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Homology
BLAST of mRNA_P-fluviatile_contig76.14117.1 vs. uniprot
Match: A0A6H5KJT8_9PHAE (Protein xylosyltransferase (Fragment) n=1 Tax=Ectocarpus sp. CCAP 1310/34 TaxID=867726 RepID=A0A6H5KJT8_9PHAE) HSP 1 Score: 684 bits (1765), Expect = 2.960e-236 Identity = 334/443 (75.40%), Postives = 372/443 (83.97%), Query Frame = 1
Query: 34 MRGRVVLGGLAAAATLFFVVLSRQQVALPQPDDYHAADTSTYRGSTIEGYKGWKLMDDEFQTRVDPEKARIVFYIMVAGFKELPGLDALLRNLYHVEHFFLVHLDIKAQPAVRADVKDRIQRVLKGRGNGERNIRLVEPATPITWGGFTMTLNAVYGLTQALHWTTKWDYFINLSASDLPLLRTDEIAVILGQHRAANTSFIKGFKYEPSWEGYKFVDRREMFSEDEALMREI-TEKRWAWAILDEQKQMLTRPMPNLFTVYKGEFWVMLHRSMAEYVHRSPDNQARVLLTYFSGMMVSDEEFFQTVACNPHFPHDTLRTHDDNLRFVNWWGDQASPAIVPPFRAVAAANSGSLFGRKFSSSTEEGRDGIRWLETYLADSSRSKARVDRVKRRLAARMGPRGEPVGFCGKAQEKRPPEPYFAVEGEEEKLPAELQPRPHRRGG 1359
MR R LGGL A L + R QVAL + D A S Y G E Y GWKL DD+F+ VDP+KAR+VFYIMVA +ELPGLDALLR LYHV+HFFLVHLD+KA R V+ I+R+L RGNGERN+R V+PA P+TWGGFTMTLNAVYGLTQALHW TKWDYFINLSASDLPLLR DEIA ILG+H+A NTSFI GFKYEPSWEGYKFVDRREMF+EDEA+MR+ EKRW WAILD QK+ML RPMPN+FTV+KGEFWVMLHRSMAEYVH+S DNQAR+LLTYFSGM+VSDEEFFQTVACNP FPHDTLR H+DNLRFVNWWGDQASPAIVPPFRAVAAANSG+LFGRKFSSSTEEGRDG+RW+E+YLA SSRSKARVDRVKRRL +RM P GEPVGFCGKA+E +PPE YFAV+GEEE +P +P+P RRGG
Sbjct: 21 MRPRAALGGLVAVVALLVFLALRSQVALLEFD--RPAGVSIYSGYKTEKYSGWKLADDDFKHHVDPQKARVVFYIMVANLQELPGLDALLRTLYHVDHFFLVHLDVKASALARQGVESGIERMLDERGNGERNVRFVDPAMPVTWGGFTMTLNAVYGLTQALHWNTKWDYFINLSASDLPLLRADEIAGILGEHKAGNTSFITGFKYEPSWEGYKFVDRREMFAEDEAVMRDTGREKRWPWAILDAQKEMLRRPMPNVFTVHKGEFWVMLHRSMAEYVHKSRDNQARMLLTYFSGMIVSDEEFFQTVACNPFFPHDTLRVHNDNLRFVNWWGDQASPAIVPPFRAVAAANSGALFGRKFSSSTEEGRDGVRWVESYLAASSRSKARVDRVKRRLESRMSPAGEPVGFCGKARENKPPEAYFAVQGEEEVVPPGFEPQPPRRGG 461
BLAST of mRNA_P-fluviatile_contig76.14117.1 vs. uniprot
Match: D8LCA7_ECTSI (Protein xylosyltransferase n=1 Tax=Ectocarpus siliculosus TaxID=2880 RepID=D8LCA7_ECTSI) HSP 1 Score: 530 bits (1366), Expect = 1.270e-178 Identity = 253/309 (81.88%), Postives = 276/309 (89.32%), Query Frame = 1
Query: 259 MVAGFKELPGLDALLRNLYHVEHFFLVHLDIKAQPAVRADVKDRIQRVLKGRGNGERNIRLVEPATPITWGGFTMTLNAVYGLTQALHWTTKWDYFINLSASDLPLLRTDEIAVILGQHRAANTSFIKGFKYEPSWEGYKFVDRREMFSEDEALMREI-TEKRWAWAILDEQKQMLTRPMPNLFTVYKGEFWVMLHRSMAEYVHRSPDNQARVLLTYFSGMMVSDEEFFQTVACNPHFPHDTLRTHDDNLRFVNWWGDQASPAIVPPFRAVAAANSGSLFGRKFSSSTEEGRDGIRWLETYLADSSRSK 1182
MVA +ELPGLDALLR LYHV+HFFLVHLD+KA R V+ RI+RVL RGNGERN+R V PA PITWGGFTMTLNAVYGLTQALHW TKWDYFINLSASDLPLL+ DEIA ILG+H+A NTSFI GFKYEPSWEGYKFVDRREMF+EDEA+MR EKRW WAILD K+ML RPMPN+FTV+KGEFWVMLHRSMAEYVH+SPDNQAR+LLTY SGMMVSDEEFFQTVACNP FPHDTLR H+DNLRFVNWWGDQASPAIVP FRAVAAANSG+LFGRKFSSSTEEGRDG+RW+E+YLA+SSR +
Sbjct: 1 MVANLQELPGLDALLRTLYHVDHFFLVHLDVKASAQARQGVESRIERVLDERGNGERNVRFVSPAMPITWGGFTMTLNAVYGLTQALHWNTKWDYFINLSASDLPLLK-DEIAGILGEHKAGNTSFITGFKYEPSWEGYKFVDRREMFAEDEAVMRNTGREKRWPWAILDAHKEMLRRPMPNIFTVHKGEFWVMLHRSMAEYVHKSPDNQARMLLTYSSGMMVSDEEFFQTVACNPFFPHDTLRVHNDNLRFVNWWGDQASPAIVPTFRAVAAANSGALFGRKFSSSTEEGRDGVRWVESYLAESSRGR 308
BLAST of mRNA_P-fluviatile_contig76.14117.1 vs. uniprot
Match: A0A835YZY2_9STRA (Core-2/I-branching enzyme-domain-containing protein n=1 Tax=Tribonema minus TaxID=303371 RepID=A0A835YZY2_9STRA) HSP 1 Score: 217 bits (552), Expect = 5.230e-59 Identity = 117/295 (39.66%), Postives = 181/295 (61.36%), Query Frame = 1
Query: 238 ARIVFYIMVAGFKELPGLDALLRNLYHVEHFFLVHLDIKAQPAVRADVKDRIQRVLKGRGNGERNIRLVEPATPITWGGFTMTLNAVYGLTQALHWTTKWDYFINLSASDLPLLRTDEIAVILGQ-HRAANTSFIKGFKYEPSWEGYKFVDRREMFSEDEALMREITEKRWAWAILDEQKQML---TRPMPNLFTVYKGEFWVMLHRSMAEYVHRSPDNQARVLLTYFSGMMVSDEEFFQTVACNPHFPHDTLRTHDDNLRFVNWWG-DQASPAIVPPFRAVAAANSGSLFGRKF 1107
A+I+F I ++G ++ L LLR L+H ++ +L+H+D KA + A +++ I++V G +NI+LV+ ++WG F+M L A++GL+ A+ W+++WD++INLS +D+PLL DE+ ++LG R SF+ + P WE + DRR + +DE L R + R +++ + + RP P+LF VYKGEFWV+LHRS+AEY+H SPDN AR + Y + +SDE FFQTVAC+P P + +D+LRF+ W + PA + A SG+LF RKF
Sbjct: 42 AKILFSITISGSRDALALSTLLRALWHQDNLYLLHVDAKALASDMAAIRNVIKQVA---GADPKNIKLVDNPVQVSWGRFSMLLTALHGLSSAIGWSSQWDFWINLSPADMPLLTADEMRLVLGALSRDRPVSFMGCTR--PDWEQVR-PDRRHTYMDDEGLYRSLPRPRGRLSVIQHAPKPMRGVARPPPDLFDVYKGEFWVVLHRSLAEYIHHSPDNVARSVYLYLAATYISDELFFQTVACHPKLPA-SFHIINDSLRFIRWPPKSRGHPATIDDVLLEEALASGALFARKF 329
BLAST of mRNA_P-fluviatile_contig76.14117.1 vs. uniprot
Match: A0A6H5L1U8_9PHAE (GT14 protein n=2 Tax=Ectocarpus TaxID=2879 RepID=A0A6H5L1U8_9PHAE) HSP 1 Score: 209 bits (531), Expect = 6.720e-55 Identity = 128/346 (36.99%), Postives = 184/346 (53.18%), Query Frame = 1
Query: 238 ARIVFYIMVAGFKELPGLDALLRNLYHVEHFFLVHLDIKAQPAVRADVKDRIQRVLKGRGNGERNIRLVEPATPITWGGFTMTLNAVYGLTQALHWTTKWDYFINLSASDLPLLRTDEIAVILGQHRAANTSFIKGFKYEPSWEGYKFVDRREMFSEDEALMREITEKRWAWAILDEQKQ----MLTRPMPNLFTVYKGEFWVMLHRSMAEYVHRSPDNQARVLLTYFSGMMVSDEEFFQTVACNPHFPHDTLRTHDDNLRFVNW-WGDQASPAIVPPF-----RAVAAANSGSLFGRKFSSSTEEGRDGIRWLETYLADSSRSKARVDRVKRRLAARMGPRGEPV 1245
AR F IM G ++ L + LY +FFL+H+D K+ RADV++ + +G N R++EPA ++WGG+++TL A++GL+ + W+ WDYFINLSA+D PLL + E++V +G + +F+ G +R E++ +D+ L R +R A L ++ + RP+PNLFT++KGEFWV LHR EYVH SPDN AR L YF+ +SDE FFQT C+P P H+DNLR VNW + D + ++ P SG+LF RKF E G W E S + K +R+ R L RG+P
Sbjct: 128 ARFAFLIMAHGPADVELLRRNVPWLYSPLNFFLIHMDRKSSDKDRADVRELL--------HGLDNARILEPAQSVSWGGYSITLTALFGLSTLVEWSRDWDYFINLSATDFPLLSSAEMSVAMGSFVESRMNFVTGSAMMEQ-------NRAELYVDDQGLYRVNETRRAAQPFLQRRQSGPPVRVERPLPNLFTLFKGEFWVALHRDFCEYVHESPDNVARSLQAYFAKFRISDESFFQTTLCHPAAP-SAFPIHNDNLRLVNWPYFDPETEWVLHPDPVQSKHVTKLMKSGALFARKF----ELGTSDRAWSEIEGLLSQKGKHVGERILRVLE-----RGKPA 448
BLAST of mRNA_P-fluviatile_contig76.14117.1 vs. uniprot
Match: A0A6H5KBR7_9PHAE (GT14 protein n=1 Tax=Ectocarpus sp. CCAP 1310/34 TaxID=867726 RepID=A0A6H5KBR7_9PHAE) HSP 1 Score: 207 bits (526), Expect = 1.690e-54 Identity = 126/370 (34.05%), Postives = 184/370 (49.73%), Query Frame = 1
Query: 235 KARIVFYIMVAGFKELPGLDALLRNLYHVEHFFLVHLDIKAQPAVRADVKDRIQRVLKGRGNGERNIRLVEPATPITWGGFTMTLNAVYGLTQALHWTTKWDYFINLSASDLPLLRTDEIAVILGQHRAANTSFIKGFK---YEPSWEGYKFVDRREMFSEDEALMREITEKRWAWAILDEQKQMLTRPMPNLFTVYKGEFWVMLHRSMAEYVHRSPDNQARVLLTYFSGMMVSDEEFFQTVACNPH---FPHDTLRTHDDNLRFVNW-------WGDQAS----------PAIVPPFRAVAAANSGSLFGRKFSSSTEEGRDGIRWLETY------LADSSRSKARVDRVKRRLAARMGPRGEPVGFCG 1257
+AR+ F IM +G ++ L LL +YH ++ +LVH+D KA +++ ++ N +L+EPA ++WGGF++TL +YG+ AL W WDYFINLS SD P++ DE+ + LG+H A SF+ G +E W+GY +ED+ L R ++ + + R P F +YKGEFW HRS EY SPDN AR L YF+G +SDE +FQT+AC+P FP H DN RF +W G + P + + A++SG+LF RKF D ++ + Y L + RS AR++R + R R +G FCG
Sbjct: 88 RARLAFLIMSSG-DDIAKLSVLLPEIYHPDNIYLVHVDAKAPREQTEKIREVVRANFPAADGRPSNGKLLEPAGIVSWGGFSITLACLYGIAAALLWDEGWDYFINLSTSDFPVVTQDEMTLFLGEHADAGVSFMDGEPMTGFEKRWQGY---------TEDQGLHRRADHHT---SVAMQTLGRIQRAYPQRFRLYKGEFWGAFHRSFCEYASWSPDNVARTLSAYFTGYRISDESYFQTLACHPEGKVFP-----IHGDNFRFTSWNEHHRDSHGRKVDANGHILIHPEPLAIASIDKIKASSSGALFARKF--------DYVKSYQVYQAMQDDLRNRDRSAARLERARARFGLRASDKGGRDDFCG 431
BLAST of mRNA_P-fluviatile_contig76.14117.1 vs. uniprot
Match: D8LDZ1_ECTSI (Xylosyltransferase, family GT14 n=1 Tax=Ectocarpus siliculosus TaxID=2880 RepID=D8LDZ1_ECTSI) HSP 1 Score: 203 bits (517), Expect = 1.010e-52 Identity = 126/361 (34.90%), Postives = 182/361 (50.42%), Query Frame = 1
Query: 235 KARIVFYIMVAGFKELPGLDALLRNLYHVEHFFLVHLDIKAQPAVRADVKDRIQRVLKGRGNGERNIRLVEPATPITWGGFTMTLNAVYGLTQALHWTTKWDYFINLSASDLPLLRTDEIAVILGQHRAANTSFIKG---FKYEPSWEGYKFVDRREMFSEDEALMREITEKRWAWAILDEQKQMLTRPMPNLFTVYKGEFWVMLHRSMAEYVHRSPDNQARVLLTYFSGMMVSDEEFFQTVACNPH---FPHDTLRTHDDNLRFVNWWGDQASP-----------AIVPPFRAVAAAN----SGSLFGRKFSSSTEEGRDGIRWLETYLADSSRSKARVDRVKRRLAARMGPRGEPVGFC 1254
+AR+ F IM +G ++ L LL +YH ++ +LVH+D KA +++ ++ N RL+EPA ++WGGF++TL +YG+ AL W WDYFINLS SD P++ DE+ + LG+H A SF+ G +E W+GY +ED+ L R ++ + + R P F +YKGEFW HRS EY SPDN AR L YF+G +SDE +FQT+AC+P FP H DN RF +W I P A+A+ + SG+LF RKF + + + ++ L + RS AR+DR + R R +G FC
Sbjct: 148 RARLAFLIMSSG-DDIAKLSVLLPEIYHPDNIYLVHVDAKAPREQTEKIREVVRANFPAADGRPPNGRLLEPAGIVSWGGFSITLACLYGIAAALLWDEGWDYFINLSTSDFPVVTQDEMTLFLGEHADAGVSFMDGELMTGFEKRWQGY---------TEDQGLQRRADHHT---SVAMQTLGRIQRAYPQRFRLYKGEFWGAFHRSFCEYASWSPDNVARTLSAYFTGYRISDESYFQTLACHPEGKVFP-----IHGDNFRFTSWNEHHRDSHGRKIDANGHILIHPEPLAIASVDKIMSSGALFARKFDYA--KSYRVYQAMQDDLRNRDRSAARLDRARARFGLRASDKGGRDDFC 488
BLAST of mRNA_P-fluviatile_contig76.14117.1 vs. uniprot
Match: A0A6H5L6Q9_9PHAE (Protein xylosyltransferase n=2 Tax=Ectocarpus TaxID=2879 RepID=A0A6H5L6Q9_9PHAE) HSP 1 Score: 197 bits (500), Expect = 6.930e-50 Identity = 126/352 (35.80%), Postives = 188/352 (53.41%), Query Frame = 1
Query: 232 EKARIVFYIMVAGFKELPGLDALLRNLYHVEHFFLVHLDIKAQPAVRADVKDRIQRVLKGRGNGERNIRLVEPATPITWGGFTMTLNAVYGLTQALHWTTKWDYFINLSASDLPLLRTDEIAVILGQHRAANTSFIKGFKYEPSWEGYKFVDRREMFSEDEALMREITEKRWAWAILDEQKQMLTRPMPNLFTVYKGEFWVMLHRSMAEYVHRSPDNQARVLLTYFSGMMVSDEEFFQTVACNPHFPHDTLRTHD-----------------DNLRFVNWWGDQASPAIVPPFRAVAAAN--------SGSLFGRKFSSSTEEGRDGIRWLETYLADSSRSKARVDRVKRRL 1212
++ARI + IM +G +EL LL+ +Y +F+LVHLD K + ++R D ++ I+ N+R++EPA ++WGG+T+TL A++G+ + W +WD+FINLSASD PLL E+ +LG++ +F+ G EP E +R E+ +D+ L RE + A L K L P ++FTVYKGEFWV+LHRS +Y+ SPDN AR L YFS +SDE +FQTV C+P P ++ + DNLRFV+W ++ P A+ SG+LF RKF T+ ++ LE L++ + R+ R RL
Sbjct: 172 KRARIGYLIMSSGTEELHKTKRLLKAIYDPNNFYLVHLDRKDKHSIRRDFENFIEEW--------DNVRMLEPALDVSWGGYTITLTAIFGICTMVQWNDEWDFFINLSASDFPLLPQSELTTVLGKYADVGMNFVSG---EPLNER----NRAEVLIDDQGLYREKQSSK-AGRPLKVGKARLP-PSKSMFTVYKGEFWVILHRSFCKYLEASPDNVARSLQAYFSKFRISDESYFQTVLCHPLAPSFLVQPAEKVPIVCLATKRLSCSFTDNLRFVSWPDVIEGHYVLHPDPITGGASGNVNVAMDSGALFARKFD--TKVSQEAYTVLEKSLSEPN--PGRLARAANRL 502
BLAST of mRNA_P-fluviatile_contig76.14117.1 vs. uniprot
Match: A0A251SSS9_HELAN (Putative glycosyl transferase, family 14 n=1 Tax=Helianthus annuus TaxID=4232 RepID=A0A251SSS9_HELAN) HSP 1 Score: 122 bits (307), Expect = 5.360e-26 Identity = 94/304 (30.92%), Postives = 148/304 (48.68%), Query Frame = 1
Query: 217 TRVDPEKARIVFYIMVAGFK-ELPGLDALLRNLYHVEHFFLVHLDIKAQPAVRADVKDRIQRVLKGRGNGERNIRLVEPATPITWGGFTMTLNAVYGLTQALHWTTKWDYFINLSASDLPLLRTDEIAVILGQHRAANTSFIKGFKYEPSWEGYKFVDRREMFSEDEALMREITEKRWAWAILDEQKQMLTRPMPNLFTVYKGEFWVMLHRSMAEYVHRSPDNQARVLLTYFSGMMVSDEEFFQTVACN-PHFPHDTLRTHDDNLRFVNWWGD-QASPAIVPPFRAVAAANSGSLFGRKFSSST 1119
T ++ + F +++G K +L L LR LYH ++++VHLD++++P R ++ R+++ G N+ ++ A +T+ G TM N ++ L WD+FINLSASD PL+ D++ L R N + F S G+K D+R M + + E + W D RP+P F ++ G W++L RS EY DN R LL Y++ + S E +FQTV CN P F T+ HD + F++W + P ++ A SG+ F RKF T
Sbjct: 74 THLESRSSTPRFAYLISGSKGDLNKLWRTLRALYHPLNYYVVHLDLESEPNERMELASRVEKDPMFAEVG--NVYMIMKANMVTYRGPTMVSNTLHACAILLKRNKDWDWFINLSASDYPLVTQDDL---LSAFRNLNRDW--NFVEHTSQLGWK-EDQRAMPLMIDPGLYENKKSDIFWVQPD-------RPLPTAFKLFTGSAWMVLSRSFVEYCIWGWDNLPRTLLMYYTNFVSSPEGYFQTVICNVPEFI-PTVINHD--MHFISWDNPPKQHPHVLNISDATKMFKSGAAFARKFDQDT 359
BLAST of mRNA_P-fluviatile_contig76.14117.1 vs. uniprot
Match: UPI001CB8A18A (beta-glucuronosyltransferase GlcAT14A-like n=1 Tax=Erigeron canadensis TaxID=72917 RepID=UPI001CB8A18A) HSP 1 Score: 120 bits (302), Expect = 2.360e-25 Identity = 97/328 (29.57%), Postives = 154/328 (46.95%), Query Frame = 1
Query: 145 DTSTYRGSTIEGYKGWKLMDDEFQTRVDPEKARIVFYIMVAGFK-ELPGLDALLRNLYHVEHFFLVHLDIKAQPAVRADVKDRIQRVLKGRGNGERNIRLVEPATPITWGGFTMTLNAVYGLTQALHWTTKWDYFINLSASDLPLLRTDEIAVILGQHRAANTSFIKGFKYEPSWEGYKFVDRREMFSEDEALMREITEKRWAWAILDEQKQMLTRPMPNLFTVYKGEFWVMLHRSMAEYVHRSPDNQARVLLTYFSGMMVSDEEFFQTVACN-PHFPHDTLRTHDDNLRFVNWWGD-QASPAIVPPFRAVAAANSGSLFGRKFSSST 1119
+T TI + KL Q+R + F +++G K +L L LR LYH +++++HLD++++P R ++ R+++ G N+ ++ A +T+ G TM N ++ L WD+FINLSASD PL+ D++ L R N + F S G+K D+R M + + E + W RP+P F ++ G W++L RS EY DN R LL Y++ + S E +FQTV CN P F T+ HD + F++W + P ++ SG+ F RKF+ T
Sbjct: 54 NTHVSSNQTIPHFAEEKLKSPNLQSRRSLPR----FAYLISGSKGDLNKLWRTLRALYHPWNYYVLHLDLESEPDERMELAARVEKDPMFSQVG--NVYIIRKANMVTYRGPTMVSNTLHACAILLKRNKDWDWFINLSASDYPLVTQDDL---LSTFRNLNRDW--NFVEHTSQLGWK-EDQRAMPLMIDPGLYENKKSDIFWV-------QPNRPLPTAFKLFTGSAWMVLSRSFVEYCIWGWDNLPRTLLMYYTNFVSSPEGYFQTVICNVPEFV-PTVVNHD--MHFISWDNPPKQHPHVLNINDTAKMIKSGAAFARKFNQDT 359
BLAST of mRNA_P-fluviatile_contig76.14117.1 vs. uniprot
Match: A0A251T1S4_HELAN (Putative core-2/I-branching beta-1,6-N-acetylglucosaminyltransferase family protein n=1 Tax=Helianthus annuus TaxID=4232 RepID=A0A251T1S4_HELAN) HSP 1 Score: 120 bits (300), Expect = 4.270e-25 Identity = 91/293 (31.06%), Postives = 142/293 (48.46%), Query Frame = 1
Query: 250 FYIMVAGFK-ELPGLDALLRNLYHVEHFFLVHLDIKAQPAVRADVKDRIQRVLKGRGNGERNIRLVEPATPITWGGFTMTLNAVYGLTQALHWTTKWDYFINLSASDLPLLRTDEIAVILGQHRAANTSFIKGFKYEPSWEGYKFVDRREMFSEDEALMREITEKRWAWAILDEQKQMLTRPMPNLFTVYKGEFWVMLHRSMAEYVHRSPDNQARVLLTYFSGMMVSDEEFFQTVACN-PHFPHDTLRTHDDNLRFVNWWGD-QASPAIVPPFRAVAAANSGSLFGRKFSSST 1119
F +++G K +L L LR LYH ++++VHLD++++P R ++ R+++ G N+ ++ A +T+ G TM N ++ L WD+FINLSASD PL+ D++ L R N + F S G+K D+R M + + E + W RP+P F ++ G W++L RS EY DN R LL Y++ + S E +FQTV CN P F T+ HD + F++W + P ++ SG+ F RKF T
Sbjct: 85 FAYLISGSKGDLNKLWRTLRALYHPWNYYVVHLDLESEPEERMELASRVEKDPMFAEVG--NVYMITKANMVTYRGPTMVSNTLHACAILLKKYKDWDWFINLSASDYPLVTQDDL---LSTFRNLNRDW--NFVEHTSQLGWK-EDQRAMPLMIDPGLYENKKSDIFWV-------QPNRPLPTAFKLFTGSAWMVLSRSFVEYCIWGWDNLPRTLLMYYTNFVSSPEGYFQTVICNVPEFI-PTVVNHD--MHFISWDNPPKQHPHVLDINDTAKMIKSGAAFARKFDQDT 359
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 | 533.5 |
| Seed ortholog evalue | 1.3e-148 |
| Seed eggNOG ortholog | 2880.D8LCA7 |
| Preferred name | XYLT2 |
| KEGG ko | ko:K00771 |
| KEGG Reaction | R05925 |
| KEGG Pathway | ko00532,ko00534,ko01100,map00532,map00534,map01100 |
| KEGG Module | M00057 |
| GOs | GO:0000003,GO:0000139,GO:0002009,GO:0002119,GO:0002164,GO:0003674,GO:0003824,GO:0005575,GO:0005622,GO:0005623,GO:0005737,GO:0005794,GO:0005975,GO:0005996,GO:0006022,GO:0006023,GO:0006024,GO:0006029,GO:0006082,GO:0006139,GO:0006725,GO:0006790,GO:0006793,GO:0006807,GO:0006950,GO:0007275,GO:0007399,GO:0007610,GO:0008150,GO:0008152,GO:0008194,GO:0009058,GO:0009059,GO:0009100,GO:0009101,GO:0009225,GO:0009266,GO:0009408,GO:0009628,GO:0009653,GO:0009791,GO:0009888,GO:0009987,GO:0010033,GO:0010721,GO:0010975,GO:0010977,GO:0012505,GO:0015012,GO:0016020,GO:0016021,GO:0016740,GO:0016757,GO:0016763,GO:0018991,GO:0019098,GO:0019321,GO:0019538,GO:0022008,GO:0022414,GO:0030154,GO:0030158,GO:0030166,GO:0030201,GO:0030202,GO:0030203,GO:0030204,GO:0030206,GO:0030210,GO:0031090,GO:0031224,GO:0031344,GO:0031345,GO:0031984,GO:0032101,GO:0032102,GO:0032501,GO:0032502,GO:0032504,GO:0033319,GO:0033554,GO:0034097,GO:0034605,GO:0034641,GO:0034645,GO:0035252,GO:0040025,GO:0042221,GO:0042285,GO:0042732,GO:0043170,GO:0043226,GO:0043227,GO:0043229,GO:0043231,GO:0043436,GO:0044237,GO:0044238,GO:0044249,GO:0044260,GO:0044272,GO:0044281,GO:0044422,GO:0044424,GO:0044425,GO:0044431,GO:0044444,GO:0044446,GO:0044464,GO:0045595,GO:0045596,GO:0045664,GO:0045665,GO:0046483,GO:0048513,GO:0048519,GO:0048523,GO:0048569,GO:0048583,GO:0048585,GO:0048609,GO:0048679,GO:0048681,GO:0048699,GO:0048729,GO:0048731,GO:0048856,GO:0048869,GO:0050650,GO:0050654,GO:0050767,GO:0050768,GO:0050789,GO:0050793,GO:0050794,GO:0050896,GO:0051093,GO:0051128,GO:0051129,GO:0051239,GO:0051241,GO:0051716,GO:0051960,GO:0051961,GO:0055086,GO:0060284,GO:0060429,GO:0065007,GO:0070555,GO:0070570,GO:0070571,GO:0071704,GO:0080134,GO:0080135,GO:0098588,GO:0098791,GO:0120035,GO:0140096,GO:1901135,GO:1901137,GO:1901360,GO:1901564,GO:1901566,GO:1901576,GO:1903034,GO:1903035,GO:1903510,GO:2000026 |
| EggNOG free text desc. | acetylglucosaminyltransferase activity |
| EggNOG OGs | KOG0799@1,KOG0799@2759 |
| EC | 2.4.2.26 |
| COG Functional cat. | O |
| CAZy | GT14 |
| Best tax level | Eukaryota |
| Best eggNOG OG | NA|NA|NA |
| BRITE | ko00000,ko00001,ko00002,ko01000,ko01003 |
| Hectar predicted targeting category | signal peptide |
| Ec32 ortholog description | Xylosyltransferase, family GT14 |
| Ec32 ortholog | Ec-14_005460.1 |
| Exons | 10 |
| Model size | 3033 |
| Cds size | 1776 |
| 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 |
| 1622817196.6249676-UTR-P-fluviatile_contig76:481098..481131 | 1622817196.6249676-UTR-P-fluviatile_contig76:481098..481131 | Porterinema fluviatile SAG_2381 | UTR | P-fluviatile_contig76 481099..481131 + |
| 1693571472.473713-UTR-P-fluviatile_contig76:481098..481131 | 1693571472.473713-UTR-P-fluviatile_contig76:481098..481131 | Porterinema fluviatile SAG_2381 | UTR | P-fluviatile_contig76 481099..481131 + |
| 1622817196.7675712-UTR-P-fluviatile_contig76:493498..494722 | 1622817196.7675712-UTR-P-fluviatile_contig76:493498..494722 | Porterinema fluviatile SAG_2381 | UTR | P-fluviatile_contig76 493499..494722 + |
| 1693571472.7487218-UTR-P-fluviatile_contig76:493498..494722 | 1693571472.7487218-UTR-P-fluviatile_contig76:493498..494722 | Porterinema fluviatile SAG_2381 | UTR | P-fluviatile_contig76 493499..494722 + |
The following CDS feature(s) are a part of this mRNA:
| Feature Name | Unique Name | Species | Type | Position |
| 1622817196.6382244-CDS-P-fluviatile_contig76:481131..481206 | 1622817196.6382244-CDS-P-fluviatile_contig76:481131..481206 | Porterinema fluviatile SAG_2381 | CDS | P-fluviatile_contig76 481132..481206 + |
| 1693571472.6219234-CDS-P-fluviatile_contig76:481131..481206 | 1693571472.6219234-CDS-P-fluviatile_contig76:481131..481206 | Porterinema fluviatile SAG_2381 | CDS | P-fluviatile_contig76 481132..481206 + |
| 1622817196.6499321-CDS-P-fluviatile_contig76:481463..481532 | 1622817196.6499321-CDS-P-fluviatile_contig76:481463..481532 | Porterinema fluviatile SAG_2381 | CDS | P-fluviatile_contig76 481464..481532 + |
| 1693571472.633395-CDS-P-fluviatile_contig76:481463..481532 | 1693571472.633395-CDS-P-fluviatile_contig76:481463..481532 | Porterinema fluviatile SAG_2381 | CDS | P-fluviatile_contig76 481464..481532 + |
| 1622817196.6676452-CDS-P-fluviatile_contig76:483418..483595 | 1622817196.6676452-CDS-P-fluviatile_contig76:483418..483595 | Porterinema fluviatile SAG_2381 | CDS | P-fluviatile_contig76 483419..483595 + |
| 1693571472.6451137-CDS-P-fluviatile_contig76:483418..483595 | 1693571472.6451137-CDS-P-fluviatile_contig76:483418..483595 | Porterinema fluviatile SAG_2381 | CDS | P-fluviatile_contig76 483419..483595 + |
| 1622817196.6858044-CDS-P-fluviatile_contig76:484694..484812 | 1622817196.6858044-CDS-P-fluviatile_contig76:484694..484812 | Porterinema fluviatile SAG_2381 | CDS | P-fluviatile_contig76 484695..484812 + |
| 1693571472.6536448-CDS-P-fluviatile_contig76:484694..484812 | 1693571472.6536448-CDS-P-fluviatile_contig76:484694..484812 | Porterinema fluviatile SAG_2381 | CDS | P-fluviatile_contig76 484695..484812 + |
| 1622817196.7002623-CDS-P-fluviatile_contig76:485835..485948 | 1622817196.7002623-CDS-P-fluviatile_contig76:485835..485948 | Porterinema fluviatile SAG_2381 | CDS | P-fluviatile_contig76 485836..485948 + |
| 1693571472.6650937-CDS-P-fluviatile_contig76:485835..485948 | 1693571472.6650937-CDS-P-fluviatile_contig76:485835..485948 | Porterinema fluviatile SAG_2381 | CDS | P-fluviatile_contig76 485836..485948 + |
| 1622817196.7152436-CDS-P-fluviatile_contig76:487735..487839 | 1622817196.7152436-CDS-P-fluviatile_contig76:487735..487839 | Porterinema fluviatile SAG_2381 | CDS | P-fluviatile_contig76 487736..487839 + |
| 1693571472.6858826-CDS-P-fluviatile_contig76:487735..487839 | 1693571472.6858826-CDS-P-fluviatile_contig76:487735..487839 | Porterinema fluviatile SAG_2381 | CDS | P-fluviatile_contig76 487736..487839 + |
| 1622817196.726635-CDS-P-fluviatile_contig76:490572..490702 | 1622817196.726635-CDS-P-fluviatile_contig76:490572..490702 | Porterinema fluviatile SAG_2381 | CDS | P-fluviatile_contig76 490573..490702 + |
| 1693571472.701045-CDS-P-fluviatile_contig76:490572..490702 | 1693571472.701045-CDS-P-fluviatile_contig76:490572..490702 | Porterinema fluviatile SAG_2381 | CDS | P-fluviatile_contig76 490573..490702 + |
| 1622817196.736984-CDS-P-fluviatile_contig76:491567..491669 | 1622817196.736984-CDS-P-fluviatile_contig76:491567..491669 | Porterinema fluviatile SAG_2381 | CDS | P-fluviatile_contig76 491568..491669 + |
| 1693571472.7132437-CDS-P-fluviatile_contig76:491567..491669 | 1693571472.7132437-CDS-P-fluviatile_contig76:491567..491669 | Porterinema fluviatile SAG_2381 | CDS | P-fluviatile_contig76 491568..491669 + |
| 1622817196.7468224-CDS-P-fluviatile_contig76:492069..492324 | 1622817196.7468224-CDS-P-fluviatile_contig76:492069..492324 | Porterinema fluviatile SAG_2381 | CDS | P-fluviatile_contig76 492070..492324 + |
| 1693571472.7262511-CDS-P-fluviatile_contig76:492069..492324 | 1693571472.7262511-CDS-P-fluviatile_contig76:492069..492324 | Porterinema fluviatile SAG_2381 | CDS | P-fluviatile_contig76 492070..492324 + |
| 1622817196.7576253-CDS-P-fluviatile_contig76:492865..493498 | 1622817196.7576253-CDS-P-fluviatile_contig76:492865..493498 | Porterinema fluviatile SAG_2381 | CDS | P-fluviatile_contig76 492866..493498 + |
| 1693571472.7374015-CDS-P-fluviatile_contig76:492865..493498 | 1693571472.7374015-CDS-P-fluviatile_contig76:492865..493498 | Porterinema fluviatile SAG_2381 | CDS | P-fluviatile_contig76 492866..493498 + |
Sequences
The following sequences are available for this feature:
protein sequence of mRNA_P-fluviatile_contig76.14117.1 >prot_P-fluviatile_contig76.14117.1 ID=prot_P-fluviatile_contig76.14117.1|Name=mRNA_P-fluviatile_contig76.14117.1|organism=Porterinema fluviatile SAG_2381|type=polypeptide|length=592bp
MRGRVVLGGLAAAATLFFVVLSRQQVALPQPDDYHAADTSTYRGSTIEGY KGWKLMDDEFQTRVDPEKARIVFYIMVAGFKELPGLDALLRNLYHVEHFF LVHLDIKAQPAVRADVKDRIQRVLKGRGNGERNIRLVEPATPITWGGFTM TLNAVYGLTQALHWTTKWDYFINLSASDLPLLRTDEIAVILGQHRAANTS FIKGFKYEPSWEGYKFVDRREMFSEDEALMREITEKRWAWAILDEQKQML TRPMPNLFTVYKGEFWVMLHRSMAEYVHRSPDNQARVLLTYFSGMMVSDE EFFQTVACNPHFPHDTLRTHDDNLRFVNWWGDQASPAIVPPFRAVAAANS GSLFGRKFSSSTEEGRDGIRWLETYLADSSRSKARVDRVKRRLAARMGPR GEPVGFCGKAQEKRPPEPYFAVEGEEEKLPAELQPRPHRRGGSHVTRSGE REGEGEGEGEEDWSGHRAVEEDGAAAVAAGSAAGERVRGRRLAYDSLFEP LGGKVEGAGRAGEGTGVRPGHRRTRDGDIAAEPTVPLTPGRCLGPRCYKR TTARGQLYTHSSGGGDVDEGIRMEPDDTDMAGRLQTLRKSE* back to topmRNA from alignment at P-fluviatile_contig76:481099..494722+ Legend: UTRpolypeptideCDS Hold the cursor over a type above to highlight its positions in the sequence below. >mRNA_P-fluviatile_contig76.14117.1 ID=mRNA_P-fluviatile_contig76.14117.1|Name=mRNA_P-fluviatile_contig76.14117.1|organism=Porterinema fluviatile SAG_2381|type=mRNA|length=13624bp|location=Sequence derived from alignment at P-fluviatile_contig76:481099..494722+ (Porterinema fluviatile SAG_2381) CTGCAGAACGTAGCACGTAGCTCGGCTGTTGCGATGCGGGGCAGGGTGGT
TCTAGGTGGGCTAGCTGCGGCAGCTACACTCTTCTTCGTCGTGCTCTCTC
GACAACAGGTGCTGTGTTGGATAGCACCCTCGAACTCTGCCGTTGTGGAT
CGTCTCTCTGAGTTTCTGAACAGGGCAGCGCCAGGCATTTGCGCGAGATC
AGCATGTTCCGGTTGTTGCAGTCTGTTCCTGGCCCATCTCCACTATATGT
GTGCATCCAGGTGACTTGACCCTAGCTTTCATTGTGTCCATGCTAAGGTG
CGCACTCCCCACTGATTTCCTCTGTCCCCACCGTTTTTGTGGTGCCCAAA
ACTCTCCGCGCTTAGGTCGCCCTTCCCCAGCCGGATGATTACCACGCGGC
AGATACGTCCACTTATCGCGGGAGCACAATCGAGGTGATCATAAAGAGGC
TGGGCTGCTGGGATTATGGAGTCTTTCCGCAACGTGCTTTTGGTACAATG
ATGGGTCCTTTTTTTGAACCCACTGAAGCCCTTCGACTACCTCAATAACG
CCCACTTGTTTGGGTGTATATTTCCTTACGAAAGTACTCAGGTGTGTGTA
GCTCGCTCAGTTGCTTCAGATGCTTGCAGCTGATCCTACTCCGAGTTCAG
GAAGATGCCTGAGTCGTTCAACAGCATTTGCAGATTCCGCAAGGAGAGCG
TAAGAAAGCATTGATGGGTTCGTCCGCGTTTTACTCGCATTTTCTACACT
CCTGACGAGCGGGCGGACCGCGGATCTCTGTTGCTTATTAACCGGCACAA
ACGGCCCGACAGGCTGCAACGCCGCCCGCCGGTCGCTGGTACCAGGTTAA
TCCAAGCGCGAGTCTACGCTACTGCTTTGTCGCCTAACGCAAGCGCGAAC
GGGACTTATGTGCCTTTTATTTTGAATATCGTTCGTTTCTCGCTGCGTTG
GCCGTGACCGCACATGAACCACAAAACTCCGCAAAAGAATCTCGGAAACA
CATGTATTCGGACGAGAAACCGTTTCTAAACCGGTAGATCCTCTCCCCAC
CACTGATCAACGCCACGTTAACCAGCGGCTCATTCACAGCCTTGGCTTTT
TGGCCTGATGACCATCGCCCTTCTGGGAGCTTTTCTCCGCTCATGCGCAG
ATCCTGGATGTCGTGGTCTTTTGAAACGACGTCCGTCTGTATCACATTGA
GGGTGGTGTACCACGGAAATCAGCGAACCCTGCTGTACATTTCCTTTTTC
CGAATGCCGAGTGATCGGACCCGATACCGAAGGGATTGTTCTCGTCCCGA
AAGCGATACGCCTTCATATTTCACAGCAATGCATCCAAGGATGCAGAGAG
CACCTTTCGAATGTCGCGTCTTCCTCAACTGTGCCGTTCTGTAACAAGGC
GGAATGTGGAAAAGATTGTTCCGTCCTCGACAGACGGTCAGGATACGCTT
CCCTTGTAAGGGAAGTGTCCACAGGAAGTCAAGATTGGAATGTCCTTCCC
GTCTTGCTCACCGCTGATACGGTACCCACCTGCCAAAAGATAGGCCGCCC
TTCCACCACCTTGCGCGAGGTCGTTTATCTCCTGCTTCTCTGATGAGAGC
TGTGATTATGCTTTTTCAGCACCGGATGATGCAGTGTTTGACTTGCCTGC
GCCCTTGAACATTTTGAGGATAGAGAACCAACTTGCTGAATCTAGTTCGT
AATATCATTGCTGAAGAAACGCATTTTCCAGCAGAACCTCCACTTTCAGG
AACCTCCGAATAACTCCGACCGCGATCACGCCCCTCCATCACCCCAAGCT
TGGGAGCAGCTTCGAGTCGCCGTCTATGAAAACTTGTAGAGGAACCTTTT
TCATGAAGATGTTGCAAGGTAAGGTATCATCTCCTTCCAAAAGTTTTGTC
GTTTCGCAAGAGCTGAAGATACAGCATGGCCGGGGACGGGTGTACACATC
ATGTTCCCCTCTCTCCTGCCACAATATCATAACATGTGTTGGCCAAAAGT
GTCATTTGTTTGGTCTCCTCGAAACAAAAGATTACGGTTTGGGGTCCCGC
AAGGTTGCTCGCAAGAAGGACAAGGCGTATATCTGGTTTACGCCCCGAAC
CCTTGCCAAAGCCACTGCTTGCTCTCGCCACCGTCGGCGAAGACGATACC
CCCTCTTGTCCATTTAGTATCGTCATTTTTGCGCCAAGGAGTGTACTCCG
CAGCCAGGAATTCAACCCTTAACCTTGCCGTGTTTTATTATCATCTGAAG
TCGACCCCGTTCTTTTTGTGCACCTCTTTTCTTCTGTCTGTCTCGTTGTC
GGACGTTGTTCCGCAAGCAGGGGTACAAGGGCTGGAAGCTGATGGACGAC
GAGTTTCAGACCCGCGTGGACCCAGAGAAAGCACGGATTGTTTTTTACAT
TATGGTGGCCGGGTTTAAGGAGCTGCCCGGCTTGGACGCCCTGCTTCGCA
ACCTCTACCACGTGGAGCACTTCTTTCTTGTGCATCTGGACATCAAGGTG
TATGCGAGTTGCTTGTTTTGGTTGTGGTGGTCCTTGCAGTATCAGACAAC
TTATTGGCTGGCTCCCTCGGATCGTGCACGTTTTCACGTCCGGTCGGCTT
GAATCGGTGTACCACTGCGCATTTTTTTGCTCGCTTCGCCTCCATCTCGT
TTGAAATGGCTGGGACGTGGTACCTGCGAAGCCGAGTGCAACCTGCTCTT
GTCCCTCTCTATGTTTTACCCATGCTGCAGTCGCCGCAGATGGGATGGGA
CGGGCGTACCTAAGTTTCTCTGTTTCTCTGTTTCTCTGTTTCTCTGTGCA
GCCTTTACACCCTAGCACTTCAGCATCGTTCTCCCTCTTGCCATGACCAG
CCCATCTCGGGCTTTTCTCCGGCTCCCGTTTACGAACACGTCCAATCGCA
TGCAGCACTCAAGACTTCGACCTCCCAAACAGGAGAAAGGCCCCGCCCTC
CAATCGTTTTTTTCTCTTGAAAGGCTTCCCCGTTTAAGCAATCACCGTGT
CCCGTTTCATGTTTCGCGGCCCAGCTGCTCCTAGGCCGTCGCAGAGTTTT
TTTTTTTCTTCTAGAATCGACCTGCGGAACACTCTTTGCGGTGTCTTGGC
GTGTTGACGCCGACACCACGAATCGAAGGAGGCAATCGGCCATAATCGCT
CTTGTGTTCTTGTCGTTTTATATCAGCTCTTGGCGTATCGTGTGAACTGA
AGTTCATGGTCGGCTCTCTACCACGTGGTCGTCAGCTCTCCATATTACCA
GATGGTCCGCTCTCGTATTGTCTTTTTGCCGGTTTTCTCGACCACTTGTT
CATCGGTGGGACCCATCACCGTATACACCCTGCTCTTGCAGCCGTGTGTT
TTCCCGCGTTGCCTTGGTCGCCGCTCCCTTCCCCTGTCGAGACAGGGTCC
GGTTGTTCACATGGAGCGGTGAATTTCCCCACGAATATCAGGAGATTCTT
CTCTTCCTTCCACCAGCAAGCGTTCGTTTGACATTCGGCATTACGATGGT
TCTTCGTGTTCCGTTCCGCTTTCGCTTGGCACTGTGCAGCCGTTTCTCAT
GGTGTGTCATCCGTTGCCGTTGTGAATGCCGTCGCTGTCGCTGCAGGCGC
AACCTGCAGTCCGAGCGGACGTGAAGGACCGCATCCAGCGAGTTTTGAAG
GGGAGAGGGAATGGAGAGCGCAATATACGGCTCGTGGAACCGGCCACACC
TATCACGTGGGGTGGTGAGTACTGGGTTTGGTGCCGGAGGGGCACAGGCG
GGAACAGGGGGGCGTAGTGGGTAGGGGCGTGGGCTGCCGTTCTTTCTCCG
TGTCCCTCGTACGCCGCGTTCGTTTGGACCTTCTCACTGGCACGTTGTTC
CGTTTGCCGCGCTGTCATGTGTCGTGTCGTGCTGTGCTCTGTCGTGACCG
ATTGCAGCGCTGTCATGTGTCGTGTCGTGTTGTGCTCTGTTGTGACCGAT
TGTAGCGCCTAGTGTCGGGTCTGTACTCGCCTGAACGGGGGCGAAGCCCT
GCGCCTGCCCTTCGTTCTGAGGCCGCTTGGAAAGCATTGACAATACGAGG
ATATAATTTGCCAGCGAAGTTGTTTAGTTGCTTCTAGCGAGAGCATCGGT
TTGGCGGGTGTATAATCGTTCCTGCATGAAGGACACAAGTCATTTTTGTA
CTTCAAGATCAGTATCGCTGGGAAATGGCCACGAGATTCAGCGGACGAAA
GTTCCCCATGCCCTCTGCTTCGTAAACAAGTGTCGTCAAGGGTGGGCTTT
CCTTAGTGTTGGTTGTGTCCGGTGGAGACGACTGTGCCTCCACTTCCCTC
GACCTCGGGGGCATTTCTACCTTGAAAATCGTCGAACGGTCGGGTTTTAG
TGGTGGTCGTTTCGTTTTACTTCGTGTCCGCCCCTGCCGTGTCTAGATGC
GTTCCTTGATCAATCGAGCAATCGACCGATGAAAGGGCTGTAAGTCATTG
TAGCGGTTTCACTGGCTGTATCTCCATCTGGGCGCAGACGTCACAACCCT
CTCACCAGGCCGCCTACCTGCTTTTCTACCTATCCACCTGCCTGCCTGCC
TGCCTGCAGGTCCTGAAGCGCGTATCTTTTATTAAGGGGGATCGATCGTG
ATGAGCGGAGAAACAATATTTAACGTGATCTGGCGTGCTTCTCTCCCGCT
CGTTATTTCTTCGCCGTCCCGCCGTCTGCTCTCGCGATCTCCATCTCCAT
CGCAATCACTGTCGTGTGTGCGCGGGCGGGCCGGCAGGCTTCACGATGAC
CCTCAATGCCGTTTACGGCCTCACACAGGCGCTGCATTGGACCACCAAGT
GGGACTACTTCATCAACCTGAGCGCGTCCGACCTCCCATTGTTGCGGACG
GTGAGGAAGACAAAAACAACCGAGCGATTTGTCTCGTCAGAAACCAAACT
AGCAATAAGAAAACCAAATAAAATAGTTAAATGAAGACGCGAACCCATAG
ACAGTAAAGAACAAATACACTCACCTCTACAACCAACTACCCGACGTATA
TCATCTAGTCTTGCAACAAACACCGTTGTTGCGTCGCCATTCGAAAAATC
CTCACCCTGAGATTGTGTCACGTGAACGGGGCAGTTGAAGTTTCTGTCCA
TCGCTTCGGTTTCAAGTTTTCATCTTAGTCTTGCCAGTTGTTGAGAGTTA
CGGTACTTAATCGAAGCAACGGCTGCCAGGCTCTGTGTTTTCATGGTCCG
GGTGCGATAATGTCGCTCGCTTGTACCCAATAAACGGTACCCCCCCCCAG
ACCGTTTGCCGTGAGGAAAGCGACAGCATGATCCGGAAGCCTAATCGCGA
GTTGCGATACGAAGCAAGGCGAGTGCTGGAAGCGTGATTGAATGCCAATC
CCAGTTGGCAATGCTTCTTGCGAAGTAAATGAAAACGGTACGTGACAGGG
GTTGCGATGGGATGGATCAAGCACTAACAGTAGATGGGGGCAGTAATTAC
GAGGAAACTTGGAAAGGAAGGACAGGCGTCGTGTGCATGCGGCGAATCAG
AGAACCACAACCCATCGGTTGGATGGGCTGGCGCTATACTCAAgGGGGAT
CTGCCGGAGAGGGAGATGAAGAGGCGAGGGATAAGCAATGCAGTATGGCT
GAATGACGAACGGTCGGCAGCTAAGCAAGGGGGGGTTATTCAATTCACGC
ATGCTGTATCCGTTTGGTCTTTTTTAACTCCCATGCCTGCCAGGTGGGGA
CGGAGCCATTTGCCGGGTTTTCACCGGCCCAGGCTCTTGCATTCACTAAG
CGCGAAAAGCCTTGGTCATTCGGCGAGTTGCATGAAGGGTGGGCAGCATC
CTGCTAAGAATGTTCGCCCAACGGCTTCCTGACCTAGCGCACGGATTACA
GCCTCAACTGCGCTGCAATTTATTTTTTTGGTATCGCCCGAGCGACGGCC
ATTGGAATGCACTACGGTAGGGCCTGACTGGTGTATCACCATTTCAACAC
TGCGTGGTATGACCATGCTCCGTGTCCACGAGCAGAGTTAAATTCTCCGC
CCCGCACAAATGATTTGCTCGATCACATCATGTTTACGACCCCCCCTCCA
AAACGAGGAACCAAAAAACCGGTAACCTGTTCGCCTAGTTCACGCAGTGA
GCACCATGTCTTGCAGCGCCATCGCCAACCCGGCGCGAACCCAATCCCTT
GCAGCGCCACGGGGCCGGTGCATCTCTTTTCTAGAGCGTGGGGAGGTGGT
GGGAAGAAGAGTGACACATTTTGCCCTAACGGCCAACAAAAAAAAGTCGA
AATAGGCAGGAGAATTGATGGGTCAAGTACAGCAATATACTCCTCAAGGG
TGGCGAAAGGTACACAAGAGTCGAGATTATCCCTTCCCGACGGAACGGTT
CTTCTTCCGGAAAGAGTCGTGCGAATAAGGGTCCGACGACGCAGGCATGC
AGTAATGACGTCCCCCCGATCCTGCCACCATTCCTAAGCTTCCGTTGTAA
TATCTGTTCGACGATGCATCACCTGCGAGACCCTCCTTGCGATATGCCTG
AGGTATGCCACCATCTTCAGCTTCACGCTTTCTGCCGCGGTTACGCCGCC
GCTGTCGCTGCTTCCTCTGCCGCTGCTTCGAACGCGTTTGTCCGCTGTTA
TCGTTTGTCGTGGTTGCGTGTCTGTTTACCCGCACAGGACGAGATCGCGG
TAATCTTGGGGCAGCACAGAGCGGCGAACACCTCGTTCATCAAGGGCTTC
AAGTACGAACCGTCGTGGGAGGGCTACAAGTTTGTCGACAGGTGCGGAAG
CTGGAGACAGCGTGGATGTTTTTGGGATGCGGCTTAGGGCGCGCTATCGC
TCGGCTGGTGGAACGGCGGCGTCTTGCTTTGCAGGAATGTGCTTCCAACT
TGTGACCATGCATCTGTGTGATCTCGAGTCGGGTTTCGTCCAGAGTATGA
GCACAAGACGCGAGGTAAGGGCTTCTGCACCTGTGGGAAAGGGTCCCACA
GACATGGGCCCATGCGTCTCCGTTGTGTGCACATGATGTCACCGTAGCGG
GAAACTCGTGCATACACCATATGTAAACCTCTAGCAGAGTGTTTCCTCTT
ACTTAACTTCCCTGGTTCGTCAAGGTATTAGTTTTCGGCCTGTCCAGTCT
TGGGGGCGTCATCGTGCCAGCCGTTCTACCCCAGAACCTTGCTGCAGAGA
TCGTCCCTCCTTCCCCCCACTTCCTTCACGTCCCGCTCCCACCTTGTTTT
TGCTTCTCGACTTTCCGTTTTTCAACATGCTTTTTGTTTTGTTTTCCAAC
ATGCTTTTTGTTTTGTTTCTCTCCCTTTTTCTTCTTCCTCTGCCCTCTCG
CATCGATTTTCCCACGCAACATACGCCTGTGCACTTTTTCCCCAGTGCTC
CCTCTTGAAAGTTATCATTGGACGCGCGGCTGCTCTTGTGTCTTTGATAT
TAACGCTCGTGTTTACGTGGCCAGCGGCCAGGGACGAGGTGGGGAAACAA
TGTAAAGGTGCTACAAAATCAGGATGACGATCTTCATCGGTAGGCACTAG
TGGGGAAGAGGTTTACCCGCTACTTCCAACAGAAAATCCGCTTCCGACAG
AAAACCGCTGCTCTGTTTTGTTTTCGTCTTTCATCTGAAAAATGAATCGA
AGTTTAAAGCTTGGATCCTCGGAGGACGTCCCCACTGCCCCAGTCGCATG
TTATGGATTTTTGATGCACGCTTCGCGTGTCGGCCGATTGCCAGCTGTTT
TTCATCGAGCAAATTGTTACAGCTGCGTGCTGTCGCAATTGGTGTCTGTT
TTTCTTGTTTCGTTCGTCGTTCCCGGCAAGACATAAAGAAAACAAATGAG
GCATAAACAGGGCTTCCCACGGAGCGGTTTTTATCTACGGTTATCTGTGA
GCGCGGGCCGGTTTGGCCAAACCGGCCCGCACCGTGGTTACCGGGTTGAG
GAACACCGCTTTACGAAAGCACTGTGGCCACGGATTGAGAAAAAAAAACG
CCCGGTCCGCACCTTGACATGCGAAGAAAAAACCCGGTGAAACCGTGAGT
ACGGATTGAGAATAAACTACCGCCCGGTCCTTATCGCACCGTGACATTTC
CTTCTTGAACCGTTCACACGGTTTGTTGTGCGGAGGGGTTCCCATTACTC
CGTATTAAATCCGAGGATCAAACCGTCCAAGTTTGCGGTTTTGCACACGG
TGTTCTCGTATAAATACTCCGGATCACCCATCACACGGAGAATTTTGATT
TTAAAATAGGATCTTCAACGCGGTTTGGACTTGCAGCCCTCTTTCGTGTC
TCACGCGACGTGTGCTCTCCGATGGTGGCCAGTGCTAAGACGGTCTAGTC
GTCCCTCATGGCGTCAAGGGCAGCCGCTGCCGAAGCGGCTGCAAGCGATG
CTGTGGCTGCTAGCAGTGCAGTCGGGACTGTGGTCGACTCCCCCTGCTGC
TGCCGGTGTGTTAATCACGCGCATCTTGTACTTTTCAAGCGTGTACGGCT
CGTTCGTGGCGGTTTCGTTTGCTCTCTTGTTCGAGGAGGCGAATGTTCCA
AGCTTTTTCGTGTGTTTAGTCTTGCATTGCTGTAAGGTGGCCCCAGTACG
TCCTTCTAAACAAGTGACATCTCTCCGCAGGTCCAGAAATCGCCCCGAGA
CAGTGCGGTTTACGAGAAAACCACGCGGTTTTATACGGTTTTGGTGGAAG
GTGCACCGTACAATACTCCACGTTTTTGCGCTGTTTGCTGTACGGAATAA
CTAAACCAAAGTGAAACTCAACGTGTTCACGGAAATCCGGCCAGCCCCGC
ACCGTGACTGGGGCAGAAAAAAAACGGCCCGGCCCACACCTTGATGAAGC
CAGGACGCATTTTGACAAACCGGCCCGTACCGTGGCTTCGGAGTGGATTA
GAAACCGCTCCGTGAAAAGAACGTGGTCATAGATTGAAGAAAAAACCCGG
CCGGAACCTACCGTGGATTTTCATAATTAAACAAAAACATACCGCGGGTC
GATTGTTCTCCGTAACAAGCCCTGGAAATAAACATTCACGGTTATGCTGT
ACATGCCGTCTATCAAGGTAAGGGTCGCCACCGATGTGTAGGCATTTACT
GCCCAACGTAAATTGCCGTCAGACCATCCATGGAGCTTATTATCGCGAGC
GGGTTGTATGTGAAGTTCCCTGATCCATTCCAGCTCGCCTCATACAATTG
AAACACGCATTTATTCTTCCCCCCCCTGTCGCCAGCGAACAAAATGAAAG
CGGAAAGCAAAGACATGAGGGAATGTTACGTCACTCGCTGACACTGCTGT
TTCTTGCTCCTTACAAGCACGTTATCCCTCTGTCAGTTCGTCTGTCTGTC
TGTTTGCCTGTCCATCTGTCTGTCTGTCTGTCCGTCTATGTTCTCACACG
ATGCATACTGTGTGGGGTGGGTTTCCCAACGCTTGACCCCTTGCTTTCGG
CACGTGCTGCTGGTGTGTACTGTACCGTGACATCTTTCTCTCATGTCTGT
CTATCCGTTCCCCTGTCGTGGCAGGCGTGAGATGTTCTCCGAGGACGAGG
CTTTAATGCGAGAAATAACGGAGAAGCGATGGGCCTGGGCCATCCTCGAC
GAGCAGAAGCAGATGCTCACGCGGCCAATGCCGAACCTCTTCACCGTATA
CAAGGTGCCTGCCTCATGTTGCCCTTCGTGCTTAGTCTCGTATCCTTGGT
CTCGTGAGTTTCTGTCCTTGGCCTTGGTCTGTGCCTTGTCATTGGTGTTA
TCATTTTCTGTCCTTGGTCTGTGCCTTGTGCTTACGTAATTTGTGTTTTG
TGTTTCGTGCCCCGTGTCTTGGGCCCTGTTTCTTGTGCGTTTTGAGTTTT
GTGTGTATGGTACTTGAGTGCTGGAGCATTGCGTAGTCCCCGGAGCGGAG
AGGTGTTGTTGCCAGCCGACGTTCGCGGAACTCGTCCCGTGCCGTTGACG
GCGAACCGTATCCCTTAGGGTATAGGGTTGTACTGTCGTCATTTGGGAGG
ACGGTGTTTATCTTGCTTAATATTGAATGCCGAGCCCGGGCTCTTTCGTT
CTTTTACACCCAAGGAAGTCTGGTGTATTTCCAACAAGACGGTTCCACCC
ATCAACCATACCGGTAAAATCATACCTCAGACATGGGCGGAAATGAAGAA
ATATGTTTCTAAGCGTGCGTGAGAGTTTTCTAGGCAGCTTTGCGTCGTCG
TGCTCGCTGTTGGTGTCTGATATCGAGGATCGGGGATCTACCTCCCTCCT
TTTCTCCAGTAGAGCAATCCTTGTCTTTGCCGAGATATCAACACGGTGCA
GGCTGCGATCTTCAAAATTTACTCCTTTGATTCGGACAGCCTCGAACCCA
CCCCAGCCAGTCCGGCGAGAGTAAATTTGCGGCGTTTCATTAGCTCGTAC
TTTTCGACGTGCCTCATTCGCCTCCTTTGGTGCTGAAATGATCCATTTGC
ACACTTGTCCCCCCCCGTCCCGTCCCCTCTCCTTCTCGCGCTTGTCTGTG
ATTGATCCTTTTTCTGCAGGGGGAGTTCTGGGTCATGCTGCACAGGTCCA
TGGCGGAGTACGTTCACAGGTCTCCGGATAACCAGGCGCGGGTGCTGCTA
ACCTATTTCTCCGGGATGATGGTGCGAGAGGTGGAGTAGAGAGAGTCTGC
CTAGGGACCGCTATGAGCCTTTTGATAAGCGAGAGGGAAGGAAACCAGCT
GTGGTAGCCGTGCTTGCTGGTGGCGTGCTGGCGTGCCGCGGTGCCGCTGT
CGGATGGAGCCCCACGAGATATTGCGGATCTCATTTTCTTCATGCTCTCG
TCAGTTTCGGGACCACTCGGGACCGACTGAATGGGAGCTGGTAGGCACGC
CAGAATGATTGGAGGTTCACGCGTATGGGTCACTTTTGTTGTCGTTATGT
GTTCCAGGGATGGGTTGTGGAAATGCTGGTGGCACAAGCAGTGCAATTGG
GACCACCTGGTGTGGCCATGCCAAACCGTACTTCATGCTGCCCCTTCACT
CCCTCGGCTTCCCCATTCCAGGTGTCAGACGAAGAGTTTTTCCAGACCGT
AGCGTGCAACCCCCACTTCCCCCACGACACGCTGCGGACGCACGACGATA
ATCTCCGGTTCGTGAACTGGTGGGGCGACCAGGCGAGCCCGGCTATCGTG
CCGCCATTCCGTGCGGTGGCGGCGGCGAACAGCGGCTCCCTGTTCGGCCG
CAAGTTTTCGTCGAGCACGGAGGAGGGGAGGGACGGAATACGGTGGCTGG
AGACCTATCTCGCGGACTCGTCGAGGGTGAGCGAGGGAGGCAGCCTGTCG
GTCGTGTCGCACGCGGTAGAGATTGCAATTGATGGCACTGAGGTAGACTA
CAAAAATGCGTGAGGGTCTAGGCAAGGCTGGAGTGTTGTGGACTGGACTC
GACCAGCCTGGACTATAGACTGGATCAGACCAGACTGTGCTGGACTCGAC
TCGACAAACATGACAAAAAAGTGAACATGTACCACCAGGCTAGGCTGGAC
TGGACTGGTCTGGTCTGGATAAGACGAGAAAAGAAGAGACAAGACGAGAT
GTTGCCAGACTAGACTAGACTAGACGACATTGGAAAATACAAGAGTCGAC
TGGACTTGACTGGATTAGACAAGACTTGTCTACAAATGGAGAGAAGGCAC
AAGTCAAGGTGTGATGCTGGACTGTAGATTAGTTCGAGTGAATCCCTTTC
CATTTTGCACAGCGAACGCCGCTGATTTTGCCCGTGATCCATCGCCTGTT
CCCCTGCCGCCATCCCCCTCTCCCCGCGACCTCTCGCCTTTTTGCTTGCT
TGACGTCCTTTGTGAAGAGCAAGGCCCGCGTGGACAGGGTCAAGCGGCGT
CTCGCCGCCCGCATGGGCCCGAGGGGGGAGCCGGTGGGCTTCTGCGGGAA
AGCGCAAGAGAAGAGGCCGCCAGAGCCGTACTTCGCCGTCGAAGGGGAGG
AAGAAAAACTCCCCGCCGAATTGCAGCCAAGACCTCATCGCCGAGGAGGG
AGCCACGTGACGCGAAGCGGGGAACGGGAAGGGGAAGGGGAAGGCGAAGG
GGAGGAAGACTGGTCGGGGCATCGTGCTGTGGAGGAAGATGGCGCAGCAG
CAGTAGCAGCAGGCAGCGCAGCTGGAGAACGGGTGAGGGGACGAAGACTT
GCCTACGACTCGCTCTTCGAGCCACTGGGTGGAAAAGTCGAAGGCGCCGG
AAGGGCGGGAGAGGGCACGGGGGTGAGGCCGGGCCACAGGAGAACGAGGG
ATGGAGACATAGCGGCGGAACCAACCGTGCCCTTGACACCAGGGCGCTGC
CTTGGGCCTCGCTGCTACAAGAGAACGACGGCTCGGGGGCAGCTGTACAC
GCACAGCAGTGGCGGCGGCGACGTAGACGAGGGGATCAGGATGGAGCCGG
ACGATACGGACATGGCCGGTCGATTGCAGACACTGAGAAAATCGGAATGA
CCCTCGAAGAGTAACGGGAGGAGAGCGGCTGGAAGGTTTCGGGTGGGGGT
TGAGGAGGCGTGGGGTTCAGAGCCGGCGAATGCTACGTTGCTGGGTGAAG
CAGCAGCTAGAACGGACGGGGTGCAATCTAAGGATTTGACGGATCTCATA
GCCCTTGGTGGTCGTTGTGGTGGTTGTGGAGGATTAGGTGTACATGGTTC
GTGTCCGTTTCTTGTGGTGTGTTTTCCCTCAATATCCGGTTCGTTCCCGC
TTGTGTGCCCGCGAGCGGGTGAGAAAGTGAAAAGGAGGGGATGAGACAGC
GACGATATTGGTTTTGAGAGCTGGCCTGGCGACAGCGCGAGACCACCTCG
TTCGCACCGCACCGCACCGCGGCACGCGACGAGACTTTTCATGCCACCTG
TTGTGCACTGCGATCCATCTATCGACTAGTTTCGTTTTCTTTCGATGACG
CAGCGGGTAGAGGAAAGCGAGAACCGATGGAGGTGTTGTTGGTGCCGTTA
TTAAGACCGATTGATCTGTTGGTGATGATGTTGATGATGTTGATGTTAAT
GTTGATGCTGGTCATGACTGACAGGTTTGGTGGTCGCGTTTTCCACGTTT
CTTTTTTTGTTAGTTTTTTGTCGGCGCGGGTTTCGTTTGCGTTCGATGAC
GCAGCGGGTAGAGGATAGCGATAACCGATCAAGGTGTTGTTGGTGCCGTT
AGGCATGGGCTGATCGCCAAGTACCTCTGGATCTGCTTGTAGTGCATTGT
TGTGGTTTACACGGGAGCAGGTACGACCGTGAATCTTGTCGGCAAGCCGT
GGGCAGGCTACTATCGTCACAGGAGGCATCTCAGGATGGTTGCTGACTCG
GCATGAACCGAGATTTAAGGATGACTGTTACCTCTACTTCAAAGTACGTT
GTATTTCTGTAATTTTTGTGCGTTTCGGTACCTCCCGTGGGCGGGCTGTT
TCGAAATTTCCGGAGGGGGAGAGGGAGCCTGGAAGCCATCCATGTTAGGA
GTTCTGTCCGTTTTTTTTGGTCATTTATTCGCGAAACATGATTGTTTCTG
TAAACGCAAAAAAAAGAATGGCTGATTTTATCGCAAGGAAATCCTCTCTG
TTAAGCAGCGCAGCCGCGGATGTTGCGCTTAACACAACGTCAATCGCGAA
AAAAGTCGAAAAAAGGGGGGTCCGTAAATCGATTGTTTGGCCGTCCACGG
GGCACCCGGCACGAGGGAGGAGAG back to topCoding sequence (CDS) from alignment at P-fluviatile_contig76:481099..494722+ >mRNA_P-fluviatile_contig76.14117.1 ID=mRNA_P-fluviatile_contig76.14117.1|Name=mRNA_P-fluviatile_contig76.14117.1|organism=Porterinema fluviatile SAG_2381|type=CDS|length=3552bp|location=Sequence derived from alignment at P-fluviatile_contig76:481099..494722+ (Porterinema fluviatile SAG_2381) ATGCGGGGCAGGGTGGTTCTAGGTGGGCTAGCTGCGGCAGCTACACTCTT CTTCGTCGTGCTCTCTCGACAACAGATGCGGGGCAGGGTGGTTCTAGGTG GGCTAGCTGCGGCAGCTACACTCTTCTTCGTCGTGCTCTCTCGACAACAG GTCGCCCTTCCCCAGCCGGATGATTACCACGCGGCAGATACGTCCACTTA TCGCGGGAGCACAATCGAGGTCGCCCTTCCCCAGCCGGATGATTACCACG CGGCAGATACGTCCACTTATCGCGGGAGCACAATCGAGGGGTACAAGGGC TGGAAGCTGATGGACGACGAGTTTCAGACCCGCGTGGACCCAGAGAAAGC ACGGATTGTTTTTTACATTATGGTGGCCGGGTTTAAGGAGCTGCCCGGCT TGGACGCCCTGCTTCGCAACCTCTACCACGTGGAGCACTTCTTTCTTGTG CATCTGGACATCAAGGGGTACAAGGGCTGGAAGCTGATGGACGACGAGTT TCAGACCCGCGTGGACCCAGAGAAAGCACGGATTGTTTTTTACATTATGG TGGCCGGGTTTAAGGAGCTGCCCGGCTTGGACGCCCTGCTTCGCAACCTC TACCACGTGGAGCACTTCTTTCTTGTGCATCTGGACATCAAGGCGCAACC TGCAGTCCGAGCGGACGTGAAGGACCGCATCCAGCGAGTTTTGAAGGGGA GAGGGAATGGAGAGCGCAATATACGGCTCGTGGAACCGGCCACACCTATC ACGTGGGGTGGCGCAACCTGCAGTCCGAGCGGACGTGAAGGACCGCATCC AGCGAGTTTTGAAGGGGAGAGGGAATGGAGAGCGCAATATACGGCTCGTG GAACCGGCCACACCTATCACGTGGGGTGGCTTCACGATGACCCTCAATGC CGTTTACGGCCTCACACAGGCGCTGCATTGGACCACCAAGTGGGACTACT TCATCAACCTGAGCGCGTCCGACCTCCCATTGTTGCGGACGGCTTCACGA TGACCCTCAATGCCGTTTACGGCCTCACACAGGCGCTGCATTGGACCACC AAGTGGGACTACTTCATCAACCTGAGCGCGTCCGACCTCCCATTGTTGCG GACGGACGAGATCGCGGTAATCTTGGGGCAGCACAGAGCGGCGAACACCT CGTTCATCAAGGGCTTCAAGTACGAACCGTCGTGGGAGGGCTACAAGTTT GTCGACAGGACGAGATCGCGGTAATCTTGGGGCAGCACAGAGCGGCGAAC ACCTCGTTCATCAAGGGCTTCAAGTACGAACCGTCGTGGGAGGGCTACAA GTTTGTCGACAGGCGTGAGATGTTCTCCGAGGACGAGGCTTTAATGCGAG AAATAACGGAGAAGCGATGGGCCTGGGCCATCCTCGACGAGCAGAAGCAG ATGCTCACGCGGCCAATGCCGAACCTCTTCACCGTATACAAGGCGTGAGA TGTTCTCCGAGGACGAGGCTTTAATGCGAGAAATAACGGAGAAGCGATGG GCCTGGGCCATCCTCGACGAGCAGAAGCAGATGCTCACGCGGCCAATGCC GAACCTCTTCACCGTATACAAGGGGGAGTTCTGGGTCATGCTGCACAGGT CCATGGCGGAGTACGTTCACAGGTCTCCGGATAACCAGGCGCGGGTGCTG CTAACCTATTTCTCCGGGATGATGGGGGAGTTCTGGGTCATGCTGCACAG GTCCATGGCGGAGTACGTTCACAGGTCTCCGGATAACCAGGCGCGGGTGC TGCTAACCTATTTCTCCGGGATGATGGTGTCAGACGAAGAGTTTTTCCAG ACCGTAGCGTGCAACCCCCACTTCCCCCACGACACGCTGCGGACGCACGA CGATAATCTCCGGTTCGTGAACTGGTGGGGCGACCAGGCGAGCCCGGCTA TCGTGCCGCCATTCCGTGCGGTGGCGGCGGCGAACAGCGGCTCCCTGTTC GGCCGCAAGTTTTCGTCGAGCACGGAGGAGGGGAGGGACGGAATACGGTG GCTGGAGACCTATCTCGCGGACTCGTCGAGGGTGTCAGACGAAGAGTTTT TCCAGACCGTAGCGTGCAACCCCCACTTCCCCCACGACACGCTGCGGACG CACGACGATAATCTCCGGTTCGTGAACTGGTGGGGCGACCAGGCGAGCCC GGCTATCGTGCCGCCATTCCGTGCGGTGGCGGCGGCGAACAGCGGCTCCC TGTTCGGCCGCAAGTTTTCGTCGAGCACGGAGGAGGGGAGGGACGGAATA CGGTGGCTGGAGACCTATCTCGCGGACTCGTCGAGGAGCAAGGCCCGCGT GGACAGGGTCAAGCGGCGTCTCGCCGCCCGCATGGGCCCGAGGGGGGAGC CGGTGGGCTTCTGCGGGAAAGCGCAAGAGAAGAGGCCGCCAGAGCCGTAC TTCGCCGTCGAAGGGGAGGAAGAAAAACTCCCCGCCGAATTGCAGCCAAG ACCTCATCGCCGAGGAGGGAGCCACGTGACGCGAAGCGGGGAACGGGAAG GGGAAGGGGAAGGCGAAGGGGAGGAAGACTGGTCGGGGCATCGTGCTGTG GAGGAAGATGGCGCAGCAGCAGTAGCAGCAGGCAGCGCAGCTGGAGAACG GGTGAGGGGACGAAGACTTGCCTACGACTCGCTCTTCGAGCCACTGGGTG GAAAAGTCGAAGGCGCCGGAAGGGCGGGAGAGGGCACGGGGGTGAGGCCG GGCCACAGGAGAACGAGGGATGGAGACATAGCGGCGGAACCAACCGTGCC CTTGACACCAGGGCGCTGCCTTGGGCCTCGCTGCTACAAGAGAACGACGG CTCGGGGGCAGCTGTACACGCACAGCAGTGGCGGCGGCGACGTAGACGAG GGGATCAGGATGGAGCCGGACGATACGGACATGGCCGGTCGATTGCAGAC ACTGAGAAAATCGGAATGAAGCAAGGCCCGCGTGGACAGGGTCAAGCGGC GTCTCGCCGCCCGCATGGGCCCGAGGGGGGAGCCGGTGGGCTTCTGCGGG AAAGCGCAAGAGAAGAGGCCGCCAGAGCCGTACTTCGCCGTCGAAGGGGA GGAAGAAAAACTCCCCGCCGAATTGCAGCCAAGACCTCATCGCCGAGGAG GGAGCCACGTGACGCGAAGCGGGGAACGGGAAGGGGAAGGGGAAGGCGAA GGGGAGGAAGACTGGTCGGGGCATCGTGCTGTGGAGGAAGATGGCGCAGC AGCAGTAGCAGCAGGCAGCGCAGCTGGAGAACGGGTGAGGGGACGAAGAC TTGCCTACGACTCGCTCTTCGAGCCACTGGGTGGAAAAGTCGAAGGCGCC GGAAGGGCGGGAGAGGGCACGGGGGTGAGGCCGGGCCACAGGAGAACGAG GGATGGAGACATAGCGGCGGAACCAACCGTGCCCTTGACACCAGGGCGCT GCCTTGGGCCTCGCTGCTACAAGAGAACGACGGCTCGGGGGCAGCTGTAC ACGCACAGCAGTGGCGGCGGCGACGTAGACGAGGGGATCAGGATGGAGCC GGACGATACGGACATGGCCGGTCGATTGCAGACACTGAGAAAATCGGAAT GA back to top
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