Homology
BLAST of mRNA_P-fluviatile_contig13.1894.1 vs. uniprot
Match:
A0A6H5L3X4_9PHAE (Uncharacterized protein n=2 Tax=Ectocarpus TaxID=2879 RepID=A0A6H5L3X4_9PHAE)
HSP 1 Score: 453 bits (1165), Expect = 3.400e-144
Identity = 271/462 (58.66%), Postives = 303/462 (65.58%), Query Frame = 2
Query: 782 CLYGTYCYNNDQCQRKLPEFRGYAAPSIGVILGVVLVGSTALFCGIAGISIAREFAKESAATRRREAIREAAVVASNGFSGRLAAAEPSGNGRNGNDCYLTLAGDADD-----------DTGALIGGSGSRGSINVFDPSATEEXXXXXXXVPT------VPNGKKDYGRRGGPRRXXXXXXXXXXXXXXXLAAAAQL-GPSPFARKVSFYTRMICGTGLAVTLILCGVVVTFAPHPPGVNVCNTEFDWGSIVHSIKADAPSADFQLLVSIYNPNILDAKIERGTATLNHERFQVGTMTFQPAVLAGGYVVDLLLTITFQTEAWTEARLAYEYETGQLAFLMDATISASVMWHGISTYPFTFSINNYYIKVSDTTDYDRSLCNCTQMMQGALHRQQPEHPLLLLSQXXXXXXXXXXSRRLPF-----------AESEGGSRAGSIAAEEVLLPPAMGDVRDD 2080
C YGTYCYNN+QCQR+LPEF+GY APSI V+LGV LVGST LFCGIAGISIARE+AKESAATRR+ A+R S S RL AAEPSG+G Y+TLAGD D D GG G+RG PSA EE X VP GK+D+GR G R XXXXXXXXX L GPSP ARKV TR++CGT +AV L++CGVV+ FAPH PGVNVCNTEFDWGSIVHSIK+ ADFQ+LVSIYNPN+L+A+IE G+A L H +VG M F+PA+LAGGYV D+LLTITF+TE W EA L EYETGQLAFLMDATISASVMWHG TYPFTFSINNYYIKV+DTT YDRSLCNCTQMMQG QQ E P L Q LPF E EG R + A E +LPP MGD D
Sbjct: 65 CAYGTYCYNNNQCQRELPEFKGYEAPSIAVLLGVFLVGSTTLFCGIAGISIAREYAKESAATRRQNALR--VTTFSPDRSVRLTAAEPSGDGG-----YMTLAGDDDSXXXXXXXDDESDVHMRGGGIGTRGPSG---PSAAEEGGAEAAXXXXXXXXXPVPKGKRDFGRAGARRVGRSTSRXXXXXXXXXXXXXXALPGPSPLARKVYCVTRLVCGTSMAVALLICGVVIGFAPHAPGVNVCNTEFDWGSIVHSIKSAGVEADFQILVSIYNPNVLNAEIEMGSALLYHGDTEVGVMAFEPALLAGGYVTDILLTITFKTEVWEEAHLGLEYETGQLAFLMDATISASVMWHGYKTYPFTFSINNYYIKVADTTGYDRSLCNCTQMMQGGKQPQQ-ERPQLRYDQVP----------ELPFDVAGDGGGGVQTEGEGEDRGDVLPAAEAVLPPTMGDDAGD 505
BLAST of mRNA_P-fluviatile_contig13.1894.1 vs. uniprot
Match:
K8Z7T5_NANGC (Uncharacterized protein n=3 Tax=Monodopsidaceae TaxID=425072 RepID=K8Z7T5_NANGC)
HSP 1 Score: 144 bits (364), Expect = 2.810e-33
Identity = 102/384 (26.56%), Postives = 161/384 (41.93%), Query Frame = 2
Query: 740 CGNGCATCVWIG-----------YCCLYGTYCYNNDQCQRKLPEFRGYAAPSIGVILGVVLVGSTALFCGIAGISIAREFAKESAATRRREAIREAAVVASNGFSGRLAAAEPSGNGRNGNDCYLTLAGDADDDTGALIGGSGSRGS--INVFDPSATEEXXXXXXXVPTVPNGKKDYGRRGGPRRXXXXXXXXXXXXXXXLAAAAQLGPSPFARKVSFYTRMICGTGLAVTLILCGVVVTFAPHPPGVNVCNTEFDWGSIVHSIKADAPSADFQLLVSIYNPNILDAKIERGTATLNHERFQVGTMTFQPAVLAGGYVVDLLLTITFQTEAWTEARLAYEYETGQLAFLMDATISASVMWHGISTYPFTFSINNYYIKVSDTT 1852
C N +C W G Y CL G CY ++ C R PE + + APS V++G+ + T+LFC A +A E+ K + R + ++A + LA SG + G + ++G +GS +V+DP VP + ++ S F S R LA +++ V + P P VNVCNT DWGS+ ++ AD+QLL+S+YNPN LD I G H+ +G + P ++ GG + D+L+T+ F W +L ++TG L ++D ++ V+W+G +PFT+ + NY+I V T
Sbjct: 85 CSNSSISCHWCGKDNKCHAIGSPYGCLTGVNCYGSEACVRSEPEAKPHPAPSGSVLVGLGIFLLTSLFCTSACFFVANEYVKHATVVRMEKDPNYQELLAFDEEEEGLAGRSRSGPSKGGGE--------------GVLGERRPQGSGGEDVWDP------------VPRIRVEER----------------------------------SRFLVVCSQVIRAALILTLAWLVMVAVAVFLYTPQVPDVNVCNTALDWGSLFTGLERLKLEADYQLLLSVYNPNRLDVAISSGQGVFKHDHEAIGQVEVAPFLIKGGAITDVLVTLVFTPSVWKSLQLDLAFQTGSLMLMVDMNVAGRVIWNGRRLFPFTYGLQNYFIHVGKET 408
BLAST of mRNA_P-fluviatile_contig13.1894.1 vs. uniprot
Match:
A0A7S2XY72_9STRA (Hypothetical protein n=1 Tax=Fibrocapsa japonica TaxID=94617 RepID=A0A7S2XY72_9STRA)
HSP 1 Score: 106 bits (264), Expect = 9.560e-22
Identity = 55/191 (28.80%), Postives = 106/191 (55.50%), Query Frame = 2
Query: 1331 SPFARKVSFYTRMICGTGLAVTLILCGVVVTFAPHPPGVNVCNTEFDWGSIVHSIKADAPSADFQLLVSIYNPNILDAKIERGTATLNHERFQVGTMTFQPAVLAGGYVV------DLLLTITFQ-TEAWTEARLAYEYETGQLAFLMDATISASVMWHGISTYPFTFSINNYYIKVSD-TTDYDRSLCNC 1879
+P A+ + R+ C + V + + ++ ++PH P + +CNTE DWGSI+ + A+ ++LVS+YNPN++ ++ + + H+ Q+GT+ A GG+++ D+L+T F T +L EY+ G L ++D ++ +++ PF + ++NY+I V++ ++D +R LCNC
Sbjct: 58 APAAQNLHACARVCCVLVVLVVMTVSVLLGLYSPHYPQLGICNTELDWGSILRGLVKMKVEAEAEVLVSVYNPNLIAMDLKHLSGVMKHDGQQIGTLEAGGA--RGGFLIGALSVSDILVTTRFMMTSVQKSVQLEAEYQMGSLLLMVDLSLEGALLIGSHQVSPFQYGLSNYFIHVNEYSSDDNRQLCNC 246
BLAST of mRNA_P-fluviatile_contig13.1894.1 vs. uniprot
Match:
A0A7S2MD85_9STRA (Hypothetical protein n=1 Tax=Helicotheca tamesis TaxID=374047 RepID=A0A7S2MD85_9STRA)
HSP 1 Score: 102 bits (254), Expect = 6.470e-19
Identity = 56/168 (33.33%), Postives = 84/168 (50.00%), Query Frame = 2
Query: 1385 LAVTLILCGVVVTFAPHPPGVNVCNTEFDWGSIVHSIKADAPSADFQLLVSIYNPNILDAKIERGTATLNHERFQVGTMTFQPAV-LAGGYVVDLLLTITFQTEAWTEARLAYEYETGQLAFLMDATISASVMWHGISTYPFTFSINNYYIKVSDTTDYDRSLCNCTQ 1885
+ +TL + V F P P NVCN EF W SI+ S+K+ A ++L+SIYNPN D +++G+ T H VG + + DL L T + W LA EY G L ++DA + A + + Y F ++++Y ++V+D DR LC C Q
Sbjct: 303 VVITLAIVSSSVIFYPKLPEYNVCNQEFQWKSIIDSMKSTELEASIEVLLSIYNPNHFDVDLDKGSGTFKHNDKIVGNWKIPDGTAIKASSITDLPLRCTVIPDEWEAVALAKEYYQGTL--VLDAQVEAKIRMPSLFNYTFKANMDDYTVRVNDPNMMDRHLCACPQ 468
BLAST of mRNA_P-fluviatile_contig13.1894.1 vs. uniprot
Match:
A0A3R7NH87_9STRA (Uncharacterized protein n=3 Tax=Phytophthora kernoviae TaxID=325452 RepID=A0A3R7NH87_9STRA)
HSP 1 Score: 93.2 bits (230), Expect = 2.500e-16
Identity = 94/385 (24.42%), Postives = 154/385 (40.00%), Query Frame = 2
Query: 752 CATCVWIGYCCLYGTYCYNNDQCQRKLPEFRGYAAP-SIGVILGVVLVGSTALFCGIAGISIAREFAKESAATRRREAIREAAVVASNGFSGRLAAAEPSGNGRNGNDCYLTLAGDADDDTGA---LIGGSGSRGSINVFDPSATEEXXXXXXXVPTVPNGKKDYGRRGGPRRXXXXXXXXXXXXXXXLAAAAQLGPSPFARKVSFYTRMICGTGLAVTLILCGVVVTFAPHPPGVNVCNTEFDWGSIVHSIKADAPSADFQLLVSIYNPNILDAKIERGTATLNHERFQVGTMTFQPA-VLAGGYVVDLLLTITFQTEAWTEARLAYEYETGQLAFLMDATISASVMWHGISTYPFTFSINNYYIKVSDTTDYDRSLCNCTQMM 1891
C T I C + + C++ + C+R P++ GY P S+ + + ++V T FCGI+ +I F +E R+ R A + A+ S R + +P TL D D L+ G + +F+ +E ++D Q+ FA + ++ T +I T LA + F P P NVCN EF+W SI+HS+ + P D+Q+LVS+ N N +E G A + H VG + A G + D + I + L ++ +L F ++A+I+ S+ W Y + S + V +YDR LC CT+ +
Sbjct: 54 CHTIGSISGCAVGVSACHHLEDCERSDPQYVGYGPPPSVVIAVLCLIVTLTCCFCGIS--AICSVFCRE-----RKPPSRRAELAAALKASKRNKSKKP------------TLKDDEDRAQAQRQPLLLEEIREGEVRLFENEVDQESLERLSS-----RYRQD---------------------------ERQVSWQTFAARTTWLTLLITMTVLA---------LMFYPRVPDYNVCNREFEWESILHSMMSLTPKVDYQILVSVINENRFGFVLESGRADIYHNSTLVGKWELEKEWEAAAGSISDKIAAINIEPGFAEGIALWQDFSRNELIFRINASITGSITWGRYKIYRISSSTPDVEFLVG--AEYDRGLCKCTEFL 376
BLAST of mRNA_P-fluviatile_contig13.1894.1 vs. uniprot
Match:
A0A3M6VGA8_9STRA (Uncharacterized protein n=1 Tax=Peronospora effusa TaxID=542832 RepID=A0A3M6VGA8_9STRA)
HSP 1 Score: 91.3 bits (225), Expect = 2.520e-16
Identity = 58/192 (30.21%), Postives = 89/192 (46.35%), Query Frame = 2
Query: 1319 QLGPSPFARKVSFYTRMICGTGLAVTLILCGVVVTFAPHPPGVNVCNTEFDWGSIVHSIKADAPSADFQLLVSIYNPNILDAKIERGTATLNHERFQVGTMTF-QPAVLAGGYVVDLLLTITFQTEAWTEARLAYEYETGQLAFLMDATISASVMWHGISTYPFTFSINNYYIKVSDTTDYDRSLCNCTQMM 1891
Q+ FA + ++ T +I T LA + F P P NVCN EF+W SI+HSI P ++Q+LVS+ N N +E G A + H VG +P G + D++ I + L ++ +L F ++ATI+ S+ W Y + S + V +YDR LC CT+ +
Sbjct: 98 QVNWKAFAARATWLTLLISMTVLA---------LMFYPRMPDYNVCNREFEWESILHSIMGLEPKVEYQVLVSVINENRFGFVLESGQADIYHNTTLVGKWELDEPFTAKAGSISDVIAGINIKPGFAEGIALWKDFSKNELIFRINATIAGSITWGRYKIYRISSSTPDVEFLVG--AEYDRGLCKCTEYL 278
BLAST of mRNA_P-fluviatile_contig13.1894.1 vs. uniprot
Match:
K3WID0_GLOUD (Uncharacterized protein n=1 Tax=Globisporangium ultimum (strain ATCC 200006 / CBS 805.95 / DAOM BR144) TaxID=431595 RepID=K3WID0_GLOUD)
HSP 1 Score: 91.3 bits (225), Expect = 1.110e-15
Identity = 56/187 (29.95%), Postives = 91/187 (48.66%), Query Frame = 2
Query: 1334 PFARKVSFYTRMICGTGLAVTLILCGVVVTFAPHPPGVNVCNTEFDWGSIVHSIKADAPSADFQLLVSIYNPNILDAKIERGTATLNHERFQVGTMTFQ-PAVLAGGYVVDLLLTITFQTEAWTEARLAYEYETGQLAFLMDATISASVMWHGISTYPFTFSINNYYIKVSDTTDYDRSLCNCTQMM 1891
PF + SF R++ LA + + + + F P P NVCN EFDW SI+ S+++ P ++Q+L+S N N +E G A + H VG P G + D++ I + + L ++ +L F ++ATIS S+ W Y + S+++ V +YDR LC CT+ +
Sbjct: 198 PFTWR-SFMIRIV---SLASLIGITVLALMFYPRMPDYNVCNREFDWESILQSLRSLHPKIEYQVLISAINENRFGFMLEEGKADIYHNGTLVGYWKLDAPLEAKAGSITDVIAPIKIEPDYSEAYSLWSDFRNNELIFRINATISGSITWGKHKIYRISTSVDDIEFLVG--AEYDRGLCKCTEYL 378
BLAST of mRNA_P-fluviatile_contig13.1894.1 vs. uniprot
Match:
A0A5D6XXA1_9STRA (Uncharacterized protein n=1 Tax=Pythium brassicum TaxID=1485010 RepID=A0A5D6XXA1_9STRA)
HSP 1 Score: 91.3 bits (225), Expect = 1.250e-15
Identity = 58/179 (32.40%), Postives = 88/179 (49.16%), Query Frame = 2
Query: 1352 SFYTRMICGTGLAVTLILCGVVV---TFAPHPPGVNVCNTEFDWGSIVHSIKADAPSADFQLLVSIYNPNILDAKIERGTATLNHERFQVGTMTFQ-PAVLAGGYVVDLLLTITFQTEAWTEARLAYEYETGQLAFLMDATISASVMWHGISTYPFTFSINNYYIKVSDTTDYDRSLCN 1876
SF+ R+ TG+ L L G+ V F P P NVCN EFDW SI+ S+++ P ++Q+L+S N N +E G A + H +VG + P G + D++ I + L + +L F ++ATIS S+MW Y + S+++ V +YDR LCN
Sbjct: 215 SFFVRV---TGI---LSLVGITVFALMFYPRVPDYNVCNREFDWESILQSLRSFHPKIEYQVLISAINENRFGFLLEEGKADIYHNGSRVGYWKLEAPLEAKAGAITDVIAPIRIEPGYSEAYSLWTAFRNNELIFRINATISGSIMWGSHKVYDISTSVDDIEFLVG--AEYDRGLCN 385
BLAST of mRNA_P-fluviatile_contig13.1894.1 vs. uniprot
Match:
A0A329SM72_9STRA (Uncharacterized protein n=17 Tax=Phytophthora TaxID=4783 RepID=A0A329SM72_9STRA)
HSP 1 Score: 90.9 bits (224), Expect = 1.400e-15
Identity = 54/172 (31.40%), Postives = 84/172 (48.84%), Query Frame = 2
Query: 1379 TGLAVTLILCGVVVTFAPHPPGVNVCNTEFDWGSIVHSIKADAPSADFQLLVSIYNPNILDAKIERGTATLNHERFQVGTMTF-QPAVLAGGYVVDLLLTITFQTEAWTEARLAYEYETGQLAFLMDATISASVMWHGISTYPFTFSINNYYIKVSDTTDYDRSLCNCTQMM 1891
T L VT+ + + + F P P NVCN EF+W SI+HSI P ++Q+LVS+ N N +E G+A + H VG +P G + D++ I + L ++ +L F ++ATI+ S+ W Y + S + V +YDR LC CT+ +
Sbjct: 204 TWLTVTISMTVLALMFYPRMPDYNVCNREFEWESILHSILGLEPKVEYQVLVSVINENRFGFVLESGSADIYHNSTLVGKWELDKPWEAKAGSISDVIAGINIRPGYAEGIALWKDFSKNELIFRINATITGSITWGRHKIYRISSSTPDVEFLVG--AEYDRGLCKCTEYL 373
BLAST of mRNA_P-fluviatile_contig13.1894.1 vs. uniprot
Match:
H3GTK0_PHYRM (Uncharacterized protein n=1 Tax=Phytophthora ramorum TaxID=164328 RepID=H3GTK0_PHYRM)
HSP 1 Score: 90.5 bits (223), Expect = 1.900e-15
Identity = 56/186 (30.11%), Postives = 89/186 (47.85%), Query Frame = 2
Query: 1337 FARKVSFYTRMICGTGLAVTLILCGVVVTFAPHPPGVNVCNTEFDWGSIVHSIKADAPSADFQLLVSIYNPNILDAKIERGTATLNHERFQVGTMTF-QPAVLAGGYVVDLLLTITFQTEAWTEARLAYEYETGQLAFLMDATISASVMWHGISTYPFTFSINNYYIKVSDTTDYDRSLCNCTQMM 1891
FA ++++ T +I T LA + F P P NVCN +F+W SI+HS+ P ++Q+LVS+ N N +E G+A + H VG +P G + D++ I Q L ++ +L F ++ATI+ S+ W Y + S + V +YDR LC CT+ +
Sbjct: 200 FASRITWLTALITMTVLA---------LMFYPRMPDYNVCNRQFEWESILHSLMGLEPKVEYQILVSVINENRFGFVLESGSADIYHNSTLVGKWELDKPWGAEAGAISDVIAGINIQPGYSEGIALWRDFSRNELIFRINATITGSITWGRHKIYRISSSTPDVEFLVG--AEYDRGLCKCTEYL 374
The following BLAST results are available for this feature:
Sequences
The following sequences are available for this feature:
protein sequence of mRNA_P-fluviatile_contig13.1894.1
>prot_P-fluviatile_contig13.1894.1 ID=prot_P-fluviatile_contig13.1894.1|Name=mRNA_P-fluviatile_contig13.1894.1|organism=Porterinema fluviatile SAG_2381|type=polypeptide|length=678bp
MPFICASFSYWNQVISTGRNSTRLGAVANAASRGLTCRRHLISAADAFRH
NRNRSRRATNRATGEERRTPSDLAENRLPSAWGTRKYTPGSRPDSNSIAD
TLLNSPTTRDNEQQQQQRSSSPTASRHRSEKSPQVVAMKKIAALDHKVTS
PSKGAQAQARKKTPEQVAMDEFAALERRLGAAPARAPAPPPATSSSRKQI
SGPSKAGLLSSKRPEEPKAEECCGNGCATCVWIGYCCLYGTYCYNNDQCQ
RKLPEFRGYAAPSIGVILGVVLVGSTALFCGIAGISIAREFAKESAATRR
REAIREAAVVASNGFSGRLAAAEPSGNGRNGNDCYLTLAGDADDDTGALI
GGSGSRGSINVFDPSATEEDEEEEAAVPTVPNGKKDYGRRGGPRRVRRGG
GRRSRSRAAALAAAAQLGPSPFARKVSFYTRMICGTGLAVTLILCGVVVT
FAPHPPGVNVCNTEFDWGSIVHSIKADAPSADFQLLVSIYNPNILDAKIE
RGTATLNHERFQVGTMTFQPAVLAGGYVVDLLLTITFQTEAWTEARLAYE
YETGQLAFLMDATISASVMWHGISTYPFTFSINNYYIKVSDTTDYDRSLC
NCTQMMQGALHRQQPEHPLLLLSQQPLEQQRRRRSRRLPFAESEGGSRAG
SIAAEEVLLPPAMGDVRDDEERAGVVQ*
back to topmRNA from alignment at P-fluviatile_contig13:2668651..2685981-
Legend: UTRpolypeptideCDS
Hold the cursor over a type above to highlight its positions in the sequence below.
>mRNA_P-fluviatile_contig13.1894.1 ID=mRNA_P-fluviatile_contig13.1894.1|Name=mRNA_P-fluviatile_contig13.1894.1|organism=Porterinema fluviatile SAG_2381|type=mRNA|length=17331bp|location=Sequence derived from alignment at P-fluviatile_contig13:2668651..2685981- (Porterinema fluviatile SAG_2381)
CACGGGCATACCAACTGCTGCTTTCACAGCTGTTTGTTTCACTGCTGAGA
GGGGAGAATCGCACTCTCTCCACATGCCTTTCATCTGTGCTAGTTTTTCA
TATTGGAATCAAGTCATCTCTACCGGACGAAACTCAACACGCTTAGGTGC
TGTTGCTAACGCCGCGTCCCGTGGTTTAACTTGTCGCCGTCACTTGATAT
CTGCAGCCGATGCGTTCCGCCATAATCGAAACAGGTCGAGGCGCGCAACA
AATCGTGCAACAGGCGAAGAGCGTCGGACCCCCAGCGATCTAGCGGAGAA
CCGCTTACCATCGGCATGGGGCACGAGGAAGTACACTCCTGGGTCCCGTC
CAGATTCAAATAGCATTGCTGACACGTTATTGAACTCACCCACGACTCGG
GACAACGAACAGCAGCAACAACAGAGATCGTCGTCTCCAACGGCAAGCCG
ACATCGTTCGGAAAAATCTCCTCAGGTCGTGGCCATGAAGAAAATTGCTG
CATTGGACCATAAGGTAACATCCCCGTCGAAAGGGGCACAAGCGCAGGCC
AGGAAGAAAACGCCGGAGCAAGTCGCAATGGACGAGTTCGCTGCTCTTGA
GCGAAGACTGGGCGCAGCCCCAGCCCGCGCTCCCGCTCCCCCCCCTGCGA
CTTCCAGTTCCAGAAAGCAAATTAGTGGTCCCAGTAAGGCGGGGCTATTG
TCTTCGAAGAGACCTGAGGTGAGTAGGAGAAGCTAGCTGCAGGCTAGGAA
TATGACGGCATAAATACACATAAGTGGTGGTGATATCGTAGCGCACCCCT
GCACTCCCTGTACGTGGATTGTTTGGTCAAAACGGCGCGGGTGCAGCGTA
TCGGCGGCAAATACCGAGGACGGCGCTTCGAGCTCAAATTGCTTTGGAAT
CCCTTTCAATTGCAATCGAGACTGATGATGCGCTCTTTTTAGTCTTGTAT
GTTGATCTAGTACGTGTGGGTGGCAAGAAATCTCCCACCTCCCAGCAGTA
CTGTCTACCGAACAGGTGCCACCGGTGGATGCAGGACTCTTCGTGCACCA
TCTCCAGGAAGAGTTTGCACAGATGTACATAAAAGTTTTGGCCAATGTCC
AACACATTGTCTCGTCAACCATCTTTGGGTACTTTCACGATGGCCAGGAA
CCGAAAGCGGAGGAATGTTGTGGGAATGGCTGCGCTACTTGCGTCTGGAT
TGGATACTGGTGAGTCCCTCAAGATCAGCATTCGATATTCCAAGCCACAG
AGCACTTCAGAAAGGAGCTGCGCGGGAGGCGCGCTTCATTTCACTTCCTG
AGTGCTGGCTGTGGTCGGGAAGTTCAGACCTAAAAATTGGGGACGAGACT
CGAACGGTTGCTTGCGTATTACACATCGTGTCTTTCCGGGCGATGTAGGT
ATGTGTGTGTTTTCGATTTGTTTTCTTGGCGACAGTCCCACCATTCAAGG
TGAGACGTGCGACACGTTGAAGTGTATGTAGGGCCTACACTTTTTCAGTG
TGTTTTTCTGGACAGCTTCAACCAGCCGAGGTCACACAGGATGGGGGAAA
CACCGGGGCTTGTTTCGTCTTCTTGTTTGTGTTATTGCCCTACCTCCTGC
GGTGCGTGCCGTCATTTTTTTATCGCAATAAGGGTTTAGCCATCCCTTTC
CCTCGTCTTCAATGAAGTCGGTTTTTGTCTACTCACGAGCTGTTCAGCTT
TTATAGCTTTTGTACTACCAGGTGCAAAGGCGACAAAAAATCCCACTTCG
TTGGGACTCGAACCCGTGACCTGGTCGATGGCAGTTTTCGAGGTTACCAC
TAGACCACCGAGGCGGCCGGTATCCGAGAATGAATTTCAGAGTGCCACAT
CCATCGACTTTCCTTTCATCTATATTTAGCTTATAAGGGTCCCTCTCCCG
CTTTCCTCTCACTTGAAGGATTAAGGCACGATTTATGGATTTGCTTGTGA
GTTTGGTCGGTGGCTACCGCTTACGGGGTAGATGAACAACGCCCTTACGG
ATACGATGAATCACGCCCTGATATGTAGCTTCGTATCGTTTCCCCCCTGT
TTGCGATGCACGCAAAACGCAATCACTTACGAGGAGCCCTCTAGAAGAAG
TAGCGCACCTTCACTCCACGGTGCGGCCTGTGGCCATGAACAAACCCCGT
CATCGGTCCAAGGTACAGCACATGGCCGTTGATGGGCTCCTCCCCGGTCT
TCGTCGACAACATGTCGAGCGGAATATCGTGTCCCTTTATCTTCTGAGAT
TTTCGATGGAGTCGATATGTTTCAGAATACATCGATTCCCAGGCACAGCT
GCACGAATGGGTGTGCCTCGTCGAGGGAGGCGTAGGTGGCAAACAATAAT
CTTTGTTTTTTTAGGTACCCTCCTCGTGTAAACACTCCCCCAAAGCTCCT
CCACAGGCAAGAGCAATCAGAGCTTCTCTCCTAGAGGTTGAAGTTTGGCA
AGTCTTTCATTTTTCTCTCGCTCAAGTCAATGCTAATGCTTGCGGCCCGA
AGTGTTCGCGTTCGACAAAACGTGCTAAAAAATCTTGTCACAAATTACTT
GCGGAAAGCAAGGGACATCCCAACCCAAACCCCCACTCTGGGTAGCGAAT
TCCGCCCGAATAGCCTACGCGTTATTATCAGGAGGTGGGAGCAGATCAGA
TTTTTTACCATAGGTGTTTCAACTTCCAACCACTTTGCCGTCCACCTATG
GTACAGCTCGCACATCTGAGCATCCCCCGAAGGCTGCAGCAGTAGACACT
AAACACTTCAGACAGACATGACATACAATGAGCACAACCCAGCCTCACTG
CTCCGGGCTTGTTCTTTTCGTCTCAACACGATCCTTGGAATAGGGAAGAG
CTGCAGGCGTGGGAAGAAGCACAGCACGAGGGCGTGGAGACATGACCATG
ACACACAGTGCGGAGAGCTTTCACGATGTCGTGGGCCGGTGCATTCGATT
TGAGATTTTCTACCGTAAGCTCTTGGTGCGCCACACTCCGGACCCCACAG
GAACGCCGGTGCATTTCTCTTGTGTGTTCAAGTAAGCTGCCTATTGTGGG
TTGGCCTGGTCTGGTTTTAGGGGTCTCAAGTGCTGTGGCCAGAGCAAACC
TTGAGTCAAAGACCAATACTTCGAAAGCAGCGGCGAAAAAGAGGATCGAT
AATGGTCCTGCACCTCGTCGGGGCTTTCCTGCTTCGCGCTAGCGGTGTGC
CTCTTCCCCCGCCGCAATGCTGCAAGCGTGGGAAAAAGCCCACCGCAAGC
GCGAAGTAGTGTCACGACGACGTAGTGCAGAAAGCATTCCCATCTGTCTT
CGGTCGGTGCATCTGATCCGGTTTGTGGTCTCCCTTACTCTCTGGCGCCA
GGCTCTGGACTCTATAGAGCTGTCGCATTCACCTGTCCCAGTGCTTCTCA
TGTGCTCGAGCGTACCCCGCTGCAGGCGGTCTGGTCTGAGCTTGATGGTT
GGGGGTGGGGGAGGATGCCAACTTGCCTTGCTTGCATCATGAACGACAAA
TCCGCGCTCAGGCTGTTGTGAAAGCGACAATTTCGCATTTGCGGCCTCAT
CACAATGCAGGTGGATTTTGAACCTCAGCACATTGCCGCAACCAAGGCCG
TTGGGATCTCAGTCTCCGCCAATCGATCGTGATTCCAAGGTGCACATGAC
CCCGAAAGAACCACCATATATCAGTTACTATCCACGGCAGACGCCTCAAT
GGTCGCTGTACGCGAATAGAAAACTGAAAATGTCGTTCTTGATTTACCGG
GAATTTTCCGGGAATGCACTCGCACACCAAGTCCAACATTCAAAAGCGGT
TTTCCCCCATGGAATTTCTTTTGATCCGTGCAGGTCATCTCACACTCCCG
AAGGCACTTCAGGGACCCTCAGCCTTTCTTCCTGACTTTCTAGGATTTCG
CTCCACGATATATTTCGCAATTTTCAACACAAATACGACGCCTGAATGTC
GTTCCGCAGCTTGCATCGTCTGGATAGCTTGTCTTCGGAAATCTAAAGCG
CCCAAACGAAATCTGACAGCCATGACACCGCTTCCATGAGGTGTCGTCAC
CGGTCGATATCGCGATGCATGCAAGTTTGGACAAGATTCCGACCCCAAAC
ATCGTGCACAAGGCTATTTTCAACGGCACAACACATCATCAGGACAGTCA
CATACTGTAGAGCAAGCACGTCGCCATCCCCCACCCTTCAACTCCCAACG
CACTCGCAGCCACATCTTCGCCACATACTTCGAAGTATTTTGTGGACAGA
CGAAAGCGAGCAACAACAGGGCCTCCCTTGCATGATGCCATTAACATGGA
TTAACAACTCGGAACAATTTTCGGTGCTTCTAATAATTCTCGAAACATAT
GAGTAAGCAATCACCACAAGCAGAACAGGGGGAACAAGACAACCTGAAAT
CTGCAAGTCAAATGGGCCGCGAGGTGGTCGTGTAACACAAGCTCACGGCG
TGTTGCTGCTGTGTGACTGCTCTTCTTATGTTCTCGCTCTGTTCTCCCCA
GCACGAAGACCATCACTCCATCTTTTGCAACCGGCCGGCAATGCCGCGAG
CGTTGAGACCGCAGTGACCCCCCCCCCCATTCATCTGGGAGCTGCGAGCA
TATGGGTCGCTAGTTGGTCGAGGCTGCCGTTCACGTCCTTGCTCATCCCC
TCGGCCTTCACCACCAGCTTTGCCAGCTCCGTTCGCTTGTGCCTACCCTC
CTCGTCGAGACGGGCAATCTCCTGTTTGTTTGACATCCGTCGAGAGAAGT
TGAAGGCGGCATAGAAAGGAGGCTTGAGAACGGCTACCGTAGATCTCAGA
TATCATACCCACCTTAGATAACACACTCCGGTGATAGAATCACAAGGTAC
CAACCCCGGTGGTCATTCTTTAAAACCCCAACAAAATTACCGACTTATCA
CACAACTATCCCCTCCCCACCGCAGATCGCATAATACACCACGCCCCGGG
GATAACATTGTTCACTTTCAAAGCATTTATTACCCGAGAAAATATATCTT
GGAATTTTACACCCGGGTGTGGCATCTAATGTGACTCGCCTACATCATAC
CCACAACATCCACAGCATTCCCTCCAGACTCCCTCTATCATGACCTCGAA
CGAGAATGTACCCCATACAAGCCCCCCTACGAGGTGAAAGACAGAGGCCA
AGAAAATCTCGATAAACAACCATCTGCATTTCCTCTGTAGAGAATACCGT
AAACCCCGTGCTTCGGATGCTGTACCACAGCAGCAACAAACGCTGCAACG
TCAAATGACGTGACTGTTTGCCGTGAATACGAGGCGAACTGTGCCTCATA
ACCGGGAAAGCCGGGTTTACCTCCCGTTTATTTCAATCGCTGGTTGAAGA
GACCAGGCTAAAGCACAAAATCAGTCAGATATACCAAGAGAACAACGCGC
TTGGACCCGTGCTCATTCCACGGCAACAATTCCCCGCTGCCCGGCACCCC
CGCCTTCTGTGCCCTCCCCGTCCTCCTCGCTACTCGCGCCACCCGCGTCT
TCACCGTCTCTTCCGGCCGCTGTCTCGTCGTCGCCAGAGATTTGGAGAAT
CTCCAGCAGACACGCCGTGTTCGACGCTGGGTCAGCCTCGTTGGTGCCGA
CCTTCGCGCCCTCTGGGAAGAGGGGATTCCCGTTGACGTCGGCGCCAAGA
TCATTGTCGGCTCGAGCCTCGTCCCCAGATCCGTATAAGGGAAGGAGCAG
GCCAGCCTTCTTTCAACTCGAACGGATGCTCGCGGCGTCCACGTGGTCGC
ATATTTCTTGACTCATTTGCCCGAGCAAACCCCTTGATGTGGGCTCCGGC
TAACCACGTTCGGCGTGGCGCTCGACGTCGGGCGAGGCCATGAAGTCGTC
GTACCGCCGGATCATTTTGGCCTTTAAGATCTTGTTGATGAACCGATCAC
AAGGCTGGTTCTTGGGCGTGAGCCATCCAATGGTGAGGAAAAGCGTCGTG
TGGGACTTTGTCTATCGCGTCCTTGGAAGCGGCCGTCTTGTGGACGGTAA
AGTCGTCCAGCACTAGCAGCGAAACGGGGTGGCGGGAGTTGCCGAGGGGC
CCTGAGCGCCCCGAGCGGTGGGGCCCAGACTTGCGGGGGCCAAACATCGT
TGAACACGCGCCGAGTGTGCCATCCTTTCTAGTTAACCGCGTACACCAGC
CCGCGCGGATAAGGTTGGAACTGCTTATCCTTGTAGGTCTTGATCTCTCG
CTCGATGCTGTTGGCGGCGGGTTGCTGCCCCTGCGGCGTATGCTTGCCCT
AGACGAGCATGGCGGGAAGTTTGCTGCCATCCAAAGCCACTGTCGGCACC
GCAGTGATGCGCGTCGTCTCCTTGCCACCTGCTTTAACGCCCACCTCCTT
CTGCCCGACATTGTTCGTCTTTCAACAAGGCAAAAACAAGTGGAGGGGCG
GAGGGGGGGCGGGAGCTAAAAATGCAAAAAAACATACCACTGTGGGAAAT
CATGAGAAGAGACAAAAGAGAGAAAAATAAAACAAAGAGAGACACACCGC
GGAAGAGGAATGAGAGGGTGAGCCAAAAACAAGGCAACGTGATTGCCCTG
CGGTGTGTCAAAATACATCCGAGAATGAAAAAATATTTGGGCCCTAGCCA
ATTTCGAATTCCGCCTCCCGGTTGCCCAAGCTAGAAAAATATTTAAGCGC
TTTACAAGAGGCATATTGCGAGGCAGAACAACAAAAACATCGCCACTTAC
CGACACAATCGACTTGCCCGCTGGCTCAAATCACACTGGTGTTTCGTCCA
TATTGTACGCTTGCTGCAGCGGGTACTGCAGGGGTGGCTCCACCCGCCGC
AACGCCGCCCCCACCAGCACCGCCCCCCGCTTCGATACCTCCGTGACGAA
GCGCCCTCCACTCATTCGCTGCTTTCATCGCAGTCGCAGACCAGCCGGTA
GGAAAATTTTGGCCTCACCGGGTGGCGGATCCGCATGCGATCGACCTTCA
GAAACCTCGTGCACCAGTTGATCTGCTTCAACCGGTACTTCCTGCTGCCG
GCGAGGTCACGCAGTGAGGAAAGCGGGCTGAAGAAGAGTGGGTTGAGTTC
CAAGGCCTTATTCTTGATCATCCTCATCGAGACACGAGCAGATATTGCCT
CCAACCAAAGATCATTGATCCAGTCGCTAATCTCCCGCTCCGTGTCGCGG
TTCACCTCGCCCCTTCCGGTGTTCAGTGACTTCAGACTCCCACGCTTGTT
CTGCATTTTGCCCATGCCTGCTGTTTCCTGTTTCAGCTGCTCCTCATACT
TGCCCAGGCTTTTGACCCACGACGAAAGAGTCGCCTTGTCGAGTTTCCCA
AGAACCCTAGTGGCGTACGATGTGCCGACAGACCCCCCTGGCCCCTTCCG
TCACTTGGCCTTTTTGAGCGCGTAACCGGCTGCTCTGACCTTGACTCATT
AGAGTAGCGCTTCCTCTGCAGGCTACCGCCAATTTCGGGGATGGGGGAGT
CCGGTGCCTCCAACCTCAGCTTATCCCTCGTCCTCTTACCCTTCCCCTTG
GCAGACGTGCCGTCGAGACTCCGACCAAAGCCATCCGTCCACTCGTCAGA
CTATCCAGGCAACAAGGTGTCGCCAACGGGCGCCTCCGATGCTGTGTTTG
CTGCAAAGATCTGCACAATGTCGTTCACGGGGGCCATGAAACAACAAGAG
TAGATAAATTTGATAGGGGAAACGCCCAGCGCGGTATTGTTGGAACGAGA
GCGCACCTCCCCTAATTTGTTACGAAAATGGAACTGCTCCGAGGTACGAA
TGATTTAAACAACCAACTGATAATGCCCTGGACATGCGCGTTAAAAAATG
GAAAATGTACCACATCGGGGCGTTCTGCACAATTTCTGACGTGCACCGGC
GGTATTTAAGGCGGGGCTTTTTAACGAACTTCGGTCTTTTGAAGGTCAGG
ATACAATGGCGGTATATCCATGGATCCAGGTGACCCATACAGGTTTGATC
TCTTGGCACAGCTTGGAACAAGTGCAGATCCGATCGCGTGTCACACAAAA
AAAAAGGTCCTGGTACTCACTTCAACGTGCTGGGCTTCGCAGGAGAGGCG
CAGAACTTGGGCTTCTATCCTAGCTTCGCATGGTAAGCAGTCTTCTCACA
CAGTGACTCGCAGCAAAGCACTGCTGTGTCGGCGGTTGGCGCTGTGGGCC
CCCCAGCAGCCGGAGGAGGTGTAGGGATGTTCTGGTGTGATGGCGGGTTC
GACCCAGCAGGTGGTGACCCAGCAGATGGCGCTGCCGCAGCCGCCGCGGG
TGCTGCGCAAGCCTCAGCAGGTTGGATTGCTGGTGGATCAGCGGGTCTCG
AGGGGATGACTACGAGTCAAAGAGTTGGTTGTCGGTCGTTGCTTTCAAGA
TAACTCGCTGCAGGAGGCACTGGTATGGCAGTCGCGGAGGTTTTAGGGAC
AGCCGTATGACTCCGCCTCGATTCTGTCGGTGGTCCGCTCCTCCGCGCTG
CTTATGGTATCCACAGGGGTGCTGTGGGACGTTGCACTCTGCATAACACC
ACCGGGTGTAACAGCCACCGTCATGGCGGCAACGCGGTATCACCCCTAGC
GATACCAGCGGGCTTTGTGCAAACTGCGGCGAAACTTCAGGTGAAGTGAT
ATCTAACGTGATCCATGTGATCAATCGTTTTTTTGTTTTCTTGGGGTCGC
TTAAGAAAAGACCACCGCGGGTGGTATTTTGTCATTCTTTCACCGGGGTG
TGTGTGTTGTGTGTAATGTCTTCACATCAAAAACCCCTCTCCGCTCACTC
ATTTACCTCCAATCGTCCGTACCCTATCCTGCCTGGTTCCCCCTTACCGT
TGGGGTCCCATCCTGGAACGAAGAATCGGTCTCATATTTTTAGCACCTAA
CGAAGCGAAAGGTATGACAAGACAATGAGGCAAAGCAACCCATTATCACC
CCCCTCTCGCTTATTACGTGGGCGTAGGGGTGTGGTATTTATGTGTGTGG
TATCTTATGGGATCTACGGCATGTCTGAAACTCATGGATCATCGCCGTGT
GGTCTCCTCTGTTTTTCTCGCCTCCATTTGCTGGTCTTCTCGCAGCTCCG
CGCCCGGCAGCACATCGATCAGGTGTTCCAAAGCTTTCGCTTGCTTGAGC
ACTCCCTCAGCCAGCGATTGTACCTGGCTTGCCCAAGCAGCATTTGTGAC
TACCGCCCGCCGTAGCGGAGCTGCTGTTGGGTTTCCTCGATGTGGTATAG
CGCCTCTTGCGCCCCCCTCGACTTCTTCTGAAAAAGGAATGAGCCGAAGA
GAATCGAACATGCTGAGCGCAAGCTGGTCCACAGAATCTTGCATAACAGA
GATGGCGTCTTTCTCCTCCTCCATGGCTAACTGGCCACCCGACAAGGAGA
GTGCGAGAGTTCACGCACAGTGCCAGGGGGTGCGCCCCAGAACCAGATTT
GTTGAGTGGCGTGGCACAATATTGCATGCCATTTCCGTGCCCCTCCCGAC
GCCGACGCTTTTATCGTTGGCCTAGGAGCTGAAGGGGTGTGCTCTCGCCT
TACCGACAGCTTCGTGGGTGGAGAGGGGGAAATTTTGACTACAGTGACAG
AGTTGCGACAGCGTCAACCCCTGGTTCATACTTGGGGCAGGAAAATCAAG
CGAGGTTGAAGTCTCGGGGCAGGCACATACCGGTGCTCTTCTACACTAGG
CAGGGGGCGAGCGTTTCGTCGCAACACTCGGCCCGTGCCAGGCTACGCGG
GATAATTGTGGTCCAGGAAGCTACTGCTGTTCGATCGATAGCCACACGTG
GTTCGGCCTGGCTGTGTAGGATGACGAGGTTTCGGGGAACTACTGCCCGG
TCGATGATAATTTTCGCTGCGGCGGCTATTCTTGTGCTGCGGGCGGAGGG
AGAGCACTGCAGCACACTTGGCTCGTGCGGCGCTTGCCGAAATTCTACGT
TCTGCCATTGGTGCCAGGACCAACAATGCCATGCCATTGGCAGTCCGATG
GGGTGAGGGAGCGAGGCAGACAAACAGCGATTCGACAATTGAAAATATAC
TGGGTAGCAAGGGGTTTCTGTGGAGGCCTTACCCTTCAGGGTGCGTACCC
CCTGAATACCTGTCGAGGTACAAACCACCTTTTCCACATTAGCGTCAACG
AAGAGATCAGTCGAAGTTAAGCGGCGTCGGGCCAGGCCAATACTACGGTG
GGGGACCCCGTAGGTAGAGCCGCCGAAGAACGTTCGCAGAACCATGTTCT
TAACGAACGTCCATAGCACGCACAGAACGCACAGGTTCTCAGAACTACCT
TCTGGTAGGTCATGGCGGATGGATGTGGAACATACATCATTAACCACGCG
ATGAAGATGTTGGAAATAATGGTTGCTGACTCGCCGCTAGCCGGTCGGGT
TCCGGTTCCCCTGGGGAGGCTTCTTGCCTAGCAAACAAGAAGCCTCAAAA
AGGGGAGGGTGATGTGGAGGCCTTTACCCTGGTAAGGGTACCAACCTCCC
AAACACCCGTCGAGGTACAAACCACCTTTTCCACATTTCCCCCTTGTTTT
TTAGCTTGGTTTTTTTAAATAAAAAAGTTGAAGTTCTTTTGCGGAAAACA
TCTTGTCCCGAAAATCGTAATAACGAAGAGGGGTCGCGCGGTTAACCCCT
CTTCGTTGTTACGATTTTCGGGATTTTCGGGAAATGAACGTGAAAGTACA
CCAACTCCGACACATCACCTTTTTACGGGTTGTGATTAAATATCTCAAAT
CATTTCAAATTACATTTAACACGCAATGGTTGTTGTTCCTACCGCCATTG
CGTAGCTCTTGCATTATAGACGGTGTACAACAATTTTTTTGTTGGATTTT
TGCAAGACATTTAGGCGCGTCAAAAAGGTGCACACACGTCTTCGCGGATC
AAAAGTTAAGATAACTCCAAGCCTCCCGCCCCCGTCCAGGCTCCTCCGCC
CCCGTCCATCGCCGAATTTGATTATTATTCTCAACATGAGAGAAAGAGAA
AAGAGAAGCATCAAGGAGCGTCGATCGCGCGATGCCCCTTTCCCTACTTA
ACTCGGGTATCCCATCCATCCACCGCCTTTCGTGAGCAGCGCTTGCGTGT
TTTCCTCGAGAACCGCGGGAGGAAAACAGTTGATTTTGCTTCGACAAGGG
GGCGAGGGCGGGAGGGAGCAGTGGTACCTACGTATATTGCAGTCGTCAAA
GCGAGTTGCCACTTGCATGTGCCCATTGTGACTCTTCCGTCGCATGCAAG
CCACGTGCCTGCGCTTGAAACATGAGTTCTTTCCGAAGAGCGTACGAGCA
TGCCGCAAGGCAGCCCGCTGGCAATTCCACCGACACCAGGATCAGCTATA
CAGGCAGGCCGGTCTGTGAGATGGTCGGGTGAGTACAAAACACAATATGA
CGGTTTGCGACACACCCGGCCGTGCTCTTCAACCGGCACGCAAGGCCAGT
CAAGCAGCTTTCGGCTTCTCAGCTTCAGCATATCCAGCAGAGTCGACTCG
TCAGCACGAACAGATGCGATGACGTGCAACGCCGTGGCATGTTTCAAGAG
TAACATTTTGCCAAGAGAGTTGCGCGAGCTCCTGACTGATCGACCCTGTT
GAAGCTGTTGAAGCTGGGGAGCCGAATGCTTCTATTCTGCACCGCGCTGC
ACTATTATCCCAACGAGGCGTAGACACGAGGGTACATGAACATCTCGACA
GAAGGAAGGAACCCGACCAGCGCCTCTACGAAATGAGCATAAAACACCGT
TAAATATTACAGGAACGTCGTATCGTAGATGGTGGAAGGTCAAGATTGAC
TCCTACACCACAATCTGTCGGCGTGAGAGGGTTTCTGGCTCGCAAGGGGC
GGGGGCGTACTCATGTTTTGGATGCCTTTGTTGTTAGACCATTGACCACT
GGCCCGCAAGGGGGGGTGCTCGATTCACGTATACCGTAGCCGTCAGGCCT
ATAAGACCCCTCATCCCTTACTTGTCAGGAAGTAGCGATCTGTCGGGTTT
CCACCGGCCCAGGCTATTGCATTCACCAAGCGCGAGGCGCCGTGGTGCAT
TCGGCGAGACGCATGAAGGGTGGGCAGCATCCTACCAAGAATGTTCGACC
AAAGGCTTGCTGATCGTGTACACGGATGACAGCCTCAACTGAGCTCCAAT
TTATTGTTTGGTTTCGCCCTCGAGAGAGCAATTGAATTGTGCTACGGCAG
TGCCTCGCGGGTACATAACCATTTCAACACTGCGTGGTACGACCATGCCC
CTTGTGCGGAGTTGAATTTCCACCTCGCACACATGGTTTTTCCCAACCAC
TGTCATAGTCAACGCCGGAAAAAAAAAGCGGGAACCTGGTCGCCCAGCTC
ACGCGGCGAGCAGCATGCTTGGCGGCACCGTCGCCAACCCGATGCCAACC
CAACCTCTTGCCGCGCCATCTGGCCTTTGCATCTCCTTCGAGAGCGTCGG
TCGGACGGGATGGGGGGGTCCAGCCTTCTCTCTCGACGGACTCGTGCCGA
CACCGTCGTGTTTTGGATTCGTAATTGCTCGGAATGGAGCGCAAAAATCT
TCCGAATTTTTGCACTGCGCCACGCCATTATCAGCACATGACGCGCGCGA
GTGTGGCGCGAATAGGTGCCCTCTACTTCCTACCTTTCCGCGAAAATATT
CCAACTGCGAACAAACGTCTGCGTCATTATGAAGCCAACCTGCTCAAAGG
AAGCAGAGGTTCAGATTTCGGATCGACCGACGTACGGGAGTGCAGACACC
CTGCTTGTGAAGGTTCTCAACATTTGACCATGCGTTTGTACTTCCGGTTC
CCCTCCCGCCCCCGATGTTTTGTGGCCGTCGTCTCGTCGTTTCCTGTCGT
CCACCGTCCTCTGCCGGCGCGTTATCTCCGCTCGTGTTGGAATGCAGCTG
CCTCTACGGCACGTATTGCTACAATAATGACCAGGTACGTGTGTCATGAG
GATTGCGTGTTCAACGAGTGGTTCGTTGCGAAGTTGCAGGGTTTCTTGCG
TTTCCTTCTGTTTCGACGCCCTCGCAAGGCTCCTCCACCCCCATCCCCAC
CCGCACCGACCGGTTTTGCTGTCCTGCCTTCAATCGTTCGCAAATCATGG
CTGAGCAAACGTAGTCTACCTCCGATCTGTGCTGCACTTTCGTTGCCGTC
CTGCACCGTCCTTCTGAGATATAGACTCCCGAAGAATTCAAAATAGAAAA
TTCGTGTAGAAGAGTCAGCCAAATGAGGTGTGGGACAGGAGTTCCTGGAG
GCGCCGCTCAAACTAGAGCGAACGCAAGCTTGTGCCTCTTGGGGACGGTC
TTGTGTCGTGGGCGTAAGGGCCGTGGCCACCACCCTGGCAAGGGCATGGG
TTTAGGGGAGAGTGCGAACATGCGCTTCCTCAGGACGCGTCCCCACCCGT
CGTCCCTCCTCCCTTTCTGTCACTATCTGCTGTTTGGCCCGCTCTACCCC
TCCTGCCCACCCTCTCACCACACCTCTCGGTCATCCCCCGGTTTCACGTG
CAGTGCCAACGCAAGCTGCCCGAGTTCCGAGGATACGCGGCCCCGTCCAT
CGGCGTCATCCTCGGTGTCGTCCTCGTCGGGAGCACGGCGTTGTTCTGCG
GGATCGCTGGAATCTCCATCGCCCGTGAGTTTGCTAAGGAGTCGGCCGCG
ACCCGCCGGCGGGAGGCGATCAGGGAAGCCGCGGTGGTGGCCTCCAACGG
TTTTTCGGGCAGGCTGGCCGCGGCCGAGCCATCTGGAAACGGCCGCAACG
GAAACGACTGCTACCTGACGCTCGCCGGCGACGCCGACGATGATACCGGC
GCGCTGATCGGCGGCAGCGGCAGCCGCGGCAGCATCAACGTTTTCGATCC
CTCCGCCACAGAAGAAGACGAAGAAGAGGAGGCAGCCGTCCCGACTGTGC
CGAATGGGAAGAAAGACTACGGGCGGAGGGGCGGGCCGAGAAGGGTGAGG
CGCGGCGGCGGCCGCCGGAGCCGGAGCCGGGCGGCAGCGCTGGCCGCCGC
CGCCCAACTTGGCCCGAGCCCGTTCGCACGCAAGGTTTCGTTCTACACGC
GGATGATCTGCGGTACGGGCCTGGCGGTCACCCTGATACTTTGCGGGGTG
GTGGTGACATTCGCGCCCCATCCCCCCGGCGTCAACGTCTGCAACACGGA
GTTCGATTGGGTGAGATTCTCCGCTGCTCATGTTTCGTGCGCGTGCCGCC
CCCCGAATACCCGGGTGTGTTTCTACACCAAGGGGTCGTTTTTCTGTATG
AGAATACCTTTACGTATTTTGGTTTCTGGGTTTCCTCAACACCCGCTCTC
GCGCTCTCCTTGCTATGCGCGTGCCTTCATCCTCCCGCCCAGGGCTCTAT
TGTTCACTCGATCAAGGCAGATGCGCCGTCAGCGGACTTCCAGCTTCTCG
TGAGCATCTACAACCCCAACATACTGGACGCTAAGATCGAGAGGGGCACC
GCGACCCTCAACCACGAGCGTTTTCAGGTTTGGCTCCCGGTCCTAATTTA
CGTGGAACACACGAGGCGGTGGAACTTGACGTTTCTGTGGCATGTAGGAT
AGTTATCGAGGGGAACGACACTGGGGAGCAAGGGTTCGAAAAATGGTTGT
AGCTTGAACCGTTGTTTCCATTTGGCTACCCATCGAGACGTCTTTGCTTC
ATTCGTTGCGGGATGTGGAAGAGGGCGAAGAGGCGGCGCAATGCGAAACG
ATCGGCATGCGTCCCGCCGCCGAATCTGTCTTGTTCGCTATTTTGTGGGT
GATGTGACTGGGCGTGCTCTGTAGAGCCTCGTCTTGTCGTACGTGAGAAA
AGGGCGAGCAGCCGATGTCTACGTCTAGCATGGTATGAATGTCTGCACAA
TCGCAGGCAGGGTCGACCTAGCCTGTATATCTTTGTTCTGCGTCAGTCTT
GTGGTAATCTTTCGGCCCGAGCTGTCGTCGGTGAAAACCCCTGCACGCCG
TCTCCCCCAACAGCGTTACAAGACTAAAATTGTCGATTATTTGCGGTTTT
GCTTCGCTGTCCGCTCCACTGTAAGAATGACACACCTCGGTCGTTTAATC
CGGCGGGAACCGCGCGCTTTTGTCGTACCTTTCTCCATTACAGGTCGGCA
CAATGACGTTCCAGCCGGCTGTCCTGGCGGGGGGCTACGTAGTGGACCTC
TTGCTGACCATCACTTTCCAGACCGAGGCTTGGACGGAAGCGCGCCTAGG
TACGTCGCGCCTCCTTAATCGTTGTTGGCAAGCGGATAGGAGGAGCCTCG
TTGTCAATCCTGAGCTTGGCAAGATTTAAAGTAAGGTTTTAACAGCATCA
CGGATGGTGGATCCGGGTGATGCTTGAGGGGAGGGGGGAGGTTACCATGT
GGCATTCTCGACACGAGGCCACAAAACTCTCGTCGAAGCAATCTCCATTT
TGTTTTTCGCCATCGTGCATGGATGATGTACCTCCAGTACGTCGAGGGTT
CCCGGTTCGTGTCTCGTGGCTCCGGTCAGGCACTGCTGCAAGTCATTCGC
GTCCAATCATTCCCGCTGCCCTTCCTCTCACCCTCTCCCGTCCTCCTCAT
GGGGGGGGGGTCGACTCCGTCCATCCATTCGCCGGGTACCAACGCAACCT
ACGGATCTATCGAACGACAATTCGACCGATCGAATCGATCGGTGGACCAG
CCTACGAGTACGAGACCGGGCAGCTGGCCTTTTTGATGGATGCGACGATT
TCAGCGTCGGTGATGTGGCACGGCATCTCGACCTACCCCTTCACCTTCTC
GATTAACAACTACTACATCAAGGTGTCCGACACGACGGACTACGATCGGA
GCCTGTGCAACTGCACGCAGATGATGCAGGGTGCCCTCCACCGACAGCAA
CCGGAGCATCCGCTGCTGCTGCTGTCGCAGCAGCCCCTGGAACAGCAGCG
GCGGCGTCGGAGCAGGCGACTGCCCTTCGCCGAATCCGAAGGGGGGAGCC
GCGCGGGATCGATAGCGGCTGAAGAGGTGCTCCTGCCTCCTGCTATGGGC
GACGTTCGTGATGACGAGGAGCGGGCAGGTGTCGTGCAGTAGTCTCACAA
GGGCGAAAGTCAACGTGCTTGTGACGGCACATGCTAGTTGTCAGGGGACG
CGCATATGTTGTTGCGTTATATAATACTCCGGAGTACTCCGTAGTAGCGT
TTTGCTTCGAAGTGGCTTTTCCAGGGGTCATCGCAAGCAGGAGCTGTAGA
AGGAGCTCCCTATCGCCGAGCTCCGTCAGAAATCCAGTCAGGATTTGGTT
GAAGGGTCGAAGCGGAGTATTTTCCTCGTATTTTTTCTTCTGTTCCACGC
AAATTGAGTCGCTGAGGCGGTCGTGGAATTTCATTCCGCCGAAGAAGCCG
GGCTTCTTTCGCGCCCTGTTCGCCACTCTTGCCTATTTTGTCGGACAGGT
GGGCCGGGCCGTCCGTCTTCCAAACCGTCTCGAAGTGTCGTAGGGTCACT
CTTGTCGTAGGCAGCGATGGCGGTGACGGCAGGGGCAGCGGTAGCAGCGG
CGCGGGTAACAGCGATGGTCCTGGCGAGACTTTGTCTTCGAGGCCGTCGG
GGGGGCACTCTCGTGGCGCGCCTAGCTCTGAGGGTATTTTTTGTCCTCTA
TTGTGGCTGGCGTCTCCTGATCCATGAAAAGTGGGGCGAATCCTCCGTCT
CATTTTTTTCTCGCCGAGCGAATTTGTAGCCTTTTTGCCGCAGAGGTCTC
CTTTAGTATTTAGGCTGGGCGCACATGTCTTCTGGCTCTCTTGTGCTTGT
ACAAAATTGGACAGCGGAAGGAGGGGCGTCGTTGGTGCTTTGTAAAACTG
TTGCCCCATGTGTACCATACGATACTTTTTCGTTCTGTTTGCTCGCGGTA
GCAAGTGACTTTCGAATTTCCGCTTTGTGCAACCTGCTCTGTACCGCGTT
CGTTTGTGTGTGTAGAGGTCATGGGAGAGCACGGACGTGTACCGGGTTCC
TTCTTCATCGTTCCCTACTGTCAAGGAGCATTTGCACCAAAGTGGTTGCA
GCGCGAAAGACGTTCACTTGGTCTTGGTACACGGGAGATGGTTTGGTTGA
AGTTGACATGAGATTGACTCGACACCAACATTTTGGACGGCGAGGTACAC
CCATCATTAAACGTTGTCTCTTGGAGTTTGTTAAGGGCACAACCTCTGGT
TGTTCTGGTTGGGCTGGATGTAGGAGGGTGAACCTGCCGCCGTGTGAATG
TTCCGTGCTGATGGTGAAGCCATCCGCACGAGATGCATTCTCGGTTCCGG
ACCCGCATGATTTGCAAGAACTAACTTTAGGTCGACACGCAAACGCCACC
AGAAGCAGAGGAGGGGCCGTGTTTGTGCTCCGGACGGCAAATGTCGATCG
TGTCAACGTTGCACAACGCACACGTCTTACA
back to topCoding sequence (CDS) from alignment at P-fluviatile_contig13:2668651..2685981-
>mRNA_P-fluviatile_contig13.1894.1 ID=mRNA_P-fluviatile_contig13.1894.1|Name=mRNA_P-fluviatile_contig13.1894.1|organism=Porterinema fluviatile SAG_2381|type=CDS|length=4068bp|location=Sequence derived from alignment at P-fluviatile_contig13:2668651..2685981- (Porterinema fluviatile SAG_2381)
ATGCCTTTCATCTGTGCTAGTTTTTCATATTGGAATCAAGTCATCTCTAC
CGGACGAAACTCAACACGCTTAGGTGCTGTTGCTAACGCCGCGTCCCGTG
GTTTAACTTGTCGCCGTCACTTGATATCTGCAGCCGATGCGTTCCGCCAT
AATCGAAACAGGTCGAGGCGCGCAACAAATCGTGCAACAGGCGAAGAGCG
TCGGACCCCCAGCGATCTAGCGGAGAACCGCTTACCATCGGCATGGGGCA
CGAGGAAGTACACTCCTGGGTCCCGTCCAGATTCAAATAGCATTGCTGAC
ACGTTATTGAACTCACCCACGACTCGGGACAACGAACAGCAGCAACAACA
GAGATCGTCGTCTCCAACGGCAAGCCGACATCGTTCGGAAAAATCTCCTC
AGGTCGTGGCCATGAAGAAAATTGCTGCATTGGACCATAAGGTAACATCC
CCGTCGAAAGGGGCACAAGCGCAGGCCAGGAAGAAAACGCCGGAGCAAGT
CGCAATGGACGAGTTCGCTGCTCTTGAGCGAAGACTGGGCGCAGCCCCAG
CCCGCGCTCCCGCTCCCCCCCCTGCGACTTCCAGTTCCAGAAAGCAAATT
AGTGGTCCCAGTAAGGCGGGGCTATTGTCTTCGAAGAGACCTGAGATGCC
TTTCATCTGTGCTAGTTTTTCATATTGGAATCAAGTCATCTCTACCGGAC
GAAACTCAACACGCTTAGGTGCTGTTGCTAACGCCGCGTCCCGTGGTTTA
ACTTGTCGCCGTCACTTGATATCTGCAGCCGATGCGTTCCGCCATAATCG
AAACAGGTCGAGGCGCGCAACAAATCGTGCAACAGGCGAAGAGCGTCGGA
CCCCCAGCGATCTAGCGGAGAACCGCTTACCATCGGCATGGGGCACGAGG
AAGTACACTCCTGGGTCCCGTCCAGATTCAAATAGCATTGCTGACACGTT
ATTGAACTCACCCACGACTCGGGACAACGAACAGCAGCAACAACAGAGAT
CGTCGTCTCCAACGGCAAGCCGACATCGTTCGGAAAAATCTCCTCAGGTC
GTGGCCATGAAGAAAATTGCTGCATTGGACCATAAGGTAACATCCCCGTC
GAAAGGGGCACAAGCGCAGGCCAGGAAGAAAACGCCGGAGCAAGTCGCAA
TGGACGAGTTCGCTGCTCTTGAGCGAAGACTGGGCGCAGCCCCAGCCCGC
GCTCCCGCTCCCCCCCCTGCGACTTCCAGTTCCAGAAAGCAAATTAGTGG
TCCCAGTAAGGCGGGGCTATTGTCTTCGAAGAGACCTGAGGAACCGAAAG
CGGAGGAATGTTGTGGGAATGGCTGCGCTACTTGCGTCTGGATTGGATAC
TGGAACCGAAAGCGGAGGAATGTTGTGGGAATGGCTGCGCTACTTGCGTC
TGGATTGGATACTGCTGCCTCTACGGCACGTATTGCTACAATAATGACCA
GCTGCCTCTACGGCACGTATTGCTACAATAATGACCAGTGCCAACGCAAG
CTGCCCGAGTTCCGAGGATACGCGGCCCCGTCCATCGGCGTCATCCTCGG
TGTCGTCCTCGTCGGGAGCACGGCGTTGTTCTGCGGGATCGCTGGAATCT
CCATCGCCCGTGAGTTTGCTAAGGAGTCGGCCGCGACCCGCCGGCGGGAG
GCGATCAGGGAAGCCGCGGTGGTGGCCTCCAACGGTTTTTCGGGCAGGCT
GGCCGCGGCCGAGCCATCTGGAAACGGCCGCAACGGAAACGACTGCTACC
TGACGCTCGCCGGCGACGCCGACGATGATACCGGCGCGCTGATCGGCGGC
AGCGGCAGCCGCGGCAGCATCAACGTTTTCGATCCCTCCGCCACAGAAGA
AGACGAAGAAGAGGAGGCAGCCGTCCCGACTGTGCCGAATGGGAAGAAAG
ACTACGGGCGGAGGGGCGGGCCGAGAAGGGTGAGGCGCGGCGGCGGCCGC
CGGAGCCGGAGCCGGGCGGCAGCGCTGGCCGCCGCCGCCCAACTTGGCCC
GAGCCCGTTCGCACGCAAGGTTTCGTTCTACACGCGGATGATCTGCGGTA
CGGGCCTGGCGGTCACCCTGATACTTTGCGGGGTGGTGGTGACATTCGCG
CCCCATCCCCCCGGCGTCAACGTCTGCAACACGGAGTTCGATTGGTGCCA
ACGCAAGCTGCCCGAGTTCCGAGGATACGCGGCCCCGTCCATCGGCGTCA
TCCTCGGTGTCGTCCTCGTCGGGAGCACGGCGTTGTTCTGCGGGATCGCT
GGAATCTCCATCGCCCGTGAGTTTGCTAAGGAGTCGGCCGCGACCCGCCG
GCGGGAGGCGATCAGGGAAGCCGCGGTGGTGGCCTCCAACGGTTTTTCGG
GCAGGCTGGCCGCGGCCGAGCCATCTGGAAACGGCCGCAACGGAAACGAC
TGCTACCTGACGCTCGCCGGCGACGCCGACGATGATACCGGCGCGCTGAT
CGGCGGCAGCGGCAGCCGCGGCAGCATCAACGTTTTCGATCCCTCCGCCA
CAGAAGAAGACGAAGAAGAGGAGGCAGCCGTCCCGACTGTGCCGAATGGG
AAGAAAGACTACGGGCGGAGGGGCGGGCCGAGAAGGGTGAGGCGCGGCGG
CGGCCGCCGGAGCCGGAGCCGGGCGGCAGCGCTGGCCGCCGCCGCCCAAC
TTGGCCCGAGCCCGTTCGCACGCAAGGTTTCGTTCTACACGCGGATGATC
TGCGGTACGGGCCTGGCGGTCACCCTGATACTTTGCGGGGTGGTGGTGAC
ATTCGCGCCCCATCCCCCCGGCGTCAACGTCTGCAACACGGAGTTCGATT
GGGGCTCTATTGTTCACTCGATCAAGGCAGATGCGCCGTCAGCGGACTTC
CAGCTTCTCGTGAGCATCTACAACCCCAACATACTGGACGCTAAGATCGA
GAGGGGCACCGCGACCCTCAACCACGAGCGTTTTCAGGGCTCTATTGTTC
ACTCGATCAAGGCAGATGCGCCGTCAGCGGACTTCCAGCTTCTCGTGAGC
ATCTACAACCCCAACATACTGGACGCTAAGATCGAGAGGGGCACCGCGAC
CCTCAACCACGAGCGTTTTCAGGTCGGCACAATGACGTTCCAGCCGGCTG
TCCTGGCGGGGGGCTACGTAGTGGACCTCTTGCTGACCATCACTTTCCAG
ACCGAGGCTTGGACGGAAGCGCGCCTAGGTCGGCACAATGACGTTCCAGC
CGGCTGTCCTGGCGGGGGGCTACGTAGTGGACCTCTTGCTGACCATCACT
TTCCAGACCGAGGCTTGGACGGAAGCGCGCCTAGCCTACGAGTACGAGAC
CGGGCAGCTGGCCTTTTTGATGGATGCGACGATTTCAGCGTCGGTGATGT
GGCACGGCATCTCGACCTACCCCTTCACCTTCTCGATTAACAACTACTAC
ATCAAGGTGTCCGACACGACGGACTACGATCGGAGCCTGTGCAACTGCAC
GCAGATGATGCAGGGTGCCCTCCACCGACAGCAACCGGAGCATCCGCTGC
TGCTGCTGTCGCAGCAGCCCCTGGAACAGCAGCGGCGGCGTCGGAGCAGG
CGACTGCCCTTCGCCGAATCCGAAGGGGGGAGCCGCGCGGGATCGATAGC
GGCTGAAGAGGTGCTCCTGCCTCCTGCTATGGGCGACGTTCGTGATGACG
AGGAGCGGGCAGGTGTCGTGCAGTAGCCTACGAGTACGAGACCGGGCAGC
TGGCCTTTTTGATGGATGCGACGATTTCAGCGTCGGTGATGTGGCACGGC
ATCTCGACCTACCCCTTCACCTTCTCGATTAACAACTACTACATCAAGGT
GTCCGACACGACGGACTACGATCGGAGCCTGTGCAACTGCACGCAGATGA
TGCAGGGTGCCCTCCACCGACAGCAACCGGAGCATCCGCTGCTGCTGCTG
TCGCAGCAGCCCCTGGAACAGCAGCGGCGGCGTCGGAGCAGGCGACTGCC
CTTCGCCGAATCCGAAGGGGGGAGCCGCGCGGGATCGATAGCGGCTGAAG
AGGTGCTCCTGCCTCCTGCTATGGGCGACGTTCGTGATGACGAGGAGCGG
GCAGGTGTCGTGCAGTAG
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