mRNA_P-fluviatile_contig20.4330.1 (mRNA) Porterinema fluviatile SAG_2381

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

Overview
NamemRNA_P-fluviatile_contig20.4330.1
Unique NamemRNA_P-fluviatile_contig20.4330.1
TypemRNA
OrganismPorterinema fluviatile SAG_2381 (Porterinema fluviatile SAG_2381)
Homology
BLAST of mRNA_P-fluviatile_contig20.4330.1 vs. uniprot
Match: D7FLL4_ECTSI (Uncharacterized protein n=1 Tax=Ectocarpus siliculosus TaxID=2880 RepID=D7FLL4_ECTSI)

HSP 1 Score: 1067 bits (2760), Expect = 0.000e+0
Identity = 551/794 (69.40%), Postives = 606/794 (76.32%), Query Frame = 1
Query:  562 EGKWHTGKVLYFVPPEEARPEPPSPREPMEVXXXXXXXXXXXXXXXXXXXXXXXGEK---FVRIHYQGWETRFDETLCTDSPNLQPVHTHSKK-KKKPDAKSRRPKASVKEWIREDDEGNVVARGIVGEDDPDDYLALEKAR-----ELEKVKAAGLEGGPTSRYGRVVVPRMKLSTLKGKDKAITVGGGDAEEVEVGRGSEEGRGGNGDGAKPKGRSARAGKKTHRGAFVAEGGGAAASIDDWICATCWQLDTPCLSDMVTCDGPCLRSFHVVCQDVGEDALDEEKWLCEDCDRGEHTCWQCGDSGPDNTVGGVFRCAVSGCGKFYHHGCVELNKNSNFRGGVDEGEDGQTVFKFRCGYHSCDTCETGRGGHKSHLYKCMKCPNAYHLNCIPPDARYHELALLCEAHPDDELPALKQEDSVLAGTVQWTEGERGREGKGAKEGVGEGDDANGEEAPAGISLRDLKLPKLXXXPPKEDQRSDRRHFRLPTSILDSYHSKPPPFQHICAMQFVAPKPPRMDPTPVCNCTGGTCGESCLNFMLRTECVCGNGIRSRYQNCKQGAKCGNRRLQDRAAAKVVPFREEGMGWGLRVAEDLPKGSLVGEYVGEVIDEKMVEHRMAEQRRLRPKDGEFYIMELAQSLFVDAKEKGNLMRLINHSCSPNCDVQAWSIAGYTRLGIYANKDLAKGESLSYDYKFSTNEKARFKCMCGAANCRGTLAPKKQEEESTEDGSKLKGKARREMLQKRERMARNRQARSQVGLLVSSKRLSLTGRVLPGDRTAEVKAGPPAKYFAFAR 2916
            EG+W+ GKVL+ V  EE   E     + MEV                       G+K     RIHYQGW  ++DETL  DSPNLQPVHTHSK+ KKKPD K +R K  VKEWIRED+ GN+VARGIVGEDDP D    ++ +     E E+ K   +EG  T+RYGRVVVPR+ L+T KGK KA    G DAE  E     EEG GG  DG    G+     K+T+R A   EGGGA  S DDWICA C QLDTPC+SDMVTCDGPCLRSFHVVC D+GEDAL EEKWLCEDC+R EH CWQCGD G DN VGGVFRC V  CG+FYH  CVELNKNS  +  VDEGEDGQ +FKFRC YH+CDTC +GRGG K+HLYKC+KCP AYHLNCIPPDARYHELAL+CEAHP+ ELPALKQEDS+L           GR+G    EG        GE AP   SL  LK PK    PPK + + D RHFRLP SIL SYHSKPPPFQH+CAMQFVAPKPPR+DPTP CNC+ G CG+SCLN MLRTECVCGNGIR++YQNCK GA CGNRRLQ+R  AKV PFRE GMGWGL+VA D+PKGSL+GEYVGEVIDE MVEHRMAEQRRLRP DGEFYIMEL QSLF+DAKEKGNLMRLINHSC+PNCDVQAW+IAGYTRLGIYA KDLAKGESLSYDYKFSTNEKARFKCMCGA NCRGTLAPK+QEEE TEDGSKLKGKAR+EMLQKRERMA+NRQARSQVG LV+ KRLSLTGRVLPGDRTAEVKAGPPAKYF FAR
Sbjct:    2 EGEWYLGKVLHTVDEEEEGGEGKPELQAMEVDGEGGEGGAVSAAG---------GDKETTLFRIHYQGWPNKYDETLSRDSPNLQPVHTHSKRLKKKPDRKKKRAK-EVKEWIREDEFGNIVARGIVGEDDPYDPKVFDRKKAEVEGEAEETKPVPVEGATTNRYGRVVVPRVNLTTPKGKGKAKDPNGDDAECNE-----EEGEGGTADGETAAGK-----KRTNRKASAVEGGGAVNSADDWICAMCSQLDTPCMSDMVTCDGPCLRSFHVVCLDLGEDALKEEKWLCEDCERAEHECWQCGDYGQDNVVGGVFRCGVPSCGRFYHRHCVELNKNSVVKADVDEGEDGQPIFKFRCAYHTCDTCCSGRGGTKNHLYKCIKCPTAYHLNCIPPDARYHELALICEAHPEAELPALKQEDSIL-----------GRKG----EGEXXXXXXAGEAAPVKFSLPTLKFPK---HPPKAENKGDLRHFRLPMSILTSYHSKPPPFQHLCAMQFVAPKPPRVDPTPACNCSEGVCGDSCLNAMLRTECVCGNGIRAKYQNCKLGAGCGNRRLQNRVNAKVAPFREAGMGWGLKVAVDVPKGSLIGEYVGEVIDEAMVEHRMAEQRRLRPNDGEFYIMELGQSLFIDAKEKGNLMRLINHSCNPNCDVQAWNIAGYTRLGIYAKKDLAKGESLSYDYKFSTNEKARFKCMCGAENCRGTLAPKEQEEEITEDGSKLKGKARKEMLQKRERMAKNRQARSQVGQLVTCKRLSLTGRVLPGDRTAEVKAGPPAKYFGFAR 757          
BLAST of mRNA_P-fluviatile_contig20.4330.1 vs. uniprot
Match: A0A4D9CXX2_9STRA (Uncharacterized protein n=1 Tax=Nannochloropsis salina CCMP1776 TaxID=1027361 RepID=A0A4D9CXX2_9STRA)

HSP 1 Score: 407 bits (1045), Expect = 5.700e-117
Identity = 237/619 (38.29%), Postives = 326/619 (52.67%), Query Frame = 1
Query: 1222 FVAEGGGAAASIDDWICATCWQLDTPCLSDMVTCDGPCLRSFHVVCQDV-GEDALDEEKWLCEDCDRGEHTCWQCGDSGPDN-TVGGVFRCAVSGCGKFYHHGCVELNKNSNF----RGGVDEGEDGQTVFKFRCGYHSCDTCETGR--GGHKSHLYKCMKCPNAYHLNCIPPDARYHELALLCEAHPDD-ELPALKQEDSVL-AGTVQWTEGERGREGKGAKEGVGEGDDANGEEAPAGISLRDLKLPKLXXXPPKEDQRSDRRHFRLPTSILDSYHSKPPPFQHICAMQFVAPKPPRMDPTPVCNCTGGTCGESCLNFMLRTECVCGNGI--------------------RSRYQNCKQGAKCGNRRLQDRAAAKVVPFREEGMGWGLRVAEDLPKGSLVGEYVGEVIDEKMVEHRMAEQRRLRPKDGEFYIMELAQSLFVDAKEKGNLMRLINHSCSPNCDVQAWSIAGYTRLGIYANKDLAKGESLSYDYKFSTNEKARFKCMCGAANCRGTLAPKKQ-EEESTEDGSKLKGKA-RREMLQKRERMARNRQARSQVGLLVSSKRLSLTGRVLPGDRTAEVKAGPPAKYFAFARDQGIFLVRNARAGADLLTRKRM 2982
            F+ + GGA    +DW+C  C +++      +V CDGPC RSFH  C  +  E+    E WLC+ C   EHTC+ CGD+G D+    GV +C    CGKFYH  CV    N       +G  D    G   FKF C  H CD C  GR  G +++ L+ C  CP AYHLNCIPP  +YHE  LLC  H ++ +LP L   D+ L   TV                  G                  L +      PP+    +    FRLPT +LD+ +SKP P+ HI  +++   K P  +P P C C G  CGE CLN +L  ECV                         + ++ NC  G  CGNR  +++       FRE G GWGLR  E++ KG LV EYVGEVID+ ++E R+ E  R  P D   Y+MEL    ++DA+ KGN  R INHSC+PNC++Q W++ G+TR+GI A  D++ G  LSYDY+F+TNE+ +FKC CGA  CRGTLAP+ Q  E+ T +  +   +  R+++LQ  ++  R  QA         + R +LT + LPGD   E+++GPP ++   A++  IFLVRN   G D +TR+ +
Sbjct:  340 FLVDTGGA--DQNDWVCGVCEEMEKSEGDRLVLCDGPCKRSFHQACLGMTAEEVRVLETWLCDQCRDREHTCFVCGDTGKDDGPTDGVHKCQKPQCGKFYHAHCVSQRPNVTIAKHQQGEDDAAGAGSLRFKFVCPMHICDLCGKGRESGNNRNQLFPCWLCPRAYHLNCIPPACKYHEYLLLCPEHSEEMDLPRLPGWDAELETQTVVXXXXXXXXXXXXXXXXXGR-----------------LSIALASLLPPRHVPAA----FRLPTVLLDAVNSKPKPYSHISCLKYQC-KVPEREPGPECQCEG-QCGEGCLNRLLHIECVGXXXXXXXXXXXXXXXXXXXLKGDKKEKHHNCNLGPACGNRAFRNKEYITHQIFREGGCGWGLRTLENVRKGQLVFEYVGEVIDDDILELRLQEHAREHPNDHNMYVMELESGYYLDARTKGNASRFINHSCAPNCELQKWNVKGFTRIGIMAITDISAGTPLSYDYQFATNEEGKFKCHCGAPTCRGTLAPQNQLTEDQTMEALRTGSRTDRKKLLQLCKKRERREQAXXXXXXXXXAARKNLTSQYLPGDSILEIRSGPPMRFLRLAKESKIFLVRNVIQGDDFVTRQEL 933          
BLAST of mRNA_P-fluviatile_contig20.4330.1 vs. uniprot
Match: A0A5D6Y2M7_9STRA (Uncharacterized protein n=1 Tax=Pythium brassicum TaxID=1485010 RepID=A0A5D6Y2M7_9STRA)

HSP 1 Score: 350 bits (899), Expect = 7.760e-99
Identity = 212/602 (35.22%), Postives = 313/602 (51.99%), Query Frame = 1
Query: 1255 IDDWICATCWQLDTPCLSDMVTCDGPCLRSFHVVCQDVGEDALDEEKWLCEDCDRGEHTCWQCGDSGPDNTVGGVFRCAVSGCGKFYHHGCVELNKNSN-FRGGVDEGEDGQTVFK--FRCGYHSCDTCETGRGGHKSHLYKCMKCPNAYHLNCIPPDARYHELALLCEAHPDDELPALKQ---EDSVL-AGTVQWTEGERGREGKGAKEGVGEGDDANGEEAPAGISLRDLKLPKLXXXPPKEDQRSDRRHFRLPTSILDSYHSKPPPFQHICAMQFVAPKPPR--MDPTPVCNCTGGTCGESCLNFMLRTEC---VCGNGIR----SRYQNCKQGAKCGNRRLQDRAAAKVVPFREEGMGWGLRVAEDLPKGSLVGEYVGEVIDEKMVEHRMAEQRRLRPKDGEFYIMELAQSLFVDAKEKGNLMRLINHSCSPNCDVQAWSIAGYTRLGIYANKDLAKGESLSYDYKFSTNEKARFKCMCGAANCRGTLAPKKQEEESTEDGSKLKGKARREMLQKRERMARNRQARSQVGLLVSSKRLSLTGRVLP-GDRTAE--VKAGPPAKYFAFARDQGIFLVRNARAGADLLTRKRMLATKAKA 3003
            ++D +CA C Q++   L+DM+ CDG CL S+H  C  + E A + E+WLCE C   E  C+ CG +G  N  GGVF C    CGKFYH  CV  ++ S  F+ G D  ++    F   FRC  H C  CE  + G  S L  C++CP +YH  C+PP ARY+ +ALLC  HP D+LP +      D +L   TV +                              + L  L +PK     P    + D  HFRL  ++++    K PP++ +    +   KPP   ++  P C CT   CG+ C+N +  TEC       G++    +R  NC  G  CGNR L  +   +   F     GW LR+ E +  G LV EYVGEV++E   E R+    R  P+D   YIMEL++ +++DA+ KG++ R INHSC+PNC +  W + G  R+ I A +D+  GE LSYDY+F T +   ++C C    CRGT+AP+K  +     G + K   ++E LQ+ +R  ++ + +    + ++++RLSLT ++   GD   +  V+ GP  +  A+A+   +FL RNA  G D L RK +   K +A
Sbjct:  235 LEDDLCAACGQIEDDELTDMILCDGGCLSSYHFSCLGI-EAAPEGEQWLCEQCRTNEQKCFACGRNGTINEKGGVFCCGAPACGKFYHQSCVSAHRLSRRFKRGKDGADEDALEFDAPFRCPRHVCTVCEDAKKG--SDLMYCIRCPESYHPQCVPPSARYNSVALLCSRHPLDQLPKIPSFYYSDPLLDTVTVDFN-----------------------------LRLPLLFMPKAE---PDAADKHDCHHFRLLLNLVEDVRQKAPPYKKLGRSIYTFKKPPTESLEDAPTCVCTSH-CGDDCINRLSFTECYGPAPTPGMKLTKLNRESNCGLGEACGNRALHQKLYPRFDKFYTPDKGWALRLLEPVKAGQLVIEYVGEVVNEDEKERRLQHHARTTPEDKNMYIMELSKGVYIDARFKGSVSRYINHSCAPNCHLLKWRVKGENRIAITALEDIPAGEELSYDYQFHTQQAMEWRCHCKTPACRGTMAPEKINQGDAGAGPEKKL-TKKEQLQRMKRAKKHEKIQQGREVKLTARRLSLTSQLCGFGDTGGKSLVRVGPAPRELAWAKLNRLFLARNATRGFDFLKRKALKDRKVRA 799          
BLAST of mRNA_P-fluviatile_contig20.4330.1 vs. uniprot
Match: A0A662YAQ6_9STRA (Uncharacterized protein n=2 Tax=Nothophytophthora sp. Chile5 TaxID=2483409 RepID=A0A662YAQ6_9STRA)

HSP 1 Score: 352 bits (903), Expect = 7.960e-99
Identity = 212/599 (35.39%), Postives = 301/599 (50.25%), Query Frame = 1
Query: 1267 ICATCWQLDTPCLSDMVTCDGPCLRSFHVVCQDVGEDALDEEKWLCEDCDRGEHTCWQCGDSGPDNTVGGVFRCAVSGCGKFYHHGCVELNKNSNFRGGVD-----EGEDGQTVFKFRCGYHSCDTCETGRGGHKSHLYKCMKCPNAYHLNCIPPDARYHELALLCEAHPDDELPALKQ----EDSVLAGTVQWTEGERGREGKGAKEGVGEGDDANGEEAPAGISLRDLKLPKLXXXPPKEDQRSDRRHFRLPTSILDSYHSKPPPFQHICAMQFVAPKPP-RMDPTPVCNCTGGTCGESCLNFMLRTEC-----VCGNGIR--SRYQNCKQGAKCGNRRLQDRAAAKVVPFREEGMGWGLRVAEDLPKGSLVGEYVGEVIDEKMVEHRMAEQRRLRPKDGEFYIMELAQSLFVDAKEKGNLMRLINHSCSPNCDVQAWSIAGYTRLGIYANKDLAKGESLSYDYKFSTNEKARFKCMCGAANCRGTLAPKKQEEESTEDGSKLKGKARREMLQKRERMARNRQARSQVGLLVSSKRLSLTGRVLPGDRTA----EVKAGPPAKYFAFARDQGIFLVRNARAGADLLTRKRMLATKAK 3000
            +C  C +++   L+DM+ CDG CL+S+H  C  + E A +  KWLCE C   E  C+ CG +G  N  GGVFRC V+ CGKF+H  C+  NK S   G        EGE       FRC  H C  C+  +    S L  C+KCP AYH  C+PP ARY+ + LLC  HPD++LP +      + S+   TV                                 S   L L  L    P  +   D  HFRL  SI++    +PP F+ +    +   +P   ++ +PVC C    CG+ C+N +  TEC     + G      +R  NC  G  CGNR L  +   +   F     GWGLR+ +++  G LV EYVGEVI+E+  E R+ E  +  P+D   YIMEL +  ++DA+ KG++ R INHSC PNC +  W + G  R+ I A KD+  G  LSYDY+F T +   +KC C + NCRGT+AP+K  + S   GS  K   ++E L+  +R     + + +  +  +++RLSLT  +  GDR        ++GP  +   +AR   +FL RNA +G D   RK +   K K
Sbjct:  308 LCGVCGEIEDGDLTDMILCDGGCLKSYHFSCLGI-EAAPEGGKWLCEQCRTNEQLCFACGRNGTINEKGGVFRCNVTSCGKFFHQSCINANKMSRRAGKTKTAVAGEGELLDFDASFRCPRHICSVCKGEKKS--SDLMCCLKCPEAYHPQCVPPSARYNTIGLLCWRHPDEDLPKIPSYYLSDRSIDTVTVD--------------------------------SSMHLPLMFLPKRDPDANNIDDCHHFRLLRSIIEDVRQQPPTFRKLGRSVYTFKQPKVSLEDSPVCVCKE-KCGDDCINRLSFTECFGPAPMAGMKFNKHNRESNCMLGENCGNRALHQKVYPRFQRFHTVEKGWGLRIMDNVKAGQLVIEYVGEVINEEDKERRLQEHAKKTPEDKNMYIMELGKGEYIDARFKGSVSRFINHSCDPNCHLLKWRVKGVNRIAITALKDIETGTELSYDYQFHTKQAMEWKCHCQSKNCRGTMAPEKINQVS---GSPAKKLTKKEKLKMHKRAMVQERIQHEKEVKNTARRLSLTAHISMGDRATLDKMAARSGPATRELQWARYYRVFLTRNAMSGFDFKRRKELKDRKIK 867          
BLAST of mRNA_P-fluviatile_contig20.4330.1 vs. uniprot
Match: A0A8K1FGZ4_PYTOL (Uncharacterized protein n=1 Tax=Pythium oligandrum TaxID=41045 RepID=A0A8K1FGZ4_PYTOL)

HSP 1 Score: 348 bits (892), Expect = 3.410e-97
Identity = 214/620 (34.52%), Postives = 302/620 (48.71%), Query Frame = 1
Query: 1270 CATCWQLDTPCLSDMVTCDGPCLRSFHVVCQDVGEDALDEEKWLCEDCDRGEHTCWQCGDSGPDNTVGGVFRCAVSGCGKFYHHGCVELNKNSNFRGGV--------DEGEDGQTVFK-------------FRCGYHSCDTCETGRGGHKSHLYKCMKCPNAYHLNCIPPDARYHELALLCEAHPDDELPALKQE-------DSVLAGTVQWTEGERGREGKGAKEGVGEGDDANGEEAPAGISLRDLKLPKLXXXPPKEDQRSDRRHFRLPTSILDSYHSKPPPFQHICAMQFVAPKPPR-MDPTPVCNCTGGTCGESCLNFMLRTECV---------CGNGIRSRYQNCKQGAKCGNRRLQDRAAAKVVPFREEGMGWGLRVAEDLPKGSLVGEYVGEVIDEKMVEHRMAEQRRLRPKDGEFYIMELAQSLFVDAKEKGNLMRLINHSCSPNCDVQAWSIAGYTRLGIYANKDLAKGESLSYDYKFSTNEKARFKCMCGAANCRGTLAPKKQE-EESTEDGSKLKGKARREMLQKRERMARNRQARSQVGLLVSSKRLSLTGRVLPGDRTAEVKAGPPAKYFAFARDQGIFLVRNARAGADLLTRKRML----ATKAK 3000
            CA C + +   ++DM+ CDG CL S+H  C  + E   +++KWLCE C   E  C+ CG +      GGVFRC+V  CGKFYH  CV  NK S   G          +   +G T                FRC  H C  CE  + G  S L  C+KCP +YH +C+PP ARY+ + LLC  HP+D+LP +  +       DSV+                          D N       + L  L LP+     P     +D  HFRL    LD    +PP ++ +    +   +P   ++  P+C C   +CG+ C+N +  TEC               +++  NC  G +CGNR L  R   K   F     GWGL++ E +  G LV EYVGEVI+E+    R++E  RL P+D   YIMEL+  +++DA+ KG++ R INHSC PNC +  W++ G  R+ I A  D+  G  LSYDY+F T++  +F+C C + NCRGT+AP+K       EDG K   K  ++   KR        A  +     +++RLS T    P  R+   + GP  +   +A+    FL+RNA  G D L R+ ML    ATKAK
Sbjct:  302 CAICGEYEDDAMTDMIFCDGGCLNSYHFSCLGLDEMPQEDDKWLCEQCRTNEQQCFCCGRNDTIGERGGVFRCSVPSCGKFYHQNCVNANKLSRRMGRASKPTASTAESSAEGNTTTDADESSASEAEMGAFRCPRHICSVCEDTKRG--SDLMYCLKCPESYHPHCVPPSARYNNVGLLCFRHPEDKLPRIPTQFLHDRNFDSVVV-------------------------DYN-------LRLPTLFLPRQE---PDASNANDCHHFRLSVDFLDDVKQQPPTYRKLARNLYTFKQPKESLEDVPLCVCKE-SCGDDCINRLSFTECFGPAPTPGMPFNRADKNKESNCPLGEQCGNRALHQRMYPKFERFHSPDKGWGLKILEPVKAGQLVIEYVGEVINEEEKNRRLSEHARLNPEDKNMYIMELSNGVYIDARHKGSVSRFINHSCDPNCHLLKWNVRGVNRIAITALTDIEAGVELSYDYQFHTSQAMQFRCFCKSKNCRGTMAPEKLNLSADEEDGGKKLTKKEQQXXLKRAMQQEKLNAEKEEK--ATARRLSCTA---PISRSI-ARTGPATRELLWAKQTHPFLMRNAIRGFDFLARREMLDKRIATKAK 877          
BLAST of mRNA_P-fluviatile_contig20.4330.1 vs. uniprot
Match: V9FEG1_PHYPR (Uncharacterized protein n=9 Tax=Phytophthora TaxID=4783 RepID=V9FEG1_PHYPR)

HSP 1 Score: 348 bits (893), Expect = 8.960e-97
Identity = 242/775 (31.23%), Postives = 361/775 (46.58%), Query Frame = 1
Query:  742 IHYQGWETRFDETL-CTDSPNLQPVHTHSKKKKKPDAKSRRPKASVKEWIRED---DEGNVVARGIVGEDDPDDYLALEKARELEKVKAAGLEGGPTSRYGRVVVPRMKLSTLKGKDKAITVGGGDAEEVEVGRGSEEGRGGNGDGAKPKGRSARAGKKTHRGAFVAEGGGAAASIDDWICATCWQLDTPCLSDMVTCDGPCLRSFHVVCQDVGEDALDEEKWLCEDCDRGEHTCWQCGDSGPDNTVGGVFRCAVSGCGKFYHHGCVELNKNSNFRGGVDEGEDGQTVFK--------FRCGYHSCDTCETGRGGHKSHLYKCMKCPNAYHLNCIPPDARYHELALLCEAHPDDELPALKQ----EDSVLAGTVQWTEGERGREGKGAKEGVGEGDDANGEEAPAGISLRDLKLPKLXXXPPKEDQRSDRRHFRLPTSILDSYHSKPPPFQHICAMQFVAPKPP-RMDPTPVCNCTGGTCGESCLNFMLRTEC---VCGNGIR----SRYQNCKQGAKCGNRRLQDRAAAKVVPFREEGMGWGLRVAEDLPKGSLVGEYVGEVIDEKMVEHRMAEQRRLRPKDGEFYIMELAQSLFVDAKEKGNLMRLINHSCSPNCDVQAWSIAGYTRLGIYANKDLAKGESLSYDYKFSTNEKARFKCMCGAANCRGTLAPKKQEEESTEDGSKLKGKARREMLQKRERMARNRQARSQVGLLVSSKRLSLTGRVLPGDRTAE----VKAGPPAKYFAFARDQGIFLVRNARAGADLLTRKRM 2982
            +HY GW ++ DE +  T S  +QP  T +                 K W +     D+ NVV + +      DD L    A + E V A    G   +R GR +  R++   LK K                              A PK       KK  + A   E G      ++ +C  C +++   L+DM+ CDG CL+S+H  C  + + A D E+WLCE C   E  C+ CG +G  N  GGVFRC+   CGKF+H  CV+ NK S   GG  + + G    +        FRC  H C  CE  +    S L  C+KCP +YH  C+PP ARY+ + LLC  H ++ELP +      + ++   TV                              + + L  + LPK     P     +D  HFRL  SI++    +PP ++ +    +   +P   ++  P C C    CG+ C+N +  TEC       G++    +R  NC  G  CGNR L  +   +   F     GW LR+ E +  G LV EYVGEVI+E+  E R+ +  +  P+D   YIMEL +  ++DA+ KG++ R INHSC PNC +  W + G  R+ I A KD+  G  LSYDY+F T +   +KC C + NCRGT+AP+K  +       KL    ++E +++R+R     + +    +  +++RLSLT ++  GDRT      V+ GP A+   +A+   +F +R+A+ G +   RK M
Sbjct:  228 VHYMGWNSKRDEKIDITSSYRIQPRATKA----------------TKAWTKHQAKIDKRNVVKK-VEATPSTDDNLGRLGAEQHELVPAFVQTG--LTRSGRAITKRVENGALKPK------------------------------APPK-------KK--KDAAAVESG----FPEEDLCGVCGEIEDDDLTDMILCDGGCLKSYHFSCLGI-DSAPDGEEWLCEQCRTNEQLCFACGRNGTINEKGGVFRCSAPSCGKFFHQACVDANKMSRRAGG--KAKPGSATVEELLESDASFRCPRHVCFVCEGKKKS--SDLMCCLKCPESYHPQCVPPSARYNSVGLLCWRHSEEELPKIPSFYLSDRNIDTVTVD-----------------------------SSLHLPWMFLPKRD---PDASNPNDCHHFRLLKSIIEDVRLQPPTYRKLGRSIYTFKQPKVSLEDAPTCVCKE-KCGDDCINRLSFTECFGPAPTPGMKFNKHNRESNCMLGENCGNRALHQKVYPRFQKFHTVEKGWALRLLEPVKAGQLVIEYVGEVINEEEKERRLLDHAKNSPEDKNMYIMELGKGEYIDARFKGSVSRFINHSCDPNCHLLKWRVKGVNRIAITALKDIKPGTELSYDYQFHTKQAMEWKCHCKSKNCRGTMAPEKINQALESPAKKL---TKKEQIKQRKRALMQEKIQQDKEIKSTARRLSLTAQISMGDRTTMDKMVVRTGPAARELQWAKYYHLFNIRDAKHGFNFKLRKEM 899          
BLAST of mRNA_P-fluviatile_contig20.4330.1 vs. uniprot
Match: A0A2D4BX06_PYTIN (Uncharacterized protein n=1 Tax=Pythium insidiosum TaxID=114742 RepID=A0A2D4BX06_PYTIN)

HSP 1 Score: 337 bits (863), Expect = 2.140e-95
Identity = 205/597 (34.34%), Postives = 293/597 (49.08%), Query Frame = 1
Query: 1258 DDWICATCWQLDTPCLSDMVTCDGPCLRSFHVVCQDVGEDALDEEK-WLCEDCDRGEHTCWQCGDSGPDNTVGGVFRCAVSGCGKFYHHGCVELNKNSNFRGGVDEGE---------------DGQTVFKFRCGYHSCDTCETGRGGHKSHLYKCMKCPNAYHLNCIPPDARYHELALLCEAHPDDELPALKQEDSVLAGTVQWTEGERGREGKGAKEGVGEGDDANGEEAPAGISLRDLKLPKLXXXP--PKEDQRSDRRHFRLPTSILDSYHSKPPPFQHICAMQFVAPKP-PRMDPTPVCNCTGGTCGESCLNFMLRTECV-----------CGNGIRSRYQNCKQGAKCGNRRLQDRAAAKVVPFREEGMGWGLRVAEDLPKGSLVGEYVGEVIDEKMVEHRMAEQRRLRPKDGEFYIMELAQSLFVDAKEKGNLMRLINHSCSPNCDVQAWSIAGYTRLGIYANKDLAKGESLSYDYKFSTNEKARFKCMCGAANCRGTLAPKKQ----EEESTEDGSKLKGKARREMLQKRERMARNRQARSQVGLLVSSKRLSLTGRVLPGDRTAEVKAGPPAKYFAFARDQGIFLVRNA 2946
            ++ +C TC + +   L+DM+ CDG CL S+H+ C  +G D++ EE  WLCE C   E  C+ CG +G     GGVFRC+V  CGKFYH  C+  +K +   G   +                        FRC  H C  CE  +    S L  C+KCP +YH +C+PP ARY+ + LLC  HP D LP +  +  +                           D N +      +LR   LP L   P  PKE    D  HFRL    +++   +PP ++ +    +   +    ++  P+C C    CG+ C+N +   EC               G R +  NC  G  CGNR L  R   +   F     GWGL+V E +  G LV EYVGEVI+E+    R++E  RL P+D   YIMEL+  +++DA+ KG++ R INHS  PNC +  W++ G  R+ I A KD+A GE LSYDY+F T++   ++C C A  CRGT+AP+K     +    E G KL  K R + +++     R +  + +   L   +RLSLT    P  RT   + GPP +  ++AR   +FL RNA
Sbjct:  165 EESLCGTCGEFEDDALTDMIFCDGGCLNSYHISC--LGLDSVPEEDTWLCEQCRTNEQQCFACGRNGTIGERGGVFRCSVISCGKFYHQSCINASKLARRFGRAGKSAAXXXXXXXXXXXXXXXXXXASAFRCPRHVCSVCENSKKS--SDLMFCLKCPESYHPHCVPPSARYNNVGLLCYRHPHDTLPRIPAQFLL---------------------------DRNFDSVVVDFNLR---LPTLYLPPNEPKESDVDDCHHFRLQIDCMETVKKQPPTYRTLVRNXYTFKQTRENLEDIPMCVCKD-KCGDDCINRLSFIECFGSPPTAPGSXDSSKGERIKEFNCPLGENCGNRALHQRIYPRFERFHTAEKGWGLKVLEPVKAGQLVIEYVGEVINEEEKNRRLSEHARLNPEDKNMYIMELSNGVYIDARHKGSVSRFINHSXDPNCRLLKWNVRGVNRIAITAVKDIAAGEELSYDYQFHTSQAMEWRCFCKAKGCRGTMAPEKLRMDGDHSDEESGRKLTKKERAKKIKRAMIQERIQNEKEEKATL---RRLSLTA---PITRTMS-RTGPPKRELSYARHYRLFLTRNA 719          
BLAST of mRNA_P-fluviatile_contig20.4330.1 vs. uniprot
Match: A0A6A4FFA2_9STRA (Uncharacterized protein n=3 Tax=Phytophthora TaxID=4783 RepID=A0A6A4FFA2_9STRA)

HSP 1 Score: 343 bits (880), Expect = 8.440e-95
Identity = 211/594 (35.52%), Postives = 304/594 (51.18%), Query Frame = 1
Query: 1267 ICATCWQLDTPCLSDMVTCDGPCLRSFHVVCQDVGEDALDEEKWLCEDCDRGEHTCWQCGDSGPDNTVGGVFRCAVSGCGKFYHHGCVELNKNSNFRGG-VDEG-----EDGQTVFKFRCGYHSCDTCETGRGGHKSHLYKCMKCPNAYHLNCIPPDARYHELALLCEAHPDDELPALKQ----EDSVLAGTVQWTEGERGREGKGAKEGVGEGDDANGEEAPAGISLRDLKLPKLXXXPPKEDQRSDRRHFRLPTSILDSYHSKPPPFQHICAMQFVAPKPP-RMDPTPVCNCTGGTCGESCLNFMLRTEC---VCGNGIR----SRYQNCKQGAKCGNRRLQDRAAAKVVPFREEGMGWGLRVAEDLPKGSLVGEYVGEVIDEKMVEHRMAEQRRLRPKDGEFYIMELAQSLFVDAKEKGNLMRLINHSCSPNCDVQAWSIAGYTRLGIYANKDLAKGESLSYDYKFSTNEKARFKCMCGAANCRGTLAPKKQEEESTEDGSKLKGKARREMLQKRERMARNRQARSQVGLLVSSKRLSLTGRVLPGDRTA----EVKAGPPAKYFAFARDQGIFLVRNARAGADLLTRKRM 2982
            +C  C +++   L+DM+ CDG CL+S+H  C  + E A + E+WLCE C   E  C+ CG +G  +  GGVFRC+V+ CGKF+H  CV+ NK S   GG V  G     E  +T   FRC  H C  CE  +    S L  C+KCP AYH  C+PP ARY+ + LLC  H +DELP +      + ++   TV                              + + L  + LPK     P      D  HFRL  SI++    +PP ++ +    +   +P   ++  P+C CT   CG+ C+N +  TEC       G++    +R  NC  G  CGNR L  +   +   F     GW LR  E +  G LV EYVGEVI+E+  E R+ +  +  P D   YIMEL +  ++DA+ KG++ R INHSC PNC +  W + G  R+ I A KD+  G  LSYDY+F T +   +KC C A NCRGT+AP+K  +  T    KL    ++E +++R+R     + +    +  ++KRLSLT  V  GDRT      V+ GP  +   +A+   +F VR+A+ G +   RK +
Sbjct:  394 LCGICGEIEDDDLTDMILCDGGCLKSYHFSCLGI-ESAPEGEEWLCEQCRTNEQLCFGCGRNGTISEKGGVFRCSVASCGKFFHQTCVDANKMSRRSGGKVKPGSATAEELLETDASFRCPRHICFVCEGKKKS--SDLMCCLKCPEAYHPQCVPPSARYNTVGLLCWRHAEDELPKIPSFYLSDRNIDTVTVD-----------------------------SSLHLPWMYLPKRD---PDASSPDDCHHFRLLRSIIEDVRLQPPTYRKLGRSIYTFKQPKVSLEDAPMCVCTE-KCGDDCINRLSFTECFGPASTPGMKFNKHTRESNCMLGENCGNRALHQKVYPRFQKFHTVEKGWALRALEPVKAGQLVIEYVGEVINEEEKERRLLDHAKNSPDDKNMYIMELGKGEYIDARFKGSVSRFINHSCDPNCHLLKWRVKGVNRIAITALKDIEPGTELSYDYQFHTKQAMEWKCHCKAKNCRGTMAPEKINQHET-PAKKL---TKKEQMKQRKRALIQEKIQHDKEVKSTAKRLSLTTHVSMGDRTTIDKIAVRTGPATRELQWAKYNHLFNVRDAKHGFNFKLRKEL 947          
BLAST of mRNA_P-fluviatile_contig20.4330.1 vs. uniprot
Match: A0A329RP63_9STRA (Uncharacterized protein n=2 Tax=Phytophthora TaxID=4783 RepID=A0A329RP63_9STRA)

HSP 1 Score: 340 bits (871), Expect = 4.130e-94
Identity = 246/773 (31.82%), Postives = 360/773 (46.57%), Query Frame = 1
Query:  742 IHYQGWETRFDETLC-TDSPNLQPVHTHSKKK-KKPDAKSRRPKASVKEWIREDDEGNVVARGIVGEDDPDDYLALEKARELEKVKAAGLEGGPTSRYGRVVVPRMKLSTLKGKDKAITVGGGDAEEVEVGRGSEEGRGGNGDGAKPKGRSARAGKKTHRGAFVAEGGGAAASIDDWICATCWQLDTPCLSDMVTCDGPCLRSFHVVCQDVGEDALDEEKWLCEDCDRGEHTCWQCGDSGPDNTVGGVFRCAVSGCGKFYHHGCVELNKNSNFRGGVDEGEDGQTVFK--------FRCGYHSCDTCETGRGGHKSHLYKCMKCPNAYHLNCIPPDARYHELALLCEAHPDDELPALKQ----EDSVLAGTVQWTEGERGREGKGAKEGVGEGDDANGEEAPAGISLRDLKLPKLXXXPPKEDQRSDRRHFRLPTSILDSYHSKPPPFQHICAMQFVAPKPP-RMDPTPVCNCTGGTCGESCLNFMLRTEC---VCGNGIR----SRYQNCKQGAKCGNRRLQDRAAAKVVPFREEGMGWGLRVAEDLPKGSLVGEYVGEVIDEKMVEHRMAEQRRLRPKDGEFYIMELAQSLFVDAKEKGNLMRLINHSCSPNCDVQAWSIAGYTRLGIYANKDLAKGESLSYDYKFSTNEKARFKCMCGAANCRGTLAPKKQEEESTEDGSKLKGKARREMLQKRERMARNRQARSQVGLLVSSKRLSLTGRVLPGDRTA----EVKAGPPAKYFAFARDQGIFLVRNARAGADLLTRKRM 2982
            +HY GW ++ DE +    S  +QP  T + K   K  AK  + KA  K          + A   V     DD L    A + E + A    G   +R GR +  R++   LK K                              A PK       KK  +   V E G      ++ +C  C +++   L+DM+ CDG CL+S+H  C  + + A D EKWLCE C   E  C+ CG +G  N  GGVFRC+   CGKF+H  CV+ NK S   GG  + + G +  +        FRC  H C  CE  +    S L  C+KCP +YH  C+PP ARY+ + LLC  H  +ELP +      + ++   TV                              + + L  + LPK     P     +D  HFRL  SI++    +PP ++ +    +   +P   ++  P C C   +CG+ C+N +  TEC       G++    +R  NC  G  CGNR L  +   +   F     GW LRV E +  G LV EYVGEVI+E+  E R+ +  +  P+D   YIMEL +  ++DA+ KG++ R INHSC PNC +  W + G  R+ I A KD+  G  LSYDY+F T +   +KC C A NCRGT+AP+K  +       KL    ++E +++R+R     + +    +  +++RLSLT  V  GDRT      V+ GP  +   +A+   +F +R+A+ G +   RK M
Sbjct:  196 VHYMGWNSKCDEKIDKVGSYRIQPRSTKATKAWAKHQAKIDKRKAEKK----------LEAAPSV-----DDNLGCLGAEQQELMPAFVQTG--LTRSGRAITKRVENGALKPK------------------------------APPK-------KK--KDTAVVESG----FPEEDLCGVCGEIEDDDLTDMILCDGGCLKSYHFSCLGI-DSAPDGEKWLCEQCRTNEQLCFACGRNGTINEKGGVFRCSAPSCGKFFHQTCVDANKMSRRAGG--KAKPGSSTVEELLESDASFRCPRHVCFVCEGKKKS--SDLMCCLKCPESYHPQCVPPSARYNSVGLLCWRHFGEELPKIPSFYLSDRNIDTVTVD-----------------------------SSLHLPWMFLPKRD---PDTSNPNDCHHFRLLKSIIEDVRLQPPTYRKLGRSIYTFKQPKVSLEDAPTCVCKE-SCGDDCINRLSFTECFGPAPTPGMKFNKHNRESNCMLGENCGNRALHQKVYPRFQKFHTVEKGWALRVLEPVKAGQLVIEYVGEVINEEEKERRLLDHAKNSPEDKNMYIMELGKGEYIDARFKGSVSRFINHSCDPNCHLLKWRVKGVNRIAITALKDIESGTELSYDYQFHTKQAMEWKCHCKAKNCRGTMAPEKINQGHESPVKKL---TKKEQIKQRKRALIQEKIQHDKEIKSTARRLSLTAHVSMGDRTTIDKMAVRTGPATRELQWAKLNHLFNIRDAKHGFNFKLRKEM 867          
BLAST of mRNA_P-fluviatile_contig20.4330.1 vs. uniprot
Match: A0A0P1ATF0_PLAHL (Set domain protein n=1 Tax=Plasmopara halstedii TaxID=4781 RepID=A0A0P1ATF0_PLAHL)

HSP 1 Score: 338 bits (867), Expect = 4.440e-94
Identity = 204/582 (35.05%), Postives = 295/582 (50.69%), Query Frame = 1
Query: 1267 ICATCWQLDTPCLSDMVTCDGPCLRSFHVVCQDVGEDALDEEKWLCEDCDRGEHTCWQCGDSGPDNTVGGVFRCAVSGCGKFYHHGCVELNKNSNFRGGVDEGEDGQT-VFK----FRCGYHSCDTCETGRGGHKSHLYKCMKCPNAYHLNCIPPDARYHELALLCEAHPDDELPALKQ----EDSVLAGTVQWTEGERGREGKGAKEGVGEGDDANGEEAPAGISLRDLKLPKLXXXPPKEDQRSDRRHFRLPTSILDSYHSKPPPFQHICAMQFVAPKPP-RMDPTPVCNCTGGTCGESCLNFMLRTECVCGNGI-------RSRYQNCKQGAKCGNRRLQDRAAAKVVPFREEGMGWGLRVAEDLPKGSLVGEYVGEVIDEKMVEHRMAEQRRLRPKDGEFYIMELAQSLFVDAKEKGNLMRLINHSCSPNCDVQAWSIAGYTRLGIYANKDLAKGESLSYDYKFSTNEKARFKCMCGAANCRGTLAPKKQEEESTEDGSKLKGKARREMLQKRERMARNRQARSQVGLLVSSKRLSLTGRVLPGDRTAE----VKAGPPAKYFAFARDQGIFLVRNAR 2949
            +C  C +++   L+DM+ CDG CL+S+H  C  + + A + E+WLCE C   E  C+ CG +G  N  GGVFRC+V+ CGKFYH  C++ NK S   GG  +       VF+    FRC  H C  CE  R    S L  C+KCP AYH  C+PP ARY+ + LLC  HPD+ELP +      + +V   TV                                + L  + LPK     P      D  HFRL  SI++    +PP ++ +    +   +P   ++  P+C C    CG+ C+N +  TEC     I        SR  NC  G  CGNR L  +   +   F     GW LR+ E +  G LV EYVGEVI+E+  E R+    +  P+D   YIM+L +  ++DA+ KG++ R INHSC PNC +  W + G  R+ I A KD+  G  LSYDY+F T +   +KC C +  CRGT+AP+K  + S    S +K   ++E  ++R+R     + +    +  ++KRLSLT  V  GD +      V+ GP  +   +A+   +F++RNA+
Sbjct:  331 LCGICGEIEDNDLTDMILCDGGCLKSYHFSCLGI-DSAPERERWLCEQCRTNEQLCFACGRNGTINEKGGVFRCSVASCGKFYHQVCIDANKMSRRAGGKFKPSSMVLEVFEWDAFFRCPRHVCIVCEERRKS--SDLMCCLKCPEAYHPQCVPPSARYNTVGLLCWRHPDEELPKIPSFYLSDRNVDTVTVDSC-----------------------------LHLPWMFLPKRD---PDASNPDDCHHFRLSKSIIEDVRLQPPTYRKLGRNIYTFKQPKVSLEDAPMCICKE-KCGDDCINRLSFTECFGPAPILGMKFNKHSRESNCMLGENCGNRALHQKVYPRFEKFHTVDKGWALRILEPIKAGQLVIEYVGEVINEEEKERRLLTHAKDSPEDKNMYIMDLGKGEYIDARFKGSVSRFINHSCEPNCHLLKWRVKGVNRIAITALKDIEPGTELSYDYQFHTKQAMEWKCHCKSKTCRGTMAPEKINQTSD---SPVKRLTKKERTKQRKRALLQGKIQQDKEIKSTAKRLSLTAHVSMGDLSTNDNMAVRTGPAVRELKWAQINHLFIMRNAK 873          
The following BLAST results are available for this feature:
BLAST of mRNA_P-fluviatile_contig20.4330.1 vs. uniprot
Analysis Date: 2022-09-19 (Diamond blastx: OGS1.0 vs UniRef90)
Total hits: 25
Match NameE-valueIdentityDescription
D7FLL4_ECTSI0.000e+069.40Uncharacterized protein n=1 Tax=Ectocarpus silicul... [more]
A0A4D9CXX2_9STRA5.700e-11738.29Uncharacterized protein n=1 Tax=Nannochloropsis sa... [more]
A0A5D6Y2M7_9STRA7.760e-9935.22Uncharacterized protein n=1 Tax=Pythium brassicum ... [more]
A0A662YAQ6_9STRA7.960e-9935.39Uncharacterized protein n=2 Tax=Nothophytophthora ... [more]
A0A8K1FGZ4_PYTOL3.410e-9734.52Uncharacterized protein n=1 Tax=Pythium oligandrum... [more]
V9FEG1_PHYPR8.960e-9731.23Uncharacterized protein n=9 Tax=Phytophthora TaxID... [more]
A0A2D4BX06_PYTIN2.140e-9534.34Uncharacterized protein n=1 Tax=Pythium insidiosum... [more]
A0A6A4FFA2_9STRA8.440e-9535.52Uncharacterized protein n=3 Tax=Phytophthora TaxID... [more]
A0A329RP63_9STRA4.130e-9431.82Uncharacterized protein n=2 Tax=Phytophthora TaxID... [more]
A0A0P1ATF0_PLAHL4.440e-9435.05Set domain protein n=1 Tax=Plasmopara halstedii Ta... [more]

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Alignments
The following features are aligned
Aligned FeatureFeature TypeAlignment Location
P-fluviatile_contig20contigP-fluviatile_contig20:1221271..1250391 -
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 score1065.8
Seed ortholog evalue1.3e-308
Seed eggNOG ortholog2880.D7FLL4
KEGG rclassRC00003,RC00060,RC00181,RC00496
KEGG koko:K06101,ko:K11424,ko:K16675
KEGG ReactionR03875,R03938,R04866,R04867
KEGG Pathwayko00310,ko04391,ko05202,map00310,map04391,map05202
EggNOG free text desc.uterine gland development
EggNOG OGsCOG2940@1,KOG1081@2759,KOG1083@2759
EC2.1.1.43,2.3.1.225
COG Functional cat.H
Best tax levelEukaryota
Best eggNOG OGNA|NA|NA
BRITEko00000,ko00001,ko01000,ko03036
Hectar predicted targeting categoryother localisation
Ec32 ortholog descriptionSET, chromo, PHD-type Zinc finger and AWS domain protein
Ec32 orthologEc-17_000690.1
Exons20
Model size6857
Cds size3189
Stop1
Start1
Relationships

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

Feature NameUnique NameSpeciesTypePosition
mRNA_P-fluviatile_contig20.4330.1prot_P-fluviatile_contig20.4330.1Porterinema fluviatile SAG_2381polypeptideP-fluviatile_contig20 1226548..1248653 -


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

Feature NameUnique NameSpeciesTypePosition
1622815905.3110425-UTR-P-fluviatile_contig20:1221270..12218321622815905.3110425-UTR-P-fluviatile_contig20:1221270..1221832Porterinema fluviatile SAG_2381UTRP-fluviatile_contig20 1221271..1221832 -
1693563684.6887019-UTR-P-fluviatile_contig20:1221270..12218321693563684.6887019-UTR-P-fluviatile_contig20:1221270..1221832Porterinema fluviatile SAG_2381UTRP-fluviatile_contig20 1221271..1221832 -
1622815905.3260772-UTR-P-fluviatile_contig20:1224086..12265471622815905.3260772-UTR-P-fluviatile_contig20:1224086..1226547Porterinema fluviatile SAG_2381UTRP-fluviatile_contig20 1224087..1226547 -
1693563684.703154-UTR-P-fluviatile_contig20:1224086..12265471693563684.703154-UTR-P-fluviatile_contig20:1224086..1226547Porterinema fluviatile SAG_2381UTRP-fluviatile_contig20 1224087..1226547 -
1622815905.5468245-UTR-P-fluviatile_contig20:1248653..12488331622815905.5468245-UTR-P-fluviatile_contig20:1248653..1248833Porterinema fluviatile SAG_2381UTRP-fluviatile_contig20 1248654..1248833 -
1693563684.8664985-UTR-P-fluviatile_contig20:1248653..12488331693563684.8664985-UTR-P-fluviatile_contig20:1248653..1248833Porterinema fluviatile SAG_2381UTRP-fluviatile_contig20 1248654..1248833 -
1622815905.5623345-UTR-P-fluviatile_contig20:1249926..12503911622815905.5623345-UTR-P-fluviatile_contig20:1249926..1250391Porterinema fluviatile SAG_2381UTRP-fluviatile_contig20 1249927..1250391 -
1693563684.8745499-UTR-P-fluviatile_contig20:1249926..12503911693563684.8745499-UTR-P-fluviatile_contig20:1249926..1250391Porterinema fluviatile SAG_2381UTRP-fluviatile_contig20 1249927..1250391 -


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

Feature NameUnique NameSpeciesTypePosition
1622815905.3358412-CDS-P-fluviatile_contig20:1226547..12274651622815905.3358412-CDS-P-fluviatile_contig20:1226547..1227465Porterinema fluviatile SAG_2381CDSP-fluviatile_contig20 1226548..1227465 -
1693563684.7135148-CDS-P-fluviatile_contig20:1226547..12274651693563684.7135148-CDS-P-fluviatile_contig20:1226547..1227465Porterinema fluviatile SAG_2381CDSP-fluviatile_contig20 1226548..1227465 -
1622815905.34815-CDS-P-fluviatile_contig20:1228577..12287751622815905.34815-CDS-P-fluviatile_contig20:1228577..1228775Porterinema fluviatile SAG_2381CDSP-fluviatile_contig20 1228578..1228775 -
1693563684.7226048-CDS-P-fluviatile_contig20:1228577..12287751693563684.7226048-CDS-P-fluviatile_contig20:1228577..1228775Porterinema fluviatile SAG_2381CDSP-fluviatile_contig20 1228578..1228775 -
1622815905.3583994-CDS-P-fluviatile_contig20:1229582..12296841622815905.3583994-CDS-P-fluviatile_contig20:1229582..1229684Porterinema fluviatile SAG_2381CDSP-fluviatile_contig20 1229583..1229684 -
1693563684.7303362-CDS-P-fluviatile_contig20:1229582..12296841693563684.7303362-CDS-P-fluviatile_contig20:1229582..1229684Porterinema fluviatile SAG_2381CDSP-fluviatile_contig20 1229583..1229684 -
1622815905.3705456-CDS-P-fluviatile_contig20:1230345..12304571622815905.3705456-CDS-P-fluviatile_contig20:1230345..1230457Porterinema fluviatile SAG_2381CDSP-fluviatile_contig20 1230346..1230457 -
1693563684.7380214-CDS-P-fluviatile_contig20:1230345..12304571693563684.7380214-CDS-P-fluviatile_contig20:1230345..1230457Porterinema fluviatile SAG_2381CDSP-fluviatile_contig20 1230346..1230457 -
1622815905.3805947-CDS-P-fluviatile_contig20:1231085..12312341622815905.3805947-CDS-P-fluviatile_contig20:1231085..1231234Porterinema fluviatile SAG_2381CDSP-fluviatile_contig20 1231086..1231234 -
1693563684.7482471-CDS-P-fluviatile_contig20:1231085..12312341693563684.7482471-CDS-P-fluviatile_contig20:1231085..1231234Porterinema fluviatile SAG_2381CDSP-fluviatile_contig20 1231086..1231234 -
1622815905.3905232-CDS-P-fluviatile_contig20:1231777..12318701622815905.3905232-CDS-P-fluviatile_contig20:1231777..1231870Porterinema fluviatile SAG_2381CDSP-fluviatile_contig20 1231778..1231870 -
1693563684.760583-CDS-P-fluviatile_contig20:1231777..12318701693563684.760583-CDS-P-fluviatile_contig20:1231777..1231870Porterinema fluviatile SAG_2381CDSP-fluviatile_contig20 1231778..1231870 -
1622815905.4046607-CDS-P-fluviatile_contig20:1232139..12322061622815905.4046607-CDS-P-fluviatile_contig20:1232139..1232206Porterinema fluviatile SAG_2381CDSP-fluviatile_contig20 1232140..1232206 -
1693563684.7693336-CDS-P-fluviatile_contig20:1232139..12322061693563684.7693336-CDS-P-fluviatile_contig20:1232139..1232206Porterinema fluviatile SAG_2381CDSP-fluviatile_contig20 1232140..1232206 -
1622815905.4186106-CDS-P-fluviatile_contig20:1233505..12336221622815905.4186106-CDS-P-fluviatile_contig20:1233505..1233622Porterinema fluviatile SAG_2381CDSP-fluviatile_contig20 1233506..1233622 -
1693563684.7781577-CDS-P-fluviatile_contig20:1233505..12336221693563684.7781577-CDS-P-fluviatile_contig20:1233505..1233622Porterinema fluviatile SAG_2381CDSP-fluviatile_contig20 1233506..1233622 -
1622815905.4291596-CDS-P-fluviatile_contig20:1234165..12342821622815905.4291596-CDS-P-fluviatile_contig20:1234165..1234282Porterinema fluviatile SAG_2381CDSP-fluviatile_contig20 1234166..1234282 -
1693563684.7873106-CDS-P-fluviatile_contig20:1234165..12342821693563684.7873106-CDS-P-fluviatile_contig20:1234165..1234282Porterinema fluviatile SAG_2381CDSP-fluviatile_contig20 1234166..1234282 -
1622815905.4394808-CDS-P-fluviatile_contig20:1235517..12357141622815905.4394808-CDS-P-fluviatile_contig20:1235517..1235714Porterinema fluviatile SAG_2381CDSP-fluviatile_contig20 1235518..1235714 -
1693563684.79714-CDS-P-fluviatile_contig20:1235517..12357141693563684.79714-CDS-P-fluviatile_contig20:1235517..1235714Porterinema fluviatile SAG_2381CDSP-fluviatile_contig20 1235518..1235714 -
1622815905.4493659-CDS-P-fluviatile_contig20:1236336..12364301622815905.4493659-CDS-P-fluviatile_contig20:1236336..1236430Porterinema fluviatile SAG_2381CDSP-fluviatile_contig20 1236337..1236430 -
1693563684.8045363-CDS-P-fluviatile_contig20:1236336..12364301693563684.8045363-CDS-P-fluviatile_contig20:1236336..1236430Porterinema fluviatile SAG_2381CDSP-fluviatile_contig20 1236337..1236430 -
1622815905.4608583-CDS-P-fluviatile_contig20:1237448..12375461622815905.4608583-CDS-P-fluviatile_contig20:1237448..1237546Porterinema fluviatile SAG_2381CDSP-fluviatile_contig20 1237449..1237546 -
1693563684.8121765-CDS-P-fluviatile_contig20:1237448..12375461693563684.8121765-CDS-P-fluviatile_contig20:1237448..1237546Porterinema fluviatile SAG_2381CDSP-fluviatile_contig20 1237449..1237546 -
1622815905.4707131-CDS-P-fluviatile_contig20:1238245..12383871622815905.4707131-CDS-P-fluviatile_contig20:1238245..1238387Porterinema fluviatile SAG_2381CDSP-fluviatile_contig20 1238246..1238387 -
1693563684.8196933-CDS-P-fluviatile_contig20:1238245..12383871693563684.8196933-CDS-P-fluviatile_contig20:1238245..1238387Porterinema fluviatile SAG_2381CDSP-fluviatile_contig20 1238246..1238387 -
1622815905.48287-CDS-P-fluviatile_contig20:1239461..12396801622815905.48287-CDS-P-fluviatile_contig20:1239461..1239680Porterinema fluviatile SAG_2381CDSP-fluviatile_contig20 1239462..1239680 -
1693563684.8271124-CDS-P-fluviatile_contig20:1239461..12396801693563684.8271124-CDS-P-fluviatile_contig20:1239461..1239680Porterinema fluviatile SAG_2381CDSP-fluviatile_contig20 1239462..1239680 -
1622815905.4967833-CDS-P-fluviatile_contig20:1246399..12465851622815905.4967833-CDS-P-fluviatile_contig20:1246399..1246585Porterinema fluviatile SAG_2381CDSP-fluviatile_contig20 1246400..1246585 -
1693563684.8345683-CDS-P-fluviatile_contig20:1246399..12465851693563684.8345683-CDS-P-fluviatile_contig20:1246399..1246585Porterinema fluviatile SAG_2381CDSP-fluviatile_contig20 1246400..1246585 -
1622815905.5088003-CDS-P-fluviatile_contig20:1247296..12474471622815905.5088003-CDS-P-fluviatile_contig20:1247296..1247447Porterinema fluviatile SAG_2381CDSP-fluviatile_contig20 1247297..1247447 -
1693563684.8420208-CDS-P-fluviatile_contig20:1247296..12474471693563684.8420208-CDS-P-fluviatile_contig20:1247296..1247447Porterinema fluviatile SAG_2381CDSP-fluviatile_contig20 1247297..1247447 -
1622815905.521346-CDS-P-fluviatile_contig20:1247750..12478571622815905.521346-CDS-P-fluviatile_contig20:1247750..1247857Porterinema fluviatile SAG_2381CDSP-fluviatile_contig20 1247751..1247857 -
1693563684.8494177-CDS-P-fluviatile_contig20:1247750..12478571693563684.8494177-CDS-P-fluviatile_contig20:1247750..1247857Porterinema fluviatile SAG_2381CDSP-fluviatile_contig20 1247751..1247857 -
1622815905.5340414-CDS-P-fluviatile_contig20:1248531..12486531622815905.5340414-CDS-P-fluviatile_contig20:1248531..1248653Porterinema fluviatile SAG_2381CDSP-fluviatile_contig20 1248532..1248653 -
1693563684.8571055-CDS-P-fluviatile_contig20:1248531..12486531693563684.8571055-CDS-P-fluviatile_contig20:1248531..1248653Porterinema fluviatile SAG_2381CDSP-fluviatile_contig20 1248532..1248653 -


Sequences
The following sequences are available for this feature:

protein sequence of mRNA_P-fluviatile_contig20.4330.1

>prot_P-fluviatile_contig20.4330.1 ID=prot_P-fluviatile_contig20.4330.1|Name=mRNA_P-fluviatile_contig20.4330.1|organism=Porterinema fluviatile SAG_2381|type=polypeptide|length=1063bp
MEVDAEAGAGLGAGGEGGGGGGEGGGGEKFVRIHYQGWETRFDETLCTDS
PNLQPVHTHSKKKKKPDAKSRRPKASVKEWIREDDEGNVVARGIVGEDDP
DDYLALEKARELEKVKAAGLEGGPTSRYGRVVVPRMKLSTLKGKDKAITV
GGGDAEEVEVGRGSEEGRGGNGDGAKPKGRSARAGKKTHRGAFVAEGGGA
AASIDDWICATCWQLDTPCLSDMVTCDGPCLRSFHVVCQDVGEDALDEEK
WLCEDCDRGEHTCWQCGDSGPDNTVGGVFRCAVSGCGKFYHHGCVELNKN
SNFRGGVDEGEDGQTVFKFRCGYHSCDTCETGRGGHKSHLYKCMKCPNAY
HLNCIPPDARYHELALLCEAHPDDELPALKQEDSVLAGTVQWTEGERGRE
GKGAKEGVGEGDDANGEEAPAGISLRDLKLPKLPKLPPKEDQRSDRRHFR
LPTSILDSYHSKPPPFQHICAMQFVAPKPPRMDPTPVCNCTGGTCGESCL
NFMLRTECVCGNGIRSRYQNCKQGAKCGNRRLQDRAAAKVVPFREEGMGW
GLRVAEDLPKGSLVGEYVGEVIDEKMVEHRMAEQRRLRPKDGEFYIMELA
QSLFVDAKEKGNLMRLINHSCSPNCDVQAWSIAGYTRLGIYANKDLAKGE
SLSYDYKFSTNEKARFKCMCGAANCRGTLAPKKQEEESTEDGSKLKGKAR
REMLQKRERMARNRQARSQVGLLVSSKRLSLTGRVLPGDRTAEVKAGPPA
KYFAFARDQGIFLVRNARAGADLLTRKRMLATKAKALAKTAALPASPPSP
PTAAAAVDATPARTRARPGAAAAAAAADRGRDDRSSASAPATGVAGASAV
SEGVEAKQTSAAAKSAAETAAEVRTGDGAPPGKSAPQKSTGGGSGGGLSS
RKGCSPPTKPTRARRPPSKRSPAKATAKAAAAVAEPVAEPVAEAAAPGGT
AQDVSSAALSSPATPGRGMSRARASPRRSTTAAAAVPATAVAPAPTPAPA
FSPGGKKRGRPSKAAAAAVVAMDPSSPASSTPQPEESSVGASSSPTKPGS
VRKRVRRAPAGR*
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mRNA from alignment at P-fluviatile_contig20:1221271..1250391-

Legend: UTRpolypeptideCDS
Hold the cursor over a type above to highlight its positions in the sequence below.
>mRNA_P-fluviatile_contig20.4330.1 ID=mRNA_P-fluviatile_contig20.4330.1|Name=mRNA_P-fluviatile_contig20.4330.1|organism=Porterinema fluviatile SAG_2381|type=mRNA|length=29121bp|location=Sequence derived from alignment at P-fluviatile_contig20:1221271..1250391- (Porterinema fluviatile SAG_2381)
GACGAGGAGCATGCCCAGCAGCAGGATCTCTCTCCCGAACTCCCACCAGA ACCGGTGGAATCGGCATCAGAGTCCGCCACGGCTCCTCCTGTGGAGCGAA ACGAGGAACTCGAGCTCGCCATCCGAGGCTATCTCGAGGGGCCGGACGAG GACCTTGGCCGGCTGTGCAAAACTCTCGGGGAGGCCTTCTGCCTGGCTCC ACCCCGCATAAGGAGACCTACGTGGCTCGCGGGATATGAGTCCGGGTCTG ACACCACGTCGCCCGCCGACCACGAGCACAGCAGCAGCAGCAGCAGCAGC AGCAGCAGAAGCAGCGGCGGTGGCGGCGGCAGCGATGTTGGTGGGGATCA TGCTTTCTCATTTGTGTCTGGTTGTGCGCCGAGTGGCGAGGGCAGGAGCA GCAGCCTATCCCGCGATCACGGCCACGACGACGGCATCCTCCAAGCCGTG GCTGCGGCAGCCCGGGTGAGAGGGAGGAATAGAAAAAGCGGGGGATGGAA GGGGTCTCACTGTTCTAGTTGGTTCCTGGGGCGAGAGGAGCGAAAGTGCC CGTCTTGCGCGCGCATTTTTGAACAGAAAATTTTTAAAAATCTAGTTCTC TCTCTCTCTCTCTCTCTCTCTCTCTCTCTCTCTCCCTCCGCCCTCGGCCC TCGCGCTCTCCGCGCCTATTTCACACACATTCTTTTAGGCTCGCAATCTA TGCTCCCATGCTAAAATTCCCTCGCCTTCTCTGTTGATAGAGGGAAATAA TTCAGTGCATCACAAATTCGATTACGATGCTGTGTAGATCGTCTTCCCCG TTTGAATACAGTGCTCGAGTGCTCCGGCACCTGCAGTGATGCATGCACAC GCGCACACTCTCCTCCCGCCCACGCCATAAGTGAGGAACTCCCTTGGCTT CCGTTCAAAGCTCACGCCGCTCGCTCCATGAACGCGAAAAGAGCGCACAA GGCCTTCGCCGAACCAACGCCTCTCTGCTTTCGCCGTCCTCCTGTCGAGG ACCTGGGTGGAGGTGACCGGCAGGAACGCCGTCGTTTGTCCGCGTTCGGA ACCCCCAGAAGCGTTGGAGTGCCGGGGGGGAGATGGGAGGGGGTCATCTT GGTTTCGTTGTTCATCATGCGCATAAATAGTCGTGTCTGGCTGTTATGGA TCCGTCACCCGGGTGTGCGCGCGGATCCCACAGGCACCGGGTGACTTTTG TATGCGGTGCCTTTGGTTTTTGCAGACGGAAAACAACATTTGTCGTAGCA TGACGTCATGACGTACCTCTCCCGAAACGTCGTCCCTAAGGCAATAACGA ATGGGTGATCACCCCTTTTCATGTACGCACTCACCGCATGCTTCCCACCC AAAGCACAACATGAGCAACCACCAACACTCGGGGCAAAAAACTCAGCCGC TAGCAGACCCCGACGACATGACAGAAGCACGGCCTTCCCGTCCCCCTTTT TGCCCTCTCAAATGCTGCCTTTCCTCTCTATTGCCTTCACCATCCCCCTT CACCCCCCCCCTCCCCCATTCCCGCAAACGGCTGGAAAATCATTCGCCGC CGGTACAGATCCCCGCGGACCTCCTCGCCAGCGCGTGGAGCGCTCTGTCC GCGTGGCGCGAGGCCATCGCTGAGGGGGACCTGCTGGATGTGTTCGACTC GAGGGAGGGCAAGTGGCACACGGGGAAGGTGCTGTACTTTGTGCCGCCGG AGGAGGCCCGCCCCGAGCCGCCGTCGCCGCGGGAGCCAATGGAGGTGGAC GCGGAGGCGGGCGCGGGGCTCGGCGCGGGCGGCGAAGGCGGCGGCGGAGG AGGAGAAGGAGGAGGAGGCGAGAAGTTCGTCCGGATTCACTACCAGGGCT GGGAGACCAGGTGAGAGCGCGGTGGTGGGGGCAGTGGTGGGGATGGTGAT GACGCTTTGGTCGGAAGAGGGGGAGGAGGAGCGCGGGCGACAGGTTCAGG AATAGAAGCGAGCGATGCGCCAGAGACCACTCGCGTGAGCCACTGGGTGG GCGGAGCCCAAAAAATGAGTAGCGATGCGCTCGACCAAAAAGCAAAGGGA AACGGGATGGCCGGCTATTGATGATAGACGGGCGTGCTCCGTAGTGCGTT CCATGCCTAGCAGCTTGTTCCATGTGCCGTGAATGTTTCGTCTTCTCAGG TTGGTGTAACGCCTCCGAGCCTTGCGGTCAGCCCACAAACCTGGTGCACC CCTCCCCGCCCAGAGGGGGATGAACACAAATGTAAGCGAGCATCGTTATT GATGTCTCGCGACTATGTACACGTGTCGTGATCTACGATCGCCCCCAAGT CTTCCTACTCAGTGTTTGTGTCGACACTCCCCACGAAAACAGCCCGACAG ATTCACAGAAAAACACGTCTACGTAGTTACCTCCGTCTCGGACATGATCA TCACATGACGCAAGGGCACCACCCCCGCCCTCCCCTCCACTTTTACTCTA CCGCTCCACGTTTTTTTCGGTCTCGATATTTCAACGGGAAATGTTTGTTT GTCTCTCTGTTCCCATGTCTTATCTCGTGACCAGGTTTGACGAGACCCTC TGCACGGACTCGCCTAACCTGCAGCCCGTGCACACACACTCTAAGAAGAA GAAGAAGCCCGACGCCAAGAGCAGGCGCCCGAAGGCAAGCGGTGCACGGA CGTTCGTCGTCGTCGTTGCTGTCGTTGCTGAGCTGCACGAACACTTTTGA AAATGGCGTCGCCAGCGTCGATGATTTCAGCTCAGCTCCTAGGTTATTCA TTCCCAGTCGCCCGTTTCTCGCTGTTTCTCTCCCTCCCTCCCTCCCTCCC TCCCTCCCTCCCTCCCTCCCTCCCGCTCTCTGTCTCTCGCTGTCTGTCTG TCTCCCCCTCCCTCTCTCCCTCTTCCTCTCTCTCTCTGCCCTCCCCCATC TCTGCCTCGATTCCTCTTTCTCTTTTATCTTGTATCTTAGGTAGTGAAGG AGTGGATCCGAGAGGATGACGAGGGAAACGTCGTCGCAAGGGGTATTGTG GGGGAGGACGATCCCGACGATTACCTGGCCCTAGAGAAGGCCAGAGAACT GGAAAAGGTGAAGGCCGCTGGGCTGGAGGGCGGTCCGACCAGCAGGTGCG CTCATGGGGACTTTGTGTTTCGGTGGTAAGTGCGCCGTAGTCGTCTCCCT GTCCCGCCTCCCCTCTCACCATTCTTTCCCCCACAAGTCTTGCCTTTCCT TTCGTCTTGCTGTCGCGTCGTTCTGCGTCCCCCCGCCCTGATCTCTTCGT TCTTATCCTGTCCTCGCTGCCCCTCCCTCTTGTTCTGTCTATCTAGTAAT CATTTCTTTACAGCACGAACAGGGTTGTAGAATCATGGATTGTGCACTAG AAACAGCGACGAACGCTGTTTGTGTGCCGGCTTTCATCCACGTACAAAAC CACAAGGGGAATATGGGCGATTCGGTGGGCACTCTTCTTTTTTGTCAATG ACGGCTGCCTCTCAAGAAGTTCACTGTTGCCTGATGAAGTCGACGATCTT GAAATGTATTGCCGATGGGAAAATTCACCGTAATTTCTCACAACACGGCA GATATTAGCGCTTGTCTTTTGTCTCTTCGTTCGGGCAACCGCCTCAGCAC CGCGATACATACCTCTCTGAATAGGCGCGCACGCACACACACAAAATATT TACGAAGCCACCTCGATAATCACACGCACAGGCTTCGATCAGTCCGTTGA GCGCGGTGCCTCCAGCTTCCAAATATTTTGTCACACATACAGTCACGTGA TCACACATTCATACACGGCACCGCTTTCGCGCTTGCTCCCGCGCTCGCGC TCCAAGGTATGGGCGCGTCGTGGTCCCTCGCATGAAGCTGTCCACCCTTA AGGGCAAGGACAAGGCTATCACCGTCGGAGGGGGCGACGCCGAAGAGGTG GAGGTGGGCCGTGGATCGGAGGAGGGGAGGGGCGGGAACGGGGACGGGGC GAAGCCAAAGGGAAGAAGCGCACGAGCAGGTAAGAAAACACAGTGTGGGA GGCCGGAGGGTAAGGGGCACGGGGGACAGGCGGTGCTTATCATCGGTGGC GAGTAGGGGGGGGGGTATACTCATAGTCGCCGTAGTCGTTAGACCATTGA CCTCGCATCCCTACAAAGCCGGGACGGAGCACGCCGGGTTCTCACCGGAC CAGGCTCTCTCACCACCAAGCGCGAAGCGCCGTGAGGTATTCGGCGAGTC GCATGCAGGGTGCGCTGCATCCTGCTAAGGGTGTGCATCTTGTGCTTACT TCCTTGCATACGGATGACAGCTGCGTATGGCTTAATTTATTTTCTGGTGC TTTCACTTCGAGAGACAGTTGTAAGCACTGTGTAACTGCCTCGAGGGTGC TTGACCATTTCAACACAACGTGGTGCGATCATCCCCCTTGCGCGGAGTGA GGGTTCCCCACTCCGCACAACATGATCTACTCGACCACCATTATGGTTAC CGCCAAAAAAAACAGAGGAAAAACAAAGACGGTATCCTGGCTGCCGAGTT CACGAAGTGAAATGGCTTGTTTTACAACGTCGTTGCCAAGCGACGAAAAC CCAGTCCCGATGGCAAACACCGAGGTGAGAGCCAACGGGAGGGGCGAGTA GGGGGCGTACTCATGTTTTGCATGCCTTAGTTGTTAGACCATTGACCACG CGTCCTCGAGAGGACGGAGCATTGTTCCCGCAGGATCGACCACCGATGGC CAATCGTTCCTTCCTACTTTGCCAAAGGTGGCTCAAAAATGTTTTCCCTA ACCTGTCTACTTTATACCTGTCCGTCCTGGGCCACATCTTACACCCGAGT ACCGCTACCGTCTTCTCCTCTTTGTTCCATGCCTCAAACTTCTCTCTATA CCGACTGTCTACTTTTTCCAGCTCAACCATGTACCCTTCTCTCTCCTGAT CGTACAACGGGCATTCCGCAACTACATGTACCCGGTCTTCGCATTCGGCG CCGCAGTCACATTTGAACTTGTCTTCGTCGTCGTCTACCTTCCTAAACCT CCTTCTACGTTCCCGTAGGTCAATGTCGCCCGTTCTAAATTTGACCTTCA TCTTTGTCCCTTCATCCAATGGTCCGTTCAGGTACTCCTTGAACCCTATT CCTTCGTCCAGCCTTCCGTACACTTCTAGAACCTCCTTTTCCTTGGTCTC TTTCCGCAAGCTCTGGTCTTCTCTATTTTCAAAGGCTTCTGAGATGCTCT TCTTGTACCCTTCTAAGCTTTCCGCTCCCGTCGTCTCCCGTTCGTCAATA TCTAACCCACTCCACACTCCCTGTACAACCTTAGCCCACTCAATGGGTTG TCTACCCTTGGCCTTGTTTACCCATCTCGCCTCCCAAGCTATTCTCGGTA ACCTCTCCTTTCCCATGTTTTCCAAACGGTATTGCCATGTCAACTTCCTC CTGTCTCTTCCCGTTCTTAAGGAGTAGATCCCCAACTCTGCTCTTACTGC TGCGTTACTTGTGCGCTGGGAGCATCCTAGAATGATCTTCGCTGCTTTCA TCTGCGCTGCCTCCAACTCTGCTACTATTTTCTTGTTCCCTTCCCAAACT TCTCCCGCGTACTCTAGTGGCGGGATGATAACACTTTTCAGAATGGTCAT TTTGACGCGTGTATCAAGGTGCCGGTCTGCTAGGATTGGGTGCAACTTCC CTGCCCTTGCTTTGCCCTTGTCCGCTATTTTGTGCATGTGTGCATCCCAT TTACAGTCCTTTGCTATCTCTACTCCAAGGTATGTGTATTTTTCCACTCT TGGCAGCTCCTTGTCCCCCCACGTCCACTTGGTACCTACTTCCTCGTCAC CAACTTCATTGCATACCATTACGGCACACTTTGGGACGTTGGCCGAGAAT CTCCACTTATCAGCATAGGCCTTCGCTGCGTTAATCTGTAGTTGGAGCCC CTCAGGCGTGTCCGACATCCCAACAAAGTCGTCAGCAAATAGCAGTCCCG ATACCGAGGTTTCCCCTACTTCTACTCCCTTCTCTACCGCCTCTACCTCT TTCAGTAAGTCGTTGATGAATACCTGGAACAACGTTGGGGACATTGTGCA CCCTGTGGGACCCCTGCTCAATGTCGAAGAACCTCGAGAGTTCTCCATCT AACATCACGGCGCTTTTCGTACTCTCTGTCATCTTCTTAATCATTCTCCA CATCTTCCCGTTTATTCCATACTTCGCCAACTTTTTCCAGAGCCCATTTC TCCATACTGTATCATACGCTTTCTGAACGTCTAGGAAAAAACAATATGTC GGCTTTCTCACCCTCTTCCGACCTTGTATGATTCTCCCTACCGTGTATAG GTGATCTCCACACCCCCTAGCCTCCCTGAAACCTGCTTGACCCTCACTAA TTCTCTTTTCCATCTCCAGTACTCGTACTATTCTGTTGTTGAGGATCTTG AAGAACACTTTCCCCACTGTGCTCAACAGGGTGATTCCCCTATAGTTTCC TGGGTCAGTCTTATCTCCTTTCTTAAATAGGTTCACCACCACCCCTTCCC TCCATCTACTCGGTGCGTATTCGTTTTCCCATACCCAGTTGAACAACAGC ACCATCATCTGAATCATCCCCTCCCCGAACTTCATGATTTCGTTCACTAT CCCGTCGACCCCTGCGGCCTTGTGACACTGTAGTTTTTTCACAACTCTCA ACCTCTTCCTCGGTGAACTTCTTTTGGAGCTCTGCATTCCCAACGTCCTC CATCGAAGCTCTCTCTTCTACTTGGGCCCACGCGTCTACCTCTTCCTTGA ATACTTGGTCGAAGTCTGCCTTTTCCGACGGCACCCCGAGTCTCCTATAG TGTCCTGCTAGTACCTGTCTTTTACCCTTGCCACTGCTGACTAGTTTACC GTCTACGCTTCGCAATGTTGCTACTCCTGTTTCCCCCCATGTTCATTCTT TTTACCAATCCATTAATTCCCTGCCACATCTGTTTTACGCTACCCTCCAA CCCCCGTTCGCTTCCTGCACCACTTCGTCCCAGATGCCTTTCTTCTTCCT TTTCACTACTCTATTCACATGTTTCCTCTTGGCTCTGTAGGTTTCCCAAC TCTCCTCTGTCTTCTCATCCATGTGCCGCTTAAACAGTTCTCTTCGTTCC CCTATTTCTTCCCTCAATTCTTCGTCCCACCACTTAACCGCCTGACCACA CCGGACCATCTTTTTCCTATCACTTCCTCTGCGGTTGTGTTCACTATGTT TTCCCATCCTGCGATTACTCTGTCCCCTTTTACTTGAACGTCCCCTTCCT CTCCCGCTTTCCCCATCAGTTCCCTTACTTGTTCTACGCTGTCTGCATTC CTTTGTTGGAATTCAGCACGTACTCTCTCGTTCCCAGTCGTTCTACTTTC CATCTGAATACCTTCCTCGTCTTCGTACTCTTGACCCTCTTGTTACGTGT TGTTTTAGCCCAAATAAGGAAGTGGTCAGTCGTGCCTATATCTACCTTGT TTACTTGCAATCTTGGGATCCGCTTTGTTTCTCTGTCTACCAGGATGTAG TCAAGAATCGAGAATTCTCCGCAACTTGCCCGCTGTCTGGTATACTGCGG GTGTCCTCCTACTCCTATTGTTTGTTGCCATCAGCTCGTTACTACCTAGG AAGTCAAGCATTTTTTCCCCGTTGGCATTAACTCGGTTTTCTCCGTATTG CCCTATCACCTGCCCCCCCCGACTAGCTTTCCCAACTCGAGAGTTGAAAT CGCCTACTATGACAACTTCTCCCTTTCTCTTGAACTTCTGAACATCTTCC CCCCACTTGCTCGAAATTCTCTTGCGCCTTACATGCGACTTTCTTCGACG ACGGTGGAATGTATACATTACCTATAAATAGGTCGAGCTCACCCCTTTCT CCTGGTACCCGTATCCATAAGCTTTCCTCGAACGTCGTCTTTACCACTAT TTCTACCAACTCAAACAAGTATTCCTTGATGAGAAATCCGACTCCCCCCC TCCCCCCTTTTTCGGGTCTAAACCTTTCCGTGCCTTTCCTATCCACCGGT ATTCTCCTATCCTGCTTTCGATATCCCCATCTTTCAACTCCCATGACTCT TGGATCCCTACCACATCTAGCTCAGCCTGTTCTACTTGCTCAACTATTTC CAACCTCTTGCGCTTGTCTCTCGCAAACCCGCACACGTTCCACGACCCTA CTCGTAGCTGGTGTTTGTCCCTATTGGACTCTTTCCGCACCCTTACGCCC GCCTGTCGCCTCTTCGCGATCTTCTTACTTGCTTGACTAACCTTCCCCCC CTGTCCACCTCATTCTTCATTCGTCCCTGTCCTCTTACCTTCTCTGATTC TATCATGTTGGCTATGCAAACCCTCCATCCCACCTTCCGTACGTATTTCG ACAGCTTCTCAATGTCAACCTGCTGGCCCGTTTTACTATCACCTCTTGTC ATTGTAACCCTGAAGTGATCATGTTCTCTACCTACTTCCCCCCTAGCTAA AAGCAATGTAGTCCTTCCGTCACGCAGGCTTTCTTGAACTCTACCCTGGT CATGTCTCTATCGACTCCAAAACTAGTAACTCCATCTTGTCTCCCTTGTA CAACTTCGTCTTCCATCCGTCTTTGTACCGCACCCTTCTCATGATATCTA CACACAGTAGTGGACCGTAGCCTCTTTGTTCGTTTTGGTTGGTAGGAAAA ATTACGGAATGCACGGTCTTCCCAATCCGAGCGTCCGGTGAGGGTTATGG TTCCTTTCGATTCTTTTGCCGGCTCACCAACGCTAAATAGCGCCTCCAAC ATAGGCTCGTAGTCTAGACCCAATTCCACACCTGGTGATACAAGTACCCT AGTCTTGTACCGGATGCTGATTGGTTACTGCCCAGACGTCCCCGACCACC CGATATGTTTTTCCTTTTATCTCGCTATACAGGTTACTTTCCTCCAGGGA GGTCATTTTCACCACATAAAGTTCAGGGGCGACTTGCATAACCTAAGATC CTACTCACACGCTGGGATGAAACGCATAACAACGTCCTGCTTCTCCTATA CGTTCCACCATGGGTTGCTACCCCACTTACGCTCCCAGTAGACCTATCTG CCGAAAGTTTAGCCAACAATCCCTTTACGCTTTGTACTCGCCTCTGTCAC TCCAGAAAACAACATCCCGAATGTGCCGCACATCTAGCTCCGCATGGTCT TGCGTGGTTGGTCAATTACTTATGGGTCATATCTCGACGTTGAGTAATAA GCTTTCCTCTATGGGTCCATCTAAATTAGACCCACATCAGATAATGATCA TCCCACCCTCTCCTCCGCCCGACCCGTTTTGGGTCGCACGTCGGAGAATT TAGGGATGTCGTAGCTCCAGTCTTCCACCGCCCAATGGGGACTAGTATTT TTCCAATGCCGTACCAATAGACATTGACCTTGGGTAAGCTTGTGCTTACT TTGGACTGTACCCTGCTCCCATCTGGGGAGAGGGGTGGAGGGGGGGTCAG CCCAATTCGACCCGTATCTATATTTTTGTTTGGGGTTGGACTATTGGGGG TTGATATTCTTTACTGTTTGTTATGGTATGGTAAAGAAAATTGGTTAGAT TCGTAATTCCATGTCTAGTTTTATATTCCTCCGGGTTATTGTTTAAGGTA TGGGAAATAAAACTGATTAGTTTAGTATTTTCATGTCTATTGTGAGCTTC GTGGTATGGTATGGTAAACAAAAGTTGGTAAGTTCCGCTATTTCACGTCT ATATCAGGTTTGTGGCGGTATGGATTAGTTTCGTAGTTTCATGTCTATTG TTTGCTTCGTGTTATGGTATGGTAAACAAAATTTGGTAAGTTCCGCTATT TCATGTCTATATCAGGTTTGTGGCGGTATGGATTAGTTTCGTAGTTTCAT GTCTATTGTTTGCTTCGTGTTATGGTATGGTAAACAAAAGTTGGTAAGTT CCGCTATTTCACGTCTATATCAGGTTTGTGTTACGGTATGGATTATCTTC GTAGTTTCATGTCTATTGTGAGCTTCGCGTTATGGTATGGTAAATAAAAG GTCAGTTAGTTCCGCTATTTCATGTCTATATCAGGTTTGTGTTACCGTAC GGGCAATAAAAGTCGGTAGCCACAGTTCTTTCATGTCTAGGGTTCGGTGG CTATTTTACAGCGCGGTGCCACCCGACGCCAACCTATATTCCGATTTATG GAACAGGTGTTGGCGAGTAGGGGGGGGTAGGTGTAAGGGGCTAGGAATGC TCGGTTCTCTCCTGCGGTGTTCGGGGGTCGGGATTGGGTGGGCGGAGGGG GTGGTTGCGACGGCACACAGCGGCGTGTTTGAAGATTGAGGCACGGCGCG TGACGATTCTGCATGCTTTTGTGTCTCGCATTCCTGGTGTGCCGCGTTCT TGCGAGTCACGCATTGAAAGAATTTGGACACTTTAACATGTCGTAATTCC CCGTGTTTGGATCTTTCAGGCATGTGGATGTATTGCAAGCGAGGCGGCCG CTTTCTCGGCGAGCGGGCATCTTCCTCGCACCCGGTCTCATTGGCCCTGT GCGTTCTTTTGTTTTTAGTGGCGAGATACATGACAACAACTCGAAATCAC GGGAAAACGGAAAGTGAGAACTCTCTCGGCACCGTTCTTCATCTCTTGCC CTCACTTTCCTCCCCCGCGGCACCGTCCATTGCCCCCCGTCCCTGCCCAC CATTCTTGATCGCACGCTGCCGCTGTATTCCCGACCACGGCCCTTCCTGG CCTTTGACGAGCAGGGGCGCTTTTGTGGCGGAGGGGGGAGGCGCGGCCGC TAGCATCGACGACTGGATCTGCGCCACGTGCTGGCAGCTGGACACCCCGT GCCTGTCGGACATGGTCACCTGCGACGGCCCCTGCCTCCGCAGCTTCCAC GTGGTGTGCCAGGACGTGGGAGAGGACGCGCTGGACGAGGAGAAGTGGCT GTGCGAGGACTGCGACCGCGGGGAGCATACGTGAGTTATGAGGAGGGTGG GCGTAATCAAATCGCGCCTGCCCTTGTAGCCTCAACCCATAGACTTCGCA TCCCCACTTTGCCCGGACGGAAGGATTTTCTGGGTTTTCACATGCCCAGG TTCGCGTTCACCAAGCGCGAAGCGCCGTGATACCTTCGGCGAGTCGCAGC AAAGGTAAGCCAGGTTGACGTTGACGTTCACCTAGCGCGAAGCGCCGTGA TGCCTTCGGCGAGTCGCATGAAGGGTGAGCCAGCATCCTCTGGGCCATCA TCCCATCATCCTACGAAGGGGTTGCGGAGGGTAGAGAGACACGGAGGAGT GACGGGGCGAGGGGGGGAGGTTGGGATGCGCTGGCGGATGAGAAGTGGCC GTGCGAAGATTGCGACCGCGGCATACACTTGAGAAAGATTGAAAGGAGTG GCACGTAAAGGCAAAGGAGGAATGGGGAGGGGGGGGAATAGCGAGAGAGG AGCGAGGGAGAACGGAGTGCGGCCACGTGTCTTGGGCTCTCGAAATCAAA GGGAATGCCCAGACCCACCCGTCCCACTCAAGCGAGAAATCCAGTCGCGC GGTCCCCCTTCAACCCCGAAACCAGAAGATCACCAGAAAATCGCTGTAGC GACGTCTTCCACGACAGCACCGCCAGCGCACGCTACACGGTAGGCTGTTT GCCTGCTGTCCCTTTTCGCTCTTGACAGCTGAGCTAGGCTACAGAGGGCG GCGCTCTGAGGTGCGGGGGCGGGACGGGAATTTTCACCCGCCTAACAGCG GGCGCCCGACGGGAATTTTCAACCGCCTAAAAGCGGGCGCCCTACTGTTC AGCCGTGGGTAATGTGTTGATATTCGCTTGTCGGAGAGCTTTCATGCATA TTGAGCTCACCCACACTATACCCGGGACCCGCACCATTTTGCCTGCCTTT CAGAGCCCCCCCCCGCTGTACGTTGAACGCGGGACGGCCGCCCCGACGCA GGAGTCTCGGCTGGTGGCGTGCGTGGGAAATTATGTGCTTGTATTTACAC TGTTTCCCACGGAGATTTCTTGCATGTGTCATGCCACACACCCACCCTCT GCAGGTGCTGGCAGTGCGGAGATTCCGGGCCGGACAACACGGTGGGGGGG GTCTTCAGGTGTGCGGTCTCGGGGTGCGGGAAGTTTTATCACCATGGATG CGTGGAGCTCAACAAGAATTCCAACTTCAGGGGGGGGGTCGACGAGGTGT GAACCAACGCAAAGATGAATGGGTGGTCGAGTCTTGAGTCTTGTTTCTGG TTTCGAAGATGCTTCGAACCCATCGTCAGGGCACATTAATGAAAGTGGCC GGGTTGTAGTTTCTTATTTCGGGTTTTGTATTTGAAGACTAGACACGAAA GCAACCTCAGCTCGAATGATTGCAATAATGAATAAGTAGGTTTGCGGCTC GTTTGTTATTTCGAATATGACACAAATCCATCGCGAGGATGAATCAAGCA AATATGGACGGGTCGCCGAATCTTCGACTCTTGCAAGTGGTTTTGAAGAA ATGATAAGAATCCAACTTCAGGGCGGACATCTACGGCGTGGGTAGTAACT GAGAAGAATCATGAGCGACGTGAGTACGTACCGTCATCTGCCTTTCTTGT TCTTGAAGCTGACATCGATTCCAGCGCGAGGGGCGACTTGCGTCGTGGAG GTCGAAGAAGGAAACGAATGAGCTCTGCTGTTTAGGTCTGATTGGTTTTG CAGATGGTCCTTGGCGGGGCAGGCGTGACGCGGACGGGACTGTCAGTTTG AACACTGGGTAGCCGGTATTGAAGTTTCGCCGTGGTCGCCACACTTGCAA ATCTTGAAGTCCTCAACCTATGTCCTTCACCCCATCTGATTTACGTTTTT GTTCCGGGCTGTCACACGGGGCTCTTCGGCGGGACTATTTGCCAGGGGGA GGACGGGCAGACGGTGTTCAAGTTCCGCTGCGGCTACCACTCGTGTGATA CGTGCGAGACGGGGCGAGGAGGTCACAAGAGCCACCTCTACAAGTAAGCG CATTTTTTTAGGTAGGGAGGAGGGGAAAGGGAGTGAGATGGGGAAGGTGA GAGATAGTGGGAGAAATGGAGGATGTGTGCACCATCGAATTATCAGACGG AGTGTACTGTAGCGATGGCTTGCGGATGGCCGGATAAGAGACACCTCCAG AAGTTGGCTGACCCAATCGGATAGTGTGGTGTCGGGCGTTCCGACCAAGA TTTTGAGAGTGAGCCATGTTTCTCTTGCGGCGGGTGTGTTGTCGTCGTCG TCGTCGTCGTCGTCGTCGTTGTTGTTGCTGTTGTTGTTGTTGTTGTTGTT GTTGTTGTTGTTGTTGTTGTTGTTGTTGTTGTTGTTGTTTTTCTTCACTT CTACACCTGTCCGATCACCTTTAGCATGCGGCTTTTAAAATGTTTGACAA AATCGCCCGTGTTGGAGCGACTACCACCAGGAAATCACTCGCAAGCCTGC GCATCTACAAGATATTGGGGCGTAAAACCACGTTTCGGAGAGTCGTTCGC CACACTTGCTTTACACGCGCCCGTGCAGACGGAGACGTGAGCGAAGAAAT GATGCGCCAGGACAACTCGTCGCACCCCCCGCTGCGCCGAGTCGCGGGGC TCGACTACTCCATTCCCAGCAGGATGTAGATGCAAAAAATGGGTCAATCT CAAATATCTCTTTCAGAGCATCCATGCACTTGCCAACGAGGCATGACGCA CTCGTTTGATTGGCGGGGATGAGAGCCGTCAGAGCTGGTCTCGGGGCGGC GGAAATGACTCCGGGTTTACGGTACTGCGGTGTCCACTTACACTGCAGAA GCCCCCATGACCCGCCCTCGAGTACGCCTGCCTTCCCGTATTCTGCAAGC GCAATCGCCCATTCGGCGTTGCCCCCCGTGCATAAGACCTCGTTCGCCCC ACGGGTCACTGCCTTGTCCTTTCTTGTTGGATACCTACAATTTCCCCCCC GCTGGCTTTGTCATTGCTAGCCTTGTCGACGTCGATTGCTTGGCATCGTT CCATCACGCAGGTGCATGAAGTGCCCGAACGCCTACCACCTGAACTGCAT TCCCCCGGACGCCCGCTACCACGAGCTCGCCCTGCTGTGCGAGGCCCACC CGGATGTGAGAACGCGAGAGCAAGGGAGAGCGCCGGTGCCAGCCGCTTCC CGCTCATCGCCAGTCACAAAACCACATTCTGCCTGCGTGCACTGCAGTAG CCCGGGTGGTTCAAACGTCCTGCACATTATTCGCTCGCACGTTTTGGAAT CCCCATGGTCCCAAAATGAGTAACAAATCGCTGATTTCCAAGTTTCCGGA CAGAGGACTAACGCATTGTTGGCCAGGAATCCGTACTCGGCCGACAGTCT CCCGAGGGCCTGCTCTCCTTCCGCGGCCCCTTCAGGGCATCCTCCCCCTC GCCCTGGTATTCTTGTGATTTAATTACTGTTCTGGGAAATGATATTGGTA AATGCAAGGGGGCTACGCCTACCCCTCGTCGGGGAAGCAGGCTCCGTGCA AGCCCCTTCGCGTTTTCCATGCCGATGGCGAGAAAGCTGTAACAATCGAT CCGTGCGGCAGAGGGTTGAATATCTGATATGTCGCAAGCTCGAAGAACTC CGTATTTCGAGAACGGGAATCCCGCAAGAGAATGGCACATCACGCTCACT TATGTGGTATGCATCAGCAGTGAGGGAGTTACTTGCATTGTTTTCCTGTC CCGGGAAATAAAAAAATGTGTACCCAGGACGAGCTGCCGGCGCTCAAACA GGAGGACAGCGTCCTCGCAGGGACGGTCCAATGGACGGAGGGAGAACGGG GCAGGGAAGGGAAAGGGGCAAAGGAAGGGGTGGGGGAAGGGGACGATGCC AACGGGGAAGAGGCGCCGGCGGGGATATCCTTGAGGGACCTCAAGCTCCC CAAGCTCCCCAAGCTTCCACCCAAGTAAGTTGAGGCGAAGTCGGTCGGCA TTTTCTCCGGAGGGCGCGACAACTATGTTCAGTTCCGTCACCCCCGTTGT TGTTGTTGGTGGTGTTGTTGTTGTTGTTGTTGTTGTCAGTGGTGGTGGTG GTGGTGCACACGTCTTTCTTTCGCCTCACCGGGCTGAAGCTTGAAGTCTG CTCGTCAGCAGGAAAAGAGGCGGCGCCTGATCCACATGCGAGCCAAAAGC TACGGTGCCACGCCGTGCTAGTGTTGAAAAGGCCGGAACAGACTGGCCGA CAACGGCATAATTTCTCAAGTGCGCGATCAGAAGAATGCAATCGAAGCTC GCGTTTAATTGCCGAAAATGCATTTCCACGGGAAACTGCTTCCAATATCC GGATCGACTGACTTTGGCCGAGGGGTCGACATTGGTCCTGGAGAATCACT CCACACGGGCTGCTTTCACCCCCTCCTACACCAGCCGCAGCTTTCGCACG GTGAAACAAAAATCAAGTAAAGTCAGAATTAGTTGGGGTGTTTGCGGTAA GTGTTGGGTGACCCCCGTCTGCTTTTCACTTATTCTTGAGATGTCTGCGT AGGCGGCTCCAAAGCAGAAACTGCGGGTACGAAATGGAGGGGTCAGCCGT CCCCCAATCCCCAACCTTGGCTTTCTCGCCGATTTTCGCCCCCCGCGTGA GGGTTCTGCTGCTTTTGAGTGCCCATGAGCGTTTTGATGCCGCTGTTTGC CTAGAGAGGAGCAAGCACACTCTGCCGCTGAAGGTCTTTGCGCCCGTCGC AAGCACGATTGTGTTCTTCCTTGGCCTGGGTGTGCACGGTTGATCGCGTG GAGCGTTGCAAACCGGCTGATGAATAAACTACCCCATGTCGAGAGGTTAG ATAATCTAGAAACGGTTCCGTCAAACAGTCCTTCCCCCCGAAGGGGCTCG AAAGCGTGCTTCTTCTCCGCGAGCATCAAACGCCCCTTACCCAAGGCTGA CCTGCGAAAACGCCCTTGTCAGCGAAATTGTACGCACTCCATCGCTCAGG TCCCTGATCTACATGTGTGTCGTATGTTCCTCACAAACCGGGGTCAAGGA TGAAGAACACACGACCTTTGTTCGCTTGGTGCTTTTTTCTGTTCTCGCGG GTGCGCATTGTCCACGCTGTTGTCTGATATATCTCTTGATACCTCTCCCC TTCGCCTCCCTCCTCGTCCTCTCCCTCACCTTGTGATGCTCCTCTCGCGT GACTATCAGGGAGGACCAGAGGAGCGATCGGCGGCACTTCCGTCTCCCGA CGAGCATCCTCGACTCTTACCATAGCAAGCCTCCCCCCTTCCAGCACATC TGCGCGATGCAGTTCGTCGCCCCGAAGTGAGCTTTGGATGTGGTTGTACG CAAATGCGTTGGGATCCGCGGTAACCGCACACGTCCACGGTAAAACCTTG AGGCGAGACAAGTGAAGGATGAACTGTGGCCTGATCGAGCAGATTCCTCG CTTATCACAGAACGGGACGGGACGGAAAATATGATGCGGTACATCACGCA ATGAATCCAGTAGGACACGGCATCGCCTGGGGATGAATGGTACGACTAAG GCGCTCTGGGGCGCGGCACGGTATTTCCACGGTACGTTATGCCCACGGCA CGGCAATGGAACAGTTGGGGGACGATCCGGTACGATACGGTGTGATAAGG CACGGCAGCAGCAAGGTGATGTGGTGACGGACGCAAGCGCCACGAGGGCG ACCTCTTGGTGTCTGGTGATCAAAGGTCAGACGACACGGCTGCGGATCGC CTCCGCCCGCCAGGCACTCGATACTCTTGACACACGCTCTGCTACCACGA TCTCTTGTATGAATTATGAACTGAGTCACACACTCCCTGCCCTCCGCATC CCTCACTCTTTCTGCGCAGGCCCCCTCGCATGGACCCCACCCCGGTGTGC AACTGCACGGGGGGCACGTGCGGCGAGTCGTGCCTCAACTTCATGCTCCG CACGGAATGCGTGTGCGGCAACGGCATCCGCTCCAGGTGAGTCGAGTCGG CGCTGTTCGTTCGAGGCCCGGCACTTGGCCAAGCTAACAGATCCTAGCAC TTTCGCCCCGGGTCGACATTGAGGTTGGACGTGGCGTTTAGCCCTCCATG ATGGCCCGACATCATGCCGCGCAACTGCGCATCCTCCGCGGCGGCGGCGG CGGCCCGGTGTGGCCATTTCCGGCAGCGCTGGCTGTGTGTCGGGGGGGGG GTGTACTCATAGTCGTGCATGCCGTAGTCGTTAGACCATTGACCTCGCAT CCCTACCAAGCCGGGACGGAGCACGCCGGGTTCTCACCGGACCAGGCTCT CACACCACCAAGCGCGAAGCGCCGTGAGGTATTCGGCGAGTCGCATGAAG GGTGCGCTGCATCCTGCTAAGGGTGTTCGGCATCTTGTGCTTACTTCCTT GCATACGGATGACAGCTGCGTATGGCTTAATTTATTTTCTGGTGCTTTCA CTTCCGGAGACAGTTGTAAGCACTGGGTAACTGCCTCGAGGGTGCTTGAC CATGTTAACACAACGTGGTGCGATCATCCCCCTTGCGCGGAGTGAGGGTT CTCCACTCCGCACAACATGATCTACTCGACCACCATTATGGTTACCGCCA AGAAAACCAGAGGAAAAACAAAGACGGTTACCTGGTTGCCGAGTTCACGA AGTGAAATGGCTTGTTTTACAACGTCGTTGCCAAGCGACGAAAACCCAAT CCCGATGGCAAACACCGAGGTGAGAGCCAGCGGGGGGGGGAGGGAGGGAG CTTTTTTTCAGACTTGTTCCTATAGCTCTTGATGCGCCCGGAAAGATCGT GCGAGCTCAGGTCCATTCTCGGGTAGGCTTGCTTGGGATCAAGATTGCGG ATTTGGTTTTGAACCGTAGAACATCTGACAGGGGGTTGTTTTTGTCGAGG GAGAGGGGGAAATGGGGGGACTAGAGGTACTAGATCAGTGGAAGGGAATA AATCGAAGATGTGCTGCGTCCAGCGATCCAGAACGCATCCATTTTCCAAC AAGCAATCGACCACTTCATCAATCGATTTCTCAACAAGAAAGGAATTGTC AGTATGATCATGAAGGGTCTGAATCAAGTGAATCAAGCAATCAAACCCTC TAGGGGTCCGACCATTGATCCAGTACCTGACTAGCGTCAATCAAACAGGT AGCGTTGGCGTGGCGCCAAGCGAGGGCAGAGTCTGGCACCCGTTTACCCT TCCGATCGTTTTTACCGCATGCCTCTGTCGGCTGTCCGTGTGTCGGTCGA CCGATCGGTCGAACGGCACTGCTTGATTCTCGCAGGTACCAGAACTGCAA GCAAGGCGCCAAGTGCGGCAACCGCCGCCTGCAGGACCGGGCCGCCGCCA AGGTGAGATTCCGTCCGCAAAGTAGCCCATGTGCCAATCAGGAGCCCCGG AGATGGCGTTGCCCCCCCCACGCCCCTACCCCCTCCTTCAGCTCAATCTC CGCACCACTCGCCGAATTCCTCGCGGCACTTCCGCGCTTTGGTATTGGCA GTCTCGCGCCCTTGGCTCGCGCCCCTTCCCAAACACAATTCAAATACTCA ACAACGCGCTCCGAGGTATGCCACGGACCCTGCCCCGTCGATGACTCCTC CCCTTCCCATGGTTGTCTCAGGTGGTGCCATTCCGGGAGGAGGGTATGGG GTGGGGGCTCAGGGTGGCCGAGGACTTGCCCAAGGGCTCGCTCGTGGGGG AGTACGTTGGGGAGGTAAGCGAGCTTGAGGCTATTGATTGTGGAAAGGAC GGCTCATCCTGTTTCTATTCTCAGTCTGTGTTTTGTTTGAACGGTCATGG ATCCGTTCGGTCTTCGATCTGCCGGTGTCTGGGTATCGACTCGGTCTTGG ATGGGGCACCGATTCGGATCACAATGCACGGCGTTATCTCACAGCTTTAC ATGACATTACTGCATCGCATTTCTTGACACCCGATCACATCCCATCGTCA CACAAAACCCCTGGTGAGGCCATGATTTCTGTTTCCCGTCCGATTCAGTC TGCTGCTTTTGTGCCGGGTTGACTCCGTCCTTCCCCCGTCTAGTTCAACC CGCTGCGTCGTGTTCGGCTTGAACGGATTCCGTTAAATGCCGTGGGTTGT CAATCATCCTCCGCACAGGGGACCGACGCTCTCCGCAAGGAACGCCGAAC ATTCCACACCGCCTTCGTTGCGCCGGAGGTTTATGTAGCTTTATGTGCAA GACATACCGCGTTGGCATTCAACTTGCCGGGGTGGTTTCTTCTTGTTTCG GTTTCAGGTGATCGATGAGAAGATGGTAGAGCACCGCATGGCGGAGCAGA GGCGCCTGCGGCCCAAGGACGGAGAGTTCTACATAATGGAGCTGGCGCAG TCGCTCTTCGTCGACGCCAAGGAGAAGGGAAACCTGATGCGGCTAATTAA CCACAGGTAAGTCCACTGTTCGACACCAACCGAGGTCTTCTCGCTCCGGG GCGGGACGTTTAAAGGGAGGGTTATTGCTGGTTCGGGAGGGAAACCTCAT GCCGCGTGTTTCTGATGACGTTTCTGGATGAGGAAGGGAAACCTCTTAAG CGACGGACAGATCACTCTTACCCATCGCTGGTGCCGGCTTGTCTTTGCGA TTGGTGTTTCTCCTGAACGAGAGAAAGCCGTCCCCCGTTTGTTTTCGAGG ACCCCGGCGTGAGTCGGTTGGCGAGGTATCGCGTCGTTTATTTGCAGGCT GAGTGCTTAGGTCGAGGCCTTCCTCGAGGTTTCAGTGATCATCGATAGGC GCCTGTGTCTGCACTTGCCTTTCTTACACCGCGTCGTCGTTCATCATCAA ACAAATCATGCGGCGACCTATGCCTCGCCCTCTCTCGTTGTTTGCGGCTT TGTTGTACTTTTTTATTGTTGACGCTGCATGAAGTGCTGCCTTTATATGT GCCCTGGGTGTGTTCTTTCTTTTTGGGGGGGCGTTGTTTTTCGAGCTGCT CCTTGTGTACGCTCAAGATCGAGTCTTTTCCGCTCATTTTGGTTTCTTTC TTTTTGTTTTTCGTCGTCTGGTCGGGACGTGCAGCTGCAGCCCCAACTGC GACGTCCAGGCGTGGAGCATCGCAGGGTACACCCGCCTCGGCATCTACGC CAACAAGGACCTTGCCAAGGGGGAGAGCCTCTCCTATGACTACAAGGTGA GCGAAAGGTCAAGCCGGCGATAAAGCTAGCAAGCAAGCCGGCCCGTTCTC GCCTCGCCGTCCCCTGATCGAAGACCTAGACACCAACCCGTTGTCCGCAC CCAACGGCTGTGTTCGCACTCATCGTAGATCGCGGCATTTTCCGCAAGGA ATTGCATGGTGCAACTGCTGATTTCTTTTTCCTGCTGCTTTCAATGCGCT TCATTTTAGTTCGATTTATTTTACTGCTGTCGGCCTTAAAAATTCGGTTC TGTTTCTCATGTCGCGTCCAGTGTTGCAATTCGCCTGGCCTGAAGTACGC GGACTCCTTATTTCGAGACCTACCCTTGTCTCCTCTGTACTTGGTGTGAC TTGCTGCCCTTGGTGGTCATGTAAGGCAAGTCTATTCACGACCCTCCAAA GGAGACGGAGAAATTAACGCGGGCGCTCGTCTTATCTCTCGTGACCTTAG TAACTCCGTGAGCTCAAATGAGTACACGTGTCGTGTAGAGCTTGACCTCC GGTATCGGCTCTTCCAGCCGCCTACCCGCCCGCCCGCCCGCCTGCCTGCC CGCCTGCCTGCCTGCCTGCGAGCCTGCGTGCCATTGTGGATGACGACGGG TTTCCCCCTACCGCCTCTTTCGTTTTCAATTCCATCCCATTTCGTCATTG CTGTTAGTTCTCGACCAACGAGAAGGCGAGGTTTAAGTGCATGTGCGGGG CCGCCAACTGCCGGGGGACCCTGGCGCCCAAGAAGCAGGAGGAGGAGTCC ACCGAGGACGTGAGTGAGATCGAAGTCCACGGAGACCCCTTCGTCTCAGT GGAAACTTGTGCGTAGAGTGGTCTTGTTCGCTCTCTTCTCCCTCTCTTTC GATTCTGTGGATATCCCCTGGTTTCCCCTGCCCAGAAACGGATTTGAATG ATAACATGAGTCATGGATGAGGCATCCACGATACACTAGTAGGTGAACGC TGGTCATCGGGTGTTTCATCTGCTCTTGATGATTTCATCTTCGTGCGGTC AAAGATTGGTGCTAATGTTTTCCAGCACATCCCCCCCTGTACGCGTTGCT GCAGGTTGTTCGCTTACGGTGCTTCTTGCTGCATGTACTCCTTGCGCGAT TTTTTCCGATTCAGGAACACTTCACCTAATTCAATACTCCGGAGTATTAA CTTGAGTATGAAATCTCCCCCCCGGCTTCAAAAAATCAGTCAATTGCCTA TGGCATACCAGCCTACATTTCCTCGTAGGGTATCTACCCGCCCGGCGCCC TGGGAATGGCTTCACTGAGCCCCCCTGCATCTCTTGCATTCTGTCCGTGC GCCGTAACTCGGGGATGATGGAAAGCGATACCTGCGCGCGACGTCCGGTG TCCCGGCCGGACACACCTGCCTCTGAGTGCAGCAGAACAAAAAAACGGAA CCCAACACACGCAACATGGCGACCGAAGCCTTTCGGTGGAAGAGCGACGA ACGACCAGGGTGCCCTCACGCACTACTGCCGCCGCTGCCCGCCGCCTAAC CAATCTCACCCCCCGACGCTGTGATTACCCTCCCGCCCCTCTCTCGATGC TCGATGGATTGGCCAGGGGTCCAAGCTAAAAGGGAAGGCCAGGAGGGAGA TGCTCCAGAAGAGGGAGAGGATGGCCAGAAACAGACAAGCGCGGAGCCAG GTTGGGCTGTTGGTCAGCTCCAAGCGGCTGTCGCTGACGGGCAGGGTGCT GCCGGGAGACAGGACGGCGGAGGTCAAGGCCGGCCCTCCAGCGAAGTACT TCGCGTTCGCCAGGGTACGTGCGTCGGCGGATCTCTCGGTCTCCCGTGCT AGCGGTCGCTCGTTTTCCGTTTTTTTTTTTGAACACGCGGCCTCTCGCTC TCTTTGTATCTCCTTCTCTCTTTCTCTCTCTCAATATATCTCCCCCTCCT TCTCTCTCCCCCCTCCTTCTCTCCCCCCTCCTTCTCTCTCTCTCTCTCTC TCTCTCTCTCTCTCTCTCTCTCTCTCTCTCTCTCTCTCTCTCTCTCTCAA CGATTTGTCTCCTTACGGTGTGTCGCAGGCGTTGGTTGTGGTGGTGATCT TTCCGGTAGCGTTATGAGGTCGCGACTGTAGTCGGCTATTGCTTCAAATC GTTATCATCGTAAGGCTTGGAGCCTACCACCTTCCTCCCAGGGGTGCGAT AGTCCGATGCCTTTATTGGCCACCTGCTCGTCCCGTTCGCGGAACCGCGC CGGCCATTCTCCCACATTTTCATTCCGTTCTAATCCATTCCCGAGGTGAC ATCGTTCAATGACTGTTGGCTTCAATGATTCTCCTCTCAACGATAATCGG ACCACAGTGAGGGTACTTCGCACGTCACGCCGACCTCGCGGAATACCCAA GCGAAGTTGCTCGTGCAACTGCTTTCAAATCGGGACGGAAGTTTTTGCTG CTAGCCCATTCAGGCTTATGACCCTCCGACGACGGCGATTATGTTCAAGG GCGTCTACTCCATGCTCTGCTGGATCTCGCCCTGTGCTGTCTGTTGTTCT GCGTAGGGTTCTGTGCATCAGCTCCTGTCTCAGGGAGGGCCTTTCACCTC CGACACAGGATGCTCACCACTAGCCATGTATCCGCAGATACTCCCGCCCC GCATTCATTCTCTCCGCGTGGTCGGGTTCGACTTGCTCAGGGAGGCCTGT GTTACACGTTGACATGGTGTCAACACTCTACGGCATGCGCTTTTGATTGT TTCGCTCCTCCGTGCCTCCCATCGCCCTTGCTTGGAAGTCATTTTCGTCG GAGCGGGCTACGCAATACGCCCATAGCCTTGGCACTCCAAGTCTGCTTCA TTGTTGCATTCCTTGTCACGTTCTTCACGGTGCCCCCCCCGATCCCCTTG CCCCGCTCTCCCCGTGATTAATTCAGGACCAGGGCATCTTCCTCGTCCGA AACGCGCGGGCTGGGGCCGATCTTCTGACCCGCAAGCGCATGCTGGCGAC CAAGGCCAAGGCGCTCGCGAAGACAGCCGCGCTGCCCGCCTCTCCCCCCT CTCCCCCGACCGCCGCGGCGGCAGTGGATGCGACTCCCGCAAGAACGCGC GCACGACCGGGCGCCGCCGCCGCCGCCGCCGCTGCAGACCGGGGAAGGGA CGACAGAAGCAGTGCTTCTGCTCCTGCCACTGGCGTTGCTGGTGCCTCTG CTGTCTCGGAGGGCGTCGAAGCAAAGCAGACGTCCGCAGCAGCGAAATCA GCCGCCGAGACAGCAGCGGAAGTAAGGACTGGAGATGGAGCACCCCCGGG GAAATCGGCCCCTCAGAAGTCTACCGGCGGCGGCAGCGGCGGCGGCTTGT CCTCGAGGAAGGGGTGCAGCCCCCCGACTAAGCCAACGCGGGCCCGCCGC CCTCCGTCGAAGCGGTCGCCGGCGAAAGCGACCGCGAAAGCGGCAGCGGC GGTGGCAGAGCCGGTGGCAGAGCCGGTGGCAGAGGCGGCGGCTCCTGGGG GCACCGCGCAGGACGTGTCGAGCGCGGCGTTATCCTCCCCCGCGACGCCC GGCCGAGGGATGTCCAGGGCTCGCGCTTCTCCACGCAGGAGTACCACCGC CGCCGCCGCCGTCCCCGCTACCGCCGTCGCCCCCGCTCCCACTCCCGCCC CTGCCTTCTCCCCCGGTGGAAAGAAAAGGGGAAGGCCGTCGAAGGCGGCA GCGGCAGCTGTAGTGGCAATGGACCCGTCGTCTCCCGCATCGTCAACCCC GCAACCAGAAGAGAGCAGCGTCGGAGCGAGCTCGTCGCCAACGAAGCCCG GCTCCGTCCGCAAGCGGGTCCGCCGCGCGCCCGCAGGGAGGTAGCCGCAC CCGCGGATGTTTTAGGCGGCGACGAGAGGACTAACAAAGAAGAGAGCGAG ATGGACGGCGGTACACGAACACGCGCACCAGCCGACGACTGAGCGTTGTG GGGTTGGCCGCCTTCGGGGGTTCGACTCTCTGGCAGTGTCCATTTTCTAA ACCTTTGCCCGGCTCTTCTCTATTTCGGATCGAAGCGCCGTGTTCTCCCT GCCGCTCCATGGCTGGCGTGATGGATCGTCATCGAGTAGTCGGTCTTATC CCCGTGTCTTGGGATTCGGGGGCGCGCTATTTGCTCCTTGGCGGATTGAT CCTCTTTCGCAGATGGCTCCACGGCGCTGCCAGGCATTTTTATTCTGCGG GTCGATCTGCCTGGTTTGTAGCCCTGCGGAAGAACCCAAGCTAGCTCAAT GAAGCGGCATGGGCGCAAGGGAACGGCAGAAATTTCCGCCCTAAATTACT CCAATTAATTGAGAAATGGGCGATTGAATCACATGCGGCGACCGCTCGTT GACTTGTATGGTGTTCCATAAGCGTGCGTGAGCGTGTGTTACATTGGGAT GGTACTTGGTAGACACCGCCCCCCACCGTTCACAAGAATGTGAGCGAGGT TTCGATTTTTCCGAGTTGTTCGTTGTTTTTTTATTCCTTTCTCGTTTACG GGTCAGATGGGAATCGTATCGGGACAGCAGGACAAATTGCGGGACGGAGC GGGATTATAAAGAATCGACCGATCGCTTCCTCCTTCGCGGGTAGTGTCTT CTGTTAAGGGGGTGACAGGGGGATTGTGACTCTCTCCGAGACGATAAGCA ATGTACGTGCAATCGAGGAGCCGGACTTGCTGCCCCCATGCAGAGATATT GAAATTCCAGTCGTGGTGTCTTGAGTACCGTCAGGTAAAAACAATTAATC GTGCCCGTCATCGACTTTCCCAGGTCCGACTTTTTCACCGGAGAAGGGGG GCTAGCGAGCGATTAAAAGGGGGTAGAGCACGCCGAGGCCGACCGGAAGC AGGGCGGGTGCATGGTTCCGTTGAGAGCCGACGCGAGGATAGAGCAGTTT CCCCCGCAACATCAGGTGGGGCGTTTCGAGATCAAGAAACGGAAGCAACG GTGCAACAAAGGCGCGGGCAGAGCGCGTGGAGCGTCTCTTCGGTGCAATA TCGCACCGGTATGGCGACGTCGCCGGGGGTTCCTCAAACATACTGACGAC GTGTGCCGTTCTCCTACTTGACTGGGCCCCCAAAGTATTTCTAGTCGGCG GGCAGCTTCCACTGTACGAATGCACGTACAGAAAGGAGAAAGAAAGTGGA GTAACAAAACTTCTTCGGTTCTCTTGGTGTCGAGGACCAGAACCCCCTCC ACCCGTCATGTTGCCGGCAAGCGTGAACTGGCGAACCGACTGCTTGGTGG AACGGCTGTGGCCAAAGCACTTGCTAGGCTCCTTTCTGCATACATTGTGA CCGCGTTGCGAGGCAGCTGTTTTCGAGCGTGAATATCTTGATTTTTGTCG GACAAGATTCGCCCCTCGTTTTGAAACGAAAATTAACAACGGGAGGCAAA GTTGTCAAGAAAGTCTACACAACCCATGATGGTGTTGGTACCGCTCAACT TTAACCACCCCTCGCACACTTGCAAGCGCATGCTCGGTTTTATGGGGGCG GCGGACGCGATTAAATTTCGACGCAATCCCTTCGGCCTCGAGACAATGGT TGCAGCTGGCGAGACCTGATCTCGTAGGGATTCATCAACGTAGGTGGAGT GTCACCAAGAACGAACATGGGCGAGAGTTTCGTTCAGGCGACACGAGAGG CTGAGACTCCACACTCGCAAGACAGAGCCAGCAGAAAAGGCGACGAACGC CTTTGCATATTTTCCTGGTGTAGCGCGGTTCTTTCATCAAAATCGCCCGA CGAAAAACGCCGACAAAACTCTAGCGAGCGCTTTACGTGCAGAAGACCCA ACAAAATGTGGAAAGGAATGAACGCGACGAAACGCTCGTAGCAATACCTG CGCCAAGCTACCCGTGAGAACTACAGCGCGCTCATGCCTCGACAGCAAGA CAAAAATCGCCCACCAATCGTCCACACGTCACTCCTACACGAACTTCATC TCATCCATCGAGCCATCGATGCTTTCCCAGTTCCACAGGCAGAGTCCCAT CAAGACAACGCCCTCGAAATATCAGCTTCTGGGCGGATGGAGCGAACATG ACTGCCCCCCCCGCTGCCGCCGGCAAAACATCCCGAGAACCATCTCCAAT CGCTCTGTCGCTTTTTGCCGCTTTAGAAGCGGAGCTTGTCGAAGAAGTAC TTAACACCGGTGGCCTTCTTCTCCGACTTGACGTCCTTCTGGTTCAGATA CCTCTCCTCGAAGATCTTCCTGACCGCCTTCCTCACGTCAGTAGGCGACG CCTTAATGGCGGACTCATCCACGGCCTTCTTGAGGTCCATGTCCACCTGG TAACTGCTCAAAACAGGAACGGAGGTGGGGTAAAGAGATAAGCACGCAAG GGGGGCACGTGCGCGTTCGGAAAGGGTGGGGGGCAAAAGAACGATAATTT CTTCCTGCTGCTTCCCTGAAAAGTGGAGCCACTCCCGACGGCGGGGGATG CAAGAAGGTCTTGGGGAGAGACGGAGATGTGCACTCGGAGCCGGAGTGCA CGACCCAGCTATCGCTCACGGCACACTGCTGATGATGAACCTTCACTCTC CTTGTCAGCGTCGCCCGAAAAATCGTTGTCAAATTCTTTAGGACATGGGG CGCATCATCGTTCATCGCGTCATGCCCCAGCGCGCTGCGGATAGCTGTGT GCACCCCAACGGCAGGGGATCGAAATTTGTGGCAAGGGCCCGAGGGAGGG GAGAGGGGGGGGGAAAGCCAGCAATGCAAAACACATGTCCACCACGGAAT ACAACAAAAACGCACACGCGCAAGCTGGAGGTTGATTGCTGCACGGGCGA TGGGTGTCGCGAGGAGGAGGAGAGAGGGGGCGTGAAAACAAAGTTTCATC GTGGCGGCGGCCATCGTGGACCCAAGTGGGAACCGGTCAACACCGCGCTC TCAAGAAAGGCACCACACACCGGCACATGGCATACACTTCCGCACCCGGA ATGACAGCATCGCGAGCGAGAACGCACGGTATGTTTCCGCGTCGGAGGCG GGGAGCGCCCGCCCGCGAGAGTGAAGAGCGCCGTCTCTTGGGACGGGACA GGCGAACCAACCACACGCTAGTCGCCGTCGTCGGGAAGTCGACCTCGTGT GCCGATTAAGGACAGAGTGGCGCCGGCGGTAGGGATTCCGACAATGCCCA GCCAGAAGGGCAAGCGTAAGACTTGATCCGTCATTCTCGGCTCTGGGGGC TGTGGAAAAAAGGCCGCGTTTTGCCGCAGGCGAAGCCGTCACCCGCAGCG CGGCGGGAAAGAAGCGCGAGAATGCACGCCAAGACACCGGCCGGCGCATC AGGCCTCCATGTCGCTGGAACAAACGTCGTTCATATTCGAACATTTGTAG AGTGCCTGACAGCTCCAGCCATTCCAAGTCGCACGGAATTCAGTTCGCAA TGTTGACAGGTCCGACGTGCTCCGCTGCAAAAGCTTTTGTTGTGGCGTGG AGAGCCCCGTCTGAAAAAAACTGTGTTTTCTCGCTAAAAATTGGGATGTG TCTCATGGAACAAGCTTCTAATCCACATCCGGAATCAGGCCGGCCGCAAA CGACGCCAAGGGTCGAAAGCCGACATTTATGACGCTGCCTCTCGATCGAC GCCGACACATTCTACGGCAACACGCGGGGGGATGGGCCCTGGGTCGGTCC TCATGCGCGAAGGGTTCCAAATATATGTGCTCCGACACTTTACGCGTTGC ACCACGTAAACTGGCCGCAGCGTGATTCCGGCGGAGACGCGGCGACACAA GAAGGGCCAGCGAACTCTTCAGGCGGTGTTTGGCACGGGCAAGAAGATAA ATTGGCGGCTTACACCTGCAGGAAGTGACTATTTCTCCACTTCTAAATGA CAGTCGCCTTGAAGAGGTGCCAAAGAAAAAATCGGAATAAGTGAAAAAAC TGAGAAAGCTCACGACCCTGAAACGGCTTTTCGCCTCGTACCCCCACCTC ACCCTCTCCTCAAGACACCACGGCGTGACATTGCCACTGTGTGCCGTGAA AGAGCGGGGGGAGGGGGGGAGGGGTACTTCACCGTATCCGGGCCGGGGAC CGCGTCGCCGCACACTGACCGCGCCCCCTACCTCCTACCCGACCCCAAAT CCTCCGCCCGATCCCCCACCGGCTACCACCCCCTGCCCTGGGCCAACCCT TGCGAGGATGGAAAGTCAACAATGCGGGGCAACTGTTGATTTTCCATCCC TTCACGAAGTCGGCCTAAGTACACCGCAAAGCTCGCTTGTTTCGCATGAG TGTGTGGTATCATTCTCGGTCTTCTCGACGAGTCATCAGGAGAGGGGTCC AGTGTGCGAAAAACCCATTGAGGGGGAGTACGTCTCTTGCGAAGAGACAT ACTCCGCTCGGGAAAAGTGGTGCACCCTCTTTTTTTCTTCCCTTTGCTGA CAAGTCGCTAAGAGGGAGTAACGATCGCTGCCACAGCTACCGTGCGAAGC GAGAAAGTTTTCACGGTATTTCTTTCGCCTCCTCCCCCCGCCTCGCCATC CCTCCTTCCGCCCAGAAAGGAAGGACAAGGGAGCGCGGGGGGGGACGCAA AGAGGGCAGGGGTAGGTAGAAGGTGGGGGGGGGACGAGGGGTTTGGGGAG GGGGAGGAGGAGAGAGGCGCGCGTGCCTGAAAGTCCCAAGACTTACCGGG TGGGCATGAGGTGGTTGACGTTGACGTACTTGATGAAGGGTTTCATCTTT GTGCGCTTCTTGATCTTCTCCTTACTCATTGCCTTGGTGACCTGATGATC CGCAGGGGTGGTGTTGGTCGGGTTGGGATGGGTGGATGAGTTCACAGGCG CGGGTTCAGGGCTGAAATCGACTGACTTGGGAAAGGTTGTCGAACAACCA GCGAGCGAACGTTGACATCCACCCAACCGCCAACCGACCATTCAATCAAG ACGAAAATTCAAAGTCGTGAGCAAGAAGGCCATGGTGCGTAACCTCCCGT TCGGTGTCAAGGTCGGTGGGGGTGTACTTATAATCGTGCATGCCGTAGTC GTTAGACCATTGACCTCGCATCCCTACAAAGCCGGCACGGAGCACGCCGG GTTCTCACCGGACCAGGCTCTCACACCACCAAGCGCGAAGCGCCGTGAGG TATTCGGCGAGTCGCATGAAG
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Coding sequence (CDS) from alignment at P-fluviatile_contig20:1221271..1250391-

>mRNA_P-fluviatile_contig20.4330.1 ID=mRNA_P-fluviatile_contig20.4330.1|Name=mRNA_P-fluviatile_contig20.4330.1|organism=Porterinema fluviatile SAG_2381|type=CDS|length=6378bp|location=Sequence derived from alignment at P-fluviatile_contig20:1221271..1250391- (Porterinema fluviatile SAG_2381)
ATGGAGGTGGACGCGGAGGCGGGCGCGGGGCTCGGCGCGGGCGGCGAAGG
CGGCGGCGGAGGAGGAGAAGGAGGAGGAGGCGAGAAGTTCGTCCGGATTC
ACTACCAGGGCTGGGAGACCAGATGGAGGTGGACGCGGAGGCGGGCGCGG
GGCTCGGCGCGGGCGGCGAAGGCGGCGGCGGAGGAGGAGAAGGAGGAGGA
GGCGAGAAGTTCGTCCGGATTCACTACCAGGGCTGGGAGACCAGGTTTGA
CGAGACCCTCTGCACGGACTCGCCTAACCTGCAGCCCGTGCACACACACT
CTAAGAAGAAGAAGAAGCCCGACGCCAAGAGCAGGCGCCCGAAGGCAAGC
GGTTTGACGAGACCCTCTGCACGGACTCGCCTAACCTGCAGCCCGTGCAC
ACACACTCTAAGAAGAAGAAGAAGCCCGACGCCAAGAGCAGGCGCCCGAA
GGCAAGCGTGAAGGAGTGGATCCGAGAGGATGACGAGGGAAACGTCGTCG
CAAGGGGTATTGTGGGGGAGGACGATCCCGACGATTACCTGGCCCTAGAG
AAGGCCAGAGAACTGGAAAAGGTGAAGGCCGCTGGGCTGGAGGGCGGTCC
GACCAGCAGTGAAGGAGTGGATCCGAGAGGATGACGAGGGAAACGTCGTC
GCAAGGGGTATTGTGGGGGAGGACGATCCCGACGATTACCTGGCCCTAGA
GAAGGCCAGAGAACTGGAAAAGGTGAAGGCCGCTGGGCTGGAGGGCGGTC
CGACCAGCAGGTATGGGCGCGTCGTGGTCCCTCGCATGAAGCTGTCCACC
CTTAAGGGCAAGGACAAGGCTATCACCGTCGGAGGGGGCGACGCCGAAGA
GGTGGAGGTGGGCCGTGGATCGGAGGAGGGGAGGGGCGGGAACGGGGACG
GGGCGAAGCCAAAGGGAAGAAGCGCACGAGCAGGTAAGAAAACACAGTAT
GGGCGCGTCGTGGTCCCTCGCATGAAGCTGTCCACCCTTAAGGGCAAGGA
CAAGGCTATCACCGTCGGAGGGGGCGACGCCGAAGAGGTGGAGGTGGGCC
GTGGATCGGAGGAGGGGAGGGGCGGGAACGGGGACGGGGCGAAGCCAAAG
GGAAGAAGCGCACGAGCAGGTAAGAAAACACACAGGGGCGCTTTTGTGGC
GGAGGGGGGAGGCGCGGCCGCTAGCATCGACGACTGGATCTGCGCCACGT
GCTGGCAGCTGGACACCCCGTGCCTGTCGGACATGGTCACCTGCGACGGC
CCCTGCCTCCGCAGCTTCCACGTGGTGTGCCAGGACGTGGGAGAGGACGC
GCTGGACGAGGAGAAGTGGCTGTGCGAGGACTGCGACCGCGGGGAGCATA
CCAGGGGCGCTTTTGTGGCGGAGGGGGGAGGCGCGGCCGCTAGCATCGAC
GACTGGATCTGCGCCACGTGCTGGCAGCTGGACACCCCGTGCCTGTCGGA
CATGGTCACCTGCGACGGCCCCTGCCTCCGCAGCTTCCACGTGGTGTGCC
AGGACGTGGGAGAGGACGCGCTGGACGAGGAGAAGTGGCTGTGCGAGGAC
TGCGACCGCGGGGAGCATACGTGCTGGCAGTGCGGAGATTCCGGGCCGGA
CAACACGGTGGGGGGGGTCTTCAGGTGTGCGGTCTCGGGGTGCGGGAAGT
TTTATCACCATGGATGCGTGGAGCTCAACAAGAATTCCAACTTCAGGGGG
GGGGTCGACGAGGTGCTGGCAGTGCGGAGATTCCGGGCCGGACAACACGG
TGGGGGGGGTCTTCAGGTGTGCGGTCTCGGGGTGCGGGAAGTTTTATCAC
CATGGATGCGTGGAGCTCAACAAGAATTCCAACTTCAGGGGGGGGGTCGA
CGAGGGGGAGGACGGGCAGACGGTGTTCAAGTTCCGCTGCGGCTACCACT
CGTGTGATACGTGCGAGACGGGGCGAGGAGGTCACAAGAGCCACCTCTAC
AAGGGGAGGACGGGCAGACGGTGTTCAAGTTCCGCTGCGGCTACCACTCG
TGTGATACGTGCGAGACGGGGCGAGGAGGTCACAAGAGCCACCTCTACAA
GTGCATGAAGTGCCCGAACGCCTACCACCTGAACTGCATTCCCCCGGACG
CCCGCTACCACGAGCTCGCCCTGCTGTGCGAGGCCCACCCGGATGTGCAT
GAAGTGCCCGAACGCCTACCACCTGAACTGCATTCCCCCGGACGCCCGCT
ACCACGAGCTCGCCCTGCTGTGCGAGGCCCACCCGGATGACGAGCTGCCG
GCGCTCAAACAGGAGGACAGCGTCCTCGCAGGGACGGTCCAATGGACGGA
GGGAGAACGGGGCAGGGAAGGGAAAGGGGCAAAGGAAGGGGTGGGGGAAG
GGGACGATGCCAACGGGGAAGAGGCGCCGGCGGGGATATCCTTGAGGGAC
CTCAAGCTCCCCAAGCTCCCCAAGCTTCCACCCAAGACGAGCTGCCGGCG
CTCAAACAGGAGGACAGCGTCCTCGCAGGGACGGTCCAATGGACGGAGGG
AGAACGGGGCAGGGAAGGGAAAGGGGCAAAGGAAGGGGTGGGGGAAGGGG
ACGATGCCAACGGGGAAGAGGCGCCGGCGGGGATATCCTTGAGGGACCTC
AAGCTCCCCAAGCTCCCCAAGCTTCCACCCAAGGAGGACCAGAGGAGCGA
TCGGCGGCACTTCCGTCTCCCGACGAGCATCCTCGACTCTTACCATAGCA
AGCCTCCCCCCTTCCAGCACATCTGCGCGATGCAGTTCGTCGCCCCGAAG
GAGGACCAGAGGAGCGATCGGCGGCACTTCCGTCTCCCGACGAGCATCCT
CGACTCTTACCATAGCAAGCCTCCCCCCTTCCAGCACATCTGCGCGATGC
AGTTCGTCGCCCCGAAGCCCCCTCGCATGGACCCCACCCCGGTGTGCAAC
TGCACGGGGGGCACGTGCGGCGAGTCGTGCCTCAACTTCATGCTCCGCAC
GGAATGCGTGTGCGGCAACGGCATCCGCTCCAGGCCCCCTCGCATGGACC
CCACCCCGGTGTGCAACTGCACGGGGGGCACGTGCGGCGAGTCGTGCCTC
AACTTCATGCTCCGCACGGAATGCGTGTGCGGCAACGGCATCCGCTCCAG
GTACCAGAACTGCAAGCAAGGCGCCAAGTGCGGCAACCGCCGCCTGCAGG
ACCGGGCCGCCGCCAAGGTACCAGAACTGCAAGCAAGGCGCCAAGTGCGG
CAACCGCCGCCTGCAGGACCGGGCCGCCGCCAAGGTGGTGCCATTCCGGG
AGGAGGGTATGGGGTGGGGGCTCAGGGTGGCCGAGGACTTGCCCAAGGGC
TCGCTCGTGGGGGAGTACGTTGGGGAGGTGGTGCCATTCCGGGAGGAGGG
TATGGGGTGGGGGCTCAGGGTGGCCGAGGACTTGCCCAAGGGCTCGCTCG
TGGGGGAGTACGTTGGGGAGGTGATCGATGAGAAGATGGTAGAGCACCGC
ATGGCGGAGCAGAGGCGCCTGCGGCCCAAGGACGGAGAGTTCTACATAAT
GGAGCTGGCGCAGTCGCTCTTCGTCGACGCCAAGGAGAAGGGAAACCTGA
TGCGGCTAATTAACCACAGGTGATCGATGAGAAGATGGTAGAGCACCGCA
TGGCGGAGCAGAGGCGCCTGCGGCCCAAGGACGGAGAGTTCTACATAATG
GAGCTGGCGCAGTCGCTCTTCGTCGACGCCAAGGAGAAGGGAAACCTGAT
GCGGCTAATTAACCACAGCTGCAGCCCCAACTGCGACGTCCAGGCGTGGA
GCATCGCAGGGTACACCCGCCTCGGCATCTACGCCAACAAGGACCTTGCC
AAGGGGGAGAGCCTCTCCTATGACTACAAGCTGCAGCCCCAACTGCGACG
TCCAGGCGTGGAGCATCGCAGGGTACACCCGCCTCGGCATCTACGCCAAC
AAGGACCTTGCCAAGGGGGAGAGCCTCTCCTATGACTACAAGTTCTCGAC
CAACGAGAAGGCGAGGTTTAAGTGCATGTGCGGGGCCGCCAACTGCCGGG
GGACCCTGGCGCCCAAGAAGCAGGAGGAGGAGTCCACCGAGGACTTCTCG
ACCAACGAGAAGGCGAGGTTTAAGTGCATGTGCGGGGCCGCCAACTGCCG
GGGGACCCTGGCGCCCAAGAAGCAGGAGGAGGAGTCCACCGAGGACGGGT
CCAAGCTAAAAGGGAAGGCCAGGAGGGAGATGCTCCAGAAGAGGGAGAGG
ATGGCCAGAAACAGACAAGCGCGGAGCCAGGTTGGGCTGTTGGTCAGCTC
CAAGCGGCTGTCGCTGACGGGCAGGGTGCTGCCGGGAGACAGGACGGCGG
AGGTCAAGGCCGGCCCTCCAGCGAAGTACTTCGCGTTCGCCAGGGGGTCC
AAGCTAAAAGGGAAGGCCAGGAGGGAGATGCTCCAGAAGAGGGAGAGGAT
GGCCAGAAACAGACAAGCGCGGAGCCAGGTTGGGCTGTTGGTCAGCTCCA
AGCGGCTGTCGCTGACGGGCAGGGTGCTGCCGGGAGACAGGACGGCGGAG
GTCAAGGCCGGCCCTCCAGCGAAGTACTTCGCGTTCGCCAGGGACCAGGG
CATCTTCCTCGTCCGAAACGCGCGGGCTGGGGCCGATCTTCTGACCCGCA
AGCGCATGCTGGCGACCAAGGCCAAGGCGCTCGCGAAGACAGCCGCGCTG
CCCGCCTCTCCCCCCTCTCCCCCGACCGCCGCGGCGGCAGTGGATGCGAC
TCCCGCAAGAACGCGCGCACGACCGGGCGCCGCCGCCGCCGCCGCCGCTG
CAGACCGGGGAAGGGACGACAGAAGCAGTGCTTCTGCTCCTGCCACTGGC
GTTGCTGGTGCCTCTGCTGTCTCGGAGGGCGTCGAAGCAAAGCAGACGTC
CGCAGCAGCGAAATCAGCCGCCGAGACAGCAGCGGAAGTAAGGACTGGAG
ATGGAGCACCCCCGGGGAAATCGGCCCCTCAGAAGTCTACCGGCGGCGGC
AGCGGCGGCGGCTTGTCCTCGAGGAAGGGGTGCAGCCCCCCGACTAAGCC
AACGCGGGCCCGCCGCCCTCCGTCGAAGCGGTCGCCGGCGAAAGCGACCG
CGAAAGCGGCAGCGGCGGTGGCAGAGCCGGTGGCAGAGCCGGTGGCAGAG
GCGGCGGCTCCTGGGGGCACCGCGCAGGACGTGTCGAGCGCGGCGTTATC
CTCCCCCGCGACGCCCGGCCGAGGGATGTCCAGGGCTCGCGCTTCTCCAC
GCAGGAGTACCACCGCCGCCGCCGCCGTCCCCGCTACCGCCGTCGCCCCC
GCTCCCACTCCCGCCCCTGCCTTCTCCCCCGGTGGAAAGAAAAGGGGAAG
GCCGTCGAAGGCGGCAGCGGCAGCTGTAGTGGCAATGGACCCGTCGTCTC
CCGCATCGTCAACCCCGCAACCAGAAGAGAGCAGCGTCGGAGCGAGCTCG
TCGCCAACGAAGCCCGGCTCCGTCCGCAAGCGGGTCCGCCGCGCGCCCGC
AGGGAGGTAGGACCAGGGCATCTTCCTCGTCCGAAACGCGCGGGCTGGGG
CCGATCTTCTGACCCGCAAGCGCATGCTGGCGACCAAGGCCAAGGCGCTC
GCGAAGACAGCCGCGCTGCCCGCCTCTCCCCCCTCTCCCCCGACCGCCGC
GGCGGCAGTGGATGCGACTCCCGCAAGAACGCGCGCACGACCGGGCGCCG
CCGCCGCCGCCGCCGCTGCAGACCGGGGAAGGGACGACAGAAGCAGTGCT
TCTGCTCCTGCCACTGGCGTTGCTGGTGCCTCTGCTGTCTCGGAGGGCGT
CGAAGCAAAGCAGACGTCCGCAGCAGCGAAATCAGCCGCCGAGACAGCAG
CGGAAGTAAGGACTGGAGATGGAGCACCCCCGGGGAAATCGGCCCCTCAG
AAGTCTACCGGCGGCGGCAGCGGCGGCGGCTTGTCCTCGAGGAAGGGGTG
CAGCCCCCCGACTAAGCCAACGCGGGCCCGCCGCCCTCCGTCGAAGCGGT
CGCCGGCGAAAGCGACCGCGAAAGCGGCAGCGGCGGTGGCAGAGCCGGTG
GCAGAGCCGGTGGCAGAGGCGGCGGCTCCTGGGGGCACCGCGCAGGACGT
GTCGAGCGCGGCGTTATCCTCCCCCGCGACGCCCGGCCGAGGGATGTCCA
GGGCTCGCGCTTCTCCACGCAGGAGTACCACCGCCGCCGCCGCCGTCCCC
GCTACCGCCGTCGCCCCCGCTCCCACTCCCGCCCCTGCCTTCTCCCCCGG
TGGAAAGAAAAGGGGAAGGCCGTCGAAGGCGGCAGCGGCAGCTGTAGTGG
CAATGGACCCGTCGTCTCCCGCATCGTCAACCCCGCAACCAGAAGAGAGC
AGCGTCGGAGCGAGCTCGTCGCCAACGAAGCCCGGCTCCGTCCGCAAGCG
GGTCCGCCGCGCGCCCGCAGGGAGGTAG
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