Homology
BLAST of mRNA_P-fluviatile_contig15.2524.1 vs. uniprot
Match:
D7FV57_ECTSI (Methyltransf_11 domain-containing protein n=1 Tax=Ectocarpus siliculosus TaxID=2880 RepID=D7FV57_ECTSI)
HSP 1 Score: 383 bits (984), Expect = 3.600e-129
Identity = 181/224 (80.80%), Postives = 197/224 (87.95%), Query Frame = 1
Query: 361 MKDLFIKPTPPVAEVEQIGGLQGRIDAKLLEEVQEYDAVPSEAASYGKIAFWDERYAADEEVVDWYHSWANLAPTLTQYMDEQDDVLVCGCGNSEMSVDMFDDGFENIVNVDISRVAIHQMAETYKAYPMKWKSIDLTREEFPEAEFDVALDKACLDSIACSPHGASKVRDYLQQMDRLLQPEGAFICVSFAPPEERLELLEYWDIDVPAKCLAWDVHVDAIAK 1032
MK+LF K + VAE+E++G L R+DAKLLEEVQEYDAVPSEAASYGK FWDERYA D EVV+WYH W NLAPTLTQYMDEQD+VLVCGCGNSEMSVDM+DDGFENIVN DIS+VAIHQ+ E YKAYPM+WKSIDLTREEFPE +FDVALDKACLDSIAC+ G +YLQQMDRLLQPEGAFICVSFAPPEERLELLEYWDID PAKCLAWDVHVD I +
Sbjct: 1 MKNLFKKQSDEVAEIEELGELNERVDAKLLEEVQEYDAVPSEAASYGKTTFWDERYAGDGEVVEWYHPWGNLAPTLTQYMDEQDEVLVCGCGNSEMSVDMYDDGFENIVNADISKVAIHQVTEIYKAYPMEWKSIDLTREEFPEEKFDVALDKACLDSIACNLRGVVNAENYLQQMDRLLQPEGAFICVSFAPPEERLELLEYWDIDQPAKCLAWDVHVDTIGE 224
BLAST of mRNA_P-fluviatile_contig15.2524.1 vs. uniprot
Match:
A0A7S1UEF3_9STRA (Hypothetical protein n=1 Tax=Phaeomonas parva TaxID=124430 RepID=A0A7S1UEF3_9STRA)
HSP 1 Score: 196 bits (497), Expect = 2.370e-55
Identity = 103/236 (43.64%), Postives = 144/236 (61.02%), Query Frame = 1
Query: 466 YDAVPSEAASYGKIAFWDERYAADEEVVDWYHSWANLAPTLTQYMDEQDDVLVCGCGNSEMSVDMFDDGFENIVNVDISRVAIHQMAETYKAYPMKWKSIDLTREEFPEAEFDVALDKACLDSIACSPHGASKVRDYLQQMDRLLQPEGAFICVSFAPPEERLELLEYWDIDVPAKCLAWDVHVDAIAKPALKLRR--GAESDGDVYYIYVCIKDPSKTVQKRI--AKERAKREQE 1161
Y +VP++A +YGK FWD+RYA E +WYH + LA + Q+++ D +L+ GCGNS + DM++DG+E IV VD+SRV I Q E Y P++W +++ F +FD +DKACLD+I C G + + LQ++DR+L+PEG + VS PEERLE+LE D+ LAW V V AIAKPA+ ++ VYYIYVC KD + KR+ AK AK+ E
Sbjct: 39 YQSVPTDACNYGKANFWDDRYARSENAFEWYHPYPALAVLIGQFVNYDDTILIMGCGNSTLPEDMYNDGYERIVCVDLSRVVIDQQQEKYADLPIQWVQMNMCDSLFENEQFDAVIDKACLDAIYCHELGEASAKAALQEVDRILKPEGVYFMVSRGLPEERLEVLEVEDVKEKGY-LAWQVQVHAIAKPAVDVKYIPNLADPTSVYYIYVCEKDEALHDAKRLWLAKLEAKKRGE 273
BLAST of mRNA_P-fluviatile_contig15.2524.1 vs. uniprot
Match:
A0A6V1PD48_HETAK (Hypothetical protein n=1 Tax=Heterosigma akashiwo TaxID=2829 RepID=A0A6V1PD48_HETAK)
HSP 1 Score: 191 bits (486), Expect = 3.660e-54
Identity = 101/243 (41.56%), Postives = 147/243 (60.49%), Query Frame = 1
Query: 463 EYDAVPSEAASYGKIAFWDERYAADEEVVDWYHSWANLAPTLTQYMDEQDDVLVCGCGNSEMSVDMFDDGFENIVNVDISRVAIHQMAETYK--AYPMKWKSIDLTREEFPEAEFDVALDKACLDSIACSPHGASKVRDYLQQMDRLLQPEGAFICVSFAPPEERLELLEYWDIDVPAKCLAWDVHVDAIAKPALKLRRGAESD--GDVYYIYVCIKDPSKTVQKRIAKERAKREQEKKLAKL 1179
EY++ P++AA Y K AFWD RY + EV +WYH + +MD+ D++L GCGNSEMS +M +G++ + N+D S+V I QM E Y M W +D + FP+ FD+ LDK C+DS+ C G + LQ++DR+L+P+GA+I +S+ P+ RL+LLE DID P L WDV V+AIAKP + G +YYIYVCIK+ K V ++ +E +++Q K +L
Sbjct: 13 EYESHPTDAAQYAKAAFWDSRYMRNPEVFEWYHPYDAFVDIFEMFMDKGDEILNIGCGNSEMSAEMALEGYDWVTNIDHSKVVIEQMKEKYADDLPDMPWYYMDAAKLRFPDNTFDIVLDKGCMDSMLCGNKGRYETGKMLQEIDRVLKPDGAYILISYGTPDLRLDLLEDADIDSPG-FLTWDVFVNAIAKPTTDNFTTPDYGDLGSMYYIYVCIKEERK-VSLKLQREAKRKKQASKAGRL 253
BLAST of mRNA_P-fluviatile_contig15.2524.1 vs. uniprot
Match:
A0A7S2DUE8_9STRA (Hypothetical protein (Fragment) n=1 Tax=Dictyocha speculum TaxID=35687 RepID=A0A7S2DUE8_9STRA)
HSP 1 Score: 179 bits (453), Expect = 8.490e-49
Identity = 91/219 (41.55%), Postives = 131/219 (59.82%), Query Frame = 1
Query: 466 YDAVPSEAASYGKIAFWDERYAADEEVVDWYHSWANLAPTLTQYMDEQDDVLVCGCGNSEMSVDMFDDGFENIVNVDISRVAIHQMAETYK---AYPMKWKSIDLT--REEFPEAEFDVALDKACLDSIACSPHGASKVRDYLQQMDRLLQPEGAFICVSFAPPEERLELLEYWDIDVPAKCLAWDVHVDAIAKPALKLRRGAESDG--DVYYIYVCIK 1101
YD VP +A YGK FWDERY ++EE DWYH ++NL + +Y++ VL+ GCGNS + DM DDGF IVNVDISR+ + QM E Y ++++ +D+ + EF + EF +DKA +D+I C HG+ KV+ L + DRLL G +ICVS PE RL+ + I+ A + W VHV I KP + + + ++Y++YVC+K
Sbjct: 50 YDPVPEDACQYGKPFFWDERYMSNEEAFDWYHPYSNLRGIIKKYVEPDFKVLIAGCGNSRLCEDMVDDGFSQIVNVDISRIVVDQMEEKYTDTLGDGVEFRQMDVCDMQGEFEDKEFQAVIDKALIDTIYCMEHGSKKVKQVLHEFDRLLTHTGVYICVSCGKPENRLKEFDN-SIEQDAGFMPWKVHVFTIPKPIVNPYKPIDIHDLDEMYFVYVCVK 267
BLAST of mRNA_P-fluviatile_contig15.2524.1 vs. uniprot
Match:
F0YBR1_AURAN (Methyltransf_11 domain-containing protein n=1 Tax=Aureococcus anophagefferens TaxID=44056 RepID=F0YBR1_AURAN)
HSP 1 Score: 166 bits (421), Expect = 8.330e-45
Identity = 98/237 (41.35%), Postives = 134/237 (56.54%), Query Frame = 1
Query: 496 YGKIAFWDERYAADEEVVDWYHSWANLAPTLTQYMDEQDDVLVCGCGNSEMSVDMFDDGFENIVNVDISRVAIHQMAETY--KAYP----------MKWKSIDLT--REEFPEAEFDVALDKACLDSIACSPHGASKVRDYLQQMDRLLQPEGAFICVSFAPPEERLELLEYWDIDVPAKCLAWDVHVDAIAK--PALKLRRGAESDGDVYYIYVCIK----DPSKTVQKRIAKERA 1146
+G FWDERY + E +WYH +A L P L Q+M ++ +L+ GCG+SEM+ DM++DG+ ++ NVDISRV + +MA Y K P ++WK D T F + FDV +DKA LD++ CS + YLQ+MDR+L PEG F CVSF PE RL+ +E D + LAW+V V AI K P + DVYY+Y C K D K ++K+ K RA
Sbjct: 2 FGSPGFWDERYYVNCEPFEWYHDYAALKPLLEQFMTKEMHILLVGCGSSEMARDMYEDGYTSLFNVDISRVVVDEMAMRYDMKEIPKMYFEDDLGGIQWKQADATDLTAMFNDKIFDVVVDKALLDALYCSEVPGKQTHKYLQEMDRILTPEGLFFCVSFGLPENRLDKIEDTDEESDG-FLAWEVEVHAIPKLMPNQYKVSQLKKPEDVYYVYTCRKEEKMDNEKMLKKKAEKARA 237
BLAST of mRNA_P-fluviatile_contig15.2524.1 vs. uniprot
Match:
A0A7S2FTP6_9DINO (Hypothetical protein n=1 Tax=Alexandrium andersonii TaxID=327968 RepID=A0A7S2FTP6_9DINO)
HSP 1 Score: 158 bits (399), Expect = 4.440e-42
Identity = 82/213 (38.50%), Postives = 121/213 (56.81%), Query Frame = 1
Query: 490 ASYGKIAFWDERYAADEEVVDWYHSWANLAPTLTQYMDEQDDVLVCGCGNSEMSVDMFDDGFENIVNVDISRVAIHQMAETYKAYP-MKWKSIDLTREEFPEAEFDVALDKACLDSIACSPHGASKVRDYLQQMDRLLQPEGAFICVSFAPPEERLELLEYWDIDVPAKCLAWDVHVDAIAKPALKLRRGAESDG--DVYYIYVCIK-DPSKT 1116
A YGK +W+ERY D E DWY WA L TL +Y+ +Q+ +L+ G GNS +S +M+++GF NI N+DIS V M E Y+ P M + +D E P++ F+V LDKA LDSI C + LQ++ R+L +G +I +S P RL L+ + + W+V + + KP + + SD +V+YIYVCIK +P+ T
Sbjct: 2 AQYGKSEYWEERYTRDPEPFDWYQRWAGLKDTLLEYVTQQNSILMLGAGNSRLSEEMYEEGFHNITNIDISMVVTKAMQEKYRDKPGMTYVQMDGRAMELPDSNFNVVLDKATLDSILCGEGSTHNAQKMLQEISRVLMDKGVYIAISHGQPSYRLTYLQRPEFN-------WNVKIYTVQKPMMGMTASLSSDDKDNVHYIYVCIKGEPAST 207
BLAST of mRNA_P-fluviatile_contig15.2524.1 vs. uniprot
Match:
A0A7S2V469_9STRA (Hypothetical protein n=1 Tax=Fibrocapsa japonica TaxID=94617 RepID=A0A7S2V469_9STRA)
HSP 1 Score: 158 bits (400), Expect = 4.640e-42
Identity = 84/199 (42.21%), Postives = 119/199 (59.80%), Query Frame = 1
Query: 541 EVVDWYHSWANLAPTLTQYMDEQDDVLVCGCGNSEMSVDMFDDGFENIVNVDISRVAIHQMAETYKA-YP-MKWKSIDLTREEFPEAEFDVALDKACLDSIACSPHGASKVRDYLQQMDRLLQPEGAFICVSFAPPEERLELLEYWDIDVPAKCLAWDVHVDAIAKPALKLRRGAESDG--DVYYIYVCIKDPSKTVQK 1125
+V +WY+ + A YMD DD+LV GCGNSEMS +M ++G+ +I+NVD S+V I QM E YK YP M W +D + +F + FDV +DK LDS+ C+ G + LQ +D++L+P+G +I VS+ P+ RL+LLE D+ L WD V AIAKPA + +YY+YVCIK+ K + K
Sbjct: 1 DVFEWYYPYDAFADIFAMYMDVNDDILVLGCGNSEMSAEMQEEGYNHIINVDFSKVVIDQMQEKYKEDYPDMTWYVMDAMKLKFEKHTFDVVIDKGLLDSMLCTDKGIINAKMMLQNVDKVLKPDGVYIVVSYGTPDARLDLLEN-DVYESEDFLTWDAFVHAIAKPAANPFSFPDYSDYQSMYYVYVCIKEEKKVLMK 198
BLAST of mRNA_P-fluviatile_contig15.2524.1 vs. uniprot
Match:
A0A812VKP5_9DINO (EEF1AKMT4 protein n=6 Tax=Symbiodinium TaxID=2949 RepID=A0A812VKP5_9DINO)
HSP 1 Score: 156 bits (394), Expect = 2.230e-41
Identity = 76/207 (36.71%), Postives = 111/207 (53.62%), Query Frame = 1
Query: 490 ASYGKIAFWDERYAADEEVVDWYHSWANLAPTLTQYMDEQDDVLVCGCGNSEMSVDMFDDGFENIVNVDISRVAIHQMAETYKAYP-MKWKSIDLTREEFPEAEFDVALDKACLDSIACSPHGASKVRDYLQQMDRLLQPEGAFICVSFAPPEERLELLEYWDIDVPAKCLAWDVHVDAIAKPALKLRRGAESDG--DVYYIYVCIK 1101
A YGK +W+ERY D E DWY WA L T +Y+ +L+ GCGNS +S +M+++GF +I N+D+ M E Y+ P M +K +D E P+A F+V +DKACLDSI C + L ++ R+LQP G ++ VS P RL L+ + W+V + KP + + +D V+YIYVC+K
Sbjct: 2 AQYGKAEYWEERYTRDPEPFDWYQRWAGLKDTFAEYVQPSHSILMLGCGNSRLSEEMYEEGFHSITNIDLCLTVTKAMQEKYRDKPGMTYKQMDGRSMELPDANFNVVIDKACLDSILCGEGSTHNAQKLLTEVSRILQPNGVYVAVSHGQPSYRLTYLQRPEF-------GWNVKTYTVQKPMMGMTASLSADDKDSVHYIYVCVK 201
BLAST of mRNA_P-fluviatile_contig15.2524.1 vs. uniprot
Match:
A0A812IP73_9DINO (EEF1AKMT4 protein n=1 Tax=Symbiodinium natans TaxID=878477 RepID=A0A812IP73_9DINO)
HSP 1 Score: 158 bits (400), Expect = 8.940e-41
Identity = 77/207 (37.20%), Postives = 113/207 (54.59%), Query Frame = 1
Query: 490 ASYGKIAFWDERYAADEEVVDWYHSWANLAPTLTQYMDEQDDVLVCGCGNSEMSVDMFDDGFENIVNVDISRVAIHQMAETYKAYP-MKWKSIDLTREEFPEAEFDVALDKACLDSIACSPHGASKVRDYLQQMDRLLQPEGAFICVSFAPPEERLELLEYWDIDVPAKCLAWDVHVDAIAKPALKLRRGAESDG--DVYYIYVCIK 1101
A YGK +W+ERY D E DWY WA L T ++Y+ VL+ GCGNS +S +M+++GF +I N+D+ I M E Y+ P M +K +D E P+A F++ +DKACLDSI C + L ++ R+LQP G ++ VS P RL L+ + W+V + KP + + +D V+YIYVC+K
Sbjct: 128 AQYGKAEYWEERYTRDPEPFDWYQRWAGLKDTFSEYVQPSHSVLMLGCGNSRLSEEMYEEGFHSITNIDLCMTVIKAMQEKYRDKPGMTYKQMDGRSMELPDANFNIVIDKACLDSILCGEGSTHNAQKLLTEVSRVLQPNGVYVAVSHGQPSYRLTYLQRPEF-------GWNVKTYTVQKPMMGMTASLSADDKDSVHYIYVCVK 327
BLAST of mRNA_P-fluviatile_contig15.2524.1 vs. uniprot
Match:
A0A6U1K5P8_9STRA (Hypothetical protein n=2 Tax=Pelagomonas calceolata TaxID=35677 RepID=A0A6U1K5P8_9STRA)
HSP 1 Score: 154 bits (389), Expect = 1.190e-40
Identity = 78/207 (37.68%), Postives = 115/207 (55.56%), Query Frame = 1
Query: 490 ASYGKIAFWDERYAADEEVVDWYHSWANLAPTLTQYMDEQDDVLVCGCGNSEMSVDMFDDGFENIVNVDISRVAIHQMAETYKAYP-MKWKSIDLTREEFPEAEFDVALDKACLDSIACSPHGASKVRDYLQQMDRLLQPEGAFICVSFAPPEERLELLEYWDIDVPAKCLAWDVHVDAIAKPALKLRRGAESD--GDVYYIYVCIK 1101
A YGK ++WDERY D E DWY ++ + L +Y+ + D VL+ GCGNS +S DMF+DGF NI NVDISRV I QM + YK P + ++ +++ EFP+ FD + K +D+I C + V ++ R+L+P G VS+ P+ R++ LE D +W V + KP + ++ V+YIYVC K
Sbjct: 2 AQYGKTSYWDERYTKDPEPFDWYQRYSGIQELLQKYVKKDDAVLMAGCGNSRLSEDMFEDGFANISNVDISRVVIDQMGDKYKDKPALTFQQMNVCSLEFPDESFDAVIVKGTMDAILCGEGSTANVAKMCMEVSRVLKPSGILFVVSYGVPDNRMQYLENEDY-------SWTVTTHTVPKPTVSATAVPDTKDANSVHYIYVCAK 201
The following BLAST results are available for this feature:
Sequences
The following sequences are available for this feature:
protein sequence of mRNA_P-fluviatile_contig15.2524.1
>prot_P-fluviatile_contig15.2524.1 ID=prot_P-fluviatile_contig15.2524.1|Name=mRNA_P-fluviatile_contig15.2524.1|organism=Porterinema fluviatile SAG_2381|type=polypeptide|length=390bp
MPRPRGSSEESGNSSSRTSGSGSSSLTSRSEGDGRATEDSGSLLSSGNSA
SISPRELEGYESRKSSASTSASRYTSRTSGSGSSSSTSGSDDGGGDNLKN
RMKDLFIKPTPPVAEVEQIGGLQGRIDAKLLEEVQEYDAVPSEAASYGKI
AFWDERYAADEEVVDWYHSWANLAPTLTQYMDEQDDVLVCGCGNSEMSVD
MFDDGFENIVNVDISRVAIHQMAETYKAYPMKWKSIDLTREEFPEAEFDV
ALDKACLDSIACSPHGASKVRDYLQQMDRLLQPEGAFICVSFAPPEERLE
LLEYWDIDVPAKCLAWDVHVDAIAKPALKLRRGAESDGDVYYIYVCIKDP
SKTVQKRIAKERAKREQEKKLAKLLGVKAGRGRGRGRGR*
back to topmRNA from alignment at P-fluviatile_contig15:2034496..2048556-
Legend: UTRpolypeptideCDS
Hold the cursor over a type above to highlight its positions in the sequence below.
>mRNA_P-fluviatile_contig15.2524.1 ID=mRNA_P-fluviatile_contig15.2524.1|Name=mRNA_P-fluviatile_contig15.2524.1|organism=Porterinema fluviatile SAG_2381|type=mRNA|length=14061bp|location=Sequence derived from alignment at P-fluviatile_contig15:2034496..2048556- (Porterinema fluviatile SAG_2381)
CGAACATCCACCGTACGTCCTACTCAAGCCTTGACAAGCCACCGGTGGAC
GCCGGTGATGCCGAGACCCCGCGGTTCTAGTGAAGAAAGTGGTAATAGCA
GCAGCAGGACGAGCGGGTCGGGCAGCTCATCTTTGACCTCCCGTAGCGAG
GGTGACGGACGAGCAACCGAAGATAGCGGATCTTTATTGTCGAGCGGCAA
CAGCGCTAGCATCAGCCCCCGAGAGCTTGAAGGATATGAATCGAGAAAGA
GCAGCGCTTCTACGTCCGCTTCAAGATATACCAGCCGGACGAGCGGATCA
GGAAGCTCATCATCGACCTCCGGTAGTGATGATGGTGGAGGCGACAACTT
GAAAAATCGGATGAAAGACCTTTTCATTAAACCAACACCACCGGTGGCTG
AGGTAGAACAGATTGGGGGGCTTCAGGGCAGGTGAGGAAAGTCGATACGA
ATTTGCATGAATTCGTCGATTATCCGCTGATAGGCTCGACGCGGGGTGGA
AGTCTTGCGAGGGCTGGATATAAACGTATGAGTGTCATAAGGTTTACAGG
CGACACAGCAGCAGCTTTTAGGTTTGTACGAAGAGAAAATATTCCTTGAA
TGAGGAAGCGGAGAAGCGAGGTGACTTGACAGTCTACTGTACGGAATGCA
GGTCGATGAACGCGCATGATGATACTTGTACCAACAGGATAGATGCGAAG
CTCTTGGAGGAGGTACAGGAGTACGACGCGGTGCCATCCGAGGCGGCCTC
CTACGGGAAGATTGCCTTTTGGGACGAACGTTACGCCGCCGACGAAGAGG
TCAGAGTTGCTTGTTGAAATCCACTGCCGCGCTATCAGCGAGAAGCATGC
ACCAGACCTTTCGCATTCCTCATGCCTCTGGATTTGTCTTGAAATGAAGT
TTTTTGTTTCACTGTAGAGGAAGATCCTATAGGTCTAATCATAGATCCAT
TGAAGCCATTAAAGCAGGAGCAAACCTCAACATGGGCGAGCTCAAAAACA
AAAGTAGGACAATGAACGGTACCGTCCAACCTACCACACCGCAGCTTTGC
GTGAGACAAAAGCCCTCGCCGTAAACGCGTCTCGACAACACCTTAGGATA
GATTGCGCTCGCCGAATGCTTTGCGGGTAGCGATTTCTTGCTTTGGAAGA
TGACGCTTTCGGATAGGCTCTGACGTGTAGGTTGAGGCTGCCTTCACCGA
TAGCCATTCTGCCTCCTCGACTCGTCGATTTGTCAACGCGATGCAGGTGG
TTGACTGGTACCACTCGTGGGCCAACCTGGCCCCAACCCTGACTCAGTAT
ATGGACGAACAAGACGACGTGTTGGTGTGCGGTTGCGGAAATTCTGAGAT
GAGCGTCGACATGTTTGACGATGGTAAGGACTCGCCTCGGTCGCCGTCGG
TCTGAGGGCGCCGTCATACCACTCGCACTTTGGCGTTTTTGCACGCTCAT
ATCTCGCATTTCCTGGAAATAGCACTCTGTTCTACACGTTTTTAGCTACC
GGTGAACAACGTATTGTCCAAAGCTCGTGGAGCGTTGTTCGTCCTCACAA
TGCACTCAATATCTCGACGACACCGCAGCAGAGTTATATGTTGTCCGAGT
GGCAGGAACAACACGTTTGCCCCGTTCTACTGCATGTGCCCATGGTTATC
CTTCACTTTGCTTCAGATAATCCTCCGCCTCATGTTCATACATTCAAGGG
TTCGAGAACATCGTGAACGTGGACATATCCAGGGTGGCCATTCACCAGAT
GGCCGAAACCTACAAAGCTTACCCCATGAAATGTGAGTGGAGCACATGTA
TGGACGGGCAACTAAGCTGCGCTCCGTCCGAACCGGGCCGATGAGCCCGC
AGAGTAGGCGAGCAAAGACTCAACCTTGTTTCTATCCAAATCACCCTGGC
TCAAGGAAAAGTAGCTCAAAAGTCGTTGTTCGAACTGACCGATTGGCCTA
TCGGCCACGTGACGGCGATCATCTTTTAGTGTGCCAGTAGGCTACGACGA
CAAAATACAAAATTATTCTCTGTCATGTTGAGCGAAAGGTAAATATCCAG
ATGGACTATCGAACCCGCTTTGGCTTGTTGCACGTGCGTAAGATTGAGCG
CAATTGGCTTGTAGCCACTTCGTGGATGCAGCGCGTTTTAACAATTTACA
CCCCCGTCAGGAGTGTACACAGCACTTTGTGCCTTGAGCCTTTATCCCTT
ATTCCCGCTTCTCATTCCACTTTTCTCTCACCACAACTAGGGAAATCGAT
TGATCTCACCCGCGAGGAGTTCCCTGAAGCGGAGTTTGACGTCGCCTTGG
ATAAAGCGTGCCTCGATTCCATCGCGTGCAGCCCTCACGGGGCATCAAAG
GTTCGAGACTATCTTCAACAGATGGACAGGTGCGCACCGGACCTATCCGT
CATCTATTTTATGTGGCCATGCGTCCCCATTGCTAAGACACGAGAGAATG
TTCGGTGTTCCCGTTAAGCCATTTTACTTGTTGATCATGGTCATCTATCG
TAAGCTACTTTCCCTTGCCGCAGTATATTCATGGGCAGTGCGCTATCATG
ACTCTTAGGTTTATGTTCATCGACCCTGGCGGTATACTTTTACGACACAA
CACACTCCGTGTCCTTTTGCTTTGCACCCTTGTTTCTCAGATTGCTCCAG
CCAGAAGGAGCTTTCATTTGTGTGTCCTTCGCTCCCCCAGAAGAGCGCCT
GGAGCTCTTGGAATACTGGGATATAGACGTACCAGCAAAGTGCCTGGCTT
GGGACGTTCACGTTGATGCGATCGGTGAGATGAACTCGTCAAGCGTTACC
TTGTTGTTTTCGTTTCGCGCGGGTGTGATCGAACCCTCACAAAGCAGGAG
ATCTTGGATTATCATGAGCTTGTGCGACTTGCCTGTTTTGGTTGTACCAC
CCGCGAGATAGCCACGGGAATCGCGTCCGACATGTACCCTCCGAAGGTCA
AACAAATTCGTGGGCGCCCTAGAAAGCACATCGTGGTACAAGCCAATTGG
CCGACACATTACGCTCCTCATTCAACTTGTCGTACCTTGCTCAACTTTAT
CATCAAAGAAGGAATGGACAAATTCCGTCATCCACATCTCAACGTGTTGT
TGTGTGGATGCCCTCGCTCAAAATATCGACTACAGCGAAGCCAGCATTGA
AGCTGCGGCGGGGGGCTGAAAGCGACGGTGACGTCTACTACATATACGTG
TGTATCAAGGATCCCAGCAAGGTGAAGAATTTGGTGGTGTACCTTGCAGA
AACGTTCGAACTAGTGGAGCTCACGTTTATACTCGTCGCTTGTTACTTTC
AGGCCGGAGGTTGATGTTGGACGTTCTGAAAGTCTTCGTTCAAATCAACT
GTAAAGAAAAGGTAGTACGGTTGGGAGCTAACAATCTTTCTGCGGCAAAT
GAATCTTCCCCTGAAATCACGTCGGTGCGGACATATTAAACTAGCTTTTC
CCCTGTGGCTCAATACCTTTGTACTTTGGTGGCTCCATCCGCAGCGTTTG
TTCGTCCACCGTGCATCTCGGAGAATAATTGGCAGCTATTTTGGTAGCGC
GAGCCTTTGCAAGTCTTTCACCCATATCGCACTTCAATTGATGGCAAGAT
CACGAGAAAATATCCAAAGCCTTCGCAAGAGACCAGATGCACATATGGAA
CATCTCCTGTATGTAAGATGACGTGGGCATAATTTGCCGTTCCGGCAAGG
ATGATTATATTTGGCTTATGTGCCGTATCATCGCCCACTCATCACAATAA
CGAACCACTAGACAAAAGAAAATAGACATTCTAAATTGGCTTCTTCTGTG
GACCCTCACAAAAGAAGTGGCCTGCTACCTTTGATACTGCTGCGGCCGTT
GATCGAATCACAACTATTTGTGCATCGTCAGTAGGAGGAGGAGAGTACAG
ACGCGGCCCGCTGTTGCGAAACATCAAATTCGGCTTGAGACTCACTTTCT
CAGCTTTGCCCCCGAAGAACGACGAGCCTTAAGCCTTTCTTCAAAAAGAT
CATGTTTCCTATTTTCCTATGCTACCAGCACATGCTGGTTTCCTAAATAG
TTAGTTTCTCAATCGTCATCCTGTCCCGGAACCGGAATTTCTTAGAATGC
TCTGTTTTTTCTAATCTTGTCGGGTGCACAAGCGCGTCCTGCGGACCGTT
CCAGCACGTGTCTATTCATCGCTATGCCCCAACGGACACGAAAATATGAA
GAAATCAAGTAAAATATCAAAATAATTAAATAAGGCAACCCAAAGTTAGT
TGTGGGTGTGGTCCACATACTTGTGCACACACACCGACAGCGGATGGATG
GTTCTTACTCGGGGCACCCTTCCATCGCCCCTCGTTTCTTATTATCTTAG
TGGGGGTGCCGGATGCATGCCTGTTTTGTAATGGGATGTTTCCCATAATT
ATTAATGCTGTCTGAATCGAAGTGGATGGCGTGTTTCTTCGCTCTATATC
TATATTGTTCATGAGTGAGCGTTTTCTCAATCAACGCTTTATTTCATAAC
AGCGGGCCGCGTCTTTAAGATAAAATGAAGGAAAGAAGAAACTGCCATGC
ACAGAAAAAGTCTCACAACTCTTCATTTAGAAGTCTAGTCACTTCCGTAG
ATATTACGGACAACCGAGTTTAAAAATTCAGAACTTGATACACCCCCCCA
AAAAAGTGCCCGATTCATCCACCGCGGCTCTCATCCCGGCTTCTTATAAA
CAGTTTTTGAGCAACCACGTTATTATGTGTCTGTCTACCTTCAAACATTG
TCAGATGTCAATGCATGCACATCCATTGCAGCCCCTTTGCGATAGATGTG
GGTGGCCACATGGTCCATGCACAGGGAGAGAGGAGTTCTTGTTTGCCACG
GCGCACGGAACTTCATTCCTTCGTGATCCGTCCCGAGCCCCACAATTACT
CGGAGCATACTACTATGCTCGATATATATGTGGAGGCTCACATGATAAAT
AATGTCAAGTACATATTATCTTTGCGTGATTTAAAAAGTGTATTCATGTG
TGGAGGAGGAGCGGTTACTGTTCACTGCGTATTATTAGGCCCGCGCCACG
CGGGCGGTCAAACTGCAACACAGAGAAGATGCACGCGCGTGTGATTCTGA
ACGGAATGTTTCAGGTGTGAAGTTGCTCCGTCAAAAACTAAGAGGGGAGA
GAGAGAGCAAGGGGGGGAGGATGGATCGAAAAGTTTTTGTTCTTTTCTGC
TTGTTTGTGAGAGGATCGAGCCTTTCACCGGTCGGCGAGGGGGTGTGTGC
GTGGTTGGTTGTCTTTTTTAAACAGCAACAGCAAGGTCTTATGGAGGGGA
TATTCATAAGCACCGAACACTGGGGGTGACACCGAACGCTGGGGGTGACG
CGATAGCGAATAGGGGGGGTAGAGAGGGAAAAAATAACACATACAAACGA
ACAACACAAGACAACACGTTGTTGTGCAGGGTGCGGGTGGGCAGGGTTTG
TGTGCGAGAGAGAGACGAAAGATTTTCCAGACACAAAAGAAAGCAATTTA
CGCGGGAGCACGGAGAGCAGGAAGCCGCGGCAGGGGAAGGCGTCCTTTTT
GAGCCCTTTCCATGTCGATCGCGGTTCTTTACGGTGGAAGACCCTCTCTG
CTTGCTGTGATTCTGCCCGGGTGAGCGGGTTTTCAAGGGTGCGTCAACCC
ATCCATGTCGAACGGACGCCGTAACGATAGCTTTTCGGTGCCGTAACGGG
CTTTAAACGGACCATACTATGTGGAATTTAAAGCGAGGGGTAAGCGGTGT
GGTGTTTGTGCGCTGTCGAGTCGAAGTAATGTGGATTGAGGAAATGGTCA
AGAATGGGACGACGTCGAAACCGCCCAACGCCAGCATGGATGGATTGAGA
GCGACGGACTGACAGCGTTCGTTATTGCGTGTGAATGATTTTCGGTGAAG
ATCTCAATGATGAGCGCCGCCAGCAGTCAAACAAATTTTACGATGCGCGT
GCTTTTTTGGCCGGACGAAGCGAATAAGAATTGCCATGATCCCTCGCACG
CGCATCACTAACGTTTCCTGCTATCACCCTTTTTTTTGCCTTGTATGAAC
TCGAATCGTTGCCCAGATCACTTGCCTAAATCAACCAAGACATAGATGCG
CGATGCAAACACTCTTGCACTTTTCCGAAGGTGGTGCCGCTCCCTCAGCC
CTTACGGCGGGAATAAAATAAAACAAATCGAATCCCTTTGATTTCCTCGC
ACAGCGCAAAGCGCGTTGGGCAGGCAACTGTACGCGTTAAAAGGGATGCG
TCGGGGCTGGCTTTGAACAGCGAGTCATGCTCCTCTGTGCAGCTGCACAT
TGTACATACATGTCCGGTAACAAACATACTCCAGTACATGTTTTTTTTCG
CCGGAGTTCAGCGAGCTGTTGTTCTCGTCTTTTTTTCTGACGGCTTGTTT
TTCTCTCCCAAACCCTACACTCCCTCAAAGCATTACCCCCTCTTTGTTTC
CCGCGAGAAAACCCCACAAGTATTTTGAGGACCGCGGCAACGAATCGTGC
GAAGCGTAGAGTAACTCGCTTCACCCCCGCTCGACCAAGAAAAGGAGAGA
CGGGAGCATGAGCGCGCGGTGGGAAGGAGTCGGCGTCAGCTTGTAGTTGG
TTCAACGGGTGGGGGGCATGACACTTGCGCCACTTTTTCCACGGCCGACC
ATCCATCTTGCAGTGCGAGGGATTTCAAGGGAGGAAAGATTGACATTCAT
ATATAGAATCTAGACTATATCTGACGCGCTGTAAATTCGCGCAGTGGTCA
TGCAAGATTTTTTTCGGGGGGCTGCCAGGGTTTCGACACACACTCACCCA
CGCCACCCACACCACCATCGCCTCTTCCGTATGCAAGAATATTAAGAAGC
ATACGTTTAGCAACATTATCTGAAAACATACGTGTACATTCTTCGTTCCT
TTGTTGATAGTTGGCTCCGCGCGTGAGTTCTTAAGTTACACTTTCTCTTG
GTTTTCCACACGTTGGGCAGGCTGTTTGACGGCCGATTTGGTGAGAGCGG
GCACATTTTGGTTTTTCCATTTCCGGGAGAACAATCAAGCATAATCGAGC
GCGACGAAAATTCACCAAGTTTCACTCATTCATAAGGCTACGAACGAGAA
CATTAAATCAGGGATCGGATAATAGATAGGTTAAACATGGAGATTTCGAT
GAGCTGTGTGCATTTTTCCGCGACTACACCGTTCAGCTGAACGCAAAGAG
AAGCGCTCGCAAGCGGTTGAAAACACAAGAGCTTGCGTTAACGTGTAGCT
TGGACTTCTGCCTCTGACTTATTCCAACGACTCGCAGAAGCTCGAGCCCA
ACCCACTCTGCACGGATTACTTGATTCCAATTACGGAGTGTCTTTTGGAC
GCAACGGCCTAACTTTCAAATTTCCCACTGTATCGCACACACAGCGGATA
GTCAACTGCGTCGAATTGCGTCAACGGTTCAATATTCGATGGTGTGTCAA
ACGCGAGCCGGGGGCAGCCCACTTTCCTCGTGTCTGGAGAGTACGAGATT
TGACGATACCGAGTTTTACTCCCGAAACTGCGGCATGCTTGGAAAATATC
GCGTTGGGTTATGAATTGGGCCTGATAATTTGTGTTTTTTTTTAAATTGG
ATATTTGCTCTCTCTCTCTCTCTCTCTCTCTCTCTCAATTTTCTCTCTAG
CGCACCCATAACCAATTCTTGGTGTAACGATTGAGAAGAGAAAGAACTAG
TGTGTGCTATATCTCATGTTTGTGTCCATTCATGGCCGATGTGGTATATA
TCCACACCATTTTCTCCTGCAGGCGGATAGGTGAAGGTTGCGGAGCGGAG
TGCGTTGTCGAATGGCGTCAACAATGATGAGCCAAAGAGTCACTCTCGCC
ATTCCAAAATCATGAAAAACCCGGACCCAAAACATTGCCGTACGGGCGAG
ACGGCTTTGACATCTTCCTCTTGAACAACACATGGATCATGGTGTGACTG
TTTGGCAGCATCACCTTTTCTCGGCGGGCGTTACAGCCGAAGGTGTGAAC
TACGAAGTAGCGAGACCGTCAAGGGGTCTCGTTGTTTCTCGGTACATCTT
GTTTCTTGCTCGCTCGCGTGTGCTACACCGTGACGCCCATTGCCAACCGA
TGAAGCCACACGGGACGCCTCTCGTACGGCGATTCGAGTAGTCGCAAGTA
GAAGAGGTGGGTGGGAGGCGAGTGTCACGTTGATACGCCAAGCCTGGCGA
GGGAGTCATGCCCAAGCTCCGCCCCCTGCTCTCTGCTAGAACACCACATA
TTCCATTTCGCACACAACTGCTGTAGTTGCAAGCACCGCGCCGACGTTGC
TGCACTCCCTCCCCAACTCACGTGTGTGCCTAAAGCATGGACTTGTAGGC
TTCCTCTTCAGCGACGGACAGAGTTTAGTAGAGAGAAGGATGAGATAGAA
CGACGCGGCACACCAAGAGAGAGACAACACCCTGACAAAGACCGCCCACA
CACAGACTGGAAGGCAAAGTTTCATTGTGACAAATTGTCTCGTCCGCTTG
ACTGGTGAATGTTTTGTTGATTCCATGTGCAGCCTTCTTGGTGGGACAAT
ACTGAAAGCTGTAATGGTCACGACTATGTTTCCAACAGCGCCGACAGCTC
GTTCGTGCAAACAACGCTTCGCCAGCAGACAAGGTTGGCCCGTCAAATCC
GCGCTGTGATTATTTACCGCGCTCTCGAATGGTGACATATGTTTTTTTTG
CTCTTTGTTTCTCAAGAGCTGGCATGAAACGTCAGCTTTCGTCAAAAATC
TCTGAATTTCAAGAGGGTCCGGAGCACCGCCATAGTATTCGGCTCACACA
GCTAATGCTCTAAACTCGACGGTGCTGACCTCGTGATGAACGCTACCATT
CATGTTTGGATGTCTATCATCATCGTGTCCCTGTCAAATCATGCGAAGGT
AGCAGAAAATGGATGTTTTGAAAGATGTGTGTGCCGCGTAACATAGTTCG
ATTATTGATTTAAATCAAAATATTTCGACCCTCTCTGCGGAAAAAACACA
CATGACGTACAACGAAGGTTATCCGGTGTGTGAGACCGAGGAGCAAATGA
GCACGTATGCGTGGATATTTTCATGGGGGTAAGCTTTTCGAATGACTTGA
CATAAACTCGTTTCATGTGTCCACTGCTGGTTGAATGCCGTTGGGAAAGA
GGGTGCGCGAACTCCTTGCATCGGGAGGATTTTCAGTGTGGCAAAATGAT
TCGAGAATGGCCACCCATGCATAGGAGGTGTGCCTTTTGTGTTGTCCCGG
GAAAAGGAAGGGTACACCCAGATCCGGCGGCTGGTCGTTCTTGCGTGTGC
TCGCTGGCAGACGCGGACCTGCACCGCCGTCTTCACATAAAATTGGTGTG
TGTGCTATCTCATGTTTGTGTCAATTCGAGACATCTGGAACGGATGGACC
ATTTGTTACTCCGTTTCGCCCGCCACCCCACCCCCTCGGGAAAAATGAAG
TACAGCCGTACGGTCGACCACGAGACCCTAACTAACTACAGTGACACCAT
CTTTGTAGTCAGTCTGGAAGTATTGTGTTGTGTAAATCGGCGCAACACAA
GGATAATTATGCCCTCTTTTCTGCCGCCCATCCACATTTATGTGCAGCTG
CGTGTGTGTCGGATGCAGACTAAATGTGTACTCCGAGCTGTGGAAGATGC
CAAAATAATTGTAGACTAATCTTCCAGAGTGCTCGAGTCTTGCAAAGCTT
CACTTAATTATTGAGGTGTGTGCGTGTCGAAAGAGCAGATGGTAGTTGAT
CTCAACAGCGTGGAACGCCTCTCTGATGAACGTCATGGGTGTGGAATCCC
GAGCTTCCGAGGGAAGCTCTACTGCTGCGCGGCGCAAAACCCGTGTCCCT
TGACACTTGATCGGAGAGGAAAGGCGCGCGCGGACCAGCGAGAGTGACGC
CTTATTCTATTTTCTTGGCGAGAAGGATTCTGGAACGAGCGGCAGAGAAG
GAGAGAGTCCAAGGCATCCCTGTCGCCGGTGCCCGAGAAAACTGTAGTGC
TCATTGGTGGGGCCTCCTTATACGTCGGTAAAGTTGTGCAGCATTCGCAT
TCCGCCGCCGGTCTGTGGCTTGCCTCCTCATACGGGGAAAATCGCATCCC
CCTTTCCTTGTGTTCTTGTGTGCTTGCCAGTATCCAGGGTTAGTACTTCC
GGCGAGATATTTCAGACTTGTTCACACAACACTGATTCTGTACACTGCGT
AGCAACAAACTGCTGCTGCCGCTTTCGTCGTGAGTGGGTGTAGACACCAG
AGATTATACATATTTCAGTGAGGGACAGAGAGGACGCTGGAAATACTCTC
AGTTCTCGTGATTGCCGGACCAATCATTGCACACCGGATCGATCATTGGT
ACTTGTTGCCTAGCAGCCAGCAGTGAGGTCGATTTGTAACGAAGAGAACA
CGAGTAGTGCAAAAGGCTTCATACCGATAGTGAGAAAGGGATTTTACCGA
GTATTACTTCTCTCCGTGGCTGTTTTCATTTATTGGCGGATCTTTCAACA
ATTTTGTACCTGACAGTCCTGCCACAATGTAGCAATGTATTTCGTGGATA
CAAGTTAGTGCTTCCACGCGTCGAAGAAAACTGTGGATTGGAACGGTAGT
AAATATTGATCTCTTGATTGCCCATGTACAAGCCACACGCGCTCCAGAAC
CGCTGGAATTTTCGTGCTTTCAGAATGCTGCCACTTTTTCTCATATCTTC
TGAAGATTTTTCTCATACCGTTCGCCCCGGTGGTCGAGTTGGTATCCTCG
TAACCTTCTAGCACCCAGGTCACGGGTTCGAATCTCGGCGAGAGTGGCTT
TCCTCACTTTCGTACCTGGGAGAAGAATGCGGGGAAAAACTGGAAAGCTT
CGTGAAAACACAAAATTCGACGTAGCGGTCGTCGAGGGCAAGGGACGGCT
GAACCCTACTCATGATAAAAATGAAGGCAAGAACCGTAGGAGGAAGGTGG
GGCACAGAAAGGAAAAGAAAAAGAAGAAAGTCCCGGTGTTTACCCCCTCC
TGTGTGACCACGTTTGGTTCTGGCTGGACACAAAAATACACTGAACAAGT
AGTCCTAAAAATGCGCTGCAAAGTGTAGTAGTACACGTCTCGCCTTGATC
GGAGGGACTGTCGCCAGTAAAGTGACGACAATACACAACAAAACACATAG
ATAGACTAGATAGACTGTACTCCGGAGTGCTCAGCATGATGATCGGCTTC
TGCAAGGTTGCTGCACCACAACACCGGTTCACCTGTCGGCGTTCGTTCAA
GGGCCGAAGACTGAGTGCTAAGTTGCAAGCGGTTGACTACGATCGAAAGG
GGAGTGGAAGGTGTTAGATGTACGTGCACCGGGTGCACCAGCGAAAGCGG
GTGACAGACACTCTTTTTGTCTTGGCAGTATACTCAGACCTCCTTCTTAT
AATATCTTCACGGCTTTTCCCGCTACCTGCTGTGTGTGACTTTAATCTTT
CCGTCCGTGGACTCTCAGTATTTTTTTTGGTGCTGAGATTCTTAAGATCT
AATGTTTGCTCCCTGCGAGTCTGCCATCAATCGTAACCGTAACCTCACCC
GTTCTGTTACCCTCCGTCTAGTACATAGTAGTCCACACATGCCTTAAGTA
AATATTTGGACGATGTGTGAAATATTCTGGGAACCGTCTGGAGCACATGT
TTTTTTGCCTGGCCATGACGCACTGGTTGGTGTGTACAAGTGCACGGGAT
CGGTTCAAGTTCCACCGCTCGCTGTGCTTCGGGCGACTAATATATATGAG
CCGCGCAATACGAGGCAGATTCCATGTACTCTGGACATTGAGGAGAGAGT
TGTGGACAAGTTAACTGACGCTGTCTACCGGTTATGCGTGTAACCGTATC
TTTGCTCATGGCTTCATCAACCACTGGGGCCAAACTGCATCTACCGCACG
TAGCTGCCGTAACGTCATAGCATAGTCTATCCCAGTAAGATTTTTTCCCA
TCCAATCGATGGCTTCACCTTGTCATACTGTTGCTTCGGACTGGCTATTA
ATAGTCAACGAAAAGGGCGTGAAAAGTTTGGTAGATATGTCGTTGTGCGA
TGGAAGTGCAGCAGCAGTGTAAGCAATGCTGCTGCTGGACTTGATTACCT
ACCGACACATGTGGACTGTGAACAAACATTTCTGTGCAAAAGATAGATAG
CGCCCGTCGGAGAAGAAATTGACTGATGACCTCGCCGGGCAGACAAGGCG
AGGCGAGGGCCCTCACGCTGATCCGTGCGCTCTTTCAAATTTGCCGACAC
TTGAAATAGACTATTGGCTCGTTGCAAAAGTGTGCCTGAGTTCGAACCCA
CAACTGCAAGCTCGTGGGCTGTGTACGGAGTATAGTTCATGTGCTCCCCT
TTCCGTCTACTGTCTGTTTGCACAACGGGCAACAGGGGGACACATGCGAA
ACACCACGTCACGTAGTGGCGCGATGGAATTTTCGACATTTGCTTTTGTC
TTTCATTTGCGAGACGACACGGGCGGCAGGATCTAGAGGAGATTTCTGCT
GCATCCGCTGCCAAGCGCGCACCGAACAGCACCCAAAGAGCTGTTCCTAG
CTGCCTCATTTCGATGAGGCGGCATGATTACAGAGACTTCGTCTAGGCTT
GTAACAGATACGTGTGCATCATACATCAAATACTTCATCAATCACCCGGC
TGCCAATCGCCCAGCGGTTGTTCTACTGGGATAAACGATGATAGCGTAGG
TTGGGCAAGGCGGCACACCCGCTTTTCACGCCCTTTTTGTGTTCTGTTTT
TTTTAAGCAGGAAAAAGCATGGTTCTTCCGGAATCTTTCAAATTGTTCTT
AAACAAATCTATTCTAGGCGATTGCATTTAAATCAGGCCTTTAATCCATC
GGCCGTTTTGCTTGTATGACGGAGAATAAGAAGGTGGAATTACTTGAAAT
TAGTGTAAAAATAAAGTTTGTGTATCTAAATCGAAAATAAAACGGCCGAT
GGAGGAAAGGCCTAAATTTAAATCGAGGCTCCCTTTTTCTTGCCTCTTCC
ATTGACATTATTTTCCTGACTGTGAACATGTCTTCAATGGACTTGTTTTG
CACACTCTTTGCCCACTAATGTGTTTGCTTGAAATGATGGACATCGAAAC
GGGCTCCTGGCAATAAACAGTGTGCATGGACTATTGTAGAGATTGTAAAC
CCTTGACTCAACGATTCATGTGCTTGTGAAATACGAACAGACAAAAGCTG
ATGATGGCTTCATCGTGAAGTTGGAAACCTTTACTCCGTATGTGTTTTGG
GCGAGCTTTCTCGTGAGCGGACATCAATCAGTTGAACAAAATGTTTTATC
AAAGCGACAAACTCGACCATCTGCCATCCAAACTTCGTTGCAAATGGCAA
ATGGTGACATCAACTTGCAAAAAACGGGAAATTGTCTCTTGGTGTTTTCG
CGAGCGACGTGTCGCGTTTTGTGAACGAAGTTTGGCCTACGCGAATACTC
TTTCTGCTCTCGAGTCCGGTGCTCCCCACAACCTTGGTCGACCGTCCGCG
GTGTTCATGCCGACCCTGAAACGAGCACGAAAGAAGTTACCTGCGCCCCC
CTTCGAATTATGTTGCATATTTTTGACACAATTGCATGTTGCATACTTTT
GACAAATTTGCATCTGATGAAAAGTGTGTATATGGATGCATCACTTGCGG
GCGGACGTGTTTTCTAGCGGCACTAACTGAAAGAGAGAATTTCCGTCACT
TGTTCCGATTCGCTGCACGTCCGGCGGATCAACCAGACAGTGCAGAAGAG
GATCGCCAAAGAAAGAGCGAAACGAGAGCAAGAGAAGAAACTGGCCAAGT
TGCTTGGGGTCAAGGCGGGCAGAGGAAGAGGGAGAGGGAGAGGGAGATAG
CTTCTCATTTGATCACTCGACTTCGGGCGTTCTCTTAGCTTTGATTTGCA
ATTTCAGTCCGCTGATGACCCTCTATTTTGGAGGGAGGTGTTGTCAATGC
TCATACGTTCATAATTTCGAACGAGGATGCGCTGAATCCGCACGGAAGGC
TACGTGATGTATCTTGTACTGTAATGTCACAGGTCACGAGCACGACGAGC
CTTCTGAAGCC
back to topCoding sequence (CDS) from alignment at P-fluviatile_contig15:2034496..2048556-
>mRNA_P-fluviatile_contig15.2524.1 ID=mRNA_P-fluviatile_contig15.2524.1|Name=mRNA_P-fluviatile_contig15.2524.1|organism=Porterinema fluviatile SAG_2381|type=CDS|length=2340bp|location=Sequence derived from alignment at P-fluviatile_contig15:2034496..2048556- (Porterinema fluviatile SAG_2381)
ATGCCGAGACCCCGCGGTTCTAGTGAAGAAAGTGGTAATAGCAGCAGCAG
GACGAGCGGGTCGGGCAGCTCATCTTTGACCTCCCGTAGCGAGGGTGACG
GACGAGCAACCGAAGATAGCGGATCTTTATTGTCGAGCGGCAACAGCGCT
AGCATCAGCCCCCGAGAGCTTGAAGGATATGAATCGAGAAAGAGCAGCGC
TTCTACGTCCGCTTCAAGATATACCAGCCGGACGAGCGGATCAGGAAGCT
CATCATCGACCTCCGGTAGTGATGATGGTGGAGGCGACAACTTGAAAAAT
CGGATGAAAGACCTTTTCATTAAACCAACACCACCGGTGGCTGAGGTAGA
ACAGATTGGGGGGCTTCAGGGCAGATGCCGAGACCCCGCGGTTCTAGTGA
AGAAAGTGGTAATAGCAGCAGCAGGACGAGCGGGTCGGGCAGCTCATCTT
TGACCTCCCGTAGCGAGGGTGACGGACGAGCAACCGAAGATAGCGGATCT
TTATTGTCGAGCGGCAACAGCGCTAGCATCAGCCCCCGAGAGCTTGAAGG
ATATGAATCGAGAAAGAGCAGCGCTTCTACGTCCGCTTCAAGATATACCA
GCCGGACGAGCGGATCAGGAAGCTCATCATCGACCTCCGGTAGTGATGAT
GGTGGAGGCGACAACTTGAAAAATCGGATGAAAGACCTTTTCATTAAACC
AACACCACCGGTGGCTGAGGTAGAACAGATTGGGGGGCTTCAGGGCAGGA
TAGATGCGAAGCTCTTGGAGGAGGTACAGGAGTACGACGCGGTGCCATCC
GAGGCGGCCTCCTACGGGAAGATTGCCTTTTGGGACGAACGTTACGCCGC
CGACGAAGAGGATAGATGCGAAGCTCTTGGAGGAGGTACAGGAGTACGAC
GCGGTGCCATCCGAGGCGGCCTCCTACGGGAAGATTGCCTTTTGGGACGA
ACGTTACGCCGCCGACGAAGAGGTGGTTGACTGGTACCACTCGTGGGCCA
ACCTGGCCCCAACCCTGACTCAGTATATGGACGAACAAGACGACGTGTTG
GTGTGCGGTTGCGGAAATTCTGAGATGAGCGTCGACATGTTTGACGATGG
TGGTTGACTGGTACCACTCGTGGGCCAACCTGGCCCCAACCCTGACTCAG
TATATGGACGAACAAGACGACGTGTTGGTGTGCGGTTGCGGAAATTCTGA
GATGAGCGTCGACATGTTTGACGATGGGTTCGAGAACATCGTGAACGTGG
ACATATCCAGGGTGGCCATTCACCAGATGGCCGAAACCTACAAAGCTTAC
CCCATGAAATGGTTCGAGAACATCGTGAACGTGGACATATCCAGGGTGGC
CATTCACCAGATGGCCGAAACCTACAAAGCTTACCCCATGAAATGGAAAT
CGATTGATCTCACCCGCGAGGAGTTCCCTGAAGCGGAGTTTGACGTCGCC
TTGGATAAAGCGTGCCTCGATTCCATCGCGTGCAGCCCTCACGGGGCATC
AAAGGTTCGAGACTATCTTCAACAGATGGACAGGGAAATCGATTGATCTC
ACCCGCGAGGAGTTCCCTGAAGCGGAGTTTGACGTCGCCTTGGATAAAGC
GTGCCTCGATTCCATCGCGTGCAGCCCTCACGGGGCATCAAAGGTTCGAG
ACTATCTTCAACAGATGGACAGATTGCTCCAGCCAGAAGGAGCTTTCATT
TGTGTGTCCTTCGCTCCCCCAGAAGAGCGCCTGGAGCTCTTGGAATACTG
GGATATAGACGTACCAGCAAAGTGCCTGGCTTGGGACGTTCACGTTGATG
CGATCGATTGCTCCAGCCAGAAGGAGCTTTCATTTGTGTGTCCTTCGCTC
CCCCAGAAGAGCGCCTGGAGCTCTTGGAATACTGGGATATAGACGTACCA
GCAAAGTGCCTGGCTTGGGACGTTCACGTTGATGCGATCGCGAAGCCAGC
ATTGAAGCTGCGGCGGGGGGCTGAAAGCGACGGTGACGTCTACTACATAT
ACGTGTGTATCAAGGATCCCAGCAAGCGAAGCCAGCATTGAAGCTGCGGC
GGGGGGCTGAAAGCGACGGTGACGTCTACTACATATACGTGTGTATCAAG
GATCCCAGCAAGACAGTGCAGAAGAGGATCGCCAAAGAAAGAGCGAAACG
AGAGCAAGAGAAGAAACTGGCCAAGTTGCTTGGGGTCAAGGCGGGCAGAG
GAAGAGGGAGAGGGAGAGGGAGATAGACAGTGCAGAAGAGGATCGCCAAA
GAAAGAGCGAAACGAGAGCAAGAGAAGAAACTGGCCAAGTTGCTTGGGGT
CAAGGCGGGCAGAGGAAGAGGGAGAGGGAGAGGGAGATAG
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