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Homology
BLAST of mRNA_P-fluviatile_contig11.1275.1 vs. uniprot
Match: D8LU49_ECTSI (Uncharacterized protein n=1 Tax=Ectocarpus siliculosus TaxID=2880 RepID=D8LU49_ECTSI) HSP 1 Score: 270 bits (689), Expect = 2.270e-79 Identity = 215/404 (53.22%), Postives = 243/404 (60.15%), Query Frame = 1
Query: 730 MSLKVGHRHVDQTGLVYLPYLHEWTARTHNLVELIANMSSVFGAEPPLFATPPGGVRPSSNRSSPQPQHQPSHARPNSNPYLASYPLGAAGTASSPYGGYQNPRPVSAPAPALPPRP---DPEIQRREKEAAVTAKLRSELQVMYSKLGADIDSGLETQAQLNEHQEELDEAVEXXXXXXXXXERLIQVAKEREMELDTYLEERQKEGEPSVDDLIEPKDALSDQMLRLTAENAALEDALYYLDVGLTDSVITVDVFLKEIRRLARKQFVARATSKKVERAQQEVNAQRARFNAEQQENAAGXXXXXXXXXXXXXXXXXXXXXXXXXVGSAGYMAGPPPGYSXXXXXXXXXXXXXXXXXXXXXXXXXXXXTAGPWSGG--GGAAGMGYGYPSFGGAKTSNTQRR 1926
M LKVGHRHVDQ+GLVYLPYLHEW ARTHNLVELIANMS VFGAEPPLFA G Q P+ P P + P P PE R++ E +TAKL+SELQ MY+ L D+DS ETQ QL E +EE++ VE XXXX V+ TYL++R+KEGEP+VD+LIEPKD+LSDQMLRL AENAALEDALYYLD+G+TDSVITVDVFL+EIRRLARKQFVARAT KKVERAQ +NAQRA FNA+Q XXXXXXXXXXXXXXXXXXXXXXXXX Y+ AG + G G A GMGYGYPS+GGA+T TQRR
Sbjct: 1 MKLKVGHRHVDQSGLVYLPYLHEWAARTHNLVELIANMSGVFGAEPPLFA-----------------------------------------------GSSQQNPPIPDPTPPMIPPPVIVSPEQVRKKTEKDLTAKLQSELQAMYAVLRTDMDSAFETQGQLEESKEEVERDVEELSRRXXXXXXXXXVSXXXXXXXXTYLQDRKKEGEPAVDELIEPKDSLSDQMLRLVAENAALEDALYYLDLGVTDSVITVDVFLREIRRLARKQFVARATMKKVERAQHALNAQRANFNAQQXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXVYTPPTGNYP---------------------AAGTYGGAAAGTAGGMGYGYPSYGGAQTPYTQRR 336
BLAST of mRNA_P-fluviatile_contig11.1275.1 vs. uniprot
Match: A0A835ZFB1_9STRA (UEV domain-containing protein n=1 Tax=Tribonema minus TaxID=303371 RepID=A0A835ZFB1_9STRA) HSP 1 Score: 226 bits (575), Expect = 8.030e-62 Identity = 147/372 (39.52%), Postives = 200/372 (53.76%), Query Frame = 1
Query: 460 LDRLIAQFPRYQDPNRIRTDVLNVWRHRQSLSPKRGKLTLNTGVECDLLMLEGTFPIVYRGVEYYTPIEIYITENYPTTPPTCYIRPTSGMSLKVGHRHVDQTGLVYLPYLHEWTARTHNLVELIANMSSVFGAEPPLFA--TPPGGVRPSSNRSSPQPQHQPSHARPNSNPYLASYPLGAAGTASSPYGGYQNPRPVSAPAPALPPRPDP-EIQRREKEAAVTAKLRSELQVMYSKLGADIDSGLETQAQLNEHQEELDEAVEXXXXXXXXXERLIQVAKEREMELDTYLEERQK----EGEPSVDDLIEPKDALSDQMLRLTAENAALEDALYYLDVGLTDSVITVDVFLKEIRRLARKQFVARATSKKV 1554
+D L+AQF Y+D RIR D+ NV + ++LSP G L LNTG E L L GT I +RG Y P+EI+IT++YP +PP Y+RPT M ++ GHRHVD G+VYLPYLHEW AR+H+LVEL A MS VFG +PP++A + + DP E RR+ VT K+ LQ +Y L ID+ + Q L E+Q L+ ++ LI +A+E+++ELD+Y ER+ +P +DL+E +D LS Q+L L AENAA+EDALYYLD G+TD ++ D FL+E+RRL R+QF ARA + KV
Sbjct: 6 VDALLAQFTCYRDVARIRWDISNVLTNVKTLSPAAGSLVLNTGEELHLATLAGTISISFRGASYNIPVEIFITKHYPESPPMAYVRPTKDMDIQKGHRHVDSAGMVYLPYLHEWEARSHDLVELCAAMSGVFGQDPPVYARSSXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXAAKEDPVEAARRD----VTVKMTGTLQALYEDLRGKIDAEFDAQTALRENQVRLERDLQQAKEQRRHLSGLIPLAQEKKLELDSYAVERKAAAAAHAQPDAEDLVEARDPLSRQLLSLVAENAAIEDALYYLDQGITDGRLSTDEFLREVRRLTRRQFAARALANKV 373
BLAST of mRNA_P-fluviatile_contig11.1275.1 vs. uniprot
Match: A0A7S2FND4_9STRA (Hypothetical protein n=1 Tax=Florenciella parvula TaxID=236787 RepID=A0A7S2FND4_9STRA) HSP 1 Score: 221 bits (563), Expect = 9.410e-61 Identity = 145/372 (38.98%), Postives = 207/372 (55.65%), Query Frame = 1
Query: 487 RYQDPNRIRTDVLNVWRHRQSLSPKRGKLTLNTGVECDLLMLEGTFPIVYRGVEYYTPIEIYITENYPTTPPTCYIRPTSGMSLKVGHRHVDQTGLVYLPYLHEWTARTHNLVELIANMSSVFGAEPPLFATPPGGVRPSSNRSSPQPQHQP-SHARPNSNPYLASYPLGAAGTASSPYG-------------GYQNPRPVSAPAPALPPRPDPEIQRREKEAAVTAKLRSELQVMYSKLGADIDSGLETQAQLNEHQEELDEAVEXXXXXXXXXERLIQVAKEREMELDTYLEERQKEGEPSVD--DLIEPKDALSDQMLRLTAENAALEDALYYLDVGLTDSVITVDVFLKEIRRLARKQFVARATSKKV 1554
RY+ P R+R DV+ + +SL PK G L N G E LL+L GT PI Y Y PIE+Y+ + YP P CY+RPTS M++K GH +VD GLVYLPYLHEW A TH+LV L A+M SVFG EPP++A PPG + + + Q Q + A + A+ P A YG GY S A P P E ++E +T KLR +L+ Y+ + ++D +QA+L +++ ++E + I +AK+ +LDT+L RQ+E VD DL++P+DA S +ML L AE A+EDAL+ LD GL + + +D+FL+E+R+L+R+QF+ A KK+
Sbjct: 15 RYEAPARVRQDVVQLVGQIRSLLPKTGHLISNDGSESTLLVLTGTIPITYGNATYNIPIELYLPQAYPRAAPICYVRPTSDMTVKPGHHNVDGEGLVYLPYLHEWQAGTHSLVTLCASMMSVFGREPPVYAKPPGHDQQQAQLRAQQAAIQAQAQAHQAAQAQAATPPSYTATVTPXXYGNXXXXXXXXXXXXGYSTVAHDSGAAERASP-PANETPKQEAVRRLTTKLRDDLKGFYANICKEVDVEYASQAKLRAGHDDVTASLERMRKHKGVLKEQIHLAKQSTADLDTWLTRRQEEEARPVDPDDLVQPRDACSQKMLELVAEAGAIEDALFALDRGLNNGTVELDLFLREVRKLSRQQFLILAHEKKI 385
BLAST of mRNA_P-fluviatile_contig11.1275.1 vs. uniprot
Match: A0A4D9CWE8_9STRA (Uncharacterized protein n=1 Tax=Nannochloropsis salina CCMP1776 TaxID=1027361 RepID=A0A4D9CWE8_9STRA) HSP 1 Score: 221 bits (564), Expect = 1.600e-60 Identity = 155/395 (39.24%), Postives = 216/395 (54.68%), Query Frame = 1
Query: 454 MNLDRLIAQFPRYQDPNRIRTDVLNVWRHRQSLSPKRGKLTLNTGVECDLLMLEGTFPIVYRGVEYYTPIEIYITENYPTTPPTCYIRPTSGMSLKVGHRHVDQTGLVYLPYLHEWTARTHNLVELIANMSSVFGAEPPLFATPPGGVR--------PSS---------------NRSSPQPQHQPSHARPNSNPYLASYPLGAAGTASSPYGGYQNPRPVSAPAPALPPRPDPEIQRREKEAAVTAKLRSELQVMYSKLGADIDSGLETQAQLNEHQEELDEAVEXXXXXXXXXERLIQVAKEREMELDTYLEERQKEGEPSVDDLIEPKDALSDQMLRLTAENAALEDALYYLDVGLTDSVITVDVFLKEIRRLARKQFVARATSKKVERAQQ 1569
++LD L+ Q Y++ R+R DV+ ++L PK K N G E +LL+L GT I Y+ +Y P+E+YI+E YP PP CY+RPT M +KVGHRHVD+ GL+YLPYLHEW AR+HN+ EL A MSSVFG +PP++A GG P+S +S QPQ P ARP+ P S G G A GG ++ A +PA + E +RRE V K L+ +Y ++ +++ E Q L H++E+ ++ E I+ E + LD +++E++ VDD+IE D S QML L A+NAA+EDALY+LD LT I VFLK++R LAR+QF+ A K+ RAQQ
Sbjct: 5 VDLDSLMRQVRCYRNVARVRADVIACIAQVRTLIPKVEKFIHNNGTESELLVLSGTVAINYQSRQYNIPVEVYISEPYPEAPPRCYVRPTKEMDIKVGHRHVDRDGLIYLPYLHEWNARSHNVTELCAAMSSVFGLDPPVYAVRRGGXXXXXSVSPAPASFSTSLYPGQMGSLGRQPTSQQPQ-PPLQARPSPPPAYESV-TGPGGGAYGNGGGMES----GASSPANQ-QAQAEAKRREAAQQVLDKTHRALKGLYGRVSRELEEEEEKQVALQTHRKEVLASIGGLKKKKEEAEERIRKVMEMDGRLDAWIKEQEGRPPVGVDDMIEAADPPSRQMLELVAQNAAIEDALYHLDKALTRGNIDHLVFLKKVRELAREQFMCVAHVNKIYRAQQ 392
BLAST of mRNA_P-fluviatile_contig11.1275.1 vs. uniprot
Match: A0A1V9ZMC8_9STRA (Uncharacterized protein n=1 Tax=Achlya hypogyna TaxID=1202772 RepID=A0A1V9ZMC8_9STRA) HSP 1 Score: 209 bits (533), Expect = 9.040e-57 Identity = 136/379 (35.88%), Postives = 208/379 (54.88%), Query Frame = 1
Query: 451 LMNLDRLIAQFPRYQDPNRIRTDVLNVWRHRQSLSPKRGKLTLNTGVECDLLMLEGTFPIVYRGVEYYTPIEIYITENYPTTPPTCYIRPTSGMSLKVGHRHVDQTGLVYLPYLHEWTARTHNLVELIANMSSVFGAEPPLFATPPGGVRPSSNRSSPQPQHQPS--HARPNSNPYLASYPLGAAGTASSPYGGYQNPRPVSAPAPALP---------PRPDPEIQRREKEAAVTAKLRSELQVMYSKLGADIDSGLETQAQLNEHQEELDEAVEXXXXXXXXXERLIQVAKEREMELDTYLEERQKEGEPSVDDLIEPKDALSDQMLRLTAENAALEDALYYLDVGLTDSVITVDVFLKEIRRLARKQFVARATSKKV 1554
++ L+R++ Y D R+R DV + R SLSP+ G T N G +L L GT PI Y G +Y P+EI++ E YP PTCY+RPT+ M ++ GH HVDQ GL+ LPY W + H+LVELI SVFG +PP++ +P HQP+ + NPY + T+++ YG YQ P P+ P PDP I+ + A T KL+ E+Q +Y ++ +ID+ ETQ ++++ ++EL + + E+ + ++ ++++ +L E++ + E VDD++ P DALS Q L A+ A+EDALY+LD L + I + VFLKE+R++ARKQF+ A +KV
Sbjct: 6 VVTLERIMGSLRSYTDATRVRQDVETLLRQIPSLSPQSGVYTHNNGTTSTMLSLSGTIPIYYNGNQYNIPVEIWMPEAYPFAAPTCYVRPTADMMIRPGHPHVDQNGLILLPYSTHWDS-DHSLVELIGYQCSVFGTQPPVYK---------------RPAHQPAPTYTXXXXNPYESHM---QPSTSAAQYG-YQQPPQSQYNPPSYTXXXXXAYAQPTPDPSIKLK---ADATEKLQHEMQKLYKRIREEIDAQFETQREVSQGRDELIQGEQSLLQLKHELEQTLVHIQDTDVQVTKWLAEQENQQEMDVDDILVPADALSQQQLDAFADQQAIEDALYFLDRALANGEIELPVFLKEVRKMARKQFMGVALMQKV 361
BLAST of mRNA_P-fluviatile_contig11.1275.1 vs. uniprot
Match: A0A7S4D482_HETAK (Hypothetical protein (Fragment) n=1 Tax=Heterosigma akashiwo TaxID=2829 RepID=A0A7S4D482_HETAK) HSP 1 Score: 208 bits (530), Expect = 1.610e-56 Identity = 139/388 (35.82%), Postives = 210/388 (54.12%), Query Frame = 1
Query: 451 LMNLDRLIAQFPRYQDPNRIRTDVLNVWRHRQSLSPKRGKLTLNTGVECDLLMLEGTFPIVYRGVEYYTPIEIYITENYPTTPPTCYIRPTSGMSLKVGHRHVDQTGLVYLPYLHEWTARTHNLVELIANMSSVFGAEPPLFATPPGGVRPSSNRSSPQPQ-----------HQPSHARPNSNPYLASYPLGAAGTASSPYGGYQNPRPVSAPAPALPPRPDPEIQRREKEAAVTAKLRSELQVMYSKLGADIDSGLETQAQLNEHQEELDEAVEXXXXXXXXXERLIQVAKEREMELDTYLEERQKEGEPSVDD------LIEPKDALSDQMLRLTAENAALEDALYYLDVGLTDSVITVDV--FLKEIRRLARKQFVARATSKKVE 1557
++N+D+L+A+F Y + R++ DV+ + R +++ PK+G L N G E LL+L GT PI +RG Y P+EI+ITE +P +PP CY+RPT+ M LK+ HRHVD GLVYLPYLH W ARTHNL +L+ ++S+VFG +PPL++ P S P P + S + S P SY + G A+ P ++E +T KL+S+L YS L DID+ LE QA+L + Q +++ + + + I A ER LD +L + G + D L+ P++ S Q+L AE A++D LY+L+ GL + +DV +L E R+LAR+QF+A+A +++E
Sbjct: 4 VVNVDQLLAEFHCYSNVGRVKQDVMALSRSVRTMIPKKGSLIRNDGTESTLLVLGGTVPISFRGSTYNIPVEIFITEPFPNSPPMCYVRPTNNMMLKIPHRHVDSEGLVYLPYLHTWNARTHNLTDLVGHVSAVFGQDPPLYSKP----------SQPNPXXXXXXXXXXXXQRSSESNTMSQP--PSYQSVSRGHAADP--------------------------KQEALELLTRKLQSKLHGFYSGLRDDIDAELERQAKLADQQADMEASGKMLDMQKANLQEQIARATERVAALDAWLAAQAAAGAAAADGEEDPQALVAPRNRWSQQLLEKEAEAHAIDDLLYHLEAGLRAARCPLDVRGYLAETRKLARRQFMAKALIRRIE 353
BLAST of mRNA_P-fluviatile_contig11.1275.1 vs. uniprot
Match: A0A067BZX7_SAPPC (Uncharacterized protein n=2 Tax=Saprolegnia TaxID=4769 RepID=A0A067BZX7_SAPPC) HSP 1 Score: 197 bits (502), Expect = 1.890e-52 Identity = 134/385 (34.81%), Postives = 202/385 (52.47%), Query Frame = 1
Query: 460 LDRLIAQFPRYQDPNRIRTDVLNVWRHRQSLSPKRGKLTLNTGVECDLLMLEGTFPIVYRGVEYYTPIEIYITENYPTTPPTCYIRPTSGMSLKVGHRHVDQTGLVYLPYLHEWTARTHNLVELIANMSSVFGAEPPLFATPPG------------------GVRPSSNRSSPQPQHQPS-HARPN-SNPYLASYPLGAAGTASSPYGGYQNPRPVSAPAPALPPRPDPEIQRREKEAAVTAKLRSELQVMYSKLGADIDSGLETQAQLNEHQEELDEAVEXXXXXXXXXERLIQVAKEREMELDTYLEERQKEGEPSVDDLIEPKDALSDQMLRLTAENAALEDALYYLDVGLTDSVITVDVFLKEIRRLARKQFVARATSKKV 1554
L+R++ Y D R+R DV + R SL+P+ G T N G +L L GT PI Y G +Y P+EI++ E YP PTCY+RPT+ M ++ GH HVDQ GL+ LPY W + H+LVELI SVFG +PP++ P + S+ P Q QP+ +A P+ + P A+Y S+P PA PDP I+ + A VT KL+ E+Q +Y ++ +ID+ ETQ + Q+ L + + ++ + ++ ++ + +L E++ + E VD+++ P DALS Q L A+ A+EDALY++D L + I + VFLKE+R+LARKQF+ A +KV
Sbjct: 9 LERIMGSLRSYTDATRVRQDVETLLRQIPSLAPQSGVYTHNNGTTSTMLSLSGTIPIYYNGSQYNIPVEIWMPEAYPFAAPTCYVRPTADMMIRPGHPHVDQNGLILLPYSTHWDS-DHSLVELIGYQCSVFGTQPPVYKRPANQXXXXXXXXXXXXXXXEQSMSSSAAAQYPYQQQQPAQYASPSYTQPSYAAY---------------------SSPMPA----PDPAIKLK---AEVTEKLQHEMQKLYKRIREEIDTQFETQRDVAHGQDVLAQGEQSLQQLKHELDQTLVHIQDTDVHVTKWLSEQENQQEMDVDEVLVPADALSQQQLDAFADQQAIEDALYFMDRALANGEIELSVFLKEVRKLARKQFMCVALMQKV 364
BLAST of mRNA_P-fluviatile_contig11.1275.1 vs. uniprot
Match: A0A024UD70_9STRA (Uncharacterized protein n=3 Tax=Aphanomyces invadans TaxID=157072 RepID=A0A024UD70_9STRA) HSP 1 Score: 196 bits (497), Expect = 1.050e-51 Identity = 132/391 (33.76%), Postives = 204/391 (52.17%), Query Frame = 1
Query: 448 TLMNLDRLIAQFPRYQDPNRIRTDVLNVWRHRQSLSPKRGKLTLNTGVECDLLMLEGTFPIVYRGVEYYTPIEIYITENYPTTPPTCYIRPTSGMSLKVGHRHVDQTGLVYLPYLHEWTARTHNLVELIANMSSVFGAEPPLFATPPGGVRPSSNRSSPQPQHQ-PSHAR---------------------PNSNPYLASYPLGAAGTASSPYGGYQNPRPVSAPAPALPPRPDPEIQRREKEAAVTAKLRSELQVMYSKLGADIDSGLETQAQLNEHQEELDEAVEXXXXXXXXXERLIQVAKEREMELDTYLEERQKEGEPSVDDLIEPKDALSDQMLRLTAENAALEDALYYLDVGLTDSVITVDVFLKEIRRLARKQFVARATSKKV 1554
+L LDR++ Y DP+R+R DV + R S+SP+ G T N G ++ L GT PI Y G +Y P+EI+I E YP PTC++RPT+ M ++ GH HVDQ GL+ +PY W H+LVEL+ S+FGA+PP+F RP++ + +P P +Q PS + P S P +YP + +S Y YQ PP DP ++ + A T K++ ELQ MY ++ +ID +TQ +++ Q+ L + + + + + ++ ++ + + E +VD+++ D LS Q L AE A+EDALY++D L + I + VFLKE+R+LARKQF++ A +KV
Sbjct: 5 SLATLDRIMGSLRSYTDPSRVRYDVETLLRQIPSISPQHGVYTHNNGSTSTMMSLTGTIPIYYGGNQYNIPVEIWIPEAYPFAAPTCFVRPTTDMMIRPGHPHVDQNGLIVVPYSTNWDC-DHSLVELVGYHCSIFGAQPPVFR------RPANQQLAPAPTYQQPSMQQGYTXXXXXXXGYAASSQQQQAPYSQPPAQTYPPAQS---ASQYSAYQ------------PPAIDPAVKLK---AEATEKIQHELQKMYRRIRDEIDGEFDTQREISHGQQRLVQGKQSLEQLKANLTNAVAQVEAMDRQVTEWIAANENQDEVNVDEVLVAADPLSQQQLDAYAERNAIEDALYFMDRALANGEIELQVFLKEVRKLARKQFMSVALMQKV 370
BLAST of mRNA_P-fluviatile_contig11.1275.1 vs. uniprot
Match: A0A6G0WKG4_9STRA (Uncharacterized protein n=1 Tax=Aphanomyces euteiches TaxID=100861 RepID=A0A6G0WKG4_9STRA) HSP 1 Score: 194 bits (493), Expect = 2.380e-51 Identity = 129/360 (35.83%), Postives = 186/360 (51.67%), Query Frame = 1
Query: 490 YQDPNRIRTDVLNVWRHRQSLSPKRGKLTLNTGVECDLLMLEGTFPIVYRGVEYYTPIEIYITENYPTTPPTCYIRPTSGMSLKVGHRHVDQTGLVYLPYLHEWTARTHNLVELIANMSSVFGAEPPLFATPPGGVRPSSNRSSPQPQHQPSHARPNSNPYLASYPLGAAGTASSPYGGYQNPRPVSAPAPALPPRPDPEIQRREKEAAVTAKLRSELQVMYSKLGADIDSGLETQAQLNEHQEELDEAVEXXXXXXXXXERLIQVAKEREMELDTYLEERQKEGEPSVDDLIEPKDALSDQMLRLTAENAALEDALYYLDVGLTDSVITVDVFLKEIRRLARKQFVARATSKKVERAQQ 1569
Y DP R+R DV + R SL P+ G T N G +L L GT PI Y G +Y P+EI++ E YP PTC++RPT+ M ++ GH HVDQ GL+ LPY W + H+LVELI S+FGA PP+F P P+ + P P Q S Y +S T S Y P P P + +A T K++ ELQ +Y ++ +ID ETQ +++ Q+ + + + K + ++ ++ + + E +VD+++ P DALS Q L AE A+EDALY++D L + I + VFLKE+R+LARKQF+ A +KV+ AQQ
Sbjct: 7 YTDPTRVRQDVETLLRQIPSLGPQNGVFTHNNGTTSTMLSLSGTIPIYYGGNQYNIPVEIWMPEAYPFAAPTCFVRPTADMMIRPGHPHVDQNGLIVLPYSTNWDS-DHSLVELIGYQCSIFGATPPVFRRPANQPAPAPVQYLPSPAQQYSQQPQYQGGYTSSQQAYGQTTPSYHQAAYTEPSNTYKP----PYTXXXXXXXXKLKAEATEKIQHELQKIYRRIRDEIDGQFETQREISHGQQRILQGKQSLEQLKAELIAAHAQVKATDEQVTEWIAAHENQDEINVDEVLVPADALSSQQLDAYAERNAIEDALYFMDRALANGEIELQVFLKEVRKLARKQFMCVALMQKVQDAQQ 361
BLAST of mRNA_P-fluviatile_contig11.1275.1 vs. uniprot
Match: A0A1V9Z0E3_9STRA (Protein-tyrosine-phosphatase (Fragment) n=1 Tax=Thraustotheca clavata TaxID=74557 RepID=A0A1V9Z0E3_9STRA) HSP 1 Score: 197 bits (502), Expect = 1.020e-48 Identity = 129/365 (35.34%), Postives = 193/365 (52.88%), Query Frame = 1
Query: 460 LDRLIAQFPRYQDPNRIRTDVLNVWRHRQSLSPKRGKLTLNTGVECDLLMLEGTFPIVYRGVEYYTPIEIYITENYPTTPPTCYIRPTSGMSLKVGHRHVDQTGLVYLPYLHEWTARTHNLVELIANMSSVFGAEPPLFATPPGGVRPSSNRSSPQPQHQPSHARPNSNPYLASYPLGAAGTASSPYGGYQNPRPVSAPAPALPPRPDPEIQRREKEAAVTAKLRSELQVMYSKLGADIDSGLETQAQLNEHQEELDEAVEXXXXXXXXXERLIQVAKEREMELDTYLEERQKEGEPSVDDLIEPKDALSDQMLRLTAENAALEDALYYLDVGLTDSVITVDVFLKEIRRLARKQFVARATSKKV 1554
L+R++ Y D R+R DV + R SL+P+ G T N G +L L GT PI Y G +Y P+EI++ E YP PTCY+RPT+ M +K GH HVDQ GL+ LPY W + H+L ELI SVFG +PP++ P +P++ +PQ P R + Y SS Y + SA PP DP I+ + A T K++ ELQ +Y ++ +ID+ ETQ + E L + E+ + ++ + ++ +L E++ + E VD+++ P D LS Q L A+ A+EDALY++D L + I + VFLKE+R++ARKQF+ A +K+
Sbjct: 10 LERIMGSLRSYTDATRVRQDVETLLRQIPSLAPQSGVYTHNNGTTSTMLSLTGTIPIYYNGNQYNIPVEIWMPEAYPFAAPTCYVRPTADMMIKSGHPHVDQNGLIMLPYSTHWDS-DHSLAELIGYQCSVFGTQPPVYKRP--AHQPATQTYTPQYNAHPYENRMQQSTTQYPYRQSQTSQYSSSSASYN--QTYSA---YTPPNVDPTIKLK---AEATEKIQHELQKLYKRIREEIDAQFETQRDIAHGHETLQHGQQSLTQLKGDLEQTLLNIQDTDSQVTKWLSEQENQQEMDVDEVLVPTDTLSQQQLEAYADQQAIEDALYFMDRALANGEIELAVFLKEVRKMARKQFMCVALMQKI 363
The following BLAST results are available for this feature:
Alignments
The following features are aligned
Analyses
This mRNA is derived from or has results from the following analyses
Properties
| Property Name | Value |
| Taxonomic scope | Eukaryota |
| Seed ortholog score | 273.5 |
| Seed ortholog evalue | 2e-70 |
| Seed eggNOG ortholog | 2880.D8LU49 |
| Preferred name | TSG101 |
| KEGG ko | ko:K08576,ko:K11974,ko:K12183 |
| KEGG Pathway | ko04144,ko04217,ko04621,map04144,map04217,map04621 |
| KEGG Module | M00409 |
| GOs | GO:0000813,GO:0001558,GO:0001932,GO:0001933,GO:0003674,GO:0003676,GO:0003677,GO:0003712,GO:0003713,GO:0003714,GO:0005488,GO:0005515,GO:0005575,GO:0005576,GO:0005615,GO:0005622,GO:0005623,GO:0005634,GO:0005730,GO:0005737,GO:0005768,GO:0005769,GO:0005770,GO:0005771,GO:0005829,GO:0005886,GO:0006355,GO:0006464,GO:0006469,GO:0006508,GO:0006511,GO:0006513,GO:0006807,GO:0006810,GO:0006858,GO:0006887,GO:0006914,GO:0006996,GO:0007032,GO:0007034,GO:0007041,GO:0007049,GO:0007050,GO:0007163,GO:0007175,GO:0007176,GO:0007275,GO:0007399,GO:0008150,GO:0008152,GO:0008285,GO:0008333,GO:0008544,GO:0009056,GO:0009057,GO:0009888,GO:0009889,GO:0009890,GO:0009891,GO:0009892,GO:0009893,GO:0009913,GO:0009966,GO:0009968,GO:0009987,GO:0010008,GO:0010256,GO:0010468,GO:0010469,GO:0010556,GO:0010557,GO:0010558,GO:0010563,GO:0010604,GO:0010605,GO:0010629,GO:0010646,GO:0010648,GO:0012505,GO:0016020,GO:0016032,GO:0016043,GO:0016050,GO:0016192,GO:0016197,GO:0016236,GO:0016322,GO:0016567,GO:0017157,GO:0019058,GO:0019068,GO:0019219,GO:0019220,GO:0019222,GO:0019538,GO:0019899,GO:0019941,GO:0021700,GO:0022008,GO:0022402,GO:0022411,GO:0022607,GO:0023051,GO:0023057,GO:0030011,GO:0030100,GO:0030154,GO:0030163,GO:0030182,GO:0030216,GO:0030374,GO:0030587,GO:0030855,GO:0031090,GO:0031323,GO:0031324,GO:0031325,GO:0031326,GO:0031327,GO:0031328,GO:0031399,GO:0031400,GO:0031410,GO:0031625,GO:0031974,GO:0031981,GO:0031982,GO:0032182,GO:0032268,GO:0032269,GO:0032446,GO:0032501,GO:0032502,GO:0032509,GO:0032510,GO:0032801,GO:0032879,GO:0032880,GO:0032940,GO:0032984,GO:0032991,GO:0033043,GO:0033673,GO:0035088,GO:0035090,GO:0036211,GO:0036257,GO:0036258,GO:0036452,GO:0039702,GO:0040008,GO:0040012,GO:0040017,GO:0042058,GO:0042059,GO:0042127,GO:0042325,GO:0042326,GO:0042551,GO:0042802,GO:0042803,GO:0043086,GO:0043112,GO:0043130,GO:0043162,GO:0043170,GO:0043226,GO:0043227,GO:0043228,GO:0043229,GO:0043230,GO:0043231,GO:0043232,GO:0043233,GO:0043405,GO:0043408,GO:0043412,GO:0043549,GO:0043588,GO:0043632,GO:0043900,GO:0043901,GO:0043902,GO:0043903,GO:0043933,GO:0044085,GO:0044087,GO:0044089,GO:0044092,GO:0044126,GO:0044130,GO:0044144,GO:0044146,GO:0044237,GO:0044238,GO:0044248,GO:0044257,GO:0044260,GO:0044265,GO:0044267,GO:0044389,GO:0044403,GO:0044419,GO:0044421,GO:0044422,GO:0044424,GO:0044425,GO:0044428,GO:0044433,GO:0044440,GO:0044444,GO:0044446,GO:0044464,GO:0044877,GO:0045570,GO:0045571,GO:0045786,GO:0045807,GO:0045859,GO:0045892,GO:0045921,GO:0045926,GO:0045934,GO:0045935,GO:0045936,GO:0046620,GO:0046621,GO:0046755,GO:0046790,GO:0046903,GO:0046907,GO:0046983,GO:0048306,GO:0048468,GO:0048469,GO:0048513,GO:0048518,GO:0048519,GO:0048522,GO:0048523,GO:0048524,GO:0048583,GO:0048585,GO:0048638,GO:0048640,GO:0048666,GO:0048699,GO:0048731,GO:0048856,GO:0048869,GO:0050730,GO:0050732,GO:0050789,GO:0050790,GO:0050792,GO:0050793,GO:0050794,GO:0051046,GO:0051047,GO:0051049,GO:0051050,GO:0051093,GO:0051128,GO:0051130,GO:0051171,GO:0051172,GO:0051173,GO:0051174,GO:0051179,GO:0051222,GO:0051223,GO:0051234,GO:0051239,GO:0051241,GO:0051246,GO:0051248,GO:0051252,GO:0051253,GO:0051254,GO:0051338,GO:0051348,GO:0051603,GO:0051641,GO:0051649,GO:0051703,GO:0051704,GO:0051726,GO:0060255,GO:0060341,GO:0060429,GO:0060627,GO:0061097,GO:0061099,GO:0061245,GO:0061919,GO:0065007,GO:0065009,GO:0070013,GO:0070062,GO:0070201,GO:0070647,GO:0070925,GO:0071695,GO:0071704,GO:0071840,GO:0071900,GO:0071944,GO:0071985,GO:0080090,GO:0090087,GO:0090702,GO:0097159,GO:0097352,GO:0097708,GO:0097734,GO:0098588,GO:0098796,GO:0098805,GO:0099120,GO:0140110,GO:0140112,GO:1901184,GO:1901185,GO:1901363,GO:1901564,GO:1901565,GO:1901575,GO:1902115,GO:1902186,GO:1902188,GO:1902531,GO:1902679,GO:1902680,GO:1903506,GO:1903507,GO:1903508,GO:1903530,GO:1903532,GO:1903541,GO:1903543,GO:1903551,GO:1903561,GO:1903772,GO:1903774,GO:1903827,GO:1903829,GO:1903900,GO:1903902,GO:1904951,GO:1990182,GO:2000026,GO:2000112,GO:2000113,GO:2000272,GO:2000395,GO:2000397,GO:2001141 |
| EggNOG free text desc. | Tumor susceptibility |
| EggNOG OGs | KOG2391@1,KOG2391@2759 |
| EC | 2.3.2.31 |
| COG Functional cat. | O |
| Best tax level | Eukaryota |
| Best eggNOG OG | NA|NA|NA |
| BRITE | ko00000,ko00001,ko00002,ko01000,ko01002,ko04121,ko04131,ko04147 |
| Hectar predicted targeting category | other localisation |
| Ec32 ortholog description | Ubiquitin-conjugating enzyme/RWD-like |
| Ec32 ortholog | Ec-16_000220.1 |
| Exons | 11 |
| Model size | 2657 |
| Cds size | 1491 |
| Stop | 1 |
| Start | 1 |
Relationships
The following UTR feature(s) are a part of this mRNA:
| Feature Name | Unique Name | Species | Type | Position |
| 1622815477.4338293-UTR-P-fluviatile_contig11:3192470..3192908 | 1622815477.4338293-UTR-P-fluviatile_contig11:3192470..3192908 | Porterinema fluviatile SAG_2381 | UTR | P-fluviatile_contig11 3192471..3192908 + |
| 1693561992.3521314-UTR-P-fluviatile_contig11:3192470..3192908 | 1693561992.3521314-UTR-P-fluviatile_contig11:3192470..3192908 | Porterinema fluviatile SAG_2381 | UTR | P-fluviatile_contig11 3192471..3192908 + |
| 1622815477.6097379-UTR-P-fluviatile_contig11:3203470..3204198 | 1622815477.6097379-UTR-P-fluviatile_contig11:3203470..3204198 | Porterinema fluviatile SAG_2381 | UTR | P-fluviatile_contig11 3203471..3204198 + |
| 1693561992.49185-UTR-P-fluviatile_contig11:3203470..3204198 | 1693561992.49185-UTR-P-fluviatile_contig11:3203470..3204198 | Porterinema fluviatile SAG_2381 | UTR | P-fluviatile_contig11 3203471..3204198 + |
The following CDS feature(s) are a part of this mRNA:
| Feature Name | Unique Name | Species | Type | Position |
| 1622815477.444896-CDS-P-fluviatile_contig11:3192908..3192965 | 1622815477.444896-CDS-P-fluviatile_contig11:3192908..3192965 | Porterinema fluviatile SAG_2381 | CDS | P-fluviatile_contig11 3192909..3192965 + |
| 1693561992.366429-CDS-P-fluviatile_contig11:3192908..3192965 | 1693561992.366429-CDS-P-fluviatile_contig11:3192908..3192965 | Porterinema fluviatile SAG_2381 | CDS | P-fluviatile_contig11 3192909..3192965 + |
| 1622815477.4567108-CDS-P-fluviatile_contig11:3193971..3194050 | 1622815477.4567108-CDS-P-fluviatile_contig11:3193971..3194050 | Porterinema fluviatile SAG_2381 | CDS | P-fluviatile_contig11 3193972..3194050 + |
| 1693561992.3820045-CDS-P-fluviatile_contig11:3193971..3194050 | 1693561992.3820045-CDS-P-fluviatile_contig11:3193971..3194050 | Porterinema fluviatile SAG_2381 | CDS | P-fluviatile_contig11 3193972..3194050 + |
| 1622815477.4707806-CDS-P-fluviatile_contig11:3194729..3194821 | 1622815477.4707806-CDS-P-fluviatile_contig11:3194729..3194821 | Porterinema fluviatile SAG_2381 | CDS | P-fluviatile_contig11 3194730..3194821 + |
| 1693561992.391799-CDS-P-fluviatile_contig11:3194729..3194821 | 1693561992.391799-CDS-P-fluviatile_contig11:3194729..3194821 | Porterinema fluviatile SAG_2381 | CDS | P-fluviatile_contig11 3194730..3194821 + |
| 1622815477.482791-CDS-P-fluviatile_contig11:3195585..3195646 | 1622815477.482791-CDS-P-fluviatile_contig11:3195585..3195646 | Porterinema fluviatile SAG_2381 | CDS | P-fluviatile_contig11 3195586..3195646 + |
| 1693561992.4020767-CDS-P-fluviatile_contig11:3195585..3195646 | 1693561992.4020767-CDS-P-fluviatile_contig11:3195585..3195646 | Porterinema fluviatile SAG_2381 | CDS | P-fluviatile_contig11 3195586..3195646 + |
| 1622815477.4927413-CDS-P-fluviatile_contig11:3196108..3196251 | 1622815477.4927413-CDS-P-fluviatile_contig11:3196108..3196251 | Porterinema fluviatile SAG_2381 | CDS | P-fluviatile_contig11 3196109..3196251 + |
| 1693561992.414386-CDS-P-fluviatile_contig11:3196108..3196251 | 1693561992.414386-CDS-P-fluviatile_contig11:3196108..3196251 | Porterinema fluviatile SAG_2381 | CDS | P-fluviatile_contig11 3196109..3196251 + |
| 1622815477.5106258-CDS-P-fluviatile_contig11:3197578..3197842 | 1622815477.5106258-CDS-P-fluviatile_contig11:3197578..3197842 | Porterinema fluviatile SAG_2381 | CDS | P-fluviatile_contig11 3197579..3197842 + |
| 1693561992.4222953-CDS-P-fluviatile_contig11:3197578..3197842 | 1693561992.4222953-CDS-P-fluviatile_contig11:3197578..3197842 | Porterinema fluviatile SAG_2381 | CDS | P-fluviatile_contig11 3197579..3197842 + |
| 1622815477.5210388-CDS-P-fluviatile_contig11:3198445..3198535 | 1622815477.5210388-CDS-P-fluviatile_contig11:3198445..3198535 | Porterinema fluviatile SAG_2381 | CDS | P-fluviatile_contig11 3198446..3198535 + |
| 1693561992.4413466-CDS-P-fluviatile_contig11:3198445..3198535 | 1693561992.4413466-CDS-P-fluviatile_contig11:3198445..3198535 | Porterinema fluviatile SAG_2381 | CDS | P-fluviatile_contig11 3198446..3198535 + |
| 1622815477.5319288-CDS-P-fluviatile_contig11:3199927..3199987 | 1622815477.5319288-CDS-P-fluviatile_contig11:3199927..3199987 | Porterinema fluviatile SAG_2381 | CDS | P-fluviatile_contig11 3199928..3199987 + |
| 1693561992.4527657-CDS-P-fluviatile_contig11:3199927..3199987 | 1693561992.4527657-CDS-P-fluviatile_contig11:3199927..3199987 | Porterinema fluviatile SAG_2381 | CDS | P-fluviatile_contig11 3199928..3199987 + |
| 1622815477.5423841-CDS-P-fluviatile_contig11:3200829..3200939 | 1622815477.5423841-CDS-P-fluviatile_contig11:3200829..3200939 | Porterinema fluviatile SAG_2381 | CDS | P-fluviatile_contig11 3200830..3200939 + |
| 1693561992.4655676-CDS-P-fluviatile_contig11:3200829..3200939 | 1693561992.4655676-CDS-P-fluviatile_contig11:3200829..3200939 | Porterinema fluviatile SAG_2381 | CDS | P-fluviatile_contig11 3200830..3200939 + |
| 1622815477.5535207-CDS-P-fluviatile_contig11:3201618..3201775 | 1622815477.5535207-CDS-P-fluviatile_contig11:3201618..3201775 | Porterinema fluviatile SAG_2381 | CDS | P-fluviatile_contig11 3201619..3201775 + |
| 1693561992.4750009-CDS-P-fluviatile_contig11:3201618..3201775 | 1693561992.4750009-CDS-P-fluviatile_contig11:3201618..3201775 | Porterinema fluviatile SAG_2381 | CDS | P-fluviatile_contig11 3201619..3201775 + |
| 1622815477.5647924-CDS-P-fluviatile_contig11:3203092..3203470 | 1622815477.5647924-CDS-P-fluviatile_contig11:3203092..3203470 | Porterinema fluviatile SAG_2381 | CDS | P-fluviatile_contig11 3203093..3203470 + |
| 1693561992.4831138-CDS-P-fluviatile_contig11:3203092..3203470 | 1693561992.4831138-CDS-P-fluviatile_contig11:3203092..3203470 | Porterinema fluviatile SAG_2381 | CDS | P-fluviatile_contig11 3203093..3203470 + |
The following polypeptide feature(s) derives from this mRNA:
Sequences
The following sequences are available for this feature:
protein sequence of mRNA_P-fluviatile_contig11.1275.1 >prot_P-fluviatile_contig11.1275.1 ID=prot_P-fluviatile_contig11.1275.1|Name=mRNA_P-fluviatile_contig11.1275.1|organism=Porterinema fluviatile SAG_2381|type=polypeptide|length=497bp
MPPTLMNLDRLIAQFPRYQDPNRIRTDVLNVWRHRQSLSPKRGKLTLNTG VECDLLMLEGTFPIVYRGVEYYTPIEIYITENYPTTPPTCYIRPTSGMSL KVGHRHVDQTGLVYLPYLHEWTARTHNLVELIANMSSVFGAEPPLFATPP GGVRPSSNRSSPQPQHQPSHARPNSNPYLASYPLGAAGTASSPYGGYQNP RPVSAPAPALPPRPDPEIQRREKEAAVTAKLRSELQVMYSKLGADIDSGL ETQAQLNEHQEELDEAVEELSRRKKELERLIQVAKEREMELDTYLEERQK EGEPSVDDLIEPKDALSDQMLRLTAENAALEDALYYLDVGLTDSVITVDV FLKEIRRLARKQFVARATSKKVERAQQEVNAQRARFNAEQQENAAGRGGG GHYPHLPPQQQYRPPGGGGGGVGSAGYMAGPPPGYSPPSADYRGSLGGSN YLGAKGYGQQPAAGTAGPWSGGGGAAGMGYGYPSFGGAKTSNTQRR* back to topmRNA from alignment at P-fluviatile_contig11:3192471..3204198+ Legend: UTRpolypeptideCDS Hold the cursor over a type above to highlight its positions in the sequence below. >mRNA_P-fluviatile_contig11.1275.1 ID=mRNA_P-fluviatile_contig11.1275.1|Name=mRNA_P-fluviatile_contig11.1275.1|organism=Porterinema fluviatile SAG_2381|type=mRNA|length=11728bp|location=Sequence derived from alignment at P-fluviatile_contig11:3192471..3204198+ (Porterinema fluviatile SAG_2381) CCCTCGAACCCATCCACTGCTGTCGGACGCCGGGGCAAACGCGACCAGAA
ACCCGCACACCAAACAGAGGGGACACAGAAGGGTGTTGTGAACTGGTAAC
TGGGGCCTGCTTCGTGGCGTAGATACCTGTACGAACTTGTCTGGGGCAGC
TCCGTAGCCTCTGCGTCGGTGCTCTGCGCGGCGTTTCTCTGCAACTTTCG
CGCAGCCAGAAAGGGAACAATCGGGGAGGTCGTGTTCAACAGGAGACCTG
CTGCGGTGCTTCTGCGATTGAGGGCTTGTGTCGGGCTCCGAACGGTCGCT
TGTTGGCCCGTGGAAGGTTGCGAGGCGCCCGTCTCTCCCGCCTGGTCGGG
CGAAAAGCGAGTTACAGTTAGGCGGCGCCCTTTGGAGTGAGACCTCGGAG
ATAAGCCCGAGCCTTCGTTTTGCGTCGGGTCAACAGCCATGCCTCCTACT
CTCATGAACCTAGACCGGCTGATTGCCCAGTTCCCAAGATACCAGGTGAG
ATGGCAAGCGAGAGAGAGTGAAAGGGGGGATCAGGTGTCTCTCCGCATGA
TGTCGGTGGTCAGTTGAATTTGTGTTCACACATGGTTCCAAGCCCGGAGA
CCGGTTCCTTGGAAAGTCGCATTTGCGGTCTCTCCCTCTACAGGCGTCCC
AAGAGACGACGCAGAGAGTTTTCTCTCTTCTTCCCGGACACCCCGAGCGG
CCCCTCACTCTCCCGCGCTAGTCAGCGCCACGGCCTTGCGCCGTCTTGGC
CACGAGGCAGGGCTTCAAGATCGGGGGTGCGCCGTCCAGCCTGTCCGGGG
GAGTTTCAAAGTTTTACTCCCCAGTACGTTGCACCCCGCTCTCAAGTCGC
GTTCTTCAGGATGTGCACGGGCCCAGCGCCTCAGCGGTCCGTGGTTGAAC
ACAGCAGTCTCTGAAAGAGTGGCGGCTTCATAAAGTGTCCCGGTGGGGCT
CCAGCGAACACCGCTGTGCACCGAAAGAGCAGCAGTTTCCGCAGGACCGG
CGCTTTGGAGCTCTCCCGATTGTGGCGGTGCGGGTTGTCGGGAGATATCG
TGCTTGTCAGACAAGTTGGGCACGGGTGTGCGTACCATGTCCTCCACTCC
CTTTGTGCAACCTTTTCGGTTTGCGGGTAGCAGAGCAAGTGAATCTGCAC
GCGATTGAAATCGTTCGAAAAACGACGACTTGGGTATCCCGTATCCCTTG
CGCAAACATGGTCCCCCTCGTGGGATGTGTGATTGATGCCCGAGTTTGCG
GCCGTTGTGACCAAAGCTGGGCACGGAACTTGCCTTGACTCGACGGCGTC
TGGACTCGACCCCAAATTGCGTTAATCTCAAGCACAACGCCTCTTGACCC
GTCTGCTGCGTATAGGAATCTCTGTTGGTATCCTAGCCAGGGCTGTCGAG
GACGGTCGCCCACAAATTGACGACCAACATCGATGTAGACTGATTGTGGA
CTCAACGGGTTACCCGACAACCTTCGTGGGCGCCTGCCGCTTTGTGACCA
GGATCCGAATCGCATCCGAACAGATGTGCTAAACGTCTGGAGACATCGTC
AAAGCTTGAGTCCGAAGCGCGGCAAATTGAGTGAGTGCGTTAGGGAGGCG
GGTGAGGGAGTTGGACTCGTGAAAGAAGGAGGTTGAACAAAAATCGAATC
GGACGCCAAAAAGAAATCGGGCGAAATAAAACACTTGTGCAGAATGGACG
GGACTGGGAGATTCCTTGCAAATATGTGAGGGGCGGACGGATGGCCTCAC
GCTAAGAAAACGAACCAAGTGGAATGATAACACCAACAAGGTATGGCTTC
GAGGGTTTGTATATTGATACTTGCTGGAGAACCACCAAACGCCGAATGAA
GTGGAAGGCAGCAGCGAGGGAAGGATTCCGTTCCCAATGGGGCGGAGTTC
GGCAGGTGGCGGCGGAAAATTTGAAGATTGGCTTCCGCACGCAATAACAC
TTGGCTGCATTGCGATTTGATTGTGAGGCTCTGTCGAGACCGGGTGCCGT
GACTGGTCGGCCTACTTTCGAACGGTTGATCGATCTCCGCAAGTTGGTTC
ATATTACTATCGTGGCAGTTTGAACGGGACAGGAGTAGTTTCCAAGTCAG
CTCCCCCTGTAGTAGACTTTTACAGATCATTTCTTGTCCAACGTAAGTAG
ACTGGGAAAATCTGCCGGTTCAACAATCCCTCGCCGTTTCATATTTTTTC
TTACTTGTCTACGACAAAATCGACGCGTTTTCACCGCCCGGCCACGCTAT
CTGATTCAGCCCTGAATACTGGCGTGGAGTGCGATCTGCTAATGCTGGAG
GGCACCTTTCCTATCGTTTACCGGGGCGTTGAGTACTACACTCCCATCGA
GGTGAACGAACCAAAACACACGCAGAAACCAAGGGGCGAGGGGCGGGGAG
GGTTGAGGGGGATGCGGTGCCGGGCGCCCGAGGGTGAGCGATTGTAGCCC
GTCCTAGTCGGCTCTGCGTTCGAAGGCTTGAGGTTTTAGTACGGGAACAG
CCCAAGGCGCGGCGGCAACACGAGAGCCGATTCACCGGGGCCTGATTTCT
GGATATTGTTTCTTGTTGATTGACCGACGAGACGACGCCGCCCGCTCCTC
GGATTGCTTGAGAGAGTGGAAGGCGACAAACCCGGCGGACCGCGCGCGGG
AGAAGGCGAGCGATGGAACGGTTGCCGCATTCGGCCGCAGCTTTTCATCT
CATTTTCCGCTGAAAACGAAGTTTCCGCTCACCAAGGCGCCGACAAGGCG
CTAAACCCCGTGCTTTCCCAAACGCTTGTATATACCGCCGCCCCGCCCTG
CTCCGAGGAGGACGGTCACATGCTAACTTTGCATTGGTCACCCGTCGTCC
ATCAGTAAACGAGATATCGAGTCTCGAGAGTTTGGCTCACGGCGTTTGGC
AGTGCGGCCAAAGAACCAGAATCTTTTGGGCGGGAAGGAACAGCTGTGGC
GGGCTCCCCGATGTGAATTTCCAACAGCACGGGACCGAGCTCAGCGCCGA
AGAGAATCAATTTTGATCGCCCCCGCCATCGCCCCCGCCAAATTTCCCTA
TCCACTCCCTTATCCTTCCCCCGGCCCTCTCCTCCGTTTCCTTCCGTACG
CCGCCGTCCGCGCAGATCTATATCACGGAGAACTACCCCACGACGCCCCC
CACGTGCTACATCCGGCCGACCTCCGGTGAGCTTGGCGTGACGCCACGTG
ACGCGTGACCTGACGCATGACGTGGCGGGCACGTGATGTGACGCGGCGGA
TAAAGCTCGGTTGGGTGGGGTCGGATTCAATGGCAACACAGGAGATATGC
TCTCGTTGCCGAGCGTGTCAAACGTCACGGAGAGGTGGTGTTCATCATCA
CGATGGGTGTTGGTAGTGAGGGTGACTGAAAGTCCACCTCGCCGCCATAT
AAGACGAAAAGGGGGGGAAAGTGGCAGGAAGAACGGCGGAAGGGAGTTCC
GAACGGAGGGGGTGTACGCACTGAAGCCAGGCACGAAAGCCAACAGGTAC
AGAGGTAGACCGGCAGACAGAGTGCGAACTCCTGTTATGCTTGTCCTTCC
CCCTGTTGATCTTGTCTCCTGACTCTCTCCTCGCGTCCCCTCTCGGTGCC
TCAAACAACGTTGATCGATCTATCAACTCGTCTTTCAGGCATGTCGTTGA
AGGTGGGGCACCGCCACGTCGACCAGACTGGCCTGGTTTACCTGCCGTAC
CTCCACGAGTGGACGGCGAGAACCCACAACCTGGTGGAGCTCATTGCCAA
CATGTCGAGCGTTTTTGGAGCGGAACCTCCGGTGAGACGACGAGTTGCCC
AAAAGCAGGGGTTCATGGCAGCGTTGCATGCGGAACGCCTACATTCCTTC
CCAACGCAGGAAGAACAAGAGTCCACCGCCCGACAGGAGTGCGTGAGTTG
CCCGGGCACTTCGCCTGTGTGCGTAGATTTGGAGAGTTTCCTCTAGGTTT
CAAAACTACCGCCGTCGGAACAGCGAGGCGAAGGGAAAGGATTCAGGCGT
CACTCGGCGCTCGTAGCCGGTGACGGAGGAGCGTTGCTTCTTCGACGGGA
GGTGTAATTGGTAGCGCCGAAAGAGGTCAAGATGAACGAGCCGTTCTTGG
CTCATGCTTTTTTTTCTGCCGGTGTGTGTCTATCCTCGAGGTGAACTCGA
GAGTCACCTGGCAGCATGGACACTCGTGACAACTGCGAACGCGTCAGATG
CATGCCCCCCGGGAACTCGGGGGAGGCCTTGTGTTCGAAGGATACACGAG
GCTCGACAGCTCGAGAGCCCCGCACATGGGGGCGCAAATGCCCGATTGTT
TTGGCGTTGCGAAAGATTGATTCCGTGAGAAAACTTTTTGAAGGCTCGAC
GGTCCATTTAGAATGCTTTTCACGGATCCTTTCGTGAGGCGATCACGCTA
GCCGTGAAACCCGGTGAAGGTGGGGAGAGGGACCGTGCGTGCGGAACATC
GCGCGACCTCTAGGCCGTGTTCGCGTGCGCGCACTGACGACCGCCCGATA
GCTCAATGGAATCGCACAGTCGAATCGCTGGATGGGACCGCAAAGTGATA
TCGGCCGATAGAGTTGCAAAATGGAATCGTTCGGTGGGATCGCTCGATGG
AATCGCGCCAAGGAGTGGTACCATGGAATCGTTCGATGGAATCGCCCGAC
GGGATCGTTCGATGGGTTTGCTCGATGAATTCCTTCGATGGGGTCGCACA
GTGGAATCGCTGGATAGAATCAATCGATGCGATTGTTCGATGAAATCACT
CGAAAGGTCGCGCGATATGTTGGTCGCTCGTTCGATCGCCCTAAGTCAAT
GGATGGATTGACCGGTCATTGGATTAAGCCGACGAGCCCCCCCCCGTGTT
CGAATTGCCCCTTTTGCTTGCGATCTATCCGCGAGAAATACAGCACAGCA
TGTCCTACCCTTGATTTGGAGTCCCTGCACCTGCGCGCTCGGGCGGCATC
CATTAGCGTCGTCCATGTCCCATCCCCCATACATTCGACACACCCTTCAT
CAACGAGGATGTCTCCTCGCCTCTCCGCGCCTTACTCTTTCCCTCTTTCC
CCCTCCCCCTTCCCGCCTCGCATTTGTTTGTCCTGTCCCGCCCTGTGCCC
GCTGTCAGCTCTTCGCGACCCCACCGGGCGGCGTGCGCCCGTCTTCGAAC
CGCTCTTCACCGCAGCCGCAGCATCAACCATCGCACGCGCGCCCGAACTC
GAACCCTTACCTTGCTTCTTACCCCCTTGGTGCCGCCGGCACCGCCTCTT
CACCGTACGGAGGGTACCAGAACCCGCGGCCCGTATCGGCGCCGGCGCCG
GCGCTGCCGCCAAGACCAGACCCTGAGATACAGCGGAGGGAGAAGGAGGC
GGCGGTCACCGCGAAGCTCCGGGTAGGCACGAAAAACGTGAAGATGGTGG
TCACCGCACACGAGTGGGTGTAGCCAGGGAGGGGGAATGGCGCGAGCGGG
AGAATGGGGGTAGGGGGAAGAGGAAGGGAGAGAGTTGCCCCCCTTCCCCC
TCCGCGCCCGCCCGTCTTTCTACACAAACTCTGTCGGCGCAGATTGATGA
TGTGCGGTGATCCCCCCCCCCCTAGGGCGTCCCCTGCTTTTGCTGCCACC
GCCGTTGCTGATGCTCTGCCGCCACTGCTGATGCTCTGCCGCCGTTGCTG
ATGCCCTGCCGCCGCTGCTGATGCTCTGCCGCCGCTGCTGATGCTGCCTA
GTTTTCGCGTGTTTGGTTCAATCAAGAACTTGCCTGCCCTTCGAGTTTTC
AAAGATTGATTCGCAAACGTCTGATACTTTTTGTACTGTGGTGTGCCAGT
TCGGGTGCCTCCTTTCCGCGTCTATTCTCCGTCTTTCGCTCGTCCGTTTT
CGTGGCACGTTTATTTTCCAAAGTAGCAAGCCAAGCTTACGTTCCTCCCC
TCCTGCCACAATCGCTATCCCATCCCATCCCATCCCATCCCGTCCCATTT
GTTGGCCTCCCGTTTCGTCTTGCAGAGCGAGCTGCAGGTCATGTACTCCA
AGCTGGGGGCGGACATCGACTCAGGGCTCGAGACGCAGGCGCAGCTCAAC
GAACACCAGGAAGAGGTAAGAGAGAGTGGCGGGGCGGTGGACGAACACCA
TGGAGCATGAAAACGCTCTCTTGTAGGCATGAACAACAAAAGGACGGCCC
TTTTGCTTTTATCGGCGGCCGGTCAACTGCTGGAAACACAACATCGGGGG
CGATTCCACGAGGTCACGATCCCCACATTTGTCTTTCCAAATAGACAAGT
GTGAAAAAACATAAGCACGGAGAAATCACACAAACACATGAAAAATAACG
TCAGGAGTTTTTCTTCTCGCTTTCCTAACCCAACTAGAATGGTCTACTCT
GTAAGGAATTCACCACATTATATGGGGCATCGTGAATTTCAGTTCATGGA
GTCAATACTCCTTTGAAGCTTTGACCGTCTTCTTTCAAGAAAACACATGA
GCATGTGTGCATAACTTCTTTTTCTGGTGTGCGTGCGTTTTTCTCGCCGG
GGCTGGCTCGGCGGAGAATGTTGACCCTTGCTGCTGTCGCATTTCGGCTC
TTGGATCCGGATTCTGCTTCGCCTCGACCGCGAAATACTCATACGAACGA
ACGATTGGCTCAGCGAGAGGGGGGGAGGGATGGAGCGAGGAACGGAGGGA
GGGAGGGAGGGAGGGAAGGACGTTCCCTTCGGCAGGCGAAGTGGCGGCGC
GACTTGACCCCCGCCCCCCTTCCCGCCCCTGTCGACCTCTCGTCCTTTTT
CAAGTCTCGGCTCCGCGTATGGCGTGCCAGCCGCATCTATGGTCGAGCAG
TAGATGTTCGCCGCCGCCCCCCTGTGGCATTTTCGCATGTTGTGTCGAAT
CGCAAAAAAACGTCTACGCACAAGTTTGATGGTTGCCTGGTGTAGGCGTT
TATTCGATCATTGGAGGTGTGGGGCGGGGCAGTGTTACTAGGATGTGGTG
TGGTGTGTTGTGGGTGTAGGCATGGCCTGACGCGTTTGTGTCTTCTCACA
GCTCGCAGTGTGTTGTGAGTGCTGATGTCGTGGCAAGCACTCGTTCATTT
TCTCTGCTCCGGAGGCGACAGCAGTGCCACCTTTTTTGAGTGTTTGGACA
GGCAGCCGCTGGTGTCCCCCTGTCGACCGCACCTCGTCTCCCTTCTAGCC
CGCTTGCCCCGCCGGCTTGCCTGCCTGCCTTCCCTGCCCATTTTTGTCTG
GTCGTGCCTGTTCCAGCCACCGCATTCTTGATTTTTTGTCGCACGTGAAG
GACGAGGCCAGAAGATTCACTGTTCTAACAAGAAGAGGGAAAATGGTTGC
GCGGTGAGACGTACAGCGATTTGAATGTCACGCCCGCCAGCGACGAGCTA
CGGCCGCTTGCTTGTTGCCGGTTTCCTCTTCACCCCCCCCGCTGTCTCTG
TCTCTCTTTCGCCCCCCCTTTTCCTTCTCCCCCCCTCGCTTTTGCTCCTG
TCGGCAGTTGGACGAGGCGGTGGAGGAGCTGTCGCGACGAAAGAAGGAGC
TGGAGCGACTCATTCAGGTGATCCGGGGGGGATACTTGAAGCAGTGTGGC
AGCAGCGGTCAATTTGGTAGATCACTCCTGTCTCGGATCTCGACTTTCCG
GACGGAGAGGGCCCCGTACACGGGCATGAGGGGGGGGGGGTGACGCGCCT
GCCATGGATTGCCTGAGAGCTTCGCGTCACTCGCATTCACGTCACCCCAC
CCCCGACCTATTCCGGCACATGGATAGAGATCAAAAGTCAATTAGACAGG
TCAAGTATTAGCTGCATGGGTTAGGATGGGGAGCTGGGGGTCTGTATCGC
TAAAGGCGCGGTGCTCCCAGTCTATCGAATGGACCCATTCCAGGAAGCGG
AGGAAAGGCAGCGACGTCGGCAAATGGCATTGCCCGTGCTTGCTGCGCGC
TTCCATGGGGTTGCTTGCTCGCGTTTGCAGGGACCCGTGTTTGCTGGAGG
GTCGTGGGTCCTGTTTTTTGTTTCGTTCAAGGGTTGGGCACGTCGCTGCT
GCCCGTTTGTCTCCTTTGCGTGCGGCACGGTATCAGGAAACAACACCTCT
GCTGCTGCTTCAGATGTTCCTTGTTATTTTTTCACAGCTTTGGTACTCAT
GTCCCTGGGGTCTGAGCTATAACGGCCTGCGCATCGCTCCCTCGTTTGGG
CAGACAAAGCAGGTACACGCGGATTCGTAGACGATTGCATGGCAAGAAGT
CGCCTGGTTGTTGTGTCGGCGGTGACTGCACACGAATGGCCGCAGTATTT
ACAGCAACTGCGGGCACGAGCGACGCCTCTTCCCCCCCGTTCTTTTCTGT
GTGATTGTGGTTTTGGCTTATGAATGTGCTTTTTTGTGTGTGGCGATCCG
ATGTGGCAGGTTGCGAAGGAGCGGGAAATGGAGCTGGATACATACCTCGA
GGAGAGGCAAAAGGAGGGGGAGCCTTCGGTGGATGACTTGATCGAGCCCA
AGGACGCCCTTTCCGACCAGTGAGTTAGTAATACAGTGAATGCGGTTGTG
GGAGCGACGGTTGCAGTGGTTGTGCAGGTGGAATCATGCAGAGTGCACCC
ATCTCGCCCTTGCACCGGAGTGAGGCTGCGTCGATTGCGTTGGGTTTTGT
GAGGGGAGAGACCCGTGCGCGGTGCTCTCTCCTGCTGTTGCGGCGGTTCA
GCACGCGTTTCGTGGTTGATCGATCGCGATGGCCCACACGATGAATTTGA
TATTGCATCGCCCTCCCTGCAGTATCAGGTGCCTGGTGTGCTTGTCTTCC
TTGGCTGTGGGTGCTCCACATAGCTGGTCGGCGCTGCTTGCCATCGCTCG
AACAAAACAAAGCATTTCTCTCGATCTCGTTTCGTGAATCCGTCACACCT
GTCTCGAGGTGTTTGTTTCTTCCCGCCCACCCCATTTTCCCTTTTCCTTT
TTATGCCGACCTGTCCTCGTTTTTGTTCCCCGCACCGGCGTCATCCCATG
CGTGTTGCCTTGTTCCTCTACGCGTCTGTTTCTGGTGGGTCGATGTTTCT
CCTCATCTCACGTAAGCAATCCGTCACATGCATGCTGCGGGTTGGTTTCC
TCGCTCCTCCTGCCTGTTCGATCGCTGAGTTAAGGTTGCTTTCCCGCTGC
CGATGTGCACGCCCTTTTCTTTTCCTCCCTCGTCGTGAATCATTGCAGGA
TGCTCCGGCTAACCGCGGAGAATGCCGCCTTGGAGGACGCCCTGTACTAC
CTAGACGTCGGCCTGACGGACTCGGTGATCACGGTGGACGTGTTCCTGAA
GGAGATAAGGCGACTCGCTCGCAAGCAATTCGTGGCCAGAGCTACCAGCA
AGAAGGTACGCTCGGTCGTTGCATCTCCACGCTTACAGATTGAGCAGGGC
TCGTCATGCCGCGTATCTGCAAAGCCGCTATTACACGTCGCGCTGGCATA
TTAGACTGGTCATCCCCGCTTACAGTACGCCAAAATTAGTACACTCCACG
CTGTAAGGGCACTGAAGGTTCCTGTGCAGGGGGTAATGTGAGGCGTCGTC
CGATTAGCATTTCGGACACTGCTGCGTTTAGGACCCCTTGAAATATCATA
AACTTCATTGTTCTTAAACCGGGGATGACGGCTGTACACGAGTGGAGGGG
GCGCCCGAGCTTTTTCCCATCAGTTGTGTCTCCGCGGGAGTAGGTACGGC
GGTAATCCATCATCTCCGACCGCCTCACGTGACAAGGAGGTCAGGGTTGT
TGATTCACCCCACGACCGGAGCGACGAAAAAAGCCGAACGAGTCGAAAAC
AACCTGCCGGTTGTTCAGTGCGTGCGTCGTGTGCGCAGTGCGCCGCTCTT
TCTCTCTCGCGGTTGCTCTCTCTCCTTCACAATTTTGTGCGTCCTTCTTC
AATCGGTGAATGTGTTAAACTTTGATTGGCTAGACCGGCATAGGTGATCG
CAAGGAGGAACGAAACACCACGGACGAGAAAAATACTGTGCTCGGGGTCA
TCGATTGGTAATCAACCCAAGACGCCCTCGCCCCCCCTCTCGGGGTCATT
GATCAGTGATCAACTCAGGAAGCGCTCCCGCCCCGCTCGGGGTCATTGAT
CAGTGATCAACGCAGGAAGCCCCCCACCCTTGTCGGGGTCATACATCAGT
GATCAACTCAGGAAGCCCCCCACCCCCCCGGCATGTTTGTGGCAATTCTT
CCGCTAATTTGTGTACGCATTGCGTCGAGCTTCCATGAGAGACTGATTAT
GCCGCTTTCGAGCTCGCTCCCGCCTCTCCTTCAGGAGGCAGAGTCGGTAT
AAAGAACAAGATGCCGCATGGCTATTGAGAACGCCCACGTGGTTTCAAAC
GGAATATGTTCAGGCTCTGCGTGACAACCTTTGGTCCTCTTGTTTTCAGA
TAGTGAGCGGTGTTCCTCGCAGGCTTTCCCCCGCCTTTGTGAAGATTTCG
GTCGGCCGCTGCCATCTAGGGGATTTGAGCTTTCCTCCCCCCCCTTAAAA
CGATTCGGGTTGTCGGGTGCCATCTTGACCAGTCGCTTCCGTAGTCACAC
AACCCCGTGGCTAAATGCAGCATGACATTCCCCCGCACCATTTCTTTTCA
AAAAGCGCTTCCTTGGGTTTGTTGATCGACCCTGCGCGTGCGGTTGCCCG
CACATGACACGCCCGATCACAGGTAGAGCGGGCCCAGCAGGAAGTCAACG
CGCAGAGGGCCAGGTTCAACGCGGAGCAGCAGGAGAACGCAGCCGGTAGA
GGCGGCGGCGGCCACTACCCTCACCTGCCCCCGCAACAGCAATATCGCCC
CCCCGGCGGCGGCGGCGGCGGTGTGGGCAGTGCAGGATACATGGCGGGCC
CACCTCCCGGTTACTCGCCTCCGTCGGCCGACTATCGGGGGTCATTAGGT
GGCAGTAACTACCTCGGGGCGAAAGGGTACGGTCAGCAGCCGGCGGCTGG
TACGGCTGGGCCGTGGAGCGGCGGCGGCGGAGCAGCCGGAATGGGGTACG
GGTACCCATCCTTCGGCGGTGCAAAAACATCAAACACCCAACGGCGTTGA
TGAGCGGGGCGGACGGGACAGCAGGGAGATTGCCGATTACGTATAAAGTA
GTCAGGTTGTTGTCGTTGTTGCTTGTCAAAATGTTGTCGTTCTCGTTCTC
GATGGGACGTCGAGACGAAGTCTTGCGCCTTTCGGTGGCCGATGCATCCT
TTATGTCGCGGGCTTGGTGTAAACGGGTGGGTGGGCGAGGGTCGGGGACT
TCGCGGGGAGGATTTAAAGCAGGGTTTCCACGTGCTTGTTCAGCACATGC
AAAAAGGCTTGGATCGCTTTTCCTGTGGATTTTGCTGCACAGTATCGGGT
GCTTATTTTCTCGTGTTTTTCGTTCGCGTGTGCGGAGCGGCTGCCGGGCG
GCTGCTGGGCACCAGCGCGCTGAAGAGTTGGTTCTCCGACCGCGGCCGTG
GCCGATCATTGTAATATTTCCCATGTTTGTGCTCGGAGTCTTATCCCGAA
CGAAGCTCGTACGAAGCTCGAGCGAATGCGGTTGGTTGCGGCTGTCTTCG
CGAACAGCATAGTGGGTGCGCAAGGTGCTGCTTGGTGATTAGTGATAACA
TCACCACGCTTCATCCTTCGGCGGGCGGAGACGCTGGTTTCCATCGAGAC
CATCACTCGCTCCGTCTTTCTCTGTTGCCCGGCAACTGCCCGCGGAAAGC
ATGTAAGGAGAAAACGTAAAAGGAGTCAGTTGGACGCACTACTGCGCCGA
ACGAAGAAGCTAAAGCTCTGGGGCTTTT back to topCoding sequence (CDS) from alignment at P-fluviatile_contig11:3192471..3204198+ >mRNA_P-fluviatile_contig11.1275.1 ID=mRNA_P-fluviatile_contig11.1275.1|Name=mRNA_P-fluviatile_contig11.1275.1|organism=Porterinema fluviatile SAG_2381|type=CDS|length=2982bp|location=Sequence derived from alignment at P-fluviatile_contig11:3192471..3204198+ (Porterinema fluviatile SAG_2381) ATGCCTCCTACTCTCATGAACCTAGACCGGCTGATTGCCCAGTTCCCAAG ATACCAGATGCCTCCTACTCTCATGAACCTAGACCGGCTGATTGCCCAGT TCCCAAGATACCAGGATCCGAATCGCATCCGAACAGATGTGCTAAACGTC TGGAGACATCGTCAAAGCTTGAGTCCGAAGCGCGGCAAATTGAGATCCGA ATCGCATCCGAACAGATGTGCTAAACGTCTGGAGACATCGTCAAAGCTTG AGTCCGAAGCGCGGCAAATTGACCCTGAATACTGGCGTGGAGTGCGATCT GCTAATGCTGGAGGGCACCTTTCCTATCGTTTACCGGGGCGTTGAGTACT ACACTCCCATCGAGCCCTGAATACTGGCGTGGAGTGCGATCTGCTAATGC TGGAGGGCACCTTTCCTATCGTTTACCGGGGCGTTGAGTACTACACTCCC ATCGAGATCTATATCACGGAGAACTACCCCACGACGCCCCCCACGTGCTA CATCCGGCCGACCTCCGATCTATATCACGGAGAACTACCCCACGACGCCC CCCACGTGCTACATCCGGCCGACCTCCGGCATGTCGTTGAAGGTGGGGCA CCGCCACGTCGACCAGACTGGCCTGGTTTACCTGCCGTACCTCCACGAGT GGACGGCGAGAACCCACAACCTGGTGGAGCTCATTGCCAACATGTCGAGC GTTTTTGGAGCGGAACCTCCGGCATGTCGTTGAAGGTGGGGCACCGCCAC GTCGACCAGACTGGCCTGGTTTACCTGCCGTACCTCCACGAGTGGACGGC GAGAACCCACAACCTGGTGGAGCTCATTGCCAACATGTCGAGCGTTTTTG GAGCGGAACCTCCGCTCTTCGCGACCCCACCGGGCGGCGTGCGCCCGTCT TCGAACCGCTCTTCACCGCAGCCGCAGCATCAACCATCGCACGCGCGCCC GAACTCGAACCCTTACCTTGCTTCTTACCCCCTTGGTGCCGCCGGCACCG CCTCTTCACCGTACGGAGGGTACCAGAACCCGCGGCCCGTATCGGCGCCG GCGCCGGCGCTGCCGCCAAGACCAGACCCTGAGATACAGCGGAGGGAGAA GGAGGCGGCGGTCACCGCGAAGCTCCGGCTCTTCGCGACCCCACCGGGCG GCGTGCGCCCGTCTTCGAACCGCTCTTCACCGCAGCCGCAGCATCAACCA TCGCACGCGCGCCCGAACTCGAACCCTTACCTTGCTTCTTACCCCCTTGG TGCCGCCGGCACCGCCTCTTCACCGTACGGAGGGTACCAGAACCCGCGGC CCGTATCGGCGCCGGCGCCGGCGCTGCCGCCAAGACCAGACCCTGAGATA CAGCGGAGGGAGAAGGAGGCGGCGGTCACCGCGAAGCTCCGGAGCGAGCT GCAGGTCATGTACTCCAAGCTGGGGGCGGACATCGACTCAGGGCTCGAGA CGCAGGCGCAGCTCAACGAACACCAGGAAGAGAGCGAGCTGCAGGTCATG TACTCCAAGCTGGGGGCGGACATCGACTCAGGGCTCGAGACGCAGGCGCA GCTCAACGAACACCAGGAAGAGTTGGACGAGGCGGTGGAGGAGCTGTCGC GACGAAAGAAGGAGCTGGAGCGACTCATTCAGTTGGACGAGGCGGTGGAG GAGCTGTCGCGACGAAAGAAGGAGCTGGAGCGACTCATTCAGGTTGCGAA GGAGCGGGAAATGGAGCTGGATACATACCTCGAGGAGAGGCAAAAGGAGG GGGAGCCTTCGGTGGATGACTTGATCGAGCCCAAGGACGCCCTTTCCGAC CAGTTGCGAAGGAGCGGGAAATGGAGCTGGATACATACCTCGAGGAGAGG CAAAAGGAGGGGGAGCCTTCGGTGGATGACTTGATCGAGCCCAAGGACGC CCTTTCCGACCAGATGCTCCGGCTAACCGCGGAGAATGCCGCCTTGGAGG ACGCCCTGTACTACCTAGACGTCGGCCTGACGGACTCGGTGATCACGGTG GACGTGTTCCTGAAGGAGATAAGGCGACTCGCTCGCAAGCAATTCGTGGC CAGAGCTACCAGCAAGAAGGATGCTCCGGCTAACCGCGGAGAATGCCGCC TTGGAGGACGCCCTGTACTACCTAGACGTCGGCCTGACGGACTCGGTGAT CACGGTGGACGTGTTCCTGAAGGAGATAAGGCGACTCGCTCGCAAGCAAT TCGTGGCCAGAGCTACCAGCAAGAAGGTAGAGCGGGCCCAGCAGGAAGTC AACGCGCAGAGGGCCAGGTTCAACGCGGAGCAGCAGGAGAACGCAGCCGG TAGAGGCGGCGGCGGCCACTACCCTCACCTGCCCCCGCAACAGCAATATC GCCCCCCCGGCGGCGGCGGCGGCGGTGTGGGCAGTGCAGGATACATGGCG GGCCCACCTCCCGGTTACTCGCCTCCGTCGGCCGACTATCGGGGGTCATT AGGTGGCAGTAACTACCTCGGGGCGAAAGGGTACGGTCAGCAGCCGGCGG CTGGTACGGCTGGGCCGTGGAGCGGCGGCGGCGGAGCAGCCGGAATGGGG TACGGGTACCCATCCTTCGGCGGTGCAAAAACATCAAACACCCAACGGCG TTGAGTAGAGCGGGCCCAGCAGGAAGTCAACGCGCAGAGGGCCAGGTTCA ACGCGGAGCAGCAGGAGAACGCAGCCGGTAGAGGCGGCGGCGGCCACTAC CCTCACCTGCCCCCGCAACAGCAATATCGCCCCCCCGGCGGCGGCGGCGG CGGTGTGGGCAGTGCAGGATACATGGCGGGCCCACCTCCCGGTTACTCGC CTCCGTCGGCCGACTATCGGGGGTCATTAGGTGGCAGTAACTACCTCGGG GCGAAAGGGTACGGTCAGCAGCCGGCGGCTGGTACGGCTGGGCCGTGGAG CGGCGGCGGCGGAGCAGCCGGAATGGGGTACGGGTACCCATCCTTCGGCG GTGCAAAAACATCAAACACCCAACGGCGTTGA back to top
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