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Homology
BLAST of mRNA_P-fluviatile_contig8.14424.1 vs. uniprot
Match: A0A6H5JRP3_9PHAE (GT8 protein n=2 Tax=Ectocarpus TaxID=2879 RepID=A0A6H5JRP3_9PHAE) HSP 1 Score: 1047 bits (2707), Expect = 0.000e+0 Identity = 695/1238 (56.14%), Postives = 787/1238 (63.57%), Query Frame = 3
Query: 708 EFLPAAESKMTLSSRLCSPSEDARAYVTTIAHNGSSXXXXXXXXXXXXKSGDLLVGARVLAQSLRAAGAKGEVVVLVPRARATPPTLDSLRRDGLTVQIVPMGLQSAEGEVVSEELMSKVFLWSLTSYDRVVFLDPRSLIQKNPDALFACEGFCAAGAVHTPSSASYFRPAWARGTGREAGIGAGSAVAATGAALPSMPGLAQHGLEDSSDDDNVGHKEAAAA-VLEKPLSTPPPWQPSTSVMVLEPSLAVHAAMLDELTRTPAVGSLEAQVFLSSFLLKGVAAEAGDRCVLFQDPLEVASSER-QSNGGGSGLGD-----WKDGVVPGGKVLWAGDGAQDIRFDGGGSNIFLEDALTPVVLLNGPHLPRCSARRKRTADGVCQRLPYTFAAPATDFSG-TGSWGA---RNGPGTPGPHIIHIADDDTPWKRLAYLHKPLFWKWNVYRQHLEYPRGSFFAQWVLFFIPCVVLAFARVYYKNAGRHNNGGVNDGTGRGSSGGGT--STDPVGDSSSPYRPRNFWMRSPNQSARRQQPRQIQQVAILPACGIAVAYDGTAGACIAGPVINTSPAAGQPRTISGGSSGSGGSSLGFGMAVGVDQSSSSRLSGAGGRG-----QSLPVGARSVLSALVGVFGLLWCRAAQALVHQVVDPSWHPIISVLVHDAWLCCAFVIGLYVMDYLHYARVTRMKTLLKDSVVVASVVAVVWALHARVMDASGGGGWVGGEAG--VLWAGAIGIGVIGLGLGHGSRPDVVHRLSGRVHLRCVVASCVIGTAISLAVCCLGRAGVHLSSAGRRTQSAVATAQMAFVALVYASLMSRVRLLRPNEADEAVGAGAGSRILRSCSTASLVSEALMATMATAPGNIATSAVASSMAALSTPKARTAAAVAXXXXXXXXXXXVRQGWMNCW--------ALLATAAARAGGLIWQRRWVAACVAALGLWKVSSTTLLPKSPAWNFEKHGQSCLESQGGLYVDAGIKRLSRVCGAEQALRPVATGAYFEAFRQYKVCLEVAGGGFLTLGRVHVAQTCLPEHQFVFQPVVSVD-SSKQKA-----GGRTAAKERAAAAG-KYCVYNPTSGFYLSAQGRPRAQCGPMEHWRVKPAPRAPGLKGFRGS--GPLSVSGKAISKVSALLHPNF-SRAPLHTFMDYLWVATAILIARAVFSMMATSPCVAGSSHRRGNAPTSGGGGSRHHRGLGARQRSTGRFLSRSR-TSFGDFLEAGYQGD 4304
+F PAA + LSSRLCSP+E +RAYVTTIA G KSGD L+GARVLAQSLR+AGAKG++VVLVP RAT PTLDSLRRDGLTVQIVP GLQSA GE+VSEELM+KV LWSLTSYDRVVFLDPRSLIQKNPDALFACEGFCAAGAVH+PSS+ F+P WA+ EAG G+ G VLEKPLS PP WQPSTSVMVLEPSL VHAAMLD+LTRTPA GSLEAQVFLSSFL+ G +AGDRC F+DP+E A S+R +S GGG G W+D GG + G D DGGGS FLEDAL PVVLLNGPH+PRCSA RKRT++GVCQRLPYTFAAP+TDF G SWG ++ TP PHI+H AD+DTPWKRLAYLHKPLFWKWN YR+ LE P G+FFA WVLFFIPCVVLAFARVYYK A + G R + G + D D SP + R W+RS Q QQ + QQ+AILPAC +A AYDG A AG + AA + R Q LP+G VLS LVG+FGLLW R A+AL +VVD WHP+ISV VHDAWLCCA V+GLYVMDYL +A VTR +TL KDSV VA+VV LH+ MD G V+WAG +G GVI LG GHGSR VVH LSGR H RCV ASCV+ TAISLAVCC G +++ RR QSA TAQM F+ALVYAS++ RL ++ DEA GS+I R+CS+AS V++AL+ A+ G XXXXXXXXXXX A +A + L W RR VAA +A L LWKVSS L P SPA +FEK+GQSCLESQ G +V+AG KRLSRVCGAEQALRPVATGAYFEAFRQ KVCLEVAGGGFLTLGRVHVAQ CLPE QFVFQ V SSK K GGR AA +YC+YNP SGFYLSAQGRPRAQCG MEHWRV+ AP APGLKG GS G S KA S SALLHPNF SRAPL TF YL ATA+L+ARA+FSM+ATSPCV G++ R + R LGARQRS G SRS +SFG F++ GY GD
Sbjct: 143 DFRPAATA---LSSRLCSPAEGSRAYVTTIAAIGGGFGASGGSNGD--KSGDRLLGARVLAQSLRSAGAKGDIVVLVPLERATGPTLDSLRRDGLTVQIVPKGLQSAGGEIVSEELMTKVSLWSLTSYDRVVFLDPRSLIQKNPDALFACEGFCAAGAVHSPSSSPSFQPGWAQ----EAGAAVGAXXXXXXXXXXXXHGXXXXXXXXXXXXXXXXXXXXXXXXVLEKPLSVPPSWQPSTSVMVLEPSLEVHAAMLDKLTRTPAAGSLEAQVFLSSFLM-GAGTDAGDRCTQFEDPVENAPSDRGRSRGGGLVAGQGXXXXWED-EEAGGAIFQGDGGFGDAGVDGGGS--FLEDALMPVVLLNGPHVPRCSAGRKRTSEGVCQRLPYTFAAPSTDFQGGKNSWGGGAQKDDRVTPEPHIVHFADEDTPWKRLAYLHKPLFWKWNAYREQLECPYGNFFAPWVLFFIPCVVLAFARVYYKTA---SGGSXXXXXXRXTPYGXXXXAADLPQDGCSPSKSRIPWLRSTKQLPEHQQHQ--QQLAILPACRMAAAYDGAA---TAGAGCLEAAAASRIRXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXEQQLPLGVCYVLSTLVGMFGLLWFRGARALAREVVDAGWHPVISVSVHDAWLCCALVVGLYVMDYLFFALVTRGRTLPKDSVAVAAVVFAARFLHSMAMDGEGSSXXXXXXXXXXVIWAGVVGAGVIALGFGHGSRAGVVHHLSGRAHFRCVAASCVVNTAISLAVCCAGPEAHRVAT--RRIQSAAVTAQMVFIALVYASVIGGARLR--SDIDEA-----GSKIGRTCSSASFVADALIGA-ASGKGXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXEGAQRWSAVSWIKKLTWHRRRVAAGIALLVLWKVSSANLRPASPARHFEKYGQSCLESQAG-FVEAGGKRLSRVCGAEQALRPVATGAYFEAFRQDKVCLEVAGGGFLTLGRVHVAQACLPEFQFVFQEVAPTKLSSKDKGDGSGGGGRLVVGGGTAAESVEYCIYNPASGFYLSAQGRPRAQCGAMEHWRVRAAPLAPGLKGGGGSLAGSGGTSTKAKSAFSALLHPNFLSRAPLLTFYGYLLAATALLVARALFSMLATSPCV-GATGRGSSXXXXXXXXXXXXRDLGARQRSRGXAHSRSHGSSFGGFVDTGYLGD 1347
BLAST of mRNA_P-fluviatile_contig8.14424.1 vs. uniprot
Match: A0A835YKB0_9STRA (Uncharacterized protein n=1 Tax=Tribonema minus TaxID=303371 RepID=A0A835YKB0_9STRA) HSP 1 Score: 87.8 bits (216), Expect = 1.440e-13 Identity = 60/150 (40.00%), Postives = 78/150 (52.00%), Query Frame = 3
Query: 753 LCSPSEDARAYVTTIAHNGSSXXXXXXXXXXXXKSGDLLVGARVLAQSLRAAGAKGEVVVLVPRARATP-PTLDSLRRDGLTVQIV-PMGLQSAEGEVVSE--------ELMSKVFLWSLTSYDRVVFLDPRSLIQKNPDALFACEGFCA 1172
LC P RAY T + H + ++G RVL QSLR AG + ++VVL+ RA T +L DG+ V +V P L A G + + + K LWSLT YDRVVFL+ R+L+ KNPD LFAC+GFCA
Sbjct: 65 LCVPESKRRAYATILGH------------------AEHVLGPRVLLQSLRDAGVEADLVVLLAADRADAWATTAALEGDGIKVHLVQPEELVRARGWLSTTLGSGHALADASLKSHLWSLTQYDRVVFLNSRALVLKNPDTLFACDGFCA 196
BLAST of mRNA_P-fluviatile_contig8.14424.1 vs. uniprot
Match: A0A835XWQ0_9CHLO (Uncharacterized protein n=1 Tax=Edaphochlamys debaryana TaxID=47281 RepID=A0A835XWQ0_9CHLO) HSP 1 Score: 64.7 bits (156), Expect = 1.280e-6 Identity = 41/111 (36.94%), Postives = 62/111 (55.86%), Query Frame = 3
Query: 861 DLLVGARVLAQSLRAAGAKGEVVVLVPRARATPPTLDSLRRDGLTV-QIVP-----MGLQSAEGEVVSEELMSKVFLWSLTSYDRVVFLDPRSLIQKNPDALFACEGFCAA 1175
D ++ ARVL QSLR +G K ++V L + +P + +L DG V + P MG Q + +K++++ +T Y ++VFLD L+ KN DA+F C GFCAA
Sbjct: 45 DFVLAARVLGQSLRESGTKRDLVALTTGS-LSPASESTLASDGWRVIHVAPVANPAMGPQPTGFPPRFAYVYTKLYIFKMTEYKKIVFLDGDILVMKNMDAIFKCPGFCAA 154
BLAST of mRNA_P-fluviatile_contig8.14424.1 vs. uniprot
Match: UPI00166E888D (glycosyltransferase family 8 protein n=1 Tax=Subtercola lobariae TaxID=1588641 RepID=UPI00166E888D) HSP 1 Score: 57.8 bits (138), Expect = 6.250e-5 Identity = 47/131 (35.88%), Postives = 68/131 (51.91%), Query Frame = 3
Query: 867 LVGARVLAQSLRAAGAKGEVVVLVPRARATPPTLDSLRRDGLTVQIVPMGLQSAEGEVVS------EELMSKVFLWSLTSYDRVVFLDPRSLIQKNPDALFACE-GFCAAGAVHT----PSSASYFRPAWA 1226
LVG R L SL A+G++ +VV+V T D LR DG V+ V L+ A G S E+ +K+ +W LT ++RVVFLD L+ +N D LF+ + A A H P+ + + P+WA
Sbjct: 14 LVGVRTLRASLAASGSEAPLVVMVTEG-IDEQTRDLLRDDGCLVRDVAP-LRPAGGSADSYANSRFAEVWTKLAVWGLTEFERVVFLDADMLVTQNMDELFSLDLADGAIAACHACRCNPNRIASYPPSWA 142
BLAST of mRNA_P-fluviatile_contig8.14424.1 vs. uniprot
Match: UPI001C4E59D4 (UDP-glucuronate:xylan alpha-glucuronosyltransferase 2-like n=1 Tax=Macadamia integrifolia TaxID=60698 RepID=UPI001C4E59D4) HSP 1 Score: 59.3 bits (142), Expect = 6.300e-5 Identity = 35/94 (37.23%), Postives = 54/94 (57.45%), Query Frame = 3
Query: 873 GARVLAQSLRAAGAKGEVVVLVPRARATPPTLDSLRRDGLTVQIVP-MGLQSAEGEVVSEELMSKVFLWSLTSYDRVVFLDPRSLIQKNPDALF 1151
GA VLAQS+ A G ++V+L+ + + P D+L G ++I+ + AE +E SK+ LW LT YD+++F+D L+ KN D LF
Sbjct: 315 GAIVLAQSILATGTNRDLVILIDKT-ISQPKRDALAASGWKIRIIERIRNPKAEKNTYNEYNYSKLRLWQLTDYDKIIFIDSDILVLKNMDILF 407
BLAST of mRNA_P-fluviatile_contig8.14424.1 vs. uniprot
Match: A0A2K3D996_CHLRE (Uncharacterized protein n=3 Tax=Chlamydomonas TaxID=3052 RepID=A0A2K3D996_CHLRE) HSP 1 Score: 58.9 bits (141), Expect = 7.880e-5 Identity = 39/112 (34.82%), Postives = 62/112 (55.36%), Query Frame = 3
Query: 861 DLLVGARVLAQSLRAAGAKGEVVVLVPRARATPPTLDSLRRDGLTV-QIVPM-----GLQSAEGEVVS-EELMSKVFLWSLTSYDRVVFLDPRSLIQKNPDALFACEGFCAA 1175
D ++GARVL QSLR AG ++V L + + L +L DG V + P+ G Q G + +K++++ +T Y ++VF+D L+ +N D++F C GFCAA
Sbjct: 43 DFVLGARVLGQSLREAGTTRDMVALTTGSLSAASEL-TLASDGWRVIHVAPVANPGKGPQPGLGYPARFAYVYTKLYIFKMTEYKKIVFIDADVLVLRNMDSIFKCPGFCAA 153
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 | Viridiplantae |
| Seed ortholog score | 64.3 |
| Seed ortholog evalue | 5.5e-07 |
| Seed eggNOG ortholog | 3218.PP1S29_109V6.1 |
| KEGG rclass | RC00005,RC00171 |
| KEGG ko | ko:K00750 |
| KEGG Reaction | R00292,R03681 |
| KEGG Pathway | ko00500,ko01100,map00500,map01100 |
| GOs | GO:0000271,GO:0003674,GO:0003824,GO:0005575,GO:0005622,GO:0005623,GO:0005737,GO:0005829,GO:0005975,GO:0005976,GO:0005977,GO:0005978,GO:0006073,GO:0006091,GO:0006112,GO:0008150,GO:0008152,GO:0008194,GO:0008466,GO:0009058,GO:0009059,GO:0009250,GO:0009987,GO:0015980,GO:0016051,GO:0016740,GO:0016757,GO:0016758,GO:0033692,GO:0034637,GO:0034645,GO:0035251,GO:0043170,GO:0044042,GO:0044237,GO:0044238,GO:0044249,GO:0044260,GO:0044262,GO:0044264,GO:0044424,GO:0044444,GO:0044464,GO:0046527,GO:0055114,GO:0071704,GO:1901576 |
| EggNOG free text desc. | Glycosyl transferase family 8 |
| EggNOG OGs | 37RFC@33090,3GGQ0@35493,COG5597@1,KOG1950@2759 |
| Ec32 ortholog description | Nucleotide-diphospho-sugar transferases |
| Ec32 ortholog | Ec-11_002680.1 |
| EC | 2.4.1.186 |
| COG Functional cat. | M |
| CAZy | GT8 |
| Best tax level | Streptophyta |
| Best eggNOG OG | NA|NA|NA |
| BRITE | ko00000,ko00001,ko01000,ko01003 |
| Hectar predicted targeting category | other localisation |
| Exons | 3 |
| Model size | 5136 |
| Cds size | 4461 |
| 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 |
| 1622817231.6244676-UTR-P-fluviatile_contig8:1272426..1272889 | 1622817231.6244676-UTR-P-fluviatile_contig8:1272426..1272889 | Porterinema fluviatile SAG_2381 | UTR | P-fluviatile_contig8 1272427..1272889 - |
| 1693571590.6147637-UTR-P-fluviatile_contig8:1272426..1272889 | 1693571590.6147637-UTR-P-fluviatile_contig8:1272426..1272889 | Porterinema fluviatile SAG_2381 | UTR | P-fluviatile_contig8 1272427..1272889 - |
| 1622817231.6685793-UTR-P-fluviatile_contig8:1278180..1278250 | 1622817231.6685793-UTR-P-fluviatile_contig8:1278180..1278250 | Porterinema fluviatile SAG_2381 | UTR | P-fluviatile_contig8 1278181..1278250 - |
| 1693571590.6473646-UTR-P-fluviatile_contig8:1278180..1278250 | 1693571590.6473646-UTR-P-fluviatile_contig8:1278180..1278250 | Porterinema fluviatile SAG_2381 | UTR | P-fluviatile_contig8 1278181..1278250 - |
| 1622817231.6790752-UTR-P-fluviatile_contig8:1278865..1279007 | 1622817231.6790752-UTR-P-fluviatile_contig8:1278865..1279007 | Porterinema fluviatile SAG_2381 | UTR | P-fluviatile_contig8 1278866..1279007 - |
| 1693571590.6582808-UTR-P-fluviatile_contig8:1278865..1279007 | 1693571590.6582808-UTR-P-fluviatile_contig8:1278865..1279007 | Porterinema fluviatile SAG_2381 | UTR | P-fluviatile_contig8 1278866..1279007 - |
The following CDS feature(s) are a part of this mRNA:
| Feature Name | Unique Name | Species | Type | Position |
| 1622817231.6384857-CDS-P-fluviatile_contig8:1272889..1276536 | 1622817231.6384857-CDS-P-fluviatile_contig8:1272889..1276536 | Porterinema fluviatile SAG_2381 | CDS | P-fluviatile_contig8 1272890..1276536 - |
| 1693571590.6255016-CDS-P-fluviatile_contig8:1272889..1276536 | 1693571590.6255016-CDS-P-fluviatile_contig8:1272889..1276536 | Porterinema fluviatile SAG_2381 | CDS | P-fluviatile_contig8 1272890..1276536 - |
| 1622817231.6521337-CDS-P-fluviatile_contig8:1277366..1278180 | 1622817231.6521337-CDS-P-fluviatile_contig8:1277366..1278180 | Porterinema fluviatile SAG_2381 | CDS | P-fluviatile_contig8 1277367..1278180 - |
| 1693571590.6355774-CDS-P-fluviatile_contig8:1277366..1278180 | 1693571590.6355774-CDS-P-fluviatile_contig8:1277366..1278180 | Porterinema fluviatile SAG_2381 | CDS | P-fluviatile_contig8 1277367..1278180 - |
Sequences
The following sequences are available for this feature:
protein sequence of mRNA_P-fluviatile_contig8.14424.1 >prot_P-fluviatile_contig8.14424.1 ID=prot_P-fluviatile_contig8.14424.1|Name=mRNA_P-fluviatile_contig8.14424.1|organism=Porterinema fluviatile SAG_2381|type=polypeptide|length=1487bp
MMNLETIPSSSAGRRRLKRPRPPSRQQQDSDYHDIMLTSCPHHLAAGSPG GAAGGAAAGGAAVPPHLERCRHLPRDAAPDVVGDASMIGPAVGGGDGDHR ATDSSGGPLERTSVPTDEPMTRPRLPRPRRTLAATAMALVMLGALAPAVS AMSAPAAASPLVAEHEFLPAAESKMTLSSRLCSPSEDARAYVTTIAHNGS SGGSGGARGEKGDKSGDLLVGARVLAQSLRAAGAKGEVVVLVPRARATPP TLDSLRRDGLTVQIVPMGLQSAEGEVVSEELMSKVFLWSLTSYDRVVFLD PRSLIQKNPDALFACEGFCAAGAVHTPSSASYFRPAWARGTGREAGIGAG SAVAATGAALPSMPGLAQHGLEDSSDDDNVGHKEAAAAVLEKPLSTPPPW QPSTSVMVLEPSLAVHAAMLDELTRTPAVGSLEAQVFLSSFLLKGVAAEA GDRCVLFQDPLEVASSERQSNGGGSGLGDWKDGVVPGGKVLWAGDGAQDI RFDGGGSNIFLEDALTPVVLLNGPHLPRCSARRKRTADGVCQRLPYTFAA PATDFSGTGSWGARNGPGTPGPHIIHIADDDTPWKRLAYLHKPLFWKWNV YRQHLEYPRGSFFAQWVLFFIPCVVLAFARVYYKNAGRHNNGGVNDGTGR GSSGGGTSTDPVGDSSSPYRPRNFWMRSPNQSARRQQPRQIQQVAILPAC GIAVAYDGTAGACIAGPVINTSPAAGQPRTISGGSSGSGGSSLGFGMAVG VDQSSSSRLSGAGGRGQSLPVGARSVLSALVGVFGLLWCRAAQALVHQVV DPSWHPIISVLVHDAWLCCAFVIGLYVMDYLHYARVTRMKTLLKDSVVVA SVVAVVWALHARVMDASGGGGWVGGEAGVLWAGAIGIGVIGLGLGHGSRP DVVHRLSGRVHLRCVVASCVIGTAISLAVCCLGRAGVHLSSAGRRTQSAV ATAQMAFVALVYASLMSRVRLLRPNEADEAVGAGAGSRILRSCSTASLVS EALMATMATAPGNIATSAVASSMAALSTPKARTAAAVASGTEGGGRGGGV RQGWMNCWALLATAAARAGGLIWQRRWVAACVAALGLWKVSSTTLLPKSP AWNFEKHGQSCLESQGGLYVDAGIKRLSRVCGAEQALRPVATGAYFEAFR QYKVCLEVAGGGFLTLGRVHVAQTCLPEHQFVFQPVVSVDSSKQKAGGRT AAKERAAAAGKYCVYNPTSGFYLSAQGRPRAQCGPMEHWRVKPAPRAPGL KGFRGSGPLSVSGKAISKVSALLHPNFSRAPLHTFMDYLWVATAILIARA VFSMMATSPCVAGSSHRRGNAPTSGGGGSRHHRGLGARQRSTGRFLSRSR TSFGDFLEAGYQGDAGYVGDAEMGGAGYGGYGSGGGDCSSSSSSSSRMRS PAYPASKVWRRRRHPRLARGGKQSASRERRGRLGGRRGDDRDKQQRHERG RGRGHQFRRESIIEEILPQETFVRGIGVCRQARVAR* back to topmRNA from alignment at P-fluviatile_contig8:1272427..1279007- Legend: UTRpolypeptideCDS Hold the cursor over a type above to highlight its positions in the sequence below. >mRNA_P-fluviatile_contig8.14424.1 ID=mRNA_P-fluviatile_contig8.14424.1|Name=mRNA_P-fluviatile_contig8.14424.1|organism=Porterinema fluviatile SAG_2381|type=mRNA|length=6581bp|location=Sequence derived from alignment at P-fluviatile_contig8:1272427..1279007- (Porterinema fluviatile SAG_2381) CGGACACACGCAAGAAAGGAGCGACAAGCGTGCCTTCCGGACCGAGAGAG
AGAGAAACGGAAGGAAGAGACACGCGGACCAAGCAAGAGAGACGAAACCT
AGTCTGGGTCAGGGTCTAGCGCACACAGGAGGAAAGGGGAAGGTGGGTGT
ATGCCCGGGAGAGACCGAGAAGAGATTGTGTGTCGATGTTTGATCGGAGT
CTCTTGATTCCCCGTTTAATTTTCTTTGGCGGGCTCTTTACGAGTAGGAG
GTGGGTGATAGAGGGAGAAAGATAGAGCCGCGAAACAAGGCAGGTCGGGC
ATTCCTCTCATCTGAACTTTTATGAGCTCTCATTGAGGTTGCCGAAAACG
CAGCAGCTAGCACCGTTCGTTTGTTCGGAACACGCACGCACACCCAACTA
AACGCGCCCCGCATTTTTTTTCTTCTTTTTCTACTCTTTTGTGTTCCCGC
GAGGAAGAGGCGACAGGAAGCCACAAGTTTGCAGGCACGCCTCCCTTCTC
CAACGATAGGAGTGCACCTGATACGTCGCCGCGCCTGCCGCTTGATGAGC
GAAATAGTCTCTGGCTTTCGCTCGGCTGTCGGCCTAATGTAGAAGTTCCC
GTGCTGCACACACTCTTTAATTTCTTCTCGGTTTGCCGGGACCTATCTCC
CTCTCGCATCGTCTCCCCAGATTGTGTTCCAATTTATACACACTCCACCC
CCCCTTGCGCTCCTCCGCCCCCCCACCCCGTTCCGTGATTTTTCCGTTGC
GTTCCAGAACGACGCTCACATCTTGCACGATTTCGGCATCGGATGGGGCA
CGTTCAGGCCAACAAGAAGCCCTGGAGATGATGAACTTAGAAACGATACC
GTCAAGTAGCGCCGGGAGGCGGCGGCTCAAACGACCTCGCCCTCCCTCGC
GGCAGCAGCAGGACTCCGACTATCACGACATCATGCTCACCTCCTGTCCG
CATCATCTGGCTGCTGGGTCACCGGGCGGAGCAGCAGGTGGAGCAGCAGC
AGGCGGAGCAGCCGTACCACCACACCTCGAACGTTGCCGTCACCTACCGC
GGGACGCAGCACCTGATGTCGTTGGGGATGCGAGCATGATTGGCCCTGCC
GTTGGCGGCGGGGACGGCGACCACCGCGCCACCGACTCGAGCGGCGGTCC
CCTCGAGAGAACTAGTGTTCCTACCGACGAACCGATGACACGGCCGCGGC
TTCCACGGCCACGACGAACCCTGGCCGCGACAGCGATGGCGCTCGTTATG
TTAGGAGCCCTGGCGCCGGCGGTTTCGGCGATGTCGGCGCCGGCGGCGGC
ATCCCCGCTGGTAGCCGAGCACGAATTCCTGCCGGCTGCGGAGTCGAAAA
TGACGCTCTCGTCTCGGCTGTGCTCTCCCTCCGAGGACGCCCGGGCGTAC
GTGACCACGATTGCCCATAACGGCAGCAGCGGTGGTAGCGGCGGAGCCAG
AGGGGAGAAAGGCGATAAGAGCGGGGATCTGCTGGTGGGGGCGCGGGTGT
TGGCGCAGTCTCTCCGGGCCGCGGGCGCGAAGGGCGAGGTGGTCGTGCTG
GTCCCGAGAGCGAGGGCGACGCCGCCCACTTTGGACTCATTGCGACGGGA
TGGGCTTACGGTTCAAATAGTGCCCATGGGACTGCAGTCCGGTGAGATGC
CAAAACGGGGCGCAGCGGCAGAGCGTATCGCTCGCCACGCCGCACGGCCA
AATAATTGTTTATACTCCGGAGGATATGTTTTGTATTGTCCCTCCCTCTT
TCGTCCTCGCTTTCAACCTAAATCATTTTTTTTTTAAGCAGTGGGGAGCC
CACATGGGGTTTGACAAACAGATGAAACGGAATGGAAATAGTTCTTGATG
GAGACGACCCTTAACGCACAGCAGAAGTAATTAGTATCATTAGATTAGGT
GAAATACATTTTTGTAGGAAGCAGGTCCACCTTCGCATTGCTTGCGACAA
AAGTCGAAGAGGCGCGAAAATATATCGTGTTCATAAAGCTTCAACGGTTA
CGCTACACGGCATGCCCGCGTGGTTTTCTCGCAACGCGACTCAACGCACG
GGAAGTTTTGCGAAGGCTGTTTCAGCTGTTGCGCGTGCGCTCCTATCCGT
CGAGCGAGGGCTTTATCATGATGGGAGTGTGTGCGTCCATTTTTGACGAC
GTTTCATCTCCTTTTTGACCTGCGCGAAGTGTATTCGACTGAATGCACGC
CGTGCGCAGTTGGATTGTAGCCTCTCGCAGCTGTCATCCAGAGAGGTCGT
AACATTCGTGCTTTCATTTGTTGACCGACACCACCGCTCCCTACCGTGAA
TCTACCATGCTAGTGTGCGGCCTTTTTTCATTCCAAGCCCTATCGAACGA
CATGCTTTGGAATGTTCCACCTGTTAAACCTCTCCCACTCTGCCGCTCCT
CCGCCTGTCTCCGCGTATTTGAATCCGGTGAACGCCCGAAACGAACGAAA
CGAATCGCCAAACCCCCTCAGCCGAAGGAGAGGTCGTTTCGGAGGAGCTG
ATGAGTAAGGTTTTCCTGTGGAGCCTCACGTCATACGACCGGGTGGTGTT
CCTCGATCCCCGTTCGCTGATCCAGAAGAACCCGGACGCCCTGTTTGCGT
GCGAGGGCTTCTGCGCGGCGGGGGCGGTGCACACCCCGTCCTCCGCCTCT
TATTTCCGACCGGCCTGGGCAAGGGGAACCGGACGGGAGGCCGGGATTGG
GGCGGGGTCAGCGGTAGCTGCCACCGGCGCCGCGCTGCCGTCCATGCCGG
GTCTGGCGCAGCACGGCTTGGAAGACAGCAGCGACGACGACAACGTCGGC
CACAAGGAGGCGGCCGCCGCGGTGCTGGAGAAGCCGCTCTCCACCCCGCC
GCCCTGGCAGCCGTCCACCTCGGTCATGGTCCTCGAGCCGTCGCTGGCGG
TGCACGCGGCGATGCTGGACGAGCTCACGCGGACACCGGCGGTCGGCAGC
CTCGAGGCGCAGGTTTTCTTGTCCTCATTCCTGCTGAAAGGTGTCGCCGC
CGAGGCGGGGGACCGTTGCGTGCTGTTCCAAGACCCGCTTGAAGTCGCCT
CGTCCGAGCGGCAGTCTAACGGTGGCGGCTCCGGACTTGGCGATTGGAAA
GACGGTGTCGTTCCGGGAGGGAAGGTTTTGTGGGCCGGCGATGGCGCGCA
GGACATACGCTTTGACGGCGGCGGCAGCAACATATTCTTGGAGGACGCGC
TCACGCCGGTCGTGCTGCTGAACGGGCCGCATTTGCCGCGGTGTAGCGCG
CGGCGTAAGCGCACTGCAGACGGCGTGTGTCAGCGCCTGCCGTACACGTT
CGCGGCACCGGCGACCGACTTCAGCGGCACGGGAAGCTGGGGGGCGCGCA
ACGGCCCGGGGACTCCGGGGCCGCACATCATCCACATCGCCGACGATGAC
ACGCCGTGGAAGCGGCTGGCGTACCTCCACAAGCCGCTCTTCTGGAAGTG
GAACGTCTACCGGCAGCACCTCGAGTACCCACGCGGCAGCTTCTTCGCCC
AGTGGGTGCTCTTCTTCATCCCCTGCGTCGTGCTCGCGTTCGCTCGTGTG
TACTACAAGAACGCAGGTAGGCACAACAACGGCGGGGTAAATGACGGCAC
CGGCAGGGGCAGTAGCGGCGGGGGCACGTCCACTGATCCTGTGGGGGACA
GTTCCTCCCCGTATAGGCCGCGAAACTTCTGGATGCGCAGCCCGAACCAG
TCGGCGCGACGACAACAGCCGCGGCAAATCCAGCAAGTGGCCATCTTGCC
GGCTTGCGGGATTGCGGTAGCGTACGACGGTACAGCCGGCGCGTGCATCG
CCGGTCCCGTGATTAACACGTCGCCGGCGGCTGGGCAGCCTAGGACCATA
TCCGGCGGGAGCAGTGGCAGCGGCGGGAGTAGCCTCGGCTTCGGCATGGC
GGTCGGTGTGGATCAGTCGTCGTCTTCCCGCCTCTCCGGAGCTGGGGGTC
GAGGTCAGAGTCTGCCGGTCGGGGCACGCTCCGTGCTCTCGGCCCTGGTG
GGCGTGTTCGGCCTGCTGTGGTGCCGCGCGGCGCAGGCGCTGGTGCACCA
GGTGGTGGATCCGAGCTGGCACCCCATCATTTCGGTCTTGGTGCACGACG
CCTGGCTGTGCTGCGCTTTCGTGATCGGGCTGTACGTTATGGACTACCTG
CACTACGCCAGGGTCACTCGAATGAAAACGCTCCTGAAGGATTCTGTGGT
GGTGGCGTCTGTCGTTGCAGTGGTTTGGGCTTTGCACGCGAGGGTGATGG
ACGCGAGTGGCGGCGGGGGTTGGGTTGGAGGCGAGGCCGGGGTTCTCTGG
GCGGGCGCCATTGGCATCGGTGTCATTGGTCTCGGGCTCGGTCACGGGAG
CCGCCCCGATGTCGTGCATCGGCTGTCCGGCCGCGTGCACCTACGCTGCG
TGGTGGCGAGTTGCGTGATCGGAACGGCAATTTCCTTGGCAGTGTGCTGC
CTGGGGCGGGCCGGTGTCCACCTGTCGTCGGCGGGCCGACGCACCCAGTC
GGCGGTCGCGACGGCCCAGATGGCGTTCGTTGCGCTGGTTTACGCCTCGT
TGATGAGCCGAGTTCGCCTCTTGCGCCCCAACGAAGCGGACGAGGCCGTC
GGCGCCGGCGCCGGCTCGAGGATCCTCCGCTCGTGCTCGACGGCGTCGCT
GGTCTCGGAGGCGTTGATGGCCACGATGGCCACTGCGCCCGGCAATATCG
CGACGTCTGCGGTGGCGTCCTCGATGGCCGCGCTGTCGACGCCAAAAGCA
AGGACTGCTGCCGCCGTTGCCTCGGGAACGGAGGGCGGGGGGCGGGGCGG
CGGCGTCAGGCAGGGATGGATGAATTGTTGGGCTCTGTTGGCGACAGCGG
CGGCGAGGGCTGGGGGCCTGATCTGGCAACGGCGCTGGGTGGCCGCATGC
GTTGCGGCTCTAGGGCTCTGGAAGGTGTCGTCGACGACCCTGCTGCCCAA
GAGTCCGGCCTGGAACTTCGAGAAGCACGGCCAGTCCTGCCTCGAGAGCC
AAGGCGGACTCTACGTGGACGCAGGGATCAAGCGTCTGTCAAGGGTGTGC
GGAGCGGAGCAGGCGCTGCGGCCGGTGGCGACGGGGGCTTACTTCGAGGC
CTTCCGGCAGTACAAGGTGTGCCTGGAGGTCGCCGGCGGTGGCTTCCTGA
CGCTGGGCCGGGTGCACGTCGCTCAGACGTGCCTCCCGGAGCACCAATTC
GTGTTCCAGCCGGTGGTATCGGTCGACTCTTCCAAGCAGAAGGCCGGCGG
CCGCACAGCGGCCAAGGAGAGGGCCGCCGCCGCCGGCAAGTATTGCGTGT
ACAACCCCACCTCCGGCTTCTACCTGAGCGCGCAGGGCCGCCCGAGGGCT
CAGTGCGGACCGATGGAGCACTGGCGCGTGAAGCCCGCCCCGCGCGCGCC
GGGTCTCAAGGGTTTTCGGGGCAGCGGCCCGCTGAGTGTCTCGGGGAAGG
CGATTTCAAAGGTCTCTGCGCTTCTTCACCCGAACTTCTCGCGAGCTCCG
CTGCACACGTTCATGGACTACCTTTGGGTTGCGACGGCGATTCTTATCGC
GAGGGCTGTCTTCTCAATGATGGCTACCTCGCCGTGCGTCGCGGGGTCCA
GCCACCGGCGCGGTAATGCTCCGACGAGCGGCGGCGGCGGCTCCAGGCAC
CATCGGGGTCTCGGCGCGCGGCAGCGGTCGACCGGGCGATTTTTGTCGCG
CTCGCGCACCAGTTTCGGTGACTTTTTAGAAGCCGGCTACCAAGGAGACG
CTGGCTACGTCGGGGATGCGGAGATGGGTGGCGCTGGGTACGGTGGCTAT
GGCAGCGGCGGCGGTGACTGCAGTAGCAGCAGCAGCAGCAGCAGTCGGAT
GAGATCCCCAGCGTACCCGGCAAGCAAAGTTTGGCGGCGCCGGCGGCACC
CCCGTCTCGCCCGTGGCGGAAAGCAGTCGGCGTCGCGAGAGCGCCGCGGG
CGGCTGGGAGGACGCCGTGGCGACGACCGGGACAAGCAACAGCGACATGA
GAGGGGACGCGGTAGAGGCCATCAGTTCCGGAGGGAATCCATCATCGAGG
AAATACTTCCTCAAGAGACGTTCGTCCGAGGGATCGGCGTTTGCCGACAG
GCACGGGTCGCTCGCTAAGCTCTTCTCCGGCCTAGTTGCCGTTTGCAACG
CGACGCTCCTGGCCGGCCTCTGGTGCCTGATCCCGGCGCACTTTGCCCAA
GCGCTGAGCGCACTGGCCCTCGACCACCACTCGGCGATCGACCAGGGCCT
TGGTATGGTCTCCGACCTCGAGAAAGTCGCGGCGGACAGCGCTTCGGCGC
GGAACCTCGAGGGGGGGGTCGACCACCAATTGGAGTACACCATCCTTCTC
GGGGGCGTCGGCCCCGGCCGCGAGACCGCTTCACCGACCCCGTCATGCGA
CAGCTCAGCGTGGTGGCTCATGTCGGCGCTCATACGGTGGCACCTGCTGC
TCCTGCTGGTGGCCTTCTGCCACCTTCACGGCGCCGCCGTCTACGCGGCG
GCGACCTCGGCTTCGACCTCCCACCACCGGTGGCGCAGCAACCGCCGCTT
GGGCGGCGGCGGCGGCGGCAAGAAAGCGAAG back to topCoding sequence (CDS) from alignment at P-fluviatile_contig8:1272427..1279007- >mRNA_P-fluviatile_contig8.14424.1 ID=mRNA_P-fluviatile_contig8.14424.1|Name=mRNA_P-fluviatile_contig8.14424.1|organism=Porterinema fluviatile SAG_2381|type=CDS|length=8922bp|location=Sequence derived from alignment at P-fluviatile_contig8:1272427..1279007- (Porterinema fluviatile SAG_2381) ATGATGAACTTAGAAACGATACCGTCAAGTAGCGCCGGGAGGCGGCGGCT CAAACGACCTCGCCCTCCCTCGCGGCAGCAGCAGGACTCCGACTATCACG ACATCATGCTCACCTCCTGTCCGCATCATCTGGCTGCTGGGTCACCGGGC GGAGCAGCAGGTGGAGCAGCAGCAGGCGGAGCAGCCGTACCACCACACCT CGAACGTTGCCGTCACCTACCGCGGGACGCAGCACCTGATGTCGTTGGGG ATGCGAGCATGATTGGCCCTGCCGTTGGCGGCGGGGACGGCGACCACCGC GCCACCGACTCGAGCGGCGGTCCCCTCGAGAGAACTAGTGTTCCTACCGA CGAACCGATGACACGGCCGCGGCTTCCACGGCCACGACGAACCCTGGCCG CGACAGCGATGGCGCTCGTTATGTTAGGAGCCCTGGCGCCGGCGGTTTCG GCGATGTCGGCGCCGGCGGCGGCATCCCCGCTGGTAGCCGAGCACGAATT CCTGCCGGCTGCGGAGTCGAAAATGACGCTCTCGTCTCGGCTGTGCTCTC CCTCCGAGGACGCCCGGGCGTACGTGACCACGATTGCCCATAACGGCAGC AGCGGTGGTAGCGGCGGAGCCAGAGGGGAGAAAGGCGATAAGAGCGGGGA TCTGCTGGTGGGGGCGCGGGTGTTGGCGCAGTCTCTCCGGGCCGCGGGCG CGAAGGGCGAGGTGGTCGTGCTGGTCCCGAGAGCGAGGGCGACGCCGCCC ACTTTGGACTCATTGCGACGGGATGGGCTTACGGTTCAAATAGTGCCCAT GGGACTGCAGTCCGATGATGAACTTAGAAACGATACCGTCAAGTAGCGCC GGGAGGCGGCGGCTCAAACGACCTCGCCCTCCCTCGCGGCAGCAGCAGGA CTCCGACTATCACGACATCATGCTCACCTCCTGTCCGCATCATCTGGCTG CTGGGTCACCGGGCGGAGCAGCAGGTGGAGCAGCAGCAGGCGGAGCAGCC GTACCACCACACCTCGAACGTTGCCGTCACCTACCGCGGGACGCAGCACC TGATGTCGTTGGGGATGCGAGCATGATTGGCCCTGCCGTTGGCGGCGGGG ACGGCGACCACCGCGCCACCGACTCGAGCGGCGGTCCCCTCGAGAGAACT AGTGTTCCTACCGACGAACCGATGACACGGCCGCGGCTTCCACGGCCACG ACGAACCCTGGCCGCGACAGCGATGGCGCTCGTTATGTTAGGAGCCCTGG CGCCGGCGGTTTCGGCGATGTCGGCGCCGGCGGCGGCATCCCCGCTGGTA GCCGAGCACGAATTCCTGCCGGCTGCGGAGTCGAAAATGACGCTCTCGTC TCGGCTGTGCTCTCCCTCCGAGGACGCCCGGGCGTACGTGACCACGATTG CCCATAACGGCAGCAGCGGTGGTAGCGGCGGAGCCAGAGGGGAGAAAGGC GATAAGAGCGGGGATCTGCTGGTGGGGGCGCGGGTGTTGGCGCAGTCTCT CCGGGCCGCGGGCGCGAAGGGCGAGGTGGTCGTGCTGGTCCCGAGAGCGA GGGCGACGCCGCCCACTTTGGACTCATTGCGACGGGATGGGCTTACGGTT CAAATAGTGCCCATGGGACTGCAGTCCGCCGAAGGAGAGGTCGTTTCGGA GGAGCTGATGAGTAAGGTTTTCCTGTGGAGCCTCACGTCATACGACCGGG TGGTGTTCCTCGATCCCCGTTCGCTGATCCAGAAGAACCCGGACGCCCTG TTTGCGTGCGAGGGCTTCTGCGCGGCGGGGGCGGTGCACACCCCGTCCTC CGCCTCTTATTTCCGACCGGCCTGGGCAAGGGGAACCGGACGGGAGGCCG GGATTGGGGCGGGGTCAGCGGTAGCTGCCACCGGCGCCGCGCTGCCGTCC ATGCCGGGTCTGGCGCAGCACGGCTTGGAAGACAGCAGCGACGACGACAA CGTCGGCCACAAGGAGGCGGCCGCCGCGGTGCTGGAGAAGCCGCTCTCCA CCCCGCCGCCCTGGCAGCCGTCCACCTCGGTCATGGTCCTCGAGCCGTCG CTGGCGGTGCACGCGGCGATGCTGGACGAGCTCACGCGGACACCGGCGGT CGGCAGCCTCGAGGCGCAGGTTTTCTTGTCCTCATTCCTGCTGAAAGGTG TCGCCGCCGAGGCGGGGGACCGTTGCGTGCTGTTCCAAGACCCGCTTGAA GTCGCCTCGTCCGAGCGGCAGTCTAACGGTGGCGGCTCCGGACTTGGCGA TTGGAAAGACGGTGTCGTTCCGGGAGGGAAGGTTTTGTGGGCCGGCGATG GCGCGCAGGACATACGCTTTGACGGCGGCGGCAGCAACATATTCTTGGAG GACGCGCTCACGCCGGTCGTGCTGCTGAACGGGCCGCATTTGCCGCGGTG TAGCGCGCGGCGTAAGCGCACTGCAGACGGCGTGTGTCAGCGCCTGCCGT ACACGTTCGCGGCACCGGCGACCGACTTCAGCGGCACGGGAAGCTGGGGG GCGCGCAACGGCCCGGGGACTCCGGGGCCGCACATCATCCACATCGCCGA CGATGACACGCCGTGGAAGCGGCTGGCGTACCTCCACAAGCCGCTCTTCT GGAAGTGGAACGTCTACCGGCAGCACCTCGAGTACCCACGCGGCAGCTTC TTCGCCCAGTGGGTGCTCTTCTTCATCCCCTGCGTCGTGCTCGCGTTCGC TCGTGTGTACTACAAGAACGCAGGTAGGCACAACAACGGCGGGGTAAATG ACGGCACCGGCAGGGGCAGTAGCGGCGGGGGCACGTCCACTGATCCTGTG GGGGACAGTTCCTCCCCGTATAGGCCGCGAAACTTCTGGATGCGCAGCCC GAACCAGTCGGCGCGACGACAACAGCCGCGGCAAATCCAGCAAGTGGCCA TCTTGCCGGCTTGCGGGATTGCGGTAGCGTACGACGGTACAGCCGGCGCG TGCATCGCCGGTCCCGTGATTAACACGTCGCCGGCGGCTGGGCAGCCTAG GACCATATCCGGCGGGAGCAGTGGCAGCGGCGGGAGTAGCCTCGGCTTCG GCATGGCGGTCGGTGTGGATCAGTCGTCGTCTTCCCGCCTCTCCGGAGCT GGGGGTCGAGGTCAGAGTCTGCCGGTCGGGGCACGCTCCGTGCTCTCGGC CCTGGTGGGCGTGTTCGGCCTGCTGTGGTGCCGCGCGGCGCAGGCGCTGG TGCACCAGGTGGTGGATCCGAGCTGGCACCCCATCATTTCGGTCTTGGTG CACGACGCCTGGCTGTGCTGCGCTTTCGTGATCGGGCTGTACGTTATGGA CTACCTGCACTACGCCAGGGTCACTCGAATGAAAACGCTCCTGAAGGATT CTGTGGTGGTGGCGTCTGTCGTTGCAGTGGTTTGGGCTTTGCACGCGAGG GTGATGGACGCGAGTGGCGGCGGGGGTTGGGTTGGAGGCGAGGCCGGGGT TCTCTGGGCGGGCGCCATTGGCATCGGTGTCATTGGTCTCGGGCTCGGTC ACGGGAGCCGCCCCGATGTCGTGCATCGGCTGTCCGGCCGCGTGCACCTA CGCTGCGTGGTGGCGAGTTGCGTGATCGGAACGGCAATTTCCTTGGCAGT GTGCTGCCTGGGGCGGGCCGGTGTCCACCTGTCGTCGGCGGGCCGACGCA CCCAGTCGGCGGTCGCGACGGCCCAGATGGCGTTCGTTGCGCTGGTTTAC GCCTCGTTGATGAGCCGAGTTCGCCTCTTGCGCCCCAACGAAGCGGACGA GGCCGTCGGCGCCGGCGCCGGCTCGAGGATCCTCCGCTCGTGCTCGACGG CGTCGCTGGTCTCGGAGGCGTTGATGGCCACGATGGCCACTGCGCCCGGC AATATCGCGACGTCTGCGGTGGCGTCCTCGATGGCCGCGCTGTCGACGCC AAAAGCAAGGACTGCTGCCGCCGTTGCCTCGGGAACGGAGGGCGGGGGGC GGGGCGGCGGCGTCAGGCAGGGATGGATGAATTGTTGGGCTCTGTTGGCG ACAGCGGCGGCGAGGGCTGGGGGCCTGATCTGGCAACGGCGCTGGGTGGC CGCATGCGTTGCGGCTCTAGGGCTCTGGAAGGTGTCGTCGACGACCCTGC TGCCCAAGAGTCCGGCCTGGAACTTCGAGAAGCACGGCCAGTCCTGCCTC GAGAGCCAAGGCGGACTCTACGTGGACGCAGGGATCAAGCGTCTGTCAAG GGTGTGCGGAGCGGAGCAGGCGCTGCGGCCGGTGGCGACGGGGGCTTACT TCGAGGCCTTCCGGCAGTACAAGGTGTGCCTGGAGGTCGCCGGCGGTGGC TTCCTGACGCTGGGCCGGGTGCACGTCGCTCAGACGTGCCTCCCGGAGCA CCAATTCGTGTTCCAGCCGGTGGTATCGGTCGACTCTTCCAAGCAGAAGG CCGGCGGCCGCACAGCGGCCAAGGAGAGGGCCGCCGCCGCCGGCAAGTAT TGCGTGTACAACCCCACCTCCGGCTTCTACCTGAGCGCGCAGGGCCGCCC GAGGGCTCAGTGCGGACCGATGGAGCACTGGCGCGTGAAGCCCGCCCCGC GCGCGCCGGGTCTCAAGGGTTTTCGGGGCAGCGGCCCGCTGAGTGTCTCG GGGAAGGCGATTTCAAAGGTCTCTGCGCTTCTTCACCCGAACTTCTCGCG AGCTCCGCTGCACACGTTCATGGACTACCTTTGGGTTGCGACGGCGATTC TTATCGCGAGGGCTGTCTTCTCAATGATGGCTACCTCGCCGTGCGTCGCG GGGTCCAGCCACCGGCGCGGTAATGCTCCGACGAGCGGCGGCGGCGGCTC CAGGCACCATCGGGGTCTCGGCGCGCGGCAGCGGTCGACCGGGCGATTTT TGTCGCGCTCGCGCACCAGTTTCGGTGACTTTTTAGAAGCCGGCTACCAA GGAGACGCTGGCTACGTCGGGGATGCGGAGATGGGTGGCGCTGGGTACGG TGGCTATGGCAGCGGCGGCGGTGACTGCAGTAGCAGCAGCAGCAGCAGCA GTCGGATGAGATCCCCAGCGTACCCGGCAAGCAAAGTTTGGCGGCGCCGG CGGCACCCCCGTCTCGCCCGTGGCGGAAAGCAGTCGGCGTCGCGAGAGCG CCGCGGGCGGCTGGGAGGACGCCGTGGCGACGACCGGGACAAGCAACAGC GACATGAGAGGGGACGCGGTAGAGGCCATCAGTTCCGGAGGGAATCCATC ATCGAGGAAATACTTCCTCAAGAGACGTTCGTCCGAGGGATCGGCGTTTG CCGACAGGCACGGGTCGCTCGCTAACCGAAGGAGAGGTCGTTTCGGAGGA GCTGATGAGTAAGGTTTTCCTGTGGAGCCTCACGTCATACGACCGGGTGG TGTTCCTCGATCCCCGTTCGCTGATCCAGAAGAACCCGGACGCCCTGTTT GCGTGCGAGGGCTTCTGCGCGGCGGGGGCGGTGCACACCCCGTCCTCCGC CTCTTATTTCCGACCGGCCTGGGCAAGGGGAACCGGACGGGAGGCCGGGA TTGGGGCGGGGTCAGCGGTAGCTGCCACCGGCGCCGCGCTGCCGTCCATG CCGGGTCTGGCGCAGCACGGCTTGGAAGACAGCAGCGACGACGACAACGT CGGCCACAAGGAGGCGGCCGCCGCGGTGCTGGAGAAGCCGCTCTCCACCC CGCCGCCCTGGCAGCCGTCCACCTCGGTCATGGTCCTCGAGCCGTCGCTG GCGGTGCACGCGGCGATGCTGGACGAGCTCACGCGGACACCGGCGGTCGG CAGCCTCGAGGCGCAGGTTTTCTTGTCCTCATTCCTGCTGAAAGGTGTCG CCGCCGAGGCGGGGGACCGTTGCGTGCTGTTCCAAGACCCGCTTGAAGTC GCCTCGTCCGAGCGGCAGTCTAACGGTGGCGGCTCCGGACTTGGCGATTG GAAAGACGGTGTCGTTCCGGGAGGGAAGGTTTTGTGGGCCGGCGATGGCG CGCAGGACATACGCTTTGACGGCGGCGGCAGCAACATATTCTTGGAGGAC GCGCTCACGCCGGTCGTGCTGCTGAACGGGCCGCATTTGCCGCGGTGTAG CGCGCGGCGTAAGCGCACTGCAGACGGCGTGTGTCAGCGCCTGCCGTACA CGTTCGCGGCACCGGCGACCGACTTCAGCGGCACGGGAAGCTGGGGGGCG CGCAACGGCCCGGGGACTCCGGGGCCGCACATCATCCACATCGCCGACGA TGACACGCCGTGGAAGCGGCTGGCGTACCTCCACAAGCCGCTCTTCTGGA AGTGGAACGTCTACCGGCAGCACCTCGAGTACCCACGCGGCAGCTTCTTC GCCCAGTGGGTGCTCTTCTTCATCCCCTGCGTCGTGCTCGCGTTCGCTCG TGTGTACTACAAGAACGCAGGTAGGCACAACAACGGCGGGGTAAATGACG GCACCGGCAGGGGCAGTAGCGGCGGGGGCACGTCCACTGATCCTGTGGGG GACAGTTCCTCCCCGTATAGGCCGCGAAACTTCTGGATGCGCAGCCCGAA CCAGTCGGCGCGACGACAACAGCCGCGGCAAATCCAGCAAGTGGCCATCT TGCCGGCTTGCGGGATTGCGGTAGCGTACGACGGTACAGCCGGCGCGTGC ATCGCCGGTCCCGTGATTAACACGTCGCCGGCGGCTGGGCAGCCTAGGAC CATATCCGGCGGGAGCAGTGGCAGCGGCGGGAGTAGCCTCGGCTTCGGCA TGGCGGTCGGTGTGGATCAGTCGTCGTCTTCCCGCCTCTCCGGAGCTGGG GGTCGAGGTCAGAGTCTGCCGGTCGGGGCACGCTCCGTGCTCTCGGCCCT GGTGGGCGTGTTCGGCCTGCTGTGGTGCCGCGCGGCGCAGGCGCTGGTGC ACCAGGTGGTGGATCCGAGCTGGCACCCCATCATTTCGGTCTTGGTGCAC GACGCCTGGCTGTGCTGCGCTTTCGTGATCGGGCTGTACGTTATGGACTA CCTGCACTACGCCAGGGTCACTCGAATGAAAACGCTCCTGAAGGATTCTG TGGTGGTGGCGTCTGTCGTTGCAGTGGTTTGGGCTTTGCACGCGAGGGTG ATGGACGCGAGTGGCGGCGGGGGTTGGGTTGGAGGCGAGGCCGGGGTTCT CTGGGCGGGCGCCATTGGCATCGGTGTCATTGGTCTCGGGCTCGGTCACG GGAGCCGCCCCGATGTCGTGCATCGGCTGTCCGGCCGCGTGCACCTACGC TGCGTGGTGGCGAGTTGCGTGATCGGAACGGCAATTTCCTTGGCAGTGTG CTGCCTGGGGCGGGCCGGTGTCCACCTGTCGTCGGCGGGCCGACGCACCC AGTCGGCGGTCGCGACGGCCCAGATGGCGTTCGTTGCGCTGGTTTACGCC TCGTTGATGAGCCGAGTTCGCCTCTTGCGCCCCAACGAAGCGGACGAGGC CGTCGGCGCCGGCGCCGGCTCGAGGATCCTCCGCTCGTGCTCGACGGCGT CGCTGGTCTCGGAGGCGTTGATGGCCACGATGGCCACTGCGCCCGGCAAT ATCGCGACGTCTGCGGTGGCGTCCTCGATGGCCGCGCTGTCGACGCCAAA AGCAAGGACTGCTGCCGCCGTTGCCTCGGGAACGGAGGGCGGGGGGCGGG GCGGCGGCGTCAGGCAGGGATGGATGAATTGTTGGGCTCTGTTGGCGACA GCGGCGGCGAGGGCTGGGGGCCTGATCTGGCAACGGCGCTGGGTGGCCGC ATGCGTTGCGGCTCTAGGGCTCTGGAAGGTGTCGTCGACGACCCTGCTGC CCAAGAGTCCGGCCTGGAACTTCGAGAAGCACGGCCAGTCCTGCCTCGAG AGCCAAGGCGGACTCTACGTGGACGCAGGGATCAAGCGTCTGTCAAGGGT GTGCGGAGCGGAGCAGGCGCTGCGGCCGGTGGCGACGGGGGCTTACTTCG AGGCCTTCCGGCAGTACAAGGTGTGCCTGGAGGTCGCCGGCGGTGGCTTC CTGACGCTGGGCCGGGTGCACGTCGCTCAGACGTGCCTCCCGGAGCACCA ATTCGTGTTCCAGCCGGTGGTATCGGTCGACTCTTCCAAGCAGAAGGCCG GCGGCCGCACAGCGGCCAAGGAGAGGGCCGCCGCCGCCGGCAAGTATTGC GTGTACAACCCCACCTCCGGCTTCTACCTGAGCGCGCAGGGCCGCCCGAG GGCTCAGTGCGGACCGATGGAGCACTGGCGCGTGAAGCCCGCCCCGCGCG CGCCGGGTCTCAAGGGTTTTCGGGGCAGCGGCCCGCTGAGTGTCTCGGGG AAGGCGATTTCAAAGGTCTCTGCGCTTCTTCACCCGAACTTCTCGCGAGC TCCGCTGCACACGTTCATGGACTACCTTTGGGTTGCGACGGCGATTCTTA TCGCGAGGGCTGTCTTCTCAATGATGGCTACCTCGCCGTGCGTCGCGGGG TCCAGCCACCGGCGCGGTAATGCTCCGACGAGCGGCGGCGGCGGCTCCAG GCACCATCGGGGTCTCGGCGCGCGGCAGCGGTCGACCGGGCGATTTTTGT CGCGCTCGCGCACCAGTTTCGGTGACTTTTTAGAAGCCGGCTACCAAGGA GACGCTGGCTACGTCGGGGATGCGGAGATGGGTGGCGCTGGGTACGGTGG CTATGGCAGCGGCGGCGGTGACTGCAGTAGCAGCAGCAGCAGCAGCAGTC GGATGAGATCCCCAGCGTACCCGGCAAGCAAAGTTTGGCGGCGCCGGCGG CACCCCCGTCTCGCCCGTGGCGGAAAGCAGTCGGCGTCGCGAGAGCGCCG CGGGCGGCTGGGAGGACGCCGTGGCGACGACCGGGACAAGCAACAGCGAC ATGAGAGGGGACGCGGTAGAGGCCATCAGTTCCGGAGGGAATCCATCATC GAGGAAATACTTCCTCAAGAGACGTTCGTCCGAGGGATCGGCGTTTGCCG ACAGGCACGGGTCGCTCGCTAA back to top
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