mRNA_P-fluviatile_contig12.1479.1 (mRNA) Porterinema fluviatile SAG_2381

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

Overview
NamemRNA_P-fluviatile_contig12.1479.1
Unique NamemRNA_P-fluviatile_contig12.1479.1
TypemRNA
OrganismPorterinema fluviatile SAG_2381 (Porterinema fluviatile SAG_2381)
Homology
BLAST of mRNA_P-fluviatile_contig12.1479.1 vs. uniprot
Match: D8LQ27_ECTSI (Uncharacterized protein n=1 Tax=Ectocarpus siliculosus TaxID=2880 RepID=D8LQ27_ECTSI)

HSP 1 Score: 379 bits (972), Expect = 2.930e-115
Identity = 247/414 (59.66%), Postives = 274/414 (66.18%), Query Frame = 3
Query: 1362 MMAAPTPGREREGERTWVMAKRVASSWEXXXXXXXXXXXXXAEA----AAPLRFVSTRLRHLRLSPDGSTLVVKSDDGGVDHELTLDELLEVHETPSEESVTLIGRDIEIRIAFKGQAKALKQFRNMLVPANSGGTASTTEAVNQEGGPAATIVTTIK-------GAGSSTPVEGMERRVPLFPLPIPSFPRATAPPCCLPSSWGTWSD---RAGSSQQMRRNLDGIDEDSTLSQDV---RGEMCVTLSQTGNMMSNVT-SVASPGSSISGWGSVIGGPGGTLAAANANATQRQLATLTDRDSAAQAAALARSGMADGFSDPSRGS-SAGGSTFADARERELVIAALNKAVDMDPAEREAKLHLVKYEQAGFVRGYEALCDQQQVRLRKRPEFASLENVGVAEGLADPEIVLRQ 2546
            MMAAPTPGRE EGERTW+MAKRVAS+WE               +    A P  FVSTRLRHLRLSPDG+TLVVKS+ GGVDHEL LDELLEVHETPSEESVTL+G DIEIRIAFKGQAKALKQFRNMLVP  + GT + +E         +T VTTIK       GA   +P E ++ R               A     PS+ G + D    AGS+ Q +  L GIDE ST +++    R     T +  G M S+VT SV SPGSS+SGWGSV+G   G LAA NA  TQRQLA +T+R  AAQ  ALARSG           S S  GSTFADARERELVIAAL  A  M   EREAKLHLVKYEQAGFVRGYEALCDQQQVRLRKRPEFA LENVGV EGLADP IVLR+
Sbjct:    1 MMAAPTPGRESEGERTWIMAKRVASNWEKEDESSRNRLSAPEASQPSPAVPKTFVSTRLRHLRLSPDGTTLVVKSEQGGVDHELALDELLEVHETPSEESVTLMGTDIEIRIAFKGQAKALKQFRNMLVPTGTTGTTTPSEVDADR----STTVTTIKDPMGSSGGAAPPSPAEELQAR--------------EAAAAGGPSTNGAYLDGRNTAGSNYQQQHGLGGIDEGSTYAREAPSSRSAAATTPAGMGKMTSSVTNSVISPGSSVSGWGSVMGPGDGNLAAENA--TQRQLADITERAGAAQKKALARSGSGGTSRSAEHASNSTAGSTFADARERELVIAALQNAETMPAVEREAKLHLVKYEQAGFVRGYEALCDQQQVRLRKRPEFADLENVGVEEGLADPNIVLRR 394          
BLAST of mRNA_P-fluviatile_contig12.1479.1 vs. uniprot
Match: A0A6H5J9V8_9PHAE (Uncharacterized protein n=1 Tax=Ectocarpus sp. CCAP 1310/34 TaxID=867726 RepID=A0A6H5J9V8_9PHAE)

HSP 1 Score: 181 bits (459), Expect = 6.630e-43
Identity = 121/350 (34.57%), Postives = 186/350 (53.14%), Query Frame = 3
Query: 2379 EAKLHLVKYEQAGFVRGYEALCDQQQVRLRKRPEFASLENVGVAE--GLADPEIVLRQPNKSDS-----VDVHYADALRAKTLLDAMMEDLSEDKTGLWVRPVPVKTKASIKRKATNDYGGDVHRVLDMARTSVICGTPEVLRQFIDELKSHPDVGRIGRMKNGFGSTAVGRGGYRDIKVNLMPANIEHFVEVQVHLREFYELNSRSHEVYEWARGVDLPDGTTPHLLFRNLSPKVQTEMTDLVKADWMGLRRILPELLQATGQYEEAEPLLRQNVVDAEKRWELAKLRFGEGHLHEMS--CAQGVAMALNNLALALKGKGDLQGAEPLLRRALQMSIDSQGSEHPEVAT 3401
            +AK++L+KY Q   V  ++A  D     L +      L ++      G+  P+++  Q    D      ++ + ADA  AK  LD ++ +++ D +   V+ V +K++ S +RKA+  Y GDV +V DMAR +VIC TPE L++    +   P+V R+   KNGF S  +   GYRD+K+N  P   +H  E+Q+HLR F+EL    H VYEWAR +++        LF+NLSP+V  EM  L   +W G   +LP++    GQY+ AE   RQ + DAE      + R  E H  E S     G   A + LA  L+ +G  + AE + R ++ +   + G +HPE+AT
Sbjct:   30 DAKVNLLKYLQIQTVLQFQAAYDDMYYELHQTGGLDCLRSIAPVRSTGVFQPKVLDLQDCGQDDQLEKQLEFYLADAELAKACLDELVMNVAHDSSKYEVQCVEIKSRESTRRKASTGYDGDVRKVADMARVTVICATPEALKEAYLAIMELPEVLRV---KNGFNSDWM-PSGYRDVKLN--PVVNDHLCEIQLHLRGFFELKGGQHAVYEWARELNVTTDMRSKDLFKNLSPEVSEEMIRLAGQNWAGTAYVLPDVQLDAGQYDLAEKSHRQELADAEH-----EAREFEDHDSEESRRAMHGENTARSRLAHVLEKQGKFEEAETIYRHSMSILKKTHGPDHPEIAT 368          
BLAST of mRNA_P-fluviatile_contig12.1479.1 vs. uniprot
Match: A0A6H5KKK7_9PHAE (Uncharacterized protein n=1 Tax=Ectocarpus sp. CCAP 1310/34 TaxID=867726 RepID=A0A6H5KKK7_9PHAE)

HSP 1 Score: 175 bits (443), Expect = 2.070e-41
Identity = 121/342 (35.38%), Postives = 180/342 (52.63%), Query Frame = 3
Query: 2373 EREAKLHLVKYEQAGFVRGYEALCDQQQVRLRKRPEFASLENVGVAEGLADPEIVLRQPNKSDSVDVHYADALRAKTLLDAMMEDLSEDKTGLWVRPVPVKTKASIKRKATNDYGGDVHRVLDMARTSVICGTPEVLRQFIDELKSHPDVGRIGRMKNGFGSTAVGRGGYRDIKVNLMPANIEHFVEVQVHLREFYELNSRSHEVYEWARGVDLPDGTTPHLLFRNLSPKVQTEMTDLVKADWMGLRRILPELLQATGQYEEAEPLLRQNVVDAEKRWELAKLRFGEGHLHEMSCAQGVAMALNNLALALKGKGDLQGAEPLLRRALQMSIDSQGSEHPEVA 3398
            +R+AK++L+KY Q   V+ Y+   D+    L +      L    +A     P   + QP K   +  + ADA  A+  LD ++ED+     G   R V  K+  S+ RKA   + G+V ++ DMAR +V+CGTPE L +    + +  +   + R+KNGF S  +   GYRD+KVN  P    H  E+Q+HLREF+EL    H VYEWAR + +   T P  LF +LS +   EM  L + +W G   +LP L    G+Y EAE   R+ +  AE++ + A+    E     ++ AQ  A    NL LA + +G    A PLL+R+L++  D  G +HP VA
Sbjct:   29 DRDAKVNLLKYLQVQRVQEYQVEYDRLYFTLSRGGNLEGLRRKNMAAARLKP---VEQPKKL-GLQEYLADAQEAQPHLDKLIEDVVATCDGCEGRFVGTKSPDSVMRKAER-FNGNVGKIADMARAAVVCGTPEDLERAYTVIMARLNPQDVLRVKNGFSSDWM-PSGYRDVKVN--PVVCGHLCEIQLHLREFFELKDGQHTVYEWARELRVTTETDPRYLFDDLSSETLEEMIRLAEVNWAGAEHVLPSLQLYMGKYVEAEEAFRKLLAGAEEQMQGAEANSEEWRNSLLNEAQASA----NLGLASQLQGQYSKAAPLLQRSLKIREDILGKDHPNVA 358          
BLAST of mRNA_P-fluviatile_contig12.1479.1 vs. uniprot
Match: A0A6H5JHK0_9PHAE (Uncharacterized protein n=1 Tax=Ectocarpus sp. CCAP 1310/34 TaxID=867726 RepID=A0A6H5JHK0_9PHAE)

HSP 1 Score: 159 bits (401), Expect = 4.090e-39
Identity = 107/280 (38.21%), Postives = 151/280 (53.93%), Query Frame = 3
Query: 2364 DPAEREAKLHLVKYEQAGFVRGYEALCDQQQVRLRKRPEFASLENVGVA--EGLADPEIVLRQPNKSD-----SVDVHYADALRAKTLLDAMMEDLSEDKTGLWVRPVPVKTKASIKRKATNDYGGDVHRVLDMARTSVICGTPEVL-RQFIDELKSHPDVGRIGRMKNGFGSTAVGRGGYRDIKVNLMPANIEHFVEVQVHLREFYELNSRSHEVYEWARGVDLPDGTTPHLLFRNLSPKVQTEMTDLVKADWMGLRRILPELLQATGQYEEAEPLLRQ 3179
            +P +R+AKL+L+K+ Q   V  YE   D+    L K      L  +  A  + L  P+++  Q    D      ++ + ADA  AK  LD ++ D+++      V    VK++AS +RKA+  YGGDV +V DMAR SVIC  PE L R ++  ++S    G + R+ NGF S  +   GYRD+KVN  P   EH  E+Q+HLREF+ L    H VYEWAR + +        LF  LS ++  EM  L + +W G  R LP L  A GQY++AE   RQ
Sbjct:   24 NPYDRDAKLNLLKFLQIRAVLQYEEAYDRLYYELNKHGGLECLREIAPARLKDLLQPKVLELQDCNEDVRFAAQLEFYLADAELAKNRLDELVADIAKHTGECEVHCAEVKSRASTQRKASKSYGGDVRKVADMARVSVICDNPEALKRAYLAIVESFQ--GDVLRVANGFNSDWM-PSGYRDVKVN--PVVDEHLCEIQLHLREFFTLKGGQHAVYEWARDLKVTTIMRAENLFEFLSREITEEMIGLAERNWHGTGRFLPRLQLAAGQYDQAEEGFRQ 298          
BLAST of mRNA_P-fluviatile_contig12.1479.1 vs. uniprot
Match: A0A6H5KHN5_9PHAE (CCHC-type domain-containing protein n=1 Tax=Ectocarpus sp. CCAP 1310/34 TaxID=867726 RepID=A0A6H5KHN5_9PHAE)

HSP 1 Score: 170 bits (431), Expect = 1.200e-38
Identity = 127/354 (35.88%), Postives = 177/354 (50.00%), Query Frame = 3
Query: 2364 DPAEREAKLHLVKYEQAGFVRGYEALCDQQQVRLRKRPEFASLENVGVA--EGLADPEIVLRQPNKSD-----SVDVHYADALRAKTLLDAMMEDLSEDKTGLWVRPVPVKTKASIKRKATNDYGGDVHRVLDMARTSVICGTPEVL-RQFIDELKSHPDVGRIGRMKNGFGSTAVGRGGYRDIKVNLMPANIEHFVEVQVHLREFYELNSRSHEVYEWARGVDLPDGTTPHLLFRNLSPKVQTEMTDLVKADWMGLRRILPELLQATGQYEEAEPLLRQNVVDAEKRWELAKLRFGEGHLHEMSCAQGVAMALNNLALALKGKGDLQGAEPLLRRALQMSIDSQGSEHPEVAT 3401
            +P +R+AKL+L+K+ Q   V  +E   D     L K      L  +  A  + L  P+++  Q    D      ++ + ADA  AK  LD ++ D+++D  G  V    VK++AS +RKA   Y GDV +V DMAR SVIC TPE L R ++  ++S    G + R+ NGF S  +   GYRD+KVN  P   EH  E+Q+HLREF+ L S  H VYEWAR + +        LF  LS  +  EM  L + +W G  R LP L    GQY++AE   RQ + +AE        R  E + +  S    +  A   L   L  KG    AE L  +   +     G EHP +AT
Sbjct: 1451 NPYDRDAKLNLLKFLQIKAVLQFERAYDHLYYELNKHGGLKCLREITPARPKDLLQPKVLELQDCHEDVRFAAQLEFYLADAKLAKNRLDELVVDIAKDTGGCQVHCAEVKSRASTQRKARKSYDGDVRKVTDMARVSVICDTPEALKRAYLAIVESFQ--GDVLRVANGFNSDWM-PSGYRDVKVN--PVVNEHICEIQLHLREFFTLKSDQHAVYEWARDLKVTTMLRAENLFDFLSRDITEEMIRLAQRNWHGTGRFLPRLQLDAGQYDQAEKGYRQKLSEAEDN-----RRGVEDNGNTESREASLRSAKAGLGCVLGLKGKYAEAEALYAQCQAIEEKVLGPEHPSLAT 1794          
BLAST of mRNA_P-fluviatile_contig12.1479.1 vs. uniprot
Match: A0A6H5JK27_9PHAE (Uncharacterized protein n=1 Tax=Ectocarpus sp. CCAP 1310/34 TaxID=867726 RepID=A0A6H5JK27_9PHAE)

HSP 1 Score: 167 bits (424), Expect = 3.690e-38
Identity = 123/345 (35.65%), Postives = 172/345 (49.86%), Query Frame = 3
Query: 2394 LVKYEQAGFVRGYEALCDQQQVRLRKRPEFASLENVGVAEGLADP--EIVLRQPNKSDSVD-------VHYADALRAKTLLDAMMEDLSEDKTGLWVRPVPVKTKASIKRKATNDYGGDVHRVLDMARTSVICGTPEVLRQFIDELKSHPDVGRIGRMKNGFGSTAVGRGGYRDIKVNLMPANIEHFVEVQVHLREFYELNSRSHEVYEWARGVDLPDGTTPHLLFRNLSPKVQTEMTDLVKADWMGLRRILPELLQATGQYEEAEPLLRQNVVDAEKRWELAKLRFGEGHLHEMSCAQGVAMALNNLALALKGKGDLQGAEPLLRRALQMSIDSQGSEHPEVAT 3401
            ++KY Q   V  YEA  D     L K      L N+   +   DP    VL   + S++ D        + ADA  AK  LD ++ + +E      V  V VK+  S +RKA+   GGDV +V DMAR +VIC TPE L+Q   ++        + R+KNGF S     GGYRD+KVN  P   EH  E+Q+ LR F+ L S  H VY WAR +++        LF+N+S  V  EM  L + +W G    LPE+  A GQYEEAE  LRQ +++AE+   L++                +  A   L   L+ +G    AE L + +L +  +  G+EHP+VAT
Sbjct:    1 MLKYLQVQTVLQYEAAYDALYYELNKEGGLECLRNIAPVD-TGDPLQPKVLNLQDYSNADDRLAKQLRFYLADAELAKKRLDELVTNAAEGLETCNVHCVVVKSLESTRRKASQFCGGDVRKVADMARVTVICDTPEALKQVFSKIMGLLQPQDVLRVKNGFDSDWT-PGGYRDVKVN--PVVNEHLCEIQLQLRNFFTLKSGQHAVYTWARDLNVVTKMQATDLFKNVSRLVMEEMIHLARQNWCGTWHWLPEIQLAAGQYEEAEKGLRQLLLEAEEA--LSRFEDSSDTKESRQALLTLQTAKGTLGFVLQQQGKFAEAESLYKNSLAILEEVLGAEHPDVAT 339          
BLAST of mRNA_P-fluviatile_contig12.1479.1 vs. uniprot
Match: D7FXH0_ECTSI (Tetratricopeptide repeat containing protein n=1 Tax=Ectocarpus siliculosus TaxID=2880 RepID=D7FXH0_ECTSI)

HSP 1 Score: 167 bits (424), Expect = 4.430e-38
Identity = 122/354 (34.46%), Postives = 180/354 (50.85%), Query Frame = 3
Query: 2364 DPAEREAKLHLVKYEQAGFVRGYEALCDQQQVRLRKRPEFASLENVGVA--EGLADPEIV-LRQPNK----SDSVDVHYADALRAKTLLDAMMEDLSEDKTGLWVRPVPVKTKASIKRKATNDYGGDVHRVLDMARTSVICGTPEVL-RQFIDELKSHPDVGRIGRMKNGFGSTAVGRGGYRDIKVNLMPANIEHFVEVQVHLREFYELNSRSHEVYEWARGVDLPDGTTPHLLFRNLSPKVQTEMTDLVKADWMGLRRILPELLQATGQYEEAEPLLRQNVVDAEKRWELAKLRFGEGHLHEMSCAQGVAMALNNLALALKGKGDLQGAEPLLRRALQMSIDSQGSEHPEVAT 3401
            +P +R+AKL+L+K+ Q   V  +E   DQ    L K      L  +  A  + L  P+++ L+  N+    +  ++ + ADA  AK  LD ++ D++E      V    VK++A  +RKA   YGGDV +V DMAR SVIC  P+ L R ++  ++S    G + R+ NGF S  +   GYRD+KVN  P   +H  E+Q+HLREF+ L S  H VYEWAR + +        LF  LS ++  EM  L + +W G  R LP L  A GQY++AE   RQ + +A+      +     G          V  A+ +L   L+ +G    AE L  R   +     G EHP +A+
Sbjct:   24 NPYDRDAKLNLLKFLQIRAVLQFEEAYDQLYYELNKHGGLECLREIAPARPKDLLQPKVLELQDCNEGVRFAAQLEFYLADAELAKNRLDELVADIAEHTGECEVHCAEVKSRAITQRKARKSYGGDVRKVADMARISVICDNPQALKRAYLAIVESFQ--GDVLRVANGFNSDWM-PSGYRDVKVN--PVVDDHLCEIQLHLREFFTLKSSQHAVYEWARDLKVTTIVRAENLFGVLSREITEEMIGLAQRNWHGTGRFLPRLQLAAGQYDQAEKGFRQKLSEADNN---ERGEEDNGSTESREAPPDVIGAMASLGSVLQEQGKYAEAEALYVRCQAIEEKVLGPEHPSLAS 369          
BLAST of mRNA_P-fluviatile_contig12.1479.1 vs. uniprot
Match: A0A6H5KZG4_9PHAE (Uncharacterized protein n=1 Tax=Ectocarpus sp. CCAP 1310/34 TaxID=867726 RepID=A0A6H5KZG4_9PHAE)

HSP 1 Score: 163 bits (413), Expect = 5.820e-38
Identity = 123/364 (33.79%), Postives = 183/364 (50.27%), Query Frame = 3
Query: 2337 AALNKAVDM--DPAEREAKLHLVKYEQAGFVRGYEALCDQQQVRLRKRPEFASLENVGV--AEGLADPEIVL------RQPNKSDSVDVHYADALRAKTLLDAMMEDLSEDKTGLWVRPVPVKTKASIKRKATNDYGGDVHRVLDMARTSVICGTPEVLRQFIDELKSHPDVGRIGRMKNGFGSTAVGRGGYRDIKVNLMPANIEHFVEVQVHLREFYELNSRSHEVYEWARGVDLPDGTTPHLLFRNLSPKVQTEMTDLVKADWMGLRRILPELLQATGQYEEAEPLLRQNVVDAEKRWELAKLRFGEGHLHEMSCAQGVAMALNNLALALKGKGDLQGAEPLLRRALQMSIDSQGSEHPEVA 3398
            A L K+ D    P  R+AK++L+KY Q   V  +EA  D     L K      L ++    ++  + P+++            ++ ++ + A A  AK  LD ++ +L++D     V+ V VK++ S +RK    YGGDV +V DMAR SVIC TPE L+    ++    DV R+    NGF +  +  GGYRD+K+N  P   EH  E+Q+HL +F  L S  H VYEWAR + +        LF  LS +V  EM  L +  W      LPELL A+GQY++AE  LRQ + +AE   +  +    +          GV  A +NL   L+ +G       L  R ++M  D+ G +HP+ A
Sbjct:   13 AELKKSCDSATPPVVRDAKVNLLKYLQIQTVLQFEAAYDNLYYELGKEGGLECLRDIAPFRSKDFSQPKVLELHGCGDEDVRLANQLEFYLAGAELAKRRLDEIITNLADDWGRYEVQHVEVKSRESTQRKVRRFYGGDVRKVADMARVSVICLTPEDLQHVYSDIMGSLDVRRV---TNGFNNDWM-PGGYRDVKMN--PVVNEHLCEIQLHLGDFSVLKSDQHAVYEWARDLKVTSKMRATDLFSTLSREVTEEMIRLARQGWFRTGYCLPELLLASGQYDQAEEGLRQQLSEAENDKQGVE---DDDSNKSRRALLGVNTARSNLGAVLREQGKYVEVGRLCLRDVEMGEDTLGPDHPDFA 367          
BLAST of mRNA_P-fluviatile_contig12.1479.1 vs. uniprot
Match: D7FH93_ECTSI (Kinesin light chain-like protein n=1 Tax=Ectocarpus siliculosus TaxID=2880 RepID=D7FH93_ECTSI)

HSP 1 Score: 159 bits (402), Expect = 5.210e-37
Identity = 110/355 (30.99%), Postives = 167/355 (47.04%), Query Frame = 3
Query: 2358 DMDPAEREAKLHLVKYEQAGFVRGYEALCDQQQVRLRKRPEFASLENVGVAEG--LADPEIVLRQPNKSDS-----VDVHYADALRAKTLLDAMMEDLSEDKTGLWVRPVPVKTKASIKRKATNDYGGDVHRVLDMARTSVICGTPEVLRQFIDELKSHPDVGRIGRMKNGFGSTAVGRGGYRDIKVNLMPANIEHFVEVQVHLREFYELNSRSHEVYEWARGVDLPDGTTPHLLFRNLSPKVQTEMTDLVKADWMGLRRILPELLQATGQYEEAEPLLRQNVVDAEKRWELAKLRFGEGHLHEMSCAQGVAMALNNLALALKGKGDLQGAEPLLRRALQMSIDSQGSEHPEVAT 3401
            +  P   +AK++++KY Q   V  ++   D     L K      L  +       L  P+++  Q    D      +  + ADA  AK  LD ++  ++ D +   V+   VK++ S +RKA+ ++ GDV +V DMAR ++IC  PE L++    +   P+   + R+KNGF S  +   GYRD+K+N  P   EH  E+Q+HLREF+ L    HEVY+WAR +++  G     L +NLSP+V  EM  L   +W G   +LP+L  A GQY+ AE   RQ                                            G  + AE L RR L ++    G++HPE+AT
Sbjct:   22 ETSPVSLDAKVNILKYLQVQTVLRFQGQYDGLYYELNKTGGLECLRGIAAVRSTELLQPKVLGLQDCSEDEQLEKQLQFYLADAELAKPNLDELVTKVAHDSSKYEVQRAEVKSRESTRRKASREHDGDVRKVADMARVTLICANPEALKEAYSSIMEMPEQ-HVLRIKNGFNSDWM-PSGYRDVKLN--PVVNEHLCEIQLHLREFFALKGGQHEVYKWARDLNVTTGMRSEDLIKNLSPEVSKEMLHLAGENWRGTAYVLPDLQLAAGQYDLAEKSHRQ--------------------------------------------GKYKEAETLFRRLLAINEKVYGADHPEIAT 328          
BLAST of mRNA_P-fluviatile_contig12.1479.1 vs. uniprot
Match: D7FTB3_ECTSI (Tetratricopeptide TPR_2 repeat protein n=1 Tax=Ectocarpus siliculosus TaxID=2880 RepID=D7FTB3_ECTSI)

HSP 1 Score: 162 bits (411), Expect = 9.830e-37
Identity = 121/351 (34.47%), Postives = 176/351 (50.14%), Query Frame = 3
Query: 2379 EAKLHLVKYEQAGFVRGYEALCDQQQVRLRKRPEFASLENVGVAEGLA--DPEIV-LRQPNKSDSVD----VHYADALRAKTLLDAMMEDLSEDKTGLWVRPVPVKTKASIKRKATNDYGGDVHRVLDMARTSVICGTPEVLRQFIDELKSHPDVGRIGRMKNGFGSTAVGRGGYRDIKVNLMPANIEHFVEVQVHLREFYELNSRSHEVYEWARGVDLPDGTTPHLLFRNLSPKVQTEMTDLVKADWMGLRRILPELLQATGQYEEAEPLLRQNVVDAEKRWELAKLRFGEGHLHEMSCAQGVAMAL-----NNLAL--ALKGKGDLQGAEPLLRRALQMSIDSQGSEHP 3389
            +AK +L+KY Q   V G+E   D     L +      L ++  A       P+I  L+  ++ D ++     +  DA  AK  LD ++  +++D T   ++ V VK++ S +RKA    GGDV ++ DMAR +VIC TPE L Q    +        + R+ NGF S  +   GYRD+KVN +    EH  E+Q+ LREF  L S  H VYEWAR +++     P  +F N+SP+V  EM  L   DW G R  L  L  A GQY +AE  L+Q +++AE          G   + E +  +   MAL     N  AL  AL  +G  + AE L  RA+++   + G  HP
Sbjct:   73 DAKTNLLKYVQVNTVLGFEEAYDDLFYELNENGGLECLRSIAPARSKDRFQPKISELQDCDEGDRLEQQLQFYLTDAGLAKPFLDVLVASVAQDSTKYEIQRVGVKSRESTRRKAIKFCGGDVRKITDMARVTVICETPEALEQAFSAILGSLQPQDVLRVANGFNSDWM-PSGYRDVKVNAVVH--EHLCEIQLQLREFVALKSDQHAVYEWARDLNVTSEMEPEDMFENISPEVVEEMMHLATEDWHGTRPCLEHLQLAAGQYAQAEKGLKQQLLEAE----------GAKRVFEDNDGKESRMALLDENANRAALCRALSEQGKYEEAEHLYTRAVEVLGVTVGQGHP 410          
The following BLAST results are available for this feature:
BLAST of mRNA_P-fluviatile_contig12.1479.1 vs. uniprot
Analysis Date: 2022-09-19 (Diamond blastx: OGS1.0 vs UniRef90)
Total hits: 25
Match NameE-valueIdentityDescription
D8LQ27_ECTSI2.930e-11559.66Uncharacterized protein n=1 Tax=Ectocarpus silicul... [more]
A0A6H5J9V8_9PHAE6.630e-4334.57Uncharacterized protein n=1 Tax=Ectocarpus sp. CCA... [more]
A0A6H5KKK7_9PHAE2.070e-4135.38Uncharacterized protein n=1 Tax=Ectocarpus sp. CCA... [more]
A0A6H5JHK0_9PHAE4.090e-3938.21Uncharacterized protein n=1 Tax=Ectocarpus sp. CCA... [more]
A0A6H5KHN5_9PHAE1.200e-3835.88CCHC-type domain-containing protein n=1 Tax=Ectoca... [more]
A0A6H5JK27_9PHAE3.690e-3835.65Uncharacterized protein n=1 Tax=Ectocarpus sp. CCA... [more]
D7FXH0_ECTSI4.430e-3834.46Tetratricopeptide repeat containing protein n=1 Ta... [more]
A0A6H5KZG4_9PHAE5.820e-3833.79Uncharacterized protein n=1 Tax=Ectocarpus sp. CCA... [more]
D7FH93_ECTSI5.210e-3730.99Kinesin light chain-like protein n=1 Tax=Ectocarpu... [more]
D7FTB3_ECTSI9.830e-3734.47Tetratricopeptide TPR_2 repeat protein n=1 Tax=Ect... [more]

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Alignments
The following features are aligned
Aligned FeatureFeature TypeAlignment Location
P-fluviatile_contig12contigP-fluviatile_contig12:2176335..2207474 +
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 score171.0
Seed ortholog evalue2.4e-39
Seed eggNOG ortholog2880.D7FXH0
KEGG koko:K10407
KEGG Pathwayko05132,map05132
EggNOG free text desc.determination of stomach left/right asymmetry
EggNOG OGsCOG0457@1,KOG1840@2759
COG Functional cat.C
Best tax levelEukaryota
Best eggNOG OGNA|NA|NA
BRITEko00000,ko00001,ko03019,ko04812
Hectar predicted targeting categoryother localisation
Ec32 ortholog descriptionhypothetical protein
Ec32 orthologEc-15_001190.1
Exons25
Model size4652
Cds size2610
Stop1
Start1
Relationships

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

Feature NameUnique NameSpeciesTypePosition
1622815517.8387423-UTR-P-fluviatile_contig12:2176334..21768301622815517.8387423-UTR-P-fluviatile_contig12:2176334..2176830Porterinema fluviatile SAG_2381UTRP-fluviatile_contig12 2176335..2176830 +
1693562113.80871-UTR-P-fluviatile_contig12:2176334..21768301693562113.80871-UTR-P-fluviatile_contig12:2176334..2176830Porterinema fluviatile SAG_2381UTRP-fluviatile_contig12 2176335..2176830 +
1622815517.8660395-UTR-P-fluviatile_contig12:2182108..21822101622815517.8660395-UTR-P-fluviatile_contig12:2182108..2182210Porterinema fluviatile SAG_2381UTRP-fluviatile_contig12 2182109..2182210 +
1693562113.8197277-UTR-P-fluviatile_contig12:2182108..21822101693562113.8197277-UTR-P-fluviatile_contig12:2182108..2182210Porterinema fluviatile SAG_2381UTRP-fluviatile_contig12 2182109..2182210 +
1622815517.8790624-UTR-P-fluviatile_contig12:2185353..21857021622815517.8790624-UTR-P-fluviatile_contig12:2185353..2185702Porterinema fluviatile SAG_2381UTRP-fluviatile_contig12 2185354..2185702 +
1693562113.8292944-UTR-P-fluviatile_contig12:2185353..21857021693562113.8292944-UTR-P-fluviatile_contig12:2185353..2185702Porterinema fluviatile SAG_2381UTRP-fluviatile_contig12 2185354..2185702 +
1622815517.8889916-UTR-P-fluviatile_contig12:2186522..21866651622815517.8889916-UTR-P-fluviatile_contig12:2186522..2186665Porterinema fluviatile SAG_2381UTRP-fluviatile_contig12 2186523..2186665 +
1693562113.8432407-UTR-P-fluviatile_contig12:2186522..21866651693562113.8432407-UTR-P-fluviatile_contig12:2186522..2186665Porterinema fluviatile SAG_2381UTRP-fluviatile_contig12 2186523..2186665 +
1622815517.898621-UTR-P-fluviatile_contig12:2187021..21871471622815517.898621-UTR-P-fluviatile_contig12:2187021..2187147Porterinema fluviatile SAG_2381UTRP-fluviatile_contig12 2187022..2187147 +
1693562113.8544323-UTR-P-fluviatile_contig12:2187021..21871471693562113.8544323-UTR-P-fluviatile_contig12:2187021..2187147Porterinema fluviatile SAG_2381UTRP-fluviatile_contig12 2187022..2187147 +
1622815517.9086742-UTR-P-fluviatile_contig12:2187474..21876191622815517.9086742-UTR-P-fluviatile_contig12:2187474..2187619Porterinema fluviatile SAG_2381UTRP-fluviatile_contig12 2187475..2187619 +
1693562113.8653164-UTR-P-fluviatile_contig12:2187474..21876191693562113.8653164-UTR-P-fluviatile_contig12:2187474..2187619Porterinema fluviatile SAG_2381UTRP-fluviatile_contig12 2187475..2187619 +
1622815518.279541-UTR-P-fluviatile_contig12:2206793..22074741622815518.279541-UTR-P-fluviatile_contig12:2206793..2207474Porterinema fluviatile SAG_2381UTRP-fluviatile_contig12 2206794..2207474 +
1693562118.4084039-UTR-P-fluviatile_contig12:2206793..22074741693562118.4084039-UTR-P-fluviatile_contig12:2206793..2207474Porterinema fluviatile SAG_2381UTRP-fluviatile_contig12 2206794..2207474 +


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

Feature NameUnique NameSpeciesTypePosition
1622815517.9248226-CDS-P-fluviatile_contig12:2187619..21877391622815517.9248226-CDS-P-fluviatile_contig12:2187619..2187739Porterinema fluviatile SAG_2381CDSP-fluviatile_contig12 2187620..2187739 +
1693562113.8751233-CDS-P-fluviatile_contig12:2187619..21877391693562113.8751233-CDS-P-fluviatile_contig12:2187619..2187739Porterinema fluviatile SAG_2381CDSP-fluviatile_contig12 2187620..2187739 +
1622815517.9467182-CDS-P-fluviatile_contig12:2187776..21877991622815517.9467182-CDS-P-fluviatile_contig12:2187776..2187799Porterinema fluviatile SAG_2381CDSP-fluviatile_contig12 2187777..2187799 +
1693562113.885106-CDS-P-fluviatile_contig12:2187776..21877991693562113.885106-CDS-P-fluviatile_contig12:2187776..2187799Porterinema fluviatile SAG_2381CDSP-fluviatile_contig12 2187777..2187799 +
1622815517.9638486-CDS-P-fluviatile_contig12:2188546..21886641622815517.9638486-CDS-P-fluviatile_contig12:2188546..2188664Porterinema fluviatile SAG_2381CDSP-fluviatile_contig12 2188547..2188664 +
1693562113.893208-CDS-P-fluviatile_contig12:2188546..21886641693562113.893208-CDS-P-fluviatile_contig12:2188546..2188664Porterinema fluviatile SAG_2381CDSP-fluviatile_contig12 2188547..2188664 +
1622815517.9771955-CDS-P-fluviatile_contig12:2189480..21898241622815517.9771955-CDS-P-fluviatile_contig12:2189480..2189824Porterinema fluviatile SAG_2381CDSP-fluviatile_contig12 2189481..2189824 +
1693562113.901469-CDS-P-fluviatile_contig12:2189480..21898241693562113.901469-CDS-P-fluviatile_contig12:2189480..2189824Porterinema fluviatile SAG_2381CDSP-fluviatile_contig12 2189481..2189824 +
1622815517.995693-CDS-P-fluviatile_contig12:2190062..21901411622815517.995693-CDS-P-fluviatile_contig12:2190062..2190141Porterinema fluviatile SAG_2381CDSP-fluviatile_contig12 2190063..2190141 +
1693562113.909424-CDS-P-fluviatile_contig12:2190062..21901411693562113.909424-CDS-P-fluviatile_contig12:2190062..2190141Porterinema fluviatile SAG_2381CDSP-fluviatile_contig12 2190063..2190141 +
1622815518.0109901-CDS-P-fluviatile_contig12:2190434..21906141622815518.0109901-CDS-P-fluviatile_contig12:2190434..2190614Porterinema fluviatile SAG_2381CDSP-fluviatile_contig12 2190435..2190614 +
1693562113.9208345-CDS-P-fluviatile_contig12:2190434..21906141693562113.9208345-CDS-P-fluviatile_contig12:2190434..2190614Porterinema fluviatile SAG_2381CDSP-fluviatile_contig12 2190435..2190614 +
1622815518.0266662-CDS-P-fluviatile_contig12:2191269..21914041622815518.0266662-CDS-P-fluviatile_contig12:2191269..2191404Porterinema fluviatile SAG_2381CDSP-fluviatile_contig12 2191270..2191404 +
1693562113.9287794-CDS-P-fluviatile_contig12:2191269..21914041693562113.9287794-CDS-P-fluviatile_contig12:2191269..2191404Porterinema fluviatile SAG_2381CDSP-fluviatile_contig12 2191270..2191404 +
1622815518.0415328-CDS-P-fluviatile_contig12:2192200..21922511622815518.0415328-CDS-P-fluviatile_contig12:2192200..2192251Porterinema fluviatile SAG_2381CDSP-fluviatile_contig12 2192201..2192251 +
1693562113.936681-CDS-P-fluviatile_contig12:2192200..21922511693562113.936681-CDS-P-fluviatile_contig12:2192200..2192251Porterinema fluviatile SAG_2381CDSP-fluviatile_contig12 2192201..2192251 +
1622815518.055565-CDS-P-fluviatile_contig12:2193003..21931341622815518.055565-CDS-P-fluviatile_contig12:2193003..2193134Porterinema fluviatile SAG_2381CDSP-fluviatile_contig12 2193004..2193134 +
1693562113.954341-CDS-P-fluviatile_contig12:2193003..21931341693562113.954341-CDS-P-fluviatile_contig12:2193003..2193134Porterinema fluviatile SAG_2381CDSP-fluviatile_contig12 2193004..2193134 +
1622815518.0712597-CDS-P-fluviatile_contig12:2197225..21974141622815518.0712597-CDS-P-fluviatile_contig12:2197225..2197414Porterinema fluviatile SAG_2381CDSP-fluviatile_contig12 2197226..2197414 +
1693562113.9676335-CDS-P-fluviatile_contig12:2197225..21974141693562113.9676335-CDS-P-fluviatile_contig12:2197225..2197414Porterinema fluviatile SAG_2381CDSP-fluviatile_contig12 2197226..2197414 +
1622815518.083828-CDS-P-fluviatile_contig12:2197773..21979811622815518.083828-CDS-P-fluviatile_contig12:2197773..2197981Porterinema fluviatile SAG_2381CDSP-fluviatile_contig12 2197774..2197981 +
1693562117.1489506-CDS-P-fluviatile_contig12:2197773..21979811693562117.1489506-CDS-P-fluviatile_contig12:2197773..2197981Porterinema fluviatile SAG_2381CDSP-fluviatile_contig12 2197774..2197981 +
1622815518.1564243-CDS-P-fluviatile_contig12:2198917..21990461622815518.1564243-CDS-P-fluviatile_contig12:2198917..2199046Porterinema fluviatile SAG_2381CDSP-fluviatile_contig12 2198918..2199046 +
1693562117.9327035-CDS-P-fluviatile_contig12:2198917..21990461693562117.9327035-CDS-P-fluviatile_contig12:2198917..2199046Porterinema fluviatile SAG_2381CDSP-fluviatile_contig12 2198918..2199046 +
1622815518.1681387-CDS-P-fluviatile_contig12:2200935..22010461622815518.1681387-CDS-P-fluviatile_contig12:2200935..2201046Porterinema fluviatile SAG_2381CDSP-fluviatile_contig12 2200936..2201046 +
1693562117.9440627-CDS-P-fluviatile_contig12:2200935..22010461693562117.9440627-CDS-P-fluviatile_contig12:2200935..2201046Porterinema fluviatile SAG_2381CDSP-fluviatile_contig12 2200936..2201046 +
1622815518.1836553-CDS-P-fluviatile_contig12:2201551..22017281622815518.1836553-CDS-P-fluviatile_contig12:2201551..2201728Porterinema fluviatile SAG_2381CDSP-fluviatile_contig12 2201552..2201728 +
1693562117.9548924-CDS-P-fluviatile_contig12:2201551..22017281693562117.9548924-CDS-P-fluviatile_contig12:2201551..2201728Porterinema fluviatile SAG_2381CDSP-fluviatile_contig12 2201552..2201728 +
1622815518.1983488-CDS-P-fluviatile_contig12:2202497..22026131622815518.1983488-CDS-P-fluviatile_contig12:2202497..2202613Porterinema fluviatile SAG_2381CDSP-fluviatile_contig12 2202498..2202613 +
1693562118.3458307-CDS-P-fluviatile_contig12:2202497..22026131693562118.3458307-CDS-P-fluviatile_contig12:2202497..2202613Porterinema fluviatile SAG_2381CDSP-fluviatile_contig12 2202498..2202613 +
1622815518.2137494-CDS-P-fluviatile_contig12:2203213..22033041622815518.2137494-CDS-P-fluviatile_contig12:2203213..2203304Porterinema fluviatile SAG_2381CDSP-fluviatile_contig12 2203214..2203304 +
1693562118.3595457-CDS-P-fluviatile_contig12:2203213..22033041693562118.3595457-CDS-P-fluviatile_contig12:2203213..2203304Porterinema fluviatile SAG_2381CDSP-fluviatile_contig12 2203214..2203304 +
1622815518.224582-CDS-P-fluviatile_contig12:2203725..22038351622815518.224582-CDS-P-fluviatile_contig12:2203725..2203835Porterinema fluviatile SAG_2381CDSP-fluviatile_contig12 2203726..2203835 +
1693562118.3695438-CDS-P-fluviatile_contig12:2203725..22038351693562118.3695438-CDS-P-fluviatile_contig12:2203725..2203835Porterinema fluviatile SAG_2381CDSP-fluviatile_contig12 2203726..2203835 +
1622815518.2377827-CDS-P-fluviatile_contig12:2204181..22043171622815518.2377827-CDS-P-fluviatile_contig12:2204181..2204317Porterinema fluviatile SAG_2381CDSP-fluviatile_contig12 2204182..2204317 +
1693562118.3787575-CDS-P-fluviatile_contig12:2204181..22043171693562118.3787575-CDS-P-fluviatile_contig12:2204181..2204317Porterinema fluviatile SAG_2381CDSP-fluviatile_contig12 2204182..2204317 +
1622815518.2529483-CDS-P-fluviatile_contig12:2205132..22052191622815518.2529483-CDS-P-fluviatile_contig12:2205132..2205219Porterinema fluviatile SAG_2381CDSP-fluviatile_contig12 2205133..2205219 +
1693562118.3917682-CDS-P-fluviatile_contig12:2205132..22052191693562118.3917682-CDS-P-fluviatile_contig12:2205132..2205219Porterinema fluviatile SAG_2381CDSP-fluviatile_contig12 2205133..2205219 +
1622815518.2659194-CDS-P-fluviatile_contig12:2206718..22067931622815518.2659194-CDS-P-fluviatile_contig12:2206718..2206793Porterinema fluviatile SAG_2381CDSP-fluviatile_contig12 2206719..2206793 +
1693562118.401-CDS-P-fluviatile_contig12:2206718..22067931693562118.401-CDS-P-fluviatile_contig12:2206718..2206793Porterinema fluviatile SAG_2381CDSP-fluviatile_contig12 2206719..2206793 +


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

Feature NameUnique NameSpeciesTypePosition
mRNA_P-fluviatile_contig12.1479.1prot_P-fluviatile_contig12.1479.1Porterinema fluviatile SAG_2381polypeptideP-fluviatile_contig12 2187620..2206793 +


Sequences
The following sequences are available for this feature:

protein sequence of mRNA_P-fluviatile_contig12.1479.1

>prot_P-fluviatile_contig12.1479.1 ID=prot_P-fluviatile_contig12.1479.1|Name=mRNA_P-fluviatile_contig12.1479.1|organism=Porterinema fluviatile SAG_2381|type=polypeptide|length=870bp
MMAAPTPGREREGERTWVMAKRVASSWEEEDRRSGGGGSKAAEAAAPLRF
VSTRLRHLRLSPDGSTLVVKSDDGGVDHELTLDELLEVHETPSEESVTLI
GRDIEIRIAFKGQAKALKQFRNMLVPANSGGTASTTEAVNQEGGPAATIV
TTIKGAGSSTPVEGMERRVPLFPLPIPSFPRATAPPCCLPSSWGTWSDRA
GSSQQMRRNLDGIDEDSTLSQDVRGEMCVTLSQTGNMMSNVTSVASPGSS
ISGWGSVIGGPGGTLAAANANATQRQLATLTDRDSAAQAAALARSGMADG
FSDPSRGSSAGGSTFADARERELVIAALNKAVDMDPAEREAKLHLVKYEQ
AGFVRGYEALCDQQQVRLRKRPEFASLENVGVAEGLADPEIVLRQPNKSD
SVDVHYADALRAKTLLDAMMEDLSEDKTGLWVRPVPVKTKASIKRKATND
YGGDVHRVLDMARTSVICGTPEVLRQFIDELKSHPDVGRIGRMKNGFGST
AVGRGGYRDIKVNLMPANIEHFVEVQVHLREFYELNSRSHEVYEWARGVD
LPDGTTPHLLFRNLSPKVQTEMTDLVKADWMGLRRILPELLQATGQYEEA
EPLLRQNVVDAEKRWELAKLRFGEGHLHEMSCAQGVAMALNNLALALKGK
GDLQGAEPLLRRALQMSIDSQGSEHPEVATRLNSLALLLASDNRVAEAEG
YHRQALDIAKKVYGAEHADVATYLNNLARVLKAQDKLAEAEPLQRSALAI
GERMLGTNHSDVATYYNNLSRLVRASGNLEEAEPLQRRAVEIGEQVLGPN
SPDLATWVNNLGRLLMARKKLVEAEKVQQRAVTIAQNVYGPDHPQVKRAQ
KNLAKVQYSRKRSAARSTR*
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mRNA from alignment at P-fluviatile_contig12:2176335..2207474+

Legend: UTRpolypeptideCDS
Hold the cursor over a type above to highlight its positions in the sequence below.
>mRNA_P-fluviatile_contig12.1479.1 ID=mRNA_P-fluviatile_contig12.1479.1|Name=mRNA_P-fluviatile_contig12.1479.1|organism=Porterinema fluviatile SAG_2381|type=mRNA|length=31140bp|location=Sequence derived from alignment at P-fluviatile_contig12:2176335..2207474+ (Porterinema fluviatile SAG_2381)
CCTCCTTCCGTCGTTCGTAACACACGAAATGGAACCTGTTATTGATTGAG ACCACAGACCACAGCCTAGAAACAGGGAGAGACCACGCTCTTGGACCGCA CCCCTCCCTACCGTACACACACGTGCACTCGGGCTAGTCTCCATTGTGTT CTCGTGAAAACAGAGGGATCGACTGTATTTGTCACGGGGTCGCAAGAAGG AAGCAGCAGCGTGAGATTGAGACTTTGGTTTATCCTGGTGAGCGGGCGCG ACCTTGTACCCGGCCGGAAAAATGTCCGGCCTCAAGATGTTCGAGTGCCT CGGTGATTGCGCGGACTTCGATCTCGTGAATGGCTGCGTAGCCGGGGATC AAAAGGGGGCCAACCGCGCGCCTCGAGGGCAGGCGGCGGCGCAACAGGGG CAGGGGCAGGGGCTGCAACAAGAGCAACAGGAGCAGCTGGGGCAGGAGGA GAGCGAAAGGGAGGACTCAGAAGGCTCACAACGGTCCTACTCTGATGTGA GAGGGGGAGCGGGAGGGATGAAATTTTGAGCAGCAGGGGAAGGGAGGAGG GAGGGCCCCTGTGACGAGAGCGCCTTTGTCATGTTTGTCCAAACCTGAAG AGAGGGGGCGGCTCCTTTCAATCTCACGTATGCTTTCCCTCCATTCTCGT GGGTCGCGAAAGTTTGTCCGCGGCGGCGACAGCGAGATAGATGTCGCGAT GACTTGTATGGCTAAATAAAAAGCGTGGGGAAGAGGGTCGAACGGGTTTG GGGGTAAGCATCGGCTGAAGGCCATATGCGCACACGGACACACGGACATC TTCTCATGCCGGAGTTACCTTCTTTCAGATGGGGACCCGGGTCAAGTTTT TCCCCAGTGTCAAGCTCTCTCCTCGTCCGGCGTTGTAGCAATACTGTGGT CATCTTTGTCTCCCTCCAGAACGCACTCCTTTTCCCTTGCGGTACCCTGT TGCGGCAAGGACTTCCACACATACACGGATATGCCCACTCTGTCTCCACT CTTTTTCTTTCTCGTGCATACCTGTGACACATCTCCGAGCAGGGGCGTCG TGTCATATTTTCCCCTCACTCGCTCTCCCAACCCGCTACATACATTAGGT GTCCAGGTGGGACATTAGTCAGCACGCCGGTGTCAGCGCAGAGAGAGTAC GCACCCGCGTGGACGGCGACCCGTGCCTATCTGGAATTTAGGGCAATTTT GACACGTACTGAGCTCAGAACCAGCCCTTGACTCCTTGAGAAGAGGTGGA GCCCTTATGCAGAGGTCGGTGAAGCACCTGCCTAATCGACTTTGACTTTG GGCTAGATTTGGCAAGATCGGTCACCGAAATAACGGTGTCTGGACCAATC CTGGACCTCTATCTGCGCGGCCCACCGTTTTTGTGTCAAATACGACCCTA TCTTCAAACCTTGCCAGGACGCCAAAACTCAACGGTCGACTCTTACAGAT TCGGCAGGCGCTTCATCGACCCTCACGTAGATGAGAGCTCCAATTGTTCC CAAGAAGGCTACGGCTGGTTCGGAGCGCGTTCAATGTCAAAGTCGCCCTA AGCGCCGAGATGCGCAAGATCGGATCGAACCAAGACTGGTTTCACCACAA GAACCGGTGTACAAGGCGCACATTATTGCACGCATAAATGCCTGCTCTTC AAAGACATACAATTGTGCACGCCACCGTCTTTCCCTCTCACCTCCTGCTG GCCCGAAAATAGCCGCTGTCCATATGATTTTATCCAGCCAATACGGCTTC GGCCTCCCACACCACCCATCGAGCCATTAGCCCCGACGCCCCAAGTAGGT TACGGTCGCACACACTTACCTTTTGCGGGGCCACTTTGTGCCTGTCGGCG CTGTCTCGTGCATTGCTGCCTCCTGCAATACGTTCCCACGTGCGACACTT CATTCCACCACTGGTAGCGCCGAGTGCCGTCCCCTATCAAATCAGCTGCG CATCGGAGCTTTATGCTTTTGCAAATTTTGGCTGCGCGTGTGGCCTGTGA TCGAGAGAGGGCGCTCTGCCTTTCTCACACGAGAGAAGGCACGAGGGGAC TCGGCCGAAATACAAATCTCGTGTTCTTTCACTCGCCCATCTTTTTTTTT TGTCATGACATCGGACGCAAGCATTCGGATTTAAATCTCGTCCACAAGAT AATAGAATTATCGTTTGTTCGTTTGCTCTGTGATTTCATCGGGGGGGGAG TGTTATCATCAGTCAACGCCATTCCGAGAAAGGTACGGGGGCGATGAGGG AAGAAATACTTCTCGGGAAACAGCCGCGAAAACAAAGCAAGACAAGAGAT ACGTATGGATATTTCTCCCGCTCCCCGCTCCCCGCTCCCCGCCTTTTGTT TCCTGTAAACCCTGATAGAGCAGTGCTCTCCCTCGAGTCACCATGAAAAC ATCTGCGGCGTTGTGGTTTTATCGTCGTTGGTGTTGGTGTTGGTGTCCCT GTGATGTTGTCGTTGTTAGTGATGTATCCGTGGTAGCCGTCACTGTCGTC GCGAAGACTGAACCCCTAACGGATTCGGGTAGCACCCGCGCCGGCTTGTA TTGATCCGAGCCAGGAGGCCGGTGTCTTCGCCGTGTGTCAACGCCCTCAC TGTTTCATGTGTACTTGTACGTTGTCTGCGTTCTTTCGTTGTTGGGGTGG TGTTGGTGCTTGTTGCTGTTGTTCTTAGCAGCGTTGGTATTTCTGTCGTT GGTCGTTGGAGGTGGTAATGGCGTTTGTGCTTGATGCAGCTGCCCGTGCT GGTGTATGGTGTTGACGTCGTTGTTGTCATTGTTGTCGCTGTTGTTGTTG TTCGATCTCCAAGTGTGATCGATCTTGTTGATTGTGGTGTCGCTGCCGCT GCTGCAGCAACAACGACTGCAACAACATAAGCAGACAGCGCCATAACGTG GTGATGCTTGCTGTTGGCGTTGGCGTTGCTGTTGCTGCTGCCTCGAGCCA CTGCCGTTGTCGCCCCCGGATACACGCATACTTACAAAGGCCCGTAGGGG GTCCCGCAGCGTGGTCAGTGAGGGCGCGGTCCCATCCGCGTCGATGAAGC CTAGGGGCGCGACGAGACGAGCAGACAGGCAGAAATGCAGACAGATAAAT AGACAGGCAGCGGTGTACATACAGGCAGCCAGGCAGTCCGACCGACCGGC TGACCGGCAGACGGACAGCGACAGGCAGCCAGCTAGACAGGCACACCAAC AAATAGAGGGACAGGCAGCCAGGCCGGCAGACAGCCGGACCAAAGAGGGA GGGAAGGCAGACAGGCAGGCAGAGACAGGAGACGGGTAGACGAAGAGGCA GACAGGCAGACTGACAGATTCATCACAGACACACAGACAGCTACATAAAC GGACACACACCAGGCCGATAGCTAGCCACACAGGAAGCGAACTCGCGTGG TCCACCCGCGAGAGGTCTTCAAGGGCCCGCCGGCTCCGGCTCCGGGAACA TTGCAGTCACTTCATATGTTTTTAGGACTATGGTGGGTACTCCGGTGCGG TGGCGTGTAGTGTCAAGCAGAAATCATGCCGCCATGTCGGCGATGCCGCC AAAGTCGATCACTGACTGTATCGCGGTATTCAGCGGTTACACACGATTTG CCGCCACATCGGCAATTCCACTTTTCAGGCACCGCTTTAGCTGTGTGCCC ACTGTAGCCCGTAATTTTTCTGTTTCCAGTCGAGCCTGGTGATTTTGGGA CCAGTCCGTCATGCAATCGAACGGTCGAAAAGTGTTATGCTATTTCTCAA GCCGTGAGTCAGAATCAGCGAAGTCGAAACAACACCCGTTGTGGGGATGA CGTCGTCTCTTGTATTTTGCAGACAAGCGGGGGGGGGGGCGTTCTCATGT TTTGCATGCCTTATAATAGTTGTTAGACCATTGACCACGCGTCCTCGAGA GGACGGAGCATTGTTCCCGCAGGATCGACCACCGATGGCCAATCGTTTCT TCCTACTTTGCCAAAGGTGGCTCAAAAATGTTTTCCCTAACCTGTCTACT TTATACCTGTCCTTCCTGGGCCACATCTTACACCCGAGTACCGCTACCGT CTTCTCCTCTTTGTTCCATGCCTCAAACTTCTCTCTATCCCGACTGTCTG CTTTTTCCAGCTCAACCATGTACCCTTCTCTCTCCTGATCGTATAACGGG GGTTCCGCAACCACATGTACCCGGTCTTCGCATTCGGCACCGCAGTCACA TTTGAACTTGTCTTCGTCGTCGTCTACCTTCCTAAACCTCCTACGTTCCC GAAGGTCAATGTCGCCCGTTCGAAATTTGACCTTCATCTTTGTCCCTTCA TCCAATGGTCCGTTCAGGTACTCCTTGAACCCTATTCCTTCGTTCAGCCT TCCGTACACTTCTAGAACCTCCTTTTCCTTGGTCTCTTTCCGCAAGCTCT GGTCTTCTCAATTTTCAAAGGCTTCTGAGATACTCTTCTTGTACCCCTCT AAGCTGTCCGCTCCCATCGTCTCCCATTCGTCAATATCTAACCCACTCCA CACTCCCTGTACAATCTTAGCCCACTCAACGGGTTGTCTACCCTTGGCCT TGTTTACCCATCTCGCCTCCCAAGCTATTCTCGGTAAGCTCTCCTTTCCC ATGTTTTCCATACGGTATTGCCATGTCAACTTCCTCCTGTCTCTTCCCGT TCTTAAGTAGTAAGTCCCCAACTCTGCTCTTACTGCTGCGTTACTTGTGC GCTGGGAGCATCCTAGAATGATCTTCGCTGCTTTCATCTGCGCTGCCTCC AACTCTGCTACTATTTTCTTGTTCCCTTCCCAAACTTCTCCCGCGTACTC TGGTGGCGGGATGATAACACTTTTCAGAATGGTCATTTTGACGCGTGTAT CAAGGTGCCGGTCTGCTAGGATTGGGTGCAACTTCCCTGCCCTTTCTTTG CCCTTGTCCGCTATTTTGTGCATGTGTGCATCCCATTTGCAGTCTTTTGC TATCTCTACTCCAAGGTATGTGTATTTTTCCACTCTTGGCAGCTCCATGT CCCCCCATGTCCACTTGGTACCTACTTCCTCGTCACCAACTTCATTGCAT ACCATTACGGCACACTCTGGGACGTTGGCCGAGAATCTCCACTTATCAGC GTAGGTCTTCGCTGCGTTAATCTGTAGTTGGAGCCCCTCAGGCGTGTCCG ACAAGGGGGTTGGGGATAAGAACACCGCAGTATTTTGTGAAGAGGTGTTC AGCATCAGGCTACCCGCTGCGCGCCGGGAGCCAGTGAGCTCTGCTCCCGT TCACCCCTCTCCAACAACAACCCCACGCCAGTCTCCCCCACCCCCATTTT CCCCTGCATCTGAAGTCTACTTCTCACGCGAATGATGCCGCGTATGATGA ACCTTCGTTTCCCACCCCACTCTTACGAGGAGCATGTGTGTTTTCGCTTT CCTTGTCTACGAAGATTGTTGCTAATCATTCTTCTTTTCGTCTTGCGAAG CGTGAGGGGCGGAACTTCTCGCCGGGCCTCGAGCGAGCTCAAACTGGGGT GCTTCTGTTTCTTTGTTTTTTCCGAAGACAGATATGTCGCTATCGGCCCC CGCGTCTTGTCTATGTCTATTTTGCTGTCTTGTTACGCCATTTGACAGCG GCTCTCCCGTGCGTCAAATGAGCACCAAGAGTCGACACGTCAGTGTGCGC GGTGTTTTGACCTGATACTCTTATTTTGCCTATACCGCTCTGCTCCTCCC CTTCTCTCTCCTTCACTCTGCCATACTCTGGTCCACACCGCTCTACAACC TCCCTCTCCCGCTTCACTTGCCAGGATGAGGACTCGTACTACTCTCAGGA CGAGGAGGACGAGGAGGGGGGGGCAGAAAGCATGCCCCCGGCAGGGGGTC GCGCGGGAGCCAACGAGGCCAATGCGGTGAGTATGTTCACGCACTTGATG ACTCGTAGCAAATGCGGGGCCCCCGCCCCGGTAAGGGAGGTCTTTTATTT CGAGGCTGGAGATATCATGCTCAATAGAACGCTACTTTTTGTTTAGAAGA AAGTGATGTTGATGTTGGGTCTTGTTGCCGGCCTTTTTTTGCGACACCAT CGTCCCTTCCTCCACAGGCCGGGCGAAAATATGTTTTTGCGTTGGTTTAT TTTGATCTTGAATTGTGCAGGCGTTGCAGCTCGTCGAGGTCCTCTTGTGA GACGTACCATCGAAATTGCGAAAATAGTAGCAACAAGGCGTGGGAAGAAA CACACAACCAACAGTCACAATGCAGTTTCGCCTGAGATTCATTTCTTCAG TTGCTGAGCGAGCAGCGTGTATTAGCGCTGCTGCATTGCTCCCTCCGCCG CTTTTGGACCGCACGCGGAGGGGCAATGCCCACTCTGTCATGCTCTCTAA CCGAGCAGCCAATGCCCGGCGGTGGCCTTGGAGCGGTCGCTGCTGAGTAT GTGTGTGTGTCTCTCAGCACAAACTTTCCCTCCGGAACAACGGCATACTT ACTGCTTCCGCGAGACGGCCCTTCGCCTCTGCTAGCGATTCTCCCCTGTT ACCGTCCCGCCATGGCTAGCTGTCCCCGGCTGCCTAAACTTCAGCTGCTG CAACTACGGCGCTTCACATGCTGTTCCGCCGCCTACGCCCTCACCCCTCG TGTCAAAATGGAGCGGCGATGAGGACAAAAAAGAAAGAGAAAAATACGGG GCGTGTCGTGTGCGTGCGTACGTGGAAGGGTACTGTTCCCAAGGTTGATA TGGGCGCGCCCAAATCTTGACCACAGCAGTGACCAGAGCCTTGGAATCGC CCTGTTGAGGCGGTAGCGCGAAGCGCCAAAACCAGCTTCAGTATTGACGG AAAAAACTTGGCACGACTGGCGCAGCCATGTTTCTGCATTTTTCAACTTC ACCTCCCTCACGTGTTGTTGAGCCCTCAGGATCCAGGATGTCAAAATAGG AGGGGGCTCGTACGTTCCGAACGGATGTGGCAGGGGGGGGGGGGCGTACT CATGTTTTGCATGCCTTAGTTGTTAGACCATTGACCACGCGTCCTCGAGA GGACGGAGCATTGTTcCCGCAGGATCGACCACCGATGGCCAATCGTTCCT TCCTACTTTGCCAAAGGTGGCTCAAAAATGTTTTCCCTAACCTGTCTACT TTATACCTGTCCGTCCTGGGCCACATCTTACACCCGAGTACCGCTACCGT CTTCTCCTCTTTGTTCCATGCCTCAAACTTCTCTCTATACCGACTGTCTG CTTTTTCCAGCTCAACCATGTACCCTTCTCTCTCCTGATCGTACAACGGG CATTCCGCAACTACATGTACCCGGTCTTCGCATTCGGCGCCGCAGTCACA TTTGAACTTGTCTTCGTCGTCGTCTACCTTCCTAAACCTCCTTCTACGTT CCCGTAGGTCAATGTCGCCCGTTCTAAATTTGACCTTCATCTTTGTCCCT TCATCCAATGGTCCGTCCAGGTACTCCTTGAACCCTATTCCTTCGTCCAG CCTTCCGTACACTTCTAGAACCTCCTTTTCCTTGGTCTCTTTCCGCAAGC TCTGGTCTTCTCTATTTTCAAAGGCTTCTGAGATGCTCTTCTTGTACCCT TCTAAGCTTTCCGCTCCCGTCGTCTCCCGTTCGTCAATATCTAACCCACT CCACACTCCCTGTACAACCTTAGCCCACTCAACGGGTTGTCTACCCTTGG CCTTGTTTACCCATCTCGCCTCCCAAGCTATTCTCGGTAACCTCTCCTTT CCCATGTTTTCCATACGGTATTGCCATGTCAACTTCCTCCTGTCTCTTCC CGTTCTTAAGGAGTAGATCCCCAACTCTGCTCTTACTGCTGCGTTACTTG TGCGCTGGGAGCATCCTAGAATGATCTTCGCTGCTTTCATCTGCGCTGCC TCCAACTCTGCTACTATTTTCTTGTTCCTTCCCAAACTTCTCCCGCGTAC TCTAGTGGCGGGATGATAACACTTTTCAGAATGGTCATTTTGACGCGTGT ATCAAGGTGCCGGTCTGCTAGGATTGGGTGCAACTTCCCTGCCCTTGCTT TGCCCTTGTCCGCTATTTTGTGCATGTGTGCATCCCATTTACAGTCTTTT GCTATCTCTACTCCAAGGTATGTGTATTTTTCCACTCTTGGCAGCTCCTT GTCCCCCACGTCCACTTGGTACCTACTTCCTCGTCACCAACTTCATTGCA TACCATTACGGCACACTTTGGGACGTTGGCCGAGAATCTCCACTTATCAG CATAGGCCTTCGCTGCGTTAATCTGTAGTTGGAGCCCCTCAGGCGTGTCC GACATCCCAACAAAGTCGTCAGCAAATAGCAGTCCCGATACCGAGGTTCC CCCTTCTACTCCCTTCTCTACCGCCTCTACCTCTTTCAGTAAGTCGTTGA TGAATACCTGGAACAACGTTGGGGACATTGTGCACCCCTGTGGGACCCCC TGCTCAATGTCGAAGAACCTCGAGAGTTCTCCATCTAACATCACGGCGCT TTTCGTACTCTCTGTCATCTTCTTAATCATTCTCCACATCTTCCCGTTTA TTCCATACTTCGCCAACTTTTTCCAGAGCCCATTTCTCCATACTGTATCA TACGCTTTCTGAACGTCTAGGAAAAAACAATATGTCGGCTTTCCCACCCT CTTCCGACCTTGTATGATTCTCCCTACCGTGTATAGGTGATCTCCACACC CCCTAGCCTCCCTGAAACCTGCTTGACCCTCACTAATTCTCTTTTCCATC TCCAGTACTCGTACTATTCTGTTGTTGAGGATCTTGAAGAACACTTTCCC CACTGTGCTCAACAGGGTGATTCCCCTATAGTTTCCTGGGTCAGTCTTAT CTCCTTTCTTAAATAGGTTCACCACCACCCCTTCCCTCCATCTACTCGGT GCGTATTCGTTTTCCCATACCCAGTTGAACAACAGCACCATCATCTGAAT CATCCCCTCCCCCCCGAACTTCATGATTTCGTATGTGGCAGGGGGGGGGG ATATAAGCAGCACCCGTCCGATCTTGTTGCTCCTTTCTCGCCTCCGTTGT ACTGCTCTTCCCCGCGTAGTCTTCAAGTTCACCGTCCACCCACCACCACG CGCCCTCTGGAATGTCGACGCAGCAGCCCAACGACCCGTCGACCGTCCTA ACCTTGCCAAACCCGGGACCCCGTGGCATGACCCCGTCCTTCGAGAAGGT GGGCGCTCCCCCCCCGGCGTACAACCCCGACAGCTTCGGCAGCTTGGCGA ACGCCGGGGGTGGGGGCGGCGGCGGGAACAGCAGTCACATGCTGAGCAAT GGCAGCACGGCCGTTGAGGGCGGGGCCATACACGGCTTGGTGAAGAGCTT AGGCAGCGACGAAACCGTCTCCGCCGCCGGCGCTGCCGGTGCTTCCGGCA GAGGGGATTCTGCATCGGGTGAGATGGCGTTCGTTTTACGCGATACGAGG GAGGTACCCCATACCCTGTCTGTCCTCTCTTCCTTGCGGGAAATTGAGGC GCTGATCGGATCACTCACCACTTGTGTCTTGGAACAGGTTTTGGTTGGTC TCCAGGGAAAGAGAGGTGGAGTGGCAGGGAGAGAAGAGGGGCGGGAGGGG GAAGAGGGGCAGAGGCTCCGAGGATGGGAGGTTTGAGTTTGGACTTTAAA GTTGCTCACCGCCACAGCTCTGCTTCATATCTGCTGTCGAAGGCTGCTTC GTGGGTATTTACCAATAGTGCTCAGATTTCCGGCACGCACTGCGTCTACC CAAACGTGTGCTCGTGGTCGTCCCGTTGGACAGCCGACGTGTCACACCCC ATGCGTCCGTTAACAATCGATTATTTTCCCTCCAGCCTCCTCCGACTGAA ATATCAGTATCCCTCAACAATCCCCCCCCGACCACTTTCAGACACCATCA CGTCGCTGGATCCTAAGGACTGGCAGGGGCCCGCCCCCACTCCGACCCCA AACCCTTCGCTTTCCGCAACTCTCCACATGTTGATCGCATCAGCCCCATC CTCTTTTCCTCCATCCTGCGAACGTTGACGCTCTTAATCAAAATGCCGTG CACGACCCTCCTCCCTCCTCCCCCACATCTCCGCCCCTTCTACCTTCGCC GTAAAAGCTCAACAAGTTGATCCCTCAAACTTAAACTCTCCCCCCTCCTC ACCCCCCCTCACCCCTCCTTCCGTCCTCCGTCGCCCCGACCTTATCCCTC ACCTCCTTCCTCCCTCCCCCCTCCTCTCTCAACACCAGGGGCCGAGGGAG CCGGGTCCATGTACTCCTCCAACGCGTCCTTGTCGGCGGCGGAGGCGGCC GCGGCCGGGCGGCGGGCGTCGTCCAGCGCGGCGGACGCGGTTGCGGCGGC AGCGGCGGCGGCCGACGCGCAGACGCAGGAGGTGCGGTTTCGTGTTTATC CTGCCGTGAGTGTGGGTGCTCCCCCGTTGTGCGGAGTTCGCGCATTTTTT TGTTGTAGTGTCTTCTCCTCCGGCATCGGCCGCGCCAATCAATCACGCCG CCGTCCGCTAAGGAAGAAGGCGTCCACGACCTCGGCTGGCCAATGGACTG GAACGACACTGCCGCCGTGGTCGCGGACAAATCCCACAACCCAAGGGTTG GGCGGATGTTATGCGCGCGTCTCATATTTTTGTCAATGCTCTCCTCGGTA TCCTTCTTCGCACCTGTCTCACTCCTTGCTTTTTGTGTTTTGCCTTGCAT CCATCTTGTTTCTCGTTTGCTCGCCAACACTTTTTAGGAGGCTGAGGCGG CGGCCGACAGAGCCGCTAAGGCCGCCGCCCGGGCGGGCCGCCGGCGCCGC CGGCGCCGCGCGTGCCGCGGCGGCGGCGGGGCGCGCGGCGGCGGCAGCTC AGGCGGCGGAGGTGTCCTCGAGCGGACCCCCCGAAGGTGCGGGATCGTTT TGAGATGGATGATCATGGGGGTGGAGAGCTAGCGGCTATGCGTCTCGAAG ACACGGCGAAGAGGGGCAAGGGCCGATGCGGGGGGCAGGGGGCGGGGCGA AATTAGTTTGGATATCTTTACCGACGAAGCAGAGCGAAAAATTGAGCTGT GTGCCACACCGGGTTTGACAAAATTCGACAAATTTGTAGAGTGATCGAGC ATGCAACCACGGCCACGCTCCCCACCCTCCCACCCCCAACAAGGTCTTTT TTTTTTTTTCCTTTCTTTGCGCACAATTAAAAAGCAGAAGTGCTAGCGTG CCGATCGACGGAGACGATACGGGCGACTCTTTCTCCGGCAGTGGTGGCGA CAGCAATAACGCGGCGGGGGGTGCCGTCGGCGCCGGCGGCAGCGGCAGCG GCAACGCGTTCCGCAGCACCCCGGGGTCAGCCGAGATGATGGCCGCGCCG ACACCCGGCCGGGAGAGAGAGGGCGAGCGGACGTGGGTCATGGCCAAGAG GGTCGCCTCTAGCTGGGAGGAGGAGGACCGGAGGAGTGGCGGCGGGGGCA GCAAGGTGGGCGGCGGCGGCGGCGAGGGGGGGACCGGCGGAGGCGGCGGA GGCGGCGGCGCCGCTGTTGAGGCGGAGAAGCTCCCCCCCAAGACGTGAGT TTTCCGAGGTGTGAGAGGTACTGTCGATCACATCTGAAAGGGACGGTGTT TCGAGGAGAAAAGTGTAAGGGGGGGATGAGGGGATAAGATATCCCAGGAG AAATGGGACGAGGCGATCTGGGAGGGGGGTCGTGGTGAAAGGACGTGAAC ACGCCGGTGCGTACCACCTCACCTTGGGAGAGGGGAGGGAAAGGGGATTC GTTAGTAGTGGCGATGCCGAAATGCGTCGTTTGGTATACACGTACTGCAT CCCGTCGAAGGAGCCGTAGATTACGAACACTTGAATGCAGCGTTCGGCAC TGGCACTCATCCATCCTTTGGGTCCCTATATGGTGGAGAGGCACCAACGC CTTGAAGCGAAATCACGGCCAAAAAGGAGTGCAGGGATTCCGCCACAACA GATGGATGTTGCGTATACATGGCGAGGTAACACCAACACGCTTGCTTTTT TGACCGGTGTCGACGCGGCTGTAACGCCTCCAGTTGAGCGTTGAGAATAG GCGATTTCGACAGTGTTCATGTCGACTCGTCTGCTGCACCTCGAGCTGTC CGCCGACGAGTCTCTACCCTCGCCGCATGGCACTCTTGATTTGCGGTATT TTAAACACAGGACGCTCTTCTACACATTCTAGTGTACTCGGAGCATTTTT TTTATTGCGGTCTCTCCCGTGCACAAAATGCGATTCGTTACCGTCATCTT TTTCACCCCGAGCAGGTTTGTGTCGACGCGTCTGCGGCACCTGCGGCTGT CCCCCGACGGGTCTACCCTCGTCGTCAAGTCCGACGACGGGGGCGTCGAT CATGAGCTGACGCTCGACGAACTCCTCGAGGTGAGATGAGCAATAATATA TAAGAAAGGTATGCCGCGTGTGTCAGGAACCCGGTGAACCGGCAACGATA GCGGCGTCGACCACGAGCTGGAACTCGACAAACTCCTCGGGGTGGGAAAA AAACAGAAACAGGTATATGGAGTCAGGCCCGATGAAGTTGCCGGTACTGG CACTCGACGAACTCGTAAAGGAGAGAGAATAGAAGCATGAGGATGTCTGC CAGACCGGGGGTGACGTGTCGTGCAATTCGCGTAATCCAGGATGCAGTCG CCCCGCTCAAGAGACAGTCGGGTTCAGTCAACTACCCGGGTCGAAGACGA TTTTTCTTTTGTAAAGCAGGGTGACCCAAAATACCCTTAGGATGCAATAT CGTCGCTTGAACCTGCAATATCGTCTTCCGCGTTGGACGACAGGGGACGA ACGTTTTTTTCTTATCGTTCCACCTCCCACCACCCAGCTTTAAGTAAACT CCCTCGACTTTTTTTTGCGAGAGGGCGACCCTTGCCCCTCCCCTACTTCT CAATCCCCCGTTTACCCTCGTTTTCTGACGTCCTGGTTGATTAATCTTCA CAACACGTGTTCCCGACGTCCTTGGATCTTCCCTTCCCCTCCCCCCTCCC CATCCCGCTCCCCCTCTGAAGGGAAAGTCGGCCCTGGTTTGCACCGGCCA CGAAACCGCACTCGCCCCCCCCCTCCATTCGTTTTTTTCGTTGCGAACAC ACATACGCACAAGTGTAAGTATCCCTGGCCGTCGGCCCCCGTCTGAACGA GAATTGACCCTGATTACCCCCCTCCCCCCATCCCTCCTTCCCCTAGGTGC ACGAAACCCCTTCCGAGGAGAGCGTGACCCTGATTGGCAGAGACATCGAG ATCCGCATCGCCTTCAAGGGGCAGGCCAAGGCTCTGAAGCAGTTCCGCAA CATGTTGGTGCCAGCCAACAGCGGGGGCACCGCGAGCACCACCGAGGCGG TGAATCAGGAAGGGGGCCCAGCGGCGACGATCGTGACCACCATCAAGGGC GCCGGTTCCTCCACACCAGTGGAAGGTATGGAGCGACGGGTGCCTCTCTT CCCTCTCCCTATTCCTTCTTTCCCTCGTGCGACGGCACCCCCATGCTGCC TCCCTTCATCGTGGGGGACTTGGTCAGACAGGGCGGGCAGGTTAATTGTC CCCACTATCTGTTACATAACCGTCAGCCCAACTTTGTCTCGCTCTCGCTT TCTCTCTACCCCCTCCCCCCCCTTCTCACACTCTCGCCCGCTCCTTGTCC CCGTTTTGTTCTTCTCCTCCTCCTCTCCCCTTCTCTCCCTCGTCCTGTCT CCCTTACTCTCTCTCTCGCTCGCTCGCTCTGGTTGCCGATGGTACCGCAG GCGACTTTTCTAGCGGTGGAGGCAGCAGTAGCCAACAGATGCGCCGCAAT CTGGACGGCATCGACGAGGATTCGACTTTGTCGCAAGATGTGCGTGGCGA AATGTGTGTTTTTTAAAGACCGTGCATCCGGAACGTGCTCCTCATCGACG TTCAGGCTCACCCGCGTGTTTTTTTAATTATCGAAGATGAACACATTAAT GTGTACAGACTGGATGCAACAGCTGTCTGTCCGAGGTCTAGTCCCGGACA GTATCTGCATCCACGGGCGCGTCACCTACTCCAGTGCTTTCATGACTCCA CGAGTCCACTCCGCCTCGACCCCTGCAACACGAGTGAATCCCCCCCCCTT CGCCACCTGGACTGCTGCTGTTGGTCTTGTCGTTTTTTGTTACACACAAG GTAACCCTCTCGCAGACGGGGAACATGATGTCCAACGTCACCAGCGTGGC CTCCCCAGGGTCCAGCATATCCGGCTGGGGCAGCGTCATCGGTGGCCCCG GCGGGACCCTCGCCGCGGCAAACGCTAACGCCACCCAGAGGCAGCTCGCC ACCCTCACGGATAGGGACAGCGCCGCGCAGGTGGGTGTTCGGAGCGATGT CGGGGCTTGGGTTGGGATTGGGGGCGAGTTGGGGGGGGGCGACGCCCACC AGAGGGCAGCTCGCCACCCTTGCGGAGAGGAACAGCGCTGCGCAGGTGGG TGGGTGGGTGTCGGGGCTTCGATTGGATTGGGGGAGGGGGGGGGGGGCGA ACTCTTGTTGCTTGCCTTTTGTCATTGAACCACTGACCACTGGAGGCGGG GTCAGGGATCGGAAAGTTGGTTCTGGTCGCGGCGGGAAGGCGGAGGGTCA CCCCTAGTCTACTCCGTTCGCGTCGCGAGTTCCCAGCAGTGCCGGAGAGG AACTGCGCCGCACTAGTACGTGTCCGGGGGATTCGTCGGGCTTGGGTTGG GATGGAGTGCGGGAAGCGGGATTAGGCTAGGAGGGAGGGGTGGGGGGCGG CACCCTCACCGAGAGGACCAGCGCCGTGCAGGTCGATATTCATGTCGGTG TCGGATGGCGGTAGGGAGGGCTGTGTTGGCGGTTGGCGGGAGGTGAGACT GGGGTCAGGGACGGGGCTGAGATGGATGGACTTCTCCCGAACTTTTTTCG ATGCCGCTGTCGTCCCTGCCCTGGTCTCATGTTGCCCCTGATGCTGCCGT TGTTCTGGTTTGTCCTCGTCCCTGTTCCTGTTCAGGCGGCGGCCCTGGCC AGGTCCGGGATGGCCGACGGCTTCAGCGACCCGTCCAGGGGCTCCTCCGC CGGCGGCAGCACCTTTGCGGACGCGAGGGAGAGGGAGCTCGTCATTGCGG CGCTCAACAAGGCCGTAGATGTGCGTGCCGCGGGAGGGTGGGGGAGGGCT GACGTTTTTTTGTCGGTTTTTCAAAATGGAGAAGTGCTGGTGGTGGTGTC AGTGATGTTGGGAGTTATGATGGTTTATTTTTTGCGTGGTCTTTCCCACC CTGCCTAGCTTGGTTTTAAGTGCCACGGGCGACGTTTATTTTGCCGGTCG CCAAAGGAATCCTCAGCCCGATGACATTCTACCCGAAAAAAAAATCATGC TTTTGCATGTCATTTCTTGGTAGACGTTTCCACTACAGACATACTTAGTA GAAGCTCATTTCTGGCTCTCCGCGAGACGTACTGACACGGTGTTTCTCCA CAAGGCACATTTACTCTCGAGCAACCAGCGTGTGCACCAGTCGCCCAGGT GGTCTAGCTGGTATCTTCGTAGCCTTCTAGCAGGCAAGTGCACGGGTTTG AATCCCAGAGTGAGCGACTTTTTCTCAAGAAACGAGTTGTCTCTTTCACT TGCGTTGTTGCCGGTGGATAGCGCCTAGCGTGTGGACAGTGAGAAAGAGG TGGCTGAAACTCTTCTCGCAATTAAAACTTTCCGTCAGAACCGCAGGAGG TAGGGAGCGGGGGGCACAGGGAGAGGAACGTCTGTGCGACCACGGTCCAG ATGTTCGGGCAAGATGCCTCGGGTGGCGAGGCGCCCTTCGATGTCTGGAA ATAGATGTGATGACCAAAAAAGAAATACAGCAGGTTGGCTTAGTCCGACG GGGTGGTTCACACGCACACTCAACTCCCCACCTACCGTCTACGGAACCCC CTACGCTCCTTTTCAGATGGACCCCGCGGAGCGGGAGGCTAAGCTACACC TGGTGAAGTACGAGCAGGTGAAGCGAAGTGAAAATGAGGGTCGAGATTTT ACAGGAGTGTTTGTTCCTGTTTGTTTGTATGGTCTCGTCTTGGTATGCCT TGTTTACGGGAAGACAAGTACGAGCAGGACAATGACAGGATGCGAGGATC GAATGTTGTGTGATTGAGTCCAAGCACAAAAAGCTCGTGAATGGAAAGTA GGAGCGGTTTTGTCCTGCGTGTGCGCGAGATCGAACACCAACAGGTGGCC CGAGTGAAAATCGAATTTGTGACCACGGATCAGAGCTCTGGCGAGGCGCT CTTACGGGCGACGGTTTGATGAGATAAGTAGTGTACACGAGCGGAATAGT CGGAGCTTGTTTCGCGCGTGCTTGGCTTGTACTGTGGTCCCGTCCGTCTG TACTGCACTACCGTTTTCGTCATCCGCTGTGCTCTGCCTGCCCGCCCTGC GCGTGGGGTGCACGCGTTATTGTGGCCCTCGAACGTTTCCTCCATCTCCT TCATGTTTTGTCTCGTGCGTTGTCATCATCATCCTCGCGCTCGTTACGGT TCCCGTTCTCGTTCTAACCGTCGTCCTTTTACTGCTCCTTCTCATCCGCT CCCTTTCCCTCCTCCTCCTGCTCCTCCTCCTCCCCTCTTTCCCCCTCCCC CCTCCTGCCCCTCCCCGTCCTCCTTCTCCCTCACTTCCTGTCCTGATCTT CCTCATGTCCTTGTGTGTTCTTGCCCTCTCTTTCCTCCTCTTTCTCCTTC TCGATGCCCACGCTCACAGGCCGGGTTCGTCCGCGGTTACGAGGCCCTCT GCGACCAGCAGCAAGTGCGCCTGCGGAAGCGGCCGGAGTTCGCCTCGCTC GAGAACGTGGGCGTGGCGGAGGGGCTGGCCGACCCGGAGATCGTGCTGAG GTGCGTTTCTAAAGCTCCGTTTCTTTTTTCTTCTTTTTTTGTGGTCTCGC AAGAACAAATACTAAGAAAGGAAAGAACTATAACACTCTGCGACATTGTT CACGGGCTGATGTTTGGATCGAATATGATTGGAAGGTCCCTTTCGGAGGG GGCAACCGCTACCGAACTGCAACTGGCCTGCCTTTTCTTGGTTTGACTTT TGCCTTTTCTGATTTTTAGGAAGACGAGTGGGAAAGGTGGTTCCGTCCTC GACGGCCTTAAGGGATAGTGTCCACAACAACCAAAAAGGAACGACGGCTT TTGATAAATATCACCAAAAGAGAGCAGCGTTTCTTGAAATTTTACACAAA AGAATACGCACGTTAGCTCCTTCTCAAAGATGTTGTTTGGATGCGTACGG TAGGACAACGGATAGTGCACTTGTATGTGTTGGTGAGCGTGTGCTCTGTA TGCCGTGGGACAGCAGCTGGGTGAAAGCAGATGGGCATGCTTTTTTCATG CCTTAAACTGCAGCTGGTCCAAGGAAGACATTCATTGGTGAGTCGACCGA GGGGCCCGCCCCGGCAATCGTGTTTTGAGGTGGATTTAGGTAGTTTACTC TCGCGATCTCGTGTTTCGACAGCAGCAGCAACGCGGAAAAGGTTATCAAG GGCACTTTGAAGGGAAGAGTGGATGCAGGGCCGTGGTGGTGGATTCCTCC CCCCCCCTCGTATGCAGATTGCAAGTCAGCAAGGTAGACATAGGCACGAC TGACCACTTCCTTATTTGGGCTAAAACAATACGTATCAAGAGAGTCAAGA GTACGAAGACGAGGAAGGTATTCAGATGGGAAGTAGAACGACTGGGAAAC GAGAGAGTACGTGCTGAATTCCAACAAAGGAATGCAGACAGCGTAGAACA AGTAAGGGAACTGATGGGGAAAGCGGGAGAGGAAGAGGGCGTTAAAGTAG CAGGGGACAGAGTAATCGCAGGATGGGAAAACATAGTGAACACAACCGCA GAGGAAGTGATAATAGTGAACACAACCGCAGAGGAAGTGATAGGGAACAA AGATGGTCCGGTGTGGTCAGGCGGTTAAGTGGTGGGACGATGAGGGAAGA AATAGGGGAACGAAGAGAACTGTTTAAGCGGCACATGGATGAGAAGACAG AGGAGAGTTGGGAAACCTACAGAGCCAAGGGGAAACATGTGAATAGAGTA GTGAAAAAGAAGAAGAAAGGCATCTGGGACGAAGTGGTGTAGGAAGCGAA CGGGGGGTTGGAGGGTAGCGTAAAACAGATGTGGCAGGGAATTTATGGAT TGGTAAAAAAGAATGAGGGTGGGGGGGAAACAGGAGTAGCAACATTGCGA GGCGTAGACGGTAAACTAGTCAGCAGTGGCAAGGGTAAGAGGCAGGTACT AGCAGGACACTATAGGAGACTCGGGGTGCCGTCGGAAAAGGCAGACTTCG ACCAAGTATTCAAGGAAAGAGGTAGACGCGTGGGCCCAAGCAGAAGAGAG AGCTTCGATGGAGGAAGTTGGGAATGCAGAGCTCCAAGAGAAGTTCACCG AGGAAGAGGTTGAGAGTTGTGTGAAAAACTGCAGTGTCACAAGGCCGCAG GGGTAGACGGGATAGTGAACGAAATCATGAAGTTCGGGGGGGAGGGGATG ATTCAGATGATGGTGATGTTGTTCAACTGGGTATGGGAAAACGAATACGC ACCGAGTAGATGGAGGGAAGGGGTGGTGGTGAACCTATTTAAGAATGGAG ATAAGACTAATCCAGGAAACTATAGGGGAATTACCCTGTTGAGCACAGTA GGGAAAGTGTTCTTCAAGATCCTCAACAACAGAATAGCACGAGTACTGGA GATGGAAAAGAGAATTAGTGAGGGTCAAGCAGGTTTCAGGGAGGCAAGGG GGTGTGGAGATCACCTATACACGGTAGGGAGGATCATACAAGGCCGGAAG AGGGTGGGAAAGCCGACATATTGCTTTTTCCTATACGTTCAGAAAGCGGA TGATACAGTATGGAGAAATGGGCTCTGGAAAAAGTTGGCGAAGTATGTGA TAAACGCGAAGATGTGGAGAATGATTAAGAAGATGACAGAGAGCACGAAA AGCGCCGTGATGTTAGATGGAAAACTCTCGAGGTTCTTCGACATTTAGCA GGGGGCCCCACAGGGGTGCACAATGTCACCAACGTTGTTCCAGGTATTCA TCAACGACTTACTGAAAGAGGTAGAGGCGGTAGGGAAGGGAGTAGAAGTA GGGGAAACGTCGGTATCGGGACTGCTATTTGCTGACGACTTTGTTGGGAT GTCGGACACGCCTGAgGGGCTCCAACTACAGATTAACGCAGCGAAGACCT ACGCTGATAAGTGGAGATTCTCGGCCAACGTCCCAAAGTGTGCCGTAATG GTATGCAATGAAGATGGTGACAAGGAAGTAGGTACCAAGTGGACATGGGG GGACATGGAGCTACCAAGAGTGGAAAAATACACTTACCTTGGAGTAGAGA TAGCAAAGGACTGTAAATGGGATGCACACATGCACAAAATAGCGGACAAG GGCAAAGCAAGGGCAGGGAAGTTGCACCCAATCCTAGCAGACCGGCACCT TGATACACGCGTCAAAATGACCATTCTGAAAAGCGTTATCATCCCGCCAC TAGAGTACGCGGGAGAAGTTTGGGAAGGGAACAAGAAAATAGTAGCAGAG TTGGAGGCAGCGCAGATGAAAGCAGCGAAGATCATTCTAGGATGCTCCCA GCGCACAAGTAACGCAGCAGTAAGAGCAGAGTTGGGGATTTACTCCTTAA GAACGGGAAGAGACAGGAGGAAGTTGATATGGCAATACCGTATGGAAAAC ATGGGAAAGGAGAGGTTACCGAGAATAGCTTGGGAGGCGAGATGGGTAAA CAAGGCCAAGGGTAGACAACCCGTTGAGTGGGCTAAGATTGTACAGGGAG TGTGGAGTGGGTTAGATATTGACGAACGGGAGACGACGGGAGCGGAAAGC TTAGAGGGGTACAAGAAGAGTATCTCAGAAGCCTTTGAAAATAGAGAAGA CCAGAGCTTGCGGAAAGAGACCAAGGAAAAGGAGGTTCTAGAAGTGTACG GAAGGCTGAACGAAGGAATAGGGTTCAAGGAGTACCTGAACGGACCATTG GATGAAGGTCAAATTTAGAACGGGCGACATTGACCTACGGGAACGTAGAA GGAGGTTTAGGAAGGTAGACGACGACGAAGACAAGTTCAAATGTGACTGC GGTGCCGAATGCGAAGACCGGGTACATGTAGTTGCGGAATGCCCGTTATA CGATCAGGAGAGAGAAGGGTACATGGTTGAGCTGGAAAAAGCAGACAGTC GGTATAGAGAGAAGTTTGAGGCATGGAACAAAGAGGAGAAGACGGTAGCG GTACTCGGGTGTAAGATGTGGCCCAGGAAGGACAGGTATAAAGTAGACAG GTTAGTGAAAACATTTTTGAGCCACCTTTGGCAAAGTAGGAAGGAACGAT TGGCCATCGGTGGTCGATCCTGCGGGAACAATGCTCCGTCCTCTCGAGGA CGCGTGGTCAACGGTCTAACAACTAAGGCATGCAAAACATGAGTACGCCC CCCTCCCCTCGTATGTTGAAGGTAAGACATGAAGCGCCATTTGCGCGGAT CAGTCTGCAGTTTTTCTCTTCTTTTTCAATTTTTTTTATTTTTTTCTCCC TCTTTATTTTCTTCCTTTTATCCATTCATACTTGAAGTATTGTTGAAGAC TCTTGCTCTCTCTTTCTTTCCCTGCACGATGCACAAAGTGCCTCTTTCGG TCATAACTTAAAATAACACACTAATCAGCCCAACAAGTCCGAGTCTCTGG ACGTCGTTCACTACGCCGACGCGCTCCGGGCCAAGAAGACACCTCAATGC ATCTCTCTTTTTGCTATCAACGAGTTCTGTTCGCCATTCCGCCTTCCCTG TCCGCTGGTCAAACCCACAAGACCCACCTTTCTCTCAGCCTTCACGATGC CCGTCCTTGGTAAAACAAACACACAAAAAATAAATAAAATAAAAAGAACG CCTTTTTGGAAATCGTTTCAAACTCACTCAATACACATCAGGCAGCCCAA CAAGTCCGACTCAGTGGACGTCCACTACGCCGACGCGCTTCGGGCCAAAA CCCTGCTGGACGCCATGATGGAGGACCTCAGCGAGGATAAGACCGGGCTG TGGGTCCGCCCCGTTCCCGTGAAGACTAAGGCGAGCATCAAGCGCAAGGC TACCAATGACTACGGGGGCGACGTGCACAGGTATATGGGGGGGGGCGCTG GGGGGGTGACAGTTACAATTGTGCGTGTTGCGTGTGTGTTCAGGCTGGTG CGGTCGTGGTTGGTCCGGTGTGTGCGTGGCGGCGGTCTCGGGTGCCGATT CCAACCGGGTGTGACAGCCCTGTGCGTGTTTCATCCCGCGTTTGAAGGTT CGGCTGGTTTGAAACTCCCTTGTGTATAACAAGCCACAAGTCTCGTGTGT GACAGCGGCCACCAAACTATTCCGACAACGACGTCGCCCAAGTGGGCGGC AGCGTTTTACCTTCCCGAGTGTGGACGTGTGTGTGCCTGTGTGATCGTTG CACGTCACTCTTCTTCCCTATCTCTTCCCTTTCTTTCAGGGTGCTCGACA TGGCGCGCACGTCTGTCATTTGCGGGACCCCTGAGGTTCTACGGCAGTTC ATCGACGAACTCAAGTCGCACCCAGACGTCGGGCGGATTGGGAGGATGAA GAACGGCTTCGGGAGCACGGCTGTGGGCAGGGGAGGCTACCGCGACATCA AGGTCAACCTCATGCCGGCCAACATCGAGCACTTCGTGGAGGTGCAGGTG CGAAGGACATCACGAAAGCACGAATGCATCTACAGTGGGGGGCCCGATAC AACGCGGGTGTGGGACAAGCGATTCCACCGGCCCTATGGCGGGTAACCGC ACTATTCAGAATGGGTATTGGACAGGGTTAACTGTAGTGAGAGCACTTTC ATGCCAAGTGATTTCACCTGCACTATCGGCCCCCCTGCTGTGTTTAATCG TGATGTTTTTGAGACGTCATGTTGATTTTTGGCGTCAGTTGCCCCTCGTG GAGCACCTCGTGGAGTTGCAAGTACGGATGATCATGGAATCAAGAATATC TTTGCTCGTGGTATTTGTGAGATGTCGTTCATTTTGTTTGTCGTGAGGTG TCCGACACGGAGCACCCCGTGGAGGCGCAGATGCGGAAAATCATTCTTTC ATGGTTGGCTGTTTTACACTCATCAAATTGCTTACTCAGATGCCGATATG AAGCACTTCGTGCACCAATTGTGAAATGTGAAGGGACTGTTGAATTGATC GTTCGATTATCGCAAGGTCTGTGACTGGCGGTTTGAGCTCTTCGTTGTTC ACAAACAAGGCTCCCACGAAGGCGCCCCTGGGCGAGTTCCAATAGCTCAG GAGCTGTAGCTACGAATTGACGACCCGGCCACCAGACCAGATACAGCGAA ACGAAAAAGGCAGACCAAGCAAGGACACCACAGGCCATCCAATGGATTGA TATACTCCACATGAATCACTTATTTCGTCGAAAAATATGGAGCGCTTGGC GTGCGTGTATTGAAAGTGTTGTTCAAACTCCGCGAGTTTTAAGTGCTCAG CAACCACGATGACAATCTTGTACTTCCACAAGGAATGCGACTTATTGATC CAATGAGAATTGATGGATTAGCCATGCCCATTAGAATCAATCCAATCTCT CGCGTTGTTCGTGACGTATCGAATCGCGCGCAGGTGCACCTCCGCGAGTT CTACGAGCTTAACAGCCGGAGCCACGAGGTCTACGAGTGGGCCCGCGGAG TGGACCTCCCCGACGGCACCACCCCTCACCTTCTCTTCAGAAACCTCTCG CCGAAGGTCCAGGTGAGGGAAATAAATACAGTACATCTTGAGGTTTCAAG TCCCGAGACGAGTGGAATGGTACGTGTATGAAGGTTGAGATATGTCAGGA GGAGGGGGGGGGGGTGTTACCCCGCGGCGTTTGCCAGACTCGCCGTGTAC AAGTGCTTAATTTTTTTCGACGGTTTGGCACCCTCAGGATAAACCATCAC AAGCTGTTCCGAGCAAGGAAGTAACAGTTGTTCGTCACCCCGTTACTGGT AAGAAGAACGGGAAACGAGCCAAGCTGGTCAAATCCGCTGCATGCCCCAA TCACGGCGTTGATACACGTGTTGGCTGCCTGTGAATTGGCCGCTTCTTGC AAGATGGGGAACATCCTCTGCACGTACACATGCGACAAAGACCTTAGGCA GGGGAAACAAGATTAAAAATTGCGGCGAATTTTTGTTTTCCGCGCACATG CGCACAGCGAGACACCGACACGGGCACGACCACAACTCGCAAGAACGAGG GCGGCACCCTATCGCCCAGCCCTCGCTCGAAGGTACAGGCCAGCGATGGA TGGCGACACCTATCCATCCTGCATATATATATTATATACATATATCCCGG CGCACGTGACACGGGGCGGCGGTTTTCTCACACGATGTCTCCCGCCGCAC TTCGTGTCTGTGTGTCAGCAAGCGAAGCAAGTCGCTTTTTACCGTCGGTA GGCTTGGGCGAAGCGGTTGTCTGTGCCATTGGCACCTCGCGCACGATGAG CATGTTCACGCACTTCATGTGTTGGCCGCCGGCGTCAAGCGTTTCCCGCC AATGCACCAAACTTCAACCTTTTTTGTACAGCCTGTGAGCCCCTACAAAA GCCCAGACGGAGAATATTGTTGCCCCTGCCCCCAGGTCCAGAGATCAAAA TCAAATCAGCAATTTCTCACGCATTTTCTTCGAATCAGGACCTGGAATTT GATACCTTATTCGTGGATCTGTTGCCGAGAGATTGATGACTGCACCTTGT GATTTATTTATTTTTTACCCAATTTTCCTTCACAAAATACTTGCACGAAG TAGAACCAGCCCAACTGATCAGAAAGTTAAGGAAACCAGAAGGTGCAGTC ATCGACCTCCCAGCAAGGAGTGATACGATACGAGTCACGTGTCAAAATTT CAGGTCCTGCGTCGAAACTATTGCGTGGTAGAGATCCGATACAGCCAATC CTCGTCGTGGTTCGTCCAGCTTGCACCCCCCCCCTCTGTCACCGGCGGAC CCGTCCCATCGAAATAGGATGCGAGTGTACGGAGTTCACTAGAACCCACC GCGTATCAAACTTTTAAATCTTTCGACGGTTGAGCACCGGGTGGACTATA CGTCAGACCATCCCTCTCGCGGGCGGACTTGCATATGGAACTACCCCCAA CTACTCTTCAGTAGCCTGTCGCCAAAGTTGAGACAAGACTCGAAAGGGCG CTGTCTCTTTCACCCTACCGGAGAAACCTGTCATGAATCGCAGCCCTGCT GACAACAGTCATCTCGGCGGCTTTGGTCCAAGGGAAACGTCCTTTTTTCA TGTGTTGCGGTGTGAAGGGGCATCATGTCCCTCGTATTTCCTGTGGGCAC GCTCGCCCCCCTCCCCCTGGCTCAGGGCACCATTCTAGGAATGTACGGCG AGTTTCCTCGCCACGCTCACAAAGAACTAACAGGCTCAGTGCGAAGGGTC TACACATGTCGAGCGGAAAAGCATTTCGGCTGCCTGCGAGCAACACACCA TGTCCTTGGCACCAGCGATGGTCCAATAGCTAGCCTGGAGACTACCGGTC TGCCATTTGTGCGTCTCTCTGTTATGTCGTTTCTTTTTTCAGTTCCTGCG TCGGCCTTTCCAATCACCCCATCTCCATGACCGCCAAATGCTGCTGTGCA GACGGAGATGACGGACCTCGTGAAAGCCGACTGGATGGGGCTCCGCCGAA TTCTGCCGGAGCTTCTGCAGGCCACCGGGCAGTACGAGGAGGCCGAGCCC CTTTTGCGCCAGGTATGTCCACCAATTACCAGGCCCCAGTATTTGTCTAC TGCACCCACAAGCTGCGTCCGAAAAACGCCAACATTGATCATGTTGAGAC CACAGACGTTGCTCTTTCTTGCTCAATGTTTCGCAGTACATGTCGACAGA ATCCGATGAGTGTGTGCATGAGCAGCCGTGTGCCGCGTGACTGGACTGGT ACTGTTTGGGGGGCGGCAGTGTTGCATGTGTGGAAATGTCCTCCGTTGGT GTTTTCGTTATTTTCCTGGCTTTCGGGGGCGCGTTGTCTTGCAAGAGGGC ACATGCACACCAATCAAGCATGCCCTGCTCCGTCCGCACGAAACGCCATA TATGCCTCACGTCCCATGACAAGAAACAAACCAAACGAAACCAACATCGT AGACGCGGAGATGTGGTGGGATCCATTCTGTCTTGCCCCCCTCCGCTCAT CCTTGGTCGCCTGCCGAGATAGCGTAACCCCCCACTCCCTCCCTAAAACA TATATAAACGTCATCAGAACGTCGTAGACGCGGAGAAGAGGTGGGAGCTG GCCAAGCTGCGGTTCGGGGAGGGACACCTGCACGAGATGTCGTGCGCCCA GGGGGTGGCCATGGCCCTTAACAACCTCGCGCTCGCCCTCAAGGGCAAGG GCGACCTGCAGGGCGCGGAGCCCCTCCTCCGCCGGGCGTTGCAGGTGCAT CCATATGTCTGTCTCGCGGAACACCTCCCTGCCTGCCTGTCTGAAGATGA TGGTGACGTCGGTGGTGGTGTGTAGTTGTGGTGATTTTGGTGTGGATGGT ACTGTCGTCTGCGTCGTCGTCTGCGTCGTCGTGTCTGATACCGTTGTGGT TGTCGCTGTCATCAACGCAGTGGAGGAGGAAAACTTACGGCTGGCGATCG TGTTGCAGTGGTCTGTCGGTGACGCGAGGCCGGACCTGTTGTTTGACCTC GCGTCGTCTGTCTGGCTTTCGCCAGGTGCCCGCTGTCAATCCTATCTGTC TGGCTGTTTGTCTCTGTGCCTTCCGGCCCATCTGTCTGCCTTCCTGCCTG ACATTCCCTTCCCAAGCACCAAAACTAGAAACCGCTTTACCCCCACGCTC TCGTCTGTCCTCCGTTTCACATCGTGCATCATGCCCCACTCAGGCCCGCC ATCCATCCGACCGCGTGTCCCAAACCAGGGGTGTTGGGGCCGGGGGGGGG AGGCGGGGAGGCGGGGGGGGGGGCAATCGGGCTAGTGTGTGACCAGAGAT TTTGCGGACATTTTACCAGCATTCCATGGGACTTGAATAGATTTTTTGAA AAGAAGCGGAAGCTCGTGCTCAGATATTTGGCCGGCACCATAATGGGCGG CGCTATTCAACCGGCGCTAATAAGGGCCCCCCACTGTACCGCCAGCCTTA CACTCCTACCCCTTTCCCCACCCTCATGCCGCGCGGCGCGGCGTTGGCGT CTCCGTTCACCAGATGAGCATAGATTCGCAGGGGTCGGAGCACCCGGAGG TCGCTACGCGTCTCAATAGTCTCGCGCTGCTGCTGGCGTCGGACAACCGA GTGGCGGAAGCGGAAGGGTACCACCGACAGTGAGTGGGGGGTTCGGGGGG GTTATAGGGGGGATACCACCGACAAAGCATAGCGGGTCCGCGAGGAGTGA GTTTCACCGGCAATGAGTGCAGCGGGTCTGTGGAAGTGGTAGTGAGTAGG CGGGTTCCAACACCGACAATGAGCAGGGGTCCAGTAAGGGGAGGATGCCA CCGACGGTGAGCAGGGGTGTCCGGTGAGGGGAGGTTACCATAGAAAATGA TAATGGCATCGGGGGCGGGTGTACCACGGACGGGGAATAGGAAAGTTTAG GGGGGGGGGCAGGAATGGGAAAgGGGGTGGTGCAGGATGACTCGCTCGCA GCCGTCTGGATACCAACATCACACCGGTCCGGTGTTTATTGAGAACCGAA GCACACGAATTCGCTCAGGCTCGCTTCCTACTCGTGAGGTTTTTGTGGTC TAGGAATGCTTTTCGGGAGTGAAACGCCTCCTGTTTGTGCAACCCCGATC AGAGAGCCCCCCCTCCCCCCCCTCGGAGCAGAATTGCCGCCAACGGTGGT TGCTGTCCTGGGTTATTGCAAATGAACAAAAACCCAATAATCCCTGTACT CATGGCGTTGGCGTGGTGTGGCATGGCAGGGCCCTGGACATCGCCAAGAA GGTATACGGTGCGGAGCACGCCGACGTTGCTACCTACCTCAATAACTTGG CCAGGGTGCTCAAGGCACAGGTGAGGGCGTGTTTCTCTTCTTTCGCGACA CTCGACTTGAACCGTTTGTTGAACATGTGATGGCGTGGCAGGATGGACCG GCGGGGGCTGCAAGCCCCTGCAGCGGTCCGCGCTTGCCATGAATTACGAA ACGAACCTGAACGAAAGCTGAACTCTTTGTTGTGTGGAAGGATGAACTCG CCGACGGAACCCAAAACTGGATCAAAACTGAGCTGAAATTCCCCGATCTG TTGAACAGCAGGATGAAATGAGGGACGCCGAGCCCCGGGAGTTGGCCGCG CATTGACTTCACTTCCGCGTGACAAAACTTAACCGAACGGAACCTTTACT GAACCGAAACTGACCCTTACTTGACTCCAAACGCGAAACGAAACAAATTC GAATTAAAGTGGACCAACATGTGCCATCTGTTCTGTGGCAGGATAAACTC GCGGAGGCGGAGCCGCTCCAGCGGTCCGCGCTTGCTATTGGCGAGCGCAT GCTGGGCACCAACCACTCGGATGTGGCCACCTACTACAATAACCTCTCGA GGTACGAATGCAGGCTAAAAGGAGGCACAAAATGCCCCGTATGCTTGTTA ATTATGTGCGGGATGCGTGCGGTGCTCGAGGCAGACGCCGCCTCGCGACC TCTCGGGGTTTTGCGGGGCAGTTACATTCCCCGCCGAGAAGTCCGGCATT TTGCCCTCCCTCCCGGAATGCTTTGCTCTTAATTAAACACGTTCTTGTTT CTCCTCCCCCCCCTGTTTTTCTCTGCGTGGTTTGTGCTTCAATCCACCGA TTCGATCTTAAGTTTCTACACGCTTTTCCTCCTCCCCCCCACCTGCTTTT CCCTGCGCGGTTGGTGCTTCAATGCGCCGATTGGTTCGTGACGGCAGATT GGTCCGCGCGTCGGGCAACCTCGAGGAGGCGGAGCCCCTGCAGAGGAGGG CGGTGGAGATCGGCGAGCAGGTGCTCGGGCCCAACTCCCCAGACCTGGCG ACCTGGGTCAACAACCTCGGTCGGCTTCTGATGGTGAGGGACCGTCTACG CAGGAAATTGAGATCATGTAGGAAACAGACAGCGGGGGATCACGTGACAT CTGGGGCTAACCCCGGCCGTACCCCCCACTATTGATTACCAAATTTATTT TTTTCCACCCGTGCGTATGCTACTGCATGGTGAGAGGGAGGGGCGACGAG AGAAGTTGGAGGTACAGAAAGGGAGATCAAGAGGAGGGGGGGAAGGAGAA AGCGAGCACGAGAGGGAGAGCGGCACAGAGGAGGGCCAGGGGGAGGGGGG GGGGACACGGGAGCTTACAGGGAGGAAGAGAAAGGGGTGTATACAACGTA AAGGAAAAGGCATGTGTAACCCAAAACGAACTTGACCACGACTGATGGCG TAGATCAGGTGAGCCTCCCCCGACCTAGCGACCTGCGTAGACAAACTCTG TCGGCGCTCATGGTGAGAGGCGGGAGCGAAGGAGAAAGAAGCCAAACACG ATTTAGAGAGAGAGAGAGAGAGAGAGAGAGAGAGAGAGAGAGGGAGATGC TTCAGAGAGAGAGGTAGATGAAGCGGGGAGGGGGTGAGAGCCAGGGGGAA GGGGGGCAGGAAAAGCGAGTCGGGGGGTCAGAGCGAGGAAGATGTAGAAA GCAGGACAAACACACGGAGGCAGAGGTGATTCGGAATGAGCCTAGTCACG GTTGATGGGGTAGCTTTACACTCACAACTTACGAAATGGACATTTACCGT GTAACGAGCCTTGTCGAAGACTCAGCAATTTCACTTCGTCACATTGTTCT TGATCTATTCAGCTCAGGTTGAGTTTTTCACCCTTCGAATTTCCACAGGC CCGCAAGAAGCTGGTCGAAGCGGAGAAGGTGCAGCAGAGAGCGGTCACCA TCGCGCAAAACGTCTACGGCCCCGACCACCCACAGGTTGACTTTTTGTTC TTCCCTCCGTCAGCGGCTGTGTTTGTTGCTGTTGCTGTTGCTGTTGCTGT TGCTGTTGCTGTTTTTCCTCCTGTAATTTATGCTGTCGTTGGTGCCAATA GATCTACGGTCTTTGCTGTTGGTTTTGTTGCGGTTGCGAACATCAGACAC GACTGAGATCAATTCCATTTCTCAAACGTCAAACAGTCAAATATTCGCAC TTCAAATCCCGCCCCATCTGGGTTACGGACTCATGATGTTATCTCCCGTT GTTGTTGCACGCGACGGACGCCAACGGAGCAAACAAGGCCCCAAAACCTG GCCGCCATTTTGACCCCTTTCACGGATAGCCATCAAGAATGCTTCGTTGT TCCGGCTGCCTGTGGCTAGTTTTGTCGCCTTCTTCCTCGGCGAATCAGGT TCCTTCTTTGCGGATCAGGCCGAAGCAAGCTCTTTTTCTGTCACTTGTAC CTTGCCGAGTTTATTCGCCTTTCATTTGCTGAATCGAGTCGCGCCTTGTT GCATTTATCGCCTGCTGTTGTTTTTTGGAGACGAAGTGGAGACGGTAACC GCACAACATGCGCAAGTCAAGCTGGTACATCCCCTCCGCCCCACACAAGG TCATACGGCTCGACCCCTCGGCAATCACAAAACTTACCGCAGAGAAAGGA AGCTCTGCACACGATTCCTCTTTCTCCTTACCTCCCTCCCTCTTTCTCTC TGTCCCTCTCTATCGCCGAAAAACACACACCTCAGGCATGAGCACCCCCC CCTCGGCTGCTTTCCCCCCCTCCCGTTGGCTCTCACCTCGGTGTTTGCCA TCGGGATTGGGTTTTCGTCGCTTGGCAACGACGTTGTAAAACAAGCCATT TCACTTCGTGAACTCGGCAACCAGGTTACCGTCTTTTTTTTTCCTCTGTT TTTTTTGGCGGTAACCATAATGGTGGTCGAGAAGATCGTGTTGTGCGGGG TGGAGAACCCTCACTCCGCGCAAGGGGGATGATCGCACCACGATGTGTTC AAATGGTCAAGCACCCTAGAGGCAGTCAAACAGTGCTTACAACTGTCTCT GGACGTGAAAGCACAAGAAAATAAACTAAGCCAAACGCAGCTGTCATCCG TATGCAAGGAAGTAAGCACAAGATGCCGAACACCCTTAGCAGGATGCAGC GCACCGTTCATGCGACTCGCCGAATACCTCACGGCGCTTCGCGCTTGGTG GTGTGAGAGCCTGGTCCGGTGAGAACCCGGCGTGCTCCGTCCCGGCTTTG TAGGGATGCGAGGTCAATGGTCTAACGACTACGGCATGCACGACAATGAG TACACCCCCCTCGGCTGCGGAGCAAGTAAGCCATGGAAGCGGATAGTAGT CATGTTCATTGCTCCACCCTACCCGGTCTTTCGGCAGTAGCGCTGCTCTG CTGTGCGCCCCCTCTTCCCTCTTTGGTCTCACTATCCCCATGGCTCTTGC CTTGTCTGTGTCTGTGTGTTTTCCTTTTTTCCAGGTCAAGCGAGCGCAGA AGAACCTGGCGAAGGTGCAATATTCTCGCAAGAGATCGGCCGCACGTTCC ACGCGCTAGTTTCGCACGGGACACACTCGCGGCGACTGCTCACGCCGGCT GAAAAAAGAAAAAATAGCGACGAAAAATCACGGCATCAGGGGGGCGGGGG AGGGGCGGGGAGGAGGAGTAGGGCGCGAGAATGAAAAGCACGTGGGACAG AATGCTGAAGACGCCGAAAAATGAGACGCGAGACAGGCGACTGCAGTTAC GGGTCACCGGGATATTGGGGCGAGGGTTAAGCGCTCCTCAATCCCCCTCA CCCCCCTTCTTCGTGGTCTCTCCTGTAGCTTGGATGAAGCTGCGTGTCCT GTCTATCCTCAGGGGAGTGCGATCCTGCCCTGACGAGGATGCACGTGTTC TTTGAGGGGGTCCGGTGTGTGCCGATTCTGTCGGTCGTGATCGTCTTGGT CTCTCTTCTCGAGGCAGGGAGTCCCGTGCATGAATCAATCGCTTGCTGCA TAGGTCACCAAAAGAAATGTGTGTTGTCGATGATATTTATGAATAATTTT AACAAGTGAGGAGGGTTGTGATTTTGGACGATGCTGCGTTACCGACCAAC CGCGTTTTGGGCTTCTCCGTTGCCTAATATTCCGAGATTTGGAAGTCTCG GATCGAGGGTCCGGGGGGCGGGAACGAACCAGCACTTATGCCTACTTGCC TGTTCCCGTAGGCAGCAATATGCGGGACCTCTGTTTTCCG
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Coding sequence (CDS) from alignment at P-fluviatile_contig12:2176335..2207474+

>mRNA_P-fluviatile_contig12.1479.1 ID=mRNA_P-fluviatile_contig12.1479.1|Name=mRNA_P-fluviatile_contig12.1479.1|organism=Porterinema fluviatile SAG_2381|type=CDS|length=5220bp|location=Sequence derived from alignment at P-fluviatile_contig12:2176335..2207474+ (Porterinema fluviatile SAG_2381)
ATGATGGCCGCGCCGACACCCGGCCGGGAGAGAGAGGGCGAGCGGACGTG
GGTCATGGCCAAGAGGGTCGCCTCTAGCTGGGAGGAGGAGGACCGGAGGA
GTGGCGGCGGGGGCAGCAAGATGATGGCCGCGCCGACACCCGGCCGGGAG
AGAGAGGGCGAGCGGACGTGGGTCATGGCCAAGAGGGTCGCCTCTAGCTG
GGAGGAGGAGGACCGGAGGAGTGGCGGCGGGGGCAGCAAGGCGGCGGAGG
CGGCGGCGCCGCTGCGGCGGAGGCGGCGGCGCCGCTCAGGTTTGTGTCGA
CGCGTCTGCGGCACCTGCGGCTGTCCCCCGACGGGTCTACCCTCGTCGTC
AAGTCCGACGACGGGGGCGTCGATCATGAGCTGACGCTCGACGAACTCCT
CGAGCAGGTTTGTGTCGACGCGTCTGCGGCACCTGCGGCTGTCCCCCGAC
GGGTCTACCCTCGTCGTCAAGTCCGACGACGGGGGCGTCGATCATGAGCT
GACGCTCGACGAACTCCTCGAGGTGCACGAAACCCCTTCCGAGGAGAGCG
TGACCCTGATTGGCAGAGACATCGAGATCCGCATCGCCTTCAAGGGGCAG
GCCAAGGCTCTGAAGCAGTTCCGCAACATGTTGGTGCCAGCCAACAGCGG
GGGCACCGCGAGCACCACCGAGGCGGTGAATCAGGAAGGGGGCCCAGCGG
CGACGATCGTGACCACCATCAAGGGCGCCGGTTCCTCCACACCAGTGGAA
GGTATGGAGCGACGGGTGCCTCTCTTCCCTCTCCCTATTCCTTCTTTCCC
TCGTGCGACGGCACCCCCATGCTGCCTCCCTTCATCGTGGGGGACTTGGT
CAGACAGGGCGGGCAGGTGCACGAAACCCCTTCCGAGGAGAGCGTGACCC
TGATTGGCAGAGACATCGAGATCCGCATCGCCTTCAAGGGGCAGGCCAAG
GCTCTGAAGCAGTTCCGCAACATGTTGGTGCCAGCCAACAGCGGGGGCAC
CGCGAGCACCACCGAGGCGGTGAATCAGGAAGGGGGCCCAGCGGCGACGA
TCGTGACCACCATCAAGGGCGCCGGTTCCTCCACACCAGTGGAAGGTATG
GAGCGACGGGTGCCTCTCTTCCCTCTCCCTATTCCTTCTTTCCCTCGTGC
GACGGCACCCCCATGCTGCCTCCCTTCATCGTGGGGGACTTGGTCAGACA
GGGCGGGCAGTAGCCAACAGATGCGCCGCAATCTGGACGGCATCGACGAG
GATTCGACTTTGTCGCAAGATGTGCGTGGCGAAATGTGTTAGCCAACAGA
TGCGCCGCAATCTGGACGGCATCGACGAGGATTCGACTTTGTCGCAAGAT
GTGCGTGGCGAAATGTGTGTAACCCTCTCGCAGACGGGGAACATGATGTC
CAACGTCACCAGCGTGGCCTCCCCAGGGTCCAGCATATCCGGCTGGGGCA
GCGTCATCGGTGGCCCCGGCGGGACCCTCGCCGCGGCAAACGCTAACGCC
ACCCAGAGGCAGCTCGCCACCCTCACGGATAGGGACAGCGCCGCGCAGGT
AACCCTCTCGCAGACGGGGAACATGATGTCCAACGTCACCAGCGTGGCCT
CCCCAGGGTCCAGCATATCCGGCTGGGGCAGCGTCATCGGTGGCCCCGGC
GGGACCCTCGCCGCGGCAAACGCTAACGCCACCCAGAGGCAGCTCGCCAC
CCTCACGGATAGGGACAGCGCCGCGCAGGCGGCGGCCCTGGCCAGGTCCG
GGATGGCCGACGGCTTCAGCGACCCGTCCAGGGGCTCCTCCGCCGGCGGC
AGCACCTTTGCGGACGCGAGGGAGAGGGAGCTCGTCATTGCGGCGCTCAA
CAAGGCCGTAGATGCGGCGGCCCTGGCCAGGTCCGGGATGGCCGACGGCT
TCAGCGACCCGTCCAGGGGCTCCTCCGCCGGCGGCAGCACCTTTGCGGAC
GCGAGGGAGAGGGAGCTCGTCATTGCGGCGCTCAACAAGGCCGTAGATAT
GGACCCCGCGGAGCGGGAGGCTAAGCTACACCTGGTGAAGTACGAGCAGA
TGGACCCCGCGGAGCGGGAGGCTAAGCTACACCTGGTGAAGTACGAGCAG
GCCGGGTTCGTCCGCGGTTACGAGGCCCTCTGCGACCAGCAGCAAGTGCG
CCTGCGGAAGCGGCCGGAGTTCGCCTCGCTCGAGAACGTGGGCGTGGCGG
AGGGGCTGGCCGACCCGGAGATCGTGCTGAGGCCGGGTTCGTCCGCGGTT
ACGAGGCCCTCTGCGACCAGCAGCAAGTGCGCCTGCGGAAGCGGCCGGAG
TTCGCCTCGCTCGAGAACGTGGGCGTGGCGGAGGGGCTGGCCGACCCGGA
GATCGTGCTGAGGCAGCCCAACAAGTCCGACTCAGTGGACGTCCACTACG
CCGACGCGCTTCGGGCCAAAACCCTGCTGGACGCCATGATGGAGGACCTC
AGCGAGGATAAGACCGGGCTGTGGGTCCGCCCCGTTCCCGTGAAGACTAA
GGCGAGCATCAAGCGCAAGGCTACCAATGACTACGGGGGCGACGTGCACA
GGCAGCCCAACAAGTCCGACTCAGTGGACGTCCACTACGCCGACGCGCTT
CGGGCCAAAACCCTGCTGGACGCCATGATGGAGGACCTCAGCGAGGATAA
GACCGGGCTGTGGGTCCGCCCCGTTCCCGTGAAGACTAAGGCGAGCATCA
AGCGCAAGGCTACCAATGACTACGGGGGCGACGTGCACAGGGTGCTCGAC
ATGGCGCGCACGTCTGTCATTTGCGGGACCCCTGAGGTTCTACGGCAGTT
CATCGACGAACTCAAGTCGCACCCAGACGTCGGGCGGATTGGGAGGATGA
AGAACGGCTTCGGGAGCACGGCTGTGGGCAGGGGAGGCTACCGCGACATC
AAGGTCAACCTCATGCCGGCCAACATCGAGCACTTCGTGGAGGTGCAGGG
TGCTCGACATGGCGCGCACGTCTGTCATTTGCGGGACCCCTGAGGTTCTA
CGGCAGTTCATCGACGAACTCAAGTCGCACCCAGACGTCGGGCGGATTGG
GAGGATGAAGAACGGCTTCGGGAGCACGGCTGTGGGCAGGGGAGGCTACC
GCGACATCAAGGTCAACCTCATGCCGGCCAACATCGAGCACTTCGTGGAG
GTGCAGGTGCACCTCCGCGAGTTCTACGAGCTTAACAGCCGGAGCCACGA
GGTCTACGAGTGGGCCCGCGGAGTGGACCTCCCCGACGGCACCACCCCTC
ACCTTCTCTTCAGAAACCTCTCGCCGAAGGTCCAGGTGCACCTCCGCGAG
TTCTACGAGCTTAACAGCCGGAGCCACGAGGTCTACGAGTGGGCCCGCGG
AGTGGACCTCCCCGACGGCACCACCCCTCACCTTCTCTTCAGAAACCTCT
CGCCGAAGGTCCAGACGGAGATGACGGACCTCGTGAAAGCCGACTGGATG
GGGCTCCGCCGAATTCTGCCGGAGCTTCTGCAGGCCACCGGGCAGTACGA
GGAGGCCGAGCCCCTTTTGCGCCAGACGGAGATGACGGACCTCGTGAAAG
CCGACTGGATGGGGCTCCGCCGAATTCTGCCGGAGCTTCTGCAGGCCACC
GGGCAGTACGAGGAGGCCGAGCCCCTTTTGCGCCAGAACGTCGTAGACGC
GGAGAAGAGGTGGGAGCTGGCCAAGCTGCGGTTCGGGGAGGGACACCTGC
ACGAGATGTCGTGCGCCCAGGGGGTGGCCATGGCCCTTAACAACCTCGCG
CTCGCCCTCAAGGGCAAGGGCGACCTGCAGGGCGCGGAGCCCCTCCTCCG
CCGGGCGTTGCAGAACGTCGTAGACGCGGAGAAGAGGTGGGAGCTGGCCA
AGCTGCGGTTCGGGGAGGGACACCTGCACGAGATGTCGTGCGCCCAGGGG
GTGGCCATGGCCCTTAACAACCTCGCGCTCGCCCTCAAGGGCAAGGGCGA
CCTGCAGGGCGCGGAGCCCCTCCTCCGCCGGGCGTTGCAGATGAGCATAG
ATTCGCAGGGGTCGGAGCACCCGGAGGTCGCTACGCGTCTCAATAGTCTC
GCGCTGCTGCTGGCGTCGGACAACCGAGTGGCGGAAGCGGAAGGGTACCA
CCGACAATGAGCATAGATTCGCAGGGGTCGGAGCACCCGGAGGTCGCTAC
GCGTCTCAATAGTCTCGCGCTGCTGCTGGCGTCGGACAACCGAGTGGCGG
AAGCGGAAGGGTACCACCGACAGGCCCTGGACATCGCCAAGAAGGTATAC
GGTGCGGAGCACGCCGACGTTGCTACCTACCTCAATAACTTGGCCAGGGT
GCTCAAGGCACAGGGCCCTGGACATCGCCAAGAAGGTATACGGTGCGGAG
CACGCCGACGTTGCTACCTACCTCAATAACTTGGCCAGGGTGCTCAAGGC
ACAGGATAAACTCGCGGAGGCGGAGCCGCTCCAGCGGTCCGCGCTTGCTA
TTGGCGAGCGCATGCTGGGCACCAACCACTCGGATGTGGCCACCTACTAC
AATAACCTCTCGAGGATAAACTCGCGGAGGCGGAGCCGCTCCAGCGGTCC
GCGCTTGCTATTGGCGAGCGCATGCTGGGCACCAACCACTCGGATGTGGC
CACCTACTACAATAACCTCTCGAGATTGGTCCGCGCGTCGGGCAACCTCG
AGGAGGCGGAGCCCCTGCAGAGGAGGGCGGTGGAGATCGGCGAGCAGGTG
CTCGGGCCCAACTCCCCAGACCTGGCGACCTGGGTCAACAACCTCGGTCG
GCTTCTGATGATTGGTCCGCGCGTCGGGCAACCTCGAGGAGGCGGAGCCC
CTGCAGAGGAGGGCGGTGGAGATCGGCGAGCAGGTGCTCGGGCCCAACTC
CCCAGACCTGGCGACCTGGGTCAACAACCTCGGTCGGCTTCTGATGGCCC
GCAAGAAGCTGGTCGAAGCGGAGAAGGTGCAGCAGAGAGCGGTCACCATC
GCGCAAAACGTCTACGGCCCCGACCACCCACAGGCCCGCAAGAAGCTGGT
CGAAGCGGAGAAGGTGCAGCAGAGAGCGGTCACCATCGCGCAAAACGTCT
ACGGCCCCGACCACCCACAGGTCAAGCGAGCGCAGAAGAACCTGGCGAAG
GTGCAATATTCTCGCAAGAGATCGGCCGCACGTTCCACGCGCTAGGTCAA
GCGAGCGCAGAAGAACCTGGCGAAGGTGCAATATTCTCGCAAGAGATCGG
CCGCACGTTCCACGCGCTAG
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