Homology
BLAST of mRNA_P-fluviatile_contig22.5012.1 vs. uniprot
Match:
A0A6H5KZW9_9PHAE (XRN_N domain-containing protein n=2 Tax=Ectocarpus TaxID=2879 RepID=A0A6H5KZW9_9PHAE)
HSP 1 Score: 846 bits (2186), Expect = 2.420e-294
Identity = 464/811 (57.21%), Postives = 570/811 (70.28%), Query Frame = 2
Query: 239 VGVEAGIAGFNKWFKRAFPTAVTDVSPSRPSEGFDHVLIDMNQILHVALRRATDEDKAIRKLFSELNIVLRRCPPRRSVVFAFDGSAPTAKLFVQRKRREESERRPKYALSPLHLSPGTKFMDDVALALEYYAFQECTRPCYEGVKFYISGANNPGEGELKCIDWLKNMTQRGSEETAVIVGGDADLILQGLALSEVKNTFICSSTRTSKVRFSSIWEVVRSLEKLFPGQSEAVRLDLAALMIMNGNDYLPKVRGVSFDRMFRSYTRLKKDKYRDHSLIDGESKTIRWEFMEDLMASVPVAITAQA-----------DLNNRYPSVGSIFNQAVQQGKLGEDVEVRINELPRSRSKSAGETHRWRSSTWVQGKEYV--FLHSSPTKTSAFHEAAARLLDELLPDMYEEFMEQEAARVVEQAQLDEDLKQAQLDNENEDVHLGVGSRDGTEDGNNPSTRRRANRRRRC---DVQEYLSGVLWNLQMYVDGYVPNFYWHYRADVSPSAADITSWIR-NNPNSLAKVSAAVTRAPPLPAAIACLCMLPMTDYGKSFLPERLKPLVEPGSALLEALDWRGATTGLDIPKVLRVIQQEAPHELRDFHDGSHRF-AWKVVYLDMSSSPGSPSPXXXXSEGFPALGNTIRGRNYLHRFDRIQVASMSSTSAPRNLPWRSSCGPGEQQTPGILDQPYKKAFAQDSKGHQDGLGRRGAGGRGTRGGRQA-----SVAWRMESSTRKIRRGGRAKMEPRAQQGLDEGPGEDAPSVPPCRA--AVAEATKIGPRPFSSPGRQDTFKRGSMCLGSSATGRLVC 2596
+ EAGI GF+KWF + FPTAVTD S E FDHV IDMNQILHVA+R+A DED AIR++F ++N+ L+RCPPR+SVVFAFDGSAP AKL VQR RRE S+R KY +S LHLSPGTKFMDDVA A+EYYAFQECTRPCY+GVKFYISGAN PGEGELKCIDWLK+M + +E+AVIVGGDADLILQGLALSEVKNTFICS T R SSIWEVVRSLE +FPGQS VR+DLA L+++NGNDYLPKVRGVSF R F++Y LK+ K+RD+ LIDG+ K+I WEF++DL+A + +I A+A DLNNRYP GS+F AVQQGKLG+ VE+ +++L S S+G T +W+S TWV+GKEY FLH KT H AA +LL+ELLPD+Y+EF+EQE AR++EQAQLD+ ENED+ + G E+G R R +R+ + DV+ +L GVLWNLQMY+DGYVPNFYW Y SPS ADI SW++ + + LA ++ V APPLPA+IACLCMLPMTD GKSFLP+RL+PLV PGS LLEAL+WRG ++GLDI K+L+ Q P EL +FHDG+H AWKVVYLD+S+ +P S+ FP L ++ +Y +F RIQV SMS+TSAPRNLPW S+ ++ G+LD PYKKA K + G RRG+ G+G RG R S AWR +SS +IR+ G+A A++G + G GEDA P R AVA K P PF S R D+ +R SMCLG AT R C
Sbjct: 16 ICAEAGINGFHKWFVQEFPTAVTDASRV---ESFDHVCIDMNQILHVAMRKARDEDHAIRRIFRDVNLTLKRCPPRKSVVFAFDGSAPLAKLLVQRSRRENSKRNSKYRMSALHLSPGTKFMDDVASAMEYYAFQECTRPCYQGVKFYISGANVPGEGELKCIDWLKHMPK--PDESAVIVGGDADLILQGLALSEVKNTFICSQTDAGSYRLSSIWEVVRSLEAMFPGQSALVRIDLAVLIMLNGNDYLPKVRGVSFSRCFQAYQALKRGKHRDNFLIDGDKKSICWEFLQDLLADMIPSIVAEAEGYLAVSLEQMDLNNRYPPAGSVFKMAVQQGKLGDGVEIEVHDLSDEVSGSSGGTKKWKSVTWVRGKEYTYHFLHVGKKKT-VMHLAAEKLLEELLPDLYDEFLEQEKARILEQAQLDQ---------ENEDIDSNLDEDSGAENG-----RERGSRKGKTPLFDVESFLLGVLWNLQMYIDGYVPNFYWRYSPRYSPSCADIVSWVKLASEDKLANLAVPVIGAPPLPASIACLCMLPMTDRGKSFLPKRLQPLVRPGSPLLEALEWRGVSSGLDIAKILKTCQNLMPQELSEFHDGAHSSCAWKVVYLDLSARQRTPPAPPPPSKDFPPLDSSRHSNSY--KFQRIQVTSMSATSAPRNLPWSSASDSSSEEMQGVLDLPYKKALNGSGK-PEGGRRRRGSAGKGARGPRGGAAPPKSAAWRKKSSAPRIRKSGKAGEGSDARRGTN-GRGEDAAPDLPRRPPPAVAADVKARPSPFPSSARPDS-RRSSMCLGKLATRRSHC 801
BLAST of mRNA_P-fluviatile_contig22.5012.1 vs. uniprot
Match:
A0A836C8H5_9STRA (DRBM domain-containing protein n=1 Tax=Tribonema minus TaxID=303371 RepID=A0A836C8H5_9STRA)
HSP 1 Score: 270 bits (691), Expect = 7.560e-73
Identity = 251/934 (26.87%), Postives = 361/934 (38.65%), Query Frame = 2
Query: 248 EAGIAGFNKWFKRAFPTAVTDVSPSRPSEGFDHVLIDMNQILHVALRRATDEDKAIRKLFSELNIVLRRCPPRRSVVFAFDGSAPTAKLFVQRKRREESERRPKYALSPLHLSPGTKFMDDVALALEYYAFQEC------------------------------------------------------------------------------------------------------------------------------TRPCYEG---------------------------VKFYISGANNPGEGELKCIDWLKNMTQR------------------------------------GSEETAVIVGGDADLILQGLALSEVKNTFICSSTRTSKVRFSSIWEVVRSLEKLFPGQSEAVRLDLAALMIMNGNDYLPKVRGVSFDRMFRSYTRLKKDKYRDHS-LIDGESKTIRWEFMEDLM--ASVPVAITAQADLNNRYPSVGSIFNQAVQQGKL--GEDVEVRINELPR-------------------SRSKSAGETHRWRSSTWVQGKEYVFLHSSPTKTSAFHEAAARLLDELLPDMYEEFMEQEAARVVEQAQLDEDLKQAQLDN----------------ENEDVHLGVGSRDGTEDGNNPSTRRRANRRRRCDVQEYLSGVLWNLQMYVDGYVPNFYWHYRADVSPSAADITSWIRNN-----------PNSLAKVSAAVTRAPPLPAAIACLCMLPMTDYGKSFLPERLKPLVE----------PGSALLEALDWRGATTGL-------DIPKVLRVIQQEAPHELRDFHDGSHRFAWKVVYLDMSSSPGSPSPXXXXSEGFPALGNTIRGRNYLHRFDRIQVASMSSTSAPRNLPWRSS-----CGPGEQQTPGILDQPYKKAF 2263
EAGI GF+KWFK F +V V P + + FDHV DMNQILHVA+RR+ +E++AI + F+E++ VL+ PRRSVVFAFDGSAP AKL QR RRE R +Y +S L+++PGT FM A A+ YYA+ RP Y G V +Y+ A+ GEGELK +DW +R G EE+ VIVGGDADL+LQGLALS+VKN F+ +S R S+W+V R LE +FPG+S +R DL L+++NGNDYLPKVRGVSF R FR Y K S +ID E + W F+ + A++ A+ Q P+ N AVQ+ + G +R + + G++ R+ S V G ++ A AA +L EL P++YE+++ AR AQL +Q + ++ + L + + +++ RA + DV+ YL+GVLWN+ MY DG+ P+ YW Y +PS D+ W+ L V++ V+R P LP+ +ACL M M+ G+ +P RL+ L++ P ++ G+ DI +L + P L F +G W V+ P +P P L ++ D ++ +M +TS+P W S P P +L +KK F
Sbjct: 20 EAGIQGFSKWFKGVFHDSVMAVQPGQRDQ-FDHVCFDMNQILHVAVRRSANEEQAIARTFTEISQVLKTLEPRRSVVFAFDGSAPLAKLLTQRARREGGRRAERYQMSALNITPGTDFMRSAAEAMRYYAYTRLPGGTARLPGGTYNHTLXXXXXXXXXXXXXXXXXXXXAGVCVHDDITPXXXXXXXXXXXXXXXXXXXXPDGTQASKFGPGDKVWLDLGEPGAPQWTGPWAIQGRKGADDLVLTHHKGGARKVVSAALVRP-YRGDPPPGPRGTREGVXXXXXXXXXXXXXXVTYYMGTADVLGEGELKILDWAHLAGRRPRSLAALRTAXXXXXXXXXXXXXXXXXXXXXXAVAHGGEESVVIVGGDADLVLQGLALSKVKNLFVYASELKRSGRIVSLWQVTRQLEAMFPGESGGIRNDLIFLLVLNGNDYLPKVRGVSFGRCFRHYCAAKAAPGGQGSFIIDSERQRFNWPFLLRFLKFATMGAAMALQG------PTPAQWVNAAVQKKVIRGGRKKLIRGGQXXXXXXXXXXXXXXXVTYDVFSEEPEHNGDSPRFGVSVAVAGTTLTVPAEHASQKDARRAAATLVLQELAPELYEDYL---VARQRHDAQLLAAAQQRRXXXXXXXXXXXXXXXXXLADDXXLDLDLNGDESSDEYEYEPEWDRAPGKGGHDVKAYLTGVLWNIHMYQDGFAPDNYWRYGHRYAPSCHDMADWVEQRIALEASGADEQGQPLTDVASPVSRKPALPSDVACLAM--MSAEGRDLVPRRLRALLDADSPVGNMFAPPASXXXXXXXXQPAAGVVPQRREFDIDALLAAVNDHCPEALNGFAEGRQEVKWTVIQHASQPLPRGCTPLNLPPP-IPPLDRFLKVSP-----DTVKCVTMPATSSPPGRSWAGSNWAGAADPAAGAIP-LLSVKFKKPF 933
BLAST of mRNA_P-fluviatile_contig22.5012.1 vs. uniprot
Match:
L1JQ07_GUITC (Uncharacterized protein n=1 Tax=Guillardia theta (strain CCMP2712) TaxID=905079 RepID=L1JQ07_GUITC)
HSP 1 Score: 237 bits (604), Expect = 8.990e-68
Identity = 127/243 (52.26%), Postives = 165/243 (67.90%), Query Frame = 2
Query: 359 MNQILHVALRRATDEDKAIRKLFSELNIVLRRCPPRRSVVFAFDGSAPTAKLFVQRKRREESERRPKYALSPLHLSPGTKFMDDVALALEYYAFQECTRPC-YEGVKFYISGANNPGEGELKCIDWLKNMTQRGSEETAVIVGGDADLILQGLALSEVKNTFICS--------STRTSKVRFS-----SIWEVVRSLEKLFPGQSEAVRLDLAALMIMNGNDYLPKVRGVSFDRMFRSYTRLK 1045
MN +LH A R+A D + AI +++ EL+ LR P +SVV AFDG P AKL QRKRR +S + KY LS LH++PGTKFM + A EYYA ++ V FYISGA+ GEGE+K I+W+ N+ Q ++E +IVGGDADL+LQGLA+ VK+ F+ + S+R +K + S S+WEVVRSLE+LFPGQS+AVR DL LMIMNGNDYLPKVRG SF+ FR+Y ++K
Sbjct: 1 MNGLLHTACRKAKDFEHAILRVYKELDATLRTLIPTKSVVLAFDGPGPLAKLLTQRKRRNKSSKASKYKLSGLHITPGTKFMQTMREACEYYAALRLVASAKFKNVAFYISGADVAGEGEIKIIEWIHNLLQNQNDEKIIIVGGDADLVLQGLAVLRVKDLFVYAGKDMSQHPSSRKAKGKSSPSIVLSMWEVVRSLERLFPGQSQAVRADLIVLMIMNGNDYLPKVRGGSFESFFRAYKKVK 243
BLAST of mRNA_P-fluviatile_contig22.5012.1 vs. uniprot
Match:
A0A2V3J5K0_9FLOR (5'-3' exoribonuclease 1 n=1 Tax=Gracilariopsis chorda TaxID=448386 RepID=A0A2V3J5K0_9FLOR)
HSP 1 Score: 250 bits (638), Expect = 2.120e-67
Identity = 198/624 (31.73%), Postives = 290/624 (46.47%), Query Frame = 2
Query: 254 GIAGFNKWFKRAFPTAVTDVSPSRPSEGFDHVLIDMNQILHVALRRATDEDKAIRKLFSELNIVLRRCPPRRSVVFAFDGSAPTAKLFVQRKRREESERRPKY-------------------ALSPLHLSPGTKFMDDVALALEYYAFQECTRPC-YEGVKFYISGANNPGEGELKCIDWLKNMTQRGSEETAVIVGGDADLILQGLALSEVKNTFI-----CSSTRTSKVRFSSIWEVVRSLEKLFPGQSEAVRLDLAALMIMNGNDYLPKVRGVSFDRMFRSYTRLKKDK-------YRDHSLIDGESKTIRWEFMEDLM--ASVPVAITAQADLNNRYPSVGSIFNQAVQQGKLG----EDVEVRINELPRSRSKSAGETHRWRSSTWVQGKEYVFLHSSPTKTSAFHEAAARLLDELLPDMYEEFMEQEAARVVEQAQLDEDLKQAQLDNENEDVHLGVGSRDGTEDGNNPSTRRRANRRRRCDVQEYLSGVLWNLQMYVDGYVPNFYWHYRADVSPSAADITSWIRNNPNSLAKVSAAVTRAPPLPAAIACLCMLPMTDYGKSFLPERLKPLVEPGSALLEALDWRGATTGLDIPKVL----RVIQQEAPHE--LRDFH 1993
GI GF KW FP V +R E +DHV D+NQILH A+R+AT+ +F EL+ +L+ C PR+SV FAFDG AP AKL QR+RR + +Y A+ L ++PG + + V ++EY+A+ Y V+ ISGA+ PGEGELK ID+ + Q S ++ V+VGGDAD++LQGLA V+N F+ S + S+WE+ R E+LFP +S +VRLD L I+NGNDY+PKVRG+S R + Y LK D +R SL+D E +T+ W LM VPV+ A+A+ G + + ++GK G D EV GE + + + + S PT+ +F E D YE+ E + D E E + V T GN+ D ++ +LWN+QMYVDGY ++ + Y P +I ++IRN+ A V+ PL A + +LP K LP+ L+ + + A+ + G+ +D+P ++ R+ + E E LR FH
Sbjct: 2 GIIGFQKWLLGNFPDIVRVQQGARFGEYYDHVAFDINQILHQAVRKATNRQTLAAAIFRELDQILKNCIPRKSVFFAFDGPAPLAKLATQRRRRRQRRGASEYVSDYIDENGVSRKAKTVQPAIDGLEMTPGVETLYFVRDSVEYWAYSRLQNDRKYRNVEIRISGADVPGEGELKLIDFCRT-AQIPSTDSVVVVGGDADIVLQGLATVPVRNFFVYLRNFAGSRGRRQSYVISVWELTRIFERLFPNESSSVRLDFVLLAILNGNDYIPKVRGISLSRTWHRYLNLKLDSSGGRPGPFRGRSLVDAEKRTLNWPMFYALMDRVGVPVSSIAEAEQEKESTPAG-VPPRRKRRGKEGYVSYSDSEV-------------GERIVYTGNEDGVPMDCLDDDSVPTRDESFSENGVSETDS-----YEDSSE-----------YNXXXXXXXFDEEQEHIQTLV-----TLSGNSSKF---------YDTNRWVRALLWNIQMYVDGYCGDYSFRYGKPYGPPITEILNYIRNHDGDPFLHQAPVSNWRPLLPHQAAMAVLP--KQAKHLLPKPLQRIYDDPVAVRKIF---GSKDDVDVPSLIAETDRIPKSEFSSEELLRTFH 575
BLAST of mRNA_P-fluviatile_contig22.5012.1 vs. uniprot
Match:
M1US37_CYAM1 (XRN_N domain-containing protein n=1 Tax=Cyanidioschyzon merolae (strain NIES-3377 / 10D) TaxID=280699 RepID=M1US37_CYAM1)
HSP 1 Score: 248 bits (634), Expect = 6.610e-67
Identity = 170/555 (30.63%), Postives = 270/555 (48.65%), Query Frame = 2
Query: 254 GIAGFNKWFKRAFPTAVTDVSPSRPSEGFDHVLIDMNQILHVALRRATDEDKAIRKLFSELNIVLRRCPPRRSVVFAFDGSAPTAKLFVQRKRR--------EESERRPKYALSPLHLSPGTKFMDDVALALEYYAFQ--ECTRPCYEGVKFYISGANNPGEGELKCIDWLKNMTQRGSEETAVIVGGDADLILQGLALSEVKNTFICSSTRTSKVRFS-----------------SIWEVVRSLEKLFPGQSEAVRLDLAALMIMNGNDYLPKVRGVSFDRMFRSYTRLKKDK--YRDHSLIDGESKTIRWEFMEDLMASV--PVAITAQADLNNRYPSVGSIFNQAVQQGKLGEDVEVRINELPRSRSKSAGETHRWRSSTWVQGKEYVFLHSSPTKTSAFHEAAARLLDELLPDMYEEFMEQEAARVVEQAQLDEDLKQAQLDNENEDVHLGVGSRDGTEDGNNPSTRRRANRRRRCDVQEYLSGVLWNLQMYVDGYVPNFYWHYRADVSPSAADITSWIRNNPNS-LAKVSAAVTRAPPLPAAIACLCMLP 1822
GIAGF +W+ FP+ V V+ E FDHVL D+NQ++H+A R A + D+ +LF L+ +LR C P++SV AFDG AP AKL Q++RR +R+ + + L LSPGT+ M A+E+Y + R Y+ V+F +SG PGEGE+K ID++ + + V++G DADL++ GLA +V+N F+ T + ++ + S+W+ +R L++ FPG++ ++RLDL +++M GNDYLPK+RG SF+ ++ +Y LK DK R L+ E ++ WEF+ LM + P+ +L Y +A++ + G + V + S SK + E + +H S + +AA E+ D+ + E + E +D+D K D +E+L +LW L MY+DG+ P+FY Y PSA+DI W++ N L ++ ++ APPLP A L ++P
Sbjct: 2 GIAGFQRWYLENFPSTVVTVTGESAPEHFDHVLFDLNQLIHLAARVARNRDQFFIRLFRWLDNILRLCVPKKSVFIAFDGPAPLAKLVTQKRRRVLESRKLHRTRKRKRRCGVDVLSLSPGTELMQLTLQAVEFYVCSRLQSKRHLYQNVRFVVSGPTVPGEGEIKIIDYIHRYVD--PQHSVVVIGSDADLVVLGLATQKVRNFFVFVITPRANMQDAPEHGTAQKRQAISAIVISVWQWIRVLDRFFPGETPSLRLDLVVMLMMQGNDYLPKLRGTSFNSIWEAYKALKLDKGPMRGKYLVCREQRSFDWEFLYALMKRLINPLVPNLTKELIEMYREASIRGQEALRLAQAG-NASVEASSSCESESKDSVERN---------------VHPSDLEDGTEPDAAH---GEISADVTDPEDILEKVDIPEGISVDDDEKL-------------------------------------YDTEEWLRTLLWALAMYIDGFCPDFYHTYSRAYGPSASDIVRWLKENDGDPLLQLQPPLSVAPPLPPHAALLALVP 498
BLAST of mRNA_P-fluviatile_contig22.5012.1 vs. uniprot
Match:
A0A7J7IHE6_9RHOD (XRN_N domain-containing protein n=1 Tax=Cyanidiococcus yangmingshanensis TaxID=2690220 RepID=A0A7J7IHE6_9RHOD)
HSP 1 Score: 246 bits (629), Expect = 3.220e-66
Identity = 207/732 (28.28%), Postives = 325/732 (44.40%), Query Frame = 2
Query: 254 GIAGFNKWFKRAFPTAVTDVSPSRPSEGFDHVLIDMNQILHVALRRATDEDKAIRKLFSELNIVLRRCPPRRSVVFAFDGSAPTAKLFVQRKRREESERRPKYALSP--------LHLSPGTKFMDDVALALEYYAFQ--ECTRPCYEGVKFYISGANNPGEGELKCIDWLKNMTQRGSEETAVIVGGDADLILQGLALSEVKNTFICSSTRTSKVRFSS-----------------IWEVVRSLEKLFPGQSEAVRLDLAALMIMNGNDYLPKVRGVSFDRMFRSYTRLK--KDKYRDHSLIDGESKTIRWEFMEDLMASVPVAITAQADLNNRYPSVGSIFNQAVQQGKLGEDVEVRINELPRSRSKSAGETHRWRSSTWVQGKEYVFLHSSPTKTSAFHEAAAR-LLDELLPDMYEEFMEQEAARVVEQAQLDEDLKQAQLDNENEDVHLGVGSRDGTEDGNNPSTRRRANRRRRCDVQEYLSGVLWNLQMYVDGYVPNFYWHYRADVSPSAADITSWIRN-NPNSLAKVSAAVTRAPPLPAAIACLCMLPMTD--------YGKSFLPER----------LKPLVEPGSALLEALDWRGATTGLDIPKVLRVIQQEAPHELRDFHDGSHRFAWKVVYLDMSSSPGSPSPXXXXSEGFPALGNTIRGRNYLHRFDRIQ-------VASMSSTSAPRNLPW---RSSCGPGEQQTPGILDQ--PYKKAFA 2266
GIAGF +WF FP+ T ++ E FDHVL D+NQ++H+A R A + D+ +L+ L+ VLR C P+ SV AFDG AP AKL Q++RR R+ L P L LSPGT+ M A+E+Y + R Y ++F +SG PGEGE+K ID++ + + +++G DADL+L GLA ++++ F+ T + +S +W+ +R L++LFPG++ VRLDLA L++M GNDY+PK+RG SF ++ +Y LK + L+ GE +TI EF+ LM+S+ N P + + ++ + R+ EL +R+ A ET + + E + + K S E ++D PD E +E + +N++ D + +L +LW L MYVDG+ P+FY+ Y PSA DI W++ + + + + ++ APPLP A L ++P T Y + L R L ++ +A L R + +LRVI++ +E D RF V + + G+ S S + A T+ + + RF ++ + ++ TSAP W GP T I Q P+K+AFA
Sbjct: 2 GIAGFQRWFLETFPSTATTITDETLPESFDHVLFDLNQLIHLAARVAKNRDQFFIRLYRWLDKVLRLCVPKESVFIAFDGPAPLAKLVTQKRRRVLEARKLTRKLEPKKRCGVDVLSLSPGTELMQMTLQAIEFYVCSRLQSKRNLYRNLRFVVSGPTVPGEGEIKIIDYIHRCVE--PHHSVIVIGSDADLVLLGLATQKIRDFFVFVITPRQSAQVASRGPAETHRNSVNATTISVWQWIRVLDRLFPGETAPVRLDLALLLMMQGNDYVPKLRGSSFKSIWAAYKALKMRQGPMSGRYLLCGEQRTINLEFLYALMSSLE---------NPLVPQLTKQLVEMYREASIRGQEMARLAELESTRT-GATETP---DNDSISDVEQILYNGDLEKPSPCKETTKEPVIDMTDPDDMLEMVETPEG----------------VSYDNDETMF--------------------------DTENWLRMLLWALAMYVDGFCPDFYFTYPKPYGPSATDIVRWLQEIDGDPIPTLQPPMSVAPPLPPHAALLALIPSTAAKLLPRPLYKRVLLRARGSDENPENAGLSGMMSDETAKLITFILRDDGRRTNRTILLRVIEKIPENEYEDLEIPRTRFGSSVAFE--LTCRGANSRKSDPSTKYTASYETLP-KPPVQRFAKLSPSWIDFFIQTVQFTSAPPCYSWCWENPKKGPKCDDTAPISIQSLPFKRAFA 673
BLAST of mRNA_P-fluviatile_contig22.5012.1 vs. uniprot
Match:
I2CR78_NANGC (5'-3' exoribonuclease 1 (Fragment) n=1 Tax=Nannochloropsis gaditana (strain CCMP526) TaxID=1093141 RepID=I2CR78_NANGC)
HSP 1 Score: 226 bits (577), Expect = 4.350e-61
Identity = 151/423 (35.70%), Postives = 220/423 (52.01%), Query Frame = 2
Query: 245 VEAGIAGFNKWFKRAFPTAVTDVSPSRPSEGFDHVLIDMNQILHVALRRATDEDKAIRKLFSELNIVLRRCPPRRSVVFAFDGSAPTAKLFVQRKRREESERRPKYALSPLHLSPGTKFMDDVALALEYYAFQ--ECTRPCYEGVKFYISGANNPGEGELKCIDWLKNM-----------------------TQRGSEETAVIVGGDADLILQGLALSEVK--NTFICSSTRTSKVRFSSIWEVVRSLEKLFPGQSEAVRLDLAALMIMNGNDYLPKVRGVSFDRMFRSYTRLK-KDKYRDHSLIDGESKTIRWEFME----DLMASVPVAITAQADLNNRYPSVGSIFNQAVQQGKLGEDVEVRINELPRSRSKSAGETHRWRSSTWVQGKEYVFLHSSPTKTSAFHEAAARLLDELLPDMY 1417
VE GI GF KWF+ + V+ VS + +E FDHVLID+NQ+ H+A R+A DED AIR+L EL LR ++SVV AFDG AP AK+ QRKRR +E+ K L+ LHLSPGT FM A A+ + E +++Y+S + +PGEGE+K +DW+ R E+ V+VGGDADL+LQGLAL + N FI R+ F S+ + V LE FPGQS VR D+ L++M GNDYL KVRG++F +Y +K K +++D ++ E+KT W F++ DL A + + R P+ + N+ +Q+ K+ P + G+ W ++ ++ K + PT +A +L E++P+ Y
Sbjct: 62 VEGGIYGFWKWFRGHYKEVVSKVSSEQYAE-FDHVLIDVNQLTHMAARKARDEDHAIRRLLKELGRTLRVLRAQKSVVIAFDGPAPLAKIITQRKRRA-AEKDAKTPLNSLHLSPGTSFMRRAAEAVIDFCHTRLESDLTPRRRIRYYVSCSESPGEGEVKLMDWINTYLLTHEDGRXXXXXXXXXXXXXKKAGRKDSESIVVVGGDADLVLQGLALPGLPDFNVFIPDVKRSGY--FVSLRQFVARLETDFPGQSHQVRTDMVLLLVMAGNDYLKKVRGLTFRSKLLAYNNVKRKPEFKDQFMLLAENKTFNWPFLQAFYDDLAAR---SFVDDLSVLLRGPTPAGVLNELMQKKKV-----------PPFEMEFEGQASAWTATLTLEEKRFTLSEPQPTMKAAKQAICELVLKEVVPEAY 466
BLAST of mRNA_P-fluviatile_contig22.5012.1 vs. uniprot
Match:
A0A7S1TFG2_9RHOD (Hypothetical protein n=4 Tax=Compsopogon caeruleus TaxID=31354 RepID=A0A7S1TFG2_9RHOD)
HSP 1 Score: 225 bits (574), Expect = 4.210e-59
Identity = 154/490 (31.43%), Postives = 246/490 (50.20%), Query Frame = 2
Query: 341 DHVLIDMNQILHVALRRATDEDKAIRKLFSELNIVLRRCPPRRSVVFAFDGSAPTAKLFVQRKRREESERRPKYALSPLHL-----SPGTKFMDDVALALEYYAFQECTR----PCYEGVKFYISGANNPGEGELKCIDWLKNMTQR---GSE------ETAVIVGGDADLILQGLALSEVKNTFICSSTRTSKVRFSSIWEVVRSLEKLFPGQSEAVRLDLAALMIMNGNDYLPKVRGVSFDRMFRSYTRLKK--DKYRDHSLIDGESKTIRWEFMEDLMASV------PVAITAQADLNNRYPSVGSIFNQAVQQGKLGEDVEVRINELPRSRSKSAGETHRWRSSTWVQGKEYVFLHSSPTKTSAFHEAAARLLDELLPDMYEEFMEQEAARVVEQAQLDEDLKQAQLDNENEDVHLGVGSRDGTEDGNNPSTRRRANRRRRCDVQEYLSGVLWNLQMYVDGYVPNFYWHYRADVSPSAADITSWIR 1732
DHV D+NQ++H+ALR++ +E+K + +LF ++ L++C P+RSV FAFDG P AKL QR RR + L+ H+ +PGT+ M + AL+Y+A C+R Y+ V ISG + PGEGE+K DWL + R G++ E+ +++GGDAD++LQGLA + ++ F+ + +R + SI +V++LE FPG+S+ VRLD L +MNGNDYLPKVRGV FD ++ Y +KK ++++ L+D +T W F+ L+ ++ P + A+ L PS R+NE E + L++ SA AA +PD+ ++ E+ D + ++ E + D T G +P+ R D++ +L G+LWN+QMYVDG+ P++ + Y +PS I +W++
Sbjct: 23 DHVCFDLNQVIHMALRKSPNEEKLVIRLFRNIDAALKQCIPKRSVYFAFDGPGPMAKLLTQRVRRSNPANSQRKVLANRHIDPNAITPGTELMYMLQDALDYFA---CSRLEGDMKYDKVDMRISGPDVPGEGEVKIFDWLNSFVARREAGTQVSSIVTESVIVIGGDADIVLQGLATTSFRDLFVYAQSRRDEGTVISISLLVKALEDNFPGESDRVRLDFIVLCLMNGNDYLPKVRGVGFDSLWNGYIAIKKGREQFQGQYLLDSTRRTFNWPFLVALLETIRSVVIEPHVLLAEKSLQVEEPS--------------------RMNEEEHDVPPDPNE---------------IILYTGDMTASASTSAA-------IPDVDDD----------EEDHADXXXXXXSVGDDGEYDYESA--YDETNTGESPN--------RLFDIELFLRGILWNVQMYVDGFCPDYTYVYPELYAPSPTAIMNWVK 447
BLAST of mRNA_P-fluviatile_contig22.5012.1 vs. uniprot
Match:
L1I795_GUITC (Uncharacterized protein n=2 Tax=Guillardia theta TaxID=55529 RepID=L1I795_GUITC)
HSP 1 Score: 216 bits (551), Expect = 4.240e-56
Identity = 150/529 (28.36%), Postives = 243/529 (45.94%), Query Frame = 2
Query: 254 GIAGFNKWFKRAFPTAVTDVSPSRPSEGFDHVLIDMNQILHVALRRATDEDKAIRKLFSELNIVLRRCPPRRSVVFAFDGSAPTAKLFVQRKRREESERRPKYALSPLHLSPGTKFMDDVALALEYYAFQECT-RPCYEGVKFYISGANNPGEGELKCIDWLKNMTQRGSEETAVIVGGDADLILQGLALSEVKNTFICSSTRTSKVRFSSIWEVVRSLEKLFPGQSEAVRLDLAALMIMNGNDYLPKVRGVSFDRMFRSYTRLK-KDKYRDHSLIDGESKTIRWEFMEDLMASVPVAITAQADLNNRYPSVGSIFNQAVQQGKLG---EDVEVRINELPRSRSKSAGETHRWRSSTWVQGKEYVFLHSSPTKTSAFHEAAARLLDELLPDMYEEFMEQEAARVVEQAQLDEDLKQAQLDNENEDVHLGVGSRDGTEDGNNPSTRRRANRRRRCDVQEYLSGVLWNLQMYVDGYVPNFYWHYRADVSPSAADITSWIRNNPNSLAKVSAAVTRAPPLPAAIACLCMLPM 1825
G A +W + +FP V +SP PS FDHVL DMN +LH R + +++F +++ LR P +SVV FDG P AK+ Q + RE+ + L + ++PGT+FM +V + Q R Y + FY+S ++ GEGELK ++W+ + S++ + +GGD+DL +Q LAL S R + F S+ E+ + LE +FP S+ +R DL L+I NGNDYLP ++ + F YT +K ++K+R L+DG KT +EF+ + + V + N P V +Q VQ+G L ED++ ++ R ++ + H+ K++V L ++ K ++ +P YE P ++ YL GVLWN++MY+DG+VP+F + Y PS++ + +WI + K ++ +R PL A CL + P+
Sbjct: 18 GKAASKRWLEASFPKCVIPISPRSPSFKFDHVLFDMNDMLHTCARNCKNSSAVCKRVFRQVDSYLRIFTPGKSVVLCFDGPGPIAKIPKQVESREKRTKVASSTLDSIDITPGTRFMSEVRELCFAHVVQSLEQRGGYRDISFYLSCSDVAGEGELKLVEWIHTFVESASKDRILFIGGDSDLTIQSLALRG-------HSQRIKPMHFISLSELKKELETIFPDHSDIIRFDLLLLIIFNGNDYLPPLKHFNLQVSFEVYTLMKSQEKFRSRFLLDGREKTFDYEFLAEFLKQVDARLKTWKISN---PIVE--LHQYVQEGSLEYSVEDLQFEFSQEIREEHSASIDKHQ---------KDFVDLLTNHRKGTS------------IPKRYEP----------------------------------------------PEM-----------IERYLKGVLWNIKMYIDGFVPDFEFMYSFKKGPSSSSVVNWIESKVKPSLKAESSNSR--PLAPAELCLAVTPV 454
BLAST of mRNA_P-fluviatile_contig22.5012.1 vs. uniprot
Match:
A0A7S4KKW8_GUITH (Hypothetical protein (Fragment) n=1 Tax=Guillardia theta TaxID=55529 RepID=A0A7S4KKW8_GUITH)
HSP 1 Score: 194 bits (493), Expect = 1.410e-50
Identity = 112/336 (33.33%), Postives = 175/336 (52.08%), Query Frame = 2
Query: 254 GIAGFNKWFKRAFPTAVTDVSPSRPSEGFDHVLIDMNQILHVALRRATDEDKAIRKLFSELNIVLRRCPPRRSVVFAFDGSAPTAKLFVQRKRREESERRPKYALSPLHLSPGTKFMDDVALALEYYAFQECT-RPCYEGVKFYISGANNPGEGELKCIDWLKNMTQRGSEETAVIVGGDADLILQGLALSEVKNTFICSST------RTSKVRFSSIWEVVRSLEKLFPGQSEAVRLDLAALMIMNGNDYLPKVRGVSFDRMFRSYTRLK-KDKYRDHSLIDGESKTIRWEFMEDLMASVPVAITAQADLNNRYPSVGSIFNQAVQQGKLGEDVE 1237
G A +W + +FP V +SP PS FDHVL DMN +LH R + +++F +++ LR P +SVV FDG P AK+ Q + RE+ + L + ++PGT+FM +V + Q R Y + FY+S ++ GEGELK ++W+ + S++ + +GGD+DL +Q LAL ++ + R + F S+ E+ + LE +FP S+ +R DL L+I NGNDYLP ++ + F YT +K ++K+R L+DG KT +EF+ + + V + N P V +Q VQ+G L VE
Sbjct: 18 GKAASKRWLEASFPKCVIPISPRSPSFKFDHVLFDMNDMLHTCARNCKNSSAVCKRVFRQVDSYLRIFTPGKSVVLCFDGPGPIAKIPKQVESREKRTKVASSTLDSIDITPGTRFMSEVRELCFAHVVQSLEQRGGYRDISFYLSCSDVAGEGELKLVEWIHTFVESASKDRILFIGGDSDLTIQSLALRGHSQVYLLNRKDGVGLQRIKPMHFISLSELKKELETIFPDHSDIIRFDLLLLIIFNGNDYLPPLKHFNLQVSFEVYTLMKSQEKFRSRFLLDGREKTFDYEFLAEFLKQVDARLKTWKISN---PIVE--LHQYVQEGSLEYSVE 348
The following BLAST results are available for this feature:
Sequences
The following sequences are available for this feature:
protein sequence of mRNA_P-fluviatile_contig22.5012.1
>prot_P-fluviatile_contig22.5012.1 ID=prot_P-fluviatile_contig22.5012.1|Name=mRNA_P-fluviatile_contig22.5012.1|organism=Porterinema fluviatile SAG_2381|type=polypeptide|length=752bp
MNQILHVALRRATDEDKAIRKLFSELNIVLRRCPPRRSVVFAFDGSAPTA
KLFVQRKRREESERRPKYALSPLHLSPGTKFMDDVALALEYYAFQECTRP
CYEGVKFYISGANNPGEGELKCIDWLKNMTQRGSEETAVIVGGDADLILQ
GLALSEVKNTFICSSTRTSKVRFSSIWEVVRSLEKLFPGQSEAVRLDLAA
LMIMNGNDYLPKVRGVSFDRMFRSYTRLKKDKYRDHSLIDGESKTIRWEF
MEDLMASVPVAITAQADLNNRYPSVGSIFNQAVQQGKLGEDVEVRINELP
RSRSKSAGETHRWRSSTWVQGKEYVFLHSSPTKTSAFHEAAARLLDELLP
DMYEEFMEQEAARVVEQAQLDEDLKQAQLDNENEDVHLGVGSRDGTEDGN
NPSTRRRANRRRRCDVQEYLSGVLWNLQMYVDGYVPNFYWHYRADVSPSA
ADITSWIRNNPNSLAKVSAAVTRAPPLPAAIACLCMLPMTDYGKSFLPER
LKPLVEPGSALLEALDWRGATTGLDIPKVLRVIQQEAPHELRDFHDGSHR
FAWKVVYLDMSSSPGSPSPPPPPSEGFPALGNTIRGRNYLHRFDRIQVAS
MSSTSAPRNLPWRSSCGPGEQQTPGILDQPYKKAFAQDSKGHQDGLGRRG
AGGRGTRGGRQASVAWRMESSTRKIRRGGRAKMEPRAQQGLDEGPGEDAP
SVPPCRAAVAEATKIGPRPFSSPGRQDTFKRGSMCLGSSATGRLVCCRIR
L*
back to topmRNA from alignment at P-fluviatile_contig22:2279010..2300610-
Legend: UTRpolypeptideCDS
Hold the cursor over a type above to highlight its positions in the sequence below.
>mRNA_P-fluviatile_contig22.5012.1 ID=mRNA_P-fluviatile_contig22.5012.1|Name=mRNA_P-fluviatile_contig22.5012.1|organism=Porterinema fluviatile SAG_2381|type=mRNA|length=21601bp|location=Sequence derived from alignment at P-fluviatile_contig22:2279010..2300610- (Porterinema fluviatile SAG_2381)
AGACGGAGTGTAACCCTCGCTGTGCTGTTATGGCAGGTATGTGGTCCTAC
TTTTGCTGAAAACAATCAAAGTGTATGATAAGTGAAGCCATTTCACCTCA
TTTCGCTTCAAGTGGTCGGTGATTATGTATTTCTCTCGCTCGAACCCGCG
GAATATCAGGTACACGGTTCCCCTGACAGCTGACGGCACGCTCACTGTGC
ACGCGGCGTGCGCAACTTCAATAAATCGGCCCCCATGACATGAAAGTGTT
CATTTTCCCCACATCCAACTCATCCTCCGCCCACCACACCGGCACACCCC
ATCGTTTCACCTTTGGCAAGGAAAACACGTTCGCATGGTCGTTCACCTGG
ATATCTCATGTTCGTGTCGCGTATTAATCCAAAGAAATGTGTCAGGTGGC
GTTGTAGTTTGGTGCCTCCGGCGCGGGCTCCAGTGGTGGAAATAAAAGGA
CAGCAGCGAAAATAGCCGCTAAAATAACGGAAATAAAGAAAAACTATCCG
CAGCCGTGAAAGGCTGGGTCCTACTTTGTGGTGGTGGAGCGTGAAAGCTC
TGTTGTTGGGTGTGAAAACCCAGGAAACGGCGTGAAAGCCTGGGGGTGGC
GTGAAAGCCGGAAAAGGAAGTATACACAGGTGGCGTGATAGCCTGGTATT
GGCGTAGAAGCCGGGTATGTGGCGTGGAAGCCGGGTTGGCGTAGAAGCCG
GGGAAAAGACTTGATTATACACACACAAAAGGACACGAAGAAAAAGAAGA
AGAAGAAGAAAAAGAGATGAGTGTGGAAGAGGTGAGCCTCGATGAACCAC
AACACCAAATCCGTTGCAGACACACACACCCTCAATCCTGTGATAATCGG
TAAAGTTGGTACCGCCAAATCTAATCCATAACAACTGTTGAACCCCCAAA
TCCCCCGCTCCATCTGCTCGGAAAGTTCTGTGCTTGAATAATCTGTCGAT
GCTGTGAGTACATTCAACAGCCCCCCTACTCGCTGCATTGGCAAGATTAT
ACCCGGACTTACTTTATCACACTATCTTAAATTCCCATCCCAATACTCCA
GAAATCAATGGCATTATGTGCAACAACCTTTCTCCATCCACTATTTTGCA
ACAAAATGAAAACCATTAAACCAGACTACTAGAAAGAATTTCGATCGGTT
ACTGTGAACCATTAAACCAGAAATCTCACCAGAATCTCAATCGGTTACCA
TTGAAATCGGAGTTGCCCGAAGGTCAGAATCTTCATGAAAACAAAAACCA
TTAAACAAGAATATACTATTGCGATTCCATCGGCTGCAAGCCATTAAACC
AGAAATCTCACAAATACTTTCCATCGGCCGTTCATGAAATCAAATGACCA
ATGAAGAAAATCAAATCATCCAAATTCAAAAAAAAAAAAAACTAGAGAAA
AAGGACATCCAGACCTAAAACTCAAAAACAAAACAAGAGGAAAACAAACA
ACACATGGACTCCTCCCGGGATCTATCACTGTAAATTCATCACATAGTCC
CGGTGGAACACGAAATCCCTTTCAGGTAGCGCCTTGGTGAGGAAATCAGC
ATGCTGGTACTGTGACGCCACGTGGATGATCTCAATCTCCTTCTCCTCTA
CGAGCTCCCTCAGAAAGTGAAGCCTCACATCGATGTGCTTGGAGTTGGAG
TTGGAGATCGGGTGCTTTGCGATCTGGATAGCACCCTCGTTGTCCTCATA
CAAGGGAATGCACGGCCTCAACTCCTTCGGCAACATGAACCGCCAAACCT
GCCTCAAAAACAGAATCTCCTTACACATGTCCGCCATTGCCACATACTCT
GCATGCGTAGTAGACAGGGTCACACACTTCTGAGTCTTTGAGAACCACAC
GATCACCCCTCGTCCGCACATCACCACTCCCCCGGAAACCGACCTACGGT
CCGCCGCACGCGAAGCGTAGTCTGCGTCGGCGAACGTGATCATGCACATC
CCCGAAACCGTCCCCTCTGAAAAGAAATCCCAAATGAACTAGTCCTTACT
GCATATCCTAAAATACTAAGTGCCGCCTTCCAGTGAATCAGCTTGGGCGC
GCTGCAATACCTCGCTACCGCCCTCACAGCATTCATGATGTCTGGCCTGG
TCAGCAGCGCAATCCACAACAACGAACCAATCAGGGCACGAAAGGGGAAC
TCTACGTTCGACTCGTTCACGTCAAAGTCCCAAAGTCGCCAGGTAGTGGG
CAAAGGGATAGTCCCTCCCCACTTCACACCAAACCTCTCTCCCAACTCTT
CGGTGTATGTCTGCTGCGAAATCGTCAACCTGCCTGCCTCCCGGTCCCTC
TCGTAATAGCAACCAGAGTACCACTTCAACTCCCCAGAGACTTGACAGGG
ACGTGCTGCCCCAGGTCCTTCCCAAATTGATCACACCTCTCTTTCTTCCC
CACGGCAAAGATGTCGTCCACATGAACAACAAGAAGCAACACTACTTCCC
CCCCTTCAATCAAACGAAACATGCACGAATCAGCCTTGCACTGCTCAAAG
CCCAAAGTCAAAAGACACTTCTTCAATAAAGCATACCACTCCCTGGATGC
CTGCCTCAAGCCATAGAGACTCTTGTTCAACTGAACTACCTTCCCCGACA
ACGAACCGCATCCCTCTGGCAACCGCATGAAAATTTCTTCCTTTAGAGGA
GCGCGAACAAAAGCCTGATCGATGTCGAAGTGGAATAAATCCAAATCAAA
CTCACACGCATACGCAGCCAACAAACGGACGGTGGAGGGAGACACAGTGG
GCGCATACAAATCACCGAAGTCAATGTACTCCTTCTGCATATCTCCCCTT
GCAACAAGCCTGGCCTTTGCCTTCGTAGGAAAACCGAACGCATCAACCTT
CCAATCAAACACAAACTTCGACTTGATGCAATTCTCTATTCGTTGCTACC
AACCAACGACCTTGAAGGCCTCTGCTTCAAGCAAACCGAACACCTCCCGC
TTGGCCGCATCTTTGAACTGCACCCTGTGCTCGCCCTCCTGCGCCTCCCG
CATGGACTGGGGCACTCGAAGGTCCTTGGCGTGGCAGCGCGGCATATCGG
GACGGAGGAGAGGTGGCTCCATCTCTTGCATGGCGGCCTCGAGGTCGTCA
CGCGTCGCGAGGCGCATCACGAGCCCGAACGGAACACCCTGCCCGGGAAG
AGCAACCGACCAACCGCTCTCCCCCCGTCCCGCGCCCCCGGTCTCGATTT
CCGGCGGGCTGCTGCTCTCCACCCCGCCTCCGGCCCATGTGCGCTGCTCG
TGCCCGCCCCCCTTCTCGCCGCCCCCCAGCTCGCTGCCCCTGTCCAACCA
AGGTCGCAGCATCGGTTTGCCGTTCGCGGCTCGCCGGTGGTCCAAGATGG
AGAGAAGCACCTCCTCACCGGCTTGAGCCAGCAACCCCACCTCGATCTCG
GAGGGGGGTAGACTAGTGCTGACGGCCTCGTCCGAAGGGGGTAAAATCTC
CCGGCCCTCGGAGATGATGGAGAGTTGTTGCTGTGCGATGGCCCGAGCGT
CCGCCCTCGTACGGCCTGGGAGTCGGCGGTCACCTTGCCGGCCCACCTGC
CTCGCGGCGTGCGGTGTGAGGGGCTGAGAGAAGCCCGGCGCAGCTGGCGG
TGGTACGGTGCTCCTGTACTGACGTCGTGGCGGTGTATCGCCCGGCTGTG
AGGATTCCATCTCGATAGGCGAAGACGACCAGTCGGGTAGCGGCGGCGTG
GGCCCCGGCGTGGACGCGGCGGGGGCAGCTGAGGAAGGGGAACCGCTGGC
AGTGCTGGGCGGTGAAGCGGCATTGCTCGAGGACGCAGGCGCAGCGGCGG
CGGCAGGCGAAGGGGCGCTGGTGTGCGACGACGCAGGCGGCTGCCGGGGA
GGCAGCATGGCGGCTCCAGGCGACGGGGCAGGCCACGGTGCAGTCCCCGG
TGGCGGCGGCGACGATGATACGGCGGCGGCGGCAGGCGAAGGGGCGACGG
TGAGCGACGACGCAGGCGGCTGCCGGGGAGGCAGTATGGCGGCTCCAGGT
GACGGGGCAGGCCACGGTGCAGTCCCCGGCGGCGGCGGCGACGACGATAC
GGCGGCGGCGGCAGCAGGCGAAGGGGCGCCGGTGTGCGACGACGCAGGCG
GCTGCCGGGGAGGCACCATGGCAGCTCCAGGCGACGGGCAGGCCACGACG
CAGTCCCCGGCGGCGGCGGCGACGACGATACGGCGGCGGCGGCAGCAGGC
GAAGGGGCGACGATAGGCGCGGACGGCTGGTTGGTGGCCTCGAAGGACAA
GTGCTGCTGGGGCGGAATTCGAGCTCCCGCGGGGGGGCTGAAGGGCATGC
CCCTCCCCCGCCGACGGCGGGAGCGAAGCCCAGGCCACATTCGAAGTGTA
GCACACGTGGGCGGTCCTCTCCTTCACCACCTTGACGCAAACTTCGGCGT
GGTTGTCCCCGGTGTTTAGGAAAAAGCACGCCACGGCCCTGTCGTCCATC
TTGTTCTGCGGCTTCTCCCACATGAAACCGTACTGCCCGAACGGAATCAA
ACAGAGGCGTCGCTTCACGCCGGTGTAGAGCTCCTGCGGCGACGCGCCCC
CGGGGTTGGACCGGGAAGCGCATTGGTTCAACTTCTGCGCGGCATCTTTT
GCGGACTCCGCCCATAGCTCATCGCCGCGAACGCTGAGGCCGCGGATGCG
AGAAAAACCCGCGGGCCCAAGCAGCTCCTGGGCAGCCCGGCGAGACGCCT
TGGCCACCTTGAGGCACCTCTGGATCGCGCTCTCCGCCACTCCATTGTAC
TGCTGCGCATTGGGAGGGAATACTCGATGGCGATCCCCACGCTGGCACAG
AAGTCCTTGAAGGCACGGCTGGTCCACATGGCGTCGCAGTCGCATCGGAT
GCATTTGATCGTTGTACCCGCTTTGTGAGCCATGTCCACGGTCATACGCT
TGAAAACCGCCACGGCTTCCGACTTGCGGCGCAACGTGTAGTTGACCATG
AAGCCCGTCCCGGCGTCCACCCCGAAGAGCATGTAGTGGCACCCTCCGAG
GCTCGCCGTGTAGCCGCCGCACATGTCGATGTGGACCATGTCGTTCGGCG
CCCTCTTTCCGCGGTAACCGCCCCCCTGCTTCGGCACCGGCGCCTTCGTC
CCCCTCGCCGACAAGCACGAGCGGCAGCTCTCCAGGGTCCCGGTGAGGGT
GATCCCGAATACCTTCGCAGTCAATCTCAAGACATCATCGGAAGCATGGC
CGCAACGTTCATGGAAGATGTTAATATCCATGGTGGTGGGTGCTTTGCCG
ACATTGAACGGGTGCTTGCTAGGTCCCAACGCGGCCATACCCACACCAAA
AATGCGAGTACTGTCAAGACGGTCACGCTCTTCACTCTCCCACAGATCAC
ACATCGACGCAGAACTCTCAGCACTAGCATCCGTCACACGAGGGGGTTCG
AAATCAGCATTCATGAGGCAGGCGAGGACCTCGGGAGAACCAGTCGGAAA
TAGCAATCGCATGCACTCGTAGCCCCACTCTCCTGAGGACTCACACGCGG
CCGTAAGGGCCGAAGCACACATCGACTGTTCTCTCGACACTTCAGGAAGG
GAAATCGAGCGGTGGGGCAAGCGAGTAGCGAAAAGAGAATCACCCGAAAC
ACCACGAATGAAACGGAGCTTTCCTTGCAAAAGCTGGGTGCCGCGGGGGT
TGATTCGCACCTCGTGTTTATGCGACACCCTCCACAACGAGAAAAGATGG
AAACCACAGCCAGGCACAAAAAGCACATCCGGTACGCTGATCTCTACATC
TTCCTGTTTTCCTTCCGGTCCGATCTGGTGAAATTTGAGATCGAGACTTC
CCCTTGCGACAACCCGAATAAGACCCGTGTCACCGATTTGAATGTATTGG
TCATTCGGGTCGAGGTAGCGTACGTTGTACATGTGGTCTGGCTTGTTGGT
AATGAATGCACTTGCCCCGGAGTCAGCTTGCCACTCCTGGCTGCCCTCGG
GTTGCGGCATGCGAGAACCACACAGTAAAGCTTGGGATACAGGAGGATTC
GTCACACGCGCTACCATCATCCCAGCCACACCAGGCACATGAACACCATG
CTCAGGGATTTCCCATTCATTCTCATCATTCTCAAAGTCAATCCCATGGT
CAAACTCATCATGCAAAACCCTGTCAACGTGATCATCCAATGCCAAGTCA
AAGTCAAACTTGCCTCGAGGGCACACACTACGTGCCATGAAGAGCCGCAG
AGGTGCGTTGCCGGCCGGAGGAGGAGCGTCGCCTGGAGATGCCGGAGAAG
GAGAGGAGGAGGACGAGGCCGCTGGAGGAGCGCCGTAGTACTGCTGCTGC
TGGTAGGGTTCCGCCTGCGGTGAAAAGGGGTCGTAGGTCATGGGCTGAAA
TGCGTCGGGGCCGGCAGCGGAGAGGTAGCTCGATCCGTTACCGCCGGGGA
AAAATTCGGATGTGTTCTCCCCGCCGGCGGTGCCGCAGACCCCGGGCCCT
GGTCCACGCTGTGTGCTGCAAACCCGTAACCATGGCCCGCCTCGGGAGAT
GCCCCTGCCAAGGGCTGCGCCGTCTCCCATCCCGAGGTGAAGTGGCCGTC
CGGTTGACCCTCGCCCACGCCCCCCAGCCGGTCCCGTCTCTCATCGCCAA
GTTCGCCGGGTGGTGCCGGGGTACGTTGGCAAATTGCCCACCGGGAACGT
TGGGCGGCGGCAAATAACCACCGCGACCTCCGCCGCCCAGCCGTCCCCGG
CTCTCGAAAGGGTTTGGTGCAAAGCCGCCGTTCCCACGCCCTCTGGGGTT
GCGTCCCGTCTGCTGCTGTTGCTGCTGCTGACTCCAAGCCCTTGGGGCCG
CGCCTCGCGGCGGCGGTCCCGTATGCCGGTGGGTAGCCCTGACTCCAGCC
CACCCCGTTTGAGAATTGGGGCGGCTGCTGTCGTAGCGGACCACCATTCG
GATGCCCTGGGCCCAGTGCTCCGCCCCGAGGGGCAGGTCCTGGAGTTCCC
CTGCTCCCGTTCATGAAGTTGAGGAACGCAGGCCAGTTCTGGATGAACTC
GTCGCGCAGCTTGTGGCAGTTGGAGGAGTCGTGGGTGTAGTTCGGACCGT
GGTACCCGCAGTGGAAAGGCGGCGGCTCTTGCTGTTGGCTCTGCTGCTGC
TGCTGCTGCTGTTGCTGACCACCGCTCCCAAATCCAGCAGGTCCAGATCT
CCTCGCCCCGCCGCTCCGACCCGCGCCGGCCGCGACGAGGGCGTGCCCCG
CGTCCTCCTTCCTGTCTCCAGATCTCCGCTCCACCTCCAGCTCGTGCTCG
GCGACCCTCAGCGTCTCCTGCATTTTTGTTCTCGACAACGCGGGGTGAAA
GAGAATCAGATCCTTGGCCTTTTCAAACTCCGCAAGAAATCCACGCGCAA
TATGCTTACACATAGACTCCTCGTCCCGGTTGTCTCCGTACGTCCTCAAT
CTCATCCACAACGCACTCGCTCTACCGAAGTAGTCAGTCATGCTTTCCCC
CTGCCTCTGTCTCAACACATTCCACTCGTCATCCAGCTTTTGGCGTTCAT
GACTCTTGTTTTGACTGTAGTGTTTGAGGAACACCTGGTATCCTGCTTGC
GGCGACTCTGCTGCCATGATTTGCTGCTGGATAGAGTCAATCGTGATTCT
CGAGAGCATGAACGTCCAAATCTTTCTTGACTGCTTCACTCTCAACTCTC
CGTAGTTGTGTTTCAGCCACATCAAGTCCACATTCTCCCTGCCCACAGGA
ATATCATGTCCCATCAAGACCTCAGTCAGTTCTTCATTCTCTATCCAGGC
CTCAAACGCATTCTTGAAAAACCGCAACGCTTGGGGAACAGCACGCTTTT
GAACGAACGCTTCACTCCACTCTGGGACTTCAATTCTCTCTCTCTGCTTG
AGTTCTATGGGGACACGAGACGTGCCTGGATGGGGGTTTCCCCCCTGGTG
TTGGGAAGAGGCGAGGCCCTCTCGGACAGCATCGGCGATGATCCGTCCAA
GGGCCTCCAGCCCCGCTGTTGCTCCCGGTCTCCCATCTCCCCCCCGCTGC
TGTTGTGTACCGCCGTCGAAGAAAAAAGTTTCTTCCTCCGGCCGCGGCAC
CTTCCCCGCCGCCAGAGGCCCTTGACCTCGCTGGCGACGGAGGGTTGATA
TTTCTCTCTTCTCCGTCTTGCATCCGCGCCCGCAGACACGGCAGCCACGC
TGTCGATCTTCCGCCAGCGTGTCAGGTGGCGTTGTAGTTTGGTGCCTCCG
GCGCGGGCTCCAGTGGTGGAAATAAAAGGACAGCAGCGAAAATAGCCGCT
AAAATAACGGAAATAAAGAAAAACTATCCGCAGCCGTGAAAGGCTGGGTC
CTACTTTGTGGTGGTGGAGCGTGAAAGCTCTGTTGTTGGGTGTGAAAACC
CAGGAAACGGCGTGAAAGCCTGGGGTGGCGTGAAAGCCGGAAAGGAAGTA
TACACAGGTGGCGTGATAGCCTGGTATTGGCGTAGAAGCCGGGTATGTGG
CGTGGAAGCCGGGTTGGCGTAGAAGCCGGGGAAAAGACTTGATTATACAC
ACACAAAAGGACACGAAGAAAAAGAAGAAGAAGAAGAAAAAGAGATGAGT
GTGGAAGAGGTGAGCCTCGATGAACCACAACACCAAATCCGTTGCAGACA
CACACACCCTCAATCCTGTGATAATCGGTAAAGTTGGTACCGCCAAATCT
AATCCATAACAACTGTTGAACCCCCAAATCCCCCGCTCCATCTGCTCGGA
AAGTTCTGTGCTTGAATAATCTGTCGATGCTGTGAGTACATTCAACAAAA
TGTATGGTTTTGGTGTCGAATCAACGTAAGACCACACGAAAAGAAACAGA
GACAGTAATTCAAGAATAGAGCGCTCTGGTGTGTGCACCACCAGGGGCCA
CGTGGATCATACGGAGTGCCCCCTACACGCGGAACTGTCACGAAATATTC
AATCCTCAAACATCCAGAACCACCCTCCCTGGTTCGGAACGCAAGTGACG
AAGTACGCGTGGGTCAAGAATAAACTGGACATATCGAAGTCGGAAGTAAA
ACTTCAAACACGAGCCAAAAATTGCACACAAGGGGAAAAACCCCACCAAC
GGGCGAAAAACCCTCGAAACTCAAGTATCAAAGGAAAAAAAATCCGTCGC
TGTCATAAAACTCCAACGGACGCACATATGAGGCAAAAGAATCAATGGCA
CGAGCCGGGGGGATTGACCATCCGAAGTCTACAATGCCCTTGTGCGAACT
TGTTGTACCTAGACTTAACAAGAACACTTGTGCGTGCACTGTCAAGCCGC
GGGCCTGCTAGCAAACACCTCGGGTGACCCAGCTCGACAGTTTCACGTGA
AAACCCACATGAAAACCCAAGGATCCTGCCTGTGCTAAAATGCTACAGTC
ACTACGGCAAATTCATCAATGCCTTCCGGTGTTTCTGCAGCAACGACGCG
ATGGAAGAGCCCGGCGACGCCGCAGGGTCCACCGGGGCGTCTTCGGCGAG
CCACGCCTCATCGAGCGTCTGCTCCCTCTCTTCGAGCAAAGCTGCAGCAT
CGCGGTTCCCTCGATCCCTCGCGGTGGCAGCGAGGATAACGGTAGCGGTG
GAGTCGAGGATCTTCTGGCTCGGGCGGCGTTCTCGTCTGCCGCCGATGAT
GTCGGGCGGCTTGTGCGCGTCACCCCATTTGAGCTTGTGCTCCGCCCTCC
CTCGTAGAGCGGGTGCGTCGGTCCCACTCTCGGTGCTGTCGCCGCCGCCA
TCTCCGGCGGCGGATGGAGGCACCTGCGCATCCTTCGCACTGCTGCTGCT
GCTGCTGCTGCTGCTGTCGCTGCTGCCATCTCCGGCGGCGGTTGGAGGCA
CCCGCGCGACCGTCGCCCTGGTGCTGCTGGCGGCTTCGAGCTCTTGTAGC
ACCCGCGAGACCCGCCTGCCCGTCGCGCCAGCGCTGCTGTCGCGGCTGCC
CGCAGAACGGGGCCAGCTCGCGCCCTCCCAGCCGGAGGGGGCGGAGCCGC
CGCTGCTCGGGGAGTCGCCGCCTTTGCCTCCCGACCCCGTCAAGGGGCGT
CGCCGACGGCCTCGCCGCCGGCTCCGGGAACCTCACCGCCAAGTCGAGGA
TGGAGCCCTCCGGCTCCCCCTCCCCCCCTCCTCCTCGGCGTGCGCCCTCA
TCCCCGTCCGCCTCGCTCTCGGTGTCGTCCCCCAAGTCAGGGGGCGGCAG
CAGCTGCGGGAGCGTAAGAGGGGGAGAGGGCACAGGTTGCCAAGTGAAGT
CGTGGGTGGTGATAATCGTGCGGTTGTCGGTGAGCATTCGCACGCAGTCA
CAGTTGTGGTTGAGTCCCGGGCCGAGGTATTGGCGAAGTTGGCCTTTTGG
CTAGGAGTTGTGCCTATGTTCAGTTGCAAACGGCAGGCTTCAGGAAGGGG
TGTGTCGCCCCCGTCGGTGGCGGGTGACCGTGCCACATCTCGTGTGGCGA
TTTTTTGCCGGGATTTGCGGTCGTTGCGATGCAGTTGAGGGCGTTACATG
CCCAGCTCATCGCTTCGGCCCAAAGGGAGGGGAAGGTTGGGGCGCCGGGG
TAAACAACCGCCGCTTGAACGCGCGCTGCAGTCGCTGCATCTTTGATCAA
GCCCGTTGTATTCTGGGCTGTGAGCAGGGGAAAACTCCTGTTTGATGCAT
TATTTGCGGCACACCTCTTCGAACTGCGCCAGAGAGCCCACCCCTGTTGT
CTATGTGGGCGATCATGACCGCGGACAGAGAGCTGTTTACATGGTTTCCC
GCCAGACAATCGTCAAACGCGTCCGCGGCATCCGACTTCTGCAAGAAATA
AACGCACGACCACCTCGTGGCATCGTCCCTGACGATGAGTGTAGTACATC
CCACCGATGCTAGGAACTCCTGCCCTCCCGCTTAAGTCAAGAAAACCCGT
TCAAGTTTCTTAACGCCACGCCGGAGCGTCTTGTTCTTGATGGGCTTGCC
CGGCCCCTTGGACATCGAACAGCCTAGGCACTCGCGGAGCTTCCCCTTTA
GCTCCACGCCGTGCTGCTTCGCCGTGTACTATGGCAAATCCTCGTGCGTG
TGGTTGGGACAAGTGGAAGTCGTCAATCTCTTCGGGGGCGTCGGACGCTG
TCGCGTTCCCGGGAGCAATTACGGCGCAGGCAAGTTGTCTCTCGTCGTGG
GGTGCACGGTAGCCAACCTGTGCCGGTAGCTTCCCGACAGGGGAAAAGCA
CCGATCCCCCTCCCCTAACCTTCAACTCCAACCCTTTCCGCCCCCCCCGT
GTGCGTGTGGCCGTCTAGAGCGATGGTAGAGAAGGGGATGAGGTCGTAGA
TCAGTTACGGAATGTGGGCTAGTCTTTGTAATGGTACGTGCACTTCTCCC
TTGCCGTCTGCTTAGGGAAAAGCTACGGTGAGGTCAACATGGCCGACGAT
GGGGATTGTCCCCGTAAGTTACACGTAGACGACCAGCGCGTTCGGTGTAA
TTTGAAAGACCGAGTGCGCTAGGGACCATTGTGAGGTGGCTCCTGTATTG
GCTGTCCTCCTCCCCCGCCAGCCTTGCTCATATACGCCCCCTCCATTTTC
GAACGACCACTTGCCTGGCACTTCGGAGGCGTTGAACGCCTCATCCTCGA
CGTCCGTGCCCACCGCCGAAGTCGCGGCTGCGTCCACGACCGGCACGTCC
ACCGCGACCATCGATCCTGCTCACGTGCACCCGGAATCGTTGTGCCCGAA
CCCCATTGCACTTGCTACACTTTGCGGGCAGACCGCTTTCGTTGGCAGTG
CAGGAGCTTCGCCGGTGACCAGCTTTCCGCACCGGAAGCAGCGGTTGCGG
ACGTTGCTGTCACTGCCTCGCGCCGCCCCCGCCGCCGGCGCCACCGTTGC
CGGTGCCGCCCTTCTGCGCTCCTCCGTTTCTACTCCCGCTGTCTCCGCTA
CCTCCGCCGGAGCCCACATTCTTACCGCCACCACCGCCGCCGCCGCCGCC
GCCGTGGCGGCCGCCCTTGCGGCGGTCGTGTCCACCGCCCCTCCTGTCAC
TCGCGAGAAACGCCTGCTCCGAGTTGCGGGGACCCTTTCCGCCCTTCTTC
CCTTCCGTGAGGATTGCGTGGACGCTGCCGACCATGCGGACGACCTCCGC
CCTGTCGATTGCAGTTGCCGTCTCCAGCGCGAATTTTGCTTGTTGATTAC
TCAGAATGAAGGATCAGGAGAAAGTGTGCGAGGACAAACGTTTCAAAATC
GTTCAGTCGTTTTGCACGCAACCGAGTGTAAAAATTTGCGACGGTGTTCA
GGTGGTCGACGGGGTTGTCGAGCGATCCAGAGTCGACACGGTACCCGATG
ATCCTTTTCATAAGGACTTGAAATGATTCCTGCGGCTCTGAGTCGTGTGC
TCTTTCAATTTCCTCGAATGCATTCCTGGCCGTCGAATGCTTGTCAAAAT
TGGCGGTATCAGCCTCTCGGACGAGCGCGGATTCCAAAAAGTGCGCATGT
GCGGCCTGGATCCCTCTCTGAATATCGATTTTTGTCCAACCCTGGTCCTT
CAGGGCTTCCGTGGGAATGGCCGGGTCGCTCACTGGAGGAGTCCTCTCGT
TCCCGATCATGTGCCCGTCGATTTCGAGGGCTTTTGCTGCTCGTAGGAAA
CTTCGCTTCCACGCTGAAAAGCCTCTCCTCTTCGACTCTCCCTGAAGCTT
TGGTGCATTAACTGAAATTCGTTTCAAGTAAAGTCCTTCGAGGCCCTCAC
CGATCGTTTGCACGAGTACAGTCTCACCTTCGGGGGTTTCACCCCTTGCT
TCGCCGTGTCCATCGCCCAGATCCGGGCCCACGTAATGCGGAGGTGCGCG
GCTCCTGCCGTCCTCGTCATCAGCTTCTCGAAGCTACCCGCTTTGAAGTG
ATGGAGGTCTCCCTTGGGTCGCTAGCTCTCCAGCTCCCGTGACGGCGTGT
TCCACGACGCCGCCAGACTCTTCCTTTGGCTGCTGTACAGCAGCACTCTG
CTGCTGAACAAAAGAACCCGTAAGACGTTCAATAGCTGCATCTATCCTGT
GAATCCTCTGGTCCCCCGCACCTCCAGGCTGACTCCCAGCCTGGCGCGGG
TCATAGCTGCTTGCTCCCTGTGAGCGAGAGCGAGCCATACTACCAGATGC
GATTCCCCAGGGATCACTCTGGAGTGTTGGTGTCGCGTGTTAATCCAGTG
AACAGTATGGTTTAGGTGTCGAATCAACATAAGGCCACAAGAAAAGCAGA
GACAGCGCTCCAAGATAGAGTGCTCTGGTGTGTGCACCACGAGGGGCCAC
GAGGATCATAAGGAGTGTCCCCTATCAAGCGAAACTGTCACGAACTATCC
AACTTGCTCGAACACCCACGAACATCTCATTCAAGACTCACCATGTGCTG
TGTTTGCGCACAGGGTGTCTTTTTCTGCCACCTGGTATTTTTTGTGGCGC
ACATGCAGAATATGTGACTGATCATGTCGTTCGAGTCAATCACAAAACCA
CCGTTCGGTCCGTTGTCGGAGCTGAGTACCGCGCGTCGTTGCGCTGCACA
AGCGCTGAACATCCCAGTCATCACAGCAAGAGCAGGAAAGGCGATATGAA
CAGCATTACGTAGGCGTCGAAGGCAATTCGGCCACGTGTGTTTGATTTCC
TTATCTATGTGCGGCCTCGCCGTGTACGTACGCACCGGCCCGGGCAGACC
GCGATAACAAACGGCGGGTCAACTCTACGAGTCGTTCACGTTTTTTTTCG
TGCTGATGACCCAAGCCTTGCACATATGTTGCTCGATGACCACAGCCCCG
ACCGTCACCAGCCACTGCCTTTGTAGCTCGACCTCGCGCTACGCGTCGGC
GAAAGCAGAAACAATGGAAACAGCTCACGTCGCTTGTGACACACCTCACT
AACCCACTACCTCCACCTGCGTTTTTGCAGGGCGTTGGCGTAGAGGCAGG
GATTGCGGGATTCAACAAGTGGTTCAAGCGAGCCTTTCCGACGGCTGTCA
CTGACGTCTCACCCTCGAGGCCGAGCGAAGGTTTCGATCATGTCCTCATT
GATATGAATCAGGTGAGAGCCTCGTCCGTTGCTGGATCTTGCGGTCCGAG
GGTGGTGCAATGCTTTGTGATCACATGGGATGCTCTAACACAGCAATGCC
CTCGACTTGGCAGGGCACCAGGGACTTTATTTATTTCTTACGTTCGTGTA
GCATGGTGCGTGGCGTAGTAGCTGTGTAAGGGACACCCAAGCTTTTGCCC
ATCCTGCACATATCTCCCTCTTGACAACTCGCTATGTGGTTGATCTTGCA
AGCTTCCTCACGATCCCAAAAGAGTGATTTGAGCAGGATTCTTGTTCTCG
TCATGCACGTCATTTTGTGCGACTCGCTCACCCGCAGTGTTGCGGCGGCC
GGCGCCTTCTTGGTATATTTTCTGTTCCGACTCCAGATTTTGCATGTGGC
ACTTCGGCGGGCTACCGACGAGGACAAGGCCATTCGTAAACTTTTTAGCG
AACTCAACATAGTGCTCAGGCGTTGCCCACCTCGACGTAGTGTTGTCTTC
GCGTTCGACGGAAGGTGAGAGAGCCTCGTGTAAATGTAAAATCATGTGCC
GCTACTCATTTCCGGCCTGTCAAAGTGCTTTTACATATCGAGCTACATAA
CGTGTCGTCTTTGCGCTTCCATCCGAAGGAGTTCAGACTAAAGCTGGCAT
TCTCATGGTTTACTTTCTCCGCACGGGTCTTCGTCGATCCTCGGAAACGA
TTGAGGAAAGTACTTGTAGCAAGACTAAACCATCGTTCCGAAATGCCATG
GCGAGGTTCGCTCCTGAGGACGTGACTGATTTCGTCCTCGGCCGAGAAGG
AACTTGCATTGGCGTGAATACTCGTCGTGCCTCGACCATTTAACGAGAAG
TAATGTCCGACGCACTCTTTCACCGTAGGCAATAACAAATCTGGTGCGTG
CACCCGATGCCCTTGCAGACCCGGCAACACCGCAGGATGCCGTCGTTTGT
GGCAAGCTTGAGATATAATATCAAGCGCAAACCGTCAAGAACAAACGCGA
TGGGATTGACTGCCGCCATTCATCTTATTTCTCCACTCTCTTGCTGCTTT
CGTCGTCCTTACTGTTCCCACTTTCTCCCTGTCGCTCGGTGTCCGCGTCT
AACTACTTGCTTGGTTTTCGGCCATTCGCGGTTTCACACAGCGCTCCAAC
CGCAAAGCTTTTTGTTCAGAGAAAGCGACGGGAGGAGTCAGAACGCAGAC
CAAAATATGCCCTGAGCCCTCTCCATCTTTCTCCCGGTACCAAGTTCATG
GACGACGTTGCTCTTGCATTGGAGTACTACGCATTCCAAGAATGCACACG
GCCATGGTGAGAATGTATGTTGTAGCCGTTGTTTCAAACTGAGTTCACTG
AACCGGCGTCGAAATGCACATGTATGCACGAAATAGTCTTGTGTCTCGTG
CTTTTTTCTGCCCTTTCCCTAATCCTGTGCTATCCGATATGTCCAGTGAT
CCAATGATCCATACTGCTATCTTTTGTCTCTCTCGGTTATATTCCCGTAT
CCCGATAGCCGCTTTCCATTCGATTCCATCCCGCTTCTCAAACCCCAGAT
TTCCTGCGTTCAATCTAACACTTTGTTACGCTGATGAATCAGGAATTACT
ATTACGAGTGTCGAACGCAAGAGTCACTCGATGATGGAGTATGTCCATCG
AGCCACCCCTGCTACTGCACCCTGGCCGGGCGGTCTTGAAAACAACGCAC
ATCAATACATAACGAGGAGTACACTCCCGACAGGCTGTCACGATACCTAT
ACACAATACCTCAATTTTGCAGCCCGTCTTTGTAATCCCTTTCTTTGACT
TCAACGCGCGTGTCGAGGGAAGTATGCTCTACACCGCACTTTACGTCGCC
CCCCTCCCCCCCCCCCCCCCTGATGGCTCTCATCTCGGTGTTTGCCATCG
GGATTGGGTTTTTCGTCGCGTGGCAACGACGTTGTAAAACAAGCCAATTC
ACTTCGTGAACTCGGCAACCAGGTTACCGTCTTTTTTTTTCTCTGTTTTT
TGGCGGTAACCATAATGGTGGTCGAGAAGATCATGTGCGGAGTGGAGAAC
CCTCACCCGTGCAAGGGGATGATCGCACCACGTTGTGTTAAAATGGTCAA
GCACCCTCGAGGCAGTTACATAGTGCTTACAACTGTCTCTGGAAGTGAAA
GCACCAGAAAATAAATTAACCCATACGCAGCTGTCATCCGTGTGCAAGGA
AGTAAGCACAAGATGCCGAACACCCTCAGCAGGATGCAGCGCACCCTTCA
TGCGACTCGCCGAATACCTCACGGCGCTTCGCGCTTGGTGGTGTGAGAGC
CTGGTCCGGTGAGAACCCGGCGTGCTCCGTCCCGGCTTTGTAGGGATGCG
AGGTCAATGGTCTAACGACTACGGCATGCACGACTATGAGTACACCCCCT
CCCCCTGCGATGGAAGCACGTGATAACTACTCCGGAGTACTTGCTACGTT
GAACATAACTACGTTCCCTTTGCGTTGTGTTCCTCCTCACTGCATGCCCT
GTCCTGGTTGAGTCCTTTGCCTTTGCCCTCTAATGCGAGCACCACCGAAA
CTTCTTCCACGTCTTCCATATTTGCCTAACGTTTGCGACTGGAATGCACC
CGGTTTCGCGACCTTGTTGTGTCGCCGAAAATGATAAGCCATTTGCTTCA
CGAATGTGAGCAGTGCTCGTCAGGCTGCAGGCCTTGTCGGGCCGACATGC
TGCGCGGAGCGACAGTTGCCTCCATGCTCAACCAAACCTTCCGAGTTTTT
CCTTTCCCGTACGTCGCGATCGGAGCGAATTCAAGTCCGGCGTGAAAAGC
AAAAGTTCAAGCATCAATTCGAAACCTCGATTCCCCATATTCCTATGGGG
CAACCTCCCGGTACGGTCCAATTCCAGTCAAAATTCGCGAGGCTCACGGA
TGCTTTAAACCTCGAAATATCGTCCAAGATTCCGTCGTGTTCTCATTTTG
AAGCTCGGAACTTCAACACAATCGGCATATCGCTAGAGCGCCAATGTCGC
GAGTTGCGTCTCCCCAGCAAGAAAGCAACGTCGCCGCTCGTCAACCCGAA
TTTGTTTTGGATTTTCCCGTTCAAGTATGCGAATATGTCAGACGCCCGGC
AAAAGACTCAGTGTTAACCACAGCACTTTTCCACCCTCACCCCATTCCCT
AGTGCCTTGAAGGGCATTTTTGAATTTTCCGTAGAATGGGGCGCGTAACG
CAGGTGCCGCCCCCGCTCAGCTTACGTTCCCGAGCCAAGCCGGCCCTAAT
TGATTTGTAGAAAGAATGCTTACACGGTAAGTCGACCCTCATGCCTATGG
AAAAGATGGGCCGCTACCATCTCGCCTGTTATTGTGTGCATTTTGTCTCC
GCGAGAAGAGAATGGAGATGCCTACACTTCACTTGTTCGTCCACCACCGA
TTCTTCTGTCATATCAGGTATAAATCACGTGTTTTGTGTGCATCGCCACC
CGCCGTCATTCTACTCACGTTTTCCAAGCCGATGAACAAGTGGTGTACGT
CGCCGGAGCAACGTCGATTTCCGCATTATCGTATGCCCGAAGAGAATGGA
GGCTTGCAGCTCTCTCGGTAGACTAATATGCTGCGGCGCGAAACTGATGT
GCATCGGTGAGAGGAGACACACGCCACACCTGGTCCTCGTGTGTGCTGCT
GCAGTTATGAAGGTGTCAAATTTTACATTTCCGGGGCGAACAATCCTGGC
GAAGGGGAGCTCAAGTGCATTGATTGGCTCAAGAACATGACACAGCGCGG
TTCCGAGGAGACTGCGGTGATTGTGGGAGGAGACGCAGATTTGATTCTCC
AAGGGCTCGCTCTCAGTGAGGTCAGTGCCCATCGAGAGTACATGCGATTT
CAGGCATCACCATGGTTTCGTCCTCCAGGCCCTTCCCCTTTTTCCCCTAG
CCCCCGAACCACTTTACCCTGCTCAGCACTCCTTACGCTGCGAACGTGAC
GTTACAGGTGAAGAACACGTTCATCTGCTCCAGCACACGCACGAGCAAGG
TCCGCTTTTCGTCGATCTGGGAGGTAGTTCGCTCATTGGAGAAGTTATTT
CCGGGCCAATCAGAGGCTGTCAGACTTGATCTGGCTGCGCTCATGATTAT
GAACGGGAATGATTACCTGCCGAAGGTTCGGGGCGTGTCCTTCGACCGTA
TGTTCCGCTCTTACACCAGATTGAAAAAGGACAAGTATCGGTGAGTCCGT
TTTCCTATATTCACGATTCTGGTAGTGTAGGGTGGATCATTCGCAGGAGT
AGGTTAGAAGGACGCCTGCTTTGTACCAGCAACGTTCTCGTTCGCGATTT
ACATTCTACCCAGAGGTCCAAAATCGGTGTTGCTGGCGCAGGGTACGGCC
TCGCAAATGGCCGAACATTAAGCGTGCATGAATAGCAGCTGTGTCAAAGC
AAACGCCGAATTGAGATCATGTGGTCTCAACAATTTTGGAGGAACCTCTC
AGCATCATTCCGAGTACCTGCTTTGTAGGTGGTGGTGCATCGGCTGCTGA
AAAACTGATGTTTCCCGTTTATTTTGTAGATCAAACACTTTTCCGCGCCT
TGCTCGTTACTCAGGGATCATTCTTTGATAGACGGGGAATCGAAAACCAT
TCGTTGGGAGTTCATGGAGGACCTCATGGCAAGCGTGCCCGTGGCCATCA
CCGCACAAGCTGACCTGAACAATCGATACCCCAGTGTCGGGTCGATTTTT
AATCAGGTGAGAGGTCGACGAGACAGTCGGGATTTCATGCAAAGGAGTGT
GAACCCGGACCCGCGGTTTTTCTTACGCTTGTCTATTCATTGTACCCCTT
TTTTGTCTCTAGTCCACGAGGAAGGTTTAAACATCGCTTGCTGCACGCAT
GGGCACGTGTGTGCGGCCCCAAGTCCCTTGTTCTCGTGGCCCGGGGACAG
AGCCCCCCTTAGTTTTTGCCGACTCTCCATTATCCTCGCATGTTTGCCTG
ACGCCGGGTGTGCCGTGATTACCAGCCGCTTCGCCCTTGCCTGCGATCGT
GAATTTGGTCGTAACGACGCCCACCTGACTCTGTGCTACTGTTTGGGACT
GCCCCCACAGGCGGTGCAGCAGGGTAAGCTCGGCGAGGATGTGGAAGTAC
GAATAAACGAATTGCCTCGTTCGAGATCGAAGTCCGCCGGTGAAACGCAT
CGATGGCGTTCAAGCACGTGGGTGCAGGGAAAGGAATATGTTTTTCTCCA
CTCGTCGCCCACAAAAACAAGTGCTTTTCACGAGGCTGCGGCGAGGTTGC
TTGATGAACTGCTGCCAGGTGAGCAGGGAGCGCGGAGCGATAAAAAGTCC
TTCGAGACATAATCTTCGTTGTTCGGTTGGCAACAATGGCATGTTCCCGG
CGAAGATTATTCCAAGCACAAAATCCGACTGACCCTAACGGCAAGCGAAA
GTATCACAATCGCGCACAATGTTGGCATGCTTCTGTAATGCGACAACATC
GCTGGATCGGCAGATATGTACGAGGAGTTCATGGAGCAGGAAGCAGCTCG
TGTGGTCGAGCAAGCCCAGCTTGACGAGGACCTCAAGCAAGCCCAGCTTG
ACAATGAGAATGAAGATGTTCACTTGGTAGGTTTCGGGCTTTCGCAGCGA
AAAATTCGACGCACGCACATGGCGTTCACCCTCCGAAATCCGATAGGATC
GGGGTTACTTTTACGCCATTGTGGTGGTCGAGGAGCCCACAATTCGTGTC
ATTCCGCCGCCGTGTCCAGATCTGCAAGGTTAGACGGATTACCACTGCCT
TGAACTTAGACAACATCCCCCCCTCCTTTTCGTGGGTGTTTGCTGGTTGT
CCCAGGGCGTCGGCTCACGAGATGGTACGGAAGATGGGAACAACCCAAGC
ACCCGACGGCGTGCCAACAGGAGGCGACGTTGTGATGTGCAGGAGTATCT
ATCGGGCGTGCTCTGGAACTTGCAAATGTATGTGGACGGATACGTTCCAA
ACTTCTATTGGCACTACCGCGCCGACGTCTCCCCTTCGGCCGCCGACATT
ACGTCCTGGATACGAAACAATCCTAACAGCCTCGCCAAGGTTTCTGCCGC
GGTGACCCGAGCGCCGCCGCTACCAGCAGCCATCGCTTGCCTGTGCATGC
TGCCGATGACGGACTACGGAAAGTCATTTCTTCCGGAGCGCCTAAAGCCA
CTCGTTGAACCAGGTTCTGCGCTGCTTGAGGCCTTGGACTGGCGAGGCGC
CACCACGGGACTAGACATCCCGAAAGTTTTGCGGGTCATCCAACAAGAAG
CGCCGCACGAGCTTCGAGATTTCCACGATGGCTCTCACAGGTAGTTTTTT
TCTTGGTGCGTGTCTGATTAGCCGGTGGGCGGGGGCAGTCTGATCGGGTC
CGAATAATCTAGCAAACCCATTTTTGGGTGTTTGTCTTGAAAAGAATTGG
GGGCTATCATTATGCCGATTTCGCGCTGCGTCAGCGGGAAGATCCTTTCA
CTTTGGCGTCTCCTTACTTGGATCGTACAATTTCCGGTTTCGTGCGCTCC
TGGCTATCGACGGAATACCAGCTTCTGTTCTTACTTTTGCTCCAGCTGAT
CACGTCTCTATCGTGAACCACATCTTGATCTTGAATCCAGATTCGCGTGG
AAGGTGGTCTATCTGGATATGTCTTCGAGTCCAGGGAGCCCATCGCCCCC
GCCCCCGCCTTCGGAGGGCTTCCCGGCTCTGGGGAATACGATTCGCGGTC
GGAATTACCTGCACAGATTTGACCGGATCCAGGTCGCATCCATGTCTTCC
ACGTCTGCGCCGAGAAATCTGCCCTGGCGTTCTTCTTGCGGCCCCGGCGA
GCAACAAACACCGGGCATCCTCGACCAACCATACAAGAAGGCTTTCGCTC
AGGATTCCAAAGGCCACCAAGATGGGTTGGGCCGCAGAGGCGCGGGTGGG
AGAGGTACGCGTGGGGGGAGGCAGGCGTCGGTCGCGTGGCGTATGGAATC
CAGCACTCGAAAAATACGACGAGGCGGTCGGGCTAAGATGGAACCACGAG
CACAGCAAGGGCTCGACGAGGGGCCGGGGGAGGATGCCCCCTCTGTTCCT
CCATGTAGAGCGGCGGTTGCGGAGGCAACGAAGATCGGACCCAGACCGTT
TTCTTCCCCAGGACGACAAGATACATTTAAGAGGGGCTCTATGTGCCTAG
GTAGCTCGGCGACAGGACGCTTAGTTTGCTGCCGGATACGTTTGTGACGT
CGCTCACGGTACACCGCGTATTTCTGATGGTTTGTGCTTGCGGCTGGTCA
GCTGAGGGGTGTCGTTTCTTCCAGAGATGCCGGGGCCGTCCCGGTTTGTT
GTCAGAGCTTGTACAATTTCACATTTGGATTCACGATCCAATTACCAACG
CCGCTTGCACCCAATACATGATTTGGAGCAAGTATTTTTGCCAGCACCAA
TTTGCGGATGAAGCATGGCAGCTTGCGCAGCGTGACAACTGGCGTACACG
TCTTCGCTCTTCCCGGCTGTGTGTTGAGTGTTCGGTGTGCGCCTGCTTGG
TGAGAGCGACTCTCTTCACTATCCTGACTTTCATGGGGTAGGGTCTCTGA
TAAACAAGTACCTTTTCGTCGGGCGTGACCTGCAGATGATTTACGTTTCT
TGCGGGCGACGGCTCGTCGTCCGTGTGTCCTCTATCACACCAAACTTGGT
C
back to topCoding sequence (CDS) from alignment at P-fluviatile_contig22:2279010..2300610-
>mRNA_P-fluviatile_contig22.5012.1 ID=mRNA_P-fluviatile_contig22.5012.1|Name=mRNA_P-fluviatile_contig22.5012.1|organism=Porterinema fluviatile SAG_2381|type=CDS|length=4512bp|location=Sequence derived from alignment at P-fluviatile_contig22:2279010..2300610- (Porterinema fluviatile SAG_2381)
ATGAATCAGATGAATCAGATTTTGCATGTGGCACTTCGGCGGGCTACCGA
CGAGGACAAGGCCATTCGTAAACTTTTTAGCGAACTCAACATAGTGCTCA
GGCGTTGCCCACCTCGACGTAGTGTTGTCTTCGCGTTCGACGGAAGATTT
TGCATGTGGCACTTCGGCGGGCTACCGACGAGGACAAGGCCATTCGTAAA
CTTTTTAGCGAACTCAACATAGTGCTCAGGCGTTGCCCACCTCGACGTAG
TGTTGTCTTCGCGTTCGACGGAAGCGCTCCAACCGCAAAGCTTTTTGTTC
AGAGAAAGCGACGGGAGGAGTCAGAACGCAGACCAAAATATGCCCTGAGC
CCTCTCCATCTTTCTCCCGGTACCAAGTTCATGGACGACGTTGCTCTTGC
ATTGGAGTACTACGCATTCCAAGAATGCACACGGCCATGCGCTCCAACCG
CAAAGCTTTTTGTTCAGAGAAAGCGACGGGAGGAGTCAGAACGCAGACCA
AAATATGCCCTGAGCCCTCTCCATCTTTCTCCCGGTACCAAGTTCATGGA
CGACGTTGCTCTTGCATTGGAGTACTACGCATTCCAAGAATGCACACGGC
CATGTTATGAAGGTGTCAAATTTTACATTTCCGGGGCGAACAATCCTGGC
GAAGGGGAGCTCAAGTGCATTGATTGGCTCAAGAACATGACACAGCGCGG
TTCCGAGGAGACTGCGGTGATTGTGGGAGGAGACGCAGATTTGATTCTCC
AAGGGCTCGCTCTCAGTGAGTTATGAAGGTGTCAAATTTTACATTTCCGG
GGCGAACAATCCTGGCGAAGGGGAGCTCAAGTGCATTGATTGGCTCAAGA
ACATGACACAGCGCGGTTCCGAGGAGACTGCGGTGATTGTGGGAGGAGAC
GCAGATTTGATTCTCCAAGGGCTCGCTCTCAGTGAGGTGAAGAACACGTT
CATCTGCTCCAGCACACGCACGAGCAAGGTCCGCTTTTCGTCGATCTGGG
AGGTAGTTCGCTCATTGGAGAAGTTATTTCCGGGCCAATCAGAGGCTGTC
AGACTTGATCTGGCTGCGCTCATGATTATGAACGGGAATGATTACCTGCC
GAAGGTTCGGGGCGTGTCCTTCGACCGTATGTTCCGCTCTTACACCAGAT
TGAAAAAGGACAAGTATCGGTGAAGAACACGTTCATCTGCTCCAGCACAC
GCACGAGCAAGGTCCGCTTTTCGTCGATCTGGGAGGTAGTTCGCTCATTG
GAGAAGTTATTTCCGGGCCAATCAGAGGCTGTCAGACTTGATCTGGCTGC
GCTCATGATTATGAACGGGAATGATTACCTGCCGAAGGTTCGGGGCGTGT
CCTTCGACCGTATGTTCCGCTCTTACACCAGATTGAAAAAGGACAAGTAT
CGGGATCATTCTTTGATAGACGGGGAATCGAAAACCATTCGTTGGGAGTT
CATGGAGGACCTCATGGCAAGCGTGCCCGTGGCCATCACCGCACAAGCTG
ACCTGAACAATCGATACCCCAGTGTCGGGTCGATTTTTAATCAGGGATCA
TTCTTTGATAGACGGGGAATCGAAAACCATTCGTTGGGAGTTCATGGAGG
ACCTCATGGCAAGCGTGCCCGTGGCCATCACCGCACAAGCTGACCTGAAC
AATCGATACCCCAGTGTCGGGTCGATTTTTAATCAGGCGGTGCAGCAGGG
TAAGCTCGGCGAGGATGTGGAAGTACGAATAAACGAATTGCCTCGTTCGA
GATCGAAGTCCGCCGGTGAAACGCATCGATGGCGTTCAAGCACGTGGGTG
CAGGGAAAGGAATATGTTTTTCTCCACTCGTCGCCCACAAAAACAAGTGC
TTTTCACGAGGCTGCGGCGAGGTTGCTTGATGAACTGCTGCCAGGCGGTG
CAGCAGGGTAAGCTCGGCGAGGATGTGGAAGTACGAATAAACGAATTGCC
TCGTTCGAGATCGAAGTCCGCCGGTGAAACGCATCGATGGCGTTCAAGCA
CGTGGGTGCAGGGAAAGGAATATGTTTTTCTCCACTCGTCGCCCACAAAA
ACAAGTGCTTTTCACGAGGCTGCGGCGAGGTTGCTTGATGAACTGCTGCC
AGATATGTACGAGGAGTTCATGGAGCAGGAAGCAGCTCGTGTGGTCGAGC
AAGCCCAGCTTGACGAGGACCTCAAGCAAGCCCAGCTTGACAATGAGAAT
GAAGATGTTCACTTGATATGTACGAGGAGTTCATGGAGCAGGAAGCAGCT
CGTGTGGTCGAGCAAGCCCAGCTTGACGAGGACCTCAAGCAAGCCCAGCT
TGACAATGAGAATGAAGATGTTCACTTGGGCGTCGGCTCACGAGATGGTA
CGGAAGATGGGAACAACCCAAGCACCCGACGGCGTGCCAACAGGAGGCGA
CGTTGTGATGTGCAGGAGTATCTATCGGGCGTGCTCTGGAACTTGCAAAT
GTATGTGGACGGATACGTTCCAAACTTCTATTGGCACTACCGCGCCGACG
TCTCCCCTTCGGCCGCCGACATTACGTCCTGGATACGAAACAATCCTAAC
AGCCTCGCCAAGGTTTCTGCCGCGGTGACCCGAGCGCCGCCGCTACCAGC
AGCCATCGCTTGCCTGTGCATGCTGCCGATGACGGACTACGGAAAGTCAT
TTCTTCCGGAGCGCCTAAAGCCACTCGTTGAACCAGGTTCTGCGCTGCTT
GAGGCCTTGGACTGGCGAGGCGCCACCACGGGACTAGACATCCCGAAAGT
TTTGCGGGTCATCCAACAAGAAGCGCCGCACGAGCTTCGAGATTTCCACG
ATGGCTCTCACAGGGCGTCGGCTCACGAGATGGTACGGAAGATGGGAACA
ACCCAAGCACCCGACGGCGTGCCAACAGGAGGCGACGTTGTGATGTGCAG
GAGTATCTATCGGGCGTGCTCTGGAACTTGCAAATGTATGTGGACGGATA
CGTTCCAAACTTCTATTGGCACTACCGCGCCGACGTCTCCCCTTCGGCCG
CCGACATTACGTCCTGGATACGAAACAATCCTAACAGCCTCGCCAAGGTT
TCTGCCGCGGTGACCCGAGCGCCGCCGCTACCAGCAGCCATCGCTTGCCT
GTGCATGCTGCCGATGACGGACTACGGAAAGTCATTTCTTCCGGAGCGCC
TAAAGCCACTCGTTGAACCAGGTTCTGCGCTGCTTGAGGCCTTGGACTGG
CGAGGCGCCACCACGGGACTAGACATCCCGAAAGTTTTGCGGGTCATCCA
ACAAGAAGCGCCGCACGAGCTTCGAGATTTCCACGATGGCTCTCACAGAT
TCGCGTGGAAGGTGGTCTATCTGGATATGTCTTCGAGTCCAGGGAGCCCA
TCGCCCCCGCCCCCGCCTTCGGAGGGCTTCCCGGCTCTGGGGAATACGAT
TCGCGGTCGGAATTACCTGCACAGATTTGACCGGATCCAGGTCGCATCCA
TGTCTTCCACGTCTGCGCCGAGAAATCTGCCCTGGCGTTCTTCTTGCGGC
CCCGGCGAGCAACAAACACCGGGCATCCTCGACCAACCATACAAGAAGGC
TTTCGCTCAGGATTCCAAAGGCCACCAAGATGGGTTGGGCCGCAGAGGCG
CGGGTGGGAGAGGTACGCGTGGGGGGAGGCAGGCGTCGGTCGCGTGGCGT
ATGGAATCCAGCACTCGAAAAATACGACGAGGCGGTCGGGCTAAGATGGA
ACCACGAGCACAGCAAGGGCTCGACGAGGGGCCGGGGGAGGATGCCCCCT
CTGTTCCTCCATGTAGAGCGGCGGTTGCGGAGGCAACGAAGATCGGACCC
AGACCGTTTTCTTCCCCAGGACGACAAGATACATTTAAGAGGGGCTCTAT
GTGCCTAGGTAGCTCGGCGACAGGACGCTTAGTTTGCTGCCGGATACGTT
TGTGAATTCGCGTGGAAGGTGGTCTATCTGGATATGTCTTCGAGTCCAGG
GAGCCCATCGCCCCCGCCCCCGCCTTCGGAGGGCTTCCCGGCTCTGGGGA
ATACGATTCGCGGTCGGAATTACCTGCACAGATTTGACCGGATCCAGGTC
GCATCCATGTCTTCCACGTCTGCGCCGAGAAATCTGCCCTGGCGTTCTTC
TTGCGGCCCCGGCGAGCAACAAACACCGGGCATCCTCGACCAACCATACA
AGAAGGCTTTCGCTCAGGATTCCAAAGGCCACCAAGATGGGTTGGGCCGC
AGAGGCGCGGGTGGGAGAGGTACGCGTGGGGGGAGGCAGGCGTCGGTCGC
GTGGCGTATGGAATCCAGCACTCGAAAAATACGACGAGGCGGTCGGGCTA
AGATGGAACCACGAGCACAGCAAGGGCTCGACGAGGGGCCGGGGGAGGAT
GCCCCCTCTGTTCCTCCATGTAGAGCGGCGGTTGCGGAGGCAACGAAGAT
CGGACCCAGACCGTTTTCTTCCCCAGGACGACAAGATACATTTAAGAGGG
GCTCTATGTGCCTAGGTAGCTCGGCGACAGGACGCTTAGTTTGCTGCCGG
ATACGTTTGTGA
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