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Homology
BLAST of mRNA_P-fluviatile_contig1.128.1 vs. uniprot
Match: D8LN51_ECTSI (Whsc1 protein n=1 Tax=Ectocarpus siliculosus TaxID=2880 RepID=D8LN51_ECTSI) HSP 1 Score: 711 bits (1835), Expect = 1.040e-229 Identity = 421/733 (57.44%), Postives = 478/733 (65.21%), Query Frame = 1
Query: 652 GKGPGAKQRKLFKLKKSLVPLGIWPAWGDGEAFDLAPEWKASLLKRYENPPPYKKLKANLYPESSLRGLVPVDEIPLCHCSVEDGCNANCINRLLQMECVPGRCPTLREGSTHCQNNAIQTKTFPSTEIFRTFEGRGWGLRLCDEKGAVAGTILHEYLGEVIMMDECRKRLRKVGRKGVGGSSSDFYFASLDGNLVLDAGPMGSEARFANHSCAPNCLLQKWSVLGETRVVLVAARNLSVGEELTYNYQADTLGGFVERQKCLCGERQCSGFIGGELVAVKEQEWQRRASKVMSQAKPQLDVVRELVYEGQELGYQVAAEGEGEEAREDGDMGSCSAVRYRGREMECLSIMLKEGDSWLERLAEVLEGRAESAVAAANASVYVEEKAPVADTSRRTSSRASRGSWKRIRAYDDADAXXXXXXXXXXEEE----PRVVDLVQLEKVLEVAPAGLQVHEAVKAKKTVARA------GQAAQTVWA-------------------------------------------------LLDAAARHGLE-GVKVPAARRIVQXXXXXXXXXXXXXXXXXXX-GVARDTPVGSNPPDGMEEEEKEGPIALPPKPRMTQVYQAIRTCRGLAPVFIPGASELEKLVASAEAWAQEACDMLKIKTDADKDASNNAKNGPRKNIGGGSVADNGTGETGTS---KWAKLGLEGSAMTALEEKLKEVAEFSLAREQREEEAAKERL 2658
GKGP AKQRKLFKL KSL+PLGIWP+ G+ EAFD+APEWKASLLKRYENPPPY+KLKANLY +SSL+GLVPVDEIPLC+C EDGC+A+CINRLL MEC PGRCPTLR S +C NNAIQTKTFP+TE+FRTFEGRGWGLRL +E+GA AGT+LHEYLGEVIMMDECR+RLRKVGRKGV GSS DFYFASLDGNLVLD GPMG EARFANHSC+PNCL+QKWSVLGETRVVLVAAR++SVGEELTYNYQADTLGGFVERQKCLCGE QCSGFIGGELVAVK +EWQRRASKVM+QAKPQL+VVREL +EG+ELGY+++ EG GE G +G E ++ L R RRTS+RA RG K A+DD D EE PRVVDL+QLEKV++ P GLQ+ EAVKAKKTV + G A + V A ++ LE G PAA + GVA + + + +G ALPPKP+M+QV QAIR+CRGLA VFIPGASELEKLVA AEAWA+EACDMLKIK +D ++A G GG V D G G KWA+LGLEGSAMTALEEKL++VAEFSLAREQREEEA KERL
Sbjct: 209 GKGPSAKQRKLFKLSKSLLPLGIWPSSGESEAFDIAPEWKASLLKRYENPPPYRKLKANLYEDSSLKGLVPVDEIPLCNCRPEDGCDASCINRLLLMECAPGRCPTLRGASKYCNNNAIQTKTFPATEVFRTFEGRGWGLRLAEERGAEAGTLLHEYLGEVIMMDECRRRLRKVGRKGVEGSSGDFYFASLDGNLVLDGGPMGGEARFANHSCSPNCLMQKWSVLGETRVVLVAARDISVGEELTYNYQADTLGGFVERQKCLCGEPQCSGFIGGELVAVKAEEWQRRASKVMNQAKPQLEVVRELFHEGRELGYELSDEGGGE-----GSVG-----------FEETAVHPPPAAGELPR--------------------------------RRTSTRAGRGERKPRDAHDDDDDHVGGGKVGEGEESNPGAPRVVDLIQLEKVVQTVPTGLQIPEAVKAKKTVGESRGADGVGPARRRVQARPAGHQGAGRTAXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXNSSNGNLEQGAVKPAAGLPPRVTVATRSGGKRKPSAALSAAGVAERKQLVTPAATATKSSLADGSPALPPKPKMSQVCQAIRSCRGLAHVFIPGASELEKLVAPAEAWAKEACDMLKIKV-SDPSTDDSATGGAA--AAGGKVKDCDRGRDGEKERGKWARLGLEGSAMTALEEKLQDVAEFSLAREQREEEAEKERL 890
BLAST of mRNA_P-fluviatile_contig1.128.1 vs. uniprot
Match: A0A6H5JSL4_9PHAE (Uncharacterized protein n=1 Tax=Ectocarpus sp. CCAP 1310/34 TaxID=867726 RepID=A0A6H5JSL4_9PHAE) HSP 1 Score: 343 bits (881), Expect = 3.650e-94 Identity = 305/809 (37.70%), Postives = 357/809 (44.13%), Query Frame = 1
Query: 1255 MGSEARFANHSCAPNCLLQKWSVLGETRVVLVAARNLSVGEELTYNYQADTLGGFVERQKCLCGERQCSGFIGGELVAVKEQEWQRRASKVMSQAKPQLDVVRELVYEGQELGYQVAAEGEGEEAREDGDM--------GSCSAVRYRGREMECLSIMLKEGDSWLERLAEVLEGRAESAVAA----------ANASVYVEEKA----PVADT--SRRTSSRASRGSWKRIRAYDDADAXXXXXXXXXXE---EEPRVVDLVQLEKVLEVAPAGLQVHEAVKAKKTVARAGQAAQTVWALLDAAARHGLEGVKVPAARR----------------------------------------------------------------------IVQXXXXXXXXXXXXXXXXXXXGVARDTPVGSNPPDGME------------------------------------------EEEKE--------------------------------------------------------------------------------------------------------------------GPIALPPKPRMTQVYQAIRTCRGLAPVFIPGASELEKLVASAEAWAQEACDMLKIK--------TDADKDASNNAKNGPRKN---IGGGSVAD---NGTGETGTSKWAKLGLEGSAMTALEEKLKEVAEFSLAREQREEEAAKERLLKXXXXXXXXXXXXXXXXXXRRQQARWRKGLPQTAEGR-----REGGICRGIP*RLFWRVLGQGLGGKAVTE 2859
MGSEARFANHSC+PNCL+QKWSVLGETRVVLVAAR++SVGEELTYNYQADTL GFVERQKCLCGE QCSGFIGGE RRASKVM+QAKPQL+VVREL +EG+ELGY+++ +G GE E GD Y+GREMECLSIML+EGD WLE LA V+EG + +V VEE A P A RR S+RA RG K AYD XXXX E + PRVVDLVQLEKV++ +P GLQ+ EAVKAKKT+ARA AQTVW LLDAA+++GL+ ++VP R+ G A SN ME ++E E G ALPPKP+M+QV QAIR+CRGLA VFIPGA ELEKLVA AEAWA+EACDMLKIK T D++ + + + P GG V D + GE SKWA+LGLEGSAMTALEEKL++VAEFSLAREQREEE KERL + XXXXX R + R+ P+ G GG G +G G GG+A E
Sbjct: 1 MGSEARFANHSCSPNCLMQKWSVLGETRVVLVAARDISVGEELTYNYQADTLEGFVERQKCLCGEPQCSGFIGGE----------RRASKVMNQAKPQLEVVRELFHEGRELGYELSDKGGGE--GEAGDXXXXXXXXAAGSGPTHYKGREMECLSIMLREGDEWLEELARVMEGTTIAXXXXXXXXXXXRKYGTGAVGVEETAVQPPPAAGELPRRRASTRAGRGERKPRDAYDXXXXXXXXKVGEGEESNPDAPRVVDLVQLEKVVQASPTGLQIPEAVKAKKTLARASHVAQTVWTLLDAASKNGLKSIRVPEERQPPXXXXXXXXXXXXPQLATSNPASGGACPSVPAAASSSSKAAIVGRLDEKDKXXXXXXXXXXXXXXXXXXXXSEGDHDAMMPEIGGGGSGITGAAAPAGAKSNDDATMEVRGDGSTADGSXXXXXXXXXXEPNGGDGGQQLVPLEGRCGSRDDEAEPAADAGTPGGGTDDSPVVATGACSGXXXXXSSPDCGEVLAATVAATAADWRADGDNNGNLEQGADKPAAGLSPRVAVATRSGGKRKPSAALSVAGVALRKRLVPPAATATTSSMADGSPALPPKPKMSQVCQAIRSCRGLANVFIPGAPELEKLVAPAEAWAKEACDMLKIKASRMNSTGTSNDEEVLDPSTDDPATGGAAAAGGKVKDCDRDREGEKDKSKWARLGLEGSAMTALEEKLQDVAEFSLAREQREEEVEKERLQREKEDAXXXXXQARLEKLARLKALSKRRNAPRAVGGASTITAERGGGAAGD-------AVGGGSGGRASRE 790
BLAST of mRNA_P-fluviatile_contig1.128.1 vs. uniprot
Match: A0A835Z6U8_9STRA (Uncharacterized protein n=1 Tax=Tribonema minus TaxID=303371 RepID=A0A835Z6U8_9STRA) HSP 1 Score: 320 bits (820), Expect = 2.600e-86 Identity = 170/365 (46.58%), Postives = 221/365 (60.55%), Query Frame = 1
Query: 691 LKKSLVPLGIWPAWGDGEAFDLAPEWKASLLKRYENPPPYKKLKANLYPESSLRGLVPVDEIPLCHCSVEDGCNANCINRLLQMECVPGRCPTLR---EGSTHCQNNAIQTKTFPSTEIFRTFEGRGWGLRLCDEKGAV-AGTILHEYLGEVIMMDECRKRLRKVGRKGVGGSSSDFYFASLDGNLVLDAGPMGSEARFANHSCAPNCLLQKWSVLGETRVVLVAARNLSVGEELTYNYQADTLGGFVERQKCLCGERQCSGFIGGELVAVKEQEW---------------QRRASKVMSQAKPQLDVVRELVYEGQELGYQVAAEGEGEEAREDGDMGSCSAVRYRGREMECLSIMLKEGDSWL 1728
L + LGIWP E + + L+ P YKK++ N YP+++L+GLV E C C C +C+NR L EC+PGRCPTLR +G +C+N+AIQ + +P TE FRT +GRGWGLRLC V AGT+L EY+GEVI +DEC++RL+++G++G G DFYFASLDG L+LDAGPMG+EARFANHSCAPNC LQKWSV+GETRVV+ A R L GEELTYNY+ADTL G V RQ+CLCG +C G IGG L + + RA +V+ Q P+ L+ EG+ LG A RGRE+ECL+++ +EG++WL
Sbjct: 101 LGSGALALGIWPDDSMAEPYLPPLDMLKERLRELLPEPDYKKIRTNQYPDAALKGLVAAKECSTCCCEPGGHCLDDCLNRRLMQECLPGRCPTLRGLTDGRRYCENSAIQERRYPPTEAFRTSDGRGWGLRLCTTAEPVTAGTLLKEYVGEVISVDECKRRLKQLGKRGKRG---DFYFASLDGQLILDAGPMGNEARFANHSCAPNCELQKWSVMGETRVVMAAKRTLQPGEELTYNYRADTLDGCVTRQRCLCGAPRCPGLIGGTLRSAXXXXXXXXXXXXXXXXXXXXRERAVRVLRQRLPRFSEAAALLEEGRALG----------------------AAAARGRELECLAVLEREGEAWL 440
BLAST of mRNA_P-fluviatile_contig1.128.1 vs. uniprot
Match: A0A4D9DD50_9STRA (Uncharacterized protein n=1 Tax=Nannochloropsis salina CCMP1776 TaxID=1027361 RepID=A0A4D9DD50_9STRA) HSP 1 Score: 268 bits (686), Expect = 7.540e-70 Identity = 142/285 (49.82%), Postives = 181/285 (63.51%), Query Frame = 1
Query: 748 FDLAPEWKASLLKRYENPPPYKKLKANLYPESSLRGLVP--VDEIPLCHCSVE-DGCNANCINRLLQMECVPGRCPTLREGSTHCQNNAIQTKTFPSTEIFRTFEGRGWGLRLCDEKGAVAGTILHEYLGEVIMMDECRKRLRKVGRKGVGGSSSDFYFASLDGNLVLDAGPMGSEARFANHSCAPNCLLQKWSVLGETRVVLVAARNLSVGEELTYNYQADTLGGFVERQKCLCGERQCSGFIGGELVAVKE--QEWQRRASKVMSQAKPQLDVVRELVYEGQE 1587
FDL EW L + E PP Y+ L+ NLY SLR DE+PLC C + GC+ C+NR L MEC GRCP+LR+G +C+N IQ FP+TE+FRT +GRGW LR +E GT+L EY GEV+ M+E + R+R + + D+YFA+L+G LVLDAGPMGSEARFANHSCAPNC+LQKW GE ++LVAAR + GEE+TYNYQ DTL G +Q C CG + CSG IG E + W+ RA+ ++ P L+ V LV EG+E
Sbjct: 140 FDLPEEW--IRLVQSEPPPKYRLLRQNLYSHPSLRPRTAGREDEVPLCSCRPDAGGCDHRCMNRQLFMECPVGRCPSLRDGELYCENMVIQQGQFPATEVFRT-QGRGWALRTREE--VEKGTLLIEYRGEVVTMEEAQTRMRSMS------AGQDYYFAALEGELVLDAGPMGSEARFANHSCAPNCVLQKWRAGGEAHILLVAARRMGAGEEVTYNYQVDTLAGMFGQQACRCGAKNCSGLIGKRPEGKGEDWEGWKERAAACLAMRAPSLEAVEALVQEGEE 413
BLAST of mRNA_P-fluviatile_contig1.128.1 vs. uniprot
Match: A0A7R9U2M8_9STRA (Hypothetical protein (Fragment) n=1 Tax=Pinguiococcus pyrenoidosus TaxID=172671 RepID=A0A7R9U2M8_9STRA) HSP 1 Score: 198 bits (503), Expect = 1.140e-53 Identity = 108/245 (44.08%), Postives = 149/245 (60.82%), Query Frame = 1
Query: 892 SVEDGCNANCINRLLQMECVPGRC----PTLREGST-------HCQNNAIQTKTFPSTEIFRTFEGRGWGLRLCDEKGAVAGTILHEYLGEVIMMDECRKRLRKVGRKGVGGSSSDFYFASLDGNLVLDAGPMGSEARFANHSCAPNCLLQKWSVLGETRVVLVAARNLSVGEELTYNYQADTLGGFVERQKCLCGERQCSGFIGGELVAVKEQEWQRRASKVMSQAKPQLDVVRELVYEGQELG 1593
+V G ++C+NR L MEC G C P L G++ +C N A+Q + FP+T+++ T + G+GLR + AGTI+ EYLGEVI +ECR RL G + D+YFASL G VLDAGPMGS+ARFANHSC+PNC LQ W+VLGE RV LVA R++ E L YNY++D L G V Q C CG C G IGG + Q+W+ A++ + + +L+ ++ L+ ++LG
Sbjct: 4 TVPCGPKSDCVNRRLFMECPSGACCSLGPALSSGNSQPDTRRANCGNVALQVRQFPATDVYWT-KTCGFGLRALE--AFPAGTIVEEYLGEVITTEECRTRL------GTYTENQDYYFASLTGPYVLDAGPMGSKARFANHSCSPNCALQVWNVLGEPRVALVAIRDIRANEHLCYNYRSDDLNGEVSLQSCRCGSLNCCGVIGGRVEESDLQKWETDATRCLGLQRAKLESLQALIAHAEQLG 239
BLAST of mRNA_P-fluviatile_contig1.128.1 vs. uniprot
Match: W7TZX2_9STRA (Histone-lysine n-h3 lysine-36 and h4 lysine-20 specific n=1 Tax=Nannochloropsis gaditana TaxID=72520 RepID=W7TZX2_9STRA) HSP 1 Score: 177 bits (450), Expect = 6.680e-48 Identity = 86/151 (56.95%), Postives = 106/151 (70.20%), Query Frame = 1
Query: 1006 IQTKTFPSTEIFRTFEGRGWGLRLCDEKGAVAGTILHEYLGEVIMMDECRKRLRKVGRKGVGGSSSDFYFASLDGNLVLDAGPMGSEARFANHSCAPNCLLQKWSVLGETRVVLVAARNLSVGEELTYNYQADTLGGFVERQKCLCGERQC 1458
IQ FP+TE+FRT +GRGW LR +E GT+L EY GEV+ M+E + R+R + + D+YFA+L+G LVLDAGPMGSEARFANHSCAPNC+LQKW GE ++LVAAR L GEE+TYNYQ DTL G +Q C CG + C
Sbjct: 3 IQQGKFPATEVFRT-QGRGWALRTREE--VEKGTLLIEYRGEVVTMEEAQTRMRSMS------AGQDYYFAALEGELVLDAGPMGSEARFANHSCAPNCVLQKWRAGGEAHILLVAARRLGAGEEVTYNYQVDTLAGMFGKQACRCGAKNC 144
BLAST of mRNA_P-fluviatile_contig1.128.1 vs. uniprot
Match: UPI001CF466D5 (histone-lysine N-methyltransferase NSD2-like isoform X1 n=4 Tax=Acropora TaxID=6127 RepID=UPI001CF466D5) HSP 1 Score: 191 bits (486), Expect = 9.470e-46 Identity = 110/273 (40.29%), Postives = 157/273 (57.51%), Query Frame = 1
Query: 742 EAFDLAPEWKA--------SLLKRYENPPPYKKLKANLYPESSLRGLVPVDEIPLCHCSVED----GCNANCINRLLQMECVPGRCPTLREGSTHCQNNAIQTKTFPSTEIFRTFEGRGWGLRLCDEKGAVAGTILHEYLGEVIMMDECRKRLRKVGRKGVGGSSSDFYFASLDGNLVLDAGPMGSEARFANHSCAPNCLLQKWSVLGETRVVLVAARNLSVGEELTYNYQADTLGGFVERQKCLCGERQCSGFIGGELVAVKEQEWQRRASK 1524
EA + EW+ L K + P PYK++K N +++R ++ E+P+C CS + G +NC+NR+LQ EC P RCP G +CQN Q + + E FRT RGWGLR C E G + EY+GE+I C++R++K G +++Y ++D + ++DAGPMG+ +RF NHSC PNC QKW+V GE RV L A+R + GEELT++YQ D LG E++KC CG + CS F+G V K Q + +A K
Sbjct: 869 EAKEKYAEWRTLQESKAEQDLQKMSKKPAPYKQIKVNKC-TTAVRIVIDPSELPMCDCSASNESPCGPESNCLNRMLQFECYPQRCP----GKENCQNQRFQKRQYVDCEAFRTLH-RGWGLR-CKED-VKKGQFVIEYVGELIDDATCQERVQK------GEDITNYYMLTIDKDCIIDAGPMGNLSRFMNHSCDPNCETQKWTVNGEVRVGLFASREIMAGEELTFDYQLDCLGN--EKKKCHCGAKNCSSFLG---VRPKNQVQEDKAKK 1122
BLAST of mRNA_P-fluviatile_contig1.128.1 vs. uniprot
Match: A0A2B4STF6_STYPI (Histone-lysine N-methyltransferase NSD2 n=3 Tax=Pocilloporidae TaxID=46729 RepID=A0A2B4STF6_STYPI) HSP 1 Score: 188 bits (478), Expect = 7.500e-45 Identity = 115/289 (39.79%), Postives = 166/289 (57.44%), Query Frame = 1
Query: 742 EAFDLAPEWKAS--------LLKRYENPPPYKKLKANLYPESSLRGLVPVDEIPLCHCS-VEDGCN--ANCINRLLQMECVPGRCPTLREGSTHCQNNAIQTKTFPSTEIFRTFEGRGWGLRLCDEKGAVAGTILHEYLGEVIMMDECRKRLRKVGRKGVGGSSSDFYFASLDGNLVLDAGPMGSEARFANHSCAPNCLLQKWSVLGETRVVLVAARNLSVGEELTYNYQADTLGGFVERQKCLCGERQCSGFIGGELVAVKEQEWQRRASKVMSQAKPQLD--VVREL 1569
EA D EW+ + L K + P PYK +K N +++R ++ E+P+C CS E+ C +NC+NR+LQ EC P RCP G CQN Q + + E RT GWGLR C E G + EY+GE+I C++R+RK G +++Y ++D + ++DAGPMG+ +RF NHSC PNC QKW+V GE RV L A+R++ GEELT++YQ D LG E++KC CG + CS F+G V K Q + ++ KV + K ++ VV+E+
Sbjct: 791 EAKDKYAEWRTAQENKAEQDLQKMSKKPAPYKHIKVNKC-TTAVRIVIDPSELPMCDCSDSENSCGPESNCLNRMLQFECNPTRCP----GKEKCQNQQFQKREYVDCEPLRTLHC-GWGLR-CKED-VKKGQFVIEYVGELIDEATCQERVRK------GEDITNYYMLTIDKDCIIDAGPMGNLSRFMNHSCDPNCETQKWTVNGEVRVGLFASRDIKEGEELTFDYQLDCLGN--EKKKCNCGAKNCSSFLG---VRPKNQIQEEKSKKVDKRRKKKIKKTVVKEV 1060
BLAST of mRNA_P-fluviatile_contig1.128.1 vs. uniprot
Match: UPI000C0504DF (histone-lysine N-methyltransferase NSD2-like isoform X2 n=1 Tax=Stylophora pistillata TaxID=50429 RepID=UPI000C0504DF) HSP 1 Score: 187 bits (476), Expect = 1.170e-44 Identity = 112/281 (39.86%), Postives = 161/281 (57.30%), Query Frame = 1
Query: 742 EAFDLAPEWKAS--------LLKRYENPPPYKKLKANLYPESSLRGLVPVDEIPLCHCS-VEDGCN--ANCINRLLQMECVPGRCPTLREGSTHCQNNAIQTKTFPSTEIFRTFEGRGWGLRLCDEKGAVAGTILHEYLGEVIMMDECRKRLRKVGRKGVGGSSSDFYFASLDGNLVLDAGPMGSEARFANHSCAPNCLLQKWSVLGETRVVLVAARNLSVGEELTYNYQADTLGGFVERQKCLCGERQCSGFIGGELVAVKEQEWQRRASKVMSQAKPQL 1551
EA D EW+ + L K + P PYK +K N +++R ++ E+P+C CS E+ C +NC+NR+LQ EC P RCP G CQN Q + + E RT GWGLR C E G + EY+GE+I C++R+RK G +++Y ++D + ++DAGPMG+ +RF NHSC PNC QKW+V GE RV L A+R++ GEELT++YQ D LG E++KC CG + CS F+G V K Q + ++ KV + K ++
Sbjct: 791 EAKDKYAEWRTAQENKAEQDLQKMSKKPAPYKHIKVNKC-TTAVRIVIDPSELPMCDCSDSENSCGPESNCLNRMLQFECNPTRCP----GKEKCQNQQFQKREYVDCEPLRTLHC-GWGLR-CKED-VKKGQFVIEYVGELIDEATCQERVRK------GEDITNYYMLTIDKDCIIDAGPMGNLSRFMNHSCDPNCETQKWTVNGEVRVGLFASRDIKEGEELTFDYQLDCLGN--EKKKCNCGAKNCSSFLG---VRPKNQIQEEKSKKVDKRRKKKI 1052
BLAST of mRNA_P-fluviatile_contig1.128.1 vs. uniprot
Match: A7RZJ4_NEMVE (Predicted protein n=4 Tax=Nematostella vectensis TaxID=45351 RepID=A7RZJ4_NEMVE) HSP 1 Score: 179 bits (454), Expect = 4.250e-43 Identity = 106/276 (38.41%), Postives = 154/276 (55.80%), Query Frame = 1
Query: 742 EAFDLAPEWKASL-------LKRY-ENPPPYKKLKANLYPESSLRGLVPVDEIPLCHCSVEDGC--NANCINRLLQMECVPGRCPTLREGSTHCQNNAIQTKTFPSTEIFRTFEGRGWGLRLCDEKGAVAGTILHEYLGEVIMMDECRKRLRKVGRKGVGGSSSDFYFASLDGNLVLDAGPMGSEARFANHSCAPNCLLQKWSVLGETRVVLVAARNLSVGEELTYNYQADTLGGFVERQKCLCGERQCSGFIGGELVAVKEQEWQRRASKVMSQA 1539
EA + EWK + L+R+ + PP YK +K N ++ R ++ E+P+C C+ + C +ANC+N +LQ ECV RCP CQN Q + + E FR RGWGLR ++ GT + EY+GE+I CR+R++K G +++Y ++D + ++DAGPMG+ +RF NHSC PNC QKW+V GE RV L +R++ EELT++Y D G E++KC CG + CSGF+G V K Q Q K + A
Sbjct: 279 EAKEKYDEWKKAREDKAEQDLQRFCKKPPQYKHIKTNKC-TTAQRIILDPSEMPVCECTPDQACGQDANCLNLMLQFECVASRCPA----GDKCQNQRFQKRQYVDCEPFRA-HSRGWGLR--SKQAIKKGTFVIEYVGELIDDATCRERVKK------GDDDTNYYMLTIDKDCIIDAGPMGNLSRFMNHSCYPNCETQKWTVNGEVRVGLFTSRDVESQEELTFDYCLDCHGN--EKKKCHCGSQNCSGFLG---VRPKTQNAQMNEDKAKNAA 535
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 | 720.3 |
| Seed ortholog evalue | 1.1e-204 |
| Seed eggNOG ortholog | 2880.D8LN51 |
| KEGG rclass | RC00003,RC00060,RC00181,RC00496 |
| KEGG ko | ko:K06101,ko:K07117,ko:K11423,ko:K11424,ko:K11728 |
| KEGG Reaction | R03875,R03938,R04866,R04867 |
| KEGG Pathway | ko00310,ko05202,map00310,map05202 |
| GOs | GO:0000003,GO:0000228,GO:0000803,GO:0000805,GO:0003006,GO:0003674,GO:0003824,GO:0005575,GO:0005622,GO:0005623,GO:0005634,GO:0005694,GO:0006325,GO:0006464,GO:0006479,GO:0006807,GO:0006996,GO:0007275,GO:0007530,GO:0008150,GO:0008152,GO:0008168,GO:0008170,GO:0008213,GO:0008276,GO:0008757,GO:0009892,GO:0009987,GO:0010452,GO:0010468,GO:0010605,GO:0010629,GO:0016043,GO:0016278,GO:0016279,GO:0016458,GO:0016569,GO:0016570,GO:0016571,GO:0016740,GO:0016741,GO:0018022,GO:0018024,GO:0018193,GO:0018205,GO:0018992,GO:0019222,GO:0019538,GO:0022414,GO:0030849,GO:0031974,GO:0031981,GO:0032259,GO:0032501,GO:0032502,GO:0034968,GO:0036211,GO:0040029,GO:0042054,GO:0043170,GO:0043226,GO:0043227,GO:0043228,GO:0043229,GO:0043231,GO:0043232,GO:0043233,GO:0043412,GO:0043414,GO:0044237,GO:0044238,GO:0044260,GO:0044267,GO:0044422,GO:0044424,GO:0044428,GO:0044446,GO:0044464,GO:0046975,GO:0048519,GO:0048856,GO:0050789,GO:0051276,GO:0060255,GO:0065007,GO:0070013,GO:0071704,GO:0071840,GO:0140096,GO:1901564 |
| EggNOG free text desc. | SET domain |
| EggNOG OGs | COG2940@1,KOG1081@2759,KOG1632@1,KOG1632@2759 |
| EC | 2.1.1.43 |
| COG Functional cat. | K |
| Best tax level | Eukaryota |
| Best eggNOG OG | NA|NA|NA |
| BRITE | ko00000,ko00001,ko01000,ko03036 |
| Hectar predicted targeting category | other localisation |
| Ec32 ortholog description | Zinc finger and SET domain protein |
| Ec32 ortholog | Ec-05_003500.1 |
| Exons | 22 |
| Model size | 3580 |
| Cds size | 2688 |
| Stop | 1 |
| Start | 1 |
Relationships
The following polypeptide feature(s) derives from this mRNA:
The following UTR feature(s) are a part of this mRNA:
| Feature Name | Unique Name | Species | Type | Position |
| 1622815290.4154582-UTR-P-fluviatile_contig1:1678031..1678302 | 1622815290.4154582-UTR-P-fluviatile_contig1:1678031..1678302 | Porterinema fluviatile SAG_2381 | UTR | P-fluviatile_contig1 1678032..1678302 - |
| 1693561408.4126472-UTR-P-fluviatile_contig1:1678031..1678302 | 1693561408.4126472-UTR-P-fluviatile_contig1:1678031..1678302 | Porterinema fluviatile SAG_2381 | UTR | P-fluviatile_contig1 1678032..1678302 - |
| 1622815290.4282577-UTR-P-fluviatile_contig1:1678677..1678789 | 1622815290.4282577-UTR-P-fluviatile_contig1:1678677..1678789 | Porterinema fluviatile SAG_2381 | UTR | P-fluviatile_contig1 1678678..1678789 - |
| 1693561409.2719727-UTR-P-fluviatile_contig1:1678677..1678789 | 1693561409.2719727-UTR-P-fluviatile_contig1:1678677..1678789 | Porterinema fluviatile SAG_2381 | UTR | P-fluviatile_contig1 1678678..1678789 - |
| 1622815290.440165-UTR-P-fluviatile_contig1:1679544..1679650 | 1622815290.440165-UTR-P-fluviatile_contig1:1679544..1679650 | Porterinema fluviatile SAG_2381 | UTR | P-fluviatile_contig1 1679545..1679650 - |
| 1693561409.2824793-UTR-P-fluviatile_contig1:1679544..1679650 | 1693561409.2824793-UTR-P-fluviatile_contig1:1679544..1679650 | Porterinema fluviatile SAG_2381 | UTR | P-fluviatile_contig1 1679545..1679650 - |
| 1622815290.449956-UTR-P-fluviatile_contig1:1680453..1680676 | 1622815290.449956-UTR-P-fluviatile_contig1:1680453..1680676 | Porterinema fluviatile SAG_2381 | UTR | P-fluviatile_contig1 1680454..1680676 - |
| 1693561409.2905636-UTR-P-fluviatile_contig1:1680453..1680676 | 1693561409.2905636-UTR-P-fluviatile_contig1:1680453..1680676 | Porterinema fluviatile SAG_2381 | UTR | P-fluviatile_contig1 1680454..1680676 - |
| 1622815290.4614313-UTR-P-fluviatile_contig1:1681706..1681769 | 1622815290.4614313-UTR-P-fluviatile_contig1:1681706..1681769 | Porterinema fluviatile SAG_2381 | UTR | P-fluviatile_contig1 1681707..1681769 - |
| 1693561409.301062-UTR-P-fluviatile_contig1:1681706..1681769 | 1693561409.301062-UTR-P-fluviatile_contig1:1681706..1681769 | Porterinema fluviatile SAG_2381 | UTR | P-fluviatile_contig1 1681707..1681769 - |
| 1622815290.6767697-UTR-P-fluviatile_contig1:1695043..1695160 | 1622815290.6767697-UTR-P-fluviatile_contig1:1695043..1695160 | Porterinema fluviatile SAG_2381 | UTR | P-fluviatile_contig1 1695044..1695160 - |
| 1693561412.184818-UTR-P-fluviatile_contig1:1695043..1695160 | 1693561412.184818-UTR-P-fluviatile_contig1:1695043..1695160 | Porterinema fluviatile SAG_2381 | UTR | P-fluviatile_contig1 1695044..1695160 - |
The following CDS feature(s) are a part of this mRNA:
| Feature Name | Unique Name | Species | Type | Position |
| 1622815290.4707878-CDS-P-fluviatile_contig1:1681769..1681790 | 1622815290.4707878-CDS-P-fluviatile_contig1:1681769..1681790 | Porterinema fluviatile SAG_2381 | CDS | P-fluviatile_contig1 1681770..1681790 - |
| 1693561409.3089304-CDS-P-fluviatile_contig1:1681769..1681790 | 1693561409.3089304-CDS-P-fluviatile_contig1:1681769..1681790 | Porterinema fluviatile SAG_2381 | CDS | P-fluviatile_contig1 1681770..1681790 - |
| 1622815290.481396-CDS-P-fluviatile_contig1:1682509..1682689 | 1622815290.481396-CDS-P-fluviatile_contig1:1682509..1682689 | Porterinema fluviatile SAG_2381 | CDS | P-fluviatile_contig1 1682510..1682689 - |
| 1693561409.3176174-CDS-P-fluviatile_contig1:1682509..1682689 | 1693561409.3176174-CDS-P-fluviatile_contig1:1682509..1682689 | Porterinema fluviatile SAG_2381 | CDS | P-fluviatile_contig1 1682510..1682689 - |
| 1622815290.4934282-CDS-P-fluviatile_contig1:1683116..1683290 | 1622815290.4934282-CDS-P-fluviatile_contig1:1683116..1683290 | Porterinema fluviatile SAG_2381 | CDS | P-fluviatile_contig1 1683117..1683290 - |
| 1693561409.3269086-CDS-P-fluviatile_contig1:1683116..1683290 | 1693561409.3269086-CDS-P-fluviatile_contig1:1683116..1683290 | Porterinema fluviatile SAG_2381 | CDS | P-fluviatile_contig1 1683117..1683290 - |
| 1622815290.5053313-CDS-P-fluviatile_contig1:1684019..1684148 | 1622815290.5053313-CDS-P-fluviatile_contig1:1684019..1684148 | Porterinema fluviatile SAG_2381 | CDS | P-fluviatile_contig1 1684020..1684148 - |
| 1693561409.7476406-CDS-P-fluviatile_contig1:1684019..1684148 | 1693561409.7476406-CDS-P-fluviatile_contig1:1684019..1684148 | Porterinema fluviatile SAG_2381 | CDS | P-fluviatile_contig1 1684020..1684148 - |
| 1622815290.5145404-CDS-P-fluviatile_contig1:1684670..1684932 | 1622815290.5145404-CDS-P-fluviatile_contig1:1684670..1684932 | Porterinema fluviatile SAG_2381 | CDS | P-fluviatile_contig1 1684671..1684932 - |
| 1693561411.6320233-CDS-P-fluviatile_contig1:1684670..1684932 | 1693561411.6320233-CDS-P-fluviatile_contig1:1684670..1684932 | Porterinema fluviatile SAG_2381 | CDS | P-fluviatile_contig1 1684671..1684932 - |
| 1622815290.5238647-CDS-P-fluviatile_contig1:1685378..1685491 | 1622815290.5238647-CDS-P-fluviatile_contig1:1685378..1685491 | Porterinema fluviatile SAG_2381 | CDS | P-fluviatile_contig1 1685379..1685491 - |
| 1693561411.65663-CDS-P-fluviatile_contig1:1685378..1685491 | 1693561411.65663-CDS-P-fluviatile_contig1:1685378..1685491 | Porterinema fluviatile SAG_2381 | CDS | P-fluviatile_contig1 1685379..1685491 - |
| 1622815290.5351424-CDS-P-fluviatile_contig1:1686008..1686322 | 1622815290.5351424-CDS-P-fluviatile_contig1:1686008..1686322 | Porterinema fluviatile SAG_2381 | CDS | P-fluviatile_contig1 1686009..1686322 - |
| 1693561411.671234-CDS-P-fluviatile_contig1:1686008..1686322 | 1693561411.671234-CDS-P-fluviatile_contig1:1686008..1686322 | Porterinema fluviatile SAG_2381 | CDS | P-fluviatile_contig1 1686009..1686322 - |
| 1622815290.5464404-CDS-P-fluviatile_contig1:1686857..1686990 | 1622815290.5464404-CDS-P-fluviatile_contig1:1686857..1686990 | Porterinema fluviatile SAG_2381 | CDS | P-fluviatile_contig1 1686858..1686990 - |
| 1693561411.687657-CDS-P-fluviatile_contig1:1686857..1686990 | 1693561411.687657-CDS-P-fluviatile_contig1:1686857..1686990 | Porterinema fluviatile SAG_2381 | CDS | P-fluviatile_contig1 1686858..1686990 - |
| 1622815290.5586026-CDS-P-fluviatile_contig1:1687724..1687826 | 1622815290.5586026-CDS-P-fluviatile_contig1:1687724..1687826 | Porterinema fluviatile SAG_2381 | CDS | P-fluviatile_contig1 1687725..1687826 - |
| 1693561411.7017233-CDS-P-fluviatile_contig1:1687724..1687826 | 1693561411.7017233-CDS-P-fluviatile_contig1:1687724..1687826 | Porterinema fluviatile SAG_2381 | CDS | P-fluviatile_contig1 1687725..1687826 - |
| 1622815290.570855-CDS-P-fluviatile_contig1:1688100..1688228 | 1622815290.570855-CDS-P-fluviatile_contig1:1688100..1688228 | Porterinema fluviatile SAG_2381 | CDS | P-fluviatile_contig1 1688101..1688228 - |
| 1693561411.7126844-CDS-P-fluviatile_contig1:1688100..1688228 | 1693561411.7126844-CDS-P-fluviatile_contig1:1688100..1688228 | Porterinema fluviatile SAG_2381 | CDS | P-fluviatile_contig1 1688101..1688228 - |
| 1622815290.5839396-CDS-P-fluviatile_contig1:1688896..1689014 | 1622815290.5839396-CDS-P-fluviatile_contig1:1688896..1689014 | Porterinema fluviatile SAG_2381 | CDS | P-fluviatile_contig1 1688897..1689014 - |
| 1693561411.7233253-CDS-P-fluviatile_contig1:1688896..1689014 | 1693561411.7233253-CDS-P-fluviatile_contig1:1688896..1689014 | Porterinema fluviatile SAG_2381 | CDS | P-fluviatile_contig1 1688897..1689014 - |
| 1622815290.5942361-CDS-P-fluviatile_contig1:1689522..1689618 | 1622815290.5942361-CDS-P-fluviatile_contig1:1689522..1689618 | Porterinema fluviatile SAG_2381 | CDS | P-fluviatile_contig1 1689523..1689618 - |
| 1693561411.7309198-CDS-P-fluviatile_contig1:1689522..1689618 | 1693561411.7309198-CDS-P-fluviatile_contig1:1689522..1689618 | Porterinema fluviatile SAG_2381 | CDS | P-fluviatile_contig1 1689523..1689618 - |
| 1622815290.604195-CDS-P-fluviatile_contig1:1690408..1690517 | 1622815290.604195-CDS-P-fluviatile_contig1:1690408..1690517 | Porterinema fluviatile SAG_2381 | CDS | P-fluviatile_contig1 1690409..1690517 - |
| 1693561411.7379553-CDS-P-fluviatile_contig1:1690408..1690517 | 1693561411.7379553-CDS-P-fluviatile_contig1:1690408..1690517 | Porterinema fluviatile SAG_2381 | CDS | P-fluviatile_contig1 1690409..1690517 - |
| 1622815290.6153743-CDS-P-fluviatile_contig1:1690826..1690930 | 1622815290.6153743-CDS-P-fluviatile_contig1:1690826..1690930 | Porterinema fluviatile SAG_2381 | CDS | P-fluviatile_contig1 1690827..1690930 - |
| 1693561411.7477977-CDS-P-fluviatile_contig1:1690826..1690930 | 1693561411.7477977-CDS-P-fluviatile_contig1:1690826..1690930 | Porterinema fluviatile SAG_2381 | CDS | P-fluviatile_contig1 1690827..1690930 - |
| 1622815290.6246543-CDS-P-fluviatile_contig1:1691429..1691552 | 1622815290.6246543-CDS-P-fluviatile_contig1:1691429..1691552 | Porterinema fluviatile SAG_2381 | CDS | P-fluviatile_contig1 1691430..1691552 - |
| 1693561411.7564924-CDS-P-fluviatile_contig1:1691429..1691552 | 1693561411.7564924-CDS-P-fluviatile_contig1:1691429..1691552 | Porterinema fluviatile SAG_2381 | CDS | P-fluviatile_contig1 1691430..1691552 - |
| 1622815290.633868-CDS-P-fluviatile_contig1:1691850..1692066 | 1622815290.633868-CDS-P-fluviatile_contig1:1691850..1692066 | Porterinema fluviatile SAG_2381 | CDS | P-fluviatile_contig1 1691851..1692066 - |
| 1693561411.7639232-CDS-P-fluviatile_contig1:1691850..1692066 | 1693561411.7639232-CDS-P-fluviatile_contig1:1691850..1692066 | Porterinema fluviatile SAG_2381 | CDS | P-fluviatile_contig1 1691851..1692066 - |
| 1622815290.6490588-CDS-P-fluviatile_contig1:1693658..1693964 | 1622815290.6490588-CDS-P-fluviatile_contig1:1693658..1693964 | Porterinema fluviatile SAG_2381 | CDS | P-fluviatile_contig1 1693659..1693964 - |
| 1693561411.9931526-CDS-P-fluviatile_contig1:1693658..1693964 | 1693561411.9931526-CDS-P-fluviatile_contig1:1693658..1693964 | Porterinema fluviatile SAG_2381 | CDS | P-fluviatile_contig1 1693659..1693964 - |
| 1622815290.6615474-CDS-P-fluviatile_contig1:1694983..1695043 | 1622815290.6615474-CDS-P-fluviatile_contig1:1694983..1695043 | Porterinema fluviatile SAG_2381 | CDS | P-fluviatile_contig1 1694984..1695043 - |
| 1693561412.0054803-CDS-P-fluviatile_contig1:1694983..1695043 | 1693561412.0054803-CDS-P-fluviatile_contig1:1694983..1695043 | Porterinema fluviatile SAG_2381 | CDS | P-fluviatile_contig1 1694984..1695043 - |
Sequences
The following sequences are available for this feature:
protein sequence of mRNA_P-fluviatile_contig1.128.1 >prot_P-fluviatile_contig1.128.1 ID=prot_P-fluviatile_contig1.128.1|Name=mRNA_P-fluviatile_contig1.128.1|organism=Porterinema fluviatile SAG_2381|type=polypeptide|length=896bp
MSSMIASQRLQAKAAARCGETERRAGADQPGENKQHQRRRTAVSPPPRPP AATGGGSNKRPKKSDVPKARSPAKSVANPRVQGPNRPCSRKHVGGRGSAT KQGQSKQSTQQHDKKKTQKQQQIKKRKAASPPKGNKGTGSQRKGSKGGKR PKSEAKGKCNRGASAAAFVLPAGFRKMLGKGPGAKQRKLFKLKKSLVPLG IWPAWGDGEAFDLAPEWKASLLKRYENPPPYKKLKANLYPESSLRGLVPV DEIPLCHCSVEDGCNANCINRLLQMECVPGRCPTLREGSTHCQNNAIQTK TFPSTEIFRTFEGRGWGLRLCDEKGAVAGTILHEYLGEVIMMDECRKRLR KVGRKGVGGSSSDFYFASLDGNLVLDAGPMGSEARFANHSCAPNCLLQKW SVLGETRVVLVAARNLSVGEELTYNYQADTLGGFVERQKCLCGERQCSGF IGGELVAVKEQEWQRRASKVMSQAKPQLDVVRELVYEGQELGYQVAAEGE GEEAREDGDMGSCSAVRYRGREMECLSIMLKEGDSWLERLAEVLEGRAES AVAAANASVYVEEKAPVADTSRRTSSRASRGSWKRIRAYDDADAGAGADT DNKEEEEPRVVDLVQLEKVLEVAPAGLQVHEAVKAKKTVARAGQAAQTVW ALLDAAARHGLEGVKVPAARRIVQQEAAAACAAGAGVASAAAGGVARDTP VGSNPPDGMEEEEKEGPIALPPKPRMTQVYQAIRTCRGLAPVFIPGASEL EKLVASAEAWAQEACDMLKIKTDADKDASNNAKNGPRKNIGGGSVADNGT GETGTSKWAKLGLEGSAMTALEEKLKEVAEFSLAREQREEEAAKERLLKE KQDRKERDRQARLEKAARRQQARWRKGLPQTAEGRREGGICRGIP* back to topmRNA from alignment at P-fluviatile_contig1:1678032..1695160- Legend: UTRpolypeptideCDS Hold the cursor over a type above to highlight its positions in the sequence below. >mRNA_P-fluviatile_contig1.128.1 ID=mRNA_P-fluviatile_contig1.128.1|Name=mRNA_P-fluviatile_contig1.128.1|organism=Porterinema fluviatile SAG_2381|type=mRNA|length=17129bp|location=Sequence derived from alignment at P-fluviatile_contig1:1678032..1695160- (Porterinema fluviatile SAG_2381) CTACCTACAACGCTGTTGTGAAACACGATGCTCCCATCGCCGCGCCCCGT
CGCCGCGCGTGCCCGTCGGTGTTGGTACAGTGTGGGTAGCCGCGCCTGCT
GCGGTGTCGCGTGAAACATGTCTAGCATGATAGCATCGCAGCGTCTTCAG
GCGAAAGCAGCGGCAAGATGTGGGGAGGTGAGGTCGTGTTTGACTTGAAG
TCGCGAGAACCAAAATGTATTAGGCAACGTTTGAATCTCGAATCGCTGTT
TTGCCTCTCCGATCGGCCCGGCTCTCCATGAAGGTCCTCGTCCCATCCAC
TTGTTGTGGCACGAAGATTGTAAGGTTCTCGGTTCGTCCTTGCAGAAAGA
TGCTTTATGTGTGTTTCCGTACTATCGGCGGCAAGATTCGACGTCATTTC
TGAGTGATCACAACCCATCGTAAACGCGCGCACAAGCACAAGGCTGCACA
CCGCCCGCGCCGGTTTGTCTTCGTGCATCGACGTTGGGGTTGCATGCAGC
TCACGCGCCAAAGTCAAAATGGTGTGATTCCATGGCATATGTTGGCATGG
CTTCATTTCATAACATGGAGACAGCGCTTGCCGACGATGACAGGCCCCCC
ACAACTGTGGGTGCTTTGGGTCAGAAGCAGCCGTTGCAAACTGCGCGTTA
ATTCCCAACCGGCCGATACTCCTGCTACACGCCACACGCCTCAGTTCGTG
TCTGATTTCCCAGCGCTACACATTGTCTTGTCGCGATGTTGGCTTATCTT
TCAAGAGCTGGGCGACTGGCGGAAACTATCTCGCCCTGTAGGATGCATTG
CGTTTTGTAGAAATGGTGCAGGCGACGCAAGTGCAACGCGTTTGTTGGCG
ATGTCGGCGTCGATCAAGTGTGAGCGACCGCGACAATGGTGTACTGGCGG
CGAGATTCGTAGGCAATCCGCCACGTGCAGAACGGCCGTGATTTGTGTAC
GCTTTTGTTGTATTCGTCCTCTGCAAGGGGGGAGGGCAACTTTTTCGCTC
TCATGTACCTTCAGCTCATGTACACCCAAGTCCTCCACGGCACTGCACAA
AACGTACCACATTTTTCAAGCAGGCTGCCGTACGTATCGAGGGCACAAGC
GCGGCAGCATCATTCCCGCTGACAGAGAGAAGGTAGCCAGAATCCCATTC
ATTTCCCTGTCGTTCGTTGTGGCCTCCGCAACTCCTCGATCAACAGACCG
AGAGACGAGCGGGGGCAGACCAGCCGGGCGAAAACAAACAGCACCAGCGC
AGGCGCACGGCCGTTTCGCCGCCCCCGCGGCCGCCTGCTGCCACCGGCGG
TGGCAGCAACAAGCGGCCAAAAAAGTCAGATGTGCCCAAGGCGAGATCTC
CGGCGAAAAGCGTGGCAAATCCTCGCGTACAAGGTCCGAACCGGCCCTGT
AGCAGAAAACACGTCGGCGGGAGGGGCAGCGCAACAAAGCAGGGACAGTC
GAAGCAGTCGACGCAGCAGCATGATAAGAAGAAGACGCAGAAGCAGCAAC
AGGTGAAGTGAACAAGGAGGAAGCCGAAAAGTCTCCCGCTCGACGGCAGA
GTAGCGGCGATAACGGGAAGAGGGAGGCGAAGTGAAAACTGGCAGAGAGG
CTCGGCGGAAGCTATCGGGGTGGTAAGAGAGAGGAAGGGAGGGGAGGACC
CACTTATCACCGTGAACAGGGAACTGACCCGCATAAATCGTGCTGTCTGC
GGAGCTCGAAAAGCTGTTGGTGCACGCGAGCCCTGCTTGCGTCTTGCAGC
AGACTGCGTTACCCCGAGGAAGTCGTCCGTCGGTGTTCTTGGTTTGAATG
GCTGATCGCTACAGTTCACAAGCTAGTACCAGATTCCTGGAACTGATGTC
GACGTACAGACTCTCGTGTGACGTGGGGGGGGGGGTAATCTTATGTTTTG
CATGCCTTTGCGATTATGCCATTGACCACGCGTCCTCGAGAGGACGGAAC
ATTGTTCCCACAGGACCAATCACCGATGGCCAATCGTTCCTTCCTACTTT
GCCAAAGGTGGCTCAAATATGTCTTCCCTAGTCCTTCTGTCCTACCGATG
TCACTTCACGCCTTTTCAACCCACATCCTACGCCCCAGTACAGCTGCCGT
CTTCTCCTGGCTATTCCATGACTCAACCGTCTTCCAGCATTTTCCTTCTA
CTTTTCGCAGCCCAGTCATATACACTTCCCCCTCCTTCTTGTACGACGAA
CATTCCGCAACTACATGAACCCGATTGCACACGTGGCCACAACGTTTGAA
CTCGTCATCGTCATCGTCTACCTTCCTAGATCTTCGTCTACGTTCTCGAA
GGTCATTGTCCCCGGTCCTAAATTTGACCTTCAGCTTTTTCCCTTCATCC
GTTGGTCCATGTAGGTACTCCTTGTACCCTATCCCTTCTTTCAGCATCCC
GTACTTATCTAAATCCTCCTTCTCCTTGGTTTCTTTGGTTAGTTACTGTT
CTTCCTCTCGGCAAAAGCAGCAATATATCTCCTCCTTGAACCCCTCTAGA
CCTTCCATTTCCAGCACATCGTCTTCGTCAATGTCGAACTTCTTCCAAAC
GTCATCTACAACCTTGACCCACTCCGTGGGTTGCCTACCTCTCTTCTTGT
TTGCCCACTTCGCCTCCCAAGCTATTCTCGGCAACCTCTCCTCTCCCATG
CCGCGTATCGTGTGACGTGGGGTTTGTTGTTGAACGGGCTGTTCAGCAGG
TCATCGAAATGGCAAACATCACCCACCCTCAACTGCATTTGCATTTGCAG
GTGCGGTGTAGCGCTGGTGAAGAAAGGCTTGCCCCCAACATGCCGCCGCT
GTCGTGATGCTGCGCTCCGCTATTGTGCATTACTTGGTCGTACTCATATC
GGCCTCAAGACTTGGGCAACGTCCGAAGTTTAACCGATAAAAAGGGGGGC
GAGGGTTTTGGCGGCGGTCTTACAAGACGGGGCAGGCGATGCAACAGCGC
GGCCTGACTTCCGCAGCCATCGATCTCCCCGTCCCCGGTATATCAGGCAA
AGGCACAGCCTGAAGCACCAGCCGCCGCTTGCAACTGCTTTAACCTTGTG
GCCCCGCCTTGACCCTCGTGCCCATGACCTCAACCTCGCCCCAGATTAAG
AAGAGGAAGGCAGCGTCTCCGCCCAAGGGCAACAAGGGGACAGGGAGCCA
GAGAAAAGGAAGCAAGGGCGGGAAAAGACCGAAGTCCGAGGCCAAGGGGA
AGTGCAACAGGGGCGCATCAGCGGCAGCATTTGTCCTCCCAGCTGGTTTC
CGAAAAATGCTGGGCAAAGGCCCGGGTGCGAAGCAGCGAAAGCTTTTTAA
ACTTAAAAAGGTGAGGGCGCCAGTTTCTTCCGATGACGTTTCCTTTTTGT
TTGTTATTGGCAGTCGTGCCTTGTCTCCGATCCGCGATGAAGAGTCGCTG
TTTCCTGCTCCATCCGACCACGCCCTGCAACCCACCAACCGATGACTCGT
TTCCGGCCATACGCCATCAACGCAATTCAGCCCCGAGCCAGCTTGAAAGA
ACAAAAAAAAAACTCTGACTCAAGCCCAAGCCATTTATTAACCCAAGCTC
ACCTGACTGGAGCCGGTTGCATTCAACCGCGCCGTGTCGTGGTCCCGGCA
ATTTTCAGTCGCTCGTGCCGCTGGGCATATGGCCTGCCTGGGGCGATGGC
GAGGCCTTCGATCTGGCGCCGGAGTGGAAAGCTAGCTTGCTCAAGCGCTA
CGAGAACCCGCCGCCGTACAAGAAACTCAAGGTCAGCATGAAAATTGCGG
CACGGGTGGGGGAGTGTGAGGGTGCCCCCGTGTTTTTTAGCATGTTGGTC
CAGCGTCGAGAGGCACCCAGGTTCGCCGATATGCGCCGGCACGTGGCCAG
GGGAAAGCAGACGTTCCGATTAAAAGTGATGATTGTTCGTCCACGGAGAT
ATCCCGCGCACGGCCTGGCGGTACAAGGGGCGGTTTGCGCGCCTTAGTGG
TACATGATGATAAAATGGAGCGGAAAGATTTTCGCTGTACCGCAAGAGCG
CCCTCTCGTGCGTGCCACGGGTTGCGGTGTACACACCATGTTGGAAGTGA
AGCAGTTCGATTGGGCGAACCGATGCTGTCGGTCGAAAACGTTCAACCAC
TGTGCGTACACCCACCGTCTCGCCCATGCCTGCGCTGCCGAAGCGTTTGG
TAGAGTTCCAGTTCTTTCGTCATTCGCCCGTTTCCTGAGATGGACGCGCG
CGTATCTTTACCCTGTGCTTGAGCACGCAGGCGAATCTGTACCCGGAAAG
CTCTCTGAGGGGTCTGGTTCCCGTCGACGAGATTCCGCTCTGCCACTGCA
GCGTCGAGGACGGCTGCAACGCCAACTGCATCAAGTAAGCGTTGTCCTTA
CATTGGATGTAGGAAGGAGTCGAGGCCGAACGCGCGAGGAAGTCTGCCTG
CTGTGCGAAATCTCATTGTTTCCGGGGCGCGCGATTCTTCGTATTGCCCG
TCTCTGCAGTGCTTGTCGCAGGCAGTGCGAGCGAAGGAATCCACGCGAGT
ACCTTTTTAGGCAGACAGGCAGATCTATTCGCATTCGTCCGGCGTGCGCG
TGCCTCGAGAAGTTCGTAGATCACAGGTGGTGATTCCCGGCAACGACGGC
GATTTTTCCTTTCGGGGTCTCTGCTTGCGCCTTGCCCTCACAGCCGCCTG
CTGCAGATGGAGTGTGTCCCTGGCCGCTGCCCGACCCTGCGGGAGGGATC
CACGCACTGTCAGAACAACGCCATTCAGACGAAGACATTCCCATCAACTG
AGGTAAGGCGGCTTCATTTCTTGCGTCTTCATAACAGAAGTTTCTCTGGA
GGAATTGAAAGGTAAAACGCAAGCGTGACATGCTATTGGCACCCCCGCCA
TTGGATCCTGATCCACATCAGCAATTCTGTTTCTCAAAGTCAGATTGCCG
TGACGTGTTTGTTCGCATGGAAGATTCGGCATGCTTTGTTGACAGGACTT
GAGGTGCTGGTAGCTCGAATACGCTGTTTTTCGTGGGCATTGCGGAGGGC
ACAGAAGGTTAGGTTCGTTGATTATTCGCGCACTTGGAAGCCATCCGACC
CACGGATGGCGAGCACAAACGTGTTGTTTTATTTTGCGATACCTGTCCCC
CTTGATACTTTGTTTTGTGTACTTGTTTGTGCTCTTTTTTGCTTTCGTTT
TTTGCTTTCCTTTTTTGTTTTCTTATTTGTTTCTTATTTCGTTTTCTTTT
TCGTTGCCTTACACTGTTTTTAATTTGTTTTTGTTTTTTGTTTCTTATTT
CGTGGTGTTATACTGTTTTCTTACTTAATTTTCCTATCTTGTTGTTTTGC
AGGCTGCGATTGGTCTTCCTGGTTTGTTTCCCCTACCTTGATTGGAGATG
CTTCAAAACGGTGTTTACTTTTGAGCAATCTTTCTGCCTCGAGATAAAAG
CGTGAAAGACGTTCGCTGCTGTGTCGGTTCTCAAAACTCCGGCCGGAGGA
GGGGTAACGCCGTCCCCGTCGCACGCCAACTTGATTGAGGAAAGCGCGTT
GTCTCCGTCATCTCGGTCGCGTTCGTTGGCGTCTGGCGACAGATCTTCCG
CACTTTCGAGGGCAGAGGCTGGGGGCTGCGGCTGTGCGACGAGAAGGGGG
CTGTGGCTGGCACCATTCTGCACGAGTACCTCGGCGAGGTGAACGAACGC
CTCGGACCTTTGCCTGTTTGATGGGCGCCCTGTTGCAATCTATGCGTCGA
CAACTGAATATTGATGGTGGTGGTGGTCGTGGTGAAGTGTGGTTGAGGTT
GGTGTTGTGCGATTCGCGTTGTCGTCGCTGCCTTTTTTTTTTAACGGTGT
CCAAGCTTTCACGCAGATTTTCGTCATAGATTCAACTCAATACTTTCGCC
TGGTCCTTTCCGATTCCGTACTCACCAGCTTACAGAAATGGATTAAGCCA
GCTGCACACAGGGAACTCCAACGGCGGTGGTGTTCCCGTTAATGCCACTG
ATCGGATGCAACCGTGAGATGTACGCGTAAAGGTTCGCGAGTGGTGCAAT
TTTTGCTTTCTATGCAATCACGGTGCTAGCCACCAATGCCCCTGCATTCT
TACTGCGTGTCCTGGATGAAGAGGCGGCTGTGGATGTGCAAAGGATCATT
TTAAGTTTTGCTCACGATCATTCGATTTTTTACCTGCCTTGCGAAGGTGA
TTATGATGGACGAATGCCGCAAACGCTTGCGGAAGGTGGGGCGTAAAGGA
GTGGGGGGGTCCAGCAGCGATTTCTACTTCGCCTCCTTGGACGGGAACTT
GGTTCTGGATGCTGGTAAGTGGTTTCGGAGGCGTGCTTCCCACAAAATGT
ATCGCCTGGATGCGCTTCTCAAGGCGAAAAAAAGGAAACGGCCTCTCCAA
CAGCGCGGGAGAAGATTCGCTGTCCTGCTTGTCAATGAAATCGCGTGCGC
ACTCGATATATGTCGATGCACGAGGTGCATGTTTGTGGTTAACTGATTTC
GTATTCCTTGGTATGTGTCGATGCACGAGGGGCATGTTTGTGATTTATTA
GTTTTCGTGTTTCTTGATGTGTGTCGATGCACGAGGTGCATGTCTGTGAT
CAACTGATTTCGTGTTCCTTGATATATGTCGATGCACGAGATGTATGATT
GTGATTATCTGACTTCGTGTTCCTTTCGTCGGATCCTGGTGTAAACGGCG
GGTAACTCCTTTTCACAGGCCCGCCTGGGGCTCTACCATATACACTTAAG
CGGTTACAATTCAAGAACGAGGTCCGATGAGCCGTAAAAGGTCTCCTACA
CCCGGCTTTCTGTTCTGTCGAATTGAGTGCATGGACTTGACGGGTTCGCA
CAAGCGGTTTTCGTGGCTCTCGTAAATCCTCTTCCTTCGATTCTCTTATT
CCGGAGCCGCTACAGTATATTTGGTTTTCTCGTCCGCGCCGACTGCGTTT
GTGTTTGCCGCAAACGGAACAAACGCGCCCAGGTCCCATGGGCAGCGAGG
CCCGTTTCGCGAATCATAGCTGCGCCCCCAACTGCCTGCTGCAAAAGTGG
AGCGTGCTCGGCGAGACTCGCGTGGTGCTGGTCGCTGCCCGAAACCTTTC
GGTCGGCGAGGTAGGTCGGGATGGTAGGGGGTGGGGCTGGAACTTCGTCG
GATTTCCTAAGCGGCGTTCATCCATCATTTTTGCTTTGATCGGGCTGCGA
GGCCGGGCAAGGGGGTTGTGAAAAGCGGGGGGAATTTTTTTTTTGTTCTC
ATCGTGCGAAAAGAAAATTCTTCGTGGTTTTTCTTTCAGATTCTGGCTTG
CCTCTGATTGCAAGCGCTGCTGCTGCTGCTGCTGCTGCTGCTGCTGCTGC
TGCCCCCGTGTTGTGGTGGCGGTTGGTGCTGCAGGAACTGACGTACAACT
ATCAGGCCGACACCTTGGGAGGGTTCGTGGAGAGGCAGAAGTGTCTCTGC
GGGGAGCGGCAGTGTTCAGGCTTCATTGGCGGAGAGGTGAGGATAAACCG
CATGCGCACCAAAGCTTCAACGTTTGTAGACACGGTTTGGACGAATTCCG
TTCCGTCTGCGGAGTGGTGTCAAGAACCCACTTACTCACACAAACGCTAA
TAAACACGCACAAGATCGCTGACATTTGACACCGCTGCCGACCCACGCCC
CCAGTCTTGACTGTTGGGTTGCAAAGAACAGGTACAACGAAGTAAGTTCA
ACCTCTCCGATTGTCGAAAAATCAGGCTTCGCTGAATTCGTGCGGTCCCA
CACTTTGTCCATCCTACCGTCTTACCTTTTTTCTGCATGCGATTGGGAGG
CAAGTGTGGCGTGCAAGGGAATCGGCATGCAGTCGTTTGGCAACGTTGCC
CCAGATGCGGCAGTTGGCGCATGTACGAGTCACGGCAGCAGATTGGCAGC
GTTGTTCAATGAGTTTTTTTCAATATTTTTGATAATTCAAAGGTTTGTGC
CAATATATTTTCACAGGTAAAACGTTACTCGTCAGGAGGGTAAAACATTA
TCTGCGGGAGGAAGAGACGTAAAACAGAACAAGCATCCGCGTTTGCATTA
TATCGCCTATTAATCAACGCACGCCAAGCTCCCTCACCCTGAATCGTGCC
TTGAACCCTGACCCTCAGCCCGCCCCTCGGTCTCGTCCCGCCTTGGACCC
TGTCTATCCCTCGCGCCATCCTCTTGTGTGGATGAATTGGGTACCGTGTT
CCGTATACCGTAATGTAAAGTTGGTGGCGGTGAAGGAACAGGAGTGGCAG
AGGCGCGCGTCGAAGGTGATGAGCCAGGCCAAGCCGCAGCTGGACGTGGT
GAGGGAGCTCGTCTACGAAGGCCAAGAGCTGGGGTACCAAGTGGCGGCGG
AAGGTAAACAACGCTTCTTGCGATTTGTTTGCTTTCCTTTTGCGTTAGCA
TGCAACCTGAACAATGTGAACCCTTCTGTCCATGATTGGAAGACATTTTC
TTTTCTTTTCAAGTCTCCCTGCTAGAGCTTCCATGGAGAAGGTGGTGTCA
AAGTGGGGCCGGTGTACGCTCCCGCACAATGAGTATGAGGGGTATCGTCC
GCTTCGGGTCCAAGGAGACCCGAGGACCCGGCCCCCTGAAAACCGCTACT
GCTGTGCAGCTGGATAAGTTTCTTTAGACTCTCATGTCACATCTGTTGGT
GCAACGTTCAGCAGGTGTCTTCATCTGCGATTGTCGCTGCTTCAATCAAA
ACATTCCGGAGGCAGTCTGGCCTGCACGCCGTCGCCCAAAGGTGCTTTTG
AGCTTGCACCAAGCCGGTCTAGCAATCTTGTCGTCCCACCAAATGCCCGC
CCCTTACGATCAGGCAGCATTCCTCTCCTTTGGTGCCACCGTTCAACGTT
ATCGTGTGGCATCCGTATCGTGTCCCTCGTTTCACAAGGAGAAGGAGAAG
AAGCACGGGAAGATGGAGACATGGGGTCGTGTTCGGCGGTGCGGTACCGC
GGCCGCGAGATGGAATGTCTTTCGATCATGCTCAAGGAGGGAGACAGCTG
GCTCGAGCGACTTGCCGAGGTGCTGGAAGGGAGAGCCGAGAGTGCTGTTG
CTGCTGCCAATGCTTCTGTTTACGTAGAGGAGAAGGCTCCCGTCGCGGAT
ACGTCACGGCGAACCTCCTCGCGAGCCAGCCGTGGCTCTTGGAAGAGGAT
CCGCGCCTACGACGATGCTGATGCTGGTGCCGGTGCTGACACTGATAACA
AGGTGACGTACCCCCCTCCCCCGAGTGTGGTGAAAAGTGCCGATGATGAT
GCTGATTAGCGTGTGACCAGACGCCCCCCCCCAAGCGCTGATGCCGGCGC
TGCTGATGCTGAATATGAGGCGACAAATTATCCTCGCCGCCCCCCAAACG
TGTGGCGAAAGTAAAGGAGGTGCTCGAATACGGGTTGTTGTCTTTGTTTA
CAGGAGGAACGATGCTCCGCTTCGAATGGGATGCGTCGTCGATGGTGAGA
AAATGCGCTGCTGGTAGCAGAAAAGCCACAATGTTACGATCCCTCTATTA
TCGCCAACACCACAATCGCGTTGATTGTACATGGACCAGGACGGCTTGGT
TGAGGTTCGTGAGGTTCAACCGTTGTGACGCCCTTCACACATCAAGCTTA
GGCGGGGGGGGTGTCATGCAAGGTACCGATTTAAATGGTCCTCAAGTACG
ATGCGGCAAATGTTTGTTAGTTTCATGTGGCCTGTCTAAACGGCTTCGCT
GCCATGAACGCCGCTGCAGGAAGAGGAGGAACCGCGTGTTGTCGATCTCG
TCCAGCTAGAGAAAGTCCTGGAAGTAGCGCCGGCGGGGCTCCAAGTACAC
GAGGCCGTCAAGGCTAAGAAGACGGTGGCAAGGTATGATTGACTGGGTGT
CGATGGCTAATTACAGGCACTTCGCGGAGGTTCAGGTGCAATTCAAAAGA
CGTGGGCGTGTGTGACTCGATTCTTCTTTCATCTGAAGCAAAAGCGGCTA
GTTGGGCTGTGCAGAACTAGCTTTGTCTTTGCGCAAAGAAACGGCCTTAA
AATTTCGCTTCCAATGCCCCGAGATGATATCGTTGAGAGTTCGGCAGGAC
GTCTGTCTTTGGTGTCCATTAGCCCCGCCGCTAGCTCCCCTTGCCCTCGT
TGGAGCAGTAACTGGCGGCCTCGCGCACCGCTCAGTCGCTTCAAATTCAA
GGCGAATAACAGGATGATTGACTACCTGGCCTGGACGTTCGTGGGATTGA
TCGCAACGGACAGCTGGCAGTCGCCCTGCTCTCATGCAACCCCCCGATTT
TCCCTTTCACCTCTTGTCCGACCGCAAGAGCCGGCCAAGCAGCTCAGACC
GTGTGGGCCTTGCTCGACGCCGCTGCTAGGCACGGGTTAGAAGGGGTCAA
GGTCCCGGCAGCGCGGCGCATTGTGCAACAGGAGGCCGCCGCCGCCTGTG
CAGCAGGAGCAGGAGTAGCATCAGCAGCAGCAGGAGGAGTAGCCAGAGAT
ACTCCGGTCGGGTCGAACCCTCCCGACGGGATGGAGGAGGAGGAGAAAGA
AGGGCCAATCGCCCTCCCGCCGAAACCGCGGATGACTCAGGTAGAATGAC
GAACAATGCCTGTGCAAAAGTCCCGTTCTGTTCAGGCCGAACAAGATGCA
TTCTATGAGCGCCCGGCCTGCTTGTTCTCTCCTCTTGCCACCTTGGCGGC
CGAAGAGCAAGCGTTTCGGCACTCACTTAGCTGCAATTCGCGGGGGCGTG
CGTAGTGCGTTGTCGACATGATCGCGTGCAATATTCGCCATCCTCATCCC
TCCTCTTGCAGAAGCAGGCCGCCGCTAGATTTTTGATCGTTGCTGCTGTT
ATTGTTGCCTTGTTTTGCAAGACGTCACACTCCCCGAACCATGTGTCTGT
GTGGCTTACTGCGTGTATCTTGCCGCCGGCGGGCGTGGTTTGTCGCCGCT
CCGGACATTCGATGGGTAACACTCCGGCCTGGTGAGCGGTTCCGTGATTC
CGCTGGCCGCCTTGATGAGATATGATGTTCTTCGCTCTAGGGGCTCAACG
GGCGCGGCGAAATTTCCCTCCGTGCGCGCGGTTTTTCGCTTTCTTTGGCC
TGTTTCTTAAAGGTGTATCAGGCAATCCGTACCTGCAGAGGGCTCGCCCC
CGTTTTCATCCCCGGCGCCTCCGAGCTCGAGAAGCTTGTCGCTTCGGCAG
AGGCCTGGGCGCAGGAGGCGTGCGATATGCTCAAAATAAAGGTGAGGCTT
CGATGCACCACATATTTTGGTCTCAGTTTACACGGCGGGAGGAGTGCGAA
ATGCTCAAAATCAATGTGAGACTTCTATGCACCAAAGCTTGTGGTTTTGT
TCCATACCGCGGTGTATGGGTGGACTTGGTCAGTGTTGTGAGCGGTGCTG
CGATCTCTTATGTGGCAGAGGGATATTAAAGTATCCACAGCTCGGTCATC
GCCTCCCATATTATTCGTTTGGAGCGATTCAAGGCTGAAATGAAAAGCAG
CTCGATGATGTGCAGCTTGGGGTATCGCAGCGCCTTGAAGAATGCCACAA
CAGGTTGGCTTCATTGTTTGTTCACACATGAGAAAGGTCAATGCCACATT
CCAAGTGCGGGTCGGGCGCTGTTCCTGTGCGATGGTGAAGGCATGACGTT
TGGCTTTTTTGCATTGCGTTGTTCATCTAACTTCGTTTTTTAGGGAATTG
GATCGATTACGAATCAGGACAGCTCCTCACCTTCTTTTTATCACTGGCAT
ACATGGCCTGCGATGCGTTTCCGTAGGTCTCGAAACGAACAAGTCGTCGC
AAACTTATTGTTCGTGGGGGCGAAGGCCTGGAGCATATCGCGCCGCTAGT
GATGTCTCGATGGGCAGTCCAAACATCTTGTTTGCTTCTACCGTGTGTTT
TGGGTATCTTCCTCGATCTGTCGCGTGGCCGCCAACCACCGCCTATTTTG
CACGACACGGCATCCAGCAGACGGACGCCGACAAGGACGCGAGTAATAAC
GCGAAAAACGGGCCCAGAAAAAACATCGGCGGCGGCAGCGTTGCTGACAA
CGGTACAGGAGAAACGGGAACGAGCAAGTGGGCCAAGCTAGGGCTCGAGG
GCTCGGCCATGACTGCCCTAGAGGAAAAGCTTAAGGAGGTGGCGGTGCGT
GCTGCTGGTGCTGCTGTCGCTGCTGCTGCTGCTGCCGCTGCCGCTGCCGC
TGCCGCCGTTCCTAGTGGTGGTGGTCGTGGCGGCGGCGTCCCCCTTGATG
GGACAGAATAATTCGTGTCTGGCGTGTGTGTGTACCAGTGTTCGCCGCGT
TTTATGTGTAGTTGTCATCATCGTGTATAAGTTTCACATGTCATAGATTT
GTCTCCATGGGAAGGTCCTGCGACCGCTGCATGAGGGCGGCTGGCGCTTT
GGTGGTGGCTCAAGTTAGATATTCTGTCTTGCTCGTACTCCTCCCTCTCT
TTTTTTCTTTTGTATTTCCTCTTTTCGCATTTTTTGCGTCATCTTATCTC
GCGTTGGTTCAAGTCGAGTCTCTTGTCATTTCCCCTCCCGTACTCCTGGT
TCACCCGTTCGCCCCCTGCAGGAGTTTTCTCTGGCCCGTGAGCAGCGCGA
GGAGGAGGCCGCAAAGGAACGCCTCCTGAAGGAGAAGCAAGACCGTAAGG
AGCGGGACAGGCAGGCCAGGCTCGAGAAGGCGGCCAGGCGACAGCAGGCC
AGGTGGCGGAAGGGCCTGCCGCAAACGGCAGAGGGAAGGAGAGAGGGAGG
GCAGGGGGGCTTCAACAATGGAAGTGGTGAGGCAAGAGAGATCAGTAGCA
GGGCGTGGTGTCCGGATATATTACTGCTGGTGTGCACGGCGTTTGCTCTA
TCTAGTGTGGAGGTCAAGCGGCACAAGTGCTACCACAAATCTTGAGCACA
AACAACAATCGTCTTCCATGAACCGAATGATTACGTGCAAAGACAGATGG
AAATATCCACAAGCGCCCGGCAATATCCCAACCGCAGCATCTGCAGCAAC
CATCACGGCTGCAAAAACAGCGAGGACCAATCACGAAGCACAGACACGTC
AAATCGGAGCACGGGCGAAATTAGAAACTCCGAATCAATCGAAGTTTGGG
TCTATGAAGCGCTTTTTGCGACGGAAGCACATGGACCGCGACAACAGAGC
CAAGCATGCCCGATCAAACGCATTGCGCATATTGTTACGTCTGCATCCCT
CACAAAAATCGAAGACAGGTGCCTCTTCAAACCATCGCCGCCATCACAAC
CGCCTAAACAATGGCACGCAATTGGGATCAGAGAACACAAGCATTACATC
AAACCGGTCAACATGAGGCGTTTCTCAGTCCCAAACCTTGAACCGGTGGC
GTTACAAATCCACCGCGCTGTGGGCTTTCATCGTGCGTTTGCGTGCGTGT
GTTCAGCAGACAACTGCAATGCCACAGAAAGCGGTGCCGGCGCCGCCCCA
ACCGATGGATCTGCCAACGAATCTGTCGAGGGATCCCTTGACGGCTCTTT
TGGAGGGTTCTCGGCCAGGGCCTGGGAGGCAAGGCGGTCACCGAGACTCG
GGAGGTGAACATCGCCTCTCGTTTTCTGTAGCAGCTGCAGGGTCTTCCAT
TGCTTGTTCGTGACTGTATTGATGAGAACAGCAGTTTATTTCGATGGCTT
GTAGCGGGGATGATTTTCGGGGAAGGTGGTCCGATTGCTGAGGAGAAATC
GAGGCACATCAGCGTCGCAAAAAAATCTACGCTCGGGGGGTACACTCATC
GGCGCAACTCAAAAACCTCCACGGCCCTTTGCTAGTGATCACGGCAGCCG
GGTAGAGCAGGCTGAGGAGGTGCGGCGCAAACACAGCTTCGTGGCGTTGG
CTCGCGATACGAATTGCCCAGGGAGGTCGCGTGGAGATGAAGCTGAGCCG
ACGCGACTGTCGCGCCATCGCGCTTGTCAGGGGATGCAGACGGAGGCGAG
GGCGAAGGTGAAAACCAAAGCCTGGGACCGGCCGGCGCTAGCCCGCGCCT
CACCTGCCCTTGCGCGCCACATTCCACGACGCCGAAGGCGCGGGATCAGC
CGCGTGAGCGCATCGATCGCATAGACACTCTCGAAGTTTAGCTTCCGATA
TTTTTTGCACATGAAGATCACGAGTTTGTGAGGTAGAGGAAATGTTGGCG
TGTGGGCGGTGACGATATCATTACGCATTCGCATGGGACAGACGCTCGCG
GCCAGGTTTTGCTCAAGACCAGGCGGTGTTCAATTAAAAAAACCGTCACA
TAATCCTGATTATTTTAAATGTACGACGCCAAGACGTTACCGGTATAAGA
ACGTCGCGCTTTCGGATAGCTCTCGATTCGATCCTTGCAGAGCCAGTCTT
TTCGGCCCTGGAAATGTCAAGCACCCAACCTTCGAAGTAGTCCCCGGGGG
ATTGCGGTAAACCATGAGTTTTGTACGCTTTTCGGCGGTTTTCCCATCTG
AGTTCCGGTTGAACGGGGCTGCTGTTCGCCTTTCCGGCCTACTGCTGTTG
TACAAGTTTTGTGGATCCAGGTTGACCCCACCCCTTCAGCTGACCATCTT
TTGTGTGGCAAAACCTACCTTCGCGACACAACAGCGGCCCTGGCGGCGGC
GGCGGCGGCGGTAGCGGCAAAGGCGGCGGGGGTGCGTTGGCCGGCGCGGA
AGGAGAAGGGCAGGACGAGACGGGTGGGTGGACGAAGAAGGACGAGATGG
ACTTGCACTGCCTCTGCAGGCTGCCGGCGGACACGGCTCGCTTCCGGACG
CTCATGACGTGCGATCTGTGCTCACGCTGGTTCCACCCCGCATGCGTCAG
GCTGAAGGTGTGTCGGTTTTATCCTTCGGAGCGCGTGACTTAGTCAAGAG
TGGGGTGGTGGGGGGGATTGAGCGCTCGTGTACATGCATGTGTGATTTTT
TGTGATTTTTTCGTACGAGCGGGGGAAGGGGGATAGACGAAACGGTTTCA
TGTTTTAGCTGTCGGCGTTCATCGTTCGACAATGATTGAAGCTGGTAGGG
CGTTTGGTTTGTGGACTTTCCTCACCTTGTTCCATCCGTGTTGAACATAA
AAAAGCTGCGGGAACATCTCCTGCTGGCATACAACGCCGATGACGCCGAT
GAAGCCCCACCTTGACGCCGCGAACGATGGCGAGGTACATAGCTGGGATA
GAGGCATGAGACATCAAACGTGCTCAGGACCGTTTCGATCTCACCTGATG
CCGGGAGGCTCGACCGGGTGATAGACAACGGATAAAGCCGGTTGCAGAAT
TACCACTCTCCGCCTTCGCCGAATTCCAACGATCAACATTTTGATGGCGA
TCGAGTTTCTTGCGCCAGCAACGGGTTGCAGCAACCGGCGCAAATTGAGC
TCCGTATGAAGCGATCTCACTCGCAGGACTACTGTGATCGACCATGAGAA
TCGTGAGCAGCCGCTTGACCCTGCGCGCATGCGAACCACAAGAGAAGGCC
TACGTCGCGGAAAAAACGAGCCTCGGTGTTTTTTTACGACTGCTGGGTAT
TGTGGAGCATGGTCCGTAACCTAAACGGCGACGTACATGAACAAACCGCG
CGAGTTTTGACCAGGGGGCGGCTGCACTCAAAATGAAATTGGTCGGCTGT
GACGTGACAGGAGCTACCTGAGCGCGAGCGGAACGGACAGGCTCTCGCTT
TTGTGTGTCCGATGTGCGAGCACTGCAGGGGCGGCGTGTCCAACTTCGCT
TGCCCTCCGTCCCTAGGTAACCGAAGAGTTGTTCGAGACATGGTTTCTCT
GTTTCGTGCCCGCTCCTCCTGATCAAGATCGTTCTTTTCTGGTGTTGGAC
TGGTATACTGCGAATATTTTTTTGTATCCGGTCGATCGAGTTTCCTTCGT
TCGCCGCCTTCCGATTGTTTCTGTGCCTTGCCAAGTGGCATGTACTCCGT
TGGTGACACCCTTGTGTTGAATTGCCGCACTTTATGCCTTGAGGGTGCAG
CACCCGCATTTCTGTGGAGTAACGCACCCGCGTTGCGTCGGGAATCTGTC
GACACGTCTACCCCGTAGCAAGCTACTATCACCCGGAACGTAGGTGACGT
CAGTTTTGCCTTGCCGATTGCTTTTGCTCGTTGTGTGCGAGCTGCGATGG
GTAGTACTTGGACACGAGAACGAGTCGTGGGTGATGCGTTCAGGACATTA
CCAAAACCAGATCAAACTCACCCCATAACAGAACACAACATGGCCACGGC
AAAACTCTCTGCGGCATGTTATGACTGGAAGGCTTTTACTTCGAAGTACA
ATATGTAAGCGTTTGTCCAGGAGAGAAAAGGCGTCAAATCTTGGATAACC
TGGCGCATGTGGTAAAGCACGTCGAATCGGCGACATGAGCTTTTCTCGCG
GCTGTCAAATTGACGAACGCGTTCCTTGCACACAAATACTCCGGAGTATA
CACCAACTTGAAGAAACCAGAACTTGACCTGTTGCACGGAAGTCCTAAAT
CTCGTATTTGCGTGTGATCAGGCTTCTACATCGGGAGGCGGATCCACCGT
CCCGGGCTGTCCGAGTTGGAGACCCTGATAAAGCACGCCGACAGCCTTCC
CGTCGACGGAGTGGAGGGCCAAGACTACCTCAGGTGCGCCAGCGCAGATA
CTCAGCAGTCTCCTCCTCGTTTCCTTGCTTCGTGTCCAAACGCAAAATTT
GGATGAGCAGCGCAAGGCTGGCGGTGCTGGTGGTGTTGTGCGCAGCCTTG
TCCCTTGGCTCGTGGCCGGATAAACGTCTTGCCTTCAAGTGTGCGTGTAG
TGTTTACAGTGGTGGGAAGACATAGGGATATGCGATCACCTTTCCTTCGC
GCAGTGACCGCATGAAGGAGGCGTGGCGTACGTCAGCACTGTCTTTTGTC
GCAATACAGCGCTGATCGGTGTGCTACCCCCCCCCCCCCCGTCCCATATG
CACACCCACACCTGTTGTCCCCTATTGCTTGCTGTCTGCTGCTTCTCGGC
CTATCCAGCTACATGGTAGAGCAGGTGGCGGGTTGGAGGGATCGATGTGA
CACCGTGGCGGAGGAGGTACAGGCGTACATCCGGAACGGAGCGATGACAG
TAAAAGGGGGAGGAACAGCTGCCGCTGCGGCCATTCCCGAGAGACCGGGG
GTGGCCAGGCCACGTGAATCCCCGACTCACCTCTGGGGCGAGGAGCAAGG
TGACAGCGCGGCAGCCATCGCCCCCGGTGAGGAGGAGAACGAGGCCGCTG
GAGGCGGAAAAGGCGGGGCACACAGGGGG back to topCoding sequence (CDS) from alignment at P-fluviatile_contig1:1678032..1695160- >mRNA_P-fluviatile_contig1.128.1 ID=mRNA_P-fluviatile_contig1.128.1|Name=mRNA_P-fluviatile_contig1.128.1|organism=Porterinema fluviatile SAG_2381|type=CDS|length=5376bp|location=Sequence derived from alignment at P-fluviatile_contig1:1678032..1695160- (Porterinema fluviatile SAG_2381) ATGTCTAGCATGATAGCATCGCAGCGTCTTCAGGCGAAAGCAGCGGCAAG ATGTGGGGAGATGTCTAGCATGATAGCATCGCAGCGTCTTCAGGCGAAAG CAGCGGCAAGATGTGGGGAGACCGAGAGACGAGCGGGGGCAGACCAGCCG GGCGAAAACAAACAGCACCAGCGCAGGCGCACGGCCGTTTCGCCGCCCCC GCGGCCGCCTGCTGCCACCGGCGGTGGCAGCAACAAGCGGCCAAAAAAGT CAGATGTGCCCAAGGCGAGATCTCCGGCGAAAAGCGTGGCAAATCCTCGC GTACAAGGTCCGAACCGGCCCTGTAGCAGAAAACACGTCGGCGGGAGGGG CAGCGCAACAAAGCAGGGACAGTCGAAGCAGTCGACGCAGCAGCATGATA AGAAGAAGACGCAGAAGCAGCAACAGACCGAGAGACGAGCGGGGGCAGAC CAGCCGGGCGAAAACAAACAGCACCAGCGCAGGCGCACGGCCGTTTCGCC GCCCCCGCGGCCGCCTGCTGCCACCGGCGGTGGCAGCAACAAGCGGCCAA AAAAGTCAGATGTGCCCAAGGCGAGATCTCCGGCGAAAAGCGTGGCAAAT CCTCGCGTACAAGGTCCGAACCGGCCCTGTAGCAGAAAACACGTCGGCGG GAGGGGCAGCGCAACAAAGCAGGGACAGTCGAAGCAGTCGACGCAGCAGC ATGATAAGAAGAAGACGCAGAAGCAGCAACAGATTAAGAAGAGGAAGGCA GCGTCTCCGCCCAAGGGCAACAAGGGGACAGGGAGCCAGAGAAAAGGAAG CAAGGGCGGGAAAAGACCGAAGTCCGAGGCCAAGGGGAAGTGCAACAGGG GCGCATCAGCGGCAGCATTTGTCCTCCCAGCTGGTTTCCGAAAAATGCTG GGCAAAGGCCCGGGTGCGAAGCAGCGAAAGCTTTTTAAACTTAAAAAGAT TAAGAAGAGGAAGGCAGCGTCTCCGCCCAAGGGCAACAAGGGGACAGGGA GCCAGAGAAAAGGAAGCAAGGGCGGGAAAAGACCGAAGTCCGAGGCCAAG GGGAAGTGCAACAGGGGCGCATCAGCGGCAGCATTTGTCCTCCCAGCTGG TTTCCGAAAAATGCTGGGCAAAGGCCCGGGTGCGAAGCAGCGAAAGCTTT TTAAACTTAAAAAGTCGCTCGTGCCGCTGGGCATATGGCCTGCCTGGGGC GATGGCGAGGCCTTCGATCTGGCGCCGGAGTGGAAAGCTAGCTTGCTCAA GCGCTACGAGAACCCGCCGCCGTACAAGAAACTCAAGTCGCTCGTGCCGC TGGGCATATGGCCTGCCTGGGGCGATGGCGAGGCCTTCGATCTGGCGCCG GAGTGGAAAGCTAGCTTGCTCAAGCGCTACGAGAACCCGCCGCCGTACAA GAAACTCAAGGCGAATCTGTACCCGGAAAGCTCTCTGAGGGGTCTGGTTC CCGTCGACGAGATTCCGCTCTGCCACTGCAGCGTCGAGGACGGCTGCAAC GCCAACTGCATCAAGCGAATCTGTACCCGGAAAGCTCTCTGAGGGGTCTG GTTCCCGTCGACGAGATTCCGCTCTGCCACTGCAGCGTCGAGGACGGCTG CAACGCCAACTGCATCAACCGCCTGCTGCAGATGGAGTGTGTCCCTGGCC GCTGCCCGACCCTGCGGGAGGGATCCACGCACTGTCAGAACAACGCCATT CAGACGAAGACATTCCCATCAACTGAGCCGCCTGCTGCAGATGGAGTGTG TCCCTGGCCGCTGCCCGACCCTGCGGGAGGGATCCACGCACTGTCAGAAC AACGCCATTCAGACGAAGACATTCCCATCAACTGAGATCTTCCGCACTTT CGAGGGCAGAGGCTGGGGGCTGCGGCTGTGCGACGAGAAGGGGGCTGTGG CTGGCACCATTCTGCACGAGTACCTCGGCGAGATCTTCCGCACTTTCGAG GGCAGAGGCTGGGGGCTGCGGCTGTGCGACGAGAAGGGGGCTGTGGCTGG CACCATTCTGCACGAGTACCTCGGCGAGGTGATTATGATGGACGAATGCC GCAAACGCTTGCGGAAGGTGGGGCGTAAAGGAGTGGGGGGGTCCAGCAGC GATTTCTACTTCGCCTCCTTGGACGGGAACTTGGTTCTGGATGCTGGTGA TTATGATGGACGAATGCCGCAAACGCTTGCGGAAGGTGGGGCGTAAAGGA GTGGGGGGGTCCAGCAGCGATTTCTACTTCGCCTCCTTGGACGGGAACTT GGTTCTGGATGCTGGTCCCATGGGCAGCGAGGCCCGTTTCGCGAATCATA GCTGCGCCCCCAACTGCCTGCTGCAAAAGTGGAGCGTGCTCGGCGAGACT CGCGTGGTGCTGGTCGCTGCCCGAAACCTTTCGGTCGGCGAGGTCCCATG GGCAGCGAGGCCCGTTTCGCGAATCATAGCTGCGCCCCCAACTGCCTGCT GCAAAAGTGGAGCGTGCTCGGCGAGACTCGCGTGGTGCTGGTCGCTGCCC GAAACCTTTCGGTCGGCGAGGAACTGACGTACAACTATCAGGCCGACACC TTGGGAGGGTTCGTGGAGAGGCAGAAGTGTCTCTGCGGGGAGCGGCAGTG TTCAGGCTTCATTGGCGGAGAGGAACTGACGTACAACTATCAGGCCGACA CCTTGGGAGGGTTCGTGGAGAGGCAGAAGTGTCTCTGCGGGGAGCGGCAG TGTTCAGGCTTCATTGGCGGAGAGTTGGTGGCGGTGAAGGAACAGGAGTG GCAGAGGCGCGCGTCGAAGGTGATGAGCCAGGCCAAGCCGCAGCTGGACG TGGTGAGGGAGCTCGTCTACGAAGGCCAAGAGCTGGGGTACCAAGTGGCG GCGGAAGTTGGTGGCGGTGAAGGAACAGGAGTGGCAGAGGCGCGCGTCGA AGGTGATGAGCCAGGCCAAGCCGCAGCTGGACGTGGTGAGGGAGCTCGTC TACGAAGGCCAAGAGCTGGGGTACCAAGTGGCGGCGGAAGGAGAAGGAGA AGAAGCACGGGAAGATGGAGACATGGGGTCGTGTTCGGCGGTGCGGTACC GCGGCCGCGAGATGGAATGTCTTTCGATCATGCTCAAGGAGGGAGACAGC TGGCTCGAGCGACTTGCCGAGGTGCTGGAAGGGAGAGCCGAGAGTGCTGT TGCTGCTGCCAATGCTTCTGTTTACGTAGAGGAGAAGGCTCCCGTCGCGG ATACGTCACGGCGAACCTCCTCGCGAGCCAGCCGTGGCTCTTGGAAGAGG ATCCGCGCCTACGACGATGCTGATGCTGGTGCCGGTGCTGACACTGATAA CAAGGAGAAGGAGAAGAAGCACGGGAAGATGGAGACATGGGGTCGTGTTC GGCGGTGCGGTACCGCGGCCGCGAGATGGAATGTCTTTCGATCATGCTCA AGGAGGGAGACAGCTGGCTCGAGCGACTTGCCGAGGTGCTGGAAGGGAGA GCCGAGAGTGCTGTTGCTGCTGCCAATGCTTCTGTTTACGTAGAGGAGAA GGCTCCCGTCGCGGATACGTCACGGCGAACCTCCTCGCGAGCCAGCCGTG GCTCTTGGAAGAGGATCCGCGCCTACGACGATGCTGATGCTGGTGCCGGT GCTGACACTGATAACAAGGAAGAGGAGGAACCGCGTGTTGTCGATCTCGT CCAGCTAGAGAAAGTCCTGGAAGTAGCGCCGGCGGGGCTCCAAGTACACG AGGCCGTCAAGGCTAAGAAGACGGTGGCAAGGAAGAGGAGGAACCGCGTG TTGTCGATCTCGTCCAGCTAGAGAAAGTCCTGGAAGTAGCGCCGGCGGGG CTCCAAGTACACGAGGCCGTCAAGGCTAAGAAGACGGTGGCAAGAGCCGG CCAAGCAGCTCAGACCGTGTGGGCCTTGCTCGACGCCGCTGCTAGGCACG GGTTAGAAGGGGTCAAGGTCCCGGCAGCGCGGCGCATTGTGCAACAGGAG GCCGCCGCCGCCTGTGCAGCAGGAGCAGGAGTAGCATCAGCAGCAGCAGG AGGAGTAGCCAGAGATACTCCGGTCGGGTCGAACCCTCCCGACGGGATGG AGGAGGAGGAGAAAGAAGGGCCAATCGCCCTCCCGCCGAAACCGCGGATG ACTCAGAGCCGGCCAAGCAGCTCAGACCGTGTGGGCCTTGCTCGACGCCG CTGCTAGGCACGGGTTAGAAGGGGTCAAGGTCCCGGCAGCGCGGCGCATT GTGCAACAGGAGGCCGCCGCCGCCTGTGCAGCAGGAGCAGGAGTAGCATC AGCAGCAGCAGGAGGAGTAGCCAGAGATACTCCGGTCGGGTCGAACCCTC CCGACGGGATGGAGGAGGAGGAGAAAGAAGGGCCAATCGCCCTCCCGCCG AAACCGCGGATGACTCAGGTGTATCAGGCAATCCGTACCTGCAGAGGGCT CGCCCCCGTTTTCATCCCCGGCGCCTCCGAGCTCGAGAAGCTTGTCGCTT CGGCAGAGGCCTGGGCGCAGGAGGCGTGCGATATGCTCAAAATAAAGGTG TATCAGGCAATCCGTACCTGCAGAGGGCTCGCCCCCGTTTTCATCCCCGG CGCCTCCGAGCTCGAGAAGCTTGTCGCTTCGGCAGAGGCCTGGGCGCAGG AGGCGTGCGATATGCTCAAAATAAAGACGGACGCCGACAAGGACGCGAGT AATAACGCGAAAAACGGGCCCAGAAAAAACATCGGCGGCGGCAGCGTTGC TGACAACGGTACAGGAGAAACGGGAACGAGCAAGTGGGCCAAGCTAGGGC TCGAGGGCTCGGCCATGACTGCCCTAGAGGAAAAGCTTAAGGAGGTGGCG ACGGACGCCGACAAGGACGCGAGTAATAACGCGAAAAACGGGCCCAGAAA AAACATCGGCGGCGGCAGCGTTGCTGACAACGGTACAGGAGAAACGGGAA CGAGCAAGTGGGCCAAGCTAGGGCTCGAGGGCTCGGCCATGACTGCCCTA GAGGAAAAGCTTAAGGAGGTGGCGGAGTTTTCTCTGGCCCGTGAGCAGCG CGAGGAGGAGGCCGCAAAGGAACGCCTCCTGAAGGAGAAGCAAGACCGTA AGGAGCGGGACAGGCAGGCCAGGCTCGAGAAGGCGGCCAGGCGACAGCAG GCCAGGTGGCGGAAGGGCCTGCCGCAAACGGCAGAGGGAAGGAGAGAGGG AGGGGAGTTTTCTCTGGCCCGTGAGCAGCGCGAGGAGGAGGCCGCAAAGG AACGCCTCCTGAAGGAGAAGCAAGACCGTAAGGAGCGGGACAGGCAGGCC AGGCTCGAGAAGGCGGCCAGGCGACAGCAGGCCAGGTGGCGGAAGGGCCT GCCGCAAACGGCAGAGGGAAGGAGAGAGGGAGGGATCTGTCGAGGGATCC CTTGAATCTGTCGAGGGATCCCTTGA back to top
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