mRNA_P-fluviatile_contig16.2798.1 (mRNA) Porterinema fluviatile SAG_2381

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

Overview
NamemRNA_P-fluviatile_contig16.2798.1
Unique NamemRNA_P-fluviatile_contig16.2798.1
TypemRNA
OrganismPorterinema fluviatile SAG_2381 (Porterinema fluviatile SAG_2381)
Homology
BLAST of mRNA_P-fluviatile_contig16.2798.1 vs. uniprot
Match: A0A6H5JZB1_9PHAE (NMO domain-containing protein n=1 Tax=Ectocarpus sp. CCAP 1310/34 TaxID=867726 RepID=A0A6H5JZB1_9PHAE)

HSP 1 Score: 795 bits (2052), Expect = 1.940e-274
Identity = 476/670 (71.04%), Postives = 526/670 (78.51%), Query Frame = 1
Query:    1 MGFSTPFTKAYNLSVPICLAPMAGVSGGRLAAAVARGGGLGVIGAGSAKIASQLDEEVRIFRDEAPLGAKLALGIISWAALGRSGHGATQATLRHTASGGXXXXXXXXXXXXXXXXXXXXXXXXXXGAGSSVGGAEAGVAEGGTGAGAESDKAPADPEEDCDTSVLISLIMRYRPHAIWFFAPSTP---------------------------------------------------SQQAYTVCQEMGVEIIAQVGTVREARIAAEMGASVVVAQGREAGGHGLRPELARGILPLAAAVAVELASTGKPVLAAGGVVSGRGLLAALALGCDGVVMGTRYFATYEALGTNDHKAKIVTTSGDETVRTRVYDMAAAMRPNNPVSWPEPYDSSGVAANDFTAEWHTREASLEAKLAIRDGMTGHSMPTAQIEDAERARDLSIAKVFMGEGTGLIYSVDAAEKITRDVAREAEEQLDQVNRLRTDVDFDPP-RTRVAG-----TSLSANNIDDMDRDGGGVDAATGGVKRASTAGDLSNAGRAPPGTRQVISSGSSYEKLAGYSRAVRVGKHVQVAGTTATNPEGSGVLCEGDIVGQTQYVFHIIALALKEAGCSLDNVVRTRMYVTDISNAEKVMEEHRKVFNGIRPAATIIGVSALVHPDLLVEVEADAMD 1839
            M  STPFTKA+NLSVP+CLAPMAGVSGG    AVARGGGLGVIGAGS K  S+LDEEVR+FRDEAPLGAKLALGIISW+ALG  GHG TQA+L    +      XXXXXXXXXXXXXXXXXXXXXX         +    +  TG G  + KA       CDTSVL +L+ RYRPHAIWFFAPSTP                                                   +++AYTVCQEMGVEIIAQVGTV +AR A EMGASVVVAQGREAGGHGLRPE+ARG+LPLAAAV+VELA TGKPVLAAGG+VSGRGLLA+LALGCDGVVMGTRY ATYEALGT+DHKAKIV+TSGDETVRTRV+DMAAA+RP+NPV WPEPYDSSGVA NDFTA+WHT+EA LE  L++RDG+TGHS PTAQ+EDAER RDLSIAKV+MGEG GLIYSVDAAEKITRDVAREAEEQLD VNRLRTD +FDPP R  V+G      SLSANNIDDMDR G G  A T  VKRA+T  DLSN  RAP GTRQVISSGSSYEK+AGYSRAVRVGKHVQVAGTTAT+P+GSGVLC GD+ GQTQY+FHII+LALKEAGCSL+NVVRTRMYVTDI NAEKVM EH +VF+ IRPAAT+I VS+LVHPDLLVE+EADA++
Sbjct:    1 MVLSTPFTKAFNLSVPVCLAPMAGVSGGP---AVARGGGLGVIGAGSGKNISELDEEVRLFRDEAPLGAKLALGIISWSALGGDGHGVTQASLHGRNTNNRTSAXXXXXXXXXXXXXXXXXXXXXXXXXXXXXNDKGLRRDSSTGNGGSARKAA------CDTSVLQTLLKRYRPHAIWFFAPSTPCACVSSAVFFRAWAVFTGVGGAVLMTVPREAPLPLTPSPFVPPCARATVFPAKEAYTVCQEMGVEIIAQVGTVSQARTAVEMGASVVVAQGREAGGHGLRPEVARGVLPLAAAVSVELAETGKPVLAAGGIVSGRGLLASLALGCDGVVMGTRYCATYEALGTDDHKAKIVSTSGDETVRTRVFDMAAAVRPHNPVLWPEPYDSSGVAWNDFTAKWHTQEARLEEDLSVRDGVTGHSRPTAQLEDAERMRDLSIAKVYMGEGAGLIYSVDAAEKITRDVAREAEEQLDMVNRLRTDKEFDPPPRPHVSGGGDRPMSLSANNIDDMDRGGLGSQA-TARVKRANTVSDLSNPVRAP-GTRQVISSGSSYEKMAGYSRAVRVGKHVQVAGTTATDPDGSGVLCIGDVGGQTQYIFHIISLALKEAGCSLENVVRTRMYVTDIENAEKVMAEHCRVFSSIRPAATLISVSSLVHPDLLVEIEADALE 659          
BLAST of mRNA_P-fluviatile_contig16.2798.1 vs. uniprot
Match: D7FU38_ECTSI (NMO domain-containing protein n=1 Tax=Ectocarpus siliculosus TaxID=2880 RepID=D7FU38_ECTSI)

HSP 1 Score: 710 bits (1833), Expect = 4.400e-243
Identity = 377/463 (81.43%), Postives = 418/463 (90.28%), Query Frame = 1
Query:  472 EEDCDTSVLISLIMRYRPHAIWFFAPSTPSQQAYTVCQEMGVEIIAQVGTVREARIAAEMGASVVVAQGREAGGHGLRPELARGILPLAAAVAVELASTGKPVLAAGGVVSGRGLLAALALGCDGVVMGTRYFATYEALGTNDHKAKIVTTSGDETVRTRVYDMAAAMRPNNPVSWPEPYDSSGVAANDFTAEWHTREASLEAKLAIRDGMTGHSMPTAQIEDAERARDLSIAKVFMGEGTGLIYSVDAAEKITRDVAREAEEQLDQVNRLRTDVDFDPP-RTRVAG-----TSLSANNIDDMDRDGGGVDA-ATGGVKRASTAGDLSNAGRAPPGTRQVISSGSSYEKLAGYSRAVRVGKHVQVAGTTATNPEGSGVLCEGDIVGQTQYVFHIIALALKEAGCSLDNVVRTRMYVTDISNAEKVMEEHRKVFNGIRPAATIIGVSALVHPDLLVEVEADAMD 1839
            E  CDTSVL +L+ RYRPHAIWFFAPSTPS++AYTVCQEMGVE+IAQVGTV +AR A EMGASVVVAQGREAGGHGLRPE+ARG+LPLAAAV+VELA TGKPVLAAGG+VSGRGLLA+LALGCDGVVMGTRY ATYEALGT+DHKAKIV+TSGDETVRTRV+DMAAA+RP+NPV WPEPYDSSGVA NDFTA+WHTREA LE  L+ RDG+TGHS PTAQ+EDAER RDLSIAKV+MGEG GLIYSVDAAEKITRDVAREAEEQLD VNRLRTD++FDPP R RV+G      SLSANNIDDMDR   G+D+ AT  VKRA+T  DLSN  RAP GTRQVISSGSSYEK+AGYSRAVRVGKHVQVAGTTAT+P+GSGVLC GD+ GQTQY+FHIIALAL+EAGCSL+NVVRTRMYVTDI NAEKVM EH KVF+ IRPAAT++ VS+LVHPDLLVE+EADA++
Sbjct:   96 EAACDTSVLQTLLKRYRPHAIWFFAPSTPSKEAYTVCQEMGVEVIAQVGTVGQARTAVEMGASVVVAQGREAGGHGLRPEVARGVLPLAAAVSVELAETGKPVLAAGGIVSGRGLLASLALGCDGVVMGTRYCATYEALGTDDHKAKIVSTSGDETVRTRVFDMAAAVRPHNPVLWPEPYDSSGVAWNDFTAKWHTREARLEEDLSDRDGVTGHSRPTAQLEDAERTRDLSIAKVYMGEGAGLIYSVDAAEKITRDVAREAEEQLDIVNRLRTDMEFDPPPRPRVSGGGGKPMSLSANNIDDMDR--WGLDSQATVRVKRANTVSDLSNPVRAP-GTRQVISSGSSYEKMAGYSRAVRVGKHVQVAGTTATDPDGSGVLCIGDVGGQTQYIFHIIALALREAGCSLENVVRTRMYVTDIKNAEKVMAEHCKVFSSIRPAATLVSVSSLVHPDLLVEIEADALE 555          
BLAST of mRNA_P-fluviatile_contig16.2798.1 vs. uniprot
Match: A0A813EEE4_POLGL (Hypothetical protein n=1 Tax=Polarella glacialis TaxID=89957 RepID=A0A813EEE4_POLGL)

HSP 1 Score: 194 bits (493), Expect = 6.800e-51
Identity = 159/438 (36.30%), Postives = 205/438 (46.80%), Query Frame = 1
Query:    4 GFSTPFTKAYNLSVPICLAPMAGVSGGRLAAAVARGGGLGVIGAGSAKIASQLDEEVRIFRDEAPLGAKLALGIISWAALGRSGHGATQATLRHTASGGXXXXXXXXXXXXXXXXXXXXXXXXXXGAGSSVGGAEAGVAEGGTGAGAESDKAPADPEEDCDTSVLISLIMRYRPHAIWFFAPS-TPSQQA-----YTVCQEMGVEIIAQVGTVREARIAAEMGASVVVAQGREAGGHGLRPELARGILPLAAAVAVELASTGKP-----VLAAGGVVSGRGLLAALALGCDGVVMGTRYFATYEALGTNDHKAKIVTTSGDETVRTRVYDMAAAMRPNNPVSWPEPYDSSGVAANDFTAEWHTREASLEAKLAIRDGMTGHSMPTAQIEDAERARDLSIAKVFMGEGTGLIYSVDAAEKITRDVAREAEEQLDQVNRL 1284
              +T FT  +   VPI   PMAGVSGG LAAA ARGG LG I AG     S L E+V +FR  AP  A L +G + ++++   G G  QA L                                                                 +D            +RP  + FFAP+  P           V ++ G +++ QVG+V EA+ A E  A  +VAQGREAGGHGLR EL  G LPLAA VA ELA   +      VLAAGG+  G+GL AALALGCDG V+GTR +A+ EALG +  K  +V    D+ +RT V+D  A     +P  WP P+DS G   N  +  WH +E  LEA LA   G    +   A    A +A D   A V  GEG G I +++ AE I   + R   E +DQ+ R+
Sbjct:    8 SLNTAFTDRFGCRVPIMGTPMAGVSGGTLAAATARGGALGFIAAGHLSDPSALAEQVALFRALAPPEALLCIGFVGYSSMS-VGFGRLQAAL-----------------------------------------------------------------DD------------HRPSVVQFFAPALVPDADGCAWGNVAVAKKAGSKVVLQVGSVEEAKRALEAEADCIVAQGREAGGHGLRTELGSGTLPLAARVA-ELARGSERLLRPCVLAAGGITCGKGLAAALALGCDGAVLGTRLWASAEALGKDSLKRALVEAEADDVLRTTVFDTLA--NAYSPTPWPAPFDSVGALHNKTSKRWHGKEDELEALLAGGQG----AETIAVFRAAVQAGDAESATVLAGEGVGAIGAIEPAEHI---ILRIEVEAIDQIRRM 357          
BLAST of mRNA_P-fluviatile_contig16.2798.1 vs. uniprot
Match: A0A7S0VYN9_9CRYP (Hypothetical protein n=1 Tax=Hemiselmis tepida TaxID=464990 RepID=A0A7S0VYN9_9CRYP)

HSP 1 Score: 189 bits (479), Expect = 3.350e-49
Identity = 146/428 (34.11%), Postives = 211/428 (49.30%), Query Frame = 1
Query:   31 YNLSVPICLAPMAGVSGGRLAAAVARGGGLGVIGAGSAKIASQ--LDEEVRIFRDE-APLGAK--LALGIISWAALGRSGHGATQATLRHTASGGXXXXXXXXXXXXXXXXXXXXXXXXXXGAGSSVGGAEAGVAEGGTGAGAESDKAPADPEEDCDTSVLISLIMRYRPHAIWFFAPSTPSQQA--YTVCQEMGVEII-AQVGTVREARIAAEMGASVVVAQGREAGGHGLRPELARGILPLAAAVAV-----ELASTGKPVLAAGGVVSGRGLLAALALGCDGVVMGTRYFATYEALGTNDHKAKIVTTSGDETVRTRVYDMAAAMRPNNPVSWPEPYDSSGVAANDFTAEWHTREASLEAKLAIRDGMTGHSMPTAQIEDAERARDLSIAKVFMGEGTGLIYSVDAAEKITRDVAREAEEQLDQV 1275
            + + VP+  APMAGVSGGRLAAAV +GGGLG I AG A  +S+  LD E+ +FR   + L  K  L LG I++++L                                                                               C  SVL+    +Y+P  + F AP   SQ A    + +E  + I+ AQVG++ EA  A   G  V++AQG EAGGHGLRPEL    +PLAAAV       +L   G  VLAAGG+  GRG+ AAL+LGCDGV MGTR+FA+++A+G ++ K  IV  + D  +RTRV+D+       NP  WP PYD++G   N+ +  WH +  +L   L  + G  G  +   +    + + + S+  V+MG+G   ++ +D AE + R +  EA E ++++
Sbjct:    6 WGVRVPVMSAPMAGVSGGRLAAAVCKGGGLGFIAAGHASASSEANLDAEINLFRKATSQLDPKPPLCLGFITYSSL------------------------------------------------------------------------------PCIASVLV----KYKPDVVQFTAPGV-SQGAGNIAIAREHHISIVMAQVGSIAEAEDAICAGVDVIIAQGTEAGGHGLRPELGTATMPLAAAVCSMVKNSQLQDQGPLVLAAGGISDGRGVAAALSLGCDGVSMGTRFFASHQAMGRSEEKQAIVQANADSAIRTRVFDLLNNTSSANP--WPPPYDAAGALHNETSRAWHNQPEALAQTLEAQ-GREGELIKAYR----QHSGNTSVTAVWMGQGVSDVHEIDDAEALVRRINDEAGEAIERL 343          
BLAST of mRNA_P-fluviatile_contig16.2798.1 vs. uniprot
Match: A0A1I7H1V5_9BACL (Nitronate monooxygenase n=2 Tax=Alicyclobacillus macrosporangiidus TaxID=392015 RepID=A0A1I7H1V5_9BACL)

HSP 1 Score: 163 bits (412), Expect = 1.420e-40
Identity = 148/430 (34.42%), Postives = 199/430 (46.28%), Query Frame = 1
Query:    1 MGFSTPFTKAYNLSVPICLAPMAGVSGGRLAAAVARGGGLGVIGAGSAKIASQLDEEVRIFRD-EAPLGAKLALGIISWAALGRSGHGATQATLRHTASGGXXXXXXXXXXXXXXXXXXXXXXXXXXGAGSSVGGAEAGVAEGGTGAGAESDKAPADPEEDCDTSVLISLIMRYRPHAIWFFAPSTPSQQAYTVCQEMGVEIIAQVGTVREARIAAEMGASVVVAQGREAGGHGLRPELARGILPLAAAVAVELASTGKPVLAAGGVVSGRGLLAALALGCDGVVMGTRYFATYEALGTNDHKAKIVTTSGDETVRTRVYDMAAAMRPNNPVSWPEPYDSSGVAANDFTAEWHTREASLEAKLAIRDGMTGHSMPTAQIEDAERARDLSIAKVFMGEGTGLIYSVDAAEKITRDVAREAEEQLDQVNRLR 1287
            M + T FT+   +S+P+ LAPMAGV+GG LAAAV+  GG G++  G AK    L E  ++ R  + P G    +G ++WA        A  A L H                                                                              RP A+ F +   PS  A  V    G  +I QV +VREA  A + GA V+VAQG+EAGGHG   +  RG   L  AV V++A +  PVLAAG V  GRGL+AALALG  GV++GTR++A  EA+G    KA++VT+ GD+TVRTRV+D+           WPE Y    +  N    EW+ RE  L  KL           P  Q   A  A D  +A V+ GEG  LI+ V+ A +I R +  +AE+ LD+++ LR
Sbjct:    1 MPWETAFTQCLGVSLPVALAPMAGVAGGELAAAVSEAGGFGIVAGGYAKEEQFLPEIEKVKRKTDRPWG----IGFLTWAL--EQNPKALDAALEH------------------------------------------------------------------------------RPAAV-FLSCGDPSPWADPV-HAAGARLICQVTSVREAARARDAGADVLVAQGQEAGGHG---DSVRGTFSLVPAV-VDIAPS-IPVLAAGAVADGRGLVAALALGAAGVLVGTRFYAAAEAIGHPAAKARLVTSGGDDTVRTRVFDIV------RDTGWPERYPGRALR-NRLYDEWNGREDELRTKL-------DEVRPAYQA--AVAAGDFDVAVVWAGEGIDLIHGVEPAGEIVRRMVADAEKCLDRIHALR 323          
BLAST of mRNA_P-fluviatile_contig16.2798.1 vs. uniprot
Match: A0A848FJN8_9BURK (Nitronate monooxygenase n=1 Tax=Azohydromonas caseinilytica TaxID=2728836 RepID=A0A848FJN8_9BURK)

HSP 1 Score: 157 bits (396), Expect = 1.580e-38
Identity = 137/427 (32.08%), Postives = 193/427 (45.20%), Query Frame = 1
Query:   13 TPFTKAYNLSVPICLAPMAGVSGGRLAAAVARGGGLGVIGAGSAKIASQLDEEVRIFRD--EAPLGAKLALGIISWAALGRSGHGATQATLRHTASGGXXXXXXXXXXXXXXXXXXXXXXXXXXGAGSSVGGAEAGVAEGGTGAGAESDKAPADPEEDCDTSVLISLIMRYRPHAIWFFAPSTPSQQAY-TVCQEMGVEIIAQVGTVREARIAAEMGASVVVAQGREAGGHGLRPELARGILPLAAAVAVELASTGKPVLAAGGVVSGRGLLAALALGCDGVVMGTRYFATYEALGTNDHKAKIVTTSGDETVRTRVYDMAAAMRPNNPVSWPEPYDSSGVAANDFTAEWHTREASLEAKLAIRDGMTGHSMPTAQIEDAERARDLSIAKVFMGEGTGLIYSVDAAEKITRDVAREAEEQLDQVNRL 1284
            T  T+ + +  PI LAPM GVSGGRLAAAV+  GGLG++G G    +  L  E+ + +     P G    +G+I+W+A                                                                                 D S+ + L++ YRP+A+     S    + Y ++ +  G  +I QV  V  AR+A E GA V+VAQG EAGGHG      R  LPL  AV   +A T  PVLAAGG+  GRGL AAL LG  GV++GTR++A+ EALG    K K+V   G++T RT  +D+   +      +WPEPY+   +  N F   W  RE  L A++ I+  +            A +A D  +A V+ GEG  LI  ++ A  I + +A EA ++L    RL
Sbjct:    4 TALTEMFGIDHPIVLAPMGGVSGGRLAAAVSNAGGLGLVGGGYGD-SGWLSRELSLVKSLTSHPWG----VGLITWSA---------------------------------------------------------------------------------DASI-VELVLGYRPYAVML---SFGDPEPYGSIVKAAGCRLICQVQDVAGARLALEAGADVIVAQGTEAGGHGA----GRSTLPLVPAVVDAVAPT--PVLAAGGIADGRGLAAALMLGAQGVLVGTRFYASEEALGHPHAKRKLVEAHGEDTCRTTAFDVVRKL------AWPEPYNGRALC-NGFVKRWRGREDELAAQVDIQQHVYA---------SAVQAADHDVAVVWAGEGVDLIDGIEPAGDIVQRLAAEAADRLGWAARL 318          
BLAST of mRNA_P-fluviatile_contig16.2798.1 vs. uniprot
Match: UPI001563E252 (nitronate monooxygenase n=1 Tax=Aquabacterium terrae TaxID=2732868 RepID=UPI001563E252)

HSP 1 Score: 154 bits (390), Expect = 1.370e-37
Identity = 139/421 (33.02%), Postives = 184/421 (43.71%), Query Frame = 1
Query:   10 STPFTKAYNLSVPICLAPMAGVSGGRLAAAVARGGGLGVIGAGSAKIASQLDEEVRIFRDEA-PLGAKLALGIISWAALGRSGHGATQATLRHTASGGXXXXXXXXXXXXXXXXXXXXXXXXXXGAGSSVGGAEAGVAEGGTGAGAESDKAPADPEEDCDTSVLISLIMRYRPHAIWF-FAPSTPSQQAYTVCQEMGVEIIAQVGTVREARIAAEMGASVVVAQGREAGGHGLRPELARGILPLAAAVAVELASTGKPVLAAGGVVSGRGLLAALALGCDGVVMGTRYFATYEALGTNDHKAKIVTTSGDETVRTRVYDMAAAMRPNNPVSWPEPYDSSGVAANDFTAEWHTREASLEAKLAIRDGMTGHSMPTAQIEDAERARDLSIAKVFMGEGTGLIYSVDAAEKITRDVAREAEEQL 1266
            +T  TK + L  PI LAPM GVSGGRLAAAV+  GGLG++G G    A    E  R+  + + P G    +G+I+W+                                                                                  DT  L+  ++ +RPHA+   F    P      V +  G ++I QV  +  A++A E GA ++VAQG EAGGHG      R  LPL  AVA  +A    PV+AAGG+  GRGL AAL LG  G ++GTR++A+ EALG    K  IV   G++T RT V+D    M      +WP PY   G+  N F   WH RE  L A L    G           + A R  DL  A V+ GE   LI SV++A  + R +  +AE QL
Sbjct:    3 TTALTKMFRLEHPIVLAPMGGVSGGRLAAAVSNAGGLGLVGGGYGDPAWLRTELSRVKGETSRPWG----VGLITWSV---------------------------------------------------------------------------------DTG-LVESVLGHRPHAVMLSFGDPRPHG---AVIKAAGCKLICQVQDLAGAQLAVEAGADIIVAQGTEAGGHGG----GRSTLPLVPAVADVVAPI--PVVAAGGIADGRGLAAALMLGAHGALIGTRFYASDEALGHGLAKRCIVAAHGEQTARTTVFDTVRDM------AWPAPYTGRGLR-NRFMERWHGRERELSAALDAERG---------PYQAATREGDLDTAVVWAGEAVDLIVSVESAATLVRRIGAQAERQL 312          
BLAST of mRNA_P-fluviatile_contig16.2798.1 vs. uniprot
Match: A0A1W9I5X6_9PROT (Uncharacterized protein n=1 Tax=Proteobacteria bacterium SG_bin9 TaxID=1827385 RepID=A0A1W9I5X6_9PROT)

HSP 1 Score: 154 bits (389), Expect = 1.380e-37
Identity = 140/432 (32.41%), Postives = 192/432 (44.44%), Query Frame = 1
Query:    1 MGFSTPFTKAYNLSVPICLAPMAGVSGGRLAAAVARGGGLGVIGAGSAKIASQLDEEVRIFRDEAPLGAKLALGIISWAALGRSGHGATQATLRHTASGGXXXXXXXXXXXXXXXXXXXXXXXXXXGAGSSVGGAEAGVAEGGTGAGAESDKAPADPEEDCDTSVLISLIMRYRPHAIWF-FAPSTPSQQAYTVCQEMGVEIIAQVGTVREARIAAEMGASVVVAQGREAGGHGLRPELARGILPLAAAVAVELASTGK-PVLAAGGVVSGRGLLAALALGCDGVVMGTRYFATYEALGTNDHKAKIVTTSGDETVRTRVYDMAAAMRPNNPVSWPEPYDSSGVAANDFTAEWHTREASLEAKLAIRDGMTGHSMPTAQIEDAERARDLSIAKVFMGEGTGLIYSVDAAEKITRDVAREAEEQLDQVNRLRT 1290
            M   TP T+ + L  PI LAPMAG SGG LAAAV R GGLG+IG G       L  E+ +  +E     K+ +G I+W+   +                                                                         PE       L+ L + ++P A++  F    P           GV +IAQV TV +A+IAA  GA  +VAQG EAGGHG      RG LPL  AV   + + GK PV+AAGG+  GRGL AALALG  GVV GT ++A+ EAL     KA  V  SGD TVR+ ++D+A        + WP+ + +     N F  EW  +  +LEA   I+           +  DA  A D  +A V +GE   L++ +  A +I R + ++AE ++  +N L T
Sbjct:    1 MPIVTPLTEQFELEFPIILAPMAGFSGGALAAAVGRAGGLGLIGGGYGD-GDWLKRELPLAGNE-----KIGVGFITWSLAKK-------------------------------------------------------------------------PE-------LLDLALDHKPRAMFLSFGDLKPFAGKIAAA---GVPLIAQVQTVADAKIAASEGAQFIVAQGSEAGGHGS----GRGTLPLVPAV---IDAVGKIPVIAAGGIADGRGLAAALALGAAGVVCGTAFYASREALTHERIKAAAVAASGDNTVRSSIFDIARR------IDWPKRW-TIRTLENAFHREWAGKPEALEADATIQ---------AQRYRDAAAAGDADVAAVIVGEAIDLVHEIRPAAEIVRSIGQDAERRIAALNGLVT 320          
BLAST of mRNA_P-fluviatile_contig16.2798.1 vs. uniprot
Match: A0A537K6C2_9BACT (Nitronate monooxygenase n=1 Tax=Terrabacteria group bacterium ANGP1 TaxID=2569760 RepID=A0A537K6C2_9BACT)

HSP 1 Score: 154 bits (389), Expect = 1.410e-37
Identity = 138/430 (32.09%), Postives = 191/430 (44.42%), Query Frame = 1
Query:    1 MGFSTPFTKAYNLSVPICLAPMAGVSGGRLAAAVARGGGLGVIGAGSAKIASQLDEEVRIFRD--EAPLGAKLALGIISWAALGRSGHGATQATLRHTASGGXXXXXXXXXXXXXXXXXXXXXXXXXXGAGSSVGGAEAGVAEGGTGAGAESDKAPADPEEDCDTSVLISLIMRYRPHAIWFFAPSTPSQQAYTVCQEMGVEIIAQVGTVREARIAAEMGASVVVAQGREAGGHGLRPELARGILPLAAAVAVELASTGKPVLAAGGVVSGRGLLAALALGCDGVVMGTRYFATYEALGTNDHKAKIVTTSGDETVRTRVYDMAAAMRPNNPVSWPEPYDSSGVAANDFTAEWHTREASLEAKLAIRDGMTGHSMPTAQIEDAERARDLSIAKVFMGEGTGLIYSVDAAEKITRDVAREAEEQLDQVNRL 1284
            MG  TPF + ++L+ PI LAPM G++GGRLAAAV+  GGLG++G G   +   L+ E+ + R+    P G    +G+I+W       H   +A                                                                           + L +R+RP  ++F +   P   A  + ++ G  +I QV  V  A+ A   GA V+VAQG EAGGHG      R  LPL  +VA  +A T  PVLAAGG+  GRGL AAL LG  G V+GTR++A  E+LG    K +IV   G +TVRT ++D+          +WP P+    +  N FTA W  R+  L   L           P  Q   A  A D   A V+ GEG  LI  V +A +I + + REAE +L   + L
Sbjct:    1 MGIRTPFAERFSLTYPILLAPMGGIAGGRLAAAVSNAGGLGLVGGGYGDL-EWLEAELALAREGTRRPWG----VGVITW-------HAGIEA---------------------------------------------------------------------------VKLALRFRPD-VFFLSFGDPRPFAALI-KDAGCALICQVQDVDAAQQAKAAGADVIVAQGTEAGGHGA----VRAALPLVPSVADAVAPT--PVLAAGGISEGRGLAAALMLGAQGAVVGTRFYACQESLGHPSAKRRIVGADGGDTVRTHMFDVVRGY------AWPAPFTGRALR-NRFTARWAGRDDELARSL-------DEERPRYQA--AAAAGDFETAVVWAGEGVDLIADVPSAAEIVQRIGREAERRLGMASGL 319          
BLAST of mRNA_P-fluviatile_contig16.2798.1 vs. uniprot
Match: A0A7R9ZM28_9STRA (Hypothetical protein n=1 Tax=Craspedostauros australis TaxID=1486917 RepID=A0A7R9ZM28_9STRA)

HSP 1 Score: 155 bits (393), Expect = 2.500e-37
Identity = 100/262 (38.17%), Postives = 139/262 (53.05%), Query Frame = 1
Query:  505 LIMRYRPHAIWFFAP--------STPSQQAYTVCQEMGVEIIAQVGTVREARIAAEMGASVVVAQGREAGGHGLRPELARGILPLAAAVAVELASTGKPVLAAGGVVSGRGLLAALALGCDGVVMGTRYFATYEALGTNDHKAKIV-TTSGDETVRTRVYDMAAAMRPNNPVSWPEPYDSSGVAANDFTAEWHTREASLEAKLAIRDGMTGHSMPTAQIEDAERAR---DLSIAKVFMGEGTGLIYSVDAAEKITRDVAREA 1254
            ++  +RP  + FFAP        ST +     +    G  ++AQVG+  +A  A E G   ++AQG EAGGHGLR E+  G LPLAA +    A  G PVLAAGG+  GR +   +++GCDGVV+GTR +A+ EALG    K K+   TSGD+ VRT+ +D  A       + WP+PYDS G   ND T +W TR+  LE  L         + P A +E  + A    D  +A V  G+G G +  ++    I   +  EA
Sbjct:  123 VLQTHRPDVVQFFAPAIARKGGHSTTAATNVDLAHAHGALVMAQVGSAADAAEALESGVDAIIAQGSEAGGHGLRREVGSGTLPLAARIVGLAAPNGIPVLAAGGICDGRTMAGMMSVGCDGVVLGTRLWASNEALGNARFKEKLAKATSGDDVVRTQSFD--AIWNSYRSIQWPDPYDSCGALRNDITDKWDTRQRELEKVL-------DSAAPPAWMEKYKHANEVGDSDMAAVLCGQGVGEVEGIEPTFDIVARINDEA 375          
The following BLAST results are available for this feature:
BLAST of mRNA_P-fluviatile_contig16.2798.1 vs. uniprot
Analysis Date: 2022-09-19 (Diamond blastx: OGS1.0 vs UniRef90)
Total hits: 25
Match NameE-valueIdentityDescription
A0A6H5JZB1_9PHAE1.940e-27471.04NMO domain-containing protein n=1 Tax=Ectocarpus s... [more]
D7FU38_ECTSI4.400e-24381.43NMO domain-containing protein n=1 Tax=Ectocarpus s... [more]
A0A813EEE4_POLGL6.800e-5136.30Hypothetical protein n=1 Tax=Polarella glacialis T... [more]
A0A7S0VYN9_9CRYP3.350e-4934.11Hypothetical protein n=1 Tax=Hemiselmis tepida Tax... [more]
A0A1I7H1V5_9BACL1.420e-4034.42Nitronate monooxygenase n=2 Tax=Alicyclobacillus m... [more]
A0A848FJN8_9BURK1.580e-3832.08Nitronate monooxygenase n=1 Tax=Azohydromonas case... [more]
UPI001563E2521.370e-3733.02nitronate monooxygenase n=1 Tax=Aquabacterium terr... [more]
A0A1W9I5X6_9PROT1.380e-3732.41Uncharacterized protein n=1 Tax=Proteobacteria bac... [more]
A0A537K6C2_9BACT1.410e-3732.09Nitronate monooxygenase n=1 Tax=Terrabacteria grou... [more]
A0A7R9ZM28_9STRA2.500e-3738.17Hypothetical protein n=1 Tax=Craspedostauros austr... [more]

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Alignments
The following features are aligned
Aligned FeatureFeature TypeAlignment Location
P-fluviatile_contig16contigP-fluviatile_contig16:1989698..2014715 +
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 score712.6
Seed ortholog evalue1.6e-202
Seed eggNOG ortholog2880.D7FU38
KEGG rclassRC02541,RC02759
KEGG koko:K00459
KEGG ReactionR00025
KEGG Pathwayko00910,map00910
GOsGO:0003674,GO:0003700,GO:0005575,GO:0005622,GO:0005623,GO:0005634,GO:0006355,GO:0008150,GO:0009410,GO:0009889,GO:0010468,GO:0010556,GO:0019219,GO:0019222,GO:0031323,GO:0031326,GO:0042221,GO:0043226,GO:0043227,GO:0043229,GO:0043231,GO:0044424,GO:0044464,GO:0050789,GO:0050794,GO:0050896,GO:0051171,GO:0051252,GO:0060255,GO:0065007,GO:0080090,GO:0140110,GO:1903506,GO:2000112,GO:2001141
EggNOG free text desc.2-nitropropane dioxygenase
EggNOG OGs2RHJM@2759,COG2070@1
EC1.13.12.16
COG Functional cat.S
Best tax levelEukaryota
Best eggNOG OGNA|NA|NA
BRITEko00000,ko00001,ko01000
Hectar predicted targeting categoryother localisation
Ec32 ortholog descriptionEndoribonuclease L-PSP/chorismate mutase-like
Ec32 orthologEc-25_000760.1
Exons16
Model size3470
Cds size1845
Stop1
Start1
Relationships

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

Feature NameUnique NameSpeciesTypePosition
1622815704.1139674-CDS-P-fluviatile_contig16:1989697..19897911622815704.1139674-CDS-P-fluviatile_contig16:1989697..1989791Porterinema fluviatile SAG_2381CDSP-fluviatile_contig16 1989698..1989791 +
1693562997.0175393-CDS-P-fluviatile_contig16:1989697..19897911693562997.0175393-CDS-P-fluviatile_contig16:1989697..1989791Porterinema fluviatile SAG_2381CDSP-fluviatile_contig16 1989698..1989791 +
1622815704.1287084-CDS-P-fluviatile_contig16:1995199..19952761622815704.1287084-CDS-P-fluviatile_contig16:1995199..1995276Porterinema fluviatile SAG_2381CDSP-fluviatile_contig16 1995200..1995276 +
1693562997.0685346-CDS-P-fluviatile_contig16:1995199..19952761693562997.0685346-CDS-P-fluviatile_contig16:1995199..1995276Porterinema fluviatile SAG_2381CDSP-fluviatile_contig16 1995200..1995276 +
1622815704.1437569-CDS-P-fluviatile_contig16:1995777..19958761622815704.1437569-CDS-P-fluviatile_contig16:1995777..1995876Porterinema fluviatile SAG_2381CDSP-fluviatile_contig16 1995778..1995876 +
1693562997.0812998-CDS-P-fluviatile_contig16:1995777..19958761693562997.0812998-CDS-P-fluviatile_contig16:1995777..1995876Porterinema fluviatile SAG_2381CDSP-fluviatile_contig16 1995778..1995876 +
1622815704.158286-CDS-P-fluviatile_contig16:1996446..19967351622815704.158286-CDS-P-fluviatile_contig16:1996446..1996735Porterinema fluviatile SAG_2381CDSP-fluviatile_contig16 1996447..1996735 +
1693562997.0978434-CDS-P-fluviatile_contig16:1996446..19967351693562997.0978434-CDS-P-fluviatile_contig16:1996446..1996735Porterinema fluviatile SAG_2381CDSP-fluviatile_contig16 1996447..1996735 +
1622815704.181271-CDS-P-fluviatile_contig16:1997723..19977761622815704.181271-CDS-P-fluviatile_contig16:1997723..1997776Porterinema fluviatile SAG_2381CDSP-fluviatile_contig16 1997724..1997776 +
1693562997.107838-CDS-P-fluviatile_contig16:1997723..19977761693562997.107838-CDS-P-fluviatile_contig16:1997723..1997776Porterinema fluviatile SAG_2381CDSP-fluviatile_contig16 1997724..1997776 +
1622815704.197175-CDS-P-fluviatile_contig16:2000588..20006801622815704.197175-CDS-P-fluviatile_contig16:2000588..2000680Porterinema fluviatile SAG_2381CDSP-fluviatile_contig16 2000589..2000680 +
1693562997.1235363-CDS-P-fluviatile_contig16:2000588..20006801693562997.1235363-CDS-P-fluviatile_contig16:2000588..2000680Porterinema fluviatile SAG_2381CDSP-fluviatile_contig16 2000589..2000680 +
1622815704.2177076-CDS-P-fluviatile_contig16:2003604..20037631622815704.2177076-CDS-P-fluviatile_contig16:2003604..2003763Porterinema fluviatile SAG_2381CDSP-fluviatile_contig16 2003605..2003763 +
1693562997.1321075-CDS-P-fluviatile_contig16:2003604..20037631693562997.1321075-CDS-P-fluviatile_contig16:2003604..2003763Porterinema fluviatile SAG_2381CDSP-fluviatile_contig16 2003605..2003763 +
1622815704.2321026-CDS-P-fluviatile_contig16:2004158..20042201622815704.2321026-CDS-P-fluviatile_contig16:2004158..2004220Porterinema fluviatile SAG_2381CDSP-fluviatile_contig16 2004159..2004220 +
1693562997.1403995-CDS-P-fluviatile_contig16:2004158..20042201693562997.1403995-CDS-P-fluviatile_contig16:2004158..2004220Porterinema fluviatile SAG_2381CDSP-fluviatile_contig16 2004159..2004220 +
1622815704.2460787-CDS-P-fluviatile_contig16:2005240..20054091622815704.2460787-CDS-P-fluviatile_contig16:2005240..2005409Porterinema fluviatile SAG_2381CDSP-fluviatile_contig16 2005241..2005409 +
1693562997.1490319-CDS-P-fluviatile_contig16:2005240..20054091693562997.1490319-CDS-P-fluviatile_contig16:2005240..2005409Porterinema fluviatile SAG_2381CDSP-fluviatile_contig16 2005241..2005409 +
1622815704.2577913-CDS-P-fluviatile_contig16:2006072..20061421622815704.2577913-CDS-P-fluviatile_contig16:2006072..2006142Porterinema fluviatile SAG_2381CDSP-fluviatile_contig16 2006073..2006142 +
1693562997.1584256-CDS-P-fluviatile_contig16:2006072..20061421693562997.1584256-CDS-P-fluviatile_contig16:2006072..2006142Porterinema fluviatile SAG_2381CDSP-fluviatile_contig16 2006073..2006142 +
1622815704.2694693-CDS-P-fluviatile_contig16:2008223..20083481622815704.2694693-CDS-P-fluviatile_contig16:2008223..2008348Porterinema fluviatile SAG_2381CDSP-fluviatile_contig16 2008224..2008348 +
1693562997.169381-CDS-P-fluviatile_contig16:2008223..20083481693562997.169381-CDS-P-fluviatile_contig16:2008223..2008348Porterinema fluviatile SAG_2381CDSP-fluviatile_contig16 2008224..2008348 +
1622815704.2811844-CDS-P-fluviatile_contig16:2008740..20089181622815704.2811844-CDS-P-fluviatile_contig16:2008740..2008918Porterinema fluviatile SAG_2381CDSP-fluviatile_contig16 2008741..2008918 +
1693562997.1778204-CDS-P-fluviatile_contig16:2008740..20089181693562997.1778204-CDS-P-fluviatile_contig16:2008740..2008918Porterinema fluviatile SAG_2381CDSP-fluviatile_contig16 2008741..2008918 +
1622815704.2953503-CDS-P-fluviatile_contig16:2010601..20106761622815704.2953503-CDS-P-fluviatile_contig16:2010601..2010676Porterinema fluviatile SAG_2381CDSP-fluviatile_contig16 2010602..2010676 +
1693562997.187081-CDS-P-fluviatile_contig16:2010601..20106761693562997.187081-CDS-P-fluviatile_contig16:2010601..2010676Porterinema fluviatile SAG_2381CDSP-fluviatile_contig16 2010602..2010676 +
1622815704.3096893-CDS-P-fluviatile_contig16:2011191..20113021622815704.3096893-CDS-P-fluviatile_contig16:2011191..2011302Porterinema fluviatile SAG_2381CDSP-fluviatile_contig16 2011192..2011302 +
1693562997.1957235-CDS-P-fluviatile_contig16:2011191..20113021693562997.1957235-CDS-P-fluviatile_contig16:2011191..2011302Porterinema fluviatile SAG_2381CDSP-fluviatile_contig16 2011192..2011302 +
1622815704.3244493-CDS-P-fluviatile_contig16:2011837..20119661622815704.3244493-CDS-P-fluviatile_contig16:2011837..2011966Porterinema fluviatile SAG_2381CDSP-fluviatile_contig16 2011838..2011966 +
1693562997.2037358-CDS-P-fluviatile_contig16:2011837..20119661693562997.2037358-CDS-P-fluviatile_contig16:2011837..2011966Porterinema fluviatile SAG_2381CDSP-fluviatile_contig16 2011838..2011966 +
1622815704.346075-CDS-P-fluviatile_contig16:2013027..20130901622815704.346075-CDS-P-fluviatile_contig16:2013027..2013090Porterinema fluviatile SAG_2381CDSP-fluviatile_contig16 2013028..2013090 +
1693562997.211578-CDS-P-fluviatile_contig16:2013027..20130901693562997.211578-CDS-P-fluviatile_contig16:2013027..2013090Porterinema fluviatile SAG_2381CDSP-fluviatile_contig16 2013028..2013090 +


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

Feature NameUnique NameSpeciesTypePosition
1622815704.3578076-UTR-P-fluviatile_contig16:2013090..20147151622815704.3578076-UTR-P-fluviatile_contig16:2013090..2014715Porterinema fluviatile SAG_2381UTRP-fluviatile_contig16 2013091..2014715 +
1693562997.2196507-UTR-P-fluviatile_contig16:2013090..20147151693562997.2196507-UTR-P-fluviatile_contig16:2013090..2014715Porterinema fluviatile SAG_2381UTRP-fluviatile_contig16 2013091..2014715 +


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

Feature NameUnique NameSpeciesTypePosition
mRNA_P-fluviatile_contig16.2798.1prot_P-fluviatile_contig16.2798.1Porterinema fluviatile SAG_2381polypeptideP-fluviatile_contig16 1989698..2013090 +


Sequences
The following sequences are available for this feature:

protein sequence of mRNA_P-fluviatile_contig16.2798.1

>prot_P-fluviatile_contig16.2798.1 ID=prot_P-fluviatile_contig16.2798.1|Name=mRNA_P-fluviatile_contig16.2798.1|organism=Porterinema fluviatile SAG_2381|type=polypeptide|length=615bp
MGFSTPFTKAYNLSVPICLAPMAGVSGGRLAAAVARGGGLGVIGAGSAKI
ASQLDEEVRIFRDEAPLGAKLALGIISWAALGRSGHGATQATLRHTASGG
TTSPAAAAGGGVAANTANEEAAAAAAGAGSSVGGAEAGVAEGGTGAGAES
DKAPADPEEDCDTSVLISLIMRYRPHAIWFFAPSTPSQQAYTVCQEMGVE
IIAQVGTVREARIAAEMGASVVVAQGREAGGHGLRPELARGILPLAAAVA
VELASTGKPVLAAGGVVSGRGLLAALALGCDGVVMGTRYFATYEALGTND
HKAKIVTTSGDETVRTRVYDMAAAMRPNNPVSWPEPYDSSGVAANDFTAE
WHTREASLEAKLAIRDGMTGHSMPTAQIEDAERARDLSIAKVFMGEGTGL
IYSVDAAEKITRDVAREAEEQLDQVNRLRTDVDFDPPRTRVAGTSLSANN
IDDMDRDGGGVDAATGGVKRASTAGDLSNAGRAPPGTRQVISSGSSYEKL
AGYSRAVRVGKHVQVAGTTATNPEGSGVLCEGDIVGQTQYVFHIIALALK
EAGCSLDNVVRTRMYVTDISNAEKVMEEHRKVFNGIRPAATIIGVSALVH
PDLLVEVEADAMDT*
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mRNA from alignment at P-fluviatile_contig16:1989698..2014715+

Legend: CDSpolypeptideUTR
Hold the cursor over a type above to highlight its positions in the sequence below.
>mRNA_P-fluviatile_contig16.2798.1 ID=mRNA_P-fluviatile_contig16.2798.1|Name=mRNA_P-fluviatile_contig16.2798.1|organism=Porterinema fluviatile SAG_2381|type=mRNA|length=25018bp|location=Sequence derived from alignment at P-fluviatile_contig16:1989698..2014715+ (Porterinema fluviatile SAG_2381)
ATGGGGTTTTCCACGCCCTTCACGAAAGCTTACAACCTGTCCGTGCCGAT TTGCCTCGCTCCGATGGCCGGGGTCTCGGGTGGTCGTCTTGCCGGTGAGC GGTTCAGTTGCCACTTGTACGAATCCGTTCTAGTGAAAAAATAATGCTGC TCTCTCGGATTGTGCGGCAGTCACTGGTAGAAGTGGTCGTTGCTGATTGC TGAGCTTGTATTGTCTGTTTGCGTAGGCGTTCCGATGGTCGGGTGAGAGT GTAGATACGATGGAGCGAAGGTAGCGCCGCATCCACGCACGGTGTACGGC CGAGGATTTTCGAGGACTTTCCCCACAAAGACGAGCGAGAGAGAGGCCTT GGAGTGGAATTACTTTGTACAGCAGCAAAGAGCAGCAGCCACAATCACCG CTCGGCTCGCTGGCTCAGGCCAGCCTGAGCTAGCAGGTAAACGGGTAGCC ACTTTGCAGGGAGATCAGCTTGGTACGCAGGCACGCAGATGATTCAACGA GATTCACAACGCTCGCCAAAAAGACACACGCAACACGAAACCATCATTTT CCAAAGTGTACATCGCTCAACCATTTTTGATTTTGTCTTGCCGTGTAATC CCCGCAATTTCTCAAACGTCGTGCAAACCCTGTCACGGTTTTCCTAATTC GGCAAGCAGTACCTCCCCGCTCGACTGACACACAAGATAGTTGTGAAGGG TGGAGCGGACAGCAGCTCGACTGACACAAGAGGTTGTGAAGGGTGGAGCT GGCAGCAAGATTTTCTTTTTGCGGAATTCCTCTTCAGTTTGGCAACATTA AGGGGACGTGCACTCACGCCGTCGGTGGGTCTGAATCCACAACTCTGCCG GGGAAACAGGAGAGAGCCCTCTTAGAAGCGACAACCCAGCTGCAACGTAC AGACGTAGGGCAGCGAACAGGCTTCGTGAAGAGTCACAGAACCTCTCGAA GAGATTAGGGTGAGATCACAAAGCACGAGACACGCTACGAAAGCACGTTC GAACAAACGAACTTGTGGGGGCGGACAACAACTGGTTGTGACATTTGGTG ATTAAGCCGAGCTGCATGCATGTTCGTGATGTCCTCCTTGCCAGCCGATC AGGGCTCGTGCGCATGAAAATGCGGGTTATCGACAAACGTGCAAGTGTGA ACAACACACCTTGAACTGGACATGTGTTGGTATGCCGCCAGATGGACAAG ACACAGACGGGGCAGCCAAAAAGCTGTGGGCTTTCGTCGCATTTCCGGTG GTCAGTGACTGTATCGGAACACTTTCGTGCGGGAAGTGACTATCCTCAGC GACAACTTATCCCGGCCCTCTAGGCAAGATGGGAGTCGTCAAGAATCAGG GTTTTTGGTACCTGTAAAAACCAGAGTGTTCGTACTGATTTGTGTCCTTT ATTTTACTCCGGAGTATAGAAATTATACCGATAATTTGTTTTTGTTTAAA ATGTCTTTGTTAGGTCGAAAATTATACTGTATACATTTTGGATATCATTT TACTTATGAAGCTCTAGATCGTGGACTTCTAGAAAGTTTAGGCCCTTTTG GTTTATCTAAGGTCTTATTAAATCAAATTAATAAAAATCGTAAATGGCAT TCAGGTTATTTATACCATTATTTATTGTCGGTTGGAGTAATCTTTTACCT ATCCTCATTATTTCCTTCTCGCCGCGTAGACGTACCACCGATGGCTGGCC TATAGCCGCCGGAAGGATTTAAGCGGACACATGAGCCACCGACAGGAATG ATGATGAGGGCTATGCTATTGCATAGCTTACACGCGGAAACCGTATCTTC AAACATGGAACACTACTGAAGAGCACGAGGTCCGCATGGAAGGCAAAGGC AGAAAAATGTCAACACTACTGGCATGTACGGGGACAGCCCGCACATTATG TATATATCTGTAAGCTGGTTTTGATTGTCCGGTGATAAATCACACATTTG CGCCTATGTTACTGGCAGCGCGAGTACTCTGGCGCACAGGGATGCGAGGT GTCGATACATCAGAGATGCTATTCCGGAAATCTTTTTACCAAGGGACAGC ATACAACGGACACTCGAGTTTCGCTCTATCGCGGAAAGCACGTTGGGCTG TGCGCGGTACGTTGACGTGGTTAAAAGTAGAGCATAGGAAAAAAGTAAGT CATTAGACAACGAGCACCCGAGCGGAAGAATTGCGCTTACTCGCACCTGG GTAGCAACTACCGATGGATTACAAGCACGTGGGTGCCGGACATCGGTTGT TGTTGCTATCCCGATGAAGTAACAGAAAAGGTGGTGCACTACAGAGTGTC CGAGGTGCGCATAAATTAGCCCCATGTGTTAAGCCGAGACAGCGGTAGAA GTAGGACAAGACTCCCGCCGGGGAGGGATAAATGGTGGGTCCTGGGACAG AATCGCAGCACGGCATGAGGCGAGATCAGCTCCGCTCACTGTGGGAGGAT AGTGTGGTGATGCCAGACTCCCATTTGTGGACGTTGATCGTCGAGGATCA GATGGTGCTGGAAATTGTCCAGCCAAGCGGCTCCTACCTCCCGTTGGTGA CCATCGATGCCCTCGATAATGTACGATCCGATGGTGTCATGTTATCGTGA GCCGTCGAGGTCAGAGGCAGAGGGAGTCGTGCCTACGAATACGTCGTCGA GTGCCCTTTTATCAGGGGCAGGGGACGACGCGAGGACAACGTACTTTTTT CATGCCGCCTGGGTGGACGGTAGTGTAGGTTGGTTCGTTGTGTTTGGACA CGCGATGGATGACTGGCGAGAGCTGTGCTCGGACAGTGTACGGCCCTTGC CAAGGAAAGTTAGCTTTGGCTTGGACACGGCGCTTGACAACAATTCTCGG TCGCTTTCGAGTGGCATGATCTCATCGAGATTGCTGGCGGACACTTCAAT GGTACCAGACATGAGGTGTGGGTGCCGCAACAAGATGGGGCCATCGCCAA GTACGCGAGACAAACTCGTCGGCGACTTGGTCTCCATACGCTTCAAGGTG ATTGGGGGAGGTTTTTCGGACGGCATCAAGGCTTTCACTTTTTGCGCGAT CAGGTGGTATTGAGACAGAAAGGAGTCGGCGTCGATATATGTGGAGCCGT CGTGAGGGATTAGGTTCTTGAAAATTGGTGAAGTTGAGCACATGCTTCTA CTTGCTGTCAAGGCTGGGGCAAAGGGCTTGGTGAGCTCGGCCACACTGGT GACAAACGAGGACAAGCCAGATGCTGGGACACGAGCACGCGGGGACTCAT TCTGCAGTTTCTGCATGCTTACCAGCCGGTCCATCAGCATGAGCGTCAGC GGGTACAGCTCGTCGATCTCGGCCGCGTTGAGCAAGGCCAGCTTGTTGCT GAACAACCTTTGCGGCCGGTCGAGGGTGGACTCGAGGTCGGCAGGCTCTC CTCCGGTGGAGCAGCCGGTGACGTCCTCGACGTCCATCGAAGCGAAGTAC TCGGAGTCACGGGCGGTGTCTTCGTCGATGGCTGCGGTTGCAGCGCCGTC GACGTAGTCTCTGATGCCGTCACCGAAAGAGTTGGGGTCGCCCCTGCCGT GAGGGTTAAGGTAGGTGTATTCCCCACTTTTCTTCTTGGAAATCCAACAT AATATAGACAGCGTGGAGTGTGTGCCACATGCGCAGAACGAACTGCTGAT CGACGGCAAATAAGGGTGCGTACAATACATGTATATATAGCGCGGTCGGC GGGTCTGAATCCACAACTCTCTGCTGTGAATGCAGGAGAGAGAATTCTAA GACGCGGCAGCCGGGTGGCAACGTACAGACGTTGGACAGGAAGGGGCTTC GGGAAGAGTCGCAGAACCTTTCGGAGAGATGAGGGTAAGATCACAGAGTG ATCGAGTGGGGCGCCAGGAACGCGGCATGGCACAGGACCAAAACATACGT GGCAGGCGTGTGCCACACACTTTGCCGGCATGCTACCCACTGAGCTTGCA CACGCCGGCCATGGAAGACAACATCACCCACTGCAAGCGGGAGGCAAACA CGGCACGCATACAAAGTGCGGAGGGATTCGTGGACGCAAGGGCGTATGCG CGCGCACAAACGTTGGGAGGTTCCCCAGATAGGTTGAAGATTCTTACAGA GGCAGAGGGTACCCACATCATCCATCGTTGCAATTGCGTTCCGGAATACA TGCCGCGGAGGTCGCACACGAGATGAAGGGCTTCTCCCTCCGCTGCTGGC ATTTGAAGTTTGCCCGGCGAAGAGGTGTGAAGTAGGACCTGATTTCTTGG TTGACTCGAGATGTCTCTGCAGCAACCGTACCCGTCACACTTTCGTGTTG AAGTGTCTGGGACATTCACGGGAAGGCAATTTGCCATGCCCAGTTCCTCC AAAATTTTCTTCAAGTGTCCTGATACACACAGCAATGACTGCCCCGTTCG TCGGCAGGCCTGTTCCAGGCCCTCGGCAGCGGTCGGCTGATTTTTGGAAC GGGGAGGGGTTTTTGATGCTGATTCTGGTAAGGAATCGAAGAAGTGTAAC TTAGAGAAGGGAAGAATCGCCTACAGTCATTTGGACTGGGTAAGGCTTGT ACTCGTTAAACGATCGACTGATTTTTGAAAGGGGGAATGAAAATTTGTAC TTAGTACGCCGTACTGGATTTTTTTTGGAGTCGAAGTAGGTGCATCTCAA TCGGGGGGAGAAATGGCGGACCGATGAACGGCGGTGCTCCGGTCGGGAAG GAAGTCTACAAGGAGCTCCGTTGGTCATCCCCTTTGACACCTAAGTTTAT CGTCGAGTTTGCAACCGGGGGATATATTCACAATCGATAGGAAGTTCTGC ATCTCCCATCTCCAACCCCATCTTCGAAGCACCTTTGAACGTGGGAACGG GCGGGCAGACCTGAAAAATCCGTTCGAAGCTAGGTTAGGTTAAGCATTTT ACATCCATTCGCGCACATTCACCCCCATGATCGGGCTGTGATAGCTTGAA CTTGCATACATGCATCAGAGGGCATCCAGAAGCCAGCAGGCGAAAGCCGA ATAATCTGGTTGCAGGGGGCGATTCAGGGGTGTTACTGAACTGTCTGCAC GCAGTAAGGTTTACTAAGGTTTCGCTCCAAATTTCCGAAATTCCGATCAG AAGAAACTATGTCTCGATTTTTGGCTCCTGCGAATAAATAGTTTTCGGAC AAGTGAAAGAAGTCGCGAGGGGCCGGGGCGACAAAAAAAATGTTTGAGCC TTTTTTAATTTGCTGCTTTTCCCCAACCACTCAAATCACAGAAACACCAA CAGCGGCAACATCAACGATGGCAAATGTCGGCAACGGTAGCTGAACGCCA CCACCACCACCACCACCACCACCAGCAACAACAACAACAGCAACAACAAC AACAACAACAACAACAACAACAACAACAACAACTACAGCAGCAGCAACAA AGTCGCAGCGACAGCAGCAACGACGACGACGATAGCATCAATTAAATCGC ACGTCTCGACTTGCATCGTCCCGTGTGTCGTGCTTGAATTTCGATTGCCC AGCCGCCGTGGCACGCGGGGGCGGGCTCGGCGTCATCGGCGCCGGGTCGG CCAAGATCGCCAGCCAGCTTGACGAAGAGGTTTGTCTGTCCGTGGCGGTG TTATAGTGTGCATAGTTATCATCATTGTTAGAAAATTGTTTGACAAAAGC GCAAAGTTTCGGTTACGTGTTGCTTGTTAAAGGCAGCTTGTTTCGACAAT CTTGGGGAGAATCCTCTCCCCTCTCCCATGTGTATTCGTACCACGTTGAA TCGGGCACTCTTGCAGACACTGCTTCGCCACAGGCACAAAGCGGACGCTG TCGCTAGAGTTCCGATCCGTGATCGTTCCTCTGCCTGAGGTCCCCCACTC AACCTCTGCATACGTTCAATAATTGTGAGTGCCACAAGTTGTTCAGTGGC AGGAATCCGCGATTGCCTCTCCTTGTTGTTTTGGATATCTAATCAGTACC ACAGATCGTTTTGTGGCAAAAGTCGACGAATGCCTTCGCTTGGTGTTTAG TTCGGGTGTCTTACCAGTACCAAAGGTCGCTGAGTGACGCGCCGTACGGC TGCCTCCGCTTGCTGTCCTGTCTCGTGCAGGTAAGGATATTCCGAGATGA GGCGCCTCTAGGTGCCAAACTGGCCCTCGGCATCATCTCGTGGGCCGCGC TTGGAAGAAGTGGTCACGGCGCTACACAGGTCAGGTTACTCGTCGTGCAC TCTTGGTCCGCTTCCTAACTTCGATAAATCTCTCAAAAGTAGTAGGTTCA CCTCAGAGTTTCGCATTTGAACGAAAATAGTAGGTTCACCTCAGAGTTTC GCATTTGAACGACGAGGTCATCGAAAATTTCATCAAAGAGTCTGCAGACA CAAGCACCCTATCAACGCGGAGGAATCAAGCTTGACTAGCCCCAGCGGAG GTGAGACATGTACCGTATTGCACTGCCAACGGGAAGTTGCTACGAATCAG GTCGAAAGAGCAGCAGCATCACGCAGCTGCAACAGGTTTGTTTGATGAGT CGGTTCGATTTGCTTTGTTGTCCCAAAGGGCCACTCTCCGCTCAACAGCG CCACCGGCGGAAGCCCACCGATTTGCTGATTTTGTTTGAGTTCGCTCGGT GCCTCGCAGGTCTGCACCACACCGGCCCGCGTCCAGCGGCGGCGTTGATC GGCTGGTTGTATTTGATGCGCTGCCTCGCGGGCCTCTTTCCGCCTCATGA CCAGCAGCAGCGCTGATTGGCTGATTTGATCTGGATTACTGCTACACAGG CCACTCTCCGTCACACGGCATCCGGCGGGACAACCAGCCCCGCAGCAGCG GCGGGTGGCGGGGTGGCGGCGAATACGGCGAACGAGGAAGCGGCGGCGGC GGCGGCGGGGGCCGGGTCGTCGGTgGGGGGGGCGGAGGCGGGCGTCGCAG AAGGAGGAACTGGGGCGGGGGCCGAAAGTGACAAGGCCCCCGCCGATCCA GAGGAAGACTGCGATACGTCGGTGTTGATATCCCTGATAATGCGGTACCG TCCCCACGCGATCTGGTTCTTCGCGCCCTCCACTCCATGTAAGTCTTCTT TTCTGCTTTTCAAGGTGTTGGTCGGCCCGCGTTGTTGTTGTTTTTGTTGT TGACTTCACCGAGAAATGTATTTCAAAATGGAACAGAAAGCGGATGAGCT TGTGCACAACAACTAGCAACGGTGGTCGCCAAGCAACGCTGACCACGAAA ACGCGCCGCGTGAAAATATTTTGGTGGACGTTTTCCACGCCAACAGACTA AGCGGACTATCGTAGGGGAAGATCCCTCTTGGGTCAGCACGCACTTTTTG ACCTAGATTCCAAGCAGGTGGATTTTCGAACCAACAGAGTCAAGGTGTAA TAATCGACAACCGCAGGGCAGAAAGAGCTTAAAGTGTGGGTCCGGACAAG CTTGTACTCGTGAGGCTTTTTCTTGCCGATTCAGACACACTTTTAGTTCA ATGTACGCTATTTTTTGTGTAAAATCCCACCCCCTTCAACAACCAGTCAA TCGCCTACGGGGTACAATCCTAGATCCGGAGGGCTTCCCCTCCCCACCCA ATGTCTGTGGAAGGGGGTTTCGCGTGCCTGGCATGGCCCAGATCGAGCAG TCTCTGCGTGCGGTATGTATTTGCAACTACCGCGCCGATCGTGGCCAGGG GTCAGGGGTACATCACTCGTTGTGCCCATCGTCCGCAAGGCTATGAAACC GAGGCGCCCGAACGAAGCGTCCCGAAGGGGACATGTGACGTCTGGGCGTG GGCCTTCGCCTCAAGAACAGCCGCGCGTGGCAGCCAGGATCAGCGCTTGG GAAAACACTCTGATCAAAAGCTTTCCTTTGCACAATGCCAGCAACTCTTT GCCGCATCTTCACTTGCGGATGTGCGTTTCGGGCACAGCGTTGCCGAACG TGAGTCGAAGTTCGCGCGGACTACAATCGAGTAAGGTTTTACTGCGTGCT TGAAGGGGGCTTTATTCGTTCCGTCGCTCGGCGCCTCCGCTCTCCTATCC CGTTCCCCTTTGCGCGCCTCGCCCAGCCCAACAGGCGTACACTGTGTGCC AGGAGATGGGAGTGGAGATCATCGCGCAGGTGCGATCGGCTCGTATCATG ATGTTGCGTAGATAAGGGCTAGGAACGAGACGAACGGGGTTTGAAAAAGT AGCGATCGCATCATGTTGCATGGATCAGGGCCAAGAACTAGAACAGGGGT CAAGGAAAGCGTTCGCGTCATGTGTTACCGTGCCAGGGCCGGTAATCAGA TCAGGGGGCGAAAGCGATTCCGATCCCATTGTGATACGTTAGAGGGCCAG GAATTAGAACAGGGGGTCGAAATGATATCGAGCGGATTGTGTTGCGTAGA TCAGGGCGAGGAACCAGAATAGGGGTCGGAAATAATGAGGATCGCATCAT GTCCCGTTTGCGGGCCAGGAATCAGAAAAGGTGTCGAAAATGACGTCGAG CACATAGTGTTGCGTGGTTCAGGGCCAATATTCAGAACAGGGGTCGAAAA TAGTATGGCATAGACCAGGGCCAGGAATCAGAAAAGGGGTCGAGAAGGAG AATGATCGCATTGTGTTCGGTAGGTCAGTAACAGGGGCTGAAAATGGCTT GTTCCTATTTCCGTGACGGTATGGCCCGTGTTTGCAAATTTCACGCTGCG GATGTTACACCGCTTTCGTGTCCAGAGGCACCGTGAATCGGAACAACATT CGGCTCCCGCCGTTCTGCCATAGTGCATCAAGTCTCGTCCTCGCCATCGC CCTTGCTCTGGAAGTGTTTGATGTTTTGTATTTCTTCATCTTTTCCCGGC TGTCTCGCTCGCCCGCTCTTGCTGAAATAGAAAGTCACCCCCACAGGGTC ACCCTGTTGAGCACAGTGGGGAAAGTGTTCTTCAAGATCCTCAACAACAG AATAGTACGAGTACTGGAGATGGAAAAGAGAATTAGTGAGGGTCAAGCAG GTTTCAGGGAGGCTAGGGGGTGTGGAGATCACCTATACACGGTAGGGAGA ATCATACAAGGTCGGAAGAGGGTGGGAAAGCCGACCTATTGTTTTTTCCT AGACGTTCAGAAAGCGTATGATACAGTATGGAGAAATGGGCTCTGGAAAA AGTTGGCTAAGTATGGGATAAACGGGAAGATGTGGAGAATGATTAAGAAG ATGACAGAGAGCACGAAAAGCGCCGTGATGTTAGATGGAGAACTCTCGAG GTTCTTCGACATTGAGCAGGGGTCCCACAGGGGCACAACAATGTCCCCAA CGTTGTTCCAGGTATTCATCAACGACTTACTGAAAGAGGTAGAGGCGGTA GGGAAGGGAGTAGAAGTAGGGGAAACCTCGGTATCGGGACTGCTATTTGC TGACGACTTTGTTGGGATGTCGGACACGCCTGAGGGGCTCCAACTACACA GATTAACGCAGCGAAGACCTACGCTGATAAGTGGAGATTCTCGGCCAACG TCCCAAAGTGTGCCGTAATGGTATGCAATGAAGATGGTGACGAGGAAGTA GGTACCAAGTGGACGTGGGGGACAAGGAGCTGCCAAGAGTGGAAAAATAC ACATACCTTGGAGTAGAGGTAGCAAAGGACTGTAAATGGGATGCACACAT GCACAAAATAGCGGACAAGGGCAAAGCAAGGGCAGGGAAGTTGCACCCAA TCCTAGCAGACCGGCACCTTGATACACGCGTCAAAATGACCATTCTGAAA AGTGTTATCATCCCGCCACTAGAGTACGCGGGAGAAGTTTGGGAAGGAAC AAGAAAATAGTAGCAGAGTTGGAGGCAGCGCAGATGAAAGCAGCGAAGAT CATTCTAGGATGCTCCCAGCGCACAAGTAACGCAGCAGTAAGAGCAGAGT TGGGGATCTACTCCTTAAGAACGGGAAGAGACAGGAGGAAGTTGACATGG CAATACCGTATGGAAAACATGGGAAAGGAGAGGTTACCGAGAATAGCTTG GGAGGCGAGATGGGTAAACAAGGCCAAGGGTAGACAACCCATTGAGTGGG CTAAGGTTGTACAGGGGTGTGGAGTGGGTTAGATATTGACGAACGGGAGA CGACGGGAGCGGAAAGCTTAGAAGGGTACAAGAAGAGCATCTCAGAAGCC TTTGAAAATAGCGAAGACCAAAGCTTGCGGAAAGAGACCAAGGAAAAGGA GGTTCTAGAAGTGTACGGAAGGCTGAACGAAGGAATAGGGTTCAAGGAGT ACCTGAACGGACCATTGGATGAAGGGACAAAGATGAAGGTCAAATTTAGA ACGGGCGACATTGACCTACGGGAACGTAGAAGGAGGTTTAGGAAGGTAGA CGACGACGAAGACAAGTTCAAATGTGACTGCGGCGCCGAATGCGAAGACC GGGTACATGTAGTTGCGGAATGCCCGTTGTACGATCAGGAGAGAGAAGGG TACATCGTTGAGCTGGAAAAAGTAGACAGTCGGTAGAGAGAAGTTTGAGG CATGGAACAAAGAGGAGAAGACGGTAGCGGTACTCGGGTGTAAGATGTGG CCCAGGACGGACAGGTATAAAGTAGACAGGTTAGGGAAAACATTTTTGAG CCACCTTTGGCAAAGTAGGAAGGAACGATTGGCCATCGGTGGTCGATCCT GTGGGAACAATGCTCCGTCCTCTCGAGGACGCGTGGTCAATGGTCTAACA ACTAAGGCATGCAAAACATGAGTACGCCCCCCCACAGGGTCACCTCGGGG GCACTGTGAGGGACACCTGGGTATCTGTTAAGCTCCTCTGGTTCGTCGTT TTGCCCGCCACGGGTTGGCACCGCGGCGGGGCCAGGACCTCAGGAAATCT GTTCCTTGTACATGCTTCTCCCCCCTTCGCTCTTTTTTTTTGTCATGGTT TGTTGTGTTATGTCTGCTGGCTTATCTCCTTTCCGCAACAGGTTGGCACC GTCCGCGAGGCCAGAATCGCGGCAGAGATGGGGGCCTCAGTGGTCGTGGC GCAAGGTCGGGAAGCCGGCGGACACGGCCTCAGGTGACGCAAAAAGGAAA CCGAGTGAAATTCATTTAAGTGGGGCTTTCCTGAACATGTCGTGGCGCAA GGTCGGGAAGCCGGCGGACACGGCCTCAGGTGACGCAAAAAGGAAACCGA GTGAAATTCATTCAAGTGGGGCTTTCCTGAACATGTCGTGGCGCAAGGCC GGGAAACCGGCGGGCGAGGCATGTGTGGACGGAAAAGAAGCACATTGTGC CGTGCGAAGATCTCAACAGAAGAAAAGACGAAGCAAGAAGTGGGGATACA ACACGAAGCCAAGTCATGCACGAAGCGAAAAGAAGTCATCGATATGGGGT GTTCTCCCTTTGGTTGCTTGTTGTTGGGTGTTTTCGGTCGTGGCGCAAGG CCGGAGAGCCGACAGACACGGCCTTAGATTATGCAAAACGAATTACTTCG TACGTTTTTTTTTTCTGGCAGGATACTATCAGAGAGTAGGCGGAGCGAGA CGAGGAGCAAAACACCCAACCAGCTTCATTTATTCAACAAACATGAAAGT GGGGGTTCTCTCTCTGGGTCATTTCCGGTCGTGGTGCAATGCCGTGAAGC TGGCGGACACGGCCTCAGTGGGTGAAACAAACTTAACGTGCATTAGGTAC GGTATTGCGGATTACCCCAAAAAGCGAAACGACCAACCGTGAGAGGAGGA ACGATAACATCAAGTATAATTTTTGTAACGTCAAGTCATTCTTCGTTTCT TTCTTTTTTCGAGATGCGAAGCACGAACAAGGCTTACTTCTCGTCGGGAG TTTTCGATGATGCAGACGACTAAAGTTATCGCCCCGGTTATCCGCCCTTT TTCCCTTGTCTCGTGCTTTTACGGGGGCTGTGGCGGGTCGGTAGAGAAAT ATAGCTGCCTGCGGCCGAAATACCAGGAGAAAAGCAGTTGTGGGGGATAA ACAGCGGGACGCGAAGTGCCATGGTCTTGAAGATGTGGATTGCTCAGGTT TTGAGACCCGGGTTGATGCGCTGGAGTGGATTCCGTTTTTTGAACGCCCC GGCCAGAGAGAGAACCCCCGCCCTCCTCCCCCCCAAATATCGGGAAATTC AGCTCAATCGCCTTGAGAACGCCCCAAGGCACTTCCTTCTTCTTCTTTCT TTTGCCCCTCTACCTTTGAGAACGCCCCACGGCGACGTTTTTCTGGCCTA TTACGTGGTCGCTCCCCGGGGCGTTCGCTTGAAAATCCAACGACTTTCAT GCCGGCAACATTGTCGTTGGCTGATGTTCTCGTCATCGCTGCTGTTGTAA TCGACCTTGCTCCAGTGGCTTTGGTGATTGTGGTTTGACAGCGGTAATTG TCGCAGTGAAGCCCTTTCCATTGAGAGCTGAATAGCCGTACGGAAACACG CGACACACAAAGCATCACGCGCAGAGTCGTATCTAGTACTTGAAATATGG TGCACGCCTGTTTGGCCCGGTGATGCGCGTGAGGGTGATGTTGGGTGTGG GGTAGACTCGTTTCTGCCGGGGTTTTTCAGGCGTGGTAGGGGGTGCTATC CTCCGGCCGCGAACGGCTCACGGTGCCCCAGGTGCCCTTTTGCCCGCGCG TAATTTTGAGTTACGATATCGTGGGACCCAGAGCGAGAGCGTATGTGGGT CTCACGGGGCGCCAGAAAGCGCGAAAGAGAGGCAACGCTCGGGGGGGGGA TTTCACATCGACGTGATTTTCGATTTTGAAAGAAAACGCAAACCACATCG ACGTGATTTTCGATTTTGAAAGAAATCGCAAACATCATGGAATACATGAT CGCATGAGGCAAGACTGACGGTGCCCCGTTAAACAATAGACTCCTTGCAG TAATGGGTTAGTTTTCAACCGGCCGAGGGTATCGAAAGCAAACAGGTCGC TACCCTATACAGCTCTGCCAGGGCAATCAATATCAGCAGCGGAACGAAGG CTTCCGTGTAGGACGCTGTGTGTTTGAATACATCTTTCCCTCCAGCGAAC GCAGCGCAGGGTTTGATGACATGAGATCACATAGCTTCTTGAGGAACACA ATGTAAAAAGTGTGCTTTAGTTCATCCGCGATCCTTGTTTGTGGAAATAG GAGCATTACCGAAGAAGCGGATTTTTATTCCCCGACATGAGGCGAATCTG AAGCAAGCGGGTAGTTGTAGATGTGTGTGTGTGTGTACTCTACGTGCTTG CTGTGTGGCTGCGCATTGGACCTTCTGTGGGATAGTGGAATCTTTAGCAT TCTCTTGGTTATTCTTTTTCTGAAAATATCGCCCCGCGATTCTTGAGGAC GGGGTGATTTCTGTTCGCAAAACAAATCACCTCAGCGGCGTTCTCAAGCG ATATTTCGGTACCTATGTCGTGGAGTCCAGGGGCCCAGTCCGACGATCAT CGAACGTCACCCTACCCGCACCTGGAGCCTCAACTCGCGAAGTCCAGGAA ACTTTTGAGGGGACCCATCGACCGCCGTTTGCCCTGCCTCCACTTATCGG ACCAGGACGAGCGGGCCTTTGCGCCGCTTTCAGGGGCGAGTTGCAGGCGT AGATCGATCCCTCTTTTTTATACCCCTCGGCAATCGAACATTGTTCCACG TCGACCTTTCTCGTCCGTCGATTCAGCGTGTTATTTCCGTCTCCGGCCAC CCAACGAAAGTAGGCCGCCAAGTGAAAGCTGAACGTCATTTCCTCTCCAA GAGTCGGTCCGCCCCAGCGACAGCCGTGGATGATATTGACCGTTATCGAA GAATGTCAGACTACACCACTCCCCCTTTCTTTTTGGCCGAAGGCTTTCTG AGTGGTCGGTAAATGATGTGGAGTACCGCCAAATCCCCTTCCAAAGCGGT TTGTGCAGGTCTCAGGCCTCGCCAAAGGCGCTCTCATAGACGCTCTGACC AACCAGAAAGTGCGTGCCACGTTTTCTTTCAACGGGCGGTTCCAAATCGG TTCTCAGGCCTGAGCTCGCTAGAGGTATTCTCCCCTTGGCGGCCGCGGTG GCGGTGGAACTCGCGTCGACAGGCAAGCCTGTGCTCGCGGCGGGGGGCGT TGTGAGCGGGAGAGGTCTCCTTGCGGCGTTGGCGCTGGGTTGCGACGGCG TCGTCATGGGGACAAGGTGATTCGTTGTTGGTGTCCATTGTGGGCGGTGG TTGTGGTTGCGCGTGTTTCTTGTTTGTATTTTTTTGCCGCTGCTGCTGCT GCTGCTGCTGCTGCGTTAACTGCTGCTGCTTACTGCTATTGCTGTCGCTG TTGTTATTCCTATTCTGGTTGTTGGTGCCGTCGCCGTTGACGTGGCCATC TTCGTCTTGGACGTGGTGGTGGTCGCTAGAGTGGCTTCCATCGCGATTGT TGTCGTCAGGACCTTTGTCTATCTTTCGCCGTTGCGGCTTTGATCCAGGC GTGGAGTGTCGAACGCAACGGTTGGATTGAAGATGGGCGGCGCTTCTTCT TGAATCTGATTGTGGAGGGTCCTTGAGGGCTAAGCTCGGGTCTTTAATTC GTAATGTTCAGGTACTTCGCGACGTACGAGGCGCTAGGAACGAACGACCA TAAGGCGAAGATCGTCACAACAAGTGAGAATGAGAAGCATCGTCGCTTCA AGCCGTCGGTTAGGTTTTTAACGTCGCCGTCGTCATCGCCGCCGTCATCG ATGTTCTTGCCACTGATTATGGTGGTGGTGGTGGTGGTGGTGGTGGTGGC AGTGGTGTGGGTGGCGTGGGCGGCGGCAGTGAATGTTCTGCTCATGTTAT TGTGGCGACTACAGAGGCTGAAACGACCAACACGAGCGAGCAGACGTATC CACGTCTTCATTGCGATGCGTACCCAGTGGATTGCTTGTCATCGGAATAG CACCCCTCGCTTCAACTACCCATGTGCCACCATGGGCGCGACGATCATGG AAGCACTACCTCCCGCCACCGCCCACCATCCCCACACACAATCCCGGAAC CTGCCCCACGAAGCGGCGGTTGGGGGTGCGTGAAAGCTTTAATTGTGTAC ATGAACCCTGGCATGGCGGAGTCGATGCATCCGAGGTGGACTCGACTGTC GTTTTGTCGACTTTCTGCTTCCGTAGCCACGCCGACGTGTGGGTCGCAAC GGCATCAAGGAGGGGACAGGTCTACCGGGTCACGAATCAATGGGACGGAA TGAGACAGGATGGGATGGGTTAGGACGGGACGAGACGGGAGTGGGTGAGG CTAGACGGGAAGGGACGGGGCTGGATGGGACGCGACGGGACTGGATAGGA TGGGAAGGGCTAGGACGGGACGAGACGGGAGTGGGTAGGAGGAGACGGCA CTGGAAAAGAAAGGACGCGAGGGCAAGGGGTTGAGAATGGTATCCAGGCC CAGTGATGCGTCTGAGAGGGTAGCCAATATGAGCCCCATGACTCCATGCT TTGCACTCACCCCCGGCCCTTCCACAGAAGGAAACAGGCCTGTACTACCG TTGGCCATGCCATAGTATTTGGAGGCGAAGGCACAGACCCGCATGACCTT CAACCCGATCGTCCGCCCGTTCACCCAAGCCATCGCAAACTCGTCAATAC CTCCCGCGGTTCCTACCCTGCCCCAAACCCCCCTCGCTCGAAGGCGGAGA TGAAACCGTGCGTACGCGTGTGTACGACATGGCTGCCGCTATGCGGCCGA ACAACCCGGTGTCCTGGCCAGAGCCCTACGACTCCAGCGGCGTCGCGGCG AACGATTTCACGGCCGAGTGGCATACAAGAGAGGCCAGCCTCGAAGCCAA GCTTGCGATCAGGTGAGGTCAGCTAACGTCGGATCACGTCGGGTCACGTC GGAGGTCGGGTCTTGCTATGGCCACTATTAATATGTTGTGGGTGGTTGCT TGCGATGATTCTCGTAGGTGTCGGAGACTGAGGAGCGCGTGGTTCGATGT TAATTTACTTTTTCATCTCTTCGTTTGTGTTTTGTGTGCCCTGTGGTGCT GTCCATACGTGATGGTAACGAAACCCAATCCGCGCTTTGAGATCCTTGAC CCCACGAGCATGGTTGCGTCCCGTCAATAGAATCGACGCCGCTCTCGGCG GAAAAGAATGTGGTTTATGTGGCTCTCGACTTTGCGCACTGAGCTGTTCC GCGTCCCTGATGGTTGGTGCGATTACCGCGCAATCATCGCACGACAAGTG CACTATGTCCTGTCGGTCTGCGCTTAAGAGTGACCATCCTCGGAAAAGGA GGTTCCCGGTCTTGCTTCGAGTTAATGAGCTCGTGTGGCGGAGGCGAGTA CCGGAAATCTAGTCGGGGCGAATGTATTCCGACTTAGAGACCTCATTTCG ATTTCAACTTCAACATCAACATCGACAGCGGCAACAGCATCCCACCAGAA CAACAACAACAACAACAACAACAACAACAACAACAACAACAACAACAACA ACAACAACGTCTCACGATTTACCAGGGACGGCATGACGGGGCACTCAATG CCGACGGCGCAGATCGAGGACGCGGAGAGGGCGAGAGATTTATCGGTGAG GGGCGAGTCTTTGAGAAATCACGCCGGTCTGTGTTGGTACCACAGGCTAT AGTCAAACAACATGGGGGATATGGCGGTGTGCGGAGAACCTGAGAATTGG CATGGCGTGTGTGAACCTTCAGGGAGACACGCCTCATTACTTTGGAATCA CGCGAGACGGGAAGGGAATATGTGTTCCGTTTTCTTTCATTTCTCCGCCC CGTGCAGCGCGATGGGGTGTCCTTTTCGATCTTTCCGTTCAACCCAATTT GTGCCATATTGTTCCGGTGCTTTGTCGCCCCCCTCTACGAAGACTGGAGA TGGAAAAGAGAATTAGTGAGGGCCAAGCAGGTTTCAGGGAGGCTAGGGGG TGTGGAGATCACCTATACACGGTAGGGAGGATCATACAATGTCGGAAGAG GGTGGGAAAACCGACATACTGCTTTTTCCTAGACGTTCAGAAAGCGTATG ATACAGTATGGAGAAATGGGCTCTGGAAAAAGTTGGCGAAGTATGGGATA AACGGGAAGATGTGGAGAATGATTAAGAAGATGGCAGAGAGCACGAAAAG CGCCGTGATGTTAGATGGAGAActCTCGAGGTTCTTCGACATTGAGCAGG GGGTCCCACAGGGGTGCACAATGTCACCAACGTTGTTCCAGGTTTCAGCA ACGACTTACTGAAAGAGGTAGAGGCGGTAGGGAAGGGAGTAGAAGTAGGG GAAACCTCGGTATCGGGACTGCTATTTGCTGACGACTTTGTTGGGATGTC GGACACGCCTGAGGGGCTCCAACTACAGATTAACGCAGCGAAGACCTACG CTGATAAGTGGAGATTCTCGGCCAACGTTCCAAAGTGTGCCGTAACGGTA TGCAATGAAGATGGTGACGAGGAAGTAGGTACCAAGTGGACGTGGGGGGA CAAGGAGCTGCCAACAGTGGAAAAATACACATACCTTGGAGTAGAGATAG CAAAGGACTGTAAATGGGATGCACACATGCACAAAATAGCGGACAAGGGC AAAGCAAGGGCAGGGAAGTTGCACCCAATCCTAGCAGACCGGCACCTTGA TACACGCGTCAAAATGACCATTCTGAAAAGTGTTATCATCCCGCCACTAG AGTACGCGGGAGAAGTTTGGGAAGGGAACAAGAAAATAGTAGCAGAGTTG GAGGCAGCGCAGATGAAAGCAGCGAAGATCATTCTAGGATGCTCCCAGCG CACAAGTAACGCAGCAGTAAGAGCAGAGTTGGGGATTAATTCCTTAAGAA CGGGAAGAGACAGAAGGAAGTTGACATTGCAATACCGTATGGAAAACATG GGAAAGGAGAGTTTACCGAGCATAGCTTGGGAGGCGAGATGGGCAAACAA GGCCAAGGGTTTACAACCCATTGATTGGGCTTAGGTTGTACAGGGAGTGT GGAGTGGGTTAGATATTGACGAACGGGAGACGTCGGGAGCGGAAAGCTTA GAAGGGTACAAGCAGAGTATCTCAGAAGCCTTTGAAAATTGAGAAGACCA GAGTTTGCGGAAAGAGATCAAGGAAAAGGAGGTTCTAGAAGTGTACGGAA GGCTGAACGAAGGAATAGGGTTCAAGGAGTACTTGAACGGACCATTGGAT GAAGGGACAAAGATGAAGGTCAAATTTAGAACGGGCGATATTGACCTTCG GGAACGTAGAAGGAGGTTTAGGAAGGTAGACGACGACGAAGACAAGTCCA AATGTGACTGCGGCGCCGAATGCGGAGACCGGGTACATGTAGTTGCGGAA TGCCCGTTATACGATCAGGAGAGAAAAGGGTCATGGTTGAGCTGGAAAAA GTAGACAGTCGGTACAGAGAGAAGTTTGAGGCATGGAACAAAGAGAAGAC GGTAGCGGTACTCGGGCGTAAGATGTGGCCCAGGAAGGACAGGTATAAAG TAGACAGGTTAGAGAAAACATTTTTGAGCCACCTCTGGCAAAGTAGGAAG GAACGATTGGCCATCGGTGATCAATCCTGCGGGAAAAATGCTTCCTCTCG AGGACGCGTGGTCAATGGTCTAACAACTAAGGCATGCAAAACATGGGTAC GCCCCCCCCCCCCTCATGGAAAACAGATCGCGAAGGTTTTCATGGGAGAA GGCACGGGCTTAATCTATTCGGTGGACGCCGCGGAAAAGATAACTCGAGA CGTGGCCCGGGAGGCTGAGGAGCAGTTGGACCAGGTCAACAGACTCAGAA CGTGAGGCGGCCATCATCAGTAAGGCTAACCACTCGTGGGCGTGCATGGC GTTGCGTTTGCCTCTCGCGTCATCTCCGTTTTGATTCTCTTGGCTGTCTC TCTGTCTCCCTCTCTTACTCTGATTTTCTGCTTCTTTCTCGCGATGCGAT CAAAACGAGGAATCCCTTCGCCGCGCTTCGCGGCGGAGGGGGGATTCATT ATTGGGAGGGAGGTGGGGGGTTCGTACACGTTTTTTCCTTCAAGATGCTT GCCTCCGGAGAACAAAGGCCACGCGGCGAGAATGGTATCAAGAATATGAG TCGCCCTCGTTTGTGAAATGTGGAAAAAGACGCAACAGGATGAGGCGCGA CAACGAGTATGTTTTCAATTCTTCACTTTGTTGTCGCAAACAGAGACGTC GACTTCGACCCACCACGGACGCGAGTTGCGGGGACATCGTTGTCTGCCAA CAACATTGATGACATGGATCGCGATGGCGGGGGGGTGGACGCCGCCACAG GGGGGGTCAAGCGCGCCAGCACCGCGGGGGACCTGTCCAACGCTGGAAGA GCACCGCCGGGCACCCGACAGGTACAACTTCTTATTTTATGCGTGTTTTT TTCACCTCTCAGAAACGGAATTCCTTCTTTCGTTTACGTGTGTGCTCGTG TTTATTCTACGGCTGCTGCTGCAGCTAGCGGGGCTTGTTGGTTTTGTGAT CGCACAGGTGGCTTCGGAAATTTTCGATCAAGGTTTTATTACCACGGCTC TCCGCTTTGTGGTCCAGTGGGTCGTGAGAGGTTGCAAGCATCTTCGCCCA TGGCCCATGGCGGCACTCGTTCCCGATGACGGCGGTGGCGCACGTTTTCG CGTTCGTAGACGTACATGGTCGACCGTGGCTGTATATTTGTACAAGACGG CCGAATGTTTTTCGGTTGAGGTCTTTGGCGTTTCATGGATGATTGCATGG ATTTGTATCAACGCTCGTCGATGATTTTTTTGATGTTTTTCTACGGCTTA AGGAAAGGCAGGATCAGTTGTCGTCGCAAGGTGGCCGTGAAAGTGGGTAC CAACCACACAATAGTGGGCGAAGATAACGGCTACGTTTCTCAGAGAGGGG TCGGAGACGCTGTAGGGGTGAAATCTTGTTTCGCAAAACAAGTAAGTCCA AACATAAACTTTACTCCGTACAAGTGATCGCGGGGGGTCGTACCACGCAG CAGCACACACTTTCTGCTTTTTTCGCGCATCTTAGGATGTAAACATGAGA TTGTGCTCCTGTCAATCGCCGACTTCAGTCTTGATCTTTTAGTGGGTCCC TTCTCAGCACACTCGCCATGTATCAAATCCTGCGGGATTCAAGTCTGATT CCCCCCCCTCGTTCCAGGAAGGGGGTTTACTGCTGATACTCAGCTGACTT GTACCTTCGGCTGGTGCGTACCTCCAGCTGATCTGAAACTCGCCCGATCA GTCACATATTCTCGTGCCTAGACTACAATGGCCAACGGGGATACTGTGGG CGGCGTGTTGGCATGCGCAGTACGATGTGTCCATATTTTTCCTGGCCTGG AGACCTTGATCTCGGCGGCGCACGATAATGCCGAGTTCAGGTGCAGCCTC TGCCACTGCTCGCCCCGACATATCGAGCACACTGAAAGAGGACACCGGTT ATGGTTCGGGAGCGTTGCATGTCGATGTCGACGTTGGCGAGAGGGAGAAG GAGGGCACAAGAGTGCTGCATGGTTGTGAGCACACAGGTGGTTTCGACCG CCCTCTCCCCCGCTCTCTGTCTCCGTCTCGAGTCTCCTGGTATCCAACCT CTCCCTGCTCCACAGGGTTCCTCCTTCATTGGTTCTCAAGGGGCTTCGAG AACACCCCGACACCTGACAATGCTGTGGTTGCGTTTCTGGTTGTGAGCAC ACAGGTGGTTTCGACCGCCCTCTCCCCCGCTCTCTGTCTCCGTCTCGTGG CTCCTGGAATCCAACCGTCTCCCTGCTCCACAGGGTTCCTCCTTCATTGA TTCTCAAGGGCTTCGAGGACACCCCGACACCTGACAATGTTGTGGTTGCG TTTCTGGTTGTGAGCACACATGTGGTTTCGACTGCCCTCTCCCCCGCTCT CTGTCTCCGTCTCGTGTCTCCTGGTATCCAACCGCTCGCTGCTCCACAGG GTTCCCCCTTCATTGATTCTCAAGGGGCTTCGAGAACACCTCGACACCTG ACAATGCTGTGGTTGCGTTTCTCGTTCGGGCGTATTTTTTGTTCTTTTTC GCAGGTTATCTCTTCCGGTTCCTCCTACGAGAAGCTGGCGGGCTACAGCC GGGCGGTACGAGTCGGGAAGCACGTTCAGGTCGGTCAGGCGAAAGAGAAC TGAGCGGACAACAAACGAGGACCTAGGGGGTGTGGGGAGCAAGGAAGAAG TGCGCTTGAGAAGGAAGCATTTGAAAGCAAAGTTGGTGTATCTAAGCCGA GCATTTGAAACGTACGAGCCTTGTCGTCCGGTGATGATCACGCGTGAAAT GAGCAGCAGAGCTAGTCCCCTTTTGGTACCATTGCATCCAGGCGGCGAAA TCGGCGAGGACAAATTTATTGATGTTTAGCCCCCCGCTCCTTCCCCCGCC TGCGCATCACCCTCTTTTTACCTTGGTTTGGTGGAGGTCCCAGGAACTAC GATGACCGATCCAATGATGTGGCCAAGCCCCCTTCCCGTCTCCGCATCCC CCTCTACGTGTGCAATTGTATGGTAGCGGTGGTGGGAACTACGGTGGCCG ACACATAAATGTTGTGGCTTCGCCCCGTCTGCGCTTCGCCTCTCTCGTGC GTTGGTTTGTCGAATCATTCCCTTTGTGCGTGTGTATGCCGAAGGTGGCG GGGACAACGGCAACCAATCCAGAGGGGTCGGGTGTGCTGTGCGAAGGAGA CATCGTCGGACAAACGCAGTACGTCTTCCATATCATCGCCCTTGCCCTCA AAGAGGTATGCGAATGGTGTGTGAAAGCGCTCAGTACACCTTATCCGCGT CTCATGTGTCAGACATAACAGGTGAAAGATCACCATATATGTTTCGCTTT CGCTGAGGTGCGCATGGCGGGAACAGCTAAAGTCAGTTTTCCGTTAGGGA TCGTGCAGGTCATGCGCGGCACGTGACGCCTCACCTGCCGCCGCCCTTAC GCTCGAAGAGGTGGAGTTCTTCAAGAATTTGAAGCATCATGCGGCCACGA AGTGAGGCCAATCCTTCCGTTCTTCTGACCATCTGCAGCTTCTCACTTTG TATAGTAGGTCGGCAAATACGTGGCCATGAATTGAATGGCTTCTCAACAG TAAGTAGCACCGCATGCCGAATGGCTTCCTACTCCTGAAATAAGAAGAAA TACATTGGTTTCGTCACCTTTTTTGTTTCCGTTCTGCTGAAACTCAGTAA GGAAAATAGCCACAAATAATGCATCTGCTACCGCAAACGCGCACCCGCTG GTGTCGCGCTTGAATCAATCCCTTCGGACTCCTTCGGCAGGCCGGCTGCT CGCTGGACAACGTCGTGCGCACTCGCATGTACGTTACCGACATCAGCAAC GCGGAAAAGGTGATGGAGGAGCACCGCAAGGTCTTCAATGGCATTCGGCC CGCCGCAACCATCATCGGCGTGAGTGGACCGGGCCTTATGGAGATGGAAC GTGTCTAATTCAAAGCCCCGAGCCTCCCAACACAATCCTTCCCTCCCCCT AGCCCGAGAGTCTGGATACACACGAGGGTCGTGCCCCCCTTTCGCTTGTT TTCCTTAGCGGATAATCCAACTCATGGTAGTTGAGCCAAACCATTCGGTG GCTAAGCCAACCCACTGCGTAGTCAGGTCAGATCATGTGGTGGTCAAACC AGACCTGACTGTGGTGTTATCATAGACTACACGGGGGGGTGTCGCCTCGT GTCGCATGCGTACGGCGAACCACAGCCCCCTTCCCCGCCCTTGCCTCCCC TCGGGTGAGATCTTGGGTCATTCGGTAAGGACATGAAGGCAAACGTAATC AGGCTCGTGCTCCGTAGGCGTTACTGATTCGATTCACTTACACTACATTC GATGTCACAATAAAATCGGTATTATCATTCCTCCACTTCCGCAGACTAAA GAAGGCAATCGCCTGTTGAGTACAGATCTATACCTAATTCGCTCGAACAT GACGGCGGAGCAAGGACGCTTCGGTCGCCCATTCACAAGCACAATTTGCG GTTGCAGCAACGACCCCGTCCTGCAGCAGCGGAACGTTTCCGATCGAAGA TACCGAGGGGGAGGGGCGTCACGCGGTGGTGGGGCGGCTGACAATGACCG CCTTTTTCAGGGCAGTGGCTCTTATTGAAAGGGAAAACACAGCAGGTTTT GGTATGCGAGAGACCTCTCATCCGAAGTGCTTTCATCCGCCACGCAGGGG ACAACCGCCTCATTAGGGCCGTCTCGTACCGAGTCTACCGACGGTAGCTG CCACGTGGGTGCAGAAATAGGTCGAAGCGATGGTGTGTAACGGCCGCTCC CTCCCCTGCACCACTCCCTATCCTCGAGGTTCCTCGGCGTTTTGAAGCCG TTTTTTCACCCCTGGCAGGGTGTGTTGTGTCGATGTCCGCTCTCTGGTGG GGTTGATCGTGGGCCTACACCTGACGTTCATTCACTCGTTTTTCGGGATA TCGTCTGGCCTTCTCACCAAAACCAATCAGGTCAGCGCTCTCGTGCACCC GGACTTGCTCGTGGAGGTGGAGGCCGATGCCATGGATACCTGAAAACGTG ACCCCTCGGTTGCCCCCCCTTAAGAATTTACATCGCTGCGCCTTGTTTGA GTCGGAGGGAATGGGATGCCGCTTGCGTGGCTGCTGCTCCTGCCCAACCT AATTGTGGCGTGTTTTGCGTGGCGTTCGTTTTTGCGTCTTCTTGTCTTGG GTGTTGCGAACGTGAAGGCGTTTTCCACCGAGGCCGCTAGTCTACACGTT CACCCTAGTGTGTGGACGCTCCAGCCGGGATCACGTGAAAAGGTGGAAAA CAGCACTTTGTCTTGTTCCTCTCCACCTTCCACTCGCAAGGCTTGTTTCG TTTTTGGTTTCTTACGATCTGGTGTGCGGCACCGATATGTTTTGTCGTTC CGCACGTACCGCCGTTTGTCCTTGCTCTAAGATGTGTAAAAAAAAACACA TGTTGTCGTCAGGCCGCCTTACCTTGCACACCAGTGCGGCTTCGCAGTAT TATTCATGGAAAAATAGACGGAGAAATGATGAAACGAACGTCCCGAGGCC GGGCGACATGAGTTTTTGATCGCCTAGTAGAACCTTTTCCGTCTTTCAAA AGCCGCCAAGATTCGGCACATCGAGTCTCCCCGTGTTTGTCCTGCAGGAT GTAGATTGGTAAATGTGAATCCCGCAGCCTTTTCGGGGTGAAGACGGTGG TAGTGAGGTTTGCTGCTCCAGAGAGGGGTAGGTGACTGATGGTAGATGAG GCGGCGAAGAACTTTGGGAAGGCTTTCTAGTTCCTTACCTCCCCCTTGTG CCGCTCGGTGCTGCTCAGTTCTGCCTCCCGCGACTCTCCCGCGCGACCAA GCTCGAGCCGGTGTCTCTTTCGATTTTTGGGCAAAGCTGCTTCAGTGGTT GCCGGCGACAGTTTGTCGCGGCAACGCGTCGGTAATTTTGGATTTGGCCA CCATGGACCAATCGGGTACTTGGACATAGAAAAGCGTTGTTTACAAAATG TGTGCGCGGTCCCGGGTGGAAGCGCCGGTTGAAGGGGGTTCGGGAATGAG GGCCGTGTATCGTATTTGCTACGTCAAAGTTGTGCCCCCCGCGGGGGCTG CATGTGGCCTTGCAAGAAGCGAGAACGAGCTTCTAAATTTTCGGAACCTT GTGTCGTAGTTGTTGGGTGAATTGGCAGTCGCAGGGAGCTGCGGTTGGCG CGTGCGCCTTTCTTGCAGCGCGAGCGGGGTGTGACTTCTGGCCGGGAAGA GCAGGATTGAAAGTGTTGTGGGGATGAGCCGATCGCCCGCGTCCCGCAAG GTATGTATCTACGACAGGGCAGGTGGGCTGGAAGCACGTCGCCCCTAAGG GCGGGGACGAGATTTGTATGGGAAACCTGCTCATTTTGCTGGGTGTATTC TAGGCGACGTTTTTGTGCGTTTGGGGCAGAGGAGATGGGGCCAGGCTTGG CGCGGGCCACACTTTGTTGCGGGGGCGGTGTGCTGCTGCTGCTGGGTGGT TTGGTCCAAAAGCTTGGATGGGACGAAGCTGACGAGGTCTGGCTGGCTGG CTTTTGTAGTGTACATCCCGAAGCGGGTGCTTCGATGCTCGTTTTTTTTT GTCTACTTGGTGTCCGATCGTAGCAAACGATGGATCCTTTCTTTGAATAA CGCACTGGAGCGCACAAG
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Coding sequence (CDS) from alignment at P-fluviatile_contig16:1989698..2014715+

>mRNA_P-fluviatile_contig16.2798.1 ID=mRNA_P-fluviatile_contig16.2798.1|Name=mRNA_P-fluviatile_contig16.2798.1|organism=Porterinema fluviatile SAG_2381|type=CDS|length=3690bp|location=Sequence derived from alignment at P-fluviatile_contig16:1989698..2014715+ (Porterinema fluviatile SAG_2381)
ATGGGGTTTTCCACGCCCTTCACGAAAGCTTACAACCTGTCCGTGCCGAT
TTGCCTCGCTCCGATGGCCGGGGTCTCGGGTGGTCGTCTTGCCGATGGGG
TTTTCCACGCCCTTCACGAAAGCTTACAACCTGTCCGTGCCGATTTGCCT
CGCTCCGATGGCCGGGGTCTCGGGTGGTCGTCTTGCCGCCGCCGTGGCAC
GCGGGGGCGGGCTCGGCGTCATCGGCGCCGGGTCGGCCAAGATCGCCAGC
CAGCTTGACGAAGAGCCGCCGTGGCACGCGGGGGCGGGCTCGGCGTCATC
GGCGCCGGGTCGGCCAAGATCGCCAGCCAGCTTGACGAAGAGGTAAGGAT
ATTCCGAGATGAGGCGCCTCTAGGTGCCAAACTGGCCCTCGGCATCATCT
CGTGGGCCGCGCTTGGAAGAAGTGGTCACGGCGCTACACAGGTAAGGATA
TTCCGAGATGAGGCGCCTCTAGGTGCCAAACTGGCCCTCGGCATCATCTC
GTGGGCCGCGCTTGGAAGAAGTGGTCACGGCGCTACACAGGCCACTCTCC
GTCACACGGCATCCGGCGGGACAACCAGCCCCGCAGCAGCGGCGGGTGGC
GGGGTGGCGGCGAATACGGCGAACGAGGAAGCGGCGGCGGCGGCGGCGGG
GGCCGGGTCGTCGGTgGGGGGGGCGGAGGCGGGCGTCGCAGAAGGAGGAA
CTGGGGCGGGGGCCGAAAGTGACAAGGCCCCCGCCGATCCAGAGGAAGAC
TGCGATACGTCGGTGTTGATATCCCTGATAATGCGGTACCGTCCCCACGC
GATCTGGTTCTTCGCGCCCTCCACTCCATGCCACTCTCCGTCACACGGCA
TCCGGCGGGACAACCAGCCCCGCAGCAGCGGCGGGTGGCGGGGTGGCGGC
GAATACGGCGAACGAGGAAGCGGCGGCGGCGGCGGCGGGGGCCGGGTCGT
CGGTgGGGGGGGCGGAGGCGGGCGTCGCAGAAGGAGGAACTGGGGCGGGG
GCCGAAAGTGACAAGGCCCCCGCCGATCCAGAGGAAGACTGCGATACGTC
GGTGTTGATATCCCTGATAATGCGGTACCGTCCCCACGCGATCTGGTTCT
TCGCGCCCTCCACTCCATCCCAACAGGCGTACACTGTGTGCCAGGAGATG
GGAGTGGAGATCATCGCGCAGCCCAACAGGCGTACACTGTGTGCCAGGAG
ATGGGAGTGGAGATCATCGCGCAGGTTGGCACCGTCCGCGAGGCCAGAAT
CGCGGCAGAGATGGGGGCCTCAGTGGTCGTGGCGCAAGGTCGGGAAGCCG
GCGGACACGGCCTCAGGTTGGCACCGTCCGCGAGGCCAGAATCGCGGCAG
AGATGGGGGCCTCAGTGGTCGTGGCGCAAGGTCGGGAAGCCGGCGGACAC
GGCCTCAGGCCTGAGCTCGCTAGAGGTATTCTCCCCTTGGCGGCCGCGGT
GGCGGTGGAACTCGCGTCGACAGGCAAGCCTGTGCTCGCGGCGGGGGGCG
TTGTGAGCGGGAGAGGTCTCCTTGCGGCGTTGGCGCTGGGTTGCGACGGC
GTCGTCATGGGGACAAGGCCTGAGCTCGCTAGAGGTATTCTCCCCTTGGC
GGCCGCGGTGGCGGTGGAACTCGCGTCGACAGGCAAGCCTGTGCTCGCGG
CGGGGGGCGTTGTGAGCGGGAGAGGTCTCCTTGCGGCGTTGGCGCTGGGT
TGCGACGGCGTCGTCATGGGGACAAGGTACTTCGCGACGTACGAGGCGCT
AGGAACGAACGACCATAAGGCGAAGATCGTCACAACAAGTACTTCGCGAC
GTACGAGGCGCTAGGAACGAACGACCATAAGGCGAAGATCGTCACAACAA
GCGGAGATGAAACCGTGCGTACGCGTGTGTACGACATGGCTGCCGCTATG
CGGCCGAACAACCCGGTGTCCTGGCCAGAGCCCTACGACTCCAGCGGCGT
CGCGGCGAACGATTTCACGGCCGAGTGGCATACAAGAGAGGCCAGCCTCG
AAGCCAAGCTTGCGATCAGGCGGAGATGAAACCGTGCGTACGCGTGTGTA
CGACATGGCTGCCGCTATGCGGCCGAACAACCCGGTGTCCTGGCCAGAGC
CCTACGACTCCAGCGGCGTCGCGGCGAACGATTTCACGGCCGAGTGGCAT
ACAAGAGAGGCCAGCCTCGAAGCCAAGCTTGCGATCAGGGACGGCATGAC
GGGGCACTCAATGCCGACGGCGCAGATCGAGGACGCGGAGAGGGCGAGAG
ATTTATCGGGACGGCATGACGGGGCACTCAATGCCGACGGCGCAGATCGA
GGACGCGGAGAGGGCGAGAGATTTATCGATCGCGAAGGTTTTCATGGGAG
AAGGCACGGGCTTAATCTATTCGGTGGACGCCGCGGAAAAGATAACTCGA
GACGTGGCCCGGGAGGCTGAGGAGCAGTTGGACCAGGTCAACAGACTCAG
AACATCGCGAAGGTTTTCATGGGAGAAGGCACGGGCTTAATCTATTCGGT
GGACGCCGCGGAAAAGATAACTCGAGACGTGGCCCGGGAGGCTGAGGAGC
AGTTGGACCAGGTCAACAGACTCAGAACAGACGTCGACTTCGACCCACCA
CGGACGCGAGTTGCGGGGACATCGTTGTCTGCCAACAACATTGATGACAT
GGATCGCGATGGCGGGGGGGTGGACGCCGCCACAGGGGGGGTCAAGCGCG
CCAGCACCGCGGGGGACCTGTCCAACGCTGGAAGAGCACCGCCGGGCACC
CGACAGAGACGTCGACTTCGACCCACCACGGACGCGAGTTGCGGGGACAT
CGTTGTCTGCCAACAACATTGATGACATGGATCGCGATGGCGGGGGGGTG
GACGCCGCCACAGGGGGGGTCAAGCGCGCCAGCACCGCGGGGGACCTGTC
CAACGCTGGAAGAGCACCGCCGGGCACCCGACAGGTTATCTCTTCCGGTT
CCTCCTACGAGAAGCTGGCGGGCTACAGCCGGGCGGTACGAGTCGGGAAG
CACGTTCAGGTTATCTCTTCCGGTTCCTCCTACGAGAAGCTGGCGGGCTA
CAGCCGGGCGGTACGAGTCGGGAAGCACGTTCAGGTGGCGGGGACAACGG
CAACCAATCCAGAGGGGTCGGGTGTGCTGTGCGAAGGAGACATCGTCGGA
CAAACGCAGTACGTCTTCCATATCATCGCCCTTGCCCTCAAAGAGGTGGC
GGGGACAACGGCAACCAATCCAGAGGGGTCGGGTGTGCTGTGCGAAGGAG
ACATCGTCGGACAAACGCAGTACGTCTTCCATATCATCGCCCTTGCCCTC
AAAGAGGCCGGCTGCTCGCTGGACAACGTCGTGCGCACTCGCATGTACGT
TACCGACATCAGCAACGCGGAAAAGGTGATGGAGGAGCACCGCAAGGTCT
TCAATGGCATTCGGCCCGCCGCAACCATCATCGGCGCCGGCTGCTCGCTG
GACAACGTCGTGCGCACTCGCATGTACGTTACCGACATCAGCAACGCGGA
AAAGGTGATGGAGGAGCACCGCAAGGTCTTCAATGGCATTCGGCCCGCCG
CAACCATCATCGGCGTCAGCGCTCTCGTGCACCCGGACTTGCTCGTGGAG
GTGGAGGCCGATGCCATGGATACCTGAGTCAGCGCTCTCGTGCACCCGGA
CTTGCTCGTGGAGGTGGAGGCCGATGCCATGGATACCTGA
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