-fluviatile_contig1 5409403..5409525 - |
| 1693561555.9625452-CDS-P-fluviatile_contig1:5409402..5409525 | 1693561555.9625452-CDS-P-fluviatile_contig1:5409402..5409525 | Porterinema fluviatile SAG_2381 | CDS | P-fluviatile_contig1 5409403..5409525 - |
| 1622815343.1584191-CDS-P-fluviatile_contig1:5410470..5410614 | 1622815343.1584191-CDS-P-fluviatile_contig1:5410470..5410614 | Porterinema fluviatile SAG_2381 | CDS | P-fluviatile_contig1 5410471..5410614 - |
| 1693561556.4815981-CDS-P-fluviatile_contig1:5410470..5410614 | 1693561556.4815981-CDS-P-fluviatile_contig1:5410470..5410614 | Porterinema fluviatile SAG_2381 | CDS | P-fluviatile_contig1 5410471..5410614 - |
| 1622815343.177317-CDS-P-fluviatile_contig1:5411276..5411460 | 1622815343.177317-CDS-P-fluviatile_contig1:5411276..5411460 | Porterinema fluviatile SAG_2381 | CDS | P-fluviatile_contig1 5411277..5411460 - |
| 1693561556.727096-CDS-P-fluviatile_contig1:5411276..5411460 | 1693561556.727096-CDS-P-fluviatile_contig1:5411276..5411460 | Porterinema fluviatile SAG_2381 | CDS | P-fluviatile_contig1 5411277..5411460 - |
| 1622815343.191878-CDS-P-fluviatile_contig1:5411724..5412052 | 1622815343.191878-CDS-P-fluviatile_contig1:5411724..5412052 | Porterinema fluviatile SAG_2381 | CDS | P-fluviatile_contig1 5411725..5412052 - |
| 1693561556.7363527-CDS-P-fluviatile_contig1:5411724..5412052 | 1693561556.7363527-CDS-P-fluviatile_contig1:5411724..5412052 | Porterinema fluviatile SAG_2381 | CDS | P-fluviatile_contig1 5411725..5412052 - |
| 1622815343.2065716-CDS-P-fluviatile_contig1:5412983..5413079 | 1622815343.2065716-CDS-P-fluviatile_contig1:5412983..5413079 | Porterinema fluviatile SAG_2381 | CDS | P-fluviatile_contig1 5412984..5413079 - |
| 1693561556.7479835-CDS-P-fluviatile_contig1:5412983..5413079 | 1693561556.7479835-CDS-P-fluviatile_contig1:5412983..5413079 | Porterinema fluviatile SAG_2381 | CDS | P-fluviatile_contig1 5412984..5413079 - |
| 1622815343.2230422-CDS-P-fluviatile_contig1:5414334..5414446 | 1622815343.2230422-CDS-P-fluviatile_contig1:5414334..5414446 | Porterinema fluviatile SAG_2381 | CDS | P-fluviatile_contig1 5414335..5414446 - |
| 1693561556.75976-CDS-P-fluviatile_contig1:5414334..5414446 | 1693561556.75976-CDS-P-fluviatile_contig1:5414334..5414446 | Porterinema fluviatile SAG_2381 | CDS | P-fluviatile_contig1 5414335..5414446 - |
| 1622815343.2374213-CDS-P-fluviatile_contig1:5417135..5417235 | 1622815343.2374213-CDS-P-fluviatile_contig1:5417135..5417235 | Porterinema fluviatile SAG_2381 | CDS | P-fluviatile_contig1 5417136..5417235 - |
| 1693561556.76994-CDS-P-fluviatile_contig1:5417135..5417235 | 1693561556.76994-CDS-P-fluviatile_contig1:5417135..5417235 | Porterinema fluviatile SAG_2381 | CDS | P-fluviatile_contig1 5417136..5417235 - |
| 1622815343.253467-CDS-P-fluviatile_contig1:5418023..5418274 | 1622815343.253467-CDS-P-fluviatile_contig1:5418023..5418274 | Porterinema fluviatile SAG_2381 | CDS | P-fluviatile_contig1 5418024..5418274 - |
| 1693561556.780957-CDS-P-fluviatile_contig1:5418023..5418274 | 1693561556.780957-CDS-P-fluviatile_contig1:5418023..5418274 | Porterinema fluviatile SAG_2381 | CDS | P-fluviatile_contig1 5418024..5418274 - |
| 1622815343.2629828-CDS-P-fluviatile_contig1:5419382..5419559 | 1622815343.2629828-CDS-P-fluviatile_contig1:5419382..5419559 | Porterinema fluviatile SAG_2381 | CDS | P-fluviatile_contig1 5419383..5419559 - |
| 1693561556.8497007-CDS-P-fluviatile_contig1:5419382..5419559 | 1693561556.8497007-CDS-P-fluviatile_contig1:5419382..5419559 | Porterinema fluviatile SAG_2381 | CDS | P-fluviatile_contig1 5419383..5419559 - |
| 1622815343.2721062-CDS-P-fluviatile_contig1:5420556..5420760 | 1622815343.2721062-CDS-P-fluviatile_contig1:5420556..5420760 | Porterinema fluviatile SAG_2381 | CDS | P-fluviatile_contig1 5420557..5420760 - |
| 1693561556.8591182-CDS-P-fluviatile_contig1:5420556..5420760 | 1693561556.8591182-CDS-P-fluviatile_contig1:5420556..5420760 | Porterinema fluviatile SAG_2381 | CDS | P-fluviatile_contig1 5420557..5420760 - |
Sequences
The following sequences are available for this feature:
protein sequence of mRNA_P-fluviatile_contig1.488.1 >prot_P-fluviatile_contig1.488.1 ID=prot_P-fluviatile_contig1.488.1|Name=mRNA_P-fluviatile_contig1.488.1|organism=Porterinema fluviatile SAG_2381|type=polypeptide|length=1074bp
MAPAMRRLASSLALSLVVLIAPPLTGPSSRLGLGPLGAAAVDKKKFRKCA DTGFCRRNRERTSPPKSPFRVDPASVRSDRDGITADVLPAEDGGGSAPLS LRVRFYSNGVCRLKVDEHSPGGAQRWEPPDVFLEQQLERAEFVLLPLGDP SLPPALRELPEGWNGILAAYGSVETGGGGSCDRRYVLSVRYDPFQADLYA GDELAVSANRRGLMHFEQTRAKGDRSVGGAGGGGKTVDLHRGKKVKDYGE DGLAIYEDGTRETREEHNRLLEEASARQGKDESGLGLWEESFDGHPDSKP DGPTSVGIDVYFPGSDHVYGIPEHATSMALKTTTAGDNADADTGAGDSNG DGKGNEVPLAPPPPPHFSEPYRLYTLDVFEYELDSPAALYGSIPVMLGHR KGITAGVFWFNPTETFVDVEQGGAGEGKRARWISEGGALDLVLLPGPTAG EVFRQYAEVTGKPELPPMFSLGFHQCRWNYRDEQDVLAVDAGFEERDFPY DVIWLDIEHTDGKRYFTWDQRLFPDPKRMLDKVAAHGRRMVTIVDPHIKR DPNYAVHKEATAKGLYIKDKDGNDFDGWCWPGQSSYLDFTDERVRAWWAS RFSLDQYEGSTLDLYTWNDMNEPSVFNGPEVVSMKKDCLSLAGVEHRHWH NVYGMYMQRATAEGLELPRKGNARGGGGGDGRPFVLSRAFFAGSQRWGAV WTGDNAARWDHLAASAPMLLSMSLAGLPFVGADVGGFFGDPSAELFLRWM QAAAYQPFFRSHAHHDSKRREPWVFGDPWTTRIRSVVMARYALLPYWYTL FQEASDTGMPMMRPMWVQYPDDANTFDMDDQWMVGSDLLVKPIVTEGATV SAVYLPGRSGAGSDSDSSSGSGSGSGGLWYDVDTLGAVRGSGEYRSVEAP IDKIPAFQRGGSIIPRKQRLRRSSLMMAGDPYTLVVALDEAAAAQGSLYL DDEESHDYRDREGGGGWATRRFSFEGGVLAGRAAEGSGVYRPANTIERVV IAGVDTEPSSVMLQVVSAPASDDGRVEQAATAAVPLSFTYDAPARVLTVR KPDVCVAEDFDLRLSWAAVAAGS* back to topmRNA from alignment at P-fluviatile_contig1:5399860..5421929- Legend: UTRpolypeptideCDS Hold the cursor over a type above to highlight its positions in the sequence below. >mRNA_P-fluviatile_contig1.488.1 ID=mRNA_P-fluviatile_contig1.488.1|Name=mRNA_P-fluviatile_contig1.488.1|organism=Porterinema fluviatile SAG_2381|type=mRNA|length=22070bp|location=Sequence derived from alignment at P-fluviatile_contig1:5399860..5421929- (Porterinema fluviatile SAG_2381) CTTCTCCCGGTCCACCACGCGTCATACATCATTGAGTGCGTTCCTGCTGT
GGAGGTGGGAAGGGCCACCCGCTGACGTCCGTCCCTGGACGCGCATCGAA
TCTGCAAATCGCTATCAGGTATAACCTTTCTGTGTGTGTTGCCCCGCTCC
CCAGTCAGGAGCTAGGAGGGACGAGGGTCGTACGATAGAGAGCAGTCGAG
GATCGCGAGAGGATCTTGTCGATTGCAGAAGGCGCGCACGCACAGCAACG
GACACATTTGTGTTGCCCCAAGGACATGCATATGTGGCAAACCTGCTCGA
AAGGTTGCGCAGCGTTTAAATTCCTGCCCCTTCCAGACGCATCTTGTCCC
CCGGCGCCAGTACGGACTCGGCGTTTGGGGATCGGCCTTTCCAATCAACC
CGCATGCTTGCACCATTGTTGTTGCGCGCTACACACAGCGGTCTCGCAGG
CGGGGAGCTTTCCCCTCTTTCACAATTTTCGAAGGCAACCGCAGAACCAG
TCATGCATGTAGAGGCATTTACATCGATCCGTGCTGGAAAAGACAGACAT
AACAGACGAGACAGGCAGACAAGACACTAGACCGATGAAGAGACAGACAG
CTCTCACATACAGTAAGCGAGAGACACCTGGGAAGTGTGAGAAATAGCGC
GCAAAAAGTAAAACCACAGATCATCGCATGTGCACATCGATGTATTTTTG
GAGTAGTGCGCGTGTCCCTCGCTTCCGAGACACTCAGTAGCCGGGTGACC
ACCCGCCACGCCGAGCGAGATTTTTGTCCTCTGGCACGCGAAAAAGCCCC
CGTTTGCACTGCTGTGTCGTACGATCACACGGTAAAGCCGAGGGGGGTAG
GACAGGAAGGGGAGTGGGTCAAATGGGTAAACAAGGTGCTGCGCCGCAAT
CTATCGTGCAACAATATGGGCACAGGGAGGGTCGGCAGGAGATGGAATGG
CGAAGGGTCTTCAGATGCAGGCGTATGCTCAAACACACAAGCGGTAGGCA
TAAGGTGATTGTTCGATCAATGGTGATGTTGGCAGCGAGTGTCTCCCCCA
TCATTCTCTCCCAGATACCTCCCTCAGTCAAACCCTTTTCGTTTTCAGCT
TCGTTTCGTCTCTACTTCTCATTTCTGTTCGTCTGTCGCACCGACCGCCA
GACGCGCGGCGGCTCTGGAATGGCACCGGCCATGCGGCGGCTAGCCTCGT
CGCTGGCTCTCTCCCTCGTGGTCCTCATCGCGCCGCCGCTCACGGGGCCC
AGCTCTCGGCTCGGGCTGGGCCCTCTCGGCGCGGCGGCGGTGGACAAGAA
GAAGTTCCGAAAGTGCGCAGACACGGGCTTCTGCAGGCGCAACCGGGAGC
GGACGTCGCCGCCAAAGTCTCCGGTGTGTGTCTGAGGAGAGGAGAGGAGT
CGTGTCGTGGAGTTTAGTTTTGATGTTGAGGGAGTACCGTCAAGTGCTCT
TAAGAACGCATTCACCCCATAGACTCTGAACCTGTGATTTCTCCCCGACC
ACTTGATACTGAAGGCTGCCTGATACGTCTGCAGAGAGGTCCCGGTGAAG
TCTAAAGAATGCTGCCCTTTCGGCACTGACGATCTCTCCGTCGAGAAGCA
ATCGCGCTTTGAAAGCCGGTCTAAGGGCGGTGAGTTCTTTGCGCGCCCTC
TGGCGTTTCAAAGGTGACATGACCTTCAGGGAGAGCGAATTCTTAAGGGA
AGCGCAGCACGGAGGGTATGGCGTCTTGGTGCACTCGCAGCAGAAACATC
TGATGAGGATGCAGCAGCAAGGAAGAGGGTAGTTTTGAGATTTGTTTATT
GCCTCGCGCGGGGTGACTTCACACGCCTTAGAGGGCGCGTTACCTGGTTG
TTTATGAAAAACACCGGTTGTCAGCGTGGCTTGGCTTGTTGTTATCGTTG
CCGCTACCGCAGCAGCTGCTGCCGCGGCTGTGGCCTCTGCCACTCTTGTT
GTTTCTACTGCACAAGCGAGGCGACGACTCTCGCTGAACTACTCCATACT
TCTCCTGTCGATAAAATGAAAAAAAAAAAAAAAAGTCCGTTTTCCTCTCC
TCTTTTGCGCCCTTGTTTGCTCCTCCCTTATTGTTTACCCTTCATCCTGT
CCCATGTTGATTTGCTGCAATGCGTCTTTCTGTCCTTCCTTTATATTTCT
CACCCTCCTTCCCTGCGCCTCCTCGTTACCTCAATCCCTTCCTCCCTCCT
TCCCTGCGCCTCCTCGTTACCTCTCTCCCATCCTCCCTCCTTCCCTACGC
CTCCCCGTTACCTCTCTTGCTTCCTTGTCCCGTCCGTGTTGCACTGTGCT
TGTGCATACATTAATCTGAGTGAAACGTTTTGCTTGGTCGTTCCACCTGG
CTGGGGGGGGCGTGTCGCAGTTCCGGGTTGACCCCGCAAGCGTTCGGAGC
GACAGGGACGGCATCACTGCGGACGTCTTGCCGGCCGAGGACGGGGGCGG
CAGCGCTCCCCTCTCCCTTCGAGTCCGGTTCTACTCCAACGGTGTGTGCC
GCCTCAAGGTCGACGAGCATTCGCCAGGAGGAGCTCAGAGATGGGAGGTG
AGAGAGGGGACAGGAGGTGACGACGAGAGAAGGGTTGCCTTCGACTTGAC
TTGATTTCGCTTGGTTTCGATCCGATTCGATGCGATTCGATCCCATTCGA
TGTGATTTGATTTGATTTGGTTTATTTTGATTTGATTGATCGGCCGCGGC
GGATCCGACACACGACGTTGTTGTTTGCACTCCTAGGACGGGCCTTTACA
ACAGGCAATCCAACCCCCAACACACACTTTTTTATTGTCTGGTCGGTGCA
GGCGGGGGGAACAATTTCGGTTTTCCCCATGACAACTCGCAATGGTATTG
ACACTGTTGAGCCAGACTTTTTCCAACGAGCACAGCTCCAGTATTCGCAA
ACAAAACATCGAGAGTTTGATGTCGCCCACGGGATCTATTACCCGACTCC
CGACCCGGATCGATTGGAGCCGTTCGACACGACTCGGTGTTTCATAGACC
AGCCGCCCTTTTACACGTACGAAACGCACCTTGCATTTGTCCTCTTTGGA
TGCCGGGCAAGGTGCGATTCACGCAACAGCACATGTTTGTTCAAGCTGGA
CCTAGTGTGTCCACGTGCGTTCGCGCCTGAAGGCTGCAAGCGATAGCGTA
GGAAGGCAGGGAGGACGGGCGGGAGGGGAAGACGGGGCTCACTCAGGTTT
ATTGCGCTGTAGGCCTGCAGCCCCAACAAAGACTTTCTACCGCTGTGAAT
AAACCTTGCGACGGTGTATACAAAATCCCCTCGACGGTCCTTCGAAGCCC
AAGAGCTCCTCAAACAGATGAGTACCGAGGCCTAGAATTGCGGTTTAGGG
AAGATCGAGACGAGAGCTCCCGACTAGGATGGTTTGCCCCGTACTCGCTC
GGTAATGCAGCAATCGAGGTTTGGAAACGAGAAAGCAGACACCGGGGAAA
AAAAGCTTGAGAAAAAAAAAAAAATCGAATGTGGTATTCGCGTGCTGCAT
AGCGCCCGTTGCACCCCGTTTATCTTTTTTCTTTTGAAACGTCGACCAAC
TCCTGCATCGCTGCCAACCCTGCCACCCAACTTTGCCCCCAACCCCGCAC
CCTCTGCTTCTTGTTGCCACACTCCTACCTTCAAAAATCGAATAAACTTG
GGCAGCCTCCGGACGTTTTTCTCGAGCAGCAGCTGGAGCGGGCGGAATTT
GTGTTGCTGCCTCTGGGCGATCCCTCCCTCCCCCCCGCGCTGAGAGAGCT
CCCTGAGGGCTGGAACGGGATCTTGGCCGCCTACGGCTCGGTGGAGACCG
GCGGCGGCGGTAGCTGCGATCGGCGTTACGTGTTGAGCGTGCGTTATGAC
CCGTTTCAGGCGGATCTGTACGCAGGGGACGAGCTGGCGGTGTCGGCCAA
CCGGAGGTGGGTTGGGGGGGCGCGGCAGAGTGAGGGTGGGGGAGGGACGG
GGGGAAGGTGGTGGGAAGAGATAGAGAGAGGCAGGCCGACAGAGAGTGAG
AAGGAGACAGATAGATCAACGGACTGACGGGTTACTGACTGACTGATAGA
CAGACAGACAGGCAAGCAGGGAGGCAGACAAGGGGGCAATTGGACGGGCA
GGCGGACGGCCAGAGGTGCAGACAGGCAGGTCAAGCCAGCTTTTCAACGA
TGTCGAAAAAAGTACCTTGTCATATTTCCGGCTCCTGGCCGCACCTGCAT
CGCGCGCCCGAATTTAGGGGAGCGGGGGGCAGAGGATTCCAGCGCAGCGC
CGCTGTAGTATTTCACGCTCGGGAGAACGTCGTGCATGAAATGGGTGCTC
GTTGCATTCGTGTATGGTGTTACGCGATTGGTCTGTGGGTGACCGGATAC
GGTGTGTGTATCGTAATGCGGTACGTAGTTTGTGGTCGACCCCGCAGGGC
TTGTCCAAGTGATTGCGACTACCACCAAATATAGGTGTAGAGTGAATCAT
TCGAACCGGGGAAAAGTTAAGAATCCGGCTCCGTTGGGCGAACCGTGGCG
TGACGCACGGTTTACGGAATGGAAATGTATATTTTATGTGGTGACGGTAT
TTCTTTTGGTGAACAGCATAGAACGACTGTGACGGTTTGGGTAGGCACGT
GCATGCAAATGACGTAGCGTGCATGTAAATTCGACGATGCCCTTCATCAT
CGCTATCCCGCGTGCACGATAACGGCGGCGTGTGGCGGCGGCAGGGGGTT
GATGCACTTCGAGCAAACGCGGGCAAAGGGAGACCGCAGCGTCGGCGGTG
CGGGAGGAGGAGGGAAAACGGTCGATCTCCATCGTGGCAAGAAGGTATAT
CGAAGTACGATGAGGAAAATATGATGCCTGCTTTCCCACAACAATACCAA
ATAACGTGGAAATGGCAAGCACGTTGCCGTATGGTCAATTTTATAGGCTA
ACGGATGCGCACGCGAGGGAACGCCCGCGAAAACACGAATGGAACGGCTG
AGGAGGGGGGGCGTTCTCCTGTTCTGCACGCCTTAGTTGTTAGACCATTG
ACCACGCGTCCTCGAGAGGACGGAGCATTGTTCCCGCAGGATCGATCACC
GATGGCCAATCGTTCCTTCCTACTTTGCCAAAGGTGGCTCAAAAATGTTT
TCCCTAACCTTTCTACTTTATACCTGTCCTTCCTGGGCCACGTATTACAC
CCGAGTACCGCTACCGTCTTCTCCTCTTTGTTCCATGCCTCAAACTTCTC
TCTATACCGACTGTCTACTTTTTCCAGCTCAATCATGTACCCTTCTCTCT
CCTGATCGTATAACGGGCATTCCGCAACTACATGTACCCGGTCTTCGCAT
TCGGCGCCGCAGCCACATTTGAACTTGTCTTCGTGGTCGTCTACCTTCCT
AAACCTCCTTCTACGTTCCCGAAGGTCAATGTCGCCCGTTCTAAATTTGA
CCTTCATCTTTGTCCCGTCATCCAATGGTCCATTCAGGTACTCCTTGAAC
CCTGTTCCTTCGTTCAGCCTTTCGTACACTTCTAGAACCTCCTTTTCCTT
GGTCTCTTTCCGCAAGCTCTGGTCTTCTCTATTTTCAAAGGCTTCTGAGA
TACTCTTCTTGTACCCTTCTAAGCTTTCCGCTCCCGCCGTCTCCCGTTCG
TCAATATCTTACCCACTCCACACTCCCTGTACAACCTTCCCCACTCAAGA
GTGGGGGTTGTCTACCCTTGGCCTTGTTTGCCCTTCTCGCCTCCCAAGCT
ATTCTCGGCAACCTCTCCTTTCCCATGTTTTCCATACGGTATTGCCATGT
CAACTTCCTTCTGTCTCTTCCGGTTCTTAAGGAGTAAATACCCAACTCTG
CTCTTACTGCTGCGTTACTTGTGCGCTGGGAGCATCCTAGAATGATCTTT
GCTGCTTTCATCTGCGCTGCCTCCAACTCTGCTACTATTTTCTCGTTCGC
TTCCCAACCTTCTCCCGCGTACTCTAGTGGCGGGATGAGAACACTTTTCA
GAATGGTCATTTTGACGCGTGTATCAAGGTGCCGGTCTGCTAGGGTTGGG
TGCAACTTCCCTGCCCTTGCTTTGCCCTTTTCCGCTATTTTGTGCATGTG
TGCATCCTATTTACAGTCTTTTGCTATCTCTACTCCAAGGCATGTGTATT
TTTCCACTCTTGGCAGCTCCTTGTCCCCCCACGTCCACTTGGTACCTACT
TCCTCGTCACCATCCTCGTTGCACACCATTACGGCACACTTTGGGACGTT
GGCCGAGAATCTCCACTTATCAGCGTAGGTCTTCGCTGCGTTAATCTGTA
GTTGGAGCCCCTCAGGCGTGTCCGACATCCCAACAAAGTCGTCAGCAAAT
GGCAGTCCCGATACCGAGGTCTCCCTCTTTCTACTCCCTTCCCTACCGCC
TCTACCTCTTTCAGTAAGTCGTTGATGAATACCTGGAACAACGTTGGGGA
CATTGTGCACCCCTGTGGGACCCCCTGCTCAATGTCGAAGAACCTCGAGA
GTTCTCCATCTAACATCACGGCGCTTTCCGTGCTCTCTGTCATCTTCTTA
TTCATTCTCCACATCTTCCCGTTTATCCCATACTTCGCCAACTTGTTCCA
GAGCCCATTTCTCCATACTGTATCATACGCTTTCTGAACGCCTAGGAAAA
AGCAGTATAGCGGCTTTCCCACGCTCTTCCGACCTTGTATGATCCTCCCT
ACCGTGTATAGGTGATCTCCACACCCCCTAGCCTCCCTGAAACCTGCTTG
ACCCTCACTAATTCTCTTTTCCATCTCCAGTACTCGTACTATTCTGTTGT
TGAGGATCTTGAAGAACACTTTCCCTACTGTGCTCAACAGGTTGATTCCC
CTACAGTTTCCTGGGTCAGTCTTATCTCCTTTCTTCAATAGGTTCACCAC
CACCCCTTCCCTCCATCTACTCGGTGCGTATTCGTTTTCCCATACTCAGT
TGAACAACAGCACCATCATCTGAATCATCCCCTCCCCCCCGAAGTTCATG
ATTTCGTTCACTATCCCGTCTACCCCTGCGGCCTTGTGACACTGCAGTTT
TTTCACACAAAACTCTCAACCTCTTCCTCGGTGAAGGCTGAAGAGGGGGA
GGAAAATATGGAACAGCTCGTTTGATCTACATTTTTGAACGTCATTTTCT
TACCAAAGCTGGGACTCAAGAATAGCAATGAGCGACTGCTACGGGGCGCA
CCTTGCCATATTTTCATCATCTCAAGAGTCGCCCTCAAGCCAAAAGACGC
GTTTTGCTGTCGCCGCCTTGCTACAGTATAGTGAGCACTTACTGGAACGC
GTTCCGTGTGACGTGCACTGTCGACACCCCTTCTCTCGAAGTGGCGGCCT
TCATGAGGCAATCCTGTCCAAAATTCATACCCGGCCGTCGCTTCATCCTC
TTTAAATAGCCATGTCTTGTATTCGCCGGAGAGGAAAAGGTGGGCGACCT
AAACATTGCGGGGAGAATCAGCTCCACCGATTGACGTGCAGACGTGTCGT
GCATCTCCGGCTTCTTTTTTCGACGAATGATAGGTGAAGGATTATGGAGA
GGACGGGTTGGCCATCTACGAGGACGGCACGAGGGAGACCCGGGAGGAGC
ACAACCGGCTGCTGGAGGAGGCGTCAGCCAGGCAGGGCAAAGATGGTGAG
ATCGCGCATGTGTTTGGGAATTGCCTGGGGAACCGGTGCTGATCCCCGGC
GTCTTCGGGAGGGGGGCGACGCAGATGGATGTGGTGGAGGCTTCGCGTCA
CACCGTTCACTCGCAATCTTTTGTTGCTAGATGCGAAGTATCTGAGTATT
TGGGAGCATTCAATATCGTGCCATATTTTGAAGGGTAGAGTTTTCGCCCT
CCCCCCCCCACCCCTCCCGCTGGCTCTCATCTCGGTGTTTGCCATCGGGA
TTGGGTTTTCGTCGCGTGGCAACGACGTTGTAGAACAAGCCAATTCACTT
CGTGAACTCGGCAACCAGGTTACCGTCTTTTTTTTTTTTCCTCTGGTTTT
TTGGCGGTAACCATAATGGTGGTCGAGAAGATCATGTTGTGCGGGTGGAG
AACCCTCACTCCGTGCAAGGGGGATGATCGCACCACGTTGTGTTAAAATG
GTCAAGCACCCTCGAGGCAGTTACATAGTGCTTACAACTGTCTCTGGAAG
TGAAAGCACCAGACAATAAATTAACCCATACGCAGCTGTCATCCGCATGC
AAGGAAGTAAGCACAAGATGCCGAACACCCTTAGCAGGATGCAGCGCACC
CTTCATGCGACTCGCCGAATACCTCACGGCGCTTCGCGCTTGGTGGTGTG
AGAGCCTGGTCCGGTGAGAACCCGGCGTGCTCCGTCCCGGCTTTGTAGGG
ATGCGAGGTCAATGGTCTAACGACTACGGCATGCACGACTATGAGTACAC
CCCCCACCCCTCAAGCACCCTCGAGGCAGTTACACAGTGCTTACAACTGT
CTCTGGAAGTGAAAGCATCAGAAAATAAATTAAGTCAAACGCAGCTGTTA
TCCGTATGCAAGGAAGTAAGCACAAGATGCCGAACACCCTTAGCAGGATG
CAGCGCACCCTTCATGCGACTCGCCGAATACCTCACGGCGCTTCGCGCTT
GGTGATGTGAGAGCCTGGTCCGGTGAGAACCCGGCGTGCTCCGTCCCGGG
TTTGTAGGGATGCGAGGTCAATGGTCTAACGACTACGGCATGCACGACTA
TGAGTACACCCCCCCCACCCCTCACCCCCACCCCTGCTGTTTTGCGTTCC
GATTCGAACGAGCGGAACGGCGGCCTCCTTCTCTTGCCACTTTTGTGTAT
CTTTCTCGGGTAATATTTGGTGATTTATTGATCTTCGTGAAACTGATTCC
ATGCGTTGGAAACGCGTCGGAAATCCGCTGAAAACGTTCGCATGGCGCAG
AGAGCGGGCTTGGTCTCTGGGAGGAGAGCTTCGACGGCCACCCCGACAGT
AAACCCGACGGCCCGACGAGCGTGGGAATAGACGTCTACTTCCCAGGTTT
GCGGCGGGGGGATGAGAATGGGGTTGGGGAGGGGGATCTGTTTTTGCATG
CCTTGGGTGGTGGCCCGTTTCCCAAAAAAGCCTCGCTGTCAAGGAGGACC
GCCGTCCGTCGCAACTGATGACGGAGGCGGAGGCACGGGCATTTTGGCAC
TCTCTACGAGGTCCGTTGTTTGCGTGCCTGAAGGATGGCACCTCTCCTTT
GGGGGGGGGTCAGGGGGTCATCGCTTGGCGCGGCTGAAAGCCCGAGATCG
CCACCGTCTCGCGGCGAAGGCTGGGGGAAAGGGGCACACGCCTAGTGCCC
ACGGAGGGAGCACTCGCCTCCTTTCGTCCTCCCTAGAATTCGTAGGTCAA
GATGACCTGCTTCTTCCGGCACCAGCTCGACTGGGGGGATAGGTTCCGCG
CCACATGAGCATGCGTGCGGCATCTTCTGGGAGTTTTCTCGACAGCGATT
CCTACTTCGAGTGACACTCGCGGGCTTCCCGTTTTTTTTTTTGGTTGCCG
AGCGCTTTTCCTGATCTTTTCGCTTCCCCCGAGCAGCAGTGACCCCCTCG
CTTTGGCTGGTGGAGGATATTTCTCGTCATTTCTCGATCGCACTGATGCT
TGCTTTGTGTTCAGGCGCTGCGCACGCTCTCGAGAACCTTGCTACACATC
GCGTGAGGGAACGGACGCTCATTGACCTGTGCCACTGACCATTTTGTTGG
TTCACTTGCCGTGACGACGTGTTGCGTCCTTCGTGTACGTGTGCAGATGA
GTTTTCTTTTTTCGTCGTGTCTGTTTCTCCGACGCCGAACTACCAGGCCG
ATTCAATCGGTGATGAACCCCATCAGTCGAGCAAGTGCATTCCACCGCAT
GACGCGTCAGGCTCGAAGTCACTCCACCGCACAAGCCTCACTTTCGCGCG
CCTAATCCGATGCCATTGTTAGTGCAGGCTCCGACCACGTCTACGGCATC
CCGGAGCACGCCACCTCGATGGCTCTCAAGACCACGACCGCCGGCGACAA
CGCCGATGCCGACACCGGCGCCGGCGATAGCAACGGGGACGGAAAGGGCA
ACGAGGTCCCTCTCGCCCCGCCGCCGCCGCCTCACTTCTCCGAGCCGTAC
CGGTTGTACACTCTGGACGTGTTCGAGTACGAGCTGGACTCCCCGGCGGC
GCTGTACGGCAGCATCCCCGTCATGCTGGGGCACCGCAAGGGTATCACGG
CCGGGGTGTTCTGGTTCAACCCCACGGAAACGTTCGTTGACGTCGAGCAA
GGTGGGTTGACGGGATGTTGTGTGGTTTGGGCAGGATTGGGGGTGGGAGT
TGGGGTGCGGTGCGGTGGGGTTGGGTGGGGTGAAGCTGGAAGGGGTGCGG
TGAGGTGGGGTGAGGATGGAGATGAGAAGGGGAAGCACGGGGGGATGACG
GGGGCATGGCGGGGTTGGTGGGAACCGTGCGTTCGATGTTCCGCTTCTAC
TAGTGTTTGTTGCCATGATCTCTAGATATTTACAGGAGAAACTGGTTTCA
ACTCGAACCAAGCAGGCAGCGCCGGAGAGGGCAAGCGGGCGCGCTGGATC
AGCGAAGGCGGGGCGCTCGACCTCGTCCTGCTTCCGGGGCCCACCGCCGG
CGAGGTTTTCCGGCAGTACGCCGAGGTGACCGGCAAGCCGGAGCTGCCAC
CCATGTTCAGCCTCGGCTTTCATCAGTGCCGCTGGAACTACCGAGATGAG
CAGGTGTGCGTTGTGGTCGAGAAGAGAAGAACGACATGCACACAAATAGC
GACAAAGTGAACGCGCATCGTCCGCCCTCCCAATCGCGTGATCGCCCACA
AGAAGGGCGAAATGGGCTGTGAATCAAAAGAGCGCGAAATGGACGCAGTT
GCGCGCGCACTTGCTTAGAAGGACGCCAACAGCCATTGCACTCTTGTCGT
CCAAGACGACAAGAGTGAACATTTTGTACTTGCTTCCGCTGGATGCTGTG
CTTTTCGTACACACGGAAAAGATGGTGTGAGGCTGGCTGGCTGTAGCTGG
AGAAGTGAAAAACGGTCACGAACGCCACTCACTCTGACGTGAAACCGAAG
AGTAGTGCAGGAGGACGAAGCAGACGGCTGGAAATTGGCGGTGTCTTCCC
CTGGTGTAGGCCGGATCGAGAGGGGCGCCGCGGGCGCAGGCGGCCAAATG
CCTTGAGGCAAGCGTCGGACGAGCGCGCCCCCTTCACTCAGTGCTCCGTA
TTCCCTCCTACTCACATGGAGCAACCTCTCCCCAACTCTTTCGCTCATCA
TTCTCCCCGGATGCCTCTCTCTTTCTCCCCTGCCCCCCCCCTCTCTCTCT
GCCTCTCGCGTGTGTGCGTCCCTGCGTCCCTTCGCCCCCCTCCATGCCAC
GTCGTCAACTCTCAGGACGTGCTGGCCGTAGACGCGGGATTCGAGGAGCG
GGACTTCCCCTACGACGTGATCTGGCTGGACATCGAGCACACCGACGGCA
AGCGTTACTTCACCTGGGACCAGCGCCTCTTCCCGGACCCCAAACGGATG
CTTGACAAGGTTTGGGGACGAGAGTTCGTGAACTATTTCCTGGCGGTTTA
TATCAACCTTAAGGTTGTTGGCGTGAGTCTGTTTTCTGATGAAAATGTCG
CATGATTCGATGTATTCCGTGGTTTCGGTGCAGGGGCAGAGGCGCGATCA
AGATAATGTTGTGAGAAGGGAGGCTGTTAGAAGCACTCGCAGTATTAATG
GTATCTGATCTAGTCACGGCGGTACTAGTTTTGGACCCCCTACGGCCGGC
CGCACCTGAAAGCATTCCTCGTTCCGGTGTTTTGCTTTGTCGCGAGATGT
GCCTCAAATTGGCGGCAGCGGTTGACAAGCAGGTATGTGTTTTTTGCCTC
GTGGTTGGGTCGTCTGGGTCTTTTTTCCGTTTTGCTGTTCGCTTTTTCTC
TTGTTTTCTTTTGTCCTTTTGGTTCTTTTTCGCCTTTCTTGTCTTTTTGG
TTTTTGCTTTCTGCATTCTTCTTTCTTTGGCATGGTCCAGTCCGGTGCTA
TTTTGCTGACCTGACCGCTGGAAATCAGACTGGCATGCGTCCATTTCTGT
TCTGGATGCTGAGTTCATCCGTGCACGGCTCGCCTCAGTGCTCGTACACG
GATCTGTTTCCCATCCTCTGCGTGCTGTTGGATGTAGCGTTGGTCGGGGG
CAGACGCTGGGTGGAAGCAGACAGGCGAGGGGACGGACTGCAAGAATCCC
CCGGCGTTAAAGCTGCCGAATTTTCGACAAATACAGAATCAGAAACGTGC
GTAGGTGCTTTCCAAGTAACTTAGACAGCATCCTAGCCGGTCGACCACTG
AAAAACGTTACTCTTGCCCGGTTCACTAACGAAACCGCTGTAGGTGGGCG
AAGGTGTCTTTCGTAGCGTGAACCGCGGTAAGCGTCTGACTGACGAACTA
GGCCATTGTTTGCGTTGTTTGTGTGTGTGTGTGTGTGTGTGTTTTTTTTA
ACAGGTGGCTGCCCACGGGCGGCGCATGGTGACGATCGTCGACCCGCACA
TCAAGCGCGACCCCAACTACGCCGTCCACAAGGAAGCCACCGCAAAGGGA
CTCTACATCAAGGACAAAGACGGCAACGTGAGTAAGCCGCCGTCCCCGTT
TGCGAGGTTAGGTTCTTCAATATCTGGGGCTTTAGCTTAGACATTCGATG
CACCAGTATTCTCAAAGCAAAGTCTTCGCAATTCGATGAGAAGAAGAAGA
AGAAAACGGACGGCGGTAAATTGTTTTCAGGCGGTGCCGTTCCGTGTCTT
CACACTTCAATGAATAGATGACGTTGTACTCGGCAGCGATTGACTGGTTT
TTGGGAGAGGGAGGGGGGATTCTATGTTGAAATTTGTATGAAATCGAAGG
TGGTTTATCTTGGTCGGGAAAAAAATCGCCAACCAAGCAAGGCTGTCAAA
CGAAGACAACGAACAGGCGGCCCGAGAGCGTTTCAAGGCGTCGTTAGGCA
GTGTGTCTCCGGCCGACGACGCATCCACAGGCCTGAAAGAGTGTCCCGAG
TGCAAATCTCTTGCAAACGAAAACTGGAAGTTGCGGCGTCAAGGAAAGAG
GTCTGGTTGCTCGTAAATTGTGCTTGAGCGTGTGTCGTTTTCAGTCGACC
AATTAGCGGGTAGAAGCGGAAAGAGAATGATAAGAAAGGAAGCCCGGAGC
CAGTCTGACGAATCGAGTTGAATCGACCCACGAACACCTCGTTGCTGTCC
TCACAATAACCACCTCCACAATGGTACACCGCACCGTGCCACGGCACATT
CTCACAACCATCACCCCGCATTGCGCCACAATACACGACACTTTACTTCA
TCTAATCACACGACGCCTCACCGTACCACATCGCCACGCCACTCCACCCC
ACGCCAGACCTATGTCCGTCGACAATTAACCAAATCCGAGTGTGTACCTG
AATGATTGATGGCTCCTCCCCCCCCAGTCCCCTGCATTCCGTGTTCTCCG
ACTGGCAGGATTGAAAACCCGAAATGTCGGGACTGCTCCCCATGCAAGCG
TTGTCGAATAGTACGTGCCATGAGCGAGTCGCTTCCCCCCCCCTGGCGCG
TCCCGCAAGAAAGGTACAGACGGAACGTTTCACTCCACCAACCGACCAAT
CAATGATCGATTCATCAATGCAATGTCTTCAAAGAGGCATCCCGAAGAAA
TCAAATCAGGGCTTTCCCCCCTTGCACGGAAGGCAGAGGCGGAAAGTCCG
TCCAACCGATCAACCAGTAGGTGCACCTATCAGTCAGCGAACTCGATCCA
GCACCCGAATTGACATTAAACTCAGGATTTCGACGGCTGGTGCTGGCCGG
GGCAGTCGAGCTACCTCGACTTCACGGACGAGCGGGTGAGGGCGTGGTGG
GCCTCGAGGTTCTCGCTCGACCAGTACGAGGGGAGCACGCTGGACCTCTA
CACGTGGAACGACATGAACGAACCGAGCGTTTTCAACGGCCCGGAGGTAG
TTGACATGCTCGTTTGTGTTTGTTGGTTTGATTCATATAGTTATCCTTGC
GTGTGTGCGGCGGGTTTCGTTTTTCTTTTTGCTTTGTGTTTTGCTTTGTG
TTTTGCTTTTTGCATTTTTTTGCGGGATCAAGGACCTCTTCGCGTGGAAC
GACATGAACGAGCGTTTGACGGCCCGGAGGTGATTCAGACATAAATTTGA
GGGTTTGTGTGTTGGCATGTTTTTGTGTTTCGCGTGTGTGTTTTTTGTCT
TCCTTGCTGTCTGTTTATGCTAGAAAAAAGACCTCCACGACTGGTCCGAC
TTGAGCGAGCCTAGAGTTTTCCACGGCCCAGAGGAGATTTGATTTGTTGA
TTGGATCGACTCTCCCTGGAAGGGAGGAAAGCGCATTTCTTCCGAAGAAC
CTCAACCCTTTTTCTTCCGTCACCAGTGCGTGGTGCCACTCAGTGCTACG
TGCTGGCATCATTTGTTTGCATTTTACCGCAGTCGACTTCGTGCATTTAT
TTTGTCGCGTACTTGGCCCCTCATGCGTAATTTTGTAATTCGTGATCGTG
TTGTGCAAGTGCTTCCACGCGGCGTGAAGACTTGCTGGTATCTGCGGAGG
AATCACTGGCGAGGTCTCAGATTATCCGAGGGCCAAGCAATGGGGTGCAA
CGATGGTGCAAGCTTGCGATCGTAGACACCCGTCGCCCCCGTTAATTTCG
CCGATGATCTTGACATCGCTCCTATTTATAAACTGTCAGGGGCGAGAGTT
TTTTTTTCTATTACTAACCCGTGCACCTCCAAGGACAGAAACCCCTCTCC
CCCGACCGCCAAACCATCCCCCTCGTACCCCCCGCCCAACCCCCCCAAAA
GGTTTCCATGAAGAAGGACTGCCTTAGCCTGGCGGGCGTTGAGCACCGGC
ACTGGCACAACGTGTACGGCATGTACATGCAAAGGGCCACGGCCGAGGGC
CTGGAGCTGCCCCGGAAAGGGAACGCGAGGGGCGGCGGGGGCGGGGACGG
CCGGCCCTTCGTCCTGTCGAGGGCTTTCTTCGCGGGAAGCCAGCGATGGG
GCGCCGTGTGGACCGGCGATAATGCGGCCAGGTAGGTGTATCCGGCAAGG
GGCTCGCGGTGGAACGGAGGATGTAATCCTCCCCCCCTTCGCCATTTTTT
CAGCTCTTCTAAATATATAGAGTTAGAATGCTGGGGGCCCTAGGGAGGCT
CTGAACGGGTAAAGTGGGTTGAAGGTAAACGGCATGACCCCTACTTTTTT
CTCATGTGTGTGCCCCTCCAAATCAAATAGATAGGAAAGAGGTCGCCCTC
CCCCCCGATCCTCGGATTTTGGCTTTTCCCAGTCTTGAGCAGTGCATTCT
CCATTTCCGACCGTTGTGTCCGCCGGGGGGGGGTGCCGTGGCTCCCTGAC
GCCTTGGCGGTGAAACGATTGGGAGCGGGTGTCTTTGATTGTGGCGGGGG
GGAAAGAGGGGGGTGTCCTCATAGTCGTGCATGCCGTAGTCGTTAGACCA
TTGACCTCGCATCCCTACAAAGCCGGGACGGAGCACGCCGGGTTCTCACC
GGACCAGGCTCTCACATCACCAAGCGCGAAGCGCCGTGAGGTATTCGGCG
AGTCGCATGAAGGGTGCGCTGCATCCTGCTAAGGGTGTTCGGCATCTTGT
GCTTACTTCCTTGCATACGGATGACAGCTGCGTATGGCTTAGTATGTTTT
CTGGTGCTTTCACTTCCAGAGACAGTTGTAAGCACTGTGTAAATGCCTCG
AGGGTGCTTGACCATTTTAACACAACGTGGTGCGATCATCCCCCTTGCGC
GGAGTGAGGGTTCTCCACCCCGCACAACATGATCTTCTCCACCACCATTA
TGGTTACCGCCAAAAAAAACAGAGGAAAAAGAAAACCGGTAACCTGGTTG
CCGAGTTCACGTAGTGAATTGGCTTGTTTTACAACGTCGTTGCTAAGCGA
CGAAAACCCAATACCGATGGCAAACACCGAGGTGAGAGCCAGCGGGTAAG
GTGAGGGGAAGGAGGGGGGGGAGAGAGAAAGGGAGCGTTGTTGCTGTTTG
TCGTGTTGTCGTTGTCGTTGTCGTCTTCGTTGTTGTTTTTTTCGTTGTAG
TTGTCTTCGTCATTGTCGTCGTCGTCATATTTGTTGCTGCTGCAGGCGTT
GCCGCTCTGTTCGTTTGTCGACGCTTTTCTTTTGCGCTTTGTCCTTTCCC
TTGTTTCTTTCTCCATCCCTCTTTGCCGCCTGCTCGCCGACAGGTGGGAT
CACCTCGCGGCCTCGGCCCCGATGCTGCTGTCCATGAGTTTGGCCGGCCT
GCCTTTCGTAGGCGCGGACGTGGGCGGATTCTTCGGGGACCCGTCCGCGG
AGTTGTTTCTCCGTTGGATGCAGGTGAGATAACCAAGGGACCCGTAAACG
GCCCGGCAAGGGCGGGAAGAGCGAGGGGCCGGAACGCTCAAGAAGCTCCA
ATTCAAGGCGCGTCGAGTTGAACCGCCAACCCTAACCCCGGATTTGTGGT
TTCGGTGTCCTTTTCCACTTGTTTTTTTCATGACTCGGTGAGGAAACGCG
GGCCTGCTGCTTTGTTTTGAGCTCTCCGGGGTGCCTAATCAAAACCACCG
GGTCCGGCGAATGTCGCCGTTCCTCCCTGCACGTTCTTATTTTCACACTT
CCTTCCCTCTTTTGCTTGTTCGCTCACAGGCCGCCGCGTACCAGCCCTTC
TTCCGGTCCCACGCGCACCACGACTCCAAGCGGAGGGAGCCGTGGGTGTT
CGGAGACCCGTGGACCACGCGCATCCGATCGGTGGTGATGGCTCGGTACG
CCCTGCTTCCCTACTGGTGAGGCGTGGAGAGGATCAGAATGACAGAGAGG
GGGTGGGAAGCGTGGAGAGGCAAAGAGAGAGAGAGAGGTGAACAGACAGC
GAGATTCATAAAAATATACCCCTTCACCCACAGCCAGGGTTGGGGTGGAC
CACTGGCTCCGTCATTTTCCAGTAGCTTGCTGGTCTCCACTTATGTTTAT
CTCGCCATACCGGCATGCTTATTTTGTGGTGTTGCTCATCCCTGAGAGTC
TGCTGAAGAGTTAAGGTTGGTTGTTGTTGTTCTATTTAGGTCTTGAGGTC
TTGCTCGCTTGAATCTGGCCCCCTTCCCCCCCGGCCCGCCCCCACATCCC
CACACTGTTCGACCCCGACCGCTGACCCCGTGACCTACGCCTCCTCCACG
GCGCCTCAATAAATAAATTAAAGGTACACCCTCTTTCAAGAGGCGAGCGA
CACCGGCATGCCCATGATGCGGCCGATGTGGGTGCAGTACCCCGACGACG
CCAATACCTTCGACATGGATGACCAGGTTCGTCCGCTCCAGAACTGTTTC
GATTCGCCCACTTCAAAAATGTGTCAGTTCGGCCGCTTTAGAGCTGTGTC
CATTCGGCCGCTTCTAAATGCATCGCACACCAACCGACACAGTTTTGAAG
CGGCCGAACCGGCACCGCTGCACTTGCCCCAAACTTTGATTTCATTGGTT
TGCTGGTTCCGGCTTCGTCCCCAAGTTCTGAGCATTCGCCAGTGCTGCTG
CTGCTGCCGCTCCTCCTCGTCCTCCCTCTGCACTGCTTGGCATGGCAAGG
GTCCTCCTTCTCCCCCCCCCCCACACTGTGCTACCTTACGCTCTGCCGTT
TGCCCGACTACGTATGCTTCTTTTTCAGGCTTTTTCACGATTTCCTCTCT
TGCTGGGTGTTTCCGCTTTTTATGGACCCGCATTTCAACATGCGCTCCAT
GACCTTGAATCACGCACCCTCTTCTCGTTGATCGAACCTACCAGACCCCC
CTTGTCTCCGCCCCTGGCATCTCCACGTTTTCGACCGTGCACGCTATGGT
GCTCGTTCTTTCCGTCACCGCCTTGCCCTTGGTATCTGCTTGAATATGGT
TGCCGCCACTGAACCCCCCCCTCCAACCACACAAAAAAAAAAATGAACAC
GGGAAAATGGCGACGAACACCGACCTCGAAAAAACACAACGTCGACCACG
ACGACGACCATAATGACCACGACGACGACCATAACGACCACGACGACAAC
AAAAATAACGTGGGAAAATGCGACCACCAACGACCTCGAAAAAAAAATGA
TGATGAGCAGTGGATGGTCGGCTCGGACCTGCTCGTCAAGCCGATTGTCA
CCGAGGGCGCCACCGTCTCCGCCGTCTACCTACCCGGTGAGCCATGAGAG
CTACGGAATGGTTTGTTCTTTCTCTTCACACCGCATGCTGCACATGCCCG
AGAGGAGCGGCGCTTGTGCGCGTGCCGTAAGTCTTTGACGGTTTGCTGGG
TAAAATATAGTACACAGTGGGGCACCGCGACTGCTGAACCATCCCCTCCG
TGGTAGTGTTGTCGTGAAATCAGTGCGCGAAGCAAGGTAGACCAGAAGGC
ACCGAGCCCTGCCTTGTGATGGTCGCGTGGTGGAATCACGGGAGGCGTAG
GTTGGCGCGCACGGGGGAGACGTCGCTCGCTTTACCTTTGGAGCGTTGGG
CTTCGGTTGCGAAGTTGCGGGCGGTGTCCGGTGGAAGAAAATGGTCAGAT
GGGGCCGATTTTATGTTGTGTTTTTTTTTATTGTGCAGTGAAAGCAGAGT
TGGGACCCATTCGTGGCCCCGGGAAAACGTCCTCCCGGCACAGCGGGGGG
TACGTGGACACGACAGCGGTGAGCCAGTTTGTCGTTTAGCAAAGTGGGCG
GAGATTCCCGTTGAGCGAGGGCAACACACATCACCGCTACCACACCAACC
ATGCCGGAAACACCACCACCACCAACAACAACAACGAACAAACAAACAAA
CAAACGCAACATCGAACATGAACAAAAACAGGTCGATCCGGAGCGGGATC
GGATTCGGACAGTAGCAGCGGCAGCGGCAGCGGAAGCGGAGGCCTCTGGT
ACGATGTTGATACCCTTGGGGCGGTGAGGGGGAGCGGGGAGTACCGGTCC
GTAGAAGCGCCAATCGACAAGATTCCTGCTTTCCAGAGGGGCGGCAGCAT
CATTCCCCGGTGAGCTTTTCAAGCAATTTACTCAGGGATCCCCATGGGGG
CGACTGCGGGAGAAGGGCTCGGGCGAGGCTCTGAATGGTTTGTGTGCGAC
GCTGGAGGCTCCTATGTTTGGGTCAGCGCCGGCTTGATCGAACTCTGGGC
GCGGCCACTTCCGGGTGGCGTTGCTGTCGCTCGAAGAGCTACGCCACTGT
TGATGTCGCCGTTGTTGATGCGAACGCCAGCCGCGGTGATGTCGGTGGCA
AGCCTGGACGGGTTGCTGTTGTCCCACGCAAGTATCGGTTACGCCGGATG
AAAATGTTGTCCGAAAGGCACACCGGGCGGTCCGTGTGCTGTTCTCCCAG
GAGATTCTGTCGCGCCCTTTGAATGGGCAACGTGGATACGCGAGTGTACC
CGAGAGAATCTTGTAACACCCTTGGTTTGTTTGTGACTCTCCGGCTATCG
GATCAAGAATCTCCGAGCCTGCCTGAGATTGTTTTGCATCGGTTACACAC
TAGGCGAACAAAATAAAAGAGACGGGGGCAGAGAAAGCCTATCTCCGGCG
GCGGTGGCAGTCTCTCTGCGGCCCCCCCGCGATGACTCTGCCGATACTCC
TGCCAATTCCCGTCCGGAATCGATGGCACGCTCCATGGAGGCTCTGCATC
TACGTTTTCCTGTGCGTGTGACCTCTCGGATCAAAAACCTTACGCATCTC
GGATGCGCGTGAAGCCTCACTACCCGGCGTTTCCTCGCGATTGGGTGCTA
CAGGACAGGGCGGGATTGATCAGTGGCGCGCGTCCTTGAGTGTTTTTCCG
CCTCCCTGAATATATTCCTAGCGAGGCGGGGCGGGCGGCTGCAAGCACAC
GAACCTCTCCTAATTTCACGTGGCATATTTCACTCTCTCGTCTTCCCGAC
CCTCTTCCTTTCACCTGCGCATAAATCAAGCCACAATCCCGTAAATTCGA
AGCCGTACACCCGCCCCCTTGAAGGGCGCAAACCGGGCAACCATTGGCAT
CCCACGTCTCCCTCCCTCCCCCCACCTACCGCCTCGCCACCGCCGCGCTC
AGCAAACAACGCCTTCGCCGGAGCTCCCTGATGATGGCCGGTGACCCTTA
CACCCTTGTGGTCGCCCTGGACGAGGCGGCCGCGGCGCAGGGGAGCCTGT
ACCTTGACGACGAGGAGTCGCACGATTACCGCGACAGGGAAGGCGGCGGC
GGCTGGGCCACGCGACGTTTCTCTTTTGAAGGGGGCGTTCTGGCGGGGAG
GGCCGCGGAGGGTAGTGGGGTCTACCGGCCGGCAAATACGTGAGTAAACT
ACCACAGCCGCGGTTGTCACAAGGTTGTACCGGGAACGCGCAAGATTCTA
CTAGTATGCCAGTGTCGCCATCTGCGGTCTTGATTTTTTCTCGTCTCACG
AAGTTCGTCTTTTCCTTCTCTTTTTTTGTCGGTCTCGTAGCGTTTGAAGT
CGCAGTTCTTTCGCCGCTTCAAGCACGAGTGCCTTTGGTTTGTTTCTTTT
CATTTTTCCTTTGGTTCTTGTGCGTTCCGGTGAGCGGTCCCTCCTAAAAC
CCTCATGTTGTTGCAGAGGCCGCCAGGCTTGGGCGGGCTTACACTGCACT
CCTTTGCTCAGCGCGTAGCTTCTTTCGAGGGGGAGAGGGTGGTCATGCGG
CGGAGGCGGCGAAGTCCATCGCCCCTGCCGCAGCGGATCGTCTCGAAGAT
AAAGCACAAGACGGAAGGAGGTCGGAGACAAAATCTGGTGGCCCTTTCGT
TTTGGGGCTTTACGGCATGTAGACGCAGACACGGGCCGGGATGAAAAGGG
GCGTGGAGTGGGGTGGCAGGCGGGGGGGGTCGCGCCCCCGCTGTCGCCCA
TCCCTCCCTGGTTTAATGTCCCTACTGCTTGCTTCAGACTTGGGCTTACA
TGTTTTTTCCTTTGAGCCTGAAACCGGAAACGGGTGATGGTCACGCGGAA
CTCCGGAACCTCGAAAGAGGCGATGACCGGCAGCCGCCTCTTGATCTGCT
TCTCCCGGGTGGGTTGGGGGAGGATTATATCTGGATCTTCGTCGTGCGGT
TGCTGCTCGGCGATCAGAGTCTAATCTCAACGCAGCATTTGTCTTTCTCC
CGACTCAAGAGCGAGAGGGCCGGGGGATGAAAGGAAGCCCTCCCGCCCGC
ATGGTCGCGATGTCGGGCTAGGGCAGATGTCTGCGGCAACCGACAGGGGG
AGAGGCTGTGTGGGTGTTCAAGGGAGGGGGAGACACACACATGCATGTAA
ATATTTCGAAGTATAAATATAGAGAGGACTCACGCTGTGCAACAAGTTTC
CGCCCCCATCGTTTTCTGTGCTGCGCTCATTTCTCAGCGTCTCACGCGTG
ATTTCATGTCTTTTTTTGTTTATGTGATTTCTTGTTGCGTGTGCCGGACA
ACCACAAGCAGGATCGAGCGAGTGGTGATCGCCGGGGTGGACACCGAGCC
GTCGTCCGTAATGCTCCAGGTGGTGTCGGCTCCCGCGTCCGACGACGGGC
GGGTCGAGCAGGCGGCGACGGCGGCGGTGCCACTGAGTTTCACGTACGAC
GCTCCCGCCAGGGTGTTGACAGTGCGCAAGCCGGATGTTTGCGTCGCGGA
GGACTTCGACTTGAGGCTCTCTTGGGCTGCTGTCGCGGCCGGCAGTTGAG
ATGATGCAACAAGTGTCACGAATTTTTGTCGATTTTCTACGATCGTTAAT
TTTGGCCGTTTGTTTATCGAGACGCCGGTCTTGCGACCTTGGGCGCGTAC
ACCGAGTTTGCTAGACTGATGGTGAGCTGCAGCCTGGGCGAGTGGCGGTC
GAGTCCATGCAGCAGATCGGCACCCTACTCTCACTTGCGACTGACTGTGT
ATCAACGCCTAGCTTGCTTCATCAACACTCGATAAGGATGTAGACTAGCA
CAGACAAGTGTTTTGATAGGTAGGCAGGTGGATTGTGAGCTGTGGCTGGG
GCGAGAGGCATTCGACCGATCATCACATCGACGCCTCACTTGCGGCCCGG
CTGTGTCCATGCCGAGGTTCCATCCTGGGAAAAATGTCGTGCATCACATT
ATTAGAACAACAGGCCGAGAGTGTGTGTGTTGCTTAAGGCTGGGGACGGG
AGGGGAGGGGACGCGGGTGAAAGGCCAACCAACTTTCTTCCTTCGGCTCT
GGAGCGGATAATGTCTCAGC back to topCoding sequence (CDS) from alignment at P-fluviatile_contig1:5399860..5421929- >mRNA_P-fluviatile_contig1.488.1 ID=mRNA_P-fluviatile_contig1.488.1|Name=mRNA_P-fluviatile_contig1.488.1|organism=Porterinema fluviatile SAG_2381|type=CDS|length=6444bp|location=Sequence derived from alignment at P-fluviatile_contig1:5399860..5421929- (Porterinema fluviatile SAG_2381) ATGGCACCGGCCATGCGGCGGCTAGCCTCGTCGCTGGCTCTCTCCCTCGT GGTCCTCATCGCGCCGCCGCTCACGGGGCCCAGCTCTCGGCTCGGGCTGG GCCCTCTCGGCGCGGCGGCGGTGGACAAGAAGAAGTTCCGAAAGTGCGCA GACACGGGCTTCTGCAGGCGCAACCGGGAGCGGACGTCGCCGCCAAAGTC TCCGATGGCACCGGCCATGCGGCGGCTAGCCTCGTCGCTGGCTCTCTCCC TCGTGGTCCTCATCGCGCCGCCGCTCACGGGGCCCAGCTCTCGGCTCGGG CTGGGCCCTCTCGGCGCGGCGGCGGTGGACAAGAAGAAGTTCCGAAAGTG CGCAGACACGGGCTTCTGCAGGCGCAACCGGGAGCGGACGTCGCCGCCAA AGTCTCCGTTCCGGGTTGACCCCGCAAGCGTTCGGAGCGACAGGGACGGC ATCACTGCGGACGTCTTGCCGGCCGAGGACGGGGGCGGCAGCGCTCCCCT CTCCCTTCGAGTCCGGTTCTACTCCAACGGTGTGTGCCGCCTCAAGGTCG ACGAGCATTCGCCAGGAGGAGCTCAGAGATGGGAGTTCCGGGTTGACCCC GCAAGCGTTCGGAGCGACAGGGACGGCATCACTGCGGACGTCTTGCCGGC CGAGGACGGGGGCGGCAGCGCTCCCCTCTCCCTTCGAGTCCGGTTCTACT CCAACGGTGTGTGCCGCCTCAAGGTCGACGAGCATTCGCCAGGAGGAGCT CAGAGATGGGAGCCTCCGGACGTTTTTCTCGAGCAGCAGCTGGAGCGGGC GGAATTTGTGTTGCTGCCTCTGGGCGATCCCTCCCTCCCCCCCGCGCTGA GAGAGCTCCCTGAGGGCTGGAACGGGATCTTGGCCGCCTACGGCTCGGTG GAGACCGGCGGCGGCGGTAGCTGCGATCGGCGTTACGTGTTGAGCGTGCG TTATGACCCGTTTCAGGCGGATCTGTACGCAGGGGACGAGCTGGCGGTGT CGGCCAACCGGAGCCTCCGGACGTTTTTCTCGAGCAGCAGCTGGAGCGGG CGGAATTTGTGTTGCTGCCTCTGGGCGATCCCTCCCTCCCCCCCGCGCTG AGAGAGCTCCCTGAGGGCTGGAACGGGATCTTGGCCGCCTACGGCTCGGT GGAGACCGGCGGCGGCGGTAGCTGCGATCGGCGTTACGTGTTGAGCGTGC GTTATGACCCGTTTCAGGCGGATCTGTACGCAGGGGACGAGCTGGCGGTG TCGGCCAACCGGAGGGGGTTGATGCACTTCGAGCAAACGCGGGCAAAGGG AGACCGCAGCGTCGGCGGTGCGGGAGGAGGAGGGAAAACGGTCGATCTCC ATCGTGGCAAGAAGGGGGTTGATGCACTTCGAGCAAACGCGGGCAAAGGG AGACCGCAGCGTCGGCGGTGCGGGAGGAGGAGGGAAAACGGTCGATCTCC ATCGTGGCAAGAAGGTGAAGGATTATGGAGAGGACGGGTTGGCCATCTAC GAGGACGGCACGAGGGAGACCCGGGAGGAGCACAACCGGCTGCTGGAGGA GGCGTCAGCCAGGCAGGGCAAAGATGGTGAAGGATTATGGAGAGGACGGG TTGGCCATCTACGAGGACGGCACGAGGGAGACCCGGGAGGAGCACAACCG GCTGCTGGAGGAGGCGTCAGCCAGGCAGGGCAAAGATGAGAGCGGGCTTG GTCTCTGGGAGGAGAGCTTCGACGGCCACCCCGACAGTAAACCCGACGGC CCGACGAGCGTGGGAATAGACGTCTACTTCCCAGAGAGCGGGCTTGGTCT CTGGGAGGAGAGCTTCGACGGCCACCCCGACAGTAAACCCGACGGCCCGA CGAGCGTGGGAATAGACGTCTACTTCCCAGGCTCCGACCACGTCTACGGC ATCCCGGAGCACGCCACCTCGATGGCTCTCAAGACCACGACCGCCGGCGA CAACGCCGATGCCGACACCGGCGCCGGCGATAGCAACGGGGACGGAAAGG GCAACGAGGTCCCTCTCGCCCCGCCGCCGCCGCCTCACTTCTCCGAGCCG TACCGGTTGTACACTCTGGACGTGTTCGAGTACGAGCTGGACTCCCCGGC GGCGCTGTACGGCAGCATCCCCGTCATGCTGGGGCACCGCAAGGGTATCA CGGCCGGGGTGTTCTGGTTCAACCCCACGGAAACGTTCGTTGACGTCGAG CAAGGTGGGCTCCGACCACGTCTACGGCATCCCGGAGCACGCCACCTCGA TGGCTCTCAAGACCACGACCGCCGGCGACAACGCCGATGCCGACACCGGC GCCGGCGATAGCAACGGGGACGGAAAGGGCAACGAGGTCCCTCTCGCCCC GCCGCCGCCGCCTCACTTCTCCGAGCCGTACCGGTTGTACACTCTGGACG TGTTCGAGTACGAGCTGGACTCCCCGGCGGCGCTGTACGGCAGCATCCCC GTCATGCTGGGGCACCGCAAGGGTATCACGGCCGGGGTGTTCTGGTTCAA CCCCACGGAAACGTTCGTTGACGTCGAGCAAGGTGGCGCCGGAGAGGGCA AGCGGGCGCGCTGGATCAGCGAAGGCGGGGCGCTCGACCTCGTCCTGCTT CCGGGGCCCACCGCCGGCGAGGTTTTCCGGCAGTACGCCGAGGTGACCGG CAAGCCGGAGCTGCCACCCATGTTCAGCCTCGGCTTTCATCAGTGCCGCT GGAACTACCGAGATGAGCAGCGCCGGAGAGGGCAAGCGGGCGCGCTGGAT CAGCGAAGGCGGGGCGCTCGACCTCGTCCTGCTTCCGGGGCCCACCGCCG GCGAGGTTTTCCGGCAGTACGCCGAGGTGACCGGCAAGCCGGAGCTGCCA CCCATGTTCAGCCTCGGCTTTCATCAGTGCCGCTGGAACTACCGAGATGA GCAGGACGTGCTGGCCGTAGACGCGGGATTCGAGGAGCGGGACTTCCCCT ACGACGTGATCTGGCTGGACATCGAGCACACCGACGGCAAGCGTTACTTC ACCTGGGACCAGCGCCTCTTCCCGGACCCCAAACGGATGCTTGACAAGGA CGTGCTGGCCGTAGACGCGGGATTCGAGGAGCGGGACTTCCCCTACGACG TGATCTGGCTGGACATCGAGCACACCGACGGCAAGCGTTACTTCACCTGG GACCAGCGCCTCTTCCCGGACCCCAAACGGATGCTTGACAAGGTGGCTGC CCACGGGCGGCGCATGGTGACGATCGTCGACCCGCACATCAAGCGCGACC CCAACTACGCCGTCCACAAGGAAGCCACCGCAAAGGGACTCTACATCAAG GACAAAGACGGCAACGTGGCTGCCCACGGGCGGCGCATGGTGACGATCGT CGACCCGCACATCAAGCGCGACCCCAACTACGCCGTCCACAAGGAAGCCA CCGCAAAGGGACTCTACATCAAGGACAAAGACGGCAACGATTTCGACGGC TGGTGCTGGCCGGGGCAGTCGAGCTACCTCGACTTCACGGACGAGCGGGT GAGGGCGTGGTGGGCCTCGAGGTTCTCGCTCGACCAGTACGAGGGGAGCA CGCTGGACCTCTACACGTGGAACGACATGAACGAACCGAGCGTTTTCAAC GGCCCGGAGGTAGATTTCGACGGCTGGTGCTGGCCGGGGCAGTCGAGCTA CCTCGACTTCACGGACGAGCGGGTGAGGGCGTGGTGGGCCTCGAGGTTCT CGCTCGACCAGTACGAGGGGAGCACGCTGGACCTCTACACGTGGAACGAC ATGAACGAACCGAGCGTTTTCAACGGCCCGGAGGTAGTTTCCATGAAGAA GGACTGCCTTAGCCTGGCGGGCGTTGAGCACCGGCACTGGCACAACGTGT ACGGCATGTACATGCAAAGGGCCACGGCCGAGGGCCTGGAGCTGCCCCGG AAAGGGAACGCGAGGGGCGGCGGGGGCGGGGACGGCCGGCCCTTCGTCCT GTCGAGGGCTTTCTTCGCGGGAAGCCAGCGATGGGGCGCCGTGTGGACCG GCGATAATGCGGCCAGGTTTCCATGAAGAAGGACTGCCTTAGCCTGGCGG GCGTTGAGCACCGGCACTGGCACAACGTGTACGGCATGTACATGCAAAGG GCCACGGCCGAGGGCCTGGAGCTGCCCCGGAAAGGGAACGCGAGGGGCGG CGGGGGCGGGGACGGCCGGCCCTTCGTCCTGTCGAGGGCTTTCTTCGCGG GAAGCCAGCGATGGGGCGCCGTGTGGACCGGCGATAATGCGGCCAGGTGG GATCACCTCGCGGCCTCGGCCCCGATGCTGCTGTCCATGAGTTTGGCCGG CCTGCCTTTCGTAGGCGCGGACGTGGGCGGATTCTTCGGGGACCCGTCCG CGGAGTTGTTTCTCCGTTGGATGCAGGTGGGATCACCTCGCGGCCTCGGC CCCGATGCTGCTGTCCATGAGTTTGGCCGGCCTGCCTTTCGTAGGCGCGG ACGTGGGCGGATTCTTCGGGGACCCGTCCGCGGAGTTGTTTCTCCGTTGG ATGCAGGCCGCCGCGTACCAGCCCTTCTTCCGGTCCCACGCGCACCACGA CTCCAAGCGGAGGGAGCCGTGGGTGTTCGGAGACCCGTGGACCACGCGCA TCCGATCGGTGGTGATGGCTCGGTACGCCCTGCTTCCCTACTGGCCGCCG CGTACCAGCCCTTCTTCCGGTCCCACGCGCACCACGACTCCAAGCGGAGG GAGCCGTGGGTGTTCGGAGACCCGTGGACCACGCGCATCCGATCGGTGGT GATGGCTCGGTACGCCCTGCTTCCCTACTGGTACACCCTCTTTCAAGAGG CGAGCGACACCGGCATGCCCATGATGCGGCCGATGTGGGTGCAGTACCCC GACGACGCCAATACCTTCGACATGGATGACCAGGTACACCCTCTTTCAAG AGGCGAGCGACACCGGCATGCCCATGATGCGGCCGATGTGGGTGCAGTAC CCCGACGACGCCAATACCTTCGACATGGATGACCAGTGGATGGTCGGCTC GGACCTGCTCGTCAAGCCGATTGTCACCGAGGGCGCCACCGTCTCCGCCG TCTACCTACCCGTGGATGGTCGGCTCGGACCTGCTCGTCAAGCCGATTGT CACCGAGGGCGCCACCGTCTCCGCCGTCTACCTACCCGGTCGATCCGGAG CGGGATCGGATTCGGACAGTAGCAGCGGCAGCGGCAGCGGAAGCGGAGGC CTCTGGTACGATGTTGATACCCTTGGGGCGGTGAGGGGGAGCGGGGAGTA CCGGTCCGTAGAAGCGCCAATCGACAAGATTCCTGCTTTCCAGAGGGGCG GCAGCATCATTCCCCGGTCGATCCGGAGCGGGATCGGATTCGGACAGTAG CAGCGGCAGCGGCAGCGGAAGCGGAGGCCTCTGGTACGATGTTGATACCC TTGGGGCGGTGAGGGGGAGCGGGGAGTACCGGTCCGTAGAAGCGCCAATC GACAAGATTCCTGCTTTCCAGAGGGGCGGCAGCATCATTCCCCGCAAACA ACGCCTTCGCCGGAGCTCCCTGATGATGGCCGGTGACCCTTACACCCTTG TGGTCGCCCTGGACGAGGCGGCCGCGGCGCAGGGGAGCCTGTACCTTGAC GACGAGGAGTCGCACGATTACCGCGACAGGGAAGGCGGCGGCGGCTGGGC CACGCGACGTTTCTCTTTTGAAGGGGGCGTTCTGGCGGGGAGGGCCGCGG AGGGTAGTGGGGTCTACCGGCCGGCAAATACCAAACAACGCCTTCGCCGG AGCTCCCTGATGATGGCCGGTGACCCTTACACCCTTGTGGTCGCCCTGGA CGAGGCGGCCGCGGCGCAGGGGAGCCTGTACCTTGACGACGAGGAGTCGC ACGATTACCGCGACAGGGAAGGCGGCGGCGGCTGGGCCACGCGACGTTTC TCTTTTGAAGGGGGCGTTCTGGCGGGGAGGGCCGCGGAGGGTAGTGGGGT CTACCGGCCGGCAAATACGATCGAGCGAGTGGTGATCGCCGGGGTGGACA CCGAGCCGTCGTCCGTAATGCTCCAGGTGGTGTCGGCTCCCGCGTCCGAC GACGGGCGGGTCGAGCAGGCGGCGACGGCGGCGGTGCCACTGAGTTTCAC GTACGACGCTCCCGCCAGGGTGTTGACAGTGCGCAAGCCGGATGTTTGCG TCGCGGAGGACTTCGACTTGAGGCTCTCTTGGGCTGCTGTCGCGGCCGGC AGTTGAGATCGAGCGAGTGGTGATCGCCGGGGTGGACACCGAGCCGTCGT CCGTAATGCTCCAGGTGGTGTCGGCTCCCGCGTCCGACGACGGGCGGGTC GAGCAGGCGGCGACGGCGGCGGTGCCACTGAGTTTCACGTACGACGCTCC CGCCAGGGTGTTGACAGTGCGCAAGCCGGATGTTTGCGTCGCGGAGGACT TCGACTTGAGGCTCTCTTGGGCTGCTGTCGCGGCCGGCAGTTGA back to top
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