mRNA_P-fluviatile_contig1.143.1 (mRNA) Porterinema fluviatile SAG_2381

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

Overview
NamemRNA_P-fluviatile_contig1.143.1
Unique NamemRNA_P-fluviatile_contig1.143.1
TypemRNA
OrganismPorterinema fluviatile SAG_2381 (Porterinema fluviatile SAG_2381)
Homology
BLAST of mRNA_P-fluviatile_contig1.143.1 vs. uniprot
Match: A0A6H5KTB4_9PHAE (Mannose-6-phosphate isomerase n=1 Tax=Ectocarpus sp. CCAP 1310/34 TaxID=867726 RepID=A0A6H5KTB4_9PHAE)

HSP 1 Score: 640 bits (1652), Expect = 5.040e-205
Identity = 318/361 (88.09%), Postives = 341/361 (94.46%), Query Frame = 3
Query: 5001 AHPDKKLAERLYATRPDLYKDDNHKPEMAVALSDFEGLCGFRPFEEIVFNLHRYPELRGLVSLSALRAMCSLPEDPEERREALRKLFQSYITAKPEVVATQVAALVQRLGERSQDDGGFASDGSSIDHTDEEEIDMEDIYGDGYEHPEKGELLLGRLKTEDHYVQDLMRRLSKEYPGDIGIMMPLLLNYLRMGEGESFFMAANEPHAYLKGDIMEVMARSDNVVRVALTPKHRDVPLLCQILTYNMGAPPIVTPIQVDQFCHRFTPPIEDFELDDMRVPGGAEYTPVAIPVPSICMVLEGGGLATDGVRETELRPGVVIFVAARSVATFKPAEGSSLRIIRTHTNLNMESNGVFMVAPPAA 6083
            AHPDKKLAERLYATRPDLYKDDNHKPEMAVALSDFEGLCGFRPFEEIVFNLHRYPELRGLVSLSA+RAMCSLPEDPE++R+ALRKLFQSYITAKPEVVATQV ALVQRLGER+ DDGGF SD  S+DHTD EEIDMEDIYG  YE+ EKGE++LGRL+TED+YVQDLMRRLSKEYPGDIGIMMPLLLNYLRMGEGESFFMAANEPHAYLKGDIMEVMARSDNVVRVALTPKHRDVPLLC+ILTYNMGAPPIV PIQVDQ CHRFTPPI+DFELDDM+VP G+EYTP+AIPVPSICMVLEG G A+DGVR+T LRPGVV+FVAARSVATFKP  GSSLR+IRTHTNLNM+SNGV++ A P A
Sbjct:  113 AHPDKKLAERLYATRPDLYKDDNHKPEMAVALSDFEGLCGFRPFEEIVFNLHRYPELRGLVSLSAMRAMCSLPEDPEDQRDALRKLFQSYITAKPEVVATQVNALVQRLGERA-DDGGFMSD-ESLDHTDHEEIDMEDIYGADYEYREKGEMMLGRLRTEDYYVQDLMRRLSKEYPGDIGIMMPLLLNYLRMGEGESFFMAANEPHAYLKGDIMEVMARSDNVVRVALTPKHRDVPLLCEILTYNMGAPPIVAPIQVDQCCHRFTPPIKDFELDDMKVPEGSEYTPLAIPVPSICMVLEGVGSASDGVRDTVLRPGVVVFVAARSVATFKPDAGSSLRVIRTHTNLNMDSNGVYVQAAPLA 471          
BLAST of mRNA_P-fluviatile_contig1.143.1 vs. uniprot
Match: D7G9E8_ECTSI (Two component sensor histidine kinase n=1 Tax=Ectocarpus siliculosus TaxID=2880 RepID=D7G9E8_ECTSI)

HSP 1 Score: 588 bits (1515), Expect = 6.100e-186
Identity = 341/550 (62.00%), Postives = 381/550 (69.27%), Query Frame = 2
Query:  476 MGGSPEFISLVNAQFGILSTALGVDRVVLFVRRENPETGTLEFVHAMEYPRRSPXXXXXXRARGTHSPEGVAVYP--GSSELLLLDAAGRTMEADGWDTPGAQEGGDGGLSAPVLHASLLLGMITVFKKGAETWRLTPTTARLRRGPPAGRERSEALGSTRDKMLLENVASSVAMAAVLDQKQRWAAVMQVEPLRRVVAESLHQVKNPMTALRTFGKLLLRRLPQDDTLNRELARDIMLQSDRLVDILLPVDAVLGLLATAVEREREALATPGMVDPYLAQREGFGATAAATAAXXXXEAATVSQVIAAADQVVVGELRGDVDTFGSNSQGGVQDALLSPSAQVAAVEESLALEERMSFGLISVEDVIRPVSSAAQAAAKERRVGFRWRVDNSLPRVIGDERALEEALSNVVDNALKFCNMGRGEGGRDGEARAIVVLSARLSTEEEWGADSGVVIEVVDNGPGIDAKDLPYVFDRGYRGRRALQCGIPGTGLGLGIARERMRSFGGDLEVAN--KDDDG----------GGWGTGVKLYLPRDQRILDE 2083
            M GSPEF+SLV AQF +L+T LG DRVVL+ RRE+ ETG+LEFV AMEYP R P          +   +GV ++    SSELLL  AAG+ M AD   +P A EGGDG LSAP++H+SLLLGMITV K G       P +AR     P   E +  L   RDK LLE +A SV +AAVLDQKQRWAAVMQVEPLR+VVAESLHQVKNPMTALRTFGKLLLRRLPQDDTLNRELA+DI+LQSDRLVDILLPVDAVLGLLATAVEREREA                                                               GVQDALLSP A    +EE++A E  M FGL+SVEDVI+PV+ AAQAAAKERRVGFRWRVD  LP V+GDERALEEALSNVV+NALKFC MGRGEGG+DG  RA VVL ARLS E EWGA+SGVVIEVVDNGPGI+A+D+PY+FDRGYRGR+ LQCGIPGTGLGLGIAR+ MRSFGGDLEV N  +D DG          GGWGTGVKLYLPR +R   E
Sbjct:    1 MVGSPEFVSLVKAQFEVLATVLGADRVVLYARRESTETGSLEFVPAMEYPERPPPAW-------SMDIDGVQMHEHHASSELLLPAAAGQEMNAD---SPDAVEGGDGDLSAPIVHSSLLLGMITVIKNGNSDGESRPPSAR-ENAAPRDIENARVLWGERDKRLLETIARSVGVAAVLDQKQRWAAVMQVEPLRKVVAESLHQVKNPMTALRTFGKLLLRRLPQDDTLNRELAKDIILQSDRLVDILLPVDAVLGLLATAVEREREA------------------------------------------------------------QMPGVQDALLSPPAPTG-MEETVAYE-MMPFGLLSVEDVIQPVTRAAQAAAKERRVGFRWRVDQDLPEVVGDERALEEALSNVVENALKFCKMGRGEGGKDGGVRATVVLRARLSAEPEWGAESGVVIEVVDNGPGIEAEDMPYIFDRGYRGRQPLQCGIPGTGLGLGIARDTMRSFGGDLEVVNMKRDTDGDGGAGGGLKDGGWGTGVKLYLPRGERRTSE 477          
BLAST of mRNA_P-fluviatile_contig1.143.1 vs. uniprot
Match: D7FIF1_ECTSI (Mannose-6-phosphate isomerase n=1 Tax=Ectocarpus siliculosus TaxID=2880 RepID=D7FIF1_ECTSI)

HSP 1 Score: 392 bits (1006), Expect = 1.250e-119
Identity = 195/215 (90.70%), Postives = 205/215 (95.35%), Query Frame = 3
Query: 5001 AHPDKKLAERLYATRPDLYKDDNHKPEMAVALSDFEGLCGFRPFEEIVFNLHRYPELRGLVSLSALRAMCSLPEDPEERREALRKLFQSYITAKPEVVATQVAALVQRLGERSQDDGGFASDGSSIDHTDEEEIDMEDIYGDGYEHPEKGELLLGRLKTEDHYVQDLMRRLSKEYPGDIGIMMPLLLNYLRMGEGESFFMAANEPHAYLKGDIME 5645
            AHPDKKLAERLYATRPDLYKDDNHKPEMAVALSDFEGLCGFRPFEEIVFNLHRYPELRGLVSLSA+RAMCSLPEDPE++R+ALRKLFQSYITAKPEV ATQV ALVQRLGER+ DDGGF SD  S+DHTD EEIDMEDIYG  YEH EKGE++LGRL+TED+YVQDLMRRLSKEYPGDIGIMMPLLLNYLRMGEGESFFMAANEPHAYLKGDIME
Sbjct:  113 AHPDKKLAERLYATRPDLYKDDNHKPEMAVALSDFEGLCGFRPFEEIVFNLHRYPELRGLVSLSAMRAMCSLPEDPEDQRDALRKLFQSYITAKPEVGATQVNALVQRLGERA-DDGGFMSD-ESLDHTDHEEIDMEDIYGADYEHREKGEMMLGRLRTEDYYVQDLMRRLSKEYPGDIGIMMPLLLNYLRMGEGESFFMAANEPHAYLKGDIME 325          
BLAST of mRNA_P-fluviatile_contig1.143.1 vs. uniprot
Match: A0A0R5QPG6_SACJA (Mannose-6-phosphate isomerase n=1 Tax=Saccharina japonica TaxID=88149 RepID=A0A0R5QPG6_SACJA)

HSP 1 Score: 384 bits (985), Expect = 1.330e-116
Identity = 190/217 (87.56%), Postives = 203/217 (93.55%), Query Frame = 3
Query: 5001 AHPDKKLAERLYATRPDLYKDDNHKPEMAVALSDFEGLCGFRPFEEIVFNLHRYPELRGLVSLSALRAMCSLPEDPEERREALRKLFQSYITAKPEVVATQVAALVQRLGERSQDDGGFASDGSSIDHTDEEEIDMEDIYGDGYEHPEKGELLLGRLKTEDHYVQDLMRRLSKEYPGDIGIMMPLLLNYLRMGEGESFFMAANEPHAYLKGDIMEVM 5651
            AHPDKKLAERLYATRPDLYKDDNHKPEMAVALSDFEGLCGFRPFEEIVFNLHRYPELRGLVSLSA+RAMCSLPED EERR+ALRKLF SYITAKPEVV TQV ALVQRLG R  D+ GF+SDGS +DHTD+EEID+EDIYG+GYEH EKGE+ L RL+ ED+YVQDLMRRLS EYPGDIGIMMPLLLNY+RMGEGESFFMAANEPHAYLKGDIMEV+
Sbjct:  113 AHPDKKLAERLYATRPDLYKDDNHKPEMAVALSDFEGLCGFRPFEEIVFNLHRYPELRGLVSLSAMRAMCSLPEDLEERRDALRKLFHSYITAKPEVVTTQVKALVQRLGSRV-DESGFSSDGS-VDHTDDEEIDLEDIYGEGYEHKEKGEMFLRRLRAEDYYVQDLMRRLSDEYPGDIGIMMPLLLNYMRMGEGESFFMAANEPHAYLKGDIMEVI 327          
BLAST of mRNA_P-fluviatile_contig1.143.1 vs. uniprot
Match: A0A835YY41_9STRA (Mannose-6-phosphate isomerase n=1 Tax=Tribonema minus TaxID=303371 RepID=A0A835YY41_9STRA)

HSP 1 Score: 368 bits (944), Expect = 2.000e-109
Identity = 197/360 (54.72%), Postives = 253/360 (70.28%), Query Frame = 3
Query: 5001 AHPDKKLAERLYATRPDLYKDDNHKPEMAVALSDFEGLCGFRPFEEIVFNLHRYPELRGLVSLSALRAMCSLPEDPEERREALRKLFQSYITAKPEVVATQVAALVQRLGER--SQDDGGFASDGSSIDHTDEEEIDMEDIYG--------DGYEHPEKGELLLGRLKTEDHYVQDLMRRLSKEYPGDIGIMMPLLLNYLRMGEGESFFMAANEPHAYLKGDIMEVMARSDNVVRVALTPKHRDVPLLCQILTYNMGAPPIVTPIQVDQFCHRFTPPIEDFELDDMRVPGGAEYTPVAIPVPSICMVLEGGGLATD--GVRETELRPGVVIFVAARSVATFKPAEGSS-LRIIRTHTNLN 6041
            AHPDK+ AE+LYA+RPDLY+DDNHKPEMAVALS+FEGLCGFRPF E+V++LHRYPELRG+VSL+A++A+  +PED   ++ AL KLF SY+ AKP V+ TQ+  L    G    SQ+ G       +     E+E+++E++ G        DG         +L RL+ E+  +  LM RL++EYPGDIGIMMPLLLNYLR+  G++FFM ANEPHAYL+GDIMEVMARSDNVVRVALTPK+RDVPLLC ILTY MGAPP+V P +V  +C RFTPP+ DFEL+ + +P   +++  +I VPSI +VL G G ATD  G  E EL  GV +FV AR    F+     + L +   HTN++
Sbjct:   89 AHPDKQTAEKLYASRPDLYRDDNHKPEMAVALSEFEGLCGFRPFHEMVYSLHRYPELRGVVSLAAVKAILDVPEDIGRQQAALHKLFVSYMKAKPAVIRTQLRLLDWHTGFALTSQNFGTIGEGLWNASAEAEDEVELEEMLGKVICLAAGDGECPGLTARTMLRRLRAEERSIHKLMLRLNEEYPGDIGIMMPLLLNYLRLEPGQAFFMGANEPHAYLRGDIMEVMARSDNVVRVALTPKYRDVPLLCDILTYKMGAPPLVLPRRVSPYCLRFTPPVADFELEVVTLPHAQQFSFDSIKVPSIFLVLGGTGWATDDDGGAEKELWSGVSMFVPARCAVNFRATSTDAPLLVAVAHTNIH 448          
BLAST of mRNA_P-fluviatile_contig1.143.1 vs. uniprot
Match: A0A835ZFA0_9STRA (Two component sensor histidine kinase n=1 Tax=Tribonema minus TaxID=303371 RepID=A0A835ZFA0_9STRA)

HSP 1 Score: 343 bits (880), Expect = 1.730e-99
Identity = 221/515 (42.91%), Postives = 273/515 (53.01%), Query Frame = 2
Query:  485 SPEFISLVNAQFGILSTALGVDRVVLFVRRENPETGTLEFVHAMEYPRRSPXXXXXXRARGTH--SPEGVAVYPGSSELL-LLDAAGRTMEADGWDTPGAQEGGDGGLSAPVLHASLLLGMITVFKKGAETWRLTPTTARLRRGPPAGRERSEALGS---TRDKMLLENVASSVAMAAVLDQKQRWAAVMQVEPLRRVVAESLHQVKNPMTALRTFGKLLLRRLPQDDTLNRELARDIMLQSDRLVDILLPVDAVLGLLATAVEREREALATPGMVDPYLAQREGFGATAAATAAXXXXEAATVSQVIAAADQVVVGELRGDVDTFGSNSQGGVQDALLSPSAQVAAVEESLALEERMSFGLISVEDVIRPVSSAAQAAAKERRVGFRWRVDNSLPRVIGDERALEEALSNVVDNALKFCNMGRGEGGRDGEARAIVVLSARLSTEEEWGADSGVVIEVVDNGPGIDAKDLPYVFDRGYRGRRALQCGIPGTGLGLGIARERMRSFGGDLEVANK 2011
            S E+ SLV  QF +L TAL V R  L  R+ENP TG LEF     YP +        + R      P  +  Y  ++ LL        ++ ADG +T  A E  DGGLSAP+++ SL++GM+TV       WR TP                   G+     DK LLE VASS+AM A LDQ+QRWAA  QVE LRR+++E+LHQ KNP+TALRTFGKLLLRRLP  D LNRELA DI+LQSDRLVD+LLPVD  LG LA                                                                      Q G  +                         L+ V+D + PV  AA+A A+  RV FRWRVD+ LP V G+ERAL+EA+SN+VDNALK+  M  G G    +AR +V+L  RLST+++WGA  GVVIEV DNGPGID  DLP VF+RGYRG   L+ G PGTGLGLGIAR+ MR+ GGD+ + N+
Sbjct:  108 SQEYASLVQTQFDLLVTALDVARCALGFRKENPATGELEFATIAVYPPKKRVWVVDAQGRSEQRTGPLELPGYTSAAALLPQYPFVSVSLSADGLETSAAVENTDGGLSAPLIYGSLVIGMLTV-------WRDTPPGGSGSXXXXXXXXXXXXXGTQWRNADKELLEKVASSLAMGAALDQRQRWAAAAQVEELRRMLSETLHQAKNPLTALRTFGKLLLRRLPAADGLNRELAEDIILQSDRLVDLLLPVDDALGALAAXXXXXXXXXXXXXXXXXXXXXXXXXX------------------------------XXXXXXXXXXXXWQSGAGE-------------------------LVFVQDAMEPVVRAAEAVAQASRVSFRWRVDDDLPGVYGNERALQEAVSNIVDNALKYVRMRGGAGEAPRDARPVVLLRVRLSTDDDWGASRGVVIEVCDNGPGIDPADLPRVFERGYRGGVPLRSGTPGTGLGLGIARDIMRAMGGDISINNR 560          
BLAST of mRNA_P-fluviatile_contig1.143.1 vs. uniprot
Match: A0A0R5QMD0_SACJA (Mannose-6-phosphate isomerase n=1 Tax=Saccharina japonica TaxID=88149 RepID=A0A0R5QMD0_SACJA)

HSP 1 Score: 307 bits (787), Expect = 3.920e-88
Identity = 177/370 (47.84%), Postives = 231/370 (62.43%), Query Frame = 3
Query: 5001 AHPDKKLAERLYATRPDLYKDDNHKPEMAVALSDFEGLCGFRPFEEIVFNLHRYPELRGLVSLSALRAMCSLPEDPEERREALRKLFQSYITAKPEVVATQVAALVQRLGERSQDDGGFASDGSSIDHTDEEEIDMEDIYGDGYEHPEK-------------------GELLLGRLKTEDHYVQDLMRRLSKEYPGDIGIMMPLLLNYLRMGEGESFFMAANEPHAYLKGDIMEVMARSDNVVRVALTPKHRDVPLLCQILTYNMGAPPIVTPIQVDQFCHRFTPPIEDFELDDMRVPGGAEYTPVAIPVPSICMVLEG--GGLATDGV--RETELRPGVVIFVAARSVATFKPAEGSSLRIIRTHTNLN 6041
            AHP+KKLAERL+A RPD+Y DDNHKPEMAV LSDFE LCGFRPF EI++NLH +PEL  LVSL A+  M +  +D E ++ ALR+LF+SY  A  E V TQV  LV RL         +ASD   ID  +  E +++  +G+G +  E+                    E L  R+K E+  V  +M RLS EYPGD+GI+MPL+LN L +  G++FFM  +EPHAYL+GDI+E MA S+NVVR ALTPK+RDV LL  +L+YNM AP ++ P  VD    RFTPP+ DFE++D+ VP    Y    +PVP++ + L+G  GGL  D    +E E   G + F+ A +  T    + S L I   HTNLN
Sbjct:  105 AHPNKKLAERLHAERPDVYADDNHKPEMAVTLSDFEALCGFRPFMEIIWNLHFFPELLALVSLEAVHQMMTAGDDVERQKFALRELFRSYNNAPEEKVRTQVDLLVARLD--------WASDIPRIDEVELVEGEVKMGHGEGRDEEEQKAQFTETMFDSRFRQGSLAAEALDKRMKKENPDVVRVMLRLSTEYPGDLGILMPLVLNLLMLKTGKAFFMTVDEPHAYLRGDILECMACSNNVVRCALTPKYRDVDLLVDMLSYNMAAPAVLHPHTVDDNRKRFTPPVADFEIEDIHVPANDVYGLEPMPVPAVLVTLKGTQGGLLLDEDTGKEIEAAAGGIFFLPANTHCTLVSGKLSELHIAMAHTNLN 466          
BLAST of mRNA_P-fluviatile_contig1.143.1 vs. uniprot
Match: D8LB30_ECTSI (Mannose-6-phosphate isomerase n=1 Tax=Ectocarpus siliculosus TaxID=2880 RepID=D8LB30_ECTSI)

HSP 1 Score: 307 bits (786), Expect = 5.820e-88
Identity = 176/365 (48.22%), Postives = 229/365 (62.74%), Query Frame = 3
Query: 5001 AHPDKKLAERLYATRPDLYKDDNHKPEMAVALSDFEGLCGFRPFEEIVFNLHRYPELRGLVSLSALRAMCSLPEDPEERREALRKLFQSYITAKPEVVATQVAALVQRLGERS-------QDDGGFASD--GSSIDHTDEEEIDMEDIYGDGYEHPEK-----GELLLGRLKTEDHYVQDLMRRLSKEYPGDIGIMMPLLLNYLRMGEGESFFMAANEPHAYLKGDIMEVMARSDNVVRVALTPKHRDVPLLCQILTYNMGAPPIVTPIQVDQFCHRFTPPIEDFELDDMRVPGGAEYTPVAIPVPSICMVLEG--GGLATDGV--RETELRPGVVIFVAARSVATFKPAEGSSLRIIRTHTNLN 6041
            AHP+KKLAERL+A RP++Y DDNHKPEMAV LSDFE LCGFRPF+EI++NL+ YPELR LVSL A+  M +  +D E ++ ALR+LF+SY  A  E V TQ+  LV+RLG  S       QD G   ++  G   +  DEEE+         +E   +      E L  R+K     V  +M RLS EYPGD+GI+MPL+LN L +  G++FFM  +EPHAYL+GDI+E MA S+NVVR ALTPK RDV LL  +LTYNM AP ++ P  +D    RFTPP++ FE++ + VPG   Y    +PVP++ + L G  GGL  D    +E     G + F+ A +  T    + S LRI   HTNLN
Sbjct:  105 AHPNKKLAERLHAERPEVYADDNHKPEMAVTLSDFEALCGFRPFQEIIWNLNFYPELRALVSLDAVHQMMTAGDDIERQKFALRELFRSYNNADKETVKTQIDRLVKRLGWASGIPVVGEQDPGTVETEINGHDAEEGDEEEVQKTQFTEQMFEARFRQGCPTSEALDKRMKDGTPDVVRVMLRLSTEYPGDLGILMPLVLNLLMLKTGQAFFMTVDEPHAYLRGDILECMACSNNVVRCALTPKFRDVDLLVDMLTYNMAAPAVLRPHIIDDNRKRFTPPVDVFEIEMINVPGNDAYRLNPMPVPAVLVTLHGAQGGLLLDEDTGKEIPAAEGGIFFLPANTYCTMVSGKTSDLRIAMAHTNLN 469          
BLAST of mRNA_P-fluviatile_contig1.143.1 vs. uniprot
Match: A0A6H5JXI6_9PHAE (Uncharacterized protein n=1 Tax=Ectocarpus sp. CCAP 1310/34 TaxID=867726 RepID=A0A6H5JXI6_9PHAE)

HSP 1 Score: 293 bits (750), Expect = 1.540e-85
Identity = 192/338 (56.80%), Postives = 219/338 (64.79%), Query Frame = 2
Query:  614 MEYPRRSPXXXXXXRARGTHSPEGVAVYPGSSELLLLDAAGRTMEADGWDTPGAQEGGDGGLSAPVLHASLLLGMITVFKKGAETWRLTPTTARLRRGPPAGRERSEALGSTRDKMLLENVASSVAMAAVLDQKQRWAAVMQVEPLRRVVAESLHQVKNPMTALRTFGKLLLRRLPQDDTLNRELARDIMLQSDRLVDILLPVDAVLGLLATAVEREREALATPGMVDPYLAQREGFGATAAATAAXXXXEAATVSQVIAAADQVVVGELRGDVDTFGSNSQGGVQDALLSPSAQVAAVEESLALEERMSFGLISVEDVIRPVSSAAQAAAKERRVGF 1627
            MEYP R P         G  + E  A    SSELLL  A G  M AD   +P A EGGDG LSAP++++SLLLGM+TVFK G    +    + R     P   E +  L   RDK LLE +A SV +AAVLDQKQRWAAVMQVEPLR+VVAESLHQVKNPMTALRTFGKLLLRRLPQDDTLNRELA+DI+LQSDRLVDILLPVDAVLGLLATAVERERE   + GMVDP+ AQRE F AT+A                                     ++  GVQDALLSP +    +EE++A E  M FGL+SVEDVI+PV+ AAQAAAKER  G 
Sbjct:    1 MEYPERPPPAWSMD-IHGVQTHEHHA----SSELLLPAATGHEMNAD---SPDAVEGGDGDLSAPIVYSSLLLGMMTVFKNGNGDGKARQPSTR-ENSAPKNIEEARVLWDERDKRLLETIARSVGVAAVLDQKQRWAAVMQVEPLRKVVAESLHQVKNPMTALRTFGKLLLRRLPQDDTLNRELAKDIILQSDRLVDILLPVDAVLGLLATAVEREREVQMS-GMVDPHAAQREDFAATSA----------------------XXXXXXXXXXXXXXDSTVDGVQDALLSPPSPTG-MEETMAYE-MMPFGLLSVEDVIQPVTRAAQAAAKERCGGI 304          
BLAST of mRNA_P-fluviatile_contig1.143.1 vs. uniprot
Match: D7FPP3_ECTSI (Mannose-6-phosphate isomerase n=2 Tax=Ectocarpus TaxID=2879 RepID=D7FPP3_ECTSI)

HSP 1 Score: 291 bits (744), Expect = 9.540e-82
Identity = 177/412 (42.96%), Postives = 221/412 (53.64%), Query Frame = 3
Query: 5001 AHPDKKLAERLYATRPDLYKDDNHKPEMAVALSDFEGLCGFRPFEEIVFNLHRYPELRGLVSLSALRAMCSLPEDPEERREALRKLFQSYITAKPEVVATQVAALVQRL-----GERSQDDGGFASDGSSIDHTDEE---------------------------------------------------------------------------------------------EIDM-EDIYGDGYEH-PEKGELLLGRLKTEDHYVQDLMRRLSKEYPGDIGIMMPLLLNYLRMGEGESFFMAANEPHAYLKGDIMEVMARSDNVVRVALTPKHRDVPLLCQILTYNMGAPPIVTPIQVDQFCHRFTPPIEDFELDDMRVPGGAEYTPVAIPVPSICMVLEGGGLATDGVRETE 5936
            AHPDK+LAERL+A RPD+YKDDNHKPEMAV LSDFEGLCGFRPF EIV+NLH YPELR +VS  AL+A+C   +D E +R AL+KLF S++     VV TQVAALV RL      E + DD   + +G  ID   E                                                                                              ++D  E+I+G  +   P+    L+ RL+ ED   Q +M RLSKEYPGD+GI+MPL+LN L +  G +FFM  +EPHAYL+GDI+EVMA S+NVVR ALTPK RDV LL ++LTYNMGAP ++    VD    R+TPPI DFE+  ++VP    Y   A+PVP + + LEGG    DG R  E
Sbjct:  103 AHPDKRLAERLHAERPDVYKDDNHKPEMAVTLSDFEGLCGFRPFYEIVWNLHAYPELRSMVSYGALKAVCKAGDDVERQRSALKKLFGSFVKCDKNVVRTQVAALVSRLEKNFPAEATPDDVSASMNGLKIDQAPEPLREVLAAKSAAGQDNGGAVPDEQKTLNKNPSMHLGGYVFKGGEQGGAPSPPPTLGTVPSFSVGSPSRDGADCDASVSSPPGAEERKRAEDVLADVDKSEEIFGKAFRGGPKAAAGLMARLQREDADSQRVMLRLSKEYPGDLGILMPLMLNLLHLKPGLAFFMTVDEPHAYLRGDILEVMACSNNVVRAALTPKFRDVNLLVEMLTYNMGAPAVLPAETVDACRKRYTPPINDFEIQILQVPANERYELEAMPVPVVMVALEGG----DGGRVIE 510          
The following BLAST results are available for this feature:
BLAST of mRNA_P-fluviatile_contig1.143.1 vs. uniprot
Analysis Date: 2022-09-19 (Diamond blastx: OGS1.0 vs UniRef90)
Total hits: 25
Match NameE-valueIdentityDescription
A0A6H5KTB4_9PHAE5.040e-20588.09Mannose-6-phosphate isomerase n=1 Tax=Ectocarpus s... [more]
D7G9E8_ECTSI6.100e-18662.00Two component sensor histidine kinase n=1 Tax=Ecto... [more]
D7FIF1_ECTSI1.250e-11990.70Mannose-6-phosphate isomerase n=1 Tax=Ectocarpus s... [more]
A0A0R5QPG6_SACJA1.330e-11687.56Mannose-6-phosphate isomerase n=1 Tax=Saccharina j... [more]
A0A835YY41_9STRA2.000e-10954.72Mannose-6-phosphate isomerase n=1 Tax=Tribonema mi... [more]
A0A835ZFA0_9STRA1.730e-9942.91Two component sensor histidine kinase n=1 Tax=Trib... [more]
A0A0R5QMD0_SACJA3.920e-8847.84Mannose-6-phosphate isomerase n=1 Tax=Saccharina j... [more]
D8LB30_ECTSI5.820e-8848.22Mannose-6-phosphate isomerase n=1 Tax=Ectocarpus s... [more]
A0A6H5JXI6_9PHAE1.540e-8556.80Uncharacterized protein n=1 Tax=Ectocarpus sp. CCA... [more]
D7FPP3_ECTSI9.540e-8242.96Mannose-6-phosphate isomerase n=2 Tax=Ectocarpus T... [more]

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Alignments
The following features are aligned
Aligned FeatureFeature TypeAlignment Location
P-fluviatile_contig1contigP-fluviatile_contig1:1884886..1910140 -
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 score591.3
Seed ortholog evalue5.9e-166
Seed eggNOG ortholog2880.D7G9E8
EggNOG free text desc.Histidine kinase-like ATPases
EggNOG OGs2CYMS@1,2S572@2759
COG Functional cat.T
Best tax levelEukaryota
Best eggNOG OGNA|NA|NA
Hectar predicted targeting categorymitochondrion
Exons14
Model size8273
Cds size2058
Stop1
Start1
Relationships

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

Feature NameUnique NameSpeciesTypePosition
mRNA_P-fluviatile_contig1.143.1prot_P-fluviatile_contig1.143.1Porterinema fluviatile SAG_2381polypeptideP-fluviatile_contig1 1900735..1910103 -


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

Feature NameUnique NameSpeciesTypePosition
1622815294.6351166-UTR-P-fluviatile_contig1:1884885..18875131622815294.6351166-UTR-P-fluviatile_contig1:1884885..1887513Porterinema fluviatile SAG_2381UTRP-fluviatile_contig1 1884886..1887513 -
1693561433.2904234-UTR-P-fluviatile_contig1:1884885..18875131693561433.2904234-UTR-P-fluviatile_contig1:1884885..1887513Porterinema fluviatile SAG_2381UTRP-fluviatile_contig1 1884886..1887513 -
1622815294.6460695-UTR-P-fluviatile_contig1:1888018..18882851622815294.6460695-UTR-P-fluviatile_contig1:1888018..1888285Porterinema fluviatile SAG_2381UTRP-fluviatile_contig1 1888019..1888285 -
1693561433.2994583-UTR-P-fluviatile_contig1:1888018..18882851693561433.2994583-UTR-P-fluviatile_contig1:1888018..1888285Porterinema fluviatile SAG_2381UTRP-fluviatile_contig1 1888019..1888285 -
1622815294.655211-UTR-P-fluviatile_contig1:1889275..18908051622815294.655211-UTR-P-fluviatile_contig1:1889275..1890805Porterinema fluviatile SAG_2381UTRP-fluviatile_contig1 1889276..1890805 -
1693561433.307419-UTR-P-fluviatile_contig1:1889275..18908051693561433.307419-UTR-P-fluviatile_contig1:1889275..1890805Porterinema fluviatile SAG_2381UTRP-fluviatile_contig1 1889276..1890805 -
1622815294.6683683-UTR-P-fluviatile_contig1:1891216..18920541622815294.6683683-UTR-P-fluviatile_contig1:1891216..1892054Porterinema fluviatile SAG_2381UTRP-fluviatile_contig1 1891217..1892054 -
1693561433.317672-UTR-P-fluviatile_contig1:1891216..18920541693561433.317672-UTR-P-fluviatile_contig1:1891216..1892054Porterinema fluviatile SAG_2381UTRP-fluviatile_contig1 1891217..1892054 -
1622815294.678589-UTR-P-fluviatile_contig1:1899819..19007341622815294.678589-UTR-P-fluviatile_contig1:1899819..1900734Porterinema fluviatile SAG_2381UTRP-fluviatile_contig1 1899820..1900734 -
1693561433.3263655-UTR-P-fluviatile_contig1:1899819..19007341693561433.3263655-UTR-P-fluviatile_contig1:1899819..1900734Porterinema fluviatile SAG_2381UTRP-fluviatile_contig1 1899820..1900734 -
1622815295.672006-UTR-P-fluviatile_contig1:1910103..19101401622815295.672006-UTR-P-fluviatile_contig1:1910103..1910140Porterinema fluviatile SAG_2381UTRP-fluviatile_contig1 1910104..1910140 -
1693561434.2057414-UTR-P-fluviatile_contig1:1910103..19101401693561434.2057414-UTR-P-fluviatile_contig1:1910103..1910140Porterinema fluviatile SAG_2381UTRP-fluviatile_contig1 1910104..1910140 -


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

Feature NameUnique NameSpeciesTypePosition
1622815294.688583-CDS-P-fluviatile_contig1:1900734..19010051622815294.688583-CDS-P-fluviatile_contig1:1900734..1901005Porterinema fluviatile SAG_2381CDSP-fluviatile_contig1 1900735..1901005 -
1693561433.33399-CDS-P-fluviatile_contig1:1900734..19010051693561433.33399-CDS-P-fluviatile_contig1:1900734..1901005Porterinema fluviatile SAG_2381CDSP-fluviatile_contig1 1900735..1901005 -
1622815294.6972406-CDS-P-fluviatile_contig1:1901265..19014051622815294.6972406-CDS-P-fluviatile_contig1:1901265..1901405Porterinema fluviatile SAG_2381CDSP-fluviatile_contig1 1901266..1901405 -
1693561433.3430488-CDS-P-fluviatile_contig1:1901265..19014051693561433.3430488-CDS-P-fluviatile_contig1:1901265..1901405Porterinema fluviatile SAG_2381CDSP-fluviatile_contig1 1901266..1901405 -
1622815294.7084677-CDS-P-fluviatile_contig1:1902050..19021201622815294.7084677-CDS-P-fluviatile_contig1:1902050..1902120Porterinema fluviatile SAG_2381CDSP-fluviatile_contig1 1902051..1902120 -
1693561433.3504527-CDS-P-fluviatile_contig1:1902050..19021201693561433.3504527-CDS-P-fluviatile_contig1:1902050..1902120Porterinema fluviatile SAG_2381CDSP-fluviatile_contig1 1902051..1902120 -
1622815294.7248147-CDS-P-fluviatile_contig1:1902921..19030751622815294.7248147-CDS-P-fluviatile_contig1:1902921..1903075Porterinema fluviatile SAG_2381CDSP-fluviatile_contig1 1902922..1903075 -
1693561433.5719268-CDS-P-fluviatile_contig1:1902921..19030751693561433.5719268-CDS-P-fluviatile_contig1:1902921..1903075Porterinema fluviatile SAG_2381CDSP-fluviatile_contig1 1902922..1903075 -
1622815294.7395205-CDS-P-fluviatile_contig1:1903279..19035501622815294.7395205-CDS-P-fluviatile_contig1:1903279..1903550Porterinema fluviatile SAG_2381CDSP-fluviatile_contig1 1903280..1903550 -
1693561434.138799-CDS-P-fluviatile_contig1:1903279..19035501693561434.138799-CDS-P-fluviatile_contig1:1903279..1903550Porterinema fluviatile SAG_2381CDSP-fluviatile_contig1 1903280..1903550 -
1622815294.7485456-CDS-P-fluviatile_contig1:1904181..19042891622815294.7485456-CDS-P-fluviatile_contig1:1904181..1904289Porterinema fluviatile SAG_2381CDSP-fluviatile_contig1 1904182..1904289 -
1693561434.157482-CDS-P-fluviatile_contig1:1904181..19042891693561434.157482-CDS-P-fluviatile_contig1:1904181..1904289Porterinema fluviatile SAG_2381CDSP-fluviatile_contig1 1904182..1904289 -
1622815294.7587283-CDS-P-fluviatile_contig1:1907780..19079091622815294.7587283-CDS-P-fluviatile_contig1:1907780..1907909Porterinema fluviatile SAG_2381CDSP-fluviatile_contig1 1907781..1907909 -
1693561434.169688-CDS-P-fluviatile_contig1:1907780..19079091693561434.169688-CDS-P-fluviatile_contig1:1907780..1907909Porterinema fluviatile SAG_2381CDSP-fluviatile_contig1 1907781..1907909 -
1622815294.7701433-CDS-P-fluviatile_contig1:1908111..19081971622815294.7701433-CDS-P-fluviatile_contig1:1908111..1908197Porterinema fluviatile SAG_2381CDSP-fluviatile_contig1 1908112..1908197 -
1693561434.179425-CDS-P-fluviatile_contig1:1908111..19081971693561434.179425-CDS-P-fluviatile_contig1:1908111..1908197Porterinema fluviatile SAG_2381CDSP-fluviatile_contig1 1908112..1908197 -
1622815294.7793927-CDS-P-fluviatile_contig1:1908799..19090751622815294.7793927-CDS-P-fluviatile_contig1:1908799..1909075Porterinema fluviatile SAG_2381CDSP-fluviatile_contig1 1908800..1909075 -
1693561434.188267-CDS-P-fluviatile_contig1:1908799..19090751693561434.188267-CDS-P-fluviatile_contig1:1908799..1909075Porterinema fluviatile SAG_2381CDSP-fluviatile_contig1 1908800..1909075 -
1622815294.7887688-CDS-P-fluviatile_contig1:1909550..19101031622815294.7887688-CDS-P-fluviatile_contig1:1909550..1910103Porterinema fluviatile SAG_2381CDSP-fluviatile_contig1 1909551..1910103 -
1693561434.1971073-CDS-P-fluviatile_contig1:1909550..19101031693561434.1971073-CDS-P-fluviatile_contig1:1909550..1910103Porterinema fluviatile SAG_2381CDSP-fluviatile_contig1 1909551..1910103 -


Sequences
The following sequences are available for this feature:

protein sequence of mRNA_P-fluviatile_contig1.143.1

>prot_P-fluviatile_contig1.143.1 ID=prot_P-fluviatile_contig1.143.1|Name=mRNA_P-fluviatile_contig1.143.1|organism=Porterinema fluviatile SAG_2381|type=polypeptide|length=686bp
MKRRRRLSSNVAEVVVFTRLLGGGSLCLQTLHRPAVGGHRVHARSHCRND
RGRGGDGGGGRVCTSRRTGFSLNAASAVPRPVTIATPFHGLVRRPARPAP
LQLSREATTADDNGGTGGDNPRTSGTDQQGCTGGGRHEPSAVDIEAMGGS
PEFISLVNAQFGILSTALGVDRVVLFVRRENPETGTLEFVHAMEYPRRSP
PPPPPPRARGTHSPEGVAVYPGSSELLLLDAAGRTMEADGWDTPGAQEGG
DGGLSAPVLHASLLLGMITVFKKGAETWRLTPTTARLRRGPPAGRERSEA
LGSTRDKMLLENVASSVAMAAVLDQKQRWAAVMQVEPLRRVVAESLHQVK
NPMTALRTFGKLLLRRLPQDDTLNRELARDIMLQSDRLVDILLPVDAVLG
LLATAVEREREALATPGMVDPYLAQREGFGATAAATAAAGAAEAATVSQV
IAAADQVVVGELRGDVDTFGSNSQGGVQDALLSPSAQVAAVEESLALEER
MSFGLISVEDVIRPVSSAAQAAAKERRVGFRWRVDNSLPRVIGDERALEE
ALSNVVDNALKFCNMGRGEGGRDGEARAIVVLSARLSTEEEWGADSGVVI
EVVDNGPGIDAKDLPYVFDRGYRGRRALQCGIPGTGLGLGIARERMRSFG
GDLEVANKDDDGGGWGTGVKLYLPRDQRILDENEE*
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mRNA from alignment at P-fluviatile_contig1:1884886..1910140-

Legend: UTRpolypeptideCDS
Hold the cursor over a type above to highlight its positions in the sequence below.
>mRNA_P-fluviatile_contig1.143.1 ID=mRNA_P-fluviatile_contig1.143.1|Name=mRNA_P-fluviatile_contig1.143.1|organism=Porterinema fluviatile SAG_2381|type=mRNA|length=25255bp|location=Sequence derived from alignment at P-fluviatile_contig1:1884886..1910140- (Porterinema fluviatile SAG_2381)
GCTACAACAAGCCAGAGAGCGCGCTCAACCGAACAAGATGAAGAGACGAC GAAGGCTTTCATCGAACGTTGCGGAGGTCGTGGTGTTCACTCGACTGCTC GGAGGTGGAAGCCTGTGTCTCCAAACTCTGCACCGGCCCGCTGTCGGCGG CCACCGAGTACACGCCAGGTCACACTGCCGCAATGACCGTGGTCGTGGCG GCGACGGCGGTGGTGGCCGTGTGTGCACGTCAAGGCGCACAGGATTTTCT TTGAACGCAGCCAGTGCGGTGCCCCGCCCTGTGACCATTGCCACCCCGTT CCATGGCTTGGTACGGCGCCCGGCACGACCGGCGCCCCTGCAGCTCAGCA GAGAGGCAACCACTGCCGACGACAACGGCGGGACCGGCGGCGACAACCCA AGGACGAGCGGAACGGACCAGCAAGGTTGTACAGGAGGAGGAAGGCACGA ACCATCAGCGGTTGACATTGAGGCAATGGGAGGATCCCCTGAATTCATCA GCTTGGTTAACGCACAGTTCGGCATTCTATCCACGGCGTTGGGCGTGGAC CGCGTCGTCTTGTTCGTGCGGCGGGAAAACCCCGAGACTGGTGAGGGTTG CGCTTCACACCTATTTACGATTTGCACGCTTTAACAATACAAGGCGGTGG AGGCTGTGATCCTCTTGCAGTTACGACAGTCAAGAGTGCTGAACGATTGT GTTTTGGAGGGCATGTATCGCCGCTTGCCGCCATCGTCGTGGATATGCGT TTTGGTTTGAGACTTTCCGATCCCGTTGCGTACGATGACACGACGCGCTG TTTTTTGTCGGAAAGACAGCCACATCCACTCCGATCTCGACGCGTCAGAG ATAAGTCGATGTTGGACATGACGCAATTCATCGAGCCTTGACAGATCGTC GTTTTTCTCCGGTGCGGATGCGAGCCACTGCTGTAGCAGCAGCTCGACCA CGCCTTCCTAATCTCGCCATTTACCCATTCCTCGAAAAACTTCTACATCG ACAAACAATCAACTGCACACTACACCATCAGTCTATGGATCTGTGTCCCT ATGCGTGCATTACAGGAACCTTGGAGTTTGTCCATGCCATGGAGTACCCC CGGCGATCGCCGCCGCCGCCGCCGCCGCCGCGCGCGCGTGGCACACACTC GCCGGAGGGCGTGGCCGTTTATCCCGGCAGCAGCGAGCTCTTGCTACTAG ACGCGGCGGGGCGGACCATGGAGGCTGATGGCTGGGATACTCCTGGCGCG CAGGAGGGCGGCGACGGCGGGCTCAGCGCGCCCGTCCTGCACGCCTCCCT TCTGCTGGGGATGATCACCGTGTTCAAGAAGGGCGCCGAGAGTCTCCCGA AGTGGGAGGGGGAAGGGCACGGGCGGGAGGGCGCTCTCCAGGACGGGCTT GACGGGAACAACACGGGGAGAAGGGGGGGGGGAGAGGGGGCGGAGGCAGT GTCGGCCGGCGAGACTCTGACGACCGAGGGAGGGCACACAGAGGCTCCTG CTGCAGCTGGTGGTGCTGCCGCTGCCGATGCCGCTGCCGCTGCTGCCGCT GCCGCTGCTACTTCTGCTGCTACTTCAACCACCACCGCTACTTCTACCGC TAATTCTTCTGCAGGAGCAGTATGGGACGAACGAGTGAGTCAGTCGTGAG GGGGAGGGCATGAGGGCAACGAAGACAGAGGGGAGGAAGTGAGCGTTTGT TTGTTTGTGATGAGGCGCCAGTTGCCCTAAACGTTGGTCTACTTGTGCGC TTGAAGGTTGAAAGAGGCCACTGGCAGGTCAACCGCCGGACTTGCTGTCC ATCCAGCTGCACTGCCTGCATCATGTTGTGCGTGGGGTAGACGAGAGAAT CGGCTGGCGGTTGGGGATCGAGCTTCCCCGGTCCATTTCTGCCAAATGGG CACCTGCACACAGACTTACTTCGCAATATCACACACGAGCGAGCGTGGCG GCTCACACCGACAACAGCAAGACTGAGACGCGGCCCCCCTGCGGGACGTG AGAGGAGTGAAGCCCTCGGCTCAACACGAGTGAAGTTAGCTTTCGCAACA GGACTGGAGTTGATATGGTTTGGGGCTGTTCAGCCCCTCAGCTGTTGTAC ACAGCATGAGCAGGAAAGCAACAGCTGCCAGCGCTGTCTGCTCCAAGGAT GCGACCAATCGAATGGATGAACCAACGTCTGCTTGGCTCGGGAAGGGCTA ATCTCCGCTGACGCGGTGGCTGATTTCTCAGGATAAAATGCTGCTAGAGA ATGTCGCTTCTTCGGTGGCGATGGCCGCCGTGCTGGACCAGAAGCAGAGG TGGGCGGCGGTGATGCAGGTCGAGCCCCTCAGGAGAGTCGTCGCGGAGTC GCTTCACCAGGTCAGTCAAGATGTTATCATCTGCTTGCTCGCCCGTGCTG CATGGAGGAAAGCATACCCGTAAACTTGGTTGGAAGGGAGTGAAGCCAAC CCCCCCCCCGAATGGCACATAGCAGGTGGCCACCGGCGTCCGGCATTATT TTACGTTCGGGTGGATTGCATATGTTCGAGTGGATTGCTTGTTTTTTTCC GTTCGGGTGGATTGGTGTTCACGGTGGTATATACCGGGCGCTTGGCCTGA GAGTTTCCCCCCCGGTCGTGCGCTCTTGCTCGACGTTGTCGGGTCAGTGA AGGCGTCATGGGCGGTCGTGCCTGTCGGGGGATTGGTCTTGTTAAAATAT TCAATGTCAAGTCAAGCACATATTTCACTACTGTATAGCTGCAGCAGTCA TGTTCGAGGTTTTGCCGTAGTTGTCTTCGGTTAATTGCAGTGGCCATCGG AGCATTGTATCTTTCGTTGAACCAAGGGTAGGCCAATAGCATTGGTGGAA CTGTACATCGTTCCTTAGGATCTTCTATCATCGTTGCTCGCGGGCGGACT TACCGCCCGGTTGTGTCTGTGTCAAGAGCAATAGCCCGTGTGTGCATCAA ACCGAGATGTGAGGTGACTCGACCCTTGTGGGAATCACCCCACCTGCTCA CTCTCCCGCTTTTTCTTGTCTTGGCCAAATGAGCGCCATTCTCAAACTAT CTTCTCTACTGTTTTTACACAAGTGTACTTCACCGTCACTCTGTGAGCCT CTGCACACTGTGTGCAAGACAGTCGCCACACCACGGGATACCATCAAGCT CGAAATCCGATTTCATGGCCGTCAACAGCACCGCCAAAAACGTCGTCTAC TTCTCTTCCATGATTGGGGAACTCGGATGGGCGAAACTTCCGCCTTTTTT CTCCTCGTGGATGACCGCGGCGCTCTTTTCCAAGCATCAAGAGGCAACGT CTTGTCACGTTCGCGGCACGTCGCTGTTCGCCATGCCGCGGTCAGGGACT GTATAACCGCAGGAACCATCCAGCTGGACTTCGTCGGCAGCAAAGCATGC TATTTAATAGCCGACATCTGACGAAGTTCTGCGCTTGTGACGTACAAGGC TCAATCATGCAGCAACTTCCGACTTGAAGTACAAACATCAGGGGATTCCG TCACCTGCATCTTCTTTTGGGGTAGCATCTCATGAGCAGCTATTCCGCCG TATCATTTTCCACCGCATTTCTGAAACTGCAAGAACGTTTCTACGGAACA ACGGCAACCTGGGAGAAGCCGTCGCGCACAACGGGCCGGAGCAGCTCATG AGGGGGAGAGTCCTTTACAAGATCATCAGCAGCCCTCGTGCCTCAAAAAC TTTCCAGCGACGTTCTCCAAATCAGCGATCATCCGCACCAAGCAACCATC CGCGTACCGGAATCACCGACACTATGGCAAACCAAACACCCAGCCTCTGC ACATCTCAATCACGCTTTAGCCTTGCCACCTGCTTTATTTCAATCTCCAT CTCCAGAGTACAACAGCAACACCATGGAGTACTCTGCACAGTACAACCGC CGCAGCGGCAGCCGAGCGAATTGCAGACAACAGCAGCGCCAGTTACGCCG GAACGCAAGAGAAGCCACAAGCGCTTCAGCAGCGGCACAGCGGCGCATAA ACCTCGACGATGGCAATTACCTATCCTACCACCAAGGACTTCTTGGAGTC ACTTCAGCACCCCCACGACCGCCAAGACACCCCCTTCGCGATGGACAACT GCATCGCCAACTCCTTCCTGAACGGAAGGATGCAAGAAGGATCGTTCGAC GTCCCGACGAGCACGAAGGTCTTGAACGGCATGATCGTCAAGCCTTCGTC AAATAAGTGGGCAGAATCTCACACCATCAGACTAAGTAAGGTCGCAACTA CGAAGATATCGTAGCCGAAAAATTTTCTTCTGATTTGCATTCTGTAACCA CTCTGATGGCACCACAGCATTTCGTACAAATTATCTTCAGTACATGCAGT CCCCTATGTTCAGTTCACTGATTGGTGCATAGGAGAGCAGATTCTGTTTT CTAGCCAGCACTTCAGATGCATTAAGCCTTCGTATTTCTTTGCCATGATA CCTGAATTCTCTTTGAAAATCAGCAGTCTTGACCAACAATTGCCTTCTAT TTTCAGCGTTTGACTGGGTGTAGGACACGAGTTAGTAGCGGTAAATCCTT CCAACGCAATTCCACCTCGCAAGTAGGTATACATTCCAAGGATCTTTATA TCCTTTTTTTCTTTTGTGTTGAAGTTTCTTTGCGCATTTTCTTTGGATTC CTTGATTCGTTGTCTTGATTTCTACAAGGAGTTAGCGTGGACTTCCTGCC ACGGGGGAGGGTTGGAATGTCCATGGCATGTCCAGTAAACCTTGCGCTGC TGCATAGCTGCACCAGCTGTGAAGCATGGGGTTTGCCGTAGTTGTCTTCG TTTAATTGCAGTGGCCATCGGAGCATTGTATCTTTCTTTGAATCAAGGAT AGGCCACAAGCATTGGTGGAACTGTAGATCGTTCCGTAGGATCTTCTATC ATCGTTGCTCGCGGTCGGACTAGCAGCCGGGTTGTGTCTTTGTCAAGAGC AATAGCCCGTGCGCGCATCGTGCCATCGTGCCGAGATGTCAGGTGACGGC TCGCCCCTTGTGGGAATCACCCCACCTGCTCACTCTCCCGCTTTTTCTTG TCTTGGCCAAATGAGCGCCATTCTCAAACTATCTTCTCTACTGTTTTTAC ACAAGTGTGACCCACCGTCACTCTGTGGGCCTCTGCACACTGTGTACAAG ACAGTCGCCACACCACGGGATACCATCAAGCCACCGCCCGGGTATTCCAA AAGGTCGCTCTCCCTCCGCGCGAACAATGCGATCTTGTGTCGTTGTTGTG CTCAACAGCGCGCGTGGCGGTGGCGATGGCGGTGGTGATGATTGCACGGA GTCCGCCACAGGCTCGCGGCAGCAGTAAGTGGGACGTATGGTGTGGATGG ACCCAACTGCTGTGCGCTGCCGCACCACACCCGATCACGTCGGGCAATGT CCGGCCGCTCTCAGCTTTTTTTCGGACATTTGAGTGGCTTTGTACAAACT TTACAGGGCGCTGACCTGAGCGCGAAACCAGGGGAGGGGAGGGAGGCAGT GTACCCGCCATCATGGCTGCCATATTCATTGGATCAGAAAGTGCGCATCC CAACGGAGCCGCGCGCCGGGTCCTCATCAGGCCATACTCGCATCCATCAA GCGTGAAGCGCCGTGGTGCAGTCGACGAGTCGCATGCGAAGCGAGCTGCA CCCCACCAAGATTGTCTGGCCCAACGGACAGGGCGTTCTTCGTGCCTTTG CGTTTGAAACGAATTGGTCGGCTTGCGCCGGGCGTAAGGTAGGAGGGGAT CTCGACCGCACGTCAAGTTGATCAATGGCACTTCACCGGGCGTTGTGTGC TACTTACATTGCTGCTGTGCCTCGCAAAACGTGCTGAAAAAAAACAAAAA GGTGAAGAATCCCATGACGGCGTTGAGGACGTTTGGCAAGCTGCTGCTCA GAAGGCTGCCGCAAGACGACACGCTCAACCGCGAGCTGGCGAGGGACATC ATGCTGCAGGTGAACACCCCGGCCACGCTTGCGAGGTGCTTCTCTGTGTT GTTACCTTCGCCCGCCTTGCGCATGCACCAACTGTTCCGATGGTTGTTCT TCTCGCCATGCCGGACATAAACTCGGTTTGGGTTGACAGGGAAGAGGGAG CTGGGCTGCCTTTGACTGATTCATGTTAGCCATTTTGAGTGCAGGCTCAA GAGTTTTGAAGGGTTCGCGCTCTGGTGGACAGGAAAAACGTTCGAGACAC AGACCGTCTTTGTTGGAGTTCATGCGTATGTCAAGCGTAGGCGCATCTGT CCGCTCTTACGCCGATGTTACCGCCTTGGTTCTCCCGTCCGCGGGCGATT CTGGGGTGTCCTCCACGTTGCTGCTGCATTCCCTCCCCCCCCCCCCTGCC CCGACCCCCCTCGCGGGCTGTGTTGATTCAGTCCTCCCTGTTCCCTACAC CTCTCTCACAACTACCCAAATCGTCGAACCTCGACGAATCAACTCAAAAG TGTGGTCTGCTCGATTACTGTGTCCGTGCCCCTGCTCTCGGCCGCTCGTC TTGGCTCCGCTTGGGCCACCCCTCCTTGATGGCGGCGGTGGCGGCGATGG GGCTGGCGGCGGCGTTCGTGTTGGTGACGGTGGTGGTTAGTCGGACCGCC TCGTCGACATTCTCCTTCCGGTGGATGCGGTGCTCGGCCTGCTGGCCACC GCCGTAGAGCGAGAGCGAGAAGCGCTAGCGACGCCGGGCATGGTCGACCC GTACCTAGCACAAAGGGAGGGGTTCGGTGCCACCGCCGCCGCCACCGCCG CCGCCGGAGCAGCAGAAGCAGCAACAGTTTCTCAGGTTATTGCCGCGGCA GATCAGGTCGTGGTGGGGGAGCTGAGAGGGGACGTCGACACTTTTGGGAG CAACTCCCAAGGTGAGCGGTGCCTGCCAACGGCGCGGTAGAGGAGTGCAG CGTGATTTAGTTGCCGTCGCCGCACTGGACATGAATCAAGTGTTTCTCTG CCCCTGCGCCTTTCATGTGTACTCGTATTCACGTCCGTAATAAGAAATCG TTCATATGGCGCCTCGCAAGTAATGAACGGCAAGTAACCTTTTCGCCCCT GTGTTCTCGCTGCAGGGGGGGTGCAAGACGCTCTGCTCTCGCCATCAGCG CAGGTTGCGGCGGTGGAGGAGTCCCTGGCCTTGGAGGAGAGGATGTCGTT CGGGCTGATCTCCGTGGAGGACGTGATTCGGCCGGTCTCGAGTGCGGCGC AAGCGGCCGCGAAGGAACGGTGAGATGGGCTCGGGTGCTTTTGCTGAGTC CTCCGTTGCCATCAGTCGTCCAATGGTCTGGACGTCTCCTTGTTCTCTCC TCTGCTTGACGCGGTGTGGTATCCACTTTACCGCAAGATTAACGGATTGA ATGGCTGACCCGCAATCCACGGAAGTTTTCACACGTCGAAATAGTCGCGA TCGAGATTGCCTTCGTTGGCCGACCCCGGAAAACGCGTGCAGATCATCAA AAGATTGCGATGAGCCTGTTAGACAAACATGTTTAAACGATCTACCTTGT GGATGTCAGGTGTAGAGCGCGACGTTCCCACGCGTACCACACTTACACAC AATGATTTCCATCGGGTGGTTCCACGGAGCGTCGTGTCGCAAGAAACTCC GCTTAAGAGTCGACTCTTCCCGTGCATTTTTCTGCGTGATGATGGTACGA ATCTCCCCAAGTTTGCTCCGACCCTCAATCCCCTTCCCGGACCTCGTCTC TCTCCGTAAGCATCTACAGAGAAAGTCAGCCTGCCCTTGGTAGGGATAAA ACTCCGCATCAGACCGGTCGCCACCACCGCGCGAAGTCTTGTACCACCAC GTGGCTCCTGTAGCTAGCTTCCTCAACCGGCAAGCCAAATATGTGGTGTG TGTCATCAGATCGTCGATCGCAAAATATTTTCGATCAGGAGTAGGTGATC ATGATTTGACGATCTGACCTGCCCGGCGTGCGCAAGTGTTGAAGCCTTTC GGGTTTGTTTGACCTCTCGTTCCGTCGGCCGATCGCCTTCTGACAGCCGT GCTGCCGTCTCTCTGTCCAGGCGAGTGGGGTTCAGATGGCGAGTGGACAA CAGCCTACCCAGAGTCATCGGCGATGAGCGGGCGCTTGAGGTACCGTGAA GTCGGCTTGGGTGGGAACAGGGTGATCGCCGTCGGATCGCGGTGTTGCGT GGTCGCCCCGAGCAATTGGTCGTGTGTGTTGAACCGTGATGTTGCTGAGT GTGTGGGAACAAGGCATATACTGCCGTCGAAATCCGTCTTGAGCGTGCTT GGGCTAAAATTTTACACTTTTTCAATTACCAGTTCGCAGTGGTGCGGGGT CCCTAGCGAGTAGTACGGTAGAACCTACTGTCGGTTAACCTTGCCGCTGG GGATCTTTACTGAGCAATAGCACCTCGCTGCACGGCTTGTGCGCAGTCGC TGGATGTAAAAATGTTGAAGACAAGTGGTTCGTGGTCGATGCGTCATTGT TGATTGGCTAGCTGAGCTCAATTTATGTGGGGTGATCCCATTTGTTGGTA ACGTCGCGTGTCATGCGCATCCCCCCTTACTTTGGGATACTCGCTTGCGC ATCATGACGATGAACAGCAAGCCTTGTGCACCTCTTCCTCGTAGCCAATC TATCGCTTATCTTCGCGCCAGGGAGATCTTTCTATCCGGGAACCGCTAAT CATTCCAAATCGACATGCCCGCCCGTCTGCTCAGGACAACTGATGATGAG ATCTTCGCATGCTTGTGTCCGCGAAACATTTTCAGGAGGCCCTATCCAAC GTGGTGGACAACGCGCTGAAGTTCTGCAACATGGGGCGTGGTGAAGGCGG CAGGGACGGGGAAGCTCGGGCGATAGTTGTTTTGAGCGCCCGCCTCAGCA CAGAGGAGGAGTGGGGTGCCGACAGGTGTATCGGCGTTTTTTTTTTGCCA AATCGCTCTGCATTTTGCCCCTCCCCCCGTCTTGTCGGTCCTCTGACCGG CATTCCCTCAATATTTTGGCGTTTTTATTTATTTTCTTGGACTATCCAAC AGAGTTTAGTCTGTCTGCTGCCACATTCGCTCGACCGGCTGGTTTAAGAA TCCCCACATGTTTCCCCTGCTGAGCCCGTATGAATATCCTTTTTCGCCGG CCGGCTTCGCGTTTTTCTGCTTCACTTTCATTCAGCGGCGTCGTGATCGA GGTGGTGGACAACGGGCCCGGCATCGACGCGAAAGACCTGCCGTATGTCT TCGACCGCGGGTACAGAGGGAGGCGGGCGCTGCAGTGCGGGATACCGGGC ACGGGCCTCGGGTTGGGCATTGCCAGGGAAAGAATGCGCTCCTTCGGCGG CGACCTCGAGGTCGCGAACAAGGACGATGACGGCGGGGGCTGGGGGACCG GGGTGAAGCTTTATCTTCCACGGGATCAGAGAATACTAGACGAAAACGAG GAGTGAACGCGCCGATGAATAGCTGTTGGATGTAATTAAGGAGCATCGTC TGAGACTGGACAGTTGAGGATTGATTTCAGTCGGTCCGTCCACAGCAGGC AAGGTCGGCGGATATTCTTTTTTTTTGTACGTGTGACGGGGGCGGTTATG AATGCTTACTACCTGTGTTTTGCCTTCCATTGTCATCGTATTCGGCGTCG TCGCGGGAGATTTTGTTCGCCCTGCTCTTTCAATACGGAAGAAACCGGCG ATCATATGCAAGACGACCGCGACAGACGTGTGTCTGGTATAATACAGCAG CAACAGCGTCCAGGATCTGCTGCGAGAGCGGCCTCCTGTGGCCTACTGCC GCCGAACCTTTTTGGAGGAGGCTGCAGAAGACAGCACTCTGACGCGCCGC CCCTCTTCATCGATATAATATTTCTGGTGTCTTTCTCTACGTCCGGTTTT TCTAGGACCTCGTTTTCCTCGAGCTCAAAAAGGCACGACGCATGGGCACA AACGTGAATACCGATAAAGGGTGTTGGACGTACTCACAGCATAGACAGAT TATTTCAAGCAGAGAACTTTCCAGAGAGATGGAGCGGGAAGATTGGGGGT TCAACAGATGATTTGGTGGTACCAACTTTGCCACAATTATGGAATTAGGG GATGTGTGTGTCTGCAACGGATTGGTGTGGTGTTTCGCCGATGTTTACTC CTCTTTTTCCTTCTACTTCTCCTTGTTTTAATCGAGTTTTTATCCCGGCT TCTACGCCAACCCGGCTTCCACGCCACCCCGGCTTCCACGCCACCCGGAC TCTCACGTCCCTGTTTATACTTCTTTCCCGTGGCTTTCACGCCACCAGGC TTTCACGCCGTACCCCGGGTTTTCACACCCTTTTCCCGAGCTTTCACGCT CCACCACAAAGTAGGGCCCAGGCTTCCACGCCTGCGGACAGTTCTATATT TTACCGTTCAGCGGCTACAACGCCGGTTCTTCTTTTCTTTTCTTCACCGG GATCCCGTGCCGGAGCCACAACTCTACAACTTCACTTCACACGCTAGCGA TCGATCGAGGGAGTGATTGCTGTGACTTCGAGCGCGATATGTCGGATGGA GAAGAAGATAATCAACCTTCGCGGGATCCAGGCCAGGGCGCCCCTTCCCG CGGGGATGCCGCTACCGGAGGAAGAAATTCTTTCTTCGGCGGCGATGGAC AACAACAGCAAGATGCGAGAGCTGCTGGGAGCGATGGGCAACAGGAGACC TTTGCGGCGGCGTTCATGAACTTGATACGGGACGCCGTCAACTCCCAGCA GCACCAGGGACATCATGTCCAACCAGGCACGTCTAGTGCAAACCATCTAG AACTTAGGCAGCGTGATAAAGTCGATGTGCCTACGTGGGATGAGCCTTTT GTCAAGAGCAGATCTGTGACGGTTGCTTTGAGTGTTTTTCGGGGTGCGTT TGAGGCTTGGCTTGACAATGAGCAACTGTCCGACACAATGAGAGGACCGG AGATTCCAGTAGGTCTAGTAGGTGGGGAACACGTGAGCATGGACTGGTTG ATAAGGCAGTACAGGGAAGACAGTGTGAAGAAGTCGAGGAGGATTTGGAC TTTCATGCTGTCGAAAATCACGATCGATTCAGTGCAGAGTCAGATTTTGG CGTCGGAGTCACCCCAAGCTGGATACAAAATTTTTCTCCAGCAGTACAGT CAATCCAAGAGTCAGGAGAGGCAGAAGCTAGACGACGAGTGGAATGTTGT AAAGCAGAAGGATGGTGAGACTATGATCGACTACTACGGTAGAGCGGTTG CTTTGTGGATGAGACTGCGATCGTACGGTGACAACAGAGATGAAGCGTCG ATGTGCAAACATATTGCACGAGGATTTTTGCCTGAATTCTCAAAGACGAA AGATTTGGTCCTTTTCCACCCGATGTTGTCTAAGTCTACCATGCAGGAGA CCCTGAGGATGGCCGCGCACGAGCTGGAGGTCGAGCGGAGATCTGGAGAC AGGAAGGAGGAGACGATGAACGCCCTCGTCGCTGCCGGCACGGGTCGGAG CGGCGGGGTGAGAAACCCGCAGCTGCTGCAGCGGACTTTGGCGGAGGTCA GCAACAGCAACAGCCGGGGCAGCCGGCGCCATACTTCTGCGAGCTCCACG GCCCCAACAACAGCCACGAAACCATCAACTGCCACAAGCTGCGCGAGGAG TTCTTCACGTACTACCGCCAGTTCCACGCGTTCATGCACGGCGGCAGCGG GGCTCAGGGGTCTGCCTTTCCTCCGGGCTGTGGCCAGGGCTCGGGGCGTT TGGCCGGTGGTCTACAGAGACAGCAGCCATCCCAGTTCTCACATGGGACG GGCTGGAGTCAAGGCCACCCTGCTTCACATCCGATGCCGGCGCCGTGTGG ATCAGGCCCTGGTCATGGTCAAGCTCAACAGCAGCATGGGCGCAACTTCG GGGGGCGAGGCTACGGCGGCTACGGTGCCCACCCTCGGAGAGCCGAGGAC GCCACGGGGGCGGCGGGAGAGGCGGAAACATCCCGGCATCCAACGTTCCT ACCGGGCAGTTTGCCAACGTTTCTCGGCAGCACCTCCCGGCTCACTTGGC GATGGGCGACCCGAGTCTGGGACAGGGGTCGCCACCATTGTACGGGTCAG CGCCAGGCTGGGGATCGACTCCCACGGAGACGGGGCCGGTTACGGCTTTG GTAGAGACAGCTGGAGCCATGGCGAGGATGCTTTCTTCGGCAACGCCGCA CCAGGATGGGAGACACCCGCGCGGGAGAACATGGCGAGCTGGATGCAGCA ATCTCCCGAGGCAGGGTACGGCTACGGGCTTTCAGCACAGGGCGTCAGCA CCGGCTCTGGTCACTTTGGCAGCGCCGGCGGGGATGGTCCCTCAACTTCT CCGTCGGCGGTGGTTCAGACTACATCTCTGCCGCCGGCCCTGACGCCTTC CAGCCCCGGACCTACGGCGAGGTCTTCAACGGCCCTTCCCACCAGGTGGC TTTTCAGCAGCAGCAACAGCAGCCCCAGCAGCAACAACAGCAGTACTCCG GCGTTCCTCCAGCGACTTCGTCCTCCTTCTCTCCTTCCCCATCATCTCAC GGCGACGCTCCACCTCCAGCTGGCAACGCCCCTCTTCGTCTCTTCATGGC ACGTAGTGTGTGCCCTCGAGGCAAGTCTGAATCAGATTTTGTGATGGTTG ATGGGATTGGTGTCGAAGACAGTTGGGATGACTGCTCTGTTTGGGATGAG TGCGAGTTTCCGGAATATGACTTCCCTGATTTCCGTGAGTATGGTATGTC TGTGCCCGGTGTGCCTGGAGTGCTGGTAGCGCGTGTGACTAGCCGCCCCT GGTATCGAGTGCCTTCTTGTGCCACCCTCGTGTGCCTAGACCGCCTGGTA GCGAGCAGTGGCAAGCTGATTCGGGAGCGAGCGCAATGATCACCAACAAT AAAGATGAAATGTACAACGTGCGCAATTTGGACCCCGATGAACAATTCAT CCAGATCGGAGACTCAGCTTTGATTAGGGTTGCCGCAGTAGGAAGCCTTG ACCTCAGGTTCCACCAAATCGGACCCGACGGAAAGCAGGAGGACATTGAC ATTACTCTACCGGAAGTTCTTTTTGTGCCTGAGTGTGGATTCTGTCTTTT CTCTGTGTGGAGGGCGTCGCACAAGCACGAAGTTCGAATCAACCCTCGCG GTACCCAGCTGTTGCGTGGCAAGCTTCGCTTTATCCGTGGTGTCTCAAGT GATTCCCTTTTCGCTACGCGTCTCCCCCACCAGCCAGTGTACGGTCATGT TTCCCCTGTGTGACCACCATCGACTTCGGAAAGGAAAATCAACTGTGTGT TTCGGCTTTCACACCCACATTCGATGCGCCTTCCCGAGATTGGGCTTTGG AGTGCATGAAGAGTCTGTTTCCTACGGGTTCCCCCGAGGTGTTCGCTTGC CTCATGAGTGCTGAGTATCAACCCCCCCGTGTGTCTGAGGACTCCGCTGA GACTTCTGCGTCTTTCTCTGACCTGTGTGATGGTGAAGAGCGTGACCGTG TTTTGGCTGGGCGTGGAATGACTGGTGTTGGTGTCATGGCTGCTTTGGGT CCCGGCAAGACCCCCTTTCATATCGGTGGTAAACCAAAAACCATGGACAT TAACACGTTTCACGTTCGTTCTGGTCACGCTTCCAACGATGTCATGAGGT TATCCGCGAAGAAGCAAGGATCACCCTCACTGGCACGCTGGAACCTTGCC GTTGGTGCTTGCCGGCTCGGGGACGAAGGCGCCGGTGCCGAAGAAGGGGC GGATACCGCGGGAAGCTGGTGCCGAACGGGCAGGTACATATCGACATGTG CGGCCCGTTTACGACGTCCATCGGGGCAACCACTACATGCTCTTCGCCGT GGACGCTTCGACGGGGTGGATGGTCAACTACACCCTGCGGCGCAAGTCGG AGGCGGTGATGGTGGTGAGGCGCATGGTGGTGGAGCTGGCCCACAAGGCG GGGGCCCCGATCCAGTGCTTCCGGTGTGACTGCGATGCGATGTGGACGTC CCGCGAGTTCAAGGACTGCTGCGCCAGCGCGGGCATCGCCATCGAGTACT CCCCCCCCGGCGTGCAGCAGTACAACGGCGTCGTCGAGAGCGCAATCCAG CGGTGCCTCAAGGTGGCCAAGGCGTCTCGCCGGGCTGCTCAGGAGCTGCT CGGGCCGGCGGGGTTTTCCTGCATCAGCGGGCTGAGCGAGCGCGGCGATG AGCTCTGGGCGGAGTCAGCAAAGGACGCCGCGCAGAAGCTGAACCAGTCT GCCTCCCTTCCAACCCGGGGCGCGTCGCCGCAGGAGCTGTACACCGGCAA GGCGGGGCCCTACCGCTTGATTCCGTTTTTCCAATACGGGTTCATGTGGG AGCGCCCGACAAACAAGATGGACGACCGGGCTGTAGCGTGTTTCTTCCTC AACGCCGGCGACAACCACGCCGACGTCACGGTGAAGGTCATGAAGCAGAG GACCGCCCGTGTGTGCTACACGTCCAACGTGGCGTGGGCAGAGTTGCCCG CGTCGGGGGGGAGCGCCATGCTTCTTCAGCCTCCTCCGCGGGGACCCAGC CCACGACTCACCATGTGTCCTTCGAGATCGCCCCCTTGCCGTCGCCGCCG CCCCAGGGGCCTGCGTCATGGTCTGCGCCTGCGCCGGGTGCCACCGTGTC GCCGCCCCAAGGGCCACCGGCGTCGACGATCGCCGCCGCTTCATCGCCCG CTGCCGCTGCCGCCGCCGCTGCCCCTTGCCGTCGCCGCCGCCCCCCAGAG GCCTGCGTCATGGTCTGCGCCTGCGCCGGGTGCCACCGTGTCGCCGCCCC AGGGCCACCGGCGTCGACGATCGCCGCCGCTTCATCGCCCGCTGCCGCTG CCGCCGCCGCTGCCCCCTTGCCGTCGCCGCCGCCCCAGGGGCCTGCGTCA TGGTCTGCGCCTGCGCCGGGTGCCACCGTGTCGCCGCCCCAAGGGCCGCC GGCGTTGACGACAGCCGCAGCTCCACCGTCCACTGCTGCCGCCACTGCGC CGTCCACGCCGAGTGCTGCTCCCTCCGCCACTACGCCGTCGCCGCCGACT CCCGGAGCTGCGTCGCCGTTGCCGGAGTGGTCCACTTCGTCCATAGAAGC AGACCCTTCGCCGCCGGGGAGTGCATCGCGACAGCGCCACTACCGCCAGG CCAGACCACCGCCGACCGCACCGGGGTACTCCACTCCCCTCACACCCCAC GCCACCAGACAGCTGGGTGAAGGCGGTGATCTTCGGCTTCGAGGACGCAC GAGGGCGGATTCACGAGCCATTGCCCAACAGCAGCTCTCCACTCTCTCGG AGGACCGGCAGCTCTCATCGTTGTCGGAGGAAGCCGTCACTACACCTCTG CCCCCTTCCGAGATCACCATGGGGCTGCTGGCCCAGGCCAACGAGGACGT TCTCCTATCCGTGCTGGATCATCGGCGGGCCATGAACGGGAAGCCGATGC TACGTCCACGTTTGCAGGGGGGCGGGGAGCAGGTGGGCGGAGCCGAGCAG CGCGTTTTTGTCGGGGGCGAGGAGGAGTGCAGCTGGCCGTCGACAGCTGA GATCGGCAATCAGGGACGCATGGATGGTGGATGGTCGGTCGGTCCTCCCG CGTCAGGCGTTTCGCTTGGGTTCGTGGCGCGTCTTGCGACGCGCGACGAC CTTGAGGCCGCCAAGCGCGAGATGGAGCCACCCCTCCTGCGACCCGATAT GCCACGCTGCCACGCCAAGGACCTTCGAGTGCCCCAGACGTTCAGGGAGG CGCAGCAGGGCGGGCACGGCGTGCAGTTCATGGACGCGGCCAAGCGGGAG GTGTTTGGTTTGCTTGAAGCAGATGCATTCAAAGTCGTAGACCCGTAGCA ACGAATCGAGAATTGCATTAAGTCGAAGCTTTTGTTTGATTGGAAGGTTG ACGCGTTCGGATTTCCCAGTAAGGCTAAGGCTAGGCTTGTTGCAAGAGGA GATATGCAGAAGGAGTACGTGGACTTTGGTGATTTGTATGCCCCTACTGT AGCGACGTCGAGTGTTCGTATGTTGGCTGCGTTGGCGTGCGAGTTTGACC TCGAGCTGTGCCACTTTGACATTGATCAGGCCTTTGTGAGGGCCCCTCTC AAGGAAGACATTTTCATGCGGTTGCCGGAAGGATGTGGTTCGTTGTCGGG GAAAGTAGTGCAGTTGAACAAGAGTCTTTATGGTTTGCGACAGGCATCTA GGGAGTGGTATGCGTTGCTGAAGAAGTGTCTTTTGACCTTGGGGTTTGAA CAGTGCATGGCTGATCCGTGTGTTTTCCGCTTGATGGAAGGGGGGGAGGT AGTGTTGCTCCTAGTAGTGCATGTGGACGATATCTTTGCAGTAGGGACGA AGGAAAGGTGTGATCGTTTTGGGGAGGATCTGGGCCAGTACGTGCCGGTA AAGTCTCTTGGAGAATTGAAGTGGTACTCTGGTTGCTATTATGAGAGGGA TAGAGAGGCAGGCAGGTTGACGATTTCGCAGCAGACATACACCGAGGAAT TGGGAGAGAGGTTTGGTGTTGAGTGGGAGGTTCTATTCCTTTGCCCGCTT CCTGGAGGCTTTGGGACTTTGACGTGAACGAGCCGAACGTGGAGTTCCCA TTTCGTGCCTTGATTGGTTCGCTGTTGTGGATTGCCCTGTTGACTAGGCC GGACATCGCGAATGCAGTGAGGGCAGTAGCCAGATATTGCAGCGCGCCCA AGTTGATCCACTGGAAGGCAGCACTTAGCATTTTGGGGTATGCAGTCAGG ACGAGTTCTTTCGGTATTTCTTTCCAAAAGGGACGGTTGCAGGCGTTTTC TTGATCGCGTTTGCCGATGCAGACTACGCGTCGCGCGCGGCGGACCGTAG GTCGGTTTCGGGTGGAGTAGTGATGTGTGCAGGGGGGCCGATCGCGTGGT TCTCAAAGACGCAGAAGTGTGTGACCACGTCTACCACGCATGCAGAGTAC GTAGCGATGGCGGAGGTGGGAAAGGAGATCCTGTTCATCAGGCAGGTCTG GCGTTTCATGTTGCCGAAGGAGTTGCGGCCGTGCTTTCCCCTGTATGAGG ATAACGAGGGGCTATCCAGATCGCAAAGCACCCGATTTCGAACTCCAACT CCAAACACATCGACGTGCGCCACCACTTCCTCAGGCAGCTCGTAGAGGAG AAGGAGGTAGAGATCATCCACGTAGCGTCGCAGTACCAGCACGCTGACTT CCTCACGAAGGCGCTACCGGAGAAGGAGTTTGTGTTCCACCGGGACTACG TGATGAACTTGAAGTGATTAGTCTCGGGAGGGGTGTTTTGTTGCCTTCGT TTTATTTTTTTATTTTTTTTTTTTTTGTTTTTATGTTTTGGTTTTGGATT TTGGATGACTTGATTTTCTTGGAAAACTGAATTCATGGATGACCGAAGGA GATTCTTGGAGGTCTCTAGTTTAATGGTTTGCAAGCGATGGGATTCCGAA TAGTGTTTCCGGTTTAATGGTTTTTTTGGTGAATACTCAGTATTTTGGTA GACTCCAATTTCAATGGCGACCGATGGAGATTCTTGGGGTGTTTCTGGTT TAATGGCTTTCAGCCGATGGGAATTGCTAATGGTGTTTCTGGTTTAATGG TTTCTTTGTTGCAATAAAAGTGGATGGAGTATGATGGTTGCACAACGTCA TTGATGGTGGAGTTATTGGGGAGGTGATTGTAGTTCAGTTGTAGTAGTCC GGGTATAATCTTGCCAATGCAGCGAGTAGGGGGGCTGTTGGACGTACTCA CAGCATAGACAGATTATTTCAAGCAGAGAACTTTCCAGAGAGATGGAGCG GGAAGATTGGGGGTTCAACAGATGATTTGGTGGTACCAACTTTGCCACAA TTATGGAATTAGGGGATGTGTGTGTCTGCAACGGATTGGTGTGGTGTTTC GCCGATGTTTACTCCTCTTTTTTCCTTCTACTTCTCCTTGTTTTAATCGA GTTTTTATCCCGGCTTCTACGCCAACCCGGCTTCCACGCCACCCCGGCTT CCACGCCACCCGGACTCTCACGTCCCTGTTTATACTTCTTTCCCGTGGCT TTCACGCCACCAGGCTTTCACGCCGTACCCCGGGTTTTCACACCCTTTTC CCGAGCTTTCACGCTCCACCACAAAGTAGGGCCCAGGCTTCCACGCCTGC GGACAGTTCTATATTTTACCGTTCAGCGGCTACAACGCCGGTTCTTCTTT TCTTTTCTTCACCGGGATCCCGTGCCGGAGCCACAACTCTACAACTTCAC TTCACAAAGGGGTCTTCTTGCTCTCAGCCAGGGCCTAACTCGTGGGCGTT TTGTGTTTCTCCGGTTTCGCTGGTGCAGCTGTGACTGACTATGCGCGGGT GGATGTCACATTTGTTCCGCAGGCCTAGCCGGGTTATTTGTGCACCCTTC AGGGAGATACACAGGCAGGACGCCAGGATCATGCGTACTATTTTAGCACA GGTGCCAGACTGATCGGACGTAAAAAGCGGGAGATTTCTAGCGGGAAAAT GCACTCACGGGATTCACTTCATTCAGTGTGTTGTACATCGTGTACACGCA CGTACGGCACATCATCTGCTACTGTGGGACGCCAGGCTTCATACGTACAC ACGCCTCGCGGCATTGCGTGGGTGTATTCGGCCGCCACGTAAGTTGTGCC GAACAAAGTAGGAACGCCACGGTCTGGGGATCAGGAACGGAAGATAACTC GTAATTTCCTTTTTCTTTTCTGCGGCGGTTTCATCCTGCGAACCCCCCTA CCCCTACCCTCTCGATGCCATTTCGTGTGTCGCGGGCGAAGAAACCCCGC TCATATTCCGCTTCCCACTGTACGCCGCGTGCCCCCTACTTCAAGGCTTC AAGGCTCAAGGTGTGCACGTGTTTGCAGTTCCTCCCTACATCCCGTCCCT AACTGTCCTTGGATAGCCTTGTCGCCCTTCCCTTACCCTGGGCGACCCTG GAGCCTCCACACCACACGAGAAGCGTGAGTCAGCTGCGTGACCCCGTCAT AGACGCACTTGCTTCGGTTGTGTTGCGTGTCAAAACGCCGTAGTCGCGTG CCTGTCTGTCGACCTCCCTCCTGGCCAATATTTTGATCCGACTCTTCCGC TTGCTCTCGTTGCCTCTCCCAAGTTCCCTTCCTCTCTTGGTATCGTGCAG CTTTCTCTGGTGTGTGATCCACGCCCGAGCTAGCTCCATTGGCCGCCGTC TACGGATAGCGTATGGTACGGTCGAGCCTTCCAGTCTTGTTCGAGAAGGC CTACCTGCTACGCTTTTTCTCACTTCCCACGCACAGGGATATCCCATCTC GCCGGCTGCTACAATGTGCTTTTTTCCCAGCCTCATCTTCCGCATCCCCC TTCCTTACCCCGTTTCCCTTGCGACAATCACGCAGCAAATCACCTTCATC GCGCACACAGCGCCGCGGCAGGCAGCACGCCAACACAGAAACCTGGCTAA TCGCCAAAGATGACGATGCGAAGACTGCTTTGCTCCACGCAAAATTATGC GTGGGGGAAGAGGGGCAGGGAGAGCAGGGTCTCCCAGCTCAAGATGACGG AGGACGCGACCTTCGAAGTGGACGAGGAGCAGACCTACGCCGAGCTGTGG ATGGGCACACATCCCAACGGTCCTAGCCGTGTCATGCCCGAGCCCGGAGA TTTCGTGGAAGGCGCCGAGGAGGGACACGCCGGTATTTTCTTGATCGAGC TCCTGGAGACCCATCCCCATTTCCTCGGGGATCTGCAGGAGCATGGGGAC CTCCCGTTCATGTTCAAGGTCTTGTCTATCAACAAGGCTCTCAGCATTCA GGTGTGCAGTCGAGCGAATGTTGGCGTCGAGGGCGGGGGAGAAATTCACG CCCGTCCGGATGCTGATGCGCCGAAAAGCCTCGCGTGGTCCAGAGTTTAA AGCTGATGTTTTCTCCGCGCGCGTGCCCTGCTCAATTGTTTTTTCGTAAA ATATAGGCGCCCAGCCGGGATGTAACCCCGCCTCATCGATTGCATCATTT TTTTTGGTCGAAAAGTTTTAGGAAACGAATCTCTCGTCACTCTCTCTCTC ATCCGGCATCCATGTAGACATCTCCCCGATGACTGCGTGTCCTCTCTCAT TTAGTTTTGCCCGGCTCTATCCAATGCCGCGATGTCGTTAGCAGCACGAT CTCGCGTGTCATGGGTTGCCTGCTTGCTTGCAGGGAGTGAGAAAAGCTCG AAATCCTCTCATCTTCCGATCGACGATTGAACCCGTCCATGGAAGATTCC CGCCTGCTGTTTGCTTGCGGCTGCTGTGGCACTGCCATCGATTACCCACG TTTCCGGAGCGTCGCCTTCTCGCGCCCCCACCCTTGTCGATCTTCTACTA GCGTCAACTGCAGCAGCAGCCATGGACTCGCGAAAGAGAGGTTCAGCTCG ACGTTGGCGTGTGTGTTGGCGCCCTCGAACAAAAATGTGTCCTGTGTGTG CGCGTTTGGGTGTTGCTTTTTCTTTGTTGATCTGTTGCGTGTGTGCTCTT ATCGTGCGAATTTTTTCTATGAAAATAAATATAATAGGCACACCCTGACA AGAAGCTGGCGGAGCGGCTATACGCGACACGACCTGACCTCTACAAGGAC GACAACCACAAGCCTGAGATGGCCGTGGCGCTGTCGGACTTCGAGGGACT GTGCGGCTTCCGGCCTTTCGAGGAGATCGTGTTCAACCTCCACCGGTATC CCGAGCTCCGGGGTCTGGTGAGCCTCTCGGCGCTGCGTGCGATGTGCAGC CTCCCCGAGGACCCCGAGGAGCGGCGGGAGGCTCTCAGGAAGCTGTTCCA ATCGTACATTACGGCCAAGCCCGAGGTAGTGGCGACGCAGGTTGCCGCGC TGGTGCAGCGGCTCGGGGAGCGCTCCCAGGACGATGGCGGCTTCGCGTCC GACGGCAGCAGCATCGTGAGTTGGGTTTGTTTTTCGTGTTTTCTCGTTGT TTGGACACTGTTATGTATAAGTGGGGTCGGGGGGGGGCAGTTGGGGGCTC TTTTTTCAATGGAGAGCGCAAGCGATGCTTGCGTTCTGGGTGCCTCTCGT ACATATGCGTACGAGGAAGTTGTGCCGTGCATACGTCAGCTCGTGCAGCT GTTCGTTATTTGATTTGCTTGGCGACACACGCACCCTCTAAAATCTTGAA TCTTTTGTCAGGATTGCCCACACACGGCCAAGTAAGGAAAGTCGTAACCA TTGCTGTAGCGTATGACCGATTCGTGTATCTCCACCCCGCCTGAATGCCG CAATGCCTGAATGCCCAGGGCAAGCACAAGCGCACGTACGAAAGATCTCT ACGCCACGGACACACGTAGTACGTCATAGCGAGGCGGGATGTGTTGCTGC CCCGCTGCGCGTGGTCCCCATCTTTTACCAGATATCTTCCTATTTTCTCC TCGCCGTCGATTTGTACAAGGAGCAGGCATCCGTAGTGATCGGCTACCTT GCGATGAACGTATGCACAGACGCACTGCCGGGAGAATGTCGGGAGTGTTT GTATGGTATTTACTTATATATTGCCATTCGTCACAGTGCTGTTGTGTCGT CTACGTTCTTCTCTAGCGATGGAAGAATGGAACAAACCGCGGATCACACC GATGTCACACTTGCGAACACAGCAGAGCAAGGCCATCCCCAACGCAACAT TTGGTTATCAGCAACACCATTATCACCAGCAGAACAGCGCCATCAACAAC GTCACAACCAACCCTTTGATGTCCGACTTATGTTCGTCTTTCGTCTCCTC CCTCCCTCCCTCCCTTCCACCCTTCCACCCTTCCACCCTCCCTCCCTTCC ACCCTTCCACCCTTCCACCCTTCCTCCCTTCCTCCCTCCCTCCCTTCCAC CCTTCCTCCCTTCCTCCCTCCCTCCTCCCCTCCCTTCCCCCTTCTCCGAC CCCAGGACCACACCGACGAGGAGGAGATCGACATGGAGGACATCTACGGG GACGGCTACGAGCACCCGGAGAAGGGCGAGCTGCTGCTGGGAAGGCTCAA GACCGAGGACCACTACGTGCAGGACCTCATGCGGCGCCTGTCCAAGGAGT ACCCGGGGGATATCGGCATCATGATGCCGCTGCTGCTGAATTACCTCCGG ATGGGGGAGGGGGAGTCCTTCTTCATGGCCGCCAACGAGCCACACGCCTA CCTTAAGGGGGACATCATGGAGGTAAGATTTTGGTCACGTCCGTAGCTGG GGCGGGATGTACTTGAAAGGGCGCCGTCTATGCTTTCTACCGTAAGTGGG ACATAAACGGGTGAGATTTCGATCACGTTCTTAGCTGGGGCGGGATGTAT TTGAAAGGGCGCCGTCTTTGCCTACGGCGGGGGGAGGGGGGGGACGTGTG CGGGGGCGGGGGACCAAGCGCCTAATGCACCCTGTGAACGTGGTTGTGGG CCATGGTTTTCGGAATGAATGTCGGTGAATTGCCGTTGTCCGTGTTCAGT GGTTTAACGATAGAGCGTCACGCTTTCGCGGGCTCGAGTCAAGCGACACC CTAGCCTCGGCTCCCAAAGCCTAGTTTCGGGTTTGTCTCTCGCCTGTCTG GGCGTTCAAGCGTCGTCGCGCTCCAAGAGGCAACGCACTCAACACGCCCC CCCACTCTCTCTCCCTCCCTGTGCCCCTTATGCCGTCTCGCGTTCGCCAA CAACAACCGAACCATCAATCGAACCAGGTGATGGCACGCTCGGACAACGT GGTGCGCGTGGCCCTGACTCCGAAGCACCGCGATGTGCCCCTGCTGTGCC AGATCCTCACGTACAACATGGGGGCCCCGCCGATCGTAACACCCATCCAG GTGGACCAGTTCTGCCACCGCTTCACGCCACCCATCGAGGACTTCGAGCT GGACGACATGCGGGTCCCTGGGGGCGCCGAGTACACCCCCGTCGCGATAC CTGTGCCGTCGATCTGCATGGTGCTGGAGGGCGGGGGTCTGGCCACCGAT GGGGTCAGGGAGACGGAGCTTCGGCCGGGCGTTGTGATATTCGTCGCGGC GAGGTCCGTCGCGACGTTCAAGCCCGCCGAAGGCTCCTCGCTGCGGATCA TTCGGACGCACACCAACCTCAACATGGAGAGCAACGGTGTCTTCATGGTG GCCCCGCCCGCGGCTGCCTTGGCGGTGGTCCCCCCGTTCGCATGACTCAC GGGGGTCGCCGGGGTAGGGAGGTGGGGGGCGGGGAGGTTGGACTGAAGTA GAAGAATGGGCAGCAGCGGCGGCGGCGGCGACGGTGCTCTCGGAGTCCTC GCTTCTCCAAGTGCTTATATGCTTTGGTTTTCCTTATTACGTCCCAGCCT CAGGTCTTCTTTTTTTGGCTATTTTTCGCGCAGCCTGTCATGTTCGGCCG ATCGATCGACAAGCGCGCCACAATCGAGTACATTTGTCGCTTTTTTTGTA CATAATCCTTTTGTGGGGCCCTCCCGACCCACGCTCTCGGGGTTCGCGTC AGTGAGAGGTACACCGCATTTCGGAAGCAAGCGTGAGTGCAGCTGCAAGC GCGTTCTTATTGTCTGTCTGCCCGTATTCTCTCCCATCACTGCTACTAAG CGCGGGGCTGCGATGAGCAAAGTCGGGACGGGTGGGGGGTTATCCATAAA TGTTTTGACTCCTTGGTTGGCGAGTAGTCAAACACCCAAGCTGATGCCGG GCGTCCCTGGAGAACATGCGGAAGGAGTGGCTGCTGCTGCTGCGTATGCC CGAACGATCATTCCCCCCTCGCGTGGCCCTTGGGCTGCGGGTCTTATACT GAGTTAGATGGTTTGAGCTTTCTCGTTTTTTTTCTTGAGTTGAACTTCTG GCGGTCAGAGTGGGTGTGCCGGGTGGTTAGTGGCAGGTTCGAGAGGGCTG TGAAGTTGGTTTTGGTGTGTGCCACTATGTGTCGGTGGCGTTTGTGCCGA CTTCCGTAGCCTTCCTGCTTTACGTCTTGTATTGTCTTGACGCGTGTTCG TGGTATCGGGTTTTGTCTTCCGCGGTCTTGCCTTCTCGCAAGCCACGCCA CCCCTCTCAATCACCTCGGTCTGCTCGCCCTGGACAATGATGCAGGATTC AGCTGCAGTTGATTTGCCTGTGCGGAAGTTTTTCTGCGGAGGTTCGCGGA CGGCGGTAGGGGCCGGAAGAGAGAACCGGATGCCATCCAGAGCACATACA TTTCGTCTCCGCATGGCGTCAGATCACCCTTTTTCTTTATTCCAAGATCA GCGCCCAACAGAATGCGCGTCCCTTCGTTGACACCCATTACTGTGGAGTT GAGCGGATTCGATTGCCACCGCACCGCAAGTGGGAAACGGCATGCTCGCC GGCCTTCTTGCCTGGGCTACCTGGGCTTATTTTGGATCGACTTGAAATGG TGCGTCTGTAGTCGCGGTGTGTTTTCTACGGGACGGGCGGGGGAGGGGTG AAGTGCTTTCCTGGCCGGTCATGGCGTAAAGTCGGGTCTGTACCCGGTGT CGTCCTTTATTTTTGTCATCATTCTAATGGTGTGTAACGCCGCATTCGTG GCGCGTAGTACGCAGTAGTCTTGCATGTTGTGTTACTCATTGTTATCTTA GTTGTGTGATGTTTTTCACGGTTCGTCCGCGATTCCCAGCGTATCTAGCC GCAAAATGATTATTTTGACGGGGGAAGGGATATCGGCTCCTTCGCGTGCC CCCTTCCTCCTTCTCTCCCGAAGTATTGATTCGGGGGTAGGTCTGACGCT TTGGTTTCGAGTGCATCCTGGAGTGGTCGGCGCGGACAGGCTTTCTGAAG TCACCGGAGGTAGCAGCTTGTGTTGCTTCGTCGAAGCAAAAGCGTCCTAA ACATTTTCCATTTATTTTTCCAATCGCTGCGGCTCCTGCTCTGTGGGTGT TCGTTTGTGACCTGATCCTTGTCTTGACCTCGTCGGAGTCAAGCGATTAC GTGGAGTCAGAAAACACGTTACATATGTGAAATACTCGAGCTGGATCGGG AAAGACACACGAATTGATGGTCGTCTTCTTTGTTGTGTTGAATGTCAAGC TGCCGTGCGGTGTACTTTAGCGCGAGACCGTGGCCCGCACCATTAGCGGT TTCAGCTCAGGTGCGCACAACTGTTTGGAAGGTTCGACGTCTCGACATTA TCAGTGCTCCCTAAGCGATAGAGGATTTGACATAAATTCGTCACCCTACG ATCTTTGCCCGTGGACATTGTTTACCGGCTGTGAGCGTTCGTTCATCGTC CCTTGTGGATGGATATCGAACGGGTCCATTGGCGATGCGATCGGGCGAGA GAAATGTTTCGAGCTGCCAAGGTCATCACATGTGTACATACATGAATACA CGCAC
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Coding sequence (CDS) from alignment at P-fluviatile_contig1:1884886..1910140-

>mRNA_P-fluviatile_contig1.143.1 ID=mRNA_P-fluviatile_contig1.143.1|Name=mRNA_P-fluviatile_contig1.143.1|organism=Porterinema fluviatile SAG_2381|type=CDS|length=4116bp|location=Sequence derived from alignment at P-fluviatile_contig1:1884886..1910140- (Porterinema fluviatile SAG_2381)
ATGAAGAGACGACGAAGGCTTTCATCGAACGTTGCGGAGGTCGTGGTGTT
CACTCGACTGCTCGGAGGTGGAAGCCTGTGTCTCCAAACTCTGCACCGGC
CCGCTGTCGGCGGCCACCGAGTACACGCCAGGTCACACTGCCGCAATGAC
CGTGGTCGTGGCGGCGACGGCGGTGGTGGCCGTGTGTGCACGTCAAGGCG
CACAGGATTTTCTTTGAACGCAGCCAGTGCGGTGCCCCGCCCTGTGACCA
TTGCCACCCCGTTCCATGGCTTGGTACGGCGCCCGGCACGACCGGCGCCC
CTGCAGCTCAGCAGAGAGGCAACCACTGCCGACGACAACGGCGGGACCGG
CGGCGACAACCCAAGGACGAGCGGAACGGACCAGCAAGGTTGTACAGGAG
GAGGAAGGCACGAACCATCAGCGGTTGACATTGAGGCAATGGGAGGATCC
CCTGAATTCATCAGCTTGGTTAACGCACAGTTCGGCATTCTATCCACGGC
GTTGGGCGTGGACCGCGTCGTCTTGTTCGTGCGGCGGGAAAACCCCGAGA
CTGATGAAGAGACGACGAAGGCTTTCATCGAACGTTGCGGAGGTCGTGGT
GTTCACTCGACTGCTCGGAGGTGGAAGCCTGTGTCTCCAAACTCTGCACC
GGCCCGCTGTCGGCGGCCACCGAGTACACGCCAGGTCACACTGCCGCAAT
GACCGTGGTCGTGGCGGCGACGGCGGTGGTGGCCGTGTGTGCACGTCAAG
GCGCACAGGATTTTCTTTGAACGCAGCCAGTGCGGTGCCCCGCCCTGTGA
CCATTGCCACCCCGTTCCATGGCTTGGTACGGCGCCCGGCACGACCGGCG
CCCCTGCAGCTCAGCAGAGAGGCAACCACTGCCGACGACAACGGCGGGAC
CGGCGGCGACAACCCAAGGACGAGCGGAACGGACCAGCAAGGTTGTACAG
GAGGAGGAAGGCACGAACCATCAGCGGTTGACATTGAGGCAATGGGAGGA
TCCCCTGAATTCATCAGCTTGGTTAACGCACAGTTCGGCATTCTATCCAC
GGCGTTGGGCGTGGACCGCGTCGTCTTGTTCGTGCGGCGGGAAAACCCCG
AGACTGGAACCTTGGAGTTTGTCCATGCCATGGAGTACCCCCGGCGATCG
CCGCCGCCGCCGCCGCCGCCGCGCGCGCGTGGCACACACTCGCCGGAGGG
CGTGGCCGTTTATCCCGGCAGCAGCGAGCTCTTGCTACTAGACGCGGCGG
GGCGGACCATGGAGGCTGATGGCTGGGATACTCCTGGCGCGCAGGAGGGC
GGCGACGGCGGGCTCAGCGCGCCCGTCCTGCACGCCTCCCTTCTGCTGGG
GATGATCACCGTGTTCAAGAAGGGCGCCGAGAGAACCTTGGAGTTTGTCC
ATGCCATGGAGTACCCCCGGCGATCGCCGCCGCCGCCGCCGCCGCCGCGC
GCGCGTGGCACACACTCGCCGGAGGGCGTGGCCGTTTATCCCGGCAGCAG
CGAGCTCTTGCTACTAGACGCGGCGGGGCGGACCATGGAGGCTGATGGCT
GGGATACTCCTGGCGCGCAGGAGGGCGGCGACGGCGGGCTCAGCGCGCCC
GTCCTGCACGCCTCCCTTCTGCTGGGGATGATCACCGTGTTCAAGAAGGG
CGCCGAGACGTGGCGGCTCACACCGACAACAGCAAGACTGAGACGCGGCC
CCCCTGCGGGACGTGAGAGGAGTGAAGCCCTCGGCTCAACACGACGTGGC
GGCTCACACCGACAACAGCAAGACTGAGACGCGGCCCCCCTGCGGGACGT
GAGAGGAGTGAAGCCCTCGGCTCAACACGAGATAAAATGCTGCTAGAGAA
TGTCGCTTCTTCGGTGGCGATGGCCGCCGTGCTGGACCAGAAGCAGAGGT
GGGCGGCGGTGATGCAGGTCGAGCCCCTCAGGAGAGTCGTCGCGGAGTCG
CTTCACCAGGATAAAATGCTGCTAGAGAATGTCGCTTCTTCGGTGGCGAT
GGCCGCCGTGCTGGACCAGAAGCAGAGGTGGGCGGCGGTGATGCAGGTCG
AGCCCCTCAGGAGAGTCGTCGCGGAGTCGCTTCACCAGGTGAAGAATCCC
ATGACGGCGTTGAGGACGTTTGGCAAGCTGCTGCTCAGAAGGCTGCCGCA
AGACGACACGCTCAACCGCGAGCTGGCGAGGGACATCATGCTGCAGGTGA
AGAATCCCATGACGGCGTTGAGGACGTTTGGCAAGCTGCTGCTCAGAAGG
CTGCCGCAAGACGACACGCTCAACCGCGAGCTGGCGAGGGACATCATGCT
GCAGTCGGACCGCCTCGTCGACATTCTCCTTCCGGTGGATGCGGTGCTCG
GCCTGCTGGCCACCGCCGTAGAGCGAGAGCGAGAAGCGCTAGCGACGCCG
GGCATGGTCGACCCGTACCTAGCACAAAGGGAGGGGTTCGGTGCCACCGC
CGCCGCCACCGCCGCCGCCGGAGCAGCAGAAGCAGCAACAGTTTCTCAGG
TTATTGCCGCGGCAGATCAGGTCGTGGTGGGGGAGCTGAGAGGGGACGTC
GACACTTTTGGGAGCAACTCCCAAGTCGGACCGCCTCGTCGACATTCTCC
TTCCGGTGGATGCGGTGCTCGGCCTGCTGGCCACCGCCGTAGAGCGAGAG
CGAGAAGCGCTAGCGACGCCGGGCATGGTCGACCCGTACCTAGCACAAAG
GGAGGGGTTCGGTGCCACCGCCGCCGCCACCGCCGCCGCCGGAGCAGCAG
AAGCAGCAACAGTTTCTCAGGTTATTGCCGCGGCAGATCAGGTCGTGGTG
GGGGAGCTGAGAGGGGACGTCGACACTTTTGGGAGCAACTCCCAAGGGGG
GGTGCAAGACGCTCTGCTCTCGCCATCAGCGCAGGTTGCGGCGGTGGAGG
AGTCCCTGGCCTTGGAGGAGAGGATGTCGTTCGGGCTGATCTCCGTGGAG
GACGTGATTCGGCCGGTCTCGAGTGCGGCGCAAGCGGCCGCGAAGGAACG
GGGGGGTGCAAGACGCTCTGCTCTCGCCATCAGCGCAGGTTGCGGCGGTG
GAGGAGTCCCTGGCCTTGGAGGAGAGGATGTCGTTCGGGCTGATCTCCGT
GGAGGACGTGATTCGGCCGGTCTCGAGTGCGGCGCAAGCGGCCGCGAAGG
AACGGCGAGTGGGGTTCAGATGGCGAGTGGACAACAGCCTACCCAGAGTC
ATCGGCGATGAGCGGGCGCTTGAGGCGAGTGGGGTTCAGATGGCGAGTGG
ACAACAGCCTACCCAGAGTCATCGGCGATGAGCGGGCGCTTGAGGAGGCC
CTATCCAACGTGGTGGACAACGCGCTGAAGTTCTGCAACATGGGGCGTGG
TGAAGGCGGCAGGGACGGGGAAGCTCGGGCGATAGTTGTTTTGAGCGCCC
GCCTCAGCACAGAGGAGGAGTGGGGTGCCGACAGGAGGCCCTATCCAACG
TGGTGGACAACGCGCTGAAGTTCTGCAACATGGGGCGTGGTGAAGGCGGC
AGGGACGGGGAAGCTCGGGCGATAGTTGTTTTGAGCGCCCGCCTCAGCAC
AGAGGAGGAGTGGGGTGCCGACAGCGGCGTCGTGATCGAGGTGGTGGACA
ACGGGCCCGGCATCGACGCGAAAGACCTGCCGTATGTCTTCGACCGCGGG
TACAGAGGGAGGCGGGCGCTGCAGTGCGGGATACCGGGCACGGGCCTCGG
GTTGGGCATTGCCAGGGAAAGAATGCGCTCCTTCGGCGGCGACCTCGAGG
TCGCGAACAAGGACGATGACGGCGGGGGCTGGGGGACCGGGGTGAAGCTT
TATCTTCCACGGGATCAGAGAATACTAGACGAAAACGAGGAGTGACGGCG
TCGTGATCGAGGTGGTGGACAACGGGCCCGGCATCGACGCGAAAGACCTG
CCGTATGTCTTCGACCGCGGGTACAGAGGGAGGCGGGCGCTGCAGTGCGG
GATACCGGGCACGGGCCTCGGGTTGGGCATTGCCAGGGAAAGAATGCGCT
CCTTCGGCGGCGACCTCGAGGTCGCGAACAAGGACGATGACGGCGGGGGC
TGGGGGACCGGGGTGAAGCTTTATCTTCCACGGGATCAGAGAATACTAGA
CGAAAACGAGGAGTGA
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