mRNA_P-fluviatile_contig83.14834.1 (mRNA) Porterinema fluviatile SAG_2381

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

Overview
NamemRNA_P-fluviatile_contig83.14834.1
Unique NamemRNA_P-fluviatile_contig83.14834.1
TypemRNA
OrganismPorterinema fluviatile SAG_2381 (Porterinema fluviatile SAG_2381)
Homology
BLAST of mRNA_P-fluviatile_contig83.14834.1 vs. uniprot
Match: D7G7H8_ECTSI (Transmembrane 9 superfamily member n=2 Tax=Ectocarpus TaxID=2879 RepID=D7G7H8_ECTSI)

HSP 1 Score: 516 bits (1330), Expect = 1.840e-164
Identity = 262/351 (74.64%), Postives = 296/351 (84.33%), Query Frame = 3
Query:  726 LYDLKVGEAQFCRVLCAAKLTAPERYMFASVIRDGYHAHMTTAHLPAAYEPSP-GDHGALGRRLPSLPGLFPVFFVFRRGFPVGFYM-DGNSYLNNHLRMTVAINPRDEGKTKFHIVGFLVEPFSVQHDFQTPWSEFSQISTCSSTSGYMKTDPNRFLSTDYEGEILFTYDVVFDVTSMPWTQRWDIYTSGPVDNQIHWFSITNSSVIVMFLTVLVAMIMVRALRKDIQRYNQEDMEEASEETGWKLVHGDVLRPPSTAPMLFAVCVGTGVQLWTVSFMVLFFSMVRLVSPLKRGDMLTVCILIYVLTGGIAGYNAAKIHRRFRGTEWIKMTLLTSFTFPALAGSVFLVEG 1772
            LYDL+VG  Q CRVLC+  L   ERYMFASVIRDGY +HM+  HLPAAY+P P G  G L     +         V++RGFPVGF   DG ++LNNHLR TVAIN RD  +T+FHIVGFLVEP SV H+FQTP+ E + I TCS   GY   DP+R+L+ +YEGEILFTYDV +D T+MPWTQRWDIYTSG VDNQIHWFSITNSSVIVMFLTVLVAMIMVRALRKDIQRYN EDMEEA+EETGWKLVHGDVLRPP+TAPMLFAVCVGTGVQLW+VSF+VLFFS++RLVSPLKRGDMLTVC+LIYVLTGGIAGYN+AKIHRRFRGTEW+KMTLLT+F+FPALAGSVF++EG
Sbjct:   87 LYDLEVGVLQACRVLCSKTLKPQERYMFASVIRDGYQSHMSITHLPAAYDPKPDGKAGKLTETPVTTSMTDDQEHVYQRGFPVGFRAADGKAFLNNHLRFTVAINARDIEETQFHIVGFLVEPMSVVHEFQTPYHEGAFIETCSEQ-GYTTNDPSRYLNAEYEGEILFTYDVTWDYTTMPWTQRWDIYTSGAVDNQIHWFSITNSSVIVMFLTVLVAMIMVRALRKDIQRYNAEDMEEANEETGWKLVHGDVLRPPTTAPMLFAVCVGTGVQLWSVSFLVLFFSVMRLVSPLKRGDMLTVCLLIYVLTGGIAGYNSAKIHRRFRGTEWMKMTLLTAFSFPALAGSVFVLEG 436          
BLAST of mRNA_P-fluviatile_contig83.14834.1 vs. uniprot
Match: A0A835Z917_9STRA (Transmembrane 9 superfamily member n=1 Tax=Tribonema minus TaxID=303371 RepID=A0A835Z917_9STRA)

HSP 1 Score: 290 bits (743), Expect = 1.710e-81
Identity = 170/359 (47.35%), Postives = 224/359 (62.40%), Query Frame = 3
Query:  720 ELLYDLKVGEAQFCRVLCAAKLTAPERYMFASVIRDGYHAHMTTAHLPAAYEPSPGDHGALGRRLPSLPGLFPVFFVFRRGFPVGFYM---DGNSY-LNNHLRMTVAINPRDEGKTKFHIVGFLVEPFSVQHDFQTPWSEFSQISTCSS--TSGYMKTDPNRFLSTDYEGEILFTYDVVFDVTSMPWTQRWDIYTSGPVDNQIHWFSITNSSVIVMFLTVLVAMIMVRALRKDIQRYNQEDMEEASEETGWKLVHGDVLRPPSTAPMLFAVCVGTGVQLWTVSFMVLFFSMVRLVSPLKRGDMLTVCILIYVLTGGIAGYNAAKIHRRFRGTEWIKMTLLTSFTFPALAGSVFLVEGFS 1778
            E  + L V +   C  LC  +L A +   F + I + Y   M+   LPAA +            L     + P +    RG+PVGF     D   Y LNNHL++ VAIN + EG   +H+VGFLV PFS  H         +Q   C+   T G +    ++F   D    + FTYDVV+D   MPWTQRWDIY  G V +QIHWFSITNSS+IV+FLT LVAMIM+RALR DI RYN  ++EEA EE+GWKLVHGDV RPP T P LFAV +GTGVQL  ++F+VLFF+M+ LVSP +RG++LT  +L++VL G  AGY+AA+IH+ FRGT W+K+TLL +  +PA+  ++F +  F+
Sbjct:   65 ESAFKLNVNQQTTCAQLCERELNAKDIKRFQTAINEEYQVQMSVDGLPAARK----------EELVETADMAPYY---SRGYPVGFITNDDDKKHYNLNNHLQILVAIN-KVEGDA-YHVVGFLVVPFSFNHK--------AQPGVCNEGITGGLLA---SQFQRIDEPTTVRFTYDVVWDEADMPWTQRWDIYMHG-VGDQIHWFSITNSSLIVLFLTALVAMIMLRALRSDIARYNAAELEEAKEESGWKLVHGDVFRPPHTLPTLFAVFIGTGVQLAVMTFLVLFFAMLGLVSPAQRGNILTCIMLLFVLMGAFAGYHAARIHKMFRGTSWLKVTLLAATLYPAVCFAIFFLINFA 396          
BLAST of mRNA_P-fluviatile_contig83.14834.1 vs. uniprot
Match: F0Y3U4_AURAN (Transmembrane 9 superfamily member n=1 Tax=Aureococcus anophagefferens TaxID=44056 RepID=F0Y3U4_AURAN)

HSP 1 Score: 265 bits (678), Expect = 2.210e-72
Identity = 151/378 (39.95%), Postives = 224/378 (59.26%), Query Frame = 3
Query:  726 LYDLKVGEAQFCRVLCAAKLTAPERYMFASVIRDGYHAHMTTAHLPAAYEPSPGDHGALGRRLPSLPGLFPVFFVFRRGFPVGFYMDGNS-----YLNNHLRMTVAINPRDEG-----KTKFHIVGFLVEPFSVQHDFQTPWSEFS----QISTCSSTSGYMKTDPNRFLSTDYEGEILFTYDVVFDVTSMPWTQRWDIYTSGPVDNQIHWFSITNSSVIVMFLTVLVAMIMVRALRKDIQRYNQEDM-EEASEETGWKLVHGDVLRPPSTAPMLFAVCVGTGVQLWTVSFMVLFFSMVRLVSPLKRGDMLTVCILIYVLTGGIAGYNAAKIHRRFRGTEWIKMTLLTSFTFPALAGSVFLVEGFS-----SGSSVPL 1799
            LY L V   Q C+++C   +T      FAS I D Y  H    +LPA+            +  PS P     + V  RGFPVGF + G++     YL NH+++ VA++   E      + +  +VGF VEP+S+ H +    ++FS    +++TCS+T      DP+ +   D  GE++FTYDV ++ ++ PW  RWD++  G  D++IHWFSITNS++IV+FLTV+VAMI+VR L +DI +YN   + +EA EE+GWKLVH DV RPP  +PMLF+VC+GTGVQL  +    L F++   +SP  RG ++T  +++YV  G   GY A+++++ F+G++W+  TLLT+  FP      FLV   S     S  +VPL
Sbjct:   85 LYKLSVLRQQPCKIVCRKSITKAGARQFASAIDDDYRVHWIVDNLPASTL-------LTNKAAPSQP-----YHV--RGFPVGFKLAGSAGKAEHYLFNHVKIIVAVHRAGESAGGGDEERVRVVGFRVEPYSIAHGYDKD-AKFSTKDTELTTCSATRPATN-DPSNYQRVDGAGEVVFTYDVEWEDSATPWANRWDVFLQGNPDDKIHWFSITNSTMIVVFLTVMVAMILVRTLSQDIAQYNDTALLDEAKEESGWKLVHADVFRPPRVSPMLFSVCIGTGVQLALMVLFTLTFALFGFLSPANRGSLITALLMLYVFMGSAGGYAASRVYKTFKGSDWMTNTLLTALAFPGFVFGAFLVIDMSLLAVGSSGAVPL 446          
BLAST of mRNA_P-fluviatile_contig83.14834.1 vs. uniprot
Match: A0A7S2WV93_9STRA (Transmembrane 9 superfamily member n=1 Tax=Rhizochromulina marina TaxID=1034831 RepID=A0A7S2WV93_9STRA)

HSP 1 Score: 260 bits (665), Expect = 1.360e-70
Identity = 146/361 (40.44%), Postives = 211/361 (58.45%), Query Frame = 3
Query:  729 YDLKVGEAQFCRVLCAAKLTAPERYMFASVIRDGYHAHMTTAHLPAAYEPSPGDHGALGRRLPSLPGLFPVFFVFRRGFPVGF----YMDGNS--YLNNHLRMTVAINPR---DEGKTKFH---IVGFLVEPFSVQHDFQTPWSEFSQISTCSSTSGYMK---TDPNRFLSTDYEGEILFTYDVVFDVTSMPWTQRWDIYTSGPVDNQIHWFSITNSSVIVMFLTVLVAMIMVRALRKDIQRYNQED-MEEASEETGWKLVHGDVLRPPSTAPMLFAVCVGTGVQLWTVSFMVLFFSMVRLVSPLKRGDMLTVCILIYVLTGGIAGYNAAKIHRRFRGTEWIKMTLLTSFTFPALAGSVFL 1763
            Y L++   Q C ++C   LT  +  +FA  I   Y  H    +LPA+          +    P  P        F RGFPVGF    Y  G    +L NH+R+ ++ N     D  K KF    IVGF VEPFS+ H +      FS+  T  ST   MK    DP+ + + D   E++FTYD+ ++ +  PW  RWD+Y  G  D++IHWFSITNS++IV+FLTV+VAMI++R L  DI  YN    +E+A EE+GWKLVH DV RPP+T+PMLF+V +G+GVQL  ++   LFF+++  +SP  RG +LT  +L+YV     AGY+A+++++ FRG +W++ T+ T+  FP L   +F+
Sbjct:   91 YKLEMKVPQACEIVCKKTLTKQQSRLFAHAIDQEYRVHWIVDNLPASTV-------VVNEAAPDEP-------YFTRGFPVGFKARDYETGKEMHFLYNHIRIIISFNEDHNPDAAKRKFQGSRIVGFRVEPFSIAHSWDDALP-FSKHDTLLSTCNEMKEAVNDPSNYQNVDRATEVVFTYDIAWEESDTPWANRWDVYLRGSPDDKIHWFSITNSTMIVVFLTVMVAMILIRTLNSDIANYNDPAAIEDAKEESGWKLVHADVFRPPATSPMLFSVVIGSGVQLLMMAIATLFFALMGFLSPANRGSLLTALLLLYVFMSSFAGYHASRVYKFFRGEDWMRNTVATALLFPGLLAFIFV 436          
BLAST of mRNA_P-fluviatile_contig83.14834.1 vs. uniprot
Match: A0A8J2WZ90_9STRA (Transmembrane 9 superfamily member n=1 Tax=Pelagomonas calceolata TaxID=35677 RepID=A0A8J2WZ90_9STRA)

HSP 1 Score: 256 bits (654), Expect = 2.870e-69
Identity = 151/377 (40.05%), Postives = 227/377 (60.21%), Query Frame = 3
Query:  726 LYDLKVGEAQFCRVLCAAKLTAPERYMFASVIRDGYHAHMTTAHLPAAYEPSPGDHGALGRRL-PSLPGLFPVFFVFRRGFPVGFYMDGNS-----YLNNHLRMTVAINPRDEGKT----KFHIVGFLVEPFSVQH--DFQTPWS-EFSQISTCSSTSGYMKTDPNRFLSTDYEGEILFTYDVVFDVTSMPWTQRWDIYTSGPVDNQIHWFSITNSSVIVMFLTVLVAMIMVRALRKDIQRYNQEDM-EEASEETGWKLVHGDVLRPPSTAPMLFAVCVGTGVQLWTVSFMVLFFSMVRLVSPLKRGDMLTVCILIYVLTGGIAGYNAAKIHRRFRGTEWIKMTLLTSFTFPALAGSVFLVEGFS-----SGSSVPL 1799
            LY L V + Q C+++C  K+T      FA  I D Y  H    +LPA+          L  ++ P+ P     + V  RGFPVGF  +  S     +L NH+++ V+++   E  T    +  +VGF VEP+S++H  D   P+S + +Q++TCS+     + DP  +   D   E++FTYDV ++ ++ PW  RWD++  G  D++IHWFSITNS++IV+FLTV+VAMI+VR L +DI  YN   + +EA EE+GWKLVH DV RPPS +PMLF+VC+G+GVQL  +  + L F++   +SP  RG ++T  +++YV  GG  G+ AA++++ FRGT+W+  TLLT+   P    + FLV   S     S  +VP+
Sbjct:   79 LYKLSVLKNQPCKIVCRKKVTKIGAKRFARAIDDDYRVHWIVDNLPAST--------LLTNKVDPTRP-----YHV--RGFPVGFRQEDESGKTQHFLFNHVKIVVSVHRAVERSTEEDERVRVVGFRVEPYSIKHVYDENIPFSTKETQLNTCSAQRP-ARNDPTNYQRIDGSTEVVFTYDVEWEDSATPWAHRWDVFLQGNPDDKIHWFSITNSTMIVVFLTVMVAMILVRTLSQDIAHYNDAALLDEAKEESGWKLVHADVFRPPSFSPMLFSVCIGSGVQLGCMVLLTLTFALFGFLSPANRGSLITALLMLYVFAGGAGGHAAARLYKSFRGTDWMLNTLLTATLVPGFTFACFLVIDISLLSVGSSGAVPV 439          
BLAST of mRNA_P-fluviatile_contig83.14834.1 vs. uniprot
Match: UPI000511A215 (transmembrane 9 superfamily member 10 n=1 Tax=Pyrus x bretschneideri TaxID=225117 RepID=UPI000511A215)

HSP 1 Score: 250 bits (639), Expect = 2.920e-67
Identity = 149/371 (40.16%), Postives = 211/371 (56.87%), Query Frame = 3
Query:  729 YDLKVGEAQFCRVLCAAKLTAPERYMFASVIRDGYHAHMTTAHLPAAYE-PSPGDHGALGRRLPSLPGLFPVFFVFRRGFPVGFY------MDGNSYLNNHLRMTVAINPRDEGKTKFHIVGFLVEPFSVQHDFQTPWSEFSQISTCSSTSGYMKTDPNRFLSTDYEGEILFTYDVVFDVTSMPWTQRWDIYTSGPVDNQIHWFSITNSSVIVMFLTVLVAMIMVRALRKDIQRYNQ-EDMEEASEETGWKLVHGDVLRPPSTAPMLFAVCVGTGVQLWTVSFMVLFFSMVRLVSPLKRGDMLTVCILIYVLTGGIAGYNAAKIHRRFRGTEWIKMTLLTSFTFPALAGSVF-----LVEGFSSGSSVPLG 1802
            Y+ K+ E Q C VLC   L A     F   I D Y  +M   +LP     PSP    AL               V++ GF VG         D   ++NNHL  TV  + +D+      IVGF V+PFSV+H+++  WS+  +++TC   +    T        + + EI+FTYDV F  + + W  RWD Y     D+QIHWFSI NS +IV+FL+ +VAMIM+R L +DI +YNQ E  EEA EETGWKLVHGDV RPP  + +L  V VGTGVQ + +  + + F+++  +SP  RG ++T  +L++V  G  AGY+AA++++ F+GTEW K++L T+F FPA   ++F     L+ G  S  +VP G
Sbjct:   91 YEFKMREPQMCNVLCRVVLNAKTAKEFKEKIDDEYRVNMILDNLPLVVPIPSPDQENAL---------------VYQHGFHVGLRGQYAGNKDEKHFINNHLTFTVKYH-KDQMTESARIVGFEVKPFSVKHEYEGEWSKEKRLTTCDPHAKRTVTSSESPQEVEDKKEIIFTYDVEFQESDVKWASRWDTYLLV-ADDQIHWFSIVNSLMIVLFLSGMVAMIMLRTLYRDISKYNQLETQEEAQEETGWKLVHGDVFRPPVNSDLL-CVYVGTGVQFFGMILVTMLFAVLGFLSPSNRGGLMTAMLLLWVFMGLFAGYSAARLYKMFKGTEWKKISLKTAFVFPATLFAIFFVLNALIWGEKSSGAVPFG 443          
BLAST of mRNA_P-fluviatile_contig83.14834.1 vs. uniprot
Match: M5VWG0_PRUPE (Transmembrane 9 superfamily member n=11 Tax=Rosaceae TaxID=3745 RepID=M5VWG0_PRUPE)

HSP 1 Score: 249 bits (637), Expect = 5.360e-67
Identity = 148/371 (39.89%), Postives = 212/371 (57.14%), Query Frame = 3
Query:  729 YDLKVGEAQFCRVLCAAKLTAPERYMFASVIRDGYHAHMTTAHLPAAYE-PSPGDHGALGRRLPSLPGLFPVFFVFRRGFPVGFY------MDGNSYLNNHLRMTVAINPRDEGKTKFHIVGFLVEPFSVQHDFQTPWSEFSQISTCSSTSGYMKTDPNRFLSTDYEGEILFTYDVVFDVTSMPWTQRWDIYTSGPVDNQIHWFSITNSSVIVMFLTVLVAMIMVRALRKDIQRYNQ-EDMEEASEETGWKLVHGDVLRPPSTAPMLFAVCVGTGVQLWTVSFMVLFFSMVRLVSPLKRGDMLTVCILIYVLTGGIAGYNAAKIHRRFRGTEWIKMTLLTSFTFPALAGSVF-----LVEGFSSGSSVPLG 1802
            Y+ K+ E Q C V+C   L A     F   I D Y  +M   +LP     P P    +L               V++ GF VG         D   ++NNHL  TV  + +D       IVGF V+PFSV+H+++  WS+ ++++TC   +    T        + + EI+FTYDV F  + + W  RWD Y     D+QIHWFSI NS +IV+FL+ +VAMIM+R L +DI +YNQ E  EEA EETGWKLVHGDV RPPS + +L  V VGTGVQ + +  + + F+++  +SP  RG ++TV +L++V  G  AGY++A++++ F+GTEW K+TL T+F FPA   ++F     L+ G  S  +VP G
Sbjct:   91 YEFKMREPQMCNVVCHVTLNAKTAKEFKEKIDDEYRVNMILDNLPLVVPVPRPDQENSL---------------VYQHGFHVGLRGQYAGNKDEKHFINNHLTFTVKYH-KDPMTESARIVGFEVKPFSVKHEYEGEWSKKTRLTTCDPHAKRTVTSSESPQEVEDKKEIIFTYDVEFQESDVKWASRWDTYLLM-ADDQIHWFSIVNSLMIVLFLSGMVAMIMLRTLYRDISKYNQLETQEEAQEETGWKLVHGDVFRPPSNSDLL-CVYVGTGVQFFGMILVTMLFAVLGFLSPSNRGGLMTVMLLLWVFMGLFAGYSSARLYKMFKGTEWKKITLKTAFMFPATVFAIFFVLNALIWGEKSSGAVPFG 443          
BLAST of mRNA_P-fluviatile_contig83.14834.1 vs. uniprot
Match: A0A218WL93_PUNGR (Transmembrane 9 superfamily member n=2 Tax=Punica granatum TaxID=22663 RepID=A0A218WL93_PUNGR)

HSP 1 Score: 249 bits (637), Expect = 5.470e-67
Identity = 146/370 (39.46%), Postives = 215/370 (58.11%), Query Frame = 3
Query:  729 YDLKVGEAQFCRVLCAAKLTAPERYMFASVIRDGYHAHMTTAHLPAAYEPSPGDHGALGRRLPSLPGLFPVFFVFRRGFPVGFY------MDGNSYLNNHLRMTVAINPRDEGKTKFHIVGFLVEPFSVQHDFQTPWSEFSQISTCSSTSGYMKTDPNRFLSTDYEGEILFTYDVVFDVTSMPWTQRWDIYTSGPVDNQIHWFSITNSSVIVMFLTVLVAMIMVRALRKDIQRYNQ-EDMEEASEETGWKLVHGDVLRPPSTAPMLFAVCVGTGVQLWTVSFMVLFFSMVRLVSPLKRGDMLTVCILIYVLTGGIAGYNAAKIHRRFRGTEWIKMTLLTSFTFPALAGSVF-----LVEGFSSGSSVPLG 1802
            Y  K+ E Q C ++C   L A     F   I D Y  +M   +LP     +  D G                 V++ GFP+GF        +   ++ NHL  TV  + RD       IVGF V+PFSV+H ++  W+E ++++TC   +    T+       + + EI+FTYDV F  + + W  RWD Y     D+QIHWFSI NS +IV+FL+ +VAMIM+R L +DI +YNQ E  EEA EETGWKLVHGDV RPP+ + +L  V VGTGVQ + ++ +++ F+++  +SP  RG ++T  +L++V  G +AGY++A++++ F+GTEW K+TL T+FTFPA A ++F     L+ G  S  +VP G
Sbjct:   92 YVFKMREPQMCNIVCRKTLNAKTAKDFKEKIDDEYRVNMILDNLPLVLPVARPDQG--------------THTVYQHGFPIGFKGQYSASKEEKHFIYNHLVFTVKFH-RDTVTEAARIVGFEVKPFSVKHTYEGDWNEKTRLTTCDPHAKRTVTNSETPQEVEDKKEIIFTYDVDFQESDVKWASRWDTYLLM-ADDQIHWFSIVNSLMIVLFLSGMVAMIMLRTLYRDISKYNQLETQEEAQEETGWKLVHGDVFRPPAYSDLL-CVYVGTGVQFFGMTLVMMVFAVLGFLSPSNRGALMTAMLLLWVFMGILAGYSSARLYKMFKGTEWKKITLKTAFTFPATAFAIFFVLNALIWGEKSSGAVPFG 444          
BLAST of mRNA_P-fluviatile_contig83.14834.1 vs. uniprot
Match: A0A7S4JDQ3_9EUKA (Transmembrane 9 superfamily member n=2 Tax=Prymnesium polylepis TaxID=72548 RepID=A0A7S4JDQ3_9EUKA)

HSP 1 Score: 248 bits (634), Expect = 1.280e-66
Identity = 149/371 (40.16%), Postives = 216/371 (58.22%), Query Frame = 3
Query:  729 YDLKVGEAQFCRVLCAAKLTAPERYMFASVIRDGYHAHMTTAHLPAAYEPSPGDHGALGRRLPSLPGLFPVFFVFRRGFPVGFY--------MDGNSYLNNHLRMTVAINPRDEGKTKFHIVGFLVEPFSVQHDFQTPWSEF-SQISTCSSTSGYMKTDPNRFLSTDYEGEILFTYDVVFDVTSMPWTQRWDIYTSGPVDNQIHWFSITNSSVIVMFLTVLVAMIMVRALRKDIQRYNQEDM-EEASEETGWKLVHGDVLRPPSTAPMLFAVCVGTGVQLWTVSFMVLFFSMVRLVSPLKRGDMLTVCILIYVLTGGIAGYNAAKIHRRFRGTEWIKMTLLTSFTFPALAGSVFL-----VEGFSSGSSVP 1796
            YDLK+G  + C++LC  +LT+PE   F + I + Y  H    +LP+A +        +    P+ P       ++  GFP+GF          +G SYLNNHL +TV  + +DE      IVGF VEP S++H +   W    + + TC  T+G         LS D  GE++FTYDV ++ + + W  RWD Y     D QIHWFSI NS +IV+FL+ +VAMIM+R L +D  RYN  ++ ++  EETGWKLVHGDV RPP  A M+ +V VGTGVQL  ++ + + F+++  +SP  RG MLTV +L++VL G +AGY +A  ++ F+G  W  +TLLT+F +P +   +F      V G +S  +VP
Sbjct:   89 YDLKMGVEETCKILCRKELTSPEIKEFTTRIEEDYRIHWVMDNLPSATK-------YVDETNPNKPVT-----IYDLGFPLGFRGTADIPGTKEGVSYLNNHLLITVKYH-KDETFEGSRIVGFEVEPSSIKHVYSGAWKGAETTLGTCGGTAGTATP-----LSMDTPGEVVFTYDVKWEYSEIKWASRWDTYLLMG-DEQIHWFSIINSLMIVLFLSGMVAMIMMRTLHRDFNRYNAAEVSDDVEEETGWKLVHGDVFRPPK-AGMMLSVLVGTGVQLIAMAVITMIFAVLGFLSPANRGSMLTVSMLLFVLMGSVAGYTSAVTYKAFKGVHWKALTLLTAFLYPGITFGIFFFLNFFVWGKASSGAVP 439          
BLAST of mRNA_P-fluviatile_contig83.14834.1 vs. uniprot
Match: A0A7S4BHG5_CHRCT (Transmembrane 9 superfamily member n=1 Tax=Chrysotila carterae TaxID=13221 RepID=A0A7S4BHG5_CHRCT)

HSP 1 Score: 235 bits (600), Expect = 1.560e-66
Identity = 111/207 (53.62%), Postives = 155/207 (74.88%), Query Frame = 2
Query: 1781 WIIGSTGAVPFRILILLGAMFLFVQTPLVFLGSYYGFKKEQPPQVVRTNQIPRMIPQTPWYVDPKVAVPFAGVLPFGAVLVELVFVMTAIWEQQLYYIFGFLMSVMLILTVTCAEISIVMCYFQLCSEDYRWWWRSLLWSGSCAGWMFIYSVGYYFTVLNMSGWMAASLFFGYTFVNTVFFFLLTGTVGYFSCQWFINVIYSSIKVD 2401
            W   S+GAVPF  L  L  ++  +  PLVFLG+Y+G++++     VR NQIPR +P+  WY+ P  +V   GVLPFGAV +EL F++++IW  Q YY+FGFL+ V +IL +TCAEI++VMCYFQLC+EDY WWWR+ L SGS AG+MF YSV Y+FT L ++ +++A L+FGY F+ T+ FFLLTGT+G+++C WF+  I+S+IKVD
Sbjct:   49 WGEKSSGAVPFGTLCALLVLWFGISMPLVFLGAYFGYRRKPLDLPVRVNQIPRQVPEQVWYMQPAFSVTVGGVLPFGAVFIELFFILSSIWLHQFYYVFGFLLLVFIILIITCAEITMVMCYFQLCAEDYHWWWRAFLTSGSSAGYMFAYSVFYFFTKLEITKFVSALLYFGYMFIATIVFFLLTGTIGFYACYWFVWKIFSAIKVD 255          
The following BLAST results are available for this feature:
BLAST of mRNA_P-fluviatile_contig83.14834.1 vs. uniprot
Analysis Date: 2022-09-19 (Diamond blastx: OGS1.0 vs UniRef90)
Total hits: 25
Match NameE-valueIdentityDescription
D7G7H8_ECTSI1.840e-16474.64Transmembrane 9 superfamily member n=2 Tax=Ectocar... [more]
A0A835Z917_9STRA1.710e-8147.35Transmembrane 9 superfamily member n=1 Tax=Tribone... [more]
F0Y3U4_AURAN2.210e-7239.95Transmembrane 9 superfamily member n=1 Tax=Aureoco... [more]
A0A7S2WV93_9STRA1.360e-7040.44Transmembrane 9 superfamily member n=1 Tax=Rhizoch... [more]
A0A8J2WZ90_9STRA2.870e-6940.05Transmembrane 9 superfamily member n=1 Tax=Pelagom... [more]
UPI000511A2152.920e-6740.16transmembrane 9 superfamily member 10 n=1 Tax=Pyru... [more]
M5VWG0_PRUPE5.360e-6739.89Transmembrane 9 superfamily member n=11 Tax=Rosace... [more]
A0A218WL93_PUNGR5.470e-6739.46Transmembrane 9 superfamily member n=2 Tax=Punica ... [more]
A0A7S4JDQ3_9EUKA1.280e-6640.16Transmembrane 9 superfamily member n=2 Tax=Prymnes... [more]
A0A7S4BHG5_CHRCT1.560e-6653.62Transmembrane 9 superfamily member n=1 Tax=Chrysot... [more]

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Alignments
The following features are aligned
Aligned FeatureFeature TypeAlignment Location
P-fluviatile_contig83contigP-fluviatile_contig83:60349..79820 -
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 score485.3
Seed ortholog evalue2.3e-134
Seed eggNOG ortholog2880.D7G7H8
KEGG koko:K17086
EggNOG free text desc.positive regulation of protein exit from endoplasmic reticulum
EggNOG OGsKOG1278@1,KOG1278@2759
COG Functional cat.S
Best tax levelEukaryota
Best eggNOG OGNA|NA|NA
BRITEko00000,ko04147
Hectar predicted targeting categoryother localisation
Ec32 ortholog descriptionEMP/nonaspanin domain family protein
Ec32 orthologEc-02_000340.1
Exons18
Model size4104
Cds size1020
Stop1
Start1
Relationships

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

Feature NameUnique NameSpeciesTypePosition
mRNA_P-fluviatile_contig83.14834.1prot_P-fluviatile_contig83.14834.1Porterinema fluviatile SAG_2381polypeptideP-fluviatile_contig83 65706..72185 -


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

Feature NameUnique NameSpeciesTypePosition
1622817284.0840824-UTR-P-fluviatile_contig83:60348..620571622817284.0840824-UTR-P-fluviatile_contig83:60348..62057Porterinema fluviatile SAG_2381UTRP-fluviatile_contig83 60349..62057 -
1693571938.7231991-UTR-P-fluviatile_contig83:60348..620571693571938.7231991-UTR-P-fluviatile_contig83:60348..62057Porterinema fluviatile SAG_2381UTRP-fluviatile_contig83 60349..62057 -
1622817284.09829-UTR-P-fluviatile_contig83:62636..627621622817284.09829-UTR-P-fluviatile_contig83:62636..62762Porterinema fluviatile SAG_2381UTRP-fluviatile_contig83 62637..62762 -
1693571938.7343948-UTR-P-fluviatile_contig83:62636..627621693571938.7343948-UTR-P-fluviatile_contig83:62636..62762Porterinema fluviatile SAG_2381UTRP-fluviatile_contig83 62637..62762 -
1622817284.1111896-UTR-P-fluviatile_contig83:63444..635381622817284.1111896-UTR-P-fluviatile_contig83:63444..63538Porterinema fluviatile SAG_2381UTRP-fluviatile_contig83 63445..63538 -
1693571938.7457585-UTR-P-fluviatile_contig83:63444..635381693571938.7457585-UTR-P-fluviatile_contig83:63444..63538Porterinema fluviatile SAG_2381UTRP-fluviatile_contig83 63445..63538 -
1622817284.1230764-UTR-P-fluviatile_contig83:64135..643351622817284.1230764-UTR-P-fluviatile_contig83:64135..64335Porterinema fluviatile SAG_2381UTRP-fluviatile_contig83 64136..64335 -
1693571938.7546132-UTR-P-fluviatile_contig83:64135..643351693571938.7546132-UTR-P-fluviatile_contig83:64135..64335Porterinema fluviatile SAG_2381UTRP-fluviatile_contig83 64136..64335 -
1622817284.133118-UTR-P-fluviatile_contig83:65262..653251622817284.133118-UTR-P-fluviatile_contig83:65262..65325Porterinema fluviatile SAG_2381UTRP-fluviatile_contig83 65263..65325 -
1693571938.765346-UTR-P-fluviatile_contig83:65262..653251693571938.765346-UTR-P-fluviatile_contig83:65262..65325Porterinema fluviatile SAG_2381UTRP-fluviatile_contig83 65263..65325 -
1622817284.1429536-UTR-P-fluviatile_contig83:65616..657051622817284.1429536-UTR-P-fluviatile_contig83:65616..65705Porterinema fluviatile SAG_2381UTRP-fluviatile_contig83 65617..65705 -
1693571938.7742064-UTR-P-fluviatile_contig83:65616..657051693571938.7742064-UTR-P-fluviatile_contig83:65616..65705Porterinema fluviatile SAG_2381UTRP-fluviatile_contig83 65617..65705 -
1622817284.2582142-UTR-P-fluviatile_contig83:72185..722091622817284.2582142-UTR-P-fluviatile_contig83:72185..72209Porterinema fluviatile SAG_2381UTRP-fluviatile_contig83 72186..72209 -
1693571939.2821457-UTR-P-fluviatile_contig83:72185..722091693571939.2821457-UTR-P-fluviatile_contig83:72185..72209Porterinema fluviatile SAG_2381UTRP-fluviatile_contig83 72186..72209 -
1622817284.269152-UTR-P-fluviatile_contig83:73126..732641622817284.269152-UTR-P-fluviatile_contig83:73126..73264Porterinema fluviatile SAG_2381UTRP-fluviatile_contig83 73127..73264 -
1693571939.291192-UTR-P-fluviatile_contig83:73126..732641693571939.291192-UTR-P-fluviatile_contig83:73126..73264Porterinema fluviatile SAG_2381UTRP-fluviatile_contig83 73127..73264 -
1622817284.2795596-UTR-P-fluviatile_contig83:73934..743691622817284.2795596-UTR-P-fluviatile_contig83:73934..74369Porterinema fluviatile SAG_2381UTRP-fluviatile_contig83 73935..74369 -
1693571939.3016312-UTR-P-fluviatile_contig83:73934..743691693571939.3016312-UTR-P-fluviatile_contig83:73934..74369Porterinema fluviatile SAG_2381UTRP-fluviatile_contig83 73935..74369 -
1622817284.2913465-UTR-P-fluviatile_contig83:77203..773261622817284.2913465-UTR-P-fluviatile_contig83:77203..77326Porterinema fluviatile SAG_2381UTRP-fluviatile_contig83 77204..77326 -
1693571939.3101642-UTR-P-fluviatile_contig83:77203..773261693571939.3101642-UTR-P-fluviatile_contig83:77203..77326Porterinema fluviatile SAG_2381UTRP-fluviatile_contig83 77204..77326 -
1622817284.3052807-UTR-P-fluviatile_contig83:79737..798201622817284.3052807-UTR-P-fluviatile_contig83:79737..79820Porterinema fluviatile SAG_2381UTRP-fluviatile_contig83 79738..79820 -
1693571939.3190246-UTR-P-fluviatile_contig83:79737..798201693571939.3190246-UTR-P-fluviatile_contig83:79737..79820Porterinema fluviatile SAG_2381UTRP-fluviatile_contig83 79738..79820 -


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

Feature NameUnique NameSpeciesTypePosition
1622817284.1528928-CDS-P-fluviatile_contig83:65705..658191622817284.1528928-CDS-P-fluviatile_contig83:65705..65819Porterinema fluviatile SAG_2381CDSP-fluviatile_contig83 65706..65819 -
1693571938.7828398-CDS-P-fluviatile_contig83:65705..658191693571938.7828398-CDS-P-fluviatile_contig83:65705..65819Porterinema fluviatile SAG_2381CDSP-fluviatile_contig83 65706..65819 -
1622817284.163539-CDS-P-fluviatile_contig83:66291..664891622817284.163539-CDS-P-fluviatile_contig83:66291..66489Porterinema fluviatile SAG_2381CDSP-fluviatile_contig83 66292..66489 -
1693571938.793993-CDS-P-fluviatile_contig83:66291..664891693571938.793993-CDS-P-fluviatile_contig83:66291..66489Porterinema fluviatile SAG_2381CDSP-fluviatile_contig83 66292..66489 -
1622817284.1777637-CDS-P-fluviatile_contig83:67098..671881622817284.1777637-CDS-P-fluviatile_contig83:67098..67188Porterinema fluviatile SAG_2381CDSP-fluviatile_contig83 67099..67188 -
1693571938.8055825-CDS-P-fluviatile_contig83:67098..671881693571938.8055825-CDS-P-fluviatile_contig83:67098..67188Porterinema fluviatile SAG_2381CDSP-fluviatile_contig83 67099..67188 -
1622817284.1905353-CDS-P-fluviatile_contig83:67831..679821622817284.1905353-CDS-P-fluviatile_contig83:67831..67982Porterinema fluviatile SAG_2381CDSP-fluviatile_contig83 67832..67982 -
1693571938.8136282-CDS-P-fluviatile_contig83:67831..679821693571938.8136282-CDS-P-fluviatile_contig83:67831..67982Porterinema fluviatile SAG_2381CDSP-fluviatile_contig83 67832..67982 -
1622817284.2005749-CDS-P-fluviatile_contig83:68481..685891622817284.2005749-CDS-P-fluviatile_contig83:68481..68589Porterinema fluviatile SAG_2381CDSP-fluviatile_contig83 68482..68589 -
1693571938.8228207-CDS-P-fluviatile_contig83:68481..685891693571938.8228207-CDS-P-fluviatile_contig83:68481..68589Porterinema fluviatile SAG_2381CDSP-fluviatile_contig83 68482..68589 -
1622817284.2104695-CDS-P-fluviatile_contig83:69857..699521622817284.2104695-CDS-P-fluviatile_contig83:69857..69952Porterinema fluviatile SAG_2381CDSP-fluviatile_contig83 69858..69952 -
1693571939.222941-CDS-P-fluviatile_contig83:69857..699521693571939.222941-CDS-P-fluviatile_contig83:69857..69952Porterinema fluviatile SAG_2381CDSP-fluviatile_contig83 69858..69952 -
1622817284.224572-CDS-P-fluviatile_contig83:70371..705351622817284.224572-CDS-P-fluviatile_contig83:70371..70535Porterinema fluviatile SAG_2381CDSP-fluviatile_contig83 70372..70535 -
1693571939.2394476-CDS-P-fluviatile_contig83:70371..705351693571939.2394476-CDS-P-fluviatile_contig83:70371..70535Porterinema fluviatile SAG_2381CDSP-fluviatile_contig83 70372..70535 -
1622817284.2350504-CDS-P-fluviatile_contig83:71227..712551622817284.2350504-CDS-P-fluviatile_contig83:71227..71255Porterinema fluviatile SAG_2381CDSP-fluviatile_contig83 71228..71255 -
1693571939.251042-CDS-P-fluviatile_contig83:71227..712551693571939.251042-CDS-P-fluviatile_contig83:71227..71255Porterinema fluviatile SAG_2381CDSP-fluviatile_contig83 71228..71255 -
1622817284.2480993-CDS-P-fluviatile_contig83:72113..721851622817284.2480993-CDS-P-fluviatile_contig83:72113..72185Porterinema fluviatile SAG_2381CDSP-fluviatile_contig83 72114..72185 -
1693571939.2722301-CDS-P-fluviatile_contig83:72113..721851693571939.2722301-CDS-P-fluviatile_contig83:72113..72185Porterinema fluviatile SAG_2381CDSP-fluviatile_contig83 72114..72185 -


Sequences
The following sequences are available for this feature:

protein sequence of mRNA_P-fluviatile_contig83.14834.1

>prot_P-fluviatile_contig83.14834.1 ID=prot_P-fluviatile_contig83.14834.1|Name=mRNA_P-fluviatile_contig83.14834.1|organism=Porterinema fluviatile SAG_2381|type=polypeptide|length=340bp
MFASVIRDGYHAHMTTAHLPAAYEPSPGDHGALGRRLPSLPGLFPVFFVF
RRGFPVGFYMDGNSYLNNHLRMTVAINPRDEGKTKFHIVGFLVEPFSVQH
DFQTPWSEFSQISTCSSTSGYMKTDPNRFLSTDYEGEILFTYDVVFDVTS
MPWTQRWDIYTSGPVDNQIHWFSITNSSVIVMFLTVLVAMIMVRALRKDI
QRYNQEDMEEASEETGWKLVHGDVLRPPSTAPMLFAVCVGTGVQLWTVSF
MVLFFSMVRLVSPLKRGDMLTVCILIYVLTGGIAGYNAAKIHRRFRGTEW
IKMTLLTSFTFPALAGSVFLVEGFSSGSSVPLGRCPSAF*
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mRNA from alignment at P-fluviatile_contig83:60349..79820-

Legend: UTRpolypeptideCDS
Hold the cursor over a type above to highlight its positions in the sequence below.
>mRNA_P-fluviatile_contig83.14834.1 ID=mRNA_P-fluviatile_contig83.14834.1|Name=mRNA_P-fluviatile_contig83.14834.1|organism=Porterinema fluviatile SAG_2381|type=mRNA|length=19472bp|location=Sequence derived from alignment at P-fluviatile_contig83:60349..79820- (Porterinema fluviatile SAG_2381)
TGGCTGGACGAGGAAGGATCTCGCTGCCCCAGCTGTTTGATTGATTTTCT GAGGAAGAACATCTATCTGCACACGCATAACCGGTAAGCTGAGCCACACA CGCAGGGAAGATAGACAGAGATGGGCAAACACACACTCACGGCGACGCTC GCTCTCCGCTGCTACAGACCCGCCCACTAGTCCTGATCAATCACGCAGGC GGCATGTCCAGCGCCCGGCTAGTTTTTCGCTTCCCTCCCTTTCGATCGTC GTGTGTTTCCCCTCCTTGTGCCGTGTTGTGTGTAGGTTCCAGGAGCTACA GCACACCACACACACGGCCACTTTGCATTCATTTGTAGTCTGGTGGGGTA GTCTGGTGTATGGGTTCGCTGTTTTCCGATTGTGCTCCTTGTATCCCGCC TGCTCTCCGCTTTACAAGGGTCATGACTCCTACTCAAGGTTTTCTACATG CTGGTGTAGTCTAGCACGTACGGGTGAGTAACCCTTTCCACACATTTTTT CTCTTGTGATTGCCCGACAGGTTGGAAGAGCAGGGTACAGATCTGCGGGT CATCTCTGCAGCTGCCGCAGGTTCTGTTCCCCCTCATTCGCGCCCGAGTA ATGCTCGGCATCTCGTGGAACATCGTAAATCGTCAGATTCGTGTTGAATA TTCCTGCAGTGCAGGTAGTATCCGTTCATAGCCCGCCGCGTGCAGGCACA CACCACAAGTGTTTTCACATGATTTATCATAGTACCAGGTACAAGCATTT CTTCCAAAACTTCCTAAACTGCTCTCCTCGTCCCTCTTGCTGTCTATTGG AGTATGGTTATGGTTGGTCGTTCCCCTAGACACACACGTAACACCTGGAC CCATACCCACGGACCCACTGAACGATTTTGTCATCATCGCAAGTGTTTAT TTCAATGTCTTCAGCTTTGTGTTCCAGCCCCGAGTTTCGTGTCAAAAGCA TCCGCGGCTTCCGTTCCCGCCGTGTTGGTCGGTCGGACGAACGCATCCAT ATTTCCCTTGTTTACCGAGAGGAAAGTGCGATGTGTGTTGTGTTTTCATT TCATTTATTCTGGCGAGTGCTACTCCTTTTTTTTTCATCGCGAGAAGGGT TCAGCGGTTTCATTCCCTCAACAGTGAAGTCGAATTTTGGACACTCGCGA GCTCTTTAGCTATTCCGTTTTCTATCCCAAAGTTGCGACTTTTTAACCCT CGTCGGGATTCGAAGTCATGGCCTTGGTGCTCGCGGGTTTTCGAGGTTTC CACTAGACGACGGAGGCGACCGATGCTGGGTAACCCTAACCCTAGCCCTA GCCGAGAAAAGAATGTGGAATGCACCCAAGAACGCGCACCACCTGTCTTC GGGGATGACCTACTCAAAGAAGATAGGTTTGTTGCATATGAGTTAAGAAG TAGAGGATACGTGGTATTTCGCCCTAACCCCCCACGTGTTGCTTAAAAGA TGGGGGGAGGCTGTGTGTTGGGAGGGGGGGGGTGTACTCGTAGTCGTGCA TGCCGTAGTCGTTAGACCAGTGACCTCGCATCCCTACAAAGCCGGGACGG AGCACGCCGGGTTCTCACCGGACCGGGCTCTCACACCACCAAGCGCGAAG CGCCGTGAGGTATTCGGCGAGTCGCATGAAGGGTGCGCTGCATCCTGCTA AGGGTGTTCGGCATCTTGAGCTTACTCCCTTGCATACGGATGACAGCTGC GTATGGCTTAATTTATTTTCTGGTGCTTTCACTTCCAGAGACAATTGTGA GCACTGTGTAACTGCCTCGAGGGTGCTTGACCATTTTAACACAACGTGGT GCGATCATCCCCCTTGCGCGGAGTGAGGGTTCTCCACCCCGCACAACATG ATCTACTCGACCACCATTATGGTTACCACAAAAAAAACAGAGGAAAAAAA AAAAGACGGTAACCTGGTTGCCGAGTTCACGAAGTGAGTTGGGTTGTTTT ACAACGTCGTTGCCAAGCGACGAAAACCCAATTCCGATGGCAAACACCGA GGTGAGAGCCAGCGGGAGGGAGAGTGTTGGGAGGGGGGGGCGTACTCATG TTTTGCATGCAGTGTTGGGGGGGGGGCATAATTGCGTGCGGGCTTCTGAG GTGAGGAATGTCGGTGAACAGGCTTTTATCGGCTTCCGGCCACCGATGTA GGTAGACCCACGATGAGGGCCTGCAGAGCAGGCGACACAGCCCTGGGAAT TAAGACAACAGAGGCACAGAGTGATCGGCCCGCTCTCCCTAAACTACCGA ACCAGCTTGCCGACTTCGCGCTCGCGAACACTGCGGTGCGTTCCTAATCT TAAAACCCAGCATGGTGCACAAAGTGATCTGAGCTCCTGCCAGCTACCTC ACTCATGTGTAGAACGTCGCTTTCCCTGAGGCTTCCACGTGTGTTTCCAA ATTCCCTTTCAAAACCCCTGACGGCTTCGGTTCTGACTTGGTGTGACAAC TCTTACTCTATGCTCCCACTTTTTCAACTCTCATCTTACCGCAGGGGGTT GGGTCAGGGGCCAAAGGGAAGGGGACCTCTCTGCGTGACCACAGATCGGA GCTCTTGCGATAAGCGTCGGCCTTGTGCCTGTGTCGAAGCCGCGTCTTCA AGGGCGAAAGGAAAACTGTTGAGTCTCCGACCCCCACCTGTTCGTCATGC TGGTTTGTCGCTTGATGCGCACTCAATCTAGTGCTCGCACCCACGTGCGT TCCATTGACATCCGGCGACGTTCCCCAGCCCGCTCGGCTGCCTCTGCTGC ATGCCTGGTGTGCGGAGGGCGTATATGCGATGCTCTCTATTTTTTGGTGC ATGCACAAGCAAAGCGAGAAACAAAAGCCGCGACACACGAGTTTATTTGT TCTCTCAAGCCGTTTGATCAGCGATGCCCCTTTTCCAAGGCATTAGATCT GCCCCCCCGCCTCCAGGGCCGTCCTCGAAGCTCGATCGCGACCCCGCACA CATGGGGGAAGGAGATTCTTTCGACACGTTTGCGGCTTTGGTCTGTTGTT TGTCGACTCCGAAAGAGCGAGCTCCGCATCTATACATGGTACCTTGAAGC TATATTGTCCGTCTGTCTCTCGCTCTCTCTCCCTCTCCCTCTCCCTCTCC CTCTTCTTCTCCTCTCCCTCTCCCTCTCCTCCATCTCCCTCTCTCCTCTG CGCGTGTTTCATTGATGTCTTTCGGCGAAGCCGTACCTTCGCTGTCATAA GTACGCCCTTCGCTTCACCCCGTCGAGCGAAGTGCAGCAGGGGGCGATAA AGTGCGGGGTGAAATCGATTGTCCCATACCCGCATTATGTGGGGCCCCCC GCTGTAGTCGTAATTTCCGCGCAAAAACCGGCTGCGCAGTCGCGGGATAT TCCGAGTATCGAACTTTGTTTCGTTTCGCGAGAGGCGGGCACAGACGGCC TGGCCAGGTAGCCTTTCGTGAAATGGGTGCCTGGCATCTAGGTTTGTACT CCACAGGCTATTTTTTTCGATTTGAACCTATTTACTGATTTCATCCTCAT TTTGGTTGAAAAGCTTCCCCTCCCCTCCAAGTCATCAGTCAAACGCCTAC GGAGACCTAGCCTGCTGGCATCTCTCGCGGCGTTTATTAAAAGAAGGTTC GATGCTGGACCCGGCGGGAGTTGATCGACTTTGCTCCGGAGCTCCTCGGT TGCTAAAGGGTTTCCGTCCTGTCTCATCCATTTGTGCGTCGTTCCCGGTG AACCACGTCCAGATACATCGCCGGGCATGTATTTTCCGCAACAGAAGCCT TGAGGCGAAATCCATTTTCTCCCGTGGCGTTGAACAGCGTTGCCATCTGA TATTTTTCGATGGCGGGAAGCATTCCGTACGCGCACTGTTTCCGAGACGC CGCTGGGGCCCCGTGGGCGTGCACATAGCCCTAGCTAGCTCCGGTGGTGT TGCATCCGAAGAAACGTCAGGAGATGCACGCCAACTTCAGAAGGCACGCG TCAACCCGTATGGCGAGTTCACGAGCAGCCCGGGTGGCGTCATTTGCGTT ATGGCACGCGGTCCCCGCGAGGAACACCGCCGGAGTTAGGCTTATACTCT GCTGGGCAGTCTTATTTCCGAGTCATTAATAACCCTAGCTGATTCTCATC CTAATTCTGGTATGAAAGTCCCCCCTCTCCAAAAATCAGTCAACCGCTCG CGGAGTAGAAGCCTAGCCGGAGTTCGGCACACCCTGCTCCGCATTGCGGG CATTACACAGATCGCCAAACTCTCCGCTGCGTCTCTCGCGCGAACACTTT CTCGGAGATGCGGCATTAGCGCGTATGCACCAATCTCGTTTTTTCTTTTC TTTTTTGTTTATCTGGGGCACCAGGCACAGGGAGCATGCCACCTATCTCC TTTCCGGGAGCCACCTTGAACATTTCTCGGGCACCGCGAAGAAAGGAAGA AGAGGAGATGATGCATGGATCCATCGGCTAGATAGGTCGCTCCCCCCATC GTTAGGATGTGGGACGTTTTTTTTTGTTTGTCGACCAGGCGCACAGATCG CGGAACTCACGTTGTTCGCCTCTCCCGCGACATGTCGCCGGGGCAATGGA TCTACATGCCAATGGCTTGGGCGCAAGGAGTATTTACGACCCACGACGCC GCTTAATGCTCACGTCGCACTCTCACGGTACCACATTAACGTTCCGTCGG CCTTGGTGCGGAGGGAAGTGGTTCTTCGGATCGATCTTCCCTCTCTCTTC CTCGCGACTGACTGCCCCGAGCTCTCGTCTCCCCACACAGTAGGCCGGAA TACTCGTGCAGAAAGTGTCGTTGATATATTCTCTGTTTGGAGCTAGTCGT TGTGGTTTATTTTTTTGTTATCTCATTTTATTTTTGTTTTATACGAAGTA CTCCGGAGTTTTACTTTTTTTTTTCGTGATGTTTTTTCCAAGCCGTTGTA TCCAAAAGTCGCCGGGATTGCAACATTTGAGTGAAAAAAAAAAAACGCTC ATCAAATCGTCGCAATCTTCTCGCCCTTGCATGTCGACAGTTTGTCCTAT GTTCAGTATTGTCTCTCTGGCGGGGACCTCTCTTCTTTGGTTTCATAGCA TTTGAGCAGCCATGACAGCACTTTTTCCGTGGGCAGTATTCTATGATTCA AATCGAGACGAAACAAGCCTTTATCCCAAGTCAGTGCCTTTAGTATTTCA AGCATAATACAGCAACCCGCCATCGTCGGCCACAGGGGTCTCGCGTCGCT CGTAAGTGGTCTCGTGTCGCTCAGAGGGGATCTCGTGGCGCTCAGTCTGG CGTCGCCTAGACGACAGCAGCCTGAATGCATGGAAGTCGAAGCGGGCTCA TGCCCCGCTCTGTATTTGGGCGTGTCACATCACCTAACGTCTACTAAACC ATGGGTGCTCCTGCTCCCCTCCCCCAGTCAAGTGACCCAGGGATGCAACA TCATGACCCCCCTCTCGTGCACTTGATCTGCCGCCGCCCCTCTGATGTTA GGATCGCTGGCGTCCGCTTGCTTTTCCCCGAAAACTATTGCGGTCGCGGA GACGTATCCAACGTAGCTGACCACATATCTCTGGTCGACTCGCGCCCTGG TTAGCTTGTACCTTGTGTAATGGCGCCGCCAACTGCCTCGGCCTTTTCGG GGAGGGGGGCGATAAATGGTGGCACCAGCAGCAGGAACAGCGGCGCTTCC AGGAGTAGCAGCCCGCGGGATGGCGGAACTGTCGCGGGACTGTCAAGAAG GGTGGTGTCCTGGGCGGTGTTGTCATTGGCCGCCGTCACCGGGGGCGGGG GCGCGGGGGGCAGGGTGGCGGAAGCTTCGTGGTTGCCCTCTATCGGGCCC AAGGTGTTCGAGAGGGGCGATCAGCTCCCGCTGTACGTGAATGAGCTCAC GTCCGTGCGGAAGCAGATAACGCTGGACCACTACCAGTGAGTGTTGTTGT TGTTGTGATTGCTGGTGGTGTTGTTGTTGTGGATGCTGTGTCTGTGGCTG TTGTTCTGTTGTTTGGCTTCGCATGGGAAATGCTCTGGCGTTTAGAATAC CCCCGGCTTTCTTTTATCCTCGCGCCGAAGGACCCAAAAGGTCCCCGAAA GGTCAGCACTTCGGGCTTGAAACAACGGAGAACCGAAAGCAGCACCACAT GAATGAACGACGAAGGTGTTCAGCCGTATTGCAGATGTAGTTGATCAACT TTGTTTCTCCGAGGTTTATTTCATGTCGTCGTCGTCGTCGTTGCGGAAGT GAGATCGACACGCCCACAGCGGCCCACTGCCGGCCCCAAGTACCTCTCAT CTGCTAGGACGGGGAGATGTTGATTGTGCGTTTTGTCTGAAGTACGTCAC GGGGCGTCCTTTTGCTCACGGGTCAAGTAAATGCGCCATGAAATTTTATT TTTGTGGCCGTGGTGGCGGTTTCTCTCGTCTCGGCCAGCGTGGCCTGCCG CCTGCCTGACCCTCTGCACGAGAAGGCGGACAGCTTGTGCCCAATTTTTC CGGTTGCGTTGGTCAAGAATCCCTTCTCCCCCATCGTCAAATCAACCAGT TCTTTTTGATTTGATTTTCTGTTTGATTGTGGTTGTGGCTCTCTCACCGC TCCCAGCGTCGCCTACTGCCGACCCGAGCACCTTCACGAGAACGCCGAGA ACATCGGGGCCTACCTTGAGGGGGACCGTGAGGAGAACTCCTCTACGACC TCAAGGTCGGCGAGGCTCAATTCTGCCGGGTGCTGTGTGCCGCGGTGAGT GCAAAGATAGCGCAGAAGTATTTTGTTGTCACACAGGTACACCCTCAATG CACGTCTAAAGTATGGTTGAACGTATCAGTCGTAACAATGATTCGAATGG TGTAAGATATAACACTGTTACTGAAAGTGACAAGACATCATGCATCATGT CACTTTCCTTGTTTCAGGTCGTTGGAAGGGATATCAGTACTGAGTAAACA GTCGCGCGGTTTGCCTTGCGCTGCGCTGAGTGGAGGAAACGCCAAGTATT TCGTGGTGGGGCGTGGTTTAGCGCTTCCCCCTTGAAGTCAAAGTTCTCTG CACATGGCGGTTGGGACTTGGCGTGACACCGCTTGATACCGTGCCGTCCA GCCCTCGTCGGGTTTTGCGGCAGACCCTGAAAAGCGGTGATCATGTCGCA CGGCACTATATAATAGGTACCGCTATGCCGAGGCCAAAACTGCAAGGCGT CCACCGTCCCTTTCGTAGCCGGGCGTTGGAGGAGAACGAGCCGGTACAGC ATCCATTGGAAATGCCACCAACAACAACGTAGACACAGAAATGCAGCAGC AAGTGCAACAATGCACTGGCCCACGTTTTTTTATCCACGTATCACGCAAG GCCTAGAGTTGCGTCCTAGCGTGCGTGTGAAATGCCCAAGCAGCCACCCA CGAGGAGTAGAGGAGGTGCAGGCAGCTAAGAAGGCGCCCAAGTCACGCGG GGGGCGGGATTGGGAGTAAAGCCAGAGGCAGAGAGAAGCCGAGAAGCGCC AAATAAGGAAGGCCGTCGGCGTTGGCGTGAAGGGCGGACGAGAGTCGCTA TTTCTCCTGCAGGATAACGGCCCGCTTCTGTTCCGCTTTGATTTCGCGTC TTGTCGTATTCGCGGCTTTCCGTGCCCTGTTCGCCTCACGCGTGCGTTTT CCTCGTGCCAGAAACTCACCGCTCCTGAGCGATATATGTTTGCCAGCGTG ATCCGCGACGGCTACCATGCGCATATGACGACCGCCCATTTGCCCGCGGC CTACGAGGTGCGTTTTTTTGTCGGAGGCCCTTGATGCAGCCGCTGCTGCT GTTGGTGATCATGTTTTTTTCCGTCGTCGTAGTCGTTGTTGTTCTCATAC TTCGAAGTATTATCGTTTTTGCTGTTCTTCTTCTTCTTGAGCTATCGTTG CTGTTGTTGTTGTTGTTGTAATGTGTCGTGGTTGTGTTGAATGTTGTATT TGTTGTCCCGTTGCTGCTGTTGGTGTTGATACTGTCGGTGCTGCTGCCAT GAGCTGAGGCTGTCGTCACTACCGCTGCTATCGGTAGTGGTGGCGGCAGT GTCTCGGTGTTGTCCTTTCCGCATGATGAGTACCTTGCTCCTTTCGCGCG ACCTTTCGCTGTTTTTCATCTTTCTTTACAAACTGCCTTATACTCATGTT TTTCTTTAAAATAGGCTCATGAGAGCGTTGCGACGGAGAGAGCCGGGGAC ACTACTGGCGAGGTTGCCAAGGAGCCGGTCTTCCTCAGGTGGGGGGAGGA GAGTGGACAGGAAGCAGACGGCGAATTTCGGCGAAGTACGACAGGACGTA CGGAAGACGGTAGCAGTACACAGAGGGAGAAGGGAGGGGTCAGATGGAGC ATTTTCGCGGAGTGGGGCAAGAAGGTCGCACGACGGCGACGCTCTGGAGG GGAGAATTGTTGAGGGTGCAGGGCAGATGGCTAATGTTCGCGGAGTGGGC GGAGGATGGGAGGAATTGGGAATGGCAAAGTGGAACAGGGGGGGGCTGAG AGGTTGTTGTACTGGAGAAGAACGGAAGGAAGGTGATTCTGATCATCCAC GCATGCCGTGATCGGTAGACTCGAGACCTTTCAGCTTTTGAGGCCGCGGG ACTCATGCGATCAAGCCCTCCCCTGGCGACCACGGGGCCCTTGGTCGCCA CGGGGCTTGGTTGCCACGGGGCCCTTCGAGTCGACGCGGCCCTCCGATAC CACGCGGCCCTCCGAGACCACGGGGCCCTTTGAGACCACGGGGATCCTAG CGATCAGACTGTGCCCTTTGAGACCACGGGCATGCTGGCGACTACGCCCT CCCTTCCGAACCCAGAGGGGGAAAAATAGGTAGCACGCCTACCCGGGTTT CCACATCCTCGCACTTCCGAGCATACCGCTGTGCGACGCACAAAGCTCGC TTGACTGTTTCGAACAGAGGCGGTCTTGTTGTCATGGGAAGGAAAGAGGA CCACCCATTTACATAGCGTTTGGTCGACGTGGTTCGCTCAGGACAAGAGG AACGAGGAGGCGCAAGTGACCTTTTTAGTGAAATACAGCGGTCGACGGGG TAGGGGAGGGCAGGAAGAGGCTGGCAGCGGGCAGGCCGGATGTCGAAGGT GATTTGGATTTGGGTGCGCACTTCATGGCATGAGAGTCGGTCAAAAGCAA CATTGCTCTTTGAGGCAGGCAAGTCCGTGGAAAAAAAATGGTGCACCAGT CTACATTGCAATCAATGGCAAGATGAGAGTCATGCTTCGTGCAGCCTACC TCGATCATTTCATTAATCTCGTCACTTTGGTGCATACCATCAGTTATGCG CGAACGATTCTAAACACTCCGGGGTTACCTCGAAGGTCGAAGATTGCCGA GCTTACCTGGATTGTTTCCTGTGTTTTTCGTTTTTCGCAGGGGATTCCCG GTTGGGTTCTACATGGACGGCAATTCTTACCTGAACAACCACCTGCGCAT GACGGTAGCCATCAATCCGAGAGATGAGGGCAAGACCAAGTTCCACATCG TAAGTGTCTAGCGTATGTTTACCGTCAGATTTAGCGTGGAATTTACCGCG GAGACGAAACATCTGTACGATATTCTTGAAGACAAAGGGAAGACCAAGTA CCACATCGTGCGCTTCGATCGTGTTTACCGTAGACCTACCGTGGAATCTA CCATGGAGACGAAACAACTTGGTCACGCACCGCATACAACTCAGGAATTT CCGTGGAATTTCCCGTCAAGACGAAAGATTTGGAGGAAGCCCATGGTCAT GCATCTCATTACCGGGAGGGACTAGACATTTGTAGGAAACCCTTGGTCCA AGCATCGCTTTTGGCGCGGACACGGAATAGTCACGGGAAGCCCCTAGTTG GGCGTTGTTTTTGCCGTGGGTCCGGAGTCCCACCCACCTCGTCGGCCCTA TTTGTGTTCGCGGCACAGGTTGGATTCTTGGTGGAACCCTTCTCAGTGCA GCACGACTTCCAAACGCCTTGGAGCGAGTTCAGCCAGATCTCTACCTGCA GCAGCACGAGCGGGTGAGTGCGCGAAGTCTCTCAGTCATCCCCAGTTTTT GACACCAGGCCAAGAGTCCTTAATTGGGGGAAGTGTCCGTAAGTTTTGAA ACACGACTATCACGATGTCCCCTCCAGCAGAATATTGTAGCGTACTTTCG AAGTGGGGTGTCCTTCGTTTAGGTGTCCTTGACACTGGGACGCCTGTACC ACACGTGACGCGGGGTGATGCTCCTCCCTACCCGATGTTTACGGCTAGAT TTATCCTCACCTTGGACGGTGCCAGCACCTACCGGATTATTGACAGACGG AAGCATGACACGCTGTCAAATTGTCGAATGACATCGACCTTGCTTCGGAT GGTTTGAAGGTACAGTGAGTAGGTACCCTGTTGTAGCGGGGTGTAGTATC AAGAACACATGCCGTTTTTCGGGCAATGCCTGTGGTTTGGTTTGCATCGC ACACTGTACATGCCGCTTTAGCTGTATTCCCACTGCTCAGGGTGCTTCTA TTGTGGGTACCCATTGTACCGTACGTGGCATTGGATACGACACTTTCATG TTCACGATACTTTTTGCGATTCTTTCTCGCAACTCGAAAAAGAAGGAACG TAAACTCATACGGCAAAAGCATCGTTGCTACAACAACGACACCCCCCTCC CTTCTTCTCTGCCCTTCCTTCCCTGGGAACAAGGAACGGTGCTCCGTTTC GAAACGGACAAGTAGTCTATCCGTTGAGACAAGCACTCAATGAGTACATC CTCCCCTTCCATTGCTCCTTGCGTCTGATGGTCACATCGTCGCAGCAACG ATTCCGACCAAACCGCTTCCTCAGCAGCGGCTTCCGCCGCGCCTCCCCCA ACACCCTCTACCGTACCGCGGACTGAACCCGTCGCTCCGCTGCCCCAGCA ACGAATTCACTCCTCCCGCCCGCTCCTTGTGTCCCTTGTCCTCGGCATCA CCCTGCAGCAACCCCGAACCCAACTGGTTTCTCAGCACCTCTTGGACCCC TCCCTCCCCTCCTTTGCAACTGCACCCCTTTCCCCCCTCCACCAAAGCAC CGACTTAAACCCCTTGCTCCTCGTGCCTCGTGACTTCGTCGCCGCAGCTA CATGAAGGCCGACCCCAACCGGTTTCTCAGTACCAAGTGAACCCCTCCCA CCCCCCTTCAACCATCGCAACCACTCCCCTCCCACCTCCACTTAGGCGCC GACAGGACCCCCACCCCTCTATCTTAGCACCGATTTTAACCCCCTCGTTG CTCCTCGTGCCTCTTGACCTCGTCGTCGCAGCTACATGAAGACCGACCCC AACCGGTTCCTCAGCACCGATTACGAGGGCGAGATCCTCTTCACCTATGA CGTGGTCTTCGACGTAACCTCCATGCCCTGGACACAGAGGTGGGTGGGTT GTGGATGGAGGCATTTGGGTGAGAAACATTTTGTACCTCGCCTCTTCTGC TTGCCTTTCAAATTTTTCTTTCCCGTCGGAGACGGCCCTTGTAAAAGTTC GCGACGTATTTCGCCCGTCCGGCGGTCGGCCGATCACGAGATCTCACGGC GTGGCTCGTGCAGACAGACGCCGGCACAACCGGCAAACCCGTCATTGCCC TCTCACAACATCGGATCGCGTCCCCGGTGCCGTCGTCAGTAGGCTTGTGA CCAAGGAGCGCAGCATTAGACTACGGCCGCATCTTGCCCACCTCTCCTCG AAGTTTGTCGGGAAAACCTCGTCGTTATGATTGCAGCTTGACCCTTTCTC GAAATTTATCGGAAATTTATCGGAAAGATGACGGCATCTTGGCCCCCTCT CCTCGTCATCTATCGGGAAATTCTCGTGATAATGGTGGCAACTGAGGCCC CTCTCATCGACAAATTTCTGAAATTATCGTCCGGAAAGGTGGGACATCTA CACGAGCGGTCCCGTGGACAACCAGATCCACTGGTTCAGCATCACGAACT CCAGCGTGATCGTCATGTTCCTCACAGTGCTGGTGGCCATGATAATGGTT CGCGCTCTCCGGAAGGACATCCAGCGGTACAACCAAGAGGTGGGTCATGC CGAATAATCAATCGTTGTCGTGACTTCCATCGAATGGCGCTTTTGGTTAC ACGAAGACCATGCCGTGCTATCATGGAGCCAAGAGGTCGATCGCCGAATT ACCCTACCGCTGTGACCTCATTTAGGCGACTTCGTCAGGGTGACGCTGTG GAATTCACGCACCCAAAAGTCGCTAACCGCAAAACCGACCGAAGTGCAAC TGCTCTGACGCCATCTAACCAACCGTAAATATCACGCCGTTGAAATAAGC ATCGCTGTTTCGGCGTGGCATCAACAAAACACCGGGCCGTGAACGAATAC TTACGGTGCGCGAATAGAATCCGCGAGCGGCTGCCGAGGCGTTAACGTAG TGGAAAGATCCACCAGATGGCCGCATGCACAGGATGCGTGGGGGGGTATC TCTCACACCGCCGGTGCAGAGTCTTCCGTCATTTCAACCGCGCTTTACAA GGAATGCCAATCGGCGAGGAGAACGACCTCGTCGAAATGTGTAGGTGGTT AACATGGTATTACTCTGCGTGATTTCGAAGACATGAATAGGTGCTTCACC CGGTATTTCTTTGCATGGACGCCGGTGTTGCGTCCGCCCAACGGTCATCT GACGGCATCTAATCGGCACTTTTTTTTGGCAGGACATGGAGGAGGCCAGC GAGGAGACCGGGTGGAAACTGGTGCACGGGGACGTTTTGCGGCCCCCTTC CACCGCGCCTATGCTCTTCGCAGTGAGTGCAGCCGATATCTGTTGGTTTT CGCTCGTGTTCCGGCTGCCTCATGACACGTCATACAATGCATTTTTCTTG CTTTTTTGTTGTTTTCCATTGGTCTGCTTCAGTCGTGTCATGACCCCTGC ACCCCATTTTTTTCTTTCTCGAATCGTGGAAGGGTGTCGCTGTTGTACCC CCACCCTTGATTTTTGTCGTATTTTATCCTTTGATCCCGAATCTCGATCG CGCCACTCCCATTCCGACGCCAACTCCCGACCCCCTTTTTATTAAACAAA AAGGGGCTTTAGAAAATTCAAAACTTCCAAATAAACCATTCCAAGTTCCT GAGCCATGGAGCCTCACTCCCCTGCGCCAAATATGTAAAATTTGGAACGT GTCTAAAAAGTTGGGAGTCACGTGGGCCCAAATTTTTGGAGAGCGAGTCG TTTCCAATGGTTCCCGAACGTTCGAAAGTCACCGATTTTGAAGTGATCCG AACCATGAAACACCGAAGATTGCAAAAGCCCCTCGTCGAGTGTTTGTGAG TGCCTGCGTCCAAATTATGTGGACCCCCCTCCTTGCCTCAACCCCCCCCC CCTCCCCTACGTAATTTTTTCTATCTGTCAGGTGTGCGTGGGCACCGGCG TTCAGCTGTGGACCGTGAGCTTCATGGTGCTCTTCTTCAGCATGGTCCGC CTCGTGAGCCCCCTCAAGCGCGGCGACATGCTGACGGTGTGCATTCTCAT CTACGTGCTGACCGGCGGCATTGCGGGGTACAATGCGGCCAAGATTCACC GGCGTTTCCGCGGCACCGAGTGGATCAAGGTGCGCGCGCGTTTACGAGAG AGGAGAGGAGAGGGCGTCATCATTTGAACTTCTCCAACAGTCGAGCCACT CGTTCTTTTTCCTTCTTTCTCTTGTTGGCTCCAGCTTCTCACGCATTAGA GCGACCCGCCCAAATGACGCCGGCGGGGTCCATACTCCATTGGTCGAAGC CTCTGAAAACCCCGCCTCGCCACCCTTCCCCCCTCACGCACGCTTTTCCC CGTCACGCACGGTTGTTGACTTGTGCCGCCTACCCACCCTTCCCCCCTCA CGCACGCTTGTTCCCCCGTCACGCACGGTTGTTGGCTTGTGCCTCCTACC CATCCCCCCCCCGGTTCCCCCGTACACAACCACGTGACCCCCCAGATGAT GCTTTTGACGTCCTACCCCTTCTCAGCCTTGGCCTTAGCGGTGTTGACTC GAGCCTCTGACCCCGCGACCTCCATCCCCTTGTACGCACGTTACCTCGCA GATGACGCTTTTGACGTCCTTTACCTTCCCGGCGCTGGCGGGGTCCGTGT TCTTGGTGGAGGGGTTCAGCAGTGGATCATCGGTTCCACTGGGGCGGTGC CCTTCCGCATTCTGATTCTCCTCGGGGCTATGTTTTTGTTCGTGCAGACG CCGCTCGTGTTCCTCGGCTCCTACTACGGATTCAAGAAGGAACAGCCACC CCAGGTACATGGTTGTGTTCTGGTTGAAGTGGTGGTGTTGTCGAAGCTGT CGCTGCTGTTGCTGCCATCGTTGTTTGTAACGTTGTCCCTTGACTGCCAC AACCGAATTCGATGAGGAGCAGTATCCCAGTGTTGGGAGTGCCGTCGCTG CTTTTATCATTGGTGTCACTCGACAATTGTGACGGCTTCGAAGAAGGAAG GTTGGCATAGATTTCCCTCTCTTAAGCCTGTCACTCATGCACACGGTGAT GTTGACCGTCCCCCTCCCCTTGACTTGTACCCATTTCCAAACCAGGTTGT GCGGACCAACCAGATCCCCCGCATGATTCCGCAGACGCCTTGGTACGTCG ACCCCAAGGTAAGTCGAGATCGATCAAGTCACGAGGGGCGAGTGTGGTCG AATGGTACGATCGCCGCGGTGGAAATGGTGGGACGGGTGTGGTGAAATTT CGAGGACAAACAGTGCTCTCGCAGAGCCGTCACTCCGCCGCATGTCGTTT ACTTCGTCTTCGAGCCCTACCATTGTTGGTGAGCAATGGGGGGCCCACTT CAAGTGGGGGTTGGACGGGAATTTCCACCCGCACTATTGCGGGCACCTGC ATTTTTCACAAGTTTGTAAGAAACAGGTGCGTGTGCGTGAGAGCTTCTAT GCCAAGTGATTTCGCCCGCCTACTCCGGAGTCCACAACTATTCAAACCGC ACTTTGCAGGGGGGCCGACAGTACACCACTGCTGGCGTGCCCATCCCTGT AGTCGGCGAGTCTTAATCTGCGCGAAAATGCTGTATGTGGTGGTGGCGCT GAAAGATTGACAACACTTATCGCTGGCAGTATTTTCCATCCTACGCGGAA TCCGTTTGGACGGTTCCATTTCTGGTGCATTGGCGCAGCTGCGACCCTGA CCTAGCCAACATCTAACAGTCTTTTGACCTGGCCGGAGCCGTCTGCTACC AAGGTATTAAGACGATTTTACACGCACGGGTAGAGGTCAACCTCCAAGTG GACAAAAGGATGACGAGAACACCCACGCCGAAAAACGCACCCACGACCTC GACTACGACGACATGCAGCCACCCCCACCCCCCCCAGCAACGAGCAATCA AGAACCCCACATTACCTGCCTATTCGTCGTCCTTCTTTTTGGATTTCACG CCGTAGGTGCAGCAGCCGACGACATTTTCAATCATTTTCCACGCCATTCG TCGTCTCTTTCTCTGTCACGCCTTGGATGCAGCAACCAACGAAGCAGCCA TTAGCCTTTCCCGCCATTTTGAATTCACGCCGCAGGTAGCCGTACCGTTC GCGGGGGTGCTCCCCTTCGGAGCCGTACTGGTTGAGCTCGTGTTCGTGAT GACGGCGATCTGGGAACAGCAGCTGTACTACATCTTCGGCTTCTTGATGT CGGTGATGCTCATCCTCACGGTCACCTGCGCTGAGATCAGCATCGTCATG TGTTACTTCCAGCTCTGCTCGGAGGACTACCGTTGGTGCGTTGTGTGGCA GCAGACGGGCGGCATCGCGCGGTTGCCTGTCCCGAGTTCGTTCGGAATGT CACCCTTGAATTCTCATGAAAATTGTAAGCGTTTGTGCTTTTCTGTGTTA AGAATCTCGCTTAAGTATGCAGTTTTCAGCAGAAATCATTCACGGCGCGG CTCGGGGGGCTCTCGCCGTTTCGTCGCAGATTGTGATGCCGCTTCATTCG TGATCTTGCTCACACCCTTGCTGCTCAACCCTCCCCCCTTACTTTGATTG GAGCTCCATGAAGCATCTAGCAGCTTTTCTCGGAGGACTAACCGGTGGTT TTGGAAGCTTATTCCGCTTTATTTTATGACTTTGTTGATACGTGCTCCGT TGTTCGGTTCGGTGTGGTTATGTTTCACTCATGTTTTGACTCGTTTCTTG CACGAAGCTTGCACCGTCTTGTTGCCTTATCACGCCGTTCCCTGCCCTCT TGACCGTCCCTATTTTTTTATGTATCGTTGCGTCGTTTGCCTTCGGACAA TTCACCGAACGATTCACTTGTTCATTCTTTTTCCCTCCCTCCACTCTTGA ACCGGTGAAATGATTTGAATCGAATGAACAAGGTGGTGGCGTTCGCTGCT GTGGTCCGGCTCATGTGCCGGCTGGATGTTCATCTACTCCGTCGGGTACT ACTTCACCGTGCTCAACATGAGCGGGGTAAGCAATACGGTCATCCCCGGT TTTAGGACACTTGTCTTTTTCGCATAGGTCAAGTGTGCTTATCGTGGGTA ACTCTCGTTACAATTCGAAGTGAGATGACTTACAAAGCCTCGTGCTTCAG AAAGCAGGAGTGTTCGTGCAGCGGGCAGTATCCTTTATTGCGGTGTTTTT CAAGCGGCGACGACAGTATTGCCACATACTTCGAAGCTAATGACAGCAAT GGGAATGGAATGGCGGTCAAATCAAAAATATCCATGAAAACACAAGATCA ACACGGAATGATAGTGGTAAGTAATAAGAGTCAGTGCTTGCCGTCTCGTT CGCCGTCCTTTGGTCATCAATCGATGGACCTTCTGCTGCTATCGATTGAC CTTCTGCTGCTGTCGATGGACCTTCTGCTGCTGTCGCGAAATTCGCGTTT CATCGCAGCACCTGGTTGGTCGGTGTATGCGATGGCAGTGCCTTCCTCCC CCAACGACTCATCCTCGGGGTGCACCTGTTGACTGTTTTGCTTTGAGTTA TCGACATCATATTTTGATGGATTTTTCCCTTCATTTGTTCGTTGCCCTCG TCGTTTCGTGTTGGTGTACATCCTTGACACCGGCCTACACCCTCTGCGAC TGCCACCACCATCCTTGACAACACCTCCATACCCTTCTACTGCCGTTCCC ATTTTTAGTGGATGGCGGCGTCCCTCTTCTTTGGGTACACCTTCGTGAAC ACGGTCTTCTTCTTCCTGCTCACCGGAACCGTCGGGTACTTCTCCTGCCA GTGGTTCATCAACGTCATCTACTCCTCCATCAAGGCAAAGCCCGATTGCT CCCTGTTTTCTCGCTGGCATCTCTCTGTCGACACCCTCGCACTGTGCGAT AGCCGAACATGCGGTTGAACGGGTGCAATACATGCCTTGCTTGTGACGTA AGGCCAAGTCATCATTCCGGCGGGCACCGCGTAAGCAAAGAAGTTCACTG TGTTGCATGTAATGATGTAGAGGGTACATAAATCCAGTGCTAATCCTTGC CCTAACCCACCCCCGAAAAATCCGAAAGACAATGAATCCCGTACTTGATT CCATCCGAATTTTGTGAATATCTGCGTAGCCACCCTCCGGTGGGATGCTT GCCGTCGTTCCGTACCTTTTTTGTCCCGTCACGGCAACACCGCCTACCCT ATCAGACGCATGCCGCTTTCCCAATCGATGTCGCGGTGCCCTAGCCGCCC TTCCCTGTATCAAACTCTAGCGAAGAAATGGAGGCTCGGTGTATCGCTAC TTGCCTCAATCCGTTCATGCCGACCCCCCTTCGCTGTCCCGATTCCAATC TCGCGGTTGCCCTTGCCCCTTGCCCCCCCCTCCCCTCCCCTTCTGGGCAC CACGTGTCCGCAGGTGGACTAAAGCGTGCGGCGGGCTAGGAGCTACTATT TTTTTTACCTGTTGCATGTTTTCGATCCCACGGTGCAGTGACGTCAGGAG CGGGGTGCCCAATGGTGCTTTCATTTGGGGGGGGGGATGACGGGAAATGC AGAAGAGGTATTGGCGCATGAACCACGCTGGAAATGCACCGCGCTTTTTC CTCTCACTCGGGACCAGAATATTGAAATGGTGTCCGGACTGTCACCGGCG AAGAACCGTGGAAGTATTTGTACGGGACGGTGGTTGCTGACGTGCCGCTA TAATACGTGTTCCTCTCGACGCATGAAGTTGGGTGGAATATGAACCGCAC CGTAGTTGCAATTGTGCCCGGCGGTGGTTGATGATGTGCAATACTGTATT AGCACGTGCACGTGACGGGGGCGGGCGGAGTCTGTATGGCAACCATAGTG GGACTTGTGCGGGACGGTAGTCGGTGATGGACCTGGAGCAGCACGTGGTG TGTGTCTATGTACTGTGCGTGTTTGAACCAAAATGTGGCGCATGTACTCA GCTCCCAAGTGGGGTAGATAACGTGTGCATCTATTCTATCCATCAACGTC GCAACCTGGACTGGCGCGAATGGCCGGGTGTGCGCGCGGGCTACGCTCGA CAATATGTGTGCACGACTGAAATTCTTCCTCGAGTCGTCCCTCGGTACCG GCGGTTTGGCTGTAGCGTCGACGTGGCAAGGTAGAGCAGCCGCCTTTACT TGTACGGAGTTTTTTTTTTTTTTGCAGCTGTTGTTTGAGAAGTGGGATCG ATGCGAAGCGTGAGAGCGCCGCAGGGCGAACTGAAACAGCACATCGTGAG TCGGCAGGAGAATGGGATACTTTGTTTCGTCTTTTTCTAGTAGCAGCATC GTCGAAGGGGGGCAGGCAGATTTTGCCGGCTCCTCCCACGTGTATATGTT CTGCAAGGACGTAGCGTGCCCAGCAGATATGTGGAATCTGGTCGTGAGGC CCTTGAAGAAGAATAAAAGTACTTGGCGTAGGGAAGGTGTCGATTTGGAA GGTTGTATTTCGAACAGGGCTTGAAACGCCCATCTGCCTCCCGTAAGACA GGCGGAAATTACATCAAGGAGGAGCTCCGTCGTGATTGGGGGTGCGGACA AGTTGTTTCGGGACGGAGTTCGCAGCCGGCAACAGAAGCGGCTACGATAA ACGCCGGGGCAAGCGAGCGTCCGACGAGCCCAAAAAGTTCCCTTACATCA AGCTTTAATCTTACATTGAACTCGGGTTTTTGTGACAAGCGACTTTGACT CTCTTACTTTTATCGTCCTTGCATGCCTCTTCCCTAATATGTAGCCGCTA CTTAAACTAGGTCGAGAATGGTGCACACGGTACTCCTCGCCTGTCGTTTG GCACGGCTAAGCAAGCAATGAAAACTTCAAGACGAAAATGTGAAAGTCTT TGTGTATCCTGAGCGGTCCAAAAACGCATGATCTAGCGTGGTGGCTGAGA GGGCTTCGCCGCGCTCCTTTCGCAGCGCCAGCCGAGTGCCAGGGGTGCAA GTTGTGCTGCACAAGTCGTCGAGTGAGATGGAGGCGGCGAAGTAAGGTCT CGCCCGCAGAGTGGGAGTTCGGGGTGGTCTGCAGTAGATGGGGTGCTGAA ACCGCGACGGCGGCAACAGGCCAGGGCAGCAGGGTGAAACACTCATTCCC GTCCCAATTTTTGCCAAACGAC
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Coding sequence (CDS) from alignment at P-fluviatile_contig83:60349..79820-

>mRNA_P-fluviatile_contig83.14834.1 ID=mRNA_P-fluviatile_contig83.14834.1|Name=mRNA_P-fluviatile_contig83.14834.1|organism=Porterinema fluviatile SAG_2381|type=CDS|length=2040bp|location=Sequence derived from alignment at P-fluviatile_contig83:60349..79820- (Porterinema fluviatile SAG_2381)
ATGTTTGCCAGCGTGATCCGCGACGGCTACCATGCGCATATGACGACCGC
CCATTTGCCCGCGGCCTACGAGATGTTTGCCAGCGTGATCCGCGACGGCT
ACCATGCGCATATGACGACCGCCCATTTGCCCGCGGCCTACGAGCCCTCC
CCTGGCGACCACGGGGCCCTTGCCCTCCCCTGGCGACCACGGGGCCCTTG
GTCGAAGATTGCCGAGCTTACCTGGATTGTTTCCTGTGTTTTTCGTTTTT
CGCAGGGGATTCCCGGTTGGGTTCTACATGGACGGCAATTCTTACCTGAA
CAACCACCTGCGCATGACGGTAGCCATCAATCCGAGAGATGAGGGCAAGA
CCAAGTTCCACATCGTCGAAGATTGCCGAGCTTACCTGGATTGTTTCCTG
TGTTTTTCGTTTTTCGCAGGGGATTCCCGGTTGGGTTCTACATGGACGGC
AATTCTTACCTGAACAACCACCTGCGCATGACGGTAGCCATCAATCCGAG
AGATGAGGGCAAGACCAAGTTCCACATCGTTGGATTCTTGGTGGAACCCT
TCTCAGTGCAGCACGACTTCCAAACGCCTTGGAGCGAGTTCAGCCAGATC
TCTACCTGCAGCAGCACGAGCGGGTTGGATTCTTGGTGGAACCCTTCTCA
GTGCAGCACGACTTCCAAACGCCTTGGAGCGAGTTCAGCCAGATCTCTAC
CTGCAGCAGCACGAGCGGCTACATGAAGACCGACCCCAACCGGTTCCTCA
GCACCGATTACGAGGGCGAGATCCTCTTCACCTATGACGTGGTCTTCGAC
GTAACCTCCATGCCCTGGACACAGAGCTACATGAAGACCGACCCCAACCG
GTTCCTCAGCACCGATTACGAGGGCGAGATCCTCTTCACCTATGACGTGG
TCTTCGACGTAACCTCCATGCCCTGGACACAGAGGTGGGACATCTACACG
AGCGGTCCCGTGGACAACCAGATCCACTGGTTCAGCATCACGAACTCCAG
CGTGATCGTCATGTTCCTCACAGTGCTGGTGGCCATGATAATGGTTCGCG
CTCTCCGGAAGGACATCCAGCGGTACAACCAAGAGGTGGGACATCTACAC
GAGCGGTCCCGTGGACAACCAGATCCACTGGTTCAGCATCACGAACTCCA
GCGTGATCGTCATGTTCCTCACAGTGCTGGTGGCCATGATAATGGTTCGC
GCTCTCCGGAAGGACATCCAGCGGTACAACCAAGAGGACATGGAGGAGGC
CAGCGAGGAGACCGGGTGGAAACTGGTGCACGGGGACGTTTTGCGGCCCC
CTTCCACCGCGCCTATGCTCTTCGCAGACATGGAGGAGGCCAGCGAGGAG
ACCGGGTGGAAACTGGTGCACGGGGACGTTTTGCGGCCCCCTTCCACCGC
GCCTATGCTCTTCGCAGTGTGCGTGGGCACCGGCGTTCAGCTGTGGACCG
TGAGCTTCATGGTGCTCTTCTTCAGCATGGTCCGCCTCGTGAGCCCCCTC
AAGCGCGGCGACATGCTGACGGTGTGCATTCTCATCTACGTGCTGACCGG
CGGCATTGCGGGGTACAATGCGGCCAAGATTCACCGGCGTTTCCGCGGCA
CCGAGTGGATCAAGGTGTGCGTGGGCACCGGCGTTCAGCTGTGGACCGTG
AGCTTCATGGTGCTCTTCTTCAGCATGGTCCGCCTCGTGAGCCCCCTCAA
GCGCGGCGACATGCTGACGGTGTGCATTCTCATCTACGTGCTGACCGGCG
GCATTGCGGGGTACAATGCGGCCAAGATTCACCGGCGTTTCCGCGGCACC
GAGTGGATCAAGATGACGCTTTTGACGTCCTTTACCTTCCCGGCGCTGGC
GGGGTCCGTGTTCTTGGTGGAGGGGTTCAGCAGTGGATCATCGGTTCCAC
TGGGGCGGTGCCCTTCCGCATTCTGAATGACGCTTTTGACGTCCTTTACC
TTCCCGGCGCTGGCGGGGTCCGTGTTCTTGGTGGAGGGGTTCAGCAGTGG
ATCATCGGTTCCACTGGGGCGGTGCCCTTCCGCATTCTGA
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