Homology
BLAST of mRNA_P-fluviatile_contig1.145.1 vs. uniprot
Match:
A0A6H5K2H5_9PHAE (Uncharacterized protein n=1 Tax=Ectocarpus sp. CCAP 1310/34 TaxID=867726 RepID=A0A6H5K2H5_9PHAE)
HSP 1 Score: 416 bits (1068), Expect = 2.870e-116
Identity = 388/897 (43.26%), Postives = 466/897 (51.95%), Query Frame = 3
Query: 795 QAEGFWEDAFTGIAYCRARWILRASEVSVGDAAENEVFLTTVANDIEAANILGIAPVARASSRAEHGPSSPRAKTKRPETAAEEAAAAAATRRVLRSRSRGPGQGERGWVDKFADSGNVNGXXXXXXXAAALLYLSRSLDPFSADLSVLPTNHPVLVRLGERQRXXXXXXXXXXXXXXXXGVLCNTEARGRPGNGPCYVRKNANGNGRVGVERKGLCGARMVLGGRTRSNDGDGXXXXXXXXXSGDGYNSSRRVNVGVGGDSENNSSISNGSLTREEIQEDVLDDHESAPAGSSKTHRECSRGKGAXXXXXXXXXXAPSIKMETSGDAVKPEEIVSEASXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXEPLTVAAAKP--EESASETPSSAMEVDSSPADAIEPVVDGASETSLPVPTPPEYAAAATVVPAERPTRPRRLSMPPDDR--DMLDPPSTRTAQAQAQAPQAAGTPTGGRKSLLRGGPLIRAAHACDNDDPEGGXXXXXXXXXXXXXGVGDLDSPKAEQYPQRETNVGEDHQAEIPAMLATEAERAADREADREAVGVCGRGGTLLWSSVRDWTDAERVRLDGYLEQARRAVDARRMLPGVPGLISVSNGGDRRRKRRVAWAVMEEGRKEQEKTXXEENCRTEGGVEDDNHQGEGEARAVRGTCVVRCAGTETLEVSRDAIQPVQVEELALQALMQQCRDKG-KDTRDCLLEDIRPSLSLLSAADADDSGPLATWTRAQIASLSEALETHFDADRFARSRGHERHRDEHTDVAALVTSVDGKTPSQILSFYYRYMAAGDALTDVMKAIAKASTETRPERKAARPRTPXXXXXXXXXXNLRHRPSLRCPTRLAPAADDSDXXXXXXXXXXXXGSYLLRTRQS 3470
Q E FWED+FTGIAYCRARW+LRASE+ D +E+EV LTTV ++IEAA+IL +APVA ASS P + KR A E +A TR+ LR R P + K + G A A L L+R+ DPFS ++S+LPT+HPV+V+L R+R C +A G P N C GR G +RKGL GAR+V+ XXXXXXXXX XXXXXXXXXX XXXXXXXXXXXXXXXXXXXXXXXXXXXXXX EP AA KP E+AS+TPS A+RP RPRRL+MPP D + D S R +A+ Q LRGG LIRAAH + + +G LDSPK EQYPQ+ETNVG DHQA+IP+ML TEAERAAD+ A E + + GGT +WSSVRDWT +ER RLDGYLE+ARRA D +RM PGVP LIS++NGGDRRRKR++AWAVM G+ E ++ +V CAG EVSR +QP QVEELA+QALM++ D G K + L+++ R +L LL DDSGPLATWT QI +LS+ALE +FD DRF RSRGHERHRDEHTDV +L+ SVDGKTPSQ+LSFYYRYMA GDALT+VM + A+A + R ER++A R P NLRHRPSLRCPTRL A + GSY LRTR+S
Sbjct: 19 QVEAFWEDSFTGIAYCRARWLLRASEIPREDVSEDEVLLTTVTDNIEAAHILRLAPVAVASS--------PHGEAKRELEAKSEPSAG--TRKGLRPNPRSP------TLCKV-----LRGKRAREGEATATLRLARAYDPFSTEVSILPTDHPVVVQLRARERAGGSGRLKAGG--------CLRDAHGCPRNSDC---------GRAGAQRKGLGGARLVVAXXXXXXXXXXXXXXXXXXXX-----------------------------------------------XXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXGEALIKAEEP--TAATKPGAHEAASDTPSWDRT-------------------------------------AKRPARPRRLAMPPADSATGLGDGGSVRVEEARGTKCQ----------QQLRGGLLIRAAHPGE-ESADG------------------LDSPKLEQYPQKETNVGIDHQADIPSMLLTEAERAADKAAMEETLEM---GGTAVWSSVRDWTASERERLDGYLEEARRAADEKRMSPGVPALISINNGGDRRRKRKIAWAVMAGGKPEDKEKL-----------------------------LVTCAGGGVSEVSRSELQPTQVEELAMQALMRE--DAGNKKGKGSLIDNARTALGLLDNTMVDDSGPLATWTGPQIEALSKALEANFDPDRFTRSRGHERHRDEHTDVTSLIASVDGKTPSQVLSFYYRYMATGDALTEVMGS-AEAQAKVRSERRSASLRGPPVPRPSPPP-NLRHRPSLRCPTRLQ--ASSFEDSGDSDDGDIAVGSYQLRTRRS 724
BLAST of mRNA_P-fluviatile_contig1.145.1 vs. uniprot
Match:
D7G9E6_ECTSI (ELM2 domain-containing protein n=1 Tax=Ectocarpus siliculosus TaxID=2880 RepID=D7G9E6_ECTSI)
HSP 1 Score: 382 bits (982), Expect = 9.440e-112
Identity = 245/466 (52.58%), Postives = 288/466 (61.80%), Query Frame = 3
Query: 2106 AERPTRPRRLSMPPDDRDMLDPPSTRTAQAQAQAPQAAGTPTGGRK--SLLRGGPLIRAAHACDNDDPEGGXXXXXXXXXXXXXGVGDLDSPKAEQYPQRETNVGEDHQAEIPAMLATEAERAADREADREAVGVCGRGGTLLWSSVRDWTDAERVRLDGYLEQARRAVDARRMLPGVPGLISVSNGGDRRRKRRVAWAVMEEGRKEQEKTXXEENCRTEGGVEDDNHQGEGEARAVRGTCVVRCAGTETLEVSRDAIQPVQVEELALQALMQQCRDKG-KDTRDCLLEDIRPSLSLLSAADADDSGPLATWTRAQIASLSEALETHFDADRFARSRGHERHRDEHTDVAALVTSVDGKTPSQILSFYYRYMAAGDALTDVMKAIAKASTETRPERKAARPRTPXXXXXXXXXXNLRHRPSLRCPTRLAPAADDSDXXXXXXXXXXXXGSYLLRTRQSGKSDKRAA 3494
A+RP RPRRL+MPP D +A A GGRK LR G LIRAAHA ++ E G LDSPK EQYPQ+ETNVGEDHQA+IP+ML TEAERAAD+ A E + GGT +WSSVRDWT +ER RLDGYLE+ARRA D +RM PGVP LIS++NGGDRRRKR++AWAVM G+ E E E R V CAG EVSR +QP QVEELA+QALMQ+ D G K + L+++ R +L LL DDSGPLATWT QI +LS+ALETHFDADRF RSRGHERHRDEHTDV +L+ SVDGKTPSQ+LSFYYRYMA GDALT+VM + A+A + R ER++A R P NLRHRPSLRCPTRL A + GSY LRTR+S ++D+ A
Sbjct: 183 AKRPARPRRLAMPPAD----------SATGLGGGGGARVEEAGGRKCQQQLRSGLLIRAAHA--GEESEDG-----------------LDSPKLEQYPQKETNVGEDHQADIPSMLLTEAERAADKAAMEETAEM---GGTAVWSSVRDWTASERERLDGYLEEARRAADEKRMSPGVPALISINNGGDRRRKRKMAWAVMAGGKPEDE-----EKLR------------------------VGCAGGGVSEVSRRELQPTQVEELAMQALMQE--DAGNKKGKGSLMDNTRTALGLLDNTMVDDSGPLATWTGPQIEALSKALETHFDADRFTRSRGHERHRDEHTDVTSLIASVDGKTPSQVLSFYYRYMATGDALTEVMGS-AEAQAKVRSERRSASLRGPPAPRPSPPP-NLRHRPSLRCPTRLQ--ASSFEDSGDSDDGDIAVGSYQLRTRRSSRNDRPPA 581
BLAST of mRNA_P-fluviatile_contig1.145.1 vs. uniprot
Match:
D7G9E5_ECTSI (Uncharacterized protein n=1 Tax=Ectocarpus siliculosus TaxID=2880 RepID=D7G9E5_ECTSI)
HSP 1 Score: 123 bits (309), Expect = 1.510e-27
Identity = 64/109 (58.72%), Postives = 77/109 (70.64%), Query Frame = 2
Query: 4694 IEQCWMLVDEARRDGLPADRVQYLQGLFRTHEKKNMTFEMLAERTDSCLYDRPDIQRAFLGIFAQMTLTDSRRSTYPHDAVAGNVGAAFTTIGDSFAASSRAGETGGRG 5020
+E+CWMLVD AR+DGLP DRV+YL+GL RTHEKK+MTF ML ERTDSCLYDR DIQ+ F+ IF +M L D R S Y + A GA +TT G + SSR + G G
Sbjct: 1 MEKCWMLVDFARKDGLPTDRVEYLKGLLRTHEKKSMTFRMLTERTDSCLYDREDIQKGFVEIFGEMELPDPRSSAYRNAAAVALPGADYTT-GGGYGVSSRPSRSVGHG 108
BLAST of mRNA_P-fluviatile_contig1.145.1 vs. uniprot
Match:
D7G9E3_ECTSI (ELM2 domain-containing protein n=1 Tax=Ectocarpus siliculosus TaxID=2880 RepID=D7G9E3_ECTSI)
HSP 1 Score: 115 bits (288), Expect = 8.700e-22
Identity = 96/298 (32.21%), Postives = 139/298 (46.64%), Query Frame = 3
Query: 2388 YPQRETNVGEDHQAEIPAMLATEAERAADREADREAVGVCGRGGTLLWSSVRDWTDAERVRLDGYLEQARRAVDARRMLPGVPGLISVSNGGDRRR----KRRVA-----WAVMEEGRKEQEKTXXEENCRTEGGVEDDNHQGEGEARAVRGTCVVRCAGTETLEVSRDAIQPVQVEELALQALMQQCRDKGKDTRDCLLEDIRPSLSLLSAADADDSGPLATWTRAQIASLSEALETHFDADR----FARSRGHERHRDEHTDVAALVTSVDGKTPSQILSFYYRYMAAGDALTDVM 3242
YP + T VG+ +QA+IP +L A +R+A A G G ++W S+RDW R L YLE A++AV A++ PGV + + GD+ K VA WAV G RG V C+ EV AIQ VQ EE AL AL+ K + C L+D P+L +L +A + WT Q+ +L +AL ++ DR +AR G + R++ D+A + V GK+P+Q+L F+YRY+A + LTDV+
Sbjct: 292 YPPQRTLVGDGYQADIPDLLP-----AGERQA--AAPTAAGTGAKMVWRSIRDWDPHSRGMLSSYLEAAKKAVQAKQSRPGVAIHVRLGGEGDKGGTPGDKSSVASSYAVWAVT---------------------------AGRNAGSNARGVARVGCSEMAQTEVPMSAIQRVQCEEEALAALV-----KAR----CTLDDFDPALKILVGDEASPES-IQPWTLQQVRTLEQALAKDYNRDRRLHGWARE-GMDMDREDFIDLADVSKQVSGKSPTQVLCFFYRYLATAEPLTDVV 544
BLAST of mRNA_P-fluviatile_contig1.145.1 vs. uniprot
Match:
A0A6H5JX23_9PHAE (BAH domain-containing protein n=1 Tax=Ectocarpus sp. CCAP 1310/34 TaxID=867726 RepID=A0A6H5JX23_9PHAE)
HSP 1 Score: 112 bits (280), Expect = 8.550e-21
Identity = 92/298 (30.87%), Postives = 134/298 (44.97%), Query Frame = 3
Query: 2388 YPQRETNVGEDHQAEIPAMLATEAERAADREADREAVGVCGRGGTLLWSSVRDWTDAERVRLDGYLEQARRAVDARRMLPGVPGLISVSNGGDRR---------RKRRVAWAVMEEGRKEQEKTXXEENCRTEGGVEDDNHQGEGEARAVRGTCVVRCAGTETLEVSRDAIQPVQVEELALQALMQQCRDKGKDTRDCLLEDIRPSLSLLSAADADDSGPLATWTRAQIASLSEALETHFDADR----FARSRGHERHRDEHTDVAALVTSVDGKTPSQILSFYYRYMAAGDALTDVM 3242
+P R T VG +QA+IP +L E +AA A G G ++W S+RDW R L YLE A++AV A++ PGV + + GD+ WAV G RG V C+ EV AIQ VQ EE AL AL+ K + C L+D P+L +L +A + WT Q+ +L +AL + DR +AR G + R++ D+A ++ + GK+P+Q+L F+YRY+A + LTDV+
Sbjct: 494 FPPRRTLVGNGYQADIPDLLPAEERKAA-------APTSAGTGAKMVWRSIRDWDPHSRGMLSSYLEAAKKAVQAKQSRPGVVVHVRLGGKGDKGGTPGDESSVASSYAVWAVT---------------------------AGRDAGSNARGVARVGCSEMAQTEVPISAIQRVQCEEEALAALV-----KAR----CTLDDFDPALKILVGDEASPES-IQPWTLQQVRTLEQALAKDCNRDRRLHGWARE-GMDIDREDLIDLADVIKQIPGKSPTQVLCFFYRYLATAEPLTDVV 746
BLAST of mRNA_P-fluviatile_contig1.145.1 vs. uniprot
Match:
A0A6H5KVI2_9PHAE (ELM2 domain-containing protein n=1 Tax=Ectocarpus sp. CCAP 1310/34 TaxID=867726 RepID=A0A6H5KVI2_9PHAE)
HSP 1 Score: 107 bits (267), Expect = 2.850e-19
Identity = 91/296 (30.74%), Postives = 135/296 (45.61%), Query Frame = 3
Query: 2397 RETNVGEDHQAEIPAMLATEAERAADREADREAVGVCGRGGTLLWSSVRDWTDAERVRLDGYLEQARRAVDARRMLPGVPGLISVSNGGDRRRKRR----------VAWAVMEEGRKEQEKTXXEENCRTEGGVEDDNHQGEGEARAVRGTCVVRCAGTETLEVSRDAIQPVQVEELALQALMQQCRDKGKDTRDCLLEDIRPSLSLLSAADADDSGPLATWTRAQIASLSEALETHFDADR----FARSRGHERHRDEHTDVAALVTSVDGKTPSQILSFYYRYMAAGDALTDVM 3242
R+ VG+D+QA+IPA+L+ + + +EA A G G ++W S+R+W R L YL A + ++ PGV + + + G + + WA+M G A AVR V C+ V A+Q VQ EE AL AL+ K + C L+D RP+L +L A D P W +Q+ +L + LE F DR +AR G + +++ D+A + V GKTP+Q+LSFYYRY+A LTDV+
Sbjct: 500 RQILVGDDYQADIPALLSAQERK---KEAGHPAAGT---GAKMVWRSIRNWDPQSRQMLSTYLHAATDVLQKKQGFPGVAVHVRLGDRGSAAKGDKGVTTSVANSYAVWAIM---------------------------AGRHSAGAVR----VACSEMAQTTVPISAVQRVQSEEEALAALV-----KAR----CTLDDFRPALKVLDQASLDSVAP---WALSQVRTLEQVLEKEFKWDRRLHGWARE-GMDLEQEDFIDLANVCKQVRGKTPAQVLSFYYRYLAHAKPLTDVV 745
BLAST of mRNA_P-fluviatile_contig1.145.1 vs. uniprot
Match:
A0A6H5JLS8_9PHAE (ELM2 domain-containing protein n=1 Tax=Ectocarpus sp. CCAP 1310/34 TaxID=867726 RepID=A0A6H5JLS8_9PHAE)
HSP 1 Score: 104 bits (260), Expect = 1.880e-18
Identity = 89/294 (30.27%), Postives = 133/294 (45.24%), Query Frame = 3
Query: 2409 VGEDHQAEIPAMLATEAERAADREADREAVGVCGRGGTLLWSSVRDWTDAERVRLDGYLEQARRAVDARRMLPGVPGLISVSNGGDRRRKRRVA-----------WAVMEEGRKEQEKTXXEENCRTEGGVEDDNHQGEGEARAVRGTCVVRCAGTETLEVSRDAIQPVQVEELALQALMQQCRDKGKDTRDCLLEDIRPSLSLLSAADADDSGPLATWTRAQIASLSEALETHFDADRFARSRGHERH-----RDEHTDVAALVTSVDGKTPSQILSFYYRYMAAGDALTDVM 3242
VG+D+QA+IP +L+ E + +EA A G ++W S+R+W R L YL A+ V A++ PGV + + + G + A WA+ C + G + V C+ +V AIQ VQ EE AL AL+ K + C L+D +P+L + A + P W +Q+ +L +ALE HFD + RS G R R++ D+A + V GKTP+Q+LSF+YRY+AA LTDV+
Sbjct: 506 VGDDYQADIPDLLSAEDRK---KEAGHPAART---GAKMVWRSIRNWDPQSRHMLSTYLHAAKDVVKAKQASPGVAVHVRLGDAGSKNNGNVEAATTSVAGSYAVWAITV-------------GCHSAGVIR------------------VACSEIAQTKVPIPAIQRVQSEEQALGALV-----KAR----CTLDDFKPALKVFDQASMESVDP---WKLSQVRNLKQALEEHFDPN--PRSHGWAREGMDLEREDFIDLANVSKQVPGKTPTQVLSFFYRYLAAAKPLTDVV 748
BLAST of mRNA_P-fluviatile_contig1.145.1 vs. uniprot
Match:
A0A6H5K0T4_9PHAE (BAH domain-containing protein n=1 Tax=Ectocarpus sp. CCAP 1310/34 TaxID=867726 RepID=A0A6H5K0T4_9PHAE)
HSP 1 Score: 99.8 bits (247), Expect = 6.110e-17
Identity = 92/289 (31.83%), Postives = 133/289 (46.02%), Query Frame = 3
Query: 2391 PQRETNVGEDHQAEIPAMLATEAERAADREADREAVGVCGRGGTLLWSSVRDWTDAERVRLDGYLEQARRAVDARRMLPGVPGLISVSNGGDRRRKRRVAWAVMEEGRKEQEKTXXEENCRTEGGVEDDNHQGEGEARAVRGTCVVRCAGTETLEVSRDAIQPVQVEELALQALMQQCRDKGKDTRDCLLEDIRPSLSLLSAADADDSGPLATWTRAQIASLSEALETHFDADRFARSRGHER-----HRDEHTDVAALVTSVDGKTPSQILSFYYRYMAAGDALTDVM 3242
P R T VGEDHQ +IP +L E DR A G G ++W SVRDW R L GYL+ A V +++ PGV I V GG E+G XX + G+ R V C+ E+ AIQ + EE AL+AL++ +C+L++ P+L +L+ + + W+ Q+ +L AL+ FD + RS+G R R++ D+A + V GKTP+Q+L FY+RY+AA LTDV+
Sbjct: 485 PPRRTLVGEDHQVDIPDLLPAE-----DRSKAAAAGRAEGTGAEMVWQSVRDWDPHSRGMLAGYLQAANTMVRSKQARPGVA--IHVRLGGKN-----------EDGXXXXXXXXXXXXSYAVWALTTGVSSASGDVR-------VACSEIAQTEIPASAIQ--RCEEEALEALVK---------TNCVLDNFEPALKMLADSTTSPES-VQPWSLDQVRTLEAALDKDFDVN--GRSQGWARPGIDMDREDFIDIAKVSKEVPGKTPAQVLQFYFRYLAAARPLTDVV 734
BLAST of mRNA_P-fluviatile_contig1.145.1 vs. uniprot
Match:
D7G9E4_ECTSI (BAH domain-containing protein n=1 Tax=Ectocarpus siliculosus TaxID=2880 RepID=D7G9E4_ECTSI)
HSP 1 Score: 64.7 bits (156), Expect = 2.840e-6
Identity = 43/123 (34.96%), Postives = 69/123 (56.10%), Query Frame = 3
Query: 2889 EELALQALMQQCRDKGKDTRDCLLEDIRPSLSLLSAADADDSGPLATWTRAQIASLSEALETHFDADRFARSRGHER-----HRDEHTDVAALVTSVDGKTPSQILSFYYRYMAAGDALTDVM 3242
EE AL+AL++ +C+L++ P+L +L+ + L W+ Q+ +L AL+ FD + RS+G R R++ D+A + V GKTP+Q+L FY+RY+AA LTDV+
Sbjct: 518 EEAALEALVK---------TNCVLDNFEPALKMLADSTTSPES-LQPWSLDQVRTLEAALDKDFDVN--GRSQGWARPGIDMDREDCIDIAKVSKEVPGKTPAQVLQFYFRYLAAARPLTDVV 628
The following BLAST results are available for this feature:
Sequences
The following sequences are available for this feature:
protein sequence of mRNA_P-fluviatile_contig1.145.1
>prot_P-fluviatile_contig1.145.1 ID=prot_P-fluviatile_contig1.145.1|Name=mRNA_P-fluviatile_contig1.145.1|organism=Porterinema fluviatile SAG_2381|type=polypeptide|length=1086bp
MEAVQVKFLTEPVLAPGASQARFVGGGRLTHYGAIEIVESGTASSSPTAA
AEPNDVEIKVDDIVEVCTCANNRSNQPFLAQAEGFWEDAFTGIAYCRARW
ILRASEVSVGDAAENEVFLTTVANDIEAANILGIAPVARASSRAEHGPSS
PRAKTKRPETAAEEAAAAAATRRVLRSRSRGPGQGERGWVDKFADSGNVN
GNDNGNGNAAALLYLSRSLDPFSADLSVLPTNHPVLVRLGERQRQRQLAE
SGGGVGGDGDGVLCNTEARGRPGNGPCYVRKNANGNGRVGVERKGLCGAR
MVLGGRTRSNDGDGGDGGHGGDGSGDGYNSSRRVNVGVGGDSENNSSISN
GSLTREEIQEDVLDDHESAPAGSSKTHRECSRGKGAGAAAGAAASAAPSI
KMETSGDAVKPEEIVSEASAPTIEVEPSPGAMKPGKRAPVPASYAMEVDP
PASAMKPEPLTVAAAKPEESASETPSSAMEVDSSPADAIEPVVDGASETS
LPVPTPPEYAAAATVVPAERPTRPRRLSMPPDDRDMLDPPSTRTAQAQAQ
APQAAGTPTGGRKSLLRGGPLIRAAHACDNDDPEGGGGGIGIGIGGGAGG
VGDLDSPKAEQYPQRETNVGEDHQAEIPAMLATEAERAADREADREAVGV
CGRGGTLLWSSVRDWTDAERVRLDGYLEQARRAVDARRMLPGVPGLISVS
NGGDRRRKRRVAWAVMEEGRKEQEKTEEEENCRTEGGVEDDNHQGEGEAR
AVRGTCVVRCAGTETLEVSRDAIQPVQVEELALQALMQQCRDKGKDTRDC
LLEDIRPSLSLLSAADADDSGPLATWTRAQIASLSEALETHFDADRFARS
RGHERHRDEHTDVAALVTSVDGKTPSQILSFYYRYMAAGDALTDVMKAIA
KASTETRPERKAARPRTPLPPPLPSPSPNLRHRPSLRCPTRLAPAADDSD
TSDDSGSSGSSSGSYLLRTRQSGKSDKRAADGGGGKRSAVAGSGRASSGS
KGGGGRPGTRQQHIVDRRAAVAEDADGRSRAASLEEDEREEEEEEEEKEE
GRRPTSVDPRRGFKSRGCRTGASGGHTSGLMTTGA*
back to topmRNA from alignment at P-fluviatile_contig1:1917892..1933587+
Legend: UTRpolypeptideCDS
Hold the cursor over a type above to highlight its positions in the sequence below.
>mRNA_P-fluviatile_contig1.145.1 ID=mRNA_P-fluviatile_contig1.145.1|Name=mRNA_P-fluviatile_contig1.145.1|organism=Porterinema fluviatile SAG_2381|type=mRNA|length=15696bp|location=Sequence derived from alignment at P-fluviatile_contig1:1917892..1933587+ (Porterinema fluviatile SAG_2381)
GCTTCAGAACGAACGTCGACACACGCACACACACTCATACGCGAGAGAGG
AGTGCGCAGCCGACAGAAGTCTCCTCCTGTGCTTACGCCGGAAGTGACAA
CTTGCGCATGAAAATTGAGTTATCCTGACGGAGTGGGTTCGGCATTGAGA
TATCTCCATCGCAACACCTGTGATGCTAAATGCTGTTTTCGTGCGCGGAT
TTTTCTCGTCGACCCTAAGGTATATCTCGGGGTTCCATTTTTTCGACAGC
CCCCCCTCGAAAGAGGCAGCGAGGACACACACATCACTCCTCGCCTTTCC
CCTTCTTCAGGGCAGCGGAGGGCTACGAACCCAACCAACGTTTTGCGCGT
AACCCACAGCCTAACTGTGAGTTGAGCTCTTTCTTCTGTGGGGATTCAGC
CGTCTCTCCGTGTGCGGGTCTTGGATCCAACCTGGGCGGGTCTGTCTCCG
CCCGCTGCTTGCATTAGTTTCTCCCGGACTCGCTCTCTCTCCCTCTCGCT
GCTTCTCTATTTCTCTTCGCGGCTGGCCGCGCAACAAAACCTGGTAGACA
ATAAATGGAGGCCGTCCAAGTCAAATTCCTGACCGAGCCCGTCCTGGCTC
CGGGCGCCTCACAAGCACGCTTCGTGGGCGGAGGTCGTTTGACACACTAC
GGCGCGATTGAGATCGTCGAGTCAGGAACCGCATCATCATCACCAACAGC
GGCAGCAGAGCCCAACGATGTGGAGATCAAGGTCGACGACATCGTGGAGG
TGTGCACGTGTGCCAACAACCGGAGCAATCAACCGTTCCTCGCCCAGGTG
CAGTGAAACCTTCAGCCGAGAGGAACCTTGGCTAATACCCAACCTTCGCG
TGTTCTCTCGAGTTTCCCCTCTTGGTTGGAGCATTCTTTTGGTAGACTCT
GGATGTGGCGGTCTCTACTCGCTTGCGGTGGAGAGATGTGTGACACTGAG
GTTCCCAACCGGTTGACAAAAATCAACCTCCGCAAAAAGAGGGATAGGCA
GCGGACGGGTCTCAAGAATTTCCCGCACCGGGACAGACAGGGGCCTCTTT
TCGGCAAGGTGCAACGTCTCCTTCTCATCTCGTGCTAGACATAGTCATTC
CCTGATCGAGCGAGAGAGAACGATCACGCGTTCATCGTTGTTCAGTTTTC
CGCACTTACTTTTCCCCAAACGTCGTGGCGCGCGCTCGCGCGCGCCGTGT
TTTAGCGCAGCAGGCAGCATTTATGCGCTTGGCGTTTCAGTTTAAGCCGT
CAGTCATCAAGGCCACAACGATTTTGACAGTATTGCCGCTTGCAAACCGG
CGACCGGACGTGTCCTAGCAAAGGTAGGCGTACCGCTATCTGTGCGCGTG
AAAATCTCGTGCGTTCCGTCCATGTGTTCAGGCAAGACCCGTGCCGCCAC
AACACTTCTGAGAAACCTCTTGTCGCAAAAAAGTTCCGTACCCCTCTTTG
CGGCGGGAAGGCAATCACCGGTTCAACTTCAGCCCACTTTGTGTTTTTGT
GTGTGTACGTTGTTGTGGATTTGTTTTGCCCCTTGGTGTTGTTCCTCCGA
AATCTCGAACGAAACCGAGAGCAGTCGCGCCTTCTCCCCCCCCACAGCGC
GGGCAGCGTGTACTTGCTTTATTGATATGCCGCGTGGCAATTGTTTGTGT
ACTCGCGGAAAAATTGCATTCTCGTTGCTGCTGGCGAGCGGGGGTGCGCG
CGTGGGTTCGAGACAAAAAATCCATTCGACCACGTCCTTGCGTCCGACAA
GAGCGAGATCGATCATCGATGATGTGAAACACGGTAACACAGCGAGACAA
ACCCCACAGCGCAATAAGAGCAGCAGCAACAACTAACCGCACACTCTCTG
TCACCCAGCGAAACCCTCGCGAAAGTACTTAGTTCATGTTGCTCGATCCA
AGGCGTTCATCGCCGAAAAGGAAAAAAAAAAAGATGAAATCGAAACTGCC
GAGGGTGTGCTTCCCAATTGGAAACATAGCTGCTGTTGGCGTTCGGTAGG
TCAAGTGATAACGTACGTCAGGCGCCGGTATCTACCATCCAATTTGTCGG
CTAAATTTTCTTTGGACCTCGTGTTCGTCAGACGCGGTTCGTAAGTGTGT
TTCAACTTTGAAGGAGTGGAAAAAAAGAAACGAACGTCCAAACGTCATGA
AACAGCAATAAAATGTACTTGGCACGTGCTCGTCGGCAAGACTCACGGAG
TCCCTTTTCGATCGATCGAGAGAGAGAGAGAGAGAGAGAGAGAGAGAGAG
AGAGAGAGAGAGAGAGAGAAAGCGAGGGAGATCCTCGCGTAGTATGTTTC
CACAGCAGGCCGGCTGTAATGCACTATGACCGAAAAGTAACATAAATTGA
GATTGATCCCCACAAAGTCTCGAGGGATTACGCGGCGATAGAAGCCCACA
TCAACACCTAAACCTGCCTTCAAAGGCGGCGGCTGATTCATAGTGACCAA
CCGAAAAACCGAGCCCATATGCAACAAGCTGCCTTCTTAGGGCAGCAGGA
GGTCCTCCGTTGTAGCCAAGAGAAGACACAAATTCGTCGGAAAATTCATG
TGAACAGGAGTTAAGGACAAGCCCACTGAATTGGACAGAATATCCTTCAT
CCTGCTGGTCTGAGCGCTATTTTGTGGCAAATATGCCTATTTCAACCTCG
CCCATCTTTGCAGAGTGTGTGCGTCGCTGCTGCGGCCTGTAGCGTTTTCT
CAGGACCGTTTTTCCGGCAGTAGGCGCGGCTTTGAAACACAGCGCCCTGA
AAACGTCTGCCCCGACTTTGGCCGAATGTGTCTTCCTTGGTAACGGTGCA
AAACAGTGGATCAATCGTTCGTTTGATTCTCGCCAATCGCTCGTTTGATT
CTCGCCGTTCTTGTGTCCTAGTTTTCGAACCCCTGTCAAACCCGCTCTAT
GTAATCTTGAAAAATCATGCTGGTTCACAGCCGTAACACAACGAACGGCT
GCTGCTGTCTTGCACAAACCCAGCATGGACGATAGGCAACCAGTGTGAAA
GATGTAACATGCATTGATTTTGAGTGTGGTATTGCTCACCTTTTTTCACG
AAACCAGACCCTGCCTGCCCGCCGCCGCCGCCGCCGCTGCTGCCGCCCCC
CGTTATCAACAAAAAACATTCAGGCGGAGGGGTTCTGGGAAGACGCGTTC
ACGGGCATTGCCTACTGCCGCGCGCGGTGGATCTTGCGCGCGTCCGAGGT
TTCCGTCGGAGACGCGGCCGAGAACGAGGTTTTCCTCACCACCGTGGCGA
ACGATATCGAAGCGGCAAACATCTTGGGCATCGCCCCGGTGGCCCGGGCC
TCCTCCCGCGCCGAGCACGGACCTTCGTCCCCAAGAGCGAAGACGAAGAG
GCCCGAGACAGCGGCGGAGGAGGCGGCGGCGGCGGCGGCGACCCGCAGAG
TCTTGCGCTCCAGGTCTCGCGGCCCGGGGCAGGGCGAGCGGGGATGGGTT
GACAAGTTTGCAGACAGCGGCAATGTCAACGGCAACGACAACGGTAACGG
CAACGCCGCCGCCCTCTTGTACCTCAGCCGCAGCTTGGACCCGTTTTCGG
CAGATCTCAGCGTGCTGCCGACCAACCACCCGGTTTTGGTTCGGTTAGGC
GAACGACAGCGGCAGCGGCAGCTAGCCGAGAGCGGCGGTGGCGTCGGCGG
CGACGGCGACGGCGTGCTGTGCAACACGGAGGCGAGGGGGCGGCCGGGCA
ACGGGCCCTGCTACGTCCGGAAAAACGCCAACGGCAACGGCAGAGTTGGA
GTAGAGCGGAAGGGCCTTTGTGGCGCGCGAATGGTGCTAGGCGGCAGGAC
GAGGAGCAACGATGGTGATGGCGGTGATGGCGGCCACGGAGGTGATGGAA
GCGGGGACGGGTACAACAGTAGCCGAAGAGTCAACGTTGGCGTTGGAGGC
GACAGCGAGAACAACAGCAGCATCAGCAACGGCAGTCTGACGCGTGAGGA
GATTCAGGAAGATGTGCTGGATGATCACGAGAGCGCGCCCGCTGGCTCCT
CGAAGACCCACCGGGAGTGCTCCCGCGGCAAGGGAGCGGGAGCGGCAGCG
GGAGCGGCGGCGTCTGCGGCGCCTTCGATCAAGATGGAAACGTCAGGCGA
TGCGGTAAAACCGGAGGAGATAGTGTCCGAGGCGTCCGCGCCGACAATCG
AGGTGGAGCCGTCCCCTGGTGCGATGAAGCCGGGCAAGAGAGCGCCCGTG
CCGGCATCGTATGCGATGGAGGTAGACCCACCAGCCAGCGCGATGAAGCC
GGAACCATTGACCGTCGCCGCAGCAAAGCCGGAGGAGAGTGCGTCCGAAA
CACCGTCGTCTGCGATGGAGGTGGACTCGTCACCCGCCGATGCTATAGAG
CCGGTGGTGGATGGAGCGTCAGAAACATCGCTTCCGGTACCGACGCCCCC
TGAATATGCGGCGGCGGCCACGGTGGTGCCAGCAGAGCGACCGACTCGCC
CCCGCCGGCTGTCCATGCCCCCTGACGACAGGGACATGTTGGACCCCCCC
TCCACCAGAACGGCCCAGGCTCAAGCGCAGGCACCGCAGGCGGCGGGAAC
CCCGACGGGAGGGAGGAAGTCCCTGTTGCGTGGCGGGCCCCTGATTCGCG
CCGCGCACGCTTGCGACAATGATGACCCTGAGGGCGGCGGCGGCGGCATC
GGCATAGGCATCGGCGGCGGCGCTGGCGGCGTTGGCGATCTGGACTCGCC
GAAGGCGGAGCAGTACCCGCAGAGGGAGACCAACGTCGGGGAGGATCACC
AGGCGGAGATTCCCGCCATGCTCGCCACGGAGGCGGAACGCGCGGCGGAC
AGGGAGGCGGACAGGGAGGCCGTGGGCGTCTGCGGCAGGGGCGGGACGCT
GGTGAGGTTTGGTGTAGTGCTGTGGAGGTTATTTCGTCGTTTGTCCAATT
GCTACCTTCAGAAGTGATCATCAATATGATGGGCCAGGACAGACGAATGG
GGCACTGAGGCCAGGAACGGTGAAGGTACCTCCGTCATTGGACCAACCCG
ATGAGCCTATGGTGGAAGTGACAGGATGTTTGACACGAAGTGCAGCGACA
AGCGGCTCCGCATCCGTTCGCGAATAAACTCCACCTGACCTCATCCAACT
CAACCCAAACCAAACCAAACGCAATCAGACGAACCCTCTCAACCCAACCC
AACCCCAACCCCAACCCCAACCGACGTTTCCCCCCGCCCACCTGCGCCCC
CCAGTTATGGAGCAGCGTGCGAGACTGGACGGACGCCGAACGGGTGCGTC
TGGACGGCTACCTGGAACAAGCCAGGCGGGCCGTGGACGCGAGGCGGATG
CTGCCGGGCGTGCCGGGCCTGATCAGTGTCAGCAACGGCGGCGACCGGCG
GCGGAAGCGGAGGGTGGCGTGGGCGGTCATGGAGGAGGGGAGGAAGGAGC
AGGAGAAGACGGAAGAGGAGGAGAATTGCAGAACAGAGGGCGGGGTGGAG
GACGACAACCACCAGGGAGAGGGAGAGGCGCGCGCGGTAAGGGGTACGTG
CGTCGTCCGTTGCGCGGGAACCGAGACATTGGAGGTGTCAAGAGACGCGA
TTCAGCCCGTGCAAGTGAGTCGGGCCTTGGTCCAACCCTGTATTTCTAAA
TAATGGAGTAAGCTTGTTGTGAACTTGAACACGGGGTGGAGACGCGATGA
TCCACGGGGCGCCCATTAGCCTTGAAGTTCGTCAGGCCTTGGTCCAATGT
ATCATTTTGATTCTTTAACACTGAGTTTCTCCACTCATGCGATGAGCTGC
GTGCGTTCTCTATCGCTCGAAGTACCATCTGAGCTAATTCATTGTGCCCT
CGAAAGATTATAACGCGGTCGGTTTTGTTTGCCGATTCAAGTAGCGGACT
GGGATTTGAAATATGGTACTGGTGTACCCTATCATGACCTCAAGTGCAGG
TGAATTTTCAGCGAGCGGTCAGCGCTGTGGTCGATACAGATCAGACGTGC
CTGGGCAGCCTTATTTACGATCAGGCTCTCTGCAGGGTTGTTAGAGGGGG
TGCAACAGATAGTGACTTGGTACTTGTGCTGCTAAACCTGTGCGTGCTGG
GGTTTAGGTTCATGAGAGTGTTGTAGTTGTTGTTGTTGCTGCTGCTGCTG
CTGCTGCTGCTGCTGCACACCCCAAAGGCCTTTGATGGCCCCACTCGTGC
GACGACGCCAACGATCGGCCCCGCGGCCACAGCTGCCTCTGGTAGCTGAT
TCTCAAAGTCCCTTGACAGCCCTCCACTTCACCGCCAGCTTTGGCTGTCA
ATCCGCCTACGCTCGAAATGGATAGGAGCCCGAGCAAGCATGCTTCTAAA
GAATGCCGCCAGGACCAAGCGCTCCTCCTTGGGATGCCGTTTTCTCACCC
GCAACGCAACTATGATAAAACAAACAACCGATCGGCGAGCTGTTGACACC
ACCGGTGCCGGGATCTATTTCGGTCGGGGCAGACGGACCAATGTGCTCCA
TCTCGGTTTCTGTACAGGGATGCGAGGGGTTGGCGGCTGTAACGTTTACG
GCCTGCACGCGCGTGGGTGCTAGACAAGCTGATCAACGCCTCCCCATCTA
CCCCTTTCTTGTCCTTTGCCCGGGAATTCGTCGCCACTGGCTATCGATGG
ATGGTGGTGCGTATCCTCTTTGTAATATTGGGCGGATAGGTCGAGGAGCT
CGCTTTGCAGGCCCTCATGCAGCAGTGCAGGGATAAGGGCAAAGACACAA
GGGATTGCCTCCTGGAAGATATCCGCCCGTCACTCAGCCTTCTCAGCGCT
GCTGACGCCGACGACTCTGGACCCCTGGCCACCTGGACACGGGCGCAGGT
ATTCCAGACGCGAAACAGCATTGTTGTTGTTGTTGTTGTTGTTGTTGTTG
TTGTTGTTGTTGTTGTTGTTGTTGTTGTTGTTGTTGTTGTTGTTGTTGTT
GTTGTAGTTGTTGTTGTTGTTGTTGTTGTTGTTGTTGTTGTTGTTGTTGT
TGTTGTTGTTGCTGTTGTAGTTGTTGTTGCTGTTGCCGTTGTTGTGGGTG
ATGGTGGTGGCGTTGCGTTTGTTTTCATCAAACTTTGGATGTCCACACGA
GTCCTTTCTTCCCAACCGGATGTCGTGGTCACGGGCTGGAAAGTTGAGTC
TGTTGTCAATATCGACAAATAAGTAGTCGAATGGACGACACATGTTTTTG
TCTTGGACCCAACACACCACGTCACAGTCAGCGGGTGCGCAAAGACACTA
CCACGCGAGAAGAGTACTGCCTGCTCGGCCTGACGTCAACGTCTCGCGTT
CGACACTCTTCTGCGAGTCTCGAGACTAACGCATGGTCTCAGAGCATGAC
CGACTCGAAATTGCGGTGTTGTGTATAGTCCCTACGAAGGAATCGATTCG
CTAGGAGAGGGTGCAGACATTTGAAGGTACAgGGGGTGATCGAAAAGGTT
TTATTGCGAAGGAAACAACATCAACAGCTTATCCCCCCCCCGCTGAGAAT
CACACGCAAACTGCGGAAACCCGTGTGCATGTGTGCAGATCGCAAGCCTG
TCGGAGGCACTGGAGACACACTTCGACGCCGACCGCTTCGCGAGGTCGAG
GGGGCACGAGCGCCACCGCGACGAGCACACGGACGTCGCCGCCCTCGTCA
CCTCCGTCGACGGGAAGACGCCCTCGCAGGTCAGGTTGGAGGTTCAGAGC
TGGCACGCTTTGTAGGCTGCCGGATTCAGAAGACGAGGGATCTCGCCAGA
ACGAAGAGGAAGGAGTGTCAAGAGGATGAGGACGAGGAGAGAAGAAGCGC
CGTGCTGCACACACGATGCGCATCGAGCGCCGCCGGCTCCTGAGAGTGCA
AAAGAAGACGCGCTTTAAGCACAGCCATCCCCGCTTGAAGCACAATAGTC
GTGTTTTTTGTATGTCAAGTGTCCTTAACGCGGGCCAGTGCCCTGAAGAT
TCAAGGGGGGGTGGCTCACAATGCCCCCTGCTTCATTCAGAAAACAAAAG
TTTCCTTGCAGGGGGGGATGATGCCCTTCGTTTTGGTATCCTTAGAGCGG
GAGCACTGTATTCCCTTCCGGCATGAATGACACATCTTCCGCTATTAACA
CGACCCTACTCCCTCCCCACCCCCCAATTTTGTCCCGCTGGGACTCCTCA
ATATCCGCCGTTGTTCACGCCAGATCCTGTCATTCTACTACCGGTACATG
GCCGCCGGCGACGCTCTCACGGACGTGATGAAAGCTATTGCGAAAGCTTC
TACCGAGGTGTGGGCCTGTGCCTATGCGACTCCTGACGCGAGTGTTCTGC
CTTTGATTTCCAAAGCTCCTAAGATACAGGCGTCACGTGCCTTTTGGGAT
GCGGCGTTTTGAGCGAAGCGCACGGTCCTGGGGGTGCCTTCGGCGTCCAC
TGTCTCGCTTCCTCGCTTCCGTGCTCCACTTATAGGAGTGAAGCGGCAGA
TCACTCCCATCTGTGCACGTCAAAACTCTCCGCAAAACATCAACTGGCTT
TACCTACGCATTCTCCTCTGCCTCACAGCGCCATCTTTGCAAATAAGCCA
AGGGGCTTGCCGCTTTTTTCTCACACCCTCACGACCCCCGCGCTCCTTTC
CCGTACATCCACCACCGCCACCACCACCACCACCACCAACGCTGCGGCTC
CCGCTTTCTTCGCCGCACCGCGCCGCGCTTCGCTTCTGAAGGTGCCGCCG
GTCAAGACGCGCCCGGAGAGGAAGGCCGCTCGCCCGCGCACCCCACTGCC
CCCGCCGCTCCCGAGCCCGTCGCCAAACCTGCGGCATCGGCCCTCCCTCC
GGTGTCCGACCCGCCTGGCGCCCGCGGCCGACGACTCGGACACCAGCGAT
GACAGCGGCAGCAGCGGCAGCAGCAGCGGCTCGTACCTACTTCGGACGAG
GCAATCCGGCAAGAGCGACAAACGGGCGGCGGACGGCGGCGGCGGCAAGA
GGAGTGCGGTCGCCGGCAGCGGGAGGGCCTCCAGCGGCAGCAAGGGCGGC
GGCGGAAGGCCCGGCACTCGCCAGCAGCATATCGTGGATCGGCGCGCGGC
GGTGGCGGAAGACGCGGACGGCCGTAGCAGAGCCGCCAGCTTGGAAGAGG
ACGAGAGGGAGGAGGAGGAGGAGGAGGAGGAGAAGGAGGAGGGGAGGAGG
CCTACATCGGTAGACCCGCGGCGTGGGTTCAAGAGCAGGGGTTGTCGAAC
GGGGGCGAGCGGCGGGCATACAAGCGGCCTCATGACAACGGGGGCTTAGC
GGATGGAATAGGAGGGGTGGAGCGGGTGGCGCAAAGGCCGCGTTGGCAGC
AGGAGGGCCCTCGTCCGGCGATCCCTGCGGACGCCGTGATCGTGGAGGTG
AGAAAGGAAGGTCTACCGTGGTTGCGCCGAACATCGTCCAGAGATCGAAG
GCATGACCACCAGCTTCTTACGTGCACTAGGAATTTCTCGCATTACAAAC
ATCACGCCGAGTTTTTGCAGTGCTTGCACTTGTTGTGGAAGTATTCTCTG
TATCGAGCTTCAACGTTCGCGCGAATAGCACACACATGCCGCGTGTATGA
TGACATGACGTGAGGTTGCATTCGCAGGCCGCGCGACTTGGGTCGACCAG
CGCAATTTCCTCTCGCCGGGACTGCCGGTGCCGACTTGGTATATTACCGC
CGTCGTTCCGGAATCGGACCCGACCTGGGGCGGTGGTTTGCTTCTCCGTA
TAGTACTGCTTGTGCTTTCCAGATCCATGCCGCCGGTACGACTTTCATCT
GGGAGTGCCACAAAGCGACGAAAATAGTCCGGTAGTCGTAGCAGCAGCAT
CTGTACCTGGAAAGCAAAGCCCCGGAGCACGCTCAAGTCACCACTGCCCT
TCGCTTAACCTTTACCCCCCCCCCCCCGCGATCCCACCCATATGCATTTC
CCATCTGCCCGCGGCTTGGCGCGGCCCGGCGTTTCGGGGCTGGCTCTCGT
TTCGTGGGATGTTCTGCAGGTGTCTGACGAGGACGAGAGCATGATGGCAG
CGGCAGCAGCCACGATCGACGCGCGCTACTCAGCCGGCTCGGTCGGAAGC
TATCACAATGGCCGCGGCGCGCCTGGGGTCCGGATCGGAGTGCCAGCGGT
CGTCGGGCGGTCCGCGGGGGCCGAGACGGGAGACCCTCGGCTGCAGCAGC
CTCCGGCTGTGATGGCCGATTACGTTTCGTACCGAGACCGATGCTACCCT
CGGCACCGTGAGTTTCTTGTTGTTTTATTCTCGGGCCTGCCGCTGCCGCC
TCCGCTGTTGCCACGGCAGCTGTGCTGACCGTTGCTGGTGTTTTTCCTCT
TCATTTCCTCGGGGTCTCGATTTTCGGTATCGGGGCAGTCGATCTACGCA
CGGCAAACGCAGCGCCCGTTGCTGGTGTCAAGCTCTGCTGTGTTTGTTTT
CGCGGGTGTTCGCTATTTCCGCCGTTCGCACCACGCCTTCCGTGGTATTC
CGTGGTATTCCTTGCGGTACTCTTAGCTCGGATCGGGGAGGAAACTTTGT
CTCGTGGTCTATTTGGTGCCGGACGATCCCCTGTTTACCACGCTTTTCAC
TTCTATTTGAATAAAGCCCAACGATGTGTCCCGTCCGCGCTGGACGAAGG
AGATGTGCCGTGTGCGCCCATGTCACCTTGCAAGCAAACTCGGTGTTCAG
CCGGTCGCGGCCCCCTCTCGATTACCTCACGACTATCTAACTCTTTCCGA
TGGAACCACGGCGCGGACGAAACCTATCCTCGAAAAACCAGAGGGCGCTC
CCTCGGCCTACGCCCGGCGCCCGGACCATCGCCACGTCAACCCTCCTGCC
ACCGCCGGCGACCCTCGGCGACACTTCCACCACCACTACAACGCCGACTT
GTACGGCAGCAGCAACGACTACCTTTACAGCGGCGACTACAACCATCACC
ATCATCACCATCACCACCACAACGACTACGATCGGCAGATCCTGCACCCC
CCCACACACCACCGCAGCGGCAACAGCAGCAGCTACGGGTACGGGTATGG
CTACGGCTCGGGGGACCGGTACCCTCGGCTTCAACCTCGCCCTCACCCTG
CGGCCACCTCGGGTGGCGCAGGAATCGCCGACAGCAGCGGCGGCGGCACA
GCCGCGGCCGCAAGAAACGCATCGATGAGGGGACCGCCCCAGCAGCGACA
GCTCCCGGGGCCGAGCTACGACGCGGAGTGGGGAGTTGGCGGCGCTCTAA
GGGACGGGAGGGGGGCGCTGGTAACGGCTATACCCGGGGCGGGGGGTCCT
GTTGGTATGGATGCCCCCCGCGAGCACCTGTTACCTATAGAGCAGTGTTG
GATGCTCGTGGACGAGGCTCGGAGGGACGGCCTGCCTGCGGTGCGTCGGT
TACTGGTTTCGTCCTCGTTGTTGTTCCTTGTCGTCGGACGCGGCGGAGTA
GTGATTTTTGTGTTTCGCGTGGTGGGCATGTTACTATAGCCTCTTAGTCT
CACTTTGTGCTTGCTCCCACGGCATGTCGGGTATGTTTTTGCTCGTTGCC
GACAACAAAACAAAGGCTTTCGGCGTGCTGCTGTGAAAACGGTTTTCGAC
TCACAGCGCGCGTCGAGATTTCGGGAGGGTGGCGTGACATTCGCCGTTCA
CTGCTGTTGTCTGTGCGTGTCTGGACTGTCAAGGCTCGTACCCCCGACCT
TGTACGACGTGAGCGCAGCGAAGCACTCCACGGCCCACGCCCTTGTGATG
CCTTGCACCGAGAGTTTTCGAGACTAACCACGTGCGCGCTGCAGCCCCCC
ACTGATGTCCATCCAACGTCTAAATAGCCGCTCCACGCTCTCGGGTATGG
GTGTTTCTTGCGACGCCGCCTCAATCCGCCCCTCGTTGTCCTGCTATCTG
TGGTGGGGATATGCGAACGTCTTCGAGCAGGACCGGGTGCAGTACCTGCA
AGGACTGTTCAGGACCCACGAGAAGAAGAACATGACCTTCGAAATGGTGA
GAGAAAGGGAACATTCGCGTTCAAAAGGGCGAGCTCGAAATACTCCTAAT
GTTAGCCGGTAGTAGCGGCCTGCGTCCAACCGTCAGCATGAAAATCAAAA
ACTTCAGAATCCTCTCCGACATCTTCAACCGCCTGATACAACTACCATCG
CGAGTTTTGATCTGCCGATACAGAGGCGCCTGTTGTGTTCAGTTGGATAT
ACGGCAGCTCTGTTGACAATCTGAAATATTACGGTTCGAAATTTTCCAGG
GAGGCGGCAGCGATAATGCTCGCTGCCTTCGTTCGAGCTTTTGCCCCCTT
CAACCTGGTACAAAATTGCCAAGCTTTTATTTTTTTGAAAAAAAAAGGTA
GTGGGTACGCTCGCAGCCACTGCAGCATTCGCGGTGAGTGTGATGGCAGC
GATTCTGTCGCCACTATACCCGACATCGCACAGCCGTCGGTAGTGGTGTT
GATGCTCCCACCATGACAAGGCAGCAACCAAGAACTTTGAAACGGCTCCA
GTTCAAAATTCTCGGAGTTCAGCAAAGATCAAGACCGGCCAACACATGGT
GAAGTAGAGTCATGGCAAGCGTTTGCGCCTCAACACCTCCTGTCGTCATC
CGTGTTCCGATCAGTATCGAACTTATAATCTACGCGCCGTTCTGCTTCTT
CCGCGGGCGATCGCTCGCACTGCGATGCTGGTTCTACACCTGATCTTATG
GCGTCACGCGCGTCCTCGATCCGCCATTTATCCCTGCCTCCTCCCTCCCT
CAAGCTGGCGGAGCGCACCGACAGCTGCCTCTACGACCGACCCGACATCC
AAAGGGCTTTTCTCGGGTAAGCAGTTGATGAGGTATTCGTTTTGTTGCGC
CACGCGTCACCGGATAACCTACCACGTGGTTTCTCGTATTCGGACGTTGA
AATTGTCGCTTTCGAATTTGAACCAGCAACTGGATACCAAATGTGTGGAA
GTGCGCAACCCAAACAGAGGGGTTAGCAAGCTTCCGCCCGCGGTCGTTTC
GAAATACATGCCGCGGGCTACCGGCGGCTCAGTGAAGTTGTTTTCGTCGG
GGATGAGTTGCTGTGTTGTTGTTTTGTAGGCGCGCACGGCTGTTACCGCT
GCCAGCAAGAGTCTCGTGTGTGTCATGACGTTGTCTCAAGTGATAATGAT
CGAGCAATTTTTGTTTCTGAGGGGCAAAAACCTCCACGAGTGCACGCAAG
GAGTAGCGAGACGACGCACCCGTCGCGGCACCAGCTTCTTCATTTCCAGG
AAACCTTTTTACGGCCGTACACCAAGCATTGATCCCTTCTATGATCCGAA
AGCCTTCTGCTTGAAGCTCTGCAGCCTCCAAGGCCTCCTCTCGATCGTTT
GAACGGTTCGTCTCGCTTCCTTTGACCTCTACTAAAATGATTGCGTGCAT
TCGTGCCCATGCCCCCCTCTCTCCAGGATTTTCGCGCAGATGACGCTGAC
GGACTCCCGGCGCAGCACCTACCCTCACGACGCCGTTGCCGGAAACGTCG
GTGCCGCCTTCACCACCATTGGAGACAGCTTCGCAGCGAGCTCCCGAGCC
GGCGAGACCGGGGGCCGCGGGCAGGGCCCTTCGGAATACCCCTACGGCAC
CGTCGGGGTTGAAGCGCCGTCGTCGTCGTACCACCGGGCTTCCTCCTCCA
GCGCTGTCGCTGCCGGCGCTCCTCCTCCTGCTGCGACTGCGATCGCTCCT
GCTCCTGCTAACGGTTCGGCTTTTTTGCGAGATGAGATGGCGTAGCGAGT
GGCCGCGGAGGTGACCGATTCCAAACCAATGTTCCTCTCTTTCGCTGCTG
CTGCCGCTGCTGCTGCTGCTGCTAGCGGACCTGGAGCCGGGGAAGACGGG
CGCTCGGAGACTCAATTGCGAAGCGAACCCCTCGGCGGTGGCCAGGAGTC
GTCGTCGCGGCAGTCAATCTACCCGGCGTAGTCTGATGTAGGATACCTTC
ACGATGTGACTCGGATGGGCAGGCCGTCTGCAGAGGTCTCGGCGAAAACA
TAGGAATACGGTACCGTGCATGGGGAACCTGCGGCAGGAAGAGCGGGAGC
AGCAGGAGGAAGAGGAGGAGGAGGGGCCGCTGTGGCGGTGCCAACAACCC
TCGCTGCCGCTGGAGCCGGTCCTTCCTGACGGCGACGGTTAGCAAGTTGC
CTGGGGTTGCTGTGGGCGTTCCCGCACACGATCCCGTTGTTGGTACGGTT
GGCGATAGCTGGCTAAATCGTGCCGCTCCAATCCGGGATCGGATGCGGTC
AACACCAAAGGGGCTTTCCCGTAACGAACCAAAGTCGTTATTTGTGAGCA
AAGGCTGCGGATACTCGCTGTACGTCTGTCAAACAGGCCGGCAGTGGCTG
CACTTGGATTCAAATCTTCGTCAAATGCTGTTGAGGCAGATTGGAAGGGA
TAATTTACGAGCGGGCACGTCAACGCGGACTTGAATGTTAATGGATTTGA
AGGCTATGGTCAAGTGGTTCTTCTCTCCGCCGGCGCTGTTTCGAGATAAT
TTGAACGGGGACGCAGCCCAAGCTCTCGCGCTTTGCCTTCAAGACTGGGA
GGGATTTTTGTGACGTTTTGCACGAGGAGCGACAGGCTTCGAATTTCTCA
TGAAGGCAGTATGGTTTCCACAAGGACTCACAGCGCAAGCGTCTCGTGAC
CGGGGTGGTGTGGAAAGTGAGGCGAGACAACGATTCCGCTTCGAGAAGTT
CATCGAACTCATAGATAAAGCCGGTCGTTGCCTCCTGCACGCCGCTTGGG
TGTCGATGGACTTAGCAAGTGGAGCGATTGTGGATGAGGGAAGGAAGATG
GATATCGAGCAGGTGTGGCTCTGTAGAGGGGAAATGCGCGCAAGGCCAGC
CGGTTTGTTCTGGCTCCAAGTGAACTTTTGGTATCTTTTCGAAATATTGT
GGTCGTTCAGGAGGTTTCGCAGGTTCCATTCGAAAGTTGGCAAGGGACAT
GTTTCCCGCCGGAAGGCATGATGTTGCCTCTTCTTTCGCATCAATTTTCG
GGTTTCAACGAAGTTGTCCGAGAAACGGTATTTTGCTCAGCAGGGGTCAT
CAATCAACCACTCGAAGACACGAAAAGAAGCAATGGCAGCATTTTTTTTA
TTGTGAGTGGCCTATCTCGGAAAACGCCCATCCGCTGGTGCTGCCTTCCC
CATCAGTGTCGGTTGTGGTTCTTCTGAAGGCAGAGGCCGACGAAGATAGT
GGACTCAGCTGCGAGCCCTGAGAACTTCAGTCACGGTGAATGAAGCAACA
GAGATGCTCTTGTTTTACAAGTTCCAAGCGTGTGCGAAATTTGAAAGTTT
CGCTCTTGTGATGCGCGGTATGTGTACGCACATTGGCGGAGATTATTTGT
TGAAAACGGGGCCGTGCAGCATGGGAGAAAGAACAGTAGCAATTACTTGA
ATGAGTCTCTTGGCTTAGACATGTTTTTCTTTTTTGGCTCTGTCGTCCCG
ATGGTAGATGATGTCCTCTTGGCTTTATTCTACCAGCCGGGCTCGGGCGG
TGTGTTTTCTTTGATAATTGCGAGCGAGCGTGCACCGCGGTCTCGTGGTG
GGTGTGTTCGGGGTGTCTTGTGTGCGTGATGTGTGCGGGCGGTCGATTAT
TTGCTGTTGGAGTACAGTAAAATTAAGAATATTTGTTGTGTTGTTTCTTT
CTTTAACGTAAATTGGACAAACAAGTATCGCCTATTGCGGGTTTGGTTTC
GAGGCGTCTGCCGACGCAACTGACTTGATCGTGCGAATGGATTTCGGCTC
CGGTGACTTGAGAGAATCGAGTGGTTTACATACCGAGACTCGAGAA
back to topCoding sequence (CDS) from alignment at P-fluviatile_contig1:1917892..1933587+
>mRNA_P-fluviatile_contig1.145.1 ID=mRNA_P-fluviatile_contig1.145.1|Name=mRNA_P-fluviatile_contig1.145.1|organism=Porterinema fluviatile SAG_2381|type=CDS|length=6516bp|location=Sequence derived from alignment at P-fluviatile_contig1:1917892..1933587+ (Porterinema fluviatile SAG_2381)
ATGGAGGCCGTCCAAGTCAAATTCCTGACCGAGCCCGTCCTGGCTCCGGG
CGCCTCACAAGCACGCTTCGTGGGCGGAGGTCGTTTGACACACTACGGCG
CGATTGAGATCGTCGAGTCAGGAACCGCATCATCATCACCAACAGCGGCA
GCAGAGCCCAACGATGTGGAGATCAAGGTCGACGACATCGTGGAGGTGTG
CACGTGTGCCAACAACCGGAGCAATCAACCGTTCCTCGCCCAGATGGAGG
CCGTCCAAGTCAAATTCCTGACCGAGCCCGTCCTGGCTCCGGGCGCCTCA
CAAGCACGCTTCGTGGGCGGAGGTCGTTTGACACACTACGGCGCGATTGA
GATCGTCGAGTCAGGAACCGCATCATCATCACCAACAGCGGCAGCAGAGC
CCAACGATGTGGAGATCAAGGTCGACGACATCGTGGAGGTGTGCACGTGT
GCCAACAACCGGAGCAATCAACCGTTCCTCGCCCAGGCGGAGGGGTTCTG
GGAAGACGCGTTCACGGGCATTGCCTACTGCCGCGCGCGGTGGATCTTGC
GCGCGTCCGAGGTTTCCGTCGGAGACGCGGCCGAGAACGAGGTTTTCCTC
ACCACCGTGGCGAACGATATCGAAGCGGCAAACATCTTGGGCATCGCCCC
GGTGGCCCGGGCCTCCTCCCGCGCCGAGCACGGACCTTCGTCCCCAAGAG
CGAAGACGAAGAGGCCCGAGACAGCGGCGGAGGAGGCGGCGGCGGCGGCG
GCGACCCGCAGAGTCTTGCGCTCCAGGTCTCGCGGCCCGGGGCAGGGCGA
GCGGGGATGGGTTGACAAGTTTGCAGACAGCGGCAATGTCAACGGCAACG
ACAACGGTAACGGCAACGCCGCCGCCCTCTTGTACCTCAGCCGCAGCTTG
GACCCGTTTTCGGCAGATCTCAGCGTGCTGCCGACCAACCACCCGGTTTT
GGTTCGGTTAGGCGAACGACAGCGGCAGCGGCAGCTAGCCGAGAGCGGCG
GTGGCGTCGGCGGCGACGGCGACGGCGTGCTGTGCAACACGGAGGCGAGG
GGGCGGCCGGGCAACGGGCCCTGCTACGTCCGGAAAAACGCCAACGGCAA
CGGCAGAGTTGGAGTAGAGCGGAAGGGCCTTTGTGGCGCGCGAATGGTGC
TAGGCGGCAGGACGAGGAGCAACGATGGTGATGGCGGTGATGGCGGCCAC
GGAGGTGATGGAAGCGGGGACGGGTACAACAGTAGCCGAAGAGTCAACGT
TGGCGTTGGAGGCGACAGCGAGAACAACAGCAGCATCAGCAACGGCAGTC
TGACGCGTGAGGAGATTCAGGAAGATGTGCTGGATGATCACGAGAGCGCG
CCCGCTGGCTCCTCGAAGACCCACCGGGAGTGCTCCCGCGGCAAGGGAGC
GGGAGCGGCAGCGGGAGCGGCGGCGTCTGCGGCGCCTTCGATCAAGATGG
AAACGTCAGGCGATGCGGTAAAACCGGAGGAGATAGTGTCCGAGGCGTCC
GCGCCGACAATCGAGGTGGAGCCGTCCCCTGGTGCGATGAAGCCGGGCAA
GAGAGCGCCCGTGCCGGCATCGTATGCGATGGAGGTAGACCCACCAGCCA
GCGCGATGAAGCCGGAACCATTGACCGTCGCCGCAGCAAAGCCGGAGGAG
AGTGCGTCCGAAACACCGTCGTCTGCGATGGAGGTGGACTCGTCACCCGC
CGATGCTATAGAGCCGGTGGTGGATGGAGCGTCAGAAACATCGCTTCCGG
TACCGACGCCCCCTGAATATGCGGCGGCGGCCACGGTGGTGCCAGCAGAG
CGACCGACTCGCCCCCGCCGGCTGTCCATGCCCCCTGACGACAGGGACAT
GTTGGACCCCCCCTCCACCAGAACGGCCCAGGCTCAAGCGCAGGCACCGC
AGGCGGCGGGAACCCCGACGGGAGGGAGGAAGTCCCTGTTGCGTGGCGGG
CCCCTGATTCGCGCCGCGCACGCTTGCGACAATGATGACCCTGAGGGCGG
CGGCGGCGGCATCGGCATAGGCATCGGCGGCGGCGCTGGCGGCGTTGGCG
ATCTGGACTCGCCGAAGGCGGAGCAGTACCCGCAGAGGGAGACCAACGTC
GGGGAGGATCACCAGGCGGAGATTCCCGCCATGCTCGCCACGGAGGCGGA
ACGCGCGGCGGACAGGGAGGCGGACAGGGAGGCCGTGGGCGTCTGCGGCA
GGGGCGGGACGCTGGCGGAGGGGTTCTGGGAAGACGCGTTCACGGGCATT
GCCTACTGCCGCGCGCGGTGGATCTTGCGCGCGTCCGAGGTTTCCGTCGG
AGACGCGGCCGAGAACGAGGTTTTCCTCACCACCGTGGCGAACGATATCG
AAGCGGCAAACATCTTGGGCATCGCCCCGGTGGCCCGGGCCTCCTCCCGC
GCCGAGCACGGACCTTCGTCCCCAAGAGCGAAGACGAAGAGGCCCGAGAC
AGCGGCGGAGGAGGCGGCGGCGGCGGCGGCGACCCGCAGAGTCTTGCGCT
CCAGGTCTCGCGGCCCGGGGCAGGGCGAGCGGGGATGGGTTGACAAGTTT
GCAGACAGCGGCAATGTCAACGGCAACGACAACGGTAACGGCAACGCCGC
CGCCCTCTTGTACCTCAGCCGCAGCTTGGACCCGTTTTCGGCAGATCTCA
GCGTGCTGCCGACCAACCACCCGGTTTTGGTTCGGTTAGGCGAACGACAG
CGGCAGCGGCAGCTAGCCGAGAGCGGCGGTGGCGTCGGCGGCGACGGCGA
CGGCGTGCTGTGCAACACGGAGGCGAGGGGGCGGCCGGGCAACGGGCCCT
GCTACGTCCGGAAAAACGCCAACGGCAACGGCAGAGTTGGAGTAGAGCGG
AAGGGCCTTTGTGGCGCGCGAATGGTGCTAGGCGGCAGGACGAGGAGCAA
CGATGGTGATGGCGGTGATGGCGGCCACGGAGGTGATGGAAGCGGGGACG
GGTACAACAGTAGCCGAAGAGTCAACGTTGGCGTTGGAGGCGACAGCGAG
AACAACAGCAGCATCAGCAACGGCAGTCTGACGCGTGAGGAGATTCAGGA
AGATGTGCTGGATGATCACGAGAGCGCGCCCGCTGGCTCCTCGAAGACCC
ACCGGGAGTGCTCCCGCGGCAAGGGAGCGGGAGCGGCAGCGGGAGCGGCG
GCGTCTGCGGCGCCTTCGATCAAGATGGAAACGTCAGGCGATGCGGTAAA
ACCGGAGGAGATAGTGTCCGAGGCGTCCGCGCCGACAATCGAGGTGGAGC
CGTCCCCTGGTGCGATGAAGCCGGGCAAGAGAGCGCCCGTGCCGGCATCG
TATGCGATGGAGGTAGACCCACCAGCCAGCGCGATGAAGCCGGAACCATT
GACCGTCGCCGCAGCAAAGCCGGAGGAGAGTGCGTCCGAAACACCGTCGT
CTGCGATGGAGGTGGACTCGTCACCCGCCGATGCTATAGAGCCGGTGGTG
GATGGAGCGTCAGAAACATCGCTTCCGGTACCGACGCCCCCTGAATATGC
GGCGGCGGCCACGGTGGTGCCAGCAGAGCGACCGACTCGCCCCCGCCGGC
TGTCCATGCCCCCTGACGACAGGGACATGTTGGACCCCCCCTCCACCAGA
ACGGCCCAGGCTCAAGCGCAGGCACCGCAGGCGGCGGGAACCCCGACGGG
AGGGAGGAAGTCCCTGTTGCGTGGCGGGCCCCTGATTCGCGCCGCGCACG
CTTGCGACAATGATGACCCTGAGGGCGGCGGCGGCGGCATCGGCATAGGC
ATCGGCGGCGGCGCTGGCGGCGTTGGCGATCTGGACTCGCCGAAGGCGGA
GCAGTACCCGCAGAGGGAGACCAACGTCGGGGAGGATCACCAGGCGGAGA
TTCCCGCCATGCTCGCCACGGAGGCGGAACGCGCGGCGGACAGGGAGGCG
GACAGGGAGGCCGTGGGCGTCTGCGGCAGGGGCGGGACGCTGTTATGGAG
CAGCGTGCGAGACTGGACGGACGCCGAACGGGTGCGTCTGGACGGCTACC
TGGAACAAGCCAGGCGGGCCGTGGACGCGAGGCGGATGCTGCCGGGCGTG
CCGGGCCTGATCAGTGTCAGCAACGGCGGCGACCGGCGGCGGAAGCGGAG
GGTGGCGTGGGCGGTCATGGAGGAGGGGAGGAAGGAGCAGGAGAAGACGG
AAGAGGAGGAGAATTGCAGAACAGAGGGCGGGGTGGAGGACGACAACCAC
CAGGGAGAGGGAGAGGCGCGCGCGGTAAGGGGTACGTGCGTCGTCCGTTG
CGCGGGAACCGAGACATTGGAGGTGTCAAGAGACGCGATTCAGCCCGTGC
AATTATGGAGCAGCGTGCGAGACTGGACGGACGCCGAACGGGTGCGTCTG
GACGGCTACCTGGAACAAGCCAGGCGGGCCGTGGACGCGAGGCGGATGCT
GCCGGGCGTGCCGGGCCTGATCAGTGTCAGCAACGGCGGCGACCGGCGGC
GGAAGCGGAGGGTGGCGTGGGCGGTCATGGAGGAGGGGAGGAAGGAGCAG
GAGAAGACGGAAGAGGAGGAGAATTGCAGAACAGAGGGCGGGGTGGAGGA
CGACAACCACCAGGGAGAGGGAGAGGCGCGCGCGGTAAGGGGTACGTGCG
TCGTCCGTTGCGCGGGAACCGAGACATTGGAGGTGTCAAGAGACGCGATT
CAGCCCGTGCAAGTCGAGGAGCTCGCTTTGCAGGCCCTCATGCAGCAGTG
CAGGGATAAGGGCAAAGACACAAGGGATTGCCTCCTGGAAGATATCCGCC
CGTCACTCAGCCTTCTCAGCGCTGCTGACGCCGACGACTCTGGACCCCTG
GCCACCTGGACACGGGCGCAGGTCGAGGAGCTCGCTTTGCAGGCCCTCAT
GCAGCAGTGCAGGGATAAGGGCAAAGACACAAGGGATTGCCTCCTGGAAG
ATATCCGCCCGTCACTCAGCCTTCTCAGCGCTGCTGACGCCGACGACTCT
GGACCCCTGGCCACCTGGACACGGGCGCAGATCGCAAGCCTGTCGGAGGC
ACTGGAGACACACTTCGACGCCGACCGCTTCGCGAGGTCGAGGGGGCACG
AGCGCCACCGCGACGAGCACACGGACGTCGCCGCCCTCGTCACCTCCGTC
GACGGGAAGACGCCCTCGCAGATCGCAAGCCTGTCGGAGGCACTGGAGAC
ACACTTCGACGCCGACCGCTTCGCGAGGTCGAGGGGGCACGAGCGCCACC
GCGACGAGCACACGGACGTCGCCGCCCTCGTCACCTCCGTCGACGGGAAG
ACGCCCTCGCAGATCCTGTCATTCTACTACCGGTACATGGCCGCCGGCGA
CGCTCTCACGGACGTGATGAAAGCTATTGCGAAAGCTTCTACCGAGATCC
TGTCATTCTACTACCGGTACATGGCCGCCGGCGACGCTCTCACGGACGTG
ATGAAAGCTATTGCGAAAGCTTCTACCGAGACGCGCCCGGAGAGGAAGGC
CGCTCGCCCGCGCACCCCACTGCCCCCGCCGCTCCCGAGCCCGTCGCCAA
ACCTGCGGCATCGGCCCTCCCTCCGGTGTCCGACCCGCCTGGCGCCCGCG
GCCGACGACTCGGACACCAGCGATGACAGCGGCAGCAGCGGCAGCAGCAG
CGGCTCGTACCTACTTCGGACGAGGCAATCCGGCAAGAGCGACAAACGGG
CGGCGGACGGCGGCGGCGGCAAGAGGAGTGCGGTCGCCGGCAGCGGGAGG
GCCTCCAGCGGCAGCAAGGGCGGCGGCGGAAGGCCCGGCACTCGCCAGCA
GCATATCGTGGATCGGCGCGCGGCGGTGGCGGAAGACGCGGACGGCCGTA
GCAGAGCCGCCAGCTTGGAAGAGGACGAGAGGGAGGAGGAGGAGGAGGAG
GAGGAGAAGGAGGAGGGGAGGAGGCCTACATCGGTAGACCCGCGGCGTGG
GTTCAAGAGCAGGGGTTGTCGAACGGGGGCGAGCGGCGGGCATACAAGCG
GCCTCATGACAACGGGGGCTTAGACGCGCCCGGAGAGGAAGGCCGCTCGC
CCGCGCACCCCACTGCCCCCGCCGCTCCCGAGCCCGTCGCCAAACCTGCG
GCATCGGCCCTCCCTCCGGTGTCCGACCCGCCTGGCGCCCGCGGCCGACG
ACTCGGACACCAGCGATGACAGCGGCAGCAGCGGCAGCAGCAGCGGCTCG
TACCTACTTCGGACGAGGCAATCCGGCAAGAGCGACAAACGGGCGGCGGA
CGGCGGCGGCGGCAAGAGGAGTGCGGTCGCCGGCAGCGGGAGGGCCTCCA
GCGGCAGCAAGGGCGGCGGCGGAAGGCCCGGCACTCGCCAGCAGCATATC
GTGGATCGGCGCGCGGCGGTGGCGGAAGACGCGGACGGCCGTAGCAGAGC
CGCCAGCTTGGAAGAGGACGAGAGGGAGGAGGAGGAGGAGGAGGAGGAGA
AGGAGGAGGGGAGGAGGCCTACATCGGTAGACCCGCGGCGTGGGTTCAAG
AGCAGGGGTTGTCGAACGGGGGCGAGCGGCGGGCATACAAGCGGCCTCAT
GACAACGGGGGCTTAG
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