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Homology
BLAST of mRNA_P-fluviatile_contig13.1801.1 vs. uniprot
Match: A0A6H5KYE5_9PHAE (FHA domain-containing protein n=1 Tax=Ectocarpus sp. CCAP 1310/34 TaxID=867726 RepID=A0A6H5KYE5_9PHAE) HSP 1 Score: 521 bits (1341), Expect = 9.200e-157 Identity = 436/786 (55.47%), Postives = 479/786 (60.94%), Query Frame = 3
Query: 72 MADWAAAAAAWAQSGEGEKNELVPXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXMWMA-HAMDPSI--GAHGQHQHGGFAPAPAGVSSMLAESHQEF-----AHGAPPLPPPS--QPPYPPAPS---NDHGHFFQDQGWTAAG-YPXXXXXXXXGQPPALGQGNMTGQMGSQVNGGQMLDQMGHYMGGH---------MGGMXXXXXQMG------QVGEGQQRMGMYQQPPAVNTSNPTAAVVGPMSGMAGGIVHGGMDGTGSLGSGPIMNGSMMGGIPSGMGSGGGGGFPVGLAAGQQRPAKKVPDWLVQTLKEKEKIAERQKRKERVSLSTDVAASLSGGAGNISGYNLVHSPSPSPPGSPSSQRTRPSWQDDDSDXXXADEVSPTRVNEEKKASNGKSXXXXDSGGTGARNGN-KPSGILKKGGSKKSGAGRVLTGADDEAVGAAVTSS-VMDEETEASFDREIRRLLTHLLKDGTANIIREVASSALEETQYSIVAXXXXXXXXXXXXXXXXXXXXXXXXXXXX-AIGALIGGYGSASASESEGDASPPQAAAPSTTVSGNLTSAGNGAQDKRSTTTDTPTGVVSSPAPATKEAPIMVGGKWPLPSWADPPHETPLPSGLSIVVETIGPDLERVKTQELAFSTTVMGRFEEQCGFVVEDSSASRCHAAIIASDKDVHVVDIFSANGTAVNGKKLQPGVLHSLSSGGVLTLGTRNQSFRVIVRSSPTSRKESP-SLASTSIVGLSSPRAGPAXXXXXXXXXPAFKQDLVALAAKIAARVNTK 2330
MADWAAAAAAWAQSGEGEK + VPXXXXXXXXXXXXXX +WM H MD + AH HQ F P G M HQ F +H APPLPPP Q +PPA S N+ G FF +QGW AAG Y XXXXXXXXGQP A G MGG +MG M YQ P N +P AA+ PM+GM G G F G A QRPAKKVPDWLVQTLKEKEK+AE+QK+K+ SLSTDVAA+LS GAGNISGYNLVHSPSPSPP SPS++RT+PSWQ+DDSD ADE S R N +K+ASNG + S G G RN + KPSGILKKGG+K+ GA L D+A A T+ VMD+ET ASFDREIRRLLTHLLK GTANIIREVASSALEE Q S XXXXXXXXXXXXXXXXXXXXXXXXXXX A+GALIGGYGS S P P K A + VGGKWPLPSWADPPHE PLP GLSIVVETIGPDLERVKTQEL+FSTTVMGRFEEQCGFVVED+SASRCHAAI+AS KDV VVDIFSANGTAVNGKK+QPGVLH+LS+GGVLTLGTRNQSFRVIVRS+P R+E P S +++ V SP G A P FKQDLVALAA IAAR+NTK
Sbjct: 1 MADWAAAAAAWAQSGEGEKTQFVPXXXXXXXXXXXXXXGAWGGADQQQ------LWMPPHQMDHAAVASAHQGHQQHSFGSLPGGSDPMAGGGHQGFGQEGVSHTAPPLPPPPSMQXXFPPAASSNVNEQGQFFHEQGWAAAGGYXXXXXXXXXGQPXAPGXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXMGGPMAPMSEMGGXXXXXXXXXXXHAMEAYQGSPVGNALHP-AAMASPMTGMGGXXXXXXXXXXXXXXXXXXXXXXXXXXXXXX-----GVAFLAGPAPVPQRPAKKVPDWLVQTLKEKEKLAEKQKKKKGASLSTDVAAALSSGAGNISGYNLVHSPSPSPPDSPSARRTKPSWQEDDSDDDSADETSFKRENRDKRASNGSAADG--SAGAGTRNDSAKPSGILKKGGTKQRGAEGGLDRNGDDATAEADTAPLVMDDETRASFDREIRRLLTHLLKVGTANIIREVASSALEEAQDSXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXKKAVGALIGGYGSES---------------PXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXPPAVEKRAHVKVGGKWPLPSWADPPHEAPLPEGLSIVVETIGPDLERVKTQELSFSTTVMGRFEEQCGFVVEDASASRCHAAILASGKDVFVVDIFSANGTAVNGKKIQPGVLHALSAGGVLTLGTRNQSFRVIVRSTPPPRREDPRSPTASANVTSPSPAGGSAQPPKVSDTPPKFKQDLVALAATIAARINTK 757
BLAST of mRNA_P-fluviatile_contig13.1801.1 vs. uniprot
Match: D7FPI9_ECTSI (Uncharacterized protein n=1 Tax=Ectocarpus siliculosus TaxID=2880 RepID=D7FPI9_ECTSI) HSP 1 Score: 352 bits (903), Expect = 5.160e-105 Identity = 254/385 (65.97%), Postives = 276/385 (71.69%), Query Frame = 3
Query: 855 FPVGLAAGQQRPAKKVPDWLVQTLKEKEKIAERQKRKERVSLSTDVAASLSGGAGNISGYNLVHSPSPSPPGSPSSQRTRPSWQDDDSDXXXADEVSPTRVNEEKKASNGKSXXXXDSGGTGARNGN-KPSGILKKGGSKKSGA-GRVLTGADDEAVGAAVTSSVMDEETEASFDREIRRLLTHLLKDGTANIIREVASSALEETQYSIVAXXXXXXXXXXXXXXXXXXXXXXXXXXXXAIGALIGGYGSASASESEGDASPPQAAAPSTTVSGNLTSAGNGAQDKRSTTTDTPTGVVSSPAPATKEAPIMVGGKWPLPSWADPPHETPLPSGLSIVVETIGPDLERVKTQELAFSTTVMGRFEEQCGFVVEDSSASRCHAAIIA 2003
F G AA QRPAKKVPDWLVQTLKEKEK+AE+QK+KE SLSTDVA +LS GAGNISGYNLVHSPSPSPP SPS++RT+PSWQ+DDSD XX E SP R N +K+ASNG XXXX T RNG+ KPSGILKKGG+K+ GA G + DD A VMD+ET ASFDREIRRLLTHLLK GTANIIREVASSALEE Q S XXXXXXXXXXXXXXXXXXXXXXXXX A+GALIGGYGS S P P K A + VGGKWPLPSWADPPHE P+P GLSIVVETIGPDLERVKTQEL+FSTTVMGRFEEQCGFVVED+SASRCHAAI++
Sbjct: 44 FLAGPAAVPQRPAKKVPDWLVQTLKEKEKLAEKQKKKEGASLSTDVATALSSGAGNISGYNLVHSPSPSPPDSPSARRTKPSWQEDDSDDXXXXEASPKRANRDKRASNGSXXXXXXXXXT--RNGSAKPSGILKKGGTKQRGAVGGLDRNGDDATAEADTAPLVMDDETRASFDREIRRLLTHLLKVGTANIIREVASSALEEAQDSXXXXXXXXXXXXXXXXXXXXXXXXXXXXKK-AVGALIGGYGSES---------------PXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXPPAVEKRAHVKVGGKWPLPSWADPPHEAPIPEGLSIVVETIGPDLERVKTQELSFSTTVMGRFEEQCGFVVEDASASRCHAAILS 410
BLAST of mRNA_P-fluviatile_contig13.1801.1 vs. uniprot
Match: A0A7S1CHD3_9STRA (Hypothetical protein (Fragment) n=1 Tax=Bicosoecida sp. CB-2014 TaxID=1486930 RepID=A0A7S1CHD3_9STRA) HSP 1 Score: 60.8 bits (146), Expect = 2.730e-6 Identity = 44/118 (37.29%), Postives = 62/118 (52.54%), Query Frame = 3
Query: 1803 PSWADPPHETPLPSGLSIVVETIGPDLERVKTQELAFSTTVMGRFEEQCGFVVEDSSASRCHAAIIA-SDKDVHVVDIFSANGTAVNGKKLQPGVLHSLSSGGVLTLGTRNQSFRVIV 2153
PSWA PP L + V G ++ ++ A TV+GR Q ++E +S SR HAAI+ SD VVD+ S+NGT +NGK+L P H L+ G VL + F V++
Sbjct: 26 PSWAAPPSGAA--RSLRLRVSADGHVVDSIQLGTRA--ATVLGRNRAQADLLLEHTSLSRRHAAILHDSDGRSFVVDLGSSNGTRLNGKRLPPHERHELAPGDVLEFAELRRRFEVLM 139
BLAST of mRNA_P-fluviatile_contig13.1801.1 vs. uniprot
Match: A0A6I9TVX2_SESIN (uncharacterized protein LOC105170974 isoform X1 n=2 Tax=Sesamum indicum TaxID=4182 RepID=A0A6I9TVX2_SESIN) HSP 1 Score: 56.2 bits (134), Expect = 8.550e-5 Identity = 30/83 (36.14%), Postives = 50/83 (60.24%), Query Frame = 3
Query: 1902 ELAFSTTVMGRFEEQCGFVVEDSSASRCHAAIIASDKDVHVVDIFSANGTAVNGKKLQPGVLHSLSSGGVLTLGTRNQS-FRV 2147
E+A + +GR E+ V+ + S HA I +D+++ + D+ S NGT ++ K+LQPGV+ + S G ++T G N + FRV
Sbjct: 98 EIASNVVTVGRVPEKADIVISVPTVSALHARIQKTDENLLITDLDSTNGTFIDEKRLQPGVVSAASPGNLVTFGDTNLAIFRV 180
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 |
| Hectar predicted targeting category | other localisation |
| Ec32 ortholog description | Hypothetical protein |
| Ec32 ortholog | Ec-12_000750.1 |
| Exons | 6 |
| Model size | 4833 |
| Cds size | 3933 |
| 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 |
| 1622815564.7132833-UTR-P-fluviatile_contig13:1769333..1770162 | 1622815564.7132833-UTR-P-fluviatile_contig13:1769333..1770162 | Porterinema fluviatile SAG_2381 | UTR | P-fluviatile_contig13 1769334..1770162 - |
| 1693562266.0582137-UTR-P-fluviatile_contig13:1769333..1770162 | 1693562266.0582137-UTR-P-fluviatile_contig13:1769333..1770162 | Porterinema fluviatile SAG_2381 | UTR | P-fluviatile_contig13 1769334..1770162 - |
| 1622815564.806918-UTR-P-fluviatile_contig13:1775560..1775596 | 1622815564.806918-UTR-P-fluviatile_contig13:1775560..1775596 | Porterinema fluviatile SAG_2381 | UTR | P-fluviatile_contig13 1775561..1775596 - |
| 1693562266.1051798-UTR-P-fluviatile_contig13:1775560..1775596 | 1693562266.1051798-UTR-P-fluviatile_contig13:1775560..1775596 | Porterinema fluviatile SAG_2381 | UTR | P-fluviatile_contig13 1775561..1775596 - |
| 1622815564.8184044-UTR-P-fluviatile_contig13:1775739..1775774 | 1622815564.8184044-UTR-P-fluviatile_contig13:1775739..1775774 | Porterinema fluviatile SAG_2381 | UTR | P-fluviatile_contig13 1775740..1775774 - |
| 1693562266.1152732-UTR-P-fluviatile_contig13:1775739..1775774 | 1693562266.1152732-UTR-P-fluviatile_contig13:1775739..1775774 | Porterinema fluviatile SAG_2381 | UTR | P-fluviatile_contig13 1775740..1775774 - |
The following CDS feature(s) are a part of this mRNA:
| Feature Name | Unique Name | Species | Type | Position |
| 1622815564.7521057-CDS-P-fluviatile_contig13:1770162..1771444 | 1622815564.7521057-CDS-P-fluviatile_contig13:1770162..1771444 | Porterinema fluviatile SAG_2381 | CDS | P-fluviatile_contig13 1770163..1771444 - |
| 1693562266.0661597-CDS-P-fluviatile_contig13:1770162..1771444 | 1693562266.0661597-CDS-P-fluviatile_contig13:1770162..1771444 | Porterinema fluviatile SAG_2381 | CDS | P-fluviatile_contig13 1770163..1771444 - |
| 1622815564.7636824-CDS-P-fluviatile_contig13:1771627..1772350 | 1622815564.7636824-CDS-P-fluviatile_contig13:1771627..1772350 | Porterinema fluviatile SAG_2381 | CDS | P-fluviatile_contig13 1771628..1772350 - |
| 1693562266.0742338-CDS-P-fluviatile_contig13:1771627..1772350 | 1693562266.0742338-CDS-P-fluviatile_contig13:1771627..1772350 | Porterinema fluviatile SAG_2381 | CDS | P-fluviatile_contig13 1771628..1772350 - |
| 1622815564.7731433-CDS-P-fluviatile_contig13:1772725..1774280 | 1622815564.7731433-CDS-P-fluviatile_contig13:1772725..1774280 | Porterinema fluviatile SAG_2381 | CDS | P-fluviatile_contig13 1772726..1774280 - |
| 1693562266.08221-CDS-P-fluviatile_contig13:1772725..1774280 | 1693562266.08221-CDS-P-fluviatile_contig13:1772725..1774280 | Porterinema fluviatile SAG_2381 | CDS | P-fluviatile_contig13 1772726..1774280 - |
| 1622815564.782688-CDS-P-fluviatile_contig13:1774680..1774761 | 1622815564.782688-CDS-P-fluviatile_contig13:1774680..1774761 | Porterinema fluviatile SAG_2381 | CDS | P-fluviatile_contig13 1774681..1774761 - |
| 1693562266.0901194-CDS-P-fluviatile_contig13:1774680..1774761 | 1693562266.0901194-CDS-P-fluviatile_contig13:1774680..1774761 | Porterinema fluviatile SAG_2381 | CDS | P-fluviatile_contig13 1774681..1774761 - |
| 1622815564.7940547-CDS-P-fluviatile_contig13:1775268..1775560 | 1622815564.7940547-CDS-P-fluviatile_contig13:1775268..1775560 | Porterinema fluviatile SAG_2381 | CDS | P-fluviatile_contig13 1775269..1775560 - |
| 1693562266.0976534-CDS-P-fluviatile_contig13:1775268..1775560 | 1693562266.0976534-CDS-P-fluviatile_contig13:1775268..1775560 | Porterinema fluviatile SAG_2381 | CDS | P-fluviatile_contig13 1775269..1775560 - |
Sequences
The following sequences are available for this feature:
protein sequence of mRNA_P-fluviatile_contig13.1801.1 >prot_P-fluviatile_contig13.1801.1 ID=prot_P-fluviatile_contig13.1801.1|Name=mRNA_P-fluviatile_contig13.1801.1|organism=Porterinema fluviatile SAG_2381|type=polypeptide|length=1311bp
MADWAAAAAAWAQSGEGEKNELVPPPPPPPQRFEQQHGGWGGAEQQQQQQ QQQQMWMAHAMDPSIGAHGQHQHGGFAPAPAGVSSMLAESHQEFAHGAPP LPPPSQPPYPPAPSNDHGHFFQDQGWTAAGYPAPPLPPPSGQPPALGQGN MTGQMGSQVNGGQMLDQMGHYMGGHMGGMGGAVGQMGQVGEGQQRMGMYQ QPPAVNTSNPTAAVVGPMSGMAGGIVHGGMDGTGSLGSGPIMNGSMMGGI PSGMGSGGGGGFPVGLAAGQQRPAKKVPDWLVQTLKEKEKIAERQKRKER VSLSTDVAASLSGGAGNISGYNLVHSPSPSPPGSPSSQRTRPSWQDDDSD DDSADEVSPTRVNEEKKASNGKSAAGGDSGGTGARNGNKPSGILKKGGSK KSGAGRVLTGADDEAVGAAVTSSVMDEETEASFDREIRRLLTHLLKDGTA NIIREVASSALEETQYSIVAAAAATSAAPKAQQQQARVKRKEQREQKKAI GALIGGYGSASASESEGDASPPQAAAPSTTVSGNLTSAGNGAQDKRSTTT DTPTGVVSSPAPATKEAPIMVGGKWPLPSWADPPHETPLPSGLSIVVETI GPDLERVKTQELAFSTTVMGRFEEQCGFVVEDSSASRCHAAIIASDKDVH VVDIFSANGTAVNGKKLQPGVLHSLSSGGVLTLGTRNQSFRVIVRSSPTS RKESPSLASTSIVGLSSPRAGPANPRAVSGNPPAFKQDLVALAAKIAARV NTKAADTAPEADKKEAREKEAIGETKQKQTATSAKEEPQAKHNNRRSRSR SRSRRSRSSSSTSRSSSSSSSSSSSSSSSGGSVRSRERDRRRRDSFKGEN DGRGGGKDWRGRKRSRSEANLRSRSRSRSRSRHSHNHRGSRSGGRGGRRE NSKERRGRRKSRSRSGSPERVIKRRSRSLSRSRERKDRGAAKDSERGGTR REGPRRRERSRSSSRSSSNNRWAASSRKRRGSDRGSRDGRRAASRSRSRS RDHSKDRSPRSKKGRQDSAEGSSGALKKPSEGSKAKKDESKKEDKKDDKG KEGSRRESRVKAAAAATSEKAIDKGAKTAPGGRSKGVSGAETNARSKEVG GGKGGASTSQAKHDQEGSPKNTNQATVNKKPSAEKKTAEKEPKKNGRNKE RSNSNSNSSSKAKESPTVEGKKGSSSSGSKVKESEVVKDKKSRSSSSSSK AKESGMSEGKKSSGSNSKGKGSEGVKDAKGRRSSREPEDRAKEQTPGRDE DEKGGRSSRELERKKRDSRRHRNRSRSSSPKRTERQRKSRSPSREERRGD SGRERRRSRS* back to topmRNA from alignment at P-fluviatile_contig13:1769334..1775774- Legend: UTRpolypeptideCDS Hold the cursor over a type above to highlight its positions in the sequence below. >mRNA_P-fluviatile_contig13.1801.1 ID=mRNA_P-fluviatile_contig13.1801.1|Name=mRNA_P-fluviatile_contig13.1801.1|organism=Porterinema fluviatile SAG_2381|type=mRNA|length=6441bp|location=Sequence derived from alignment at P-fluviatile_contig13:1769334..1775774- (Porterinema fluviatile SAG_2381) GCGTCTTCTCCCCGTGACCGGATCGAAATTTGCAGGTGAGGCGTCCCACA
TTCAAGGATGTAAGGGGCGTATTTGAAGCTCTTAACACAAGTTGTCATTG
GATCCTTGCTCGAATTGCGCGAGTCCCATTAATATCCCCCCTGCCACCCC
TTCCCCCCCACCCCCGCACATCGCACAGCAGGCACACGGGAAGGGTTGGC
AATCAGAGAGAGCCATGGCCGATTGGGCAGCAGCAGCCGCAGCGTGGGCT
CAATCTGGGGAGGGAGAAAAGAATGAGCTCGTACCCCCGCCACCGCCCCC
TCCTCAGCGATTTGAGCAACAGCACGGAGGGTGGGGCGGCGCCGAGCAGC
AGCAACAGCAGCAGCAGCAGCAGCAGATGTGGATGGCGCATGCGATGGAC
CCCTCGATTGGAGCGCACGGCCAGCACCAGCACGGCGGCTTTGCACCTGC
ACCAGCCGGTGTTTCGTCGATGTTAGCAGAAAGTCACCAAGAGTTTGCAC
ATGGAGGTACGTTCGTCCAGACGCAGAGGTTGGGTGATGGATACGGAGCG
CCTTGTGTTCCCAGGATCCACCGCCGCGTATTCTCGTCGTGGCCTTTGGG
CGGATACTTCTTGTGGGATCCGTCCCACGCTCTCGCCCTATCGGAAGTGA
ACCACAAGACGTTTGGGTGTGATACTTTGGGATCATAAACGCGAAAAGCC
AATACAGAACATGCCAGCATGCGTGAAAACACTTTTGTGATCGGGCACTT
CGTCATCATTTAGTCAAGAATCTGAAGATGTGTAAACACATAAGTGTGGC
GTCCGTCACACCGAAGGACGGAAACCAGTGCATCCCGCCCCCGCCACTGG
TGTCCCATCAAATTTCTTCCATTTCCACACGGCGTGTGCAAACTACTTGG
CAGATCTCTCATAGGCCAGTGAGCATGAATTGACAAAAACACCTGCGATA
TCTTGAAATATTCAAAATTCCACCCCCTTCCCTCGATTGTGTGCTCCTGG
TATTTGTCCACAGCCCCCCCTCTGCCACCGCCGTCGCAGCCGCCTTACCC
CCCTGCCCCCTCGAACGATCACGGCCACTTTTTTCAAGACCAAGGTGAGG
CGCGACGACCTTGTCGTATCCCACGTTTAGTACTGTAGCGGCATGATCAC
ACTCGCGAGGACCTGCTGTCTCTCGACAAAGCACAGTCTACGACAGACGA
CGTTGGATTCGAGTGAAGTATGGTTGCCAGGTAACAAGCTATCTATGATG
GGCGACGACCATCCCTGCTTCCTCATTTAAATGCCCGAGAGTATGCTTTT
GCATTTCATGTCGCCGGCCTGCCGCCTGGTGCTTCTGTTTTTTGTGGGCT
GGTTGAAGCTTCAGCTCGGCTAACGCTTGCAGTTCTCGCCTTCAAGAAAA
GCAGCTATTAATAGTTGGGTTCACTGTGCTACGCCCGCCCAGGCTTTCAT
CCTTCAGCTGTTTCTCATTATCTTCCGTCTTTTGGTCTCGACAGGCTGGA
CAGCAGCAGGCTATCCCGCTCCTCCCCTCCCACCACCTTCGGGCCAACCA
CCGGCGCTCGGCCAAGGAAACATGACCGGCCAGATGGGCTCTCAAGTGAA
TGGCGGTCAAATGCTGGATCAAATGGGGCACTATATGGGTGGACACATGG
GGGGGATGGGTGGAGCTGTGGGGCAAATGGGACAGGTGGGTGAAGGCCAA
CAACGGATGGGCATGTACCAGCAACCGCCTGCGGTGAACACCAGCAACCC
TACGGCAGCGGTGGTAGGCCCGATGTCTGGCATGGCGGGAGGCATCGTCC
ACGGTGGCATGGACGGCACGGGGTCTTTGGGCAGCGGCCCAATTATGAAC
GGATCGATGATGGGGGGTATTCCAAGTGGGATGGGCAGCGGCGGCGGTGG
TGGCTTCCCCGTCGGACTTGCAGCAGGGCAACAACGTCCAGCAAAGAAGG
TGCCCGACTGGCTCGTGCAGACCTTAAAGGAGAAGGAAAAAATTGCCGAG
AGGCAAAAGAGGAAAGAGAGGGTGTCTCTGTCGACAGACGTGGCGGCGTC
TCTGTCGGGAGGTGCCGGGAACATCAGCGGGTACAACCTCGTCCACTCCC
CCTCCCCGTCTCCTCCAGGCTCGCCGTCCTCTCAGCGCACCAGGCCCAGC
TGGCAAGACGACGATAGCGACGACGACTCTGCGGACGAAGTATCACCGAC
TAGGGTAAATGAGGAAAAGAAAGCATCGAACGGTAAGAGCGCAGCAGGCG
GCGATAGCGGCGGCACTGGCGCCCGCAATGGCAACAAGCCGTCCGGCATT
CTTAAGAAAGGTGGGTCGAAGAAGTCGGGGGCGGGACGGGTGCTCACGGG
TGCTGATGACGAGGCGGTCGGGGCCGCCGTCACGTCGAGCGTCATGGACG
AGGAAACGGAAGCCTCGTTCGACCGGGAGATCCGGCGGCTACTGACGCAT
CTCCTGAAGGACGGCACTGCCAACATCATCCGCGAGGTGGCATCCTCTGC
CTTGGAGGAAACCCAGTACTCCATCGTAGCCGCTGCTGCCGCTACTTCCG
CCGCACCCAAGGCGCAGCAACAACAGGCGAGAGTGAAGCGAAAAGAGCAG
CGCGAGCAAAAGAAAGCGATCGGGGCGCTCATCGGCGGTTACGGATCAGC
TTCCGCCTCCGAGAGCGAGGGCGATGCTTCCCCTCCACAAGCTGCAGCCC
CATCCACCACTGTCTCTGGCAACCTTACGTCGGCAGGCAATGGAGCGCAA
GATAAACGTTCGACAACTACGGACACGCCCACCGGGGTGGTGTCTTCTCC
TGCACCAGCTACGAAGGAGGCACCCATTATGGTCGGTGGGAAGTGGCCGC
TACCGTCATGGGCGGACCCGCCACATGAGACCCCTCTCCCGAGTGGTTTG
TCTATCGTGGTGGAAACTATAGGTCCTGATCTAGAGAGGGTGAAGACGCA
GGAGTTGGCGTTCAGCACGACTGTGATGGGAAGGTTCGAGGAGCAATGCG
GGTTTGTCGTCGAGGATTCTTCAGCATCTCGATGCCACGCCGCGATCATG
TGAGTTCCCGGCCCCGTTTCGCTGTGTCCACGTGAGTAGATGAGGTTCCC
TTTTTAAAGCAGGTCTTTTCTATTTGTGGCCGCATCTAGATGTGCGCTGC
AGAAACTATAGATCAAAGATCTCAACCCGTTGCACATTTGTGTTTCGTCG
CTCAACTTTTCGGACAGCGCGCTGACAAAAAATCAGCGTCTCTCACACGT
GCAGATTTTCTGCCCCAGAAATTAGGATTATTCCTCCCGGCAGCGGCGTC
CGTTCAAAAGTGGTCGATATCGACTGAGCAGGAATCCCGGGAAGTATTTG
CGGACTGAGCCTCGACGAACTCGCACTGCTGCCTGCCGCCGCCGAACGCT
CACCCCTACGCTACCTCTTGTCAGAGCTTCGGACAAGGATGTTCATGTGG
TCGACATTTTTTCTGCAAACGGCACGGCAGTCAACGGCAAGAAACTTCAG
CCCGGCGTCCTCCACTCTCTTTCGTCGGGGGGCGTGTTGACTCTGGGAAC
GCGCAACCAATCTTTTCGCGTGATCGTGCGTTCATCGCCCACTTCCCGCA
AAGAATCGCCATCCCTCGCATCGACCTCGATCGTCGGGCTATCTTCACCT
AGGGCTGGGCCGGCCAATCCGCGTGCGGTATCTGGAAACCCGCCAGCTTT
CAAACAGGATCTCGTGGCCTTGGCGGCAAAAATCGCGGCGAGAGTCAACA
CCAAGGCAGCCGACACCGCTCCAGAGGCGGACAAAAAGGAAGCGAGGGAG
AAGGAGGCAATCGGGGAGACCAAGCAGAAGCAGACGGCAACGAGTGCGAA
GGAAGAGCCACAGGCGAAGCACAACAATAGGCGTAGCCGCAGCAGGAGCA
GGAGTAGGAGAAGCCGCAGCAGCAGTAGCACTAGCCGCAGCAGCAGCAGC
AGCAGCAGCAGCAGCAGCAGCAGCAGCAGCAGCGGCGGCAGTGTCAGAAG
CCGTGAACGCGATCGGAGGCGAAGGGATAGCTTTAAGGGGGAAAATGACG
GCAGAGGAGGCGGCAAAGACTGGAGGGGGCGGAAGAGGAGTAGGAGTGAA
GCGAATCTTCGCAGCCGCAGCCGCAGCCGCAGCCGCAGCCGGCACAGGTG
TGTTTTTTGTCTTGTGATACGGCGAAAAACCGTACTTGCTGATTGTCGTC
GCGAAGGCAAAGAAACTAAGGAAGCAGCAATAACCAATGGAAACCCCGCC
GAAACTGCCAGAATAATCTATGACGAACTGCCGTGATTTCTTACGCGCCC
TCCCTTCCTTCCGCCCTCCACGGTGATCAGCCACAACCACAGAGGTTCGA
GAAGCGGAGGGAGGGGTGGAAGGCGGGAAAACAGCAAGGAACGAAGAGGA
AGAAGGAAAAGTCGAAGCCGGAGCGGCAGTCCAGAACGTGTGATCAAACG
AAGAAGCCGAAGCCTTAGTCGTAGCCGTGAAAGGAAAGATAGGGGCGCTG
CGAAGGATAGCGAGCGGGGCGGGACGCGTCGGGAAGGGCCCAGGAGGAGA
GAAAGGAGCCGCAGTTCGTCGCGCAGCTCCAGCAACAACCGCTGGGCCGC
AAGCAGCAGGAAACGCAGAGGGTCTGACCGAGGGAGCCGGGACGGAAGGA
GGGCTGCGAGCAGGAGCAGGAGCAGGAGCAGAGATCATTCCAAGGACCGC
TCTCCGCGGAGCAAGAAGGGGCGACAGGACAGCGCGGAGGGGAGCAGTGG
CGCATTGAAGAAGCCGAGCGAGGGTAGCAAGGCCAAGAAGGACGAGAGTA
AGAAGGAAGACAAGAAAGACGACAAGGGAAAGGAAGGGAGCCGTCGCGAA
AGTCGTGTGAAAGCCGCTGCTGCTGCGACCAGTGAGAAGGCAATCGACAA
AGGGGCTAAGACCGCGCCAGGTGGTCGTTCGAAAGGCGTCAGCGGCGCAG
AGACGAACGCCCGAAGCAAGGAGGTCGGTGGCGGTAAAGGTGGCGCCTCT
ACCTCTCAGGCCAAGCATGATCAGGAAGGAAGCCCGAAGAACACCAACCA
GGCGACGGTAAACAAGAAACCCTCCGCCGAGAAGAAAACCGCAGAAAAGG
AGCCCAAGAAAAATGGTCGGAACAAGGAGCGCAGCAACAGCAACAGCAAC
AGCAGCAGCAAGGCGAAGGAGAGTCCAACGGTCGAGGGCAAAAAAGGCAG
CAGCAGCAGCGGCAGCAAAGTGAAGGAGAGCGAGGTGGTCAAGGACAAGA
AGAGCAGGAGCAGCAGCAGCAGTAGCAAGGCGAAAGAGAGCGGGATGTCC
GAGGGCAAGAAGAGCAGCGGCAGCAATAGCAAGGGAAAGGGAAGCGAAGG
GGTCAAGGACGCGAAAGGTCGCCGCAGTAGCCGCGAACCTGAGGATCGCG
CGAAGGAGCAGACACCCGGGAGGGATGAGGACGAGAAAGGCGGTCGCAGT
AGCCGGGAGCTTGAGCGGAAGAAGCGGGACTCGCGGCGCCACCGCAATAG
GAGCAGATCGTCTTCTCCCAAGCGCACCGAGCGCCAAAGGAAGAGCAGAT
CGCCCTCGCGGGAAGAGCGTAGGGGCGATAGTGGGAGGGAGCGGCGGAGA
TCGCGTTCGTGATGTCCCTCGACTACGACCTCATCATTCGCGGACCAGCC
GCATTTTTATTCCCTTGCAGAGCAGTCTCTGAACAATGAAACAAATCAGA
GTGGAGGTTGAACGCACACAGATTATGGTGTGACTAGCGGTGGCCTTGCG
CGGGTTCTTCGTTTTTATTTCACCAGCAGAGCTCTTGCTTAAACGCCGTG
TCGCGATGTTGGTGATTGCGGACGGGTTTCAGCTCTCTTATCGTGCTGTG
GCGTTCTGCTTGCTGCCAGCGGAGTCTTGAGGCTCTGACCGAAGATTGAT
GGGGCTCACGAATGCTCAAACACGGTTTGCAGGTTCGTTCTACTTATTAA
TTATATGTTTTGTGTGGTGCAGGTTTGGCATCCGACCGCAGAGCACCGCG
CCCCTCAAGTCCTTCTGGATTGTCGTGAGCACCCAGCTAGGTCTGGTCTC
GAAAAGGGGTGACTATTTGCATGTAATCGGGTCCCGCAACAACACATAAT
ACATCCCTTTTTGTCCGTCCGGGAGAGACAGACCTGCCTGTTGTGGGGGC
CAGTAATGAGGGCAGCCGACGGTGGTCGGACCTCTATTTTTTCCCTCTTC
TGCTGGATATCCGATCCGTGCGCGCCCCCATCTCTCTGTGATGTATCCGT
ATTGGACGGCGCAGGGGGTCCAATCTATACATTTGCGTTCCTGCTGTTCA
CTTTTGCCGTTCTCCTGCTGGGAAAAACACGTACTACGTACACATGATAA
GGATTGAGGCAGTCCACATAGTCATGGGCTAGACTACTCCAGAGAGGTAC
GAACTTTGTAAAGATGTTGGTATACCTTTCGATCGTTGGAG back to topCoding sequence (CDS) from alignment at P-fluviatile_contig13:1769334..1775774- >mRNA_P-fluviatile_contig13.1801.1 ID=mRNA_P-fluviatile_contig13.1801.1|Name=mRNA_P-fluviatile_contig13.1801.1|organism=Porterinema fluviatile SAG_2381|type=CDS|length=7866bp|location=Sequence derived from alignment at P-fluviatile_contig13:1769334..1775774- (Porterinema fluviatile SAG_2381) ATGGCCGATTGGGCAGCAGCAGCCGCAGCGTGGGCTCAATCTGGGGAGGG AGAAAAGAATGAGCTCGTACCCCCGCCACCGCCCCCTCCTCAGCGATTTG AGCAACAGCACGGAGGGTGGGGCGGCGCCGAGCAGCAGCAACAGCAGCAG CAGCAGCAGCAGATGTGGATGGCGCATGCGATGGACCCCTCGATTGGAGC GCACGGCCAGCACCAGCACGGCGGCTTTGCACCTGCACCAGCCGGTGTTT CGTCGATGTTAGCAGAAAGTCACCAAGAGTTTGCACATGGAGATGGCCGA TTGGGCAGCAGCAGCCGCAGCGTGGGCTCAATCTGGGGAGGGAGAAAAGA ATGAGCTCGTACCCCCGCCACCGCCCCCTCCTCAGCGATTTGAGCAACAG CACGGAGGGTGGGGCGGCGCCGAGCAGCAGCAACAGCAGCAGCAGCAGCA GCAGATGTGGATGGCGCATGCGATGGACCCCTCGATTGGAGCGCACGGCC AGCACCAGCACGGCGGCTTTGCACCTGCACCAGCCGGTGTTTCGTCGATG TTAGCAGAAAGTCACCAAGAGTTTGCACATGGAGCCCCCCCTCTGCCACC GCCGTCGCAGCCGCCTTACCCCCCTGCCCCCTCGAACGATCACGGCCACT TTTTTCAAGACCAAGCCCCCCCTCTGCCACCGCCGTCGCAGCCGCCTTAC CCCCCTGCCCCCTCGAACGATCACGGCCACTTTTTTCAAGACCAAGGCTG GACAGCAGCAGGCTATCCCGCTCCTCCCCTCCCACCACCTTCGGGCCAAC CACCGGCGCTCGGCCAAGGAAACATGACCGGCCAGATGGGCTCTCAAGTG AATGGCGGTCAAATGCTGGATCAAATGGGGCACTATATGGGTGGACACAT GGGGGGGATGGGTGGAGCTGTGGGGCAAATGGGACAGGTGGGTGAAGGCC AACAACGGATGGGCATGTACCAGCAACCGCCTGCGGTGAACACCAGCAAC CCTACGGCAGCGGTGGTAGGCCCGATGTCTGGCATGGCGGGAGGCATCGT CCACGGTGGCATGGACGGCACGGGGTCTTTGGGCAGCGGCCCAATTATGA ACGGATCGATGATGGGGGGTATTCCAAGTGGGATGGGCAGCGGCGGCGGT GGTGGCTTCCCCGTCGGACTTGCAGCAGGGCAACAACGTCCAGCAAAGAA GGTGCCCGACTGGCTCGTGCAGACCTTAAAGGAGAAGGAAAAAATTGCCG AGAGGCAAAAGAGGAAAGAGAGGGTGTCTCTGTCGACAGACGTGGCGGCG TCTCTGTCGGGAGGTGCCGGGAACATCAGCGGGTACAACCTCGTCCACTC CCCCTCCCCGTCTCCTCCAGGCTCGCCGTCCTCTCAGCGCACCAGGCCCA GCTGGCAAGACGACGATAGCGACGACGACTCTGCGGACGAAGTATCACCG ACTAGGGTAAATGAGGAAAAGAAAGCATCGAACGGTAAGAGCGCAGCAGG CGGCGATAGCGGCGGCACTGGCGCCCGCAATGGCAACAAGCCGTCCGGCA TTCTTAAGAAAGGTGGGTCGAAGAAGTCGGGGGCGGGACGGGTGCTCACG GGTGCTGATGACGAGGCGGTCGGGGCCGCCGTCACGTCGAGCGTCATGGA CGAGGAAACGGAAGCCTCGTTCGACCGGGAGATCCGGCGGCTACTGACGC ATCTCCTGAAGGACGGCACTGCCAACATCATCCGCGAGGTGGCATCCTCT GCCTTGGAGGAAACCCAGTACTCCATCGTAGCCGCTGCTGCCGCTACTTC CGCCGCACCCAAGGCGCAGCAACAACAGGCGAGAGTGAAGCGAAAAGAGC AGCGCGAGCAAAAGAAAGCGATCGGGGCGCTCATCGGCGGTTACGGATCA GCTTCCGCCTCCGAGAGCGAGGGCGATGCTTCCCCTCCACAAGCTGCAGC CCCATCCACCACTGTCTCTGGCAACCTTACGTCGGCAGGCAATGGAGCGC AAGATAAACGTTCGACAACTACGGACACGCCCACCGGGGTGGTGTCTTCT CCTGCACCAGCTACGAAGGAGGCACCCATTATGGTCGGTGGGAAGTGGCC GCTACCGTCATGGGCGGACCCGCCACATGAGACCCCTCTCCCGAGTGGTT TGTCTATCGTGGTGGAAACTATAGGTCCTGATCTAGAGAGGGTGAAGACG CAGGAGTTGGCGTTCAGCACGACTGTGATGGGAAGGTTCGAGGAGCAATG CGGGTTTGTCGTCGAGGATTCTTCAGCATCTCGATGCCACGCCGCGATCA TGCTGGACAGCAGCAGGCTATCCCGCTCCTCCCCTCCCACCACCTTCGGG CCAACCACCGGCGCTCGGCCAAGGAAACATGACCGGCCAGATGGGCTCTC AAGTGAATGGCGGTCAAATGCTGGATCAAATGGGGCACTATATGGGTGGA CACATGGGGGGGATGGGTGGAGCTGTGGGGCAAATGGGACAGGTGGGTGA AGGCCAACAACGGATGGGCATGTACCAGCAACCGCCTGCGGTGAACACCA GCAACCCTACGGCAGCGGTGGTAGGCCCGATGTCTGGCATGGCGGGAGGC ATCGTCCACGGTGGCATGGACGGCACGGGGTCTTTGGGCAGCGGCCCAAT TATGAACGGATCGATGATGGGGGGTATTCCAAGTGGGATGGGCAGCGGCG GCGGTGGTGGCTTCCCCGTCGGACTTGCAGCAGGGCAACAACGTCCAGCA AAGAAGGTGCCCGACTGGCTCGTGCAGACCTTAAAGGAGAAGGAAAAAAT TGCCGAGAGGCAAAAGAGGAAAGAGAGGGTGTCTCTGTCGACAGACGTGG CGGCGTCTCTGTCGGGAGGTGCCGGGAACATCAGCGGGTACAACCTCGTC CACTCCCCCTCCCCGTCTCCTCCAGGCTCGCCGTCCTCTCAGCGCACCAG GCCCAGCTGGCAAGACGACGATAGCGACGACGACTCTGCGGACGAAGTAT CACCGACTAGGGTAAATGAGGAAAAGAAAGCATCGAACGGTAAGAGCGCA GCAGGCGGCGATAGCGGCGGCACTGGCGCCCGCAATGGCAACAAGCCGTC CGGCATTCTTAAGAAAGGTGGGTCGAAGAAGTCGGGGGCGGGACGGGTGC TCACGGGTGCTGATGACGAGGCGGTCGGGGCCGCCGTCACGTCGAGCGTC ATGGACGAGGAAACGGAAGCCTCGTTCGACCGGGAGATCCGGCGGCTACT GACGCATCTCCTGAAGGACGGCACTGCCAACATCATCCGCGAGGTGGCAT CCTCTGCCTTGGAGGAAACCCAGTACTCCATCGTAGCCGCTGCTGCCGCT ACTTCCGCCGCACCCAAGGCGCAGCAACAACAGGCGAGAGTGAAGCGAAA AGAGCAGCGCGAGCAAAAGAAAGCGATCGGGGCGCTCATCGGCGGTTACG GATCAGCTTCCGCCTCCGAGAGCGAGGGCGATGCTTCCCCTCCACAAGCT GCAGCCCCATCCACCACTGTCTCTGGCAACCTTACGTCGGCAGGCAATGG AGCGCAAGATAAACGTTCGACAACTACGGACACGCCCACCGGGGTGGTGT CTTCTCCTGCACCAGCTACGAAGGAGGCACCCATTATGGTCGGTGGGAAG TGGCCGCTACCGTCATGGGCGGACCCGCCACATGAGACCCCTCTCCCGAG TGGTTTGTCTATCGTGGTGGAAACTATAGGTCCTGATCTAGAGAGGGTGA AGACGCAGGAGTTGGCGTTCAGCACGACTGTGATGGGAAGGTTCGAGGAG CAATGCGGGTTTGTCGTCGAGGATTCTTCAGCATCTCGATGCCACGCCGC GATCATAGCTTCGGACAAGGATGTTCATGTGGTCGACATTTTTTCTGCAA ACGGCACGGCAGTCAACGGCAAGAAACTTCAGCCCGGCGTCCTCCACTCT CTTTCGTCGGGGGGCGTGTTGACTCTGGGAACGCGCAACCAATCTTTTCG CGTGATCGTGCGTTCATCGCCCACTTCCCGCAAAGAATCGCCATCCCTCG CATCGACCTCGATCGTCGGGCTATCTTCACCTAGGGCTGGGCCGGCCAAT CCGCGTGCGGTATCTGGAAACCCGCCAGCTTTCAAACAGGATCTCGTGGC CTTGGCGGCAAAAATCGCGGCGAGAGTCAACACCAAGGCAGCCGACACCG CTCCAGAGGCGGACAAAAAGGAAGCGAGGGAGAAGGAGGCAATCGGGGAG ACCAAGCAGAAGCAGACGGCAACGAGTGCGAAGGAAGAGCCACAGGCGAA GCACAACAATAGGCGTAGCCGCAGCAGGAGCAGGAGTAGGAGAAGCCGCA GCAGCAGTAGCACTAGCCGCAGCAGCAGCAGCAGCAGCAGCAGCAGCAGC AGCAGCAGCAGCAGCGGCGGCAGTGTCAGAAGCCGTGAACGCGATCGGAG GCGAAGGGATAGCTTTAAGGGGGAAAATGACGGCAGAGGAGGCGGCAAAG ACTGGAGGGGGCGGAAGAGGAGTAGGAGTGAAGCGAATCTTCGCAGCCGC AGCCGCAGCCGCAGCCGCAGCCGGCACAGAGCTTCGGACAAGGATGTTCA TGTGGTCGACATTTTTTCTGCAAACGGCACGGCAGTCAACGGCAAGAAAC TTCAGCCCGGCGTCCTCCACTCTCTTTCGTCGGGGGGCGTGTTGACTCTG GGAACGCGCAACCAATCTTTTCGCGTGATCGTGCGTTCATCGCCCACTTC CCGCAAAGAATCGCCATCCCTCGCATCGACCTCGATCGTCGGGCTATCTT CACCTAGGGCTGGGCCGGCCAATCCGCGTGCGGTATCTGGAAACCCGCCA GCTTTCAAACAGGATCTCGTGGCCTTGGCGGCAAAAATCGCGGCGAGAGT CAACACCAAGGCAGCCGACACCGCTCCAGAGGCGGACAAAAAGGAAGCGA GGGAGAAGGAGGCAATCGGGGAGACCAAGCAGAAGCAGACGGCAACGAGT GCGAAGGAAGAGCCACAGGCGAAGCACAACAATAGGCGTAGCCGCAGCAG GAGCAGGAGTAGGAGAAGCCGCAGCAGCAGTAGCACTAGCCGCAGCAGCA GCAGCAGCAGCAGCAGCAGCAGCAGCAGCAGCAGCAGCGGCGGCAGTGTC AGAAGCCGTGAACGCGATCGGAGGCGAAGGGATAGCTTTAAGGGGGAAAA TGACGGCAGAGGAGGCGGCAAAGACTGGAGGGGGCGGAAGAGGAGTAGGA GTGAAGCGAATCTTCGCAGCCGCAGCCGCAGCCGCAGCCGCAGCCGGCAC AGCCACAACCACAGAGGTTCGAGAAGCGGAGGGAGGGGTGGAAGGCGGGA AAACAGCAAGGAACGAAGAGGAAGAAGGAAAAGTCGAAGCCGGAGCGGCA GTCCAGAACGTGTGATCAAACGAAGAAGCCGAAGCCTTAGTCGTAGCCGT GAAAGGAAAGATAGGGGCGCTGCGAAGGATAGCGAGCGGGGCGGGACGCG TCGGGAAGGGCCCAGGAGGAGAGAAAGGAGCCGCAGTTCGTCGCGCAGCT CCAGCAACAACCGCTGGGCCGCAAGCAGCAGGAAACGCAGAGGGTCTGAC CGAGGGAGCCGGGACGGAAGGAGGGCTGCGAGCAGGAGCAGGAGCAGGAG CAGAGATCATTCCAAGGACCGCTCTCCGCGGAGCAAGAAGGGGCGACAGG ACAGCGCGGAGGGGAGCAGTGGCGCATTGAAGAAGCCGAGCGAGGGTAGC AAGGCCAAGAAGGACGAGAGTAAGAAGGAAGACAAGAAAGACGACAAGGG AAAGGAAGGGAGCCGTCGCGAAAGTCGTGTGAAAGCCGCTGCTGCTGCGA CCAGTGAGAAGGCAATCGACAAAGGGGCTAAGACCGCGCCAGGTGGTCGT TCGAAAGGCGTCAGCGGCGCAGAGACGAACGCCCGAAGCAAGGAGGTCGG TGGCGGTAAAGGTGGCGCCTCTACCTCTCAGGCCAAGCATGATCAGGAAG GAAGCCCGAAGAACACCAACCAGGCGACGGTAAACAAGAAACCCTCCGCC GAGAAGAAAACCGCAGAAAAGGAGCCCAAGAAAAATGGTCGGAACAAGGA GCGCAGCAACAGCAACAGCAACAGCAGCAGCAAGGCGAAGGAGAGTCCAA CGGTCGAGGGCAAAAAAGGCAGCAGCAGCAGCGGCAGCAAAGTGAAGGAG AGCGAGGTGGTCAAGGACAAGAAGAGCAGGAGCAGCAGCAGCAGTAGCAA GGCGAAAGAGAGCGGGATGTCCGAGGGCAAGAAGAGCAGCGGCAGCAATA GCAAGGGAAAGGGAAGCGAAGGGGTCAAGGACGCGAAAGGTCGCCGCAGT AGCCGCGAACCTGAGGATCGCGCGAAGGAGCAGACACCCGGGAGGGATGA GGACGAGAAAGGCGGTCGCAGTAGCCGGGAGCTTGAGCGGAAGAAGCGGG ACTCGCGGCGCCACCGCAATAGGAGCAGATCGTCTTCTCCCAAGCGCACC GAGCGCCAAAGGAAGAGCAGATCGCCCTCGCGGGAAGAGCGTAGGGGCGA TAGTGGGAGGGAGCGGCGGAGATCGCGTTCGTGACCACAACCACAGAGGT TCGAGAAGCGGAGGGAGGGGTGGAAGGCGGGAAAACAGCAAGGAACGAAG AGGAAGAAGGAAAAGTCGAAGCCGGAGCGGCAGTCCAGAACGTGTGATCA AACGAAGAAGCCGAAGCCTTAGTCGTAGCCGTGAAAGGAAAGATAGGGGC GCTGCGAAGGATAGCGAGCGGGGCGGGACGCGTCGGGAAGGGCCCAGGAG GAGAGAAAGGAGCCGCAGTTCGTCGCGCAGCTCCAGCAACAACCGCTGGG CCGCAAGCAGCAGGAAACGCAGAGGGTCTGACCGAGGGAGCCGGGACGGA AGGAGGGCTGCGAGCAGGAGCAGGAGCAGGAGCAGAGATCATTCCAAGGA CCGCTCTCCGCGGAGCAAGAAGGGGCGACAGGACAGCGCGGAGGGGAGCA GTGGCGCATTGAAGAAGCCGAGCGAGGGTAGCAAGGCCAAGAAGGACGAG AGTAAGAAGGAAGACAAGAAAGACGACAAGGGAAAGGAAGGGAGCCGTCG CGAAAGTCGTGTGAAAGCCGCTGCTGCTGCGACCAGTGAGAAGGCAATCG ACAAAGGGGCTAAGACCGCGCCAGGTGGTCGTTCGAAAGGCGTCAGCGGC GCAGAGACGAACGCCCGAAGCAAGGAGGTCGGTGGCGGTAAAGGTGGCGC CTCTACCTCTCAGGCCAAGCATGATCAGGAAGGAAGCCCGAAGAACACCA ACCAGGCGACGGTAAACAAGAAACCCTCCGCCGAGAAGAAAACCGCAGAA AAGGAGCCCAAGAAAAATGGTCGGAACAAGGAGCGCAGCAACAGCAACAG CAACAGCAGCAGCAAGGCGAAGGAGAGTCCAACGGTCGAGGGCAAAAAAG GCAGCAGCAGCAGCGGCAGCAAAGTGAAGGAGAGCGAGGTGGTCAAGGAC AAGAAGAGCAGGAGCAGCAGCAGCAGTAGCAAGGCGAAAGAGAGCGGGAT GTCCGAGGGCAAGAAGAGCAGCGGCAGCAATAGCAAGGGAAAGGGAAGCG AAGGGGTCAAGGACGCGAAAGGTCGCCGCAGTAGCCGCGAACCTGAGGAT CGCGCGAAGGAGCAGACACCCGGGAGGGATGAGGACGAGAAAGGCGGTCG CAGTAGCCGGGAGCTTGAGCGGAAGAAGCGGGACTCGCGGCGCCACCGCA ATAGGAGCAGATCGTCTTCTCCCAAGCGCACCGAGCGCCAAAGGAAGAGC AGATCGCCCTCGCGGGAAGAGCGTAGGGGCGATAGTGGGAGGGAGCGGCG GAGATCGCGTTCGTGA back to top
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