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Homology
BLAST of mRNA_P-fluviatile_contig12.1501.1 vs. uniprot
Match: A0A6H5KS31_9PHAE (PUM-HD domain-containing protein n=1 Tax=Ectocarpus sp. CCAP 1310/34 TaxID=867726 RepID=A0A6H5KS31_9PHAE) HSP 1 Score: 341 bits (875), Expect = 1.100e-95 Identity = 392/543 (72.19%), Postives = 416/543 (76.61%), Query Frame = 3
Query: 2262 RDLDGGGGMHAGESMRMDHHLRGG--ERIRGGGDMGSMXXXXXXXXXXXXXXXXXXDHRDLARRGSGPD--------------------HLRHGGGRDGIGGGMLMGIGXXXGGSSGRSGLSSGGYSGDPRGGM-GRDRGLXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXAGRGSLLDEFRSSIGKNRKWELQDLHGHTVQFCRDQHGSRFIQQKLEVSSEQDKEAFFDEILPXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXVVSTTAKTEGQYLHSHIQFIIDGFVGQVEKLSMHAYGCRVIQRILEHCIDDQKQAILEEIKESFSVLIQDQXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXGVLIKHLLYGHSEGTSLLQVMVCDPYANYVVQKIIDVADQDQRETIVMEIRAHAAQLKRYTFGKHIISRLEKLSGKKM 3821
RD+DGG M+ +R DHHLRGG ER+RGG +MG M + R + RG HLR+GG RDG G++MG+G G GGY GDPRGGM R+RGL XXXXXXX AGRGSLLD+FRSSIGKNRKWELQDLHGHTVQFCRDQHGSRFIQQKLEVS+++DKEAFF+EILPXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXVVSTTAKTEGQYLHSHIQFIIDGFVGQVEKLSMHAYGCRVIQRILEHCID+QKQ ILEEIK XXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXX LI+HLLYGHS+GTSLLQVMVCDPYANYVVQKIIDVADQ+QR+TI+MEI+AHAAQLKRYTFGKHIISRLEKLSGKKM
Sbjct: 343 RDMDGG--MYG--DLRADHHLRGGGGERMRGG-EMGGMRGAA--------------EQRGMGMRGXXXXXXXXXXXXXXXXXXXXXXXXHLRNGG-RDG---GLMMGMGGGRG--------PGGGYPGDPRGGMRDRERGLAGGVGGAGGRPGMAXXXXXXXGSIGVGG----------------AGRGSLLDDFRSSIGKNRKWELQDLHGHTVQFCRDQHGSRFIQQKLEVSTDEDKEAFFNEILPXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXVVSTTAKTEGQYLHSHIQFIIDGFVGQVEKLSMHAYGCRVIQRILEHCIDEQKQVILEEIKXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXLIQHLLYGHSDGTSLLQVMVCDPYANYVVQKIIDVADQEQRQTIIMEIKAHAAQLKRYTFGKHIISRLEKLSGKKM 838
BLAST of mRNA_P-fluviatile_contig12.1501.1 vs. uniprot
Match: D7FWZ0_ECTSI (PUM-HD domain-containing protein n=1 Tax=Ectocarpus siliculosus TaxID=2880 RepID=D7FWZ0_ECTSI) HSP 1 Score: 290 bits (743), Expect = 1.740e-81 Identity = 311/332 (93.67%), Postives = 323/332 (97.29%), Query Frame = 3
Query: 2826 GHTVQFCRDQHGSRFIQQKLEVSSEQDKEAFFDEILPXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXVVSTTAKTEGQYLHSHIQFIIDGFVGQVEKLSMHAYGCRVIQRILEHCIDDQKQAILEEIKESFSVLIQDQXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXGVLIKHLLYGHSEGTSLLQVMVCDPYANYVVQKIIDVADQDQRETIVMEIRAHAAQLKRYTFGKHIISRLEKLSGKKM 3821
GHTVQFCRDQHGSRFIQQKLEVS+++DKEAFF+EILP XXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXVVSTTAKTEGQYLHSHIQFIIDGFVGQVEKLSMHAYGCRVIQRILEHCID+QKQ ILEEIK+SFSVLIQDQXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXX LI+HLLYGHS+GTSLLQVMVCDPYANYVVQKIIDVADQ+QR+TI+MEI+AHAAQLKRYTFGKHIISRLEKLSGKKM
Sbjct: 212 GHTVQFCRDQHGSRFIQQKLEVSTDEDKEAFFNEILPHTQSLMXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXVVSTTAKTEGQYLHSHIQFIIDGFVGQVEKLSMHAYGCRVIQRILEHCIDEQKQVILEEIKDSFSVLIQDQXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXLIQHLLYGHSDGTSLLQVMVCDPYANYVVQKIIDVADQEQRQTIIMEIKAHAAQLKRYTFGKHIISRLEKLSGKKM 543
BLAST of mRNA_P-fluviatile_contig12.1501.1 vs. uniprot
Match: A0A835YYE4_9STRA (Armadillo-type protein (Fragment) n=1 Tax=Tribonema minus TaxID=303371 RepID=A0A835YYE4_9STRA) HSP 1 Score: 249 bits (635), Expect = 9.100e-70 Identity = 264/333 (79.28%), Postives = 278/333 (83.48%), Query Frame = 3
Query: 2826 GHTVQFCRDQHGSRFIQQKLEVSSEQDKEAFFDEILPXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXVVSTTAKTEGQYLHSHIQFIIDGFVGQVEKLSMHAYGCRVIQRILEHCIDDQKQAILEEIKESFSVLIQDQXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXGVLIKHLLYGHSEG-TSLLQVMVCDPYANYVVQKIIDVADQDQRETIVMEIRAHAAQLKRYTFGKHIISRLEKLSGKKM 3821
GHTVQFCRDQHGSRFIQQKLEV+SE +K AFF+E++P XXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXX VV TAK EG YLHSHIQFIID F+GQVEKLS HAYGCRVIQRILEHCID Q+ +LEEI+ SFS LIQDQXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXX G LI HL +GH+EG SLLQVMVCDPYANYVVQKIIDVAD +QRE I+ EIRAHAAQLKRYTFGKHIISRLEK+SGKKM
Sbjct: 1 GHTVQFCRDQHGSRFIQQKLEVASEAEKAAFFEEVVPHAQSLMTDVFGNYVIQKLFDHGGPDQRENLASXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXEVVCATAKAEGAYLHSHIQFIIDAFMGQVEKLSTHAYGCRVIQRILEHCIDAQRDPVLEEIRNSFSALIQDQXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXRGALIHHLTHGHAEGQASLLQVMVCDPYANYVVQKIIDVADAEQREGIITEIRAHAAQLKRYTFGKHIISRLEKISGKKM 333
BLAST of mRNA_P-fluviatile_contig12.1501.1 vs. uniprot
Match: A0A1V9YTD6_9STRA (PUM-HD domain-containing protein n=1 Tax=Thraustotheca clavata TaxID=74557 RepID=A0A1V9YTD6_9STRA) HSP 1 Score: 150 bits (380), Expect = 6.000e-33 Identity = 181/358 (50.56%), Postives = 221/358 (61.73%), Query Frame = 3
Query: 2754 RGSLLDEFRSSIGKNRKWELQDLHGHTVQFCRDQHGSRFIQQKLEVSSEQDKEAFFDEILPXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXVVSTTAKTEGQYLHS--HIQFIIDGFVGQVEKLSMHAYGCRVIQRILEHCIDDQKQAILEEIKESFSVLIQDQXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXGVLIKHLLYGHSEGTSLLQVMVCDPYANYVVQKIIDVADQDQRETIVMEIRAHAAQLKRYTFGKHIISRLEKLSGKKM 3821
R LLDEFR++ K +KWEL D GH V+F +DQHGSRFIQQKLE + K+ F EI P XXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXX++ A G + S FI+ FVG V L+ H YGCRVIQR+LE+C + Q IL+EI + +L++DQXXXXXXXXXXXXXXXXXXXXXXX V+++H++ + G LQVM+ D YANYVVQK+IDVAD ++RE +V+ I+ A+ LKR+ FGKHI++RLEKL+G+K+
Sbjct: 439 RSVLLDEFRATT-KTKKWELIDARGHIVEFAKDQHGSRFIQQKLETAKADIKDIVFSEIYPVALSLMTDVFGNYVIQKFFDYGNPEHLLLLLRTITGRVLEXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXILPWKASASGSHQRSIERGNFILSAFVGNVYSLATHPYGCRVIQRVLENCSEAQMAPILKEIHDCCCLLVEDQXXXXXXXXXXXXXXXXXXXXXXXKVYPDIVRFSYHKFASNVIEKCLMYASVNQLHVIVQHVMEPNEHGECPLQVMMKDQYANYVVQKLIDVADAEEREQMVVIIKTQASHLKRFNFGKHILNRLEKLTGQKI 795
BLAST of mRNA_P-fluviatile_contig12.1501.1 vs. uniprot
Match: A0A6G0XDT3_9STRA (PUM-HD domain-containing protein n=2 Tax=Aphanomyces euteiches TaxID=100861 RepID=A0A6G0XDT3_9STRA) HSP 1 Score: 145 bits (366), Expect = 2.150e-31 Identity = 115/353 (32.58%), Postives = 157/353 (44.48%), Query Frame = 3
Query: 2763 LLDEFRSSIGKNRKWELQDLHGHTVQFCRDQHGSRFIQQKLEVSSEQDKEAFFDEILPXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXVVSTTAKTEGQYLHSHIQFIIDGFVGQVEKLSMHAYGCRVIQRILEHCIDDQKQAILEEIKESFSVLIQDQXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXGVLIKHLLYGHSEGTSLLQVMVCDPYANYVVQKIIDVADQDQRETIVMEIRAHAAQLKRYTFGKHIISRLEKLSGKKM 3821
LLD+FR+++ K ++WEL D GH V+F +DQHGSRFIQQKLE + K+ F E+ P V+ + +Y+ F++ F G V ++ H YGCRVIQR+LEHC D Q IL EI+++ S+L++DQ XXXXXXXXXXXX V+++H++ S+G LQVM+ D YANYVVQK+IDVAD +R+ +V I+ A LKR+TFGKHI++RLEKL+G KM
Sbjct: 386 LLDDFRATV-KTKQWELIDARGHIVEFAKDQHGSRFIQQKLETAKTDIKDIVFSEVFPVALALMTDVFGNYVVQKFFDHGNPDHVLQLMHIINGRMIDLALQMYGCRVIQKALESDYHAEKLELICELEGQVLRCVKDQNANHVVQKCIEVLPWKDPSASRYIE-RASFLLAAFEGNVYSMATHPYGCRVIQRVLEHCSDVQMATILVEIQDACSLLVEDQYXXXXXXXXXXXXQPAERSALINKIYPDIVRFSYHKFASNVIEKCLMYASVEQLHVIMRHVMDA-SDGECPLQVMMKDQYANYVVQKLIDVADASERDKMVAIIKTQATLLKRFTFGKHILNRLEKLTGYKM 735
BLAST of mRNA_P-fluviatile_contig12.1501.1 vs. uniprot
Match: W7T8B7_9STRA (Pumilio RNA-binding repeat containing protein n=1 Tax=Nannochloropsis gaditana TaxID=72520 RepID=W7T8B7_9STRA) HSP 1 Score: 132 bits (332), Expect = 8.310e-31 Identity = 134/195 (68.72%), Postives = 156/195 (80.00%), Query Frame = 3
Query: 3246 YLHSHIQFIIDGFVGQ---VEKLSMHAYGCRVIQRILEHCIDDQKQAILEEIKESFSVLIQDQXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXGVLIKHLLYGHSEGTSLLQVMVCDPYANYVVQKIIDVADQDQRETIVMEIRAHAAQLKRYTFGKHIISRLEKLSGKKM 3821
+L ++FII+ FVGQ VEK S H YGCRVIQRILEHC QK AIL+EI++S S LIQDQXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXX + + +SLLQVMV DPY NYVVQKI+D+AD Q+E + +R+ A QL+RYT+GKHI+ RLEK+SG+K+
Sbjct: 17 FLLPQLEFIINAFVGQGNNVEKFSTHPYGCRVIQRILEHCTGAQKSAILDEIRKSSSTLIQDQXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXVRSVLDKSSLLQVMVRDPYGNYVVQKILDIADDRQQEALCTYLRSCAPQLRRYTYGKHILVRLEKISGEKL 211
BLAST of mRNA_P-fluviatile_contig12.1501.1 vs. uniprot
Match: A0A067D2Q5_SAPPC (PUM-HD domain-containing protein n=3 Tax=Saprolegnia TaxID=4769 RepID=A0A067D2Q5_SAPPC) HSP 1 Score: 140 bits (353), Expect = 1.010e-29 Identity = 178/356 (50.00%), Postives = 220/356 (61.80%), Query Frame = 3
Query: 2763 LLDEFRSSIGKNRKWELQDLHGHTVQFCRDQHGSRFIQQKLEVSSEQDKEAFFDEILPXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXVV---STTAKTEGQYLHSHIQFIIDGFVGQVEKLSMHAYGCRVIQRILEHCIDDQKQAILEEIKESFSVLIQDQXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXGVLIKHLLYGHSEGTSLLQVMVCDPYANYVVQKIIDVADQDQRETIVMEIRAHAAQLKRYTFGKHIISRLEKLSGKKM 3821
LL++FR++ K++KWEL D GH V+F +DQHGSRFIQQKLE + K+ F EI P XXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXX++ + A G FI+ F+G V L+ H YGCRVIQR+LEHC + Q IL+EI + +L++DQXXXXXXXXXXXXXXXXXXXXXXXX V++ H++ + G LQVM+ D YANYVVQK+IDVAD ++RE +V+ I+ A+ LKR+ FGKHI++RLEKL+G+K+
Sbjct: 424 LLNDFRNT-NKHKKWELLDARGHMVEFAKDQHGSRFIQQKLETAKADIKDIVFAEIYPVALTLMTDVFGNYVIQKFFDFGTSHHLSLLLRTISGRVLEXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXILPWKTPVAMDVGG-------FILSAFLGNVYSLATHPYGCRVIQRVLEHCTEAQMAPILKEIHDCCCLLVEDQXXXXXXXXXXXXXXXXXXXXXXXXVYPDIVRFSYHKFASNVIEKCLMYASVHQLHVIVAHVMEANERGECPLQVMMKDQYANYVVQKLIDVADAEERERMVVIIKTQASHLKRFNFGKHILNRLEKLTGQKI 771
BLAST of mRNA_P-fluviatile_contig12.1501.1 vs. uniprot
Match: A0A485KZD8_9STRA (Aste57867_13784 protein n=1 Tax=Aphanomyces stellatus TaxID=120398 RepID=A0A485KZD8_9STRA) HSP 1 Score: 140 bits (352), Expect = 1.340e-29 Identity = 171/357 (47.90%), Postives = 216/357 (60.50%), Query Frame = 3
Query: 2754 RGSLLDEFRSSIGKNRKWELQDLHGHTVQFCRDQHGSRFIQQKLEVSSEQDKEAFFDEILPXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXVVSTTAKTEGQYLHSHIQFIIDGFVGQVEKLSMHAYGCRVIQRILEHCIDDQKQAILEEIKESFSVLIQDQXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXGVLIKHLLYGHSEGTSL-LQVMVCDPYANYVVQKIIDVADQDQRETIVMEIRAHAAQLKRYTFGKHIISRLEKLSGKKM 3821
R LL++FR++I K +KWEL D GH V+F +DQHGSRFIQ KLE + K+ F EI P XXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXX ++ T +Y+ F++ FVG V ++ H YGCRVIQR+LE+C D Q IL EI+++ +++++D XXXXXXXXXXXXXXXXXXXXXXXXXX V+++H++ G S LQVM+ D YANYVVQK+IDVAD +R+ + I+ A+ LKR+TFGKHI++RLEKL+G+K+
Sbjct: 418 RSVLLEDFRATI-KTKKWELVDARGHIVEFAKDQHGSRFIQLKLETAKADIKDIVFSEIFPVALALMTDVFGNYVIQKFFDHGNLEHVMQLMRVIQGRMLDLALQMXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXIEILPWKDATASRYME-RAAFLLASFVGNVSIMATHPYGCRVIQRVLENCSDAQMTPILHEIQDACALMVEDXXXXXXXXXXXXXXXXXXXXXXXXXXXPDIVRFSYHKYASNVIEKCLLYASVDQLRVIMRHVMDGKSPAVECPLQVMMKDQYANYVVQKLIDVADASERDKMASIIKTQASVLKRFTFGKHILNRLEKLTGQKI 772
BLAST of mRNA_P-fluviatile_contig12.1501.1 vs. uniprot
Match: A0A024UJZ7_9STRA (PUM-HD domain-containing protein n=2 Tax=Aphanomyces invadans TaxID=157072 RepID=A0A024UJZ7_9STRA) HSP 1 Score: 137 bits (344), Expect = 1.420e-28 Identity = 99/359 (27.58%), Postives = 136/359 (37.88%), Query Frame = 3
Query: 2754 RGSLLDEF---RSSIGKNRKWELQDLHGHTVQFCRDQHGSRFIQQKLEVSSEQDKEAFFDEILPXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXVVSTTAKTEGQYLHSHIQFIIDGFVGQVEKLSMHAYGCRVIQRILEHCIDDQKQAILEEIKESFSVLIQDQXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXGVLIKHLLYGHSEGTSLLQVMVCDPYANYVVQKIIDVADQDQRETIVMEIRAHAAQLKRYTFGKHIISRLEKLSGKKM 3821
R LL++F + K KWEL D GH V+F +DQHGSRFIQ KLE + K+ F E+ P + S F+++ F V+ +S H YGCRVIQR+LE C D+Q IL EI++S+ +L+ DQ V++ H+L G LQ+M+ D YANYVVQK+IDVAD +R+ + I++HAA LKRYT GKHI++RLEKL+G+K+
Sbjct: 447 RSVLLEDFDFRTMTTSKPSKWELVDARGHIVEFSKDQHGSRFIQLKLETAKPDIKDIVFSEVAPVALQLMTDVFGNYVIQKFFDHGNPQHITQLMRVIQGHMLDLALHMYGCRVIQKALESTDDLDLKLDLICELQGHVLHCIKDQNGNHVIQKCIEILPWKVPSVVEDMSRASFLLESFENNVDTMSTHPYGCRVIQRVLEKCSDEQMAPILREIQDSYGLLVNDQYGNYVIQHVLQHGPPSQRTALINRIYPDIIRFSYHKFSSNVIEKCLSYASVKQLRVIMHHILNSSDNGECPLQIMMKDQYANYVVQKLIDVADSTERDKMAAIIKSHAANLKRYTHGKHILNRLEKLTGQKI 805
BLAST of mRNA_P-fluviatile_contig12.1501.1 vs. uniprot
Match: A0A4D9CQB4_9STRA (PUM-HD domain-containing protein n=1 Tax=Nannochloropsis salina CCMP1776 TaxID=1027361 RepID=A0A4D9CQB4_9STRA) HSP 1 Score: 133 bits (335), Expect = 1.880e-27 Identity = 138/209 (66.03%), Postives = 162/209 (77.51%), Query Frame = 3
Query: 3213 VVSTTAKTEGQY---LHSHIQFIIDGFVGQ---VEKLSMHAYGCRVIQRILEHCIDDQKQAILEEIKESFSVLIQDQXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXGVLIKHLLYGHSEGTSLLQVMVCDPYANYVVQKIIDVADQDQRETIVMEIRAHAAQLKRYTFGKHIISRLEKLSGKKM 3821
V+S +K +Y L ++FII+ FVGQ VEK S H YGCRVIQRILEHC QK AIL+EI++S S LIQDQXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXX + + +SLLQVMV DPY NYVVQKI+D+AD Q+E + +R+ A QL+RYT+GKHI+ RLEK+SG+K+
Sbjct: 625 VLSVRSKDHPEYAAFLLPQLEFIINAFVGQGNNVEKFSTHPYGCRVIQRILEHCTGAQKSAILDEIRKSSSTLIQDQXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXVRSVLDKSSLLQVMVRDPYGNYVVQKILDIADDRQQEALCTYLRSCAPQLRRYTYGKHILVRLEKISGEKL 833
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 | 175.6 |
| Seed ortholog evalue | 7.6e-41 |
| Seed eggNOG ortholog | 2880.D7FWZ0 |
| Preferred name | PUF2 |
| KEGG ko | ko:K17943,ko:K17944 |
| GOs | GO:0000003,GO:0000288,GO:0000956,GO:0001101,GO:0002252,GO:0002376,GO:0003006,GO:0003008,GO:0003674,GO:0003676,GO:0003723,GO:0003727,GO:0003729,GO:0003730,GO:0005488,GO:0005515,GO:0005575,GO:0005622,GO:0005623,GO:0005634,GO:0005737,GO:0005773,GO:0005829,GO:0005886,GO:0006139,GO:0006401,GO:0006402,GO:0006417,GO:0006725,GO:0006807,GO:0006810,GO:0006884,GO:0006950,GO:0006952,GO:0006970,GO:0007049,GO:0007097,GO:0007276,GO:0007281,GO:0007338,GO:0007346,GO:0007610,GO:0007611,GO:0007612,GO:0007635,GO:0008150,GO:0008152,GO:0008285,GO:0008306,GO:0008355,GO:0008361,GO:0009056,GO:0009057,GO:0009414,GO:0009415,GO:0009566,GO:0009605,GO:0009607,GO:0009615,GO:0009628,GO:0009651,GO:0009819,GO:0009889,GO:0009890,GO:0009892,GO:0009893,GO:0009894,GO:0009896,GO:0009987,GO:0009992,GO:0010035,GO:0010468,GO:0010556,GO:0010558,GO:0010604,GO:0010605,GO:0010608,GO:0010628,GO:0010629,GO:0016020,GO:0016043,GO:0016070,GO:0016071,GO:0017148,GO:0019219,GO:0019222,GO:0019439,GO:0019725,GO:0019953,GO:0022402,GO:0022412,GO:0022414,GO:0030104,GO:0030154,GO:0031323,GO:0031324,GO:0031325,GO:0031326,GO:0031327,GO:0031329,GO:0031331,GO:0032268,GO:0032269,GO:0032501,GO:0032502,GO:0032504,GO:0032535,GO:0032991,GO:0034248,GO:0034249,GO:0034641,GO:0034655,GO:0035046,GO:0035770,GO:0036464,GO:0040019,GO:0042048,GO:0042127,GO:0042221,GO:0042592,GO:0043073,GO:0043170,GO:0043186,GO:0043207,GO:0043226,GO:0043227,GO:0043228,GO:0043229,GO:0043231,GO:0043232,GO:0043487,GO:0043488,GO:0044237,GO:0044238,GO:0044248,GO:0044260,GO:0044265,GO:0044270,GO:0044424,GO:0044444,GO:0044464,GO:0044703,GO:0045495,GO:0045786,GO:0045787,GO:0045930,GO:0045935,GO:0045995,GO:0046483,GO:0046700,GO:0046907,GO:0048468,GO:0048471,GO:0048518,GO:0048519,GO:0048522,GO:0048523,GO:0048609,GO:0048856,GO:0048869,GO:0048878,GO:0050779,GO:0050789,GO:0050793,GO:0050794,GO:0050877,GO:0050890,GO:0050896,GO:0051094,GO:0051171,GO:0051172,GO:0051173,GO:0051179,GO:0051234,GO:0051239,GO:0051240,GO:0051246,GO:0051248,GO:0051252,GO:0051254,GO:0051445,GO:0051446,GO:0051607,GO:0051640,GO:0051641,GO:0051647,GO:0051649,GO:0051656,GO:0051704,GO:0051707,GO:0051726,GO:0051728,GO:0051729,GO:0055082,GO:0060184,GO:0060255,GO:0060293,GO:0061013,GO:0061014,GO:0061157,GO:0061158,GO:0065007,GO:0065008,GO:0071704,GO:0071840,GO:0071944,GO:0080090,GO:0090066,GO:0090304,GO:0097159,GO:0098542,GO:1901360,GO:1901361,GO:1901363,GO:1901575,GO:1901700,GO:1903311,GO:1903313,GO:1990904,GO:2000026,GO:2000112,GO:2000113,GO:2000241,GO:2000243 |
| EggNOG free text desc. | mRNA binding |
| EggNOG OGs | COG5099@1,KOG1488@2759 |
| COG Functional cat. | J |
| Best tax level | Eukaryota |
| Best eggNOG OG | NA|NA|NA |
| BRITE | ko00000,ko03029 |
| Hectar predicted targeting category | other localisation |
| Exons | 13 |
| Model size | 8618 |
| Cds size | 2016 |
| Stop | 1 |
| Start | 1 |
Relationships
The following UTR feature(s) are a part of this mRNA:
| Feature Name | Unique Name | Species | Type | Position |
| 1622815519.460685-UTR-P-fluviatile_contig12:2403872..2406979 | 1622815519.460685-UTR-P-fluviatile_contig12:2403872..2406979 | Porterinema fluviatile SAG_2381 | UTR | P-fluviatile_contig12 2403873..2406979 - |
| 1693562119.0321617-UTR-P-fluviatile_contig12:2403872..2406979 | 1693562119.0321617-UTR-P-fluviatile_contig12:2403872..2406979 | Porterinema fluviatile SAG_2381 | UTR | P-fluviatile_contig12 2403873..2406979 - |
| 1622815519.4713166-UTR-P-fluviatile_contig12:2407018..2408901 | 1622815519.4713166-UTR-P-fluviatile_contig12:2407018..2408901 | Porterinema fluviatile SAG_2381 | UTR | P-fluviatile_contig12 2407019..2408901 - |
| 1693562119.0536811-UTR-P-fluviatile_contig12:2407018..2408901 | 1693562119.0536811-UTR-P-fluviatile_contig12:2407018..2408901 | Porterinema fluviatile SAG_2381 | UTR | P-fluviatile_contig12 2407019..2408901 - |
| 1622815519.4833791-UTR-P-fluviatile_contig12:2409680..2409811 | 1622815519.4833791-UTR-P-fluviatile_contig12:2409680..2409811 | Porterinema fluviatile SAG_2381 | UTR | P-fluviatile_contig12 2409681..2409811 - |
| 1693562119.0623217-UTR-P-fluviatile_contig12:2409680..2409811 | 1693562119.0623217-UTR-P-fluviatile_contig12:2409680..2409811 | Porterinema fluviatile SAG_2381 | UTR | P-fluviatile_contig12 2409681..2409811 - |
| 1622815519.4991364-UTR-P-fluviatile_contig12:2409981..2410185 | 1622815519.4991364-UTR-P-fluviatile_contig12:2409981..2410185 | Porterinema fluviatile SAG_2381 | UTR | P-fluviatile_contig12 2409982..2410185 - |
| 1693562119.070066-UTR-P-fluviatile_contig12:2409981..2410185 | 1693562119.070066-UTR-P-fluviatile_contig12:2409981..2410185 | Porterinema fluviatile SAG_2381 | UTR | P-fluviatile_contig12 2409982..2410185 - |
| 1622815519.5149949-UTR-P-fluviatile_contig12:2410572..2410710 | 1622815519.5149949-UTR-P-fluviatile_contig12:2410572..2410710 | Porterinema fluviatile SAG_2381 | UTR | P-fluviatile_contig12 2410573..2410710 - |
| 1693562119.078151-UTR-P-fluviatile_contig12:2410572..2410710 | 1693562119.078151-UTR-P-fluviatile_contig12:2410572..2410710 | Porterinema fluviatile SAG_2381 | UTR | P-fluviatile_contig12 2410573..2410710 - |
| 1622815519.52761-UTR-P-fluviatile_contig12:2411803..2412011 | 1622815519.52761-UTR-P-fluviatile_contig12:2411803..2412011 | Porterinema fluviatile SAG_2381 | UTR | P-fluviatile_contig12 2411804..2412011 - |
| 1693562119.0861614-UTR-P-fluviatile_contig12:2411803..2412011 | 1693562119.0861614-UTR-P-fluviatile_contig12:2411803..2412011 | Porterinema fluviatile SAG_2381 | UTR | P-fluviatile_contig12 2411804..2412011 - |
| 1622815519.5377052-UTR-P-fluviatile_contig12:2412373..2412494 | 1622815519.5377052-UTR-P-fluviatile_contig12:2412373..2412494 | Porterinema fluviatile SAG_2381 | UTR | P-fluviatile_contig12 2412374..2412494 - |
| 1693562119.0951574-UTR-P-fluviatile_contig12:2412373..2412494 | 1693562119.0951574-UTR-P-fluviatile_contig12:2412373..2412494 | Porterinema fluviatile SAG_2381 | UTR | P-fluviatile_contig12 2412374..2412494 - |
| 1622815519.547935-UTR-P-fluviatile_contig12:2413545..2414300 | 1622815519.547935-UTR-P-fluviatile_contig12:2413545..2414300 | Porterinema fluviatile SAG_2381 | UTR | P-fluviatile_contig12 2413546..2414300 - |
| 1693562119.104145-UTR-P-fluviatile_contig12:2413545..2414300 | 1693562119.104145-UTR-P-fluviatile_contig12:2413545..2414300 | Porterinema fluviatile SAG_2381 | UTR | P-fluviatile_contig12 2413546..2414300 - |
| 1622815519.6320252-UTR-P-fluviatile_contig12:2425838..2425893 | 1622815519.6320252-UTR-P-fluviatile_contig12:2425838..2425893 | Porterinema fluviatile SAG_2381 | UTR | P-fluviatile_contig12 2425839..2425893 - |
| 1693562119.1724088-UTR-P-fluviatile_contig12:2425838..2425893 | 1693562119.1724088-UTR-P-fluviatile_contig12:2425838..2425893 | Porterinema fluviatile SAG_2381 | UTR | P-fluviatile_contig12 2425839..2425893 - |
The following CDS feature(s) are a part of this mRNA:
| Feature Name | Unique Name | Species | Type | Position |
| 1622815519.5601127-CDS-P-fluviatile_contig12:2414300..2414711 | 1622815519.5601127-CDS-P-fluviatile_contig12:2414300..2414711 | Porterinema fluviatile SAG_2381 | CDS | P-fluviatile_contig12 2414301..2414711 - |
| 1693562119.1196792-CDS-P-fluviatile_contig12:2414300..2414711 | 1693562119.1196792-CDS-P-fluviatile_contig12:2414300..2414711 | Porterinema fluviatile SAG_2381 | CDS | P-fluviatile_contig12 2414301..2414711 - |
| 1622815519.5702224-CDS-P-fluviatile_contig12:2417089..2417251 | 1622815519.5702224-CDS-P-fluviatile_contig12:2417089..2417251 | Porterinema fluviatile SAG_2381 | CDS | P-fluviatile_contig12 2417090..2417251 - |
| 1693562119.127748-CDS-P-fluviatile_contig12:2417089..2417251 | 1693562119.127748-CDS-P-fluviatile_contig12:2417089..2417251 | Porterinema fluviatile SAG_2381 | CDS | P-fluviatile_contig12 2417090..2417251 - |
| 1622815519.5800397-CDS-P-fluviatile_contig12:2417476..2418283 | 1622815519.5800397-CDS-P-fluviatile_contig12:2417476..2418283 | Porterinema fluviatile SAG_2381 | CDS | P-fluviatile_contig12 2417477..2418283 - |
| 1693562119.1355577-CDS-P-fluviatile_contig12:2417476..2418283 | 1693562119.1355577-CDS-P-fluviatile_contig12:2417476..2418283 | Porterinema fluviatile SAG_2381 | CDS | P-fluviatile_contig12 2417477..2418283 - |
| 1622815519.5903971-CDS-P-fluviatile_contig12:2421940..2422111 | 1622815519.5903971-CDS-P-fluviatile_contig12:2421940..2422111 | Porterinema fluviatile SAG_2381 | CDS | P-fluviatile_contig12 2421941..2422111 - |
| 1693562119.143049-CDS-P-fluviatile_contig12:2421940..2422111 | 1693562119.143049-CDS-P-fluviatile_contig12:2421940..2422111 | Porterinema fluviatile SAG_2381 | CDS | P-fluviatile_contig12 2421941..2422111 - |
| 1622815519.60318-CDS-P-fluviatile_contig12:2424492..2424846 | 1622815519.60318-CDS-P-fluviatile_contig12:2424492..2424846 | Porterinema fluviatile SAG_2381 | CDS | P-fluviatile_contig12 2424493..2424846 - |
| 1693562119.1512363-CDS-P-fluviatile_contig12:2424492..2424846 | 1693562119.1512363-CDS-P-fluviatile_contig12:2424492..2424846 | Porterinema fluviatile SAG_2381 | CDS | P-fluviatile_contig12 2424493..2424846 - |
| 1622815519.615243-CDS-P-fluviatile_contig12:2425727..2425838 | 1622815519.615243-CDS-P-fluviatile_contig12:2425727..2425838 | Porterinema fluviatile SAG_2381 | CDS | P-fluviatile_contig12 2425728..2425838 - |
| 1693562119.160038-CDS-P-fluviatile_contig12:2425727..2425838 | 1693562119.160038-CDS-P-fluviatile_contig12:2425727..2425838 | Porterinema fluviatile SAG_2381 | CDS | P-fluviatile_contig12 2425728..2425838 - |
The following polypeptide feature(s) derives from this mRNA:
Sequences
The following sequences are available for this feature:
protein sequence of mRNA_P-fluviatile_contig12.1501.1 >prot_P-fluviatile_contig12.1501.1 ID=prot_P-fluviatile_contig12.1501.1|Name=mRNA_P-fluviatile_contig12.1501.1|organism=Porterinema fluviatile SAG_2381|type=polypeptide|length=672bp
MNINVIGGGHGLGSGGLASGGGDKSTGAGDTASPSPPIAGAAFGSSAAIA SSANGGGGLPSGRSRSPGFDVDHKTTSSSSASAAAAAAAASSAAAFLVGA TGSDRDGVGDGGWLGGGGGGGDADDRSVAGRKDVDHAFAGAMLQRSTSAP PVSDHVDGWPRRAPPPTGGDAVDSDYYYYYHAPTSINPRLAGSSRDGIGG GGTGAASSRHLAAPIAQQSHAHSILETTSSSAAGAGRDGSGSSSGRTSPL STVAEQQQQQRNMVNGGTAAGSGSGADEPGRAQTGTGGVAAIGGGGDSSS SGNNNGPSAARGAVGRPALEPAMGAGRYGRGPGDGSLNHPQQQQQQQQAQ FAGSQHRDGYGNSGGVDGDFAGAMGSLSLGPGGGGGKGLQYGGGARSSRM DPYGGGANNNSHHMLDGLRGGPGAGPGGGMGLGLHSGGMMPPSPYNGPQM SPYGGPQQVPAALMGGMPPLTPELHSMGYQLDTRNLPQLPPPDPRFDMRG MGSMGAEQQRGGGDSHSRVVAESLYYPGQQGLGGQGYGLDPRYPRVLQSP RGPTGYGDPMAGLYGQHESQHHQQQTPASPMVASRRLPHDLISGGVGGGG YYGGGGGGSGRTRGRGGGHMDAGSMMSSPRIGAADPYYPGGEMGVYGSGS GSGGGGGRIHGWQRRPRRAGG* back to topmRNA from alignment at P-fluviatile_contig12:2403873..2425893- Legend: UTRpolypeptideCDS Hold the cursor over a type above to highlight its positions in the sequence below. >mRNA_P-fluviatile_contig12.1501.1 ID=mRNA_P-fluviatile_contig12.1501.1|Name=mRNA_P-fluviatile_contig12.1501.1|organism=Porterinema fluviatile SAG_2381|type=mRNA|length=22021bp|location=Sequence derived from alignment at P-fluviatile_contig12:2403873..2425893- (Porterinema fluviatile SAG_2381) GGACGGCTCTCGTGGAGCCACGGGTTCGGTCGACGTGGGCGTATCCCACC
TGAATATGAACATCAATGTGATCGGAGGCGGGCACGGCCTCGGCAGCGGT
GGGCTGGCGAGCGGCGGCGGAGACAAGAGCACTGGCGCGGGCGACACTGC
GTCTCCATCTCCTCCGGTGCGTTGCCGTGCTCGGAACAACGTAGAGACGT
ACCGCAGCTTGTGCTGGCGTGTGTGTGCTGGGAGCCTGTTGTGTACATGG
TTGTGGGAGAGGGGTGGCACACACACACTCTCATCAAAGCACTCTCGCAA
AGGAGCGCCTCTCATTCACTTTCTGGGAGATGTACCATTCGATTTCGTGA
AGGGCACAGCCGGAACACACTGGCGATGATATGAGGCACTTTCGAGTGCA
GTAGGTAGGCTTGTTCAGGAGACCTAGCTCGCTGTCTGCGACTATTGACG
CTACCTTTGCTTTTCTGCGATGATCCCCCTGCATTCAACGCCGAATATCG
TCGCCTAGCCACACAGTGGCCGCGCTCCGTCGTCCGCTGGTATCTCTCGC
GCACCTAACTTTTTTCATGTTTCCAAACAACCATCGAGAAAAACAGCACC
ACTCGTGCAGCGCTTGGCGCACACCCTCGACCTGTCGACCTTTCGCGCAA
CCGTCTGTGACAACGTCGGTTCACAGAAGGCGCAGAACGCATCTGGATAT
GCACAGGAAAGCAGCACCAAGGGCAGGATTTCGCTGCTCATTATTTTTTG
CGGCTTGGATATGTCGGGTATGTTCGCGAACATGGTTCAGGTCGGCCGAG
GTCATCAACGTGCTCATGAAGAGCGAGAGAGAACCAGCCTGTTGCGTGTA
TCTGCGAATCATTGCCATCACCTCTTCCACTCATGTTACAACTGTCCACC
GATAAAGCGCACTCGCTTTGTGCGCTCTCTCCAGATAATTTGCAGTGTGG
ATCATCCACTCCCTCCTCTCCTGAAGCGCACCAAATCTCATCCGAATCTC
TTCTTCTCCTCGTTTCTGTGTCTCTTCTTCCCTGTGCGTTTGTGCAGATT
GCTGGAGCGGCCTTCGGGAGCAGCGCCGCGATCGCCTCCTCCGCGAACGG
CGGGGGAGGCCTGCCCAGCGGTCGGTCGCGCTCCCCCGGCTTCGACGTGG
ACCATAAGACCACCTCCTCCTCCAGTGCCTCCGCTGCAGCCGCCGCCGCA
GCCGCTAGCAGCGCGGCGGCATTCCTCGTGGGCGCCACGGGGTCTGATCG
CGACGGTGTCGGCGACGGCGGCTGGCTAGGGGGAGGAGGAGGAGGAGGCG
ATGCCGATGATCGTTCTGTCGCGGGTAGGAAAGACGTGGACCACGCGTTC
GCCGGTGCCATGCTCCAGAGGTCGACGTCTGCGCCCCCCGTGTCTGACCA
CGTGAGTGTGAGCACTCCTCTTCTGTGCACAGCAGCGTTGCTCAGGTACA
CTGAACCGTTCACTAATTCGGAAAGCTCCGCTGAGAGTGATCGTGGTACC
GGTGCCGGTTCATATCGTCAGGGAATTTTGTCACCGCTGTTCAGGGTATC
GCCGGTTAACCCAAGTGGTTCATGTCGCTTGGCTCGAAGCGATGTCACGA
GATTCCGTTCTCCTAGTGATAAAAAAAAATAATTAGAAAGGGCATCTCTG
CTCAACCGGAATTACGGTTGTAGGTTCAAACCGCACAAACACACACGGTC
GGTCACCCCCTTGCAACGTTCGAAGCTCGAAAGCTCTGTGCAACACAGGA
TTAGTGTACCAGGCCGGCCTCATGAAGTGTGTAATCGACGATATCTCATC
AGGAGTTGCCGAAACGTGCCACTGCCGTAGATCGCATGAGAAATCACCGC
CTCCCCGGTATAAAGCACCCCCCCCAACGCAACGGTATAAAGTAGACAGG
TTAAGGAAAACATTTTTGAGCCGCCTTTGGCAAAGTAGGAAGAAACGATT
GGCCATCGGTGGTCGATCCTGCGGGAACAATGCTCCGTCCTCTCGAGGAC
GCGTGGTCAATGGTCTAACAACCAAGGCATGCAAAACATGAGTACGCCCC
CAACGCAACCCGCCAAGTGTTATGGGACTGGAAATTCAAATCGGAAGTTC
CTCTTCTACGGGTACCCCACAAGGGGCTCTTTCGATGCGAAATACCAACA
TCCCTCATTTTCGCTCCGTGCTTGCCTCATACAGACCCGTTTGCATTCCA
GTTGACGATGATGTGTCCTCCATGGGTGTGTCTGTCTCGGGGCCAAGTTT
CGGCAGCAGCGGTACTCTGTGTGTAATGCGGGTTGAAAATGACTGTCCTG
GATTTCCAAGCGGGGGAAAAACCGAGTCAGAAAAACCACTATATTCCAAC
TCAGGAGCCACGATTTTCCAGGCTGGGAAATTCCCCATTCCAACGAGTCT
CGGACTTAAGGCGGCATCACTGCTGCCGAAACTTGGCTCCGAGACAGATA
CCGTATACGACACAAGATAACACACCCTCTGCTGCCGAAACTTGGCTCCG
AGACAGATACCGCATACGACACAAGATAACACACCCTCTGGACAGATTTT
CAAAGGTCGATTTCTCAGCAACAAAGAGACTTATGATGCCCAAATGGGTG
TCGTTGGAGAGATTTAATCGATACCTTTTTGTTGATTTGTCGCAAGTCAT
TGGCACCATCCATGGCACCATCCTTGATGTGGAGAAATGGAGCTTTAAAA
ATCGGTCCAGGGGGTGAGGTATGTTGTGTCGTATACGGCACGCGAATGGA
GGACACCCCCCCGTAGGCTAGACTGCAAAGTGGTTTGTGTGGATCGAGCA
CGGAGCGAAAATGAACGATGTGGGCATTTCCCATCGACAAGAAAACCCCG
TGGGGTGCCCCATGAAAATCCCCCGAGGGATTTCTGATTCAGCTCCCATA
GCAACTGGCTTTCGAAGAAATCACACCTGGTGATTCATGTTTCAGACACT
TGCGGAGTGATTGTCATCGGGGTGTAATTTCTCATGGAATCTACGGCACG
CACTGGTACCCGTCCTGAGCGTGCAGCAACCGAGCCTCGACAGTCGTCCG
AAAGGGGTCTGGTAGAAACCGTCTTCTACATGCGTTGCAGGTTTTCGTGC
CTCTTGTGTTTTGTTGTGGCAGATGCAGGGAGTCAAGAGATGGATCGAGT
CTGGTAGTTACCACGCGGACCGCATCATGCTTTCACGCACCGACGACGAC
TATGCGCACCTGAGGTCCTCGGTTTTTTGTTTTGTTCTGTTTTTCACTCT
CGAGCAGCCTCCAGCTCCGCAGTCCACCGAAGGCAGTCCACCGAAGGCAA
AAACCTTGCCGCAGTACAGTTTTGCTGATTCCGGTGTCACGACCGCTTGT
TCGCGTGCGCGCCCTCCTGAATCAGACATGCCGGGCGGGTAGGCTTGGCA
CCTCCTTGTGTGATGTTTTTCCGCCTTCTTTGTTTCCCCCCGTACGATGA
TGAACAATCCTGCTGACGGCACCGTGCAATGAGCATGTCTCGGGTGGGAT
GCGTGACCCCTCCAAGTCGGCAAAAACCACAAAACAAGCTGCCTGATCCT
CTCCCCCCCTGCTCCCGTTCTTGTTGCCTCAATAACTTTTCCCGAGTATT
CAGGGGCCTTTTCCCGCGCGTGCCCGCGTCTGTCAACGTCTGTACTTCGC
TCAGGATTGCTCAAATACCCTGTCCCAAGACTTCGCGCCGCCGTCTTGTG
TTCCTCGCTCGATTCTGATTCTTGCCTCTCCGAACATGCCCTCGTCATTT
TCTTCTCGTTTTCCTCTCGTCTCTGGGCTCAGGTGGACGGCTGGCCAAGG
AGAGCCCCCCCGCCAACCGGAGGCGACGCCGTCGACAGCGACTACTACTA
CTACTACCACGCGCCAACGAGCATTAATCCCCGGCTGGCCGGGTCTTCTC
GAGACGGCATCGGCGGCGGCGGGACCGGCGCAGCGTCTTCGAGACATTTG
GCGGTAAGACGTTATTTTCGGCGAGTGGGCCAGAGATCGAGAACGTGAGA
GACTGACTGACGGGCAGGCAGGCAGGCAGGCAGAACGATGGGGAACTACG
GGAAGTGTGGACACTCGCACAAGTAAACGGAGATAGTTAAGCGTGAGAGG
AAAACGGGAGGCTTAGAACGAGTTATGGAGAAAACGAACGAGCGAAACGT
GTTGATCGTGCGTGCGGGTCCGGTTCGCGCCGTCACCTCCTCCGTGGGAG
CCGTAACATATGTTGCCAATCGTTACGAAAAACTGGCGAAAATCCCGATC
GTCTCTCGGCAAACTTTGCAAACTTGCTAGGGTCTTCTTCTCACGTGAAA
GGACCTCTCGAACTCGCGACAGACGCGGAAAAAACTCTCAACCCCTGCGG
AATCATAAGAAAACAGATCCTTCTGGGGCTGCGCCACCCTGTTGAAAATT
CATCATCCCAACAAAAGTGGTTCATGTCGAAAGGAGAACACAAACTGGAC
GTCAGCACACCCGTTGATTCACTCGTGGTCGTCAAATATTTTCTTTGCGC
AGGGAACCACGGACGCCATTCCCCAGCATGTCCCTTGACTTGACTTCTTG
GTGTGCGTGCGGGCCGGCGTGTCCCTTGACTTCCACGTGCCTGCGTCGTC
TGAGTTTCTCATCCGCCGCTTACTTTGCTTGAGATGCCGGTAGGCTGTCC
GTGTGGCTGTTTTGCACAACATCAGTTCAAACCCTGGCTTGCTCTCGGTA
TTCCTTGCCAAGGCAAAAATGTGTACTGGATTCTTTTTTTCATTAAAAAG
AAACAAGCAGTTGGGCCCGTGGTGACCGCATGTAGTGACGGAGGTACCTT
TTTGTCCGCCGTCCGTGCCCCCACCAGTCCTGCAGGGTCGTGTTCGGCTC
TCTCTCTCTCTCTCTCTCTCTCTCTCTCTTTCTCTCTCTCTCTCTTTCTC
TCTCTCTCTCCCTGCGTTTTGGCGTCCCGAAATTCCTTCTGAGTCACTCG
CGCGCGTGGCGGAAAGATTTAGCACTTCCGTTTGACCTCCTGCGGCTGAG
CTGTGCTTGGTTTCCTTTTTGCATCATTTCTGAACTGTTTGGATAAAGTC
GGCAGGCCAGTTCAGCGAGGTCCTCCCGTGAGGAACCTCGCAGGCTGCTG
TGGGTCCCGTCTCGCGGCAGGGTCCCTCGTGCAATGTTTGACCTTCGTCT
TCCTGACGAAATTGGATGCATCGGCCTCGGACCAATCGAGTGTACAGCCT
CTTCGCAGGCAGTCTGTTTCCGTTCGGAGTCGCTGCCTCGTCTTGTTGTC
CATGCGGCCGAAAGCTGTGCGGAAAATCGCTGTTCTTGGGGATAATATTA
TGTCTAAGCATACCTATATATGAAACCTTTTCTATGGTTGCTATCAAGTC
GATGGCTACGAAGCCAACGAAAAAAACGATAGGAAGACGACACAGGGGAG
CGGGGCGGCGGGGGGCGCTCACGCTCGATTTGCCGATTGAATCAGCGCCG
ATTGATCTTCCTCTCATCGATCGATTTCGTTGTAGTAGCCCTTGAGAGTG
CTGGGAACGAGTCGAGGCCTTCGTTTACAGCTGCGTGTTCTTGCTTGTTT
GTGATGGCGGTGACACTTGGAGTGCCGGCGTTTGCAGCGTGTCTTATAGG
AGCATCTTTCGCCCCCCCCACTTCCCGACATGCTCGAGAGAAGGTCAAGC
CAAAGGGAAAAAACATTCCGATACGATGAATGGTCCCGTCAAAACATCGA
AAAGCTCGTCGAAAATTGGAGAGTGAGCGCACGCGAAACTTGTTTCAGGG
CTCGATTCCCTTCGAAATGATGTGACAAGGCTCGGCCAAACCAACAACAG
CATTCGAAGGAGATTCACGTCGGCCTCGATGTCATCATTCACAGTATAGA
CAGACCGGCCGCGTATCTGATGTGATCGCGTACACACCTGTTGGTTGTCA
CGTGCTGGTATAAAGATCACGTGTGCCTTGTGGTCGTTGCGCATCCTACG
AGCAGTCACGCGCATGCTGCTACGCATGTGGGTGTGGGTGTGCGGGCGTG
CTCTCTTTGTTTCTGCCTTGAACGGCATGCGGTTTCGGACAAATTCGAGT
AAAGGGGCGTTGGAAGTCCTCTCGTTCTGAATTGCTTTCCTTGTATAGAC
CTTCGATCGTCGGCTCATCGGCTCTCAAGAAGCAAAAACGATGAGCAATC
GCCGCACATCCCACTTACCCTCCGTCACTGGGATATCCTCGACCACGACG
ATCCCTCAGGGGGAGGCATGCAGGACACGCTTTGGTCGCATACTTGTGGT
CGGATTGGGTTGTGTCTGTGTGGCTGTGACTGATTGTCACATCGCGCGGG
CCGCCCGCCCCTCTACGCTCTGCGCGTTTCAATGAAGGTGGAATCGAACA
AACGCAAGGGCCGGGACACGTGAAGGGACGAAAAAACAAAGGCGGACCGT
GAATGAGATGGGACGAGTGAAGCGTTACGAAGCGAAACGCCAAAATGAGC
AGAAAAAATCGAACAGGAAGAGAAGGATCGAACGGACGGACTCATGAGAG
GAATGAAATGGAAAGAGCGGATGAAGAAATAGGATAGCCGCAAACAGACA
GACGAAGAAGCTGGAATATGGGTAGCGAGTCCAGCACCAAATGAAAAAAG
GGGCGGGCGAAGAATATGACGGGAGGGGCGAGATATCCTCGTACGGCACA
TGGACTGATGAAAAAATGATTACCAAACAGAGGAGGGAAGGAGGCGATGG
ACGAATTTAAGTGTCGGTGAGGCGGGTGAATGAATGCTGGGGTCTTCGAA
ACGTTGAACAAGTGAACGAGCTAGCAACTACTCCGGAGCTTAGTTTCGAG
ATACCACGAGAACGAGCAGGAAGGCAGGAGGTCTTAAAAGGTACTGCAAT
CCATGTCAGATTCCTGCCTCTCTGCGGGACCTCTTGTAGAATTGTCGGCA
CCCGCATCCATCCGACATCAAAAGCTTGCGTTCGTTGTTATGCTCCCGCA
CAAGCAAAGACCGACTCAATGTCGACAATTAGCCAAACCTACCATTAACT
AAACGCGGAGCGGTGTCTCTTGATACCTCGTGCCGTCTTGAGTGAGTCCA
GACAGTGGAGAAGGAGTAGAATGGGGCACAGAAAGCACGTGCGCAATACT
GACTCGCAAGTGAATCACTTCAGTGAAGCTGGAGCGAGGGTCGTTTGCGT
GTGGTGGAAAGCAACGACGAACGGATTTGTGGCTCATCCGGCATGTGCCT
CCGCGGACTCTCCGTAGCTTCAGCCCGTTTGCGTCCGCCCTCGTGAATCC
TCTCGCTTGTTTATATCCGTGATGAAATGACACGCGCAAATTGAGAGAAG
GCTGCCGGTTCCGAAATGCAGCTGGGTCAGTTTGGCATTACCCACTTCGC
ACACAGGCGATAGGGAAAGAGAGAAGATGAACAGGCGCAAGCTTATTAGA
AATCAAAGCAGGCAACGTCCAGCGATGAGTGTTGATATTCTTTCAGGGCT
TTAGATAGTAGGATATCGCGTTTCACTGCGTTGCTCTTGACCCGGCAACT
GGCATCAATCCACACCTTCCCCCACATTTCGCGCATACCAACAGACCCGT
TTGTGATGCCCCCCCTTCGCCCCTCGACTCCTCCCTCTCCCCACAACATT
CCCCTCTCAGGCACCCATCGCGCAGCAGTCGCACGCTCACAGCATACTCG
AGACGACGTCATCGTCGGCGGCGGGAGCAGGCAGGGACGGCAGCGGCAGC
AGTAGCGGACGAACTTCTCCGCTGAGCACGGTCGCGGAGCAGCAGCAGCA
GCAGCGTAATATGGTCAACGGCGGAACGGCTGCCGGTTCGGGCAGCGGCG
CCGACGAACCGGGTAGAGCACAGACGGGGACTGGCGGCGTCGCAGCTATC
GGCGGAGGCGGCGACAGCAGCAGCAGCGGCAACAACAACGGCCCTTCCGC
TGCGAGGGGCGCGGTGGGGAGGCCGGCGCTCGAGCCCGCAATGGGAGCCG
GCAGATACGGCCGCGGGCCCGGAGACGGGAGCCTCAACCACCCGCAGCAG
CAGCAGCAGCAGCAGCAGGCGCAATTCGCCGGATCGCAACACCGGGACGG
GTACGGCAACAGTGGGGGCGTGGACGGGGACTTCGCCGGTGCGATGGGGT
CCTTGTCCTTGGGACCTGGCGGTGGAGGCGGCAAGGGCTTGCAGTACGGA
GGGGGGGCGAGGAGTAGTAGAATGGACCCATACGGTGGCGGCGCAAACAA
CAACAGCCACCACATGCTGGATGGCTTGAGAGGGGGGCCCGGTGCCGGCC
CCGGCGGCGGGATGGGGTTGGGACTCCACTCCGGAGGCATGATGCCCCCG
TCTCCGTACAACGGGCCGCAGATGTCGCCGTACGGCGGTCCGCAGCAGGT
GCCGGCGGCCCTGATGGGCGGCATGCCGCCGCTCACGCCGGAGCTGCACT
CGATGGGCTACCAGCTGGTGAGTGGGAGTCAGGGAGGGAAGGTTATGGGA
GGCGCGGGGGGGCGGGAGAGGCTGCTTTGGAGTGTACGGCGTGAGAGTTG
TGTTGCTTTCGCTCTGAAAAACCGGGGGGGGGAAGGGATAGATCCCGTCG
CACGATTCGGATCCGCCGTCGATTGCGCGCTCTGGTTTCTCTCACGTGTC
ACATCCTACACACTACTCTCGCTTCTTCGTTCGGAAACTAAGGACACCCG
GAACCTGCCTCAGCTGCCGCCGCCAGACCCCCGCTTTGACATGAGAGGGA
TGGGGTCAATGGGGGCAGAGCAGCAGCGAGGGGGCGGGGACTCTCACTCG
AGGGTCGTGGCGGAAAGCTTGTACTACCCCGGACAGCAGGGCCTGGGAGG
ACAGGTAGCGTCCAATGCAACAAACCAAGCAAGTTGATGAGCAGCACGTA
GACAGCACTTGCGATGTGCGCAGCGGTGCGGGTCTCCATTTTGCCGTCGC
TATCGCCGCTCCCTTGTCTTGAAGTGCGAGGAGAGCTTCTCAAATCGGCC
GCCCCCCCTCTCTCTCCCTCTCTCTCCCCAGAGGCATTCGACCTTCAACA
CGCTCACTTTGGTGTTCGGCGATTATTTCGCTTAACCCCCCCCCTCCCCT
CTGCCCTCCCGCTGGCTCTCACCTCGGTGTTTGCCATCGGGATTGGGTTT
TCGTCGCTTGGCAACGACGTTGTAAAACAAGCCAATTCACTTCGTGAACT
CGGCAACCAGGTTACCGTCTTTTTTTTTTCCTCTGTTTTTTTGGCGGTAA
CCATAATGGTGGTCGAGAAGATTATGTTGGCGGGGTGGAGAACCCTCACT
CCGCGCAAGGGGGATGATCGCACCACGTTGTGTTAAAATGGTCAAGCACC
CTCGAGGCAGTTACACGGTGCTTACAACTGTCTCTGGAGGTGAAAGCACC
AGAAAATAAATTAAGCCATACGCAGCTGTCATCCGTAGGCAAGGAAGTAA
GCACAAAATGCCGAACACCCTTAGCAGGATGCAGCGCACCCTTCATGCGA
CTCGCCGAATACCTCACGGCGCTTCGCGCTTGGTGGTGTGAGAGCCTGGT
CCGGTGAGAAACCGGGGTGCTCCGTCCCGGCTTTGTAGGGATGCGAGGTC
AATGGTCTAACGACTACGGCATGCACGACCATTAGTACACCCCCCCCCCC
TGACAGAGAGCACGAAAAGCGCCGTGATGTTAGATGGAGAACTCTCGAGA
TTCTTCGACATTGAGCAGGGGGTCCCACAGGGGTGCACAATGTCCCCAAC
GTTGTTCCAGGTATTCATCAACGACTTACTGAAAGAGGTAGAGGCGGTAG
GGAAGGGAGTAGAAATAGGAGAGACCTCGGTATCGGGACTGCTATTTGCT
GACGACTTTGTTGGGATGTCGGACACGCCTGAGGGGCTCCAACTACAGAT
TAACACAGCGAAGAGCTACGCTGATAAGTGGAGATTCTCGGCCAACGTCC
CAAAGTGTGCCGTAATGGTATGCAATGAAGATGGTGACGAGGAAGTAGGT
ACCAAGTGGACATGGGGGGACAAGGAGCTGCCAAGAGTGGAAAAATACAC
ATACCTTGGAGTAGAGATAGCAAAAGACTGTAAATGGGATGCACACATGC
ACAAAGTAGCGGACAAGGGCAAAGCAAGGGCAGGGAAGTTGCACCCAATC
CTAGCAGACCGGCACCTTGATACACGCGTCAAAATGACCATTCTGAGAAG
TGTTATCATCCCGCCACTAGAGTACGCGGGAGAAGTTTGGGAAGGGAATA
AGAAAATAGTAGCAGAGTTGGAGGCAGCTCAGATGAAAGCAGCGAAGATC
ATTCTAGGATGCTCCCAGCGCACAAGTAACGCAGCAGTAAGAGCAGAGTT
GGGGATCTACTCCTTAAGAACGGGAAGAGACAGGAGGAAGTTGACATGGC
AATACCGTATGGAAAACATGGGAAAGGAGAGGTTACCGAGAAAAGCTTGG
GAGGCGAGATGGGTAAACAAGGCCAGGGGTAGACAACCCATTGAGTGGGC
TAAGGTGGTACAGGGAGTGTGGAGTGGGTTAGATATTGACGAACGGGAGA
CGACGGGAGCGGAAAACTTAGAAGGGTACAAGAAGAGCATCTCAGAAGCC
TTTGACAATAGAGAGGACCAGAGCTTTCGGAAAGAGACCAAGGAAAAGGA
GGTTCTAGAAGTGTACGGAAGGCTGAACGAAGGAATAGGGTTCAAGGAGT
ACCTGAACGGACCATTGGATGAAGGGACAAAGATGAAGGTCAAATTTAGA
ACGGGCGACATTGACCTACGGGAACGTAGAAGGAGGTTTAGGAAGGTAGA
CGACGACGAAGACAAGTTCAAATGTGACTGCGGCGCCGAATGCGAAGACC
GGGTACATGTAGTTGCGGAATGCCCGTTGTACGATCAGGAGAGAGAAGGG
TACATGGTTGAGCTGGAAAAAGTAGACAGTCGGTATAGAGAGAAGTTTGA
GGCATGGAACAAAGAGGAGAAGACGGTAGCGGTACTGGGGTGTAAGATGT
GGCCCAGGAAGGACAGGTATAAAGTAGACAGGTTAGGGAAAACATTTTTG
AGCCACCTTTGGCAAAGTAGGAAGAAACGATTGGCCATCGGTGGTCGATC
CTGCGGGAACAATGCTCCGTCCTCTCGAGGACGCGTGGTCAATGGTCTAA
CAACTAAGGCATGCAAAACATGAGTACGCCCCCCTCCCCTCGGCGTGCCC
CCGCCACCCTGGCGCCTACTTTGCATTTGCAGGGCTACGGTCTCGACCCC
CGCTACCCACGGGTGCTCCAGTCCCCGCGCGGCCCTACTGGCTACGGCGA
CCCGATGGCAGGCTTATACGGGCAGCATGAGAGCCAGCACCACCAGCAGC
AAACACCTGCCTCCCCTATGGTTGCCTCCCGCAGACTTCCGCATGATCTC
ATTAGTGGTGGAGTTGGCGGCGGCGGGTACTACGGAGGCGGCGGGGGCGG
CAGCGGCCGGACGAGAGGGCGGGGAGGCGGGCACATGGACGCCGGGAGCA
TGATGTCTTCCCCGAGGATCGGAGCGGCCGACCCTTATTACCCTGGCGGG
GAGATGGGCGTGTACGGCAGCGGGAGCGGGAGCGGCGGCGGGGGGGGTCG
GATACACGGGTGGCAGCGGCGGCCGCGGCGGGCCGGAGGGTGACTTAAGG
GGCGATAGGATGCTTGGTGGGGCCGACATGAGGGACGGTGGCGGTGGGTA
CCGTGACGATTTCGGCGGGTACCACGATGGCGGCGGCGGCGGTCGGCGGG
GGGGGCGAGGCATGGGCGGCGGAAGCTCGGGTCACCTTGGAGGTCCCGGC
GGCGACCCCCGAATGATGCGCGGCGGTCACTCGAGAGACCTGGATGGAGG
CGGCGGGATGCACGCGGGAGAGAGCATGCGCATGGACCACCACCTCCGAG
GAGGGGAGCGAATCCGTGGCGGCGGCGACATGGGAAGCATGCGCGGCGGT
GACCACAGGGGTATGGGAGGCATGGGGGGGATCCGTGGCGGCGGCGATCA
TAGGGACTTGGCTCGCCGCGGCAGCGGGCCTGACCACCTCCGCCACGGCG
GCGGTAGAGACGGAATAGGGGGGGGCATGTTGATGGGAATCGGAGGGGGA
GGAGGCGGGAGCAGCGGCAGAAGTGGGCTGTCCAGCGGAGGTTATTCGGG
AGATCCCCGCGGGGGAATGGGCCGCGATAGAGGGCTGGCGGGCGGAGGCC
ACGGCATCGGTGTCGGGAGCGGCAGGTCTGGCGGGATGGCGGGCGGCGGC
GGCGGTATGATGGGCGGGGGCGGCGCAGGGCTCGGCGGCCCCGGCATGGG
AGGTGGAGCGGGAGGGGTTGCCGGCCGCGGTTCTTTGCTGGATGAGTTCC
GGAGTAGCATCGGGAAGAACCGAAAGTGGGAGTTGCAAGACTTGCATGGT
GAGTGGCGAAGGAGTAGAGTGTGTGGGAGGGGAGAGATAGATCGAGATAA
CCAAAGGAGAGAAAGAGAGCGAGCGAAGGAGGGAGGGAGAGAGAGCGTCA
TCTGTGGTGGCGGGTTATTCTCCTGCTTGTCGTGACTTCTGATTCGTTTG
CTTCTTGTACAGCAACTACAGAGTCCGTTTCATTTGTGATTTGAACGCTT
GTGGCGAAATGTGGTGTGTTTGGGTCGGGTTTGAATGCCGTGACACTCTT
CGTCTTGGACAATGATGTTGTAGTCAGTGTCAGTGGCAGCAGGATCTTGC
TGCTGCTGTATGGCTAATCTGTCTGCCATGGGCGAAGGGAATCGACGCCC
ACGGTACGGCATCTAGATGAACATACCGTTTTGCGCATGTCCGCGACTTT
TTCGGGGCTTTGTGGTACGTTTTCAGCGTCGTGTTGGTGTGTCGAGGTCG
AGGTTCCGGGGGCGGTGGTTGCGGATGCACCAGGCGGTCTCGAAGGGTGA
CGTGACAGTGGCGAGCGTGCTGGGCCACACTGTGGGGTGCAAGGTCGCCG
CCCTTTTTTTCACGGAGGGGGCAACGTGTAATGTCAGATTCCGCCTATCC
TCATTTGTTGCAGCGGAGATAGTTCACGAGGCCGCGGCAGGTGAAGCCTG
TGCGCCAGCTCTAGCTGCTTCAAATCAAAGGGCGTTTCTTTTTGCGTTTG
ATGGATGCTTTTTCTCTTGTTGTATGAAAGTCCGCCCCCGAGGAAGCAGT
GTTATGAAATAGGGTACTTGACAATTGTTCGATCGAGCTCCTCGGTATGT
GCGTGGGGGGGGCTTCTGCTGTCAAGAGCTTTCCCTTAGCATGTTGCAAA
CTGCCGAGTGTGGGTATGTTTTTTTGCATCGCTCCCCCCTACTTTTTATT
GTTCAAAAAAACAAGCGAGAATCAAGGCAACCTGAGAAGAAAGCATCTAA
ACACACTAGCAAATTTAACATAACGCACACCAGTCACCTAAATGTGACTT
CCTTCTCTATCACAATTTTTTTTTTCATTCCGCCACATTGTTATCCCAGG
GCACACTGTGCAATTCTGCCGGGATCAGCACGGGTCCCGTTTCATTCAGC
AGAAGCTCGAGGTGTCAAGCGAGCAGGATAAGGAGGCGTTCTTCGATGAG
ATCCTTCCCCACACCCAGAGGTTAGTCGGTGAACAGGTGTTCTTCGATGG
AGATTTTCCTCGCAGAGAAGTTCCGTTTCATTTATGTGATTGCCCTTTCC
GGCCTCGAATCAAAACGTTCTGCTCACTTATAGAGCATCACCTTTGGTCC
CTTGATGGCGAAACCTTGCTCTGGAGTGTTGGAAAATTCTCTATCTCCGG
AGGTTTGTATCCCTCTTTGCACCATTATTCGTTTGTTCTCTTGTCTTCTG
GTCCTTGTCGCATGCCCAGGAGGAGCATCGTCGTATCATTTTCAAAATGA
CAAAGAGGTATCCACCCCCATGCACCCACCAACGCCGCCGCCGCCGCCGC
CGTTATTCATGTACCCTCGGTGTCCGCGCCAGCCTGATGACCGACGTGTT
TGGCAACTACGTGGTGCAGAAGCTATTCGACAACGGCAGCCCGGCCCAAA
GAGAGGCTTTGGCCAGCTTCCTCGTGGGCCACGCGGTCCAGCTGTCCCTG
CAGATGTACGGCTGCCGGGTTGTTCAAAAAGCGCTTGAGTACTCGTCCAT
CGACACGCTCATAGCGCTCGTCTCCGAGTTCGGCGGACAGGTGGGTTGTT
GTGGTTGGAGCCAGGAATGGAAAGTTGCCTAACTCTGACAAATGCATAAA
AGAAAACAATTTTCAGAAGGTGAAATTATCTTCAGGAATCTCCCAAGAAA
ACTTCTGTTATTTATCCAGTAAAATATTTTCATTCATAAGCGCGCTATCA
TTCACAAAATCCGTATCGAAAACTCTCCCCCAAATCGGCGCCGTTTTTAC
AATCTACGTCCCGGTCATTCAAATGCTGGAGCCCCTTGGGGAGATAGATG
GTCAAACGCACTGGCGTAGGAAAAAAGGGTTTGCATGACCGAAGTGGGGA
ACAAGACCTAGGAGGACGCACCAGACCGTGCAGGGTGCAACAAGTCTTCT
CCGTGTGGTGGTATGTGCGGGTTGTTTGTCAATGCCGGGCATGATAGTGT
AACATGAAAGCCGATGTGCACCGCGGGACCCCCTCGACGCACATTTCTAA
GTCCTTGAGCTTCCGAGAAGGATGAGCACCGGCGCCGAAGAGGGCAGCTC
TGGAAATATAGTATAGTTTCAAGGGCTTTTCGATTATGCATGCTTTCGGC
AGTTGAAGATCGGCTGAAGTGGAGTCTAGTACACTCCGTGGCAAACCATT
CATACGACTCAACTGAAAGCAACAAAATCTATACGAAACCCCGAGTCAGG
TTTGAGACAGATCCATGCAGGGGAAGAAAGGGTGTAAAGCTTACAGTTTC
AGCTGAAAGGGAAGGAATATTCTTATTGAGGTACGCTCACGATACTCGTC
TCAAGAGATATATTTTGGTTCCACGGGCTGGCCCCGCCCTCATCGATGGT
GCTGGCGCAATCGCGCTTCGAAAATCTGGCCGCAAGGGTGTGGTATGAGA
ACACAGGGATGCACCTTGAGACACGTGCGAAATATGACTCCCGCCTCGAC
AGAATCTCGCAAATGCGTGGTCTAGGGGAGACTGCTCACTCTCGAGGCCA
GAAGGAACGTGTACGGAACATCCCTTCCCGCTTTTCCATCCGCCCCTCCG
CCAGAACAGAGATCAAGACGAACGGAACCCCCCCTTTCCCCTCGCCCGGT
TGTCGTGTTCGACTCTATTGCTCTACGATGCAGGTGATGAAGTGCGTCCA
GGACCAGAACGGCAACCACGTGGTGCAAAAGTGCATCGAGGTGGTGAGCA
CGACCGCCAAGACGGAGGGTCAGTACCTGCACTCGCACATCCAGTTCATC
ATCGACGGCTTCGTCGGGCAGGTGATTAGCTCACCCGCTGCTGTTTTTTT
GCTCTCTCCATGACTACGCGCTGCTGTCTGTACACGGCTCTCGGCAGGGA
GCTGTACCACAAGTGGACCCATGTTGATCACTGTGAGGCCCCCCTCTGCA
GTTGTCGAGCGGCAAGCCAAAGAATTTAAGCAAGCATTTTCCATGCCAAT
GTTCGGCAGGGTGCCGAGAGGGAGTCTGCCTTGTTCCATGGGCTGCCGAG
CCCTACCCTGCCTTGCCCTGCTGCCTTGGCTTTCCGTTTTTTCTTGCGGT
TTTCCCTGCCCTAGGGACGTCCCCAGACTCAAAACCATTCGCGAGCAATC
TTCGCACTACTTTCGCGCGAACGACAACTCTGCCTCCCGCTGCTGCTGCC
GCTGCTAGGTGGAGAAGCTCTCAATGCACGCGTACGGGTGCCGGGTGATC
CAGCGCATACTGGAGCACTGCATCGATGACCAGAAGCAAGCGATCCTGGA
GGAGATCAAGGAGTCCTTCTCGGTGCTGATCCAGGACCAGTACGGCAACT
ACGTGATCCAGCACGTGCTTAAGCACGGCCGCCCCAGCGACAGGCAAAGG
CTAATGCGCGAGGTGGGTGTGTTCGGGTTGACAGTCTCTTGTGGGCGTGT
GTTGACAGCTTGTGGGGTTGGACAGCCTCATGTGTGTGACGGTGTCCTGG
CTTCGATGTTTGCACTTTTTGGTTTGTCTTCACGACACGCCCCTCCTCCT
TCTCTTCCCCTCCGTTGCTGGTGTCCCAACAGGTAAAGGAGAACCTGTTG
TCGTACAGCCAGCACAAGTTCGCTTCCAACGTAGTGGAGAAGTGCCTGCA
GTACGGCACCAAGGAAGAACGCGGAGTCCTCATCAAGCACCTACTCTACG
GGCATTCGGAAGGGTAAGCGTCGACTGATGTGGTGGTATGGTACAACATG
TTTGTTGTCGTGGGACGGTTCCGCCGGGTCTTCATGCAGCACCCACCCGA
TCTACGGGAACTTGAAAGGAAAGGTTGAGGATACTTTGTTGCGTGATGGT
TCGGCACCTTCGTCATGGTTCGTTGTCGTCGTCGTTATGGTTCGGTATTG
TCGTCGTTGTGGTTCGGTTTTGTGGTTGCTGTTGTTGTGGTTTTGTGGTA
CGGCAGTGGGGGGCTGGCAGTTCTTGTTTGTTGAATTCGTAGCGAAGGTC
TGTTACAGTGCTATGGTTCATGCAGGACGGGGGGAATTGCCGTGTGAAAT
ATTCTGAACTGACGGCGTCTGCTTGTGGTGTTATGGGCGTCAAGAGTGAG
CCGAATAGGAGTTGCGTTCGGGATGCAAGTCGAGATGGTTGAGATTAGTA
GGCAACATGTTTTTGCTGCGCATCTTGCATCATGCGAGATATCCCTGTGG
ATGTCTTGGATCCAGACTTCCGGTGGTGTCGTGTAGCGTGCGTGCGCGGA
GGGTGAATGATCAAATATTTACAGCAGCAAAAAAATCTTAAAAGGACATG
TCCTGCGGTCTATGATAATCTAGGCAGCCCCACGGGAGCATGCAACACTT
CAACTTGGAATAGTTGAAGGTCACAGAATGACGTGAAGCAACAAGCTCGT
GCCACTTGTTTTGTTCATTTCCTCTCCGCCGTGCATTTTTTTCCCCCGTT
CTTCTATTTTTTTATTTTTCGTCGTTATTTCAATTCCCCCAGGACGTCCC
TGCTCCAGGTCATGGTGTGCGACCCTTACGCCAACTACGTGGTGCAGAAG
ATCATCGACGTGGCGGACCAGGACCAGCGCGAGACCATCGTGATGGAGAT
CCGCGCCCACGCCGCCCAGCTGAAGCGGTACACCTTCGGGAAGCACATCA
TCTCGCGCCTGGAGAAGCTCTCCGGCAAGAAGATGTAGAGGACCCAGGTG
GCCAACGTGCGGTGCCCCTTCCCTCGCCTCTCTTGCCTCTCCTCCTTTTT
CTCTCGTGCCCTTGGATGCCGCTGCCAGTCGGGCCGCCGCTGAGGGCAAG
CTTGCTCACACGCTGGGTAGCAGGTGGGCTTGAGGAGACAGAGAACATGG
CGTTTGTTTGTTACCTCTTCAGAATTAAAAAAAAGAAAAATAAAAAAAAA
GAGGCTGGGTGGCGGACCAAACGCTGAGATGACACCAGGTTTTCTGTCGG
TGTGCGCTCTTCTCTCCTCGTGCCGATTACACTTGTTTTTGCGCGGATTG
AACCGTGCCGGGTCGTCATGAGGTATGAGGGTCGACTTTCAAGCGACGGA
TCTCCTCAGGTGTGCGGCGGCGTTTCTCTCACCAACGCCGGCCAGCGGTG
GGCTCGACTGAAGTTTTGAAGGGCCTCGCCTAGTTTCGATTGTAGGATCG
TTCTTGTTGGAATTTGTTCGTGCTTTGTTTTCGTTTGTTCTCGGATACTC
GGGAGCGACTCGGCTTGCCCCAATACTAGAGATAAAGTGCTCTGCCACCG
GTGTCGCGTCTCTCGAACTCCGTGTCCGAAAGGCGCTAACGTGTATCTCG
TCGTGTCGCGGGGCGCTCTTCGTGTCGCGGGGCGTTTCGAGCTGGAGAAG
AGTAGTTTTGTTGGCGAGTGCGGGTGCGTGTTCCTCACGCTCACACACCC
TGTTTTGGGGATACATCACCCCATTCAGAGGCATCGCTGCGATGGCAACG
TGTCCCACGAAGGCAAGAGGGCGTTCGGAAATCAGATTCTGCTGGGGTTC
TCCTTCGAGGAGAGGAGAGGAGAGGAGAGGAGAGGAGACCAGGAAAGTGG
GCATCGGAAAAACGCGGTGGGGGAAGTCGTCCCACCCGCCCTCTGGGTAG
AAGTCAGGCCGCGTGGCGCAAGGCGGGATCCGACCGAGGCACCTTTCAGG
GTGTGCAATGGCGTCACGAAATGTTGTGTGTTGGTCGCCTGTCGACAGGG
GTACGCGCAACTCGAGTCTTGGCTTTCTCTCGCGGGGCAAGGGGGGGGGA
GGGGGCGTTTTTGACGCGGAAGGCGCTCCCACAGACCGTCTTTTTCACAT
AGGCGATGGAAATCTAGGGTGGTGAACGTTTTTCCTGTCCTGGTGTTCGA
TTCCGGGCTGTCGGCTTTCGACTTGAGAGGACGCGGTCCATTCACGTCTA
CGCGCGCCATGGCTTACGCTGGATCGGGGTTGGTTGGTTGGCGGTGCGTC
ATTTGAGGTCCGGCTCGTAATGTCTTGTATTTCGTTTTTTCATTGGTCGT
TCGTGGTTCATGGCCGGTCGGTCGATGTAGGCCCCGTCTGGGTCTCGGAA
TGTGGGTACACTGCGACAGCAGCTGCAGAAGCGGTTGCGGAAGCAGTGGC
GGCAACAGTTCGCCGCGCGGCTCAGCGTCGAAAGGTTTGGGTCAGTTTGG
GGTAGGATGTATGCGGTAAAGTGTATGATAGCGGTCATGATTCTGCCGGG
CCGTTGCTTGTAGTAGAGGAATCGTAGCTGTCAAGACAGGCAGACATAGT
CTCTCCCGCCCATTCAAGTCTGTCCAGGATGCGCTTTCCCTACTTTTGTC
GGATTGAGATAAGACCAGGCCAGGGGGAAGGCAGGGTGTGGACAGCTCTT
GAGTCGTCGTCGTCGTCGTCGTCGTCGTCGTCGTCGTCGTCGTCGTCGTC
GTCGTCGTCGTCGTGCGCTTGTAGGAGAATGGCTCCTCCCTTGCCTCTCG
GGCACGAAGAAACAGTTCTTCTCTCGCGTGTCAATGGGGAGCGAGGGAGG
GATGGAAGGAGGGAGGAAGGGAGGCATAGAGTAAGTAAGACGGGTGTGCA
CCAGGCGATGCGGCAGCGGGAGCGGAGGCAGTATGACGGCGATTGGCGTT
CATCTCGTTCTCCCGAGAGCGACACTCTCGGCCGGACGGCTCGACGGTAT
TTGCCAGGGGTGTGAGAAATTTCTCAAATCGATCGTCGAAATGGAAATTG
TTTTGAGTTGGGTAGACGACGAAGGGGCGCAGCGCGACATCGGTTGAGGT
GTCGCTCAGGTTTTTTCATGATTCGCACCTGGAACGGCAGCTTCGGCGGG
TGCTTTTGTGTGCTGCGTTATGTCAATCAAGCGGGAGGCAGTGGTGGACC
CCCCACAAAGTGTCTTTCGGTTTTTGCTGGAGTTGTGGGCGCTGAGGACC
AGGGACAAGCCCGACCGGATCGTTGGCAATAACAAAAAGGATGAGAGAAG
GGAGGGCGTCTCTTCGTATGTTGCCGATTTGGGTGGCATTGATTCCTCCA
TAAATGGACAGATGCTGGCCTTTTGAGCGGAAACGAAAACCTTCGACCAG
GGCGGGAGGGGGGGGGAGTCACATTGGAGGGTTCGAACGAGCCTGTATAA
TATCCTCCATGCTCCTTTTAACTGATCGGTAGTTTGGGCGGGCGTACCTG
ACTGCGGAAGGTTGTCGTTGTTCCTCCCGTTAGCTCTTGTCCAAAAATCT
AGAACCCGGGGTAACATTTATGAGAGTGTCGAGGTCTTGTTCTCAATCGC
CACTTGGTCGGCTTCGTAGATTCGTGTTTTCGAGTCCAGATTGGATTTGA
TCCTTGCATACCTGGGGCAGAACGGACATGCGAGAGGAACAGGGCGTGTA
GCAGCGGAGGTGGGAGGGCGAGGAAGGAGGACAGCGCTCTCCCGGCGGGG
TGGACGTGGACATGGCATATATATTTTAAGTCTTGCAGATTAACTTTGTA
GGGAAAGCTTCTGGTCGGATCCCTGCCCCGCTGGCGCGGGATGTTGATTG
ACTGGCCGTGTTGCGGGGTTACGGCACCCAGATCCTGTCGAGACGAAGGA
GTTCCCGGGAGCGGGTTTGCTTGTACATTTAGGCCTTCTCTTTTTCTTTT
TTAGTCTTTTGGCTCTCTTCGGGCTTGCTTCTGACTTCCCGGCTCGATTA
GAGAAATTAGCGGCGGACGAAACAGAAGAGAAGCATACGTACGGACGGGG
GTGGCAGAGGCCCGAGTGAAGCGAGCGTCTTTTTTCCGTCGAAGGATCCG
ATTTTTAAATTTGTATCAAATCAAATGTGTGTTAGGTCGCGGCGTACATG
TGTTTTCAAATCAATGTGTGTTGGGTCGCGACGTACATGTGCGTTTTTTT
TTTTGTGTGTGTTGCTTCGTGGGTAGTTTCGTCTGAAACCGCGTGCGTGC
GTGCGTGCGTGCGTGCGTGAAGTGTTTCCGTGTCGGCAACAATGAGTGCC
GGGATAAGCTAGAGACGACAAGGGGAGAGGCGAGGGGCGGGCCGTGTTGG
CTGCCTGCATGTTTCATATCGTGGGTAGTTGCCCCGTGCAGGTCGTTGGT
CGCCTGGTGATGTGCGTCTCCTGCTGACGGCAAAAGCGGCACCACCTCCT
CCCGTCTTGCCGAATAGTTTCGTCAGCTTCAGGATTGGCCACGAGTCCCT
GTCTTCCGCTTGTCGTGCCAATCTATCTAGCCTCTCGCTCGCGTGTCCGG
CACTGACACGTTCTTCACGCGTTTTTCTTTACTTGCATACGTTGTAGGGT
TCTTGTCGGTGCTTCGAAGTCGACACACGCCGGGATATGAGATGAGAGTC
GACTAATAGATGCTCAACAAGCGATTCCTCCCGCTTCGCCCTCCTTCGTC
CGGTCGTCGACTAAATCTTTTCGTCCTTTTTCATTGCCCCCCTGTGTGTT
CTCTGTTGTTCTCTCTGAGGTGCGTGAGTGAAATGAATGATGAATCGGTG
TCAAGTGGTCACTCTAAAACGTTTATTTCCCGTGGCGTCGCCTTGCGCTT
CATGACGGGTCGTTGTCGCCGGGCAGCTGTAGCACACGAAGAGTAGTTAT
TACCGCCAGCGTCGAACAAATAGCCAGCGGTGGCACACGTTGGTGGAAGG
GGAAACTGTTTTGAGCCCGTGTTAGCCATCATACGCGAAGTCGATGGTGC
GTCTGTCTACCTGGCTGGCTTGCGAGCCGCGGTTGTCATGCCTCGTTTGT
CCCGCGAAGTTTGGGACGGGCAACCTTTTTTTACCCCCACGCTCGGTTCG
TTATTGGCTTGTTTTTCTTCTTACGCCTCGGTCCTTGGGATGATGAGGAT
GGAACCGGACCGTCGAAGAGGTTCCCAGCGTGCACGGCGGCCACAGAAGA
GGAAGCAACGGGGGTTGGTTGTAGCCCTTCATTTCTCGTGCTCTCAGTCG
AAGGACGGAATGGCGGGAGGGGGGGCATCGGGGGGTGAAAGGATTGGCTG
GGTGGACCAGACACACTGAAGAGGAAGCGTGTACATTTTGTAGATTTGTT
TTCCGATTTCTTGCCCCTCCTTCCCCCCGGCTTTCGTAGCGCATTGCTCC
TCACGGGCGTGTCTCCTGATGAACGAATGAATGAAGCAGCAGCAGCAGCA
GCAGCAGCAGCAGCACACCTTTGGTGGTAACCACGCTGTTGTGCGTCTTT
CGTGGAGGGGGATGTTAACTTGTGGCACCGGGCGTGCTTGTGGTCTACCC
CGAGGTTGCTCTTGGGGCGAGGCGTGCCGTTCACGGTAGAGCTCGTCTGT
CTCTGAAAGAAGTTATAGGAACGGTAAAGTGCATCGTAGCGCCTTGAGTC
GGTCTATGCAGACAGACAAAGAACGACGAACCCATTTCACCTTGAGAGAC
GAGAGCGCGAAAAAGGTGCCGCAGTTTCTGATCGGACCATCAGAAATCTG
CGAGCGCCTTTCTCTCTCGCCGCTTGGTGTCTGCCTCCACTAATCACAGC
ACCTTGCACCGACAGAGCGCATCACGCACACCCTCTTCTCGTCTATGACG
CTTTTTGCCAACATTTCCCTC back to topCoding sequence (CDS) from alignment at P-fluviatile_contig12:2403873..2425893- >mRNA_P-fluviatile_contig12.1501.1 ID=mRNA_P-fluviatile_contig12.1501.1|Name=mRNA_P-fluviatile_contig12.1501.1|organism=Porterinema fluviatile SAG_2381|type=CDS|length=4032bp|location=Sequence derived from alignment at P-fluviatile_contig12:2403873..2425893- (Porterinema fluviatile SAG_2381) ATGAACATCAATGTGATCGGAGGCGGGCACGGCCTCGGCAGCGGTGGGCT GGCGAGCGGCGGCGGAGACAAGAGCACTGGCGCGGGCGACACTGCGTCTC CATCTCCTCCGATGAACATCAATGTGATCGGAGGCGGGCACGGCCTCGGC AGCGGTGGGCTGGCGAGCGGCGGCGGAGACAAGAGCACTGGCGCGGGCGA CACTGCGTCTCCATCTCCTCCGATTGCTGGAGCGGCCTTCGGGAGCAGCG CCGCGATCGCCTCCTCCGCGAACGGCGGGGGAGGCCTGCCCAGCGGTCGG TCGCGCTCCCCCGGCTTCGACGTGGACCATAAGACCACCTCCTCCTCCAG TGCCTCCGCTGCAGCCGCCGCCGCAGCCGCTAGCAGCGCGGCGGCATTCC TCGTGGGCGCCACGGGGTCTGATCGCGACGGTGTCGGCGACGGCGGCTGG CTAGGGGGAGGAGGAGGAGGAGGCGATGCCGATGATCGTTCTGTCGCGGG TAGGAAAGACGTGGACCACGCGTTCGCCGGTGCCATGCTCCAGAGGTCGA CGTCTGCGCCCCCCGTGTCTGACCACATTGCTGGAGCGGCCTTCGGGAGC AGCGCCGCGATCGCCTCCTCCGCGAACGGCGGGGGAGGCCTGCCCAGCGG TCGGTCGCGCTCCCCCGGCTTCGACGTGGACCATAAGACCACCTCCTCCT CCAGTGCCTCCGCTGCAGCCGCCGCCGCAGCCGCTAGCAGCGCGGCGGCA TTCCTCGTGGGCGCCACGGGGTCTGATCGCGACGGTGTCGGCGACGGCGG CTGGCTAGGGGGAGGAGGAGGAGGAGGCGATGCCGATGATCGTTCTGTCG CGGGTAGGAAAGACGTGGACCACGCGTTCGCCGGTGCCATGCTCCAGAGG TCGACGTCTGCGCCCCCCGTGTCTGACCACGTGGACGGCTGGCCAAGGAG AGCCCCCCCGCCAACCGGAGGCGACGCCGTCGACAGCGACTACTACTACT ACTACCACGCGCCAACGAGCATTAATCCCCGGCTGGCCGGGTCTTCTCGA GACGGCATCGGCGGCGGCGGGACCGGCGCAGCGTCTTCGAGACATTTGGC GGTGGACGGCTGGCCAAGGAGAGCCCCCCCGCCAACCGGAGGCGACGCCG TCGACAGCGACTACTACTACTACTACCACGCGCCAACGAGCATTAATCCC CGGCTGGCCGGGTCTTCTCGAGACGGCATCGGCGGCGGCGGGACCGGCGC AGCGTCTTCGAGACATTTGGCGGCACCCATCGCGCAGCAGTCGCACGCTC ACAGCATACTCGAGACGACGTCATCGTCGGCGGCGGGAGCAGGCAGGGAC GGCAGCGGCAGCAGTAGCGGACGAACTTCTCCGCTGAGCACGGTCGCGGA GCAGCAGCAGCAGCAGCGTAATATGGTCAACGGCGGAACGGCTGCCGGTT CGGGCAGCGGCGCCGACGAACCGGGTAGAGCACAGACGGGGACTGGCGGC GTCGCAGCTATCGGCGGAGGCGGCGACAGCAGCAGCAGCGGCAACAACAA CGGCCCTTCCGCTGCGAGGGGCGCGGTGGGGAGGCCGGCGCTCGAGCCCG CAATGGGAGCCGGCAGATACGGCCGCGGGCCCGGAGACGGGAGCCTCAAC CACCCGCAGCAGCAGCAGCAGCAGCAGCAGGCGCAATTCGCCGGATCGCA ACACCGGGACGGGTACGGCAACAGTGGGGGCGTGGACGGGGACTTCGCCG GTGCGATGGGGTCCTTGTCCTTGGGACCTGGCGGTGGAGGCGGCAAGGGC TTGCAGTACGGAGGGGGGGCGAGGAGTAGTAGAATGGACCCATACGGTGG CGGCGCAAACAACAACAGCCACCACATGCTGGATGGCTTGAGAGGGGGGC CCGGTGCCGGCCCCGGCGGCGGGATGGGGTTGGGACTCCACTCCGGAGGC ATGATGCCCCCGTCTCCGTACAACGGGCCGCAGATGTCGCCGTACGGCGG TCCGCAGCAGGTGCCGGCGGCCCTGATGGGCGGCATGCCGCCGCTCACGC CGGAGCTGCACTCGATGGGCTACCAGCTGGCACCCATCGCGCAGCAGTCG CACGCTCACAGCATACTCGAGACGACGTCATCGTCGGCGGCGGGAGCAGG CAGGGACGGCAGCGGCAGCAGTAGCGGACGAACTTCTCCGCTGAGCACGG TCGCGGAGCAGCAGCAGCAGCAGCGTAATATGGTCAACGGCGGAACGGCT GCCGGTTCGGGCAGCGGCGCCGACGAACCGGGTAGAGCACAGACGGGGAC TGGCGGCGTCGCAGCTATCGGCGGAGGCGGCGACAGCAGCAGCAGCGGCA ACAACAACGGCCCTTCCGCTGCGAGGGGCGCGGTGGGGAGGCCGGCGCTC GAGCCCGCAATGGGAGCCGGCAGATACGGCCGCGGGCCCGGAGACGGGAG CCTCAACCACCCGCAGCAGCAGCAGCAGCAGCAGCAGGCGCAATTCGCCG GATCGCAACACCGGGACGGGTACGGCAACAGTGGGGGCGTGGACGGGGAC TTCGCCGGTGCGATGGGGTCCTTGTCCTTGGGACCTGGCGGTGGAGGCGG CAAGGGCTTGCAGTACGGAGGGGGGGCGAGGAGTAGTAGAATGGACCCAT ACGGTGGCGGCGCAAACAACAACAGCCACCACATGCTGGATGGCTTGAGA GGGGGGCCCGGTGCCGGCCCCGGCGGCGGGATGGGGTTGGGACTCCACTC CGGAGGCATGATGCCCCCGTCTCCGTACAACGGGCCGCAGATGTCGCCGT ACGGCGGTCCGCAGCAGGTGCCGGCGGCCCTGATGGGCGGCATGCCGCCG CTCACGCCGGAGCTGCACTCGATGGGCTACCAGCTGGACACCCGGAACCT GCCTCAGCTGCCGCCGCCAGACCCCCGCTTTGACATGAGAGGGATGGGGT CAATGGGGGCAGAGCAGCAGCGAGGGGGCGGGGACTCTCACTCGAGGGTC GTGGCGGAAAGCTTGTACTACCCCGGACAGCAGGGCCTGGGAGGACAGGA CACCCGGAACCTGCCTCAGCTGCCGCCGCCAGACCCCCGCTTTGACATGA GAGGGATGGGGTCAATGGGGGCAGAGCAGCAGCGAGGGGGCGGGGACTCT CACTCGAGGGTCGTGGCGGAAAGCTTGTACTACCCCGGACAGCAGGGCCT GGGAGGACAGGGCTACGGTCTCGACCCCCGCTACCCACGGGTGCTCCAGT CCCCGCGCGGCCCTACTGGCTACGGCGACCCGATGGCAGGCTTATACGGG CAGCATGAGAGCCAGCACCACCAGCAGCAAACACCTGCCTCCCCTATGGT TGCCTCCCGCAGACTTCCGCATGATCTCATTAGTGGTGGAGTTGGCGGCG GCGGGTACTACGGAGGCGGCGGGGGCGGCAGCGGCCGGACGAGAGGGCGG GGAGGCGGGCACATGGACGCCGGGAGCATGATGTCTTCCCCGAGGATCGG AGCGGCCGACCCTTATTACCCTGGCGGGGAGATGGGCGTGTACGGCAGCG GGAGCGGGAGCGGCGGCGGGGGGGGTCGGATACACGGGTGGCAGCGGCGG CCGCGGCGGGCCGGAGGGTGAGGCTACGGTCTCGACCCCCGCTACCCACG GGTGCTCCAGTCCCCGCGCGGCCCTACTGGCTACGGCGACCCGATGGCAG GCTTATACGGGCAGCATGAGAGCCAGCACCACCAGCAGCAAACACCTGCC TCCCCTATGGTTGCCTCCCGCAGACTTCCGCATGATCTCATTAGTGGTGG AGTTGGCGGCGGCGGGTACTACGGAGGCGGCGGGGGCGGCAGCGGCCGGA CGAGAGGGCGGGGAGGCGGGCACATGGACGCCGGGAGCATGATGTCTTCC CCGAGGATCGGAGCGGCCGACCCTTATTACCCTGGCGGGGAGATGGGCGT GTACGGCAGCGGGAGCGGGAGCGGCGGCGGGGGGGGTCGGATACACGGGT GGCAGCGGCGGCCGCGGCGGGCCGGAGGGTGA back to top
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