|
|
Homology
BLAST of mRNA_P-fluviatile_contig22.4948.1 vs. uniprot
Match: A0A6H5K4N1_9PHAE (Uncharacterized protein n=1 Tax=Ectocarpus sp. CCAP 1310/34 TaxID=867726 RepID=A0A6H5K4N1_9PHAE) HSP 1 Score: 505 bits (1300), Expect = 4.580e-152 Identity = 343/580 (59.14%), Postives = 378/580 (65.17%), Query Frame = 1
Query: 1783 TTGGWGAERRRQNVAKVWSWLEPEGLKEGEDAAPVVVVQLGYGGGWAWGVSPDAGVRGSEYDE-IGDRFSWKAFRDETASQLFARGCRILWLDRGPHSDHHERXXXXXXXXXXXXXXXALDGRDAWHGEHPYEGRSEGLS-------EEVSSEASFRRAKPRGVK---------GGGETTSGSS-GQWEAGNGGEETRLLDGRRTLMFIDVEEEIGAAGMVGSSEWLLSRVISHRLVTVLVTDGDVRSLQTALWHGKPSVVLPTSPDQREAAARLVYSGAGVTCPPPCNATELVAAVVNAHDIDKRKAALRSSAALRETGGVGRAADLLENELWTHLAATARRPGCPHGPRS---------SRD-DLPTWCLSQESRAERSEERSEERLL---LESEPFLP--EAYPSTGGLSWFPDDPDWVWDEMSWLERHLVDVYAVYAALVVGVGLLMKLTWNIVWSLCDITTAP--VRGDLGGNTDSSRSPSPSPAKDPC-APSSAVGGGKLARGGXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXNMSGAAVV-NGDGT-PPVSGGMYSKRMALTYGHS 3408
T GG GA R + + VWSWLEPEG+ EG+DAAPVVVVQLGYGGG AWGVSPDA V GSE + G R SWKAFR+ETA+QL A GCR LWLD GPH DH + A D + G+H E + G S E + G K GGG+ G G WE LLDGR+ L+F D A G+V SSEWLL R++SHRLVTVLVTDGDVRSLQ ALWHGKPSVVLPTSPDQREAAARL +SGAGVTCPPPCN T L AAVV+AH D R+ ALRSSAAL E GGVGRA DLLENEL THLAATARR GCPHG S RD D+P WC + R E E SE+ L +E P E Y S G LSWFPDDP+WVW EMSWL+RHLVDVYAVY ALV+GVGLLMKLTWN+VWSLCDITTAP RG +GG+ D RSPSPSPAK+PC AP KL RGG XXXXXXXXXX XXXXXXXXXX N+SGAAVV +GDG PPV GG YSK+MALT GHS
Sbjct: 497 TEGGDGAARGNEALEDVWSWLEPEGV-EGDDAAPVVVVQLGYGGGSAWGVSPDAAVGGSEGEAGSGARPSWKAFREETATQLSAVGCRTLWLDHGPHPDHRRQPTEEHDET-------ATDEPENGSGDHSAERSAVGRSYLWKRSTEGSEPPTTMPLPSTAGGKEEDAELLAAGGGDRRVGPPYGGWE---------LLDGRQPLLFFD------AGGLVVSSEWLL-RIMSHRLVTVLVTDGDVRSLQAALWHGKPSVVLPTSPDQREAAARLAHSGAGVTCPPPCNVTSLTAAVVDAHGADMRRGALRSSAALHEAGGVGRAGDLLENELRTHLAATARRSGCPHGEPSLWWALDDERDRDGDVPPWCYRRH-REEAEEGPSEDDRFSWELGAEGRFPPSEGYVSEG-LSWFPDDPEWVWREMSWLQRHLVDVYAVYGALVMGVGLLMKLTWNLVWSLCDITTAPPMARGGMGGSVDHLRSPSPSPAKEPCSAPGXXXXXXKLTRGGSAKWXXXXXXXXXXKHXXXXXXXXXXGSV-------NVSGAAVVVHGDGAAPPVPGGKYSKKMALTNGHS 1043
BLAST of mRNA_P-fluviatile_contig22.4948.1 vs. uniprot
Match: D8LD57_ECTSI (Uncharacterized protein n=1 Tax=Ectocarpus siliculosus TaxID=2880 RepID=D8LD57_ECTSI) HSP 1 Score: 488 bits (1256), Expect = 1.070e-145 Identity = 344/589 (58.40%), Postives = 379/589 (64.35%), Query Frame = 1
Query: 1768 RHVGGTTGGWGAERRRQNVAKVWSWLEPEGLKEGEDAAPVVVVQLGYGGGWAWGVSPDAGVRGSE-YDEIGDRFSWKAFRDETASQLFARGCRILWLDRGPHSDHHERXXXXXXXXXXXXXXXALDGRDAWHGEHPYEGRSEGLSEE----------------VSSEASFRRAKPRGVKGGGETTSGSS-GQWEAGNGGEETRLLDGRRTLMFIDVEEEIGAAGMVGSSE--WLLSRVISHRLVTVLVTDGDVRSLQTALWHGKPSVVLPTSPDQREAAARLVYSGAGVTCPPPCNATELVAAVVNAHDIDKRKAALRSSAALRETGGVGRAADLLENELWTHLAATARRPGCPHGPRS---SRDD-----------LPTWCLSQESRAERSEERSEERL----LLESEPFLPEAYPSTGGLSWFPDDPDWVWDEMSWLERHLVDVYAVYAALVVGVGLLMKLTWNIVWSLCDITTAP--VRGDLGGNTDSSRSPSPSPAKDPCAPSSAVGGGKLARGGXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXNMSGAAVV-NGDGT-PPVSGGMYSKRMALTYGHS 3408
R GG G R + + VWSWLEPEG+ E +DAAPVVVVQLGYGGGWAWGVSPDA V GSE D G R SWKAFR+ETA+QL A GCR LWLD P+ DH + A D G+H E + G S SS GGG+ +G G WE LLDGR++L+F D E GMV SSE WLL R++SHRLVTVLVTDGD+RSLQTALWHGKPSVVLPTSPDQREAAARL +SGAGVTCPPPCNAT L AAVV+AH D R+ ALRSSAAL E GGVGRA DLLENEL THLAATARR GCPHG S DD +P+WC SE+ L E F P + GLSWFPDDP+WVW EMSWL+RHLVDVYAVY ALV+GVGLLMKLTWN+VWSLCDITTAP RG +GG+ D RSPSPSPAK+PCA A GG XXXXXXXXXXXXXXXXXXXXXXXXXXXXXXX N+S AAVV +GDGT PPV GG YSK+MALT GHS
Sbjct: 506 RDTAAMEGGDGTARGNEALEDVWSWLEPEGVGE-DDAAPVVVVQLGYGGGWAWGVSPDAAVGGSEGEDGSGARPSWKAFREETATQLSAVGCRTLWLDHRPYPDHRSQPSEDQDET-------AADEPKNGSGDHSAERSAVGRSSLWKRYTEGSEPPKTTPLPSSAGGMEEDAELLAAGGGDRRTGPPLGGWE---------LLDGRQSLLFFDAE------GMVASSESEWLL-RIMSHRLVTVLVTDGDLRSLQTALWHGKPSVVLPTSPDQREAAARLAHSGAGVTCPPPCNATSLTAAVVDAHGADMRRGALRSSAALHEAGGVGRAGDLLENELRTHLAATARRLGCPHGDPSLWWGVDDDRXXXXXXXXXVPSWCYRXXXXXXXXXXPSEDDWFSWELGAEERFPPSQGYVSEGLSWFPDDPEWVWREMSWLQRHLVDVYAVYGALVMGVGLLMKLTWNLVWSLCDITTAPPMARGGMGGSVDHLRSPSPSPAKEPCA---APGGXXXXX------XXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXVNVSSAAVVVHGDGTTPPVPGGKYSKKMALTNGHS 1061
BLAST of mRNA_P-fluviatile_contig22.4948.1 vs. uniprot
Match: A0A485KYT5_9STRA (Aste57867_13696 protein n=1 Tax=Aphanomyces stellatus TaxID=120398 RepID=A0A485KYT5_9STRA) HSP 1 Score: 67.4 bits (163), Expect = 3.370e-7 Identity = 36/67 (53.73%), Postives = 43/67 (64.18%), Query Frame = 2
Query: 362 VGVPEENAVLPLKALAQEMIARGYRASFALPHGFRVWVEDIPGLSFLSLQPAANPA-TYSAASNGTT 559
V +P VLP+K LA+E++ RGYR SFALP R WV DIPGL F+SL + PA TYS S T
Sbjct: 1393 VSIPVMERVLPMKHLAEELLHRGYRVSFALPEICRTWVSDIPGLEFVSLGTMSLPAHTYSIKSASVT 1459
BLAST of mRNA_P-fluviatile_contig22.4948.1 vs. uniprot
Match: A0A1V9ZZF9_9STRA (Transient receptor potential Ca2 channel (TRP-CC) family protein n=1 Tax=Thraustotheca clavata TaxID=74557 RepID=A0A1V9ZZF9_9STRA) HSP 1 Score: 65.5 bits (158), Expect = 1.270e-6 Identity = 32/65 (49.23%), Postives = 41/65 (63.08%), Query Frame = 2
Query: 344 QEHFVFVGVPEENAVLPLKALAQEMIARGYRASFALPHGFRVWVEDIPGLSFLSLQPAANPATYS 538
Q++ FV +P VLP+K +AQE++ RGYR SFALP +R WV DI GL F+SL YS
Sbjct: 1199 QKYVSFVSIPVLERVLPMKHMAQELLRRGYRVSFALPEMYRHWVSDIHGLEFISLGKIVPSTLYS 1263
BLAST of mRNA_P-fluviatile_contig22.4948.1 vs. uniprot
Match: A0A6G0W8S7_9STRA (Uncharacterized protein n=1 Tax=Aphanomyces euteiches TaxID=100861 RepID=A0A6G0W8S7_9STRA) HSP 1 Score: 61.6 bits (148), Expect = 1.320e-5 Identity = 28/49 (57.14%), Postives = 35/49 (71.43%), Query Frame = 2
Query: 362 VGVPEENAVLPLKALAQEMIARGYRASFALPHGFRVWVEDIPGLSFLSL 508
V +P VLP+K LA+E++ RGYR SFALP R WV D+PGL F+SL
Sbjct: 132 VSIPVLERVLPMKYLAEELLHRGYRVSFALPEICRSWVSDVPGLEFISL 180
BLAST of mRNA_P-fluviatile_contig22.4948.1 vs. uniprot
Match: A0A2V7U4D6_9BACT (Glycosyltransferase n=1 Tax=Acidobacteria bacterium TaxID=1978231 RepID=A0A2V7U4D6_9BACT) HSP 1 Score: 58.9 bits (141), Expect = 6.810e-5 Identity = 47/112 (41.96%), Postives = 57/112 (50.89%), Query Frame = 1
Query: 2434 LVTVLVTDGDVRSLQTALWHGKPSVVLPTSPDQREAAARLVYSGAGVTCPP-PCNATELVAAVVNA-HDIDKRKAALRSSAALRETGGVGRAADLLENELWTHLAATARRPG 2763
L +V+VT G ++ TAL G P VV+PT D E A R+ SGAGV P C L AAV D R+ A R ALR+ GG G+AA L+E T TA G
Sbjct: 336 LTSVVVTTGGAGTVTTALLAGVPLVVVPTGWDLPENAQRVAVSGAGVRLAPHDCTPIRLRAAVERVLSDGSYRQHARRVGDALRQRGGAGQAAFLIEEFAATRERTTAAVAG 447
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 | 61.6 |
| Seed ortholog evalue | 8.4e-07 |
| Seed eggNOG ortholog | 227086.JGI_V11_30693 |
| KEGG rclass | RC00005,RC00033,RC00049,RC00059,RC00078,RC00171,RC00397,RC00523,RC00529,RC00708,RC02748 |
| KEGG ko | ko:K00699 |
| KEGG Reaction | R01383,R02358,R02389,R02478,R02502,R02902,R03091,R04352,R04353,R04354,R04683,R07106,R08259,R08261,R08262,R08263,R08615,R09426,R09427,R09428 |
| KEGG Pathway | ko00040,ko00053,ko00140,ko00830,ko00860,ko00980,ko00982,ko00983,ko01100,ko01110,ko05204,map00040,map00053,map00140,map00830,map00860,map00980,map00982,map00983,map01100,map01110,map05204 |
| KEGG Module | M00014,M00129 |
| GOs | GO:0003674,GO:0003824,GO:0005575,GO:0005622,GO:0005623,GO:0008194,GO:0015020,GO:0016740,GO:0016757,GO:0016758,GO:0043226,GO:0043227,GO:0043229,GO:0043231,GO:0044424,GO:0044464 |
| EggNOG free text desc. | transferase activity, transferring hexosyl groups |
| EggNOG OGs | KOG1192@1,KOG1192@2759 |
| EC | 2.4.1.17 |
| COG Functional cat. | G |
| CAZy | GT1 |
| Best tax level | Eukaryota |
| Best eggNOG OG | NA|NA|NA |
| BRITE | ko00000,ko00001,ko00002,ko01000,ko01003 |
| Hectar predicted targeting category | other localisation |
| Exons | 13 |
| Model size | 5335 |
| Cds size | 1065 |
| Stop | 1 |
| Start | 1 |
Relationships
The following UTR feature(s) are a part of this mRNA:
| Feature Name | Unique Name | Species | Type | Position |
| 1622815980.1244743-UTR-P-fluviatile_contig22:1516693..1517017 | 1622815980.1244743-UTR-P-fluviatile_contig22:1516693..1517017 | Porterinema fluviatile SAG_2381 | UTR | P-fluviatile_contig22 1516694..1517017 + |
| 1693563930.1619961-UTR-P-fluviatile_contig22:1516693..1517017 | 1693563930.1619961-UTR-P-fluviatile_contig22:1516693..1517017 | Porterinema fluviatile SAG_2381 | UTR | P-fluviatile_contig22 1516694..1517017 + |
| 1622815980.1374528-UTR-P-fluviatile_contig22:1518379..1518526 | 1622815980.1374528-UTR-P-fluviatile_contig22:1518379..1518526 | Porterinema fluviatile SAG_2381 | UTR | P-fluviatile_contig22 1518380..1518526 + |
| 1693563930.1763842-UTR-P-fluviatile_contig22:1518379..1518526 | 1693563930.1763842-UTR-P-fluviatile_contig22:1518379..1518526 | Porterinema fluviatile SAG_2381 | UTR | P-fluviatile_contig22 1518380..1518526 + |
| 1622815980.1476424-UTR-P-fluviatile_contig22:1519043..1519492 | 1622815980.1476424-UTR-P-fluviatile_contig22:1519043..1519492 | Porterinema fluviatile SAG_2381 | UTR | P-fluviatile_contig22 1519044..1519492 + |
| 1693563930.1862173-UTR-P-fluviatile_contig22:1519043..1519492 | 1693563930.1862173-UTR-P-fluviatile_contig22:1519043..1519492 | Porterinema fluviatile SAG_2381 | UTR | P-fluviatile_contig22 1519044..1519492 + |
| 1622815980.1593096-UTR-P-fluviatile_contig22:1520924..1521084 | 1622815980.1593096-UTR-P-fluviatile_contig22:1520924..1521084 | Porterinema fluviatile SAG_2381 | UTR | P-fluviatile_contig22 1520925..1521084 + |
| 1693563930.1955142-UTR-P-fluviatile_contig22:1520924..1521084 | 1693563930.1955142-UTR-P-fluviatile_contig22:1520924..1521084 | Porterinema fluviatile SAG_2381 | UTR | P-fluviatile_contig22 1520925..1521084 + |
| 1622815980.1737225-UTR-P-fluviatile_contig22:1522201..1522284 | 1622815980.1737225-UTR-P-fluviatile_contig22:1522201..1522284 | Porterinema fluviatile SAG_2381 | UTR | P-fluviatile_contig22 1522202..1522284 + |
| 1693563930.2044861-UTR-P-fluviatile_contig22:1522201..1522284 | 1693563930.2044861-UTR-P-fluviatile_contig22:1522201..1522284 | Porterinema fluviatile SAG_2381 | UTR | P-fluviatile_contig22 1522202..1522284 + |
| 1622815980.1863048-UTR-P-fluviatile_contig22:1523487..1523712 | 1622815980.1863048-UTR-P-fluviatile_contig22:1523487..1523712 | Porterinema fluviatile SAG_2381 | UTR | P-fluviatile_contig22 1523488..1523712 + |
| 1693563930.2145343-UTR-P-fluviatile_contig22:1523487..1523712 | 1693563930.2145343-UTR-P-fluviatile_contig22:1523487..1523712 | Porterinema fluviatile SAG_2381 | UTR | P-fluviatile_contig22 1523488..1523712 + |
| 1622815980.1967432-UTR-P-fluviatile_contig22:1524156..1524619 | 1622815980.1967432-UTR-P-fluviatile_contig22:1524156..1524619 | Porterinema fluviatile SAG_2381 | UTR | P-fluviatile_contig22 1524157..1524619 + |
| 1693563930.2241607-UTR-P-fluviatile_contig22:1524156..1524619 | 1693563930.2241607-UTR-P-fluviatile_contig22:1524156..1524619 | Porterinema fluviatile SAG_2381 | UTR | P-fluviatile_contig22 1524157..1524619 + |
| 1622815980.2118418-UTR-P-fluviatile_contig22:1525294..1525453 | 1622815980.2118418-UTR-P-fluviatile_contig22:1525294..1525453 | Porterinema fluviatile SAG_2381 | UTR | P-fluviatile_contig22 1525295..1525453 + |
| 1693563930.2341695-UTR-P-fluviatile_contig22:1525294..1525453 | 1693563930.2341695-UTR-P-fluviatile_contig22:1525294..1525453 | Porterinema fluviatile SAG_2381 | UTR | P-fluviatile_contig22 1525295..1525453 + |
| 1622815980.2214065-UTR-P-fluviatile_contig22:1526032..1526368 | 1622815980.2214065-UTR-P-fluviatile_contig22:1526032..1526368 | Porterinema fluviatile SAG_2381 | UTR | P-fluviatile_contig22 1526033..1526368 + |
| 1693563930.2483752-UTR-P-fluviatile_contig22:1526032..1526368 | 1693563930.2483752-UTR-P-fluviatile_contig22:1526032..1526368 | Porterinema fluviatile SAG_2381 | UTR | P-fluviatile_contig22 1526033..1526368 + |
| 1622815980.2915711-UTR-P-fluviatile_contig22:1530432..1532356 | 1622815980.2915711-UTR-P-fluviatile_contig22:1530432..1532356 | Porterinema fluviatile SAG_2381 | UTR | P-fluviatile_contig22 1530433..1532356 + |
| 1693563930.3146183-UTR-P-fluviatile_contig22:1530432..1532356 | 1693563930.3146183-UTR-P-fluviatile_contig22:1530432..1532356 | Porterinema fluviatile SAG_2381 | UTR | P-fluviatile_contig22 1530433..1532356 + |
The following CDS feature(s) are a part of this mRNA:
| Feature Name | Unique Name | Species | Type | Position |
| 1622815980.233348-CDS-P-fluviatile_contig22:1526368..1526436 | 1622815980.233348-CDS-P-fluviatile_contig22:1526368..1526436 | Porterinema fluviatile SAG_2381 | CDS | P-fluviatile_contig22 1526369..1526436 + |
| 1693563930.2676592-CDS-P-fluviatile_contig22:1526368..1526436 | 1693563930.2676592-CDS-P-fluviatile_contig22:1526368..1526436 | Porterinema fluviatile SAG_2381 | CDS | P-fluviatile_contig22 1526369..1526436 + |
| 1622815980.2459753-CDS-P-fluviatile_contig22:1527373..1527491 | 1622815980.2459753-CDS-P-fluviatile_contig22:1527373..1527491 | Porterinema fluviatile SAG_2381 | CDS | P-fluviatile_contig22 1527374..1527491 + |
| 1693563930.2769597-CDS-P-fluviatile_contig22:1527373..1527491 | 1693563930.2769597-CDS-P-fluviatile_contig22:1527373..1527491 | Porterinema fluviatile SAG_2381 | CDS | P-fluviatile_contig22 1527374..1527491 + |
| 1622815980.2581174-CDS-P-fluviatile_contig22:1527723..1527903 | 1622815980.2581174-CDS-P-fluviatile_contig22:1527723..1527903 | Porterinema fluviatile SAG_2381 | CDS | P-fluviatile_contig22 1527724..1527903 + |
| 1693563930.2854106-CDS-P-fluviatile_contig22:1527723..1527903 | 1693563930.2854106-CDS-P-fluviatile_contig22:1527723..1527903 | Porterinema fluviatile SAG_2381 | CDS | P-fluviatile_contig22 1527724..1527903 + |
| 1622815980.2701437-CDS-P-fluviatile_contig22:1528413..1528760 | 1622815980.2701437-CDS-P-fluviatile_contig22:1528413..1528760 | Porterinema fluviatile SAG_2381 | CDS | P-fluviatile_contig22 1528414..1528760 + |
| 1693563930.2940133-CDS-P-fluviatile_contig22:1528413..1528760 | 1693563930.2940133-CDS-P-fluviatile_contig22:1528413..1528760 | Porterinema fluviatile SAG_2381 | CDS | P-fluviatile_contig22 1528414..1528760 + |
| 1622815980.2815647-CDS-P-fluviatile_contig22:1530080..1530432 | 1622815980.2815647-CDS-P-fluviatile_contig22:1530080..1530432 | Porterinema fluviatile SAG_2381 | CDS | P-fluviatile_contig22 1530081..1530432 + |
| 1693563930.3047864-CDS-P-fluviatile_contig22:1530080..1530432 | 1693563930.3047864-CDS-P-fluviatile_contig22:1530080..1530432 | Porterinema fluviatile SAG_2381 | CDS | P-fluviatile_contig22 1530081..1530432 + |
The following polypeptide feature(s) derives from this mRNA:
Sequences
The following sequences are available for this feature:
protein sequence of mRNA_P-fluviatile_contig22.4948.1 >prot_P-fluviatile_contig22.4948.1 ID=prot_P-fluviatile_contig22.4948.1|Name=mRNA_P-fluviatile_contig22.4948.1|organism=Porterinema fluviatile SAG_2381|type=polypeptide|length=355bp
MFIDVEEEIGAAGMVGSSEWLLSRVISHRLVTVLVTDGDVRSLQTALWHG KPSVVLPTSPDQREAAARLVYSGAGVTCPPPCNATELVAAVVNAHDIDKR KAALRSSAALRETGGVGRAADLLENELWTHLAATARRPGCPHGPRSSRDD LPTWCLSQESRAERSEERSEERLLLESEPFLPEAYPSTGGLSWFPDDPDW VWDEMSWLERHLVDVYAVYAALVVGVGLLMKLTWNIVWSLCDITTAPVRG DLGGNTDSSRSPSPSPAKDPCAPSSAVGGGKLARGGSGKWGSGGGGGNGG TAGGGGGGSKHGKGGAKHHGNGNMSGAAVVNGDGTPPVSGGMYSKRMALT YGHS* back to topmRNA from alignment at P-fluviatile_contig22:1516694..1532356+ Legend: UTRpolypeptideCDS Hold the cursor over a type above to highlight its positions in the sequence below. >mRNA_P-fluviatile_contig22.4948.1 ID=mRNA_P-fluviatile_contig22.4948.1|Name=mRNA_P-fluviatile_contig22.4948.1|organism=Porterinema fluviatile SAG_2381|type=mRNA|length=15663bp|location=Sequence derived from alignment at P-fluviatile_contig22:1516694..1532356+ (Porterinema fluviatile SAG_2381) ACGGAGAGGCCCAGCGGGCCGCTTCACGTTCTTCTTGATGCGAACGAAGA
AGTCACACAAAGAGGCAGTTCGTGGCCGGCAGAATCAAGAGCCTCTCCTC
GAGGTTCGGGCCGGGCTGGTCCTTGTGCGCTCCAACGATGCCAGCCGGTC
TACTCGGCGAGCTCGCGTGACGTGGGTTCTACCATTGCTGCGGATGCTGG
CCTTGGCGGCGTCCATGCTTTGCCTGACTCCGACGGGGGGTGTCGTCACG
GGGATATCTAAGATGGACGCCTGGGCTGGAGGCTCGGAGTCCGAGCAGCA
GCAGCACGAGGATCGCTCTCACGGGTCAGTCAAGGTTTTTTGGGTCGCCG
CTGTCTGCACATCCGTTTCTCCTACACACGTTCAAGTCGTTCTTCCACCG
CGCGCTCGCTGTCTCGACCTCCTGTGTGATAGTAAGCTTTTTGCGACCCA
GCGGAGCGGATTCCGAGGTTGGGACCAAGCTTCGCTGGTTGACTCGGGTG
GCGTTTCATTAGGCCATCTTTGGGTCTGGTGCACGGTCCGCACTTAGCAT
CGCACACATTTGGATTCACGAGAAGCGGGGAACGAAAGAATACCGCGTGC
TGAAGCGACCCAAAGCCGTTTTCCTGTTTACGAGTCACAAGCACTGGCTC
TCTCACTACCGTCGTTCGGAGCGGAGAATGTGCGTGATTCTCCATTGACA
GAGCAGAGCATTCGGGCTGTGCTAAAGGCGTGCGTAGTTGCAACGTTTTT
TGCGAACCACTGCTTTTTATCTTTTCTTTCGAATTTTGTGAAAATTTAAT
TTTGTTACACCAATAAACCGCAATCGCGCAACACCGCCGAGCACATGTCG
GGCAAGCGAGCAAGCTGTCGTAGCGATTTCAAGTTTGCCGTGGAGCCAGC
GCGGATATTTGGAAAATGCGAGTGATGCGTGGGGTGAGAGAGAGAAAATC
GTGTTTTCCTCCCACTGAAGCAACACAGAGATCGAGTTACCGGCATGAAG
TATCGGGACGCATGCGTGGTGCTTCACGTCCGCATCCTACGGTTTCCCGA
CCAATGGTGCCTGCGTCTGAGCGGCTGGTGACTGCCGTCCAAGGTCTCGC
TTACGACAGTGGATTGCATTTAGCTTTCAAGTGTTATTTCCTGTGTCGTT
GGTTCTTGTGGAAATGTCGGAGGGCAAATGAGATGATGAAATGGATGAAA
AACCAACCATCGTCCCAGGAAAGCTCCCGTACACTGAAAAACAGGGCACC
CGCCACACTCGCCCTTCCTTTGAGCAAAAACATGTGCATTTGTTCGCTAG
TTGCGACTGACACTGCTGTCACGACCTTCGTTAAAAATAGTCAATCCCCA
AACCAGCGTTCGGAGGGCTGACCAGCGACAGGTTTGCTCAAAGATGTCCT
GGTCTTCGTGTCTTTTGCTCTCTCGGTCGCGTGACGGCATTCCCATGTTC
GTACGTTGCGACTTGCCTCTCTTACGAGTCGTTCACGTAAAGAGCTTGCT
CTTACACGGCAGCGTCGGTATTTCGGAGGGCAAACGAAGAGCGGCGGTGT
TGGTCGACAATGAGGAGCATTGCGAAACGCCGCAGAACACGTAGCTGTCT
GTCAAGTTGTGGAGCGGCTGTCAATTCATGTCTGTATTTTACTGCGACAA
ATGGCGGGCTCATGATCGTGACCGCGACAACCACAGGGCGCAGCACCGAC
GGCATCAGGAGCACTTCGTCTTCGTGGGGGTTCCCGAGGAGAACGCAGTG
CTGCCGCTCAAGGCACTTGCGCAAGAGATGATCGCGAGGGGATACCGCGC
CAGCTTCGCATTGCCGCACGGCTTCCGCGTTTGGTAAGCATGGAGACAGA
CCAGTATCACCGCTTTTCGCGAGGGGGCGGGGGCAGGCGGCAGGTTTTGC
CTCGAGGAATGGCGCTTAGAGAAACCAGCTGTCGACACCATGACTGGCTT
TGTCTCTCCTTCGTTTGATTGTGGCCAATTTGAAACAGGGCTCCATCTCT
TGCGCGGGTTCCCAGCGAAGGCCACGACCCTGATTGCTCGATGTCATCGC
AGCCGTCTCGTAACGTATTCCCCGCTTCCATCCCCCTGCGCCCGCAAGAG
TGTCGAAATTTCGCGCGAGGAGGTGCCGAAGTCCGTTGTCGCGCGATTTC
ACCACACTTTGAATCGTACTGCACTTTTCTCTGAGCGCCAGCCCGTTCAA
CAATCCCCACGCCAACCTTCGTCGCACAATGCATTGTGTTTTGCAGCCCC
ATCTCTCTGTTTCCACTCCCCGCCCCCTCCCCAACAGCTTTCATATTTTC
TTGTACGCCTTCAACTCAACACGTCGCCGCCGCTGTTGAATTGCACCCAG
GGTGGAAGACATACCCGGTCTCTCCTTCCTCTCCCTGCAGCCTGCGGCCA
ACCCCGCCACCTACTCCGCCGCCTCGAACGGCACAACACACCCCAACGAG
CCTCCAACGACTTCAGCGGCCGCCGCCGCCGCCGCCGCCGCAGCGGCAGG
CGGAGGAGAAGGAGGAGGAGGAGCGCTGCAGCGGGATGGAACGTCTCCCG
CCGGGCACCCGTGCCCCGTACGCCCTCCAGGGGTCATCCGCGACGGCAGA
AAACCGGCGACGGCGTGCTTCAAGAAGGGGTTGGGGGACGCGTGGGGTGG
CGGGGTtgGGGGGGGCTGGGGGCGGGCTCGGCATATGGAGGGGGCTGAGG
GGGAGCATGGTCGGAGCTAGGGAATTCTTGGGGCACTTGACAGCGTACTT
TGGGTTTTATCGCCGCGAAGAGGCGGCGATGTACGTCCCCCTGCTGGAGG
TGAGGAAGTGGCAGGGACAAGCGCGGGGTGGGGGTGTGTGTGCCTGATCA
CAGGGAAAAAAACGATTGTGGCCGAAATGAACCTTTGACTGAATAACCAA
GGGCTTGCGACACACATACACATGGCGCCTTTTTGTGTTTGTTCTTGAAT
TGTTTGGCTTTCTTGCGAACGATTTCCACCGCAGTCGAAACGGATGTCCA
GGCATTCGTAGCTTGTCGAGGCTGGAAACAGCGTCGTGTTTACACTGAAG
AGAGCGCGGCCTTGTCTTGTTGACACCATCCAACGCGCAAGCGGAGGTGG
GAGTGTTCATTTTCCGATGTCTTTGTTGCGGCTGATTTTCCGGTTGGCTG
TTGATGGTGTTGGCAGTTTGAGTGGTGGTTACTTGTAGCTGAGATGGCTG
TATCCACCGCTATTGCCAACGCCACTGTGATTGCTTGAATGGCTGTGGAG
AATGCTGAGGCGGTTCAAAGCGCACGGGACTGTCAGATCCGTAAGCCAAA
TTTCACAAGAGAGCTGCAGATATCCTCGATTCCAAAAGGCAAGAAAACAT
GCTTGTAGCGGCGATGACGGTCATGAGGCCGACGACCTGTAAGGTTAGCC
AGGCAGTGGGGCGACCCCCGTTTCCACCGCCTTTCCCGAACAAGCGGTGT
GGTCTTGTCGCCGAAGAGCGTGAGCTCTGCACTGATTGCCGGGCGCAGCG
AGGCTCGAATGAAGCAACTAATGGCCAAAAATATAGTGAAGAATTTGGGG
GAGGATGTGCCGGGGACAAAGCACAATAAGTACACCATGGTGGTGGCTTG
GTCTCCCTTTACACAAGTCAACGCGCCGAGGGCAATGAGGTCCGTTTTGG
CTCCTGCTCGCTCACCGCACAGCTCTCTATAATTTCAGAAATAATTCGCT
TTCTGATTAAGGCGAAAAGTGCTCCGTTTGGTCAGAGGATGTCCTCATCC
TTCTCCTTGTGTGCGCCGGGAACTCGTAAGAAGCAGGATGTTGGTGGTCA
TCCGAGGACACATTATGGAAGCAGTGGTCTGCTCCAGCTGCCACAATTGT
GCGGCATCGAATGGGAATATTATTCGTGATGCGTATCCGATATGAATAAC
GTCAATACTCGGTGATACTTTGCCTGATCAAAGTTGTGTCGGAAAACGTC
ACGTGGTCGATTGAAGCAGGAGGGTTTATGTTCAACATGAAATTGCAGTT
GTACCCTCGATGACGGAAAATATCATACTTTTACACCTGCAAATTTTCTC
AGATCTCACCGCATCTGTCCCGCGCCTCATCAATCGCACTGCCCGGTCGC
GTGGCCCTGCACCACAGAAAGGACAACGACAACAACCTCGCGTACCCCGT
ACCACCATGACGACGACATGGTGCATTCCTTTCCTAGTGTTGACGAACTA
TTAAAGAAACAACGACGCTGACGACCAACAGGCGCTCCGGCGGGACCCAC
CCGCCCTGGTCATCGCCGACCGGCGGGCCACCGCGGCCTTCCGCGCGTGC
GACAAGCTCGGGCTCCGCTGTGTGGTGAACAGCGCCGGCCTATTGGGGGA
CCTCGATCGCCCGCCGATTTCAATCCCCGCACCATACACCGGTACGTGAG
ATCGATTTCGATCAGGACCGAGGGAGAGGGGCTTTGGTTTGTAATCGGGC
GGGGGGGGGGTGTCAGGGGAGTAGGCCGACGTGCATCCCGGCGAGCTTGG
TTGGACATCGAGACTTTTGTTGCAGCGAGAGGACCAGGAGACGAATGTCC
ATCCCGCGACTTGGTTTGACATCGAGGGCTCACGTCGAAAGTCAGTCCCT
GCTATGAAGAGAGGTCGGGGGGCATTCATTTTTTCATCGCACGTCGTTGA
GTTCGGTTGGACATCGAAAGATTATTTTTCAAAGCGGGCGAAACGGGGGA
TTTTTTCCGTCGAGCTTACGCGGGCATCGAACAGCAACGGGGATGATTTG
TGCGGAGTCGCACTTTTCCCTCTGTCTTGTTCTGCATTCCTATCCTCCAA
GCTCTGACGTGACTTCGTTATGGTGTCGCGTGCGAAGAAACAGCAAGAGC
AACAGCAGTGGCATTCGCTGTAGCAGCATTGCAAGAGCAAATATATCAGC
AATCGAGACCCGCTCCCTTGATGTTCTGCGGCATGATCTTTCTTTGTTTT
ATCCGCGCAGAATTTCGCGTGTTTTGAGCAGAATTGAGAGCCTCAAGATC
GCGAAGGCACACTCACGCGGTTGGTACCTAATAGCTGAAGCTTGCTCTGT
CCGCTGCTCATGCTGCACGGTGACACTTTGCCGATCCTCTTCAATGGCTA
TTCAGCTCGTATTTTGGCGTCAGGCCCGCGTGTTTGAGTCGCACCCTGAC
CCGAATCGTTGAAACAAGTGCGTCAGTATATGTTCGAGGTCCTTGGACTT
TCCTGGGCAAAAACGATTCATTCGGCGCGTCCTATTCCTGACACTTGGGT
GCGTCGTCTGCAGCCCTGTCCCCATCTAATCCCATCCTGGCTCGTGCTGT
CTACTTCAATTCAGCCCCTACCCTGTTCCTTGTACTTGGGTGCGTCGTCT
GCAGCCTGTCCCCATCTTTTCCCGACCTGGCTCGTTTTAACTTCAATTCA
GCGCCCACCCACCCACCCACCCACTCGCTCACCCACTTTCGCTCCCCGCC
CATCAAACTCGATGGCGCCTTGATTCGCCGCCGTGATAACCGCAAACTAA
TGAAGCAGGCTTTCCTTTGGAGGGGCAGACGATCGCACAGCGAGTACACA
GCACCTTATTTCGGCTGGTCCTGGCGCTGTCGAGGCTGCAGGCAAGTCAC
AAATACACATGTGCATATTTGTTTTGACGGTGTCCAGGGGGGTGGTTGTC
TCGCCGTTTGCCGCTGTGGGTGGTTGTCTCGCCTTTTGCCGCTGTGCTTC
TGTTGCTGGGGTGTCGCTGTCTCTTAGTCCCCCCCCCACCCCCGCAAGAT
TTTGTTTGTTGTATGAATGTTTTCGTTTTTTCTGCATGGTCACTAGCCCT
GTCGCGGCTGCAGGCACGTCAGAAACACAGAAACGGATATTTTTCCTGGC
GTTTTCCAGCCCGGGGAATCACTTTCTCGCCGTCCTCGCTTTTGTTTCCA
AGCATATATCCGGGTTTGGTTGGAGTTTGAGGTCTTGCGTCTGGTGCATG
CTTTTCGTGTGTGTTGTTTTCTGCGTGTTTTTTCCGATGGTAATTTCTTA
TTTTGTTCGTTTTCGAGGTGAATCGAGTCAGGACGACGGGGTGCTAACAA
CGCGGCTCTAGTGTGACGCTCTTTCCCTCTCGGCAACTAAGACATACCGG
CAGGCGAATGAATAGTTGTTAGCCGTTGTGGTGGCTCTCTCGAGGTGTGA
AATGTTTGGCTCTGTGGTCTTATGAATCGAGTGTAGTTCCGCTCCGATGA
GCGCACTTTTCGCGTCTTTCGACTACACCTGTCGAGTACAAGGACGCTCG
TTGGCTGAGCAGAGCAAGACGGTGGCGCCGCTTCATGGCCGCGCCGTACC
CCCTTTGTGTCTTGTTTTCTGCTCGCACCGCTTCTCTGTTTTTTTTTTGG
TGCATCACCTTAAGTCGTCGCCCCGTCGCCGGGAGGGGTGTCTCGCCAGG
GCTCTGATCCGTCGCCACCACCGCCTGTCCCACGGTGTTTGCCTTCCGGT
TGTCGCGGTTGATTGCGTAGTTCTGTACGATTGATTCGTTCGTTTCTTAT
TCAAGTGATCTATTGACGCGGTGCAAGTGACCTCAACGGCGACTTCTGCC
CCATCAATACGGGTTGATTGATCGGTCGATGGATTGATTGATTGTTAATC
GATCGATTCTTGAATTGATCACTGACGAACTGATGAACGCTGCCGCATTC
TGGCTACGATTTTGGAGCGGGTTCGACAAGCTGTGCCGGACTATCTTGGC
CGCGGTGTGTGTGTCCGCGCGTGTGCGCCCCCATGTGGTATGCCCACCTC
GGGAATTTCAATTTTTGTTTCCGGCCCCCGTTTGCCTCGCCCAGGCGGCC
AGAGACGCCGATCACTTGACCGCCGCGTGGAATGAGAGGGAGGAGCCTCC
GCCGGGGTTCGTCCCCGGCGACGATCGACATAAAAACCAGCATCAACATC
AGCAGCGAGGCCACGGCCAGGGTCAAGGGCAGCACCGGACGTCGACCGTG
ATGGCTCTCGGCAATAGCTGCTTCGGGAGCCTGGAGTATCCGCGGGAACT
CCCCGCCAGAGTACATATGGTGAGGGTGCCTTTAACGGGTTGAACCCTGA
CGTGAGGGGGAGAAAATCGGAAAGCGGGGGCGTCGTGTCTGACTGCGTGC
CTGTCTCTCAGGAAAACGGAAAGTCCCAAGAAAATTCAAGCTTCTAACTA
CTTGATCGTCCTGCCCCTTTCTGCTGCCGGTCTCGTGTGGATGTCCTCAC
TCATGTTGCTGAACATCACTGGGATCGTACTCATGACTTTTTCACCGAGA
GGCGTGCTTTTCTCTGCATCTGGGAACCAGATTTGCCACCTCACCCTTCG
AGGTGTGTTTTCGGGCTCGCTGTTCCCCTGCCCCTTCGCCGAACATCGGG
AGAATGAAACATCCTCCGCGGGATCCACCCGCGGCAGAATGCTTGCCTGC
CCGTCCTTCCTCCCTTTGCAATACGCCGCCCACGTCGCCCCCCCTTCCAT
CCCACCCCCCAAGGTGGGACCTTTGTGGATGGCCGACGGAGACGGCGGAG
GCGAAGAATTAGCGCGCGATGCGAGCGGCAGGAAAGCACCTTTCGAGGCA
CACCACTGGTCGCGCGGCGGCGGCGGCGGCAGTCGGAGGTCGTGGAAAGC
CGTCGGTGGTGATCGCAGCAGCAGTCCCGCCGGTGGCGGCCGAGAACCTG
CAGGAGGACAAGCGTCTCGACAGGGGAGAGGGGGCGCGAGACAGCAGACG
CTGCTGCCTCTTCTCCTCCGCCTGGCTCAGGCGCTGACAAGAGGAGGAGG
AACAAGGCGAAGGGCAGGAGAAAGGGCGGCGATGTGGATAGGGTTTTTGG
CGCTGGTGGCGGTGGAAGTTCAGCCGTGGAGAGCTCTCCTAGCGACACGT
CGGCGGCACCACGGGCGGCTGGGGAGCGGAGCGAAGGCGACAAAATGTTG
CAAAAGTTTGGTCCTGGTTGGAGCCGGTGAGAAGCGCAGTCTTTTTTTTT
GCCCCAATACTCCCGACTCTCGCCCACTTGTTTGACGAGCACAAAGAAAA
GGAGCCGAATAAAAGGCTGTCAGCTTTGCCGATGCATTTCTGTACCATAC
AGGCAGACAGGATGGTTTACCATCTCTGGGAATAACCCCCCAGCCGGCAA
TCACTGGCGCTGCCGCACGAGCCACGGGGCGTCATGTGCAATCCATTTGA
CCCTGCGTTTTCAACACCGGGCCGTGCTTGTTGGGGTTATTTTCTGTTGA
AACGGGCTTTCCTGGCATTAAAAAGGCTGTCGCTGATGTGTGCCAGGCAG
ACATAAGCATGAGAACAGAAGAGCGACGAGCTCGACACTATTTGGGCGCC
GTTGCAGTCGCAGCAACAGCTTTGACGGCGCCAAACCTGCCATTTTTTCT
GTTGGCGCTCTCTCTGAAGGAAGACCTGGGTCTCGTCGCTGTGGTTCGTC
CTAGGAAGTCAACATGCTTGTCACCTTATAGCGCGTGCGCCTGCCCTAGG
ACCGGTTCCCTCGCATTTGTCTTCGTTCGATTCAACCCCTCGCGGTTGGT
TGTTGTCTCTGTCTCTCGTTCGTTTGTGCACCCGGTAATTCTGTCTTTCG
ATTGTGTGCCGCAAAATGCACCGAAAATTGTGCCGTAAATGGTGCTCGAA
GGAGGGCCTCAAGGAGGGCGAAGACGCAGCTCCCGTTGTGGTCGTGCAGC
TGGGGTACGGGGGGGGCTGGGCTTGGGGGGTTTCCCCCGATGCCGGAGTG
AGGGGGAGCGAGTACGATGAGATTGGCGATCGGTTTTCGTGGAAGGCCTT
CCGAGATGAGGTGAGATCTCGATTTAGGCCGATCAGGCTTGTTGTCGGTT
CGAGTAAGGCCTTGTGGCCGAGCGTTGAAAGCATATTTTGCCACTGGCAA
TTTTTGCTTTGTTTTCAGCACGCGAACGAACTCATGTCCATGTTATTTTC
AAATCGACGAGGGGCAAGGGATGCGGGCTCACCGGAAATGTGAAAGAGTT
TGCATCCCTTTGTTTCTTACCTTTTCATGCGCACCCACGGCATATCAGCA
CGACTTATGAACTAGAACCATATTGTGTCCTTTCGAAAGACTTGAAACAA
GATCGTCGTTTGTGCTTGCGGTGACTTAAGCCCGCCGACTTAAGGCTCGC
CTTGTCGGAACTCCTTCGCCTGCAACAGAGCAGTGTTTGACTCAAGTCAG
CCGCGCTCGATCGTCGCAACCTGCTCCGTTCGCACACATACGCCGTCTCA
TCTCATCGCAACCACTGCTTGCATGTCCGAAAATCTCTCTTGGCTCGCCG
GGACGTTGTTGTTCTCTTGAATGCACGGCGGGGGGGACATATCCTGCTCT
GTCTGCTCTCTGGGTGGTTTCGCGCGAATCGCTCGTCAGACCGCGAGTCA
GCTGTTCGCGAGAGGCTGTCGAATCCTCTGGTTGGACCGAGGTCCTCACT
CAGATCACCACGAGCGCCACTACCACCATCACATTTTCCATCAAGATCAC
CATCATCACCATGCCCTTGACGGCCGAGATGCGTGGCATGGGGAGCATCC
TTACGAGGGTCGATCCGAGGGATTATCCGAAGAAGTTTCTTCGGAAGCTT
CTTTCCGTAGGGCGAAACCTCGTGGGGTGAAAGGAGGCGGAGAAACGACC
AGCGGCAGCTCCGGGCAATGGGAGGCCGGGAATGGTGGAGAGGAGACGAG
ATTGCTTGACGGGAGGCGTACTTTGATGTTTATCGACGTCGAGGAGGAGA
TCGGGGCTGCGGGGATGGTGGGCTCCTCCGAGTGGCTGCTGAGGTGACCA
ACAACAGTGTTATGCTGCTGGCAGACACATCATTTACGAAGTAAAAGTAA
AGTAGTTGATGATTTCGTTGAAATGTTTGCAGTGTCGAAACCACGTCCCA
AACAACCTTCTCCTGCGTGCGTGTCGGAAGAATGTGCGAGTTCTGTTGCG
TCGATACTTTCTTGAACTGAGACAAACAAATATTTCTTGCGCCGGCGTCC
AGGGCATTTTTATGTCGGAGGCCGAGTCGCGAGCAACCGTCAAAGGTTCC
GCCCCTCGAGTTTTCGTGCCGAGAACCAAAGTAGGGAATTCGTCAGCCAA
GCACAAGAGCAAAATGCGATCCGATGTGTTGAGACAACGACCCCTGTATC
CTTTTTGGTAGTCAGCCAAGCACAAGAGCAAAATGCGATCCGATGTGTTG
AGACAACGACCCCTGTATCCTTTGTGGTATCACTCCTTCTGAGACACACG
GACAACACGGTTTGCTAGGGCTAAGGCTTCGGATTCACAGGTGCAAGTGT
GGTCAAGGACAAGAGAGAGGCGAAAAGATTCTGGGCGCAGCAAGTAATGT
TCGAGCAGCTTGCGTCATCGCTCGCAGCGCGAGGCGCATACTGTACCGGC
CCGCTAGCAACAGCCTGCCAATTCGTTCCAAGCCGCATTCCTGACGTTCA
AGCGCGTGCTCCTTCACGCGAATCCCACCATGAGAACACCAGCACTTCTT
CTTTCATTGGAGCAATCGAGCCTCTAATCCTTGTAGCTGCGTTTCTTGGA
AGCTAGCCGGTACAGCGTACGCCATTGAACGTTGCTTTGTCTTATTTTTC
CATCCTCCTACACGCTGCAACAAGTGGTCTGTTCTCCCTCCCTCCCATTC
TTCCTTCCTTCCTTCCTTCCTTCCTCACCATATGGGCGTGCGTCCACTTC
CTGTCGTCGGCTCTGTCGTTGTTTCTTGAGCAGAGTGATTTCGCATCGGC
TTGTGACAGTTTTAGTCACAGACGGCGACGTCCGGTCTCTCCAGACAGCC
CTCTGGCACGGAAAACCTTCCGTCGTGCTCCCAACGTCCCCTGACCAGGT
GAGATGGATGTTTACGACGAACATGCGCCGCCAGATAGCACCGTAGGAAA
GCTTCAAGAGGGAGGCGGCCACCCGCCTGGTGCGTCGACCCCCACCCCCC
TCTTGACCAACCGCTAACGGTGATCGGCGTCACCTAATCCCTCGCTTGTT
TCCTCGCTTCTTGCTTGTCCACAATCGTCGCCCTTGTTTCCCCCCGTCCT
TCCTCTTGCGTGGTAAATCGTGTAAACCAGAGAGAGGCGGCCGCTCGCCT
GGTGTACAGCGGGGCCGGGGTGACCTGCCCCCCGCCCTGCAACGCGACCG
AGCTGGTGGCGGCGGTCGTGAACGCACACGACATCGACAAGAGGAAGGCG
GCCCTCAGGTCTAGCGCCGCGCTCCGTGAAACCGGGGGCGTCGGACGCGC
CGCGGACCTGGTGAGCGAGCGAGTAGAGAGTAGAGCAAAGCAAAGCAGAG
CGTACCGCAGGTGATGTTGGATGCCGCGGGACTCCCCCCTGGACAGATTA
GAAGGCGGTTCGCGCAGCAAAATCCAGGAAGCATATATCCTTCCTCGCAA
AGGAGGAGATGGGGGGGGCGAAATGATGATGTCGGTACATGTCAATTCCT
GAATAATATTGAGGACAGTCTCGCCGATGCCTCGGTTATAGACGGATTCA
TATTCATCGCGTGTGTGTTTGGCACCCTCGCTGATGAGTTGAAATTCCTT
TGTTTATCTTTTGATAATTCTTGTAGGATGCGTAGAATCTGTCGTCACAC
AAACGGTACATATCGATATCATTTTCGACTTGTTTTGGTCGGCGGTTTCG
CTTGCACATACCTCTAAGCCTCAGCTCTGCCGCCGCTGCTAACCGTCTCT
CATGTTGACACGCCCCGGTCCCTCTCTCGGAATTCCCTCGGATTTGTCTT
CGTGCTTTTATCCCTGGCAGCTGGAGAACGAGCTCTGGACACACCTGGCG
GCGACGGCCCGACGCCCAGGCTGTCCCCACGGCCCCCGCTCGTCCCGGGA
TGATTTACCCACGTGGTGCTTGAGCCAGGAAAGCCGCGCGGAGCGCTCGG
AGGAACGGTCCGAGGAAAGGCTCCTGCTCGAATCGGAACCGTTCTTACCC
GAGGCTTACCCGAGCACGGGAGGGCTGTCGTGGTTCCCGGACGATCCTGA
CTGGGTGTGGGATGAGATGTCGTGGCTGGAGCGGCATCTCGTCGACGTCT
ACGCCGTTTACGCGGCTCTGGTGGTGGGGGTCGGGCTTCTCATGAAGCTC
ACGTGGAACATTGTCTGGTGAGCGAAAGGGGCGGCGGGTGGGCTGCCCAT
GAAGCTCACGTCGAACCTTGTCAGACAAAAGAAGGGGAGGGTAGGACGAC
GGTTGGTTGCCTCTGCAAGACGCCATCTGCGACGGTGCACCTACGGGGCT
ATTAGTTTGCTGGATCGGTGGGGGAGCGGTGTGAGGGGTTGTGCACAGTG
TTGGAATCGTCTGGCGGGGAATCGGTGTTTTTGGCTTGTGTCTAGCGATT
ATAGGGTGCCAGTCCAACAATTTATTTGTTCGCCGTCTGGACAAGGACCT
GGAGGAGGCGTTGCCACGCGGAGTATGCGAGGATTCCCCTCATCTTGTTG
TCCATTCGCGTGGTCCTCGTCGTGGCTACAAGAGAAGACCGATCAAGAAA
CATTATATTTTGTGCGAAGCTCGGGTTCGAATTTTCCTCAGCGGGCTGCC
AATAGCCGATGCAAAAGAACAGTTTTTTTCGTGGAGGTTCATGTCCAGGC
ATCAAAGGTAAGTGCTGGTGCTTAAACTCAAAATCCCTGAGACTCGTGTT
CTCAAATGCCATCGTCTTAGGTGGTGGCCCGTTCTGTAGTTATTGGTGAT
CCGACTCTCACCGAGGGGCGACAAGCCGGTTTGCTCGTGCCGAGTGCAAC
AGATTAATCTGTGATAAATCGCGGACGAGGCGGCGGTGTAGTGGTTGTGC
ATGTGCGCCTGTTTTTTTTTTCTTTTTTTTTTTCTGGTTTGTCGACAAAG
AATGGCACTGCCGCGGTTCAGAGGGACTTGCATCACCTTTGGAACTGGAA
AACGTTTGGTTTTGGTGCAGGCATGGACACCTGTGCCAATCGATTCGATC
GGCGTGTCCGGGCGGTGGCACTGCCGCAGGTCGCGTAGGATATCACACCC
CGTCGTCGGTTGTTGGACCTCGATACCTCGACACCGAGGAGCTGACCGAT
ATCGAACGGTGCACCACTAGACTCAGGAGGAGTGGTATCTTTTGCGACGT
AAGGTGTGCTGCCAGCACTGCAGCGAGCCCAGTACTACATGCCGAAGACC
ATGTGTTTCCCCCCTCCCCGCGGTTAACACACCTCAACAACTGGGCAGCG
CAGGACATTTCCGTAAGGAAGCCACCCCCCGCCCTGCCCCTGGCGAATCT
TCCGTTCAGCGATGCCCCGTCTAGTTATCATTACACCTCGCGAGTGGGCA
TGGCTTTTGTCCACGACTTAGTTGGTCGTCCGTATCGGCGAATGGGTTGA
CTTGGAGCGAACTAAATACATCTCAAAAATATAGTGCTGAACTCTCTCCT
TCTCTCTTCGATTTTGTGCTTGTGACCCGCCCGTTAGGTCTCTCTGCGAC
ATAACGACCGCGCCGGTGAGAGGAGACCTCGGGGGAAACACTGACAGCTC
CCGATCGCCATCCCCCAGCCCAGCCAAAGACCCCTGCGCCCCCTCCTCCG
CCGTCGGCGGCGGGAAGCTAGCCCGCGGGGGAAGCGGAAAGTGGGGCTCC
GGGGGCGGGGGTGGCAATGGGGGTACGGCGGGCGGCGGTGGAGGTGGCAG
CAAGCACGGCAAGGGTGGTGCGAAACATCACGGAAACGGTAACATGAGCG
GCGCCGCCGTCGTGAACGGGGACGGAACTCCTCCTGTTTCCGGGGGCATG
TACTCCAAGAGAATGGCGCTTACCTACGGCCACTCTTGACGTGAGCGCGT
CGTCCTGCTGCTTGCTTACTGCTGTTTCATACCCCTGTCGCGCCTGCGGC
GGCGTCGACTGCTGTGTCCTTCCTGTCCTTGGGATTGTTGGCTTCTTCAC
TGCTGTTGATGTCCACGTGCTTCAGGTTTGGCTCTGTGATAGATTTTCGG
CTGCTCTCCTCCCATCGGCTTTTGACCTCACCGTCCTCTCGTTTGACTGG
TTTGTAGGGTTTGGTTGCCTGCGGTGCTCTTGACCTCCTGTTGTCTGCTG
CTAGACAACCACTTCTGGCGACCATGTTGATTTCCCACGTCGTCCCGTTG
GTTGTTCTAGGATGGACTTGACAGGTGTTGTTGGTCCTTGTCTTGCTGAT
GGAACGCTCTAGCTTGCCACCGAGATTTGGTGCGGATAGACGGGCTGCGT
TGTTTGAATCGGAAAATATTGAAAACTGCGGTGCAGCACGCTCAAGAGCG
AAGCATCGATGGGTTGACAACAGACATGGGATTTCCTCCAGAATAGAGCT
GGGCTGGCGATGATTTGATCGTATGCCTCCTTGAAGCCTTTTCCGATTTG
TGTGCCTTGTCTTTGGCCTCCGCCGATGTCTGGTGGCCGAAGATGACGGC
AGCACAACGATCATGGTATCATTTTTCGCGCAGATTGCGGTCTGGAAGAC
CTGAGCCATCTGTAGCCCCACGGAGTTCCCGAAAGGATTCCAGCTACATC
CTTGGCCGTTTTTCACCATGCTCTATAATGTCGATTGATCCAATTTTGGT
ATAGTCAAGGCTACGAGTTGCTCCCGGGTCCGCACGGTTTTGCCGCGCTA
CGCAAACTAGCTCTCGCGAAGGAAGTCAGAGACAGGCACTCTGTCCGGCA
ATCGGGTTTGGATGAGGGGTTGCCTTTGCGGATTTCAGCTGATAGAAGGA
AGCGATAGCAGGCACGCATGGGATCGTACACCTGTACTGTCGTCCCACAC
ACCGCACTTTGCCGTCGACTTGGCTGGGCATCATCAGCATGAGGTTGGTA
TTTCCCACAGGGACAACCATTGGCATGGGACAAAAGCAAGCGAGAGACAG
ACATATTTACGGCTTCGATGAGCAGACCTGAAGTAGAGGGCGCAAAGACG
GGCGGTTTGAGCTTGAGTGTGTCCACGACGCCATTTTTTGCACACATCCC
ATCCAATCGTGTGGTGCGATAGATTCAGACGATGGGGGAGCGTACATTAC
CATGGGGTTGACACATGCCGTCGTTTGGGAATGAATCTCGCTAGCGAAGA
GGGGGAATGTTTCAGACGCGTTCTGCCATTTTTGATGGTGAAGCCTCGAT
CAGCGGGGCTCTTCGAATGGATCAGATTACTTGTAGAAGGTCACACTAGC
AGTGGGTATTGGGTGCGATTTGCTCTTGCTTCAAGAGCAAGGGAGTTCAC
AAAGGATGAGGCGGCTAGATTGGCGCACGGCAGGGGGGCCGATTATGGTG
CGTGTTTTGCTGTATAGTGCGGGTTGCCGAATGAAAGTGCATACATAGTA
AAACCTGCCATATAGTATCCATCCTGAAGAGTGCCGTTGCCCGATGTAGT
GCGGGTGAAGGCGCTTGTCCCACACCAGCCGCACTATGTCCGGCCCCCCA
CTGTACCACCAAAATCACAAACGACGTAGAGGCTGTTCCCCGATTTTTTC
ACTGTCGTTTTTGGTTTTAAAAGACGGTGCGATGCTTCTCTATTCATTCG
CGCGGGTGTCTGCCGCGTTTATTTGATTGTGGTTAAGCTTGCGCGTACAC
TTGCGATGCGAGTGTTTGAGCGCCGGAGAGTAACAGAGGAGTATTCAGTA
TGAGTAAAATGTCAAACCACAATCGATCAGTTCTTGTAAGAAAGTCCAAT
CGTCACCCTGGCTTGTGACCCCCGCTGGCAAGCTCACACGCTGCTTCCGA
ACGGTGTGGGGTG back to topCoding sequence (CDS) from alignment at P-fluviatile_contig22:1516694..1532356+ >mRNA_P-fluviatile_contig22.4948.1 ID=mRNA_P-fluviatile_contig22.4948.1|Name=mRNA_P-fluviatile_contig22.4948.1|organism=Porterinema fluviatile SAG_2381|type=CDS|length=2130bp|location=Sequence derived from alignment at P-fluviatile_contig22:1516694..1532356+ (Porterinema fluviatile SAG_2381) ATGTTTATCGACGTCGAGGAGGAGATCGGGGCTGCGGGGATGGTGGGCTC CTCCGAGTGGCTGCTGAGATGTTTATCGACGTCGAGGAGGAGATCGGGGC TGCGGGGATGGTGGGCTCCTCCGAGTGGCTGCTGAGCAGAGTGATTTCGC ATCGGCTTGTGACAGTTTTAGTCACAGACGGCGACGTCCGGTCTCTCCAG ACAGCCCTCTGGCACGGAAAACCTTCCGTCGTGCTCCCAACGTCCCCTGA CCAGCAGAGTGATTTCGCATCGGCTTGTGACAGTTTTAGTCACAGACGGC GACGTCCGGTCTCTCCAGACAGCCCTCTGGCACGGAAAACCTTCCGTCGT GCTCCCAACGTCCCCTGACCAGAGAGAGGCGGCCGCTCGCCTGGTGTACA GCGGGGCCGGGGTGACCTGCCCCCCGCCCTGCAACGCGACCGAGCTGGTG GCGGCGGTCGTGAACGCACACGACATCGACAAGAGGAAGGCGGCCCTCAG GTCTAGCGCCGCGCTCCGTGAAACCGGGGGCGTCGGACGCGCCGCGGACC TGAGAGAGGCGGCCGCTCGCCTGGTGTACAGCGGGGCCGGGGTGACCTGC CCCCCGCCCTGCAACGCGACCGAGCTGGTGGCGGCGGTCGTGAACGCACA CGACATCGACAAGAGGAAGGCGGCCCTCAGGTCTAGCGCCGCGCTCCGTG AAACCGGGGGCGTCGGACGCGCCGCGGACCTGCTGGAGAACGAGCTCTGG ACACACCTGGCGGCGACGGCCCGACGCCCAGGCTGTCCCCACGGCCCCCG CTCGTCCCGGGATGATTTACCCACGTGGTGCTTGAGCCAGGAAAGCCGCG CGGAGCGCTCGGAGGAACGGTCCGAGGAAAGGCTCCTGCTCGAATCGGAA CCGTTCTTACCCGAGGCTTACCCGAGCACGGGAGGGCTGTCGTGGTTCCC GGACGATCCTGACTGGGTGTGGGATGAGATGTCGTGGCTGGAGCGGCATC TCGTCGACGTCTACGCCGTTTACGCGGCTCTGGTGGTGGGGGTCGGGCTT CTCATGAAGCTCACGTGGAACATTGTCTGCTGGAGAACGAGCTCTGGACA CACCTGGCGGCGACGGCCCGACGCCCAGGCTGTCCCCACGGCCCCCGCTC GTCCCGGGATGATTTACCCACGTGGTGCTTGAGCCAGGAAAGCCGCGCGG AGCGCTCGGAGGAACGGTCCGAGGAAAGGCTCCTGCTCGAATCGGAACCG TTCTTACCCGAGGCTTACCCGAGCACGGGAGGGCTGTCGTGGTTCCCGGA CGATCCTGACTGGGTGTGGGATGAGATGTCGTGGCTGGAGCGGCATCTCG TCGACGTCTACGCCGTTTACGCGGCTCTGGTGGTGGGGGTCGGGCTTCTC ATGAAGCTCACGTGGAACATTGTCTGGTCTCTCTGCGACATAACGACCGC GCCGGTGAGAGGAGACCTCGGGGGAAACACTGACAGCTCCCGATCGCCAT CCCCCAGCCCAGCCAAAGACCCCTGCGCCCCCTCCTCCGCCGTCGGCGGC GGGAAGCTAGCCCGCGGGGGAAGCGGAAAGTGGGGCTCCGGGGGCGGGGG TGGCAATGGGGGTACGGCGGGCGGCGGTGGAGGTGGCAGCAAGCACGGCA AGGGTGGTGCGAAACATCACGGAAACGGTAACATGAGCGGCGCCGCCGTC GTGAACGGGGACGGAACTCCTCCTGTTTCCGGGGGCATGTACTCCAAGAG AATGGCGCTTACCTACGGCCACTCTTGAGTCTCTCTGCGACATAACGACC GCGCCGGTGAGAGGAGACCTCGGGGGAAACACTGACAGCTCCCGATCGCC ATCCCCCAGCCCAGCCAAAGACCCCTGCGCCCCCTCCTCCGCCGTCGGCG GCGGGAAGCTAGCCCGCGGGGGAAGCGGAAAGTGGGGCTCCGGGGGCGGG GGTGGCAATGGGGGTACGGCGGGCGGCGGTGGAGGTGGCAGCAAGCACGG CAAGGGTGGTGCGAAACATCACGGAAACGGTAACATGAGCGGCGCCGCCG TCGTGAACGGGGACGGAACTCCTCCTGTTTCCGGGGGCATGTACTCCAAG AGAATGGCGCTTACCTACGGCCACTCTTGA back to top
|