mRNA_P-fluviatile_contig8.14433.1 (mRNA) Porterinema fluviatile SAG_2381

You are viewing an mRNA, more information available on the corresponding polypeptide page

Overview
NamemRNA_P-fluviatile_contig8.14433.1
Unique NamemRNA_P-fluviatile_contig8.14433.1
TypemRNA
OrganismPorterinema fluviatile SAG_2381 (Porterinema fluviatile SAG_2381)
Homology
BLAST of mRNA_P-fluviatile_contig8.14433.1 vs. uniprot
Match: A0A6H5JQN2_9PHAE (Uncharacterized protein n=2 Tax=Ectocarpus TaxID=2879 RepID=A0A6H5JQN2_9PHAE)

HSP 1 Score: 1394 bits (3609), Expect = 0.000e+0
Identity = 1064/2037 (52.23%), Postives = 1188/2037 (58.32%), Query Frame = 1
Query:    1 MDDSSMSAWADELDSKDTKRRLAALKALGDALD--------DDEGGGATKRNQDSSRDSWQQIVAPLVRTLRDNNFKVCRSSLACLESLVARLTESDAHDSNDGSNDTGALH--------SITPFLPLITPAVVDCLGNSKIAVQEKGVSFLLTISDPAVAGARDTVASLEQHFARHRNWRVREQLVAYLGRAAEVDPSGINTIQQXXXXXXXXXXXXXXXXXXXXXXXXXXXXLLLAGALNDSASQVRQEGLAAAARVLRRLEGSSGPVLLAQLEAEGVRQTALSTLRQA-SGAAD--------VSSXXXXXXXXXXXXXLLSPATPGQPSTSRLGAXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXARLPMAXXXXXXXXXXXXXXXXXXETTGEGGAMSVLTRTAAA---EREAPTPTGRIACGDGDGGDGRAGSPTSALLGISPRGVALGSGGGEESAFSALEPLAPVTVYTERDVRREVEAAKAGLEHGSDWQRWVSAMRRLAGVALGGGGSEFPALLVGLVRASVHEMVGHKVSENRSAVAREACRCVAVLARCLTDHFGDLAELWLPELLRNTTRAVVVAAAGDEAARVIFGCTQSGFPRLLPYLIDTAKNKSAAIRRRCLDYVMLALARWNDAAFDRCVTQIRDMVAAAIEDADSAVRATGRRAYWVLGLRFPDLAQSVMSSLAPSMQRHVLREEQEFDAGAFVRAADAAAEDPQPALGEQPLDRGGDDDTDHGVATTPGAAGLADGGNGDGLPQAPSSSLVSSAAAAARRVH-RGRSSPAGRGSGNQSFQPPQKWPVISAATAFDATAESSDGGQEGTGVVRLSTRVMVDRAAASGEGSGGWGARAVRAGGGVPARRTRQ-GRS-AAHDGADFAATGYDGEGAGDGAGGGVVDIGRNWNSSPALRVAGGGGXXXXXXXXXXXXXXXXXXENIATI----AKTGAYRVPRGGVNPTAPPSSFGSASDATRVLNGGGGGEPQHQRFPATRVVARRTQVVASASATEGEGEQPTFGGSGVHSTASKAERGAQSLRVAGKQXXXXXXXXXXXXSGVLGRQGEGTGGGEAADGVPLRAA-AVPVMLDRRDVLRQMDELADQAGGPHWAARSEALERLFQLLTLESAGA----SGGNXGVGTRGDGGRFVLESRAASRRLEGVIAERLRDVNFRVVAAALKLLGGLVGAHPELAARHAWALLPAVFPNLADTKEPVRLAANGVLDACRAAYPSHQLCSSLCPRVLELPSGRARTGLLEFLAVLVPHSAGFFLQESHPAAGAGREGGGGHLQALTQRVAAALVQSPPPANWNGELGEDGPASAGAAASAAIRLLMALFQLDRAALKAAAATLPPSSAAAVRRALSVFGSPSXXXXXXXXXSVPASFPSIPHPSSSCPSRSSAHSPTGGDRPEEVVSPSMPAGGAECGNQLAGVSPAIAGEAEEKEEDRRVPPASGALPERQEGREAVDSAVVTPTAGG----SGRVGFVGEGRNRVVDNHERSPSPSSLSLSLPPPLGRQQPLEGAVALASPAETALSLSSIDPVGALSCGGVDDDRTIGRGREESDADADGDSGMFTPPPLLEKAR--RQPLAAVTPRDSNR-LPGDCNG---SDGGGKVRKTLPLFPT-SSHISVAATAAAAAT-PSRIPMKSXXXXXXXXXXXXXEDQRASAVSAAVALRVIAGLSRGARSHQKVEALSSLRRLADGEGAGGHPEFWPSFFGQVLMLLLEGAGXXXXXXXXXXXXXXXXRRR------------------------------ALLRVKHLQGVRCLVARRGGLFSEFTEVVVGRLVEIGGGVSGSSLCLAVRCEAEACLADLGGVLDPARYLEALTPLLHHAPGCAASEEAVSNGGDLPEN-----NASEVAKMQCFVLGALRALTPRLSSAVLLGALRAGPLLAGLEAALGGVDLEARKRAVLALVEMYQVLEEALLPFLAGFPTSRLKLINMYIERRRARDNRSVKAAATAAVPTAAAADNTSRFAKVASSGSREVAGT 5850
            MD SS+SAWA ELDSK+TKRRL AL+ LG+AL         +   GG    N D +  SWQQIVAPLV TLRDNNFKVCR+SLACL+SLVAR+TE DA     G     A          SITPFL LITPAVV+CLGNSK AVQEKGV  LL +SDPAVAG RDTV+SL++HFA HRNWRVRE+LVAYLGR AE+DP+GIN+I  XXXXXXXXXXX                  LLA ALNDSASQVRQE L AA RV+R L G+ GP LLAQLEA+GVRQ  LS LR A SG+A           +             LLSP TP     SR GAXXXXXXXXXXXXXXXXXXXX                     ARL  A                     G G   SVLTR       ER APTPTG  A G G GG  RAGSPT+ L+G SPRG ALGSGG EESAFSALEPL  VTVYTERDVRREVEA KAGLEH SDWQRWVSAMRRLAGVALGGGGSEF ALL GLVRASVHEMVGHKVSENRSAVAREACRCVAVLARCLTDHFG LAELWLPELLRNTTRAVVVAAAGDEAAR IFGCT+ GFPRLLPYL+DTAKNKSAAIRRRCLDY +LALA W DAAFDRC  Q+RDMVAAA+ DADS+VRAT RRAYWVL LRFPDLAQSVM SLAPSMQ                                               + TP                           A ARRVH     +P+   SG   F   Q+ P   A+ AFD     +               V VDR           G R +R     PARRTR  GR+ AAHDG    A   +    G  AG     +G                XXXXXXXXXXXXXXX   E  AT+    AK+GA+RVPRGGV+ T            TRV      G+  HQR PA RVVARR+ VV +A    GEGE  ++G  G     SK  RG Q  R+ G+Q            +  +GR+ E  G  +A  G  +RA  A P++LDRR VLRQMD+LADQAG  HW AR+EALE +  LLT E         G N G G RG+GG+FVLESR ASRRLE VIAER RDVNFRVVAAALKL GGLV AHP L A H  ALLP+VFP LAD KEPVR AAN  L+ACRAAY  +QLCSSLCPRVLELP+GRARTGLLEFLAV+VPHSA FFL + H            H+Q+LTQRVA+AL Q+PPP+NW+G LGEDGP SAG AASAAIRLL AL +LD  AL  A+A LPP  AAAVRRALS                                            RP+   SP    G A      AG S   A  A E +  R     S       +G E   +AVVTP  GG     G+ G   EG +                                     P E   +LSS +P  A  C    ++R+  RGR E++      S +FTPP   ++    RQPLA +TPRDSNR L G+ +    S G GK+ K L  FPT    + ++A A A+AT  S +P  +             +DQ+A+A +  V  R+IAGLSRGARSH+K+EALSSLR LADGEGAGG P+FWP +FGQVLMLLLEGA      XXXXXXX                                     ALLR KHLQGVRCLVARRG +F   TE+VVGRLVEIGGG       +AVRCEAEACLADL  VLDPARYL  LTPL+   P                         ++    QC  LGALRALTPRLSS  LLGAL AGPLLAGLEAALGG DLEARKRAVLALVEMYQVLEEALLPFLA FPT+RLKLI MYIE+RRARD R+  AAA         + +T RFA V S  S  VA T
Sbjct:    1 MDASSLSAWASELDSKNTKRRLQALEDLGEALQSQPPRSSSETASGGGLACNYDDN--SWQQIVAPLVHTLRDNNFKVCRASLACLKSLVARVTEHDATRKTAGRTAAAAASGRKGSTNSSITPFLSLITPAVVECLGNSKAAVQEKGVDLLLAVSDPAVAGGRDTVSSLQRHFAGHRNWRVRERLVAYLGRVAELDPAGINSIHXXXXXXXXXXXXAAETESSLLAG-------LLADALNDSASQVRQEALGAATRVVRMLGGNGGPGLLAQLEAKGVRQVVLSALRDAGSGSATGXXXXXXXXETGSAFTEGAAATAGLLSPITPAPQLASRSGAXXXXXXXXXXXXXXXXXXXXGIANGGG--------------ARLTTATRSRRPTAAGKG---------GRGATTSVLTRAGVGVPGERGAPTPTGGEAAGRGGGGS-RAGSPTT-LIGNSPRGCALGSGG-EESAFSALEPLVAVTVYTERDVRREVEAVKAGLEHESDWQRWVSAMRRLAGVALGGGGSEFSALLAGLVRASVHEMVGHKVSENRSAVAREACRCVAVLARCLTDHFGALAELWLPELLRNTTRAVVVAAAGDEAARAIFGCTKDGFPRLLPYLVDTAKNKSAAIRRRCLDYAVLALACWGDAAFDRCAVQLRDMVAAAVADADSSVRATARRAYWVLNLRFPDLAQSVMGSLAPSMQ----------------------------------------------ASRTP---------------------------AVARRVHGTHHGAPSSTSSGAHQFA--QRRP---ASAAFDGEGGLAXXXXXXXXXXXXXXXVKVDRXXXXXXXXXXXG-RVLRRXXXXPARRTRPPGRAPAAHDGTMDVADNRNASSFG--AGSAFDSVGXXXXXXXXXXXX---XXXXXXXXXXXXXXXXSEGELAATMMPATAKSGAFRVPRGGVSET-----------MTRVP-AAASGDALHQRSPAARVVARRSSVVPAAG---GEGEYQSYGAPGALGGVSKGGRGVQPARIVGRQQQQQRLD-----ASAVGRREEEPGESKADGGGAMRAVVAAPIVLDRRHVLRQMDDLADQAGASHWGARTEALESMLHLLTAEGGXXXXXXDGSNIGSGKRGEGGKFVLESRPASRRLETVIAERTRDVNFRVVAAALKLFGGLVEAHPALMADHTSALLPSVFPTLADPKEPVRQAANEALNACRAAYNPNQLCSSLCPRVLELPAGRARTGLLEFLAVVVPHSAVFFL-DGHXXXXXXXXXXX-HMQSLTQRVASALAQTPPPSNWDGSLGEDGPTSAGPAASAAIRLLTALSRLDGDALATASAALPPEPAAAVRRALSFL------------------------------------------RPKSP-SPPRRTGAAALSPTSAGESAVAAVGAVEADGTRSPTTVSDG-----DGEEHGVAAVVTPAVGGVRGVGGKPGDGNEGSSXXXXXXXXXXXXXXXXXXXXXXXXXXXXXP-------PGEGGFALSS-NPGSAFLC----EERSGERGRLEAE------SPLFTPPEQRQQRNPHRQPLAPLTPRDSNRQLTGEQHAGLVSGGSGKI-KQLAGFPTPKKSLVLSAVAPASATRSSTVPAATS------------QDQKAAAEAVMVGGRLIAGLSRGARSHRKIEALSSLRGLADGEGAGGRPDFWPRYFGQVLMLLLEGAAVSSPVXXXXXXXGVGRGEXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXALLRAKHLQGVRCLVARRGEMFPGSTEMVVGRLVEIGGGGGEGDPSVAVRCEAEACLADLVSVLDPARYLAVLTPLIALLPAAXXXXXXXXXXXXXXXXXXXLAGGAQGVLAQCVALGALRALTPRLSSPGLLGALGAGPLLAGLEAALGGGDLEARKRAVLALVEMYQVLEEALLPFLANFPTNRLKLITMYIEQRRARDKRASAAAACTG------SASTPRFATVKSGASGAVAAT 1811          
BLAST of mRNA_P-fluviatile_contig8.14433.1 vs. uniprot
Match: A0A835ZF61_9STRA (Armadillo-type protein n=1 Tax=Tribonema minus TaxID=303371 RepID=A0A835ZF61_9STRA)

HSP 1 Score: 168 bits (425), Expect = 6.580e-38
Identity = 108/255 (42.35%), Postives = 146/255 (57.25%), Query Frame = 1
Query: 1336 FSALEPLAPVTVYTERDVRREVEAAKAGLEHGSDWQRWVSAMRRLAGVALGGGGSEFPALL---VGLVRAS-VHEMVGHKVSENRSAVAREACRCVAVLARCLTDHFGDLAELWLPELLRNTTRAV-VVAAAGDEAARVIFGCTQSGFPRLLPYLIDTAKNKSAAIRRRCLDYVMLALARWNDAA-FDRCVTQIRDMVAAAIEDAD-SAVRATGRRAYWVLGLRFPDLAQSVMSSLAPSMQRHVLREEQEFDAGA 2079
            F+ L P+ PV VYTE DV+RE++A   GL+   DW+ WV+A++RLAGVA GG  ++  ALL   V  VRAS V   V   V + RSAV +EACR  A +   L      LAE WLP LLRN + A   ++A+   AA  I   T  GFP+LLP L+  A  K+A +R R + Y+ LA++ W +   ++R +  I D V  A+ D D    RA   R Y  L  R+P LA  VM ++   +QR  LREE++  A A
Sbjct:  293 FAKLPPIQPVRVYTEGDVQREIDAVARGLQRADDWEAWVAALQRLAGVARGGA-ADSAALLAAFVAAVRASGVDAAVAKHVCDLRSAVQKEACRAAAAVVTALGAATAPLAEAWLPALLRNASNAKETISASAHCAAESILTATPEGFPKLLPQLLVGAAAKAAPVRHRSMGYLFLAVSTWAEGGVWERSLGPIADAVTVAVADKDVQFTRAAACRVYCALSRRYPALAARVMGAVDLRVQRR-LREEEQASAAA 545          
BLAST of mRNA_P-fluviatile_contig8.14433.1 vs. uniprot
Match: A0A6G0XDU9_9STRA (Uncharacterized protein n=1 Tax=Aphanomyces euteiches TaxID=100861 RepID=A0A6G0XDU9_9STRA)

HSP 1 Score: 127 bits (320), Expect = 1.370e-25
Identity = 79/265 (29.81%), Postives = 138/265 (52.08%), Query Frame = 1
Query: 1330 SAFSALEPLAPVTV--YTERDVRREVEAAKAGLEHGSDWQRWVSAMRRLAGVALGGGGSEFPALLVGLVRASVHEMVGHKVSENRSAVAREACRCVAVLARCLTDHFGDLAELWLPELLRNTTRAV-VVAAAGDEAARVIFGCTQSGFPRLLPYLIDTAKNKSAAIRRRCLDYVMLALARWNDAAFDRCVTQIRDMVAAAIEDADSAVRATGRRAYWVLGLRFPDLAQSVMSSLAPSMQRHVLREEQEFDAGAFVRAADAAAEDP 2115
            S+  ++E + P     +++R++  E++    GL   S+W R V AM+RL   AL  GG+    +    +R  + E +  +V + RSAV REAC  +AV+A  + D F   AE ++  LL++T   + ++A + D   + I   TQ+G+P+++  LID A++++  +R  C+DY+ +A + W+    +R    +  ++   + DA + VR   RR +W     F   A+SV   L  S QR  L+E+   +    V   D  + DP
Sbjct:  252 SSTGSIESVPPPISCQFSDRELTSELQRVTQGLTPDSEWSRRVEAMQRLQ--ALVAGGAALQPIFASTLR-QLRETLCEQVGDLRSAVLREACTTIAVIANAMGDAFNTHAEFFVAALLKSTIVTIQIIAVSADSCLKSIVRSTQTGYPKVMTKLIDGARSRNQVLRLHCVDYLTMAFSLWHVVVLERAADSMAALLPHILCDAQADVRLAARRCFWSFHRTFEARAESVRMQLDSSTQRR-LQEDVNMEGARNVNPVDLTSIDP 512          
BLAST of mRNA_P-fluviatile_contig8.14433.1 vs. uniprot
Match: A0A388KSX1_CHABU (Uncharacterized protein n=1 Tax=Chara braunii TaxID=69332 RepID=A0A388KSX1_CHABU)

HSP 1 Score: 118 bits (295), Expect = 1.430e-22
Identity = 77/237 (32.49%), Postives = 129/237 (54.43%), Query Frame = 1
Query: 1360 PVTVYTERDVRREVEAAKAGLEHGSDWQRWVSAMRRLAGVALGGGGSEFPALLVGLVRASVHEMVGHKVSENRSAVAREACRCVAVLARCLTDHFGDLAELWLPELLRNTTRAV-VVAAAGDEAAR-VIFGCTQSGFPRLLPYLIDTAKN-KSAAIRRRCLDYVMLALARWNDAA-FDRCVTQIRDMVAAAIEDADSAVRATGRRAYWVLGLRFPDLAQSVMSSLAPSMQRHVLREE 2058
            PV VY+E+D+ +E+E A A L   +DW   +  M+R+ G+ + GG S+F A   G++   + + +  ++ + RSA+ R+ C+ + +LA+ L   F  LAE  +P LL+     V V+A + D   R ++  C  +   R++P + D+A + +S  +R RC DY +L L  W +A    R      +++   + DA S VRAT R+ Y V  LR+PD  + + S    S Q+ +  EE
Sbjct:   45 PVRVYSEKDLSKEIEKAAAMLVPETDWSVRMKVMQRVEGL-VAGGASDFDAF-PGMLLRQMKDAIAGQLQDRRSAIVRQTCQMLNLLAKELRFAFEPLAEFLIPVLLKLVVITVLVIAESADNCIRTMLLHCRVA---RIVPRIADSAMHDRSPPLRLRCCDYALLVLESWGEAPEVTRLADLYEELIKCCVGDAMSEVRATARQCYRVFALRWPDRGRRLFSRFDGSTQKLLTEEE 276          
BLAST of mRNA_P-fluviatile_contig8.14433.1 vs. uniprot
Match: A0A2K1K7V5_PHYPA (Uncharacterized protein n=2 Tax=Physcomitrium patens TaxID=3218 RepID=A0A2K1K7V5_PHYPA)

HSP 1 Score: 115 bits (288), Expect = 9.680e-22
Identity = 78/237 (32.91%), Postives = 124/237 (52.32%), Query Frame = 1
Query: 1348 EPLAPVTVYTERDVRREVEAAKAGLEHGSDWQRWVSAMRRLAGVALGGGG--SEFPALLVGLVRASVHEMVGHKVSENRSAVAREACRCVAVLARCLTDHFGDLAELWLPELLRNTTRAVVVAAAGDEAA--RVIFGCTQSGFPRLLPYLIDTAKN-KSAAIRRRCLDYVMLALARWNDAA-FDRCVTQIRDMVAAAIEDADSAVRATGRRAYWVLGLRFPDLAQSVMSSLAPSMQR 2040
            +P  P+ V++ERD+ +E E A + L    DW   +SAMRR+ G+ +GG    S F  LL  LV     ++     ++ RS++ ++AC+ + VL + L   F   AE +LP L +     V+V A   +A    ++  C  +   RLLP ++D AK+ +SA +R RC +Y++L L RW DA    R      D++     DA S VR+  R+ Y V    +PD A+ +  +  P  Q+
Sbjct:  293 KPADPIRVFSERDLAKEFEKAASMLAPTQDWSIRMSAMRRIEGIVVGGATKYSGFLQLLKQLVNPLCDQL-----ADRRSSIVKQACQLLKVLTKELKSDFDVFAETFLPVLFKLVVITVLVIAESADACIKSMLQHCKVA---RLLPKMVDFAKHDRSAVLRARCCEYLLLVLERWFDAPEMQRSAELYEDLIKCCCADAMSEVRSLARQCYRVFARCWPDRARRLYQAFDPVTQK 521          
BLAST of mRNA_P-fluviatile_contig8.14433.1 vs. uniprot
Match: A0A8D7FQY8_MUSAM ((wild Malaysian banana) hypothetical protein n=3 Tax=Musa acuminata subsp. malaccensis TaxID=214687 RepID=A0A8D7FQY8_MUSAM)

HSP 1 Score: 113 bits (283), Expect = 3.630e-21
Identity = 77/262 (29.39%), Postives = 138/262 (52.67%), Query Frame = 1
Query: 1285 ISPRGVALGSGGGEESAFSALEPLAPVTVYTERDVRREVEAAKAGLEHGSDWQRWVSAMRRLAGVALGGGGSEFPALLVGLVRASVHEMVGHKVSENRSAVAREACRCVAVLARCLTDHFGDLAELWLPELLRNTTRAV-VVAAAGDEAARVIF-GCTQSGFPRLLPYLIDTAKN-KSAAIRRRCLDYVMLALARWNDAA-FDRCVTQIRDMVAAAIEDADSAVRATGRRAYWVLGLRFPDLAQSVMSSLAPSMQRHVLREE 2058
            ++PR  +  SG  +  A    +P+AP+ VY+E+++ RE+E   + L    DW   ++AM+R+  +  GG  +++P+ L  L +      +  ++ + RS++ ++AC  + +L++ L   F   A++ +P LL+     V V+A + D   + +   C  +   R+LP + D AKN KSA +R RC +Y +L L  W DA    R      D++   + DA S VR+T R  Y +    +PD ++ +  S  P +QR +  E+
Sbjct:  253 MAPRETSFSSGKCDIDATE--KPVAPIKVYSEKELMREMEKIASTLVPEKDWSLRIAAMQRVESLVYGGA-TDYPSFLALLKQLGAP--LSTQLLDRRSSIVKQACHLLNLLSKELMGDFEACADMLIPVLLKLVVITVLVIAESADNCIKTMLRNCKVA---RVLPRIADVAKNDKSAVLRARCCEYALLILEYWADAPEIQRSADLYEDLIKCCVADAMSEVRSTARTCYRMFTKTWPDRSRRLFLSFDPVIQRIINEED 506          
BLAST of mRNA_P-fluviatile_contig8.14433.1 vs. uniprot
Match: A0A8J9RFJ2_9CHLO (Probable CLIP-associating protein 2 n=1 Tax=Coccomyxa sp. Obi TaxID=2315456 RepID=A0A8J9RFJ2_9CHLO)

HSP 1 Score: 103 bits (257), Expect = 3.570e-18
Identity = 83/265 (31.32%), Postives = 133/265 (50.19%), Query Frame = 1
Query: 1261 SPTSALLGISPR-GVALGSGGGEESAFSALEPLAPVTVYTERDVRREVEAAKAGLEHGSDWQRWVSAMRRLAGVALGG--GGSEFPALLVGLVRASVHEMVGHKVSENRSAVAREACRCVAVLARCLTDHFGDLAELWLPELLRNTTRAV-VVAAAGDEAARVIFGCTQSGFPRLLPYLIDT-AKNKSAAIRRRCLDYVMLALARWNDAAFDRCVTQIRDMVAAAIEDADSAVRATGRRAYWVLGLRFPDLAQSVMSSLAPSMQR 2040
            S  S++  +S R G  + SGG   +A   +    P+ V  ER +R E++     L    +W R + A+ RL G+  GG  G   F  LL      S+ E +  +V + RSAV+R+AC  ++VLA  +      +A  +L  L +     V ++A + D  ARV+    QS  PRLLP L  T  K++SA +R+   +Y++  L  W+ AA DR +  I + V AA +DA +  R+ GR A+       P+    +++S    +Q+
Sbjct:   29 SRASSIANVSTRRGGFMDSGG--YTASGEVPQAQPIHVAGERQLRAELDGLIRQLSADEEWTRRIDALLRLEGLVRGGAAGLPGFAELL-----KSLQEPIVVQVLDRRSAVSRQACHLISVLAEHMGARLETVAMAFLAALFKVLVITVQIMADSADACARVLLRHCQS--PRLLPRLCSTLCKDRSAKLRQFAAEYLIQVLEEWDSAALDRSLAAIEEAVLAAAQDAVADTRSAGRAAFAAYCRARPERMHPLLASQNSGLQQ 284          
BLAST of mRNA_P-fluviatile_contig8.14433.1 vs. uniprot
Match: E1ZNP2_CHLVA (Uncharacterized protein n=1 Tax=Chlorella variabilis TaxID=554065 RepID=E1ZNP2_CHLVA)

HSP 1 Score: 102 bits (253), Expect = 8.990e-18
Identity = 73/240 (30.42%), Postives = 114/240 (47.50%), Query Frame = 1
Query: 1330 SAFSALEPLAPVTVYTERDVRREVEAAKAGLEHGSDWQRWVSAMRRLAGVALGG--GGSEFPALLVGLVRASVHEMVGHKVSENRSAVAREACRCVAVLARCLTDHFGDLAELWLPELLRNTTRAV-VVAAAGDEAARVIFGCTQSGFPRLLPYLIDT-AKNKSAAIRRRCLDYVMLALARWNDAAFDRCVTQIRDMVAAAIEDADSAVRATGRRAYWVLGLRFPDLAQSVMSSLAPSMQ 2037
            SAF  L    PV V     +R E+E     L    DW + V A+ RL G+   G  G + FP LL+G     V + +  ++ E RSAV+R+AC  V VLA      F  LA   LP + +     + +V+ A D     +     S  PRLLP L    A +++  +R+   ++++ A+  W  A ++R +  +   V AA++DA +  R  GR  Y      +P  AQ++++ L    Q
Sbjct:   25 SAFDGLPEAVPVAVGCSAALRAEMEHLPDLLVSSVDWTQRVDALLRLEGLVQSGAAGFATFPELLLG-----VRDSLAAQMQERRSAVSRQACHTVCVLAAACGTSFEPLAVHLLPVVFKTLAMGIQIVSEAADACTYAMLAACPS--PRLLPKLCSVVAGDRNGRLRQSAAEFLLRAVEGWEPAIYERQLECVERAVLAAVQDAHAETRVVGRSLYGAYARSWPAQAQAMLARLERDRQ 257          
BLAST of mRNA_P-fluviatile_contig8.14433.1 vs. uniprot
Match: A0A061EM28_THECC (CLIP-associated protein, putative isoform 1 n=6 Tax=Theobroma cacao TaxID=3641 RepID=A0A061EM28_THECC)

HSP 1 Score: 102 bits (253), Expect = 1.180e-17
Identity = 70/237 (29.54%), Postives = 123/237 (51.90%), Query Frame = 1
Query: 1348 EPLAPVTVYTERDVRREVEAAKAGLEHGSDWQRWVSAMRRLAGVALGGGGSE--FPALLVGLVRASVHEMVGHKVSENRSAVAREACRCVAVLARCLTDHFGDLAELWLPELLRNTTRAV-VVAAAGDEAARVIF-GCTQSGFPRLLPYLIDTAKN-KSAAIRRRCLDYVMLALARWNDAA-FDRCVTQIRDMVAAAIEDADSAVRATGRRAYWVLGLRFPDLAQSVMSSLAPSMQR 2040
            +P+ PVT+Y+E+++ RE+E     L   +DW   ++AM+++  + +GG      F ALL  LV     ++     S+ R ++ ++AC  ++ L++ L   F   AE+++P L +     V V+A + D   + +   C  S   R+LP ++D AK+ ++A +R RC +Y +L L  W DA    R      D++   I DA S VR+  R  Y +    +P+ +  +  S  P +QR
Sbjct:  269 KPVVPVTLYSEKELIREMEKIACMLMAENDWSVRIAAMQQVQALVIGGAVDYLCFHALLKQLVAPLCTQL-----SDRRLSIVKQACHLLSFLSKELLGDFEACAEMFVPVLFKLVVITVLVIAESADTCIKTMLCSCKVS---RVLPQIVDHAKHDRNAVLRARCCEYSLLMLEYWADAPEIQRSADLYEDLIQCCIADAMSEVRSNARHCYRMFKKTWPERSLQLFQSFDPVIQR 497          
BLAST of mRNA_P-fluviatile_contig8.14433.1 vs. uniprot
Match: A0A2P6VC76_9CHLO (CLIP-associated-like isoform A n=1 Tax=Micractinium conductrix TaxID=554055 RepID=A0A2P6VC76_9CHLO)

HSP 1 Score: 97.8 bits (242), Expect = 2.150e-16
Identity = 71/240 (29.58%), Postives = 114/240 (47.50%), Query Frame = 1
Query: 1312 SGGGEESAFSALEPLAPVTVYTERDVRREVEAAKAGLEHGSDWQRWVSAMRRLAGVALGGGGSEFPALLVGLVRASVHEMVGHKVSENRSAVAREACRCVAVLARCLTDHFGDLAELWLPELLRNTTRAV-VVAAAGDEAARVIFGCTQSGFPRLLPYLIDTAK-NKSAAIRRRCLDYVMLALARWNDAAFDRCVTQIRDMVAAAIEDADSAVRATGRRAYWVLGLRFPDLAQSVMSSLA 2025
            +G G+ +   AL   AP  V ++ ++R E+E   A L   ++W   V A+ RL G+  GG  +E PA    LV   + + +  ++ E RSAV+R+AC  V +LA      F  LA   LP L +     + VV+   +  A  I     S   RLLP L+     +++  +R+   ++++ AL  W  +  +R +  I   V AA  DA +  RATGR  +      +P    + +  LA
Sbjct:    8 AGFGDAAGVGALPEAAPFVVGSQAELRAELERVAAQLSPSTEWTLRVDALLRLEGLVKGGA-AELPAF-ADLVSMLLRDALATQLQERRSAVSRQACHAVGMLAAACGHAFEPLAMHLLPLLFKTLAMGINVVSDCAESCAHEILAHCHSA--RLLPRLLAVVSGDRNGRLRQSAAEWLLAALQWWEPSEMERQLEPIERAVLAAAGDAQAETRATGRALFAAFSRAWPAAGAATLGRLA 243          
The following BLAST results are available for this feature:
BLAST of mRNA_P-fluviatile_contig8.14433.1 vs. uniprot
Analysis Date: 2022-09-19 (Diamond blastx: OGS1.0 vs UniRef90)
Total hits: 25
Match NameE-valueIdentityDescription
A0A6H5JQN2_9PHAE0.000e+052.23Uncharacterized protein n=2 Tax=Ectocarpus TaxID=2... [more]
A0A835ZF61_9STRA6.580e-3842.35Armadillo-type protein n=1 Tax=Tribonema minus Tax... [more]
A0A6G0XDU9_9STRA1.370e-2529.81Uncharacterized protein n=1 Tax=Aphanomyces euteic... [more]
A0A388KSX1_CHABU1.430e-2232.49Uncharacterized protein n=1 Tax=Chara braunii TaxI... [more]
A0A2K1K7V5_PHYPA9.680e-2232.91Uncharacterized protein n=2 Tax=Physcomitrium pate... [more]
A0A8D7FQY8_MUSAM3.630e-2129.39(wild Malaysian banana) hypothetical protein n=3 T... [more]
A0A8J9RFJ2_9CHLO3.570e-1831.32Probable CLIP-associating protein 2 n=1 Tax=Coccom... [more]
E1ZNP2_CHLVA8.990e-1830.42Uncharacterized protein n=1 Tax=Chlorella variabil... [more]
A0A061EM28_THECC1.180e-1729.54CLIP-associated protein, putative isoform 1 n=6 Ta... [more]
A0A2P6VC76_9CHLO2.150e-1629.58CLIP-associated-like isoform A n=1 Tax=Micractiniu... [more]

Pages

back to top
Alignments
The following features are aligned
Aligned FeatureFeature TypeAlignment Location
P-fluviatile_contig8contigP-fluviatile_contig8:1348607..1361967 -
Analyses
This mRNA is derived from or has results from the following analyses
Analysis NameDate Performed
Diamond blastx: OGS1.0 vs UniRef902022-09-19
OGS1.0 of Porterinema fluviatile SAG_23812021-02-24
Properties
Property NameValue
Taxonomic scopeEukaryota
Seed ortholog score1463.4
Seed ortholog evalue0.0
Seed eggNOG ortholog2880.D7G2M5
KEGG koko:K16578
EggNOG free text desc.CLASP N terminal
EggNOG OGs29CAA@1,2RJDW@2759
COG Functional cat.S
Best tax levelEukaryota
Best eggNOG OGNA|NA|NA
BRITEko00000,ko03036,ko04812
Hectar predicted targeting categoryother localisation
Ec32 ortholog descriptionArmadillo-type fold
Ec32 orthologEc-11_002780.1
Exons11
Model size6756
Cds size5937
Stop1
Start1
Relationships

The following polypeptide feature(s) derives from this mRNA:

Feature NameUnique NameSpeciesTypePosition
mRNA_P-fluviatile_contig8.14433.1prot_P-fluviatile_contig8.14433.1Porterinema fluviatile SAG_2381polypeptideP-fluviatile_contig8 1349426..1361967 -


The following UTR feature(s) are a part of this mRNA:

Feature NameUnique NameSpeciesTypePosition
1622817233.0410216-UTR-P-fluviatile_contig8:1348606..13494251622817233.0410216-UTR-P-fluviatile_contig8:1348606..1349425Porterinema fluviatile SAG_2381UTRP-fluviatile_contig8 1348607..1349425 -
1693571597.6261404-UTR-P-fluviatile_contig8:1348606..13494251693571597.6261404-UTR-P-fluviatile_contig8:1348606..1349425Porterinema fluviatile SAG_2381UTRP-fluviatile_contig8 1348607..1349425 -


The following CDS feature(s) are a part of this mRNA:

Feature NameUnique NameSpeciesTypePosition
1622817233.05426-CDS-P-fluviatile_contig8:1349425..13497221622817233.05426-CDS-P-fluviatile_contig8:1349425..1349722Porterinema fluviatile SAG_2381CDSP-fluviatile_contig8 1349426..1349722 -
1693571597.6388247-CDS-P-fluviatile_contig8:1349425..13497221693571597.6388247-CDS-P-fluviatile_contig8:1349425..1349722Porterinema fluviatile SAG_2381CDSP-fluviatile_contig8 1349426..1349722 -
1622817233.0660043-CDS-P-fluviatile_contig8:1350291..13523971622817233.0660043-CDS-P-fluviatile_contig8:1350291..1352397Porterinema fluviatile SAG_2381CDSP-fluviatile_contig8 1350292..1352397 -
1693571597.6490839-CDS-P-fluviatile_contig8:1350291..13523971693571597.6490839-CDS-P-fluviatile_contig8:1350291..1352397Porterinema fluviatile SAG_2381CDSP-fluviatile_contig8 1350292..1352397 -
1622817233.076534-CDS-P-fluviatile_contig8:1352684..13529991622817233.076534-CDS-P-fluviatile_contig8:1352684..1352999Porterinema fluviatile SAG_2381CDSP-fluviatile_contig8 1352685..1352999 -
1693571597.6578052-CDS-P-fluviatile_contig8:1352684..13529991693571597.6578052-CDS-P-fluviatile_contig8:1352684..1352999Porterinema fluviatile SAG_2381CDSP-fluviatile_contig8 1352685..1352999 -
1622817233.087169-CDS-P-fluviatile_contig8:1353382..13544831622817233.087169-CDS-P-fluviatile_contig8:1353382..1354483Porterinema fluviatile SAG_2381CDSP-fluviatile_contig8 1353383..1354483 -
1693571597.6665158-CDS-P-fluviatile_contig8:1353382..13544831693571597.6665158-CDS-P-fluviatile_contig8:1353382..1354483Porterinema fluviatile SAG_2381CDSP-fluviatile_contig8 1353383..1354483 -
1622817233.0973587-CDS-P-fluviatile_contig8:1355082..13551631622817233.0973587-CDS-P-fluviatile_contig8:1355082..1355163Porterinema fluviatile SAG_2381CDSP-fluviatile_contig8 1355083..1355163 -
1693571597.6749787-CDS-P-fluviatile_contig8:1355082..13551631693571597.6749787-CDS-P-fluviatile_contig8:1355082..1355163Porterinema fluviatile SAG_2381CDSP-fluviatile_contig8 1355083..1355163 -
1622817233.110353-CDS-P-fluviatile_contig8:1355734..13558701622817233.110353-CDS-P-fluviatile_contig8:1355734..1355870Porterinema fluviatile SAG_2381CDSP-fluviatile_contig8 1355735..1355870 -
1693571597.6833785-CDS-P-fluviatile_contig8:1355734..13558701693571597.6833785-CDS-P-fluviatile_contig8:1355734..1355870Porterinema fluviatile SAG_2381CDSP-fluviatile_contig8 1355735..1355870 -
1622817233.121543-CDS-P-fluviatile_contig8:1356259..13564151622817233.121543-CDS-P-fluviatile_contig8:1356259..1356415Porterinema fluviatile SAG_2381CDSP-fluviatile_contig8 1356260..1356415 -
1693571597.691405-CDS-P-fluviatile_contig8:1356259..13564151693571597.691405-CDS-P-fluviatile_contig8:1356259..1356415Porterinema fluviatile SAG_2381CDSP-fluviatile_contig8 1356260..1356415 -
1622817233.133561-CDS-P-fluviatile_contig8:1357627..13578091622817233.133561-CDS-P-fluviatile_contig8:1357627..1357809Porterinema fluviatile SAG_2381CDSP-fluviatile_contig8 1357628..1357809 -
1693571597.701118-CDS-P-fluviatile_contig8:1357627..13578091693571597.701118-CDS-P-fluviatile_contig8:1357627..1357809Porterinema fluviatile SAG_2381CDSP-fluviatile_contig8 1357628..1357809 -
1622817233.1452055-CDS-P-fluviatile_contig8:1358523..13587301622817233.1452055-CDS-P-fluviatile_contig8:1358523..1358730Porterinema fluviatile SAG_2381CDSP-fluviatile_contig8 1358524..1358730 -
1693571597.711671-CDS-P-fluviatile_contig8:1358523..13587301693571597.711671-CDS-P-fluviatile_contig8:1358523..1358730Porterinema fluviatile SAG_2381CDSP-fluviatile_contig8 1358524..1358730 -
1622817233.1563606-CDS-P-fluviatile_contig8:1359340..13599281622817233.1563606-CDS-P-fluviatile_contig8:1359340..1359928Porterinema fluviatile SAG_2381CDSP-fluviatile_contig8 1359341..1359928 -
1693571597.7219558-CDS-P-fluviatile_contig8:1359340..13599281693571597.7219558-CDS-P-fluviatile_contig8:1359340..1359928Porterinema fluviatile SAG_2381CDSP-fluviatile_contig8 1359341..1359928 -
1622817233.167873-CDS-P-fluviatile_contig8:1361199..13619671622817233.167873-CDS-P-fluviatile_contig8:1361199..1361967Porterinema fluviatile SAG_2381CDSP-fluviatile_contig8 1361200..1361967 -
1693571597.7302287-CDS-P-fluviatile_contig8:1361199..13619671693571597.7302287-CDS-P-fluviatile_contig8:1361199..1361967Porterinema fluviatile SAG_2381CDSP-fluviatile_contig8 1361200..1361967 -


Sequences
The following sequences are available for this feature:

protein sequence of mRNA_P-fluviatile_contig8.14433.1

>prot_P-fluviatile_contig8.14433.1 ID=prot_P-fluviatile_contig8.14433.1|Name=mRNA_P-fluviatile_contig8.14433.1|organism=Porterinema fluviatile SAG_2381|type=polypeptide|length=1979bp
MDDSSMSAWADELDSKDTKRRLAALKALGDALDDDEGGGATKRNQDSSRD
SWQQIVAPLVRTLRDNNFKVCRSSLACLESLVARLTESDAHDSNDGSNDT
GALHSITPFLPLITPAVVDCLGNSKIAVQEKGVSFLLTISDPAVAGARDT
VASLEQHFARHRNWRVREQLVAYLGRAAEVDPSGINTIQQQQQRRQWRQG
GSGGGGAVGGQAGSSLLALLLAGALNDSASQVRQEGLAAAARVLRRLEGS
SGPVLLAQLEAEGVRQTALSTLRQASGAADVSSAAAAAGISSAAAALLSP
ATPGQPSTSRLGAAAAAAAAASSATTTRTSSSGSTNASSGSSGASVGGSG
VGGAARLPMATRRRRAASAGAAAAAAGGETTGEGGAMSVLTRTAAAEREA
PTPTGRIACGDGDGGDGRAGSPTSALLGISPRGVALGSGGGEESAFSALE
PLAPVTVYTERDVRREVEAAKAGLEHGSDWQRWVSAMRRLAGVALGGGGS
EFPALLVGLVRASVHEMVGHKVSENRSAVAREACRCVAVLARCLTDHFGD
LAELWLPELLRNTTRAVVVAAAGDEAARVIFGCTQSGFPRLLPYLIDTAK
NKSAAIRRRCLDYVMLALARWNDAAFDRCVTQIRDMVAAAIEDADSAVRA
TGRRAYWVLGLRFPDLAQSVMSSLAPSMQRHVLREEQEFDAGAFVRAADA
AAEDPQPALGEQPLDRGGDDDTDHGVATTPGAAGLADGGNGDGLPQAPSS
SLVSSAAAAARRVHRGRSSPAGRGSGNQSFQPPQKWPVISAATAFDATAE
SSDGGQEGTGVVRLSTRVMVDRAAASGEGSGGWGARAVRAGGGVPARRTR
QGRSAAHDGADFAATGYDGEGAGDGAGGGVVDIGRNWNSSPALRVAGGGG
ASSGAAGAGRSGGGSGGGENIATIAKTGAYRVPRGGVNPTAPPSSFGSAS
DATRVLNGGGGGEPQHQRFPATRVVARRTQVVASASATEGEGEQPTFGGS
GVHSTASKAERGAQSLRVAGKQQQQPHHHHQRSSSGVLGRQGEGTGGGEA
ADGVPLRAAAVPVMLDRRDVLRQMDELADQAGGPHWAARSEALERLFQLL
TLESAGASGGNGGVGTRGDGGRFVLESRAASRRLEGVIAERLRDVNFRVV
AAALKLLGGLVGAHPELAARHAWALLPAVFPNLADTKEPVRLAANGVLDA
CRAAYPSHQLCSSLCPRVLELPSGRARTGLLEFLAVLVPHSAGFFLQESH
PAAGAGREGGGGHLQALTQRVAAALVQSPPPANWNGELGEDGPASAGAAA
SAAIRLLMALFQLDRAALKAAAATLPPSSAAAVRRALSVFGSPSPSPSRS
PSPSVPASFPSIPHPSSSCPSRSSAHSPTGGDRPEEVVSPSMPAGGAECG
NQLAGVSPAIAGEAEEKEEDRRVPPASGALPERQEGREAVDSAVVTPTAG
GSGRVGFVGEGRNRVVDNHERSPSPSSLSLSLPPPLGRQQPLEGAVALAS
PAETALSLSSIDPVGALSCGGVDDDRTIGRGREESDADADGDSGMFTPPP
LLEKARRQPLAAVTPRDSNRLPGDCNGSDGGGKVRKTLPLFPTSSHISVA
ATAAAAATPSRIPMKSVAAAAAAAAAAKAEDQRASAVSAAVALRVIAGLS
RGARSHQKVEALSSLRRLADGEGAGGHPEFWPSFFGQVLMLLLEGAGDGG
GGGGGGGLSSSPSRRRALLRVKHLQGVRCLVARRGGLFSEFTEVVVGRLV
EIGGGVSGSSLCLAVRCEAEACLADLGGVLDPARYLEALTPLLHHAPGCA
ASEEAVSNGGDLPENNASEVAKMQCFVLGALRALTPRLSSAVLLGALRAG
PLLAGLEAALGGVDLEARKRAVLALVEMYQVLEEALLPFLAGFPTSRLKL
INMYIERRRARDNRSVKAAATAAVPTAAAADNTSRFAKVASSGSREVAGT
AATAAGGAGGGTPAPAVAAAAVRFTPIR*
back to top

mRNA from alignment at P-fluviatile_contig8:1348607..1361967-

Legend: polypeptideCDSUTR
Hold the cursor over a type above to highlight its positions in the sequence below.
>mRNA_P-fluviatile_contig8.14433.1 ID=mRNA_P-fluviatile_contig8.14433.1|Name=mRNA_P-fluviatile_contig8.14433.1|organism=Porterinema fluviatile SAG_2381|type=mRNA|length=13361bp|location=Sequence derived from alignment at P-fluviatile_contig8:1348607..1361967- (Porterinema fluviatile SAG_2381)
ATGGACGACTCAAGCATGAGCGCCTGGGCGGACGAGCTGGACTCCAAGGA CACCAAGCGACGCCTAGCTGCGCTCAAGGCTCTCGGGGACGCCCTCGATG ACGACGAGGGTGGCGGAGCGACGAAGAGGAACCAAGACAGCAGCCGAGAT TCATGGCAGCAGATTGTGGCTCCACTCGTGCGTACCCTGCGAGACAATAA CTTCAAGGTGTGCCGCTCTAGCCTCGCCTGCTTGGAGAGCCTCGTCGCAC GCCTCACCGAGAGCGATGCCCACGACAGCAACGACGGTAGCAACGACACC GGCGCCCTGCACAGCATCACCCCATTTCTTCCCCTTATCACGCCCGCGGT GGTGGACTGCCTTGGAAACTCCAAGATTGCCGTGCAGGAGAAGGGCGTGA GCTTCCTGCTGACCATCAGCGACCCCGCGGTAGCCGGCGCCCGCGACACC GTGGCTTCGCTCGAGCAGCACTTCGCCCGGCACCGGAACTGGCGCGTGAG GGAGCAGCTCGTGGCGTACCTCGGGCGCGCGGCGGAGGTGGACCCTTCCG GCATCAACACGATTCAGCAGCAGCAGCAGCGGCGGCAGTGGCGGCAGGGA GGAAGCGGGGGAGGGGGGGCGGTGGGTGGACAAGCAGGGTCGTCGCTCCT GGCCCTCCTGCTCGCGGGCGCACTGAACGACTCGGCCTCCCAGGTGCGGC AGGAGGGGCTGGCGGCGGCGGCGAGGGTGCTCCGGCGGCTCGAGGGGAGC AGTGGTCCGGTTCTGTTGGTGAGTCAAGGGTCTTTGTACGTTTCTCGTTT GTTATCGTTTGTTTGAATTGGTGCCACCATCACCCACCAACGGGGGCATT TTCTGTGTTGGTGTCTCCATGAGGACGTCGCGATGTCATGGGCATCAGCC CAAAGCGCCGGAGAAGGTGTGCGCATCGGCAGTTCACCAAACACGCACAG ACAGTATGTTTCCGTAAAGGAGGTGGTGGTTTTGCAAATGCACACGGAAC TTCGTCTCTACCAGGGCTATAACCAGGTCCTCAAGCCACTCGCAGCGACG ACGGTTGGCAGCAGGAGGAGGTCCTGTACCCTCGACCATTTTTACAAGAG TTTAGGCTACAATCTGTTGTAAATCCACCACTTGCATTGGATAATAAACT GCGAATGTTCGACCACTAGGGACAACGTGCCTGGAATGCGCGTAAGGGAC ACCAAAGAGGTACATGCTTTCGTCCTCGAGCGTCTGTGAGCGCAAGCTCT CGCGCCCGCGGACCAAATTCCGGACCTGTATATGAGGTTTAACGCCTGGG AGGGGGGTGTACTCATAGTCGTGCAGGCCGTAGTCGTTAGACCATTGACC TAGCATCCCTACAAAGCCGGGACGGAGCACGCCGGGTTCTCACCGGACCA GGCTCTCACACCACCAAGCGCGAAGCGCCGTGAGGTATTCGGCGAGTCGC ATGAAGGGTGCGCTGCATCCTGCCAAGGGTGTTCGGCATCTTGTGCTTAC TTCCTTGCATACGGATGACAGCTGCGTATGGCTTAATTTATTGTCTAGTG CCTTCACTTCAAGAGACAGTTGTAAGCACTGTGTAACTGCCTCGAGGGTG CTTGACCATTTTAATACAACGTGGTGCGATCATCCCCCTTGCGCGGAGTG AGGGTTCTCCACCCCGTACAACATGATCTTCTCGACCACCATTATGGTAA CCGCCAAAAAGCAGAGGAAAAAAAAACACGGTAACCTGGTTGCCGATTTC ACGAAGTGAATTGGCTTGATTTACAACGCCGTTGCCAAGCGACGAAAACC CAATCCCGATGGCAAACACCGAGGTGAGAGCCAGCGGGAGGGAGGGGGGG CATACTTAAAAAATGACGTGACTTTTTGGGTCGGCACTTGATCTTTCACT GCAATCTCTTGTACCTCTGAGCTCAAGGTGGGGGGTGAAAGTCGCTCTCC TTCGACTCGAGTCTACTCTCGTACCTCGCATGATGTTTTTTTTTGTATAC CTTGCGTATGTGTTCCCCGCCCCCTCTAAATGGCTTCAGGCCCAACTCGA GGCTGAAGGGGTTCGTCAGACAGCACTGTCGACTCTTCGACAGGCCAGCG GCGCCGCCGACGTGTCCTCAGCCGCCGCTGCCGCTGGTATCTCTTCGGCT GCGGCCGCCCTCTTGTCTCCGGCGACTCCCGGGCAGCCATCAACTTCCCG ACTGGGCGCGGCGGCAGCCGCAGCAGCAGCAGCATCCTCGGCAACAACAA CCCGAACTTCCAGTTCCGGTAGCACGAACGCCAGCAGCGGCAGCAGCGGT GCAAGTGTAGGCGGCAGTGGTGTTGGTGGTGCCGCCCGCCTCCCAATGGC GACCAGGAGGAGGCGAGCAGCTTCGGCGGGCGCAGCGGCGGCGGCCGCCG GGGGTGAGACGACTGGCGAAGGAGGGGCTATGTCCGTTTTGACGCGAACA GCGGCTGCTGAACGAGAGGCACCGACACCGACTGGACGGATCGCTTGCGG TGACGGCGACGGAGGCGACGGCCGCGCCGGTTCCCCAACCTCCGCTCTGC TTGGGATAAGTCCCCGCGGGGTGGCGCTGGGGAGCGGCGGGGGCGAGGAG TCGGCATTTTCGGCGCTAGAGCCGCTGGTGAGGAGGATAGGAAGAAAAAC GAAAAATCAAGTTAAATCCGGCCCGAGGGGTTCATCTGGGGCTTGGACCT GGCCCTGCGTGCTTTCCTCGCTAATCACTACGCTCACTGCTGTCACCTTC TGCCGTCAACTTGTCAAGCTGAAACGCAGTAGCTGTTGGTATCAACAGCC GATTGCCACTTGCGAGTGAGTGAATAGAATCGGCTTCATGTCGTGTGGAT GTCTTTCCCAGAGAAACGAGGACGAACAAACTCGGTTGGCCGCGGCACGA TGACCTATCGGAAAAACGCACGCGCGCTCGTGCATGCACGCACAAACACG ACAGCTGCAATATTATTACGCACAGCAGGAGGTTCGTCGAAACCATGACA ACGCCTAACGATCCAAACAATAGGCGGCCACACGTCGCACTAGTCTGGTG CAGCCACTATTGTGTCATTCAACCCGTGGGGGTACCCCTTTCCCTCTTGC CTGCGGCCGCGACGCAGACCATTGCCTCAAGTTGTTTACCAGCAATATGC CCGCAAGCGGGCCATATATATTACGTCTCTCGTAAACAAAACAACGAACC CACCTCCCCGCCCCCGGGGGACCCCGTGACTACGCAGGCGCCGGTGACGG TTTACACTGAGCGCGACGTTCGGCGAGAGGTTGAGGCGGCCAAGGCAGGC CTCGAGCACGGTAGCGACTGGCAGCGGTGGGTCTCGGCCATGCGGAGGCT GGCAGGCGTCGCGCTGGGGGGCGGAGGCTCGGAGTTCCCCGCGCTGCTGG TGGGGCTCGTGCGGGCCAGCGTCCACGAGATGGTCGGACACAAGGTGAGA GGGAAGGAGGGAGTGAGGGTGGGAGTATGGGAATAGGGGGGGGGCGAAGT TGGGTGGGAGGATGAGCGGGTGGAATGGTGGTCGGGACGGGGGCGGGGGG GGGGGGGCTGACGGTAGTGCTTTTCATGGGTAGTCAGGATTTTTTACACT TGTTCTTCGTCTCCCCTTTCTTGAACAACGGCGGGACCGGCGAGGAAGGA AAGTGAAGGAGTGTCTTGGTCCCGAGGCCAGTCAGGATTATTTTCCCATT TTGTGTGCCTGACTCCTCTTACTTTGTACAATTGTGTCAGAGGAAAAGTG GGCGGGAAGGGGAAGGGTGCGATGAACAAAGCGAGAGGGCTGGCTGGCAC ATCACGACTGCTGCCCACCGTGGTGGATCCTCGTCACGCATGCTTCGGCT GCCGAGCTGCATTTTATCACCGTCGACGCCTGCCTTATTGTCTATTCGTG TATATCTCTCCCGCCTTGCCTGCCTCCGTCTTTCGTGTTCCCATCCTACT CTGCCTGTCATTCTTGTTACTTCTTTTCCTGCTGCTTGTGGTGGACAAAC GAAAGGGGCAATGAACTGCCAACCGAAACACGAAACGGAACGGAAAACGA TTCACGACGGAATGGATCGGAACGGAACGAGGCGGGATGCTCCATCACGG AACGAAACGGAACCAAACCAAACCAAACCAAACCAAACCACACGGAACGA ACGAGCAGGTGTCGGAAAACAGGAGCGCGGTCGCGCGCGAGGCGTGCCGG TGCGTCGCCGTCCTGGCCAGATGCCTCACCGACCACTTCGGCGACCTGGC GGAGCTGTGGCTGCCGGAGCTGCTGCGGAACACGACGCGGGCGGTGGTCG TCGCAGCCGCCGGAGATGAGGCGGCGCGGGTTATCTTCGGGTATGTGATC AATAATTTGGCAGGCATGGAAATATAAGGTTTGGAAGTAAAAGCGGGAAG GAAAGGCCACAGATTCTACCGCACGAATTCAAATTGAGACGTACTGTGTC AAGCGTTGAGTTGAAAGTACAGTCGTCCCCGCTTTAAAGACGCATAGCGT TTTTTTTTTTCAAAGCGTCTTTAACGCGGGGAATCGTCTTTAAGATTCCG GGGACGATAACGCACCACCCCCGGGGCCGATGGAGGCATAACATACATCA AAAGACGCGCCGTTGCAACACGTAACTTATAACGAAACGAGGATCCATAA ATCTGACCGCTCACAACGTAGCCGTGGTTGAAAGTGGAATGCACTATATA TATATACTTATATATTATAAACCATGTTTTAAGTTACCGCGCCACCGCCC GCAATAATATGCTCCCGACATGTGGGTTGTTGCGGGATATAGTTTTGTTA TGACTGCAGTGCACTCTCTCGGTTGTGTGGCGACTGCTGCCTGCTGTGTT GTTTTTATTTTCTTCTCGTTTTCCTGATGTTGAAAACCTCACCGACACAT CCTTCACCACAGCGGTTCCAACTTTGACACGATACTTCAGTATATCCTAA GCGATAGAGACACAAACACCCTACACACGAAACTCAGATGGACATCAACG CTAAATTATGGGCCCTAAATTATCGGTGAAGATGAAGCAATAAAAAAAGA GCCCATCGCTGTATGCCCTCCGAAAAAAAAAACTATCGCCCCCACATATC GCCAAGAGTGGCCTGCACCTCACACCCCTGCTTCGCTCTTCGGTTGACTT GAGTTTCGTGAGTGAACGAATGCACAGTCCTCGAAAGAAGGTACAGCGTT TCGCTGTACTCGCCGTCCTTCCCTTTCGCATTCAAAAAGGAGCTTTCTGG GGGGCCCCGCAGTATATAAAGCACACACACCCCCTCATATTGTATATCTG CGGGGCACCATGGTTCGGAATTTTTTTTCGTCTTTATCGCGGGGAGTTGA CTTAAGATGAGCGTCTTTAAGGCGGGGACGACTGTAAAGGCGCGGGGGAA CGGGAAAGCTCTCACAACATGGGTGTGTAGGTAAATTGACGCGATGTCTT CTCGGTGGTCGGCGATCTGCTATCACTTGTCGCGACTTCAACGGTACACG AGTACTTCGTATCGATCTTGATTTTTGGTGGATGCTCTCGCTGGTCGTTC AGGTGCACCCAAAGCGGGTTCCCGCGGCTGCTGCCGTACCTGATCGACAC TGCGAAGAACAAGAGCGCCGCCATCCGCCGCCGATGCCTGGACTACGTTA TGCTCGCGCTTGCGCGGTGGAACGACGCAGCCTTTGACCGATGCGTCACT CAGATAAGGTGTGGTTGCTGTCGTCGTCGTGTTTGTCGTTGTTGGTGGTG GTGGTCATGGTGTTCGACGCTTGTGCTGCCGCCGCCGCCGCCGCCGCCTT TGGGATGACGTCATCGAAGTTGGTATGTTCCCGCGCTGCTGCCTGGCTGC CTTTCTTCACACACACACCTGACCCAGCAAAAAAAAAAATGCGTGGAACC GACAAGCAGTGCTGCGTCTTTTGGTTGACCCCTGATGAGCTTGTTCCTTT TTCTGTGAGGAGTCCGCCTCGCCATTCTTTCATCAGCTCCTCAAACACCT GCTCATCCACCACCACCCTCCCCCTGTCGGACGGCATTTGTTGTTCCTTG TGGCATTCGCATTTCCCCGGCCGGCCGGCCCCCTCATGGCTGTGCAGGGA CATGGTCGCCGCGGCCATCGAGGACGCGGATAGCGCCGTACGAGCCACAG GACGGCGCGCGTACTGGGTTCTGGGGCTTCGATTTCCGGACTTGGCACAG TCGGTGATGAGTTCGCTGGCTCCCTCCATGCAGGTGAAGTGTGGATGCGT GCGACGATTCGCCCGCCCGCCCGCCCGCCTGCTTGCTTGCTTTCGTGCTC GCCTGCGCGGCTGCCTGTGTACACGGCTGCTGGGAAGTACTTGCGTATGC CCCCAGCGTCACTCGTTTGCATGGATGGCGTTTGGGAGTCATTTTCCCGC AGGATTGGCAGCCGGGCCGTCGCGTCGCCCGACCCCTACTGGAGTGGTGC CCTCCGCGGTAGCAAGGGTGTTGGTGGGGTCTCAAGAACCGTGCGGTGCG GTGCAAGTGCCATGAGAGTGCACTTCCCACAGTCGGTCTGCGGATGTTCA TTCGTTGAGGATCGTGTTTTTTCATCTGTGTGATCTTGTGTTTCTCGCGT TTCCGAAGTCGCTCTGAGCTTATGGAGCCATCGGGGGGTACAGCCGTGGT TGGACTCTCGCTCTTTTTATCTCACCGAGTCGTCCACAAAGTTGCCTGCT TGCTTTCGCGTTTTAACACTAAGTTCACCCGTGTGCGTGTGCGTGTGCGT GCGCGTGCGCGTGCGCGATCGACCCGGCAACGTTTTTGTCTTCAATTTCT GCAGCGGCATGTCTTGCGCGAGGAACAGGAGTTTGATGCAGGGGCTTTCG TTCGTGCTGCCGACGCCGCCGCCGAAGACCCACAGGTATGTGCTGCTGCA GACCTGCCGCTACTGCTGGTGCCCCGCTGCTGTTGCTTCCTTGATTGCAG TATCGCAGCTAGCTGACGGCCTGAGGTTTGGGTTTTTGCGACCTGAGGCA TGAATCTCTGAAGTCCGATGAACTGGTGCGTTCGTTTGTTGTACGGTCAG GAATGCAATCCGCAGCAACCACGGTGACGTGCATGATTTCAACATGTAAT CAAAATATGTTTTCTCCACAAAAAAAATGCTGCTGCTGGATGTTTCTCCT GAATATTCGGCTCTCATGCACTCGTTCCTGTCGATTTATTACGCGCTGCA ATGCCACATTACATGCGACATGTAGAGTATCGCTTACTTTTGTGGCTAGG GCTTCACTCCGTGTTGCGCAATAGCTACCAACGGGCGCAGCCCGAGCGTG CCTCTCGCCGACAGCAATGGTGCGGCGATATTGGGTAGGTCCAGTCGCGA ACGATCCCGCGACGTACCCATCGGCGCCATGGGCCGGATCCATCCTCACT CTTTCACTAAAATCCGCCCGTTCACGGCATTCCCCACCTCCCCGCCGTCC CCTGCCCCGTTTCCGCCTTGAAACGAACGAGAAGCCTGCGCTCGGGGAAC AGCCCCTGGATCGGGGCGGCGACGACGACACCGACCACGGCGTGGCCACC ACACCCGGCGCCGCCGGACTTGCCGATGGCGGCAACGGCGACGGTCTCCC CCAAGCGCCTTCGTCGTCGTTGGTTTCTTCGGCGGCGGCGGCGGCTCGTC GCGTGCACCGGGGTAGGTCCTCCCCGGCCGGCCGCGGCAGCGGCAACCAG TCATTCCAGCCGCCGCAGAAATGGCCCGTGATTTCTGCCGCCACCGCTTT CGATGCTACGGCAGAGTCGAGCGACGGCGGGCAGGAAGGGACAGGGGTGG TGAGATTGTCCACTAGAGTCATGGTCGACCGCGCTGCTGCCTCCGGCGAG GGCAGCGGCGGTTGGGGGGCGAGGGCGGTACGCGCCGGCGGTGGTGTGCC TGCGCGGAGAACCCGACAAGGAAGGTCGGCTGCTCATGACGGGGCAGACT TTGCCGCCACCGGCTATGACGGTGAGGGTGCTGGTGATGGCGCCGGCGGG GGCGTCGTCGACATCGGCAGAAACTGGAACTCTTCCCCGGCCTTGCGGGT CGCCGGCGGCGGCGGGGCAAGCAGCGGGGCAGCAGGCGCCGGTAGGAGCG GTGGTGGGAGCGGAGGCGGCGAGAACATAGCAACCATAGCGAAGACGGGA GCGTACCGTGTGCCGCGGGGGGGGGTCAACCCTACCGCCCCGCCCTCGTC ATTCGGAAGTGCTAGCGACGCGACGCGCGTGCTCAACGGCGGCGGTGGCG GCGAGCCCCAGCATCAACGATTCCCGGCAACTCGTGTGGTGGCGAGGCGG ACTCAGGTGGTTGCGTCAGCATCGGCGACGGAGGGCGAAGGGGAGCAGCC AACTTTCGGGGGCTCCGGTGTGCATAGTACCGCGTCCAAGGCGGAGCGGG GTGCGCAGTCCCTTAGGGTCGCCGGCAAGCAGCAGCAGCAGCCCCACCAC CACCACCAACGATCCAGTTCCGGTGTACTTGGACGGCAGGGGGAGGGGAC CGGGGGGGGAGAGGCAGCAGACGGAGTGCCGTTGAGAGCCGCCGCCGTGC CGGTGATGCTCGACCGTCGGGACGTGTTGCGTCAGGTGTCAGAACGCACA TATGAACAGCTTGTGAAGGCCGGAAGAGGGGGGCGCCGCAACCGAAATAC ATGGCTTAATCTTCCCTTTTTTGGATGAGGCGCTCGGCTTTGGGGGTGTG GCGGGATCGATGACAGCCAGAGGCACGCAATAAATATGATGCCGACATCG CGATGCTGCTTTGTGTGGGGGCACCGCCGCCATCTAACTGTTCGCCACTG ACTGTTGTTTCTATGACACCGATGGTAAGTTTCTCGCACGGATTGTCCTC TATGGAGGGGGGGCATCAAATCAGCCACCACTCGTTGCGACTTCTTCTTT ATCACTCACATTTTCTACGTCTATTTTCGTTTGATTTCACCGTCGCATCA CCCTATCTTTTTGCTCAGATGGACGAACTTGCCGACCAAGCCGGCGGCCC GCACTGGGCCGCGCGCTCGGAGGCCCTGGAGCGTCTCTTTCAGCTCCTCA CTCTCGAAAGCGCCGGCGCCAGCGGAGGGAACGGCGGCGTCGGGACGAGG GGTGACGGCGGGCGCTTTGTGCTGGAGTCCAGGGCGGCGTCCCGGCGGCT GGAGGGGGTGATCGCCGAGCGGCTGAGGGACGTCAACTTCCGGGTTGTGG CGGCGGCTCTCAAGCTCCTTGGGGGCCTCGTCGGGGCGCACCCGGAGCTC GCGGCCCGGCACGCGTGGGCCCTGCTACCAGCGGTGAGAGAGAGCGAGCG GTGGGGGAGGGGGGGGGGAAGAAAACGAGAGGGGAAGAACCTTCGGGTAT GGCGTGCGTGTCTCCCTGCCTGTTGGTTCTTCCGCTTGGTTTCGGGAAGT TGCACTTTTCGTCTCAGATGCAAGCGCTCTTGACCGAATTCATTACTACC CGCGTCGTTCGTACTGCCCAGGGGAGAGCCCTGACATTGAAATGGTGCAC CTCCACCTCGGAATTTCCTTCTTCTTTCGTCATGCCGCCATCAAACAAAA CGAAAACGAACCAACCGCAGGTGTTCCCCAACCTGGCCGACACGAAGGAG CCCGTGCGCCTGGCCGCAAACGGCGTGCTAGACGCATGCCGCGCGGCGTA CCCCTCTCACCAGCTCTGCTCCTCGCTCTGCCCCCGCGTCCTCGAGCTCC CGTCCGGCCGCGCGCGGACGGGCCTCCTCGAATTCCTCGCCGTCCTCGTT CCTCACTCGGCCGGCTTTTTCCTCCAGGAAAGCCACCCTGCGGCGGGGGC AGGGCGAGAAGGAGGAGGGGGTCACCTACAAGCTCTCACGCAGCGAGTTG CGGCCGCCCTGGTCCAGTCGCCGCCCCCGGCGAACTGGAACGGGGAGCTG GGGGAGGACGGGCCGGCCTCCGCCGGGGCGGCGGCGTCCGCCGCGATCCG CCTCCTGATGGCGCTGTTCCAGCTGGACAGAGCGGCCCTGAAGGCGGCAG CGGCTACGCTGCCGCCCTCGTCGGCGGCCGCCGTGCGACGGGCGCTGTCG GTCTTCGGCTCTCCGTCTCCGTCTCCGTCTCGGTCTCCCTCTCCGAGTGT TCCTGCTTCTTTTCCTTCTATTCCTCATCCGTCATCCTCTTGCCCTTCTC GCTCTTCTGCTCATTCTCCGACGGGAGGGGATCGGCCGGAGGAAGTCGTC TCACCGTCGATGCCGGCCGGGGGGGCGGAGTGCGGCAACCAGCTTGCGGG TGTTTCGCCGGCCATCGCAGGAGAGGCGGAGGAGAAGGAGGAAGACCGTC GTGTCCCGCCGGCTTCAGGCGCGCTTCCCGAGAGACAGGAAGGCCGTGAG GCCGTGGATTCGGCGGTTGTGACGCCAACGGCCGGCGGCAGCGGGCGGGT CGGGTTCGTAGGTGAGGGAAGAAACAGAGTAGTCGACAACCACGAGCGAT CGCCGTCGCCATCGTCGTTGTCATTATCGTTGCCGCCGCCGCTTGGAAGG CAGCAGCCGCTGGAGGGCGCGGTAGCATTGGCGAGTCCAGCGGAGACGGC GCTGTCGTTGTCGTCGATCGACCCCGTCGGCGCCTTGTCTTGCGGCGGCG TCGACGACGATCGAACCATAGGGCGTGGGCGCGAGGAATCGGACGCGGAC GCGGACGGGGATTCGGGGATGTTCACGCCGCCGCCTCTTCTTGAGAAGGC GCGTCGTCAACCGCTTGCGGCTGTAACCCCGCGCGACTCCAACCGCCTTC CCGGCGATTGCAACGGCAGCGACGGCGGTGGAAAAGTCCGCAAGACCTTG CCGTTGTTCCCAACATCCAGTCACATTAGTGTTGCCGCAACAGCGGCCGC CGCGGCCACCCCGTCACGGATACCCATGAAGTCAGTGGCGGCGGCAGCAG CGGCAGCGGCAGCCGCCAAGGCGGAGGACCAGCGAGCGTCGGCAGTGTCG GCGGCCGTTGCCCTGAGGGTGATCGCGGGGCTGTCTCGGGGGGCACGCTC ACACCAGAAGGTGGAGGCCCTGTCGTCGCTGAGGCGGCTCGCGGACGGGG AGGGCGCCGGTGGGCACCCGGAGTTCTGGCCGAGTTTCTTCGGCCAGGTG CTGATGCTCCTGCTGGAAGGGGCAGGTGATGGGGGCGGCGGCGGTGGCGG CGGCGGCCTTTCCTCGAGCCCGTCCCGCCGGCGAGCGCTTCTGCGGGTCA AGCACCTGCAGGGGGTGCGCTGCCTGGTGGCGCGGCGTGGGGGTCTCTTC TCGGAGTTCACGGAGGTCGTGGTGGGGAGGCTGGTCGAAATCGGCGGCGG CGTAAGCGGTAGTAGCCTGTGCCTCGCCGTCCGCTGCGAGGCGGAGGCGT GTCTGGCGGACCTCGGCGGCGTGCTGGACCCGGCCCGCTACCTCGAGGCT TTGACCCCACTCCTTCACCACGCGCCCGGCTGTGCTGCTAGCGAGGAGGC CGTCTCCAACGGCGGCGATCTTCCAGAGAACAATGCTTCCGAAGTCGCCA AGATGCAGTGTTTCGTGCTAGGCGCGCTACGCGCGCTGACACCGCGGCTG TCGTCCGCCGTTCTGCTCGGCGCGTTGCGCGCGGGCCCCCTGCTGGCCGG GCTCGAGGCCGCGCTGGGGGGGGTGGACCTAGAGGCGCGCAAACGGGCGG TGCTTGCCTTGGTGGAGATGTATCAGGTACCCCAAATAAGAGAGAGAGAG AAAGAGAGAATGTTGCAAATTTTCTCGGGTGCCTTGATGGACATGTTTCA GGTACTCTAATAGTCAACCGAGTGCTTTTTGTTGGCTTGTGGGAGTGGCT GGCTGATAAGTAAAAGGAGGGCTTGGAGGATTGCGTGCTCGTCGCGAACA CCATGTCCGCCTGCTTGTTTGGCGTCGAGTTCCATCGTGAACATCGTGCG TTAGTATTACTGTTCTGCGTCACTCTGGGCCATGGCTCTTTGCCAAGTGT TTACCTGTTGAGGGCTCGTAGAGCGAATGGTGATCAGGGTCGTTTGGCGG AAGAAGCGATCGCGCAATTTTCGCTTGACCTGTTGTCAGCCTTCCGGAAC AGGGATTCTGGAGAAAAAACAATTTGCTGGAATTAAAAAATAAACTCGGT TCCGGAGCTTTCGCTACGAAGCCTTGGTGTTTGTTCCGCTCGTTCTCATG GGATATGGCCGTGGCTGTGATTTTGAAACCGATTTCGCCTCGCCTTGTTA TTCGTGCGTTCGTTCGTGCGTTCTCCACATTTCTGTTTCGAGAAGGTGCT GGAGGAGGCCCTGCTGCCATTCCTGGCCGGCTTTCCCACTAGCCGCCTCA AGCTCATCAACATGTATATCGAGCGGCGCCGGGCGAGGGACAACCGCTCC GTCAAGGCTGCCGCCACCGCTGCCGTACCCACCGCCGCTGCGGCCGACAA CACATCCAGGTTTGCGAAGGTGGCATCAAGCGGGAGCCGGGAAGTGGCGG GCACGGCAGCGACAGCGGCAGGCGGAGCGGGAGGGGGAACGCCGGCACCG GCAGTGGCGGCAGCGGCGGTGCGATTTACCCCCATACGGTAGATGGCAGA GCGGGGGCATCGTCAGATTCTCCTTGTTTGTGTGTGTGTGTGTTTTCGCG TATTTCGCGCGTGCGAACGCATCCTAAGGCAGGTGCGGTGGCGAGAGCCG TCTGAGGGGGAAGGGAGGCGGCGTCGGGTCGCCATTTTTCGAGAGGCGTT TGTGCCTCTAGCCTTACGACTGACGAACTTCCGGCGGGGTCGCGCCCTTT TCGATGTGTTTTTTTGTTACGGAAAGGGAAACTTGTGAGCTTCATTTTCG GGCTAATATAACCAAGAACTTTGTCGTCAACCATCCAGTCATCACACTCG ATCAGCAGTCATCATAGTCATAATAGTTGATGCAACCTCTCGCTTTTTAA CCAACATGCCTGTCCTTGTACAACTGACAGCTCGTTTTTAGAATAGTGAG TTTTATTCGGGTGCTGCGAGTGGGTGTGTTGGTGCCGAAGCATGTGAGCG ACGGAGATTATTGCTTGGTAGAAAACCTGTGGTTGGGGCTGCCCTTTCTT TGTGCTTTACGTCCCAGTCTTTGACCACTGGTGCTCGTCCTTACGATATA AACCCGGTTCGGGTGCTGCGGGCGGCTGTAATGGTGCCGAAGTAGTGAAA GAACAGCGTCGGGGTATAGCTACAGTTGTCGACGTATTTTTGATTTATTT GTACATGGGCTACGGGCGTAGAGCCATCGAAAAGGTACAATTTGTCCCCG GAGACGTTGTTCTGCGTCATCATGTGAGCAGCAAGCTTACCTCATTTTTC AACATTGAGGCAGGTTTGCTATTCGGGCACCCTAATGCGGGGTCCACTGT CGTCGACACCG
back to top

Coding sequence (CDS) from alignment at P-fluviatile_contig8:1348607..1361967-

>mRNA_P-fluviatile_contig8.14433.1 ID=mRNA_P-fluviatile_contig8.14433.1|Name=mRNA_P-fluviatile_contig8.14433.1|organism=Porterinema fluviatile SAG_2381|type=CDS|length=11874bp|location=Sequence derived from alignment at P-fluviatile_contig8:1348607..1361967- (Porterinema fluviatile SAG_2381)
ATGGACGACTCAAGCATGAGCGCCTGGGCGGACGAGCTGGACTCCAAGGA
CACCAAGCGACGCCTAGCTGCGCTCAAGGCTCTCGGGGACGCCCTCGATG
ACGACGAGGGTGGCGGAGCGACGAAGAGGAACCAAGACAGCAGCCGAGAT
TCATGGCAGCAGATTGTGGCTCCACTCGTGCGTACCCTGCGAGACAATAA
CTTCAAGGTGTGCCGCTCTAGCCTCGCCTGCTTGGAGAGCCTCGTCGCAC
GCCTCACCGAGAGCGATGCCCACGACAGCAACGACGGTAGCAACGACACC
GGCGCCCTGCACAGCATCACCCCATTTCTTCCCCTTATCACGCCCGCGGT
GGTGGACTGCCTTGGAAACTCCAAGATTGCCGTGCAGGAGAAGGGCGTGA
GCTTCCTGCTGACCATCAGCGACCCCGCGGTAGCCGGCGCCCGCGACACC
GTGGCTTCGCTCGAGCAGCACTTCGCCCGGCACCGGAACTGGCGCGTGAG
GGAGCAGCTCGTGGCGTACCTCGGGCGCGCGGCGGAGGTGGACCCTTCCG
GCATCAACACGATTCAGCAGCAGCAGCAGCGGCGGCAGTGGCGGCAGGGA
GGAAGCGGGGGAGGGGGGGCGGTGGGTGGACAAGCAGGGTCGTCGCTCCT
GGCCCTCCTGCTCGCGGGCGCACTGAACGACTCGGCCTCCCAGGTGCGGC
AGGAGGGGCTGGCGGCGGCGGCGAGGGTGCTCCGGCGGCTCGAGGGGAGC
AGTGGTCCGGTTCTGTTGATGGACGACTCAAGCATGAGCGCCTGGGCGGA
CGAGCTGGACTCCAAGGACACCAAGCGACGCCTAGCTGCGCTCAAGGCTC
TCGGGGACGCCCTCGATGACGACGAGGGTGGCGGAGCGACGAAGAGGAAC
CAAGACAGCAGCCGAGATTCATGGCAGCAGATTGTGGCTCCACTCGTGCG
TACCCTGCGAGACAATAACTTCAAGGTGTGCCGCTCTAGCCTCGCCTGCT
TGGAGAGCCTCGTCGCACGCCTCACCGAGAGCGATGCCCACGACAGCAAC
GACGGTAGCAACGACACCGGCGCCCTGCACAGCATCACCCCATTTCTTCC
CCTTATCACGCCCGCGGTGGTGGACTGCCTTGGAAACTCCAAGATTGCCG
TGCAGGAGAAGGGCGTGAGCTTCCTGCTGACCATCAGCGACCCCGCGGTA
GCCGGCGCCCGCGACACCGTGGCTTCGCTCGAGCAGCACTTCGCCCGGCA
CCGGAACTGGCGCGTGAGGGAGCAGCTCGTGGCGTACCTCGGGCGCGCGG
CGGAGGTGGACCCTTCCGGCATCAACACGATTCAGCAGCAGCAGCAGCGG
CGGCAGTGGCGGCAGGGAGGAAGCGGGGGAGGGGGGGCGGTGGGTGGACA
AGCAGGGTCGTCGCTCCTGGCCCTCCTGCTCGCGGGCGCACTGAACGACT
CGGCCTCCCAGGTGCGGCAGGAGGGGCTGGCGGCGGCGGCGAGGGTGCTC
CGGCGGCTCGAGGGGAGCAGTGGTCCGGTTCTGTTGGCCCAACTCGAGGC
TGAAGGGGTTCGTCAGACAGCACTGTCGACTCTTCGACAGGCCAGCGGCG
CCGCCGACGTGTCCTCAGCCGCCGCTGCCGCTGGTATCTCTTCGGCTGCG
GCCGCCCTCTTGTCTCCGGCGACTCCCGGGCAGCCATCAACTTCCCGACT
GGGCGCGGCGGCAGCCGCAGCAGCAGCAGCATCCTCGGCAACAACAACCC
GAACTTCCAGTTCCGGTAGCACGAACGCCAGCAGCGGCAGCAGCGGTGCA
AGTGTAGGCGGCAGTGGTGTTGGTGGTGCCGCCCGCCTCCCAATGGCGAC
CAGGAGGAGGCGAGCAGCTTCGGCGGGCGCAGCGGCGGCGGCCGCCGGGG
GTGAGACGACTGGCGAAGGAGGGGCTATGTCCGTTTTGACGCGAACAGCG
GCTGCTGAACGAGAGGCACCGACACCGACTGGACGGATCGCTTGCGGTGA
CGGCGACGGAGGCGACGGCCGCGCCGGTTCCCCAACCTCCGCTCTGCTTG
GGATAAGTCCCCGCGGGGTGGCGCTGGGGAGCGGCGGGGGCGAGGAGTCG
GCATTTTCGGCGCTAGAGCCGCTGGCCCAACTCGAGGCTGAAGGGGTTCG
TCAGACAGCACTGTCGACTCTTCGACAGGCCAGCGGCGCCGCCGACGTGT
CCTCAGCCGCCGCTGCCGCTGGTATCTCTTCGGCTGCGGCCGCCCTCTTG
TCTCCGGCGACTCCCGGGCAGCCATCAACTTCCCGACTGGGCGCGGCGGC
AGCCGCAGCAGCAGCAGCATCCTCGGCAACAACAACCCGAACTTCCAGTT
CCGGTAGCACGAACGCCAGCAGCGGCAGCAGCGGTGCAAGTGTAGGCGGC
AGTGGTGTTGGTGGTGCCGCCCGCCTCCCAATGGCGACCAGGAGGAGGCG
AGCAGCTTCGGCGGGCGCAGCGGCGGCGGCCGCCGGGGGTGAGACGACTG
GCGAAGGAGGGGCTATGTCCGTTTTGACGCGAACAGCGGCTGCTGAACGA
GAGGCACCGACACCGACTGGACGGATCGCTTGCGGTGACGGCGACGGAGG
CGACGGCCGCGCCGGTTCCCCAACCTCCGCTCTGCTTGGGATAAGTCCCC
GCGGGGTGGCGCTGGGGAGCGGCGGGGGCGAGGAGTCGGCATTTTCGGCG
CTAGAGCCGCTGGCGCCGGTGACGGTTTACACTGAGCGCGACGTTCGGCG
AGAGGTTGAGGCGGCCAAGGCAGGCCTCGAGCACGGTAGCGACTGGCAGC
GGTGGGTCTCGGCCATGCGGAGGCTGGCAGGCGTCGCGCTGGGGGGCGGA
GGCTCGGAGTTCCCCGCGCTGCTGGTGGGGCTCGTGCGGGCCAGCGTCCA
CGAGATGGTCGGACACAAGGCGCCGGTGACGGTTTACACTGAGCGCGACG
TTCGGCGAGAGGTTGAGGCGGCCAAGGCAGGCCTCGAGCACGGTAGCGAC
TGGCAGCGGTGGGTCTCGGCCATGCGGAGGCTGGCAGGCGTCGCGCTGGG
GGGCGGAGGCTCGGAGTTCCCCGCGCTGCTGGTGGGGCTCGTGCGGGCCA
GCGTCCACGAGATGGTCGGACACAAGGTGTCGGAAAACAGGAGCGCGGTC
GCGCGCGAGGCGTGCCGGTGCGTCGCCGTCCTGGCCAGATGCCTCACCGA
CCACTTCGGCGACCTGGCGGAGCTGTGGCTGCCGGAGCTGCTGCGGAACA
CGACGCGGGCGGTGGTCGTCGCAGCCGCCGGAGATGAGGCGGCGCGGGTT
ATCTTCGGGTGTCGGAAAACAGGAGCGCGGTCGCGCGCGAGGCGTGCCGG
TGCGTCGCCGTCCTGGCCAGATGCCTCACCGACCACTTCGGCGACCTGGC
GGAGCTGTGGCTGCCGGAGCTGCTGCGGAACACGACGCGGGCGGTGGTCG
TCGCAGCCGCCGGAGATGAGGCGGCGCGGGTTATCTTCGGGTGCACCCAA
AGCGGGTTCCCGCGGCTGCTGCCGTACCTGATCGACACTGCGAAGAACAA
GAGCGCCGCCATCCGCCGCCGATGCCTGGACTACGTTATGCTCGCGCTTG
CGCGGTGGAACGACGCAGCCTTTGACCGATGCGTCACTCAGATAAGGTGC
ACCCAAAGCGGGTTCCCGCGGCTGCTGCCGTACCTGATCGACACTGCGAA
GAACAAGAGCGCCGCCATCCGCCGCCGATGCCTGGACTACGTTATGCTCG
CGCTTGCGCGGTGGAACGACGCAGCCTTTGACCGATGCGTCACTCAGATA
AGGGACATGGTCGCCGCGGCCATCGAGGACGCGGATAGCGCCGTACGAGC
CACAGGACGGCGCGCGTACTGGGTTCTGGGGCTTCGATTTCCGGACTTGG
CACAGTCGGTGATGAGTTCGCTGGCTCCCTCCATGCAGGGACATGGTCGC
CGCGGCCATCGAGGACGCGGATAGCGCCGTACGAGCCACAGGACGGCGCG
CGTACTGGGTTCTGGGGCTTCGATTTCCGGACTTGGCACAGTCGGTGATG
AGTTCGCTGGCTCCCTCCATGCAGCGGCATGTCTTGCGCGAGGAACAGGA
GTTTGATGCAGGGGCTTTCGTTCGTGCTGCCGACGCCGCCGCCGAAGACC
CACAGCGGCATGTCTTGCGCGAGGAACAGGAGTTTGATGCAGGGGCTTTC
GTTCGTGCTGCCGACGCCGCCGCCGAAGACCCACAGCCTGCGCTCGGGGA
ACAGCCCCTGGATCGGGGCGGCGACGACGACACCGACCACGGCGTGGCCA
CCACACCCGGCGCCGCCGGACTTGCCGATGGCGGCAACGGCGACGGTCTC
CCCCAAGCGCCTTCGTCGTCGTTGGTTTCTTCGGCGGCGGCGGCGGCTCG
TCGCGTGCACCGGGGTAGGTCCTCCCCGGCCGGCCGCGGCAGCGGCAACC
AGTCATTCCAGCCGCCGCAGAAATGGCCCGTGATTTCTGCCGCCACCGCT
TTCGATGCTACGGCAGAGTCGAGCGACGGCGGGCAGGAAGGGACAGGGGT
GGTGAGATTGTCCACTAGAGTCATGGTCGACCGCGCTGCTGCCTCCGGCG
AGGGCAGCGGCGGTTGGGGGGCGAGGGCGGTACGCGCCGGCGGTGGTGTG
CCTGCGCGGAGAACCCGACAAGGAAGGTCGGCTGCTCATGACGGGGCAGA
CTTTGCCGCCACCGGCTATGACGGTGAGGGTGCTGGTGATGGCGCCGGCG
GGGGCGTCGTCGACATCGGCAGAAACTGGAACTCTTCCCCGGCCTTGCGG
GTCGCCGGCGGCGGCGGGGCAAGCAGCGGGGCAGCAGGCGCCGGTAGGAG
CGGTGGTGGGAGCGGAGGCGGCGAGAACATAGCAACCATAGCGAAGACGG
GAGCGTACCGTGTGCCGCGGGGGGGGGTCAACCCTACCGCCCCGCCCTCG
TCATTCGGAAGTGCTAGCGACGCGACGCGCGTGCTCAACGGCGGCGGTGG
CGGCGAGCCCCAGCATCAACGATTCCCGGCAACTCGTGTGGTGGCGAGGC
GGACTCAGGTGGTTGCGTCAGCATCGGCGACGGAGGGCGAAGGGGAGCAG
CCAACTTTCGGGGGCTCCGGTGTGCATAGTACCGCGTCCAAGGCGGAGCG
GGGTGCGCAGTCCCTTAGGGTCGCCGGCAAGCAGCAGCAGCAGCCCCACC
ACCACCACCAACGATCCAGTTCCGGTGTACTTGGACGGCAGGGGGAGGGG
ACCGGGGGGGGAGAGGCAGCAGACGGAGTGCCGTTGAGAGCCGCCGCCGT
GCCGGTGATGCTCGACCGTCGGGACGTGTTGCGTCAGCCTGCGCTCGGGG
AACAGCCCCTGGATCGGGGCGGCGACGACGACACCGACCACGGCGTGGCC
ACCACACCCGGCGCCGCCGGACTTGCCGATGGCGGCAACGGCGACGGTCT
CCCCCAAGCGCCTTCGTCGTCGTTGGTTTCTTCGGCGGCGGCGGCGGCTC
GTCGCGTGCACCGGGGTAGGTCCTCCCCGGCCGGCCGCGGCAGCGGCAAC
CAGTCATTCCAGCCGCCGCAGAAATGGCCCGTGATTTCTGCCGCCACCGC
TTTCGATGCTACGGCAGAGTCGAGCGACGGCGGGCAGGAAGGGACAGGGG
TGGTGAGATTGTCCACTAGAGTCATGGTCGACCGCGCTGCTGCCTCCGGC
GAGGGCAGCGGCGGTTGGGGGGCGAGGGCGGTACGCGCCGGCGGTGGTGT
GCCTGCGCGGAGAACCCGACAAGGAAGGTCGGCTGCTCATGACGGGGCAG
ACTTTGCCGCCACCGGCTATGACGGTGAGGGTGCTGGTGATGGCGCCGGC
GGGGGCGTCGTCGACATCGGCAGAAACTGGAACTCTTCCCCGGCCTTGCG
GGTCGCCGGCGGCGGCGGGGCAAGCAGCGGGGCAGCAGGCGCCGGTAGGA
GCGGTGGTGGGAGCGGAGGCGGCGAGAACATAGCAACCATAGCGAAGACG
GGAGCGTACCGTGTGCCGCGGGGGGGGGTCAACCCTACCGCCCCGCCCTC
GTCATTCGGAAGTGCTAGCGACGCGACGCGCGTGCTCAACGGCGGCGGTG
GCGGCGAGCCCCAGCATCAACGATTCCCGGCAACTCGTGTGGTGGCGAGG
CGGACTCAGGTGGTTGCGTCAGCATCGGCGACGGAGGGCGAAGGGGAGCA
GCCAACTTTCGGGGGCTCCGGTGTGCATAGTACCGCGTCCAAGGCGGAGC
GGGGTGCGCAGTCCCTTAGGGTCGCCGGCAAGCAGCAGCAGCAGCCCCAC
CACCACCACCAACGATCCAGTTCCGGTGTACTTGGACGGCAGGGGGAGGG
GACCGGGGGGGGAGAGGCAGCAGACGGAGTGCCGTTGAGAGCCGCCGCCG
TGCCGGTGATGCTCGACCGTCGGGACGTGTTGCGTCAGATGGACGAACTT
GCCGACCAAGCCGGCGGCCCGCACTGGGCCGCGCGCTCGGAGGCCCTGGA
GCGTCTCTTTCAGCTCCTCACTCTCGAAAGCGCCGGCGCCAGCGGAGGGA
ACGGCGGCGTCGGGACGAGGGGTGACGGCGGGCGCTTTGTGCTGGAGTCC
AGGGCGGCGTCCCGGCGGCTGGAGGGGGTGATCGCCGAGCGGCTGAGGGA
CGTCAACTTCCGGGTTGTGGCGGCGGCTCTCAAGCTCCTTGGGGGCCTCG
TCGGGGCGCACCCGGAGCTCGCGGCCCGGCACGCGTGGGCCCTGCTACCA
GCGATGGACGAACTTGCCGACCAAGCCGGCGGCCCGCACTGGGCCGCGCG
CTCGGAGGCCCTGGAGCGTCTCTTTCAGCTCCTCACTCTCGAAAGCGCCG
GCGCCAGCGGAGGGAACGGCGGCGTCGGGACGAGGGGTGACGGCGGGCGC
TTTGTGCTGGAGTCCAGGGCGGCGTCCCGGCGGCTGGAGGGGGTGATCGC
CGAGCGGCTGAGGGACGTCAACTTCCGGGTTGTGGCGGCGGCTCTCAAGC
TCCTTGGGGGCCTCGTCGGGGCGCACCCGGAGCTCGCGGCCCGGCACGCG
TGGGCCCTGCTACCAGCGGTGTTCCCCAACCTGGCCGACACGAAGGAGCC
CGTGCGCCTGGCCGCAAACGGCGTGCTAGACGCATGCCGCGCGGCGTACC
CCTCTCACCAGCTCTGCTCCTCGCTCTGCCCCCGCGTCCTCGAGCTCCCG
TCCGGCCGCGCGCGGACGGGCCTCCTCGAATTCCTCGCCGTCCTCGTTCC
TCACTCGGCCGGCTTTTTCCTCCAGGAAAGCCACCCTGCGGCGGGGGCAG
GGCGAGAAGGAGGAGGGGGTCACCTACAAGCTCTCACGCAGCGAGTTGCG
GCCGCCCTGGTCCAGTCGCCGCCCCCGGCGAACTGGAACGGGGAGCTGGG
GGAGGACGGGCCGGCCTCCGCCGGGGCGGCGGCGTCCGCCGCGATCCGCC
TCCTGATGGCGCTGTTCCAGCTGGACAGAGCGGCCCTGAAGGCGGCAGCG
GCTACGCTGCCGCCCTCGTCGGCGGCCGCCGTGCGACGGGCGCTGTCGGT
CTTCGGCTCTCCGTCTCCGTCTCCGTCTCGGTCTCCCTCTCCGAGTGTTC
CTGCTTCTTTTCCTTCTATTCCTCATCCGTCATCCTCTTGCCCTTCTCGC
TCTTCTGCTCATTCTCCGACGGGAGGGGATCGGCCGGAGGAAGTCGTCTC
ACCGTCGATGCCGGCCGGGGGGGCGGAGTGCGGCAACCAGCTTGCGGGTG
TTTCGCCGGCCATCGCAGGAGAGGCGGAGGAGAAGGAGGAAGACCGTCGT
GTCCCGCCGGCTTCAGGCGCGCTTCCCGAGAGACAGGAAGGCCGTGAGGC
CGTGGATTCGGCGGTTGTGACGCCAACGGCCGGCGGCAGCGGGCGGGTCG
GGTTCGTAGGTGAGGGAAGAAACAGAGTAGTCGACAACCACGAGCGATCG
CCGTCGCCATCGTCGTTGTCATTATCGTTGCCGCCGCCGCTTGGAAGGCA
GCAGCCGCTGGAGGGCGCGGTAGCATTGGCGAGTCCAGCGGAGACGGCGC
TGTCGTTGTCGTCGATCGACCCCGTCGGCGCCTTGTCTTGCGGCGGCGTC
GACGACGATCGAACCATAGGGCGTGGGCGCGAGGAATCGGACGCGGACGC
GGACGGGGATTCGGGGATGTTCACGCCGCCGCCTCTTCTTGAGAAGGCGC
GTCGTCAACCGCTTGCGGCTGTAACCCCGCGCGACTCCAACCGCCTTCCC
GGCGATTGCAACGGCAGCGACGGCGGTGGAAAAGTCCGCAAGACCTTGCC
GTTGTTCCCAACATCCAGTCACATTAGTGTTGCCGCAACAGCGGCCGCCG
CGGCCACCCCGTCACGGATACCCATGAAGTCAGTGGCGGCGGCAGCAGCG
GCAGCGGCAGCCGCCAAGGCGGAGGACCAGCGAGCGTCGGCAGTGTCGGC
GGCCGTTGCCCTGAGGGTGATCGCGGGGCTGTCTCGGGGGGCACGCTCAC
ACCAGAAGGTGGAGGCCCTGTCGTCGCTGAGGCGGCTCGCGGACGGGGAG
GGCGCCGGTGGGCACCCGGAGTTCTGGCCGAGTTTCTTCGGCCAGGTGCT
GATGCTCCTGCTGGAAGGGGCAGGTGATGGGGGCGGCGGCGGTGGCGGCG
GCGGCCTTTCCTCGAGCCCGTCCCGCCGGCGAGCGCTTCTGCGGGTCAAG
CACCTGCAGGGGGTGCGCTGCCTGGTGGCGCGGCGTGGGGGTCTCTTCTC
GGAGTTCACGGAGGTCGTGGTGGGGAGGCTGGTCGAAATCGGCGGCGGCG
TAAGCGGTAGTAGCCTGTGCCTCGCCGTCCGCTGCGAGGCGGAGGCGTGT
CTGGCGGACCTCGGCGGCGTGCTGGACCCGGCCCGCTACCTCGAGGCTTT
GACCCCACTCCTTCACCACGCGCCCGGCTGTGCTGCTAGCGAGGAGGCCG
TCTCCAACGGCGGCGATCTTCCAGAGAACAATGCTTCCGAAGTCGCCAAG
ATGCAGTGTTTCGTGCTAGGCGCGCTACGCGCGCTGACACCGCGGCTGTC
GTCCGCCGTTCTGCTCGGCGCGTTGCGCGCGGGCCCCCTGCTGGCCGGGC
TCGAGGCCGCGCTGGGGGGGGTGGACCTAGAGGCGCGCAAACGGGCGGTG
CTTGCCTTGGTGGAGATGTATCAGGTGTTCCCCAACCTGGCCGACACGAA
GGAGCCCGTGCGCCTGGCCGCAAACGGCGTGCTAGACGCATGCCGCGCGG
CGTACCCCTCTCACCAGCTCTGCTCCTCGCTCTGCCCCCGCGTCCTCGAG
CTCCCGTCCGGCCGCGCGCGGACGGGCCTCCTCGAATTCCTCGCCGTCCT
CGTTCCTCACTCGGCCGGCTTTTTCCTCCAGGAAAGCCACCCTGCGGCGG
GGGCAGGGCGAGAAGGAGGAGGGGGTCACCTACAAGCTCTCACGCAGCGA
GTTGCGGCCGCCCTGGTCCAGTCGCCGCCCCCGGCGAACTGGAACGGGGA
GCTGGGGGAGGACGGGCCGGCCTCCGCCGGGGCGGCGGCGTCCGCCGCGA
TCCGCCTCCTGATGGCGCTGTTCCAGCTGGACAGAGCGGCCCTGAAGGCG
GCAGCGGCTACGCTGCCGCCCTCGTCGGCGGCCGCCGTGCGACGGGCGCT
GTCGGTCTTCGGCTCTCCGTCTCCGTCTCCGTCTCGGTCTCCCTCTCCGA
GTGTTCCTGCTTCTTTTCCTTCTATTCCTCATCCGTCATCCTCTTGCCCT
TCTCGCTCTTCTGCTCATTCTCCGACGGGAGGGGATCGGCCGGAGGAAGT
CGTCTCACCGTCGATGCCGGCCGGGGGGGCGGAGTGCGGCAACCAGCTTG
CGGGTGTTTCGCCGGCCATCGCAGGAGAGGCGGAGGAGAAGGAGGAAGAC
CGTCGTGTCCCGCCGGCTTCAGGCGCGCTTCCCGAGAGACAGGAAGGCCG
TGAGGCCGTGGATTCGGCGGTTGTGACGCCAACGGCCGGCGGCAGCGGGC
GGGTCGGGTTCGTAGGTGAGGGAAGAAACAGAGTAGTCGACAACCACGAG
CGATCGCCGTCGCCATCGTCGTTGTCATTATCGTTGCCGCCGCCGCTTGG
AAGGCAGCAGCCGCTGGAGGGCGCGGTAGCATTGGCGAGTCCAGCGGAGA
CGGCGCTGTCGTTGTCGTCGATCGACCCCGTCGGCGCCTTGTCTTGCGGC
GGCGTCGACGACGATCGAACCATAGGGCGTGGGCGCGAGGAATCGGACGC
GGACGCGGACGGGGATTCGGGGATGTTCACGCCGCCGCCTCTTCTTGAGA
AGGCGCGTCGTCAACCGCTTGCGGCTGTAACCCCGCGCGACTCCAACCGC
CTTCCCGGCGATTGCAACGGCAGCGACGGCGGTGGAAAAGTCCGCAAGAC
CTTGCCGTTGTTCCCAACATCCAGTCACATTAGTGTTGCCGCAACAGCGG
CCGCCGCGGCCACCCCGTCACGGATACCCATGAAGTCAGTGGCGGCGGCA
GCAGCGGCAGCGGCAGCCGCCAAGGCGGAGGACCAGCGAGCGTCGGCAGT
GTCGGCGGCCGTTGCCCTGAGGGTGATCGCGGGGCTGTCTCGGGGGGCAC
GCTCACACCAGAAGGTGGAGGCCCTGTCGTCGCTGAGGCGGCTCGCGGAC
GGGGAGGGCGCCGGTGGGCACCCGGAGTTCTGGCCGAGTTTCTTCGGCCA
GGTGCTGATGCTCCTGCTGGAAGGGGCAGGTGATGGGGGCGGCGGCGGTG
GCGGCGGCGGCCTTTCCTCGAGCCCGTCCCGCCGGCGAGCGCTTCTGCGG
GTCAAGCACCTGCAGGGGGTGCGCTGCCTGGTGGCGCGGCGTGGGGGTCT
CTTCTCGGAGTTCACGGAGGTCGTGGTGGGGAGGCTGGTCGAAATCGGCG
GCGGCGTAAGCGGTAGTAGCCTGTGCCTCGCCGTCCGCTGCGAGGCGGAG
GCGTGTCTGGCGGACCTCGGCGGCGTGCTGGACCCGGCCCGCTACCTCGA
GGCTTTGACCCCACTCCTTCACCACGCGCCCGGCTGTGCTGCTAGCGAGG
AGGCCGTCTCCAACGGCGGCGATCTTCCAGAGAACAATGCTTCCGAAGTC
GCCAAGATGCAGTGTTTCGTGCTAGGCGCGCTACGCGCGCTGACACCGCG
GCTGTCGTCCGCCGTTCTGCTCGGCGCGTTGCGCGCGGGCCCCCTGCTGG
CCGGGCTCGAGGCCGCGCTGGGGGGGGTGGACCTAGAGGCGCGCAAACGG
GCGGTGCTTGCCTTGGTGGAGATGTATCAGGTGCTGGAGGAGGCCCTGCT
GCCATTCCTGGCCGGCTTTCCCACTAGCCGCCTCAAGCTCATCAACATGT
ATATCGAGCGGCGCCGGGCGAGGGACAACCGCTCCGTCAAGGCTGCCGCC
ACCGCTGCCGTACCCACCGCCGCTGCGGCCGACAACACATCCAGGTTTGC
GAAGGTGGCATCAAGCGGGAGCCGGGAAGTGGCGGGCACGGCAGCGACAG
CGGCAGGCGGAGCGGGAGGGGGAACGCCGGCACCGGCAGTGGCGGCAGCG
GCGGTGCGATTTACCCCCATACGGTAGGTGCTGGAGGAGGCCCTGCTGCC
ATTCCTGGCCGGCTTTCCCACTAGCCGCCTCAAGCTCATCAACATGTATA
TCGAGCGGCGCCGGGCGAGGGACAACCGCTCCGTCAAGGCTGCCGCCACC
GCTGCCGTACCCACCGCCGCTGCGGCCGACAACACATCCAGGTTTGCGAA
GGTGGCATCAAGCGGGAGCCGGGAAGTGGCGGGCACGGCAGCGACAGCGG
CAGGCGGAGCGGGAGGGGGAACGCCGGCACCGGCAGTGGCGGCAGCGGCG
GTGCGATTTACCCCCATACGGTAG
back to top