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Homology
BLAST of mRNA_P-fluviatile_contig75.14043.1 vs. uniprot
Match: D8LMM7_ECTSI (Phosphatidylinositol N-acetylglucosaminyltransferase n=1 Tax=Ectocarpus siliculosus TaxID=2880 RepID=D8LMM7_ECTSI) HSP 1 Score: 426 bits (1096), Expect = 6.370e-139 Identity = 205/211 (97.16%), Postives = 207/211 (98.10%), Query Frame = 3
Query: 153 KRYRVCMVCDFFYPRLGGVEMHIWSLSQCLLRRGHRVVVITHCYDNRKGVRYMTNGLKVYYVPLVPVVDGDCMPTLCAFFPIFRQILIRERITLVHGHQASSVMSHEAIHFAKTMGYRVAYTDHSLFGFADAASIHLNKLMKFTMCSVDHAICVSNTCRENLVVRATLPPECISTIPNAIDPSKFTPDPSARFPKGTINVVIMSRLVYRKG 785
+R+RVCMVCDFFYPRLGGVEMHIWSLSQCLLRRGHRVVVITH YDNRKGVRYMTNGLKVYYVPLVPVVDGDCMPT CAFFPIFRQILIRERITLVHGHQASSVMSHEAI FAKTMGYRVAYTDHSLFGFADAASIHLNKLMKFTMCSVDHAICVSNTCRENLVVRATLPPE ISTIPNAIDPSKFTPDPSARFPKGTINVVIMSRLVYRKG
Sbjct: 2 RRHRVCMVCDFFYPRLGGVEMHIWSLSQCLLRRGHRVVVITHGYDNRKGVRYMTNGLKVYYVPLVPVVDGDCMPTACAFFPIFRQILIRERITLVHGHQASSVMSHEAILFAKTMGYRVAYTDHSLFGFADAASIHLNKLMKFTMCSVDHAICVSNTCRENLVVRATLPPEKISTIPNAIDPSKFTPDPSARFPKGTINVVIMSRLVYRKG 212
BLAST of mRNA_P-fluviatile_contig75.14043.1 vs. uniprot
Match: A0A6H5KC35_9PHAE (GT4 protein n=1 Tax=Ectocarpus sp. CCAP 1310/34 TaxID=867726 RepID=A0A6H5KC35_9PHAE) HSP 1 Score: 383 bits (983), Expect = 1.220e-124 Identity = 187/191 (97.91%), Postives = 187/191 (97.91%), Query Frame = 3
Query: 213 MHIWSLSQCLLRRGHRVVVITHCYDNRKGVRYMTNGLKVYYVPLVPVVDGDCMPTLCAFFPIFRQILIRERITLVHGHQASSVMSHEAIHFAKTMGYRVAYTDHSLFGFADAASIHLNKLMKFTMCSVDHAICVSNTCRENLVVRATLPPECISTIPNAIDPSKFTPDPSARFPKGTINVVIMSRLVYRKG 785
MHIWSLSQCLLRRGHRVVVITH YDNRKGVRYMTNGLKVYYVPLVPVVDGDCMPT CAFFPIFRQILIRERITLVHGHQASSVMSHEAI FAKTMGYRVAYTDHSLFGFADAASIHLNKLMKFTMCSVDHAICVSNTCRENLVVRATLPPE ISTIPNAIDPSKFTPDPSARFPKGTINVVIMSRLVYRKG
Sbjct: 1 MHIWSLSQCLLRRGHRVVVITHGYDNRKGVRYMTNGLKVYYVPLVPVVDGDCMPTACAFFPIFRQILIRERITLVHGHQASSVMSHEAILFAKTMGYRVAYTDHSLFGFADAASIHLNKLMKFTMCSVDHAICVSNTCRENLVVRATLPPEKISTIPNAIDPSKFTPDPSARFPKGTINVVIMSRLVYRKG 191
BLAST of mRNA_P-fluviatile_contig75.14043.1 vs. uniprot
Match: A0A482SJN3_9ARCH (Phosphatidylinositol N-acetylglucosaminyltransferase n=1 Tax=archaeon TaxID=1906665 RepID=A0A482SJN3_9ARCH) HSP 1 Score: 322 bits (824), Expect = 9.800e-98 Identity = 143/210 (68.10%), Postives = 175/210 (83.33%), Query Frame = 3
Query: 156 RYRVCMVCDFFYPRLGGVEMHIWSLSQCLLRRGHRVVVITHCYDNRKGVRYMTNGLKVYYVPLVPVVDGDCMPTLCAFFPIFRQILIRERITLVHGHQASSVMSHEAIHFAKTMGYRVAYTDHSLFGFADAASIHLNKLMKFTMCSVDHAICVSNTCRENLVVRATLPPECISTIPNAIDPSKFTPDPSARFPKGTINVVIMSRLVYRKG 785
R+R+CMV DFFYP +GGVE HIW L+QCL+ RGH+V+V+TH Y +R+GVRYMTNGLKVYY+PL D PTLC+FFP+FR ILIRERIT+VHGHQ+ S M++E + +A+TMGYR YTDHSLFGFAD ASIH+NK+++ T+ VDH ICVSN+CRENL +RA L P ISTIPNA+DP+KFTPDPS R+P TINVV++SRLVYRKG
Sbjct: 13 RHRICMVSDFFYPNMGGVETHIWCLAQCLMLRGHKVIVVTHAYGDRQGVRYMTNGLKVYYLPLTVFFDQVIFPTLCSFFPLFRNILIRERITIVHGHQSVSSMTNECVLYARTMGYRTCYTDHSLFGFADIASIHINKMLQMTLSDVDHVICVSNSCRENLSLRARLHPSLISTIPNAVDPTKFTPDPSRRYPTNTINVVVLSRLVYRKG 222
BLAST of mRNA_P-fluviatile_contig75.14043.1 vs. uniprot
Match: A0A813AD36_9DINO (PIGA protein (Fragment) n=1 Tax=Symbiodinium sp. KB8 TaxID=230985 RepID=A0A813AD36_9DINO) HSP 1 Score: 313 bits (801), Expect = 1.350e-96 Identity = 146/211 (69.19%), Postives = 171/211 (81.04%), Query Frame = 3
Query: 153 KRYRVCMVCDFFYPRLGGVEMHIWSLSQCLLRRGHRVVVITHCYDNRKGVRYMTNGLKVYYVPLVPVVDGDCMPTLCAFFPIFRQILIRERITLVHGHQASSVMSHEAIHFAKTMGYRVAYTDHSLFGFADAASIHLNKLMKFTMCSVDHAICVSNTCRENLVVRATLPPECISTIPNAIDPSKFTPDPSARFPKGTINVVIMSRLVYRKG 785
+++ + MV DFFYPRLGGVEMHIWSLSQCLL GH+VVV+T+ Y R GVR+MTNGLKVYY P+VP VD D MPTL F P R ILIRERIT+VHGHQA+S ++HE + FAK MGY+ YTDHSLFGFAD ASI+LNK MKF+ +DHAICVS+TCRENLV+RA L P S IPNAID KFTPDPSAR+P T+N+V++SRLVYRKG
Sbjct: 27 QKHSILMVSDFFYPRLGGVEMHIWSLSQCLLHLGHKVVVLTNQYGKRAGVRFMTNGLKVYYAPVVPFVDQDSMPTLWTFLPYLRNILIRERITIVHGHQATSTLAHECLFFAKCMGYKAVYTDHSLFGFADMASINLNKWMKFSCAGMDHAICVSHTCRENLVLRAALDPRRTSAIPNAIDARKFTPDPSARWPSDTVNIVMVSRLVYRKG 237
BLAST of mRNA_P-fluviatile_contig75.14043.1 vs. uniprot
Match: A0A7S1GBW6_9STRA (Phosphatidylinositol N-acetylglucosaminyltransferase (Fragment) n=1 Tax=Bicosoecida sp. CB-2014 TaxID=1486930 RepID=A0A7S1GBW6_9STRA) HSP 1 Score: 316 bits (809), Expect = 1.640e-95 Identity = 146/209 (69.86%), Postives = 175/209 (83.73%), Query Frame = 3
Query: 159 YRVCMVCDFFYPRLGGVEMHIWSLSQCLLRRGHRVVVITHCYDNRKGVRYMTNGLKVYYVPLVPVVDGDCMPTLCAFFPIFRQILIRERITLVHGHQASSVMSHEAIHFAKTMGYRVAYTDHSLFGFADAASIHLNKLMKFTMCSVDHAICVSNTCRENLVVRATLPPECISTIPNAIDPSKFTPDPSARFPKGTINVVIMSRLVYRKG 785
YRV MVCDFFYPRLGGVEMHIW+LSQ LL GH+V+V+T+ Y +R+GVRYMTNGLKVYY+P+ P+VD D MPTL A F +FR IL+RERI +VHGHQA+S + HE I A+TMGY+ YTDHSLFGFADAASI+LNK++KFT+ VDH I VS+TCRENLV+RA+L P +S IPNA+DPS+F PDP AR P TINVV++SRLVYRKG
Sbjct: 42 YRVAMVCDFFYPRLGGVEMHIWALSQRLLSMGHKVIVLTNTYGDRRGVRYMTNGLKVYYMPMTPLVDQDSMPTLFACFALFRNILLRERIDIVHGHQATSTLMHECILHARTMGYKACYTDHSLFGFADAASINLNKVLKFTLSDVDHVIAVSHTCRENLVLRASLAPTKVSAIPNAVDPSRFVPDPEARRPSNTINVVMVSRLVYRKG 250
BLAST of mRNA_P-fluviatile_contig75.14043.1 vs. uniprot
Match: A0A6G0WGE1_9STRA (PIGA domain-containing protein n=1 Tax=Aphanomyces euteiches TaxID=100861 RepID=A0A6G0WGE1_9STRA) HSP 1 Score: 302 bits (773), Expect = 3.260e-93 Identity = 147/217 (67.74%), Postives = 171/217 (78.80%), Query Frame = 3
Query: 156 RYRVCMVCDFFYPRLGGVEMHIWSLSQCLLRRGHRVVVITHCYDN---RKGVRYMTNGLKVYYVPLVPVVDGDCMPTLCAFFPIFRQILIRERITLVHGHQASSVMSHEAIHFAKTMGYRVAYTDHSLFGFADAASIHLNKLMKFTMCSVDHAICVSNTCRENLVVRATLPPECISTIPNAIDPSKFTPDPSARFP----KGTINVVIMSRLVYRKG 785
R R+ M CDFFYPRLGGVEMHIWSLSQCLLRRGH+V+VITH D R+G+RYMTN LKVYY+PLVP+VD +PT F +FR +LIRERI +VHGHQA+S HE I AKTMGY+ YTDHSLFGFADAASIHLNK+MKFT+ +DHAICVS+TC+ENLV+RA+L P +STIPNA+D SKFTP + P K I VVI+SRLVYRKG
Sbjct: 12 RLRIAMCCDFFYPRLGGVEMHIWSLSQCLLRRGHKVIVITHQTDGPNKRQGIRYMTNNLKVYYLPLVPMVDNVTLPTFTVGFGLFRTVLIRERIQIVHGHQATSAFMHECILQAKTMGYKAIYTDHSLFGFADAASIHLNKVMKFTLSDIDHAICVSHTCKENLVLRASLDPSIVSTIPNAVDASKFTPKETDAPPIDPLKDPITVVIISRLVYRKG 228
BLAST of mRNA_P-fluviatile_contig75.14043.1 vs. uniprot
Match: W7TP55_9STRA (Phosphatidylinositol N-acetylglucosaminyltransferase n=1 Tax=Nannochloropsis gaditana TaxID=72520 RepID=W7TP55_9STRA) HSP 1 Score: 309 bits (791), Expect = 5.190e-93 Identity = 147/214 (68.69%), Postives = 171/214 (79.91%), Query Frame = 3
Query: 156 RYRVCMVCDFFYPRLGGVEMHIWSLSQCLLRRGHRVVVITHCYDNRKGVRYMTNGLKVYYVPLVPVVDGDCMPTLCAFFPIFRQILIRERITLVHGHQASSVMSHEAIHFAKTMGYRVAYTDHSLFGFADAASIHLNKLMKFTMCSVDHAICVSNTCRENLVVRATLPPECISTIPNAIDPSKFTPDPSARFPKGT----INVVIMSRLVYRKG 785
R+ VCMVCDFFYP +GGVEMHIWSL+QCLL+ GH+VVV+TH YDNRKGVRYM NGLKVYY PL+ D D PTL AFFP+FR ILIRERI++VH HQA+SVMS E +A+TMGY+V YTDHSLFGFADA SIH+N++M+F + VDH ICVSNTCRENL +RA L P +STIPNA+DP KFTPD T INVV++SRLVYRKG
Sbjct: 8 RHAVCMVCDFFYPSMGGVEMHIWSLAQCLLKLGHKVVVVTHSYDNRKGVRYMQNGLKVYYCPLLTFYDQDVWPTLFAFFPLFRHILIRERISIVHTHQATSVMSIECTLYARTMGYKVVYTDHSLFGFADAGSIHINQVMRFILSDVDHCICVSNTCRENLALRARLHPILLSTIPNAVDPDKFTPDLGQHRRLSTGGDRINVVMISRLVYRKG 221
BLAST of mRNA_P-fluviatile_contig75.14043.1 vs. uniprot
Match: A0A397C7S5_9STRA (PIGA domain-containing protein n=1 Tax=Aphanomyces astaci TaxID=112090 RepID=A0A397C7S5_9STRA) HSP 1 Score: 296 bits (757), Expect = 7.510e-91 Identity = 144/214 (67.29%), Postives = 168/214 (78.50%), Query Frame = 3
Query: 171 MVCDFFYPRLGGVEMHIWSLSQCLLRRGHRVVVITHCYDN---RKGVRYMTNGLKVYYVPLVPVVDGDCMPTLCAFFPIFRQILIRERITLVHGHQASSVMSHEAIHFAKTMGYRVAYTDHSLFGFADAASIHLNKLMKFTMCSVDHAICVSNTCRENLVVRATLPPECISTIPNAIDPSKFTPDPSARFP------KGTINVVIMSRLVYRKG 785
M CDFFYPRLGGVEMHIWSLSQCL+RRGH+V+VITH D R+G+RYMTN LKVYY+PLVP+VD +PT F +FR +LIRERI +VHGHQA+S HE I AKTMGY+ YTDHSLFGFADAASIHLNK+MKFT+ +DHAICVS+TC+ENLV+RA+L P +STIPNA+D SKFTP SA + I VVI+SRLVYRKG
Sbjct: 1 MCCDFFYPRLGGVEMHIWSLSQCLIRRGHKVIVITHQTDGPNKRQGIRYMTNNLKVYYLPLVPMVDNVTLPTFAGGFGLFRTVLIRERIQIVHGHQATSAFMHECILQAKTMGYKAIYTDHSLFGFADAASIHLNKVMKFTLSDIDHAICVSHTCKENLVLRASLDPSIVSTIPNAVDASKFTPSSSATPSPPLDPLRDPITVVIISRLVYRKG 214
BLAST of mRNA_P-fluviatile_contig75.14043.1 vs. uniprot
Match: A0A397A8Y7_9STRA (PIGA domain-containing protein n=3 Tax=Aphanomyces astaci TaxID=112090 RepID=A0A397A8Y7_9STRA) HSP 1 Score: 296 bits (757), Expect = 1.250e-90 Identity = 144/214 (67.29%), Postives = 168/214 (78.50%), Query Frame = 3
Query: 171 MVCDFFYPRLGGVEMHIWSLSQCLLRRGHRVVVITHCYDN---RKGVRYMTNGLKVYYVPLVPVVDGDCMPTLCAFFPIFRQILIRERITLVHGHQASSVMSHEAIHFAKTMGYRVAYTDHSLFGFADAASIHLNKLMKFTMCSVDHAICVSNTCRENLVVRATLPPECISTIPNAIDPSKFTPDPSARFP------KGTINVVIMSRLVYRKG 785
M CDFFYPRLGGVEMHIWSLSQCL+RRGH+V+VITH D R+G+RYMTN LKVYY+PLVP+VD +PT F +FR +LIRERI +VHGHQA+S HE I AKTMGY+ YTDHSLFGFADAASIHLNK+MKFT+ +DHAICVS+TC+ENLV+RA+L P +STIPNA+D SKFTP SA + I VVI+SRLVYRKG
Sbjct: 1 MCCDFFYPRLGGVEMHIWSLSQCLIRRGHKVIVITHQTDGPNKRQGIRYMTNNLKVYYLPLVPMVDNVTLPTFAGGFGLFRTVLIRERIQIVHGHQATSAFMHECILQAKTMGYKAIYTDHSLFGFADAASIHLNKVMKFTLSDIDHAICVSHTCKENLVLRASLDPSIVSTIPNAVDASKFTPSSSATPSPPLDPLRDPITVVIISRLVYRKG 214
BLAST of mRNA_P-fluviatile_contig75.14043.1 vs. uniprot
Match: A0A7S2DRR2_9STRA (Hypothetical protein n=1 Tax=Dictyocha speculum TaxID=35687 RepID=A0A7S2DRR2_9STRA) HSP 1 Score: 297 bits (761), Expect = 1.160e-89 Identity = 143/217 (65.90%), Postives = 175/217 (80.65%), Query Frame = 2
Query: 779 QGIDLVAPVIKIMCERYPNLHFIIGGDGPKRLLLEEMREKNQLHDRVEILGAVPHARVRSVLVRGHIFLNCSLTESFCIAILEAASCGLFVVSTAVGGVPEVLPRPMIKFAEPTVEDLTDALSDAIPLARKVVPSDFHAKVRGMYSWADVAERTERAYERALKAPPPSLVRRFKAYRRVGIFGQAVCCFLAAMLHLLWRLVDRIWPSQDIELAPEFP 1429
+GIDL A VI ++C+R+PN+HFIIGGDGPK+LLLEEMREK QL DRVE+LGAVP+++VR+VLVRGHIFLNCSLTESFCIAILEAA CGL VVST VGGVPEVLP+ MIKFA P V L DA+ DAI A+K+VPSDFH +V MYSWADVA RTE Y R ++ P PSL +RF+ YR VG F +CCF+ A LHL +++ + P++D ++AP+FP
Sbjct: 96 KGIDLAARVIPVVCQRFPNVHFIIGGDGPKKLLLEEMREKYQLDDRVELLGAVPYSQVRNVLVRGHIFLNCSLTESFCIAILEAACCGLVVVSTQVGGVPEVLPKSMIKFATPEVHSLVDAVGDAIASAKKIVPSDFHEQVNNMYSWADVALRTELVYARVVQLPTPSLTKRFRKYRTVGPFAGLICCFIVAALHLYLFVLEYMDPAEDTDMAPQFP 312
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 | 426.4 |
| Seed ortholog evalue | 8.8e-117 |
| Seed eggNOG ortholog | 2880.D8LMM7 |
| Preferred name | PIGA |
| KEGG ko | ko:K03857 |
| KEGG Reaction | R05916 |
| KEGG Pathway | ko00563,ko01100,map00563,map01100 |
| KEGG Module | M00065 |
| GOs | GO:0000003,GO:0000506,GO:0000902,GO:0000904,GO:0003006,GO:0003674,GO:0003824,GO:0005575,GO:0005622,GO:0005623,GO:0005737,GO:0005783,GO:0005789,GO:0005829,GO:0006464,GO:0006497,GO:0006505,GO:0006506,GO:0006629,GO:0006643,GO:0006644,GO:0006650,GO:0006661,GO:0006664,GO:0006793,GO:0006796,GO:0006807,GO:0008150,GO:0008152,GO:0008194,GO:0008375,GO:0008610,GO:0008654,GO:0009058,GO:0009059,GO:0009247,GO:0009653,GO:0009826,GO:0009846,GO:0009856,GO:0009860,GO:0009893,GO:0009932,GO:0009987,GO:0010033,GO:0012505,GO:0016020,GO:0016021,GO:0016043,GO:0016049,GO:0016254,GO:0016740,GO:0016757,GO:0016758,GO:0017176,GO:0019222,GO:0019538,GO:0019637,GO:0022414,GO:0030154,GO:0030176,GO:0031224,GO:0031227,GO:0031984,GO:0032501,GO:0032502,GO:0032989,GO:0032991,GO:0034097,GO:0034645,GO:0036211,GO:0040007,GO:0042157,GO:0042158,GO:0042175,GO:0042221,GO:0043170,GO:0043226,GO:0043227,GO:0043229,GO:0043231,GO:0043412,GO:0044237,GO:0044238,GO:0044249,GO:0044255,GO:0044260,GO:0044267,GO:0044422,GO:0044424,GO:0044425,GO:0044432,GO:0044444,GO:0044446,GO:0044464,GO:0044706,GO:0045017,GO:0046467,GO:0046474,GO:0046486,GO:0046488,GO:0048468,GO:0048518,GO:0048588,GO:0048589,GO:0048856,GO:0048868,GO:0048869,GO:0050789,GO:0050896,GO:0051704,GO:0051716,GO:0060560,GO:0065007,GO:0070887,GO:0071310,GO:0071345,GO:0071704,GO:0071840,GO:0090407,GO:0098796,GO:0098827,GO:1901135,GO:1901137,GO:1901564,GO:1901566,GO:1901576,GO:1902494,GO:1903509,GO:1990234,GO:1990823,GO:1990830 |
| EggNOG free text desc. | phosphatidylinositol N-acetylglucosaminyltransferase activity |
| EggNOG OGs | COG0438@1,KOG1111@2759 |
| EC | 2.4.1.198 |
| COG Functional cat. | M |
| CAZy | GT4 |
| Best tax level | Eukaryota |
| Best eggNOG OG | NA|NA|NA |
| BRITE | ko00000,ko00001,ko00002,ko01000,ko01003 |
| Hectar predicted targeting category | other localisation |
| Ec32 ortholog description | N-acetylglucosaminyl-phosphatidylinositol biosynthetic protein PigA, family GT4 |
| Ec32 ortholog | Ec-06_003950.1 |
| Exons | 9 |
| Model size | 2530 |
| Cds size | 720 |
| Stop | 1 |
| Start | 1 |
Relationships
The following UTR feature(s) are a part of this mRNA:
| Feature Name | Unique Name | Species | Type | Position |
| 1622817188.1500595-UTR-P-fluviatile_contig75:451870..452920 | 1622817188.1500595-UTR-P-fluviatile_contig75:451870..452920 | Porterinema fluviatile SAG_2381 | UTR | P-fluviatile_contig75 451871..452920 - |
| 1693571447.5360363-UTR-P-fluviatile_contig75:451870..452920 | 1693571447.5360363-UTR-P-fluviatile_contig75:451870..452920 | Porterinema fluviatile SAG_2381 | UTR | P-fluviatile_contig75 451871..452920 - |
| 1622817188.1609962-UTR-P-fluviatile_contig75:454253..454433 | 1622817188.1609962-UTR-P-fluviatile_contig75:454253..454433 | Porterinema fluviatile SAG_2381 | UTR | P-fluviatile_contig75 454254..454433 - |
| 1693571447.5496976-UTR-P-fluviatile_contig75:454253..454433 | 1693571447.5496976-UTR-P-fluviatile_contig75:454253..454433 | Porterinema fluviatile SAG_2381 | UTR | P-fluviatile_contig75 454254..454433 - |
| 1622817188.1732445-UTR-P-fluviatile_contig75:455153..455255 | 1622817188.1732445-UTR-P-fluviatile_contig75:455153..455255 | Porterinema fluviatile SAG_2381 | UTR | P-fluviatile_contig75 455154..455255 - |
| 1693571447.5585063-UTR-P-fluviatile_contig75:455153..455255 | 1693571447.5585063-UTR-P-fluviatile_contig75:455153..455255 | Porterinema fluviatile SAG_2381 | UTR | P-fluviatile_contig75 455154..455255 - |
| 1622817188.182733-UTR-P-fluviatile_contig75:455767..455930 | 1622817188.182733-UTR-P-fluviatile_contig75:455767..455930 | Porterinema fluviatile SAG_2381 | UTR | P-fluviatile_contig75 455768..455930 - |
| 1693571447.5688658-UTR-P-fluviatile_contig75:455767..455930 | 1693571447.5688658-UTR-P-fluviatile_contig75:455767..455930 | Porterinema fluviatile SAG_2381 | UTR | P-fluviatile_contig75 455768..455930 - |
| 1622817188.1923082-UTR-P-fluviatile_contig75:456878..457102 | 1622817188.1923082-UTR-P-fluviatile_contig75:456878..457102 | Porterinema fluviatile SAG_2381 | UTR | P-fluviatile_contig75 456879..457102 - |
| 1693571447.5794206-UTR-P-fluviatile_contig75:456878..457102 | 1693571447.5794206-UTR-P-fluviatile_contig75:456878..457102 | Porterinema fluviatile SAG_2381 | UTR | P-fluviatile_contig75 456879..457102 - |
| 1622817188.2049308-UTR-P-fluviatile_contig75:457619..457642 | 1622817188.2049308-UTR-P-fluviatile_contig75:457619..457642 | Porterinema fluviatile SAG_2381 | UTR | P-fluviatile_contig75 457620..457642 - |
| 1693571447.5896199-UTR-P-fluviatile_contig75:457619..457642 | 1693571447.5896199-UTR-P-fluviatile_contig75:457619..457642 | Porterinema fluviatile SAG_2381 | UTR | P-fluviatile_contig75 457620..457642 - |
| 1622817188.2691698-UTR-P-fluviatile_contig75:459746..459814 | 1622817188.2691698-UTR-P-fluviatile_contig75:459746..459814 | Porterinema fluviatile SAG_2381 | UTR | P-fluviatile_contig75 459747..459814 - |
| 1693571447.7699592-UTR-P-fluviatile_contig75:459746..459814 | 1693571447.7699592-UTR-P-fluviatile_contig75:459746..459814 | Porterinema fluviatile SAG_2381 | UTR | P-fluviatile_contig75 459747..459814 - |
The following CDS feature(s) are a part of this mRNA:
| Feature Name | Unique Name | Species | Type | Position |
| 1622817188.2157393-CDS-P-fluviatile_contig75:457642..457877 | 1622817188.2157393-CDS-P-fluviatile_contig75:457642..457877 | Porterinema fluviatile SAG_2381 | CDS | P-fluviatile_contig75 457643..457877 - |
| 1693571447.6016693-CDS-P-fluviatile_contig75:457642..457877 | 1693571447.6016693-CDS-P-fluviatile_contig75:457642..457877 | Porterinema fluviatile SAG_2381 | CDS | P-fluviatile_contig75 457643..457877 - |
| 1622817188.2269359-CDS-P-fluviatile_contig75:458232..458459 | 1622817188.2269359-CDS-P-fluviatile_contig75:458232..458459 | Porterinema fluviatile SAG_2381 | CDS | P-fluviatile_contig75 458233..458459 - |
| 1693571447.6103866-CDS-P-fluviatile_contig75:458232..458459 | 1693571447.6103866-CDS-P-fluviatile_contig75:458232..458459 | Porterinema fluviatile SAG_2381 | CDS | P-fluviatile_contig75 458233..458459 - |
| 1622817188.2414572-CDS-P-fluviatile_contig75:458924..459093 | 1622817188.2414572-CDS-P-fluviatile_contig75:458924..459093 | Porterinema fluviatile SAG_2381 | CDS | P-fluviatile_contig75 458925..459093 - |
| 1693571447.7459085-CDS-P-fluviatile_contig75:458924..459093 | 1693571447.7459085-CDS-P-fluviatile_contig75:458924..459093 | Porterinema fluviatile SAG_2381 | CDS | P-fluviatile_contig75 458925..459093 - |
| 1622817188.2526789-CDS-P-fluviatile_contig75:459657..459746 | 1622817188.2526789-CDS-P-fluviatile_contig75:459657..459746 | Porterinema fluviatile SAG_2381 | CDS | P-fluviatile_contig75 459658..459746 - |
| 1693571447.7599602-CDS-P-fluviatile_contig75:459657..459746 | 1693571447.7599602-CDS-P-fluviatile_contig75:459657..459746 | Porterinema fluviatile SAG_2381 | CDS | P-fluviatile_contig75 459658..459746 - |
The following polypeptide feature(s) derives from this mRNA:
Sequences
The following sequences are available for this feature:
protein sequence of mRNA_P-fluviatile_contig75.14043.1 >prot_P-fluviatile_contig75.14043.1 ID=prot_P-fluviatile_contig75.14043.1|Name=mRNA_P-fluviatile_contig75.14043.1|organism=Porterinema fluviatile SAG_2381|type=polypeptide|length=240bp
MNRAREETADSVHAASGAKRHSKLRKRCKRYRVCMVCDFFYPRLGGVEMH IWSLSQCLLRRGHRVVVITHCYDNRKGVRYMTNGLKVYYVPLVPVVDGDC MPTLCAFFPIFRQILIRERITLVHGHQASSVMSHEAIHFAKTMGYRVAYT DHSLFGFADAASIHLNKLMKFTMCSVDHAICVSNTCRENLVVRATLPPEC ISTIPNAIDPSKFTPDPSARFPKGTINVVIMSRLVYRKG* back to topmRNA from alignment at P-fluviatile_contig75:451871..459814- Legend: UTRpolypeptideCDS Hold the cursor over a type above to highlight its positions in the sequence below. >mRNA_P-fluviatile_contig75.14043.1 ID=mRNA_P-fluviatile_contig75.14043.1|Name=mRNA_P-fluviatile_contig75.14043.1|organism=Porterinema fluviatile SAG_2381|type=mRNA|length=7944bp|location=Sequence derived from alignment at P-fluviatile_contig75:451871..459814- (Porterinema fluviatile SAG_2381) CGGGAAAGAGTGAGTGAGCGATTGCCCCCCTCTCTCCCCTCACCTCTTTC
TCACACGACAGCTCTGTGATGAATAGAGCTAGAGAAGAAACGGCCGACAG
CGTCCACGCGGCATCTGGTGCAAAGCGACATTCCAAGCTGCGTAAACGGT
GCAAGAGGTGCGAACTTTGAGAATTGAGTAACCAAATCATCCAGCCAGGA
TAAGAGAAAGTGAACGAAGAACTTGGGGAGGCGACCGACAGGGAGTGGAG
AAGCGACACAGGACACACTAGTGTAGGATCAGGCAGACAACTCTTGCCGC
ATTGCTGTCTAAAGAGTCAAAATTGGCGATTATGCGGTGTAGCTTGTGGA
GTGCACGCAGTCGAAACTTGCTCCAGTAGCCGCTGCAACAGTAGCAAAAA
AAACAACGGCCCGCGAACGGTGAGCGCGCGGGATACAGGGTGCCGTCGGT
ACACCCGTGAGTGACGGATAACAGCGTATGTTACGAGTGCATCTTCAACG
GAAAACGAGGCGAGGGAGCTGGTGAATGATGTGTCTCGTCCGCGTTTCCT
TGCGCCAGACCCTGCCCGCTACCTGGCTACCACCGCAGCCGCGGCGCCCT
CTCGTTGACGAGCACAATGAAAGCGTGTTTCCCACCCTCACACCTGCTGT
TCTCGGTCCCTGAGTCCCGCTTCATCGTGTATCCTCGCGACCCATCCCCT
CTGAACCCGGGAAATCGGTAGGTACCGAGTGTGCATGGTGTGCGACTTCT
TCTACCCCCGGCTGGGTGGTGTAGAGATGCACATCTGGTCGCTCAGCCAG
TGCCTTCTGCGGCGCGGCCACCGGGTGGTCGTCATCACGCACTGCTACGA
CAACCGCAAAGGCGTGCGGTACATGACCAACGGGCTCAAGGTGCGCGTAT
GCACAAGTAGAGAGGAGTATCTGTAGGGGGGGAGCTGTCGTCTGTTTTTC
ACTTTGGTGGTGAGGATCTGGGAGCTGGCTTGTGGTTTTTTTCTCACGTA
TACAGGGAAGCACACCGGCTCTTAGCTTTTGATGGGGTTCTCTCCTCGCT
TTTCACGGTACGCGCATTTCTTTGCTGCACACACAACAAAGGCAGTCATT
GTCGGGAGCGGCCGTGGCAGTGGCAGCGGTCGAACGGCGGACGTGGCAAT
ACTCCTTCGTGCATTGTCTTAGCTGCAGCAGGAACATTTCTTCTGAGAAT
TGCAAAAGCTGAATTCCAAATGAAGGCCACGACGATCCTGTCAACTACGA
TTGACGTCTGCATGCTCTGATTCCAATTGAAATAAGCTTGCTTCGCCCGA
TGACGAAACCCCCAACAGCGTGTACCATCGCCTCCTCTTTCTCACGACGA
GGAAGGTGTACTACGTGCCGCTGGTGCCTGTGGTGGATGGGGACTGCATG
CCGACGCTCTGCGCTTTCTTCCCCATCTTCAGGCAGATCCTCATCCGCGA
GCGCATCACCCTCGTCCACGGGCACCAGGCCTCCTCCGTCATGTCCCACG
AGGCCATTCACTTCGCCAAGACCATGGGCTACCGGGTGGCCTACACGGAT
CACTCCCTCTTCGGCTTCGCGGATGCCGCCAGGTATGGAAAGAAAGGGCG
TGCGCGTACGTGGGTGTGTGCGATACACGGGCGAGAAGAAGCCGACATAG
TGTGCGGCGCGAGGTCCTCTCGACCCAGCGGACGTGCTCGCGCACACATT
TATCGTTCGCTGACAGGCAGACGAAGGTTTTCAGCATCATGCTTGTGGCA
GAGAACTTCCCCCCGTTCCTTTGCTTGCCTGTCGGTATGCTCCCCCCCTC
CCCCTCTTTCCAGCATTATACATATGAGAGAGGACCCCACCGTCTGCCCG
TCAGTATGTTGCGCCCATGCTCTCCCCGTCCCCGCCCTCTACGCGCTCCC
CCTCCGTCGTCTACTTGCCTCCATGAAACCATCCCAGCATCCACCTGAAC
AAGCTGATGAAGTTCACCATGTGCAGCGTGGACCACGCCATCTGTGTGAG
CAACACCTGCCGGGAGAACCTGGTGGTCCGCGCGACGCTGCCACCGGAGT
GCATCTCGACCATCCCCAACGCGATCGACCCGTCCAAGTTCACCCCGGAC
CCTTCCGCGAGGTTCCCCAAGGGCACCATTAACGTCGTCATCATGAGCCG
CCTGGTGTATCGCAAGGGATAGACCTCGTGGCCCCCGTGATCAAGGTGCG
CGCGGGATGTTTGTTGTTGCCTCCCGCGCTCGACGACGAGGCGTTGTGAC
CTATGCTCCTCCTGTCTCGTCCTGGATAGGTTTGGGGAAATTTTTCTAAC
CAGTCGCGTGCGGGTGAAGAAATTCGGCAAGGCTTGGCTTGGCTTGGTTT
GGTTTTTGTCGGGTTGGTGGTGGAGTCCATCGTCGGGCCCTGGCTGGCTG
CCTGCTTGCCTGCTTGCCTTGCCTGCCTGCTTGCCTGCCTGCTTGCGTCC
GCCTCGACCTGTACTCGTCGAAATTTTCTCTTTCCTCGCGTCCACTGCAT
GGCAAAAACGAAAGTGAGTCAAAAGTGCGGCGAAGGCAAAGAACAAAACA
GACGAACAAGCAGACAGACTACCCGACATACATGGCAAACCAAATGACCA
AAAACAGCAGAGGCCGCCGAACAGGCGTTCAGCGTGAAAGCATAAGAAAA
ACAAAAACTACGACAACCAACAAACAAGCAAGCCAAGACGCCAATAAACG
AACGAAATACAGATCATGTGCGAGCGGTACCCCAACCTCCACTTCATCAT
CGGCGGCGACGGGCCGAAGAGGCTCCTGTTAGAGGAGATGCGGGAGAAGA
ACCAGTTGCACGACCGGGTCGAGATACTGGGCGCCGTCCCCCACGCAAGG
GTGAGGAGCGTGCTCGTGAGGGGGCACATCTTCCTGAACTGCAGCCTCAC
GGAGTCGTTCTGCATCGCCATCTTGGAGGCCGCGAGGTGAGAAGTTTCAA
GTGTGACAGGTGGTGAGAGGTGTGAAGGGGTTGACCGCTCGCATGCATTC
CGAGGGATTTGGTGGATGTGGTGTAATCATCAACGGTAATGCGGTTGACG
GGATGGGATGGGACGGAATGGGACGGGACGGAACAGTCCAGGACCAGGCG
GGACGGGACGCGACCGTGTAGTGCCGATGGGGAGAGCTCCGACGCGGAAT
CGGTGGTACACGGCTCCTCTACTACCTGGAGAGCGCGAAAAAGCCGGCAT
CAAAATTTGAATAATTCAGCAGTTTGTCTTGCACACTCGCAGCTTCTTCT
GCTGCACGGACCACCAGTGGGGCTGGCTTCGTTTGCGCCCGGCACCGTTG
AAGGCCGTACGGGGAGGGGCCTGGTAAGTATGGCGTGGGAAACGTGGGGA
GGGCGGTGTTCAAAGTGTGTGTGTGGGGAGCTTCGTGAAGCAGCAGCTGC
AGCACAGGCCAGCTCGCCGGCCGGAGGCATCACTTGAATCGATCCCTCAT
CCCGCTACCGGCTTCCGTTTTATGACGGCACCAGTTGCGAACACAGAGGA
ATGGCTCCGTCTCTCGACGGGTCAACCGGGGGTACCAAAGGGTCGAATTG
CGGAGTGTTAGAAACGACATCCTCTCTCTCCATCCCTCGCTACTTTCTGC
CCTCGATCTCTTCGTCCCTCGATCTCTTCCTCGATCTCTTCGTCCCTCCA
TATTTATATTCCTCCCTGCCTGCCTCGTTCTTGTTGATCCTCCGTCCCTC
CCTCCGTCCCTCCCTCATCCGTTTCTCCCTCGCTCTCTCCCTCACTCCCC
TCCACCCTTCGCCACCGCCTTTGCCTTCGACCACTGCCGACGCGTGGGCT
TCACCTCTCTTCGCCCCTCCCGCCTGCTTACACAATCCTTGTTGATTCGC
TCGCGGTGCGTTTTGCTACCCCGAAAACGAACAGCTGCGGTCTTTTCGTC
GTGAGTACGGCGGTCGGTGGCGTCCCCGAGGTGCTGCCGCGGCCGATGAT
CAAGTTCGCGGAGCCGACGGTGGAGGACTTGACCGACGCCCTCTCGGACG
CGATACCCCTCGCCAGAAAAGTCGTGCCGAGCGACTTCCACGCCAAGGCG
CGAGATACACCTTCGTCCCCGTGCTCCGTGTGTAGCAGCAGGGGCGCCGG
CGGGGGGGCGGGGCGTAATTGTAGTGAGCAATCGGCGTTCGTGCTGCAAC
CCTCCACACCATTGGGTGTTTGTTTGACAACGCGATATCTGGCTGGTGCT
GCCTGCAGCCACTCGCCGTTGGCATCTGTCCGGAGAGTGTCGAAAGGGTA
GGAGAGCAATGTGCGGGAATGTGCAGGGGAGGTGCTAGCTTCCGCATGAC
GAGCGACGTCGGTGCAGATTCCAGGAGGAGGCTCGGCCATTGTTTTTGTT
TTTAAATCCAGTGTCGAATGCCTCGGGGACATTGGAATTCCGACGATGAG
GCATTTTTTTTCAACCGGTTCTCCTGTCCCGCGAGCCCCCATCTCCAGCG
CCGCATACAACACGAAGCGGAAGCGAGATCTCGCCAGGTGCTGCCGGAAT
GGTTTTTAACCCCCCCCCTCCTTCTGTTCTCTCGTCGTTTCGTTTTTCGT
GACAAGCAGGTGAGGGGGATGTACAGCTGGGCGGACGTCGCGGAGCGAAC
AGAGAGGGCGTACGAACGAGCGCTCAAGGCCCCGCCGCCCAGCCTCGTCC
GGAGATTCAAGGTACGCACCGCGCTCGCTCCTCGTGTGTGGAGCAGCCAG
CACGCCGCGACCCGTGCCTTCACTTTTGAGCAAGGAAGCAGAAGCCACGT
GTCGTGATCGGGATCGCTGTCGCACTGTTTGTGCTGGTCTGAATGTGCGC
GCCTCGGGTTGCGAAGTAATATCCACTCAACACACTTGCCGCAGTCGAAG
TCATTGAGTGGGTCAGTACGTTTTTTTCCTGGCTAGCGGGACCAATCCCT
GCCGCGCGCAAGGTTGGTTCAAGAGAAACTGCTGATCTTATGTGTGCTTT
CGGCGAACGAAGCGGACGGACTCTGTCCCGGCGCACACCCTCCACCGTGC
TGCCCGACGGTGACAACAGCCTTGTGCATGCGACCAGCCGTGGTGCTCAC
TCTTTCAAACGGGCCATCGGTACTCTGAGCCCGTTGGCGAAATCGTGACC
GGCGCCACCATGAGTAAACAAGCAGCGGGGATGGAACAGACAGGAGGAGC
AGTCTTTCTTCCTGCATCCGCTGTCTTGTCCTTCGTGTCGCCCCAATCTA
CTACAACTTCCGCCCCTCATGTCAGCGCTCGCCCGGCGTCTCGCGCACGC
GGTCAATCTTAAACCTTCAATTGGTCATATTCATCATTTTCACTCCACAG
CCGCATCGGAGGGTGTGAGCATCAATAGGACGACTTAATCCGCTCTAATT
CCTAATAATGTGTTGTTCTATCATTCAACAGGCGTATCGGAGGGTGGGCA
TCTTCGGACAGGCGGTGTGCTGCTTCTTGGCGGCGATGCTGCATCTGCTC
TGGCGGCTGGTAGATAGGATCTGGCCAAGCCAGGACATCGAGCTCGCACC
AGAGTTTCCGAGCGCGCGGCAGGCGAGGGGGTTCGAGGCCAACCCCTGGG
CGCCGTCGAAGGTACGGGAGCCCCCTTACTCCCTAGCTTGTCCCCCCCCC
CCGTTCCCTGGAGCCTGGTCGGCGAAATACCGGCGTGAGTTACGTTCTTG
CTTTGTGGGGATGTGAAGTTCATCGTCGTATGGCTTTGGTTTGCATGACC
ATGAGTGCTCCGCCTCCTGCTCCCATTCCTTCTAAGTATTTCGTGTGCGA
TAGCTGGATTCGTCTTGGTCGTCCTAGGGGTTGGTGGGGTTGTCTCCCGT
GCTGTTTTTCTTCGGCCCAGGAGGTTGTCTTGCCTTGGATGGTGTTTATG
GAGTCCGTTCTTGCGGGTTCACTGACGGCGGCCACTCATTTTTTGGTGGT
GTTGTGTCTTTGAATTGCTGGGCACGATGCGCCCGCCTCGTAGCCGTCGG
TAGGGATGCCGAAGAAAGTGTGGTTGCATAAACGCAACTGCAGCATCAGT
ATCAACAACAGCATATCCGTTGGTTTCCCCAGACCCCCCCTCCGCCTACA
TCGCGCCTATCAAATGGAAAGGAAACCCTATGGAAGAGTGGTTGTCGAAA
GCTAGAGCACGCGGGGGAAATGCGGGAGTGAGGAGAGGCTGCTGAACCGG
TAGGGGGCTGCATGATGAAGCAATCGCAGGACAGGCGTTCAACTACCGCG
AGCCAAGAAAGCAACCAGCATCACGAGCAGGGTACTTAGGCGTACAAAAA
GATCGTACGCAAAGATACAGCACGGAGTAGCTGAAATGCCTTGTGTTTTA
TCGACATTGTAAGCAAATGCCTGAAGAGCAATCGCCACCCACAAACGGCG
AGTCTCAACGGAAGGCACGGGGGGCGGATGACGCAGACACTTTTCGGTGG
GGCGGAGGAAAGCAGGTGCAGACGGTGGCTTTCCTCGTCATTGCTCAAAT
GTAGCGTGCTGGCCAGCTTCATCGATGGCGCATTGCCATATTTTGCCAAC
GTCTACAAACCGCTTTCCAAACCGATACATCGCGCCAGGTTTGGTAGAAT
CAACCCTTGCACCCTTACCTGACTGCTAGTCATGCGCACTAACGATTTGT
CTGGGCGGAAAGCGAATCCCCCCTGCCCCCGCCCTCCGTATCCCGGGACC
CGCTGGGTGTGACAAATACACACGTCGCCTCACCTCGTGCGCCCTCTTGC
CGACGCACGATGTGTACATGACGGCGCGTGACACTTGTTTGATTTGTTTG
TGTGTGCCCCTCCGCCGTGCCTTTGGGTATTCCGGCATCGATGCACCACT
GAGCTGCAAATATACCCGGACGGGACTCGCCGCTGACCCCACTCGCTGTG
TTCATCCCTCCCTGGCCCTTTCGCCTTCCCCTTCGCGCCAATAGAGCTCG
GCGTCAAGGCGAGACGGTTCTTCTCTGCCCCTTCAAAGATAGCGCTGTGT
GCAAATGGCCCCGTCACTCCCCGCTCCTGCGTCCGGCCCTGCCGAGCAGT
CTGCTTGTGGAAACGGGTTTCGATTTCGACTGTCTCGGAGTTGAGGACAA
GAGTTCCTGGCCGTAGAGCACTGCATCCCTAGAGAACAAGAACGTGACCC
CTCCTGAGAATGAGGAGCGCGAAACGCTGCGTTGAGCGTGCCGCGTTGTG
GCGATGTCACAGACCTTCGTGCGTGCGTGCGTGCGTGTGTCTTCAATAGC
ATTAGCCGCGCAATGTGTGCGTACCAATTTTCTTTGGCGCCGGCCTAGAC
ATAGTTTTTACTGTGTTTCCCCATGTTTCGATGTACCAACCGGGGTAACA
GAGGAGGAAAGGTGCCCAAGGGTTTTTGTCTCTCGTCTTAGCTAATTGTT
AGTTACCCAACCTTCCGCCTGCGGTACTAGGCAACCTTCGTGCGTGAAAT
GGGAATGGTTTCCAGCGGCATCTTGAATTGCTTTCTGCGGTGAGAGTCGG
TCCGACTTCAATTGGACGAGCGTCTGGGTGGGGTACGGATGACAGCTGCG
AGCCGCCATTGCTTTCGTGTGTTGAGGCCGTGTTGGGGCAGTGAAACAAA
GCGCCGGCCAAGGGTCAAGCTGTAGAAATCGACGATAGGGCCGCAACCTG
AGGTGTAACTCTCCCCGGCCCCACTCCGAACCTCGACCACCACAATCGCT
GCTGGACGACTACAACAACTAGCAATTGCGTTATTTTTTTTACCGCCGAT
GGACGCTTGTTACTTTTGTCAAATTTATATCAGTTCCTTTGCTGTCCAAG
CGGACGCATCGAAGGTACCCGACCGTAGGCGCGGGTCCTCCGAACTCAGA
TTGGTGTGGTTGGTCAGCAGCTCCGAGTCGTGCACGTCTATTGACGATGA
GGGCACACGGAGGCGTCGCTGCTACTCGGGCAAGATGAGGCGACGCGGAA
TATATGCAAGATGGAGACACCGGGAGTCGCGTACGCAAATGGGG back to topCoding sequence (CDS) from alignment at P-fluviatile_contig75:451871..459814- >mRNA_P-fluviatile_contig75.14043.1 ID=mRNA_P-fluviatile_contig75.14043.1|Name=mRNA_P-fluviatile_contig75.14043.1|organism=Porterinema fluviatile SAG_2381|type=CDS|length=1440bp|location=Sequence derived from alignment at P-fluviatile_contig75:451871..459814- (Porterinema fluviatile SAG_2381) ATGAATAGAGCTAGAGAAGAAACGGCCGACAGCGTCCACGCGGCATCTGG TGCAAAGCGACATTCCAAGCTGCGTAAACGGTGCAAGAGATGAATAGAGC TAGAGAAGAAACGGCCGACAGCGTCCACGCGGCATCTGGTGCAAAGCGAC ATTCCAAGCTGCGTAAACGGTGCAAGAGGTACCGAGTGTGCATGGTGTGC GACTTCTTCTACCCCCGGCTGGGTGGTGTAGAGATGCACATCTGGTCGCT CAGCCAGTGCCTTCTGCGGCGCGGCCACCGGGTGGTCGTCATCACGCACT GCTACGACAACCGCAAAGGCGTGCGGTACATGACCAACGGGCTCAAGGTA CCGAGTGTGCATGGTGTGCGACTTCTTCTACCCCCGGCTGGGTGGTGTAG AGATGCACATCTGGTCGCTCAGCCAGTGCCTTCTGCGGCGCGGCCACCGG GTGGTCGTCATCACGCACTGCTACGACAACCGCAAAGGCGTGCGGTACAT GACCAACGGGCTCAAGGTGTACTACGTGCCGCTGGTGCCTGTGGTGGATG GGGACTGCATGCCGACGCTCTGCGCTTTCTTCCCCATCTTCAGGCAGATC CTCATCCGCGAGCGCATCACCCTCGTCCACGGGCACCAGGCCTCCTCCGT CATGTCCCACGAGGCCATTCACTTCGCCAAGACCATGGGCTACCGGGTGG CCTACACGGATCACTCCCTCTTCGGCTTCGCGGATGCCGCCAGGTGTACT ACGTGCCGCTGGTGCCTGTGGTGGATGGGGACTGCATGCCGACGCTCTGC GCTTTCTTCCCCATCTTCAGGCAGATCCTCATCCGCGAGCGCATCACCCT CGTCCACGGGCACCAGGCCTCCTCCGTCATGTCCCACGAGGCCATTCACT TCGCCAAGACCATGGGCTACCGGGTGGCCTACACGGATCACTCCCTCTTC GGCTTCGCGGATGCCGCCAGCATCCACCTGAACAAGCTGATGAAGTTCAC CATGTGCAGCGTGGACCACGCCATCTGTGTGAGCAACACCTGCCGGGAGA ACCTGGTGGTCCGCGCGACGCTGCCACCGGAGTGCATCTCGACCATCCCC AACGCGATCGACCCGTCCAAGTTCACCCCGGACCCTTCCGCGAGGTTCCC CAAGGGCACCATTAACGTCGTCATCATGAGCCGCCTGGTGTATCGCAAGG GATAGCATCCACCTGAACAAGCTGATGAAGTTCACCATGTGCAGCGTGGA CCACGCCATCTGTGTGAGCAACACCTGCCGGGAGAACCTGGTGGTCCGCG CGACGCTGCCACCGGAGTGCATCTCGACCATCCCCAACGCGATCGACCCG TCCAAGTTCACCCCGGACCCTTCCGCGAGGTTCCCCAAGGGCACCATTAA CGTCGTCATCATGAGCCGCCTGGTGTATCGCAAGGGATAG back to top
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