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Homology
BLAST of mRNA_P-littoralis_Contig8.5.6 vs. uniprot
Match: D8LB42_ECTSI (Protein tyrosine kinase n=1 Tax=Ectocarpus siliculosus TaxID=2880 RepID=D8LB42_ECTSI) HSP 1 Score: 1038 bits (2684), Expect = 0.000e+0 Identity = 651/961 (67.74%), Postives = 708/961 (73.67%), Query Frame = 3
Query: 102 MVKDSG-KWFPLHSALIFGDLAAAKELIDKGANEREMLTRSNGKGWRAVHFACHSGDNNSVAWLVGLEACDPSVRTALGETALHLSAVRGDERMCQTLLDGGXXXXXXXXXXXXXXXXXXXMGHLHVTRLLVVGAGLSPSTPDGGGASAAALALAGNHKAVVRLLQKNCPGVPMGVPKKSSSNTSGFD--------HLTKGR--KGGRGQRRLRGG-GGVSFGGDXXXXXXXXXGRKRGDLKRAEEAGSRLLEAARVGDTMAMRRVLARGEIDVEWVGSSNGWTAVMEAAEHGSLEGVCYLLDMGADLERTNKKGLTPLQLAVRSGHLGVTEELLIRGARPNIISKAGLCLRCLASSAGHGYLADWLFAMGVADGVDGGCACSGSAKDPGGXXXXXXXXXXXXXXXXXXXXXARTTRQHSSG------AVSDGAPPDPALTSEASMALTAWLANLGLGAYAGQLVSQGFDTLEAMGTVTEPDLEAMGFKKGHLRLLLARAPSASDMSGSNXXXXXXGVRDGIDSRINAEGPAAAISRSGSTPSTXXXXXXXXATRDIGVLEGMDNPVESGTRAAGHFAARPADNTEYQEENGEEDGEGRYCDASVLQPSRPLSLGGDGENNGXXXXXXXXXXXXDGFKELMPEEVEIDHVIGEGSFGVVRRARWRGMDVAVKTLKDRTASAVXXXXXXXXXXXXXXXXVDGXXXXXXGVSVVVGRGV----VDDFTDGQEDMRHEARMLAKVCNHNCVVQFVGVLLRPVPSVVTMFMENGSVEDMLVSTDSPATKDLVVRMAIEAAKGVIHLHREGVVHRDLASRNLLLDDGYHVRISDFGFSRVKRECASRGYTRSDMGPIKWTSPEAMRKRCYSEASDAFSFGVVLYEMFARSPPWEGHENLDVAFRVCSGERMAVPPRVDPPIACLMNKCWDGNSRLRPDFASILTALTMFAGDQKNNQA-GEEGTGA 2915
M KD+G KW+PLHSALIFGDL +AK L +KG ++ ML SN KGWRA+HFA SG N SV WL+GLE CD + RT GETALHLSA+RGDER+CQ L+DG XXXXXXXXXXXXXXXXXXX L VTR LVVGAGLSPSTPDGGGASAAALALAGNHK+VVRLLQKNCPGVPMGVPK+S+++ D L G +G +G+R LR GG+SFGGD XXXXX K AEEAG RLLEA+RVGDT+AM RVLA G++DVEWVG NGWTAVMEAAEHGSLE V +LLD GADLE TN KGLTPLQLAVRSGHLGVTEELLIRGARPN+ +KAGLCLRCLA+S GHGYLADWLFAMGVADGVDGGCACSG AK XXXXXXXXXXXXXXXXXXXXX A S+ P + ALT WLA+LGL AY +LVS+GFDTL+AM TEPDLE MGFKKGHLRLLLARAPSAS ++ + XXX ID R G XXXXXXXX + E M PV TR G E+NGE D RYCDA VLQPSR LS G EN+G +GFKEL PEEVE+D VIGEGSFGVVRRARWRGM+VAVK LK ASA V G +G V +D+ +GQE+MRHEARMLAKVCNHNCVVQFVGVLLRPVPSVVTMFMENGSVEDMLVS+D ATKDLV RMAIEAAKGVIHLHREGVVHRDLASRNLLLDDG+HVRISDFGFSRVKRECASRGYTRSDMGPIKWTSPEAMRKRCYSEASDAFSFGVVLYEMFARSPPWEGHENLDVAFRVCSGERM VPPRVD P+A LM+KCW+ +SRLRPDFASILTALT FAGDQ+ +A G EG GA
Sbjct: 1 MAKDAGGKWYPLHSALIFGDLPSAKSLFEKGCSDAGMLVTSNSKGWRALHFATQSGHNESVEWLLGLEGCDAAARTTKGETALHLSALRGDERICQMLIDGXXXXXXXXXXXXXXXXXXXXXXXLAVTRFLVVGAGLSPSTPDGGGASAAALALAGNHKSVVRLLQKNCPGVPMGVPKRSNNSRRSLDAAGFLPSSELAGGSDFQGRKGRRNLRAREGGISFGGDGGGRXXXXX-XXXXXAKAAEEAGRRLLEASRVGDTLAMGRVLASGDVDVEWVGRGNGWTAVMEAAEHGSLEAVSFLLDKGADLEHTNNKGLTPLQLAVRSGHLGVTEELLIRGARPNVTTKAGLCLRCLANSMGHGYLADWLFAMGVADGVDGGCACSGGAKXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXAGSEAGAP--------TAALTEWLASLGLSAYESRLVSEGFDTLDAMCAATEPDLEEMGFKKGHLRLLLARAPSASTLTSTANGXXXDRRVSFIDDRGARAGSPXXXXXXXXXXXXXXXXXXXXXXXWVNPTEVMAQPV---TRGVG------------DEDNGETDP--RYCDAWVLQPSRALSAG---ENSGGDRARSSSSSAAEGFKELKPEEVEVDRVIGEGSFGVVRRARWRGMEVAVKELKTCIASAAAVAAASGAAPSVA---VGGGDSNGATAGTELGGKVKQRDIDNLVEGQEEMRHEARMLAKVCNHNCVVQFVGVLLRPVPSVVTMFMENGSVEDMLVSSDKKATKDLVCRMAIEAAKGVIHLHREGVVHRDLASRNLLLDDGFHVRISDFGFSRVKRECASRGYTRSDMGPIKWTSPEAMRKRCYSEASDAFSFGVVLYEMFARSPPWEGHENLDVAFRVCSGERMTVPPRVDSPLADLMHKCWNESSRLRPDFASILTALTAFAGDQELARANGVEGGGA 929
BLAST of mRNA_P-littoralis_Contig8.5.6 vs. uniprot
Match: A0A6H5KQU2_9PHAE (Uncharacterized protein n=1 Tax=Ectocarpus sp. CCAP 1310/34 TaxID=867726 RepID=A0A6H5KQU2_9PHAE) HSP 1 Score: 773 bits (1995), Expect = 3.190e-259 Identity = 509/813 (62.61%), Postives = 565/813 (69.50%), Query Frame = 3
Query: 102 MVKDSG-KWFPLHSALIFGDLAAAKELIDKGANEREMLTRSNGKGWRAVHFACHSGDNNSVAWLVGLEACDPSVRTALGETALHLSAVRGDERMCQTLLDGGXXXXXXXXXXXXXXXXXXXMGHLHVTRLLVVGAGLSPSTPDGGGASAAALALAGNHKAVVRLLQKNCPGVPMGVPKKSSSNTSGFDHLT----------KGRKGGRGQRRLRGG-GGVSFGGDXXXXXXXXXGRKRGDLKRAEEAGSRLLEAARVGDTMAMRRVLARGEIDVEWVGSSNGWTAVMEAAEHGSLEGVCYLLDMGADLERTNKKGLTPLQLAVRSGHLGVTEELLIRGARPNIISKAGLCLRCLASSAGHGYLADWLFAMGVADGVDGGCACSGSAKDPGGXXXXXXXXXXXXXXXXXXXXXARTTRQHSSGAV-SDGAPPDPAL---------TSEASMALTAWLANLGLGAYAGQLVSQGFDTLEAMGTVTEPDLEAMGFKKGHLRLLLARAPSASDMSGSNXXXXXXGVRDGIDSR-INAEGPAAAISRSGSTPSTXXXXXXXXATRDIGVLEGMDNPVESGTRAAGHFAARPADNTEYQEENGEEDGEGRYCDASVLQPSRPLSLGGDGENNGXXXXXXXXXXXXDGFKELMPEEVEIDHVIGEGSFGVVRRARWRGMDVAVKTLKDRTASAVXXXXXXXXXXXXXXXXVDGXXXXXXGVSVVVGRGV----VDDFTDGQEDMRHEARMLAKVCNHNCVVQFVGVLLRPVPSVVTMFMENGSVEDMLVSTDSPATKDLVVRMAIEAAKGVIHLHREGVV 2459
M +D+G KW+PLHSALIFGDL +AK L +KG ++ ML SN KGWRA+HFA SG N SV WL+ LE CD + RT GETALHLSA+RGDER+CQTL+DG XXXXXXXXXXXXXXXXXXX HL VTR LVVGAGLSPSTPDGGGASAAALALAGNHK+VVRLLQKNCPGVPMGVPK+S+++ D G +G +G+R LR GGV FGGD G KRG K AEEAG RLLEA+RVGDT+AM RVLA G++DVE VG NGWTAVMEAAEHGSLE V +LLD GADLERTN KGLTPLQLAVRSGHLGVTEELLIRGARPN+ +KAGLCLRCLA+S GH YLADWLFAMGVADGVDGGCACSG AK G A RQH+ G+ S+G P T + ALT WLA+LGL AY +LVS+GFDTL+AM VTEPDLEAMGFKKGHLRLLLARAPSAS ++ + +D R A P A++ S P XXXXXXX NP E A+P E+ E D RYC+A VLQPSR LS GG + XXXXXXXX +GFKEL PEEVE+DHVIGEGSFGVVRRARWRGM+VAVK LK ASA XXXXXXXXXXX V G +G V +D+ GQE+MRHEARMLAKVCNHNCVVQFVGVLLRPVPSVVTMFMENGSVEDMLVS+D ATKDLV RMAIEAAKGVIHLHR+ V
Sbjct: 1 MAEDAGRKWYPLHSALIFGDLPSAKSLFEKGCSDAGMLVTSNSKGWRALHFATQSGHNESVEWLLSLEGCDAAARTTKGETALHLSALRGDERVCQTLIDGXXXXXXXXXXXXXXXXXXXXXXHLAVTRFLVVGAGLSPSTPDGGGASAAALALAGNHKSVVRLLQKNCPGVPMGVPKRSNNSRRSLDAARLLPSSELAGGSGFQGRKGRRNLRAREGGVIFGGDGGGRGKGGVG-KRGGAKAAEEAGRRLLEASRVGDTLAMGRVLASGDVDVECVGRGNGWTAVMEAAEHGSLEAVSFLLDKGADLERTNNKGLTPLQLAVRSGHLGVTEELLIRGARPNVTTKAGLCLRCLANSMGHDYLADWLFAMGVADGVDGGCACSGGAKSASGGGDEPASSAN-----------AVRARQHTGGSAHSNGGAPXXXXXXXXXAGSETGAPTAALTEWLASLGLSAYESRLVSEGFDTLDAMCAVTEPDLEAMGFKKGHLRLLLARAPSASTLTTTANGGRGDRHVSFVDDRGARAGSPPVAVA---SVPREGXXXXXXXXXXXXXXX--WVNPTE--------VMAQPVARDVGDEDKEETDP--RYCEAWVLQPSRALSAGGSSGGD-RXXXXXXXXSTAEGFKELKPEEVEVDHVIGEGSFGVVRRARWRGMEVAVKELKTCIASAAAXXXXXXXXXXXA---VGGGDSNDATAGTELGGKVKQRDIDNLVQGQEEMRHEARMLAKVCNHNCVVQFVGVLLRPVPSVVTMFMENGSVEDMLVSSDKTATKDLVCRMAIEAAKGVIHLHRQATV 782
BLAST of mRNA_P-littoralis_Contig8.5.6 vs. uniprot
Match: A0A813CZ72_9DINO (Non-specific protein-tyrosine kinase n=1 Tax=Symbiodinium sp. KB8 TaxID=230985 RepID=A0A813CZ72_9DINO) HSP 1 Score: 294 bits (752), Expect = 1.250e-78 Identity = 201/537 (37.43%), Postives = 276/537 (51.40%), Query Frame = 3
Query: 1317 QHSSGAVSDGAPPDPALTSEASMALTAWLANLGLGAYAGQLVSQGFDTLEAMGTVTEPDLEAMGFKKGHLRLLLARAPSASDMSGSNXXXXXXGVRDGIDSRINAEGPAAAISRSGST---PSTXXXXXXXXATRDIGVLE----GMDNPVESGTRAAGHFAARPADNTEYQEENGEED----GEGRYCDASVLQPSRPLSLGGDGENNGXXXXXXXXXXXXDGF----KELMPEEVEIDHVIGEGSFGVVRRARWRGMDVAVKTLKDRTASAVXXXXXXXXXXXXXXXXVDGXXXXXXGVSVVVGRGVVDDFTDGQEDMRHEARMLAKVCNHNCVVQFVGVLLRPVPSVVTMFMENGSVEDMLVSTDSPAT--KDL----VVRMAIEAAKGVIHLHREGVVHRDLASRNLLLDDGYHVRISDFGFSRVKRECASRGYTRSDMGPIKWTSPEAMRKRCYSEASDAFSFGVVLYEMFARSPPWEGHENLDVAFRVCSGERM--AVPPRVDPPIACLMNKCWDGNSRLRPDFASILTAL 2858
+ S+G GA A + S + L L LG++AG L ++GFD L A+ V E DL +G + GH RLLL A + S G + ++EG + SG+ P T GV G +P + A P D Q G+ D G G+ V P + + G GE + +L P++ + V+GEGSFG+VRRA WRGM+VAVKTLK V DG G + ++ HEA ++++VC+H+ +VQF+GVL RP P+VVT FM GS+ED+L+ T SP + K+L +VR+A++AA GV+HLH E V+HRD+A+RN L+D G VR++DFGFSR++ AS+GYTRS GPIKW +PEAMRKR YS SD FSFGV+L+E+F +PPW+G ENLDV FRVC GER+ A P + P + LM +CW + RPD ++ AL
Sbjct: 497 RESAGGPDAGAAAHDAGGARVSPEMMDLLTKLSLGSFAGALAAEGFDDLPALSCVREADLVPLGMRTGHRRLLLQAAGALSVSFAGRGERHLATTSAGTTTIGSSEGRGVDLGSSGTELLPPHPDRSQSVSGGTVGTGVRGPSNGGGSSPGPAPRLLRAMTAPHPGDKAA-QALTGDFDRVEWGTGKAEAEEVGTPVKGAA-GDTGEGTPSTPAASTAVLAAEAAGRLPHQLDPKDFNMQEVVGEGSFGIVRRAMWRGMEVAVKTLK----VGVVVGDGGVMDCDACEAGGDGLEEEVAGTPLTPQSAKDSVLAATLSELSHEAHLMSRVCSHDHIVQFIGVLSRPRPAVVTKFMALGSLEDILLQT-SPRSMWKELGLPQLVRLAVQAAAGVLHLHHEDVIHRDIAARNCLVDQGLCVRVADFGFSRLRDRNASKGYTRSTTGPIKWMAPEAMRKRAYSVKSDVFSFGVLLWEIFTGTPPWKGEENLDVLFRVCGGERLDVAAQPDLPPDLVKLMQQCWAQEAADRPDMQAVHAAL 1026
BLAST of mRNA_P-littoralis_Contig8.5.6 vs. uniprot
Match: A0A7S2WL09_9STRA (Hypothetical protein n=1 Tax=Rhizochromulina marina TaxID=1034831 RepID=A0A7S2WL09_9STRA) HSP 1 Score: 229 bits (585), Expect = 1.090e-62 Identity = 130/311 (41.80%), Postives = 183/311 (58.84%), Query Frame = 3
Query: 1959 KELMPEEVEIDHVIGEGSFGVVRRARWRGMDVAVKTLKDRTASAVXXXXXXXXXXXXXXXXVDGXXXXXXGVSVVVGRGVVDDFTDGQEDMRHEARMLAKVCNHNCVVQFVGVLLRPVPSVVTMFMENGSVEDMLVSTDS-------PATKDL----VVRMAIEAAKGVIHLHREGVVHRDLASRNLLLDDGYHVRISDFGFSRVKRECASRGYTRSDMGPIKWTSPEAMRKRCYSEASDAFSFGVVLYEMFARSPPWEGHENLDVAFRVC-SGERMAVPPRVDPP---IACLMNKCWDGNSRLRPDFASI 2846
KEL E+ + +IGEGSFG VRR WRGMDVA+K++K V G +V E++R EA +LA+VC+H VV+FVG++ + +VV FM NGS+ED+L+ P ++L + RMA+EAAKG+ HLH E V+HRD+A+RN+L+D+ HVR++DFGF+R K S+ YT+S++ P+KW+SPEA++ + YSEASD FSFGV LYE+ +S PW H N++V VC +G RM +P + PP +A LM+KCW + RP I
Sbjct: 2 KELRWSELRLGDIIGEGSFGRVRRGNWRGMDVAIKSIKHVAV-------------WQDDQDVPGDVGEKRSAAV--------------EELRREASLLARVCHHQFVVEFVGIVPEKL-AVVMRFMHNGSLEDLLIRHGGRRADEILPGDRNLRAREITRMALEAAKGISHLHSEQVIHRDIAARNILVDEHLHVRVADFGFARTKETGRSKCYTQSEILPVKWSSPEAIKWKHYSEASDVFSFGVFLYELVVQSAPWPNHSNMEVVCLVCGTGARMGLPEYLPPPFDQLAELMSKCWQHEPQDRPTMELI 284
BLAST of mRNA_P-littoralis_Contig8.5.6 vs. uniprot
Match: A0A2R5G438_9STRA (Protein kinase, putative n=1 Tax=Hondaea fermentalgiana TaxID=2315210 RepID=A0A2R5G438_9STRA) HSP 1 Score: 228 bits (581), Expect = 1.900e-56 Identity = 127/290 (43.79%), Postives = 166/290 (57.24%), Query Frame = 3
Query: 1965 LMPEEVEIDHVIGEGSFGVVRRARWRGMDVAVKTLKDRTASAVXXXXXXXXXXXXXXXXVDGXXXXXXGVSVVVGRGVVDDFTDGQE--------------DMRHEARMLAKVCNHNCVVQFVGVLLRPVPSVVTMFMENGSVEDMLVSTDSPATKDL------VVRMAIEAAKGVIHLHREGVVHRDLASRNLLLDDGYHVRISDFGFSRVKRECASRGYTRSDMGPIKWTSPEAMRKRCYSEASDAFSFGVVLYEMFARSPPWEGHENLDVAFRVCSGERMAVPPRVD 2774
L EE+ +IGEGSFGVVR A WRGM VAVK L+ + D G G V+ +G D++HEA M+++V NH +V FVGVLL P P VVT M GSVEDMLV P K +++M ++AA GV+HLH EGV+HRD+ASRNLL+D+ V+++DFGF+R+K S+GYT +GPIKW +PEAMR R +SE +D FSFGV L+E+ PWEG E++DV +R+C GER VP V+
Sbjct: 649 LAYEELTFGQIIGEGSFGVVRAAEWRGMLVAVKELRGNEKLMLAGSNPSGVEIDTALLGGDHAGVGAGGAKA----GEVEGENNGNPSGLARGASCSSEEWDLKHEAAMMSRVSNHENIVPFVGVLLTPRPCVVTKLMRGGSVEDMLV-VPGPLYKRKTIPEARILQMLVDAAAGVLHLHSEGVIHRDIASRNLLVDENLRVKVADFGFARIKEINRSKGYTSQHVGPIKWMAPEAMRYRRFSEQTDVFSFGVTLFEVLVGKRPWEGIESMDVVYRICDGERQLVPDEVE 933
BLAST of mRNA_P-littoralis_Contig8.5.6 vs. uniprot
Match: A0A7S0PGQ5_CAFRO (Non-specific protein-tyrosine kinase (Fragment) n=1 Tax=Cafeteria roenbergensis TaxID=33653 RepID=A0A7S0PGQ5_CAFRO) HSP 1 Score: 191 bits (484), Expect = 8.930e-50 Identity = 99/219 (45.21%), Postives = 137/219 (62.56%), Query Frame = 3
Query: 2226 DMRHEARMLAKVCNHNCVVQFVGVLLRPVPSVVTMFMENGSVEDMLVSTDSPATKDL-----VVRMAIEAAKGVIHLHREGVVHRDLASRNLLLDDGYHVRISDFGFSRVKRECASRGYTRSDMGPIKWTSPEAMRK--RCYSEASDAFSFGVVLYEMFARSPPWEGHENLDVAFRVCSGERMAVPPRVDPPIACLMNKCWDGNSRLRPDFASILTALT 2861
++R EA M+A+V +H +V+FVGV+ RP +VVT FM GS+E +LVS + L V MA AA G++HLH E V+HRD+A+RNLL D VR+ DFGF+R+K+ SRGYT + GPI+W +PEA+ + +SE SD +SFGV L E+F PPW+G E L VA +VCSG R A+P + I L+ +CW + RP + L+
Sbjct: 57 ELRQEADMMARVAHHEHIVRFVGVIERPFQAVVTEFMARGSLERLLVSPGPGNLRHLFTLRDVTAMACGAAAGILHLHEERVIHRDIAARNLLCDHSDRVRVCDFGFARLKQSSQSRGYTSATTGPIRWLAPEALMTSGKTFSEKSDVWSFGVTLTELFTGQPPWKGVETLQVAIQVCSGARQALPLALPTSIRDLVQRCWAADPSERPTMRDVHRLLS 275
BLAST of mRNA_P-littoralis_Contig8.5.6 vs. uniprot
Match: A0A7S4D4E3_HETAK (Hypothetical protein (Fragment) n=1 Tax=Heterosigma akashiwo TaxID=2829 RepID=A0A7S4D4E3_HETAK) HSP 1 Score: 181 bits (460), Expect = 2.260e-49 Identity = 86/133 (64.66%), Postives = 101/133 (75.94%), Query Frame = 3
Query: 2472 ASRNLLLDDGYHVRISDFGFSRVKRECASRGYTRSDMGPIKWTSPEAMRKRCYSEASDAFSFGVVLYEMFARSPPWEGHENLDVAFRVCSGERMAVPPRVDPPIACLMNKCWDGNSRLRPDFASILTALTMFA 2870
A+RNLL+DD VR+SDFGF+RVK CASRGYTR++MGPIKWT+PEAMR++ YSE+SD FSFGVVL+EMFAR PPW G ENLDVA RVCSGERM +P +DP I L+ KCW RP SI+ L A
Sbjct: 1 AARNLLVDDHLRVRVSDFGFARVKDACASRGYTRTEMGPIKWTAPEAMRRKVYSESSDVFSFGVVLFEMFAREPPWRGLENLDVAVRVCSGERMPLPHDMDPNITNLIKKCWAEEPCQRPGLTSIIEYLDFLA 133
BLAST of mRNA_P-littoralis_Contig8.5.6 vs. uniprot
Match: A0A5A8EFA3_CAFRO (Non-specific protein-tyrosine kinase n=4 Tax=Cafeteria roenbergensis TaxID=33653 RepID=A0A5A8EFA3_CAFRO) HSP 1 Score: 197 bits (502), Expect = 2.770e-47 Identity = 162/518 (31.27%), Postives = 227/518 (43.82%), Query Frame = 3
Query: 1398 WLANLGLGAYAGQLVSQGFDTLEAMGTVTEPDLEAMGFKKGHLRLLLARAP-------------------------------SASDMSGSNXXXXXXGVRDGIDSRINAEGPAAAISRSGSTPSTXXXXXXXXATRDIGVLEGMDNPVESGTRAAGHFAARPADNTEY-------QEENGEEDGEGRYCDASVLQPSRPLSLGGDGENNGXXXXXXXXXXXXDG-------FKELMPEEVEIDHV--IGEGSFGVVRRARWRGMDVAVKTLKDRTASAVXXXXXXXXXXXXXXXXVDGXXXXXXGVSVVVGRGVVDDFTDGQEDMRHEARMLAKVCNHNCVVQFVGVLLRPVPSVVTMFMENGSVEDMLVSTDSPATKDL-----VVRMAIEAAKGVIHLHREGVVHRDLASRNLLLDDGYHVRISDFGFSRVKRECASRGYTRSDMGPIKWTSPEAMRK--RCYSEASDAFSFGVVLYEMFARSPPWEGHENLDVAFRVCSGER----MAVPPRVDP 2777
WL+ LGL Y L + GF TL ++ T+ E D++A+ H R L P S D G G+R G S + + +G+ S + + G R AG A P E Q+ G+ L P + GD ++ L +++E + +GEGS+ V RARWRG DVAVK L+ ++ + XXXXXX + + D ++R EA M+A+V +H +V+FVGV+ RP +VVT FM GS+E +LVS + L V MA AA G++HLH E V+HRD+A+RNLL D VR+ DFGF+R+K+ SRGYT + GPI+W +PEA+ + +SE SD +SFGV L E+F PPW+G E L VA +VCSG R +A+P RV P
Sbjct: 862 WLSELGLARYGPPLRALGFTTLPSLSTLEEKDMDAVEMHAAHRRTLDRALPMLRGLGVVTALPIGPRTSAPGSEGPGDEVTSSKLDKEGRGGPEPGQGLRSGATSDAGTDDXXXDVGSTGA--SEAGLVATGPRLENASSTDSRYGRFTPGHRTAGELAPPPGPAAEAXXXXXARQDATTAARGQKDPSYRRGLTPRHDTASAGDAAQPMKAITEFRRQTSESAGGGGGRLWRLLKAQDLEFPELPTLGEGSYSTVLRARWRGTDVAVKVLRIQSDAESVAKSVMKSARSVSNPAGAXXXXXXXXXXXXSDQDLGDVSEAVLAELRQEADMMARVAHHEHIVRFVGVIERPFQAVVTEFMARGSLERLLVSPGPGNLRHLFTLRDVTAMACGAAAGILHLHEERVIHRDIAARNLLCDHSDRVRVCDFGFARLKQSSQSRGYTSATTGPIRWLAPEALMTSGKTFSEKSDVWSFGVTLTELFTGQPPWKGVETLQVAIQVCSGARQALPLALPTRVHP 1377
BLAST of mRNA_P-littoralis_Contig8.5.6 vs. uniprot
Match: L8GMP4_ACACA (Thioredoxin, putative n=1 Tax=Acanthamoeba castellanii str. Neff TaxID=1257118 RepID=L8GMP4_ACACA) HSP 1 Score: 185 bits (469), Expect = 1.170e-44 Identity = 103/308 (33.44%), Postives = 157/308 (50.97%), Query Frame = 3
Query: 1956 FKELMPEEVEIDHVIGEGSFGVVRRARWRGMDVAVKTLKDRTASAVXXXXXXXXXXXXXXXXVDGXXXXXXGVSVVVGRGVVDDFTDGQEDMRHEARMLAKVCNHNCVVQFVGVLLRPVP----SVVTMFMENGSVEDMLVSTDSPATKDLVVRMAIEAAKGVIHLHREGVVHRDLASRNLLLDDGYHVRISDFGFSRVKRECASRGYTRSDMGPIKWTSPEAMRKRCYSEASDAFSFGVVLYEMFARSPPWEGHENLDVAFRVCSGERMAVPPRVDPPIACLMNKCWDGNSRLRPDFASILTALTMF 2867
F+E+ +++ + ++GEG+FG V + +RG VAVK + ++R EA+M+ ++ NH +V+FVG + R ++VT F GS+ D+LV +VRMA +AA G++HLH+E +VHRD+A+RN+L+ Y V +SDFG +R + T+ + GP+ W +PEA++ R YSEA+DAFSFGV+L+EM AR PW G E + + V S R+ +P DP A LM CW N RP F + L+ +
Sbjct: 289 FREIDGKDLRLGKLLGEGAFGKVYKGEYRGAVVAVKIFEALRLDQADEKVL--------------------------------------NELRTEAQMMERLSNHPGIVKFVGAITRGDDGANFALVTEFCPRGSLYDLLVKNKKKLPLITLVRMARDAASGILHLHKEHIVHRDIAARNILVGQNYEVYVSDFGLARAQEADGQVATTKQNFGPLAWMAPEALKSREYSEATDAFSFGVLLWEMMARKRPWAGVEPVQIITSVTSNTRLRIPKDCDPIFAQLMKMCWRQNPSQRPSFDKVADVLSKY 558
BLAST of mRNA_P-littoralis_Contig8.5.6 vs. uniprot
Match: L8GFK9_ACACA (Non-specific protein-tyrosine kinase n=1 Tax=Acanthamoeba castellanii str. Neff TaxID=1257118 RepID=L8GFK9_ACACA) HSP 1 Score: 182 bits (462), Expect = 2.020e-43 Identity = 110/318 (34.59%), Postives = 161/318 (50.63%), Query Frame = 3
Query: 1956 FKELMPEEVEIDHVIGEGSFGVVRRARWRGMDVAVKTLKDRTASAVXXXXXXXXXXXXXXXXVDGXXXXXXGVSVVVGRGVVDDFTDGQEDMRHEARMLAKVCNHNCVVQFVGVLLRPVPSVVTM----------FMENGSVEDMLVSTDSPATKDLVVRMAIEAAKGVIHLHREGVVHRDLASRNLLLDDGYHVRISDFGFSRVKRECASRGYTRSDMGPIKWTSPEAMRKRCYSEASDAFSFGVVLYEMFARSPPWEGHENLDVAFRV-CSGERMAVPPRVDPPIACLMNKCWDGNSRLRPDFASILTALTMFAGD 2876
++E+ P+++++ ++GEG FG V R WRG VAVK + V VD+ T +R EA ML K+ NH CVV FVG + + ++ M F +GS+ D+LV+ ++VRMA + A G++HLH+E V+HRD+A+RN+L+ D Y V ISDFG +R K++ R T S+ G IKW +PEA+ + YSEASD FS+GV+L+EM R PW + +A V R+ +PP DP +M CW N + R I + L + D
Sbjct: 416 YREIDPQDLQLGTLLGEGGFGKVYRGMWRGAPVAVKIFEQ------------------------------------VELDQVDNST--LHTLRREAEMLEKLSNHPCVVSFVGAVTKGDVAIQGMEKCPFALVLEFYPHGSLYDVLVAKRLELPFHILVRMARDIALGILHLHKEKVIHRDIATRNVLVGDNYSVHISDFGLARAKKDEVDR--TTSNYGAIKWMAPEALLRGEYSEASDCFSYGVLLWEMVTRKSPWNNVDPTQIAIAVGVKNTRLRIPPVCDPVFRRIMKSCWKQNPQKRMKMEEICSMLEQYYAD 693
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 |
| Stop | 1 |
| Start | 1 |
| Seed ortholog | 2880.D8LB42 |
| Preferred name | RIPK3 |
| PFAMs | Pkinase,Pkinase_Tyr,RHIM |
| Model size | 4599 |
| Max annot lvl | 2759|Eukaryota |
| KEGG ko | ko:K08332,ko:K08841,ko:K08847 |
| KEGG Pathway | ko04217,ko04621,ko04623,ko04668,map04217,map04621,map04623,map04668 |
| Hectar predicted targeting category | other localisation |
| GOs | GO:0001775,GO:0001776,GO:0001817,GO:0001910,GO:0001914,GO:0001932,GO:0001934,GO:0002260,GO:0002376,GO:0002520,GO:0002521,GO:0002682,GO:0002685,GO:0002691,GO:0002694,GO:0002697,GO:0002703,GO:0002706,GO:0002709,GO:0002819,GO:0002822,GO:0003674,GO:0003712,GO:0003713,GO:0003824,GO:0004672,GO:0004674,GO:0004704,GO:0005488,GO:0005515,GO:0005575,GO:0005622,GO:0005623,GO:0005737,GO:0005829,GO:0006355,GO:0006464,GO:0006468,GO:0006793,GO:0006796,GO:0006807,GO:0006915,GO:0007154,GO:0007165,GO:0007249,GO:0007275,GO:0008150,GO:0008152,GO:0008219,GO:0009889,GO:0009891,GO:0009893,GO:0009966,GO:0009967,GO:0009987,GO:0010468,GO:0010556,GO:0010557,GO:0010562,GO:0010604,GO:0010646,GO:0010647,GO:0010921,GO:0010922,GO:0010939,GO:0010940,GO:0010941,GO:0010942,GO:0012501,GO:0016043,GO:0016301,GO:0016310,GO:0016740,GO:0016772,GO:0016773,GO:0019219,GO:0019220,GO:0019222,GO:0019538,GO:0022607,GO:0023051,GO:0023052,GO:0023056,GO:0030097,GO:0030098,GO:0030154,GO:0030217,GO:0030234,GO:0030334,GO:0031323,GO:0031325,GO:0031326,GO:0031328,GO:0031341,GO:0031399,GO:0031401,GO:0032147,GO:0032268,GO:0032270,GO:0032501,GO:0032502,GO:0032649,GO:0032879,GO:0032944,GO:0033077,GO:0033674,GO:0035303,GO:0035306,GO:0035556,GO:0036211,GO:0038061,GO:0040012,GO:0042110,GO:0042127,GO:0042129,GO:0042325,GO:0042327,GO:0042592,GO:0042802,GO:0042981,GO:0043029,GO:0043065,GO:0043067,GO:0043068,GO:0043085,GO:0043170,GO:0043412,GO:0043549,GO:0043933,GO:0044085,GO:0044093,GO:0044237,GO:0044238,GO:0044260,GO:0044267,GO:0044424,GO:0044444,GO:0044464,GO:0044877,GO:0045321,GO:0045859,GO:0045860,GO:0045935,GO:0045937,GO:0046006,GO:0046649,GO:0046777,GO:0048513,GO:0048518,GO:0048522,GO:0048534,GO:0048535,GO:0048536,GO:0048538,GO:0048583,GO:0048584,GO:0048731,GO:0048732,GO:0048856,GO:0048869,GO:0048872,GO:0050670,GO:0050776,GO:0050789,GO:0050790,GO:0050794,GO:0050863,GO:0050865,GO:0050896,GO:0051090,GO:0051091,GO:0051092,GO:0051171,GO:0051173,GO:0051174,GO:0051239,GO:0051246,GO:0051247,GO:0051249,GO:0051252,GO:0051254,GO:0051259,GO:0051260,GO:0051270,GO:0051291,GO:0051336,GO:0051338,GO:0051340,GO:0051341,GO:0051345,GO:0051347,GO:0051351,GO:0051353,GO:0051716,GO:0060255,GO:0060544,GO:0060545,GO:0065003,GO:0065007,GO:0065008,GO:0065009,GO:0070228,GO:0070232,GO:0070235,GO:0070265,GO:0070266,GO:0070663,GO:0071704,GO:0071840,GO:0080090,GO:0097190,GO:0097300,GO:0097435,GO:0098772,GO:0140096,GO:0140110,GO:1901564,GO:1902531,GO:1902533,GO:1902680,GO:1903506,GO:1903508,GO:1990000,GO:2000106,GO:2000112,GO:2000145,GO:2000377,GO:2000379,GO:2000401,GO:2000404,GO:2000407,GO:2000449,GO:2000452,GO:2001141,GO:2001233,GO:2001235,GO:2001242,GO:2001244 |
| Exons | 10 |
| Evalue | 0.0 |
| EggNOG OGs | COG0515@1|root,COG0666@1|root,KOG0192@2759|Eukaryota,KOG4177@2759|Eukaryota |
| EC | 2.7.11.1,2.7.12.1 |
| Description | spectrin binding |
| Cds size | 3867 |
| COG category | I |
| BRITE | ko00000,ko00001,ko01000,ko01001,ko03029,ko04131 |
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 |
| 1680791631.421978-UTR-P-littoralis_Contig8:52045..52486 | 1680791631.421978-UTR-P-littoralis_Contig8:52045..52486 | Pylaiella littoralis U1_48 | UTR | P-littoralis_Contig8 52046..52486 - |
| 1680791631.4448109-UTR-P-littoralis_Contig8:52552..52742 | 1680791631.4448109-UTR-P-littoralis_Contig8:52552..52742 | Pylaiella littoralis U1_48 | UTR | P-littoralis_Contig8 52553..52742 - |
| 1680791631.5771828-UTR-P-littoralis_Contig8:75619..75720 | 1680791631.5771828-UTR-P-littoralis_Contig8:75619..75720 | Pylaiella littoralis U1_48 | UTR | P-littoralis_Contig8 75620..75720 - |
The following CDS feature(s) are a part of this mRNA:
| Feature Name | Unique Name | Species | Type | Position |
| 1680791631.4599586-CDS-P-littoralis_Contig8:52742..53954 | 1680791631.4599586-CDS-P-littoralis_Contig8:52742..53954 | Pylaiella littoralis U1_48 | CDS | P-littoralis_Contig8 52743..53954 - |
| 1680791631.474727-CDS-P-littoralis_Contig8:65333..65466 | 1680791631.474727-CDS-P-littoralis_Contig8:65333..65466 | Pylaiella littoralis U1_48 | CDS | P-littoralis_Contig8 65334..65466 - |
| 1680791631.4886353-CDS-P-littoralis_Contig8:66967..67144 | 1680791631.4886353-CDS-P-littoralis_Contig8:66967..67144 | Pylaiella littoralis U1_48 | CDS | P-littoralis_Contig8 66968..67144 - |
| 1680791631.50705-CDS-P-littoralis_Contig8:67926..68113 | 1680791631.50705-CDS-P-littoralis_Contig8:67926..68113 | Pylaiella littoralis U1_48 | CDS | P-littoralis_Contig8 67927..68113 - |
| 1680791631.5205538-CDS-P-littoralis_Contig8:69103..70205 | 1680791631.5205538-CDS-P-littoralis_Contig8:69103..70205 | Pylaiella littoralis U1_48 | CDS | P-littoralis_Contig8 69104..70205 - |
| 1680791631.533575-CDS-P-littoralis_Contig8:70739..70917 | 1680791631.533575-CDS-P-littoralis_Contig8:70739..70917 | Pylaiella littoralis U1_48 | CDS | P-littoralis_Contig8 70740..70917 - |
| 1680791631.5464666-CDS-P-littoralis_Contig8:71604..72118 | 1680791631.5464666-CDS-P-littoralis_Contig8:71604..72118 | Pylaiella littoralis U1_48 | CDS | P-littoralis_Contig8 71605..72118 - |
| 1680791631.5575461-CDS-P-littoralis_Contig8:72393..72580 | 1680791631.5575461-CDS-P-littoralis_Contig8:72393..72580 | Pylaiella littoralis U1_48 | CDS | P-littoralis_Contig8 72394..72580 - |
| 1680791631.567362-CDS-P-littoralis_Contig8:75442..75619 | 1680791631.567362-CDS-P-littoralis_Contig8:75442..75619 | Pylaiella littoralis U1_48 | CDS | P-littoralis_Contig8 75443..75619 - |
Sequences
The following sequences are available for this feature:
protein sequence of mRNA_P-littoralis_Contig8.5.6 >prot_P-littoralis_Contig8.5.6 ID=prot_P-littoralis_Contig8.5.6|Name=mRNA_P-littoralis_Contig8.5.6|organism=Pylaiella littoralis U1_48|type=polypeptide|length=1289bp
MVKDSGKWFPLHSALIFGDLAAAKELIDKGANEREMLTRSNGKGWRAVHF ACHSGDNNSVAWLVGLEACDPSVRTALGETALHLSAVRGDERMCQTLLDG GCPPEAVTREGKTALHLAAGMGHLHVTRLLVVGAGLSPSTPDGGGASAAA LALAGNHKAVVRLLQKNCPGVPMGVPKKSSSNTSGFDHLTKGRKGGRGQR RLRGGGGVSFGGDGGGRGKGSGGRKRGDLKRAEEAGSRLLEAARVGDTMA MRRVLARGEIDVEWVGSSNGWTAVMEAAEHGSLEGVCYLLDMGADLERTN KKGLTPLQLAVRSGHLGVTEELLIRGARPNIISKAGLCLRCLASSAGHGY LADWLFAMGVADGVDGGCACSGSAKDPGGNGGGGGAAAAAAAAAASSGND ARTTRQHSSGAVSDGAPPDPALTSEASMALTAWLANLGLGAYAGQLVSQG FDTLEAMGTVTEPDLEAMGFKKGHLRLLLARAPSASDMSGSNNNGGGGGV RDGIDSRINAEGPAAAISRSGSTPSTTTAAAAAAATRDIGVLEGMDNPVE SGTRAAGHFAARPADNTEYQEENGEEDGEGRYCDASVLQPSRPLSLGGDG ENNGGKGGGGGGGGGGDGFKELMPEEVEIDHVIGEGSFGVVRRARWRGMD VAVKTLKDRTASAVAAAAAAGTGARAGAGGVDGGATAGAGVSVVVGRGVV DDFTDGQEDMRHEARMLAKVCNHNCVVQFVGVLLRPVPSVVTMFMENGSV EDMLVSTDSPATKDLVVRMAIEAAKGVIHLHREGVVHRDLASRNLLLDDG YHVRISDFGFSRVKRECASRGYTRSDMGPIKWTSPEAMRKRCYSEASDAF SFGVVLYEMFARSPPWEGHENLDVAFRVCSGERMAVPPRVDPPIACLMNK CWDGNSRLRPDFASILTALTMFAGDQKNNQAGEEGTGAAALVAAAPSPPP PPPRSSSKKSAAAVKTARAKAEAAALAKAAVAELRRRRSATLSAAAAGMQ RLDYDEAGGGGNSGSAGGAAEAPAEMVMAVTAPHQQQQEEQRRRTDGSSS STATALLPWAPLAGRYRRSPVPSLQRAAIATAAAATAAAAAAAASSPVSS DARGVPSADEGHIAPTAMGTATTATSTAAAAAAAVSAATVDETMPPGHSG SSSTTSSTTSSGSIGNSTSSRLPRQGSSDREAAAGRGGGGGGGGGGGRRE RGRGRGRVEGRGRTGPRNHDGRSWGEGLFEERGLPLPAGGEGFSSRESGR AGGGGGGGAPPHPHRGEPRPPLSRQLSGRGGGQRVGEK* back to topmRNA from alignment at P-littoralis_Contig8:52046..75720- Legend: UTRpolypeptideCDS Hold the cursor over a type above to highlight its positions in the sequence below. >mRNA_P-littoralis_Contig8.5.6 ID=mRNA_P-littoralis_Contig8.5.6|Name=mRNA_P-littoralis_Contig8.5.6|organism=Pylaiella littoralis U1_48|type=mRNA|length=23675bp|location=Sequence derived from alignment at P-littoralis_Contig8:52046..75720- (Pylaiella littoralis U1_48) CTTGAGTCCAGTCCAGAGTCCCGGGTCCCGCAAGTGTCGCGGGTGAGGCC
GTGTTGCTCTCTCCCCAAGGCTGCTTGTGCGCTGCCGTATTTGGTAGAGC
CATGGTCAAGGACTCGGGGAAGTGGTTTCCTCTCCATAGTGCTCTTATTT
TCGGCGACCTCGCAGCTGCCAAGGAATTGATCGATAAGGGGGCCAATGAG
CGCGAGATGCTCACCCGGTCCAACGGAAAGGGTTGGAGAGCGGTACACTT
CGCGTGCCACTCCGGCGACAACAATTCAGTGAGTCTCGTTGTTGTCTCCT
GTATCTGATGATTGGCGTTCACGGCAGCCACACGCATGGCCTGCACAACA
CCATATATATCGTTACGATCGACCATCTCGTTCGTTTAGATTGCGGCGGC
CGGTTTTATCAATTGCGACCGTTCCTGTCTCTCTGCATGCAGTCGTGCGG
AAAGACCACCATGTGCTGCACTACGTATACTGCTCTACTCGTATGATAGC
CAGCCAGCGAGGCGGTTGATGTCTCACCGTCTCCAACTATTTGACGCACG
TGCCATCCAGATCGAACGCGCGTAATGGCGGCAGTACAGACATGCTGTGT
GAGTTGCTTCTCGTCTCGGCAGGCACACAAGAGTGTTTACGCACTCTTTT
GAGCTCTATGAACAGCAGTAACAGGTGAACGTGCACGGACAAGCGAGCTG
CGTCCTCCCTCCACGGACCCCGGCGTGGTTGCTGCTGCTACTACTGCTGC
TGCACTGCTGCTGCATCCCTCCAAGCTTGCTGTCCTCACTCAACAAAAAT
GCACCCACTCAATTACGTGTATCATGTCATAGCTGCCAAAGTACGAGCCT
CCACCTACCGGGAGTGGGAGCACACTCCTTGCCCCGGAGTCCCTCCAAGA
GGGAAGACCCATCGAACACAGCATCGGCACCGCCACCAGCGCGAGCACCA
GCAGCTCGTGCGGCAGCAGTCAAACGCGGCGGCAGGTTTTCCTCTTTGAG
GGTAGCCGCCAGATACTTCATATCCAAGCCCGCTCGCAACCTACTACCGC
CAGCAGTAGCACCAGCAGCACCCAAGCCCCCCAAACGGGTCGGAGACCTC
AGCGCCGAGCGTTACCTTACAGTAGGCTAGGCAGGAGCGTGTTGGCCCTC
CGCTCGGCGGCTTTCCTGTCGCTCCGCCTCTCATGTAACCGTTTCATTCT
CGTCCTGCAGTGATTGCAGCAGTCGTATTTGGGGCCGACGGGTAGTGCGT
TTTACATTTTTCTTGACGTCTCTTTCCATTTGCAGAGACGTGCTGCGTAC
AGCAGCAGCGGTACAGGGAGGGGGGTGTGTGTGTTGTGTGTTGTCATCCC
ATATTCTCTGGCACACTAGTCTGCACCTTGCGGTTCAAACTACAGGCTAG
GCCCATCGACGGGGTCACACAGGAGGAAGGTCAACACAGGAGGAGTTACC
CCCACCTTCCTTCTGCGGTACATGCGTGAGATTTTTTCTCGCGAGCAGGG
ATCCGCGGTCCCTACCCTCGTCGGCGAAGCCGAATCTGCTTTTTACTAAC
AGCATAGCCGCTTTCAAAGTAGCAAAGGAACACATTTACCGGGAATCGAA
CCCCCATTCCTCTGCATCTAGTGGTTAACGAGGGGACCACTAGTCCACCG
GGGCGACCAATGATGTGTACCTAGAGGACAAAAAGTAAGAATAAAGTGCA
ACAAGACCATTCCTGGTACTCGTAGTTTGGTCGATACGGAGGAGGGCTAG
AAACAGCGCTTTCGGTATCTCGACCAAGAAACTTTGTTGCTCCGGGCCAA
CACCGAAAACATGCGGTGGTGAGGAGAGTGCTGAACGTTGTTGACCAAAC
ACAGCACTCTGCAATCAAGTCACGTCGCTTTTTCCCCCATGCATTCCAAG
AATAGGCGCCTTTCCGGAACCCAATCCACCGGTCGAAAACATATACCCGA
ACATTCTGGAACGGTGGGCCCCGGGAGGAAACGCTGTATAAGTCGTGGAG
TCTTCTGCCGAACAGCTTGGGAGCCCGCTGTAACACCTCCGGATGCGGTC
CGGTCTTCTCGCCTCGCTTCCGTCACGGCATGAAAGATAGAGCTCTTCCG
TCTGTTCCACACGCGCATGAAAATCCCCAGATCTTGCCGTTTGGGAATCG
TGGTGCGCGTGTGCCAACAGACGAAGGGGTTGCTCTTGATGCCGTGACGG
AAGCGATAGGAAGACAGTAGGTACCGTACAGGAGATAGTGCAGCGGCCTC
TTCAGCTGTCCACCATGGAAGCTTCACGACCGGGCTTTACCTCTCTGGGC
ATCGTCCGAGGTGTGATGTTACGTTTGTGTGATTTTTCCACCGATGGGTT
GGGCCCCGCAACGGCGTCTGTTCTAGCCATGTTTGGGGAAAGCGGCGTGC
GATGTGCTGCTGCTTGCTGCTGCTTGCTGCTGCCGCGGCGCCGGCGCCTT
TGGCAATGAGAAACCTCAGGTTATATCGCACCAGGTACGAATTTTATGAG
TTTCACGTACAGCAAAAAAAACGAGCCTCACTCCGGAGAAAAAGTGCCAC
AAACCACGATTACGATTACACGAACAGCAGTAGAGCGAGAAGAGTCCAAC
GTTACACAGGACTCTTTTGGGAGTTGGGGATTAAAATAATGGGGGTGCCG
ATACTGAGAATACTGTTCTTTGCGGCCAAATCAAAACAGCACGTTCTACG
TTCCTGCGAAGAAGATCCGGAAGTGATTGTGGGTCATTTCCCGGTGACCC
AAGTACTCGTGATTTTGAGGAGACCTTGCAAGAACGGGTAGACTTTCACC
TTGTCGGGGGTTGTTCACCAACCAATGCCTGCCGAACCCCCCGATCCTGT
GCGCCCTTCAGCGCTCTCAACGAAAACTTGACCGTCCGTGTTGAGCATTT
TGTTTTTACATCGATGATCGGACAGAGGCACAAAATGCTGCAAAGGCACG
AGCTCCTCTCTAAAGTAGGTGTACTTATTTTCCTGTGCTGCTGCTCTGCT
GCTGTGCCGCCATGTGTTCAGACCTGGGGGTTGGTACCATCTGTCTTGAG
CAAGTAAAACAATCCCACGATGTGAAGTACGCAAAGAAGCCATGCAACGC
AGGACCTAAACCGGTCATGTTTCCCCCGCACCCAACGCAGGTGGCGTGGC
TGGTAGGTCTAGAGGCGTGTGATCCGAGCGTCCGCACAGCCCTTGGCGAG
ACTGCTCTGCATTTGTCGGCGGTTAGGGGAGACGAGAGGATGTGCCAAAC
GCTGCTCGACGGGGGGTGTCCTCCGGAGGCTGTGACGCGGGAGGGTAAAA
CGGCGCTTCATTTAGCGGCAGGGATGGGTAAGAGATGGATAAAAGGGAGA
TACATAGTACACTTGTGGCGTTTATACTACGGGGACGGGGGGTTAGCTCG
AGCCTCGACCCCCCCCCACCCCCTCCCCCTTTGGGAGTTATAGATGTGAT
GTGATTGTTATTTTTTCTTTGAGCTGAGTGGAATTTTTTGTGAACTTTGA
TCGTTGCTCCGATCGATCGATGTCCTCCTCGGTGTGTAGTTTCTGCGTTG
ATCCACGCGGCCCCCCCTCCCACTCCCCCCATGTTCTTTCCTCCGCAAAC
AGGCCACTTGCACGTGACAAGACTACTGGTCGTGGGCGCGGGACTGTCAC
CTTCCACCCCGGATGGAGGGGGGGCTTCCGCGGCGGCTCTCGCGCTCGCG
GGCAACCACAAGGCCGTGGTTCGATTGCTCCAAAAGAACTGCCCGGGAGT
TCCAATGGGCGTTCCCAAGAAGAGCAGCAGCAACACCAGCGGCTTTGACC
ACCTGACGAAGGGAAGGAAGGGGGGACGCGGGCAGCGGCGTTTGAGGGGG
GGAGGAGGCGTTAGCTTTGGCGGGGACGGGGGTGGCCGCGGCAAGGGGAG
CGGCGGTCGGAAGAGAGGCGACCTTAAGAGAGCGGAGGAGGCCGGGAGCC
GACTGCTAGAGGCCGCACGCGTCGGAGACACGATGGCAATGAGACGCGTG
CTGGCGAGGGGTGAGATCGACGTGGAGTGGGTCGGTAGCAGCAACGGCTG
GACGGCGGTCATGGAGGCCGCGGAGCATGGGTCCCTGGAGGGGGTCTGCT
ATTTGTTGGATATGGGGTGAGAGAGGAGGCTTGGCTCGATTGGACTGGAT
CCGTGGGAGGAAGGGAGGGAGATTTGAGATTTGAGGTTGCTTGTGGCTCT
ATGTGACCCCTTTTTCGCTGCTGTTGCTGCTGCATCATTTGGGTGCTTGT
AGTCGAGGGCAGTCATGGCTTTTGGACGAGACCATTGTCACAACGGTTGT
GGCGTCTGCTCGCACTCCACAGACGTAGTGTACGTCGTGTGTGTGTGTGT
TCGTGCACTAAGCGTCACTGTACGCACTTTCAGTACAAGTGCTTGGGCTA
TTATGGCGCTGCAGTAGCTCGTCTAGGTGTGTAACCTGTCGACATATGAT
ATTCCTGTACGTGTGCTACGCTCGCTTCGCTTTGATTCGGTCAGAGGACA
GGCTATCGTTCTGCTGTTTTTTATTTTTACACTTTTTGTGAAACCATCGT
GAATGTGTCCAAGCAGCTTGGCTCGCTTGAAGCGTACCTCAATTCCGTTA
GTCGCACTGCTGCTGTCCCGTCTGTGATATACTAACGTACCAGGTACACA
TAATCTTGTTTCGGATCAGCTTGACTTTTGCACTGCGTGCATACAGCAAT
CCTGAAAAACCTTACCTGACCCCCACCCAACAGATGAGTATGCCCCGTTC
ACCTACCCCCCACCACCCCCACCACCCCACACGCGCACATGCTGAGTATG
TAGAGCCGACTTGGAGCGCACGAACAAGAAGGGCCTTACTCCTCTGCAGC
TAGCCGTGCGCTCTGGGCACCTGGGGGTCACGGAGGAACTTTTGATTCGA
GGGGCCCGGCCTAACATCATCTCCAAGGCCGGCCTCTGCTTGCGCTGCTT
GGCGAGCTCTGCTGGCCACGGCTACCTTGCGGTGAGCGCGATCAATTCAT
GGTTGGCTCTTGACAAAAGCAGACAATAGTCGTTAAGGGCCCGCAGTTTT
CCTTACTGATCAACATTGGTGGCGCTGAATTCTGATTGGCCGAAAATCCT
CGGTAGGTCCCTGATTGTTGTTGTTGTTGTTGTTGTTGTTGTTGTTGTTG
TTGTTGTTGTTGTTGTTGTTGTTGTTGTTGTTGTTGTTGTTGTTGTTGTT
GTTGTTGTTGTTGTTGTTGTTGTTGTTGTTGTTGTTGTTGTTGTCCTTGT
TGTTGTTGTTGTTGTTGTTGTCGTCGTTGTCCTTGTTGTTGTCGTCGCTG
TTGTTTGCTTCGTGTTCGTAACCGCCTGTGTTACGTGCGGGGTAGCCATG
CAACAGGCTTGAACCTTTTTAAGCTGTCGTATCATAGAACAGCGCTGCTT
GTCATTGGATTTTTTCTTTGATCGTTCACACCCTCTTGAACAAGCTCCCT
TCCCCGCATTCGTACACGGTCGTGCGGAAACCCGACCAACCGACCCTTTT
TGCCGTTCACGCCAGGACTGGCTTTTCGCGATGGGGGTGGCTGATGGTGT
GGACGGGGGTTGTGCTTGCTCGGGTAGTGCTAAAGACCCTGGCGGAAATG
GCGGCGGAGGCGGTGCTGCTGCTGCTGCTGCTGCTGCTGCTGCATCCAGC
GGCAACGACGCCCGAACAACGCGGCAGCACTCGAGTGGAGCCGTCAGTGA
CGGGGCACCGCCAGATCCTGCCTTGACCAGCGAGGCTTCGATGGCGCTCA
CGGCGTGGCTCGCCAATCTCGGGCTCGGGGCGTACGCGGGTCAACTGGTT
TCGCAAGGTTTCGATACCTTGGAGGCCATGGGCACTGTGACGGAGCCGGA
CCTCGAGGCAATGGGGTTCAAGAAGGGACACTTGAGGCTGCTGCTGGCCC
GAGCACCGTCCGCTTCGGACATGTCTGGGAGCAACAACAACGGCGGCGGC
GGCGGGGTCCGCGATGGCATCGACTCTCGAATTAATGCTGAGGGTCCCGC
AGCTGCGATTTCGCGAAGCGGGTCGACGCCTTCCACGACCACCGCTGCCG
CCGCCGCCGCTGCTACACGCGACATTGGCGTTCTTGAAGGGATGGACAAC
CCTGTCGAGAGTGGAACGAGAGCTGCAGGGCACTTCGCGGCACGGCCGGC
AGACAATACGGAGTACCAGGAAGAGAACGGGGAGGAAGACGGGGAGGGCC
GATACTGCGACGCCTCGGTTTTACAGCCCTCCCGACCCCTGTCTCTAGGT
GGAGATGGCGAGAATAACGGCGGCAAAGGAGGAGGAGGAGGAGGAGGAGG
AGGAGGTGACGGGTTTAAGGAGCTGATGCCGGAAGAGGTGGAGATCGACC
ACGTTATCGGGGAGGGGTCCTTCGGGGTGGTCAGGCGGGCGCGGTGGCGA
GGGATGGACGTCGCCGTGAAGACGCTCAAGGACCGCACCGCATCCGCGGT
GGCGGCGGCGGCGGCGGCAGGAACAGGAGCGAGAGCGGGAGCGGGAGGGG
TAGACGGTGGTGCAACCGCCGGCGCGGGGGTGTCGGTGGTGGTCGGGCGC
GGTGTTGTCGACGATTTCACCGATGGCCAAGAGGACATGCGGCACGAGGC
TAGGATGCTGGCAAAAGGTGGGAGGGAGGGGGGATGGGTAGGTGGGTGGG
GTGGGTGGGTGGGTGGGTGGGTGCGTTAGTGGGGTCGGGTAGAACGATCT
ATTTTGGGATGTGTCTATTCCCGTGGCTGCAGCAACAGACGGGCTCGGTC
GCATTCTCTGATGTGATGCTCTCGTTCAACAAACGGACAGCTGAAGCCTC
AAGGGGGCATCATAACTCCTGAAGAGAAGAGAAGAGAGAATGAAGGAACG
CCGGGGTTGAACTCGAAAAATCATCCTGGGCACACGATTTTTTCCTACCT
CTAAGCGAGAGTCCTGGGCGGCACATCACCTGACTGCTGTCATACCCCCG
CACCCGTGGCGAACGAACGGACGCCTCTGTATTTGGAACGGGTGCTACGG
TACTACTACTCACTTGGCTCTACAGCAGCACCTTCAGCTATTTGCGTGAA
TACATGGGCGGTACCAGCAGGTCGTAACTTTGTGCCTTCTTTGCGAGTTC
GCGCTATTTTGTGATATCCCGAACCCCAAACATTATGTTAATTTCTGTCG
CCCCGTGGTCCCCCACCCCACACCCCCCCCCGAATTGTATTTAGTGTGCA
ATCACGTTCGGTGCCCGCAGTCAACATATTGGTCAACGTTGATGCCGGTA
TTCTGTTGCGGCTCGTCCCGTTTGTGTGCCATACATGACCCGAATCCGAA
AGACAGGATAGGTGTGGTTATATCACTCATAACTCATGAACGAATTGTAA
TACTCGAGCATAATACGACTTCCCTGTATTTTGTTTGGCTTTTCAAAAAT
AATACTGAGTGCGTCGTATGAGCTTTATTTATTACGACTTCGAGTGCCAT
AGGTTGCACTTTCTTCGAGTGTGTAGTCACAACTCTAATGTCTTACGTCC
TGAATCCCTCATAGCCCCAAACATACATGTTGACTGATACCTAACCCTAA
CCCAACCCTAACCCTACCCGGGCCCCCCCCCCCCCCCCCTTAATTTTGAT
TTTCAAGTGTGCAACCACAACTGCGTGGTGCAGTTCGTGGGTGTGCTGCT
GCGGCCGGTTCCGTCGGTGGTGACGATGTTTATGGAGAACGGATCCGTGG
AGGACATGCTGGTTTCGACTGACAGCCCGGCGACGAAGGATTTGGTGGTC
CGCATGGCGATCGAGGCGGCGAAGGGAGTGATTCACCTCCACAGGTACAG
CAGTGTGTGTGTGCGTGTGTTTATGTGTGCGTGTGCGTGGATGTGTTTGT
GTGTGAGTGAGAGTGTTTGTGTGTGTGCGCGTGCGCGTGCGTGTGAGTGT
TGATGCGTTTGTGAGTGCGTGTGCGCGTGTGTGTTGTTGTGTTTGTTTGT
GTTGCTATCTCGTATATTCTGGACGCCACCACCTCGTCCAATCTGGACAC
CACCTCATCCATTCTGGACACTAGTACACACCTTTCCGTATGTGTTGGGC
GCATCAGCCGGGGTCACAACAGACAGGAACATCAAATAGGAGGTAGCTCA
TCTCACCGTAGTGCAATTTTTTTTGCAGATTTTTGCAGACCTCTGGTTCA
TTTGATAACAAAGAGTTGGTCGAATTGATGCTTCATTATATATTATATGA
CGCAAAACGTTTTTTTAAGTCGCATACTTCGAAGTATATATGTATGTTTT
TTTTTCCCGTACATTCAAGGGGATCGGATCCCGAACGCGAACGAAGAGTG
TTTGTTTGCCTGACGACCATACGGACCCGATATATCGAACCCGTGTGTGT
GGTGGAACAGTGTTGACGTGTTTAACAGATAACGATAACTACTGCTGTAT
GGTGGTTATTATGCGGTCTTGTTTGCTTAGAATCGCAGCTGTAGTTGAAT
CATCATATGATATGATAGCACACAATTAGGCTAGCATCACCCCCCCCTTA
ACCTTTCCGGCTACATGTGTCCACCAAAAACATGATGTCGGATCTACTGG
GGACCACCTTGTTATGGCGGTTGCAGGGAGGGGGTAGTTCACCGCGACCT
CGCCTCTCGCAACCTTCTCCTGGACGACGGCTACCACGTCCGCATCTCCG
ACTTCGGCTTCTCGAGGGTGAAGCGCGAGTGCGCCAGTCGCGGCTACACG
CGCAGCGACATGGGGCCGATAAAGTGGACGTCTCCCGAGGCAATGCGAAA
AAGGTGAGTGAGAGAGAGAGGGGGAGAGAGAGAGGGAGAGGGAGGGGGAG
AGGGAGAGGGAGAGGGAGAGGGAGAGGAGGAAGAGAAAGAGAAAGAAAAA
GAAAAAGAAAAAGATAGAGAAAAAGATAAAGATAAAGATAAAGAAAAGAA
AGAAAAAGGAAAAGAAAAGGAAAAAGAGAAAGAGAAAGAGAAAGAGAAAG
AAAAAGAAAAAGAAAAAGAGAAAGAGAAAGAAAAAGAAAAGAAAGAAAAA
GGAAAAGAAAAGGAAAAAGAGAAAGAGAAAGAGAAAGAAAAAAGAAAAAG
AAAAAGAGGGGAAAGAGAAAGAGAGAGAGAGAGAGAGAGAGATTCATTCA
ATATCCTACTTCGCATGATGTTATCGTATAAACTGATAAAAACACAAAGT
GAGCGCGGCGGACGAAGGTATGATATGCAGATTTTTATTTTTTATTTTTT
TTTCTTTGAGAGTGTGTGCCTCTGTGCGTGGTGTCATATGCCATCTATTC
TTGGCACCAGGCGACGTTCACCTTTCGGTAAATAAATGCGGGGCAATCCA
GCCGTAGTCAAACAGGAAGAAGGTCAACAAAAGATTCGTACGAATGATGC
TTCGTTGTTTTTTTTTCTAGTATGATACACATACCCGTTGCATCTGAAAA
CCTTCAGCCGCCGATGAGATGATAATGGGCGTTTTTCGTTGCACTTTGTT
TGGACCACGCGGTCTCATGCCAGGTCTCGAACCCTACCGCTACCGATGAG
AAGATGATAATGGGCGTTTTTCGTTTCACTTTGTTTGCACCACGCGGTGT
CATGCCAGGCCTTGAACCCTACCGCTACGCACTTATTAGAAGACACGTAG
GAAAAAATATCAGTGCTACCATCACGGCACGTATACACCAGTCGATCAAT
GACGCAGCAGCTGCTCGAGCTCATTTTCGGCAGACGGATGGACGTTTTTC
GTGGGGGAGGGCAAGCATCCTGGAATCAGCCGTTGCGCTATATGATACCT
GTGTTTACTTCGCGCAAACATGTTAAACAGCTGTCATGTACTGCTGTACA
TGTTTTTTTTTTCTCATACTCCGAATTGAGAAAAAGAGGAAAAAACACTT
ATCGTACCATCAAGTTTTGTGTGTACGTCATACTCCGCGGGGAGTAAATG
GTCAAGTGTGGGGACTGGCTGCGGTACAGCAGCAGACGTGCCTGACGAAA
CTCTCTTTTCCTCTTTCTCTCTTTCTCTCTTGCTACTATTTGACGATCCG
ATTCAATTCGAAAGACGAAACAAAGATGCACGTTATTTCGTTGTTGCTGC
AACTGCTACTGCTGCTGCCGCTGTTGCTCTCGCTTTGGGTGGTGGGTGGT
GGTGGTGACAGCAGTGATAGGGTGATTTTAGGCGTCCCTTCGACATATGT
TGCCATTTTCGCACTCGAAAGGAAAACAAAAGTAACACGTCTCGTAATGT
GCCATTGTTGTTATTGTCGATAATTGTATGATATCATATACTGGTGACTG
GTAGGTGTTACTCTGAGGCCTCGGACGCCTTCTCGTTCGGAGTGGTTCTG
TACGAGATGTTTGCCAGAAGCCCGCCGTGGGAAGGTCACGAGAATCTCGA
CGTTGCCTTCCGGGTGTGCTCGGGGGAGAGGATGGCGGTGAGCAATGTCA
TGTAATTTCCTGCTAATTTCTCCTTTTTTCTTTCTTTTTTCTTCTTTTTT
TGCACAACGAGTCGTTTTCCCCCTTTTTCTTTTTGCAGAATAAAACTAGT
ACAAATTTGTTGGTGGCGATGATGGTGCAGATGGTGTTGGTCGCAATACC
TGCTTATCTTCGTCGGTAAGTGAAATAAAAAGGCTGGAGGTGAAGGGCAT
CGATCCCCCTACCTGTTCAATGCTAATGAACCGCTCTACCATTTGAGCTA
CACCCCCGACTTCGATGGCAGGCAGGGATATTTTGTGCACATGAACTCAG
AACAATTCCGTATCGACCTTCGAATTACTCAGAATTTCAGAATTTCTCAA
CACCCGGGTGAGACCTGAATCCACCGTTAAATCGTTGTAAGCCGGCCACC
AATAAGCGTTGGTGTCGGATAACGTTGATCCGGTGGTCACGAGATAGTAT
TGTTTTACCCCTCATGGCTGAACAGGCGCCGGTGGATTTCCCGGCTGCTG
TACCACGATGTGATACTGATGATGCTGCTGCTGCGAACGCGCTGTTACTC
TCAGCTATAGGGCTCGCACCCGACTTACTCCTACCCGGATATTCGGGTAC
CCGGAACCGAGTAGCCCCACCGGGTACCCGGTTCCAATTTTTTGAGTCGG
GTGCGACCCTGAGTCTTGCACCCGACGTGCTCCTACCCGAGTACCCGACC
TCGGGTACCTGGAACCGAGTAGCCCCACCGGGTGCCCGGTTCCAAGTTTG
AGCCCTACTCAGCTATCCGTCGTAGCTGGCCACAAAAGAATGTCCTGCTT
TTGGTCGTGTTGCCTCCTGCGCGCGTGATACCTTGTAACCGGTATGGGAT
ACTTCTGCGTGAACACCAGATACACGAGTACAACGTTGAAACATCGAACG
GACCCCTGCGGAACACAACAACAGCAGTACATACCATTTCTTCCACCGTC
GGCGCTGTTGGTGGCGGTGATGGTGTAGTTGGCATTGGATGCAATATGTA
CTTCGTTATCTTCGTCGGTACGTGAAACGAAAAGGTTGGAGGTGAAGGGC
ATCGATCCCCCTACCTGTTCAATGCTAATGAACCGCTCTACCATTTGAGC
TACACCCCCGACTTCGATGGCAGGTAGGGATATTTTGTGCATATGAACTC
AGAACGATTCCGTATCGACCTTCGAATTACTCAGAATTTCAGAATTTCTC
AACACCCGGGTGAGACCTGAATCCACCGTTAAATCGTTGTAAGCCGGCCA
CCAATAAGCATTGGTGTCGGATAACGTTGATCCGGTGGTCACGAGATAGT
ATTGTTTTACCCCTCATGGCTGAACAGGCGCCGGTGGATTTCACGGCTGC
TGTACCACGATGTGACACTGATGATGCTGCTGCTGCGAACGCGCTGTTAC
TCTCAGCTATAGGGCTCGCACCCGACTTACTCCTACCCGGGTACTCGGGT
ACCCGGAACCGAGTAGCCCCACCGGGTACCCGGTTCCAATTTTTTGAGTC
GGGTGCGACCCTGAGTCTTGCACCCGACTTGCTCCTACCCGAGTACCCGA
TTTCGGGTACCCGGAACCGAGTAGCCCCACCGGGTACCCGGTTTCAAGTT
TGAGCCCTACTCAGCTATCCATCGTAGCTGGCCACAAAAGAATGTCCTGC
TTTTGGTCGTGTTGCCTCCTGCGCGCGTGATATCTTGTAAGCGGTATGGG
ATTCTTTTTCGTGAACACCAGATACACGAGTACAACGTTAAAACATCGAA
CGGACCCTGCGGAACACAACAACAGCAGTACATACCATTTCTTCCACCGT
CGGCGCTGTTGGTGGCGGTGATGGTGCAGTTGGCATTGGATGCAATATAT
ACTTCGTTATCTTCGTCGGTACGTGAAACGAAAAGGGTGGAGGTGAAGGG
CATCGATCCCCCTACCTGTTCAATGCTAATGAACCGCTCTACCATTTGAG
CTACACCCCCGACTTCGATGGCAGGCAGGGATATTTTGTGCACATGAACT
CAGAACAATTCCGTATCGACCTTCGAATTACTCAGAATTTCAGAATTTCT
CAACACCCGGGTGAGACCTGAAACCGCCGTTAAATCGTTGTAAGCCGGCC
ACCAATAAGCGTTGGTGTCGGATAACGTTGATCCGGTGGTCACGAGATAG
TATTGTTTTACCCCTCATGGCTGAACAGGCGCCGGTGGATTTCCCGGCTG
CTGTACCACGATGTGACACTGATGATGCTGCTGCTGCGAACGCGCTGTTA
CTCTCAGCTATAGGGCTCGCACCCGACTTGCTCCTACCCGGGTATTCGGG
TACCCGGAACCGAGTAGCCCCACCGGGTACCCGGTTCCAATTTTTTGAGT
CGGGTGCGACCCTGAGTCTTGCACCCGACTTGCTCCTACCCGAGTACCCG
ACTTCGGGTACCCGGAACCGAGTAGCCCCACCGGGTACCCGGTTCCAAGT
TTGAGCCCTACTCAGCTATCCGTCGTAGCTGGCCACAAAAGAATGTCCTG
CTTTTGGTCGTGTTGCCTCCTGCGCGCGTGAACCTTGTAACCGGTATGGA
TACTTTTTCGTGAACACCAGATGCACGAGTACAACGTTGAAACATCGAAC
GGACCCCTGCGGAACACAACAACAGCAGTGCATACCATTTCTTCCACCGT
CGGCGCTGTTGGTGGCGGTGATGGTGCAGTTGGCATTGGATGCAATATAT
ACTTCGTTATCTTCGTCGGTACGTGAAACGAAAAGGTTGGAGGTGAAGGG
CATCGATCCCCCTACCTGTTTAATGCTAATGAACCGCTCTACCATTTGAG
CTACACCCCCGACTTCGATGGCAGGCAGGGATATTTTGTGCATATGAACT
CAGAACGATTCCGTATCGACCTTCGAATTACTCAGAATTTCAGAATTTCT
CGGCACGCAGGTGAGACCTGAAACCGCCGTTAAATCGTTGTGAGCCGGCC
ACCAATAAGCATTGGTGTCGGATAACGTTGATCCGGTGGTCACGAGATAG
TATTGTTTTACCGCTCATGGCTGAACAGGCGCCGGTGGATTTCACGGCTG
TTGTACCACGATGTGACACTGATGGTGCTGCTGCTGCGAACGCGCTGTTA
CTCTCAGCTATAGGGCTCGCACCCGACTTACTCCTACCCGGGTATTCGGG
TACCCGGAACCGAGTAGCCCCACCGGGTACCCGGTTCCAATTTTTTGGGT
CTGGTGCGACCCTGAGTCTTGCACCCGACTTGCTCCTACCCGAGTACCCG
ACCTCGGGTACCTGGAACCGAGTAGCCCCACCGGGTACCCGGTTTCAAGT
TTGAGCCCTACTCAGCTATCCATCGTAGCCGGCCACAAAAGAATGTCCTG
CTTTTGGTCGTGTTGCCTTCTGCGCGCGTGATACCTTGTAACCGGTATGG
ATACTTTTTCGTGAACACCAGATACACGAGTACAACGTTGAAACATCGAA
CGGACCCCTGCGGAACACAACAACAGCAGTACATACCATTTCTTCCACCG
TCGGCGCTGTTGGTGGCGGTGATGATGCAGTTGGTGTTTGTTGATTGCAA
TACTGTACCTGGTTGTCTTCGTCGGCAAGTGAAACTAAAAAGATTGGAGG
CGAAGGGCATCGATCCCCCTACCTGTTCAATGCTAATGAACCGCTCTACC
ATTTGAGCTACACCCCCGACTTCGATGACAGGTGAAGAAAGTGTGTGACT
ATGTACTCATGATGACTACTCATGACGACTACTCAGGACGACCTTCGAAT
TTCTCAAAAATTTGAAAATATCTCAACAACCGGGTGACCTGAAACCACCA
TTAGGCTACATCTTATGTGTCAGAACTGTTCATATGTTTTTATTTTATTC
GGCTGTTTTGAACATTGGCCCAAAACGGAGCATCTCATGTGATCGGAAAC
AGCCATTTTAGACAGCGACGTTTCGAATTGATTTTTCCGATAGCCCCAAA
CTATCAGAAAAAGTATTTTTGCTGACAGCCTGCAGCTATCGGAAACCTGG
TATGTTTTTTGGGTCAATGCGTGTGAACAACCCAAGTTACAGTCAGCCTT
GCATGATGAGATGACCTGAAAACTTTGTTTTGGTAACCCATCGATAGCTC
GCGGCCTCTGATGACCGACGCAGGAGCATGACCATACATACACCTCACGG
CCGATGGCTTTAGCATTGCTGTGGGTTATTTCCTTCGAGAGCGATGGACC
AAAAACCAAAATGGATCGGACGACAGCTGGCAGCTAGCTGATGCTGCTGT
TGCTGTCCTCTGAACTCTTCAACCAGCAGCAGTTTTTTTTGCCGCCACAC
CAGTTTTGTTTTTTGTTGATTGCTCTCGAACGAATGAAGTCACAGCAATG
GTAAAGCCATGCCTCGCAAGCTGTGAACATGCTCTCTCTCCTCCGGTGGT
TCAGCGAGGCATCGATAGGCTGGCGTAGAAGAATTGCAGGAATTGATGGC
CAGTGAAAAAAAGAAGAAATCACCACCTCCACCTGCTGGTGAGCTGCATC
GATTTTTTTTCGTTTCTTCACACGTCATCGATGATGCCTGCAACCTTTTT
TCGCTAGTCTATCGATACCTCGCGGTCTTATATAACCGCAGGAGAAGAAA
TATCATATACCCAAGCTCGATGTCCTTACCGTTACTGTGGCTTCATTCGT
TCGAGAGTGGTGGACGAAAGAGCGAACCGGTTACAGCAGTGCAAAATGAA
AGTCAAAAGTTGTCTACTTTTGAACCATCAAACCGCCCCAGCCGAACAGG
AGAGACTATTTTTTCAGAAGTTAAAAAAAATGAAACCACCTGCTGTTCGG
TTTTGGCACGTAATATCGGGTCCTTCAACAGAGCCTGTTGGAAACATTAT
TATTCGAACGGCCCAAAAAGAATGACGACGTCTTTGACGCGTAAGATATA
GCCTTATACCGTTGTAAGCCGGCTACCAAGAAGCATCGGCGTCGGATAAC
GTTGATCCGGTGGTCACAAGATAGTTCTGTTTTACCGCTCAAGGCTGAAC
AGGCGCCGGTGGATTTCACGGCTGTTGTACCACGATGTGACACTGAGGAT
ACTGCTGCTGCGAACGCGCTGTTACTCTCAGCTATAGGGCTCGCACCCGA
CTTGCTCCTACCCGGGTATTCGGGTACCCTGAACCGAGTAGCCCCACCGG
GTACCCGGTTCCAGTTTTTTGAGTCGGGTTCGAGACTCGAGACCCGACTT
GCTCCTACCCCGGCACCCGACCTCGGGTACCCGGAACCGAGTAGCCCCAC
CGGGTACCCGGTTCCAATTTTTTGAGTCGGGTGCGAGCCCTACCCAGCTA
TCCATCGTAGCTGGCCACAAAAGAATGTCCTGCTTTTGGTCGTGTTGCCT
TCTGCTCGCGTGATACCTTGTAAGCGGTATGGGATTCTTTTTCGTGAACA
CCAGATACACAAGTACAACGTTGAAACATCGAACGGACCCCTGCAGCACA
CAACAACAGCAGTACATAAAACCAGTACCATATTTCTTCTACCGTTGGCG
CTGTTGGTGGCGGTGATGGCAGAGTTTGTGTTGGTTGCAACACCTTGTTG
TCTTCGTCGGTACGTGAAACAAAAAAGGTTGGAGGTGAAGGGCATCGATC
GATCCCCCTACCTGTTCAATGCTAATGAACCGCTCTACCATTTGAGCTAC
ACCCCCGACTTCAATGACAGGTAGGGATATTTTGTGCCTATGTACTCAGG
ACGATTCCGTATCGACCTTCGAATCACTCAGAGTTCCAGAATTTCTCAAC
ACCCGGGTGAGACCTGAATCCACCGTTATACCGTTGTAAGCCGGCCGCCA
ATAAGCATTGGTGTCGGATAACGTTGATCCGGTGGTCACGCGATAGTTCT
GTTTTACCGCTCAAGGCTGAACAGGCGCCGGTGGATTTCACGGCTGTTGT
ACCACGATGTGACACTGATGATGCTGCTGCTGCGAACGCGCTGTTACTCT
CAGCTATAGGGCTCGCACCCGACTTCCTCCTACCCGGGTATTCGGGTACT
GTACCCGGAACCGAGTAGCCCCACCGGGTACCCGGTTCCAATTTTTTGGG
TCTGGTGCGACCCTGAGTCTCGCACCCAACTTGCTCCTACCCCGGTACCC
GACCTCGGGTACCCGGAACCGAGTAGCCCCACCGGAAACCCGGTTCCAAT
TTTTTGAGTCGGGTGCGAGCCCTATGATACTCAGCTATCCATCGTAGCTG
GCCACAAAAGAATGTCTTGCTTTTGGTTGTATTGCCTTCTGCGCGCGTGA
TACCTTGTAACCGGTATGGGATACTTCTGCGTGAACACCGGATAACGAGT
ATAACGTTGAAAACATCGAACGGACCTCTGCGGAACACAACAACAGCAGC
ATACCATATTTCTTCTACCGTCGGCGCTGTTGGTGGCGGTAATGGCGGAG
TTGGTGTTGGTTGCAATACCTGGTTGTCTTCGTCGGTAAGTGAAACGAAA
AAGGTTGGAGGTGAAGGGCATCGATCCCCCTACCTGTTCAATGCTAATGA
ACCGCTCTACCATTTGAGATACACCCCCTACTTCGACGGTAATTGAGGAA
AGTGTGCGCCTATGTACTCAGGACGATTCCTTATCGACCGTCGAATTTCT
CAACACCTGGGTGACCTTAATCTACCATGATATCGTTGTGAGCCGGCCAC
CAATAAGCATTGGTGTCGGATAACGTTGATCCGGTGGTCACGCGGTAGTA
CTGTTTCACCGCTCAAGACTGAACAGGCGCCGGTGGATTTCACGGCTGCT
GTATGATACGATGTGACACTGATGATGCTGCTGCTCCGAACGCGCTGTTA
CTCTCAGCTATGTATAGACCTCTTACCCGACCTGCTCCTACCCGAGTACC
CGACCTCGGGTATCCGAAACCGAGTAGCCCCACCGGGTACCCGGTTCCGG
TTTTATGAGTCGGGTGCGAACCCTACTCAACTATCAATCGTAGCCGGCCA
CAAATGAATGTCCTGTTTTTGGTTGTGTTGCCTTCTGCGCGCGGTCCCCA
TTGCGCTACTTGAACTGTGCAACAGATTGTCTTGTCTGGAGGCATTGAAC
GGCGTGTTTATACGGTAAGGTCACAGTCTCGTCGGAAGTGCGACGATATC
GTACAACAAATAATACTCCACGCGCCTCTCGGTATCTGAACGGATTCGTG
TCTGCAAAAAATATGTAGCGGCGCCATGTAGCGCGGTGATTGATGCCTTG
ATGCCTTGCATACAACCCCGCAGCAGCCATTACTGCTATTGTCAGTCCAT
GCAAATACATCAGGCTCCTGCTCACAACGATCAAACTCAGCAAGTGGAAA
ACCTGATGTCCTGTCCAGAAGAAATTAAGCACTGCAGGCACTTGGTACAA
CATACGCGAACACAACCGACATCCGCTAGCACAAGCCAGCAGCAACGGAA
AAACGCCTCGGGTAAAGCTTTCAACTCCCCATGTTGCACCGACGTGCGAG
GGAACCCACCTAGAAAACATCCACCCGCAGCCCCGCCGTCTACATGCCCC
ACGAGTCATGATGGCGGGTGGCATGCCCAAAGCACCACACGCGCGCCGAC
GGCGTTGACGACAAATACGGCTTACGGAGAAGCGTTCAACACCGGGTATG
GTAAAGAGAGAAAACTTTGCACGCGTTACGTAATGTACACACAGCAGTAG
CAAAAAGTGTAGTTGTAGGAAAGCGGCGTACGCTGTCGGTGGCGTCACCG
ACGAACACAGAGTGGACACGCAGAAAGTACGACACATGCCGCTGCTGCGT
TAGATCGTTTGTGAACACAGGAGAACGGGTACGCACATGCAACGGTTGCA
GGCACAGTTTATGTTTCACCGAAAGGACCAAGTCGAAACAACACGGCATC
ATGGCGCGTGATGCTTTGTGGCCGGTAAGGAATATTTTTTTCGTAAACAC
CAGATACACGAGTGCACCGTTGAAACGTCGAACGGAGCTCTGCGAAGCAC
AACAGCAGTAGTAAACTGTAACGCAATGCTCTTGTTGAATAGATTCTGAA
CGAAAGTACACGAAAGAAAAATGTGACTATGACACTGTGCCGAAAGGACC
GTGCCGGTATAGCACTACGTAGAACAGCAGCTGGGATAGTCGGCAAGCAA
TGGACATGGTAGCGCCAAGCGGTCGATCCACCGGAAAAACTTTTTGACCC
CGTCCATGATTCGAGGACCGCCTTCGCAGGAAAATTAAGTTAAGTAGGAA
CTAGAGAGGGGGGATTACGCAACCCTGGCCCTAACCCTAACCCCAACCCC
GAACCCCCCACTAATTTCAACGAAACTTAATTTTTTTCAAACCCTGCGAA
GGCTACTGTGATTCGAACGATTTACCACTGCTGTAAGTGACCCAACTGCT
GTCTGAATGCCCATCGACAGCAAATCACGTTGTTGCTACAACCGGCAAGG
GTCCTAGATCTAGGAATACCTTACACTGCTATTCGTCGAGCAGTGAGTCT
CGGAAACACTAGCAGGCGGACCGAGGCGTACTGTGATACACGAAGTAGGT
TACTTTGTGGTCCCATGCCCCCCCACCAACCTACCCGAAAACGCTGCACA
AGTACGGCTACTTCTTGTAGATCGGAATCTCCTGATCATAATTGGCGTTT
TTTTATCTTGGGACATTTGGAGGCGATCTCATAGATCAGAAAACCCTTTT
TTTTTTATCTAAACTTTTCTGATAACTTTTTCCGATCGATCAAATCGATC
AGAAAAAAAACGTTTTTTTTCTGATCGATTCGGTCGATCAGAAATCTTCT
ATTGGAAAAGTTTTGGCACTCTCTCACCCGGGCCTGTGACGATGAGTCGG
GTGTTGAAAAACTATTTTTGTAAGCTCATCGATGCCTCGCGGCCTGAGAT
GACCAACGGAGGAGAGGTACTAGACACACAGCTCACCGGCGATGGCTCTC
TGTTGTTGTCGTGGGTTGATTCGTTCGAGAGCGATGGATGAAACACAAAA
ATGTGGCATGGCGGAGAGCTGGTAGATAGATGTGTACGGAATTCTCCAAC
GCAGGAGCCGCAGCAGCAGCAAGCAGGAAGCAGCAAGCAAGGTATTTTGC
GCCGGTACACCAGTCAGTTTGGCTTTTTTTCCATTACTCTCGAACCAATT
GAGCCACAGCAATACCGAGGCCATCGCCCGTGAGCCATGTGTCTGGTCCT
TCTCCTCCGCTGGTTGTTTGTCTGAGGCCGGAAAGGCATCACTAGCTAGC
AACAGCAGCGTTGCAGCATCGATGAGTTGTGAACATTTTGAGAAAGAACA
GCCGTTGGTGGAGGGAGTCCAGACAAACAGACAGACAGACAGACAGACAG
ACAGACAGACAGACAGACAGACGACGGTGGTTCCTGCTTTTTTCACAAGT
GAACGATTTCTGCAACGCTTCCGTTGCTAGCCTATTGATGCCTCGCGGCC
CCAGATGACCAGCGGAGGAGAAGGGCCAGACACATAGCTCACGGGCGGTG
GCTTTGGTATTGCTGTGGCTCCATTGGTTCGAGAGTGATGGGCGAAAAAC
CAAACTGTTGTACCGGCTCAAAATACCTTGCTGCTGCTGCGGGCTTTCTT
GTATTTTCCTTTTTTTTTCACACGTCATCGATGCCAGCAAACGTTTTTTG
TGAGCCTGTCTATAACTCGCGGCTTCGAACAACCATCGGAGGAGCACGAC
CATACATACAGCTCACGGGGCATGGCTTTGTTATTGCTGTGGCTTGATTA
CTTCGAGAGTGGTCAACAAATACGCTACAGCCTGCTGACGCAATGATGTG
AACCGTCTACCCTCTGTCAAACATTTGAACAGCCGCAGAAGGGAGATTAT
GTATTTTCGGAAGATATACTTGTATAAAAAAATAAAAAAATAAATCACCC
ATGACAAAAAATTCAATCATCTGCGGTTCCTTGTAAAAAGTGGTGCTTCC
AAAGATCTTGTCGGAATTGTTCTTTTTGAATAAGTCGCATTCTGATGATG
ATGGCGTTTCCTATGGCGTTTCCCATCTACAGGAAGTAGCCCAACACTTC
AAAATATATACTCCGTACTTGAGTATATGGTTTCACTGTCCGACTCGATG
TGTATACTGTATCCATTCCGTGTCCAACCAAACACGACTGAGAACGCCCA
GGACGAGCAATAAAATAGGCCTCAGATTCTGAACATATGATGTAAAAAAG
GTGTCGAACAAGGCGATGATCAAGTTTGTCCTGTGGAGCCTGATAACCTC
AGGGGAGATGCAACGATGCATCAGCTGATGAGTCAAAGAAACACCAAGTG
TGTGTCGATGTAAATATTAAACATTTTATTCTTTGTGTTTGTTGCGGAAT
CTACTCCAGATCCTCGTCGTCTGGAGAGAGGCGAACACATCGATGAGTTC
GCAAGAAAATGAAAAATATTAATGCATCGTAGTGCCAGGTTTTTCGATAT
CGATGATCAGAAAAACGAAAAAAGAGGTAGGTGTAATATACTCCGGAGTA
ATACAACACGTGAAACGGATCGATTCTACGAAGTGGAACAAGAAAAATAA
ATGGAGGTGAAGGGCATCGATCCCCCTACCTGTTCAATGCTAATGAACCG
CTCTACCATTTGAGCTACACCCCCGTTTTGATGTATAGTACGCGAACTTT
TGTGTATTTAATATCACCACCATTCCATGCCCACCTTCGAGTTTTTGGTG
TTTATTTGTTGAACGTCGCACGGCCCCGGGTCGTGTAAGGATGTTGAAGG
CGTACACCCTTTGATGTGTGGATTCTTCGCTATGGAACGCGGATGCTGTG
AACGTTGTTACTCTCACAGCTTGTAGGCGTTATTATGATATGTATATACA
GTATGTATGTACTACAACGAGAGTGTGCATGCAATGTTGGGGAGCCGGTA
GATTCCACTCGCGGCAGCTGCTTCTGCTTCTGCTTCTGCTTCTGCTGCAC
CAGGCACGTAGTGTTTATGGTCTACCCACGTATAGTTTTTCTCCGCTCGT
CGTCCTTGCGTGCGTGAATAATAGTCTTGTCTGTTTGCTCTGGCGCCCTC
TCGCTCTGAGTTTTTCTGCTTGCTTGCCTTCGAAACAAATATCATCATGC
TGGCCGGTTTGCCTCCTGTACTGTACCGCACCGCAGCCTAACGTGCCTCA
CCGTGCCTCACCGTGCCTCACCGCACCTCACCGTACCGCACCGCACCATA
TAGCACCGTACAGAATCACACCGGACCGTACCGTATCGTAGATTACCGTA
CCTTACCGTGTTGTATCGTGTCGCATCGTACCTGACCTTCCGTTACAATA
CCGTGTACACTACCGTGCTGCTGTCCCGCCCTGCGTTGCCCTGTCCAACG
CTGTTCTCTGGTGTCCTGCGGTGTCCTGTGGTGTCGTATGCCTGCAAACC
CCAAATTTTTACGAAGGTTCCGCCACGCGTAGACCCGCCAATCGCTTGCC
TCATGAACAAGTGCTGGGACGGAAACTCGCGCCTGCGCCCGGACTTCGCG
TCGATTCTCACGGCGCTCACGATGTTCGCGGGGGATCAGAAGAATAACCA
GGCGGGCGAGGAGGGGACGGGTGCGGCGGCACTCGTCGCTGCCGCTCCTT
CTCCGCCGCCGCCCCCGCCCCGGAGCAGCAGCAAGAAGTCCGCGGCGGCG
GTAAAGACCGCCAGGGCGAAAGCCGAGGCAGCCGCGCTGGCGAAGGCGGC
CGTCGCAGAGCTGAGGCGCCGCAGGAGCGCTACTCTGTCGGCGGCGGCGG
CCGGGATGCAGCGGCTAGATTATGATGAGGCAGGCGGCGGCGGTAACAGC
GGTAGTGCTGGTGGTGCGGCGGAGGCGCCGGCGGAAATGGTGATGGCGGT
GACCGCGCCTCACCAGCAGCAGCAGGAGGAGCAACGGCGACGAACAGATG
GAAGCAGCAGTAGCACGGCCACGGCCCTGTTGCCGTGGGCCCCGTTGGCC
GGGAGGTACCGACGTAGTCCCGTGCCCTCGTTACAGCGCGCCGCTATCGC
TACCGCTGCTGCCGCTACCGCTGCTGCCGCTGCTGCCGCTGCGTCTTCTC
CCGTTTCTTCGGACGCTCGAGGCGTGCCAAGCGCCGACGAGGGGCACATC
GCGCCCACGGCAATGGGAACGGCAACAACGGCAACGTCAACGGCGGCGGC
GGCGGCGGCGGCGGTAAGTGCGGCAACCGTCGACGAGACAATGCCGCCGG
GGCACAGCGGCAGCAGCAGCACCACTAGCAGCACCACTAGCAGCGGAAGC
ATTGGCAATAGTACATCATCGCGGTTGCCAAGGCAAGGGAGCAGCGACCG
AGAAGCAGCGGCCGGGCGAGGCGGCGGCGGCGGAGGAGGAGGAGGAGGAG
GAAGGCGAGAAAGGGGAAGGGGTAGGGGTAGGGTAGAAGGACGAGGACGA
ACGGGGCCCCGGAACCACGACGGCCGCAGCTGGGGAGAGGGGCTCTTCGA
GGAACGAGGTCTGCCACTGCCAGCGGGCGGGGAAGGTTTCAGCTCTCGAG
AGTCTGGGCGCGCAGGGGGCGGGGGCGGGGGCGGAGCCCCCCCCCATCCG
CATCGTGGCGAGCCGAGACCACCTCTGTCGAGGCAATTGTCTGGCCGAGG
AGGGGGGCAAAGGGTGGGCGAGAAATGAGAAGGGCTTGGGGGCCACTTTA
TTGAGCCAGGTAGACACACACGGCATCATACGGAGGAACACACAGGAGAA
TCAAGGAAAAAACGGTGTCTTCGGACGTGTGATACTGCAGTGACAGTGGT
GATGAGAGGCGGTATCGTCTCTCTCACGATTTTGTTTGTGGTTGGTCGGT
GTTGAAGAAACCCGATACACTTTGTGTGTCTGGTGATTATTCTACGTACG
TGCATCTTAGTTGAGGGTATTTATCTTGTGTTTGTGTTGTTGTTTTTGTT
GTTGTTGTTGTGGCTGTTTCGTGGTGATTTTTATAGAGGTCTCGTTACGG
TCCCTGTACTTGCTGCTTGGAGCTGGAGCTGAGTTGGGGCTCGAAAGTCA
ATGAATAACCTTTGTGGCAACGGTTGTTCGGCCAGTGGCAGCCACCACCG
TGTCAGTTGCGGCGGTGTGCACCACACCCCACCCCCAGGATTGGGGTTCA
AAGCTCCTCGTCTCCACTTCAGGACGGGTGCCGGTGCCAGAAAGGGTGCG
GTTGGGGTAAGAGTTATATCATCGTTAGCTTCCCGAAAACTTCAACTCGC
CATTCGGCAGAGGAGCATCCCACATCTGTGTTGCGGAGTCGAGCTTTGAA
ACCCGGCTCACGGGGGTTCAATGGTCGTAGTTTTCATGTATTAGTGCGGT
GTGTCTCCCTCATCAAGTAGCGGTG back to topCoding sequence (CDS) from alignment at P-littoralis_Contig8:52046..75720- >mRNA_P-littoralis_Contig8.5.6 ID=mRNA_P-littoralis_Contig8.5.6|Name=mRNA_P-littoralis_Contig8.5.6|organism=Pylaiella littoralis U1_48|type=CDS|length=3867bp|location=Sequence derived from alignment at P-littoralis_Contig8:52046..75720- (Pylaiella littoralis U1_48) ATGGTCAAGGACTCGGGGAAGTGGTTTCCTCTCCATAGTGCTCTTATTTT CGGCGACCTCGCAGCTGCCAAGGAATTGATCGATAAGGGGGCCAATGAGC GCGAGATGCTCACCCGGTCCAACGGAAAGGGTTGGAGAGCGGTACACTTC GCGTGCCACTCCGGCGACAACAATTCAGTGGCGTGGCTGGTAGGTCTAGA GGCGTGTGATCCGAGCGTCCGCACAGCCCTTGGCGAGACTGCTCTGCATT TGTCGGCGGTTAGGGGAGACGAGAGGATGTGCCAAACGCTGCTCGACGGG GGGTGTCCTCCGGAGGCTGTGACGCGGGAGGGTAAAACGGCGCTTCATTT AGCGGCAGGGATGGGCCACTTGCACGTGACAAGACTACTGGTCGTGGGCG CGGGACTGTCACCTTCCACCCCGGATGGAGGGGGGGCTTCCGCGGCGGCT CTCGCGCTCGCGGGCAACCACAAGGCCGTGGTTCGATTGCTCCAAAAGAA CTGCCCGGGAGTTCCAATGGGCGTTCCCAAGAAGAGCAGCAGCAACACCA GCGGCTTTGACCACCTGACGAAGGGAAGGAAGGGGGGACGCGGGCAGCGG CGTTTGAGGGGGGGAGGAGGCGTTAGCTTTGGCGGGGACGGGGGTGGCCG CGGCAAGGGGAGCGGCGGTCGGAAGAGAGGCGACCTTAAGAGAGCGGAGG AGGCCGGGAGCCGACTGCTAGAGGCCGCACGCGTCGGAGACACGATGGCA ATGAGACGCGTGCTGGCGAGGGGTGAGATCGACGTGGAGTGGGTCGGTAG CAGCAACGGCTGGACGGCGGTCATGGAGGCCGCGGAGCATGGGTCCCTGG AGGGGGTCTGCTATTTGTTGGATATGGGAGCCGACTTGGAGCGCACGAAC AAGAAGGGCCTTACTCCTCTGCAGCTAGCCGTGCGCTCTGGGCACCTGGG GGTCACGGAGGAACTTTTGATTCGAGGGGCCCGGCCTAACATCATCTCCA AGGCCGGCCTCTGCTTGCGCTGCTTGGCGAGCTCTGCTGGCCACGGCTAC CTTGCGGACTGGCTTTTCGCGATGGGGGTGGCTGATGGTGTGGACGGGGG TTGTGCTTGCTCGGGTAGTGCTAAAGACCCTGGCGGAAATGGCGGCGGAG GCGGTGCTGCTGCTGCTGCTGCTGCTGCTGCTGCATCCAGCGGCAACGAC GCCCGAACAACGCGGCAGCACTCGAGTGGAGCCGTCAGTGACGGGGCACC GCCAGATCCTGCCTTGACCAGCGAGGCTTCGATGGCGCTCACGGCGTGGC TCGCCAATCTCGGGCTCGGGGCGTACGCGGGTCAACTGGTTTCGCAAGGT TTCGATACCTTGGAGGCCATGGGCACTGTGACGGAGCCGGACCTCGAGGC AATGGGGTTCAAGAAGGGACACTTGAGGCTGCTGCTGGCCCGAGCACCGT CCGCTTCGGACATGTCTGGGAGCAACAACAACGGCGGCGGCGGCGGGGTC CGCGATGGCATCGACTCTCGAATTAATGCTGAGGGTCCCGCAGCTGCGAT TTCGCGAAGCGGGTCGACGCCTTCCACGACCACCGCTGCCGCCGCCGCCG CTGCTACACGCGACATTGGCGTTCTTGAAGGGATGGACAACCCTGTCGAG AGTGGAACGAGAGCTGCAGGGCACTTCGCGGCACGGCCGGCAGACAATAC GGAGTACCAGGAAGAGAACGGGGAGGAAGACGGGGAGGGCCGATACTGCG ACGCCTCGGTTTTACAGCCCTCCCGACCCCTGTCTCTAGGTGGAGATGGC GAGAATAACGGCGGCAAAGGAGGAGGAGGAGGAGGAGGAGGAGGAGGTGA CGGGTTTAAGGAGCTGATGCCGGAAGAGGTGGAGATCGACCACGTTATCG GGGAGGGGTCCTTCGGGGTGGTCAGGCGGGCGCGGTGGCGAGGGATGGAC GTCGCCGTGAAGACGCTCAAGGACCGCACCGCATCCGCGGTGGCGGCGGC GGCGGCGGCAGGAACAGGAGCGAGAGCGGGAGCGGGAGGGGTAGACGGTG GTGCAACCGCCGGCGCGGGGGTGTCGGTGGTGGTCGGGCGCGGTGTTGTC GACGATTTCACCGATGGCCAAGAGGACATGCGGCACGAGGCTAGGATGCT GGCAAAAGTGTGCAACCACAACTGCGTGGTGCAGTTCGTGGGTGTGCTGC TGCGGCCGGTTCCGTCGGTGGTGACGATGTTTATGGAGAACGGATCCGTG GAGGACATGCTGGTTTCGACTGACAGCCCGGCGACGAAGGATTTGGTGGT CCGCATGGCGATCGAGGCGGCGAAGGGAGTGATTCACCTCCACAGGGAGG GGGTAGTTCACCGCGACCTCGCCTCTCGCAACCTTCTCCTGGACGACGGC TACCACGTCCGCATCTCCGACTTCGGCTTCTCGAGGGTGAAGCGCGAGTG CGCCAGTCGCGGCTACACGCGCAGCGACATGGGGCCGATAAAGTGGACGT CTCCCGAGGCAATGCGAAAAAGGTGTTACTCTGAGGCCTCGGACGCCTTC TCGTTCGGAGTGGTTCTGTACGAGATGTTTGCCAGAAGCCCGCCGTGGGA AGGTCACGAGAATCTCGACGTTGCCTTCCGGGTGTGCTCGGGGGAGAGGA TGGCGGTTCCGCCACGCGTAGACCCGCCAATCGCTTGCCTCATGAACAAG TGCTGGGACGGAAACTCGCGCCTGCGCCCGGACTTCGCGTCGATTCTCAC GGCGCTCACGATGTTCGCGGGGGATCAGAAGAATAACCAGGCGGGCGAGG AGGGGACGGGTGCGGCGGCACTCGTCGCTGCCGCTCCTTCTCCGCCGCCG CCCCCGCCCCGGAGCAGCAGCAAGAAGTCCGCGGCGGCGGTAAAGACCGC CAGGGCGAAAGCCGAGGCAGCCGCGCTGGCGAAGGCGGCCGTCGCAGAGC TGAGGCGCCGCAGGAGCGCTACTCTGTCGGCGGCGGCGGCCGGGATGCAG CGGCTAGATTATGATGAGGCAGGCGGCGGCGGTAACAGCGGTAGTGCTGG TGGTGCGGCGGAGGCGCCGGCGGAAATGGTGATGGCGGTGACCGCGCCTC ACCAGCAGCAGCAGGAGGAGCAACGGCGACGAACAGATGGAAGCAGCAGT AGCACGGCCACGGCCCTGTTGCCGTGGGCCCCGTTGGCCGGGAGGTACCG ACGTAGTCCCGTGCCCTCGTTACAGCGCGCCGCTATCGCTACCGCTGCTG CCGCTACCGCTGCTGCCGCTGCTGCCGCTGCGTCTTCTCCCGTTTCTTCG GACGCTCGAGGCGTGCCAAGCGCCGACGAGGGGCACATCGCGCCCACGGC AATGGGAACGGCAACAACGGCAACGTCAACGGCGGCGGCGGCGGCGGCGG CGGTAAGTGCGGCAACCGTCGACGAGACAATGCCGCCGGGGCACAGCGGC AGCAGCAGCACCACTAGCAGCACCACTAGCAGCGGAAGCATTGGCAATAG TACATCATCGCGGTTGCCAAGGCAAGGGAGCAGCGACCGAGAAGCAGCGG CCGGGCGAGGCGGCGGCGGCGGAGGAGGAGGAGGAGGAGGAAGGCGAGAA AGGGGAAGGGGTAGGGGTAGGGTAGAAGGACGAGGACGAACGGGGCCCCG GAACCACGACGGCCGCAGCTGGGGAGAGGGGCTCTTCGAGGAACGAGGTC TGCCACTGCCAGCGGGCGGGGAAGGTTTCAGCTCTCGAGAGTCTGGGCGC GCAGGGGGCGGGGGCGGGGGCGGAGCCCCCCCCCATCCGCATCGTGGCGA GCCGAGACCACCTCTGTCGAGGCAATTGTCTGGCCGAGGAGGGGGGCAAA GGGTGGGCGAGAAATGA back to top
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