mRNA_P-fluviatile_contig9.15253.1 (mRNA) Porterinema fluviatile SAG_2381

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

Overview
NamemRNA_P-fluviatile_contig9.15253.1
Unique NamemRNA_P-fluviatile_contig9.15253.1
TypemRNA
OrganismPorterinema fluviatile SAG_2381 (Porterinema fluviatile SAG_2381)
Homology
BLAST of mRNA_P-fluviatile_contig9.15253.1 vs. uniprot
Match: D7G8H5_ECTSI (Uncharacterized protein n=1 Tax=Ectocarpus siliculosus TaxID=2880 RepID=D7G8H5_ECTSI)

HSP 1 Score: 882 bits (2280), Expect = 4.470e-294
Identity = 438/601 (72.88%), Postives = 500/601 (83.19%), Query Frame = 1
Query: 3637 PVPEQSANG---DSNKKTNVKHTFEKKGDWSLMTATRWHDSMYYEGSYFWQLFHDTQVYTRRATSIFCGSPARCYSVEVGCGTGDVILSLAGDFKHSLGLDINEGFLAYAKEHTPENFKDKVSFCRGSATDLMDIVGSHPSIDRSSGPIVVTCVNNTLGVFPDVIKPRTYSQMKELAGEDGIIIIGFWNGNKFGEALQHFYHKHPELCGTMKGAEIDMDERHLDTKEGYHTKWTTPEEARQVLKDSGFNILDIMEIGVGVLCTCSGGQGIPSPAG----ALDSQLPPSAAAPLSSDILVAEEEAHSMNHYGDRRANKEWNAETSKEGKGEGYDEQYFYRELWGGLHQHLGLYEDPGTMALPPLKRVVQACEDSTVVLFSVAKPTMGVKAVELGSGYGSGARYLALNFGATVDCVDLSQEANDRNRQLTEDAGLSHLVKIGAPATFFGTGLPGGSFGFCFSQDALCHAGRQTPKALEEAARLLAAGGSFACTNILRSEEATVEELAEVLVRLQVNHIETHESFVQHACAAGLELVETLDKTTSMTVHFQTLIEAMESRKASLLENTSPEYVEELSKDLLKWRSASNRGVMRWSFFVFRKRTT 5418
            P+PE  A+     S +  +V+HTF++KGDWSLM A RWHDSMYYEGSYFWQLFHDTQVYTRRATSI+CG PAR +SVEVGCGTGDVILSLA DFKHSLG+DIN+GFLAYA+E TP+  KDK+SFC+GSATDL+DIV +HPSID +S P VVTCVNNT+G+FPD IK RTYSQMKELAGE+GIII+GFWNGNKFGEALQ+FY+KHPELCG++KGA IDM++RHLDT EGYHT WTTPEEAR+VL++SGFN+LDI EIGVGVLCTCSGG   PSP G    A  +   P     LS D L+AEEEAHS+NHYGD                      QYFYRELWGGLHQHLGLYEDP T+ALP  KRVV+ACE+STVVLFS+AKPTMG KAVELGSGYGSG+RYLA+NFGATVDCVDL++E+ND NR+LTE AGLS LV++G PATFF TGLP  SFGFCFSQDALCHAGRQTPKALEEAARLLA GG FACTNILR+EEAT EEL EVL RLQV  +ETH+SFV HA +AGLE +E+LDKTTS+ VHF+TL+E  E+RKA +L++TSPEYV+ELSKDL  W SASNRGV+RWSFF FRK  T
Sbjct:   11 PLPEAKASKLPRHSKENPDVRHTFDRKGDWSLMDAARWHDSMYYEGSYFWQLFHDTQVYTRRATSIYCGPPARSFSVEVGCGTGDVILSLASDFKHSLGIDINDGFLAYAQEQTPKELKDKISFCKGSATDLIDIVSAHPSIDNTSAPTVVTCVNNTIGIFPDAIKSRTYSQMKELAGENGIIIVGFWNGNKFGEALQYFYYKHPELCGSLKGAVIDMEDRHLDTAEGYHTHWTTPEEARRVLEESGFNVLDITEIGVGVLCTCSGGASTPSPRGGGGVATAATFLPHPDT-LSEDTLIAEEEAHSLNHYGDSFT-------------------QYFYRELWGGLHQHLGLYEDPATIALPANKRVVEACENSTVVLFSIAKPTMGTKAVELGSGYGSGSRYLAVNFGATVDCVDLNRESNDLNRRLTEQAGLSDLVRVGEPATFFSTGLPAASFGFCFSQDALCHAGRQTPKALEEAARLLAPGGVFACTNILRAEEATNEELEEVLARLQVTSLETHKSFVGHARSAGLEPLESLDKTTSLAVHFKTLLEVAETRKADMLKHTSPEYVDELSKDLRNWLSASNRGVLRWSFFTFRKSAT 591          
BLAST of mRNA_P-fluviatile_contig9.15253.1 vs. uniprot
Match: A0A836CC57_9STRA (S-adenosyl-L-methionine-dependent methyltransferase n=1 Tax=Tribonema minus TaxID=303371 RepID=A0A836CC57_9STRA)

HSP 1 Score: 526 bits (1356), Expect = 6.390e-163
Identity = 282/579 (48.70%), Postives = 374/579 (64.59%), Query Frame = 1
Query: 3694 TFEKKGDWSLMTATRWHDSMYYEGSYFWQLFHDTQVYTRRATSIFCGSPARCYSVEVGCGTGDVILSLAGDFKHSLGLDINEGFLAYAKEHTPENFKDKVSFCRGSATDLMDIVGSHPSIDRSSGPIVVTCVNNTLGVFPDVIKPRTYSQMKELAGEDGIIIIGFWNGNKFGEALQHFYHKHPELCGTMKGAEIDMDERHLDTKEGYHTKWTTPEEARQVLKDSGFNILDIMEIGVGVLCTCSGGQG--IPSPAGALDSQLPPSAAAPLSSDILVAEEEAHSMNHYGDRRANKEWNA--ETSKEGKGEGYDEQYFYRELWGG-LHQHLGLYEDPGTMALPPLKRVVQACEDSTVVLFSVAKPTMGVKAVELGSGYGSGARYLALNFGATVDCVDLSQEANDRNRQLTEDAGLSHLVKIGAPATFFGTGLPGGSFGFCFSQDALCHAGRQTPKALEEAARLLAAGGSFACTNILRSEEATVEELAEVLVRLQVNHIETHESFVQHACAAGLELVETLDKTTSMTVHFQTLIEAMESRKASLLENTSPEYVEELSKDLLKWRSASNRGVMRWSFFVFRKRT 5415
            TF K GDWS MTA+RWHD+MY+EG+YF +L+ DT VYT+   + +CG  A+C +VEVG GTGDVIL +AGDF++S+GLDIN  FL Y++    ++   +V F  GSAT+L DI+       RS G +VVTCVNNT+G+FPD IKP TY QM+ELAG DGI+I+GFWNGNKFG+ALQHFY ++P+LCGTM GA+ID +   L T  GY T W+TPEEAR VL   GF+++D+ E+GVGVLCTC G     +P P  A   +    ++   ++    A   +++ +  GD RA+       ET+     E   +Q FYRE+WGG  +QH+GLY+      LP   R V+ACE +T+ L   A+P  G +  E GSG+G  ARYLA NF ATV CVD+S+ AN+ NRQ T +AGL   V +GA  +FF TG P  SF    SQD LCHA     +ALEE AR+L  GG  A TNI+   +A  EEL  VL RL+++ +++ +S +  A  AGLELVE  D T S+  HF T++E ++ R  +L+  TS  YV +    L  WR A   G +RW +FVFRKR+
Sbjct:    8 TFSKLGDWSTMTASRWHDAMYFEGAYFMKLWADTLVYTKEKAAKYCGGAAKCTNVEVGSGTGDVILGMAGDFRYSVGLDINSEFLRYSRARVAKDLDKRVKFIEGSATELTDIIMREVPTVRS-GSVVVTCVNNTIGIFPDAIKPATYQQMQELAGPDGIVIVGFWNGNKFGDALQHFYARNPQLCGTMDGADIDWEGHTLTTAGGYRTHWSTPEEARTVLLRYGFDVVDVTEVGVGVLCTCKGRASGKVPPPQLAQPQRRGRGSSRDWTAVAAAATASSNNGSVNGDSRASSPDRRAIETAVAALYEDTYQQQFYREVWGGGRNQHIGLYDAAALGGLPAAARAVEACELATLRLVEKARPAHGARIAEFGSGFGGTARYLAANFDATVVCVDISRHANEVNRQQTREAGLQSKVLVGAERSFFETGEPDASFAMVVSQDTLCHAEDYAGRALEEGARILQPGGVMAFTNIVVDPQARPEELTRVLARLKMSCMDSPDSLIAAAEVAGLELVEFEDTTPSLVQHFSTILEVLDERCDALVATTSEAYVADTVGGLEAWRDAGINGALRWGYFVFRKRS 585          
BLAST of mRNA_P-fluviatile_contig9.15253.1 vs. uniprot
Match: A0A6H5KUA7_9PHAE (Methyltransf_11 domain-containing protein n=1 Tax=Ectocarpus sp. CCAP 1310/34 TaxID=867726 RepID=A0A6H5KUA7_9PHAE)

HSP 1 Score: 326 bits (835), Expect = 2.610e-98
Identity = 163/217 (75.12%), Postives = 188/217 (86.64%), Query Frame = 1
Query: 4768 MGVKAVELGSGYGSGARYLALNFGATVDCVDLSQEANDRNRQLTEDAGLSHLVKIGAPATFFGTGLPGGSFGFCFSQDALCHAGRQTPKALEEAARLLAAGGSFACTNILRSEEATVEELAEVLVRLQVNHIETHESFVQHACAAGLELVETLDKTTSMTVHFQTLIEAMESRKASLLENTSPEYVEELSKDLLKWRSASNRGVMRWSFFVFRKRTT 5418
            MG KAVELGSGYGSG+RYLA+NFGATVDC+DL++E+ND NR+LTE AGLS LV++G PAT+F TGLP  SFGFCFSQDALCHAGRQT KALEEAARLLA GG FACTNILR+EEAT EEL EVL RLQV  +ETH+SFV HA +AGLE +E+LDKTTSM VHF+TL+E  E+RKA +L++TSPEYV+EL+KDL  W SASNRGV+RWSFF FRK  T
Sbjct:    1 MGTKAVELGSGYGSGSRYLAVNFGATVDCIDLNRESNDLNRRLTEQAGLSDLVRVGEPATYFSTGLPAASFGFCFSQDALCHAGRQTSKALEEAARLLAPGGVFACTNILRAEEATNEELEEVLARLQVTSLETHKSFVGHARSAGLEPLESLDKTTSMAVHFKTLLEVAETRKADMLKHTSPEYVDELAKDLRNWLSASNRGVLRWSFFTFRKSAT 217          
BLAST of mRNA_P-fluviatile_contig9.15253.1 vs. uniprot
Match: F2UCP4_SALR5 (Methyltranfer_dom domain-containing protein n=1 Tax=Salpingoeca rosetta (strain ATCC 50818 / BSB-021) TaxID=946362 RepID=F2UCP4_SALR5)

HSP 1 Score: 201 bits (512), Expect = 3.450e-52
Identity = 97/241 (40.25%), Postives = 149/241 (61.83%), Query Frame = 1
Query: 3694 TFEKKGDWSLMTATRWHDSMYYEGSYFWQLFHDTQVYTRRATSIFCGSPARCYSVEVGCGTGDVILSLAGDFKHSLGLDINEGFLAYAKEHTPENFKDKVSFCRGSATDLMDIVGSHPSIDRSSGPI--VVTCVNNTLGVFPDVIKPRTYSQMKELAGEDGIIIIGFWNGNKFGEALQHFYHKHPELCGTMKGAEIDMDERHLDTKEGYHTKWTTPEEARQVLKDSGFNILDIMEIGVGVL 4410
            T E+ GDWSL +  +W ++++   S+F QL+ DT  +  +      G    C  +EVGCGTG+ I+ LA   K+ +G+DINE F+ Y++    +N  D V F  G AT L +++ +    D +  P+  +V CV NT+G+ P+ ++   Y  M E+AG+DG  ++ +WNGN FGEA+QHFY+++P+LCG  KG  +D     L T  GY+TKWT PEEAR++L+  G   L+++E G GV+
Sbjct:  195 TDEEGGDWSLFSVEKWRNAVFTTKSFFEQLYADTHTFIEQQVEKLGGRDNVCL-IEVGCGTGETIIPLASAAKYCIGIDINEDFIKYSQV---QNKADNVRFVCGDATKLQELLSTSEVADWAGEPLRKLVICVGNTIGIIPEFLRDSIYRNMAEVAGDDGACVVIYWNGNCFGEAVQHFYNENPQLCGPFKGKHVDFQACTLQTPSGYNTKWTKPEEARELLQSKGLTTLEVVEQGRGVM 431          
BLAST of mRNA_P-fluviatile_contig9.15253.1 vs. uniprot
Match: A0A7S3ZFK8_9EUKA (Hypothetical protein (Fragment) n=1 Tax=Lotharella globosa TaxID=91324 RepID=A0A7S3ZFK8_9EUKA)

HSP 1 Score: 187 bits (474), Expect = 9.080e-48
Identity = 133/418 (31.82%), Postives = 199/418 (47.61%), Query Frame = 1
Query: 3715 WSLMTATRWHDSMYYEGSYFWQ-LFHDTQVYTRRATSIFCGSPARCYSVEVGCGTGDVILSLAGD----FKHSLGLDINEGFLAYAKEHTPENFKDKVSFCRGSATDLMDIVGSHPSIDRSSGPIVVTCVNNTLGVFPDVIKPRTYSQMKELAGEDGIIIIGFWNGNKFGEALQHFYHKHPELCGTMKGAEIDMDERHLDTKEGYHTKWTTPEEARQVLKDSGFNILDIMEIGVGVLCTCSGGQGIPSPAGALDSQLPPSAAAPLSSDILVAEEEAHSMNHYGDRRANKEWNAETSKEGKGEGYDEQYFYRELWGGLHQHLGLY---EDPGTMALPPLKRVVQACEDSTVVLFSVAKPTMGV----KAVELGSGYGSGARYLALNFGATVDCVDLSQEANDRNRQLTEDAGLSHLVKI 4932
            W  M+++ W  +MY   S+F +    +T    R A     G P     VEVG GTG  +  +  +    FK  +G+D N  F+  A++  P+       F  G   +L +++  + S D      VV  VNNT G+ P+ ++      M +   + G+IIIG WNGN FG+A+QHFY ++  LCG+++GA  D DE  + T   Y TKWT PEE  +++ D  +N+LD++  G  +L                       AA P ++ +          N  G+  A  E+  +T         D   FY+  WGG + H+GLY   E+P       L+ V +A + S   L       MG     +A+++GS YG  AR +A  F   V CVD+S+  ND NR+ T +AGL  LVKI
Sbjct:   11 WREMSSSHWDQAMYENASFFNRHQVSNTDFIARHAVVNSRGKPI--VGVEVGTGTGKFLKIVLEEHPSLFKRLIGVDFNPNFIETARKAVPD-----ADFTLGDCRELKNVLNDNYSEDMQDSFKVVFSVNNTHGILPEKVRDDINKAMADTTSDSGMIIIGLWNGNSFGDAVQHFYAQNDHLCGSLQGASFDWDECKMVTASNYTTKWTKPEELGKMI-DESWNVLDVVSSGPMLLI----------------------AAKPKNTKVQD--------NASGEAGAETEYYYDTE--------DASRFYQNFWGGENVHIGLYDNLEEPNESK--DLETVFKASDKSLTRLLDHVYDHMGGLKIRRAMDMGSCYGGCAREMAQRFACEVLCVDMSKVENDINRERTLEAGLEKLVKI 380          
BLAST of mRNA_P-fluviatile_contig9.15253.1 vs. uniprot
Match: D7G8H6_ECTSI (Uncharacterized protein n=2 Tax=Ectocarpus TaxID=2879 RepID=D7G8H6_ECTSI)

HSP 1 Score: 162 bits (409), Expect = 9.430e-42
Identity = 94/173 (54.34%), Postives = 112/173 (64.74%), Query Frame = -1
Query: 2745 AILASRNAFLHTLPTPRGKVPCVR*TIRQHHE*AHMHRHRPGPPLLPPLPPDGVQIFAASEGLNASSEQRPRPASSFDQALRWAAMGAATGFATASGALAKYIDPDDVGEVVSGELPPMWVPLAFAGAITVGIFFLQVSLGDVMNDEAKLGAMSGARAAKQSARDRDMFKKKD 3263
            AI+  R+A   T+P+     P  +    Q H                  PP   Q+F A++ + AS  Q PRP   F++AL+ A+  AATGFA AS  LA+YIDPDDVGEVVS +LPPMWVPLA    +T+GI  LQ SLGDVMNDEAKLGA+SGARAAKQSARDRDMFKKKD
Sbjct:   14 AIVLRRSAQAFTVPSMMAVRPSQQAHALQQH------------------PPASGQVFDATDVVPASKGQAPRPRGQFERALQGASFTAATGFAGASSVLAEYIDPDDVGEVVSSDLPPMWVPLAVGFVLTLGIGLLQGSLGDVMNDEAKLGALSGARAAKQSARDRDMFKKKD 168          
BLAST of mRNA_P-fluviatile_contig9.15253.1 vs. uniprot
Match: A9UZS4_MONBE (Predicted protein n=1 Tax=Monosiga brevicollis TaxID=81824 RepID=A9UZS4_MONBE)

HSP 1 Score: 176 bits (446), Expect = 2.790e-40
Identity = 88/227 (38.77%), Postives = 130/227 (57.27%), Query Frame = 1
Query: 3709 GDWSLMTATRWHDSMYYEGSYFWQLFHDTQV----YTRRATSIFCGSPARCYSVEVGCGTGDVILSLAGDFKHSLGLDINEGFLAYAKEHTPENFKDKVSFCRGSATDLMDIVGSHPSIDRSSGPIV------VTCVNNTLGVFPDVIKPRTYSQMKELAGEDGIIIIGFWNGNKFGEALQHFYHKHPELCGTMKGAEIDMDERHLDTKEGYHTKWTTPEEARQVLK 4359
            GDWS  +  +W  +++   S+F  L+ DT      Y       F G+   C  +EVGCGTG+ ++      ++ +G+D+N+ F+ + K+ T E +  KV F  G A  L  ++     +D + G  +      VTCV NT+G+ PD  K   Y  M +LAG DG++++ +WNGN FGEA+QHFYHK+P+LCGT  G+ ID+    L T  GY TKWTTP EA  ++K
Sbjct: 1098 GDWSEFSVNKWRSAVFTTKSFFNDLYEDTTAFINKYLAHLDDWFSGADQSCL-IEVGCGTGESLIPHYDVARYCIGVDVNQVFVDFCKKQTTEKYAKKVGFACGDAEFLESML-----LDANFGSFLNDTKKLVTCVGNTIGIIPDPKKTAIYRAMLKLAGPDGVVVVVYWNGNCFGEAVQHFYHKNPQLCGTFDGSAIDLVNCSLTTPSGYSTKWTTPAEAETIIK 1318          
BLAST of mRNA_P-fluviatile_contig9.15253.1 vs. uniprot
Match: UPI00099D7F1E (methyltransferase domain-containing protein n=1 Tax=Streptomyces caatingaensis TaxID=1678637 RepID=UPI00099D7F1E)

HSP 1 Score: 157 bits (398), Expect = 1.290e-38
Identity = 96/266 (36.09%), Postives = 144/266 (54.14%), Query Frame = 1
Query: 4612 DEQYFYRELWGGLHQHLGLYEDPGTMALPPLKRVVQACEDSTVVLFSVAKPTMGVKAVELGSGYGSGARYLALNFGATVDCVDLSQEANDRNRQLTEDAGLSHLVKIGAPATFFGTGLPGGSFGFCFSQDALCHAGRQTPKALEEAARLLAAGGSFACTNILRSEEATVEELAEVLVRLQVNHIETHESFVQHACAAGLELVETLDKTTSMTVHFQTLIEAMESRKASLLENTSPEYVEELSKDLLKWRSASNRGVMRWSFFVFRK 5409
            D   FY E+WGG   H G+YE PG       +R V+        L +  +P  G + ++LGSGYG  ARYLA  FG  V  ++LS+  N+R+R++  + GL  LV++    +F       G F    S +ALCH+G + P+AL EAAR+L  GG+ A T+++ +E+A  EEL  V+ RL V+ + T   + +     G+  V   D +  +  H+  L E  E+R+A L E  S +Y+ +L  +L  W  AS RG +RW  F  R+
Sbjct:   16 DVDAFYEEVWGGEDIHTGIYERPGEPVADASRRTVER-------LAARLEPGPGTRVLDLGSGYGGTARYLARRFGCRVVALNLSERQNERHRRINAERGLDGLVEV-VTGSFHDVPYADGEFDAVCSLEALCHSGDR-PRALAEAARVLTPGGALAFTDVMAAEDAPAEELRPVVARLGVDALATPSFYREELAGLGMAEVAFDDHSEQLVHHYVRLTEETEARRAGLGEVISQDYLRQLLTNLPLWVDASRRGRLRWGIFHARR 272          
BLAST of mRNA_P-fluviatile_contig9.15253.1 vs. uniprot
Match: A0A101VS73_9PROT (Methyltransferase n=1 Tax=Alphaproteobacteria bacterium BRH_c36 TaxID=1734406 RepID=A0A101VS73_9PROT)

HSP 1 Score: 144 bits (364), Expect = 2.460e-34
Identity = 90/266 (33.83%), Postives = 142/266 (53.38%), Query Frame = 1
Query: 4612 DEQYFYRELWGGLHQHLGLYEDPGTMALPPLKRVVQACEDSTVVLFSVAKPTMGVKAVELGSGYGSGARYLALNFGATVDCVDLSQEANDRNRQLTEDAGLSHLVKIGAPATFFGTGLPGGSFGFCFSQDALCHAGRQTPKALEEAARLLAAGGSFACTNILRSEEATVEELAEVLVRLQVNHIETHESFVQHACAAGLELVETLDKTTSMTVHFQTLIEAMESRKASLLENTSPEYVEELSKDLLKWRSASNRGVMRWSFFVFRK 5409
            D   FY ++WGG   H+GLY           +R V+   D       + K T G + +++GSGYG  ARYLA  FG  V  ++L+++ N RNR+L   AGL+HLV++    +F    L   S    +SQDA+ H+GR+  + + E AR+L  GG F  T+ + S      +L  VL R+ +  + + E + + A A GLELV   +KT  +  H++ + E + +++A+L    S +Y+E +   L  W +A  +G + W F  FRK
Sbjct:   20 DADNFYLQIWGGEDIHIGLYASEREDIATASRRTVEKLADR------LPKLTEGSRVLDIGSGYGGAARYLANRFGCNVVALNLAEKENTRNRELCAVAGLTHLVEV-VDGSFEQIPLEDASVDAVWSQDAILHSGRRE-QVIAEVARVLKPGGDFVFTDPMESGNCGRADLMPVLERIHLESLGSPEFYHRTAHANGLELVAWEEKTPQLIRHYRHVREELSAQRANLKGKVSEDYIERMLTGLGNWVTAGEKGCLAWGFLHFRK 277          
BLAST of mRNA_P-fluviatile_contig9.15253.1 vs. uniprot
Match: UPI001FE01704 (methyltransferase domain-containing protein n=1 Tax=Nocardiopsis trehalosi TaxID=109329 RepID=UPI001FE01704)

HSP 1 Score: 147 bits (370), Expect = 9.650e-33
Identity = 91/268 (33.96%), Postives = 136/268 (50.75%), Query Frame = 1
Query: 4612 DEQYFYRELWGGLHQHLGLYEDPGTMALPPLKRVVQACEDSTVVLFSVAKP--TMGVKAVELGSGYGSGARYLALNFGATVDCVDLSQEANDRNRQLTEDAGLSHLVKIGAPATFFGTGLPGGSFGFCFSQDALCHAGRQTPKALEEAARLLAAGGSFACTNILRSEEATVEELAEVLVRLQVNHIETHESFVQHACAAGLELVETLDKTTSMTVHFQTLIEAMESRKASLLENTSPEYVEELSKDLLKWRSASNRGVMRWSFFVFRK 5409
            D   FY  +WGG   H+GLY+ P        +R V+            AKP  T G   ++LGSGYG  AR+LA  FG  V C++LS+  N+RNR LT DAGL HL+++    +F        +F   +SQDAL H+G +T + LEE AR+L +GG+F  T+ + ++ A  E L  +L RL ++ + T   + + A   GL      D    + VH+  ++   E R+  L    S EY+  ++  L  W +    G + W    +RK
Sbjct:  294 DADTFYHRVWGGTDIHIGLYDSPDDDIAEASRRTVERM---------AAKPGLTAGSHVLDLGSGYGGAARHLARAFGCRVTCLNLSEVENERNRALTRDAGLDHLIEV-VDGSFEDIPADDAAFDVVWSQDALLHSGDRT-RVLEEVARVLRSGGAFVFTDPMAADGAPAEALRPILARLHLDTLGTPGFYDREAARVGLTKAGFDDLGEHLPVHYARVLAETERRRDELGAEISAEYLAHMTTGLRNWVAGGESGALTWGILHYRK 550          
The following BLAST results are available for this feature:
BLAST of mRNA_P-fluviatile_contig9.15253.1 vs. uniprot
Analysis Date: 2022-09-19 (Diamond blastx: OGS1.0 vs UniRef90)
Total hits: 25
Match NameE-valueIdentityDescription
D7G8H5_ECTSI4.470e-29472.88Uncharacterized protein n=1 Tax=Ectocarpus silicul... [more]
A0A836CC57_9STRA6.390e-16348.70S-adenosyl-L-methionine-dependent methyltransferas... [more]
A0A6H5KUA7_9PHAE2.610e-9875.12Methyltransf_11 domain-containing protein n=1 Tax=... [more]
F2UCP4_SALR53.450e-5240.25Methyltranfer_dom domain-containing protein n=1 Ta... [more]
A0A7S3ZFK8_9EUKA9.080e-4831.82Hypothetical protein (Fragment) n=1 Tax=Lotharella... [more]
D7G8H6_ECTSI9.430e-4254.34Uncharacterized protein n=2 Tax=Ectocarpus TaxID=2... [more]
A9UZS4_MONBE2.790e-4038.77Predicted protein n=1 Tax=Monosiga brevicollis Tax... [more]
UPI00099D7F1E1.290e-3836.09methyltransferase domain-containing protein n=1 Ta... [more]
A0A101VS73_9PROT2.460e-3433.83Methyltransferase n=1 Tax=Alphaproteobacteria bact... [more]
UPI001FE017049.650e-3333.96methyltransferase domain-containing protein n=1 Ta... [more]

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Alignments
The following features are aligned
Aligned FeatureFeature TypeAlignment Location
P-fluviatile_contig9contigP-fluviatile_contig9:2282602..2300824 -
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 score869.0
Seed ortholog evalue1.2e-249
Seed eggNOG ortholog2880.D7G8H5
EggNOG free text desc.sterol 24-C-methyltransferase activity
EggNOG OGsCOG0500@1,KOG1269@2759
COG Functional cat.Q
Best tax levelEukaryota
Best eggNOG OGNA|NA|NA
Hectar predicted targeting categoryother localisation
Ec32 ortholog descriptionS-adenosyl-L-methionine-dependent methyltransferase
Ec32 orthologEc-14_003050.1
Exons14
Model size7718
Cds size1701
Stop1
Start1
Relationships

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

Feature NameUnique NameSpeciesTypePosition
mRNA_P-fluviatile_contig9.15253.1prot_P-fluviatile_contig9.15253.1Porterinema fluviatile SAG_2381polypeptideP-fluviatile_contig9 2284896..2295682 -


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

Feature NameUnique NameSpeciesTypePosition
1622817336.6779187-UTR-P-fluviatile_contig9:2282601..22848951622817336.6779187-UTR-P-fluviatile_contig9:2282601..2284895Porterinema fluviatile SAG_2381UTRP-fluviatile_contig9 2282602..2284895 -
1693572125.6336136-UTR-P-fluviatile_contig9:2282601..22848951693572125.6336136-UTR-P-fluviatile_contig9:2282601..2284895Porterinema fluviatile SAG_2381UTRP-fluviatile_contig9 2282602..2284895 -
1622817336.8398216-UTR-P-fluviatile_contig9:2295682..22957501622817336.8398216-UTR-P-fluviatile_contig9:2295682..2295750Porterinema fluviatile SAG_2381UTRP-fluviatile_contig9 2295683..2295750 -
1693572125.7990346-UTR-P-fluviatile_contig9:2295682..22957501693572125.7990346-UTR-P-fluviatile_contig9:2295682..2295750Porterinema fluviatile SAG_2381UTRP-fluviatile_contig9 2295683..2295750 -
1622817336.8493-UTR-P-fluviatile_contig9:2296267..22969801622817336.8493-UTR-P-fluviatile_contig9:2296267..2296980Porterinema fluviatile SAG_2381UTRP-fluviatile_contig9 2296268..2296980 -
1693572125.8078456-UTR-P-fluviatile_contig9:2296267..22969801693572125.8078456-UTR-P-fluviatile_contig9:2296267..2296980Porterinema fluviatile SAG_2381UTRP-fluviatile_contig9 2296268..2296980 -
1622817336.861335-UTR-P-fluviatile_contig9:2297882..23008241622817336.861335-UTR-P-fluviatile_contig9:2297882..2300824Porterinema fluviatile SAG_2381UTRP-fluviatile_contig9 2297883..2300824 -
1693572125.8210618-UTR-P-fluviatile_contig9:2297882..23008241693572125.8210618-UTR-P-fluviatile_contig9:2297882..2300824Porterinema fluviatile SAG_2381UTRP-fluviatile_contig9 2297883..2300824 -


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

Feature NameUnique NameSpeciesTypePosition
1622817336.6886892-CDS-P-fluviatile_contig9:2284895..22849351622817336.6886892-CDS-P-fluviatile_contig9:2284895..2284935Porterinema fluviatile SAG_2381CDSP-fluviatile_contig9 2284896..2284935 -
1693572125.6555345-CDS-P-fluviatile_contig9:2284895..22849351693572125.6555345-CDS-P-fluviatile_contig9:2284895..2284935Porterinema fluviatile SAG_2381CDSP-fluviatile_contig9 2284896..2284935 -
1622817336.6988409-CDS-P-fluviatile_contig9:2285643..22857561622817336.6988409-CDS-P-fluviatile_contig9:2285643..2285756Porterinema fluviatile SAG_2381CDSP-fluviatile_contig9 2285644..2285756 -
1693572125.6690657-CDS-P-fluviatile_contig9:2285643..22857561693572125.6690657-CDS-P-fluviatile_contig9:2285643..2285756Porterinema fluviatile SAG_2381CDSP-fluviatile_contig9 2285644..2285756 -
1622817336.7108629-CDS-P-fluviatile_contig9:2286098..22862181622817336.7108629-CDS-P-fluviatile_contig9:2286098..2286218Porterinema fluviatile SAG_2381CDSP-fluviatile_contig9 2286099..2286218 -
1693572125.6870027-CDS-P-fluviatile_contig9:2286098..22862181693572125.6870027-CDS-P-fluviatile_contig9:2286098..2286218Porterinema fluviatile SAG_2381CDSP-fluviatile_contig9 2286099..2286218 -
1622817336.7211854-CDS-P-fluviatile_contig9:2287494..22877161622817336.7211854-CDS-P-fluviatile_contig9:2287494..2287716Porterinema fluviatile SAG_2381CDSP-fluviatile_contig9 2287495..2287716 -
1693572125.7032242-CDS-P-fluviatile_contig9:2287494..22877161693572125.7032242-CDS-P-fluviatile_contig9:2287494..2287716Porterinema fluviatile SAG_2381CDSP-fluviatile_contig9 2287495..2287716 -
1622817336.7329047-CDS-P-fluviatile_contig9:2288154..22883641622817336.7329047-CDS-P-fluviatile_contig9:2288154..2288364Porterinema fluviatile SAG_2381CDSP-fluviatile_contig9 2288155..2288364 -
1693572125.716416-CDS-P-fluviatile_contig9:2288154..22883641693572125.716416-CDS-P-fluviatile_contig9:2288154..2288364Porterinema fluviatile SAG_2381CDSP-fluviatile_contig9 2288155..2288364 -
1622817336.7472723-CDS-P-fluviatile_contig9:2289093..22891921622817336.7472723-CDS-P-fluviatile_contig9:2289093..2289192Porterinema fluviatile SAG_2381CDSP-fluviatile_contig9 2289094..2289192 -
1693572125.7287104-CDS-P-fluviatile_contig9:2289093..22891921693572125.7287104-CDS-P-fluviatile_contig9:2289093..2289192Porterinema fluviatile SAG_2381CDSP-fluviatile_contig9 2289094..2289192 -
1622817336.7599337-CDS-P-fluviatile_contig9:2290353..22906231622817336.7599337-CDS-P-fluviatile_contig9:2290353..2290623Porterinema fluviatile SAG_2381CDSP-fluviatile_contig9 2290354..2290623 -
1693572125.7372892-CDS-P-fluviatile_contig9:2290353..22906231693572125.7372892-CDS-P-fluviatile_contig9:2290353..2290623Porterinema fluviatile SAG_2381CDSP-fluviatile_contig9 2290354..2290623 -
1622817336.7728262-CDS-P-fluviatile_contig9:2291120..22913271622817336.7728262-CDS-P-fluviatile_contig9:2291120..2291327Porterinema fluviatile SAG_2381CDSP-fluviatile_contig9 2291121..2291327 -
1693572125.7505488-CDS-P-fluviatile_contig9:2291120..22913271693572125.7505488-CDS-P-fluviatile_contig9:2291120..2291327Porterinema fluviatile SAG_2381CDSP-fluviatile_contig9 2291121..2291327 -
1622817336.785674-CDS-P-fluviatile_contig9:2291993..22921461622817336.785674-CDS-P-fluviatile_contig9:2291993..2292146Porterinema fluviatile SAG_2381CDSP-fluviatile_contig9 2291994..2292146 -
1693572125.7597303-CDS-P-fluviatile_contig9:2291993..22921461693572125.7597303-CDS-P-fluviatile_contig9:2291993..2292146Porterinema fluviatile SAG_2381CDSP-fluviatile_contig9 2291994..2292146 -
1622817336.8001842-CDS-P-fluviatile_contig9:2292707..22928521622817336.8001842-CDS-P-fluviatile_contig9:2292707..2292852Porterinema fluviatile SAG_2381CDSP-fluviatile_contig9 2292708..2292852 -
1693572125.768409-CDS-P-fluviatile_contig9:2292707..22928521693572125.768409-CDS-P-fluviatile_contig9:2292707..2292852Porterinema fluviatile SAG_2381CDSP-fluviatile_contig9 2292708..2292852 -
1622817336.8147194-CDS-P-fluviatile_contig9:2293456..22935641622817336.8147194-CDS-P-fluviatile_contig9:2293456..2293564Porterinema fluviatile SAG_2381CDSP-fluviatile_contig9 2293457..2293564 -
1693572125.7783537-CDS-P-fluviatile_contig9:2293456..22935641693572125.7783537-CDS-P-fluviatile_contig9:2293456..2293564Porterinema fluviatile SAG_2381CDSP-fluviatile_contig9 2293457..2293564 -
1622817336.8255873-CDS-P-fluviatile_contig9:2295668..22956821622817336.8255873-CDS-P-fluviatile_contig9:2295668..2295682Porterinema fluviatile SAG_2381CDSP-fluviatile_contig9 2295669..2295682 -
1693572125.7879796-CDS-P-fluviatile_contig9:2295668..22956821693572125.7879796-CDS-P-fluviatile_contig9:2295668..2295682Porterinema fluviatile SAG_2381CDSP-fluviatile_contig9 2295669..2295682 -


Sequences
The following sequences are available for this feature:

protein sequence of mRNA_P-fluviatile_contig9.15253.1

>prot_P-fluviatile_contig9.15253.1 ID=prot_P-fluviatile_contig9.15253.1|Name=mRNA_P-fluviatile_contig9.15253.1|organism=Porterinema fluviatile SAG_2381|type=polypeptide|length=567bp
MTATRWHDSMYYEGSYFWQLFHDTQVYTRRATSIFCGSPARCYSVEVGCG
TGDVILSLAGDFKHSLGLDINEGFLAYAKEHTPENFKDKVSFCRGSATDL
MDIVGSHPSIDRSSGPIVVTCVNNTLGVFPDVIKPRTYSQMKELAGEDGI
IIIGFWNGNKFGEALQHFYHKHPELCGTMKGAEIDMDERHLDTKEGYHTK
WTTPEEARQVLKDSGFNILDIMEIGVGVLCTCSGGQGIPSPAGALDSQLP
PSAAAPLSSDILVAEEEAHSMNHYGDRRANKEWNAETSKEGKGEGYDEQY
FYRELWGGLHQHLGLYEDPGTMALPPLKRVVQACEDSTVVLFSVAKPTMG
VKAVELGSGYGSGARYLALNFGATVDCVDLSQEANDRNRQLTEDAGLSHL
VKIGAPATFFGTGLPGGSFGFCFSQDALCHAGRQTPKALEEAARLLAAGG
SFACTNILRSEEATVEELAEVLVRLQVNHIETHESFVQHACAAGLELVET
LDKTTSMTVHFQTLIEAMESRKASLLENTSPEYVEELSKDLLKWRSASNR
GVMRWSFFVFRKRTTC*
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mRNA from alignment at P-fluviatile_contig9:2282602..2300824-

Legend: UTRpolypeptideCDS
Hold the cursor over a type above to highlight its positions in the sequence below.
>mRNA_P-fluviatile_contig9.15253.1 ID=mRNA_P-fluviatile_contig9.15253.1|Name=mRNA_P-fluviatile_contig9.15253.1|organism=Porterinema fluviatile SAG_2381|type=mRNA|length=18223bp|location=Sequence derived from alignment at P-fluviatile_contig9:2282602..2300824- (Porterinema fluviatile SAG_2381)
ATGTTTGGTTTCGTGTCTGCTGCCCTCATGACTCCAGTTGGTGACGGAGA CAGAGAAGCAGGCATGCCGGCAGCACCTGGTGTGGTGAGTATCGCCGCCG TCGTCCTTATCGCCTCCGCAAAAAAATCCAGCGAGTTTTCGTGGTTTTCA CTGGTGGCCATGTTCTGCTCACATCACGACTGCTCCAGGACGTTGTCCGT GTGGTGCGATTCTTTCGCATGAGTAACATTTGAGGGCAGTATCGGTATGG ACGTCGTCACTTCAACTTTGCACGTGTTTGTTGTATTTTGTCGATCTCCC ACGTCTATGCACGGCTCAAGTTATCATCCAAGGTATCATAACCCCGTAAC AGCTTGGTTGACTTTGCAAATACTTTGAAGTACAGAACACGCTCCCGCGC TGCGGAGAATCATCGGAACTTTGCCGTCTTTTCGACCTCTTTGCTCAGGA GCATTTCTGCGCGATACAGCCCCTCAGAGACCACGACTACAAAAATGGCA CAGCTTTGAAGCCGAAATACATTAAAGCTGCCGCAACCTTCCGACAACGA AAATAGTGCTGTATCTTTGTGCGTTTTTGTGGTCTTGGCAGATCGTCGGA TCTTCCCTCGGCGTGCTCGCTGCCCACTCTGCGGGCGAAGGAAATCAGCC CCTACGACACATGGCCTATTTCTTGGTTCTCGGCGTAGCGGCCGCCGCAG CGACAACGGCAGTATGCGGGGGGCTAGTAGGAGGTATTCTGAATAAAGTG AGCCTGGTCCTCGTCGAGTTCCACAGCCAACGTGTGAATGTGCGGTGTAT CAGCGAAACGTATACCCTCCATCAACCGTCGTCGCTGCGTGTACTCACGT TGGTACAAGGAAGCATCTATCAGGCCTGATCTCGCATGTCAGTAGCCACT ACTACGGGTGCTGCATGGCGCTCTTCTCCTTGATCCCCTTTTGCCCTGTG TTCTGTTGTGGATTGTTCACTCAGGGTGGAAGCGCCGGTATCATGGTGTT AGCGACGGTGGCGTCGCTTGGCTCGACGGCGGCGTTTGCCCTGCTCAAAC ACAATATTCTGCTTGCAAGAGCAGATGCAGGAGCAGACATATCGAACGGT TGCGGCCATGACGCATTGCCGAGGACAGATGCCGACCGCACCCCGTTAAT GGACCTCAAGGAGGTCTGACGCAGTGCGGATATGTGCGCTTCCTGGAAAA TGGGTCGCGTGGGCGGTGTGTTCGTAAACATGGCGCGCCCGCTGCCGCGT ATGCAGAAGGGGCAAGTTCGGCGTGAAGCGCTAACAACGACACACCGCTC AATGTGACCACTGCCGCCGTGCTTATCGAAGTCCGTTGTGTAACTGCTTC CGTGGTATGCTTCAAGACGCCTAGTCGCGCGGGTTGTTCCACGCTACCAC AGCTGTGCAACAGGTTGGAAGTCCGTTGATCTGCGGTTGGTTTTCTCTTG CGCTTTCGATCCGCGATTTTAACCGACGGAGACCTCAACGTCATCGAAGT CGTATAAATTACTCATCATGCCGAACGAATGACCACGCCGTCAATTTCCA AAGCCTTCCTGGGTGGAGCAAAAAACTTGATGTTTTGGGGGGTTGTACCC CCGCGACCGCCGCTTCTTTGAGCAGCGCGCAAACACTTCTGTTGTGTACA TACGGGTAGCCGGTTAGGTAGCGGATACTTCCAACCCGATGGAATACGTC GGTCCGCTTCGGGACCAAAGGAAGCTTGGCGGACTTCGATAGCACGGATC AAGAGCACCAAGCTGCGCTTCAAAAAGGCTTCTCGAGCGTCTACGTCATT CGCGACCGGCCAAAACCGCCGACGCTACGCGATTTCTCGTGCCGCATGTG TGCAAGTTATTTCATGAGAACCGATGTTGAAAGGCAGCTGAAGGAGAGCG CATTTCTGACGATGCCGGCCTACACGGAATAGTTTGCACTTGCTTGTTTG GGGGGAAACACGTACCCAGCGATGGGCAACGTGGTTGCTCGCACCGTAAT ATTGGACAACCATCTGCTCTTACCGTACCTGGCTAGCTTGGGCGACAACT CACATCTTTCGGAAAGACTGGGTTTCAACCTTGGGTCCGGGTGGCGGGGG TTCACGGTGCGTGCTCCCATGGTTCGAATTTGGCCCGTGTCTTACACGTG CCGTGCGCAATTCTTTGATGAAGTTGGGATGCGACTATGTGGCCGTACCA TTTTCGCGCAACGGCAAGTGGTAAAGGTGCAAGGCAACGGCACAGCAACA CCCGTCCCGGCAGGACGCCCAGATGAAGACAAGCTCAACGCAAGCTAGCA CGCGACAGCCTGGACTGTGGCAACAGAAAACCCACATTTGTGCCGTTGTA GTCAAGACTACTACGTAGAAAAAAAGAAGTGGCTTCACCACATGTTCTGC TGTCCTTTCCATGAAATCGAACAAACCGCGAAGCAGTAACTGCTGCACAA TTGCAGTCAAGATGTACGCCTGATCAACTGCCCTGTCTCCCCCCCCCTCA GATCAAGTGTGGTACACGTTTTTACCCAACTTCTTCGCACTTAGAGGCAC AAGAGCAAGCCGCAAGACCATCGATGCTCAGTGGGAAATCTAACACTGTC AACATAAACACAAAAGGATAAAAACAAAAAAGAGTGCCAATGGTAAGCTC ACGACAGCCGAAAGGCATGACGCAAGCCGATCGGCTCATCGCTTCGCTGC ACCCTCATTTTGAGTATCACAGAGCATATCTACTGCTGTGGTGGGTCCTT CTTCTTGAACATATCTCGGTCGCGGGCGCTCTGCTTGGCGGCCCTAGCGC CGGACATCGCTCCCAGCTTGGCCTCGTCGTTCATGACGTCGCCGAGGCTT ACCTGGAGGAAGAAAATGCCCACCGTGATCGCACCCGCAAACGCTAGCGG CACCCACATTGGCGGCAACTCGCCGCTGACGACTTCACCCACCTGCCACT CCGCGACCACGTGTTCGTATTTCGTCGTGCGCGAGTCGTTTATGTCGACG TAATATGTTGGAGCCCGGTGGCCGGCGAGCCGCAAAACAGGCGGGCGCAT ACGTTGGTGGGTGTGCGGGCGGAGGGAGGATGGTTTTCAGCTGAAGGGGA TCGAAGGGATGTACGTGGGGGTCCCGTCAATGATCTTCGTCGTCCGTCGG CCGCCGCGCGATATATGAGTCAATAGATCACCGGCGCTTAATAATCCTTC TCCGCTGACCGACGAGCGCGTTTAACATCAAACGCACCCACGCCGAGGTC TACCGGTCGAGCCGGTCGTGAAATCAGAGAGGCGGCGGACACCCTAGTTG GCCATGAAGCGGATCCCCTCAAAACCGATGGTGGCTGACCCATGAGAGGT CAGCATTTACAAGAACTTAAATCTCCTTTGAACAACCACTTGACTGCAGT ACTTGCTGCACACAGAGGTTCACCTATCGCGAGTGGTGGGAGGCATTCAC AACGCTGTACACCTCGGGCTGGGCGTAGGACATTTTTGTGCGCCAAATTG GCTGAAGGATTGCTTCCGTTTGAGTGTAACCTCCCGCCAAATAATCGACA CGAATGCACATCAAGTACCTTCGGCGAAAATTTGAAGTCGCAGCCTGTCG GCTACGACGCAAAGCGTGGATCTTTTGTCGATAACAGAAGCAAGATGAAT AAAGAAACATTCCAGCGCGCACCCTCGTAACGCTTCAAGAGACAGTCTCT CGAGACATTTTCCGTTTGCCAACCAGATGGTGGATGCTGCGCAATCGGGG CGTTGCCGACTGTCAAAGATGACATTCTGCGGTACCACCCGAGCGCTGTT TGACTGTGCTTCCGTAGTGGCGGGGACGGGTTACCATCGCTCACATCATC AGGATCGATGTACTTCGCCAACGCTCCGGATGCGGTCGCGAAACCCGTCG CCGCCCCCATTGCCGCCCATCTCAGCGCCTGATCGAAAGAACTCGCTGGC CGCGGCCTCTGCTCACTTGAAGCATTCAAACCCTCAGAAGCTGCAAAAAT CTGCACACCGTCAGGTGGGAGGGGTGGCAACAGCGGAGGGCCGGGCCGGT GGCGGTGCATGTGAGCTCATTCATGGTGCTGCCGGATAGTCTAACGAACG CAAGGTACTTTCCCTCGTGGTGTGGGTAGTGTGTGCAAGAATGCATTCCG GGATGCCAGGATAGCGTGAGAGCATCTTTGAGAAACGTCAAGATCGTGGC GGTCATTTCGCGTCGTTCCGAGCCATGGTCCGAGCAGAAGGGTTGAAGTT CGATTTAAGGATGTCCCTCGTGTCTAACGTTGAAAGTTGCATTGCTTCGC CGCTTCGCCTCTTGCCAGGATTCGGATCGCGAAGATCTCACGAGAGACTA TCGACTATAACTAGATTAAACCTCGAATGCCTCGCCGTAAGTAAGGAAGC TAGCAAAAGAGGTTGCCACGAAGAAGAATTGAGCAACTGCTGTACCTTTT CGGGAGGAGTTGAAGACAACTTATCACAAGCAGAGGCGGCGCAATCTGAA ATCGTGGCCGTGTGTGTCATGATCATGTGCGAAGAGCACCAGTGCCAGAG CAATCTGGCGCTCCCATCGGCTGACATACAGAGACAGCATAAGCCGGGCC ACGTCGGCAGCCTCGACTCACCCGCTCAGGAGCAAAAGAGGTGAGCGGAC GCTCCGCTTGACCCTTCAAAGATGAAGAACTCGACGTCGCTCTCATCTGC ACCACGAAAGCCATCGCCGAAGGCCGCAGGGCTACCACCGCAACAACGAT AGCAAGGAATCTCATCCCAAATGTCATGTCTCAGTCTGCTCCACCTGCAA TCAACCCAAACAACCACACAATCGTGTTTGACGAGAAGACATCGCGGCTA GGACATCTGCCCCTCAAAAGTATACCCCGTTGCTATTCCCGTTGGGAGAC CCCCGTGTTGGTTTTCGTCGTTCTCGCTCACAAAAATAAGAGACAACCAC TACTCCTCTGCGCAAAACAGTAAAAACATGCGTGTCATCAACAATGGTGT TACCAAATCTCCCTCGACAGCAGGCAAGTGTGAAAAACTGCCGAGACCCT CGAAGGATCAGAACGATGCTGATGCCAACGGCGACAGCAACAAGAAGACG AATGTCAAGCACACGTTCGAAAAGAAGGGCGACTGGAGCCTCATGACGGC CACGAGGTAGGTTTGCCTCCTATCCCCCCCCTCCGCCTGACCTTTTGCTT TATCGCTCGGAGGCAGAGCACGGCGGAGTTAGTACCCAGCGCACTCAGCG GACCGAGCGGGTGTTTTGTTTTTGTCTCGTGGGTCCGCCGTCGCGCTATG TTTGTCCACTCCTTCGCGCTTATCTTGTGTCTGCTTGGCAAAGCTCCTTC AAATATGTGGTTGTGCCCGTAGGGTTCCCCACTCTTGGGTAAGAAACCTC TCCAGCCCTTTCTATTTCACCAGCCATCTTTTTTTCGCGTAGAGAGTTGG CGTATTGCCCTCTTGACGCACTCGTGTGTGCTTTACCGGTGGTGGTACAC TCACACCAAGAGCAAGAGGCGAGTGGAGAGGGTTGAACGCCGCGACGGAC CGTTGGAGTTATCCTGCGGTCTGCATGCACACGCCCATTGCAGGAACAGC TGTGGTCCCGTGTTGGCCTCTCTCACGCAGAGCAAAGCATTTCCTCCCCC AGTACGCCTACTACCTCCACATCCAAGGGTGTACATCGATACTCTACATA CATCACTGTTCTTGCAAGCAAAACCTCATGCAGCGATTTGACCCGGAAAT ATGGCAAACCCGAACCTGACGAAATTTCTTTGCCCCCCTCTCCGGCGTGT GTGCATCAGCCCAGAAGTGCGCATCCTTGTCCCCCTTGTACCAGAAAGAT GTATCTGTATGTGCGAAATTCAATTCAGCCATGGTGGCGCACACAGCTCA CTCCACGGCGGTCTACTCGCGTCCAGTACCCGAGTGTGTGCTCCGAGAGG GTTCCGATCTGGTCGTTCAACCAGTAGTCCGTCGTTCAGGACCTGCAGCA CACAACCGACATTCGACTTTGATCAACTGCGCCTGTAGTTACGTGCTATT GAAACAAAAATATGTTCCACAATGGCGAAAATTCACGACGGTACAGCACA AGAGGGTCCAAGAGGTTGTGTGGGATGGGATCAATAGGCGGTGTGCGAGG CGGGGTCGAGTGTCTCCTCTTCCTTGGTTGCGGCTGGGATATCGGACAGA TGTGGATCAACACAAGAGAACACAAAAACTCGTGCGATGAGAACGGCAAT ACGTTAAAGGACATTTCGAGGTGCTGGGTTAGCGGTTAGGATACGAGAGA GGTCGACGAGCGAAAAGAGTTCTCCTACATCCGGCCTATTCTTCCATCGG ACTACGAGTGTATGCTGAACTTGGGAGTTCCTGGCGAACTTTGGAGTTCG GCTTGACTGCTGATATCCATACCTTCTTCAAGTATGTCAATTATTTTAAC TCGTAGCCGCTGCTGTACTGGAGGTGATGCGAAGACTACAATACCAACAA CAACATTAACAGCCTGCGTCTTCTCATCCCTCGTATGACACACACAATAT AGGAGAGGTGCGTGGTGCACACTTGAGTGGGCGGAGCAGCCATGGCCACA TCCCGCGCCCCTTCAAATCGCGCTGACCGGCGCAAGGGTTGCATCGACCT CCTCACCAACCCAGATCAACGCTTGAAGGCAGCATGCTGTACAGAGTAGG GCAGATGTGTTGTGTGTATGTGGTTTCGCCCCATATGTTCTGGCGAGTAT TTTTGTATTCTTGCCCCCTTGTTGGTATAGCTTTTGCTCGACACGTTTCG GTGCCCGTAGTGTGCTACAGTTGTTCAGTCTATTTTAGTTGTACAACCAC AACCAGCCGCGGTCAGACAGGGCAGATGCGGGCTTCAATTGGTAGAATGA TCGTCATGTATCGCCCGCGCTTTTGTCTAGACCCCGCTTTCCTCGGGTCT CGTTGTTCACGTACTCGTATCCGAAGGCGCTAATTTGTCACAGCAAAAAC GTGCTCCTCTATCAATGTTACCGACGACACTCCTGGCTCTCCGCTGGTTT GAACCTGTGCAAGACACGAAGCTGCACCGCCCCCCTTTCCCCCTCTCCCC TTCCCTCCTTCCCTCCCTCCCTTCACCCCCCCGTTCGATCCATTAGCCGC GGACTGCAAAGTCGTGCCACCACCATATCACTTGCTCTGAGCTTATGAAT TCCCGCCGCCGCTCTCGCGCTGGCACTGGGTCTCTCTACGCCTCCTCACT CGCCGCTCAGGTGGCACGACTCGATGTACTACGAGGGGAGCTACTTCTGG CAGCTCTTCCACGACACCCAGGTGTACACCCGGCGGGCCACCTCCATTTT CTGCGGCTCTCCCGCCAGGCAAGTCGCAATCGGAGGCCTGAAGCCTACTG TGAGCATTTGTGTGGATACTTGTGCGGTACGAGGGAAAGATTGGTGACAA CGTGGCATGATCGGAAATGAAACGAGTTTTGTGCGGCGGTCGAGATATTT CTGTCGCCGGTTCGGGACGATTTTAATCGGGCCGCGTGCACGAGGAAATG CTTCAGGTCAGCCGTCGGGCTCAGCGAAGAGTTGAGGGGCAGAACCCAGC TTTTCCGGGACGCAATTGCTCCTCAGCGTCAGGCGCTCTTCGTCGGTTGT TTCTCGTGATTCTTGACCACCCAAAGGTCGAGCTTGCCGGGTTCGCTCGC CGACAACGGGTTATTCGCAATCACGAGGAAGATCATCGACTATCAATTTC CTGCCATGATGAGTTACTGCTTCTCAGGGAAGCAGGCTGTGACCCCTCAT CCCAACGCTGCACTCTTAGACCAACACAGCTAATGGACAGGCCGCACGTG AAACATGCTGGAGGCACATGCCGCTTTCATTTATGGTCGGACAACTTTCG CTGGAGTGTCCGTTGTTTTTCAACGACGAGAATGAAGCATCCTTAATCCG GGCGGCTCTCCCGCTGCCGCAGGTGTTACTCGGTCGAAGTCGGATGCGGC ACGGGGGACGTGATCTTGAGCCTGGCGGGCGACTTCAAGCACAGCTTGGG CCTCGACATCAACGAGGGATTTTTGGCTTACGCCAAGGAGCACACTCCCG AGAATTTCAAGGACAAGGTGCGGCCAAGCGAACGGTTTCGATGTCATTGC TGATGCGGTCGCTCCCGATGATTACACACGACTTTTTTTCCGTCCGAGGT TTGTTTTGACTCGCAAGCAAAGCTAGCCGACGAGGCATACACGTACGTCT GCAGAGATCCAATTCGAATTTGAAGCGCCACCCACGGCTTCAAAATGCGC TCGACGCCGCGAACGGTCGGGCCGCGTCCAACTGGCATTGTGAAAGAGGA CGTGTGCAATGTTCGCAAAATACCAGTTGCGCACCATGAGAGGCGAGGGT GAACCGTGGACTCCTTGGTTTTTGAACGTGCTCGCGATCCTTTTTGGCCA GACAAGTCTCCACTTCCAGAGGCCACCGAAGCGAGAGAGCGATAAGTGTG GGGAGGGGAGGGGGGCAGGGGAAGGAGGCACAACGCAGGTAGGGTCGCTG AAACAAGACAGGAGTCGCACATGGAACAAGGTGCACATGCTATCGAGACA AAAATCCACCAAGAAATGGAACAACACGATCGACGCCCGCGCGCCAAATC AACCGAAGGATAACCTCCCGCCCCGCAGGTCTCCTTCTGCCGGGGAAGCG CGACGGATCTCATGGACATCGTGGGGTCTCACCCGAGCATCGACAGGTCC TCCGGCCCCATTGTGGTGACGTGCGTCAACAACACTCTTGGAGTGTTCCC GGACGTGATCAAGCCCCGCACGTACTCGCAGGTGCTTGTGTGTGTCTGTG CGCGTTTTGTGTCGCCGCGCTTCTTTTTTGTTGTTATATTTCTGTCAGCG GGATCGCCGGGCTGGATGCGAGTTGAACGGATGGGGTAGATTGAGATTGG TGGGTGGGCCACACGTGGGTGGAGCTGGCGGCGATTTTCGATGCAAGGGT AGCCATTTGCACAGATGCTGCCCTCGAATCGACTAGGATGTGTGTCGGTT TTCGATTTTGGAAGATACTGATTCCGAAAATTTGTTTCATTGTGGACGCT ACCCTTACAAGGGCCAGGTATCCCAACCGGTTGTCTAGGACGGTACCGTC TTGTCCACAATGGCATCGGCGATAAGACGTTTGCTGTAGAAGGGCTTCCC GGATGAAACGGGGATATTGTCACGCCGAACAGTGCGAAAGGCGGATCGTT CGTACGCTAAAATGCTCGGCGGAAACCACGGCCTAGCGCTGAGTGGTGGC GATGTCGGCGATACAGAGAAAGCGACCATTTCCTAGGGGAAAGTCTTGCG CTGCTCGGTGTTAATTCAAGCAGTTTAACCCCTTCGACTGATTCGCAGCC CTGGGTGACTGCATGCTTGCGCTTGTGTGTTTGATGTTTGCCTGCGTGTC TTCGATGGCCGATTTCCACACACGGGATACGACCGAATCGAGCGCAGATG AAGGAGCTCGCCGGGGAGGACGGCATCATCATCATCGGCTTCTGGAACGG GAACAAGTTTGGGGAGGCCCTCCAGCACTTCTACCACAAGCACCCGGAGC TGTGCGGCACGATGAAGGGGGCCGAGATCGACATGGACGAGCGACATCTG GACACCAAGGAGGGCTACCACACGAAGTGGACCACTCCCGAGGAGGCTCG GCAGGTGAGACCCGGTGCTGGCTAGTTGTTGTTGTTTTTGTCGTGGTGGT GTTGGTCGGGTTGGCGGCGCTGTGGGTGATCACGTGTTTGGTGGTGCCCG TGATGGTGGTGGTCGAGCTGCACACCCCAAGGGTGTACCAATTTCGATAA GCTCTTCTGGTGTTGTGTTGAACCAGGAGGGGGACCACGTGCTACCCGAA AACGTCCGACAAGAGGTGCCGCCTCCGGGGGCCGATGGTGTCCCCGTTGA CGCCATTCCCCCTCACGCCCTGGGTGCGCTGCCGGGTGTCGATGGTGCCG GCGCTGTGGCTATTTCCCATCTCCTCGCTCAGGGTGCAGAAACAAATCGC CCGCAAGTCGAGCGCACCGTTTTGCTGGTTGTTGCGTCGCTGCGGTGTTA AAACTTTGCCAAACCGGCTATGTGATTGAATGTTGTCCGTGTTCCTGTCC CGATCGACCGACCAAACGGCCCTTCCTCCGCTCTCCGCGAATTTGTTGCA GGTTCTCAAGGACAGCGGCTTCAACATTCTTGACATCATGGAGATCGGCG TGGGCGTTCTGTGCACCTGTTCCGGCGGCCAGGGTATCCCTTCTCCCGCG GGCGCGTTGGACTCCCAGCTGCCGCCGTCGGCCGCCGCCCCCCTGTCCTC GGACATACTCGTCGCGGAGGAGGAGGCGCACAGCATGAACCACTACGGAG ACAGGCGAGCGAACAAGGAATGGAATGCTGAAACATCGAAAGAAGGGAAG GGAGAAGGATATGACGAACAGGTTGACGAACAGGAAGGCGGCGATTTTGT TGGCCTTTCTTGACGATTGAATCGTGAACAACTGCACATAGTTGCTTAAG ACGGGGCATCAGGGGTCTCGCCGACGGGACTTCCACCTACTCGAGCAAGC GTGGGCTTTGAGGACGGTGGAGAAGATTCGAGCATCTTGGAGAAAATTCG ACTCTACACGGCCGACGCAGGCGTGCTGTTTCTCCGCTGTTCTAGTCTTG TCCTGATTTTGTCTCGCGAGCTCGGTTTCAAGTTCCATTCCGCACTCACT GCCAACAAGCCACGCCCCAAGCACCTCCCAAAAACCAAGTCAGCGTGACT GACTTTTTTGTTTATATCTATGCGAGTTATCGGAAGGTTGTGCCCTGCCG CCTCGAAGAGTACGTGATACTCTGGTATATGTGAAACGGACGACGAAGGA GGTCTTATTTTTCCGCTTTCACATCGAAGGGGAGGCATTGCACTTTTTTC AAAGATTCGACGGAATCTTCGGGACACACAGCCGAAAGGGGCTCGCGCAG GCACGAACCACATGAGTCAGCTTAGACCCTTAGGGCTTGTAATGCGCGCG AGGTCAATGACTTGTGAACGTTTTCGTCTTTGTTCCGTCAAGAGCCAGAG CTGCCCGGTATTTTGCAGCAGTTGAGGTGCGTGTATCGCTCTCCCTATTT CAACCGCCTCTGATGGAAAATTGAGAGTCAAAAAATGCCGCAAGAAACAC TTGATGTGCATCGATCCGAAGGAAAATTTGGGGCCCTGGTGGAGGAAGAG GGTCCCATCGTTTTGAGACACTAAAAAGTAGGGATTTCGTCTGTCGGGAG ACGTGCGGGTGAGCGAGGGCGATCTACGGCGCTGCTGAGGTGTGGTGGAC AGAAAACAGTTAATCTTTCTTCATCCGTCCCCTCTCATGACAGGCAGCTT CGTTGAGTGAAGCTATCTCCATTTCGCCGAGGAGGCGGCGGCCGACATAA TTTGGCGATTTTTTATTGCACACATCAAACACAGACTGTTGGCTAGTGTC AAGCAGCCGAGTTCGCCCCGTTCTCCTGATTTTCTTGTGTGGCGCTGCCG CCGCCGCCGCCGCCGACATCCCCACGCAACGGCCCCGGTACCTGCCCCTG ATTCGTCTTCTCGTCTGAACAGCTTCACGCAGTACTTCTACCGTGAGCTG TGGGGCGGCCTTCACCAGCATCTGGGGTTGTATGAGGACCCTGGCACCAT GGCCCTGCCCCCCCTCAAGCGGGTGGTCCAGGTGCGTCCCGCGAATGATT TCTTGCCTTTTCGTCCGATTTTCAACTAGTTTCTGGTGGCTTCAGAGAAG GCCGGCGTCCAAAGTACCCTTGCGTGGCGGGCGCCCCGAATGAGGTCCTG ATTAACGTCCCTTGGAACGCGGGCGCCAGAATCTGCTTCAATGCAGTGAG AGAGTCACGAGAACGTGGACATCAAGAAGATGGACCAAGAATGTTCCATG ATCAGGGAGACGCGCGGTATTCCGAAGCGATTGAAATACGTGCAGCCGCA GATTATGGCGCCCGCTTTCCAGGGGACGTAGGGCGTGGGGGCATTGGTGG GCGCCCGCCGGGCAAGGGTACTATGGCCTGTCGCGAAGAATCGTTGCTAC GCCTTGTTCCTTACACGGGGCCGTGTGCCTGACGCGCGCAAGTGGTGGTG TTGATGGTGATGGCCACGCGTATGACGATCGGCGCAGACTCTCGCGCCAA AAAAATTCTTTCGTGCTTGCCTACGTCGCGCATCGGCCACCGAAGCAGTT GTAGCATCCGACATCGCAGCAGCAGCAGCATAAGCAACGTAGTATCCCAG GGACTCGAATGTTTGGGAAGGCTGTGGTGGCGGCGCGCGCCTGAGCCGTC GGTCAAACGACCTCAGTAACCACCACGAGCGTGAACGCGCAAAATCGCTC GCTCAAGGGAAAGTGTAAGCGAAAGATGGCGACTCCTCCACTCCCCTGCT GGCTTTGCAGGCGTGCGAGGACAGCACGGTGGTGCTCTTCTCCGTCGCCA AGCCCACCATGGGTGTCAAGGCCGTCGAGCTCGGGTCTGGCTACGGGTCG GGCGCGAGGTACCTGGCGCTCAACTTCGGAGCGACGGTGGACTGCGTGGA CCTGTCGCAAGAGGCGAACGACCGGAACCGGCAGCTAACGGAGGATGCCG GCCTCTCCCATCTCGTCAAGGTGAAAATATTGCGCCAATGTTGTTCGTGG ATTTAGGGTGGAATGCAGGGAAAGGGGCAGGGAAGGGTGAGAGAGAACGG GGGGGTGCAGTTGAAGAAGGGCAACAGCAAGGCGTGGAGGTTGACAAAAA TGGAGACGAGGACAAGCAAACATTCAGCAAAAGTCGATCAAAATATTGGC GTGGAAGTTGACAGAGACGGCGATGGGGAAATGCCAACAGAGAACAAAGG CCAGGCAAAACATACGCACACAGACAGCAAGAAAGAGAGAAGGGTAAGGG TTGTCGTGCTCGTTATGGCCGCAACAGTCGGCCGTCTTCTGTCTAAGAAT TTCTCTCCCCGTGCACGAAACCAGCAACCCCCCCACCCAACTCCGTCCAC TTCCTCCGCTCTTGACCCCTCTGCCTACCCCGAAAAACGTTGTTTTGGTT GGGGGCAGATCGGCGCGCCGGCCACCTTCTTCGGCACGGGGCTCCCGGGG GGGTCTTTCGGCTTTTGCTTCTCGCAGGACGCGCTGTGCCACGCCGGCAG GCAGACGCCAAAGGCTCTCGAGGAGGCGGCGCGGCTGCTGGCCGCGGGGG GCAGCTTCGCGTGCACCAACATCCTCCGGTCAGAGGAGGCCACAGTGGAG GAGCTGGCGGAGGTGCTCGTGCGGCTGCAGGTACGCGCACCGGCCATTGT GTAGCTAGTTGGGTGGAAAGAGTGACGTAATCTTGCTGTCGGTGTGGTAG TCGTCGCCGTGGCTCCTGCTGCTGTTGTTGTCTTCGTCGTCGTCGTCGTC GTCGTCGTCGTCGTCGTCGTCTCACCTTCTGTTGTTCGTGTGCAACACGG CACCGTTCCGACTTGTGCCGAAGACGACGGGCCCGAGACCGCCGAGAAAA AGACACCGAAGTTGTGTGCGACCTACACCAGGGCGGAGCGTTGAGCGCGA GCGCCGTTTATCACATCACCAGAGCGGGGCCTGTGTCTCTTTGTGACTGG TTTGACCGGTGTCGGAACAATCGCGGTTACAGAAAGCACGGCGATGTATT AGGGGCTGACTGATGGCGTTCATCGAGCGAGAAAGATGTGGCGGTCATTG GTGGTGAAGTTTTACGACCCATGAACTTGTTCTTCGCGGAGGAATTGAAA GATATTCGTGCCGCAACGAGCGAGACATTTCACAGAGCGCATGAAGCTGT TGCCCTCGTTGGCCACCGAACCAATGTATCTGTGGTTTGCCTGTTTTGTT GGGTGTCGTCGATTCCGAGAAGGAGTGACTGATGCCCTTTTTGTTCAGGT TCATCGAGGCGGCGATGGACTGGTCAATGCGGTTTGCCACATTAAACGTG ACGCCACATCTTTGCCCCCGTCGGTCTCGACTTCTTTTGCGTGCTGAAAT TCGCCATCCTTGACGAAAACTCGCACTTCCTGCCCTTGTGCCGAGGCTTG CAGTTTTACCGGAGGTTGGATATTTTGGAGGGTAGAGTTATAGAGCCGTG CTCGACGATTTGACACACATTCAATCGATGCCGTCCACATTTTTCACGAA ACGTGACAGACGATGTGTCATGTTCCCCATGCGCTCCTGGCTTAGACCCG TCAATCGATACAGCGATTACGTCTACGGAAGTCTGTTATGGAACGTACTG AAGTGGCAGTTTCACACTCACACGCCTTTGAAAGCCAAATACTTGCAGGG GAGAAAGAGACGAGAATGAGTTGCGAAAATGTGTTGGGTACAGAAAATAA ATTTCTCACTCGAATAACCTGACCTCACTGCAGCATATCTGTTGGTTTTC CCGCCGGAAAGGAATCCAAAGCAGCGAGGCAGAATCCGTCAAAACATTCG CACAGGCGCGTGACTGTTGGCGTGCACTCCGCTCACTCAACGTCCGGTCG GCGGGCAAATGTTTTGCTCATCCTGTCCGTGCCGTCGGTGCTCCGCGGGT GTGCAGGTCAACCACATTGAGACGCACGAGTCTTTCGTGCAGCATGCGTG CGCGGCAGGACTGGAGCTGGTCGAGACTCTGGACAAGACCACCTCCATGA CTGTGCATTTCCAGACCCTCATTGAGGTGAGCGAGGGCGCATCAGGTTAG GAGTTTCGAGGGTGAAACACATGTGGGTTTCTGTCCACGCCTGGTCTTCC GACACCAGGTTTCAGAAGATGGCGACATCCTCGCTGAAATGTGGCAGCAC AGCACGATTCGCGTCGTTTGCTGTTCTGTTGCCGTCGCGTCTCATTTCGT TGTCATGGTTTCGCGTGGACGTGTAGCAGAAGGTGGGCGTGATGATGCGT GCCGGATTATGAGATCGCTTGCACGTACTTCCACAACTTTTGGCTTCATC CAGAATGGTCACTCTCTGTTTCCTTCCCCGCCCTGCCCCCTCCCCCCCCC TCTCCCTTCGCGCGGTAGGCGATGGAATCTCGCAAGGCCAGCTTGCTCGA GAATACCTCGCCGGAGTATGTCGAGGAGCTCTCCAAGGACCTGCTTAAGT GGCGGTCCGCCTCGAACAGGGGCGTGATGAGGTCAGTAAGGGCTGTCTTG ATCGGCAGGGCAGGAGGGATCGGACATGAAATCGAATTAGTCCGCCTCAG AAAGTCAAACCCACGTGATTTCTACTCGCCGGGAAACACGGATCGTCTTT TTGCGACCGTGGACCCTTGCACTGTCGAAATAGTAAGGAAATCGATTGGA AGCCTGCCAACTTTCCGAGCTTGTGATGCTCCTTCTTGGGAAGACAAACG CGGGTGTACACACTATTAAAATGTGTCAGCATTCACATTAGAGGGCGTTT ATTTAAAGTTTGCGCATGCGGGTGTGAGGTCTGCTGTGCTGTCTCTCCGA AGAACTATGCGGGAACTACTTGACTGATGGTGGCACTGCCAACTGCTGTG GTTTGGCTCATCGTCTCCCACGCTGGACATGATTTTCGACCAACAAACCA AGCCTTCTAATCGTCCGCAGTAGTCCAGTCAACTTCAGGCCATATCGTGC GTTGTTGGAGCCCGCTGTTGTTGTTGTTGTTGTTGTTGGCGTCTCCTTGG TTTCGGATGCTGATGCTTTATCGTCGTCTTACTCTTGGTCGGTTTTGTTT TCTGCCGACTCGACAGCAACAAGCTTCCTGACTTGTCCGGTGCAATCTTT CTCTTTCTCCCCCGCAAATACACACACACGAGTCGCATTGCTGGCCTGCC CACGCGCTCATCGACCCACTCTCCCGTCCGGTCGTCCAGGTGGTCCTTCT TCGTGTTTCGCAAGCGCACCACATGCTGAGGCGCATAGGGAGGAAGGCCG TCGACCAAGCCAGGGAACGGAAAACGCTTTGCGTTTGAAGAATGCCGAGA CCGGGGCACATGGAGTCTGTGATGGGAAAAGAGGACCGAACAGGAGTCGA GCGTTGGTTTGGACGGCGCATCAGAAGGTTACCTTCCCTGCGTCAAGTGT TTAGAGTGCGTGTGAGCGCGAGGTGGTCAGCCGGGATTTATTTGCAACGC CGCAGGGCTCGCCGAACGTGTACAGTCGTGGTACCGCCGTGGCGGTGTGG AGACGGGACGGAAGGGGGCGAGCGGGGCCAAGGGAATCGCTTTCCGGATG GGCATCAGTGGTCTTGATGACATCTCGTCTTGCGGTGAAAAGCTGGGACC GTGCGTGCCCTCTCCCTTTTTGTACATAAAACCACTGGAATCGGATTTTT TGGGAGATAAAGAGCGAGTTGTGATGCGACGTGAGCTTCGCAAGAGATTG ACGCGTCCACGGACGATGTGTGTTTTGCTGGATTGCCTTGTTGGAAGAAA TCTTCAGCAGCAGCGATCGTCAGCGGCTGTTGCGAGATTACGGGAGGGGT CAGCACAACGTGCCGTGGATTTCCAGCGTTTATTCTCGTTTTTCTGTCGC TGCCTCGCCATTGATCTGGCGTAGCTGCCTTTTTTCTTTATGCAGAAAAT TCGCCATTATCTCCACAACCACGGCTTGCACTGGGCACAGAAGTTTTTTT TTTGTGAGTCTGTCAAATCGCGAAACGATGCGCAGAGCTTTGGCGAGACT GGGGTAATGCCGCAAGTGCATGCACGTCTCTGATGACGTTCGGCGTGCTG GCTGACACACGTGCCGCCCGGTGCGTCAACTTTATTCAAGGCAAGAGAAA AATTGGGTAAGGGCGTGAGAGGGAAATTGTATGCGAGATGGGGCGAGCGA GAGAGCAGAGGGAGAAAGTGGGCGGGCTGGACAGACGGATGGACAATAGA CAGCGAGAGAGAGGGAAACGCTTTCCTTGTGAACGGGAATGACCACGAGA ACTAGACAAAATCGCTCGAGCGCAAATGGTCCAAGGTCTAGGCGTTTGTG AGGTTGCATTTTCGGAGTAGAGGAGAAATGGGTGCGTGTGTGGTAAGCAG GGCAGGGAGCGGGTGAGGTGGCGGGTTTGGGGCATTCTTTTAGGGCAGCG CTTGTGCACGATGTGCTGGTTATTCTTGGTGCGTTGATCGCTTTTTTTGC CGGTGAGAATTTTGTCAGTTTGGGAGTGGTTGGGATGGCTAAGCGGTTGC TGATTGTGGACGGAATGATGGAAGATTTGAGTGCACGGAGGTGGGCGCTA AAGCGAGCTTAGAAGGTGGATGCAGGACATGTTTGTCGTTCGTTCGCGAG CGTTGTGGACTATCACACGTACGAGTGTGTGGTAGCAAGCGGTCCTAGGT GTACGTGCGAGGTTTTTGAATCTTGACCGGGGTGTGCTTGGAAGTTTAGG TCCTAACTTAGTTGAATGATGGTCTTCCTGACACTGCATATTTGGGCGAG TGGTTCTATGTAGCTCTGGATGGAGGACGGGGGGCAGAGACGTTCCGGTA GATAAAAAGCCACGAGCGGAACACGTTTAAATACAGATGACGAATGAATC CAGACTAGCAGCAAACAGCGCAACGTAATACACTAGGTGAATCTTGACGT TTTGTATGTGTTTATTTTGTGGCGCGCTGTAACCGTTGCGGCGAAGCGAC ACTCGGCGGAACTCCTTTCTCGGCCAGGGAATGCACACATGTCAGACCCT CAAACGAACGCACGGGGAAGAGGCGTTGATCTTGCGGGGCGTGCCCGTTT CCCTCTCAGCCGTTCAGGTCGCCTCGCAGTGTGTCGCGTGTGTGCGAGCC TTTATTAATAGTCGTTATTATCGCGGTTTGCAGTTTGCGTTCGTGACGTC AAATTCTCTCCCCGGAAGCGTTCCATGTGTTCACGAGCGATCGTGGCAGT GGCGAGGGAGGTTTTGGCTCTACAGCGCTTCAAGTGTATGAAATCCAAGT CCGCGCCAGCTCGAATGGTTCAAGCGAATCCATTCTTACGCAAGGAGACT GAGGGTCTGACGGGGATTGCACCTTTCTCCTTGACGCCTCCGTGGCCGCG TGGAATGGGAGGGCGCCGGGTGACGCTGGACACTTATCGGACGATGGACC TACTAGGGCAGGGCGGTTCGTGGCGCCTGTTGCTCTGATTCACGCGGCCA ACACAAAGCATTATATCTTCACGATCCCTGAAAGTAGAAACTCGCGCGAA AACTCGCAGGCATGTCGAGGGTC
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Coding sequence (CDS) from alignment at P-fluviatile_contig9:2282602..2300824-

>mRNA_P-fluviatile_contig9.15253.1 ID=mRNA_P-fluviatile_contig9.15253.1|Name=mRNA_P-fluviatile_contig9.15253.1|organism=Porterinema fluviatile SAG_2381|type=CDS|length=3402bp|location=Sequence derived from alignment at P-fluviatile_contig9:2282602..2300824- (Porterinema fluviatile SAG_2381)
ATGACGGCCACGAGATGACGGCCACGAGGTGGCACGACTCGATGTACTAC
GAGGGGAGCTACTTCTGGCAGCTCTTCCACGACACCCAGGTGTACACCCG
GCGGGCCACCTCCATTTTCTGCGGCTCTCCCGCCAGGTGGCACGACTCGA
TGTACTACGAGGGGAGCTACTTCTGGCAGCTCTTCCACGACACCCAGGTG
TACACCCGGCGGGCCACCTCCATTTTCTGCGGCTCTCCCGCCAGGTGTTA
CTCGGTCGAAGTCGGATGCGGCACGGGGGACGTGATCTTGAGCCTGGCGG
GCGACTTCAAGCACAGCTTGGGCCTCGACATCAACGAGGGATTTTTGGCT
TACGCCAAGGAGCACACTCCCGAGAATTTCAAGGACAAGGTGTTACTCGG
TCGAAGTCGGATGCGGCACGGGGGACGTGATCTTGAGCCTGGCGGGCGAC
TTCAAGCACAGCTTGGGCCTCGACATCAACGAGGGATTTTTGGCTTACGC
CAAGGAGCACACTCCCGAGAATTTCAAGGACAAGGTCTCCTTCTGCCGGG
GAAGCGCGACGGATCTCATGGACATCGTGGGGTCTCACCCGAGCATCGAC
AGGTCCTCCGGCCCCATTGTGGTGACGTGCGTCAACAACACTCTTGGAGT
GTTCCCGGACGTGATCAAGCCCCGCACGTACTCGCAGGTCTCCTTCTGCC
GGGGAAGCGCGACGGATCTCATGGACATCGTGGGGTCTCACCCGAGCATC
GACAGGTCCTCCGGCCCCATTGTGGTGACGTGCGTCAACAACACTCTTGG
AGTGTTCCCGGACGTGATCAAGCCCCGCACGTACTCGCAGATGAAGGAGC
TCGCCGGGGAGGACGGCATCATCATCATCGGCTTCTGGAACGGGAACAAG
TTTGGGGAGGCCCTCCAGCACTTCTACCACAAGCACCCGGAGCTGTGCGG
CACGATGAAGGGGGCCGAGATCGACATGGACGAGCGACATCTGGACACCA
AGGAGGGCTACCACACGAAGTGGACCACTCCCGAGGAGGCTCGGCAGATG
AAGGAGCTCGCCGGGGAGGACGGCATCATCATCATCGGCTTCTGGAACGG
GAACAAGTTTGGGGAGGCCCTCCAGCACTTCTACCACAAGCACCCGGAGC
TGTGCGGCACGATGAAGGGGGCCGAGATCGACATGGACGAGCGACATCTG
GACACCAAGGAGGGCTACCACACGAAGTGGACCACTCCCGAGGAGGCTCG
GCAGGTTCTCAAGGACAGCGGCTTCAACATTCTTGACATCATGGAGATCG
GCGTGGGCGTTCTGTGCACCTGTTCCGGCGGCCAGGGTATCCCTTCTCCC
GCGGGCGCGTTGGACTCCCAGCTGCCGCCGTCGGCCGCCGCCCCCCTGTC
CTCGGACATACTCGTCGCGGAGGAGGAGGCGCACAGCATGAACCACTACG
GAGACAGGCGAGCGAACAAGGAATGGAATGCTGAAACATCGAAAGAAGGG
AAGGGAGAAGGATATGACGAACAGGTTCTCAAGGACAGCGGCTTCAACAT
TCTTGACATCATGGAGATCGGCGTGGGCGTTCTGTGCACCTGTTCCGGCG
GCCAGGGTATCCCTTCTCCCGCGGGCGCGTTGGACTCCCAGCTGCCGCCG
TCGGCCGCCGCCCCCCTGTCCTCGGACATACTCGTCGCGGAGGAGGAGGC
GCACAGCATGAACCACTACGGAGACAGGCGAGCGAACAAGGAATGGAATG
CTGAAACATCGAAAGAAGGGAAGGGAGAAGGATATGACGAACAGTACTTC
TACCGTGAGCTGTGGGGCGGCCTTCACCAGCATCTGGGGTTGTATGAGGA
CCCTGGCACCATGGCCCTGCCCCCCCTCAAGCGGGTGGTCCAGTACTTCT
ACCGTGAGCTGTGGGGCGGCCTTCACCAGCATCTGGGGTTGTATGAGGAC
CCTGGCACCATGGCCCTGCCCCCCCTCAAGCGGGTGGTCCAGGCGTGCGA
GGACAGCACGGTGGTGCTCTTCTCCGTCGCCAAGCCCACCATGGGTGTCA
AGGCCGTCGAGCTCGGGTCTGGCTACGGGTCGGGCGCGAGGTACCTGGCG
CTCAACTTCGGAGCGACGGTGGACTGCGTGGACCTGTCGCAAGAGGCGAA
CGACCGGAACCGGCAGCTAACGGAGGATGCCGGCCTCTCCCATCTCGTCA
AGGCGTGCGAGGACAGCACGGTGGTGCTCTTCTCCGTCGCCAAGCCCACC
ATGGGTGTCAAGGCCGTCGAGCTCGGGTCTGGCTACGGGTCGGGCGCGAG
GTACCTGGCGCTCAACTTCGGAGCGACGGTGGACTGCGTGGACCTGTCGC
AAGAGGCGAACGACCGGAACCGGCAGCTAACGGAGGATGCCGGCCTCTCC
CATCTCGTCAAGATCGGCGCGCCGGCCACCTTCTTCGGCACGGGGCTCCC
GGGGGGGTCTTTCGGCTTTTGCTTCTCGCAGGACGCGCTGTGCCACGCCG
GCAGGCAGACGCCAAAGGCTCTCGAGGAGGCGGCGCGGCTGCTGGCCGCG
GGGGGCAGCTTCGCGTGCACCAACATCCTCCGGTCAGAGGAGGCCACAGT
GGAGGAGCTGGCGGAGGTGCTCGTGCGGCTGCAGATCGGCGCGCCGGCCA
CCTTCTTCGGCACGGGGCTCCCGGGGGGGTCTTTCGGCTTTTGCTTCTCG
CAGGACGCGCTGTGCCACGCCGGCAGGCAGACGCCAAAGGCTCTCGAGGA
GGCGGCGCGGCTGCTGGCCGCGGGGGGCAGCTTCGCGTGCACCAACATCC
TCCGGTCAGAGGAGGCCACAGTGGAGGAGCTGGCGGAGGTGCTCGTGCGG
CTGCAGGTCAACCACATTGAGACGCACGAGTCTTTCGTGCAGCATGCGTG
CGCGGCAGGACTGGAGCTGGTCGAGACTCTGGACAAGACCACCTCCATGA
CTGTGCATTTCCAGACCCTCATTGAGGTCAACCACATTGAGACGCACGAG
TCTTTCGTGCAGCATGCGTGCGCGGCAGGACTGGAGCTGGTCGAGACTCT
GGACAAGACCACCTCCATGACTGTGCATTTCCAGACCCTCATTGAGGCGA
TGGAATCTCGCAAGGCCAGCTTGCTCGAGAATACCTCGCCGGAGTATGTC
GAGGAGCTCTCCAAGGACCTGCTTAAGTGGCGGTCCGCCTCGAACAGGGG
CGTGATGAGGCGATGGAATCTCGCAAGGCCAGCTTGCTCGAGAATACCTC
GCCGGAGTATGTCGAGGAGCTCTCCAAGGACCTGCTTAAGTGGCGGTCCG
CCTCGAACAGGGGCGTGATGAGGTGGTCCTTCTTCGTGTTTCGCAAGCGC
ACCACATGCTGAGTGGTCCTTCTTCGTGTTTCGCAAGCGCACCACATGCT
GA
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