Homology
BLAST of mRNA_P-fluviatile_contig12.1536.1 vs. uniprot
Match:
D7G930_ECTSI (RRM domain-containing protein n=2 Tax=Ectocarpus TaxID=2879 RepID=D7G930_ECTSI)
HSP 1 Score: 493 bits (1268), Expect = 8.210e-160
Identity = 244/273 (89.38%), Postives = 254/273 (93.04%), Query Frame = 3
Query: 1260 RGLQWNKNATNLWVYVKGLPTDVTMEEVREHFNKCGLIATDPLTQQPKIKIYKDEEGHPKGDGSVCYVKQESVEMAINVLHEGQLRPGVKIEVSKAVFQQKGQSFDNSKRLKVNDARVKASPAAAEQALSWAESDDTGAAKGGLKIVVVENMFQPSDFETNATFGEELEADLLAEGEKLGPVEKITVFPKNTKGPVVVKFGTAYAASECVKVFDGRFFGGRKLSCRFWDGVTNYTVKEEDEKEQASSAQRLDAFGDWLEEQELPEELRPRTEA 2078
RGLQWNK ATNLWVYVKGLP D+ +EEVREHF+KCG+IATDPLTQQPKIKIYKD+EGHPKGDGSVCY K ESVEMAINVLHEGQLRPGV IEVSKAVFQQKGQSFDN+KRLKVNDARVK + AAAEQALSWAE+DDTGA KGGLKIVVVENMF PSDFE N FGEELEADLLAEGEKLGPVEKITVF KN KGPVVVKFGTAYAASECVKVFDGRFFGGRKLSC FWDGVTNYT+KEEDEKE+A QRLDAFGDWLEEQELPEELRPRTEA
Sbjct: 366 RGLQWNKKATNLWVYVKGLPVDIEVEEVREHFSKCGIIATDPLTQQPKIKIYKDDEGHPKGDGSVCYAKAESVEMAINVLHEGQLRPGVTIEVSKAVFQQKGQSFDNTKRLKVNDARVKVARAAAEQALSWAENDDTGATKGGLKIVVVENMFHPSDFEANERFGEELEADLLAEGEKLGPVEKITVFAKNNKGPVVVKFGTAYAASECVKVFDGRFFGGRKLSCHFWDGVTNYTIKEEDEKEEA---QRLDAFGDWLEEQELPEELRPRTEA 635
BLAST of mRNA_P-fluviatile_contig12.1536.1 vs. uniprot
Match:
A0A835ZDG4_9STRA (RRM domain-containing protein n=1 Tax=Tribonema minus TaxID=303371 RepID=A0A835ZDG4_9STRA)
HSP 1 Score: 303 bits (777), Expect = 4.980e-88
Identity = 153/268 (57.09%), Postives = 197/268 (73.51%), Query Frame = 3
Query: 1272 WNKNATNLWVYVKGLPTDVTMEEVREHFNKCGLIATDPLTQQPKIKIYKDEEGHPKGDGSVCYVKQESVEMAINVLHEGQLRPGVKIEVSKAVFQQKGQSFDNSKRLKVNDARVKASPAAAEQALSWAESDDTGAAKGGLKIVVVENMFQPSDFETNATFGEELEADLLAEGEKLGPVEKITVFPKNTKGPVVVKFGTAYAASECVKVFDGRFFGGRKLSCRFWDGVTNYTVKEEDEKEQASSAQRLDAFGDWLEEQELPEELRPRTE 2075
W+ + WVY++GLP D+T EE+R+HF K G+IATDP++Q P+IKIY+D+ G KGDGSVCYV +ESVE+A++VL Q+R G K V+ + F++ LK R + AAA+QALSW ESDD G AKGGLKIVV+ENMF PSDF + FGE+L+AD+ E +KLGP+EKITVF +N GPVVVKFGTA+A+ +C+K DGR+FG RKL C +WDG+TNY VKE+ KEQ +RLD FGDWLE Q+LPEE++ RTE
Sbjct: 363 WSAEGSGRWVYIQGLPADITEEEMRDHFAKAGVIATDPISQAPRIKIYRDDTGGCKGDGSVCYVMEESVELALHVLDGSQIRAGGKHSVNFKSY------FNSFLGLKPT-IRFTVARAAAKQALSWNESDDIGVAKGGLKIVVIENMFDPSDFVEDPDFGEDLQADIALECQKLGPLEKITVFSRNPIGPVVVKFGTAFASEQCIKKMDGRWFGKRKLRCHYWDGITNYEVKEDASKEQ----ERLDEFGDWLENQDLPEEMQLRTE 619
BLAST of mRNA_P-fluviatile_contig12.1536.1 vs. uniprot
Match:
A0A7S2B9P2_9STRA (Hypothetical protein n=1 Tax=Dictyocha speculum TaxID=35687 RepID=A0A7S2B9P2_9STRA)
HSP 1 Score: 270 bits (689), Expect = 1.710e-76
Identity = 144/282 (51.06%), Postives = 194/282 (68.79%), Query Frame = 3
Query: 1260 RGLQWNKNATNLWVYVKGLPTDVTMEEVREHFNKCGLIATDPLTQQPKIKIYKDEE-GHPKGDGSVCYVKQESVEMAINVLHEGQLRPGVK--IEVSKAVFQQKGQSFDNSKRLKVNDARVKASPAAAEQALSWAESDDTGAAKG----GLKIVVVENMFQPSDFETNATFGEELEADLLAE-GEKLGPVEKITVFPKNTKGPVVVKFGTAYAASECVKVFDGRFFGGRKLSCRFWDGVTNYTVKEED--EKEQASSAQRLDAFGDWLEEQELPEELRPRTE 2075
RGL WN A N W+YV GLP DVT EE+R HF+KCG++A DP T +P+IK+Y+D+ G KGD SV Y K ESV++AI VL GQ+R I+V+KA F+QKG +FD SKR KV++A + + AA Q ++W E DD G A G GLKIVV+E MF+P DF+ A F EEL DL++E EK+G +KIT+F KN +G V+VKF T +AA EC+ GRFFGG+KL +WDG TN+ ++ + + E+A +R+ FGDW+++QELPEEL+ + E
Sbjct: 250 RGLAWNDKAANTWIYVSGLPLDVTEEEMRSHFSKCGVLALDPSTGEPRIKVYRDQATGSLKGDASVAYAKAESVDLAIQVLDGGQMRATSTSVIKVTKAEFKQKGDTFDPSKRQKVSEAGRRVAKAAMAQKVAWNEDDDIGMAVGVKGGGLKIVVLEGMFKPKDFDDPA-FEEELHDDLISELEEKVGEPDKITLFTKNVRGIVIVKFKTVFAAEECITQMAGRFFGGQKLKAYYWDGSTNFAERDAETAKAEEAEEEKRISNFGDWIDDQELPEELQLKVE 530
BLAST of mRNA_P-fluviatile_contig12.1536.1 vs. uniprot
Match:
A0A7R9UAK2_9STRA (Hypothetical protein n=2 Tax=Pinguiococcus pyrenoidosus TaxID=172671 RepID=A0A7R9UAK2_9STRA)
HSP 1 Score: 263 bits (672), Expect = 3.230e-74
Identity = 135/268 (50.37%), Postives = 190/268 (70.90%), Query Frame = 3
Query: 1272 WNKNATNLWVYVKGLPTDVTMEEVREHFNKCGLIATDPLTQQPKIKIYKDEEGHPKGDGSVCYVKQESVEMAINVLHEGQLRPGVKIEVSKAVFQQKGQSFDNSKRLKVNDARVKASPAAAEQALSWAESDDTGAAKGGLKIVVVENMFQPSDFETNATFGEELEADLLAEGEKLGPVEKITVFPKNTKGPVVVKFGTAYAASECVKVFDGRFFGGRKLSCRFWDGVTNYTVKEEDEKEQASSAQRLDAFGDWLEEQELPEELRPRTE 2075
W K +T WVYV+GLP DVT+EE+R HF KCG+IA DP T PKIK+YKDE G KGD +VCY ESV +A+ VL G +R G+ I+VS A F++K +F++ K K++ A++K + AAA+Q L+W E DDTG A L+IVV+ N+F P +F+ N G+E+E L+A+ +++GP++K+T+F KN KG VVVKF TAYAA EC+++ D + F GR + ++WDGVT+YTV + ++E+ R + FG WL EQ LPE+L P+TE
Sbjct: 251 WAKTST--WVYVQGLPADVTVEELRTHFGKCGVIAVDPRTGGPKIKVYKDEHGEVKGDAAVCYASGESVTLAVEVLDGGSIRYGMPIKVSVATFEKKD-NFEDRKP-KLSSAQLKIAKAAAKQKLAWNEIDDTGLAMKALRIVVISNLFDPVEFQQNEQAGKEIEQALVAKCDEMGPIDKMTLFRKNPKGVVVVKFVTAYAAEECIRLLDNQTFRGRNVRVQYWDGVTDYTVVDTAQEEK-----RDEDFGAWLNEQALPEDLVPKTE 509
BLAST of mRNA_P-fluviatile_contig12.1536.1 vs. uniprot
Match:
A0A7S1XI24_9STRA (Hypothetical protein n=4 Tax=Phaeomonas parva TaxID=124430 RepID=A0A7S1XI24_9STRA)
HSP 1 Score: 259 bits (661), Expect = 1.060e-72
Identity = 127/264 (48.11%), Postives = 186/264 (70.45%), Query Frame = 3
Query: 1287 TNLWVYVKGLPTDVTMEEVREHFNKCGLIATDPLTQQPKIKIYKDEEGHPKGDGSVCYVKQESVEMAINVLHEGQLRPGVKIEVSKAVFQQKGQSFDNSKRLKVNDARVKASPAAAEQALSWAESDDTGAAKGGLKIVVVENMFQPSDFETNATFGEELEADLLAEGEKLGPVEKITVFPKNTKGPVVVKFGTAYAASECVKVFDGRFFGG-RKLSCRFWDGVTNYTVKEEDEKEQASSAQRLDAFGDWLEEQELPEELRPRTE 2075
T+ W+YV+GLP D+T+EE++EHF K G+IA DP T PKIKIY+D +G+PKGDGSVCY SV +A++V G +R G+ ++VS A F++K + ++N K+ ++ A++K + AAA+Q L+W + DD G A ++I VV N+F DF +N F +ELE ++++ E +GP+EK+T+F KN KG V++KF TAYAA E ++V G F G RK+SC +WDGVT+YTV +E A +R + FG WLE+Q +PE+L P+TE
Sbjct: 239 TSSWIYVEGLPADITVEELKEHFGKTGVIAMDPRTGGPKIKIYRDADGNPKGDGSVCYASAASVPLAVDVFDGGPIRYGINLKVSVATFEKK-EGYEN-KQPRLTAAQLKVAKAAAKQKLAWNDEDDAGLAMKAMRICVVSNLFDLEDFRSNPNFRDELEREIVSACEPIGPIEKMTLFSKNPKGVVIIKFVTAYAAEEAIRVLHGHMFRGQRKISCIYWDGVTDYTVVDE-----AQETKRDEDFGKWLEDQSVPEDLAPKTE 495
BLAST of mRNA_P-fluviatile_contig12.1536.1 vs. uniprot
Match:
A0A4D9D5D1_9STRA (RRM domain-containing protein n=3 Tax=Monodopsidaceae TaxID=425072 RepID=A0A4D9D5D1_9STRA)
HSP 1 Score: 246 bits (629), Expect = 1.610e-67
Identity = 121/240 (50.42%), Postives = 173/240 (72.08%), Query Frame = 3
Query: 1263 GLQWNKNATNLWVYVKGLPTDVTMEEVREHFNKCGLIATDPLTQQPKIKIYKDEEGHPKGDGSVCYVKQESVEMAINVLHEGQLRPGVKIEVSKAVFQQKGQSFDNS------KRLKVNDARVKASPAAAEQALSWAESDDTGAAKGGLKIVVVENMFQPSDFETNATFGEELEADLLAEGEKLGPVEKITVFPKNTKGPVVVKFGTAYAASECVKVFDGRFFGGRKLSCRFWDGVTNYT 1964
G W++ A+N WVY+ GLPTD T EE+ HF + G++A DP TQ+P+IK+Y+D G PKGD SV +V+ ESVE+A+ +L+EG LRPG + ++KAVF QK + K+ ++N+A+ K + AAA+QALSW+E+DD+G L+IV+V+NMF+PSD E+ A F E+L DL E LGP+EK+T+F ++ +G +V+KFGTA+AA +CVK+ +GRFF GRKL +WDG T+YT
Sbjct: 270 GEGWDR-ASNKWVYITGLPTDATAEELEAHFKQVGILAIDPETQRPRIKMYRDPSGAPKGDASVAFVRPESVELAVEILNEGMLRPGWPLNITKAVFHQKTSTAGEKSKTEPVKKRRLNEAKAKVARAAAKQALSWSEADDSGLGGKALRIVIVKNMFEPSDCES-AEFIEDLRKDLEVECSALGPLEKMTIFERHPEGVIVLKFGTAFAAEQCVKLMNGRFFAGRKLQSFYWDGSTDYT 507
BLAST of mRNA_P-fluviatile_contig12.1536.1 vs. uniprot
Match:
K3WEI1_GLOUD (RRM domain-containing protein n=1 Tax=Globisporangium ultimum (strain ATCC 200006 / CBS 805.95 / DAOM BR144) TaxID=431595 RepID=K3WEI1_GLOUD)
HSP 1 Score: 230 bits (586), Expect = 2.410e-61
Identity = 123/257 (47.86%), Postives = 171/257 (66.54%), Query Frame = 3
Query: 1272 WNKNATNLWVYVKGLPTDVTMEEVREHFNKCGLIATDPLTQQPKIKIYKDEE-GHPKGDGSVCYVKQESVEMAINVLHEGQLRPGVKIEVSKAVFQQKGQSFDNSKRLKVNDARVKASPAAAEQALSWAESDDTGAAKGGLKIVVVENMFQPSDFETNATFGEELEADLLAEGEKLGPVEKITVFPKNTKGPVVVKFGTAYAASECVKVFDGRFFGGRKLSCRFWDGVTNYTVKEEDEKEQASSAQRLDAFGDWLEE 2039
W ++ WVYV GLP D+T++EV +HF KCG+I D +T P+IK+Y+++E G GDGSVCY+K+ SVE+AI +L + ++RP I+VS AVF+QKG F K+LK+ D+R K E+ALSW E D K GL+IVV+++MF P + E A + EL D+LAE K+G V KIT+F K+ G VVVKF + AA+ C+ V +GRFF GRKL C FWDG T+YT +E ++E +R + F +WLE+
Sbjct: 284 WQRSKNKTWVYVNGLPLDITVQEVHDHFAKCGVIQQDLVTSTPRIKLYENKEFGGLNGDGSVCYMKEASVELAIQLLDKSEIRPEWPIDVSPAVFEQKGSEFVKRKKLKL-DSRAKVKKIEQEKALSWNEGGDGD--KNGLRIVVIKHMFTPEEIEDEA-YENELRDDILAECLKIGEVTKITLFSKHADGVVVVKFESTGAAATCLDVMNGRFFAGRKLECSFWDG-TDYTYRESKDEEN----ERAEKFSEWLEQ 531
BLAST of mRNA_P-fluviatile_contig12.1536.1 vs. uniprot
Match:
A0A8K1CI44_PYTOL (Uncharacterized protein n=1 Tax=Pythium oligandrum TaxID=41045 RepID=A0A8K1CI44_PYTOL)
HSP 1 Score: 229 bits (584), Expect = 2.440e-61
Identity = 120/257 (46.69%), Postives = 171/257 (66.54%), Query Frame = 3
Query: 1269 QWNKNATNLWVYVKGLPTDVTMEEVREHFNKCGLIATDPLTQQPKIKIYKDEE-GHPKGDGSVCYVKQESVEMAINVLHEGQLRPGVKIEVSKAVFQQKGQSFDNSKRLKVNDARVKASPAAAEQALSWAESDDTGAAKGGLKIVVVENMFQPSDFETNATFGEELEADLLAEGEKLGPVEKITVFPKNTKGPVVVKFGTAYAASECVKVFDGRFFGGRKLSCRFWDGVTNYTVKEEDEKEQASSAQRLDAFGDWLE 2036
+W K+ N WVYV GLP DVT+EEVR+HF +CG+I TD T P+IK+YK+++ G GD SVCY+K SVE+A+ +L + +RP I+VS AVF+QKG++F K+ ++ DAR K E+ALSW E +D + GL+IVV+++MF P + + T+ EEL D+ E K+G V K+T+F K+ G VV+KF + +A++CV V +GRFF GRKL C FWDG +YT +E E+EQ R + F +WL+
Sbjct: 268 KWKKSKVNTWVYVNGLPLDVTVEEVRDHFARCGVIQTDLATGAPRIKLYKNKDYGGLNGDASVCYMKDASVELAVELLDKSHIRPEWPIDVSPAVFEQKGETFVKHKKARL-DARAKVKRIEQEKALSWNEGEDGD--RAGLRIVVIKHMFTPEEI-LDDTYEEELRQDIEEECTKIGEVTKVTLFAKHVDGVVVIKFASGGSAAKCVDVMNGRFFAGRKLECHFWDGA-DYTYRESKEEEQV----RAEKFDEWLQ 515
BLAST of mRNA_P-fluviatile_contig12.1536.1 vs. uniprot
Match:
A0A329T206_9STRA (RRM domain-containing protein n=2 Tax=Phytophthora TaxID=4783 RepID=A0A329T206_9STRA)
HSP 1 Score: 228 bits (582), Expect = 5.410e-61
Identity = 124/258 (48.06%), Postives = 175/258 (67.83%), Query Frame = 3
Query: 1269 QWNKNATNLWVYVKGLPTDVTMEEVREHFNKCGLIATDPLTQQPKIKIYKDEE-GHPKGDGSVCYVKQESVEMAINVLHEGQLRPGVKIEVSKAVFQQKGQSFDNSKRLKVNDARVKASPAAAEQALSWAESDDTGAAKGGLKIVVVENMFQPSDFETNATFGEELEADLLAEGEKLGPVEKITVFPKNTKGPVVVKFGTAYAASECVKVFDGRFFGGRKLSCRFWDGVTNYTVKEEDEKEQASSAQRLDAFGDWLEE 2039
+W K+ N WVYV GLP DVT++EV +HF KCG+I D T +P+IK+Y+++E G GDGSVCY+K+ SVE+A+ +L + Q+RP I+VS AVFQQK F K+LKV D+R K E+ALSW E + A GL+IVV+++MF P++ E A + +EL+ D+ E K+G V KIT+F K+ G VV+KF ++ +A+ CV++ +GRFF GRKL C FWDG T+Y+ +E +EQ +R D F +WLEE
Sbjct: 263 KWKKSKKNTWVYVNGLPLDVTVQEVHDHFAKCGVIQLDIATGEPRIKLYQNKENGGLNGDGSVCYMKEASVELAVQLLDKSQIRPEWPIDVSPAVFQQKDGDFVKRKKLKV-DSRAKIKMFEKEKALSWNEGEVNEPA--GLRIVVIKHMFTPAEIEDEA-YEKELQEDIHDECSKVGEVSKITLFAKHVDGVVVIKFASSGSAARCVEIMNGRFFAGRKLECGFWDG-TDYSHRESTNEEQ----ERADKFQEWLEE 511
BLAST of mRNA_P-fluviatile_contig12.1536.1 vs. uniprot
Match:
A0A3F2RVN3_9STRA (RRM domain-containing protein n=3 Tax=Phytophthora kernoviae TaxID=325452 RepID=A0A3F2RVN3_9STRA)
HSP 1 Score: 226 bits (575), Expect = 2.770e-60
Identity = 122/258 (47.29%), Postives = 173/258 (67.05%), Query Frame = 3
Query: 1269 QWNKNATNLWVYVKGLPTDVTMEEVREHFNKCGLIATDPLTQQPKIKIYKDEE-GHPKGDGSVCYVKQESVEMAINVLHEGQLRPGVKIEVSKAVFQQKGQSFDNSKRLKVNDARVKASPAAAEQALSWAESDDTGAAKGGLKIVVVENMFQPSDFETNATFGEELEADLLAEGEKLGPVEKITVFPKNTKGPVVVKFGTAYAASECVKVFDGRFFGGRKLSCRFWDGVTNYTVKEEDEKEQASSAQRLDAFGDWLEE 2039
+W +N WVYV GLP D++++EV +HF KCG+I +D T + +IK+Y+++E G GDGSVCY+K+ SV++A+ +L + Q+RP I+VS AVF QKGQ F K+ K+ D R K +ALSW E +D+ A GL+IVVV++MF PS+ E + T+ +EL+ D+ E K+G V KIT+FPK G VV+KF ++ +A+ CV+V +GRFF G KL C FWDG TNYT E +E+ +R D F +WLEE
Sbjct: 241 KWXXXXSNTWVYVNGLPLDISVQEVHDHFAKCGVIQSDIATGEARIKLYQNKEAGGLNGDGSVCYMKEASVDLAVQLLDKSQIRPEWPIDVSPAVFAQKGQEFVKRKKPKI-DTRAKIKMFEKAKALSWNEGEDSEPA--GLRIVVVKHMFTPSEIE-DETYEQELQEDIHTECSKIGEVSKITLFPKREDGVVVIKFASSGSAARCVEVMNGRFFAGCKLECGFWDG-TNYTHHESKNEEK----ERADKFKEWLEE 489
The following BLAST results are available for this feature:
Sequences
The following sequences are available for this feature:
protein sequence of mRNA_P-fluviatile_contig12.1536.1
>prot_P-fluviatile_contig12.1536.1 ID=prot_P-fluviatile_contig12.1536.1|Name=mRNA_P-fluviatile_contig12.1536.1|organism=Porterinema fluviatile SAG_2381|type=polypeptide|length=493bp
MGYPLCGHFRTSMPPTMSRTRPSTHSGQGLDMEHAQVESVNKNDKETITA
AVAAAAVSANHPAAMESIREPAAAAAETPLAVSNAAVGEVSSPGAVTGAA
GDASSKDAAGGEKSRDGASLWMYLDGVSPTQHGPLAEAVMLKLLRIGTAH
KDMMAWSEGMSEWQPLGQIEAFRETSELAATPWLYLAENAEQRGPVSAAA
LSLLLRRGEVDGMTMAWTTGMGAWKPLGEVSELRPLLQAQDEEEEEEEEG
VAGAGGVVAPEEMMVFEAEEERQPAYEPPPKKESKRSFMADDGTKFAWDE
DKGDWKQVEGDEEEELEDDEEVEPSWKIRRAKQQAKLNAKSKEETKAGKT
TGGGDAATDNGVDEADPDTAHWGSCWRTPRERPRGGGGTGGERGGRGWGG
RQQQRGGAEESQEEEQQEETRAPVEQERDQPLGLRQGTTHRRDDGRGPGA
LQQVRTHCHGSVDAAAEDQDLQGRGGSPEGRRQRVLREAGVG*
back to topmRNA from alignment at P-fluviatile_contig12:2768965..2784543+
Legend: UTRpolypeptideCDS
Hold the cursor over a type above to highlight its positions in the sequence below.
>mRNA_P-fluviatile_contig12.1536.1 ID=mRNA_P-fluviatile_contig12.1536.1|Name=mRNA_P-fluviatile_contig12.1536.1|organism=Porterinema fluviatile SAG_2381|type=mRNA|length=15579bp|location=Sequence derived from alignment at P-fluviatile_contig12:2768965..2784543+ (Porterinema fluviatile SAG_2381)
GATGGGGTACCCTCTCTGCGGCCATTTTCGTACGTCGATGCCCCCGACGA
TGTCTCGGACCAGGCCATCGACACACTCAGGCCAGGGATTAGACATGGAA
CATGCTCAGGTAGAGAGCGTAAATAAAAATGACAAAGAAACAATAACAGC
AGCAGTAGCAGCAGCAGCAGTATCGGCAAATCACCCCGCGGCGATGGAGT
CAATTCGAGAGCCAGCTGCTGCTGCAGCAGAAACACCGCTGGCTGTTTCT
AATGCTGCCGTAGGGGAGGTGTCTTCACCGGGGGCGGTGACAGGAGCGGC
TGGTGACGCATCGAGCAAGGATGCGGCCGGCGGGGAAAAGAGTCGAGACG
GCGCCAGTTTGTGGATGTATCTCGACGGGGTCAGCCCCACGCAGCACGGG
CCGCTGGCGGAGGCGGTTATGCTCAAGCTCCTGCGGATCGGCACCGCCCA
CAAAGATATGATGGCGTGGTCGGAGGGCATGTCGGAGTGGCAGCCGCTCG
GACAGGTGAATCCCATTGTTTTGACCGTTTCTGGCCTACACGTTGTGTTG
GCGAAATGAAGTGGGTTGGACACGGGCACAGCAGGCCTGCTCTTCGCTGC
CTCGATTGTTGCACGTGGCCAGACACGCTTGCGCTGCTGGCCTCATTCAT
GACATCGCCCGCCGCCCGGCCTTGTTCGTGTCGACGCTTCTACGCACAAT
CTCCACCTCGTTGCATCTATTCAAGCTCTCTTCCCAAGAACCATTTGAAT
TATTTCTTTCGGCGAAGAAACATGGTTGGGCTGTGCAGAAACTCAATCCT
CACCTGTCGTTTGGCACCCAGAACATCATCCGCCGGCCGAAGCGCTACAA
CTCAGGCACGCGTCAAGCTGCAGCATTAGACTATGCCGTCGTTGCTCTGA
TCGTACAACAACCGAGAGAGGCCCGGGCTCGAGTCTCACGATTGCGCAGA
TGTCGAGGTTTTGCTTCGAGTGCACTCCCGGCCAACATTTCCGCACGAAG
TCCGCATCCCAGGCAGAAATCATGTCTTCAGAGCTCACCCAAGCCACCGA
CTTGGCTCCCGCATGCCCATTCCCATCACGCTCCAAGCCCCCTCGTCGTA
CACCCGCGCCTATGCCATAACTTATCTCAAACACATGCACCCGGGTTGTC
GTTTCATTTGTCATCCTTTCTGCGTGCACGTGCCCAGATCGAGGCGTTTC
GAGAAACAAGCGAGCTCGCCGCCACGCCTTGGCTCTACCTCGCGGAGAAC
GCGGAACAAAGGGGGTGAGAAGTGTGTGCATGCGCTCCTATGCAGCACCG
TGTTTGTTTTGATTTCAAGAGCCGCAACCCCTTCTTGTGTGGCTGGGCAG
CGGTTGTGTTTCAGTGCCGTTAGTCAGTGCCGGGTGGATCGGCACCACCT
GTGAACGGCTTTCGATCCCCTTGTAGTCGGGTATACAGATGCTGTATGCC
GCAGAGGAAGGGAGAGAGCGAGGGGGAGAGAGCAATGGCTGCGTTAGAAT
TCGATGTTCACTCGAAATTTCACGAGCTCAGGCAGCGCACGCGATCAGGC
TGGCTCAGCGAAGCCGCGTCTTGTACGGCATTGATTTTGCCCTACCTCTA
GTTAGTCTGTCCCGCGTATGTCACCACATGCCTCCCGATGCCATCACCAC
CAACACCACCAATAATAACACCACGGATGGTGTATCATACCTTCGGTGCA
TTTGTCGCGTGCTTACGGTACGCCTTGCGTTCACTAGCTCTTCCTTGCGA
GGTCGCGGACTTCAGCTCCGAGTCTCGAGTTTATTATTTCTTATGGTCGG
TCGGCTACCCTATTTCGTGGTTTGGTTTGTCTGCTTGTGTGCTGTGAACG
TCGGAGCCATCGCCGTACCCCCCTCTTCACCAACTTCCACACCTGCGGCT
GCTTCGCAATCAAAAGAGTGCAAAGACGGATCAAGACTGACCCAAGGGCT
CTATAAAGACAAGATTTTTCGAAGGCGGCCATTTTCAGCATCGTTCACCC
TCTTGGTAGCAGAGCCAGCAACCAAGCTACAAAAGTCGGCCAACGGGATG
TACCATGCCTGGAAGTGTTGTGTGCATACACGCGTCTCTGTCCGTGTCTC
CGGCTGGCCCCGTAGTCGTATCCATCTCCGTATCCGAATCCATATCCATA
TCCATATCCATATCCATATCCGTATCCGTATCCGTGTCCGTATCTGTATT
TTTTGCTTTGTCGTTTGCCATCCGACAATTTCATCGAACGTTACCCGTAC
CCATACCCGTATCTGTATCCATATTGGTATCCGTACCCGTATCCGTATTG
ACATCCGTATTCGTATCGGTATCCGTATAAGCATCGAACCCTGACGTTTG
TCTCCGTCTCCGTCTCCGTCTCCATTTCTGTCTCTGTCTCCGTCTTGCTT
CGGATCGCAGGCCGGTGAGTGCGGCAGCTCTGTCTCTGCTGCTTCGACGG
GGAGAGGTGGACGGCATGACCATGGCCTGGACCACCGGGATGGGAGCATG
GAAGCCGCTCGGCGAGGTGCGGTGCATGGTTGTATGGCCTCTCTTCACCA
CCTCTGGGTTGGTGGTTGCGGGGTCTTCCTGCATTTTTTAACGTTGCTGC
AGGCACAGGTGGTTGGTGTGGTCAAAGTCACAACGGGCAGAAGGGGAGCG
CGGGGGGGAGGCGGCAGTTGCGGGGGGACTGGGACGCCTGTGACATGTCG
TATCCTGCACGGGACGACGGGAGCGGGTTGGGGACTGGGACACCCGTGGT
TTGTGTAGCCGTGCCCCCCCTCATGATAAACCAGCATTCCATCGGTTGCT
CGGTGTTCATGAGATTCCGCATGCCGACTTGAAGCACAGTCAATCGCCCA
AAATGTTACTGGATGAAGCGCACCGGTAGAGCTGGCAGGGGCGGAGGGTG
AGCACAGGGATGGGAGACACGTAATTAGCGTTAGAGAGAGAGAAGAGAGC
TAGGGCAGGGGCGAGGGGATGAGGGTGATCTGTAGGCGTGATTGACGCGC
GTCAAGTTGTAGCGCTCACCCTTGCCTGAGAGGATCTGGAACACCTGACT
TGACCGCCACTCGGAAAATGATTACACGTCCATCTTCTAGCTCGAGCCGA
AAGTGAACGACATACATTTTTACCCTGCCGGAGTATGAATAGCAGCAACA
TTAAGAGAGGCAGACGCGGGGTTCTGATCGACCCAACGCGACGCCTACAA
GCTCCCTTCAATATATTCCGCCTGTGCAACGCCATCTCACGCTGGAAGAT
TTCTGGCCGCTTGCATGGATGCCCCTCACTCGCCCTGCTTGTTGCTTTCC
GGGCTGGTCGCTGGTGCATCTGCGTAGGTGTCTGAGTTACGGCCGCTGTT
GCAGGCCCAAGACGAGGAGGAAGAGGAAGAGGAGGAGGGAGTGGCGGGGG
CGGGGGGGGTTGTGGCGCCGGAGGAGATGATGGTGTTCGAGGCGGAGGAG
GAGAGGCAGCCAGCCTACGAGCCGCCTCCCAAAAAGGAGGTGAGGTGGGA
GAGCAGGTATCAGGGGCTGCTGCAGTATGTTTATGCTTGTTCTCGTGTGG
CGGTGCTGTTTGCTTTCGTGGCGGTGTGTGCCGCGATGATTGTCGTTATT
AAAGTGTCATTTTCGCTGCGATTTGGTGAGAACTTTGGTTGATGATTGCG
GTTGGTCGCAGTCGTTGTTTGAGGCACTTAGATCGCAGCAAAACAAATGC
CTCCTGTCTGTGGCTTGTCGCTCACGTCCCCGAATCGGCAGAAGTCTTGC
CGTTGCCCGACGTTTCTTCCCTTCCTTTGCATCGTTGTTGTTCTCGAAAG
GCGGAGGGTTGCGGAGAGGTCGTGATTATGTTGATGTGTTTGTGTCGCCA
AGGGAAGCGCACAGGGAGTGGACAAGGTTGCGGCGCCGACCATACAAGCA
ATTGTGGGGAAGGAGAGGCGAAATAAGGGAAGGAAAGGGAGGATGCTGGA
GAAGACGGAACAGTAGCTTCGCACGTAAGAGGTCCGCAAATAGGTGTGTT
TCTCGCCCCCCCCCGCCCCCTAGCAAGAGTACGAAGACGAGGAAGGTATT
CAGATGGAAAGTAGAACGACTGGGAAACGAGAGAGTACGTGCTGAATTCC
AACAAAGGATGCAGAAAGCGTAGAACAAGTAAGGGAACTGATGGGGAAAG
CGGGAGAGGAAGAGGACGTTCAAGTAAAAGGGGACAGAGTAATCGCAGGA
TGGGAAAACATAGTGGACACAACCGCAGAGGGAGTGATAGGGAAAAAGAT
GGTCCGGTGTGGTCAGGCGGTTAAGTGGTGGGACAAAGAGTTGAGGGAAG
AAATAGGGGAACGAAGAGAACTGTTTAAGCGGCACATGGATGAGAAGACA
GAGGAGAGTTGGGAAACCTACAGAGCCAAGAGGAAACATGTGAATGGAGT
AGTGAAAAAGAAGGAAGGCATCTGGGACGAAGTGGTGCAGGAAGCGAACG
GGGGTTTGGAGGGTAGCGTAAAACAGATGTGGCAGGGAATTAAGGGATTG
GTAAAAAAGAATGAGGATGGGGGGGAAACAGGAGTAGAAACATTGCGAGG
CGTAAACGGTAAACTAGTCAGCAGTGGCAAGGGTAAGAGGCAGGTACTAG
CAGGACACTATAGGAGACTCGGGGTCTCGTCGGAAAAGGCAGACTTCGAC
CAAGTATTCAAGGAAGAGGTAGACGCGTGGGCCCAAGCAGAAGAGAGAGC
TTCGATGGAGGAAGTTGGGAATGCAGAGCTCCAAAAGAAGTTCACCGAGG
AAGCGGTTGAGAGTTGTGTGAAAAAAATGCAGTGTCACAAGGCCGCAGGG
GTAGACGGGATAGTGAACGAAATCATGAAGTTCGGGGGGGACGGGATGCT
TCAGATGATGGTGCTGTTGTTCAACTGGGTATGGGAAAACGAATACGCAT
CGAGTAGATGGAGGGAAGGGGTGGTGGTGAACCTATTTAAGAAAGGAGAT
AAGACTGGCCCAGGAAACTGTAGGGGAATCACCCTGTTGAGCACAGTAGG
GAAAGTGTTCTTCAAGATCCTCAACAACAGAATAGTACGAGTACTGGAGA
TGGAAAAGAGAAATAGTGAGGGCCAAGCAGGTTTCAGGGAGGCTAGGGGG
TGTGGAGATCACCTATACACGGTAGGGAGGGTCATAAAAGGTCGGAAGAG
GGTGGGAAAGCCAACATACTGCTTTTTGAGAGACGTTCTGAAAGCGTATG
ATACAGTATGGAGAAATGGGCTATGGAAAAAGTTGGCGAAGTATGGGATA
AACGGGAAAATGTGGAGAATGATTAAGAACATGACAGAGAGCACGAAAAG
CGCCGTGATGTTAGATGGAGAACTCTCGAGGTTCTCCGACATTGAACAGG
GGGTCCCACAGGGGTGCACAATGTCACCAACGTTGTTCCAGGTATTCATC
AACGACTCACTGAAAGAGGTAGAGGCGGTAGGGAAGGGAGTAGAAGTAGG
GGAAACCTCGGTATCGGGACTGCTATTTGCTGACGACTTTGTTGGGATGT
CGGACACGCCTGAGGGGCTCCAACTACAGATTAACGCAGCGAAGGTCTAT
GCTGATAAGTGGAGATTCTCGGCCAACGTCCCACAGTGTGCCGTAATGGT
ATGCAACGATGGTAACGAGGAAGTAGGTACCAAGTGGACATGGGGGGACA
AGGAGCTGCCAAGAGTGGAAAAATACACATACTTTGGAGTAGAGATAGCA
AAAGACTGTAAATGGGATGCACACATGCATAAAATAGCGGACAAGGGCAA
AGCAAGGGCAGGGAAGTTGCACCCAATCCTAGCAGACCGGCACCTTGATA
CACGCGTCACAATGGCCATTCTGAAAAGTGTTATCATCCCGCCACTAGAG
TACGCGGGAGCAGTTTGGGAAGGGAACAAGAAAATAGTAGCAGAGTTGGA
GGCAGCGCAGATGAAAGCAGCGAAGGTCATTCTAGGATGCTCCCAGCGCA
CAGGTAACGCAGCAGTAAGAGCAGAGTTGGGGATTAACTGCTTAAGAACG
GGAAGAGACAGCAGGAAGTTGACATGGCAATACCGTATGTATGGAAAACA
TGGGAAAGGAGAGATTACCGAGAATAGCTTGGGAGGCGAGATGGGGAAAC
AAGGCCAAGGGTAGACAACCCATTGAGTGGGCTAAGGTTGTACAGGGAGT
GTGGAGTGGGTTAGATATTGACGAACGGGAGTCGACGGGAGCGGAAAGCT
TAGAAGGGTACAAGAAGACTATCTCAGAAGCCTTTGAAAATAGAGAAGAC
CAGAGCTTGCGGAAAGAGACCAAGGAAACGGAGGTTCTAGAAGTGTACGG
AAGGCTGAACGAAGGAATAGGGTTCAAGGAGTACCTGAACGGACCATTGG
ATGAAGGGACAAAGATGAAGGCCAAAGAACGGCGACATTGACCTTCGGGA
ACGTAGAAGGAGGTTTAGGAAGGTAGACGACGACGAAGACAAGTTCAAAT
GTGACTGCGGCGCCGAATGCGAAGACCGGGTATATGTAGTTGCGGAATGC
CCGTTATACGATCAGGAGAGAGAAGGGTACATGGTCGAGCTGGGAAAAGT
AGACAGTCGGTACAGAGAGAAGTTTGAGGCATGGAACAAAGAGGAAAAGA
CGGTAGCGGTACTCGGGTGTAAGATGTGGCCCAGGAAGGACAGGTATAAA
GTAGACAGGTTAGGGAAAACATTTTTGAGCCACCTCTGGCAAAGTAGGAA
GGAACGATTGGCCATCGGTGGTCGATCCTGCGGGAACAATGCTCCGTCCT
CTCGAGGACGCGTGGTCAATGGTCTAACAACGAAGGCATGCAAAACATGA
GTACGCCCCCCGCCTCGCCTGATGGCTCTCATCTCGGTGTTTGCCATCGG
GATTGGGTTTTTCGTCGCGTGGCAACGACGTTGTAAAACAAGCCAATTCA
CTTCGTGAACTCGGCAACCAGGTTACCGTCTTTTTTTTTTTTCCTCTGTT
TTTTTGGCGGTAACCATAATGGTGGTCGAGAAGATCATGTTGTGCGGAGT
GGAGAACCCTCACCCGTGCAAGGGGGATGATCGCACCACGTTGTGTTAAA
ATGGTCAAGCACCCTCGAGGCAGTTACATAGTGCTTACAACTGTCTCTGG
AAGTGAAAGCACCAGAAAATAAATTAACCCATACGCAGCTGTCATCCGTG
TGCAAGGAAGTAAGCACAAGATGCCGAACACCCTAAGCAGGATGCAGCGC
ACCCTTCATGCGACTCGCCGAATACCTCACGGCGCTTCGCGCTTGGTGGT
GTGAGAGCCTGGTCCGGTGAGAACCCGGCGTGCTCCGTCCCGGCTTTGTA
GGGATGCGAGGTCAATGGTCTAACGACTACGGCATGCACGACTATGAGTA
CACCCCCCCGCCCCCCAGCCCCTTCCCTGTTTGGCCCGCCTCTTTCCTCC
TCTAAATTTGCACGTCGTTCACGCTCATCCGTCGGTGGTCCTTGCTGTGA
AAGCAGTCAATCTCTGCGTTGTGTTTCAACCCGAGCGAATCAGTCCCCTA
CCATCACAATGATCTGCCAAGCCGTTTGGTCTGCGTGTTTCTGATATTTT
TGCCTCGCGTGACATGCAGCCAATCGCCACCGACTGGACGAGAGAAAAAC
CGAGCACGACGCACGAGAGCGCGACTGTCAAGCGTCATGAAAGCTAACGC
TCGAGCAAGTGCTCATTCGCCCCGTGTCTCGATGCGATTAACCCCGTTTC
ACCGCCGACCCCTCCTCCCTCGTCGTCGTCATGCCTCCCCCTGTGTGTTG
TTGTCGACAGAGCAAGCGAAGCTTCATGGCCGACGACGGCACGAAGTTTG
CCTGGGATGAGGACAAAGGGGACTGGAAGCAGGTGGAGGGCGACGAGGAG
GAGGAGTTGGAGGACGACGAAGAGGTGATTGGGGTCGTCACCGCGGTCTT
GTTTTTCTTCTTTTCGTTTCGCTCGGTAGTGGTGGTCGGGGGGCGTACTC
ATGTTTTGCATGCCTTAGTTGTTAGACCATTGACTACGCGTCCTCGAGAG
GACGGAGCATTGTTCCCGCAGGATCGACCACCGATGGCCACTCTTTTCTT
CCTACTTTGCCAAAGGTGGCTCAAAAATGTTTTCCCTAACCTGTCTACTT
TATACCTGTCCTTCCTGGGCCACATCTTGCACCCGAGTGGTCGGGGGGGG
GGGTGACTGTTGTTGTTATTGTTGTGGTTGTTGTGGTTTTTTTTGTGGTT
GTTGTTGTGGTTGTTGCGGTTACGACTGTTGTATATTTTGTCAATTTCGC
ATCCCGTTTACCTCGCGCAACCTCCATGTCCGCACCCCCCCCCCAGCTCC
CCCCTTTGCATCAAAAGCTTCCACTGACGTCCTCCGTCTCGAGTTTCTCC
CTCTGTCAGTACTTATTCCCCCTGCGCTTCACGATTACACGTTTTCTACT
ATCTGCCCAGGAGGAAAAGGTGGAGCCCTCTTGGAAGATCCGAAGGGCAA
AGCAACAGGCAAAGCTCAACGCTAAATCCAAGGAAGAAACGAAGGCCGGC
AAGACAACTGGCGGCGGCGACGCTGCCACGGACAACGGTGTAGACGAGGC
TGATCCGGATACGGCGCACTGGGGGAGCTGCTGGAGGACGCCAAGAGAGA
GGCCGCGGGGGGGCGGGGGCACCgGGGGAGAGCGGGGGGGCAGGGGGTGG
GGAGGGAGGCAGCAGCAGCGTGGCGGCGCAGAAGAAAGCCAAGAAGAAGA
ACAACAAGAAGAAACGAGGGCTCCAGTGGAACAAGAACGCGACCAACCTC
TGGGTCTACGTCAAGGGTGAGGAACTGGGGACGAGAGGGGCTCCCACCAG
GGGCGCTGCTTTGTGATTTGATCGGTTTCTTGGAGCGTAAGGCGTGATTG
GGTTGATCGTTTTTTTAGAGAGTAAATACTGGGTACTCTGGCGTCGGTTG
ATTGGATTTCCGGAAAGTCAGGCCTGGGTGTTTGGCATGGGTTGATGGGT
TATTGGAGAGTCAGGCGTGGGTGATTCGGCATGGGTTGATCGGTTTATTG
GAGGGTAAGGAGTTGGTGCTTCGGTACGGGTTGCTCGAAAGAAAGGCTTG
GGTGCTATTCGGCGTGGGCATCATGCAGCCTGTTGACGATTCAGGATCCA
TCCGTGGATGTATTTTTTCACAAGCGATAGAGCACTTTTGGTGATTGTTG
TACAGAGTCAAAAGCACGGTTGAGACGAAATAAACATTCCCATGACTGAG
GATGCGGGCGGCATTTTTGGTTTCCCGTCGCCCGTGTCGCCTCCCTTTTG
TGTCGTCTGCGCCGCAGCGCGTCTTGTTTAGTCGGTTTTCCCAACGATGA
AACTGTGAGAAATTAGACTAATACTCTTTCCACAACTTTTAGCAGCGCAA
CTGCTTGTCGCGCTTATTGTTATTGCTGAAGACTGAAGAATAATGCCTAG
GACTATGAAGTACTTCATACTGATATCATTCTACCGTTTCCGTTTCTGAA
AAGCAAGCAACATCTCCACTGTTCTTACGTAGGCTCACGGACAGCGTTTT
GAGCAGAACGTCATAGGTTTGCGCGGTACATCGCTGTGACTCGAAAGCGT
TTTTCTGCTGTAGAAACACCGACCATTCTTGCTGTGCCTTGTTTCCTGCT
TAACGTTGACTCGTGATGATCGATGTACTTGGTGCTGAATTGGAACAAAA
GGACTACCCACAGACGTGACGATGGAAGAGGTCCGGGAGCACTTCAACAA
GTGCGGACTCATTGCCACGGATCCGTTGACGCAGCAGCCGAAGATCAAGA
TTTACAAGTGAGTGGGGATAGGCGAATGTATGTCGCCCGATGGCTTGTCT
TGGCCATGTCTGGCGATACTTACAAGACGCGTTTGTTTTTTTAAAGTATA
TCCACTTGGTTCAGAGGTCGACTGGTCTCATGAATCTCAAGTCATCTTTT
GATGGTCGATCTGTTTTTGACTCACGATCGGTCTGTTTTGATCCATCTGG
ATCGGAGTGGCCCATGATTTTTTACCGGTCCGCGTTTTTCTCCTCCGATC
GGTCGATCTGTCTTCGGTCAAATCTGTTGCGAGTAGTCCAATTTTCCTTA
GCTTAAAAGTGAAAAAGAATAACCGAAACAATCGATATAAAGCAAACGAA
CTTATGTTGAATTGGTTTGTCTGCTGTTAATCGGTCTGTCTGTTGGGAGA
AGGGACGAGGAGGGTCACCCGAAGGGCGACGGCAGCGTGTGCTACGTGAA
GCAGGAGTCGGTTGAGATGGCCATTAACGTCCTGCACGAGGGCCAGCTGA
GGCCGGGGGTGAAGATCGAGGTACGTTCTTCGCGAGTCACGGCAAAGTCG
CTTTCGATAAACGTAGCCAAAGGAGGAAGCCAATGAGCCAAGGTAGAGGA
TGATTGCTGTCATCCTGATTGGCTTCAAAGGTGATTTGCCTTGCTAGCCC
CCCCCGCCCCCCTCCAAGACTAGCGTTTACACCTTGGGCCGATAATGGAG
GATGGAGCTTACCCCTCACAGGACGCGCCGAATAAATCACGGCGCACATC
GGAGAACCCGAGCCTAGGCCGGCGAAAAATCGGTTGGCATGCTCCGTCTT
AGCTTTGTGGGGATGCGAGGTCAATGTTCTGGCGCGAACGGCATGCATGA
CCATGAGAGAGTCTCCCCCCTCCCTCTCCCCCCTTCGCCGACCGACCCCC
TTTCTCCATCCAATCCTTCCTTCCCTGTTTTCGCCGGTCTTCCACGTTCA
CCATACCGTAGTATTCTTGATGTGTGCTCTCATCTATCCACTCTTCAAAT
CCTGTCGTATCTCTCATCTTGTCCAGATATCGAAGACGGCGCTCCTATCC
TTTCCGTTCCTTTCCTTTTCCTGCACTACCAAATCGTGTCAAATCCCTTG
GCACCAGTTTAGGCCCAGGTGGCGATCCTTTCCTTTGCGTTGCCCCGCCT
TGCGTCTTTCCTATCATTTTCCTGCAGTACCAAATCTTGTCAAATCTCCT
CCCTTGACTTGTCCAGGTATCTAAGGCGGTTTTCCAGCAAAAGGGACAGA
GCTTCGACAACTCCAAGCGGCTCAAGGTCAACGACGCCCGCGTGAAGGCG
AGTCCGTGTGTCACTCATGTGGTCACGAAGTACAGGTTCAAGTGTCTGTC
TGTCTGGTTGTCTTTGTTTCTGTTTGCCTGTCGTTCTTTTCTTTCTGTGA
ATGATGTTGATGCTGTGTTGGTTCGCGCTCTTCACTTCGGGCCGTTGTCT
GTGTTAACCCCCGCACCACCGGCCTTGCTACACAGGTCGATCACCTCCAT
ATACCACGCCTGCGCATTTTTGCCGGTTATTCCCGGTGTCACCGCGCTTT
TGATTCGTCCCTACTTTTCTCACTGCGTTTCGCCCACCCTCCCCCTGGTT
TTGCTTTGTGCGGAGTTCCGGACACGGTCGGTCAGTCAGGGCCTGTATTT
TTTTGCTTGGGTGTTGCTTTTGGAATCAATCAGCACGATCAACTGCCCAA
CCATGAAAATGTGCTGTAGATAGTTGGCGGAATGACCTGGCCTGATGTGT
AATTACTGCTGCATTGAAAAATGATAGAACCGTCTCGCTGCTGCCATAGG
AGTCCTCCTTCAAACTGACATGACATGAAATTCGACTGCTACACGTGCAT
CCAATGCGTTTGTCGCTCTTGAGCCCGTGAGTGCCGTCAGCGCAAGCTCT
TACTCCTCTCCCTCTTACATCTCTGAGACCCCCAACTCAGCGTGTTCGCG
TTTTCTTTTCTTTCTTTTTCTTTCTGTTTCTTGTCTTGTGTGGATAAACA
ACCCTGAAAATGACGCTCAGGTGGCCAGGGCGGCGGCGGAGCAGGCGCTG
TCGTGGGCCGAGAGTGACGACACGGGGGCCGCGAAAGGAGGGCTCAAGAT
CGTCGTTGTGGAGAACATGTTCCAGCCGTCGGACTTCGAGGTGCCGTAAG
GGTGGTAGTCTTCAGGCTGAAGGCTGGTCGATTTCATGATTGCGTGCCTC
TCATCGTGCTGGGATAGGGAGCCCCCTTTTCTTAGAACGTTTTCGGCTTG
GGCGCGCCTCCCCTCTGCATTGTGGTGAGAATGATGAGGGAAAGGGCGGA
TGAGCTAGGCTGTGATTCTTGGGGGTCTTGAGCAAGTTGGCCAGCGAGCA
AGACCCAAGGAAGACCCCTTTGGCCTGTGTTTGCACGGGCAGCGCCTGAT
CCTGACACCCCGAGAGAAAACGAAGCCCCCTTGGCTCTTTTGAGAGGGCG
TGACTCGTGGTCAGAACACCGGCGCAAGCCCATTTTGTTCCACGAAAGAC
CCCCGAATGACGCGAGCACACCGCGTCCGAAGAGGGCTGGCTGACTCTGG
ACATGGTTAGGACGACTTATTGAATCGCTAACCGAACTGCACCACCCGGC
CCGACCTAAACAGCGTCCTCCGAAGCGTGCTAGACCCCTCTACTCGTGCG
TGACTTGCGACTTCGTACTTGGTTAGACCAACGGCGCGTGCCCGTTTTGC
TTAACACCCTGAGTGACGAATTCGTGCGGTTGATGTAGCTCTGGATTTGG
CCGGAATGAATCTTGAATAGCTGAGTGCCAACAAGCGATGGCATCATGTG
GTGGAAAAATTAAACTTAATAAAATAGTGCCGTGAAACGTCCTGAACGAC
CGGCCAGACCAACGCGACGTTCGGCGAGGAGCTGGAGGCCGACCTGCTGG
CGGAGGGGGAGAAGCTCGGGCCGGTAGAGAAGATCACGGTCTTCCCCAAG
AATACCAAGGGGCCCGTAGTCGTCAAGGTAAGAAGAAGCTCTTGCGATTG
ATCGGGAGGACATCGATGTATCCGGTGTCATCAAGGTGAGGAGATTGTGT
GCTTTTCCCCGGATGTTACAAAAGGGCGCTGAGCCATCTACCTTGGCTTT
ATTTCTCTTCGCCCTGCACTTCTTCTCTTTGCGCTGCACTGCTTCTCTGC
GCTGCTCTCCGATCGTATTTTCCACCCCGCTACACGTGCTGTGTGTTGCA
GCTGTGTGTGGCAGACGGAAGGGAAGGTTGGTACTGTCCCGGGTGTAGGC
GTGATCGCATGTGACGTGTGATTGGGCAAGGTGGCCGCGGTTGTAGCGCG
ACAGGCGGCTAACTGACGTTCATCGTCAGGAGCAAGCATGGAGAAAGGAG
GCCAGCTGTGATGCCCGTTAACCTGACGGGCAAGCTGTCAACAGCCGTTG
TGTGGGATATCCAGAGCTTGAGGATCGTGTCTGATGGTTTCGACGGAGCC
AGTGGAACGGATGGATGCGTTTTTGTTTTTTTCTTAATGCGGAAATTAAC
AATTCGGCCGAGGGGGTAGTCCCGTGGATTTTGGTTACTGCAGGGATTTA
TGGCGGCGGGCGTCCAGTTTGGTCTTTCCTTTGTACTCCGGAGTATGTTT
ACTCTGTTGGTGCTTTTAGGATTCCCCGCTGTGTGTGGCATGGATTTCCT
TGTATCGAGGGGGCGTGCGCCGTAACTCTTGCTTCCGCCACAACAACCGG
CTGCTGTATCGCCGCGTCGCCTCCAAACGTCGAACCGACGAGTCAAGTCC
TATCGAAGAGACCAGTCCTATCTAAGCGACCAGTCCTGCCGAAGTGACCG
GTCTCACTTTTACCCGAGCGCGCTTTCGCACAAAGTTGAAAATGACTCGG
AGGACCTTCGCATTTCCTCTCTCGTTGACACCTCTCCCCCTGCATGGAGA
GATTAGACACAAAATACCGCTGGTTCCAGATTGGAAACGCTCCGAGCCAA
AGCGGGTGTCCAGGGAAAATGTTCCGGCCGCATAAAACAATCTATACCAC
ACCAACCTTCTCCACGACCTCCCCCCCACGGCCCCACCTGCCATCCCCCC
CCCCCCCCACCCCCCATCCGTACGTGTCCCTCCCGGTACCTCTCCACGTT
CTCGTTCTCCCTGTTTCCCCCTCCTCGCCCCTCCGTTTTCTTTCCCCGCG
GAAATCGTGCACCCTTCTGCAACATGATGCGGCTCCTACGTTCGTTGTGT
TTTCTTGTTTTTACAGTTCGGCACGGCGTACGCCGCTTCGGAGTGCGTAA
AGGTGTTCGACGGGCGCTTCTTCGGCGGGCGCAAGCTGTCGTGCCGTTTC
TGGGACGGGGTGACGAACTACACGGTGAAGGAAGAGGACGAAAAGGAGCA
GGCGAGTTCGGTCCTCAGCATGATGCAGTAGGTCAAGCAATCAAGTTGAG
CACGCGGGCGGGCAGCGCGTCATGGGTCGAAACGACGTTTGTTTTTCTTT
CCTCTCTGCCTCTTTTTCGCCGCTTTTTTTCTTTGTTTTTTTTCTCCTTT
TGCTCGCGAACGACGGCTTGTGACTGCTCTGCCGGCGTGTGAGTTGCTTG
CTTATGACGCACACACAATCTCGTCGTCGTTCTCGTTTACGGGCAGCCTC
AGTTTTTCGCCGGATGTCTCGTTGTCATATGCTTCGTAGTTTTATTTTGC
AGCAACCTCGTGCGCACACGCCTCCTTTGCGACCAGCCTGTGTATCATCG
GACACTCTTGCGTTTGCGCGGTTAACGAGCACGCCGCCCCTCAGCTCGGG
GCAAGGCTGCCGCCCCCTATTCCCTTCGAAGCACCGTCCGGTGAACGCCC
GATTTACCCCTGCTCGTTTCCATACGACGTGCATAGCTGTGCATACGAGG
CAACGGGTGTCGAGCACCTCCTCGTTTACCAACGAAACAACTCTCTTCAT
TAACCCCCCGCCGGTCCTTTTTTTCTTCTGCTGGCTGGCTCGCGTGGCTT
ACTTGCCCTAATAGGCTCAAAGATTGGATGCCTTCGGGGACTGGCTGGAA
GAGCAGGAGCTACCGGAGGAGCTGCGGCCACGAACAGAGGCTTGAAGCAG
CACGTGTCTCCTGGTGTTCGTCCTTGGTGTGCACCCTTTTGTGGGCTGAG
CAACCGAGGGATTTGTGTTGATCCTTGGTGAGCATGCGGTGGTTGACAGA
GAGAAGGAGAGGGAGGTGTATCACAGGGGGCTTTCTCCTAAAAGCAGAAA
TAGGGACAGGTCGCGAGGCTGAATTGGGGTCGAATCCTAAGACTTGCTGA
GCGAACGAGCAGCGGCAGAAATTCCAGCCGCGTCCTCATCTCTTTTCGTG
TACAGCTAGCTGCACGCACAATGATGGTAGCTGAGCTCGCCTGCAGCCAG
AGCAAGGAGCAGCAGTTCAGTCTTTCATTTTGTTGTCGAAATTAGGCGCG
AGTAGCTCATCAGCGGTCATTTACCCAGAGGTCGTGCGTTCGTGCTCGCG
TGAGTTACTGTTATGCGAATAGTTTCCTTTTTGAATACCCGCGTGGGTGC
CTAGGTTTTGCTGTAGTCGTTCCCCCCTTTTCTCCTGTGCTTGCTTCTTT
TTTTCCCGAGACGACTCGCGTACACAAAAAGTCAGCGAGGTACTGTTGTG
GCTATCGCTGGGCAGGGTCAACCGAAAAGACAAATGTGGTTCGACCCTGT
CAGACAGGCCTAGCGGCTGCCAGGATTGGCCACTGCCGATCCCACGCAGG
TCTGAGCCTGGCTGGGTCCGCCAGTCACTCTCATCACCGCCACTTTATTC
AACGAGATTCGCACACCCGTTCGCGCGCTCGAAAGGAGTATGTTGTGCTT
CCGAGGAAGGGAAATGAAGGTCTTTGGAG
back to topCoding sequence (CDS) from alignment at P-fluviatile_contig12:2768965..2784543+
>mRNA_P-fluviatile_contig12.1536.1 ID=mRNA_P-fluviatile_contig12.1536.1|Name=mRNA_P-fluviatile_contig12.1536.1|organism=Porterinema fluviatile SAG_2381|type=CDS|length=2958bp|location=Sequence derived from alignment at P-fluviatile_contig12:2768965..2784543+ (Porterinema fluviatile SAG_2381)
ATGGGGTACCCTCTCTGCGGCCATTTTCGTACGTCGATGCCCCCGACGAT
GTCTCGGACCAGGCCATCGACACACTCAGGCCAGGGATTAGACATGGAAC
ATGCTCAGGTAGAGAGCGTAAATAAAAATGACAAAGAAACAATAACAGCA
GCAGTAGCAGCAGCAGCAGTATCGGCAAATCACCCCGCGGCGATGGAGTC
AATTCGAGAGCCAGCTGCTGCTGCAGCAGAAACACCGCTGGCTGTTTCTA
ATGCTGCCGTAGGGGAGGTGTCTTCACCGGGGGCGGTGACAGGAGCGGCT
GGTGACGCATCGAGCAAGGATGCGGCCGGCGGGGAAAAGAGTCGAGACGG
CGCCAGTTTGTGGATGTATCTCGACGGGGTCAGCCCCACGCAGCACGGGC
CGCTGGCGGAGGCGGTTATGCTCAAGCTCCTGCGGATCGGCACCGCCCAC
AAAGATATGATGGCGTGGTCGGAGGGCATGTCGGAGTGGCAGCCGCTCGG
ACAGATGGGGTACCCTCTCTGCGGCCATTTTCGTACGTCGATGCCCCCGA
CGATGTCTCGGACCAGGCCATCGACACACTCAGGCCAGGGATTAGACATG
GAACATGCTCAGGTAGAGAGCGTAAATAAAAATGACAAAGAAACAATAAC
AGCAGCAGTAGCAGCAGCAGCAGTATCGGCAAATCACCCCGCGGCGATGG
AGTCAATTCGAGAGCCAGCTGCTGCTGCAGCAGAAACACCGCTGGCTGTT
TCTAATGCTGCCGTAGGGGAGGTGTCTTCACCGGGGGCGGTGACAGGAGC
GGCTGGTGACGCATCGAGCAAGGATGCGGCCGGCGGGGAAAAGAGTCGAG
ACGGCGCCAGTTTGTGGATGTATCTCGACGGGGTCAGCCCCACGCAGCAC
GGGCCGCTGGCGGAGGCGGTTATGCTCAAGCTCCTGCGGATCGGCACCGC
CCACAAAGATATGATGGCGTGGTCGGAGGGCATGTCGGAGTGGCAGCCGC
TCGGACAGATCGAGGCGTTTCGAGAAACAAGCGAGCTCGCCGCCACGCCT
TGGCTCTACCTCGCGGAGAACGCGGAACAAAGGGGATCGAGGCGTTTCGA
GAAACAAGCGAGCTCGCCGCCACGCCTTGGCTCTACCTCGCGGAGAACGC
GGAACAAAGGGGGCCGGTGAGTGCGGCAGCTCTGTCTCTGCTGCTTCGAC
GGGGAGAGGTGGACGGCATGACCATGGCCTGGACCACCGGGATGGGAGCA
TGGAAGCCGCTCGGCGAGGCCGGTGAGTGCGGCAGCTCTGTCTCTGCTGC
TTCGACGGGGAGAGGTGGACGGCATGACCATGGCCTGGACCACCGGGATG
GGAGCATGGAAGCCGCTCGGCGAGGTGTCTGAGTTACGGCCGCTGTTGCA
GGCCCAAGACGAGGAGGAAGAGGAAGAGGAGGAGGGAGTGGCGGGGGCGG
GGGGGGTTGTGGCGCCGGAGGAGATGATGGTGTTCGAGGCGGAGGAGGAG
AGGCAGCCAGCCTACGAGCCGCCTCCCAAAAAGGAGGTGTCTGAGTTACG
GCCGCTGTTGCAGGCCCAAGACGAGGAGGAAGAGGAAGAGGAGGAGGGAG
TGGCGGGGGCGGGGGGGGTTGTGGCGCCGGAGGAGATGATGGTGTTCGAG
GCGGAGGAGGAGAGGCAGCCAGCCTACGAGCCGCCTCCCAAAAAGGAGAG
CAAGCGAAGCTTCATGGCCGACGACGGCACGAAGTTTGCCTGGGATGAGG
ACAAAGGGGACTGGAAGCAGGTGGAGGGCGACGAGGAGGAGGAGTTGGAG
GACGACGAAGAGAGCAAGCGAAGCTTCATGGCCGACGACGGCACGAAGTT
TGCCTGGGATGAGGACAAAGGGGACTGGAAGCAGGTGGAGGGCGACGAGG
AGGAGGAGTTGGAGGACGACGAAGAGGTGGAGCCCTCTTGGAAGATCCGA
AGGGCAAAGCAACAGGCAAAGCTCAACGCTAAATCCAAGGAAGAAACGAA
GGCCGGCAAGACAACTGGCGGCGGCGACGCTGCCACGGACAACGGTGTAG
ACGAGGCTGATCCGGATACGGCGCACTGGGGGAGCTGCTGGAGGACGCCA
AGAGAGAGGCCGCGGGGGGGCGGGGGCACCgGGGGAGAGCGGGGGGGCAG
GGGGTGGGGAGGGAGGCAGCAGCAGCGTGGCGGCGCAGAAGAAAGCCAAG
AAGAAGAACAACAAGAAGAAACGAGGGCTCCAGTGGAACAAGAACGCGAC
CAACCTCTGGGTCTACGTCAAGGGTGGAGCCCTCTTGGAAGATCCGAAGG
GCAAAGCAACAGGCAAAGCTCAACGCTAAATCCAAGGAAGAAACGAAGGC
CGGCAAGACAACTGGCGGCGGCGACGCTGCCACGGACAACGGTGTAGACG
AGGCTGATCCGGATACGGCGCACTGGGGGAGCTGCTGGAGGACGCCAAGA
GAGAGGCCGCGGGGGGGCGGGGGCACCgGGGGAGAGCGGGGGGGCAGGGG
GTGGGGAGGGAGGCAGCAGCAGCGTGGCGGCGCAGAAGAAAGCCAAGAAG
AAGAACAACAAGAAGAAACGAGGGCTCCAGTGGAACAAGAACGCGACCAA
CCTCTGGGTCTACGTCAAGGGACTACCCACAGACGTGACGATGGAAGAGG
TCCGGGAGCACTTCAACAAGTGCGGACTCATTGCCACGGATCCGTTGACG
CAGCAGCCGAAGATCAAGATTTACAAGACTACCCACAGACGTGACGATGG
AAGAGGTCCGGGAGCACTTCAACAAGTGCGGACTCATTGCCACGGATCCG
TTGACGCAGCAGCCGAAGATCAAGATTTACAAGGACGAGGAGGGTCACCC
GAAGGGCGACGGCAGCGTGTGCTACGTGAAGCAGGAGTCGGTTGAGGACG
AGGAGGGTCACCCGAAGGGCGACGGCAGCGTGTGCTACGTGAAGCAGGAG
TCGGTTGA
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