mRNA_P-fluviatile_contig1.147.1 (mRNA) Porterinema fluviatile SAG_2381

You are viewing an mRNA, more information available on the corresponding polypeptide page

Overview
NamemRNA_P-fluviatile_contig1.147.1
Unique NamemRNA_P-fluviatile_contig1.147.1
TypemRNA
OrganismPorterinema fluviatile SAG_2381 (Porterinema fluviatile SAG_2381)
Homology
BLAST of mRNA_P-fluviatile_contig1.147.1 vs. uniprot
Match: D7G9H9_ECTSI (Glutamine amidotransferase type-2 domain-containing protein n=1 Tax=Ectocarpus siliculosus TaxID=2880 RepID=D7G9H9_ECTSI)

HSP 1 Score: 575 bits (1482), Expect = 1.270e-180
Identity = 500/1381 (36.21%), Postives = 586/1381 (42.43%), Query Frame = 3
Query:   63 MCGIGFLLGACQANQSELRCCIRSLRRRGPDAGRHITVDLQGGRTLHLMAAVLHLRGDELFKQPAEDVHGNVLLWNGEVFDGLDVGPSGSDTAAILHALSLSRSHQEVVAALGRISGPFSLVYWCPARQALYYGRDPVGRRSLVVRRPRAPEEFMAVLSCLPETSGSPADSXXXXXXXXXXXXXXXXXXXXXXXMPPPDPVVGGDCNPSLDRKNDRELLPNLLGDTPVSPEAAGAGCR----------------SGEGRWEEVRADGIYVLELGKESAADEGDGNGGSDHGXXXXXXXXXXXXXXASFSPAKLYSYPRRPLLRSAGAGVAEXXXXXXXXXXXXXXXXXXXXXXXEAAERCKSGRRRRAGCAEDYAATDRGQAGSEEGAEKEEEGCMNSKAGRLLGTRECQEGGSKRASAKARVRFNDGLKISTHHLSPAAKGLLNKLRESVRRRVRTVPYSALSGNNACXXXXXXXXXXXXXXXXXXXXXDGTERRNEPGYRFDIGQEDARLDVGDGVSRLRGAGAARASGDIDAGLQAAAGAEEERRSLRGGRGLVTAVTPTAAVAARVGVLFSGGLDSVVLAAMLAEE-RDGGASAVPRGEGIDLINVCFDSPSGHRSPDRLASIAAADELRSLFHWHTWRLVCVDASYDDVLRHSGAIWRVMQPCSTTMDFNIAAAFWFAARGTGWLYQPPAPAPRETPPFPASACSPTRDRRDLVDGTVTAGISITLHGSADYDDSEEWEAVPSGPSASASTVVDVPRASHGALTAPAGGVVVAAVAEAAPFLHPAASAVTTAAAVGVSSGESGAPALGVPGGAGDLLAVSPISPVSSASAPKDAPRNGTAAXXXXXXXXXGSRNGKVVAKVNKNSDELCPVDGCRRLLKPGCVFGTCSRCCLKAQGILDAAAAAGVAATIGASA--SVRKGGLQPESEADREGIASVTAQEV---------------------------QDAA----------------TAP-------------------------------------------------TARERQQRECKARAQAAALRALEAHLLDHFEADLSPPFRAEALAALLLWLPPPPQAPPRPQQTQSVLPLRRKAADG-------VPATERDGCRRSLLANASPGAR-QTPTECCPIHKRPRKR--EQGGSTGGVGCGGGEAGVSPNGTGPEAGDENRAAGRR-PAASEGVFTSAARVLLV---GIGADEFMG------------GYSRHRNAFNRGGDDSLAEELAQDQARLWTRNLGRDDRSIADHGREARFPFLDEGVIDYIRSLPLRDVCDMDDPPGVGDKKILREVASHLGLDGCRSLPKRAIQFGSRIAQHCARHTHGSHRRGSGSAPAAS 3794
            MCGIGFLLGA    QSEL   I +LRRRGPDA +  T+DL+GG TLHLMAAVLHLRG+EL  QPAED HGNVLLWNGEVFDGLD+GP  SDTAA+L  LS + +HQEV AALG ISGPFS VYWCP R+ALYYGRDP GRRSLV+RRPR+  E M VLSCLPE   +                             PP             + +DR+     + DT  +      G                  + E  WEEVRADGIY L     SA   GDG    D                      +LY +  RP      AG+ E                              S R+R      D    D G +  +EG++ E       + GR LGT    EG                             GLL +LR+S+RRRV T+P+ A                            DG E     G+R     E  +   G+G++    A  A AS       +A                            ARVG+LFSGGLDSVVLAA+LAEE  +G   AVP+GE IDLINVCFDSPSGH+SPDRLASIAA  EL+ LF  H WRLVCVDASY DVL  + A+WRVMQ                 AR  G         PR                                                                                                                                             R  T A              KV  KVNKN DELCPVDGCRRLL PGCV GTCSRCCLKAQG+++A +A   AA+    +   + K    P S   R   A+ TA+                             QD A                TAP                                                 T+ + +QR  KA A+  A RALE HLL+ F+ DLS PFRAE LAALLL  PP                LRR+   G       +P+ +    +R L   A  G R Q P   CP+H+R R++  E+GG                        +   AAG   P  S    TSAARVLLV   G G D   G            G      A    GD +LAEEL +DQ RLWTRNLGRDDR+IADHGREARFPFLDE V+ Y+RSLPLR+VC+MD+P G+GDKK+LREVASHLGL+ CR LPKRAIQFGSRIAQHCARHTHGSHRRGSGS PA++
Sbjct:    1 MCGIGFLLGAGPPEQSELESYIGALRRRGPDADKQTTIDLEGGWTLHLMAAVLHLRGEELCAQPAEDAHGNVLLWNGEVFDGLDIGPGESDTAAVLRTLSGTCNHQEVAAALGGISGPFSFVYWCPGRRALYYGRDPAGRRSLVLRRPRSSGEEMVVLSCLPEKQSTEPPGISCPVKPTIPVTPAHHHARAEDDERPP-------------QVDDRQPQATAI-DTDDAAGVVAVGXXXXXXXXXXXXXXXXXVAAESDWEEVRADGIYFLTSDGTSATT-GDGGARVDGNGWTAPRP-------------QLYRWSVRP-----EAGLPEAGRVLTPP----------------------SERQR------DTGGDDVGGSAGDEGSKVEAVSNEREEGGRRLGT----EG---------------SXXXXXXXXXXXXAGLLERLRDSIRRRVCTIPHPA--------------SHRFDRRRRAASGDDGREEAKPQGFREFA--ESEKTGPGNGLANALHAEGAAASATDTRPQRARNDXXXXXXXXXXXXXXXXXXXXXXXXXARVGILFSGGLDSVVLAALLAEEGAEGRGPAVPKGEAIDLINVCFDSPSGHQSPDRLASIAAVGELKRLFPSHAWRLVCVDASYGDVLGRTEAVWRVMQ-----------------ARNGGXXXXXXXXXPR---------------------------------------------------------------------------------------------------------------------------------------------RRATEA------------KAKVKTKVNKNGDELCPVDGCRRLLLPGCVLGTCSRCCLKAQGLIEATSAPTAAASAPRRSVPPLEKARGLPGSPIGRAAAATATAEATPPDTANERXXXXXXXXXXXXXXTIGASQDRASCSLGASDSVVSPPERTAPGVXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXDATTSADERQRLFKAHAEEEARRALEGHLLERFDEDLSAPFRAEELAALLLLSPP----------------LRRENNSGPGQAEVCIPSHD----QRRLDPEARAGQRRQRPVRWCPVHRRFRRKGEERGGR-----------------------ETEAAAGEPWPGTSATRVTSAARVLLVFRGGEGPDLVQGVTEGLEPFQYSVGKEDEAEATAVVGDAALAEELLKDQGRLWTRNLGRDDRAIADHGREARFPFLDEDVVGYLRSLPLREVCNMDEPVGIGDKKVLREVASHLGLESCRRLPKRAIQFGSRIAQHCARHTHGSHRRGSGSDPASA 1072          
BLAST of mRNA_P-fluviatile_contig1.147.1 vs. uniprot
Match: A0A6H5K156_9PHAE (Glutamine amidotransferase type-2 domain-containing protein n=1 Tax=Ectocarpus sp. CCAP 1310/34 TaxID=867726 RepID=A0A6H5K156_9PHAE)

HSP 1 Score: 502 bits (1293), Expect = 4.170e-153
Identity = 497/1290 (38.53%), Postives = 577/1290 (44.73%), Query Frame = 3
Query:   63 MCGIGFLLGACQANQSELRCCIRSLRRRGPDAGRHITVDLQGGRTLHLMAAVLHLRGDELFKQPAEDVHGNVLLWNGE------VFDGLDVGPSGSDTAAILHALSLSRSHQEVVAALGRISGPFSLVYWCPARQALYYGRDPVGRRSLVVRRPRAPEEFMAVLSCLPETSG-------SPAD-SXXXXXXXXXXXXXXXXXXXXXXXMPPPDPVVGGDCNPSLDRKNDRELLPNLLGDTPVSPEAAGAGCRSGEGRWEEVRADGIYVLELGKESA--ADEG---DGNGGSDHGXXXXXXXXXXXXXXASFSPA-KLYSYPRRPLLRSAGAGVAEXXXXXXXXXXXXXXXXXXXXXXXEAAERCKSGRRRRAGCAEDYAATDRGQAGSEEGAEKEEEGCMNSKAGRLLGTRECQEGGSKRASAKARVRFNDGLKISTHHLSPAAKGLLNKLRESVRRRVRTVPYSALSGNNACXXXXXXXXXXXXXXXXXXXXXDGTERRNEPGYRFDIGQEDARLDVGDGVSRLRGAGAARASGDIDAGLQAAAGAEEERRSL---RGGRGLVTAVTPTAAVA--------ARVGVLFSGGLDSVVLAAMLAEE-RDGGASAVPRGEGIDLINVCFDSPSGHRSPDRLASIAAADELRSLFHWHTWRLVCVDASYDDVLRHSGAIWRVMQPCSTTMDFNIAAAFWFAARGTGWLYQPPAPAPRETPPFPASACSPTRDRRDLVDGTVTAGISITLHGSADYDDSEEWEAVPSGPSASASTVVDVPRASHGALTAPAGGVVVAAVAEAAPFLHPAASAVTTAAAVGVSSGESGAPALGVPGGAGDLLAVSPISPVSSASAPKDAPRN---------------------GTAAXXXXXXXXXGS---------------------------RNGKVVAKVNKNSDELCPVDGCRRLLKPGCVFGTCSRCCLKAQGILDAAAAA---------------------GVAAT-IGASA--------------SVRKGGL---------------QPESEADREGIASVTA--------------------------QEVQDAATAPTARERQQRECKARAQAAALRALEAHLLDHFEADLSPPFRAEALAALLLWLPPPPQAPPRPQQTQSVLPLRRKAADGVPATE-----RDGCRRSLLANASPGARQTPTECCPIHKRPRKREQGGSTGGVGCGGGEAGVSPNGTGPEAGDENR--AAGR-RPAASEGVFTSAARVLLVGIGADEFMGGYSRHRNAFNRGG 3437
            MCGIGFLLGA    QSEL   I +LRRRGPDA +  T+DL+GG TLHLMAAVLHLRGDEL  QPAED HGNVLLWNGE      VFDGLDVGP  SDTAA+L  LS + +H EV AALG ISGPFS VYWCP R+ALYYGRDP GRRSLV+RRPR+  E + VLSCLP+          SP + +       XXXXXXXXXXXX      PP  V+  D    +                      A       E  WEEVRADGIYVL     SA  +D G   DGNG +                    +P  +LY +  RP     G+G++E                               G+R+R    +D      G +  +EG++ E       + GR LGT                  +                GLL +LR S+RRRV T+P+ A    N                           RR   G   D G+E+A+     G +     G     GD      AAA A + R       G  G                    ARVG+LFSGGLDSVVLAA+LAEE   G   AVP+GE IDLINVCFDSPSGH+SPDRLAS AAA EL+ LF  H WRLVCVDASY DVL  + A+WRVMQPCSTTMDFNIAAAFWFA+RG GWLYQP                 P       +D  V AG               + EA   GP+A+   V  V            GG          P   P       AA VGV  G + A       G   +   SP++  SS +AP                            TAA  XXXXXXXG+                            +G    KVNKN DELCPVDGCRRLL PGCV GTCSRCCLKAQG+++AA A                      G+  T IG +A              + RK                  +P +  D EG  +  A                           E  DA T+   R   QR  KA A+  A RALE HLL+ F+ DLS PFRAE LAALLL  PP                LRR+   G    E      D  R    A A  G RQ P   CP+H+R R++                       G E G+     AAG  RP  S    TSAARVLLVGIGADEFMGGYSRHRNAFNRGG
Sbjct:    1 MCGIGFLLGAGPPEQSELESYIGALRRRGPDADKQTTIDLEGGWTLHLMAAVLHLRGDELCAQPAEDAHGNVLLWNGEARAWRVVFDGLDVGPGESDTAAVLRTLSSTCNHHEVAAALGGISGPFSFVYWCPGRRALYYGRDPAGRRSLVLRRPRSSGEKIVVLSCLPKKKSTEPPGICSPVNPTVSATPAHXXXXXXXXXXXXEFDDRQPPATVIDADDTAGVVAVGRXXXXXXXXXXXXXXXVVAA------ESDWEEVRADGIYVLSSDGTSATTSDGGARVDGNGWT--------------------APRPQLYRWSVRP-----GSGLSEASLGLTPP-----------------------GQRQRITGGDDV-----GVSAGDEGSKVEAVSNEREEGGRRLGT------------------WGSDXXXXXXXXXXXXXGLLERLRGSIRRRVCTIPHPASRRFNR-------------------------RRRAASG---DGGREEAKPQGFRGCAESEKPGRGNGLGDALRAEDAAACAADTRPQRVWHDGAAGXXXXXXXXXXXXXXXXXXXXARVGILFSGGLDSVVLAALLAEEGAQGRGPAVPKGEPIDLINVCFDSPSGHQSPDRLASFAAAGELKRLFPSHAWRLVCVDASYGDVLGRTEAVWRVMQPCSTTMDFNIAAAFWFASRGEGWLYQP--------------LVQPPSTXXXXLDSGVNAGA--------------DGEAP--GPAAALKVVPKV------------GGXXXXXAICGTPGDSP-----PLAAVVGVFRGPAAAD------GVSRVERPSPVTAASSTAAPPXXXXXXXXXXXXXXXXXXXXXXXXXXATAASAXXXXXXXGTGVSQNGXXXXXXXXXXXCPRSRATEAMASGSAKTKVNKNGDELCPVDGCRRLLLPGCVLGTCSRCCLKAQGLIEAATAXXXXXXXXXXXXXXXXXLERARGLPGTPIGRAAXXXXXXETIPPDTATERKETXXXXXXXXXXXXXXXGEPMTANDHEGETATVAVTXXXXXXXXXXXXXXXXTPAEALPPSEGVDATTSAAER---QRLFKAHAEEEARRALEGHLLERFDEDLSAPFRAEELAALLLLSPP----------------LRRENNSGPSQAEVCIPSHDQRRLDPDAGARQG-RQRPVRWCPVHRRFRRK-----------------------GEERGERETEAAAGEPRPGTSATRVTSAARVLLVGIGADEFMGGYSRHRNAFNRGG 1089          
BLAST of mRNA_P-fluviatile_contig1.147.1 vs. uniprot
Match: A0A6H5JXE2_9PHAE (Asparagine synthetase domain-containing protein n=1 Tax=Ectocarpus sp. CCAP 1310/34 TaxID=867726 RepID=A0A6H5JXE2_9PHAE)

HSP 1 Score: 210 bits (535), Expect = 1.090e-58
Identity = 97/120 (80.83%), Postives = 110/120 (91.67%), Query Frame = 3
Query: 3435 GDDSLAEELAQDQARLWTRNLGRDDRSIADHGREARFPFLDEGVIDYIRSLPLRDVCDMDDPPGVGDKKILREVASHLGLDGCRSLPKRAIQFGSRIAQHCARHTHGSHRRGSGSAPAAS 3794
            GD +LAEEL +DQ RLWTRNLGRDDR+IADHGREARFPFLDE V+ Y+R LPLR+VC+MD+P G+GDKK+LREVASHLGL+ CR LPKRAIQFGSRIAQHCARHTHGSHRRGSGS PA++
Sbjct:   62 GDAALAEELLKDQDRLWTRNLGRDDRAIADHGREARFPFLDEAVVGYLRCLPLREVCNMDEPVGIGDKKVLREVASHLGLESCRRLPKRAIQFGSRIAQHCARHTHGSHRRGSGSDPASA 181          
BLAST of mRNA_P-fluviatile_contig1.147.1 vs. uniprot
Match: A0A7S4D4W9_HETAK (Hypothetical protein n=1 Tax=Heterosigma akashiwo TaxID=2829 RepID=A0A7S4D4W9_HETAK)

HSP 1 Score: 191 bits (485), Expect = 7.820e-49
Identity = 93/145 (64.14%), Postives = 111/145 (76.55%), Query Frame = 3
Query: 3342 FTSAARVLLVGIGADEFMGGYSRHRNAFNRGGDDSLAEELAQDQARLWTRNLGRDDRSIADHGREARFPFLDEGVIDYIRSLPLRDVCDMDDPPGVGDKKILREVASHLGLDGCRSLPKRAIQFGSRIAQHCARHTHGSHRRGSG 3776
            + S A+VLL+GIGADE +GGY RHR AF  GG+ +L  ELA D ARLWTRNLGRDDR ++DHGREARFPFLDEGV+  +R+LPLR + D+  PPG+GDKKILR+VA  LGL     L KRAIQFGSRIA+H      GS+R+G G
Sbjct:  290 YCSKAKVLLIGIGADEQLGGYGRHRTAFREGGEGALRRELAADVARLWTRNLGRDDRCVSDHGREARFPFLDEGVVAAVRALPLRRIVDLSLPPGIGDKKILRDVAKTLGLQTSSLLVKRAIQFGSRIAKHSNIQAFGSNRKGKG 434          
BLAST of mRNA_P-fluviatile_contig1.147.1 vs. uniprot
Match: A0A4D9D3G7_9STRA (Glutamine amidotransferase type-2 domain-containing protein n=2 Tax=Monodopsidaceae TaxID=425072 RepID=A0A4D9D3G7_9STRA)

HSP 1 Score: 198 bits (503), Expect = 1.460e-48
Identity = 208/692 (30.06%), Postives = 261/692 (37.72%), Query Frame = 3
Query: 1716 ARVGVLFSGGLDSVVLAAMLAEERDGGASAVPRGEGIDLINVCFDSPSGHRSPDRLASIAAADELRSLFHWHTWRLVCVDASYDDVLRHSGAIW----RVMQPCSTTMDFNIAAAFWFAARGTGWLYQPPAPAPRETPPFPASACSPTRDRRDLVDGTVTAGISITL--HGSADYDDSEEWEAVPSGPSASASTVVDVPRASHGALTAPAGGVVVAAVAEAAPFLHPAASAVTTAAAVGVSSGESGAPALGVPGGAGDLLAVSPISPVSSASAPKDAPRNGTAAXXXXXXXXXGSRNGKVVAKVNKNSDELCPVDGCRRLLKPGCVFGTCSRCCLKAQGILDAAAAAGVAATIGASASVRKGGLQPESEADREGIASVTAQEVQDAATAPTARERQQRECKARAQAAALRALEAHLLDHFEADLSPPFRAEALAALLLWLPPPPQAPPRPQQTQSVLPLRRKAADGVPATERDGCRRSLLANASPGARQTPTECCPIHKRPRKREQGGSTGGVGCGGGEAGVSPNGTGPEAGDENRAAGRRPAASEGVFTSAARVLLVGIGADEFMGGYSRHRNAFNRGGDDSLAEELAQDQARLWTRNLGRDDRSIADHGREARFPFLDEGVIDYIRSLPLRDVCDMDDPPGVGDKKILREVA-SHLGLDGCRSLPKRAIQFGSRIAQHCARHTHGSHRRG 3770
            A VGVL+SGG+D  VLAA+   +     S       +DL+NVCFDSP GHRSPDRLA++A   ELR  F    WRL+ VD   DD     G++     R++ PCST MDFNIA AF+ AARG G +                 AC    +   +++    AG+   L  +G A                                                                         AP  G PGG G                                    GS  GKV     K     C   GCRR+ KPGC+   C  CC K +   +A  AA  AA       V +GG + E    R G  +V  ++  +          Q + C+                 H     SP    E L               R     S+       + G P              ASP    TP                                                        ++ S AR LLVG+GADE + GY RHR  F +GG+ +L  ELA D  RLWTRNLGRDDR IA HGREARFP+LDE V+ ++ SLP      +    GVGDK ILRE+A   LGL+G  +L KRAIQFGSRI++  + H  GSHR G
Sbjct:  335 AHVGVLYSGGVDCQVLAALTHLQL---GSEPEASSPVDLLNVCFDSPGGHRSPDRLAALAGWLELRRTFPTRRWRLILVDV--DDYGEEVGSVEEELRRLILPCSTPMDFNIACAFYHAARGVGRV-----------------AC--VEEAARVLEEAAAAGLGGKLLRYGKA-------------------------------------------------------------------------APKEGPPGGRGG------------------------------GGREAGSSTGKV-----KELPGPCTAPGCRRVFKPGCMDRLCHYCCRKRR--REAFGAAEGAAK----PEVLRGGKEAEGN-HRLGGGNVAQRQPLE----------QGQRCRV----------------HEPGKPSPLPSGETLG--------------RASSPSSL-------SQGPPL-------------ASPSPLSTP--------------------------------------------------------LYRSRARALLVGVGADEQLAGYGRHRATFQKGGEAALVAELAMDLGRLWTRNLGRDDRVIASHGREARFPYLDEDVMAFLSSLPPTLKYTLTASMGVGDKMILRELARQRLGLEGAAALVKRAIQFGSRISREASMHNFGSHRAG 771          
BLAST of mRNA_P-fluviatile_contig1.147.1 vs. uniprot
Match: A0A7S2P1Q0_9STRA (Hypothetical protein n=1 Tax=Leptocylindrus danicus TaxID=163516 RepID=A0A7S2P1Q0_9STRA)

HSP 1 Score: 175 bits (443), Expect = 2.610e-46
Identity = 83/148 (56.08%), Postives = 109/148 (73.65%), Query Frame = 3
Query: 3339 VFTSAARVLLVGIGADEFMGGYSRHRNAFNRGGDDSLAEELAQDQARLWTRNLGRDDRSIADHGREARFPFLDEGVIDYIRSLPLRDVCDMDDPPGVGDKKILREVASHLGLDGCRSLPKRAIQFGSRIAQHCARHTHGSHRRGSGSA 3782
            ++ S  + LL+GIGADE M GY RHR+ +NRGG D+L  EL  ++ R+WTRNLGRDDR ++D+GREARFPFLDE V++++ SLP+ D+CDM+   G GDK ILR VA  +G+  C SL KRAIQFGSRIA+    H  GS +  +G+A
Sbjct:   38 MYASTVKALLLGIGADEQMAGYGRHRSVYNRGGYDALQAELQMEKMRIWTRNLGRDDRCVSDNGREARFPFLDEEVVEFLESLPITDICDMNRVQGEGDKMILRLVAKIIGVHACSSLVKRAIQFGSRIAKASDVHQFGSSKHATGTA 185          
BLAST of mRNA_P-fluviatile_contig1.147.1 vs. uniprot
Match: A0A7S4STR7_9STRA (Hypothetical protein (Fragment) n=1 Tax=Ditylum brightwellii TaxID=49249 RepID=A0A7S4STR7_9STRA)

HSP 1 Score: 176 bits (447), Expect = 9.390e-45
Identity = 81/133 (60.90%), Postives = 104/133 (78.20%), Query Frame = 3
Query: 3333 EGVFTSAARVLLVGIGADEFMGGYSRHRNAFNRGGDDSLAEELAQDQARLWTRNLGRDDRSIADHGREARFPFLDEGVIDYIRSLPLRDVCDMDDPPGVGDKKILREVASHLGLDGCRSLPKRAIQFGSRIAQ 3731
            + +  S A++LLVGIGADE + GY RHR  F RGG D+L +EL  ++ RLWTRNLGRDDR I+DHGREARFPFLDE V++++  +PL D+CDM+ P GVGDK ILR ++  +G++ C SL KRAIQFGSRIA+
Sbjct:  223 DAMIVSGAKILLVGIGADEQLAGYGRHRVVFARGGYDALRDELYMEKQRLWTRNLGRDDRCISDHGREARFPFLDEEVVEFLEKIPLEDICDMNQPEGVGDKMILRIISRWIGVEQCSSLVKRAIQFGSRIAK 355          
BLAST of mRNA_P-fluviatile_contig1.147.1 vs. uniprot
Match: A0A5D6Y860_9STRA (Uncharacterized protein n=1 Tax=Pythium brassicum TaxID=1485010 RepID=A0A5D6Y860_9STRA)

HSP 1 Score: 180 bits (457), Expect = 5.440e-43
Identity = 88/163 (53.99%), Postives = 111/163 (68.10%), Query Frame = 3
Query: 3294 DENRAAGRRPAASEGVFTSAARVLLVGIGADEFMGGYSRHRNAFNRGGDDSLAEELAQDQARLWTRNLGRDDRSIADHGREARFPFLDEGVIDYIRSLPLRDVCDMDDPPGVGDKKILREVASHLGLDGCRSLPKRAIQFGSRIAQHCARHTHGSHRRGSGSA 3782
            D + AA  R   +   +TS ARVLLVGIGADE +GGY RH+ AF  GG  +L +ELA D  R+W RNLGRDDR I+ HG+EARFPFLDE V+ ++ SLP+  +CD+  P G GDK +LR     LGL  C  L KRAIQFG+R+A+H   H  GS+R+ +G A
Sbjct:  598 DRDDAAAERARDTAEAYTSPARVLLVGIGADEQLGGYGRHKTAFETGGAQALRDELALDMRRIWKRNLGRDDRCISAHGKEARFPFLDEDVVAFVGSLPVECICDLSQPRGAGDKLVLRVAGRQLGLRNCTGLAKRAIQFGTRLAKHSNAHAFGSNRQATGDA 760          
BLAST of mRNA_P-fluviatile_contig1.147.1 vs. uniprot
Match: A0A7S4IMA2_9STRA (Hypothetical protein n=1 Tax=Odontella aurita TaxID=265563 RepID=A0A7S4IMA2_9STRA)

HSP 1 Score: 179 bits (453), Expect = 1.870e-42
Identity = 90/145 (62.07%), Postives = 105/145 (72.41%), Query Frame = 3
Query: 3348 SAARVLLVGIGADEFMGGYSRHRNAFNRGGDDSLAEELAQDQARLWTRNLGRDDRSIADHGREARFPFLDEGVIDYIRSLPLRDVCDMDDPPGVGDKKILREVASHLGLDGCRSLPKRAIQFGSRIAQHCARHTHGSHRRGSGSA 3782
            S A++LLVGIGADE M GY RHR  F RGG ++L  EL  ++ RLWTRNLGRDDR I+DHG+EARFPFLDE V+ Y+RSL + D+CDM  P G GDK ILR VA  LG+  C  L KRAIQFGSRIA+       GS R+ SGSA
Sbjct:  620 SMAKILLVGIGADEQMAGYGRHRKVFERGGYEALRAELKMERERLWTRNLGRDDRCISDHGKEARFPFLDEDVVAYLRSLDIEDICDMQRPQGEGDKMILRLVAKELGVTKCSGLVKRAIQFGSRIAKVSDVDRFGSSRKASGSA 764          
BLAST of mRNA_P-fluviatile_contig1.147.1 vs. uniprot
Match: A0A445DNP9_ARAHY (Asparagine synthetase domain-containing protein n=1 Tax=Arachis hypogaea TaxID=3818 RepID=A0A445DNP9_ARAHY)

HSP 1 Score: 163 bits (413), Expect = 1.980e-41
Identity = 81/141 (57.45%), Postives = 103/141 (73.05%), Query Frame = 3
Query: 3342 FTSAARVLLVGIGADEFMGGYSRHRNAFNRGGDDSLAEELAQDQARLWTRNLGRDDRSIADHGREARFPFLDEGVIDYIRSLPLRDVCDMDDPPGVGDKKILREVASHLGLDGCRSLPKRAIQFGSRIAQHCARHTHGSHR 3764
            + S+AR+LLVG GADE   GY RHR +++RG    L EE+  D  R+W RNLGRDDR IAD+G+EARFPFLDE VI  + + PL ++ ++D P G+GDK+ILREVA+ LGL+    LPKRAIQFGSRIA+   R   GS+R
Sbjct:   97 YKSSARILLVGSGADEQCAGYGRHRTSYSRGSWLGLHEEMKLDMQRIWKRNLGRDDRCIADNGKEARFPFLDEDVIRVLLNFPLWEIANLDQPSGIGDKRILREVAALLGLNEAAILPKRAIQFGSRIARESNRKNFGSNR 237          
The following BLAST results are available for this feature:
BLAST of mRNA_P-fluviatile_contig1.147.1 vs. uniprot
Analysis Date: 2022-09-19 (Diamond blastx: OGS1.0 vs UniRef90)
Total hits: 25
Match NameE-valueIdentityDescription
D7G9H9_ECTSI1.270e-18036.21Glutamine amidotransferase type-2 domain-containin... [more]
A0A6H5K156_9PHAE4.170e-15338.53Glutamine amidotransferase type-2 domain-containin... [more]
A0A6H5JXE2_9PHAE1.090e-5880.83Asparagine synthetase domain-containing protein n=... [more]
A0A7S4D4W9_HETAK7.820e-4964.14Hypothetical protein n=1 Tax=Heterosigma akashiwo ... [more]
A0A4D9D3G7_9STRA1.460e-4830.06Glutamine amidotransferase type-2 domain-containin... [more]
A0A7S2P1Q0_9STRA2.610e-4656.08Hypothetical protein n=1 Tax=Leptocylindrus danicu... [more]
A0A7S4STR7_9STRA9.390e-4560.90Hypothetical protein (Fragment) n=1 Tax=Ditylum br... [more]
A0A5D6Y860_9STRA5.440e-4353.99Uncharacterized protein n=1 Tax=Pythium brassicum ... [more]
A0A7S4IMA2_9STRA1.870e-4262.07Hypothetical protein n=1 Tax=Odontella aurita TaxI... [more]
A0A445DNP9_ARAHY1.980e-4157.45Asparagine synthetase domain-containing protein n=... [more]

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Alignments
The following features are aligned
Aligned FeatureFeature TypeAlignment Location
P-fluviatile_contig1contigP-fluviatile_contig1:1942205..1954738 +
Analyses
This mRNA is derived from or has results from the following analyses
Analysis NameDate Performed
Diamond blastx: OGS1.0 vs UniRef902022-09-19
OGS1.0 of Porterinema fluviatile SAG_23812021-02-24
Properties
Property NameValue
Taxonomic scopeEukaryota
Seed ortholog score597.8
Seed ortholog evalue1.1e-167
Seed eggNOG ortholog2880.D7G9H9
EggNOG free text desc.asparagine synthase (glutamine-hydrolyzing) activity
EggNOG OGsCOG0367@1,KOG0573@2759
COG Functional cat.E
Best tax levelEukaryota
Best eggNOG OGNA|NA|NA
Hectar predicted targeting categoryother localisation
Ec32 ortholog descriptionRossmann-like alpha/beta/alpha sandwich fold
Ec32 orthologEc-28_000990.1
Exons11
Model size4244
Cds size3741
Stop1
Start1
Relationships

The following UTR feature(s) are a part of this mRNA:

Feature NameUnique NameSpeciesTypePosition
1622815296.1370468-UTR-P-fluviatile_contig1:1942204..19422661622815296.1370468-UTR-P-fluviatile_contig1:1942204..1942266Porterinema fluviatile SAG_2381UTRP-fluviatile_contig1 1942205..1942266 +
1693561434.600941-UTR-P-fluviatile_contig1:1942204..19422661693561434.600941-UTR-P-fluviatile_contig1:1942204..1942266Porterinema fluviatile SAG_2381UTRP-fluviatile_contig1 1942205..1942266 +
1622815296.2748334-UTR-P-fluviatile_contig1:1954297..19547381622815296.2748334-UTR-P-fluviatile_contig1:1954297..1954738Porterinema fluviatile SAG_2381UTRP-fluviatile_contig1 1954298..1954738 +
1693561434.7282283-UTR-P-fluviatile_contig1:1954297..19547381693561434.7282283-UTR-P-fluviatile_contig1:1954297..1954738Porterinema fluviatile SAG_2381UTRP-fluviatile_contig1 1954298..1954738 +


The following CDS feature(s) are a part of this mRNA:

Feature NameUnique NameSpeciesTypePosition
1622815296.1465406-CDS-P-fluviatile_contig1:1942266..19423891622815296.1465406-CDS-P-fluviatile_contig1:1942266..1942389Porterinema fluviatile SAG_2381CDSP-fluviatile_contig1 1942267..1942389 +
1693561434.6124132-CDS-P-fluviatile_contig1:1942266..19423891693561434.6124132-CDS-P-fluviatile_contig1:1942266..1942389Porterinema fluviatile SAG_2381CDSP-fluviatile_contig1 1942267..1942389 +
1622815296.15584-CDS-P-fluviatile_contig1:1945343..19454541622815296.15584-CDS-P-fluviatile_contig1:1945343..1945454Porterinema fluviatile SAG_2381CDSP-fluviatile_contig1 1945344..1945454 +
1693561434.6205707-CDS-P-fluviatile_contig1:1945343..19454541693561434.6205707-CDS-P-fluviatile_contig1:1945343..1945454Porterinema fluviatile SAG_2381CDSP-fluviatile_contig1 1945344..1945454 +
1622815296.1747396-CDS-P-fluviatile_contig1:1946369..19464561622815296.1747396-CDS-P-fluviatile_contig1:1946369..1946456Porterinema fluviatile SAG_2381CDSP-fluviatile_contig1 1946370..1946456 +
1693561434.6290414-CDS-P-fluviatile_contig1:1946369..19464561693561434.6290414-CDS-P-fluviatile_contig1:1946369..1946456Porterinema fluviatile SAG_2381CDSP-fluviatile_contig1 1946370..1946456 +
1622815296.1842835-CDS-P-fluviatile_contig1:1946943..19470681622815296.1842835-CDS-P-fluviatile_contig1:1946943..1947068Porterinema fluviatile SAG_2381CDSP-fluviatile_contig1 1946944..1947068 +
1693561434.6385372-CDS-P-fluviatile_contig1:1946943..19470681693561434.6385372-CDS-P-fluviatile_contig1:1946943..1947068Porterinema fluviatile SAG_2381CDSP-fluviatile_contig1 1946944..1947068 +
1622815296.1937096-CDS-P-fluviatile_contig1:1947382..19487261622815296.1937096-CDS-P-fluviatile_contig1:1947382..1948726Porterinema fluviatile SAG_2381CDSP-fluviatile_contig1 1947383..1948726 +
1693561434.6488256-CDS-P-fluviatile_contig1:1947382..19487261693561434.6488256-CDS-P-fluviatile_contig1:1947382..1948726Porterinema fluviatile SAG_2381CDSP-fluviatile_contig1 1947383..1948726 +
1622815296.2045584-CDS-P-fluviatile_contig1:1949081..19492381622815296.2045584-CDS-P-fluviatile_contig1:1949081..1949238Porterinema fluviatile SAG_2381CDSP-fluviatile_contig1 1949082..1949238 +
1693561434.6567626-CDS-P-fluviatile_contig1:1949081..19492381693561434.6567626-CDS-P-fluviatile_contig1:1949081..1949238Porterinema fluviatile SAG_2381CDSP-fluviatile_contig1 1949082..1949238 +
1622815296.2160678-CDS-P-fluviatile_contig1:1949952..19513111622815296.2160678-CDS-P-fluviatile_contig1:1949952..1951311Porterinema fluviatile SAG_2381CDSP-fluviatile_contig1 1949953..1951311 +
1693561434.6656902-CDS-P-fluviatile_contig1:1949952..19513111693561434.6656902-CDS-P-fluviatile_contig1:1949952..1951311Porterinema fluviatile SAG_2381CDSP-fluviatile_contig1 1949953..1951311 +
1622815296.22502-CDS-P-fluviatile_contig1:1951886..19519531622815296.22502-CDS-P-fluviatile_contig1:1951886..1951953Porterinema fluviatile SAG_2381CDSP-fluviatile_contig1 1951887..1951953 +
1693561434.6756587-CDS-P-fluviatile_contig1:1951886..19519531693561434.6756587-CDS-P-fluviatile_contig1:1951886..1951953Porterinema fluviatile SAG_2381CDSP-fluviatile_contig1 1951887..1951953 +
1622815296.2381687-CDS-P-fluviatile_contig1:1952725..19528701622815296.2381687-CDS-P-fluviatile_contig1:1952725..1952870Porterinema fluviatile SAG_2381CDSP-fluviatile_contig1 1952726..1952870 +
1693561434.6856802-CDS-P-fluviatile_contig1:1952725..19528701693561434.6856802-CDS-P-fluviatile_contig1:1952725..1952870Porterinema fluviatile SAG_2381CDSP-fluviatile_contig1 1952726..1952870 +
1622815296.2505918-CDS-P-fluviatile_contig1:1953444..19535171622815296.2505918-CDS-P-fluviatile_contig1:1953444..1953517Porterinema fluviatile SAG_2381CDSP-fluviatile_contig1 1953445..1953517 +
1693561434.6969903-CDS-P-fluviatile_contig1:1953444..19535171693561434.6969903-CDS-P-fluviatile_contig1:1953444..1953517Porterinema fluviatile SAG_2381CDSP-fluviatile_contig1 1953445..1953517 +
1622815296.2622695-CDS-P-fluviatile_contig1:1954147..19542971622815296.2622695-CDS-P-fluviatile_contig1:1954147..1954297Porterinema fluviatile SAG_2381CDSP-fluviatile_contig1 1954148..1954297 +
1693561434.712378-CDS-P-fluviatile_contig1:1954147..19542971693561434.712378-CDS-P-fluviatile_contig1:1954147..1954297Porterinema fluviatile SAG_2381CDSP-fluviatile_contig1 1954148..1954297 +


The following polypeptide feature(s) derives from this mRNA:

Feature NameUnique NameSpeciesTypePosition
mRNA_P-fluviatile_contig1.147.1prot_P-fluviatile_contig1.147.1Porterinema fluviatile SAG_2381polypeptideP-fluviatile_contig1 1942267..1954297 +


Sequences
The following sequences are available for this feature:

protein sequence of mRNA_P-fluviatile_contig1.147.1

>prot_P-fluviatile_contig1.147.1 ID=prot_P-fluviatile_contig1.147.1|Name=mRNA_P-fluviatile_contig1.147.1|organism=Porterinema fluviatile SAG_2381|type=polypeptide|length=1247bp
MCGIGFLLGACQANQSELRCCIRSLRRRGPDAGRHITVDLQGGRTLHLMA
AVLHLRGDELFKQPAEDVHGNVLLWNGEVFDGLDVGPSGSDTAAILHALS
LSRSHQEVVAALGRISGPFSLVYWCPARQALYYGRDPVGRRSLVVRRPRA
PEEFMAVLSCLPETSGSPADSDADADFDADADASAGEAQPRPQAMPPPDP
VVGGDCNPSLDRKNDRELLPNLLGDTPVSPEAAGAGCRSGEGRWEEVRAD
GIYVLELGKESAADEGDGNGGSDHGDSSTTTTGTTAVAAASFSPAKLYSY
PRRPLLRSAGAGVAEAEGAEEAKGEEGEEEEAKAPAPAEAAERCKSGRRR
RAGCAEDYAATDRGQAGSEEGAEKEEEGCMNSKAGRLLGTRECQEGGSKR
ASAKARVRFNDGLKISTHHLSPAAKGLLNKLRESVRRRVRTVPYSALSGN
NACCGGRAGRRRGRDDGGGGDDGGDGTERRNEPGYRFDIGQEDARLDVGD
GVSRLRGAGAARASGDIDAGLQAAAGAEEERRSLRGGRGLVTAVTPTAAV
AARVGVLFSGGLDSVVLAAMLAEERDGGASAVPRGEGIDLINVCFDSPSG
HRSPDRLASIAAADELRSLFHWHTWRLVCVDASYDDVLRHSGAIWRVMQP
CSTTMDFNIAAAFWFAARGTGWLYQPPAPAPRETPPFPASACSPTRDRRD
LVDGTVTAGISITLHGSADYDDSEEWEAVPSGPSASASTVVDVPRASHGA
LTAPAGGVVVAAVAEAAPFLHPAASAVTTAAAVGVSSGESGAPALGVPGG
AGDLLAVSPISPVSSASAPKDAPRNGTAAAAAASSATSGSRNGKVVAKVN
KNSDELCPVDGCRRLLKPGCVFGTCSRCCLKAQGILDAAAAAGVAATIGA
SASVRKGGLQPESEADREGIASVTAQEVQDAATAPTARERQQRECKARAQ
AAALRALEAHLLDHFEADLSPPFRAEALAALLLWLPPPPQAPPRPQQTQS
VLPLRRKAADGVPATERDGCRRSLLANASPGARQTPTECCPIHKRPRKRE
QGGSTGGVGCGGGEAGVSPNGTGPEAGDENRAAGRRPAASEGVFTSAARV
LLVGIGADEFMGGYSRHRNAFNRGGDDSLAEELAQDQARLWTRNLGRDDR
SIADHGREARFPFLDEGVIDYIRSLPLRDVCDMDDPPGVGDKKILREVAS
HLGLDGCRSLPKRAIQFGSRIAQHCARHTHGSHRRGSGSAPAASPL*
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mRNA from alignment at P-fluviatile_contig1:1942205..1954738+

Legend: UTRpolypeptideCDS
Hold the cursor over a type above to highlight its positions in the sequence below.
>mRNA_P-fluviatile_contig1.147.1 ID=mRNA_P-fluviatile_contig1.147.1|Name=mRNA_P-fluviatile_contig1.147.1|organism=Porterinema fluviatile SAG_2381|type=mRNA|length=12534bp|location=Sequence derived from alignment at P-fluviatile_contig1:1942205..1954738+ (Porterinema fluviatile SAG_2381)
CCTTCCGGTAGCACGCAGCAGCGGTAGATCGGCGTAGATCCCACACACCT CACAACGCAAACATGTGCGGCATCGGTTTCTTATTAGGGGCGTGCCAAGC CAACCAGTCGGAGCTGAGATGCTGCATACGCTCTCTTCGAAGGCGAGGCC CTGACGCTGGCAGGCATATTACTGTCGACCTTCAGGTATCATGCCGGGAA TCGGAACGAGCGCGAGTGAAAGACAGAGCGACAACGACGACGCCCTGTCC TGAAGCTTCGTCGCTCGTGTTTTAGTTTGATTCCTAGCTCACGATTGTGG GCGTCTTGGGCCTCATCATGACATGGGCGAAAGAGGTCCTCGTGATTTTG ATGGTTTTGCGCGTCAAGGGTTACAGAGAGATCAAGGAGGGAGGACAGGA CTGTCGGCCGAGATTGACAGTCTCGCCGAGTCCGGAGCGATGCTGCCTGT GCTTGTTGCCCGACCACGCATACGGACAGAGTCGTTTCGCGAATCTGTGG TTTGTGGAAACGTCATGGAAAATTCCTGGTTATGGAAGGATGAACAGATA TGCAAAAAGCAGAAGTACGCAGGGATGCTTTCGTGCACAAGTGTTTTCGA TCAATTGACTCATGACGTCGGCCGAGAGTTGACCAAGGAGAGCGTAAGTA ACGAGCACAAAGGGCAAAACAGCACAGCAGCAGCGTCATCTTCTAGGATT CGTTTGGGACTCGCGCGACTTCCGCGACTTGAGCGATTCGCGTCTGACCT TCGAGGGCCTCGGAGCTCCCAAAATGCGCAACGGCCGGCAGGATCCACCG CAGGCCGGCGGCGGCAACGTCGATAAACCTCCACCGCCGCCACCAGTGGG TGGACAACAGCAGCAGTTTAGCGCATTTTGGGAGCTCCGAGGCCCTCGAA GGTCAGACGCGAATCGCTCAAGTCGCGGAAGTCGCGCGAGTCCCAAACGA ATCCTAGAAGATGACGCTGCTGCTGTGCTGTTTTGCCCTTTGTGCTCTGT ACTTACGCTCTCCTTGGTCAACTCTCGGCCGACGTCATGAGTCAATTGAT CGAAAACACAGAAGATGACGCTGCTGCTGTGCTGTTTTGCCCGTTGTGCT CGTTACTTGTGCTCTCCTTGGTCAACTCTCGGCCAACGTCATGAGTCAAT TGGTCGAAACACTTGTGCACGATAGCATCCCTGCGTACTTCTATTTTTTG CATATCTGTTCATCCTTCCATAACCAGGAATTTTCCATGACGTTTCCACA AACCACAGATTCGCGAAACGAATCTATCCGTGCCTGTGCTTGTTGCCCGA CCACGCATACACACGCATTCAGAAAGTCAGTCGGATTTGAGAGGTAGCGA CGTGGACCATATTTGAACGTATCATGTACAGAAGTATCATCGCAGCGTCA CTGGCGAATTTTCTCTACAGCTTTTTTCGGTCGAACACAAGTAACGCCTG AACGCGAAGTACGCACGTGCTGCGGTTTTCATGTTGACGATAGGCACTTG AAAAATCCCGCACCAATAAGCTGGCAGCCCACGAGAGAGGACTCCTCAAA ATAACAAGAAAATCTTCTGCAATTGGCGATTGTGTGCGTATTGCTTGTTC GAAGTGGCTACTCCACCAACCGCGCCAATTTCGGAGTCCACGTTTCGGGC GGAACGGGTGCGAACCCTCCGCCAACCGCGCCAATTTCGAAGTCCACGTC TCGGGAACGGGTGCGGACCCTCCGTTTGCGTTAACTCATCCGCCACATAT TCCCCGCTTTGCTATTACTATGCCGCTGTTTTCGTGGATTTTTCCCTCAT GCCCATACGCTAGTATGCGTTCTCATTTTGACAAATCGCGAAAACTGAGT CATAGATGCGCATGCTCAAAGTTGGCAAATATGGCCGCTTGTGTTAAAAG AAACCTGATGAAATCGCTCTATTCTGCGAAAGGTTGTTGGATCATTCCCA TCCGACTACGGCACCTCACCGCCCCGGACAAAAGTCGTGACTACGTCATC GTGCTACTCCATCACACTTTGGTTATCTTTCTACCCGACTGGCTGAGCTG AATGATCCCTTTACAATCGCTTAAATTGCGTCCACTTTGGAGTAGATTAA GGTAGCTGGGTATTAATTCGGTAGCCCAGGTAAAGGTGTTTGATTGTCCG CCGTCATCTGCAAAGCTGTTGTTTTTCTGCTGTGTTCGTGGGTGTTTCTG TGTACAAGTGGTTGTTGTTGCCTCAGCCACGCCACCAGTCCTGAAGAGAC CAGCGGCCTTTGTCGCTATGGTGCTTCAGGGCTAGTCACGGAATCGACCA AAAGCCACCCTAATCACCCAAAGCAGGCAGGGGATGAATGTGGGATTGCC GAAAGGGTTGTCACTATTGGTGCCCGGGGATGTGAGGTATCGGCCTCGTT TGTGTGCCTCCGTTGCTAGACTCTCAATCAGATGAGCTTTCGGCCCCCGG CAGTCGCGAAAACCGCGCTCTCCCCTCTCACAAAAGACTCACTTTATCAA AGATGGCATGTGGGTTCCCTGAACGCTTTGCCGAGGCCGAACGGCGAAAG AACAGCGGACATGCCTACCATGAGGCTGCCTATCAGCGATTGTTCGCGCT CAGGATGAATGGGTGGTAGTGCGTTTAAAACAAAGGTGGTGCAACGGATG CGGGATTCTGCATATGATCGGTTTTAGCCAAGCGTTGGATCACACGCAAG CAGGTTTACAGCGGTCGACAACAGTCTGGCTTCATGCATCGACGGGGAGC GATGAGTTTCACTTGAATTTTTGCACTGAATCTGGGTGCCAAGCATTCCA TACCCCTGGCAACTTTTTGGTCGTGCATGTGTGATTTCCCATTAACACGC GGATCCAACATAACCGAAGATACATCGACACCGATGGAACTCGCCGTCCT TCTTCACAGAAACCCACTTTGCGGCGACGGCAGCAGCAGATTACTTACCG AACCCCAACGACGAGAAATGTATGCCCGACTTCAATGGTATAGTAGCACA GCGTTGCTGAGGTAGCTGACGACATACATCGTGAGACAAACACACGCACG CACGTACGTACCTGATTGTAGGGAACGACTGCCGTTCGCCACATACTCCT CTTTCCCCTTCAACGCCGTCTGTCCCGTTTCGTCCTCAGGGAGGCCGAAC GTTGCACCTGATGGCGGCGGTTCTCCACTTGCGCGGCGATGAGTTGTTCA AACAGCCCGCAGAGGACGTTCACGGCAACGTCCTGCTTTGGAACGGCGAG GTGCGTCTCATTACCCACATCCGTTTTAGAAATGTTTTGTCCATTGTCGG TCTCCGACGACGAGCTTTTTTCCTTCACCCACTCTCGGAAGAGTCGAAAA ACTCCGACGAAAAAAGGCACCCACGCAGGGTTTCGAACCCATGTCGCACA GTCAGAAAATTTCAAATCAAACCACGTAGACCAGCTAGCACTGGCGGGTT TCACGGCTTGATTTCAGGTTACATTGGTGTATTTTTCGCGCGTACTATCC CTCGCCTCATGTTTCGTATCCGAATGATGTGCCCGTTGTTCAGGGTTGCT TCGCTGCTGAATCACGTCATTCGTTTGTCGACCTTAAGACCGAGGGGTCG TGAGGGTAGAAAATGAGTCGGGACAAGGTGTCAGTGGTTGCGGACGTGGG CGATTTTGTCCCCTGCTCAGCGGAAGGTACGTTGAACTAATTTACAGAAA GTAAAGCATCAGGCATTTCGTCTTTTGCTGTCCAAGCGCGGGCACCCTCT CTGGTACTCGACCGAGCTCTTGAAACAGTACGTTGCGCCTGCAATTTCAC TCGGACCTCCTCACGGCTGTCTACGTTCGTTCGCAGGGTTTCTTTCCTGC AAAAGAGTGAATGTGCGCGTGAATGTGCTGTTGCTGCTACTCTCTTCTCC TGGTCTGCGTGCTAGCCGGCTGCGTCCCCGCTCCTCGCTCGTTGTGGCTG GCAATTGCCGTTTAAAAATGAAATCTGCAGCAACTCCATCAGCCTAACTT TGTTCGATAATCTTTCAAAGCTTGTTAGCGAGCAGAGTAAGGCTTTATTG ATGGTCTTACAAATACTTCGGTGCAAACACTCTTTTGTTGAGGCAGCCTC GAATGCCCACACTTCTTTTCACGAAAAATGTAAAATTGGACAATGTTTCT CTGCGCGCGTGCTAGGTGTTCGACGGCCTCGACGTCGGGCCTTCTGGGTC CGACACGGCCGCGATCCTTCATGCGCTTTCCCTGTCGCGCAGCCATCAAG AGGTAAAGTCTAACATATTGGGGTTGTCGGGGCCACAGTGAAAAAAACCC CGAAAAACGTCGAAAATAGACAAAACATGATGAGTGATCGCCGAACCGCC AGAGGAGGGTTGCGTTGAGTCATGTGTGGAGCAACCAACCACGAGGTTGC GGGATGTTGTCCATCGCGGGTGACGGCTTTCCTTTCGGCTGCACTACCCT GGCCTTGCCGAAGGCAGGGGGGGGTCTGGCGGAGTTCGACACGAAAGCTC TGCGCAGAACTTCGAGAAAGCTCTCGCGAAACTCTGAGCGTCTGTGCATG TGGTCCCCCCTCCGCCCCACCCCCGCTTTGTCCGTGGAAACGCCTCTTTG GGTCCCCACCACATTATCGGCGTGACGAAAAGGGCATCGCGTGGATTTGT CGTTTTGCACCCACACTTACCGTGCAAGGGTTAAGTTCGTGTCGAATCGT TTGCGACTCCGCCGATTTGGTGCGGTCTACCCTGTCCAGGTGGTTGCTGC GCTCGGCCGCATCTCCGGCCCCTTCTCCCTGGTGTACTGGTGCCCGGCGA GGCAGGCGCTGTATTACGGCAGGGATCCCGTGGGTCGCCGGAGTCTCGTC GTGCGGAGACCGAGGTATGTTTCGTTGGCTGCGGCAAACGGCGTTGGGAA AGTCGAAGATTTTACGAGATGGCTTTGTCGGCAGACATCGTGCTTCGGCC CGTCCTCAACGACGAGCGTCACAACCCGGCAACGGGCTGTGATTTCTCTG ACTTGAATGAAAATTTGTGAATATGTTCAGCGGCAAGTTGAGCTATCCCA GGCGCGCGCGCTGACAGGCATCGCTGGCTCGTCATCGCAGTCTCGTAAAG GGGCAGACAAAATAGCTGCTCGTTGTTTTCCGGTGTTAACCAGTGCCTCC ACTTTGGCCCTGCCCCGCCCATCCTAAGAGCGCCGGAAGAGTTCATGGCC GTCCTTTCTTGCTTGCCGGAGACGAGCGGCAGCCCCGCCGACTCCGACGC CGACGCCGACTTCGATGCCGATGCCGACGCTAGCGCTGGCGAGGCCCAGC CGCGACCGCAGGCGATGCCGCCACCCGACCCCGTCGTCGGCGGCGACTGC AACCCCAGCTTGGATAGAAAAAATGACCGCGAATTGCTACCCAACCTCCT CGGGGACACGCCCGTTAGCCCCGAGGCGGCCGGCGCTGGCTGCCGCTCGG GAGAAGGCCGCTGGGAGGAGGTCCGCGCCGACGGTATCTACGTCCTCGAA TTGGGCAAGGAAAGTGCCGCCGACGAGGGGGACGGGAACGGCGGCAGCGA TCACGGCGATTCGAGCACTACCACCACCGGCACCACCGCCGTCGCCGCCG CTTCTTTCTCGCCGGCGAAGCTTTACTCTTATCCTCGGCGGCCGCTTCTG CGAAGCGCCGGCGCGGGCGTTGCGGAAGCGGAGGGGGCGGAGGAAGCGAA GGGGGAGGAGGGGGAAGAGGAGGAGGCGAAGGCTCCGGCACCAGCCGAAG CGGCCGAACGTTGCAAGTCAGGACGCCGACGTCGAGCCGGGTGCGCGGAG GACTACGCGGCGACGGACAGGGGTCAAGCAGGTTCGGAAGAGGGCGCAGA GAAGGAGGAGGAGGGGTGCATGAATTCTAAGGCTGGCCGGCTTCTGGGCA CCAGAGAGTGCCAAGAGGGCGGGAGCAAGCGCGCGTCGGCGAAAGCAAGA GTCCGTTTCAACGACGGGCTCAAGATCTCGACCCACCACCTCTCCCCGGC GGCCAAGGGTTTACTGAACAAGCTCAGGGAGTCGGTCCGCCGCCGCGTTC GCACCGTGCCGTACTCGGCCCTCTCGGGCAACAATGCCTGCTGTGGGGGT AGAGCAGGACGGCGGCGCGGCCGAGACGATGGCGGGGGTGGAGACGATGG CGGCGATGGTACGGAAAGAAGAAACGAGCCGGGCTATCGATTTGATATTG GACAGGAGGATGCGCGACTCGATGTAGGAGATGGAGTAAGCAGGCTGCGG GGGGCGGGGGCTGCGAGAGCTTCGGGGGATATCGATGCGGGGCTCCAGGC CGCCGCCGGCGCCGAGGAGGAGCGCCGAAGCTTGCGGGGTGGTCGCGGGC TTGTCACCGCGGTAACGCCTACCGCTGCCGTCGCGGCTCGGGTGGGCGTC CTCTTCTCCGGGGGGCTAGACTCGGTGGTTCTGGCGGCGATGCTGGCGGA GGAGCGGGACGGGGGAGCTTCGGCTGTTCCGAGAGGGGAAGGCATCGACC TCATAAACGTCTGCTTCGACAGGTGGGTACTTGGCTCTGGCATTTGCTGT GCAAGCATCCTCGCAACCACTCAGGGAGCAGCAGCAGCGATGCTTTGGGT GCCGCATCCGCCGTCGCGATCAAACGTATATCGGCCGGTGAGATCGTTCC TAAGATTCCGGCCCATCTAGCCGGCTGAGCTCAGGCCTCCGTAATGTGTC GCACGCTTTGCCGGACACACCTTCTTCGAAGCACGCACGCACCCTATGCT TTCTTGGGCTCGCGTGAAATTCCCAACTGACGCCCCTCTCACGATCCTGG CCAAAAACTTCGACCCCCCTCACCCAATATCCCTCTCCCCTCGAAACTTC GGCCATTTTCCGTGCCCCATCTCTCAGCCCGAGCGGGCATCGCAGCCCCG ACAGGCTGGCCTCCATCGCGGCCGCCGACGAGCTGAGGTCGCTGTTCCAC TGGCATACGTGGAGGCTCGTCTGTGTGGACGCGAGCTACGACGACGTGCT CCGTCACTCGGGGGCGATCTGGCGAGTGATGCAGGCAAGCGGATACAGAC GCGCACCAGCGCGTGGATTTTTGTTTTTTTCGATGCAGAGACGGACGAGG GTACAGCTATGGAGACTTGTGTTGACGTGCGAGCACAAATGTGCAGGGAA GATGTTTTCGGAACGTGCAAGGACGTGGCGCGTACAGAGGAATGTAGTCT AGTGGAGTGCCTAAAACAATGATACAGGCTTGTCCTAGTCTTGTGGCGCG CAAGCTGTGCTGATTTTTGCGTTGCATTAAAGAATGTGTCACAGGGATAT CTTGAGCCACCTCGCCTCCGCAGACATCGAGTACGATACACACGCGACAC AGGCCAGTGCGCTATCCCCCGTTCAACTCTGGAGCCAGGCTTTTTCAAGC GCACCATCTACTTCGAATGCACCGGGGAATGAGGCTGTTTTACTCGGAAA CCTCAACCGGCAAGACCACTGTTGGAACCAAGACCCGCACCTACATTCGA AATGAACGAAATATCCTCAATGGTGTATTCATGTTGGAATCGCCTGGCAC AGGCACTGATCCATCACGAGGTTTGTGTTTTTCATTTTTTCATTTCTTCA GGAGCCTTGTCCTCGCAGTTGCTAGGCTCCGGGAGACTTGCAGCCAGGAT TTGCCAAGCAACCGTCGAAGCCCAAGAGCTCTGCCCATGCTTGCTCTGTC CCGGTTTGTTGGCGTCTCATTTTCCTGCTTGTCGTCGTCCACGCCCAGCC GTGCAGCACCACGATGGACTTCAACATCGCAGCGGCCTTCTGGTTCGCGG CCCGAGGGACGGGTTGGCTATACCAGCCCCCCGCCCCCGCGCCTCGGGAG ACTCCGCCATTCCCCGCGTCCGCCTGCTCCCCCACCCGAGATCGACGAGA TCTTGTTGACGGAACCGTCACAGCAGGGATCAGCATCACGTTGCACGGAT CGGCAGATTACGATGACTCGGAAGAATGGGAGGCCGTCCCCAGTGGCCCG AGCGCCTCGGCGTCGACTGTCGTCGATGTTCCGCGGGCAAGTCACGGCGC TCTTACGGCTCCGGCGGGGGGTGTAGTGGTGGCGGCGGTGGCGGAGGCGG CGCCCTTTCTGCACCCGGCCGCGTCGGCCGTGACCACGGCAGCAGCGGTT GGGGTGTCATCGGGCGAGAGTGGTGCCCCCGCTTTGGGCGTGCCAGGGGG TGCAGGAGACCTACTTGCGGTGAGCCCGATTTCTCCTGTGAGTAGTGCGT CGGCTCCTAAAGACGCTCCTAGGAATGGTACTGCTGCTGCCGCTGCTGCC TCAAGCGCCACGAGTGGAAGCAGAAACGGAAAGGTAGTAGCCAAGGTGAA CAAGAACTCGGACGAGCTGTGCCCGGTCGACGGATGCCGGCGACTCCTCA AGCCGGGCTGCGTCTTCGGCACGTGCAGCCGGTGCTGCCTTAAGGCTCAA GGGATTCTCGATGCCGCCGCTGCCGCCGGCGTCGCCGCCACTATTGGTGC ATCGGCGTCGGTTCGTAAGGGTGGCCTGCAACCAGAATCAGAGGCTGACC GGGAGGGGATAGCGTCGGTAACGGCGCAAGAAGTGCAGGATGCGGCGACG GCGCCGACCGCGAGAGAGAGGCAACAGCGCGAGTGCAAGGCCCGAGCGCA GGCGGCGGCGCTGCGCGCGCTAGAGGCCCATCTGCTCGACCACTTCGAAG CCGACCTGTCCCCGCCATTTCGAGCCGAGGCGCTGGCCGCGCTGCTGCTG TGGCTGCCGCCGCCGCCGCAGGCACCGCCACGCCCGCAGCAGACGCAATC GGTGCTGCCTCTCCGACGAAAAGCCGCCGACGGCGTGCCCGCAACTGAGC GAGACGGGTGTCGCCGCTCACTTCTTGCTAATGCAAGCCCCGGCGCCCGA CAGACGCCGACGGAGTGTTGCCCCATCCACAAGAGGCCCCGGAAGCGGGA GCAGGGTGGGAGCACCGGCGGGGTTGGCTGCGGTGGCGGGGAGGCGGGCG TATCGCCCAACGGGACGGGACCAGAGGCCGGTGACGAGAACAGGGCGGCA GGGCGACGGCCCGCCGCTTCGGAAGGCGTTTTTACCTCTGCGGCAAGGGT GCTGCTGGTGCGAAACCGTTGCCGCCGGACCGAAAAAGTCATAACTTCGA GGCCCGTGGACAGCACAGTGTCGAGCCCTGAGGGGTATGGTGATCGGGCC CTCTGCGGCAGAAATACCAGTAGAGTTGCGGGGGTGATCGCAGGGGAAAC GGGATGATGCACGCCCTCGCCCCCCGAAAACGGCGCAGAAAGGTTGGACA CCGACACATGATGCTGCTGCTGTAACTGAATCAGATTCGCCCTTCCTCTA TTCCCGATCTTGTGGTATGTTTTGGATCGATGAAGCGCGGCGCGAGCCGA CTTAGCCATGCTTTGGCTATGATCATGGTGACCGAATGATGAGCAGTAGG TTAAGGTGCGCTACGTGTTGATATCCCGCCCTTGCCTGAGGATGCGAGTT TTTGCTTGTGTCGAACTCTGCGGTGAAACTGCCGTGAGATGACTTTTCCC CCCCCCCTTCTCCCGCCGCTTGCTTTCCCAATATCTCCCGTGAAATTGTT CCGTCGCAATACCCCCCGCCTTACGCTTGCGCCTCTATTTGGGGTTTCGT TCGCTCCGCCTCTGCCTAACTTTTGTTGTTAGGTGGGCATAGGCGCCGAT GAGTTCATGGGCGGGTACAGCCGTCATCGGAACGCCTTCAACAGAGGAGG TAAGAGCTATATCATCCTCGACAATTGGATGCACGAAAAAAGTGTTTTCA GGTCAAATACTGCATCTCTGGCTCCAGGATATTCCTTCAGCAGGCGAACC TTGAAACGATTTGTTATGATGGCCACAGAGGGCGTATGCATGGCATCTTT GGCACCTGCGTACACCTGACGGGGGGTGGAGTACGTGCGAGGGAAAGGGT AGGATTATCGTAAAGGAAGCTACGCGCGGTTGGGGCGGGCTTTCGTTGTG ATTCCTTCGAGCAGGGTTGCTTTCGGAGTGTCTCGCTCGAGTAATAATGC TTGCTTTCGTGGGCCTTCGCTACAAAGCTTTCTTGACGTGACGCCGACCT CGGGGCGAAGATGAAGGGCCATCTTGGCGGAGAGTGCCCGAATCTGTAGT CGTCGGCTCATACCCGCTGCTAGAGTCAGTGCAACTCGAGCGTTCGCCAT TGTCGCCCCGGCGTCTTAGGTGGTTGTGTTGTTTCATTGTCGCGGTCGCC CTGTGCTGTTTGTGGTCGGTTGCTGAGGCCCTGATTGTTGCTGCTGCTGT TGCTGCTGCTGTTAATGCTGCTGCTGCTGTTGCTGCTACGAAGCTGTGTT TTTGTTATGAGCCTTCACAGTGACAAGGAGTAGCCCGGTCCAGAGCGATT TAGTCCACGTTAGGTCGCTCTGGGCCCTCGAGAGCTCGACGCAAACGCTT GTCGCACTCCGTCCTGAATCGCTCCTTCTCGTGACGCCCCGCCCTGCCCC GCCCTGCCCCGCCCGAATCAGGGGATGATTCTCTCGCAGAAGAGCTCGCG CAGGACCAAGCCAGGCTCTGGACGCGGAACTTGGGGAGGGACGACCGGTC GATAGCGGACCACGGCAGGGAGGCGAGGTTTCCCTTCCTGGACGAAGGGG TCATTGACTACATCAGGTAGACGCTTTAGACGAGCGTGTTTGCAGCTAGA TCAGGTAGATATTCCGTTTCGGTTTCTTTCGACGAACGAGCCTCGCCGTC GGAGTTCATCAACGGCTACGTCCCATTTGGTCCAAGGCGGTGTCTGTTGC AGGTCGGTGGTTCGCATCACCTTCAGAAACTGGTTTCTACACATGGTGAG ATATAACCGTACACGCCCGAGATACTAATGATCCTCTGTTGAGCGAAATA CGCACGGAATCGAAGCGTGCGGACCATTCCGCGACTGCATCTTGCGCGCC ACCCGGGTACACCAAGCGCAGGATAACTCCTTGCCAGTTTTCGCTTTCCA CAGAAGGCGGAGGTAGCTCTCTTTTCGTGGCGCACCCTTGTTACACCTGC CGTTTTTATTTTTGCTCTTGCTATTGCTATCACTGCTGTTTTCGTTGTCC TGATTTAACCGGTCGTCGGTGTGACAAGTAAGCGGGACGAACACGTGGCT TCAGACAAAACTTTGCGCAGAACGGTTTTCTCCGGCGGTGAACGAACGAA GGAGCGAACCAACCAACCGGCCGACCAACCGAACACCCAGGTCGCTGCCC TTGCGAGACGTCTGCGACATGGACGATCCGCCGGGGGTCGGCGACAAGAA GATTCTGAGGGAGGTGAGCAAGAGCCAGCGGCAGCGATGCGAAACCAGCC GCCCGCGTGTTGTTGCGGTCCCACTCTTCTTACCGTCGAGACGAGTTGGT GGCGTCTCGTCGATCTCTCGGCCCCTCGCTTTTTGGTTGACCACGTGATT CATGAAACAAGCGAGTTTGGACGGTAGGGTTGAACGGACGTGGTATCCAG GCGTGCGTGCGGTTAGCTATGTCCCGTGCGTCATCAGCTTCCTGTGGCGC ATTTATGCATTGTTGCGCGGTTGGCCCGTGAAGTCGTGTGATTGAGAGAC AGGAGGACGCGCACATTGAGTGTGAACAGCAGCAAGCAAACACGACGGTG ACGGCAACGATGGCGACAGCACCAGGGAGATGGATCCATCGATCTGCAGC TTCCTGCCAAAGTTGCCAATTGCACATATCGCAGGTACCGCGCGAAGCGC TTGTCGATCGACGACAGACACTTTGGTCATCGGCAACGTAAACTGTGCGA CAAGAAGGTTGAGACATTTGCGTGCTCAAACATGTTTCTGGTAGCCATCG GCGAGCAGCGGAAGAACGAGAATGCCGGCTCGGCGCCTGGAGGTACTCAT CCCATCGACCGCGTATGTACCTTTATTTCTCCCGGGACTGTAGGTAGCAT CGCACCTCGGGCTTGACGGCTGCAGGAGCCTCCCGAAACGCGCCATCCAG TTCGGCAGCCGCATCGCTCAGCACTGCGCGCGACACACGCACGGGAGCCA CCGGCGGGGCAGCGGCTCCGCCCCGGCCGCATCCCCGCTGTAGGAGGGAG AACCCTTGGCGGCAGCGCAAAACGTGTTCCTGCGGTAGATAGGTCAACCG AGTTGTAGCCACCGTTTGTTCGAGTTTTGTGCATAACCACGCAAACTCTC CAGTGACACTCTAAGGGCGTGGCTTGTGATGGGACGACCGACACTTCCTG CCACCAAGGTATCATCAGCGCACCTTTCGAGGTCAACGCAAAAAAAATAC TGCCAACCTTGCTTTGTTGAAAAGTTTCTTGATACAGTAACTTGTGATTT GATAGCGGAATCCGCGGTTGTCTCCCGCCGTGGAATTATTTCACTTGCAA CCGGAGCTGAAACCTGTTTGTCGAGGATTGAGAAATTCATTGCTTTGGGA ATACAACCTTGACAAGGGAGGCGTATCCTGTCCAGCCGTCGAGGACGGAA CAGCGCTCTTGCCCTCTTTTCCACAATGTCAACC
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Coding sequence (CDS) from alignment at P-fluviatile_contig1:1942205..1954738+

>mRNA_P-fluviatile_contig1.147.1 ID=mRNA_P-fluviatile_contig1.147.1|Name=mRNA_P-fluviatile_contig1.147.1|organism=Porterinema fluviatile SAG_2381|type=CDS|length=7482bp|location=Sequence derived from alignment at P-fluviatile_contig1:1942205..1954738+ (Porterinema fluviatile SAG_2381)
ATGTGCGGCATCGGTTTCTTATTAGGGGCGTGCCAAGCCAACCAGTCGGA
GCTGAGATGCTGCATACGCTCTCTTCGAAGGCGAGGCCCTGACGCTGGCA
GGCATATTACTGTCGACCTTCAGATGTGCGGCATCGGTTTCTTATTAGGG
GCGTGCCAAGCCAACCAGTCGGAGCTGAGATGCTGCATACGCTCTCTTCG
AAGGCGAGGCCCTGACGCTGGCAGGCATATTACTGTCGACCTTCAGGGAG
GCCGAACGTTGCACCTGATGGCGGCGGTTCTCCACTTGCGCGGCGATGAG
TTGTTCAAACAGCCCGCAGAGGACGTTCACGGCAACGTCCTGCTTTGGAA
CGGCGAGGGAGGCCGAACGTTGCACCTGATGGCGGCGGTTCTCCACTTGC
GCGGCGATGAGTTGTTCAAACAGCCCGCAGAGGACGTTCACGGCAACGTC
CTGCTTTGGAACGGCGAGGTGTTCGACGGCCTCGACGTCGGGCCTTCTGG
GTCCGACACGGCCGCGATCCTTCATGCGCTTTCCCTGTCGCGCAGCCATC
AAGAGGTGTTCGACGGCCTCGACGTCGGGCCTTCTGGGTCCGACACGGCC
GCGATCCTTCATGCGCTTTCCCTGTCGCGCAGCCATCAAGAGGTGGTTGC
TGCGCTCGGCCGCATCTCCGGCCCCTTCTCCCTGGTGTACTGGTGCCCGG
CGAGGCAGGCGCTGTATTACGGCAGGGATCCCGTGGGTCGCCGGAGTCTC
GTCGTGCGGAGACCGAGGTGGTTGCTGCGCTCGGCCGCATCTCCGGCCCC
TTCTCCCTGGTGTACTGGTGCCCGGCGAGGCAGGCGCTGTATTACGGCAG
GGATCCCGTGGGTCGCCGGAGTCTCGTCGTGCGGAGACCGAGAGCGCCGG
AAGAGTTCATGGCCGTCCTTTCTTGCTTGCCGGAGACGAGCGGCAGCCCC
GCCGACTCCGACGCCGACGCCGACTTCGATGCCGATGCCGACGCTAGCGC
TGGCGAGGCCCAGCCGCGACCGCAGGCGATGCCGCCACCCGACCCCGTCG
TCGGCGGCGACTGCAACCCCAGCTTGGATAGAAAAAATGACCGCGAATTG
CTACCCAACCTCCTCGGGGACACGCCCGTTAGCCCCGAGGCGGCCGGCGC
TGGCTGCCGCTCGGGAGAAGGCCGCTGGGAGGAGGTCCGCGCCGACGGTA
TCTACGTCCTCGAATTGGGCAAGGAAAGTGCCGCCGACGAGGGGGACGGG
AACGGCGGCAGCGATCACGGCGATTCGAGCACTACCACCACCGGCACCAC
CGCCGTCGCCGCCGCTTCTTTCTCGCCGGCGAAGCTTTACTCTTATCCTC
GGCGGCCGCTTCTGCGAAGCGCCGGCGCGGGCGTTGCGGAAGCGGAGGGG
GCGGAGGAAGCGAAGGGGGAGGAGGGGGAAGAGGAGGAGGCGAAGGCTCC
GGCACCAGCCGAAGCGGCCGAACGTTGCAAGTCAGGACGCCGACGTCGAG
CCGGGTGCGCGGAGGACTACGCGGCGACGGACAGGGGTCAAGCAGGTTCG
GAAGAGGGCGCAGAGAAGGAGGAGGAGGGGTGCATGAATTCTAAGGCTGG
CCGGCTTCTGGGCACCAGAGAGTGCCAAGAGGGCGGGAGCAAGCGCGCGT
CGGCGAAAGCAAGAGTCCGTTTCAACGACGGGCTCAAGATCTCGACCCAC
CACCTCTCCCCGGCGGCCAAGGGTTTACTGAACAAGCTCAGGGAGTCGGT
CCGCCGCCGCGTTCGCACCGTGCCGTACTCGGCCCTCTCGGGCAACAATG
CCTGCTGTGGGGGTAGAGCAGGACGGCGGCGCGGCCGAGACGATGGCGGG
GGTGGAGACGATGGCGGCGATGGTACGGAAAGAAGAAACGAGCCGGGCTA
TCGATTTGATATTGGACAGGAGGATGCGCGACTCGATGTAGGAGATGGAG
TAAGCAGGCTGCGGGGGGCGGGGGCTGCGAGAGCTTCGGGGGATATCGAT
GCGGGGCTCCAGGCCGCCGCCGGCGCCGAGGAGGAGCGCCGAAGCTTGCG
GGGTGGTCGCGGGCTTGTCACCGCGGTAACGCCTACCGCTGCCGTCGCGG
CTCGGGTGGGCGTCCTCTTCTCCGGGGGGCTAGACTCGGTGGTTCTGGCG
GCGATGCTGGCGGAGGAGCGGGACGGGGGAGCTTCGGCTGTTCCGAGAGG
GGAAGGCATCGACCTCATAAACGTCTGCTTCGACAGAGCGCCGGAAGAGT
TCATGGCCGTCCTTTCTTGCTTGCCGGAGACGAGCGGCAGCCCCGCCGAC
TCCGACGCCGACGCCGACTTCGATGCCGATGCCGACGCTAGCGCTGGCGA
GGCCCAGCCGCGACCGCAGGCGATGCCGCCACCCGACCCCGTCGTCGGCG
GCGACTGCAACCCCAGCTTGGATAGAAAAAATGACCGCGAATTGCTACCC
AACCTCCTCGGGGACACGCCCGTTAGCCCCGAGGCGGCCGGCGCTGGCTG
CCGCTCGGGAGAAGGCCGCTGGGAGGAGGTCCGCGCCGACGGTATCTACG
TCCTCGAATTGGGCAAGGAAAGTGCCGCCGACGAGGGGGACGGGAACGGC
GGCAGCGATCACGGCGATTCGAGCACTACCACCACCGGCACCACCGCCGT
CGCCGCCGCTTCTTTCTCGCCGGCGAAGCTTTACTCTTATCCTCGGCGGC
CGCTTCTGCGAAGCGCCGGCGCGGGCGTTGCGGAAGCGGAGGGGGCGGAG
GAAGCGAAGGGGGAGGAGGGGGAAGAGGAGGAGGCGAAGGCTCCGGCACC
AGCCGAAGCGGCCGAACGTTGCAAGTCAGGACGCCGACGTCGAGCCGGGT
GCGCGGAGGACTACGCGGCGACGGACAGGGGTCAAGCAGGTTCGGAAGAG
GGCGCAGAGAAGGAGGAGGAGGGGTGCATGAATTCTAAGGCTGGCCGGCT
TCTGGGCACCAGAGAGTGCCAAGAGGGCGGGAGCAAGCGCGCGTCGGCGA
AAGCAAGAGTCCGTTTCAACGACGGGCTCAAGATCTCGACCCACCACCTC
TCCCCGGCGGCCAAGGGTTTACTGAACAAGCTCAGGGAGTCGGTCCGCCG
CCGCGTTCGCACCGTGCCGTACTCGGCCCTCTCGGGCAACAATGCCTGCT
GTGGGGGTAGAGCAGGACGGCGGCGCGGCCGAGACGATGGCGGGGGTGGA
GACGATGGCGGCGATGGTACGGAAAGAAGAAACGAGCCGGGCTATCGATT
TGATATTGGACAGGAGGATGCGCGACTCGATGTAGGAGATGGAGTAAGCA
GGCTGCGGGGGGCGGGGGCTGCGAGAGCTTCGGGGGATATCGATGCGGGG
CTCCAGGCCGCCGCCGGCGCCGAGGAGGAGCGCCGAAGCTTGCGGGGTGG
TCGCGGGCTTGTCACCGCGGTAACGCCTACCGCTGCCGTCGCGGCTCGGG
TGGGCGTCCTCTTCTCCGGGGGGCTAGACTCGGTGGTTCTGGCGGCGATG
CTGGCGGAGGAGCGGGACGGGGGAGCTTCGGCTGTTCCGAGAGGGGAAGG
CATCGACCTCATAAACGTCTGCTTCGACAGCCCGAGCGGGCATCGCAGCC
CCGACAGGCTGGCCTCCATCGCGGCCGCCGACGAGCTGAGGTCGCTGTTC
CACTGGCATACGTGGAGGCTCGTCTGTGTGGACGCGAGCTACGACGACGT
GCTCCGTCACTCGGGGGCGATCTGGCGAGTGATGCAGCCCGAGCGGGCAT
CGCAGCCCCGACAGGCTGGCCTCCATCGCGGCCGCCGACGAGCTGAGGTC
GCTGTTCCACTGGCATACGTGGAGGCTCGTCTGTGTGGACGCGAGCTACG
ACGACGTGCTCCGTCACTCGGGGGCGATCTGGCGAGTGATGCAGCCGTGC
AGCACCACGATGGACTTCAACATCGCAGCGGCCTTCTGGTTCGCGGCCCG
AGGGACGGGTTGGCTATACCAGCCCCCCGCCCCCGCGCCTCGGGAGACTC
CGCCATTCCCCGCGTCCGCCTGCTCCCCCACCCGAGATCGACGAGATCTT
GTTGACGGAACCGTCACAGCAGGGATCAGCATCACGTTGCACGGATCGGC
AGATTACGATGACTCGGAAGAATGGGAGGCCGTCCCCAGTGGCCCGAGCG
CCTCGGCGTCGACTGTCGTCGATGTTCCGCGGGCAAGTCACGGCGCTCTT
ACGGCTCCGGCGGGGGGTGTAGTGGTGGCGGCGGTGGCGGAGGCGGCGCC
CTTTCTGCACCCGGCCGCGTCGGCCGTGACCACGGCAGCAGCGGTTGGGG
TGTCATCGGGCGAGAGTGGTGCCCCCGCTTTGGGCGTGCCAGGGGGTGCA
GGAGACCTACTTGCGGTGAGCCCGATTTCTCCTGTGAGTAGTGCGTCGGC
TCCTAAAGACGCTCCTAGGAATGGTACTGCTGCTGCCGCTGCTGCCTCAA
GCGCCACGAGTGGAAGCAGAAACGGAAAGGTAGTAGCCAAGGTGAACAAG
AACTCGGACGAGCTGTGCCCGGTCGACGGATGCCGGCGACTCCTCAAGCC
GGGCTGCGTCTTCGGCACGTGCAGCCGGTGCTGCCTTAAGGCTCAAGGGA
TTCTCGATGCCGCCGCTGCCGCCGGCGTCGCCGCCACTATTGGTGCATCG
GCGTCGGTTCGTAAGGGTGGCCTGCAACCAGAATCAGAGGCTGACCGGGA
GGGGATAGCGTCGGTAACGGCGCAAGAAGTGCAGGATGCGGCGACGGCGC
CGACCGCGAGAGAGAGGCAACAGCGCGAGTGCAAGGCCCGAGCGCAGGCG
GCGGCGCTGCGCGCGCTAGAGGCCCATCTGCTCGACCACTTCGAAGCCGA
CCTGTCCCCGCCATTTCGAGCCGAGGCGCTGGCCGCGCTGCTGCTGTGGC
TGCCGCCGCCGCCGCAGGCACCGCCACGCCCGCAGCAGACGCAATCGGTG
CTGCCTCTCCGACGAAAAGCCGCCGACGGCGTGCCCGCAACTGAGCGAGA
CGGGTGTCGCCGCTCACTTCTTGCTAATGCAAGCCCCGGCGCCCGACAGA
CGCCGACGGAGTGTTGCCCCATCCACAAGAGGCCCCGGAAGCGGGAGCAG
GGTGGGAGCACCGGCGGGGTTGGCTGCGGTGGCGGGGAGGCGGGCGTATC
GCCCAACGGGACGGGACCAGAGGCCGGTGACGAGAACAGGGCGGCAGGGC
GACGGCCCGCCGCTTCGGAAGGCGTTTTTACCTCTGCGGCAAGGGTGCTG
CTGCCGTGCAGCACCACGATGGACTTCAACATCGCAGCGGCCTTCTGGTT
CGCGGCCCGAGGGACGGGTTGGCTATACCAGCCCCCCGCCCCCGCGCCTC
GGGAGACTCCGCCATTCCCCGCGTCCGCCTGCTCCCCCACCCGAGATCGA
CGAGATCTTGTTGACGGAACCGTCACAGCAGGGATCAGCATCACGTTGCA
CGGATCGGCAGATTACGATGACTCGGAAGAATGGGAGGCCGTCCCCAGTG
GCCCGAGCGCCTCGGCGTCGACTGTCGTCGATGTTCCGCGGGCAAGTCAC
GGCGCTCTTACGGCTCCGGCGGGGGGTGTAGTGGTGGCGGCGGTGGCGGA
GGCGGCGCCCTTTCTGCACCCGGCCGCGTCGGCCGTGACCACGGCAGCAG
CGGTTGGGGTGTCATCGGGCGAGAGTGGTGCCCCCGCTTTGGGCGTGCCA
GGGGGTGCAGGAGACCTACTTGCGGTGAGCCCGATTTCTCCTGTGAGTAG
TGCGTCGGCTCCTAAAGACGCTCCTAGGAATGGTACTGCTGCTGCCGCTG
CTGCCTCAAGCGCCACGAGTGGAAGCAGAAACGGAAAGGTAGTAGCCAAG
GTGAACAAGAACTCGGACGAGCTGTGCCCGGTCGACGGATGCCGGCGACT
CCTCAAGCCGGGCTGCGTCTTCGGCACGTGCAGCCGGTGCTGCCTTAAGG
CTCAAGGGATTCTCGATGCCGCCGCTGCCGCCGGCGTCGCCGCCACTATT
GGTGCATCGGCGTCGGTTCGTAAGGGTGGCCTGCAACCAGAATCAGAGGC
TGACCGGGAGGGGATAGCGTCGGTAACGGCGCAAGAAGTGCAGGATGCGG
CGACGGCGCCGACCGCGAGAGAGAGGCAACAGCGCGAGTGCAAGGCCCGA
GCGCAGGCGGCGGCGCTGCGCGCGCTAGAGGCCCATCTGCTCGACCACTT
CGAAGCCGACCTGTCCCCGCCATTTCGAGCCGAGGCGCTGGCCGCGCTGC
TGCTGTGGCTGCCGCCGCCGCCGCAGGCACCGCCACGCCCGCAGCAGACG
CAATCGGTGCTGCCTCTCCGACGAAAAGCCGCCGACGGCGTGCCCGCAAC
TGAGCGAGACGGGTGTCGCCGCTCACTTCTTGCTAATGCAAGCCCCGGCG
CCCGACAGACGCCGACGGAGTGTTGCCCCATCCACAAGAGGCCCCGGAAG
CGGGAGCAGGGTGGGAGCACCGGCGGGGTTGGCTGCGGTGGCGGGGAGGC
GGGCGTATCGCCCAACGGGACGGGACCAGAGGCCGGTGACGAGAACAGGG
CGGCAGGGCGACGGCCCGCCGCTTCGGAAGGCGTTTTTACCTCTGCGGCA
AGGGTGCTGCTGGTGGGCATAGGCGCCGATGAGTTCATGGGCGGGTACAG
CCGTCATCGGAACGCCTTCAACAGAGGAGGTGGGCATAGGCGCCGATGAG
TTCATGGGCGGGTACAGCCGTCATCGGAACGCCTTCAACAGAGGAGGGGA
TGATTCTCTCGCAGAAGAGCTCGCGCAGGACCAAGCCAGGCTCTGGACGC
GGAACTTGGGGAGGGACGACCGGTCGATAGCGGACCACGGCAGGGAGGCG
AGGTTTCCCTTCCTGGACGAAGGGGTCATTGACTACATCAGGGGATGATT
CTCTCGCAGAAGAGCTCGCGCAGGACCAAGCCAGGCTCTGGACGCGGAAC
TTGGGGAGGGACGACCGGTCGATAGCGGACCACGGCAGGGAGGCGAGGTT
TCCCTTCCTGGACGAAGGGGTCATTGACTACATCAGGTCGCTGCCCTTGC
GAGACGTCTGCGACATGGACGATCCGCCGGGGGTCGGCGACAAGAAGATT
CTGAGGGAGGTCGCTGCCCTTGCGAGACGTCTGCGACATGGACGATCCGC
CGGGGGTCGGCGACAAGAAGATTCTGAGGGAGGTAGCATCGCACCTCGGG
CTTGACGGCTGCAGGAGCCTCCCGAAACGCGCCATCCAGTTCGGCAGCCG
CATCGCTCAGCACTGCGCGCGACACACGCACGGGAGCCACCGGCGGGGCA
GCGGCTCCGCCCCGGCCGCATCCCCGCTGTAGGTAGCATCGCACCTCGGG
CTTGACGGCTGCAGGAGCCTCCCGAAACGCGCCATCCAGTTCGGCAGCCG
CATCGCTCAGCACTGCGCGCGACACACGCACGGGAGCCACCGGCGGGGCA
GCGGCTCCGCCCCGGCCGCATCCCCGCTGTAG
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