mRNA_P-fluviatile_contig1.158.1 (mRNA) Porterinema fluviatile SAG_2381

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

Overview
NamemRNA_P-fluviatile_contig1.158.1
Unique NamemRNA_P-fluviatile_contig1.158.1
TypemRNA
OrganismPorterinema fluviatile SAG_2381 (Porterinema fluviatile SAG_2381)
Homology
BLAST of mRNA_P-fluviatile_contig1.158.1 vs. uniprot
Match: D7G9G7_ECTSI (Clu domain-containing protein n=1 Tax=Ectocarpus siliculosus TaxID=2880 RepID=D7G9G7_ECTSI)

HSP 1 Score: 706 bits (1822), Expect = 1.070e-247
Identity = 364/454 (80.18%), Postives = 396/454 (87.22%), Query Frame = 1
Query:  463 VDGMVDVKRDWDAAMALQNAWRKRRAYIFVKDLKQEKLCREQREEMRAGLHVGCEACASAGKKSADIKSRNRKKAWKDADELLFNGMARIQMSDRGDNWNERWQLALSLAAKTHMEKTYRKSLLDAVYSDFVHTAVTYGRTIISEYFLHEYMKSVRPKSLGGVAGGKKYLWRGIMFKLADGSQGPYGGSDEAAAKAAGHELRGASEYLKTGVGLCVPPMCLLDYKGFRMLAQAHLSLGPASLKMGTSDGGLTVLNDSPELNRRTAAAARSLKLRAHIGRGDGAEVQEEAIRRGAHASRGGRRGEVR-HRVRVEVVVRTLKLVLRGFQRSWMKSEQSSSEQGMHLLVTQFLNLVTGHHVRSHLFWAENVTIGVCQRFGTVALTESERAGLWGACSSRPDLLLTMVKELVKVTGVRFKESVNQKLRSKNAK--IVGYKFNLGDIRDIEAVVTPMAI 1815
            +DG  +V  D  AA+ALQ AWRKR AY+FVKDLKQEKLCR+ R+EMRAGLHV CEAC+SAGKKSADIKSRN+KKAWKD DELLF GMAR+QMSDRGDNWN+RWQ ALSL  KT M+  Y++  LDAVYSDFVHTAVTYGRTIISEYFLHEYMKSV+PK LGG+AGGKKYLWRGI+FKLADGSQGPYGGSDEAAAKAAGHELRGASEYL TGVGLC+PPMCLLDYKGFRMLAQAHL LG  SLKMGT+DGG TVLND P L++RTA AA++L LRAHIG  D   VQEE  R G    RGG RG  R HR +VEVVVRTLKLVLR FQR WMKSEQSSSE+GMHLLVTQFLNLVTGHH RSHLFW ENVT GVCQRFGTVALTESERAGLW  CS RP++LLT+VKELVKVTGVRFKESVNQKLRS+ AK  +VG++F+LGDIRDIEAVVTPMAI
Sbjct:    3 LDGK-EVNVDHAAAVALQRAWRKRSAYVFVKDLKQEKLCRDMRKEMRAGLHVDCEACSSAGKKSADIKSRNQKKAWKDTDELLFKGMARVQMSDRGDNWNDRWQEALSLPNKTKMDINYKRRSLDAVYSDFVHTAVTYGRTIISEYFLHEYMKSVKPKRLGGLAGGKKYLWRGILFKLADGSQGPYGGSDEAAAKAAGHELRGASEYLHTGVGLCIPPMCLLDYKGFRMLAQAHLPLGETSLKMGTNDGGRTVLNDCPILDKRTAMAAKALGLRAHIGPRDWVGVQEEEKRGGPDTPRGGGRGRARGHRFQVEVVVRTLKLVLREFQRRWMKSEQSSSERGMHLLVTQFLNLVTGHHERSHLFWRENVTTGVCQRFGTVALTESERAGLWTVCSDRPEILLTIVKELVKVTGVRFKESVNQKLRSRKAKSVVVGFEFHLGDIRDIEAVVTPMAI 455          
BLAST of mRNA_P-fluviatile_contig1.158.1 vs. uniprot
Match: A0A835YKN4_9STRA (CLU domain-containing protein n=1 Tax=Tribonema minus TaxID=303371 RepID=A0A835YKN4_9STRA)

HSP 1 Score: 215 bits (547), Expect = 1.540e-60
Identity = 116/207 (56.04%), Postives = 145/207 (70.05%), Query Frame = 1
Query:  718 GMARIQMSDRGDNWNERWQLALSLAAKTHMEKTYRKSLLDAVYSDFVHTAVTYGRTIISEYFLHEYMKSVRPKSLGGVAGGKKYLWRGIMFKLADGSQGPYGGSDEAAAKAAGHELRGASEYLKTGV-GLCVPPMCLLDYKGFRMLAQAHLSLGPASLKMGTSDGGLTVLN-DSPELNRRTAAAARSLKLRAHIGRG----DGAEVQ 1320
            G+ R+++ D GDNWN  +Q A +L   T ME+TY+  LL  VY DF   AV YGRTIISE+FLH Y++S+RP+ +GG AGGKK+L+RGI+FKLADG+ GP+ GSDEAAAKAAGHELRG S Y   GV GL   PMC+LDYKGFRM+  A L LG A+L  G+SDGG+ V+     E+ R    AA  L+LR H  RG     GA+V+
Sbjct:   19 GLPRVKVEDLGDNWNALFQEAQALPEATEMERTYKHLLLATVYRDFTAAAVMYGRTIISEFFLHSYLRSIRPREVGGFAGGKKFLFRGILFKLADGAVGPWAGSDEAAAKAAGHELRGHSYYAHAGVAGLHFSPMCILDYKGFRMVCAAQLPLGAATLISGSSDGGINVVGVGDAEVARVLEEAAARLRLRPHPCRGTTVYSGADVE 225          
BLAST of mRNA_P-fluviatile_contig1.158.1 vs. uniprot
Match: D7G5G9_ECTSI (Clu domain-containing protein n=1 Tax=Ectocarpus siliculosus TaxID=2880 RepID=D7G5G9_ECTSI)

HSP 1 Score: 191 bits (485), Expect = 3.040e-47
Identity = 110/205 (53.66%), Postives = 138/205 (67.32%), Query Frame = 1
Query:  682 KAWKDADELLFNGMARIQMSDRGDNWNERWQLALSLAAKTHMEKTYRK-SLLDAVYSDFVHTAVTYGRTIISEYFLHEYMKSVRPKSLGGVAGGKKYLWRGIMFKLADGSQGPYGGSDEAAAKAAGHELRGASEYLKTGV-GLCVPPMCLLDYKGFRMLAQAHLSLGPASLKMGTSDGGLTVLNDSPELNRRTAAAARSLKLRAH 1290
            ++W+   EL+F         + G NWNE +Q AL L  +T  ++ YRK   L  V  DF  TAVTYG+TIISEYFL    KS+R K LGGVAGG K++WRGI+FKLADGS+GPY G+DEAAAK AGH+LRGA+ YL T + GL     CL+DYKGFRM AQA L +   SL+ G+S+GG TV N+   L ++  AAA+ L LR H
Sbjct:  224 RSWERFRELVFPDDMEQAYRETG-NWNELFQSALDLPEETP-DQCYRKWERLTTVNRDFKATAVTYGKTIISEYFLETEHKSIRLKELGGVAGGMKFVWRGILFKLADGSKGPYLGNDEAAAKGAGHDLRGATHYLATRIRGLRYALQCLIDYKGFRMTAQAVLPVNKESLRYGSSNGGKTVHNEDESLAKKLKAAAKKLNLRTH 426          
BLAST of mRNA_P-fluviatile_contig1.158.1 vs. uniprot
Match: D8LF64_ECTSI (Clu domain-containing protein n=1 Tax=Ectocarpus siliculosus TaxID=2880 RepID=D8LF64_ECTSI)

HSP 1 Score: 177 bits (448), Expect = 5.990e-47
Identity = 100/182 (54.95%), Postives = 125/182 (68.68%), Query Frame = 1
Query:  754 NWNERWQLALSLAAKTHMEKTYRK-SLLDAVYSDFVHTAVTYGRTIISEYFLHEYMKSVRP-KSLGGVAGGKKYLWRGIMFKLADGSQGPYGGSDEAAAKAAGHELRGASEYLKTGV-GLCVPPMCLLDYKGFRMLAQAHLSLGPASLKMGTSDGGLTVLNDSPELNRRTAAAARSLKLRAH 1290
            NWNE +Q AL L   T  ++ YRK   +  V  DF   AVTYG+TIISEYFL    KS++P ++LGG AGG K++WRGI+FKLADGS+GPY G+DEAAAK AGH+LRGA+ YL   + GL     CL+DYKGFRM AQA L +   +L+ G+SD G TV NDS  L ++  A A+ L LR H
Sbjct:   10 NWNELFQSALDLPEDTP-DQCYRKWERMTTVNRDFKAAAVTYGKTIISEYFLDLKHKSIKPNENLGGSAGGMKFVWRGILFKLADGSRGPYLGNDEAAAKGAGHDLRGATHYLDARIRGLRYALQCLIDYKGFRMTAQAVLPVSSETLRYGSSDAGRTVHNDSENLAKKLKAVAKKLNLRTH 190          
BLAST of mRNA_P-fluviatile_contig1.158.1 vs. uniprot
Match: A0A835ZAL9_9STRA (CLU domain-containing protein (Fragment) n=1 Tax=Tribonema minus TaxID=303371 RepID=A0A835ZAL9_9STRA)

HSP 1 Score: 158 bits (400), Expect = 1.410e-40
Identity = 96/185 (51.89%), Postives = 119/185 (64.32%), Query Frame = 1
Query:  775 LALSLAAKTHMEKTYRK-SLLDAVYSDFVHTAVTYGRTIISEYFLHEYMKSVRPKSLGGVAGGKKYLWRGIMFKLADGSQGPYGGSDEAAAKAAGHELRGASEYLKTGV-GLCVPPMCLLDYKGFRMLAQAHLSL-GPASLKMGTSDGGLTVLNDSPELNRRTAAAARSLKLRAHIGRGDGAEVQ 1320
            L+LS  A        RK   L A+  DF+  AVTYGRTIISEYFL E  KSV P  +GG+AGG+K+L RGI+FKLADGS+GPY GSDEAA KA  ++L+GA   +K  + GL      L+DYKGFRM AQA L L   A+L+ G+ D G TV++    L  +    A  L L+AH GRG GAE+Q
Sbjct:    3 LSLSAIATACRRTLCRKYQALTALNKDFISAAVTYGRTIISEYFLKEEAKSVCPSLVGGIAGGRKFLLRGILFKLADGSRGPYDGSDEAAGKALNNDLKGAVHLVKCSIPGLFCSLQALIDYKGFRMHAQAQLPLCSRATLRCGSCDAGATVVDGDGALRHKLRLVAAQLNLKAHRGRG-GAELQ 186          
BLAST of mRNA_P-fluviatile_contig1.158.1 vs. uniprot
Match: A0A7S4DG52_HETAK (Hypothetical protein (Fragment) n=1 Tax=Heterosigma akashiwo TaxID=2829 RepID=A0A7S4DG52_HETAK)

HSP 1 Score: 132 bits (333), Expect = 1.970e-32
Identity = 65/107 (60.75%), Postives = 81/107 (75.70%), Query Frame = 1
Query:  748 GDNWNERWQLALSLAAKTHMEKTYRKSLLDAVYSDFVHTAVTYGRTIISEYFLHEYMKSVRPKSLGGVAGGKKYLWRGIMFKLADGSQGPYGGSDEAAAKAAGHELR 1068
            GD+WNER+Q A+SL   T  EK  + +LL +V  DF+ TA TY +T+ISEYFL E++KSV+    GG+AGG+KY WRGI+FKLADG  GPY GSD AAAKA GH+LR
Sbjct:   37 GDDWNERFQHAISLPESTDEEKLLKYTLLTSVNRDFIATAETYAKTVISEYFLPEHLKSVKSGQFGGIAGGRKYCWRGILFKLADGQCGPYEGSDAAAAKAMGHDLR 143          
BLAST of mRNA_P-fluviatile_contig1.158.1 vs. uniprot
Match: A0A7R9UF47_9STRA (Hypothetical protein (Fragment) n=1 Tax=Pinguiococcus pyrenoidosus TaxID=172671 RepID=A0A7R9UF47_9STRA)

HSP 1 Score: 131 bits (329), Expect = 7.850e-30
Identity = 73/158 (46.20%), Postives = 105/158 (66.46%), Query Frame = 1
Query:  754 NWNERWQLALSLAAKTHMEKTYRKSLLDAVYSDFVHTAVTYGRTIISEYFLHEYMKSVRPKSLGGVAGGKKYLWRGIMFKLADGSQGPYGGSDEAAAKAAGHELRGASEYLKTGVG-LCVPPMCLLDYKGFRMLAQAHLSL-------GPASLKMGTS 1203
            +WNER+Q  L L   +  E+ +R + L A Y+DFV TA TYG  +ISE FL+E +K++  +S+ G+AGG+KY +RGI FKLA G + PYGG   AA+KA GHEL+GA+ Y +  V  L +P   L+DY+G+R+LAQ  L +        P +LK+G++
Sbjct:   29 DWNERYQAGLRLPDGSDEEQRFRLAHLTATYADFVATATTYGMVLISELFLNEELKTMSFESVPGLAGGEKYQYRGIFFKLATGHE-PYGGDYNAASKAMGHELKGATHYSRCNVTELNIPMHVLIDYRGYRLLAQTKLPIKPGKSLENPGTLKVGSA 185          
BLAST of mRNA_P-fluviatile_contig1.158.1 vs. uniprot
Match: A0A2P6N2S8_9EUKA (Uncharacterized protein n=1 Tax=Planoprotostelium fungivorum TaxID=1890364 RepID=A0A2P6N2S8_9EUKA)

HSP 1 Score: 130 bits (328), Expect = 3.300e-27
Identity = 72/180 (40.00%), Postives = 111/180 (61.67%), Query Frame = 1
Query:  754 NWNERWQLALSLAAKTHMEKTYRKSLLDAVYSDFVHTAVTYGRTIISEYFLHEYMKSVRPKS-LGGVAGGKKYLWRGIMFKLADGSQGPYGGSDEAAAKAAGHELRGASEYLKTGVGLCVPPMCLLDYKGFRMLAQAHLSLGPASLKMGTSDGGLTVLNDSPELNRRTAAAARSLKLRAH 1290
            +WN+ +Q  L+L   T  EK ++ S L ++  DFVH A T+G+ IISE +LH   +++ P + +GGVAGG+KY++ GI+FK A   +  YGG D  A KAA HEL+  + Y +   G+ VP M L++Y+G+R++A + + +   +L  G+ DGG TVL    + NR    A + L L+ H
Sbjct:  170 DWNDEFQKILALPENTEDEKLHKYSELSSLNKDFVHIAKTFGKIIISERYLHAKHRTINPTTEVGGVAGGEKYVYHGILFKFAIDWRNLYGG-DHNAMKAANHELQAVTRYYECE-GISVPLMTLIEYRGYRLVAMSWVPITSRTLVYGSQDGGYTVLASDEKCNRLMQMAGKRLNLKGH 347          
BLAST of mRNA_P-fluviatile_contig1.158.1 vs. uniprot
Match: A0A2P6NDL7_9EUKA (Uncharacterized protein n=1 Tax=Planoprotostelium fungivorum TaxID=1890364 RepID=A0A2P6NDL7_9EUKA)

HSP 1 Score: 129 bits (325), Expect = 6.500e-27
Identity = 70/180 (38.89%), Postives = 109/180 (60.56%), Query Frame = 1
Query:  754 NWNERWQLALSLAAKTHMEKTYRKSLLDAVYSDFVHTAVTYGRTIISEYFLHEYMKSVRPKSLGGVAGGKKYLWRGIMFKLADGSQGPYGGSDEAAAKAAGHELRGASEYLKTGVGLCVPPMCLLDYKGFRMLAQAHLSLGPASLKMGTSDGGLTVLNDSPELNRRTAAAARSLKLRAHI 1293
            NWNE +Q  L L  +T  E+  R   +  + S+F  T++ YG+ II+E  L    K+++P S+GG AGG+KY+  GI++K A   +G YGG DE   K+A +E +G + Y   GVGL VP M L+DY G+R++A + L +  ++L+ G+ D G  + + +PE +     AA  L L+AH+
Sbjct:  250 NWNEEFQKILDLPQRTTEERVKRFEQISQLASEFERTSILYGKIIINEETLSIDQKTIKPISIGGQAGGEKYVHAGILYKFAKDWKGIYGG-DEFCMKSASNEQKGLTRYFSAGVGLRVPLMSLIDYMGYRLIAISILPIDKSTLQYGSMDFGRNMASPTPECSMMMKRAASHLNLKAHV 428          
BLAST of mRNA_P-fluviatile_contig1.158.1 vs. uniprot
Match: A0A7R9UB16_9STRA (Hypothetical protein (Fragment) n=1 Tax=Pinguiococcus pyrenoidosus TaxID=172671 RepID=A0A7R9UB16_9STRA)

HSP 1 Score: 125 bits (314), Expect = 2.200e-26
Identity = 74/190 (38.95%), Postives = 114/190 (60.00%), Query Frame = 1
Query:  730 IQMSDRGDNWNERWQLALSLAAKTHMEKTYRKSLLDAVYSDFVHTAVTYGRTIISEYFLHEYMKSVRP-KSLGGVAGGKKYLWRGIMFKLADGSQGPYGGSDEAAAKAAGHELRGASEYLKTG--VGLCVPPMCLLDYKGFRMLAQAHLSLGPASLKMGTSDGGLTVLNDSPELNRRTAAAARSLKLRAH 1290
            + +S  G +W  R++ AL L ++   E   +   + ++  DF   A  Y R IISE+ L    K++RP +++GG AGG+KY+ + I+FK A   +G +GG+DE A+K AGHELRG + YL+    +G+ VP  C++D+ G R+LA+A   +G  +L  G+ DGG+TV N + EL  + A  A  L L  H
Sbjct:   21 LPLSGGGTDWCGRFREALELPSRNEEELLVKFEAMASLARDFTCQAEIYARIIISEHHLPLSEKTLRPNETVGGFAGGQKYVCQNILFKFAVDDRGLFGGNDEPASKFAGHELRGLNWYLRYAQDLGILVPLTCVVDFMGMRILAKAVAPVGHDTLVYGSDDGGVTVQNANEELAEKMAQVALRLNLAEH 210          
The following BLAST results are available for this feature:
BLAST of mRNA_P-fluviatile_contig1.158.1 vs. uniprot
Analysis Date: 2022-09-19 (Diamond blastx: OGS1.0 vs UniRef90)
Total hits: 25
Match NameE-valueIdentityDescription
D7G9G7_ECTSI1.070e-24780.18Clu domain-containing protein n=1 Tax=Ectocarpus s... [more]
A0A835YKN4_9STRA1.540e-6056.04CLU domain-containing protein n=1 Tax=Tribonema mi... [more]
D7G5G9_ECTSI3.040e-4753.66Clu domain-containing protein n=1 Tax=Ectocarpus s... [more]
D8LF64_ECTSI5.990e-4754.95Clu domain-containing protein n=1 Tax=Ectocarpus s... [more]
A0A835ZAL9_9STRA1.410e-4051.89CLU domain-containing protein (Fragment) n=1 Tax=T... [more]
A0A7S4DG52_HETAK1.970e-3260.75Hypothetical protein (Fragment) n=1 Tax=Heterosigm... [more]
A0A7R9UF47_9STRA7.850e-3046.20Hypothetical protein (Fragment) n=1 Tax=Pinguiococ... [more]
A0A2P6N2S8_9EUKA3.300e-2740.00Uncharacterized protein n=1 Tax=Planoprotostelium ... [more]
A0A2P6NDL7_9EUKA6.500e-2738.89Uncharacterized protein n=1 Tax=Planoprotostelium ... [more]
A0A7R9UB16_9STRA2.200e-2638.95Hypothetical protein (Fragment) n=1 Tax=Pinguiococ... [more]

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Alignments
The following features are aligned
Aligned FeatureFeature TypeAlignment Location
P-fluviatile_contig1contigP-fluviatile_contig1:2066826..2092708 +
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 score711.8
Seed ortholog evalue2.3e-202
Seed eggNOG ortholog2880.D7G9G7
EggNOG free text desc.Clustered mitochondria
EggNOG OGs2DZMV@1,2S753@2759
COG Functional cat.S
Best tax levelEukaryota
Best eggNOG OGNA|NA|NA
Hectar predicted targeting categoryother localisation
Ec32 ortholog descriptionCLU domain
Ec32 orthologEc-28_000850.1
Exons17
Model size2465
Cds size1566
Stop1
Start1
Relationships

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

Feature NameUnique NameSpeciesTypePosition
1622815297.7571282-UTR-P-fluviatile_contig1:2066825..20670891622815297.7571282-UTR-P-fluviatile_contig1:2066825..2067089Porterinema fluviatile SAG_2381UTRP-fluviatile_contig1 2066826..2067089 +
1693561438.6471682-UTR-P-fluviatile_contig1:2066825..20670891693561438.6471682-UTR-P-fluviatile_contig1:2066825..2067089Porterinema fluviatile SAG_2381UTRP-fluviatile_contig1 2066826..2067089 +
1622815297.9831183-UTR-P-fluviatile_contig1:2092073..20927081622815297.9831183-UTR-P-fluviatile_contig1:2092073..2092708Porterinema fluviatile SAG_2381UTRP-fluviatile_contig1 2092074..2092708 +
1693561438.8230138-UTR-P-fluviatile_contig1:2092073..20927081693561438.8230138-UTR-P-fluviatile_contig1:2092073..2092708Porterinema fluviatile SAG_2381UTRP-fluviatile_contig1 2092074..2092708 +


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

Feature NameUnique NameSpeciesTypePosition
1622815297.7680528-CDS-P-fluviatile_contig1:2067089..20671521622815297.7680528-CDS-P-fluviatile_contig1:2067089..2067152Porterinema fluviatile SAG_2381CDSP-fluviatile_contig1 2067090..2067152 +
1693561438.6624165-CDS-P-fluviatile_contig1:2067089..20671521693561438.6624165-CDS-P-fluviatile_contig1:2067089..2067152Porterinema fluviatile SAG_2381CDSP-fluviatile_contig1 2067090..2067152 +
1622815297.7778926-CDS-P-fluviatile_contig1:2069775..20698201622815297.7778926-CDS-P-fluviatile_contig1:2069775..2069820Porterinema fluviatile SAG_2381CDSP-fluviatile_contig1 2069776..2069820 +
1693561438.6723592-CDS-P-fluviatile_contig1:2069775..20698201693561438.6723592-CDS-P-fluviatile_contig1:2069775..2069820Porterinema fluviatile SAG_2381CDSP-fluviatile_contig1 2069776..2069820 +
1622815297.7877998-CDS-P-fluviatile_contig1:2070459..20705731622815297.7877998-CDS-P-fluviatile_contig1:2070459..2070573Porterinema fluviatile SAG_2381CDSP-fluviatile_contig1 2070460..2070573 +
1693561438.6825554-CDS-P-fluviatile_contig1:2070459..20705731693561438.6825554-CDS-P-fluviatile_contig1:2070459..2070573Porterinema fluviatile SAG_2381CDSP-fluviatile_contig1 2070460..2070573 +
1622815297.8029306-CDS-P-fluviatile_contig1:2071555..20716361622815297.8029306-CDS-P-fluviatile_contig1:2071555..2071636Porterinema fluviatile SAG_2381CDSP-fluviatile_contig1 2071556..2071636 +
1693561438.6923075-CDS-P-fluviatile_contig1:2071555..20716361693561438.6923075-CDS-P-fluviatile_contig1:2071555..2071636Porterinema fluviatile SAG_2381CDSP-fluviatile_contig1 2071556..2071636 +
1622815297.817663-CDS-P-fluviatile_contig1:2072970..20730871622815297.817663-CDS-P-fluviatile_contig1:2072970..2073087Porterinema fluviatile SAG_2381CDSP-fluviatile_contig1 2072971..2073087 +
1693561438.702685-CDS-P-fluviatile_contig1:2072970..20730871693561438.702685-CDS-P-fluviatile_contig1:2072970..2073087Porterinema fluviatile SAG_2381CDSP-fluviatile_contig1 2072971..2073087 +
1622815297.8280208-CDS-P-fluviatile_contig1:2073674..20737251622815297.8280208-CDS-P-fluviatile_contig1:2073674..2073725Porterinema fluviatile SAG_2381CDSP-fluviatile_contig1 2073675..2073725 +
1693561438.714242-CDS-P-fluviatile_contig1:2073674..20737251693561438.714242-CDS-P-fluviatile_contig1:2073674..2073725Porterinema fluviatile SAG_2381CDSP-fluviatile_contig1 2073675..2073725 +
1622815297.8461328-CDS-P-fluviatile_contig1:2074681..20747671622815297.8461328-CDS-P-fluviatile_contig1:2074681..2074767Porterinema fluviatile SAG_2381CDSP-fluviatile_contig1 2074682..2074767 +
1693561438.7251432-CDS-P-fluviatile_contig1:2074681..20747671693561438.7251432-CDS-P-fluviatile_contig1:2074681..2074767Porterinema fluviatile SAG_2381CDSP-fluviatile_contig1 2074682..2074767 +
1622815297.860012-CDS-P-fluviatile_contig1:2076149..20762571622815297.860012-CDS-P-fluviatile_contig1:2076149..2076257Porterinema fluviatile SAG_2381CDSP-fluviatile_contig1 2076150..2076257 +
1693561438.7329555-CDS-P-fluviatile_contig1:2076149..20762571693561438.7329555-CDS-P-fluviatile_contig1:2076149..2076257Porterinema fluviatile SAG_2381CDSP-fluviatile_contig1 2076150..2076257 +
1622815297.8718622-CDS-P-fluviatile_contig1:2076793..20769331622815297.8718622-CDS-P-fluviatile_contig1:2076793..2076933Porterinema fluviatile SAG_2381CDSP-fluviatile_contig1 2076794..2076933 +
1693561438.741126-CDS-P-fluviatile_contig1:2076793..20769331693561438.741126-CDS-P-fluviatile_contig1:2076793..2076933Porterinema fluviatile SAG_2381CDSP-fluviatile_contig1 2076794..2076933 +
1622815297.8809316-CDS-P-fluviatile_contig1:2078183..20782721622815297.8809316-CDS-P-fluviatile_contig1:2078183..2078272Porterinema fluviatile SAG_2381CDSP-fluviatile_contig1 2078184..2078272 +
1693561438.7507594-CDS-P-fluviatile_contig1:2078183..20782721693561438.7507594-CDS-P-fluviatile_contig1:2078183..2078272Porterinema fluviatile SAG_2381CDSP-fluviatile_contig1 2078184..2078272 +
1622815297.892646-CDS-P-fluviatile_contig1:2078886..20790211622815297.892646-CDS-P-fluviatile_contig1:2078886..2079021Porterinema fluviatile SAG_2381CDSP-fluviatile_contig1 2078887..2079021 +
1693561438.7589166-CDS-P-fluviatile_contig1:2078886..20790211693561438.7589166-CDS-P-fluviatile_contig1:2078886..2079021Porterinema fluviatile SAG_2381CDSP-fluviatile_contig1 2078887..2079021 +
1622815297.906962-CDS-P-fluviatile_contig1:2079044..20791171622815297.906962-CDS-P-fluviatile_contig1:2079044..2079117Porterinema fluviatile SAG_2381CDSP-fluviatile_contig1 2079045..2079117 +
1693561438.7669506-CDS-P-fluviatile_contig1:2079044..20791171693561438.7669506-CDS-P-fluviatile_contig1:2079044..2079117Porterinema fluviatile SAG_2381CDSP-fluviatile_contig1 2079045..2079117 +
1622815297.9239655-CDS-P-fluviatile_contig1:2081934..20819601622815297.9239655-CDS-P-fluviatile_contig1:2081934..2081960Porterinema fluviatile SAG_2381CDSP-fluviatile_contig1 2081935..2081960 +
1693561438.7752533-CDS-P-fluviatile_contig1:2081934..20819601693561438.7752533-CDS-P-fluviatile_contig1:2081934..2081960Porterinema fluviatile SAG_2381CDSP-fluviatile_contig1 2081935..2081960 +
1622815297.9371207-CDS-P-fluviatile_contig1:2089404..20894911622815297.9371207-CDS-P-fluviatile_contig1:2089404..2089491Porterinema fluviatile SAG_2381CDSP-fluviatile_contig1 2089405..2089491 +
1693561438.7838657-CDS-P-fluviatile_contig1:2089404..20894911693561438.7838657-CDS-P-fluviatile_contig1:2089404..2089491Porterinema fluviatile SAG_2381CDSP-fluviatile_contig1 2089405..2089491 +
1622815297.9468412-CDS-P-fluviatile_contig1:2090447..20905511622815297.9468412-CDS-P-fluviatile_contig1:2090447..2090551Porterinema fluviatile SAG_2381CDSP-fluviatile_contig1 2090448..2090551 +
1693561438.7943766-CDS-P-fluviatile_contig1:2090447..20905511693561438.7943766-CDS-P-fluviatile_contig1:2090447..2090551Porterinema fluviatile SAG_2381CDSP-fluviatile_contig1 2090448..2090551 +
1622815297.9576712-CDS-P-fluviatile_contig1:2090782..20908991622815297.9576712-CDS-P-fluviatile_contig1:2090782..2090899Porterinema fluviatile SAG_2381CDSP-fluviatile_contig1 2090783..2090899 +
1693561438.8056555-CDS-P-fluviatile_contig1:2090782..20908991693561438.8056555-CDS-P-fluviatile_contig1:2090782..2090899Porterinema fluviatile SAG_2381CDSP-fluviatile_contig1 2090783..2090899 +
1622815297.9675546-CDS-P-fluviatile_contig1:2091943..20920731622815297.9675546-CDS-P-fluviatile_contig1:2091943..2092073Porterinema fluviatile SAG_2381CDSP-fluviatile_contig1 2091944..2092073 +
1693561438.8145804-CDS-P-fluviatile_contig1:2091943..20920731693561438.8145804-CDS-P-fluviatile_contig1:2091943..2092073Porterinema fluviatile SAG_2381CDSP-fluviatile_contig1 2091944..2092073 +


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

Feature NameUnique NameSpeciesTypePosition
mRNA_P-fluviatile_contig1.158.1prot_P-fluviatile_contig1.158.1Porterinema fluviatile SAG_2381polypeptideP-fluviatile_contig1 2067090..2092073 +


Sequences
The following sequences are available for this feature:

protein sequence of mRNA_P-fluviatile_contig1.158.1

>prot_P-fluviatile_contig1.158.1 ID=prot_P-fluviatile_contig1.158.1|Name=mRNA_P-fluviatile_contig1.158.1|organism=Porterinema fluviatile SAG_2381|type=polypeptide|length=522bp
MTSNMISGGYKHGLRNIIIGDLKRGGERHLGSPNDEPLVCEHGGCTGKPC
FGWEADHRVRFCAEHKVDGMVDVKRDWDAAMALQNAWRKRRAYIFVKDLK
QEKLCREQREEMRAGLHVGCEACASAGKKSADIKSRNRKKAWKDADELLF
NGMARIQMSDRGDNWNERWQLALSLAAKTHMEKTYRKSLLDAVYSDFVHT
AVTYGRTIISEYFLHEYMKSVRPKSLGGVAGGKKYLWRGIMFKLADGSQG
PYGGSDEAAAKAAGHELRGASEYLKTGVGLCVPPMCLLDYKGFRMLAQAH
LSLGPASLKMGTSDGGLTVLNDSPELNRRTAAAARSLKLRAHIGRGDGAE
VQEEAIRRGAHASRGGRRGEVRHRVRVEVVVRTLKLVLRGFQRSWMKSEQ
SSSEQGMHLLVTQFLNLVTGHHVRSHLFWAENVTIGVCQRFGTVALTESE
RAGLWGACSSRPDLLLTMVKELVKVTGVRFKESVNQKLRSKNAKIVGYKF
NLGDIRDIEAVVTPMAITTET*
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mRNA from alignment at P-fluviatile_contig1:2066826..2092708+

Legend: UTRpolypeptideCDS
Hold the cursor over a type above to highlight its positions in the sequence below.
>mRNA_P-fluviatile_contig1.158.1 ID=mRNA_P-fluviatile_contig1.158.1|Name=mRNA_P-fluviatile_contig1.158.1|organism=Porterinema fluviatile SAG_2381|type=mRNA|length=25883bp|location=Sequence derived from alignment at P-fluviatile_contig1:2066826..2092708+ (Porterinema fluviatile SAG_2381)
CTCGGCGGTAGAGCCGAAGATTCGCAGGGAAACAGAGGAGAGAGGTTGCT TCAATGATTTCATAGTCATATCCAGGTTTCGGGTCTGCTGTCCGGTTTGC CGGGGCTCAGAGATTGCATGCGTCACAAGTGGGAGAGCTGTGTCGCAATT TTTTCTTCGGTGACCCTTTGTCGGGATTTGGGATTTTGCCGCCGTAGCAG TAGAGCCTAGCCAGAGAGGAGGGAGAAAACAGGGCTTGGCCCTAAGAGGG CTGGATAGGGCACGATGACGAGCAATATGATCAGCGGCGGCTACAAGCAT GGGCTTCGGAATATCATCATCGGCGATGTAAGCCTTCGTCACGTGCCTTC GGGGCGACTCTCGCTCGCGTTCTTCAAACAGCAGACGGACACGGAACGTT ATGCATGCATTTCCATGACAGCGCTTTCACAACGCTCCTCCTGTCCATAC CACAGCGGTCGAGGAAATTACTCACTGGCTCATGATCTGAGGGTACATGC TCAATTCGATGTTTTGCAACAAGGGCGGGTGAACGAATGCGCCTCCGGTT TTTTTGTGTCTTGGTGTAAACGCGACGCACCTAAACACCCCAGAGCACGC AGCGGAGACACCCCGAACCGCACCGTTATATGTTGCCTACCGTATTGGTA TAAATGCAGGCGGCGGCATTGGGAGTCACAGTATCCTTTGCGCCGTTTCC GAAGAAAAGCGTGTGATCTGCGCCGGTTTGCTTGATTTTCAAAGCTAGGT ATGTGTGTACTCGGGGAGTATTTTTCCATGTCTGTGCCGTTGAAAAGAAC CTCCGCCAGTGGTGTGGCATCGTTCGGTGGAGACGGGGGCTTTTTTCAGC CGCCTCACACGTTCCATTTGCCTTCTGCTCTGCATGTACTCCACCGAGGC AACTGTAGCAGCACGCATACTAAGCACAATGAACAGTTCGGTAAACTTTG ACCGAAGCATCATGCGTGAGGGTTCCCCCCCTCAGAATACCGAATGTGGG TAACAGGCGAGAAAGAAAGGAACATTCTTTTAAGACGTGGTGGTCCAACC AAGCAAATCAGTGCATGAACGTGAACGAGGGGCAGGAGGTGCGATCATTG ACAACGCTTTTGGCGTCCCTGCACTGAAGTCCGCGTTCGCTCTCACACCA GGGTCCCTCTCAAGGCAGCAATACAAGCGGCCTGAAGAGCTCTCTCGCGT AATTTATTCACAGCCCGTACCCTGTCAACATGACGGGACAATCCCATGCT GTACAATGGCCCGAAGTTGGGAAACACAGGAGCCACCAGCGAGACCGAGG TCAGCGAGACCGAGGTTTCGAGTCGCGAGAGAATCTTCCCCCTACCCCCT TACCCGTTTCTGCAGTTTTTGAGACACGGGCTTCTCGTTTCTGGGGGGCT GCGCACTGTTTTTGTAGCTCATGTTTGAGGACGCTCATGGTCTCCTCCGT ACGCCCTGTCGGGACTGGGGGTGCCGGTTTGAGATAGTGAAATTGCCGTG TCTGCGGCGTGTTTTTGCGCCACAGCCAGCTCAAGATAGTGAAATTCATG GAGGTGAGGAATGTGGCCCCGCATTGACTCGGGGAAGGTAGACCCTTTCC ACGCAGGACGACTTTTTTTGTCGCTTTCAGTGTGATCACTGGACTAGACT ATACTGCAGAGGGGTCGAACTTCGAGGATCGCGTTGTTCGTGTCTCCTTT GTTACCCCACTACTCGATCCTGGAAGACACATCCATGGTATCCACGCGCG TGACGTCTTTTCGAGACGTTGTCGCACACCATGTATGCCCAGGAAACTGT ATCAAGTTCCCCCCAAAGGCGTGTTCTCGGAGGGCGTACACTCGCAGCGC TCCCAAAAGCACGTCTCAACCCCCTTGGTTTGACCTAACTTTTGTCCCTG CTTCGGTTCCCAGTGTTTTGTTCGGTTTCATGCCCCGTTTACGGCTGAAA AAAGAACACCCGTTGAAGCGCACCAACTGTCCCCCAAACTAACCCGAACA ACTAGGCACATTTGATGCGTTTGTGAGGGTACAATTTGGTCGGGATTGTG ACAAGCAGAAGCCAATCTCAGACGAAACTTAATTTTTTGGGGGACGTCAC GATGGTGATCATTGAGACGGCCCAACTCAGCCCGGCGACGTACAGAAATT TCCAGTGGGTGGTTTGCGCCACAGTTTGTCAAGGCACTGTCTTGTTGCGT ACGTGGTTTCTCCGGAAACAGAGCACGCTTGCACGCGGTTTAGGATGATC TACCGCCCTCTGCCGCGACATTTGCCAGACGCACGCACGTATTTTATGCG TGATTACGTTGCGTACCCCCCCCTTCCACACAGGGTGAAAAAAAGCAAAT TAACGAGTGAGCCAATACAATGCTCGTCGTCATGTGACGCCAATCATCGT TGGGCGGCGCGGTAAGGCATCATTGCAAGGGTGTCGGGCGGTCTTGAGGG AGGAAGGGATTCCGTACAGAGATGATACAGAGTCACCGAGCTTAAGGGAC ATTTTTCGTAGAGAGTTCACCACGTCCAGGTATTTTGTATGAGTGTCGGT GTCCTCAGGGGGACTGAATATTGACTCCATTCCGCCATTTACCGATGACC AATGTTAGCCCTGGCTGGTGGCCGACCGGAGCATCGCCGGTCTCTTGGCC TCCCTCTCTCATCTCCCCTTCCTTCTCTCCCCCCCCCCCTCTTTCTCTCC CTTCGTATCGCCCGCCCTCCCTCCGACCCTCCCTCCCTGATCCCCGCCCC CCCCCGCCCCCCCCCTCCCTCCTTCCCCCCCTCCTTCCTCCCTCCTTCCC TCCTCCCCATGATTTCGGCATTTTACATGTGATGTGGCATCTCTTGGTCA ATGGAACCGCACGGCATGGCACTATACGATACGACATCGATGTACCTTGG GCATCGATCTACGAAATTGTTTCGATCCACCCGAAAACTCCGGAACTCAG CTGAAACGGGGAGGCGAGAGGCACCTCGGAAGCCCGAACGATGAGGTAAG CACCGCCGCCCCAGCATGCAGCAGCGGTTGCCGCGTGAGATAATCGAAGT TTGGGCAAAGTTACGGCGAAAAGTGAGCTGGGTCGCTTGCCGCGGACCCT AAGAGTGAATGCGTTATCGTAGTTCAAAACAGGAAACCCCCGGATGAAAG GGAACGCCTCGAGCTCGTCGGACCCTTATATCATTGCTTCCTTCCAATTT GTGAAGCAGCACGCCGTGGCAATCAGCAGGCGCACGCTTATTCTGCTGAA ATGTACTTCGTACTTTAACTGCTGCCGTTTCTCGTTCACGCTGTTGTGTG GAAGACCCGCCCCCTCGCCCGCCCTCCCCTTCCCCTCCGCCTCTCGGCCT TTGGAGAGTCGCCTGTCTCGCACTCTCTTTTTTATCTGTTCTGCTTTCGT GCTGAATCGCATTACATGTCCCTTTTTTGCTCCGCATCCCCTCCCCCCCT CACTTTCTCTCTCTCTCTCTCTCTCTCTCTCTCTCTCTCTCTCTCTCTCT CTCTCTCTCTCTCTGTCTTGTTTTCCCTCACGTACACAGTCTCTGCGCTC TCTCTCGCTTCTGTCTTCGCTGATTTCCACTTCATCTGTCCAGTCTCCCC CTTCCTGTGATTGCTGTCTTTCGTAAACACCCAGCCCCTTGTCTGCGAGC ACGGTGGCTGTACCGGCAAGCCGTGCTTCGGATGGGAGGCTGACCACAGG GTCAGGTTTTGTGCTGAGCACAAGGTCGACGGAATGGTCGACGTGAAGGT ATGCATCTGTGTTTTAGTTCGAAGTACGCGTCAAGGATGGTGCCGTGTCT CGAAAGGATTGTCGAACTGAGGCAGCGATTCAAAGTATGTATCAGAGATG GTGCTGTATCTTGACGGAGTGGCCGAAGGGAGGGTGAAACGGTGTTCGTC TTGAAGGCGTGTGAGTAGCTGGGGTTGTGTGCTGAAGGTGTAGTCGACGT GAAGTTAGGGTAAGGTTATCTTTGTTTCTGAGCCAAGGTCGACGTCCGGG TGAGCTGGCGTGCCAGTCGCGTATAACGATGAGATTGATAAGTGTTAGTG TCCTAGGATAGACGCGTTTGGCGGACACGCGATCAAGCGTCTACTTTCAC CTACGTGTCGACATGCGATTTGCGTTTGTGGGGGCACAAGAACTAGAAAA ATCTGTCATTGCCCTTGTCTCTCTTTGTCTCTCTATCACTAAGTCTCTCC ATTTCGCCGTCTCGCTCTCTCTCCCTTTCTCGCTCTATCGCCGCCAATCA CACAAAATTAATTATACGCTTTCGTCGATACCTCACTATTTTACATCATC CACATAGTCATTTGCCCCGCCGCTTCCCCACTCAGTTGAACCTGCTGAAA ATCACGCTCATAGCATCGCCACGACTGGCCCAGTCGAAGGTTTAGACACA AATGCGTTCCTGTCGAGGACCAATCGCGATCCATGAACCAACGCGTGTTC CTTGCAGAAGACACGGAAAGAATGAAAGAATGTGGTGCATCAACTCCTTC ATGGTCCGGTCGACGTTCCCATTACCGTTTCCGCGTTTGAAATGTTGTGG TGCATCAACTTCATGGTCCGATCGACCTTCCCATTACCGTTTTCCCCGTT TGAAATGTTGTGGTGCATCAACTTCTTCATGGTCCGATCGACCTTTCCGT TATATTCCGTGATGTGGCGCATCAACTTTACGGTGCGATCGACCTTCGCA ATATTTACCCTTTCCCGTCGCCGTCGACAGCGCGACTGGGACGCAGCAAT GGCTCTCCAGAACGCGTGGAGGAAAAGGAGGGCCTACATATTCGTCAAGG ATCTCAAGCAGGTTGGTCCATCGGTCTCTCGTTGTTTCTCTTCGTCCTCT TCTCTTCTTGTTCGAGATGTGAAGTACGAAGTATATTTTCCCGTCATTCC GGTTTTTTGCTGTGGAAACGGAGGACCCCCGTATTCGTCAAGTATCTCAA GCATGTAGGTTAGTCCATCGCTATCTCTCTTGCTTTCTCTCCTGCTCCTA CACGTTTCGCCATCCCAAGCAGATTCGTCGGTGGGCGTCCATCGGTCTCT CGCCTTTGTTCCTTCCGTTTTGCTTCGCTCCGATGCCCTCGCGCTCTGTC CCGGTTATTTCCCGTGTTGCCTTCGGTCGGACTTCGGGGTTACATTAAGT TCGCTAGTGATTCGTGTTCTAACTTTGGTCGGCATCGATTAGATGGGTTA GGGGTCGGGCATTGTAAGGTACTTGAGGGGGGTCGGGGAGGGTTGAGTGT AGAGACAACAGCATCAACAAGTCGAGCGCTAAGCGGCTGTCCGATGAACA ACGCCCCAGCGAGTCTCAGCGGATGAAAAACGCAAACGTTGCCGAATTTA TTTAGCACCAGCGGCTCTCAACCCGCAGCCGATGTGTTTCTGTGTGTGCT CCTTGGTCCCAGCGGTGATCGGAGCAATGAGGGTGATTGTGTTCACTTGG TCACCATGCTAATTGCAAGAAAATCACGGTCGTTGCGAGGAGAAGTCCGA CCGGGGAATTGCGAAACTCCACTGAAATTTCGCAAGCGATCTCCCTTCGT TTCCCAACATGTTTTTCTCCCCTTCTCGAAGTCTATCGGGCTTGACCGCG ACAAAAACTCCTTCCCAGAATGAGCAGAAACTGAGTACCTACTAAAATGA TGGGGTTCGTAACGCTGGCCTACAGACATGACGACTGTTAGGTGAAAGCG CTCTGGTTGTAATTCAAGTCCCTCCCCTGCCCCCCTGGCGATGTGCGGAC CATGGAGGATGTTCAATCAATCATCACCGCCGTTGCTTTTTTCAGTTGTC GTGTTTTTCCAGGAAGTGTCAATCTACATGAAAGCCCGTGTCGCGAGCAC GGAGAACTATTAGACACACCGGCAACCCAGGGCATACAACACATCCATCT GGATGTTTGTTACTTTCCAAAGGCTAACAACACATCCATCTGCATGTTTG TTACTTTCCAAAGGCTAACAACACATCCATCTGCATGTTTGTTACTTTCC AAAGGCTGACAACAGAACAGAAAAACGCATGCACCATACGCACGCACGCA CACGCAGACCCTCTCCACAAAATCGTCGACAATTATTTGTTTTCTCTGTT TTGTTCCCGTTCCATGATCACATTATCCCGTGAACCCATCCGCAGGAGAA GCTATGTCGCGAGCAGCGGGAGGAAATGCGCGCTGGGCTGCACGTGGGCT GCGAGGCGTGCGCGTCGGCCGGGAAGAAGTCTGCGGATATCAAGTCGCGG AACCGAAAGAAGGTACTTCGCCGGGAAGGAGTCTGCGGATATAAATTCGC GGGACCGAACGAAGTTACTTTTTCTCCCCTCTTCATCACCCAAGAACACC GCAATATTTACTCGAAATTTATCAACAAGGCGTGCGCGTCGGCCGAGTAA AAGCGTGCGGGCATCAAGTCGCGGGACCGAAAGAATGCACGTCTTACGTC CTCCTCATGATGTGGAAGCCATCCTTGCAACGATCAGTTTCCTGAATACA GTTCGGGACGTCGTCTAGACTATTTCTATTGCCTATTGCCGGGGTGTTCC CACTGAGGTTTGCAAGTGACTGAGTAAAACAGGAAAAGGAGAAGTGAATG TGCTCGGCGAGGATTGCCGGCAGAGTCGAGCGACCGGCACTATTGCGAGC TGTGCCAAGCTGGCACTCATTCGAGAATTATGGCTATTCCCAAGCGGTTA GACCGGCAATGCGCAGAGCAGCCTGCACACTTCGATACCCCTCCTGCAGA GCCCCGCCCTGCCGTGGTTGTTTCCAGACTCCGCCGTACGTATGACGTCC CCGTCGTTGTTTTCGCGTCGCCTCCTCGGTCGTGCTCCTGCTTGCGCAGG CCTGGAAGGACGCGGACGAACTGTTGTTCAACGGCATGGCGAGAATACAG GTGAGCCGCTTCTTCTTTTTTTTCACGCACACACGAGCCCGTGAAGGCGC GAGGTGGAGGCGGATTGATTGAAAGAAGGCTTCCCGTTGCGTGAGGTTCT TGCTTGCCTTTTTAAGTCCCACGGCTTGTGTTCCGACGCGATCTCTCGGA GACGTGAAAGTGGCGCGTCGCCAATCCTTTGAACAGATTTGAGTTTGAAA CAACAAGCTTGCAGACCTTCACACACATGATATGAATTAGTATTTCACCT GTCAGTGTCCACATTGGCAGCGACTTATTGAGTTTCCGAGCGCCAAACAA CAGAAAAGTTTGACCATCGAGTCGGCTTCCTGACCAAGCGGTGTGCCTGT GACCTGTGAGACATCAACAGGAAGAAGAGGAGAGGAGAAAACCATGCACA TTCATGTGTGTGCAGTTTCGGAGCCGTTAAGCAGAGTAGATCGAAGCCCT CATTTTTGCCAAGCAACAGATGGCAGTTATTTCGCGTAAAGGTGGTTTGT TTCAGGAGACGATGAAAACCGCTGTGGGCTCGACTATCATCAGCTAAATA CGCCTTTCGCATCTACAGCAGCGTCAGCGTGAAGGCTGTGGGGATCCAGC AGGGGGGCGGGCATCCTTTGAACAAGGACAGCAGCAGCAGCAACAGCAAA GAACAACCGATCTGTGTATGCCAACAACAAGGACAATAGCAGCAGCAGCA GCAGCAGCAGCAGCAGCAGCAACAGCAGCAATTCTGGATCAGCGAAGAAC AACAACTCTGGGTGTACTCCCGGACCTATGCTCCCCAATCGATACTGCTG CTATACGGACAGGGAAAAACAAAACGAGTAAAGCGAAAATTTGCTTTCGA CTTTGTTTCTCCGAATGTACGGTATGATTCGTTTCTTTTCCCATCATGTT CCTTTTCCGTCTAACGTGAACTTCTTTATGTATTCCGCGTCTGCTTCTCG GGTCAGATGAGCGACCGGGGAGACAACTGGAACGAGCGGTGGCAGTTGGC GCTGAGCCTTGCCGCAAAGACCCACATGGAGAAGACGTACAGGTAAAGGC AACCGGGCGTCGTCTACAGCGGCTAGGTAATGAGAGCACCTGCTCTCCGG TTGTTGTCCTAGGCTTATGGGGGTGGAGGGTAGAAGTTTGGTCTAAAGCC CCTTGTGCCCCCCCCCCCACCCCGCGCCCCTGAATCTGGTTGCTGCAGGT GTTCATTTTTGTTTTATTTTATTGGTCACTTATGCTTGGCTCATAGTCCT GGTGGGTGGTCTACCTCCTACAATAGCAAGCGTCTCCTGTAGATTGTAGG AAGTTGAGTGTATTTGTTCAGAGAGGACCGGGCTGACTGCGCAGAGATGT GAAAAACGGCGATTTGGTTTGAGCAAACCCACCACTTGACAGTTGACACC AAAGCGGTAGAAGCAGTAGGAACAACACGCAGCGCACGGTCCGCCACAAT GTTCATTTTCACTCTTTTGCTTAGCACAGAAATCGCCAACCGCGCCGGCC ATAGAGCGCATTTACTCCGTCTCGCAGTTTCAGGCCAATTTACCCAGTAC CCCTGATGCCGGTCCGGGTATCACAGTGTACCATTCATGTATTGCACGTA GAATAGCGTACAGAAGTCCCGGACATGCTCGTATTATTAAATGTCGCTCG CACGGTACCGACGGACGTAGCGGGTCGAGTGTTCAACCACGTTTGCCGAA AAGCCGGATTTGGCGGGTACGGGGGAAGTTCGACCGCGAATGTGTCCGGT ATATAGCTCGATACATGACTGCAGAACTCACCTTCGGACATTTCTCGTGT GATTCTTGCTGGTATGGCGCCCAATCAAAATGACCGAAACTTTTAGTCGT GCGTCGAGAGCAAACGGCGTGCAAACAATGACTTGGTCGGCGACAGCACC AACTGCTGCAGTGTCTTTACTCTGGCCGTATCGTTTCACGGGAGCAGCCT CCGCAAGGGTGGGACAAAGTTAGGCTACAGTCTGAATGAGCGGGGGGCGT TGGGCTGGGATTTGGACTAGCTTTAGGAGTAGCGCAACCCTCCGCTGCTG TCTGCTTCCGACTTGATCTTAATTCTTCTGCGTCGGCGGTCCTTTCACGG CAGTGCCGCTGGTCCTCGGCATGTTATTTTACAGACACCACTTGCGACTG CCCGTCGCAAGCGTCTCCTTTTTTTTGTTGTTGTATGTTCTGCCTGCTAA CTGTACCGGCTCCTCGCCCTCGCCTAATGCCCCACGGCCTCTCTGCTGGA ACCTCTCCTGCTCTCTGTTGATGCCCAACCCTCGCTTCTGCGGTTGCCCG CCGCTGCCGATTGACAATCACTACCCCTCCGCAAATGCCCTAACCTCCCT GCCCAACAGCCACCGATGCCTGCCCTCCCTCGCTTCCTTCGTCTGTGGCG ACCGATGCTGGTGTGCAATCACAGGAAGTCGCTCCTCGACGCGGTGTACT CAGACTTTGTGCACACCGCCGTGACATACGGGCGGACCATCATCTCGGAG TACTTCTTGCACGAGTACATGAAGAGCGTCAGGTGAGCACAGTTGTCTGC GGACAAATTTTGCTGCGTTGTACTTCGAAGTACAAGTTTTCGCTTCGAAA ATCGAAGGCACGAACAGCAGGAGGTTGGGTGGGCGGCTCAGGGAGAGGGG CCTTTCTGTATTGCCACAGATCGGAACTCTGTTGATCGCGAAAACGTCGG CTTGTGCTTGTGACGAAGCAGCGTCTATGCCAAAGCCTCAACCCGCTCGC GGTCGATACCTCTCGACGCACACTCTTTTTACCTTTTGCAAGATTGCCTG AGGAGCGTAAGGTAGGAACATTGTAACAAGTAGGTCAGAGGTAACACTCA CCGTAATTTTCATCGGCTTGTGGTCCGATCTCGCTCCCTTCGCCTCTCCC TTGAGAGCTTGTCTTCATCGAAATTTGGTTTTTATTTTTTTGTTTCGATT TTCTTTGCAAGCGGCTGGATAAGCTGTTGCCCCTCTGCCCCCCTCCCTGC CCCTCGCTCCCTCCCTGCCTCCGTCCCCCTCCCCTACCTCTCCCCGTCCG TTGCCCATGTCCCCCCAGGCCGAAGTCACTGGGGGGCGTTGCGGGGGGCA AGAAGTACCTCTGGCGGGGCATCATGTTCAAGCTGGCGGACGGCAGCCAG GGTCCCTACGGCGGTAGCGACGAGGCGGCCGCGAAGGCGGCGGGACACGA GCTCCGAGGTGCGGTTCGGTGCAGCGGACGGCCGCCGGCCCGGTTTTTGT CCTACAGTTGTAGGCGGCTGCGGCATTGAGGAGCCGGAACAACTCCTCTC CTGAAATTCCGCGTTTTCTCTTGTATGGAACTGATGGGATGTGTTGACTT GACTTAACACATTTTGAGGAGAGCGAGTTATTCTCGATTTTATGTATACC GGTGCTTTTCTCTTGTATCGAGGTAGTAGGATATGTCGGCTGTACGCCTT CTTGAGGAGAGCGGATTTGACTCTCGTTTATGTGTACACGTGGTCTCGTG TTTTTTTGATTCCCTTACATGGTATTGGCCGCTATCAGGGATTTTAATTT CCCGAGCTTGTCGCGGAAGCAGTCGAAGCGAGTGCTACGTCACGCTCTTC ACCTGCTGGCTCGGGCGCAGTATTAGAGTGGAGGGCGCTTTTCTGTGCGT CGGTGGGCCGGGAATATTCACCCGCAATACAGCGGGCACCCATGGTGTTC AGGAGTGGGTAATAATTGATTATAGTATGTGAGCGAGCTTTCATGCCAAC TGATGTTACCCGCACTTTACCGGGGACCCGCACCTCAACCCGCATTAGAT GGGAGCCCCACTGTAGTACGACGACGGTCAAAGCGAGGATTCGTTGGATT GTTTCGCTTCGCCTGCTGTCTCGGACACGCGGGATCAACGTTTGTCCCTC GAAATCACTTCCTCTGCTTCCCCCTTCTCTCTGCCTCCCAAGGTCCCATC TAATAGATTCGTACTTTTCGCCGCGCGTCGCAGGAAGTTGGCTGTCCTCC CTATGTTCTCTCCTAGGCCACGGTGCTCTTGCGTCTTCTTCCTGCCTGTC TCCCTGCATGCTTGCCCCCCTCTCACCGTGCGCGTCCGAATGCCTCGGTT TCATGCCCCAAAAATACAATTGCGCTTTGCTTCAAAATGCCGCAACGCCG CCACAAGAGGAGCCGCAAGACTGTGAATGCTGCAAATGTCATCATCGTGA TGACGCGCGAATTGCCGCAAATAGACCAGTGCAAAGGAACAAAACGAGAA ATCTCTCAAGTCTCAAAATCGTGCCCTGGTTTGGCGATGTTGTCGCTATG TTACCCTGCCCTCGAGCTCGCGGCTTTCACTCTCTCCCTCCCCCCCCCCC CCCTCTCTCTTTCGCTCTCTCTCTGTCTCTCTCGCTCTCTCTCTCTCTAC TCTTGCTGCAGCTTGTCTGAACAACTCCTGCCTTACCCCTCGCGCGCGCT ACGTTCAGGCGCGTCCGAGTACCTCAAGACTGGGGTCGGCCTCTGCGTCC CCCCCATGTGCCTCCTGGACTACAAGGGGTTCAGGATGCTCGCACAGGTG CCCGCGGCGCGATCCATTTTTGATTGATTGGTCGGTGAAACGGCCGGGGT TGCTGTCGCGGGCTTCGAGAGGGGAGAAGTGGCGTTTGTCGTCCTCCCCA GGATTCGAGTCCTCTGTCGCGAGATGGCTCGTGCTGTCGCGGGGACAGGT TTGACGAAGCATATTTTTCCCCGCGAATCACTTTTGCTAATTTGAAGTTT ATGCGTAGCCTGAGACCACGGAATCGATCAGGTGGGACAGGGTGCGGACA TTTGACGGTCTGCTGGGGATGATCGGAAAGGTTGTAATGTGAAATAACAA CAACAACAACAACAACACCAACAACAAGTGCTTCCACCCGCGGCGCGATT TGAACCTGGTCGTCAGTGAAGAATGCGTACGCTCGCTGTTGTTGATCCGC CCCTTGCCACCCAAGGACAGCCTCATGTCGTTCTCCCTGACCTCCCCATG CTCATCTTCCAATCCACGACGCTCCCTTGGCACCTCCACTTCTCCCCCCT CTACTGACCCTTCCCCTTTTCCTCCTTCTTCCCCTCGGTCCCTGCCCCCT GACCCCTCGAACCCCCCCCTCTCCCAATCCGCGTCGCCTCCTCCTCCTTT CTCCTCAAAAGGCACACCTCTCTTTGGGTCCGGCGAGCCTCAAGATGGGG ACCAGCGACGGCGGCCTCACCGTCCTGAACGATAGCCCCGAACTCAATCG GCGCACGGCGGCGGCGGCAAGGTCACTTAAGCTCCGCGCCCATATCGTGG GGCGCAAGGAGATATACAGGGACGAGGCGACGGGGCGGAAGTTCAAGAGG AAGCAATTCGTCGGGGGGCACATGCTTCACGCGGCGGCCGACGTTGAGGG TCACGAGGGCGCCGACTCGAGGTGAAACGGGAGACGGCGGCGGTGATCGT GGTGATGGAAGAGATTGCCATCGAAGTTGTTGTTGTTGTTGTTGTTGTTG TTGTTGTTGTTGTTGTTCTAATCCTTCTAATCATTCTTGTTGTGCTTATT GCGCTTAATGATGTTGTTGTTGTTGGTGGTATTTTTTTCTTCCGCTGTTC TCGGTGTTGTTTGATGCGATGTGAAATGCTTTTTTTTTTAATCAAATGTT CTCAAATGCATATCATGAAGTGACATTTTTCCATTCGACAACAATTGTGG CAGGCTGTACTTGCTTGACCTGGCCCGAGCCTTTCCGCCGGAGGACCCCG ACGCTACGCCTCACCTCAGCGGCATGCTCAGGTGAATGTCAGATTGGGTT AGATTCGACTGAGCGAAGTCGGCACGCTTCACCTCAGCGGCATGCTGAGG TTTACACGACCGGTGAGGTAGGATCTGAGTTACGAAGTTGGCGCGCCTCA CCTTAGGGGCTTGCTCAGGTGCATATTCTATGAGGTATGGTTAGATTGCA TAAAATCAGCACGCGTCACCTCAGCGGCATGCTCAGGTGACTGAACGATC GGATCAGCTGAGTTGGAACGAAGTTGGCGCAACAGCATGCTCAAGTGATT GACTCCTTGAGTCCGATGTATGTCTGTTTGCCTTCCTGATGTTTGTTGCC TGTTGTTCGTTTGTCTGCATGCTATTCCCAATGCCCGTCTGTCTGTCTGT CTGTCTGTCTGTCTCTCTCCCTCCCCCTCCCTCCCTCCCCCCCCCCCCCT CTCTCTCCCTCCCTCCCTCTCTCTCTCGATGATGCGCCGACCAGTGTGAG CGCCGAGGTGTGGGTCCAGAAGGAGGGGAAGAAGGCCAAATCCGCCACGG TGACAAAGGCCCACGTGACCCTCGTGGACTACGACATCCTGTACCCGGAC GGAACGGTGGAAAAGGGCGTACCGGCGCACCTTCTAAGGGACAAAAGGGT ACGACTAGACGGTTGTCAGGGGCCCTCAGTAGATGTGACGGCTGAATAGC AGAATAGTGCCCATGTCCAGTGAAGAGCTGGTCAACTCTCGGGGGGCACC TGTAATGGTGAAGCACGCGCGCCCCCCTCGTGCAAGTGGTGGCGGTTGCC AGGTTTGTGCCGGTTTCCTTGCCAGCGGTACATACCGGCAGTTTAGGCTG CAGAACAGCGTTGCAGGTGTTGCACTTTCTCGCGCGTTCAGCAGCTGTTT CATCTTCAATTGTGTACTGCCCCCCCTTCCAGCTCCACCCTTCTTGTCGT CTCGGAAACATGTGAACAACCCTCCGCGCCCCCCTCCCTGAACCCTCCCC CGCCCCCGCCCCCTTCGTCTCAGCAGCTGGTTTACCTTCAGCTGGCCGCT TCGGCACGATTTTGTTCGAGACCACCCTTCCCCCCCTCCCTCCACTTCCC TTGCTGTTTCTTCTCACCCCCCCCCCCCGCCCCGGAGGCCCCTCAATCTC CCTCCGATCCCGATCCCGATCCAGACCCGTCCCCCTCCCGCCGATTGTCT CGACAGCTTCTCATATTTTACCGGCTGGTACCGCCGGAGTTCTTGCGGAA CCCACCCCCTCCCCCAATCCCTTGCTGTCCCTTTTTCTAACACACCTCAC CCGCGCGCCCCCTCTATCCCAACCCCGTCCTCCCCCTCCTTAAATCTCGC CTGCAGCTGTTCATCTTCTACAGGCTGATGCGGCCGGAGTTCGTGCGGGA CCGGGGCCGCACAGTGCTCAGAAAGATTAAGTTCTCGCCGGACCAAAAGT TTCCGACCGTGAAGGTCACCAACCCGATGATGTTCGCCATCAAGCACGCC AGGTCGGCAATGGCTAGGCTGGCGGCGGCGGGGGACGGCGGGGGCGGGGG CGGAGACAAGGAGAAGGCTAAGCCAGACAGGATGGCCGCCAGCAGAAGCA GCAGCAGCAGCAGTAGTAGCAGGAGAAGGTCAGAGTGTGTTCCGCCGCGC GTGTATTTTTGTTTTTGTTTGCGTTGCGCCGTTTGCGCCAATGAAGTGCG CGCATGGGCGCAACATGAAGAAAACTTCGGTCAGTCTCATCGAACGAGCA CACGTTGTAGAGAGAAACGCTGAAAGCAGAGCAGGTCAAGAATGATACGT ACTCCCTGTGCGAGAGCAATGTTGGGTCTTACCGTTGCCCCGACATCCTC CTCCCTCCTCCATCTCCCCGTCGCGCGCGCTTTGCCGGTCCCCCCTTCGT CATCGAACCCAAAAACGTTAAATCTCCTTCCTCTGCGGCGGACTTATTGT GAAACGGAACGGAACTAAAAAATATGAACGGAATGAAACGGCGCGGCATG TCACGGCATTGCACGACACGGGATGGGACGGAACAAATCGTAATGGAACG GACGGAAATGGAACGGCTCGCCATGGCACGGCATGGCACGGAACAAAAAA AAAGAACGGAACGGAACGGAACGGAACGGAACGGCGGCAGCGGATCTGCT TCGGCGGGAAGCATCGAGGCTGTCACCGGCTCGGGCGGCACGCCGCCGCA CTTCAGGCGCTCTAGTGCGTACCACATGATGGACTCGGGCTTGTCTCCGG TCTCGGAATCACCGCACCCCGACCGCAAGGGTAGCGGCATTCCCGGCATC GTCGACCCTGTGGCGGGGGCTTACGAAAGATTCGGCAGCGGCGGCGGCGG TTATACCGGCGACGGCGGAGGCAGGGGGCGGCTTGACGACGGCGGACGCG ACGGGCACGGCGGTGAGGACGGAAGCGGGGCAGGAGACCACGAGGCGTTC AAGCTCGAGGCGGTGAAGTTCGGCATAGAGTTCGTGTCGCGTAGGGGCAA GTACTTAGAGGGCTTCCAGAACGCCGACCTGGAGGAGGATGCAGAGGAGA TATCGCGCCGGGGGGGCATCGGCTACCAGCAGTTCAACGAGGATTCGAAC GTCGTCTTCGACGAGAACGGCGAATGGTACGACGCGGCCGCCGACACGGG CTTCGAGAAGGGCGATGGCGACCCCTTTTCAAGCGGCCGCGGCCGCGGCC GCGGCATGACCGAGGAGAGGCGGGAAATCGAGCGCGGCGGCATGCGCCAA TTCCACCGCACACGGGGCTCGAAAGCCGCGAACGACTCTTTGTCGGGCGA TGCGTCAGCGGCAGCACGGGCACTAATGTCGGGACCGGTACCCTCTGTTG CCCAGAGGTCGGCAGGGGGAGGCGTTGGCCTCTGGCGCGGAATGAAAGAC GACGACGGCGACAGCGACGACAGCGGCGATACCACCGACCTCGGCGGTGG CCGGGGGATGGACAACTACGACCACGGATTCGAGACGGAATCGGACACGA GCTCCATATTTTCCTCCGCGGCGGGTAAGAGAGAGAATGAAGGGGGTAGC ATACTTTTTGCTTTTGCATGCCTTGGTCGTTTCACCGTTGACCACGGATC CCTCCCGAGACGGAGCACCGTTCTTAACCCAAAAAGCGGTACTTCATATG CCTCTAAACGGTTGGGCGCTCTTAGCGTGTTTGCCACATTATCGGGTATG GGGGCTGGGGGAAGGGCGGAAGCATTTCAGAGAAGTCGTAAGTTTGCACT GGGATGCAGAGGCGGACAAACAGGCAGTCGCTGGGGCTGGAAGAGCAGTT GTTGGGTGCGTGTTTTTTTCTTAGCGTGAGACTTCTGTAAGGCTGTGGTT ATCTCGCTGCGAATGATGGGGAATAATTGTGTTAGTCTGTCACGTGTGCT CGTGTGTGGTTTCTCGCTGAAGTAGACTAATTAGCGTGCGTTACCTAAAC AAGAACGTACCCACGGAAAAAGAGCGCGCGAGAGAAGTTGTGTGTGACGG AGGGAGTTATGTTGTTGTTGCGTTGGCATGCGTTGCCCCGAAAGCACCGT GGATGTCGGCCGCTGACGTAGTGCCTCCAGCTTTTCGTTGCAGCTGCCTG ATGACAAGCACGGCGAAGATGGTAGCGGTGATCGGGGATGATCGATCCAT TTCCGCACCAGCACCCGCACCAGCACCTGCACCCGCACCCGCACCAGCAC CAGCACCTGCACCCGCACCCGCACCAGCACCAGCACCAGCGAATACCCCG TGCTCCCAGTCCCCTACGTCGCCCCCTCACGAACACGCGTGAACACTGTA TACGTCTTGTTCTTTTTCCCTTTCTCGCCGCACCCCCCTCTCTTTTTGTC CGCCCCTCCGTCCCCCCTCCTCTCTCTTGCTCACCTCTCTAACACTGTCT CCCTTCTCGTTTTCCTCCTCTCTCGCCCCATTCCCCCTACCCTCACCCTC GCCTGATGGCTCTCATCTCGGTGTTTGCCATCGGGATTGGGTTTTCGTCG CGTGGCAACGACGTTGTAAAACAAGCCAATTCACTTCGTGAACTCGGCAA CCAGGTTACCGTCTTTTTTTTTTTTCCTCTGGTTTTTGGCGGTAACCATA ATGGTGGTCGAGAAGATCATGTTGTGCGGAGTGGAGAACCCTCACTCCGT GCAAgGGGGATGATCGCACCACGTTGTGTTAAAATGGTCAAGCACCCTCG AGGCAGTTACATAGTGCTTACAACTGTCTCTGGAAGTGAAAGCACCAGAA AATAAATTAACCCATACGCAGCTGTCATCCGTGTGCATGGAAGTAAGCAC AAGATGCCGAACACCCTTAGCAGGATGCAGCGCACCCTTCATGCGACTCG CCGAATACCTCACGGCGCTTCGCGCTTGGTGGTGTGAGAGCCTGGTCCGG TGAGAACCCGGCGTGCTCCGTCCCGGCTTTGTAGGGATGCGAGGTCAATG GTCTAACGACTACGGCATGCACGACTATGAGTACACCCCCCCCACCCATC GACCTTTCGCTCTTGTAGGGCCGCCGCTCGGCCGCACCTCCAGCTCCATG TACAGGCTCCTGGATCAGATGAGCCAGGATCCCGGCGGGAAGAGCACAGC CTCGGCGGCTTCTCCGACGGGCCTTTGGCGGCAATCTGAGCAGAAGCGGA TGCTCGGGCCCGGTGGCACCGGAGGGAGGGGATCCTCCTACAGAGCGGGT GGGTTCGGTGGCGGTGGCCACGGCGGCGGCGGCGGCGGCGCGAGCTACGA GCCTTTCAGCGCGACCTCGCTCAACTCCCAGGCGTCCCGAGACACGTTGG GGTCACCCGTAAGCAGCAGCCTCCGCTTCACCAGCAATCTGGGGTCGGCG TCGTCGTCTCCGGGTGAGGCTGGCGGCGGCGGCGATGGCGACGATGGATC GGCCGTCCAGGCCACCGCCCTGGCGGCGACGGAGCCGGAGAACTTTTCGC CGCCGGCGCTGGGGAGGGGCGGCGGCCGTTACGAGAAGTTCAGCACGAAG TCGATGGTCTCCAACGAGTCGTTCAGGTCCGAGTCCACGGTGTCGGTCGC CCCCCTTACGACGAGAGGTGGGGTCGCAAGCGGGGGCGGCAAATACCGCG CCGTCAACTGCGACGGCGGAGATGTCGTGCGCGTCGGGTACAGCGCCTTC AGGTCCGACTCCGAATCCTCGTTCTCCACCGCCGCCCCCATCGGCCGGAG GCAAAGCTTTGCGACGACTACCTCAAGAACTCGCACGGGCACCACCGGGC CGAGTCCGCGTCGTCTTCGACCGAGGGCACTCACGGGGGGGGGGAGGGGT GGGACGGCGAAGGCGGTAGCGTCGCCCCCAGGCACAGCGATAATAACAAC AGGAACAGCCGGCGTGTGTCGGCCGCAGGCGTCTTTGCCAGAGGTGCGGG GGAGTCCACAGTGGTTAGGGTTGCCCCAGCAACGTCGTTCGGTGGTGGCG ACCTTCACCGCCGGGAAGGGGGCCAGGGCGGGGGGCGAATAACCTCCCAC AGCAGCAGGCGCAGCGAGATCTGGCCGCCGGTTGTTGCCCCCCCGGAGGG ACACGAGGCTGGCGGTGAGCGGCACGCTTCGAATGCCGGTAAGATGCATA TGTATCTACACCACGTACTTGAACGAGCGTTCCAATCATTTTTCCTAGTC CAGCAGCAGCGAGCGTTATTTACCGCGTGCCTCGCGCTGAAAATTAGAAA CTGTAACCCTTTGGGGCCGGCGAGGCCGGCGGGGCTCCCTGGCTCTCTCT CCCAATCCGGCGAAAGGGTGCATGCGCGTCGGGGACTGAGATATCTCTTC CGCTGTGTGCTGTGCGCGCGAAATGCGGCAACCGTGGTGTTGGATGGGGG TGTCGTGGCCGCTTCGAGACAGCGCATGCATCATTCAATTGCGGGTCCGC CGAGTGAGACTGCCTCCGTGCGCCTCTATGTGACCCTTTGCGCGCGAGAG CATTTGGAGGGGGCATAAACGCTGAAAACAGGTCGTCATTTTCATCGGAG CAGAAATCAAACTTCCAGACCGGTCAGCGACGACTTGTCTCGTGGTTTGA TTTTTAGCTTGAAGGGATGGGCCGGAGTTTCTTTCCAGACTTTCGCGCTT TCCAAAGTTGGTTTGCAGTTCGCCAGATACCGGAGACTTCGGCAGCCCGT CCCACCCACTCACGCATCCGGGGTCAGTTGTTCTTCATGAAGAGCTTTTG CTTCCGACCGCGGGGGGTGATCTTGAACACAGCGCGTTCTTTAATTTTCG TGCCACATGGTGCCAACACGTCCGTTTGTTACTTGTTTTTTTTCATCCCA CTTTCCTCTTCTTGCCGTCGATGTCATACATGATAATTACTGCCGTGCGT TGTCAACCCAGGCTACGACGGTTACAAGGACCTCTACCCCGATGAAGACT TGCCGCTATCTGGAGGGATCACTGCAGCGGGCGCCTACGACCGATTTCGG CCAGAGGGATCCGAAAGGTATGCTTCACGGAGAGGAAAGGTTGCAACGAT AAAAAGAAAGGGATAGGTACGCTTCACGGAGAGGAGAGGTTGCAACAGTA CAGAGATATAGGAGCTTGAATGAAGATCAGGTGTCGGGGTGTTTGTGCGT TTTTCCTTGTTTTTTAGTTCCGTGCACTGTCTTGGTGTGTTGTTGTGCAC AACCTGCGATTGTGTTTGTTTCGCGTTGGTTTGTCCGCTTCTCCTTTTCT TTGTTTATTGGCCCGACGCCGTGGGGTTGCTTCGGAGGACATGTGTTTGT CCGTCTTTTCCCGTCTTGGTGGATTGACGAGGGCAGCGGTGCCCGTGGCT GGCGGAGCGTCATGTGCGTGCAGCAGCAGCGGCGGCGGCGGCGGCGCCGT GTTGCCTGTTGTCCACGAACCGGTGGACTTTAGTCTCGCAGCCCGCTTCA ACCCGTTCGGTTCTCGTGACAGCCTATTGCGCTTTTTTGCGAAGCATCAG TTCTTCGTCCGTTTCTAGGACGAAACCCCCCAACCGTTATTATTTTTTTT AATTTTCCTGTCCCCCCCCATGAACTTTCCCTCCTCCCTACCTCCCGCCC GCCCCACCCGTGCCCCTCCCTCCTGATTCCGCCTCTGGTCTGGACTCCAC AAAATTAACGGCGGTGGCGGCGACGGCACGGAGCAGATCGATAGCCAGCA GCAGCGGCTTAAGTCGCAACGTCTCCTGGCGGCGGGAGTTCGAAGGACCG CCGCAGACGTTGCCGGTGCCTCCAGTTACTTGTCGCCCGTCGCCAGAGAG CGCTTCCAATGGACTGTCGCCGGCCGGAGCAGCAGGCCGATCATTCACCC ACCAGCCCCGGCAGTCAGGCGCGGCGCTACCACCCGAGGACGGCCTCAGC GGCAACGTTGCTGCCGCGGGTCAGCAGCAGAACGAAAAGGTCATGGTGGC GGCGGCGGCGGCGGCGGCGTCCCCTTCGAGGGGAGACGGTACCGCTTGGC AAGACAAAATGGGTGGCTCCGTGAGCCGGGGCGGCGGCGGGGGCGGCAGT GGCGGTGGCGGTGGCGGTGGCGGTGGTGGTGGTGGTGGTGGTGGCGGTGG TGGCGGTGGTGGTGGAGGCGGTGAAGGCCGCGACGGCAGGAAAGGGGACC CGCCACCCCTGAGCCCCGACGCTCTGACAGCCTTCTCGAACGGAGATCCA GAAGCAAAAGCATGCAACAGGTAGGGCGGAACGGACATCATTGATGTGAG TGTAGGCCACTCCTTCCCGCAGCACCCCCCTTTCCCTCGACTTCCCTTGG ACCGACGGTAGGCGCTGCGGTTGGCCTCGCCTTGTCTTAATTGGGTATCC ACTTTTCAGAGCGTCGTTATGCAAATCGAAATGACCACTGCTGCTGGTGC CTTGTCTGGCCGTGGTCCGCGACCAGCCATTGGCGTGAGTGTGTCACGGT TGGGTATAATCATGGCTTCCTAACACGCGGCTGAAATCAACGCGCTCGCT CGGCTTTGTATCGTTCGATGTTGATGTTGGTGCTGGTGCTGGTGGAATGG ACTGGAACACAACGCAACGGAAACGGAACGGGACGGGACGGGACGGGACG GGACGGGACGGGGCGAAATGAACGAGAGCAGGGATGTCACGGAAGCCACG CAGTTCCTGCTCACGACGCTCGTCCCGGCCACCGCTAAGCTCTTGTGCGA CATGTCGCCGCAAAAGCTCCTAAAGGTAAGCTGGTCGGCTGCAACAGGCT CAAGAACAGGTAGATCAGCAACAGCAGGGCTCGAATTGCAAGCCATTTCG GCGAATATTGACAATAACAGTGGTTCAGCAACATCACGGCGTGAATCGTA GGCCAGCCCGATGGCCATCGACAAGAGCAGGTTCGTCGACAACAGCAGGG CTCGGACTCAAGGCGGGGCAGTTTGATGGCCATCACCGCGGTCCCCCATA CCTTCCGTTCTTTTACGTTGCCTTTTTGGTCGTCGGCATGGCCCCGGTCT GTCCGCGTTTGGCCGTGAGCTCCCCATCATCAAATCATGGCGGGCCGATG GCGATATTTCCCCCCCGTCCACGAAAAGCACTGCAGATGAACTCATCCTG CCTCTTCTGCCATTTTCTCGCCTTGCCTTGCAACCGAGGACTGACGTCGC GTGCTCCTTCTCATCCCCGCGCCACCCCCCGCCCTTCCTACTTTCGCAGC GCGCTCCTTCCATGCGATGCTGCGATTTACCGTTGAATGCATTTTGAAGT ACTCCACGGATTATCAACGGTCGATTGCCGCTACCGCCCACCCATCTCGT ACGTTCATTTCCCTTTTTTCCTACCGTCTTCCCCGTTTCACGACACGTCA ACTTCTTGTTTCCCCCCGCCCGTTGTCATGCGTCTCCTGCTGCCGGCCCG CCTGCCCGCCTGCCTTGCCAATCTTGGGGGGGAACGCAACCCCTTCAGAT CAACCTAGCGGCGGAGCTCCACAAGTGTGGGGTCAACATGCGCCACATCG GGCTCCTTCGCGCCTACGTGACCCCCCCGAGTCGCAGCAGCGGCGTCGTT GCTTCGTCTTCGTATCCTGCTCACTCTACAGCCTCCACCGCGGCCGTCGC TGAGGCCGGGAGGACGAGCGCCAGCCAGTCCTCCAGAGCAATCATGAGGG ATCGTGCTCTGGTGAGATTTTTGCCTTTCTTGTTGCTGCGTGCCAGCGAG TCCTCCGGCACGACCACGAGGGAGCCGTGCTCCCTCCCTCCCCCCCCCCC TCCCTCCCTCCCTCCCTCTCTCTCTCTCTCTCTCTCTCTCTCTCTCTCTC TCTCTCTCTCTCTCTCTCTCTCTCTCTCTCTCTCTCTCTCTCTCTCTCTC TCTCTCTCTCTCGCGTCCTTTGTTCTTTCATCTGCTGCCTTGCTCTTATC CTTCTCTCGCAGAAATATCCCACGTACGACTAAAATCTATCGAGCATCAG GTTAGGCCGCCAAGAATGTGTTGTCGTCGCCGGCCATCGCTCGCAGCTGC ATTTTGCAGAAGAGCTACCGAAGTGCTCCGGTACGAGGTTTATGCCGCGG GCTACGCGCACGCATTTTTTTTTCCGTCTCATTTTTCTCAATCCGAGAGC AGAAAGTTTAAAGCGCCGAGCGCACTTACCCCCGAAAATACCAGGCGCCC CATGCCCTAAGGTATTTTTTTCACAAACAAATGGACGTAATATCTCAACA GTGACGAAGGATGACGATTTTGATGCCACTTTCTCTCTCTCTCACTCGAA AGTGCACGAACATCTTTCTGGAGTTAGCCCCATTCCACGGCCCCCGCTGC TTTGTGCGCCGCCGCAAACGACGACGGCAACAACAACTACAACGCCAACC TCAAGAACAACAAAAACAACATCAACATCAACAACAATAAAAACAACGAC GACAACAACAACAACAACAACAACAACAACAACAACAACAACAACAACAA CAACAACAACAACAACCGTCATCGGCCAGGTGGAGGTGGTGGTGCGGACG CTGAAGCTCGTGCTGCGAGGCTTCCAACGGTCCTGGATGAAGTCGGAGCA GAGCTCCTCTGAACAGGTGAACCAACACGCACATTGGACTCGGAACAACA ACCATCACTGCCCCCATTCCCCCTAACGCAGCCTTTGGCCGAGTATGCTT TGAAGGATGCCGCTCACCCTTCATGCGACTCGTCGAGCGCATCACCTCGC TTCGCGCTTGGCGAATGAAGGGCCTGGGCCCGAAAGAACCCGGGAAATCG CTCCGTCCCGGCTTGGTATGGATGCGAGGGTCATGGCCTAATGGCTACAG CATGCGTGACTTGAGTACATACCCCCCTCCGAACGCTTCTCGCACCCACA TCGACCTTTTCGCTTTCCCGACCCGCCCGACTCGACTCAGAGATTCCGAG GTCGTATGTCGCATGACACGCACACAAGAACGCTGCAGAGAGCAGGAGAT CCGGGGTCGGCAGCGCTGTTTCGTTGCTTACCCGTCGGCAGGAGTGTAGT TTAGCCCGTGCTCATGTTTGCATGATACCTATCCACGATTCCTCACCCCG TTTCTTCTGCATTTGCCAGTGCTTGACGCGATGGTGTCAGGCCAACCACG CTTAAAACCCCCTGTGGATCCATCCTTCTTCTTTTTGAAAGCATCAAATT CGGGCAAGTTTTTCCTAGCTTCAAAGAATGCAAAGCTAGAACAACGGATG CACACGATGTTTTGTGCCGCTTTGTACGCTGTCTTGCTGCGGAGCTTTGT GAGGGGGCTTCGGAGCTTTTGCCACCAACGGCTCGGTGTTTATTTGAGTT GTCCTAGCTAGGTTTACAGGCGGCGGCGGCGACGACGGTTATTACAACAA CAGCAACATCAACAAGTATACCTGATCCAAAACACCTCAAAACATCCCCA AACACCAACAATAGCACCAAAACCAATAACAATCGCAGCCGATCATGATA GCGGCGTCACATTTATTCCTTAATCCTCCGCAACAAATTGATTGTCGCCC GGCATGATTACGCCATGCCCAGGGGATGCATCTCTTGGTGACGCAGTTCC TGAACCTTGTTACGGGCCATCACGTCCGCTCTCACCTTTTTTGGGCGGAG AACGTCACAATCGGCGTTTGTCAAAGGTGAGGGTGGAGGGTTATCGATGA ACGGAGGGAGCGATGGATGCACTGTCGGAGCAGCGGGCGGCGGGAAGGGG CAGAGACGGCAGCTTTATGTCCGTGCACCGATTTCTGCCTGCCGACGACA AAGCCTGAAACGTCTTAGACGTACGAGAGAAGCACAGACCACCCCAACAA CAGCACGCCCAAGTTTTCTTTGGCTTTCCTAAAGAGCGCGTTTTGATCTT GTTCCAGGTTCGGGACCGTGGCCCTCACCGAGTCGGAACGCGCGGGGCTG TGGGGGGCATGCTCGAGCCGCCCGGACCTTCTGCTCACCATGGTCAAGGA GCTCGTCAAGGTCACAGGGGTCAGGTGAGGCGACGGCCGCCTTCCTGGAT TGAAGGATAACTTCTTTGGTTGTTGTCGTTGTTGTTGTCGTTGTGCTTGT TCTTGTCCTTCCTCTTGTCCTTGTTCGTGTTCTTCCTGTTCCTCTTTTTC TTCGCCTTCTTGGTGGTGGTGATGGTGGCGATGGCGCCCTCGCCGCAATC TCCGCACTCATGATTCATTCAGCGAGGAACCTCGATCTCCACGCTCCACT TTGCGAGCTCGGGTGTTCTTTTGGCCAAGTCTGTTTTCGTATCGGCGTCA AGGGCTTTTGCTCAACAGCAGCGAAATTTCGCTGCCTGAATAGCATCAAA GCATTACGGTTATCTTTGCTCTGCAGCGGCAACGTTACCTGAATGGCAGC AAGGCCCAGGGCACCGCCCACATATCTCCGGGACCTAGGTTAGAAAAGAG AGCCCTTGTTGCCGGCCACTGCCACCGCTAGGCTCGTCCTGGACACGTGC GCGATTTTATTTCCGAAAGAGTCCCCACTGTTTTCACTACTGTTTCCCCC CTACTTTTAAGCAAAATAAGGTAGTCGCCAATTATGAACGAGATAACCCC CCGCTGACCGTAACTCCGGCGTCTCGCCTCAAGAGGTGCCGGTCTTCTTT GTTCCCCGGCTCTATATTTGCGGCTGCGCGGCCGGGTGGAAGGATTGTGC GCTTCCGGCGAAGAGGTTCCGTACTGGTTAGATCTGGCACCTGATCCGTC TCTAAAGGGACCCCTAATCAATGGCGATGATGAATCTAGGCAACTTCAGT ACGCCCCCCAACCCCACGCCTTTCCTTCGACCGGCGCTCCTCCTCGAAAG CGATATTGCTGTATGACAAAAATTGATGGCCATCCGAAAAGGGGACGCTC CAACAAAGTCATAGATCCCAGGATTTGCGCTTCAACGGCTGCTTGTGTCT TCAACGCACGTTGAAAACACTCGCTTGTTTGCTGCGCCGACCCTCCGTGT GTGTTTTCAATGGAATACTCGCGGCTTTGAATTATTACACGTATGCGGCT CGAACGTTGGTCTGCCAGGTTTAAGGAGAGCGTCAACCAGAAGCTCCGCA GCAAAAACGCCAAGATCGTGGGCTATAAGTTCAACCTCGGTGACATCCGG GACATCGAGGCAGTGGTTACTCCCATGGCCATCACTACGGAGACATAAGC TCTGTTCAAGCATGCGAGCCTTCTCGTCGTCTTCCCTCCTTCCGCCCCCT TTGTGTTGCGATCCGCACCATTGACGCGGTCCGCGGATTTGCCCTCTGTT TTCTGTGTGTTTCGTCTTGTATTTGATGGATTTTTTGCCTCATTCGTTTT GTATTGTTCTCTCGTTCCAACCCTTGATCATCCAGTTGTATCCGTTGCTT GTGTTTCTCCCGGCAGACCCGTTTCCTTCTGTGTTCTTCACTGCTGCCTC TCAAGGCTCGCGGACCCAGACCCCCTCCCCCGTTTCTTTTCGGTGTGTGT GCTAGCTGCAGCTTTACCTCAAGTCTGCTGGCGGCGAAAGGTTTGTGACG GCGCGCTCGGATTGTTTGCCTCTCTTCAACAGCAGTGCCGTACACTTGAT TCCGAGCTGCGCTTCTTGCGTTTCAGCGGCCCCTCCTTCGAGTATTGCGA GCGTGTCGCAGCACGATTTACTCAAATAGGACATGACGCGGGCGAAAGGG AGAGATAACAGATGCAAAAAAAGCAAGAGAAAAACAGCGATGAGGACCTT CTCCGGTGCTGGTTGCAGCCGTTATTGCCGTGTAAGTTCGACGCACGCAT GCCAGATGGTATCGACACGCCACTTTTCTCCTG
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Coding sequence (CDS) from alignment at P-fluviatile_contig1:2066826..2092708+

>mRNA_P-fluviatile_contig1.158.1 ID=mRNA_P-fluviatile_contig1.158.1|Name=mRNA_P-fluviatile_contig1.158.1|organism=Porterinema fluviatile SAG_2381|type=CDS|length=3132bp|location=Sequence derived from alignment at P-fluviatile_contig1:2066826..2092708+ (Porterinema fluviatile SAG_2381)
ATGACGAGCAATATGATCAGCGGCGGCTACAAGCATGGGCTTCGGAATAT
CATCATCGGCGATATGACGAGCAATATGATCAGCGGCGGCTACAAGCATG
GGCTTCGGAATATCATCATCGGCGATCTGAAACGGGGAGGCGAGAGGCAC
CTCGGAAGCCCGAACGATGAGCTGAAACGGGGAGGCGAGAGGCACCTCGG
AAGCCCGAACGATGAGCCCCTTGTCTGCGAGCACGGTGGCTGTACCGGCA
AGCCGTGCTTCGGATGGGAGGCTGACCACAGGGTCAGGTTTTGTGCTGAG
CACAAGGTCGACGGAATGGTCGACGTGAAGCCCCTTGTCTGCGAGCACGG
TGGCTGTACCGGCAAGCCGTGCTTCGGATGGGAGGCTGACCACAGGGTCA
GGTTTTGTGCTGAGCACAAGGTCGACGGAATGGTCGACGTGAAGCGCGAC
TGGGACGCAGCAATGGCTCTCCAGAACGCGTGGAGGAAAAGGAGGGCCTA
CATATTCGTCAAGGATCTCAAGCAGCGCGACTGGGACGCAGCAATGGCTC
TCCAGAACGCGTGGAGGAAAAGGAGGGCCTACATATTCGTCAAGGATCTC
AAGCAGGAGAAGCTATGTCGCGAGCAGCGGGAGGAAATGCGCGCTGGGCT
GCACGTGGGCTGCGAGGCGTGCGCGTCGGCCGGGAAGAAGTCTGCGGATA
TCAAGTCGCGGAACCGAAAGAAGGAGAAGCTATGTCGCGAGCAGCGGGAG
GAAATGCGCGCTGGGCTGCACGTGGGCTGCGAGGCGTGCGCGTCGGCCGG
GAAGAAGTCTGCGGATATCAAGTCGCGGAACCGAAAGAAGGCCTGGAAGG
ACGCGGACGAACTGTTGTTCAACGGCATGGCGAGAATACAGGCCTGGAAG
GACGCGGACGAACTGTTGTTCAACGGCATGGCGAGAATACAGATGAGCGA
CCGGGGAGACAACTGGAACGAGCGGTGGCAGTTGGCGCTGAGCCTTGCCG
CAAAGACCCACATGGAGAAGACGTACAGATGAGCGACCGGGGAGACAACT
GGAACGAGCGGTGGCAGTTGGCGCTGAGCCTTGCCGCAAAGACCCACATG
GAGAAGACGTACAGGAAGTCGCTCCTCGACGCGGTGTACTCAGACTTTGT
GCACACCGCCGTGACATACGGGCGGACCATCATCTCGGAGTACTTCTTGC
ACGAGTACATGAAGAGCGTCAGGAAGTCGCTCCTCGACGCGGTGTACTCA
GACTTTGTGCACACCGCCGTGACATACGGGCGGACCATCATCTCGGAGTA
CTTCTTGCACGAGTACATGAAGAGCGTCAGGCCGAAGTCACTGGGGGGCG
TTGCGGGGGGCAAGAAGTACCTCTGGCGGGGCATCATGTTCAAGCTGGCG
GACGGCAGCCAGGGTCCCTACGGCGGTAGCGACGAGGCGGCCGCGAAGGC
GGCGGGACACGAGCTCCGAGGCCGAAGTCACTGGGGGGCGTTGCGGGGGG
CAAGAAGTACCTCTGGCGGGGCATCATGTTCAAGCTGGCGGACGGCAGCC
AGGGTCCCTACGGCGGTAGCGACGAGGCGGCCGCGAAGGCGGCGGGACAC
GAGCTCCGAGGCGCGTCCGAGTACCTCAAGACTGGGGTCGGCCTCTGCGT
CCCCCCCATGTGCCTCCTGGACTACAAGGGGTTCAGGATGCTCGCACAGG
CGCGTCCGAGTACCTCAAGACTGGGGTCGGCCTCTGCGTCCCCCCCATGT
GCCTCCTGGACTACAAGGGGTTCAGGATGCTCGCACAGGCACACCTCTCT
TTGGGTCCGGCGAGCCTCAAGATGGGGACCAGCGACGGCGGCCTCACCGT
CCTGAACGATAGCCCCGAACTCAATCGGCGCACGGCGGCGGCGGCAAGGT
CACTTAAGCTCCGCGCCCATATCGCACACCTCTCTTTGGGTCCGGCGAGC
CTCAAGATGGGGACCAGCGACGGCGGCCTCACCGTCCTGAACGATAGCCC
CGAACTCAATCGGCGCACGGCGGCGGCGGCAAGGTCACTTAAGCTCCGCG
CCCATATCGGACGAGGCGACGGGGCGGAAGTTCAAGAGGAAGCAATTCGT
CGGGGGGCACATGCTTCACGCGGCGGCCGACGGACGAGGCGACGGGGCGG
AAGTTCAAGAGGAAGCAATTCGTCGGGGGGCACATGCTTCACGCGGCGGC
CGACGCGGTGAAGTTCGGCATAGAGTTCGTGCGGTGAAGTTCGGCATAGA
GTTCGTGTGGAGGTGGTGGTGCGGACGCTGAAGCTCGTGCTGCGAGGCTT
CCAACGGTCCTGGATGAAGTCGGAGCAGAGCTCCTCTGAACAGGTGGAGG
TGGTGGTGCGGACGCTGAAGCTCGTGCTGCGAGGCTTCCAACGGTCCTGG
ATGAAGTCGGAGCAGAGCTCCTCTGAACAGGGGATGCATCTCTTGGTGAC
GCAGTTCCTGAACCTTGTTACGGGCCATCACGTCCGCTCTCACCTTTTTT
GGGCGGAGAACGTCACAATCGGCGTTTGTCAAAGGGGATGCATCTCTTGG
TGACGCAGTTCCTGAACCTTGTTACGGGCCATCACGTCCGCTCTCACCTT
TTTTGGGCGGAGAACGTCACAATCGGCGTTTGTCAAAGGTTCGGGACCGT
GGCCCTCACCGAGTCGGAACGCGCGGGGCTGTGGGGGGCATGCTCGAGCC
GCCCGGACCTTCTGCTCACCATGGTCAAGGAGCTCGTCAAGGTCACAGGG
GTCAGGTTCGGGACCGTGGCCCTCACCGAGTCGGAACGCGCGGGGCTGTG
GGGGGCATGCTCGAGCCGCCCGGACCTTCTGCTCACCATGGTCAAGGAGC
TCGTCAAGGTCACAGGGGTCAGGTTTAAGGAGAGCGTCAACCAGAAGCTC
CGCAGCAAAAACGCCAAGATCGTGGGCTATAAGTTCAACCTCGGTGACAT
CCGGGACATCGAGGCAGTGGTTACTCCCATGGCCATCACTACGGAGACAT
AAGTTTAAGGAGAGCGTCAACCAGAAGCTCCGCAGCAAAAACGCCAAGAT
CGTGGGCTATAAGTTCAACCTCGGTGACATCCGGGACATCGAGGCAGTGG
TTACTCCCATGGCCATCACTACGGAGACATAA
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