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Homology
BLAST of mRNA_P-fluviatile_contig12.1394.1 vs. uniprot
Match: A0A6H5L4T9_9PHAE (Uncharacterized protein n=1 Tax=Ectocarpus sp. CCAP 1310/34 TaxID=867726 RepID=A0A6H5L4T9_9PHAE) HSP 1 Score: 482 bits (1240), Expect = 1.320e-149 Identity = 436/617 (70.66%), Postives = 475/617 (76.99%), Query Frame = 1
Query: 490 PLGTQDDSINAFLRQKDPDAMMLNLGMPLSDVRYAVTGGXXXXXIESRGGDVLLPSGDQGSRALPPLTSPSLLQEGTAATAVKEGEAVXXXXXXXXXXXXVSAEGTPTPGADLTGGEVRPXXXXXXRHPAGNMRGLTPFAPPQSGLPPSLLSSMMGAGGSYEGAESAAAALSGRGGREARVASEFSFLVRTLGAHGRFEEARARVLPEMRRRGIAPADHTYAALLAGAAIARNPDAAEEVXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXFRAAATAPQWIRAYGGIVDDLVQRFIGLGITPEIDTYRALLLAYSNGGDADKVLQCIEEAHVLEGHTGDQIGNGTPKLPWKAYCDALDAIARCLSVSRHRGTRARWGILPGEDPLVMDITALEVPEEDFNRVRQMQMSAMEWDEDGETALRKGFKKGKRTKFMGVKTPADLIGDDEFERDIEDEYERIMAKAKAMKELERRENLIQLGIDPDAEDRVAKTRPRVLPDPRDKESIGAPMPHWLSAEANAPLPGL 2340
PLG QDDSINAFLRQKDPDAMMLNLGM LSD +A+ GG G+V LP G SPS L A XXXXXXXXXXXX +P R P+G M +P AP + P SL SSMM GG E+ + G GGR A EFSFLVRTLGAHGRFEEAR+RV+PEMRRRG+ P +HT+A+LLAGAAI R+P AAE+V XXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXX IRAYG IVDDLVQRFIGLG+TPE+DTYRALLLAYSNGGDADKVLQCIEE HVLEGHT D +GNGT KLPW+AYCD+LDAIARC SV RHRG ARWGILPG+D LVMDIT+LEVPEEDF+RVR MQM+AMEWDE+GETAL+KGF+KGKRTKF GV TP DL+GDDE+ER I +YE +M KAKAMKE+ERRE L+Q GIDPD D+ AKTRPRVLPD RD+E I AP+PHWLS EA+ PLPGL
Sbjct: 154 PLGAQDDSINAFLRQKDPDAMMLNLGMRLSDDDHAIAGGGS--------GEVNLPLSADGR-------SPSPLLHDGEVDATAXXXXXXXXXXXXXXXXXXXXPSSP-----------------WSRQPSG-MYSHSPAAP-TTPYPYSLPSSMMPYGG-----EAGMGSPRGSGGRGGGAAEEFSFLVRTLGAHGRFEEARSRVVPEMRRRGVTPTEHTFASLLAGAAIERDPIAAEQVWSXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXIRAYGTIVDDLVQRFIGLGVTPEVDTYRALLLAYSNGGDADKVLQCIEELHVLEGHTADNLGNGTAKLPWQAYCDSLDAIARCTSVGRHRGIPARWGILPGQDSLVMDITSLEVPEEDFSRVRGMQMAAMEWDEEGETALKKGFRKGKRTKFRGVTTPDDLVGDDEYERAIASQYEEVMNKAKAMKEVERREALLQRGIDPDEGDKEAKTRPRVLPDLRDRERIEAPVPHWLSGEASDPLPGL 731
BLAST of mRNA_P-fluviatile_contig12.1394.1 vs. uniprot
Match: D8LDL3_ECTSI (Uncharacterized protein n=1 Tax=Ectocarpus siliculosus TaxID=2880 RepID=D8LDL3_ECTSI) HSP 1 Score: 461 bits (1185), Expect = 4.760e-143 Identity = 420/612 (68.63%), Postives = 462/612 (75.49%), Query Frame = 1
Query: 490 PLGTQDDSINAFLRQKDPDAMMLNLGMPLSDVRYAVTGGXXXXXIESRGGDVLLPSGDQGSRALPPLTSPS-LLQEGTA-ATAVKEGEAVXXXXXXXXXXXXVSAEGTPTPGADLTGGEVRPXXXXXXRHPAGNMRGLTPFAPPQSGLPPSLLSSMMGAGGSYEGAESAAAALSGRGGREARVA---SEFSFLVRTLGAHGRFEEARARVLPEMRRRGIAPADHTYAALLAGAAIARNPDAAEEVXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXFRAAATAPQWIRAYGGIVDDLVQRFIGLGITPEIDTYRALLLAYSNGGDADKVLQCIEEAHVLEGHTGDQIGNGTPKLPWKAYCDALDAIARCLSVSRHRGTRARWGILPGEDPLVMDITALEVPEEDFNRVRQMQMSAMEWDEDGETALRKGFKKGKRTKFMGVKTPADLIGDDEFERDIEDEYERIMAKAKAMKELERRENLIQLGIDPDAEDRVAKTRPRVLPDPRDKESIGAPMPHWLS 2310
PLG QDDSINAFLR+KDPDAMMLNLGM LSD +A+ GG SG+ SPS LL +G ATA XXX + P P + R P+G M +P APP P SL SSMM GG A S RG EFSFLVRTLGAHGRFEEAR+RV+PEMRRRG+ P +HT+A+LLAG AI R+P AAE+V XXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXX IRAYG IVDDLVQRFIGLG+TPE+DTYRALLLAYSNGGDADKVLQCIEE HVLEGHT D +G+GTP+LPW+AYCD+LDAIARC SV RHRGT ARWGILPG+D LVMDIT+LEVPEEDF+RVR+MQM+AMEWDE+GE AL+KGF+KGKRTKF GV TP DL+GDDE+ER I +YE++M KAKAMKE+ERRE L+QLGIDPD D+ AKTRPRVLPDPRD+E I AP+PHWLS
Sbjct: 113 PLGAQDDSINAFLRRKDPDAMMLNLGMRLSDDDHAIAGGG---------------SGEGNLPLSADCPSPSPLLHDGVVDATAXXXXXXXXXXR-----------DTLPFPSXQPSS--------PWSREPSG-MYSNSP-APPTPPYPYSLPSSMMPYGGE-------AGMGSPRGXXXXXXXXXXEEFSFLVRTLGAHGRFEEARSRVIPEMRRRGVTPTEHTFASLLAGTAIERDPIAAEQVWSXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXIRAYGTIVDDLVQRFIGLGVTPEVDTYRALLLAYSNGGDADKVLQCIEEVHVLEGHTADNLGDGTPRLPWQAYCDSLDAIARCTSVGRHRGTPARWGILPGQDSLVMDITSLEVPEEDFSRVREMQMAAMEWDEEGEAALKKGFRKGKRTKFRGVTTPDDLVGDDEYERAIASQYEQVMDKAKAMKEVERREALLQLGIDPDEGDKEAKTRPRVLPDPRDRERIEAPVPHWLS 681
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 | 431.0 |
| Seed ortholog evalue | 1e-117 |
| Seed eggNOG ortholog | 2880.D8LDL3 |
| KEGG ko | ko:K08737,ko:K17710 |
| KEGG Pathway | ko01524,ko03430,ko05200,ko05210,map01524,map03430,map05200,map05210 |
| KEGG Module | M00295 |
| EggNOG free text desc. | endonuclease activity |
| EggNOG OGs | KOG4197@1,KOG4197@2759 |
| COG Functional cat. | S |
| Best tax level | Eukaryota |
| Best eggNOG OG | NA|NA|NA |
| BRITE | ko00000,ko00001,ko00002,ko03016,ko03029,ko03400 |
| Hectar predicted targeting category | other localisation |
| Exons | 9 |
| Model size | 2553 |
| Cds size | 2004 |
| Stop | 0 |
| Start | 1 |
Relationships
The following polypeptide feature(s) derives from this mRNA:
The following CDS feature(s) are a part of this mRNA:
| Feature Name | Unique Name | Species | Type | Position |
| 1622815503.366806-CDS-P-fluviatile_contig12:1085319..1085801 | 1622815503.366806-CDS-P-fluviatile_contig12:1085319..1085801 | Porterinema fluviatile SAG_2381 | CDS | P-fluviatile_contig12 1085320..1085801 - |
| 1693562068.8690484-CDS-P-fluviatile_contig12:1085319..1085801 | 1693562068.8690484-CDS-P-fluviatile_contig12:1085319..1085801 | Porterinema fluviatile SAG_2381 | CDS | P-fluviatile_contig12 1085320..1085801 - |
| 1622815503.3836489-CDS-P-fluviatile_contig12:1085959..1086135 | 1622815503.3836489-CDS-P-fluviatile_contig12:1085959..1086135 | Porterinema fluviatile SAG_2381 | CDS | P-fluviatile_contig12 1085960..1086135 - |
| 1693562068.8811805-CDS-P-fluviatile_contig12:1085959..1086135 | 1693562068.8811805-CDS-P-fluviatile_contig12:1085959..1086135 | Porterinema fluviatile SAG_2381 | CDS | P-fluviatile_contig12 1085960..1086135 - |
| 1622815503.393763-CDS-P-fluviatile_contig12:1087002..1087160 | 1622815503.393763-CDS-P-fluviatile_contig12:1087002..1087160 | Porterinema fluviatile SAG_2381 | CDS | P-fluviatile_contig12 1087003..1087160 - |
| 1693562068.894675-CDS-P-fluviatile_contig12:1087002..1087160 | 1693562068.894675-CDS-P-fluviatile_contig12:1087002..1087160 | Porterinema fluviatile SAG_2381 | CDS | P-fluviatile_contig12 1087003..1087160 - |
| 1622815503.4058728-CDS-P-fluviatile_contig12:1087715..1087835 | 1622815503.4058728-CDS-P-fluviatile_contig12:1087715..1087835 | Porterinema fluviatile SAG_2381 | CDS | P-fluviatile_contig12 1087716..1087835 - |
| 1693562068.903957-CDS-P-fluviatile_contig12:1087715..1087835 | 1693562068.903957-CDS-P-fluviatile_contig12:1087715..1087835 | Porterinema fluviatile SAG_2381 | CDS | P-fluviatile_contig12 1087716..1087835 - |
| 1622815503.422146-CDS-P-fluviatile_contig12:1088301..1088512 | 1622815503.422146-CDS-P-fluviatile_contig12:1088301..1088512 | Porterinema fluviatile SAG_2381 | CDS | P-fluviatile_contig12 1088302..1088512 - |
| 1693562068.9127455-CDS-P-fluviatile_contig12:1088301..1088512 | 1693562068.9127455-CDS-P-fluviatile_contig12:1088301..1088512 | Porterinema fluviatile SAG_2381 | CDS | P-fluviatile_contig12 1088302..1088512 - |
| 1622815503.435015-CDS-P-fluviatile_contig12:1095638..1095838 | 1622815503.435015-CDS-P-fluviatile_contig12:1095638..1095838 | Porterinema fluviatile SAG_2381 | CDS | P-fluviatile_contig12 1095639..1095838 - |
| 1693562068.9238079-CDS-P-fluviatile_contig12:1095638..1095838 | 1693562068.9238079-CDS-P-fluviatile_contig12:1095638..1095838 | Porterinema fluviatile SAG_2381 | CDS | P-fluviatile_contig12 1095639..1095838 - |
| 1622815503.4488046-CDS-P-fluviatile_contig12:1096620..1097277 | 1622815503.4488046-CDS-P-fluviatile_contig12:1096620..1097277 | Porterinema fluviatile SAG_2381 | CDS | P-fluviatile_contig12 1096621..1097277 - |
| 1693562068.9319422-CDS-P-fluviatile_contig12:1096620..1097277 | 1693562068.9319422-CDS-P-fluviatile_contig12:1096620..1097277 | Porterinema fluviatile SAG_2381 | CDS | P-fluviatile_contig12 1096621..1097277 - |
The following UTR feature(s) are a part of this mRNA:
| Feature Name | Unique Name | Species | Type | Position |
| 1622815503.467568-UTR-P-fluviatile_contig12:1097277..1097370 | 1622815503.467568-UTR-P-fluviatile_contig12:1097277..1097370 | Porterinema fluviatile SAG_2381 | UTR | P-fluviatile_contig12 1097278..1097370 - |
| 1693562068.9400094-UTR-P-fluviatile_contig12:1097277..1097370 | 1693562068.9400094-UTR-P-fluviatile_contig12:1097277..1097370 | Porterinema fluviatile SAG_2381 | UTR | P-fluviatile_contig12 1097278..1097370 - |
| 1622815503.4827337-UTR-P-fluviatile_contig12:1097731..1097838 | 1622815503.4827337-UTR-P-fluviatile_contig12:1097731..1097838 | Porterinema fluviatile SAG_2381 | UTR | P-fluviatile_contig12 1097732..1097838 - |
| 1693562071.2269764-UTR-P-fluviatile_contig12:1097731..1097838 | 1693562071.2269764-UTR-P-fluviatile_contig12:1097731..1097838 | Porterinema fluviatile SAG_2381 | UTR | P-fluviatile_contig12 1097732..1097838 - |
| 1622815503.4939618-UTR-P-fluviatile_contig12:1098441..1098790 | 1622815503.4939618-UTR-P-fluviatile_contig12:1098441..1098790 | Porterinema fluviatile SAG_2381 | UTR | P-fluviatile_contig12 1098442..1098790 - |
| 1693562072.5439656-UTR-P-fluviatile_contig12:1098441..1098790 | 1693562072.5439656-UTR-P-fluviatile_contig12:1098441..1098790 | Porterinema fluviatile SAG_2381 | UTR | P-fluviatile_contig12 1098442..1098790 - |
Sequences
The following sequences are available for this feature:
protein sequence of mRNA_P-fluviatile_contig12.1394.1 >prot_P-fluviatile_contig12.1394.1 ID=prot_P-fluviatile_contig12.1394.1|Name=mRNA_P-fluviatile_contig12.1394.1|organism=Porterinema fluviatile SAG_2381|type=polypeptide|length=668bp
MMLNLGMPLSDVRYAVTGGGGGGGIESRGGDVLLPSGDQGSRALPPLTSP SLLQEGTAATAVKEGEAVAAAAEEAAAAAAVSAEGTPTPGADLTGGEVRP PPPPPPRHPAGNMRGLTPFAPPQSGLPPSLLSSMMGAGGSYEGAESAAAA LSGRGGREARVASEFSFLVRTLGAHGRFEEARARVLPEMRRRGIAPADHT YAALLAGAAIARNPDAAEEVWREMLEGGVRPSAHAWGARVDAHARGGRMR QALRLGKEMRDEGHPWGVETYTSLIAGSVRRRDYSGAWRLWKEMIIWGVQ PDAMAYNTMIKLCAQTRQYEKAMTFLDEMDMFDHRPSRITMELLFRAAAT APQWIRAYGGIVDDLVQRFIGLGITPEIDTYRALLLAYSNGGDADKVLQC IEEAHVLEGHTGDQIGNGTPKLPWKAYCDALDAIARCLSVSRHRGTRARW GILPGEDPLVMDITALEVPEEDFNRVRQMQMSAMEWDEDGETALRKGFKK GKRTKFMGVKTPADLIGDDEFERDIEDEYERIMAKAKAMKELERRENLIQ LGIDPDAEDRVAKTRPRVLPDPRDKESIGAPMPHWLSAEANAPLPGLLPT EGSSEQQLGISDGSGETGVGAPRGSDTGGAGQELGADGGGEHGAVRSREI GPLSWRGISEAGQKPPDD back to topmRNA from alignment at P-fluviatile_contig12:1085320..1098790- Legend: UTRpolypeptideCDS Hold the cursor over a type above to highlight its positions in the sequence below. >mRNA_P-fluviatile_contig12.1394.1 ID=mRNA_P-fluviatile_contig12.1394.1|Name=mRNA_P-fluviatile_contig12.1394.1|organism=Porterinema fluviatile SAG_2381|type=mRNA|length=13471bp|location=Sequence derived from alignment at P-fluviatile_contig12:1085320..1098790- (Porterinema fluviatile SAG_2381) CCGCTGACACACCACCATGCTCCGTGCGGTGTGCATGAGAATAGGCCCTC
GTCCTTACTCATCGCGGCAAGTGCCGCACCGTCTTGCTGGACGATGCTAC
ACCGTCGGGGCCACGTCGTCGGCGGTGGTTTCCACTCGTTGTCCTCTTCA
GCAGCAGCTGCGGTCACGACCACGGGCAGCAGCGGCGGCGGCAGGCCTGT
CACCTGCCCTTGCCCTACGCGCAAGGAGGATCAGTTCGACAGCTCCCGCG
CTGAAGGGAAGGAGGGGCGGAGCCTCTGCTCTGATATCGAAGATGTCTGG
CCCGCGGCGCCGGAAAGCACCAGGCGCCGGCAAGAAGAAAAAGCCAAAGG
TTAGAGAGTGTGGGTGTGGTGGAATACAGCAACACCAAAAACCAAAAGGT
ATCACACCCCGTGGGTCTACGTGGGTCCTGGGTCGATTTTCAACGCTCGA
TTCCTCCGCGGCATTAGAGTTGCTTTCGTCAAATGGAACGGCTATAGAGA
GATGATGCCGAGAGCTTTGCAGGGACGGACCGTTGGATTTCGGTCAATCC
TGCTGTCGAGATATCGACCTTCACAAATTGACCTAGGGGGTGTGAAATCT
AACGCGACCGACGCTACTGGACTCATCTGATCCTCTCGGACCATCAGTGT
GTTCCCTTGCCTCAATTCAATCGTGGAGCGTCAGAGCCTAGCTCGACACG
CGTACAACGCGGGAGCCGGACTCGAATGGACAAGCAGTTTCGGTGGTGCT
GACTTTTTGTCTTTGACTCGCTCTCGTTCCTCGCGCGGGAATGCGCCCCT
ATCCCTCACCCTCTTGACGGCGTCAAAGCTAGAGCCGCTTTCGCTGGACT
CCACACACACCGCGCCCTTTTCGCCTTTCACCGTTCACACAATCCCCCCG
CGCCCGCTGCCTCTCTATTTCTCTCACCCCTGCTACTGCGGTTCTCGGAC
AGATACACGGCGCGCCCATGTCACGGATACACAGAGATAAGCGGCTGGAT
CAGGACGCGAAGGCCAAATTGGAGGCCATGAAAGCCATCCCGGCCGCGGA
TCGTGCCAGGTGATAGTGGCCATCACCTGGGTTTCTCTACTCGGGATGGG
ATATTCGCACAATCATACGGTGCAGGATGGAATGGAAATGGCATCTACTT
CGTCGTAGTTGAAAGGCCAAGGGCTACATGAGGAGATTTGGGGCTAGACC
AGGACGGGTAGGGCGAAGGTGGAGGCCATGAATCCCGGCCGCGGATCGTG
CGAGACGAGAGTTGATTGAGCCAGGGCTTTCTTCTGGTTCGATTTTTTCT
TCACTCCTTATTCACTGATCCCAAATCAATCGTAATGAATACTTATACAA
CTACCCCATGCCCTGGTTCTCAACCCCTACTCCCCATGCCCTCCCCCGCG
CCCGTGGACACCCCCTTAAGGGTGCAGGAAATGACGGAAGACTTCCTGAA
CACCCCCTGGGGACGCAAGATGACAGCATAAACGCCTTCCTCCGGCAGAA
AGACCCGGACGCCATGATGCTCAACCTCGGGATGCCCCTGTCGGACGTCC
GCTACGCCGTTACCGGCGGCGGCGGCGGCGGCGGGATCGAGAGCCGCGGT
GGCGACGTGCTCCTTCCTTCTGGCGACCAAGGGTCGCGGGCATTACCGCC
GCTGACTTCTCCTTCCTTGCTGCAAGAAGGAACAGCAGCGACGGCGGTCA
AAGAAGGGGAAGCGGTGGCAGCGGCAGCGGAGGAAGCGGCGGCGGCGGCG
GCGGTATCGGCGGAAGGGACTCCCACGCCCGGAGCTGACCTCACGGGTGG
TGAAGTCCGACCACCGCCGCCACCGCCGCCGAGACATCCCGCAGGCAATA
TGCGCGGCTTGACCCCTTTCGCTCCGCCACAATCAGGTTTACCACCGTCG
CTGCTGTCGTCGATGATGGGGGCCGGCGGGTCCTACGAAGGCGCTGAGAG
CGCTGCGGCTGCACTGAGCGGGCGGGGAGGGCGCGAGGCACGAGTCGCTT
CAGAATTCAGCTTTCTGGTGCGGACTCTGGGTGCCCACGGCAGGTTCGAG
GAGGCGCGGGCAAGGGTGCTGCCCGAGATGAGGCGGCGGGGGATCGCGCC
CGCCGATCACACGTACGCGGCGCTGCTGGCGGGCGCGGCCATCGCCAGAA
ACCCGGATGCAGCGGAGGAGGTGCGGGGCAGAGGGGGCAACGGTCGGGCC
GGTCATGTGAAGGCGGGATGGTGCTCATTCATTGTTCGTGTACAGCAGTC
TTTGCTTTTTTCTTTATGAAGAGGTGATGGGGGGATGGGGGCTACTCACC
TCGCGTAGTCACAAGACCACTGCCCTCGCAATTGGTCGTTTGTGCCAATA
AGTCTGTGGCCATTTTTTCTGAAGGGGGGGTGGCCTTACTCATGTTTTGC
ATGCCTCAGTTGTTAGACCATTGACCACGCGTCCTCGAGAGGACGGAGCA
TTGTTCCCGCAGATTTTTTCTGAAGGGGGGCGGTGTTGTATACTCATTGT
CATTCGTGCGTAGTCAACAGACCATTGTCCTCGAGTATTCCTGCAGCCGA
GACAGAGCTCGCCGGGCATCGGCGGACCAGGTTCAACGCGCGCGGAAAGT
TGACATGGCTGTTGCCGGCCGTCTCACGTGTGCGTTCTTTCTGTCAAACT
TGCAACGCGAAGACTGCGTCAAGACAGACCGCGCAGGTGTGAGGTCACAT
CGGAGTCTTTTGGGGAGCAGATTGGCAGATTGAACACAACTCTCGCGGTT
TCTGCTTTCGAGCTCAACACGTGAAGGGCCTTCATTTTCAGCGAGGATCC
TTACCTCTTCCTTCTCGTTTGTAACTGTCGTTCGAATGCATATCGAGAGC
CCACTCTCATACCGAAGCCGACTTGTCAAGCGATGACGCTGGGCTCGAAA
CCCCTCGTTTAGATTCACATTGCCCTCCTCCCTTTGTCTGGTGGCCTAGC
AGGTTTGGAGGGAGATGTTGGAGGGCGGCGTCAGGCCGTCGGCGCACGCC
TGGGGGGCCCGTGTCGACGCGCATGCGAGGGGGGGGCGCATGCGCCAGGC
CCTCAGGCTCGGGAAGGAGATGCGCGACGAGGGCCACCCCTGGGGTGTGG
AGACCTACACGTCGCTCATCGCTGGATCCGTTCGTAGGAGGGACTACTCC
GGGTTAGTGCACATGTTGTTGTTGTAGTTGTAGTTATTGTTGTTGTTGTT
GCTGTTGGGGTTGTCATATTGTTCATTTTGTTTTGTTTTTTTCGCGTTCT
TAGATCCGTTGAGATATGATCCCCTCGAAGGGAGGTCCAGCGCCGTGATC
CTCATGTTTGTTGTGTGTATAACAGCCCGCAGGGTAGAACCAATCTCGGC
ATGCAAGAGAGAGTGAGCCACGAGGCGGCTCAAAAGGGGGAAAAAATACA
GAACAAAGTATACCAAGTCTGCCAACACCGGGCCATATGGAACTATCAAC
CCGCGAATACCCTTCCTGGTTCCTCACGCAAGTGATGAACCACACGTGGG
TCGAAGATAACGGGTATCTGCCGAGAACGTAGAAACCCGAAAAGTGCTCC
AGGGGAAAACCCGACCCATGGGCGAAAATCCCTCGAACCCAATCATGGAG
GGCAAAAACTGTCGCGGCCAAAGACTCCAACGGCCGTACTCGAAGAGGCA
AGGGTCAAGGCAGGACAAATCAAGCAGCCGACGGGATTACGCGGCCGAAG
TCTACGTTGACATTGCGCGAGCTATGCTCACTCGGCCTACGACGAACACC
TTGGGTGACTCAGTCTGCAGATCCGTCCTGCGTGACGTATCATTATCCCT
CGCTTGTGCCACAAAAAAAATCTCACACCGGTAAGCTCATGAACGCCTCC
CGGTGCTTCACGAACTTCGCCTTGCCGAGAGCCTTGGTATGCATGTCGGC
GTGCCGCTCGTCTGTGGGAACGGACGCGATCGAGATAACCCCCGACCTGA
AACGCTCGCTAATGAAATACAAGCGTACGTCGATGTGCTTGGTGCGGCCC
GATCAATCGGGTTCTCAACCAACGCCCTGGCCCCCTCGTTGTCTTCGCTA
ATTCGAATCTCCCAACCATTCGTCTCGGGTCAATAAAAGCAAGCACGTTG
TGCGCGAAAAGGCCTTCTTTGACCCTCCCCAGCAGCAATGAAGTCCGACA
CCGTTGAATCGAAACCGTCGTGGGCTGAGTCTTGCTGCTGACCTAGCTGG
CATTTCCCAACATCGTGGCTAGGCCAGATGCCGAACGCCGGTCGAACAGG
TCGTCGGCGTAGCTTGCAGCTAGGTACACCCTCAGTCCAAGCCCCGACCC
TCGCTTGCACGAAAAACCAAGATCCCTCGTCCCTTTCAGATAGGAGAGGA
TCCTGTGAATCACCTTCCGGTGCCCGGCCGGGGTTTTTGGGCGTGGCGCG
CAACAGTGCGCATGGGGTAGAAGATGTCCGGTCTCGTCGAGGTCGCCAGC
CACATGCATCAGCAACTGGCCTCCCTCACAGGCTACTTCACACCGCTCTC
GCCATCACGGTTCGCCCCTAGGTCAGCGTCAGGGGATATGGAGGAGGGTG
AGGTCAACTCCACGTCAAAGCGTTTGACGACAGTGTCCACGTGGGCGGGT
TGCCTTATCTTGAGGGTATCTGCCTCGAAATCTCTCTCGATCTGGCAGCC
ACCAAACAACACGCACTCCACCAAATCCTTCTTGGGAACCTTCTTGTTGA
GGGAAGCGAACAGTTCACCGCGTTGACTCTCGAACCGGCTACGGAGCACG
TCGTCGACGTAGAACGACGTCCCCGTCCACTGTTTTGCGGGAAATACACG
GGTCTGCCTTACTCTGAACCGTTCTGTATCAAGGTGTCGGCGACATGATA
CGCCCACTCACGCCCGCTCTGCTTGAGGTCATAGATAGCCATCTCTATCT
TCACGACGGTGTGTGCAAGATCCCCGCAACTGTCACTGAACTTGAGCAGA
AGTTTGTCCTCCAGGGATGCGTGGGTGAAAGCTTGGCTCACATCGAAACG
CCACAAAGGCATTCCTTTGTCGTCGGCAACTGCTGCTAGACTTTTGAAGG
ACGCAGCTGTCGGGCACGCGGACGACGAGTGGGAGTAGTGTACCCCCGAA
ATTTGAGTGAGGACCGGAGCCACCAAAGACGCTTTGGGCCTGTCTATCCT
CCCCTCCTTGTCGAGCTTCCAACACCAAACAAACTTGAAAGTCTCAAGCT
TGTGTTGTTCGAAGCGGCTCCTCATAGAAGACGTCCCCGCTCTTTTGAGC
CTTTATGCCTCGCCCCGCATAGCCTGCATTCGCGTATCCTTGCAAAGCAG
AATCCCAAACTTCATTCAATCCCACGGGGGTCCCTTCCGCTTCACTTGGA
AGCTTGCTAATTGGGGCCTCAGTACTCAACTCGTGGAACGCCATTGCTGT
CGTAGAGACGTCGGGCGAGTCGACGAGCTCGTCGATCCTCGAGTGCATTT
CGCGGTGTTCTTGGGCACGCTCGTCCACCAGCGACATATTCCAGCGTTTT
TTTTCGCGCCTGTCCTCGTCCTCACGCCCCGGCTCACTCGCGAGGCGCCG
TCGCCGTACTTTGGGTGCGGGCGGGGGATGCGTTTCCCGAGGATATCAGC
CGGCCTGTTGGCGTCGCCGAAGCTGCGTTGATGGGCCGCCCTCCCAGAGA
GAACTGGTGTGTCAGTGCCACTGCCGCTGCTTTCGCTGCTTGCGTCGCGG
CCGGTATCACTAGCTGCGCCCGCCGTGCCGCCGTCGCCGCTGCTATCAGG
CATCCGAATGTCCATCCAGCTTTCGCTGCTGCTGCTACTGCTGCGGCTGG
CGTCGCTGTTCGCGCCCGCCAATTCCGTGCACGGATGGGGCCCGCTGACG
CCATTCCGAACGGAGAGGGCAGAGTCCGCATTGCTTGGGCAGTCGCTCGT
GGCACCCTCCCAGCCCCTGTCCAGAGGCGCCACTAGCGGCGCCAACGCCG
CCGTCGGCTCAGGGATCACGTCCGCGGCGTCGATGATGAAGCCATCAGGC
TCTCCCTCCCTCCCTCCCTCGTCCGCGTGGCCCGTTGACCTCGTACCCGT
CGTCCCCGGATCCGGCCCCGTCATGTGCGAGCGGTGGCAGCTGGGGAGCG
GGGGGCGGGGTAGGGGGCTCGGAACTCCAAGTAAAGTTGCTGGGAATGAT
CACTGTGCCGGTTTAAGTGAGCATGCGCACGCAATCGCGGTTGTCGTCGA
GCGCCCATCCTAGGTACTAGCATTTTGCCCCTTTGGATCGGACTGGTCCC
TCATGTGCATACAGCAGGGTTCAGAAAGGGGTAAACCGACTCGACTGGGG
GCGCGCGGCCGTTCCACATTCCGTAGGGAGGTTTCGGCCAGACTTAGTGG
TCGTAGCAGTACAGTTGTAGGAGTGGCACGCCCAAGACACGGCTTTTGCC
CACAGAGAGGGTAATTCGGGGTGTCTCGGTAAAAGACCGATGCTTGCATG
ATTCCTGCGCGAGCAGCATCCTTTGATCATGCCGAGGGCCCTCTCTGCAA
CACCGTTTTATTGCGAGCTGTGGGCGGTATAGTGTTCATTCTAAATAGTG
TCTGCGGCACACTCCGCGCACTTTCCATCAACTCTCCGCCGTTGTCGGTG
CACACGAGCTCGACCGCTGACCGAGCGCCCTCTACTCGGTTCTCCGCCAA
GTCGAACGACTCCGCGGCGTCTGATTCTTGCCGGAAGAATTAGACGCCGG
TCCACCTCGAGTGACTGTTTCTGATGATGAGAGTGAAAGACTTGCCAACA
CGACTAGCCTCCTTTGCCTTCCCGCGCAAGTCAAGAAACAGTCTCTGTAA
TTTCGTAACTGTACGCGTGGATGTCAGGCTGGGATGCGCTTCTTGATGCC
CTTGGGCATCGAGCACCCCAGGCATTCGCAGAGCTCGCCCTCCAGCTCTT
CGCCTTGATTCTCTGCCGTTTTCCTCAGGAGCACGTCGTGCGAGTGGGCA
TGGGACGGGTGGTACTCGTTGATGTCGTGTAGTGCGCGGGTGGCTTTCGC
CTTCCCAGGAGCAATTACGGCGCAGGTAAGTTGTCTCGAGTCTAGGTCTA
TACGGCGGCCAGTCGGCACTGGCGGTTTCCCAATGTAAGGGGAAAAACCA
GACGTCCCCTATCGAAATTCAATTCCATTCCTCTGAACCACCATCCTGCA
TATGCCCTTGAAGGGCGAGGGAAGAAGAGGTGGAAATCAGATCTGTTTTG
AGTCAGGGGACGTGGCTACGCTTCGCAGCAGAATTTTCACTTTCCCTTCG
TTGTCTCCTGAGAGGAAGACCTCGAGGAGATCACCGTGCTCCACGATGTG
GATGATGCCACTGCTAGCTATACGCAGACTTCCATTGCATTCGGCGTATG
GCGTATTCTTCAAAGCCGTCTGCGCCGCAGTTCATGTTTGAGGTAGCTGC
TGTATCAAGAACCCACCTCCCCTTCCTGCCCTGCTCAACTACGCCTCCTT
CGGCTCCGAAAAAAACACTTCCCTGGCACCTCGCATGAGTTGAAAGCTGC
TTCCTCCACTTCCGAGTTTACTCCCCCGACTTCAGCAGTCCCCCACACGA
GCTCCACCGCCACCATCGCTCCCGTCCACGTGCATTGGCTCTTGTTGTGA
CCAAAGCCCATGCAGTTCTTGCACGGAGGAGCAGGATTGCTGGCGGTGCA
CAAGCAAGTGCCCGAACTTGCCGCATCTGTAGCAGAGGCTGCGCGAGTTG
ATGTCCCCGCCGCTCCCGCCGGCGGCGGCGGCGGCTGCGTTCCCGGTCCC
TGCAGCAGCCGCCGCCGCCGCGGGTAGCTGTAGTGGCTGAGTTTGTGCTC
TTGGCGCCGCCGGTGTTGCTGCTCCCCTTTTTTTTCCGCTGCCTCTGCCG
CTGCCGTTGTGGCGACGGTCGTTGCACGACCGCCCCCTCCGCCGCCGCTG
CCTGCGAGGAAGGCCTGTTCAGCTTTTCGGGGCCCCGTGAACTTCTTGGC
TATCGCCTTCCCGGTGTGAACTGCGGAAATGATCCAAACGATCTGGTCTC
TCGTCACGGTGGGTGAAGTCGTGAGCGCAAACTTCGCGCGATCGTACTCG
GGAGGAAGGCGCAGCACCAAGTGGGCGAGGAGAAGCGCACCACGCTCAGT
CCCTTCGCATTTAGGCGAGCATGCAACCCCTCGACAGGACACTGAGGTCT
TGTATAGTATTCTTGGCGGCGACACGAGAATCAAGAGCTTCCCCGAGGAG
TCCACACACAGCCCCCTGTGACTCTGGACCACGTATCCGTCTTTGCTCGT
CGGAGGCAGCCTTTTGCGCTGGTGTGTTTATCCAAACAGCAACATCGTTG
TCGTTGATGTGGTGCTTGTTGCCATCGTTGTTGTTCTTGTAATGCCCACC
AAATTACAGGGTCAACGACGTTGCGAGTTTTTTTATTTTCGGTGTAGTGG
GAGCGTGCGAACGTCGGCTCAGCTTCGCAAGCCTTCTGAAACGCGCTTGC
ACGCAGGAGGCTGAGACATGAGCGCACAAGAAACAACGCCTTCTGTTCTA
CCCTGTCCCCATGGCTGCGGCCATGCTCATCGTTACTCGTTCCAAGTCCA
CCCACAATCACCGTTGGTCGTCGGCGCGAAAGGCGCTCTTTTCTTCTCAC
TTCCACCAGTTAGTTGCATAGACTTTTCCACCTGCGGGCAAGCCATGGCC
GTCGAGTCGGCTGCCGAGGGGGGATCCCGTCGATTGCTTCGACTACCCCT
GCCCCTTCCCGTTGCACTTCTCCCTTTCCCCCCCCCCTTCCACGTCAAGA
ATCGACAGCCCATCCTTATATTGCGTTAGGTTGGGTGTGCCAAGCCGAGC
ATCGCGCTGTGCTCCCGCCATGTGTGCCGCCGCCAAGGCCGGTCCCCCGC
TCCTACTAACGTCGACTCACGGCGTCCCCGTCCATGGCAGACTCAACTCC
CCAATGGGTTGCCACGCCGCCACAGAGTCGGTCTCCCGTTCTGCTCAACG
ACACTCCCCTGTGTGTGCTTCCGCCGGAGACGCGTCGCCAATGAGTTCCG
GTGCCATCCGCTCGTGTCTGTAGATGCTCGCGCCGCCTTGTTCTCCTCCC
TGGGTTGGCGCAGCATTGTGATCATCCTCGATTTCCCATGCTTGGTCGAT
TGTGTACTGGTGGGCCTTGAGTGCATCGGCCACCATTACGGGACGAATCG
AGTACGATTTCGATGCCGCACCGACTCGATTCATCCCAAAACAGCAAGGA
GTGGTCGACGCTCTAGCGGACCATCACAAATGAAGCTACCCACGCAAGGA
AAACCGACAAAATGCCGTCATGGCCGCTGCAGCGCGGGGGCATCGTTCTA
CCCAACGTTGCATTGGCATTGGGCAGCAATAGGGGTGCCCCGCGGCGCAG
GCGCCTGCAAACGCGGAGAGATTGACGCGGCCAAGCACACATTTTGGGGC
CGTCGTTGGGAAGCGCGTAGGGTTGGCTACGTGGCGGCGGGGCAACCCAT
TGGAGGCGTAGGTGCCTTCGACGGGGTCGCCGTTGGCAGGAAGGGGCGGG
GGGCAGCCTTGTGGCGTCCGTGATGGGCATGCGACACGATGTGGTCGGCA
TAGGAGACCTCATCCCAACGCAGATGTTGGCGGATCTCTGGCTCGTTGTG
TGGAGGCATGCGCCGTTGACCCCGCTCAGTAACCAACTGGCCGGACATGT
CTCGCCTGCCGGTAGACCACACACCTTGCATATGGACGACTGGTGGCGAG
TGTGAGTTGAACCGAGTCAGAACGGCCATCGGCTGGGATGGGGACGTTGT
GTTTCAAAGTGCTTCGTGCTTTCAATGCTTTCCTTATCCCAGCCTCGAAT
AAAAGGTCCTCATGACAAGCTCTTCGAGGGTGTCAACAATGCCTTGTGTA
AAGCGCCAAGATCATTTTGATTTATTGCCATTAGATGTGCCGCTGCGCAA
CCGGGAGGATCCAGGGTTAGCATTACTGTTGCCAATATAAAATCGAAACA
GGGTTAACATAACCTCTTTCTGTGTGCAAATCTAAAACTCTGACCAATTT
CATCGCGTGTGACGGGCGCTGTCGGTTTTAAGAAATCGTTACTCTTGGTT
TGAAATCCGGAACTCGAAATCCCTTGTGAAGGTTCAAGTTCGTTCGACTT
TGCCTCTGCAGTGCAGTATTTTGCTATCATGCTTCACGACAAAATGTTTG
TTCTGCACACCGACCTGTTCTCCTTCCCGCCCGCCACCGCCATACCGGGG
GGGCATCGCCGCCTACCACCACCACACCGTGGGGGGCACCGCACTGCACT
GTTTCACGTCTTGGCCGGCCTGCTGCAGGGCATGGCGGCTCTGGAAGGAA
ATGATCATTTGGGGCGTGCAGCCGGACGCGATGGCGTACAACACGATGAT
CAAGCTCTGCGCCCAGACCAGGCAGTACGAGAAGGCCATGACCTTCCTCG
ACGAGATGGACATGTTCGACCATCGGCCGTCGAGGATCACAATGGAGTTG
CTCTTCAGGGCCGCGGCGACCGCGCCGCAGTGGATTAGGGTGAGCAACCA
AGCAGAGGCGGAGGGAGACAATAGTTGAAAGGGCAGGGAGGGAGGGGGGG
GACGGAGAGAGAGACTGCGAATGGTGATTTGTTGACTGCTCGAAATTCTC
CTTTTCTGGCGCGCGTTTTCCGATTTTATGTTTGACACGGGCTCGTTCCC
GCCCGCTTTCCAATCCGAAAGTTTACCACACGACGCCGCTGGTGTGGTGC
TACGTTGATGGCGGGCGTTGCTTCCGTCCACATTGCTTGTTGTTGGGTCG
CGGTCTGTTGAGTGTGTTGGCGCGGTGGCTTGCCCTCTTGTTCTGTTCGG
GTGCTTTGCCTACTGTTCGCGGTAATGTGTGTCATTGTTTATTTGTTCAT
CGCGTCGGTATAGCTACTCTCTTGGTGGTAGACGCCCTCACCTTTCGTCG
CGTCTTCGTCACCGGCACTCATTCGGATGTTACACTGCGTCACGGACGCA
CTCAGGCGTATGGCGGCATCGTCGACGACCTCGTGCAGCGCTTCATCGGG
CTTGGCATCACCCCCGAGATCGACACCTACCGTGCGCTCCTGCTGGCCTA
CAGCAATGGAGGCGACGCTGACAAGGTACGCCGGCGCCACATTTACCTTT
TTAAGCCGTTGCTTCGGCGCTGTTGTTGAAAGTGTCGGCAACGAACGCAC
CACGTATTTCTGGCGTTTTAAACACCTGCCGGGCCACCTTCACGGAAAGT
TTCTTGCCCGGACAGACCTACATCCATTGGTTGGGCCAATGGGACACGGC
AACTAATGTTGCTATCGTTGTTGTTGTTGTTGTTGTTGTTGTTGTTGTTG
TTGTTGTTGTTGTTGTTGTTGTTGTTGTTGTAGTAGTAGTTGTTGTTGTT
GTTGTTGGCGTTGTTGTTGGCGTTGTTGTTGGCGTTGTTTGTTGTTGTTG
TTGTTGCTTGTTGCTGTTGTTGTTGTTGTTGTTGTTGTTGTTGTGGTTGT
CGCTTTGGTTTTTGTTGTTGTGGGATATTTGCCAGTCCCGCCGAAACTGA
CAACTTTCCATTGCCCTACTGCGTCACTTCAACTCGCCAGCCGGTCAACT
ACCCACCGCGATCAACGCTCAGCAAGAGAAACAGCACACCCCCGGCTCGC
GTGACAACTTATTCGTGAAACGCCTAACAGGTCTTGCAGTGCATAGAGGA
AGCCCACGTGCTAGAGGGGCACACGGGCGACCAGATAGGGAACGGGACCC
CCAAACTTCCCTGGAAGGCTTATTGCGACGCCCTGGACGCCATCGCCAGG
TGCCTCAGCGTGAGCCGCCACCGGGGCACAAGGGCTAGGTGAGCCATGGA
CTTCATTCTGTGAGAATTCGTGCTGTGATACTGAATTTGAACGTTGAATG
CCAATTTCAGAGAGGATAGGGGATTCCAACGAAGGTACCCATTGAAGGGG
GTGAGGGAGGGATCCGCGCGGGGGCGGCCGTCATGCAGGGGTTACAGAAA
TTCGATGGCAAGCTTCCGTGAACCAAGGGGCTCTGGGGATTTGCACAGCG
ACTCCCGTATGCCGGGGGGCGCCAGGAGTTACAAGGATGGGTCTCGATTT
TGCGAAACTCACGGAGAGTAGCCCGCGTGGCGATAAGACCGACAGGCGAC
GCCACTCCTACAACGCATTGTCACGAACCAAGTACCACACACTAAGCGAT
GAGATTGTTGAACTCTTCTCGCTCTAAAATTGTAGGGCAAGCACCGTGTT
TGGGTGTCGGTGCGTGACTTACAGTTGACACGCGTAACCCTCTCAGCTAA
GGCGCCTCTGCATAGATGCATAGGTTTGTTTGTTCCCACGTCCACGGCAA
ATGCTCACACACATACACACGCACAAACCAAGCCGTTGGAGCTCCGTGAT
TCGATCCATCCTATTAGGGACTTCCGTGTCACCTCCCACCTAGAGACTCC
GTTATACAATATCTCCAACGTGTACCCCAAACAAGCCGCAGGTGTGAGGT
GGAGGACCAGTTGTCCCTATCTCCCGATCCCTGTACGGAAGCCCATGTAG
CTGTGCAGGCTTCCCGCCATCATCATGTACGACGAGAATTAAGAGTTAGG
ATTATTACGGTTGATGAGAGGCGGCAAAAGCAAATCCGCCGCGGCTTTTG
TCCCCCCTCTTCCTCCCCGTGATTCAATCACGCCCCCCCCCCCGCTCGGT
GTTAGGTGGGGTATTCTCCCCGGAGAGGACCCCCTGGTGATGGACATCAC
CGCCCTAGAGGTCCCCGAGGAGGACTTCAACCGCGTCCGGCAGATGCAGA
TGTCGGCGATGGAGTGGGATGAAGACGGGGAAACGGCGCTCAGGAAGGGC
TTCAAGAAGGGAAAGCGGACCAAATTTATGGGTGAGAAAGGGGGAGGAAG
TAGGAGGAGGAGGAGGGGCCGAGGATTGTTGGAAGCTTGTGGTGGGTGTG
TGTTGGTGCATTCTTTCGATTTCGACGATCGAGTTATTTTCTCGTTGACA
TTTTTCTTCTTTCGACGTTCCTCCCCCCCTCCTTCACAGGGGTGAAGACT
CCCGCCGATCTGATCGGCGACGACGAGTTCGAGCGGGATATCGAAGACGA
GTACGAGCGAATCATGGCGAAGGCGAAGGCCATGAAGGAGCTGGAGCGGC
GGGAGAACCTGATCCAGCTGGGGATAGATCCCGACGCAGAAGACAGGGTG
GCCAAAACGCGGCCACGTGTGCTGCCTGATCCGCGGGACAAGGAGTCCAT
CGGGGCCCCTATGCCGCACTGGCTCAGCGCCGAAGCGAACGCGCCGCTGC
CGGGGCTGTTGCCGACGGAGGGTTCTTCAGAACAGCAGCTTGGGATCAGC
GATGGGTCAGGCGAGACAGGCGTCGGGGCACCGAGGGGTTCGGACACGGG
TGGGGCGGGGCAAGAGCTAGGAGCCGATGGCGGCGGTGAACATGGCGCCG
TTCGGTCGAGAGAGATCGGTCCATTGAGCTGGAGAGGAATTTCAGAGGCG
GGGCAGAAACCCCCCGACGAC back to topCoding sequence (CDS) from alignment at P-fluviatile_contig12:1085320..1098790- >mRNA_P-fluviatile_contig12.1394.1 ID=mRNA_P-fluviatile_contig12.1394.1|Name=mRNA_P-fluviatile_contig12.1394.1|organism=Porterinema fluviatile SAG_2381|type=CDS|length=4008bp|location=Sequence derived from alignment at P-fluviatile_contig12:1085320..1098790- (Porterinema fluviatile SAG_2381) ATGATGCTCAACCTCGGGATGCCCCTGTCGGACGTCCGCTACGCCGTTAC CGGCGGCGGCGGCGGCGGCGGGATCGAGAGCCGCGGTGGCGACGTGCTCC TTCCTTCTGGCGACCAAGGGTCGCGGGCATTACCGCCGCTGACTTCTCCT TCCTTGCTGCAAGAAGGAACAGCAGCGACGGCGGTCAAAGAAGGGGAAGC GGTGGCAGCGGCAGCGGAGGAAGCGGCGGCGGCGGCGGCGGTATCGGCGG AAGGGACTCCCACGCCCGGAGCTGACCTCACGGGTGGTGAAGTCCGACCA CCGCCGCCACCGCCGCCGAGACATCCCGCAGGCAATATGCGCGGCTTGAC CCCTTTCGCTCCGCCACAATCAGGTTTACCACCGTCGCTGCTGTCGTCGA TGATGGGGGCCGGCGGGTCCTACGAAGGCGCTGAGAGCGCTGCGGCTGCA CTGAGCGGGCGGGGAGGGCGCGAGGCACGAGTCGCTTCAGAATTCAGCTT TCTGGTGCGGACTCTGGGTGCCCACGGCAGGTTCGAGGAGGCGCGGGCAA GGGTGCTGCCCGAGATGAGGCGGCGGGGGATCGCGCCCGCCGATCACACG TACGCGGCGCTGCTGGCGGGCGCGGCCATCGCCAGAAACCCGGATGCAGC GGAGGAGATGATGCTCAACCTCGGGATGCCCCTGTCGGACGTCCGCTACG CCGTTACCGGCGGCGGCGGCGGCGGCGGGATCGAGAGCCGCGGTGGCGAC GTGCTCCTTCCTTCTGGCGACCAAGGGTCGCGGGCATTACCGCCGCTGAC TTCTCCTTCCTTGCTGCAAGAAGGAACAGCAGCGACGGCGGTCAAAGAAG GGGAAGCGGTGGCAGCGGCAGCGGAGGAAGCGGCGGCGGCGGCGGCGGTA TCGGCGGAAGGGACTCCCACGCCCGGAGCTGACCTCACGGGTGGTGAAGT CCGACCACCGCCGCCACCGCCGCCGAGACATCCCGCAGGCAATATGCGCG GCTTGACCCCTTTCGCTCCGCCACAATCAGGTTTACCACCGTCGCTGCTG TCGTCGATGATGGGGGCCGGCGGGTCCTACGAAGGCGCTGAGAGCGCTGC GGCTGCACTGAGCGGGCGGGGAGGGCGCGAGGCACGAGTCGCTTCAGAAT TCAGCTTTCTGGTGCGGACTCTGGGTGCCCACGGCAGGTTCGAGGAGGCG CGGGCAAGGGTGCTGCCCGAGATGAGGCGGCGGGGGATCGCGCCCGCCGA TCACACGTACGCGGCGCTGCTGGCGGGCGCGGCCATCGCCAGAAACCCGG ATGCAGCGGAGGAGGTTTGGAGGGAGATGTTGGAGGGCGGCGTCAGGCCG TCGGCGCACGCCTGGGGGGCCCGTGTCGACGCGCATGCGAGGGGGGGGCG CATGCGCCAGGCCCTCAGGCTCGGGAAGGAGATGCGCGACGAGGGCCACC CCTGGGGTGTGGAGACCTACACGTCGCTCATCGCTGGATCCGTTCGTAGG AGGGACTACTCCGGGTTTGGAGGGAGATGTTGGAGGGCGGCGTCAGGCCG TCGGCGCACGCCTGGGGGGCCCGTGTCGACGCGCATGCGAGGGGGGGGCG CATGCGCCAGGCCCTCAGGCTCGGGAAGGAGATGCGCGACGAGGGCCACC CCTGGGGTGTGGAGACCTACACGTCGCTCATCGCTGGATCCGTTCGTAGG AGGGACTACTCCGGGGCATGGCGGCTCTGGAAGGAAATGATCATTTGGGG CGTGCAGCCGGACGCGATGGCGTACAACACGATGATCAAGCTCTGCGCCC AGACCAGGCAGTACGAGAAGGCCATGACCTTCCTCGACGAGATGGACATG TTCGACCATCGGCCGTCGAGGATCACAATGGAGTTGCTCTTCAGGGCCGC GGCGACCGCGCCGCAGTGGATTAGGGGCATGGCGGCTCTGGAAGGAAATG ATCATTTGGGGCGTGCAGCCGGACGCGATGGCGTACAACACGATGATCAA GCTCTGCGCCCAGACCAGGCAGTACGAGAAGGCCATGACCTTCCTCGACG AGATGGACATGTTCGACCATCGGCCGTCGAGGATCACAATGGAGTTGCTC TTCAGGGCCGCGGCGACCGCGCCGCAGTGGATTAGGGCGTATGGCGGCAT CGTCGACGACCTCGTGCAGCGCTTCATCGGGCTTGGCATCACCCCCGAGA TCGACACCTACCGTGCGCTCCTGCTGGCCTACAGCAATGGAGGCGACGCT GACAAGGCGTATGGCGGCATCGTCGACGACCTCGTGCAGCGCTTCATCGG GCTTGGCATCACCCCCGAGATCGACACCTACCGTGCGCTCCTGCTGGCCT ACAGCAATGGAGGCGACGCTGACAAGGTCTTGCAGTGCATAGAGGAAGCC CACGTGCTAGAGGGGCACACGGGCGACCAGATAGGGAACGGGACCCCCAA ACTTCCCTGGAAGGCTTATTGCGACGCCCTGGACGCCATCGCCAGGTGCC TCAGCGTGAGCCGCCACCGGGGCACAAGGGCTAGGTCTTGCAGTGCATAG AGGAAGCCCACGTGCTAGAGGGGCACACGGGCGACCAGATAGGGAACGGG ACCCCCAAACTTCCCTGGAAGGCTTATTGCGACGCCCTGGACGCCATCGC CAGGTGCCTCAGCGTGAGCCGCCACCGGGGCACAAGGGCTAGGTGGGGTA TTCTCCCCGGAGAGGACCCCCTGGTGATGGACATCACCGCCCTAGAGGTC CCCGAGGAGGACTTCAACCGCGTCCGGCAGATGCAGATGTCGGCGATGGA GTGGGATGAAGACGGGGAAACGGCGCTCAGGAAGGGCTTCAAGAAGGGAA AGCGGACCAAATTTATGGGTGGGGTATTCTCCCCGGAGAGGACCCCCTGG TGATGGACATCACCGCCCTAGAGGTCCCCGAGGAGGACTTCAACCGCGTC CGGCAGATGCAGATGTCGGCGATGGAGTGGGATGAAGACGGGGAAACGGC GCTCAGGAAGGGCTTCAAGAAGGGAAAGCGGACCAAATTTATGGGGGTGA AGACTCCCGCCGATCTGATCGGCGACGACGAGTTCGAGCGGGATATCGAA GACGAGTACGAGCGAATCATGGCGAAGGCGAAGGCCATGAAGGAGCTGGA GCGGCGGGAGAACCTGATCCAGCTGGGGATAGATCCCGACGCAGAAGACA GGGTGGCCAAAACGCGGCCACGTGTGCTGCCTGATCCGCGGGACAAGGAG TCCATCGGGGCCCCTATGCCGCACTGGCTCAGCGCCGAAGCGAACGCGCC GCTGCCGGGGCTGTTGCCGACGGAGGGTTCTTCAGAACAGCAGCTTGGGA TCAGCGATGGGTCAGGCGAGACAGGCGTCGGGGCACCGAGGGGTTCGGAC ACGGGTGGGGCGGGGCAAGAGCTAGGAGCCGATGGCGGCGGTGAACATGG CGCCGTTCGGTCGAGAGAGATCGGTCCATTGAGCTGGAGAGGAATTTCAG AGGCGGGGCAGAAACCCCCCGACGACGGGTGAAGACTCCCGCCGATCTGA TCGGCGACGACGAGTTCGAGCGGGATATCGAAGACGAGTACGAGCGAATC ATGGCGAAGGCGAAGGCCATGAAGGAGCTGGAGCGGCGGGAGAACCTGAT CCAGCTGGGGATAGATCCCGACGCAGAAGACAGGGTGGCCAAAACGCGGC CACGTGTGCTGCCTGATCCGCGGGACAAGGAGTCCATCGGGGCCCCTATG CCGCACTGGCTCAGCGCCGAAGCGAACGCGCCGCTGCCGGGGCTGTTGCC GACGGAGGGTTCTTCAGAACAGCAGCTTGGGATCAGCGATGGGTCAGGCG AGACAGGCGTCGGGGCACCGAGGGGTTCGGACACGGGTGGGGCGGGGCAA GAGCTAGGAGCCGATGGCGGCGGTGAACATGGCGCCGTTCGGTCGAGAGA GATCGGTCCATTGAGCTGGAGAGGAATTTCAGAGGCGGGGCAGAAACCCC CCGACGAC back to top
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