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Homology
BLAST of mRNA_P-fluviatile_contig13.1889.1 vs. uniprot
Match: A0A6H5L6K7_9PHAE (TFIIB-type domain-containing protein n=2 Tax=Ectocarpus TaxID=2879 RepID=A0A6H5L6K7_9PHAE) HSP 1 Score: 640 bits (1651), Expect = 2.760e-209 Identity = 619/1016 (60.93%), Postives = 676/1016 (66.54%), Query Frame = 3
Query: 42 MAFNFDP--SSSKRAPF--APRCKSCRSTNIEEDQTSGDRACQNCGVVQQENGIVSTVQFSESGGSSNVVGQFVSGDKGRPSGGGAGRGRGRFGHSRDSRETTIQNGKKKIIQVLGQLRLRTNLAEAAGRLFALCVQQNYVQGRKTMNIVAACVYIVCRQRRMPIMLIDISDKLAVNVYVLGKTFQKLIKHLNLQHAVPIVDPAMYIKRFASKLDLGSKTNAVCMTALKIIMSMKRDFLASGRQPAGVCCAALTLATRVNRIERSKEEIRKAVKVCDATVRKRLQEFEATPTSQLTVEQLNRLPQSGASLGLDDDIGGAAAAAGFXXXXXXXXXXXXXXXXXXXXAFAGASILVGNAPMDPPCYIENRIKDGRLKLPPWLEPPPPPLGNYDGKVGRGKGAHGRKKTATGAGNVRPRVVARKHAAKGGQEARTSSKMXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXDEELVRLSSKMNVDANTEEGREALTRHVLHVRSSQDGGASRARSRAKRRKVQNSVYSCIENMLDEDEARGLCVDSEAGGXXXXXXXXXXXXXXXXXGEEATGKGGVSTAGGSATSKVSACLAAYLPSRLRSMITSSRQAEASASDRVYGKDREGGGARED-GDGD----------------GGVADDDLEWGVYLRTEEDSDRTKKEWEKEHQAWEEDQVDQSRSPPPSARSNSPE-TAQRKRKHTLSSSRNRGASTFRDALFAEAGKGRSGKINHAALELLMKPDGSLRQDN---DAMEEVFEDNLAPPAKAKDGKGFGAARVKSRLTASLSSPSPSSTQAMASTFAGAAVLPPARRLKNTAGKGAGAEGSAAPAHVGGGXXXXXXXXXXXKGHGVAAGSVAVKAPV-KEPWRRAGPDDGGQQAALDALAAMMGG 3011
MAFN P S AP RC SC TN + SGDRAC CG V QEN IVS+VQFSESGGSSNVVGQFVSGD+GRPSGGGA RGRGRFG SRDSR+ TIQNGKKKIIQVL QL LRT LA+ A RLFALCV QNYVQGRKTMNIVAACVYIVCRQ PIMLIDISDKLAVNVYVLGKTFQKLIKHLNLQ VPIVDPAMYIKRFA+KLDLGSKTNAVCMTALKII SMKRDFLASGRQPAG+CCAALTLATRVNRIERSKEEIRKAVKVCDATVRKRL EFEATPTSQLTVE+LN+LPQ+ A G++D A+AAA XXXXXXXXXXXXX A S+LV + MDPP +I NRI+DG LK+P W E + V AK XXXXXXXXXXXXXXXXX XXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXX RLSSKM VDANTEEGREALTRHVLH+R+++ G AS+A+SRAKR KV++ VYSC+ENM DEDE RGL +D GGXXXXXXXXXXXXXXXXX ++ ASD K R+GG A ED G+ D D LEWGVYLRTEEDSDRTKKEWEKEH+ W EDQ ++SR N P ++KRK+T S S G + F +A+ EA K +S KI+HAAL+ +M DGSL+Q N D MEEVFEDNLAPP +K+ KG R KS LTASLSS SST AM F G AVLPPARR TA +AA + VG XXXXXXX+G G +A A V K PW RAGP+DGG++A DALA + G
Sbjct: 3 MAFNRKPVPKSQMTAPQDGGTRCPSCGGTNFMDQPGSGDRACAECGTVVQENNIVSSVQFSESGGSSNVVGQFVSGDRGRPSGGGAARGRGRFGQSRDSRDATIQNGKKKIIQVLAQLHLRTTLADEAARLFALCVTQNYVQGRKTMNIVAACVYIVCRQNHFPIMLIDISDKLAVNVYVLGKTFQKLIKHLNLQTQVPIVDPAMYIKRFAAKLDLGSKTNAVCMTALKIIGSMKRDFLASGRQPAGICCAALTLATRVNRIERSKEEIRKAVKVCDATVRKRLLEFEATPTSQLTVEELNKLPQTVAFPGVED----ASAAAXXXXXXXXXXXXXXXT--------AEKSVLVSDIRMDPPAFIANRIRDGALKMP-WTE----------------------------------QTVTETAGAKXXXXXXXXXXXXXXXXXXXXXXXXXXXXRGVRPGVKRKRSPKDKAPRSKXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXS-------------------ARLSSKMKVDANTEEGREALTRHVLHIRATKRG-ASKAKSRAKRSKVESEVYSCLENMFDEDEERGLSIDR--GGXXXXXXXXXXXXXXXXXXXXXXXX------------XXXXXXXXXXXXXXXXXXGKAKSPAPPASDETL-KIRDGGAAGEDSGNKDQXXXXXXXXXXXXXXXXXXXXDGLEWGVYLRTEEDSDRTKKEWEKEHKDWVEDQTEKSRILSDETGLNPPGGVPKKKRKYTFSGSHAVGKN-FGEAISLEAAKSKSLKIDHAALQRVMNLDGSLKQVNEGDDVMEEVFEDNLAPPVPSKNSKGIRG-RGKSPLTASLSS---SSTPAMLKPFTGGAVLPPARRGNTTA--------TAACSDVG---PKAXXXXXXXRGGGKRVAPIAQPAAVVKAPWARAGPNDGGEKAIKDALALLKSG 920
BLAST of mRNA_P-fluviatile_contig13.1889.1 vs. uniprot
Match: A0A7R9U6Q5_9STRA (B-related factor 1 (Fragment) n=1 Tax=Pinguiococcus pyrenoidosus TaxID=172671 RepID=A0A7R9U6Q5_9STRA) HSP 1 Score: 267 bits (683), Expect = 4.540e-74 Identity = 143/281 (50.89%), Postives = 193/281 (68.68%), Query Frame = 3
Query: 93 RCKSCRSTNIEEDQTSGDRACQNCGVVQQENGIVSTVQFSESGGSSNVVGQFVSGDKGRPSGGGAGRGRGRFGHSRDSRETTIQNGKKKIIQVLGQLRLRTNLAEAAGRLFALCVQQNYVQGRKTMNIVAACVYIVCRQRRMPIMLIDISDKLAVNVYVLGKTFQKLIKHLNLQHAVPIVDPAMYIKRFASKLDLGSKTNAVCMTALKIIMSMKRDFLASGRQPAGVCCAALTLATRVNRIERSKEEIRKAVKVCDATVRKRLQEFEATPTSQLTVEQLNR 935
+C C S IE + GD C CG V +EN IVS+++F E+GG V GQF+S +P RGRGR+ +SRDSR+TT+ NG+++I QV LRL + E A RLF + VQ+++VQGRKTM +VAAC+YIVCRQ R P +LID SD L +NV+ LG TF K K LNL+ +PIVDP +YI RFA+KL+ G K VC+TAL+++ +MKR+++ GR+P G+C AALT+A R++ E KEE+ K V T++ RL+EFEATP +QLT+EQ R
Sbjct: 15 QCPECASLEIEVNDAGGDAVCVRCGTVVEENAIVSSIEFEETGG---VRGQFMSATAQKPYSSSV-RGRGRYSYSRDSRDTTLANGRRQIGQVASALRLNAHFTENAHRLFTIAVQRSFVQGRKTMRVVAACLYIVCRQERAPYLLIDFSDALQINVFKLGATFMKFKKLLNLK--LPIVDPGLYIHRFAAKLNFGKKETDVCVTALRLLKTMKRNWMEVGRRPLGLCAAALTMAARMHECEVDKEELLKTFPVSQGTIQLRLREFEATPAAQLTIEQFQR 289
BLAST of mRNA_P-fluviatile_contig13.1889.1 vs. uniprot
Match: A0A7S2B4G7_9STRA (Hypothetical protein (Fragment) n=1 Tax=Dictyocha speculum TaxID=35687 RepID=A0A7S2B4G7_9STRA) HSP 1 Score: 254 bits (648), Expect = 8.510e-71 Identity = 138/291 (47.42%), Postives = 199/291 (68.38%), Query Frame = 3
Query: 96 CKSCRSTNIE-EDQTSGDRACQNCGVVQQENGIVSTVQFSES-GGSSNVVGQFVSGDKGRP-SGGGAGRGRGRFGHSRDSRETTIQNGKKKIIQVLGQLRLRTNLAEAAGRLFALCVQQNYVQGRKTMNIVAACVYIVCRQRRMPIMLIDISDKLAVNVYVLGKTFQKLIKHLNLQHAVPIVDPAMYIKRFASKLDLGSKTNAVCMTALKIIMSMKRDFLASGRQPAGVCCAALTLATRVNRIERSKEEIRKAVKVCDATVRKRLQEFEATPTSQLTVEQLNRLPQSGASL 959
C SC ST+IE D GD C CG V +E+ IV++V+F ES GGS++VVGQFVS D G+ S G R R+G R SR+TT+ NG++ I ++ GQLRL+T+ + A RLF + VQ+N+ +GR+TM++VA C+Y+VCR+ + P MLID SD L+VNVY LG F K + LNL+ +P++DP++YI RFA+++DLG KT+ V AL+I+ +MKRD++ +GR+PAG+C AAL ++ R N R++ E+ K +VC T+R RL EF T + LT E+L ++ L
Sbjct: 15 CPSCGSTDIEWNDFGGGDAVCVACGTVCEESTIVNSVEFLESAGGSTSVVGQFVS-DSGKAYSSSMQGSARSRYGFMRSSRDTTLANGRRNIQELAGQLRLQTHFIDQAHRLFQMAVQRNFNKGRRTMHVVAVCLYVVCRKEKSPNMLIDFSDALSVNVYALGSCFLKFCRLLNLEDQIPLIDPSLYIHRFAARMDLGQKTSMVSQAALRIVANMKRDWMLTGRRPAGICAAALLISARANGFPRTQAEMVKVFRVCGMTIRMRLTEFSTTHAASLTNEELRNSEETARKL 304
BLAST of mRNA_P-fluviatile_contig13.1889.1 vs. uniprot
Match: A0A7S2RQN0_9STRA (Hypothetical protein n=1 Tax=Rhizochromulina marina TaxID=1034831 RepID=A0A7S2RQN0_9STRA) HSP 1 Score: 257 bits (657), Expect = 2.800e-70 Identity = 136/277 (49.10%), Postives = 195/277 (70.40%), Query Frame = 3
Query: 111 STNIEEDQTSGDRACQNCGVVQQENGIVSTVQFSESGGSSNVVGQFVSGDKGRPSGGGA-GRGRGRFGHSRDSRETTIQNGKKKIIQVLGQLRLRTNLAEAAGRLFALCVQQNYVQGRKTMNIVAACVYIVCRQRRMPIMLIDISDKLAVNVYVLGKTFQKLIKHLNLQHAVPIVDPAMYIKRFASKLDLGSKTNAVCMTALKIIMSMKRDFLASGRQPAGVCCAALTLATRVNRIERSKEEIRKAVKVCDATVRKRLQEFEATPTSQLTVEQLNRL 938
S +IE + GD C CG V +E+ IVS ++FSE+ G++ VVGQFVS + +P G R R+G R+SRETT+ GK I +V G+LRL+ + ++A RLF VQ+N+VQGRKTM++VA C+YI CR+ + P MLID SD L+VNV+ LG F K + L++ P++DP++YI RFA+++DLG+KT AV +AL+I+ MKRD++ +GR+PAG+C AAL +A R + R++ E+ K ++VC TVR RL+EFEATP +QLT++QL RL
Sbjct: 2 SLDIEWHEAGGDAVCVKCGTVCEESTIVSAIEFSETAGAATVVGQFVSENCSKPYMGSMHASARSRYGFMRNSRETTLAKGKASIAEVAGRLRLQNHYIDSAHRLFTFAVQRNFVQGRKTMHVVAVCLYIKCREDKSPHMLIDFSDALSVNVFTLGSCFLKFCRLLSID--TPLIDPSLYIHRFAARMDLGAKTQAVAQSALRIVARMKRDWIQTGRRPAGICAAALLIAARTHGFPRTQAEVVKILRVCGMTVRTRLEEFEATPAAQLTMDQLKRL 276
BLAST of mRNA_P-fluviatile_contig13.1889.1 vs. uniprot
Match: A0A448Z1B8_9STRA (B-related factor 1 n=1 Tax=Pseudo-nitzschia multistriata TaxID=183589 RepID=A0A448Z1B8_9STRA) HSP 1 Score: 256 bits (654), Expect = 8.000e-70 Identity = 138/282 (48.94%), Postives = 198/282 (70.21%), Query Frame = 3
Query: 96 CKSCRSTNIEEDQTSGDRACQNCGVVQQENGIVSTVQFSE-SGGSSNVVGQFVSGDKGRPSGGGAGRGRGRFGHSRDSRETTIQNGKKKIIQVLGQLRLRTNLAEAAGRLFALCVQQNYVQGRKTMNIVAACVYIVCRQRRMPIMLIDISDKLAVNVYVLGKTFQKLIKHLNLQHAVPIVDPAMYIKRFASKLDLGSKTNAVCMTALKIIMSMKRDFLASGRQPAGVCCAALTLATRVNRIERSKEEIRKAVKVCDATVRKRLQEFEATPTSQLTVEQLNRL 938
C +C S NIE +G+ C CGV+ +EN IVS ++F E +GGSS++VGQFVS R + G GRG G +G SRDSRETT+ NG+++I +V +LRL + +AA RLF + V++N+VQGR+T+++VAAC+YI CRQ + MLID SD L VNVY LG F K + L L+ A I+DPA+YI RFA+ LDL K N V +TAL+++ MKRD++ +GR+PAG+C AAL +A+R + R +++ + ++VC TV R++EFE TP++ LT+EQ N++
Sbjct: 6 CPNCGSKNIESQGAAGNCVCTECGVIVEENAIVSHMEFVEGAGGSSSMVGQFVSATS-RKAYTGGGRGAGNYGFSRDSRETTLANGRRRIQEVASRLRLGGHYVDAAHRLFTIAVEKNFVQGRRTIHVVAACLYISCRQEKSQHMLIDFSDALQVNVYTLGTCFLKFRRLLGLKLA--ILDPALYIYRFAAHLDLDDKANEVALTALRLVGRMKRDWIVAGRRPAGICAAALLIASRAHGFSRHSQDVTRILRVCGMTVSTRMKEFEQTPSASLTLEQFNKV 284
BLAST of mRNA_P-fluviatile_contig13.1889.1 vs. uniprot
Match: B7GD27_PHATC (B-related factor 1 n=1 Tax=Phaeodactylum tricornutum (strain CCAP 1055/1) TaxID=556484 RepID=B7GD27_PHATC) HSP 1 Score: 253 bits (647), Expect = 4.090e-69 Identity = 138/288 (47.92%), Postives = 197/288 (68.40%), Query Frame = 3
Query: 96 CKSCRSTNIEEDQTSGDRACQNCGVVQQENGIVSTVQFSE-SGGSSNVVGQFVSGDKGRPSGGGAG------RGRGRFGHSRDSRETTIQNGKKKIIQVLGQLRLRTNLAEAAGRLFALCVQQNYVQGRKTMNIVAACVYIVCRQRRMPIMLIDISDKLAVNVYVLGKTFQKLIKHLNLQHAVPIVDPAMYIKRFASKLDLGSKTNAVCMTALKIIMSMKRDFLASGRQPAGVCCAALTLATRVNRIERSKEEIRKAVKVCDATVRKRLQEFEATPTSQLTVEQLNRL 938
C +C ST+IE+ SG C CGVV +EN IVS V+F E +GG+S++VGQFVS + GG G R+G SRDSRETT+ NG+++I +V +LRL T+ +AA RLF + V++N+VQGR+T ++VAAC+YI CRQ + MLID SD L VNVY LG F K + L L+ + I+DPA+YI RFA+ LDL K NAV +TAL+++ MKRD++ +GR+PAG+C AAL +A+R + R +++ + ++VC TV R++EFE TP++ LT+EQ ++
Sbjct: 69 CPNCGSTSIEQHDASGASVCTECGVVVEENAIVSAVEFVEGAGGASSMVGQFVSATSSKAYTGGPGGXXXXXXXXXRYGFSRDSRETTLANGRRRIQEVASRLRLGTHFVDAAHRLFTIAVERNFVQGRRTTHVVAACLYIACRQEKSQHMLIDFSDALQVNVYTLGTCFLKFRRLLGLK--LEIIDPALYIYRFAAHLDLDEKANAVSLTALRLVARMKRDWIVAGRRPAGICAAALLIASRAHGFSRHHQDVTRILRVCGWTVTNRVKEFEHTPSAALTLEQFQKV 354
BLAST of mRNA_P-fluviatile_contig13.1889.1 vs. uniprot
Match: A0A1Z5JG53_FISSO (B-related factor 1 n=2 Tax=Fistulifera solaris TaxID=1519565 RepID=A0A1Z5JG53_FISSO) HSP 1 Score: 253 bits (645), Expect = 1.020e-68 Identity = 137/285 (48.07%), Postives = 196/285 (68.77%), Query Frame = 3
Query: 84 FAPRCKSCRSTNIEEDQTSGDRACQNCGVVQQENGIVSTVQFSE-SGGSSNVVGQFVSGDKGRP-SGGGAGRGRGRFGHSRDSRETTIQNGKKKIIQVLGQLRLRTNLAEAAGRLFALCVQQNYVQGRKTMNIVAACVYIVCRQRRMPIMLIDISDKLAVNVYVLGKTFQKLIKHLNLQHAVPIVDPAMYIKRFASKLDLGSKTNAVCMTALKIIMSMKRDFLASGRQPAGVCCAALTLATRVNRIERSKEEIRKAVKVCDATVRKRLQEFEATPTSQLTVEQLN 932
F C +C IE+ + SG C CG+V +EN IVS V+F E +GGSSN+VGQFVS + +G GR R+ S+DSRETT+ NG+++I +V +LRL ++ +AA RLF + V++N+VQGR+T+++VAAC+YI CRQ + MLID SD L VNVY LG F K + L LQ + I+DPA+YI RFA+ LDL K NAV MTAL+++ MKRD++ +GR+PAG+C AAL +A RV+ + ++ + +KVC TV R++EFE TP+++LT++Q +
Sbjct: 32 FQLMCPNCGGKAIEQHEASGASICIECGIVVEENAIVSAVEFVEGAGGSSNMVGQFVSASSSKAYTGAAVGR---RYAFSKDSRETTLANGRRRIQEVASRLRLGSHFVDAAHRLFTIAVEKNFVQGRRTIHVVAACLYIACRQEKSQHMLIDFSDALQVNVYTLGTCFLKFRRLLGLQ--LEIIDPALYIYRFAAHLDLDEKANAVSMTALRLVARMKRDWIVAGRRPAGICAAALLIAARVHGFSKHHHDVTRILKVCGMTVTSRVREFEKTPSARLTLDQFS 311
BLAST of mRNA_P-fluviatile_contig13.1889.1 vs. uniprot
Match: A0A1E7FX19_9STRA (B-related factor 1 n=1 Tax=Fragilariopsis cylindrus CCMP1102 TaxID=635003 RepID=A0A1E7FX19_9STRA) HSP 1 Score: 248 bits (632), Expect = 2.090e-68 Identity = 136/284 (47.89%), Postives = 193/284 (67.96%), Query Frame = 3
Query: 90 PRCKSCRSTNIEEDQTSGDRACQNCGVVQQENGIVSTVQFSES-GGSSNVVGQFVSGDKGRPSGGGAGRGRGRFGHSRDSRETTIQNGKKKIIQVLGQLRLRTNLAEAAGRLFALCVQQNYVQGRKTMNIVAACVYIVCRQRRMPIMLIDISDKLAVNVYVLGKTFQKLIKHLNLQHAVPIVDPAMYIKRFASKLDLGSKTNAVCMTALKIIMSMKRDFLASGRQPAGVCCAALTLATRVNRIERSKEEIRKAVKVCDATVRKRLQEFEATPTSQLTVEQLNRL 938
P C +C S +IE SG C CGV+ +EN IVS V+F E GG+S++VGQFVS R + G GR G +G SRDSRETT+ NG++KI +V +LRL + ++A RLF + V++N+VQGR+T+++VAAC+YI CRQ + MLID SD L VNVY LG F K + L L+ A I+DPA+YI RFA+ LDL + N V +TAL+++ MKRD++ GR+PAG+C AAL +A R + R +++ + ++VC TV R++EFE TP++ LT++Q R+
Sbjct: 8 PVCPNCGSKHIELQGASGASVCTECGVILEENAIVSNVEFVEGQGGASSMVGQFVSATS-RKAYTGGGRAGGNYGFSRDSRETTLANGRRKIQEVASRLRLGGHYVDSAHRLFTIAVEKNFVQGRRTIHVVAACLYISCRQEKSQHMLIDFSDALQVNVYTLGTCFLKFRRLLGLKLA--ILDPALYIYRFAAHLDLNDQANLVALTALRLVGRMKRDWIVCGRRPAGICAAALLIAARAHGFSRHPQDVTRILRVCGMTVTTRVREFEQTPSASLTLQQFGRV 288
BLAST of mRNA_P-fluviatile_contig13.1889.1 vs. uniprot
Match: A0A7S3ZRV4_9STRA (Hypothetical protein n=1 Tax=Pelagomonas calceolata TaxID=35677 RepID=A0A7S3ZRV4_9STRA) HSP 1 Score: 248 bits (634), Expect = 1.020e-67 Identity = 136/286 (47.55%), Postives = 198/286 (69.23%), Query Frame = 3
Query: 93 RCKS--CRSTNIEEDQTSGDRACQNCGVVQQENGIVSTVQFSESGGSSNVVGQFVSGDKGRPSGG-GAG---RGRGRFGHSRDSRETTIQNGKKKIIQVLGQLRLRTNLAEAAGRLFALCVQQNYVQGRKTMNIVAACVYIVCRQRRMPIMLIDISDKLAVNVYVLGKTFQKLIKHLNLQHAVPIVDPAMYIKRFASKLDLGSKTNAVCMTALKIIMSMKRDFLASGRQPAGVCCAALTLATRVNRIERSKEEIRKAVKVCDATVRKRLQEFEATPTSQLTVEQLN 932
RC + CRST+I+ +++SGD C CG V +E+ IV++V+F+E G S VVGQFVS +P G GA GR ++G R SRETT+ GK+KI QV LRL + + A R+F L Q+N+ QGRKT+++V AC+Y++CR+ + ML+D SD L VNVY LG TF K + LNL+ +P+VDP++YI RFA+KL+LG +AV TALK++ MKRD++ +GR+PAGVC AAL ++ R + R+++++ A++VC TV KRL +F+ATP +QLT+ + +
Sbjct: 5 RCSNPECRSTDIDWNESSGDAVCVRCGTVCEESTIVASVEFTEGAGGSGVVGQFVSAQCTKPFGTLGANYGSSGRPKYGFLRSSRETTLAAGKRKIEQVANSLRLGQHYVDGADRIFKLAAQRNFTQGRKTLHVVCACLYVMCRREKSAHMLVDFSDVLQVNVYSLGATFLKFRRVLNLE--LPLVDPSLYIHRFAAKLELGDAASAVGATALKVVQRMKRDWIETGRRPAGVCAAALLVSARAHGFHRTQQDVVSALRVCGMTVSKRLADFQATPAAQLTLREFH 288
BLAST of mRNA_P-fluviatile_contig13.1889.1 vs. uniprot
Match: A0A7S4BVT8_CHRCT (Hypothetical protein (Fragment) n=1 Tax=Chrysotila carterae TaxID=13221 RepID=A0A7S4BVT8_CHRCT) HSP 1 Score: 241 bits (616), Expect = 7.510e-67 Identity = 131/284 (46.13%), Postives = 185/284 (65.14%), Query Frame = 3
Query: 90 PRCKSCRSTNIEEDQTSGDRACQNCGVVQQENGIVSTVQFSE-SGGSSNVVGQFVSGDKGRPSGGGAGRGRGRFGHSRDSRETTIQNGKKKIIQVLGQLRLRTNLAEAAGRLFALCVQQNYVQGRKTMNIVAACVYIVCRQRRMPIMLIDISDKLAVNVYVLGKTFQKLIKHLNLQHAVPIVDPAMYIKRFASKLDLGSKTNAVCMTALKIIMSMKRDFLASGRQPAGVCCAALTLATRVNRIERSKEEIRKAVKVCDATVRKRLQEFEATPTSQLTVEQLNRL 938
P C C T+IE D + GD C CG V +EN IV+ V F++ +GG S+VVGQFVS GR G G +R+SRE NG++ I Q+ LRL + EAA RLF L VQ N++QGRKT +++AAC+Y VCR+ + +LID SD L NVY+LG F K + L+L +PI+DP++YI RFASKL+ G +T+ V M+AL+++ MKRD++ +GR+P+G+C AAL +A RV+ R++ E+ + V++CD T+RKRL EF T LT +QL +
Sbjct: 2 PVCSQCGGTDIEIDASRGDAVCIQCGNVLEENTIVNEVTFAQDAGGGSSVVGQFVSATPGRNVG---------LGFNRESREVAFANGQRHISQLAAALRLADHHQEAANRLFHLAVQHNFIQGRKTQHVIAACLYTVCRREKTAHLLIDYSDVLQTNVYLLGSCFLKFTRILSL--TLPIIDPSLYIHRFASKLEFGDRTHLVSMSALRLVQRMKRDWIQTGRRPSGICGAALLIAARVHGFRRTQREVVRVVRICDVTLRKRLDEFSDTAVGVLTAQQLETI 274
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 | 602.4 |
| Seed ortholog evalue | 4.2e-169 |
| Seed eggNOG ortholog | 2880.D8LS89 |
| Preferred name | BRF1 |
| KEGG ko | ko:K15196 |
| GOs | GO:0000126,GO:0000976,GO:0000992,GO:0000994,GO:0000995,GO:0001006,GO:0001016,GO:0001025,GO:0001032,GO:0001067,GO:0001112,GO:0001120,GO:0001156,GO:0003674,GO:0003676,GO:0003677,GO:0003690,GO:0005488,GO:0005515,GO:0005575,GO:0005622,GO:0005623,GO:0005634,GO:0005654,GO:0005667,GO:0006139,GO:0006259,GO:0006351,GO:0006352,GO:0006355,GO:0006359,GO:0006383,GO:0006384,GO:0006399,GO:0006725,GO:0006807,GO:0008134,GO:0008150,GO:0008152,GO:0009058,GO:0009059,GO:0009303,GO:0009304,GO:0009889,GO:0009891,GO:0009893,GO:0009894,GO:0009987,GO:0010467,GO:0010468,GO:0010556,GO:0010557,GO:0010604,GO:0010608,GO:0010628,GO:0015074,GO:0016043,GO:0016070,GO:0016072,GO:0018130,GO:0019219,GO:0019222,GO:0019438,GO:0019899,GO:0022607,GO:0031323,GO:0031325,GO:0031326,GO:0031328,GO:0031329,GO:0031974,GO:0031981,GO:0032091,GO:0032196,GO:0032774,GO:0032991,GO:0034367,GO:0034622,GO:0034641,GO:0034645,GO:0034654,GO:0034660,GO:0043170,GO:0043175,GO:0043226,GO:0043227,GO:0043229,GO:0043231,GO:0043233,GO:0043393,GO:0043487,GO:0043488,GO:0043496,GO:0043565,GO:0043933,GO:0044085,GO:0044092,GO:0044212,GO:0044237,GO:0044238,GO:0044249,GO:0044260,GO:0044271,GO:0044422,GO:0044424,GO:0044428,GO:0044446,GO:0044464,GO:0044798,GO:0045893,GO:0045935,GO:0045945,GO:0046483,GO:0048518,GO:0048522,GO:0050789,GO:0050794,GO:0051098,GO:0051100,GO:0051171,GO:0051173,GO:0051252,GO:0051254,GO:0060255,GO:0061013,GO:0065003,GO:0065004,GO:0065007,GO:0065008,GO:0065009,GO:0070013,GO:0070063,GO:0070893,GO:0070897,GO:0070898,GO:0071704,GO:0071824,GO:0071840,GO:0080090,GO:0090074,GO:0090304,GO:0090576,GO:0097159,GO:0097659,GO:0098781,GO:0140110,GO:0140223,GO:1901360,GO:1901362,GO:1901363,GO:1901576,GO:1902680,GO:1903311,GO:1903506,GO:1903508,GO:1990837,GO:2000112,GO:2001141 |
| EggNOG free text desc. | DNA-templated transcriptional preinitiation complex assembly |
| EggNOG OGs | COG1405@1,KOG1598@2759 |
| COG Functional cat. | K |
| Best tax level | Eukaryota |
| Best eggNOG OG | NA|NA|NA |
| BRITE | ko00000,ko03021 |
| Hectar predicted targeting category | other localisation |
| Exons | 16 |
| Model size | 3410 |
| Cds size | 3369 |
| Stop | 1 |
| Start | 1 |
Relationships
The following CDS feature(s) are a part of this mRNA:
| Feature Name | Unique Name | Species | Type | Position |
| 1622815577.4462805-CDS-P-fluviatile_contig13:2586592..2587107 | 1622815577.4462805-CDS-P-fluviatile_contig13:2586592..2587107 | Porterinema fluviatile SAG_2381 | CDS | P-fluviatile_contig13 2586593..2587107 - |
| 1693562302.4688864-CDS-P-fluviatile_contig13:2586592..2587107 | 1693562302.4688864-CDS-P-fluviatile_contig13:2586592..2587107 | Porterinema fluviatile SAG_2381 | CDS | P-fluviatile_contig13 2586593..2587107 - |
| 1622815577.46224-CDS-P-fluviatile_contig13:2587161..2587470 | 1622815577.46224-CDS-P-fluviatile_contig13:2587161..2587470 | Porterinema fluviatile SAG_2381 | CDS | P-fluviatile_contig13 2587162..2587470 - |
| 1693562302.4807546-CDS-P-fluviatile_contig13:2587161..2587470 | 1693562302.4807546-CDS-P-fluviatile_contig13:2587161..2587470 | Porterinema fluviatile SAG_2381 | CDS | P-fluviatile_contig13 2587162..2587470 - |
| 1622815577.4799135-CDS-P-fluviatile_contig13:2588075..2588203 | 1622815577.4799135-CDS-P-fluviatile_contig13:2588075..2588203 | Porterinema fluviatile SAG_2381 | CDS | P-fluviatile_contig13 2588076..2588203 - |
| 1693562302.4891317-CDS-P-fluviatile_contig13:2588075..2588203 | 1693562302.4891317-CDS-P-fluviatile_contig13:2588075..2588203 | Porterinema fluviatile SAG_2381 | CDS | P-fluviatile_contig13 2588076..2588203 - |
| 1622815577.4932907-CDS-P-fluviatile_contig13:2588619..2588663 | 1622815577.4932907-CDS-P-fluviatile_contig13:2588619..2588663 | Porterinema fluviatile SAG_2381 | CDS | P-fluviatile_contig13 2588620..2588663 - |
| 1693562302.4982293-CDS-P-fluviatile_contig13:2588619..2588663 | 1693562302.4982293-CDS-P-fluviatile_contig13:2588619..2588663 | Porterinema fluviatile SAG_2381 | CDS | P-fluviatile_contig13 2588620..2588663 - |
| 1622815577.510462-CDS-P-fluviatile_contig13:2589579..2589872 | 1622815577.510462-CDS-P-fluviatile_contig13:2589579..2589872 | Porterinema fluviatile SAG_2381 | CDS | P-fluviatile_contig13 2589580..2589872 - |
| 1693562302.5160844-CDS-P-fluviatile_contig13:2589579..2589872 | 1693562302.5160844-CDS-P-fluviatile_contig13:2589579..2589872 | Porterinema fluviatile SAG_2381 | CDS | P-fluviatile_contig13 2589580..2589872 - |
| 1622815577.5264544-CDS-P-fluviatile_contig13:2590746..2590860 | 1622815577.5264544-CDS-P-fluviatile_contig13:2590746..2590860 | Porterinema fluviatile SAG_2381 | CDS | P-fluviatile_contig13 2590747..2590860 - |
| 1693562302.5269878-CDS-P-fluviatile_contig13:2590746..2590860 | 1693562302.5269878-CDS-P-fluviatile_contig13:2590746..2590860 | Porterinema fluviatile SAG_2381 | CDS | P-fluviatile_contig13 2590747..2590860 - |
| 1622815577.540618-CDS-P-fluviatile_contig13:2590899..2590987 | 1622815577.540618-CDS-P-fluviatile_contig13:2590899..2590987 | Porterinema fluviatile SAG_2381 | CDS | P-fluviatile_contig13 2590900..2590987 - |
| 1693562302.544728-CDS-P-fluviatile_contig13:2590899..2590987 | 1693562302.544728-CDS-P-fluviatile_contig13:2590899..2590987 | Porterinema fluviatile SAG_2381 | CDS | P-fluviatile_contig13 2590900..2590987 - |
| 1622815577.5517294-CDS-P-fluviatile_contig13:2591808..2591886 | 1622815577.5517294-CDS-P-fluviatile_contig13:2591808..2591886 | Porterinema fluviatile SAG_2381 | CDS | P-fluviatile_contig13 2591809..2591886 - |
| 1693562302.555292-CDS-P-fluviatile_contig13:2591808..2591886 | 1693562302.555292-CDS-P-fluviatile_contig13:2591808..2591886 | Porterinema fluviatile SAG_2381 | CDS | P-fluviatile_contig13 2591809..2591886 - |
| 1622815577.565282-CDS-P-fluviatile_contig13:2592454..2592634 | 1622815577.565282-CDS-P-fluviatile_contig13:2592454..2592634 | Porterinema fluviatile SAG_2381 | CDS | P-fluviatile_contig13 2592455..2592634 - |
| 1693562302.5646403-CDS-P-fluviatile_contig13:2592454..2592634 | 1693562302.5646403-CDS-P-fluviatile_contig13:2592454..2592634 | Porterinema fluviatile SAG_2381 | CDS | P-fluviatile_contig13 2592455..2592634 - |
| 1622815577.578565-CDS-P-fluviatile_contig13:2592727..2593256 | 1622815577.578565-CDS-P-fluviatile_contig13:2592727..2593256 | Porterinema fluviatile SAG_2381 | CDS | P-fluviatile_contig13 2592728..2593256 - |
| 1693562302.5761247-CDS-P-fluviatile_contig13:2592727..2593256 | 1693562302.5761247-CDS-P-fluviatile_contig13:2592727..2593256 | Porterinema fluviatile SAG_2381 | CDS | P-fluviatile_contig13 2592728..2593256 - |
| 1622815577.5918243-CDS-P-fluviatile_contig13:2593975..2594265 | 1622815577.5918243-CDS-P-fluviatile_contig13:2593975..2594265 | Porterinema fluviatile SAG_2381 | CDS | P-fluviatile_contig13 2593976..2594265 - |
| 1693562302.5861158-CDS-P-fluviatile_contig13:2593975..2594265 | 1693562302.5861158-CDS-P-fluviatile_contig13:2593975..2594265 | Porterinema fluviatile SAG_2381 | CDS | P-fluviatile_contig13 2593976..2594265 - |
| 1622815577.6065989-CDS-P-fluviatile_contig13:2594932..2595058 | 1622815577.6065989-CDS-P-fluviatile_contig13:2594932..2595058 | Porterinema fluviatile SAG_2381 | CDS | P-fluviatile_contig13 2594933..2595058 - |
| 1693562302.5976436-CDS-P-fluviatile_contig13:2594932..2595058 | 1693562302.5976436-CDS-P-fluviatile_contig13:2594932..2595058 | Porterinema fluviatile SAG_2381 | CDS | P-fluviatile_contig13 2594933..2595058 - |
| 1622815577.6179557-CDS-P-fluviatile_contig13:2595511..2595649 | 1622815577.6179557-CDS-P-fluviatile_contig13:2595511..2595649 | Porterinema fluviatile SAG_2381 | CDS | P-fluviatile_contig13 2595512..2595649 - |
| 1693562302.605391-CDS-P-fluviatile_contig13:2595511..2595649 | 1693562302.605391-CDS-P-fluviatile_contig13:2595511..2595649 | Porterinema fluviatile SAG_2381 | CDS | P-fluviatile_contig13 2595512..2595649 - |
| 1622815577.63132-CDS-P-fluviatile_contig13:2596410..2596533 | 1622815577.63132-CDS-P-fluviatile_contig13:2596410..2596533 | Porterinema fluviatile SAG_2381 | CDS | P-fluviatile_contig13 2596411..2596533 - |
| 1693562302.6126862-CDS-P-fluviatile_contig13:2596410..2596533 | 1693562302.6126862-CDS-P-fluviatile_contig13:2596410..2596533 | Porterinema fluviatile SAG_2381 | CDS | P-fluviatile_contig13 2596411..2596533 - |
| 1622815577.6476493-CDS-P-fluviatile_contig13:2597254..2597341 | 1622815577.6476493-CDS-P-fluviatile_contig13:2597254..2597341 | Porterinema fluviatile SAG_2381 | CDS | P-fluviatile_contig13 2597255..2597341 - |
| 1693562302.6203544-CDS-P-fluviatile_contig13:2597254..2597341 | 1693562302.6203544-CDS-P-fluviatile_contig13:2597254..2597341 | Porterinema fluviatile SAG_2381 | CDS | P-fluviatile_contig13 2597255..2597341 - |
| 1622815577.6593597-CDS-P-fluviatile_contig13:2597991..2598318 | 1622815577.6593597-CDS-P-fluviatile_contig13:2597991..2598318 | Porterinema fluviatile SAG_2381 | CDS | P-fluviatile_contig13 2597992..2598318 - |
| 1693562302.6362424-CDS-P-fluviatile_contig13:2597991..2598318 | 1693562302.6362424-CDS-P-fluviatile_contig13:2597991..2598318 | Porterinema fluviatile SAG_2381 | CDS | P-fluviatile_contig13 2597992..2598318 - |
The following UTR feature(s) are a part of this mRNA:
| Feature Name | Unique Name | Species | Type | Position |
| 1622815577.6741602-UTR-P-fluviatile_contig13:2598318..2598359 | 1622815577.6741602-UTR-P-fluviatile_contig13:2598318..2598359 | Porterinema fluviatile SAG_2381 | UTR | P-fluviatile_contig13 2598319..2598359 - |
| 1693562302.6525168-UTR-P-fluviatile_contig13:2598318..2598359 | 1693562302.6525168-UTR-P-fluviatile_contig13:2598318..2598359 | Porterinema fluviatile SAG_2381 | UTR | P-fluviatile_contig13 2598319..2598359 - |
The following polypeptide feature(s) derives from this mRNA:
Sequences
The following sequences are available for this feature:
protein sequence of mRNA_P-fluviatile_contig13.1889.1 >prot_P-fluviatile_contig13.1889.1 ID=prot_P-fluviatile_contig13.1889.1|Name=mRNA_P-fluviatile_contig13.1889.1|organism=Porterinema fluviatile SAG_2381|type=polypeptide|length=1123bp
MAFNFDPSSSKRAPFAPRCKSCRSTNIEEDQTSGDRACQNCGVVQQENGI VSTVQFSESGGSSNVVGQFVSGDKGRPSGGGAGRGRGRFGHSRDSRETTI QNGKKKIIQVLGQLRLRTNLAEAAGRLFALCVQQNYVQGRKTMNIVAACV YIVCRQRRMPIMLIDISDKLAVNVYVLGKTFQKLIKHLNLQHAVPIVDPA MYIKRFASKLDLGSKTNAVCMTALKIIMSMKRDFLASGRQPAGVCCAALT LATRVNRIERSKEEIRKAVKVCDATVRKRLQEFEATPTSQLTVEQLNRLP QSGASLGLDDDIGGAAAAAGFSGEAGAAGNVAGTSGAAGAAAFAGASILV GNAPMDPPCYIENRIKDGRLKLPPWLEPPPPPLGNYDGKVGRGKGAHGRK KTATGAGNVRPRVVARKHAAKGGQEARTSSKMEPPKRRVGGGGGVSGRYE DDDGEEEEEEEGEEEEEEPRKTRVLPKRKAAAAAAAAAAAAAVKTSGKSS ADEDTEDDDELGGVGDEDDDSEYSSDGDDSEHERAAAGSREEEEEEEEEE EEEEEEEEEEEEEADDDDDDDDEEVVDEELVRLSSKMNVDANTEEGREAL TRHVLHVRSSQDGGASRARSRAKRRKVQNSVYSCIENMLDEDEARGLCVD SEAGGGDSNSSSSSIASATAAAGEEATGKGGVSTAGGSATSKVSACLAAY LPSRLRSMITSSRQAEASASDRVYGKDREGGGAREDGDGDGGVADDDLEW GVYLRTEEDSDRTKKEWEKEHQAWEEDQVDQSRSPPPSARSNSPETAQRK RKHTLSSSRNRGASTFRDALFAEAGKGRSGKINHAALELLMKPDGSLRQD NDAMEEVFEDNLAPPAKAKDGKGFGAARVKSRLTASLSSPSPSSTQAMAS TFAGAAVLPPARRLKNTAGKGAGAEGSAAPAHVGGGGGGGGGRGGGAKGH GVAAGSVAVKAPVKEPWRRAGPDDGGQQAALDALAAMMGGVDAGLGGVGG GSVAPSGAGVGADATGELADSPSVWGKHGGSARARGGADACTKAAAVAAV TAAAAPETIETMEDIEEEEVAPEAAAVAAAVEEEEEEEEEDDDDDDDDDE GRGRHPMYGEVDDDDDPYGEEA* back to topmRNA from alignment at P-fluviatile_contig13:2586593..2598359- Legend: UTRpolypeptideCDS Hold the cursor over a type above to highlight its positions in the sequence below. >mRNA_P-fluviatile_contig13.1889.1 ID=mRNA_P-fluviatile_contig13.1889.1|Name=mRNA_P-fluviatile_contig13.1889.1|organism=Porterinema fluviatile SAG_2381|type=mRNA|length=11767bp|location=Sequence derived from alignment at P-fluviatile_contig13:2586593..2598359- (Porterinema fluviatile SAG_2381) GCCTACGGCATACGCGCGTTCACGTGCACTGAACAAATAACATGGCTTTC
AATTTCGATCCTTCTTCATCGAAGCGTGCGCCTTTTGCGCCTAGGTGCAA
AAGCTGCAGGAGCACGAACATCGAAGAGGACCAAACGTCCGGCGACCGAG
CGTGCCAGAACTGCGGCGTCGTCCAGCAGGAGAATGGCATCGTCTCGACT
GTACAGTTCAGCGAGTCCGGCGGGTCATCCAACGTTGTCGGACAGTTCGT
ATCGGGAGACAAGGGTCGTCCCAGCGGCGGAGGAGCCGGCAGAGGCCGGG
GCCGTTTCGGGCACAGCCGGGACTCGCGCGAAACCACCATTCAGAATGGA
AAGAAGAAGATCATCCAGGTGACTATTCGTGTGGTTCATCCGTAGTCTCT
GCATGCCCTCTGCGCTGCTCTCTCTCTCTCTCTCTCTCTCTCCTGGAGGC
GTTGGTGCCTCCAATTGTCTGCATAGACAGAGAATCCTTGCCAATGCCGC
TCTTGTTTGATCACAGCGTGAGGTTGTGAGAGCACGTAAAAGAAGTTGAA
GTGGGCGACAGTTGCTGCGGGTGCGCGCTCGCGAGCCTTGTAGTTGTTGT
GGGAAAGCGCAGAATCGGTTGTCGACGTCACGAGGCTATTCACGTTAAGA
TCGGAGAGGCGGGCCGCGCGACGAAGGTGTGCATAACGAAGCACGCAGCG
CGTGAATGTTGATCGATGGGCACGAACGGGCAAGGCAGCGGTGGGGGTGT
TCAAGTCTGAAAGCTGATGCGGGCAGTGTCGGCGCCCTTCCCTCTTTCGC
TGATCTTGTTCCCTCCACACCAAGAGAAAAACGCCAAAAACGCGCTTCGA
TGTGTCACGAGACACCCACAATCTGAACAAACAACGTCACACGCGAGAGA
GATCCGGACCTAGGGCGAAAGCAAATAAACGGACGCTCTGCCTTTTCACT
CCACGCGCGCCTCCAAATCCTCGCTAACGCCGTTCTCTCGCTCTGCTGTC
TGCTCCGCCGCCTGCCAGGTTCTCGGCCAGCTCCGCCTCAGGACCAACCT
CGCCGAGGCCGCCGGTCGGCTATTCGCGCTCTGTGTCCAGCAGAACTATG
TCCAGGTGTGGGTGTTGGGAGTTTGTGGGTTTTCGCGCACGCACACTGGT
CCGGTGCTTTTTTCTTTTTGCTGGGATTTGCCTCGCAAGCCGGCTGCAGC
GATGAACCGAATTGCTGCCCTCGTATTCCACGTTTTTTTGTTTTGTTTTG
AATGCATGGCACTTTCAAGCAAACTGCTGTCTGCTGTGGTAGTACTCAGT
CAAGCCCCCCGTATGGTGGAAGGTGTGCCGTCCTTCCTTTTCAACGACGT
AGCCGCGGTTGTTTGTTTGACTGGTACTTAGCGGAAGGCATGCTGCAAGC
AGCGACGATACTTATACTGCGCAGGGGTGGCTACCACGGAGGCGCTTCTA
TAACGTGTCGTAGGGCAAATGATGAAAGGGAAACAAAAGTGTGATGTTTT
CTCACGCGTAACGTACGGATCACTTAGCACACGTCAGGCATCGTCGGTAC
TGCGCATGTGTTGCTGCCTGGAAATCATCTCCACCCCCGCTGTGTAGGCG
TTTGGTGTTTGCTGCTGTTGCAAACCCCTGACAACAACCCCCCCATCCCC
ATCGCCTTGCTTCCGATGTCGCCTTACCCGCGCTTTTTTTTTTTTTTTTT
TTTTGCGGTGGCCCCTCGTTCGGCGGCGGCCGCTTCTACTGTGACGCTTT
GGTTAACCGGTGGCGGCGGCGGCAACACACTCGGCAACGCGTCCGTTTGC
GGTGGGGCTTCTCGCTACCTTCTCAGGGCCGCAAGACGATGAACATCGTG
GCGGCGTGCGTTTACATCGTGTGCCGGCAAAGGCGCATGCCGATCATGCT
GATCGATATCAGTGACAAGCTCGCAGTCAACGTCTACGTCTTGGGGAAGG
TAAGCGCGCGCGTGAGTGACCGGAGACTCGTGCATTTGTCGCAGTCTTAC
CCCCCTTCTCCGCTGCAGCAGCTGAACTCTTCACCGGCAGTGTTTGGTTT
GTCATAGCAGGGGCCAACCCCCTAAGAAGCTTGGCAACTCGCCGTGCAAG
CCTCCACCACATCTGTGCACGGAAGTTCAGTGCAAGGTTCGTGTAGCTGC
TGAGACGACAAGACGCGATGCTGTGTGTCGAGCCTGGCCTCGGAGAGACG
TGGGATGTGGGCACGCTTCTGTGGGGCTGCTCTTGCTGCCGCCACTTTCG
CTGCTGACGATTCCTACGACTTTTTGATGGTGCGTGGTATGGAGTGGTGC
AAGCTTTTTTGCTTATGTTGGGACGGTGGTGCTTGGAGCCTTACGCCGGC
TTCAGGCTTCGCCGACACACTCGTCGGAGACTGCTACCCTTGATGATACA
CGCGTTTGCGACGATGGCCGGATGAGCAGGCTCCGCTGTTCGAGTTTCCG
GCCATCGCCGCTTGCATCAAGGCGTACAGCGGAGCCTGCGTGGTCGCAAC
TCCTGAGGCGCTTCTTCCCCTCGGCCGCGGACATTAGTCTACCCACGCCG
CCAACTGCTTCTGTTCTTCGTTAGCCGCTCTGCACCTTTGTCTCGGGTGC
CTAACGCAACCCCCCGGATCTGCTCATCATGTTTTCTGCACCCTACTCCC
CGCCGTTACATCCCGCTTCCCATTCCTCCCCCCGCCCTTCATTCGCTTCC
CACTGCTCAGACTTTCCAGAAGCTGATCAAGCACCTCAACCTGCAGCATG
CAGTCCCCATCGTGGACCCAGCCATGTACATCAAGAGGTTCGCCTCGAAG
CTGGACCTGGGCAGCAAGACGAACGCAGTGTGCATGACCGCCCTCAAGGC
AAGCAGGTTGGGTTAGAAGCCGATCACGCCGTCTCGCCTTGCACTAGGTT
ACTCGGATTTTGTGTTTCACCGCTGGCGAGTCGCCGGGCTCTTTGGCTGC
GTGCGCACGGTCGTTCCTCCGCTCCGGGGAACGACCGCGCCGGCTCAACC
TCACCTCTGTCTCAACGTTGCCTGCCTTCGTGTTCGTGTTCCTGGTTGGC
GGGTATCTTACTAGCTCGCTTGGTTGTCTGCCCGCTGGCCGTGCGTCGAA
AAGTTCGGAGCGCTGTTTATCTGCAGCGCAACTCCCCCCCATTCGCCGCC
TTTCCCGCTCCTTCCACGGTAATCCATCCGCCTGAGAGACGACGAACGCC
GACTCTGGCCAAGTCCGGTCTGGCTTCAGATCTTTTCCCTTGTGCTCGTC
GGTATTGATGTGTCACCTCCCTTGTTTCATCCCTGGTCGCTTGCGATCCA
GATCATCATGTCGATGAAGAGGGACTTCCTAGCGTCGGGGCGTCAGCCGG
CGGGCGTGTGCTGCGCGGCCCTCACGCTCGCGACGCGCGTCAACCGCATC
GAGCGGTCGAAGGAAGAGATCCGTAAGGTTTGTTAGGCACATGTGTGGAA
CCTTTGTGTGTGTCTGTGTGTTTCTGTGGGAGTGTGTCCATCCCCCTACT
CCCCGCTTTTTTTCGCGAACACAGAAAAATGCGTTCGCGTAGCCTCCTGT
GTATCACAACCGGTCACGACCTCTCGTGACATGGAAGGCAATCAAGGAGA
GTAGCTTGCCACCCCCGTCCCATGGACAGCATGAAAACAAACATTCTTGC
TCGGGTTGACGGCGGGCAAGCTCGGCAATCATTCGCTCCCCTTAACCCCT
TGTATTGTTTTCGAGTACCCCCGCTCGAAATCACGCGGACATCGAGGAGA
GTCTTGTGATAAGCTGCAGCAATCAGAAGCACTTTCTTGATCTCAATGCC
TGCAACATCTTGAAACATTGAAATCTTCCCGTGCACATGCTCTCTATCCC
ATACAAATCATTACTACTCCCTTCTCAGTACATTGCCCCGTCCTGTACTT
CTCCCCTTCCTTCTTATTCTGCTGCTGTCCTACTCGAAGATCGTTTCTTA
CTTACTTTTCTTTACCCTGGTGTTGGTAATAACAAGTCATTCGGATCGTC
CTGTGCTGTTGATGTTGATATTGTTGTTGTGTTTGCTGCTGCTGCTGGTG
GTGCTTCTGCTTCTGCTTCTGCTGCTGCTGCTACTGCTGATTAGGCGGTC
AAAGTTTGCGATGCGACCGTTCGCAAGCGCCTCCAGGAGTTCGAGGCGAC
CCCGACGTCCCAGCTCACCGTCGAGCAGCTCAACAGGCTTCCGCAATCCG
GGGCATCTCTGGGGCTAGACGACGACATCGGCGGTGCGGCGGCGGCGGCG
GGCTTCAGCGGAGAAGCAGGCGCCGCTGGCAACGTTGCCGGTACTTCGGG
GGCGGCGGGGGCGGCGGCGTTTGCTGGGGCGTCCATTCTGGTCGGCAACG
CCCCGATGGATCCGCCTTGTTATATCGAAAACCGGTGAGACAGGTTCTGG
GGCGGGGGTGACGGGGAAGGCGGAGTGACAGCTCGGAAGCGGCGCAAACG
GAAGTTGTGATTGGTTGCCGGGCTCACGCAGTGTGTGCTCCCCAGGTGCC
GCCGGTGCTACTTGATTGAATCGGGTGGGTCTCCGACAGCGGGCGGGAAT
CGCGCGGGAGTTGATTTGTTGCCGGCAAGCTGTGGCACCGCCACACCCTC
TCTCTCGTGTGTGGGTGGTGGGCTTTGTACCCATCGCTAAGAGAGTACTT
CCTCCACTTTCAAAAGGTCCAGCACGGCATCCGGACTCTAAATGGGTTAG
CACCGTGCTTCTTTCCCTGCTGGCCTGCTTGACCGCGGTGGTCTCTCGCC
TTTTGTCTGTCTACATGTTGCCGAAGGGTCTCCGCGAACGAGGCTGAAGC
GTGTCTGATCCCCTTTCCGCTGTTTTTCCCGCACTCTGTGGCAGTTTGCC
CCGTTTGGTATCGATTAAGGACATAAACACCGTACAGAGCCATTCAACGC
TGCCTCCTGATGGGAAATCAGCTTTACTCGTTTCTTCCGCGTATTTTACG
TGTGCGTGTCGGAATCGATGCTCCCTCTCTCCGTCTCTCTTTGTGACCGG
CGCCCTTCCACCTTCCAACCAACCCACACACAAGTCGCCTTTTCATTCCT
CACAATGACGACGTCGTCGACGATGCGTGCTGGCGGTTTCGATTATGTCG
CAGCATCAAGGACGGGCGCCTGAAGTTGCCCCCGTGGTTGGAACCGCCGC
CACCGCCGCTAGGTAACTATGACGGAAAGGTAGGGCGAGGGAAAGGCGCC
CACGGCAGGAAGAAGACGGCGACCGGCGCCGGGAATGTTCGCCCGAGGGT
GGTTGCGCGCAAGCACGCGGCGAAGGGTGGGCAGGAGGCGCGAACTTCTT
CCAAGATGGAGCCGCCAAAGCGCAGGGTTGGTGGTGGTGGTGGTGTTAGT
GGCAGGTACGAGGATGACGACGGCGAGGAGGAGGAGGAGGAGGAGGGGGA
GGAGGAAGAAGAGGAACCAAGGAAGACGAGAGTACTTCCAAAGCGCAAGG
CCGCCGCCGCCGCCGCCGCCGCCGCCGCTGCCGCCGCTGTGAAGACAAGC
GGAAAATCAAGCGCCGACGAAGACACGGAAGACGACGACGAGCTGGGCGG
CGTTGGAGACGAGGATGACGATTCTGAGTACTCTTCGGATGGTGATGACT
CGGAACACGAAAGGGCGGCGGCGGGCAGCAGAGTTGGAGGCAGAGGCAAG
CTGAGCAAGGGGAGGGGTAAGGGCAAGGGTAGAGGTGCGACACGTGGGGG
GCGAAGGAAGAGAGCCTGGTCCGAGGAGGAGGAGGAGGAGGAGGAGGAGG
AGGAGGAGGAGGAGGAGGAGGAGGAGGAGGAGGAGGAGGAGGAGGCCGAC
GACGACGACGACGACGACGACGAGGAAGTGGTCGATGAAGAGCTTGTACG
CCTCTCCTCCAAGATGAACGTTGACGCTAACACGGAAGAGGGGCGCGAGG
CACTGGTGAGCAACTCTGGCGAGGAGGTCTGCAGGGTCGGATAGAGGAAA
AGAATGCGAAGGATTGGACGAGGAAGGAAGCAGTCATGATATCTGCACTT
CTTAGCTCTTGTCTTGACCTTCATTCTGTGCCTCATGCATTTTTTCCGGA
GCACCACCTCGAAGCCGACGTAATTCGGAAGTTTTGCGGTGGCTTTTTGT
TGCCGACCAGCGGGCAGCATGGGACAAAACTTGATGAAGGAGTGTGGCTT
TACGCCATGATGACACCGCGTGCTTGCTTGGATCTACCGCCGTCCGCAGT
GGTTTTCGCGTGGCCGTCCGCCGGCACGCGCCGGTCCCAGAATGCTCATA
TCGTCACCAACCGTTCCGCTTTCCCGTCGTCGCTAGTACGGTACCGTACG
GTATAGTATCGTACCGCACCCCACCGAGGCGTTCTCCTTGTCGCGTCTTG
TTCTCGACACGACACTCTCGTTGTTCATACACACCCTGACACACACACAC
ACACCGGCGCGCCCACCGACGCCTGTTGTGTTTTTCGTGGATTGCCTTGA
CCCTGTGTGTGTAAATGTCGCAGACGCGGCACGTGCTGCACGTCAGGTCG
TCCCAGGATGGCGGCGCGAGCAGGGCCAGGTCGCGGGCGAAGCGCAGGAA
GGTAAGCGGTTCAACAGCCGTAGTGGTGGGACACGGGTGCGAGGGGAACT
CTTTCGTTTTCCTCTGCGGATTTTGTGCGGCAGACCAGCTGGCCGCCCTC
CCACGGCGACATGGAAAAGGCGGCAGCTTGCCGCGCTGGACGAGCAAGGA
TCCATGTCCGATCGCATCGTCACTGTGTTGAGTGTAGGCCGGTGGGCCAG
CACGCGGGCGGGCTGAAAGTAGCTTGGGGGAGGGGATGGAGGGGGGCAGG
GGTGTGTGTGATGGCGTCATCGCGCGTAGGCTTCTCGTCGGAGACTGTAA
AGGCATTTTTCGGCTCCGCGCGTACACGAAAATATCATCAACTTGAATTT
GATGCTCAATGAACGGCACCGACACCCGCCATTTTTTCAGAAGGAGCATT
CTGCTGCCGTGGTTCGTGCTTCGTGCGACGGGGGATCATTGGCTTAGCTG
CCGAGTATGACCCGGAATTTGTCCGTTTTTCTCGGTTGACAGGACTCCTC
CGGCGGACGCAGATTGTAGCGTTACATCCAAGCGCGCTGGCTGTCGGTTG
TCTTTGCCCTCTTTTGTGTTTTTGGAAGGTCATCGGCGTCAGAACCCCTT
CTTCTTAGTCCTATTCGTTGCCGTTGCTGATGTTGCTGCTGCTGATTCTG
CTCCAACAGCAGCTGTCGCTGCTGCTGTTGCTGCCGTTGCTGCTACTGAT
TCGGCTGCTGCTGCTGCCGCTGCTGTTGCTGCTACTGATTGCTGCTGCTG
CTGCTGCTGCTGCTGCTGCTGCGTTGTCTATGTCGCCGCCGTCGTGCTTC
GCTACACCGTCCCCTCGAGCAGGTTCAGAACAGCGTGTACTCTTGCATCG
AGAACATGCTAGACGAAGATGAGGCACGCGGTCTCTGCGTCGACTCAGAA
GCCGGCGGCGGTTTCACTAACACCAAAAGCAGCACCAAGACCGACGGAGG
TGACAGCAACAGCAGCAGCAGCAGCATAGCAAGCGCGACAGCGGCGGCAG
GAGAGGAGGCTACTGGAAAAGGCGGCGTCTCTACGGCTGGTGGGAGCGCG
ACCAGCAAGGTGTGTGCGGTTCGCATGATATCAAGAAGGATGGAGGCTGC
AAGCGAGGCCTGCGAGGAAGGAGGGGGTTGGCTTTGATAAATTTAAGTCG
TGATCGAGACCATGAGCTTATTGTGTGCCGGATTGTTTGCAACTTGTGTG
ATGCGAGGCGGATCTGCAACGGGAATCATTGCTCGGCACCCTTGAAGTTG
AAGAATGCGAGCTGGATGTACGGGAGCGAATATCAGGTCGTGAGATGGTA
AAGTTTGATGCTTGTCATATCATCGCAAGAAGCAAGCTCTCAAACGCTGC
ACCATATCGAGTCGCTGAATGGACCACGTCAAGTCACAAAGATCTTGAAT
TTGAAAAGGGGTGTCAGGTCAAGTGTTACGAAAAGATCGATCATATGATC
ATATTTATTCTCTACAAAAGAACCAAAAGGCTGGTGGTTCCTCCACCAAG
ATACGTCGGGACAACCGCTGCTCCGTGTCGATTGGTTGCGCGATCACTGG
TCGAAACAAACGAGTGATGACAGGGCGTCTCTCTAAGAGCTCCCACTCCC
CGACCTCAACGGTCCTTTCACCACACGCTTGCTCTCCTGTGACCGCACTT
GATCGGGTTCAGCAGCTTCCAGACAGGCTGTGTACAACAAATTCTGCTTC
ACGGAGTCTTTCGCGATAAAGTGACAGAATGGACGCCGGCTTACGATAGA
TACCAGTACGTTCGGTTGTCGTACCCGGATGGCGCACCACCTTCCGCCCA
AACAAGGACAAATCTCTCTCCGCGAACAGCACGCGACGCACGGATTTCGT
TGTCGCGGCCACAGACCAAGCCGTCTTCCCCGAGGTCAAGTACGATCGCC
AGAATGCCTACCATCCGTGTCGATTTTTCATGTTGAGCTGCCTGCCTGGC
TGCCTACCTGCCTTCGCGCCTTCGTTCGATGATAACGTCATCCCGGCAGG
CGGAGGCGTCCGCATCCGATCGCGTTTACGGCAAGGACCGCGAGGGTGGC
GGCGCACGCGAGGACGGGGACGGGGACGGGGGTGTCGCGGATGATGATTT
GGAGTGGGGGGTGTACTTGCGCACGGAGGAGGACAGCGACCGGACCAAGA
AGGAATGGGAGAAGGAACACCAAGCTTGGGAGGAAGATCAGGTGGACCAA
TCTCGTTCTCCCCCCCCTTCGGCTCGCTCAGTTTCGTAACGTAGGTAGCA
TAAGGTTTCACATCTCCTGGGCCGGTTTTCGCTCAGTCGGTAGAAGAGGT
AGGTTTATCATAAGAGCGCCTATCCAGACATAATATCGAGAGCTTTGCAT
TGACGCATCATTGGATGTTTGTCAACTTCCTGCGGTCGAAAGATCGAGCG
TCAAAACCCGACCCAGGGAATGTGGTATTTTATGCAACCTACGGTTCTTT
ATGTTATTATCCGACAGGCCGTGTGGCTGAGAGGCACGTGCGCACGCCGC
CGTTGCTGCTGCCATTGCCGTCGCCGTTGCCGTTGATGATGTTGTTGTTG
AACTGTCGTGCGGTCGTTTTTCTCTCTGGCTTTCTCTCAGTGTCGCCAGG
GTTCGATCCGTCGCGCATCTGTATCAATGCGGGCTGGGTTTGTCCGCTAC
CTTGTTGAATGTTCATGTCTGATGTCCCGACCTCTGTCCCTCCTCTCTTC
CTCTTCTCATTTCCTTCCTCTTCACCTCCCTCCTTGCCCTGGTCGACGTT
TGCCTTCAGTTCTGCCCTGCCGTGCTTCCTGCCTCCCGTGTCTGCACACC
GCGGGCCCGGAGATACACCGCTGCATTATTTGTTCAGCAGTGAAATGTGT
TCAAGTTCGACTGCATTTGCCCCTGCAGTGTCTGGCTCTTAACAGATCAA
AGGGCGACATCGATGCCGGCCTTTGATAGCGACAATGAAAGGTGTATTCG
TGTCGAGACGCAATGAACGCATCATTCACCCTGGCAACCGTTTTCACTCA
TTTCTCTGTTTTGCAGGTTGGCATCGGAAAGTATATCCAAACCATTTTTT
CCCGTTCTGTCCCCCCCCTCGCCCAACGCGACGCAATTGATACATCGCAA
TGGGCATGCACAGGCAAGCAAGCTGAAGGATGCGCTGTCTCAGCAGAATT
CGCCCGAGACGGCGCAAAGGAAGCGGAAGCACACCCTGAGGTGAGCATGG
CGGAATACTTCTCCCTCCATTTGTGTGTGTGTTGTGCCCGACACCCCTGT
GTGGACGTGGTGCACCGATCATCCCCCCTTGTACGCTTGTGTATTATTCG
ACCTATACCCAAGTGGCCTTAGACCCCGGATGCGTTTTCTGTTGCTCTGT
AGCTGGGCTCTTGCCTTCCCCGCCGTCCCCCTTCAGCGGCGGAACCCCGT
TTTGATTTGCGCGATCTCTCGGCCTCGCTTCTGTGCTGTAAATTGCGAAG
CTTTTCCCTGTCTTTGCCGTACTTCTGCCTCTCCGTGCCTAGCCTAGCCT
TGCCTTGCCTTGCCTCTCCTTGCTCTTATCTCATGAATATCTCGCCGCTC
CCTGCCCTGCTCTGCCCTTCGCCTGTTCTATGATACGCCCCGCTTGTCGT
GGTAAGCTCCTCGAGGAACAGGGGCGCATCGACCTTCCGCGACGCTTTGT
TTGCAGAGGCGGGAAAGGGCAGGTCCGGCAAGATCAACCACGCAGCGCTC
GAGCTTCTGATGAAACCCGACGGCAGCCTCAGGCGTATCGATGGCGAGTT
TGGGAGGGGGGGATGAGGGAGGGGGCGAGGGTGATAGCGCGGAAGGGTGG
ATGAACATGCCTTTCTCGTTGGGCCCCAGAGGTTGTTTCTTCAAGTCGGG
ACGAGGTGGGCGGGAACTCTGCTGGTCCACGCTGATCATCGTTGCACCAT
ACGTGAAGCACCTTGAGATATTCGGGCACTCGGATGGGGGCCGAGCACCG
TCCCGCTCTAGTAGTCTGCTGGTGCAGCTGAATGCTTGGCACCGTGCGCC
CACAGGAGGGGTTGCGTAGTCCACGGCTGGTTGCCCCCCCCTCCTCCAAA
CAAAAAAAGAGAGGAATATTGAACTCACGAGGATTTCCACAGGAAACGCT
GCGGCCGCCGGATGACATCCCCCAAAGAACGAAGTGGCGTCGTGTGTCCT
ACGGAGTCGTCGCCAGCTGACGCTAGATCCACACGTGGGTTCGGGTTTGG
GGAACATTTCGCTCAGGTTCTCTTGCACGAATTGGTTGGTTGCCGGTTGA
ATGCTCCTCTCTCAACGCCTCTTGCCTCTCATGGTGTGTGTATCTCTCTG
TTTGCTCGTGTCTTGTGCGTGCGCGCGCGGCACCCGCAGAGGACAACGAC
GCCATGGAGGAAGTCTTCGAGGACAATCTGGCGCCTCCGGCGAAGGCGAA
GGACGGCAAGGGTTTTGGTGCCGCCCGGGTGAAGTCGCGGCTAACCGCGA
GCCTCTCCTCCCCCTCCCCCTCCTCGACCCAGGCGATGGCCTCGACGTTC
GCTGGGGCCGCCGTGCTGCCGCCCGCCCGGCGCCTGAAAAACACCGCCGG
AAAGGGAGCGGGAGCAGAGGGGTCAGCCGCTCCCGCCCATGTCGGCGGCG
GCGGCGGCGGCGGCGGCGGCCGCGGCGGCGGGGCGAAGGGTCACGGAGGT
CCAGGGGGTGGCGGAGGGAACCAGCCGGCGGCCTTCGGGGCGTCTGCGGC
AGTGGCGGCGGGCAGCGTGGCCGTCAAGGCGCCGGTGAAGGAGCCTTGGA
GGCGCGCGGGGCCAGACGACGGTGGACAGCAGGCGGCGTTGGACGCGCTC
GCCGCGATGATGGGCGGGGTGGACGCCGGCCTCGGCGGCGTGGGGGGAGG
CTCTGTCGCTCCTTCCGGTGCCGGAGTTGGTGCTGATGCTACCGGTGAGC
TGGCCGACTCCCCCAGCGTATGGGGAAAACACGGCGGGTCTGCTCGCGCA
CGCGGAGGCGCTGATGCCTGTACGAAGGCGGCGGCAGTGGCGGCAGTAAC
TGCGGCTGCCGCTCCCGAGACGATCGAAACTATGGAAGACATCGAGGAGG
AGGAAGTGGCGCCGGAGGCGGCGGCGGTTGCGGCGGCGGTTGAAGAGGAG
GAAGAGGAGGAAGAAGAAGATGATGACGACGATGATGACGACGACGAGGG
CCGTGGCCGTCACCCGATGTACGGGGAAGTAGATGACGACGACGATCCCT
ACGGCGAAGAGGCGTAG back to topCoding sequence (CDS) from alignment at P-fluviatile_contig13:2586593..2598359- >mRNA_P-fluviatile_contig13.1889.1 ID=mRNA_P-fluviatile_contig13.1889.1|Name=mRNA_P-fluviatile_contig13.1889.1|organism=Porterinema fluviatile SAG_2381|type=CDS|length=6738bp|location=Sequence derived from alignment at P-fluviatile_contig13:2586593..2598359- (Porterinema fluviatile SAG_2381) ATGGCTTTCAATTTCGATCCTTCTTCATCGAAGCGTGCGCCTTTTGCGCC TAGGTGCAAAAGCTGCAGGAGCACGAACATCGAAGAGGACCAAACGTCCG GCGACCGAGCGTGCCAGAACTGCGGCGTCGTCCAGCAGGAGAATGGCATC GTCTCGACTGTACAGTTCAGCGAGTCCGGCGGGTCATCCAACGTTGTCGG ACAGTTCGTATCGGGAGACAAGGGTCGTCCCAGCGGCGGAGGAGCCGGCA GAGGCCGGGGCCGTTTCGGGCACAGCCGGGACTCGCGCGAAACCACCATT CAGAATGGAAAGAAGAAGATCATCCAGATGGCTTTCAATTTCGATCCTTC TTCATCGAAGCGTGCGCCTTTTGCGCCTAGGTGCAAAAGCTGCAGGAGCA CGAACATCGAAGAGGACCAAACGTCCGGCGACCGAGCGTGCCAGAACTGC GGCGTCGTCCAGCAGGAGAATGGCATCGTCTCGACTGTACAGTTCAGCGA GTCCGGCGGGTCATCCAACGTTGTCGGACAGTTCGTATCGGGAGACAAGG GTCGTCCCAGCGGCGGAGGAGCCGGCAGAGGCCGGGGCCGTTTCGGGCAC AGCCGGGACTCGCGCGAAACCACCATTCAGAATGGAAAGAAGAAGATCAT CCAGGTTCTCGGCCAGCTCCGCCTCAGGACCAACCTCGCCGAGGCCGCCG GTCGGCTATTCGCGCTCTGTGTCCAGCAGAACTATGTCCAGGTTCTCGGC CAGCTCCGCCTCAGGACCAACCTCGCCGAGGCCGCCGGTCGGCTATTCGC GCTCTGTGTCCAGCAGAACTATGTCCAGGGCCGCAAGACGATGAACATCG TGGCGGCGTGCGTTTACATCGTGTGCCGGCAAAGGCGCATGCCGATCATG CTGATCGATATCAGTGACAAGCTCGCAGTCAACGTCTACGTCTTGGGGAA GGGCCGCAAGACGATGAACATCGTGGCGGCGTGCGTTTACATCGTGTGCC GGCAAAGGCGCATGCCGATCATGCTGATCGATATCAGTGACAAGCTCGCA GTCAACGTCTACGTCTTGGGGAAGACTTTCCAGAAGCTGATCAAGCACCT CAACCTGCAGCATGCAGTCCCCATCGTGGACCCAGCCATGTACATCAAGA GGTTCGCCTCGAAGCTGGACCTGGGCAGCAAGACGAACGCAGTGTGCATG ACCGCCCTCAAGACTTTCCAGAAGCTGATCAAGCACCTCAACCTGCAGCA TGCAGTCCCCATCGTGGACCCAGCCATGTACATCAAGAGGTTCGCCTCGA AGCTGGACCTGGGCAGCAAGACGAACGCAGTGTGCATGACCGCCCTCAAG ATCATCATGTCGATGAAGAGGGACTTCCTAGCGTCGGGGCGTCAGCCGGC GGGCGTGTGCTGCGCGGCCCTCACGCTCGCGACGCGCGTCAACCGCATCG AGCGGTCGAAGGAAGAGATCCGTAAGATCATCATGTCGATGAAGAGGGAC TTCCTAGCGTCGGGGCGTCAGCCGGCGGGCGTGTGCTGCGCGGCCCTCAC GCTCGCGACGCGCGTCAACCGCATCGAGCGGTCGAAGGAAGAGATCCGTA AGGCGGTCAAAGTTTGCGATGCGACCGTTCGCAAGCGCCTCCAGGAGTTC GAGGCGACCCCGACGTCCCAGCTCACCGTCGAGCAGCTCAACAGGCTTCC GCAATCCGGGGCATCTCTGGGGCTAGACGACGACATCGGCGGTGCGGCGG CGGCGGCGGGCTTCAGCGGAGAAGCAGGCGCCGCTGGCAACGTTGCCGGT ACTTCGGGGGCGGCGGGGGCGGCGGCGTTTGCTGGGGCGTCCATTCTGGT CGGCAACGCCCCGATGGATCCGCCTTGTTATATCGAAAACCGGCGGTCAA AGTTTGCGATGCGACCGTTCGCAAGCGCCTCCAGGAGTTCGAGGCGACCC CGACGTCCCAGCTCACCGTCGAGCAGCTCAACAGGCTTCCGCAATCCGGG GCATCTCTGGGGCTAGACGACGACATCGGCGGTGCGGCGGCGGCGGCGGG CTTCAGCGGAGAAGCAGGCGCCGCTGGCAACGTTGCCGGTACTTCGGGGG CGGCGGGGGCGGCGGCGTTTGCTGGGGCGTCCATTCTGGTCGGCAACGCC CCGATGGATCCGCCTTGTTATATCGAAAACCGCATCAAGGACGGGCGCCT GAAGTTGCCCCCGTGGTTGGAACCGCCGCCACCGCCGCTAGGTAACTATG ACGGAAAGGTAGGGCGAGGGAAAGGCGCCCACGGCAGGAAGAAGACGGCG ACCGGCGCCGGGAATGTTCGCCCGAGGGTGGTTGCGCGCAAGCACGCGGC GAAGGGTGGGCAGGAGGCGCGAACTTCTTCCAAGATGGAGCCGCCAAAGC GCAGGGTTGGTGGTGGTGGTGGTGTTAGTGGCAGGTACGAGGATGACGAC GGCGAGGAGGAGGAGGAGGAGGAGGGGGAGGAGGAAGAAGAGGAACCAAG GAAGACGAGAGTACTTCCAAAGCGCAAGGCCGCCGCCGCCGCCGCCGCCG CCGCCGCTGCCGCCGCTGTGAAGACAAGCGGAAAATCAAGCGCCGACGAA GACACGGAAGACGACGACGAGCTGGGCGGCGTTGGAGACGAGGATGACGA TTCTGAGTACTCTTCGGATGGTGATGACTCGGAACACGAAAGGGCGGCGG CGGGCAGCAGACATCAAGGACGGGCGCCTGAAGTTGCCCCCGTGGTTGGA ACCGCCGCCACCGCCGCTAGGTAACTATGACGGAAAGGTAGGGCGAGGGA AAGGCGCCCACGGCAGGAAGAAGACGGCGACCGGCGCCGGGAATGTTCGC CCGAGGGTGGTTGCGCGCAAGCACGCGGCGAAGGGTGGGCAGGAGGCGCG AACTTCTTCCAAGATGGAGCCGCCAAAGCGCAGGGTTGGTGGTGGTGGTG GTGTTAGTGGCAGGTACGAGGATGACGACGGCGAGGAGGAGGAGGAGGAG GAGGGGGAGGAGGAAGAAGAGGAACCAAGGAAGACGAGAGTACTTCCAAA GCGCAAGGCCGCCGCCGCCGCCGCCGCCGCCGCCGCTGCCGCCGCTGTGA AGACAAGCGGAAAATCAAGCGCCGACGAAGACACGGAAGACGACGACGAG CTGGGCGGCGTTGGAGACGAGGATGACGATTCTGAGTACTCTTCGGATGG TGATGACTCGGAACACGAAAGGGCGGCGGCGGGCAGCAGAGAGGAGGAGG AGGAGGAGGAGGAGGAGGAGGAGGAGGAGGAGGAGGAGGAGGAGGAGGAG GAGGAGGAGGCCGACGACGACGACGACGACGACGACGAGGAAGTGGTCGA TGAAGAGCTTGTACGCCTCTCCTCCAAGATGAACGTTGACGCTAACACGG AAGAGGGGCGCGAGGCACTGGAGGAGGAGGAGGAGGAGGAGGAGGAGGAG GAGGAGGAGGAGGAGGAGGAGGAGGAGGAGGAGGAGGAGGCCGACGACGA CGACGACGACGACGACGAGGAAGTGGTCGATGAAGAGCTTGTACGCCTCT CCTCCAAGATGAACGTTGACGCTAACACGGAAGAGGGGCGCGAGGCACTG ACGCGGCACGTGCTGCACGTCAGGTCGTCCCAGGATGGCGGCGCGAGCAG GGCCAGGTCGCGGGCGAAGCGCAGGAAGACGCGGCACGTGCTGCACGTCA GGTCGTCCCAGGATGGCGGCGCGAGCAGGGCCAGGTCGCGGGCGAAGCGC AGGAAGGTTCAGAACAGCGTGTACTCTTGCATCGAGAACATGCTAGACGA AGATGAGGCACGCGGTCTCTGCGTCGACTCAGAAGCCGGCGGCGGTTCAG AACAGCGTGTACTCTTGCATCGAGAACATGCTAGACGAAGATGAGGCACG CGGTCTCTGCGTCGACTCAGAAGCCGGCGGCGGTGACAGCAACAGCAGCA GCAGCAGCATAGCAAGCGCGACAGCGGCGGCAGGAGAGGAGGCTACTGGA AAAGGCGGCGTCTCTACGGCTGGTGGGAGCGCGACCAGCAAGGTGTGTGA CAGCAACAGCAGCAGCAGCAGCATAGCAAGCGCGACAGCGGCGGCAGGAG AGGAGGCTACTGGAAAAGGCGGCGTCTCTACGGCTGGTGGGAGCGCGACC AGCAAGGTGTCTGCCTGCCTGGCTGCCTACCTGCCTTCGCGCCTTCGTTC GATGATAACGTCATCCCGGCAGGCGGAGGCGTCCGCATCCGATCGCGTTT ACGGCAAGGACCGCGAGGGTGGCGGCGCACGCGAGGACGGGGACGGGGAC GGGGGTGTCGCGGATGATGATTTGGAGTGGGGGGTGTACTTGCGCACGGA GGAGGACAGCGACCGGACCAAGAAGGAATGGGAGAAGGAACACCAAGCTT GGGAGGAAGATCAGGTGGACCAATCTCGTTCTCCCCCCCCTTCGGCTCGC TCACTGCCTGCCTGGCTGCCTACCTGCCTTCGCGCCTTCGTTCGATGATA ACGTCATCCCGGCAGGCGGAGGCGTCCGCATCCGATCGCGTTTACGGCAA GGACCGCGAGGGTGGCGGCGCACGCGAGGACGGGGACGGGGACGGGGGTG TCGCGGATGATGATTTGGAGTGGGGGGTGTACTTGCGCACGGAGGAGGAC AGCGACCGGACCAAGAAGGAATGGGAGAAGGAACACCAAGCTTGGGAGGA AGATCAGGTGGACCAATCTCGTTCTCCCCCCCCTTCGGCTCGCTCAAATT CGCCCGAGACGGCGCAAAGGAAGCGGAAGCACACCCTGAGAATTCGCCCG AGACGGCGCAAAGGAAGCGGAAGCACACCCTGAGCTCCTCGAGGAACAGG GGCGCATCGACCTTCCGCGACGCTTTGTTTGCAGAGGCGGGAAAGGGCAG GTCCGGCAAGATCAACCACGCAGCGCTCGAGCTTCTGATGAAACCCGACG GCAGCCTCAGGCCTCCTCGAGGAACAGGGGCGCATCGACCTTCCGCGACG CTTTGTTTGCAGAGGCGGGAAAGGGCAGGTCCGGCAAGATCAACCACGCA GCGCTCGAGCTTCTGATGAAACCCGACGGCAGCCTCAGGCAGGACAACGA CGCCATGGAGGAAGTCTTCGAGGACAATCTGGCGCCTCCGGCGAAGGCGA AGGACGGCAAGGGTTTTGGTGCCGCCCGGGTGAAGTCGCGGCTAACCGCG AGCCTCTCCTCCCCCTCCCCCTCCTCGACCCAGGCGATGGCCTCGACGTT CGCTGGGGCCGCCGTGCTGCCGCCCGCCCGGCGCCTGAAAAACACCGCCG GAAAGGGAGCGGGAGCAGAGGGGTCAGCCGCTCCCGCCCATGTCGGCGGC GGCGGCGGCGGCGGCGGCGGCCGCGGCGGCGGGGCGAAGGGTCACGGAGA GGACAACGACGCCATGGAGGAAGTCTTCGAGGACAATCTGGCGCCTCCGG CGAAGGCGAAGGACGGCAAGGGTTTTGGTGCCGCCCGGGTGAAGTCGCGG CTAACCGCGAGCCTCTCCTCCCCCTCCCCCTCCTCGACCCAGGCGATGGC CTCGACGTTCGCTGGGGCCGCCGTGCTGCCGCCCGCCCGGCGCCTGAAAA ACACCGCCGGAAAGGGAGCGGGAGCAGAGGGGTCAGCCGCTCCCGCCCAT GTCGGCGGCGGCGGCGGCGGCGGCGGCGGCCGCGGCGGCGGGGCGAAGGG TCACGGAGTGGCGGCGGGCAGCGTGGCCGTCAAGGCGCCGGTGAAGGAGC CTTGGAGGCGCGCGGGGCCAGACGACGGTGGACAGCAGGCGGCGTTGGAC GCGCTCGCCGCGATGATGGGCGGGGTGGACGCCGGCCTCGGCGGCGTGGG GGGAGGCTCTGTCGCTCCTTCCGGTGCCGGAGTTGGTGCTGATGCTACCG GTGAGCTGGCCGACTCCCCCAGCGTATGGGGAAAACACGGCGGGTCTGCT CGCGCACGCGGAGGCGCTGATGCCTGTACGAAGGCGGCGGCAGTGGCGGC AGTAACTGCGGCTGCCGCTCCCGAGACGATCGAAACTATGGAAGACATCG AGGAGGAGGAAGTGGCGCCGGAGGCGGCGGCGGTTGCGGCGGCGGTTGAA GAGGAGGAAGAGGAGGAAGAAGAAGATGATGACGACGATGATGACGACGA CGAGGGCCGTGGCCGTCACCCGATGTACGGGGAAGTAGATGACGACGACG ATCCCTACGGCGAAGAGGCGTAGTGGCGGCGGGCAGCGTGGCCGTCAAGG CGCCGGTGAAGGAGCCTTGGAGGCGCGCGGGGCCAGACGACGGTGGACAG CAGGCGGCGTTGGACGCGCTCGCCGCGATGATGGGCGGGGTGGACGCCGG CCTCGGCGGCGTGGGGGGAGGCTCTGTCGCTCCTTCCGGTGCCGGAGTTG GTGCTGATGCTACCGGTGAGCTGGCCGACTCCCCCAGCGTATGGGGAAAA CACGGCGGGTCTGCTCGCGCACGCGGAGGCGCTGATGCCTGTACGAAGGC GGCGGCAGTGGCGGCAGTAACTGCGGCTGCCGCTCCCGAGACGATCGAAA CTATGGAAGACATCGAGGAGGAGGAAGTGGCGCCGGAGGCGGCGGCGGTT GCGGCGGCGGTTGAAGAGGAGGAAGAGGAGGAAGAAGAAGATGATGACGA CGATGATGACGACGACGAGGGCCGTGGCCGTCACCCGATGTACGGGGAAG TAGATGACGACGACGATCCCTACGGCGAAGAGGCGTAG back to top
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