mRNA_P-fluviatile_contig12.1500.1 (mRNA) Porterinema fluviatile SAG_2381

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

Overview
NamemRNA_P-fluviatile_contig12.1500.1
Unique NamemRNA_P-fluviatile_contig12.1500.1
TypemRNA
OrganismPorterinema fluviatile SAG_2381 (Porterinema fluviatile SAG_2381)
Homology
BLAST of mRNA_P-fluviatile_contig12.1500.1 vs. uniprot
Match: D7FWY9_ECTSI (N2,N2-dimethylguanosine tRNA methyltransferase n=1 Tax=Ectocarpus siliculosus TaxID=2880 RepID=D7FWY9_ECTSI)

HSP 1 Score: 135 bits (341), Expect = 7.730e-31
Identity = 131/322 (40.68%), Postives = 157/322 (48.76%), Query Frame = 1
Query: 1372 RQCRRQYRATVSDKPYAREAAMRVLLHHLDVLARRRSKRISPLLCVALDFYVRLFVMILPVPSTDAKGNSALALLPSRPPPAPPQQYLVVEQRVDTAEFTLRRGN--------------------GFRGGGGIQPRFARCR--SCANSGSGGDXXXXXXXXXXXXXXXXXXXGPRSGAEVKAGWYQTGEGTGPGPNAPELENGVEVENGSRDRELSARGDGRGGTGGMARVGPLLGRTAVSARFRG--RCSRRGGAAAEAPGFCGR-MPSPIPDVEAVREQLRSMDLECSGSHADPRALKTRASLAAVEEAVRRAATAKAVS 2262
            ++C  QYRA+V D+PYA+EAA+RVLLH +D LARR  +R+SPLLCVALDFYVRLFV+ILP P  DA G S   L    PPP      L V+Q  +++ F     N                    G   G    P   R    S AN G G            XXXXXXXXX        +     T        +A      +     S   E+  +GD R G G     GP + R       RG    +RRG       G  GR +  P+P VEAVREQLRS   ECSGSHADPRA+KT+A L AV EA+ RA   KA S
Sbjct:   20 KRCLSQYRASVVDRPYAKEAAIRVLLHRIDKLARRGGRRVSPLLCVALDFYVRLFVLILPAPDEDADGVST-PLEKRAPPPV-----LWVDQARESSRFRCYNSNNRTLDXXXXXXXXXSGDGDSGXXXGSTRPPIHRRSENDSGANPGDGVPGPSSIGKGSAXXXXXXXXXXXXXXXXXEDARSDTWAAAAADSDAV-----IMARQQSCFPEVHTKGDKRNGAGMWN--GPEMERNGSGGHERGPEEATRRG---LRGSGGGGRGVGCPLPSVEAVREQLRSAGHECSGSHADPRAIKTKAPLEAVREAIFRARAEKAFS 325          
BLAST of mRNA_P-fluviatile_contig12.1500.1 vs. uniprot
Match: A0A835Z9D7_9STRA (S-adenosyl-L-methionine-dependent methyltransferase n=1 Tax=Tribonema minus TaxID=303371 RepID=A0A835Z9D7_9STRA)

HSP 1 Score: 97.4 bits (241), Expect = 2.040e-16
Identity = 59/131 (45.04%), Postives = 79/131 (60.31%), Query Frame = 1
Query: 1237 WDFIDVDPFGSCMPFLEAAVAGAKDGGVLAVAATDLVVLCGKKGGRQCRRQYRATVSDKPYAREAAMRVLLHHLDVLARRRSKRISPLLCVALDFYVRLFVMILPVPSTDAK-----GNSALALLPSRPPP 1614
            +DF+DVDPFGS MPF  AA+A   DGGV+A+AATD+ VLCG+   R C   Y A       + E A+RVLL  +   AR++ +R+ PL+CVAL FYVR+F+ +      +       G+SA      RPPP
Sbjct:  226 FDFVDVDPFGSPMPFAAAALAAVTDGGVVALAATDMQVLCGRPA-RACAATY-ACWPPPMASSEVALRVLLRAVAAAARQQGRRVQPLVCVALQFYVRVFLRVTTADGAECDAPTHAGSSAFG----RPPP 350          
BLAST of mRNA_P-fluviatile_contig12.1500.1 vs. uniprot
Match: A0A098VNT6_9MICR (N2,N2-dimethylguanosine tRNA methyltransferase n=1 Tax=Mitosporidium daphniae TaxID=1485682 RepID=A0A098VNT6_9MICR)

HSP 1 Score: 90.9 bits (224), Expect = 2.690e-15
Identity = 50/120 (41.67%), Postives = 72/120 (60.00%), Query Frame = 1
Query: 1237 WDFIDVDPFGSCMPFLEAAVAGAKDGGVLAVAATDLVVLCGKKGGRQCRRQYRATVSDKPYAREAAMRVLLHHLDVLARRRSKRISPLLCVALDFYVRLFVMILPVPSTDAKGNSALALL 1596
            +D IDVDP+GS  PFL+AAV     GG+LA+ +TD+ VLCG   G  C  +Y+       Y++E A+R+LL+ ++  A R  + I PL+ V +DFYVR+FV +   P    K     AL+
Sbjct:  149 FDLIDVDPYGSASPFLDAAVQAVSSGGLLAITSTDMAVLCGVHPGT-CFAKYQGVPLHSDYSQEMAIRLLLNAVETAANRYGRYIEPLVSVKIDFYVRIFVRVHKGPLEVKKSVKKRALV 267          
BLAST of mRNA_P-fluviatile_contig12.1500.1 vs. uniprot
Match: A0A1A6A5T1_9TREE (N2,N2-dimethylguanosine tRNA methyltransferase n=1 Tax=Kwoniella dejecticola CBS 10117 TaxID=1296121 RepID=A0A1A6A5T1_9TREE)

HSP 1 Score: 93.2 bits (230), Expect = 3.100e-15
Identity = 46/102 (45.10%), Postives = 65/102 (63.73%), Query Frame = 1
Query: 1240 DFIDVDPFGSCMPFLEAAVAGAKDGGVLAVAATDLVVLCGKKGGRQCRRQYRATVSDKPYAREAAMRVLLHHLDVLARRRSKRISPLLCVALDFYVRLFVMI 1545
            D +D+DP+G+  PF++AA+    DGG+LA+  TDL VL G++   +C   Y  T     Y  EAA+R++LH L   A R  + I+PLL  ++DFYVRLFV I
Sbjct:  277 DVVDLDPYGTAAPFIDAAIGSISDGGLLAITCTDLAVLAGQQYPEKCYSNYGGTNVHAEYTHEAALRLVLHSLATCAARYGRYITPLLSFSIDFYVRLFVRI 378          
BLAST of mRNA_P-fluviatile_contig12.1500.1 vs. uniprot
Match: A0A1B9HIU8_9TREE (N2,N2-dimethylguanosine tRNA methyltransferase n=2 Tax=Kwoniella heveanensis TaxID=89924 RepID=A0A1B9HIU8_9TREE)

HSP 1 Score: 92.4 bits (228), Expect = 6.200e-15
Identity = 90/329 (27.36%), Postives = 132/329 (40.12%), Query Frame = 1
Query:  571 LKVCDALAGGGVRAIRYALEAGGPVAVVANDQSREACEAILRNARLSGISVTVPETASTRSPREKKTNHGXXXXXXXXXXXVHAATDDGGGVY--DAGDDVEEAASVHREGKQPPWEPEVPGHTLRPPQQASNRASSLDQRPPTLSPSSLSSFNVREGPANDVLRRPPTSAFSGVDAAAAGDGNAGNFGEAGGSTSSXXXXXXXXXDXGSCXXXXXXXXXVGECW--DFIDVDPFGSCMPFLEAAVAGAKDGGVLAVAATDLVVLCGKKGGRQCRRQYRATVSDKPYAREAAMRVLLHHLDVLARRRSKRISPLLCVALDFYVRLFVMI 1545
            + + +ALA  G+R+IRYA E      V AND S  ACEA+ RN   +G+    P   S+ S    +  +            V     DG      +  + V +  S +   K                  AS++A                   V E P + V RRP       +           N G+A                   C         VG     D +D+DP+G+  PF++AA+    DGG+LA+  TDL VL G++   +C   Y  T     Y  EAA+R+++H L   A R  + I+PLL  ++DFYVRLF+ +
Sbjct:  195 INILEALAATGLRSIRYAKEIPNVKYVFANDLSPSACEAMKRNVEFNGVGEVPPGLPSSASKTVAEAGNTGAPLASKSTDEVVPIAIDGAETEKPNGAESVLDTTSSNARSKS-----------------ASDKAKKGTD----------GEAEVHEEPKDAVGRRPGCKGRVKI-----------NEGDA-------------------CAFMYSHRSAVGPTQRVDVVDLDPYGTAAPFIDAALGCIADGGLLAITCTDLAVLAGQQYPEKCYSNYGGTNVHAEYTHEAALRLVMHSLATCAARYGRYITPLLSFSIDFYVRLFIRV 466          
BLAST of mRNA_P-fluviatile_contig12.1500.1 vs. uniprot
Match: E6QZW8_CRYGW (tRNA (guanine(26)-N(2))-dimethyltransferase n=11 Tax=Cryptococcus TaxID=5206 RepID=E6QZW8_CRYGW)

HSP 1 Score: 92.0 bits (227), Expect = 6.670e-15
Identity = 46/102 (45.10%), Postives = 66/102 (64.71%), Query Frame = 1
Query: 1240 DFIDVDPFGSCMPFLEAAVAGAKDGGVLAVAATDLVVLCGKKGGRQCRRQYRATVSDKPYAREAAMRVLLHHLDVLARRRSKRISPLLCVALDFYVRLFVMI 1545
            D +D+DP+G+  PFL+AA+    DGG+LA+  TDL VL G++   +C   Y  T     Y  EAA+R+++H L  +A R  + I+PLL  ++DFYVRLFV I
Sbjct:  282 DVVDLDPYGTAAPFLDAAIGCISDGGLLAITCTDLAVLAGQQYPEKCYSNYGGTNVHAEYTHEAALRLVMHSLASVAARYGRYITPLLSFSIDFYVRLFVRI 383          
BLAST of mRNA_P-fluviatile_contig12.1500.1 vs. uniprot
Match: A0A1B9I274_9TREE (N2,N2-dimethylguanosine tRNA methyltransferase n=1 Tax=Kwoniella pini CBS 10737 TaxID=1296096 RepID=A0A1B9I274_9TREE)

HSP 1 Score: 91.3 bits (225), Expect = 1.200e-14
Identity = 44/102 (43.14%), Postives = 65/102 (63.73%), Query Frame = 1
Query: 1240 DFIDVDPFGSCMPFLEAAVAGAKDGGVLAVAATDLVVLCGKKGGRQCRRQYRATVSDKPYAREAAMRVLLHHLDVLARRRSKRISPLLCVALDFYVRLFVMI 1545
            D +D+DP+G+  PF++AA+    DGG+LA+  TDL VL G++   +C   Y  T     Y  EAA+R++LH L   A R  + I+PLL  ++DFYVRLF+ +
Sbjct:  271 DVVDLDPYGTAAPFIDAAIGSISDGGLLAITCTDLAVLAGQQYPEKCYSNYGGTNVHAEYTHEAALRLVLHSLANCAARYGRYITPLLSFSIDFYVRLFIRV 372          
BLAST of mRNA_P-fluviatile_contig12.1500.1 vs. uniprot
Match: A0A1B9IY52_9TREE (N2,N2-dimethylguanosine tRNA methyltransferase n=2 Tax=Kwoniella mangrovensis TaxID=463800 RepID=A0A1B9IY52_9TREE)

HSP 1 Score: 91.3 bits (225), Expect = 1.230e-14
Identity = 45/102 (44.12%), Postives = 64/102 (62.75%), Query Frame = 1
Query: 1240 DFIDVDPFGSCMPFLEAAVAGAKDGGVLAVAATDLVVLCGKKGGRQCRRQYRATVSDKPYAREAAMRVLLHHLDVLARRRSKRISPLLCVALDFYVRLFVMI 1545
            D +D+DP+G+  PF++AA+    DGG+LA+  TDL VL G++   +C   Y        Y  EAA+R++LH L   A R  + I+PLL  ++DFYVRLFV I
Sbjct:  287 DVVDLDPYGTAAPFIDAAIGSISDGGLLAITCTDLAVLAGQQYPEKCYSNYGGVNVHAEYTHEAALRLVLHSLATCAARYGRYITPLLSFSIDFYVRLFVRI 388          
BLAST of mRNA_P-fluviatile_contig12.1500.1 vs. uniprot
Match: UPI000A1C3E8B (tRNA (guanine(26)-N(2))-dimethyltransferase-like n=1 Tax=Boleophthalmus pectinirostris TaxID=150288 RepID=UPI000A1C3E8B)

HSP 1 Score: 90.1 bits (222), Expect = 1.450e-14
Identity = 48/132 (36.36%), Postives = 76/132 (57.58%), Query Frame = 1
Query: 1231 ECWDFIDVDPFGSCMPFLEAAVAGAKDGGVLAVAATDLVVLCGKKGGRQCRRQYRATVSDKPYAREAAMRVLLHHLDVLARRRSKRISPLLCVALDFYVRLFVMILPVPSTDAKGNSALALLPSRPPPAPPQ 1626
            +C+D ID+DP+GS  PF++AAV    +GG+L V  TD+ V+ G  G   C  +Y +      +  E A+R++LH LD  A    + ISPLL V++DFY+R+FV +        K ++++    +  PP  P+
Sbjct:  224 DCYDVIDLDPYGSPAPFIDAAVQAVSEGGLLCVTCTDMAVMAGNSG-ETCYSKYGSVSIKSKFCHEMALRIILHSLDQRAGVYQRYISPLLSVSVDFYIRVFVRVF-TGQAKVKDSASMKYSAASGPPVGPE 353          
BLAST of mRNA_P-fluviatile_contig12.1500.1 vs. uniprot
Match: A0A8H7D6S3_9AGAR (tRNA (guanine(26)-N(2))-dimethyltransferase n=1 Tax=Mycena sanguinolenta TaxID=230812 RepID=A0A8H7D6S3_9AGAR)

HSP 1 Score: 90.5 bits (223), Expect = 1.520e-14
Identity = 46/115 (40.00%), Postives = 68/115 (59.13%), Query Frame = 1
Query: 1240 DFIDVDPFGSCMPFLEAAVAGAKDGGVLAVAATDLVVLCGKKGGRQCRRQYRATVSDKPYAREAAMRVLLHHLDVLARRRSKRISPLLCVALDFYVRLFVMILPVPSTDAKGNSA 1584
            D +D+DP+GS  PF++AAV   KDGG+L V  TDL VL       +C   Y        Y+ EAA+R++LH +   A R  + I PL+ +++DFYVRLF+ +   P    KG+++
Sbjct:  217 DVVDLDPYGSAAPFIDAAVQCIKDGGLLCVTCTDLAVLATTNYAEKCFSNYGGVPIKSEYSHEAALRLVLHAVSTSAARYGRYIEPLVSLSIDFYVRLFMRVATSPMQAKKGHNS 331          
The following BLAST results are available for this feature:
BLAST of mRNA_P-fluviatile_contig12.1500.1 vs. uniprot
Analysis Date: 2022-09-19 (Diamond blastx: OGS1.0 vs UniRef90)
Total hits: 25
Match NameE-valueIdentityDescription
D7FWY9_ECTSI7.730e-3140.68N2,N2-dimethylguanosine tRNA methyltransferase n=1... [more]
A0A835Z9D7_9STRA2.040e-1645.04S-adenosyl-L-methionine-dependent methyltransferas... [more]
A0A098VNT6_9MICR2.690e-1541.67N2,N2-dimethylguanosine tRNA methyltransferase n=1... [more]
A0A1A6A5T1_9TREE3.100e-1545.10N2,N2-dimethylguanosine tRNA methyltransferase n=1... [more]
A0A1B9HIU8_9TREE6.200e-1527.36N2,N2-dimethylguanosine tRNA methyltransferase n=2... [more]
E6QZW8_CRYGW6.670e-1545.10tRNA (guanine(26)-N(2))-dimethyltransferase n=11 T... [more]
A0A1B9I274_9TREE1.200e-1443.14N2,N2-dimethylguanosine tRNA methyltransferase n=1... [more]
A0A1B9IY52_9TREE1.230e-1444.12N2,N2-dimethylguanosine tRNA methyltransferase n=2... [more]
UPI000A1C3E8B1.450e-1436.36tRNA (guanine(26)-N(2))-dimethyltransferase-like n... [more]
A0A8H7D6S3_9AGAR1.520e-1440.00tRNA (guanine(26)-N(2))-dimethyltransferase n=1 Ta... [more]

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Alignments
The following features are aligned
Aligned FeatureFeature TypeAlignment Location
P-fluviatile_contig12contigP-fluviatile_contig12:2384241..2403782 +
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 scopeFungi
Seed ortholog score97.4
Seed ortholog evalue7.5e-17
Seed eggNOG ortholog5207.AAW40680
Preferred nameTRM1
KEGG koko:K00555
GOsGO:0001510,GO:0002940,GO:0003674,GO:0003824,GO:0004809,GO:0005575,GO:0005622,GO:0005623,GO:0005634,GO:0005635,GO:0005637,GO:0005737,GO:0005739,GO:0006139,GO:0006396,GO:0006399,GO:0006400,GO:0006725,GO:0006807,GO:0008033,GO:0008150,GO:0008152,GO:0008168,GO:0008170,GO:0008173,GO:0008175,GO:0008757,GO:0009451,GO:0009987,GO:0010467,GO:0012505,GO:0016020,GO:0016070,GO:0016423,GO:0016740,GO:0016741,GO:0019866,GO:0030488,GO:0031090,GO:0031965,GO:0031967,GO:0031975,GO:0032259,GO:0034470,GO:0034641,GO:0034660,GO:0043170,GO:0043226,GO:0043227,GO:0043229,GO:0043231,GO:0043412,GO:0043414,GO:0044237,GO:0044238,GO:0044260,GO:0044422,GO:0044424,GO:0044428,GO:0044444,GO:0044446,GO:0044464,GO:0046483,GO:0071704,GO:0090304,GO:0140098,GO:0140101,GO:1901360
EggNOG free text desc.N2,N2-dimethylguanosine tRNA methyltransferase
EggNOG OGs38I4E@33154,3NUG5@4751,3UY21@5204,3VD1J@5234,COG1867@1,KOG1253@2759
Ec32 ortholog descriptiontRNA methyltransferase, Trm1
Ec32 orthologEc-15_001050.1
EC2.1.1.215,2.1.1.216
COG Functional cat.J
Best tax levelTremellales
Best eggNOG OGNA|NA|NA
BRITEko00000,ko01000,ko03016
Hectar predicted targeting categoryother localisation
Exons20
Model size6211
Cds size5721
Stop1
Start1
Relationships

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

Feature NameUnique NameSpeciesTypePosition
mRNA_P-fluviatile_contig12.1500.1prot_P-fluviatile_contig12.1500.1Porterinema fluviatile SAG_2381polypeptideP-fluviatile_contig12 2384472..2403523 +


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

Feature NameUnique NameSpeciesTypePosition
1622815519.1390483-UTR-P-fluviatile_contig12:2384240..23844711622815519.1390483-UTR-P-fluviatile_contig12:2384240..2384471Porterinema fluviatile SAG_2381UTRP-fluviatile_contig12 2384241..2384471 +
1693562118.789648-UTR-P-fluviatile_contig12:2384240..23844711693562118.789648-UTR-P-fluviatile_contig12:2384240..2384471Porterinema fluviatile SAG_2381UTRP-fluviatile_contig12 2384241..2384471 +
1622815519.4196613-UTR-P-fluviatile_contig12:2403523..24037821622815519.4196613-UTR-P-fluviatile_contig12:2403523..2403782Porterinema fluviatile SAG_2381UTRP-fluviatile_contig12 2403524..2403782 +
1693562119.015282-UTR-P-fluviatile_contig12:2403523..24037821693562119.015282-UTR-P-fluviatile_contig12:2403523..2403782Porterinema fluviatile SAG_2381UTRP-fluviatile_contig12 2403524..2403782 +


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

Feature NameUnique NameSpeciesTypePosition
1622815519.1536512-CDS-P-fluviatile_contig12:2384471..23845051622815519.1536512-CDS-P-fluviatile_contig12:2384471..2384505Porterinema fluviatile SAG_2381CDSP-fluviatile_contig12 2384472..2384505 +
1693562118.8031297-CDS-P-fluviatile_contig12:2384471..23845051693562118.8031297-CDS-P-fluviatile_contig12:2384471..2384505Porterinema fluviatile SAG_2381CDSP-fluviatile_contig12 2384472..2384505 +
1622815519.16672-CDS-P-fluviatile_contig12:2385018..23850681622815519.16672-CDS-P-fluviatile_contig12:2385018..2385068Porterinema fluviatile SAG_2381CDSP-fluviatile_contig12 2385019..2385068 +
1693562118.8118448-CDS-P-fluviatile_contig12:2385018..23850681693562118.8118448-CDS-P-fluviatile_contig12:2385018..2385068Porterinema fluviatile SAG_2381CDSP-fluviatile_contig12 2385019..2385068 +
1622815519.1835618-CDS-P-fluviatile_contig12:2385657..23859231622815519.1835618-CDS-P-fluviatile_contig12:2385657..2385923Porterinema fluviatile SAG_2381CDSP-fluviatile_contig12 2385658..2385923 +
1693562118.8209481-CDS-P-fluviatile_contig12:2385657..23859231693562118.8209481-CDS-P-fluviatile_contig12:2385657..2385923Porterinema fluviatile SAG_2381CDSP-fluviatile_contig12 2385658..2385923 +
1622815519.1958263-CDS-P-fluviatile_contig12:2386274..23863781622815519.1958263-CDS-P-fluviatile_contig12:2386274..2386378Porterinema fluviatile SAG_2381CDSP-fluviatile_contig12 2386275..2386378 +
1693562118.833445-CDS-P-fluviatile_contig12:2386274..23863781693562118.833445-CDS-P-fluviatile_contig12:2386274..2386378Porterinema fluviatile SAG_2381CDSP-fluviatile_contig12 2386275..2386378 +
1622815519.2094152-CDS-P-fluviatile_contig12:2386853..23875451622815519.2094152-CDS-P-fluviatile_contig12:2386853..2387545Porterinema fluviatile SAG_2381CDSP-fluviatile_contig12 2386854..2387545 +
1693562118.8503087-CDS-P-fluviatile_contig12:2386853..23875451693562118.8503087-CDS-P-fluviatile_contig12:2386853..2387545Porterinema fluviatile SAG_2381CDSP-fluviatile_contig12 2386854..2387545 +
1622815519.2201126-CDS-P-fluviatile_contig12:2388206..23883531622815519.2201126-CDS-P-fluviatile_contig12:2388206..2388353Porterinema fluviatile SAG_2381CDSP-fluviatile_contig12 2388207..2388353 +
1693562118.860351-CDS-P-fluviatile_contig12:2388206..23883531693562118.860351-CDS-P-fluviatile_contig12:2388206..2388353Porterinema fluviatile SAG_2381CDSP-fluviatile_contig12 2388207..2388353 +
1622815519.2348464-CDS-P-fluviatile_contig12:2388632..23890381622815519.2348464-CDS-P-fluviatile_contig12:2388632..2389038Porterinema fluviatile SAG_2381CDSP-fluviatile_contig12 2388633..2389038 +
1693562118.8695302-CDS-P-fluviatile_contig12:2388632..23890381693562118.8695302-CDS-P-fluviatile_contig12:2388632..2389038Porterinema fluviatile SAG_2381CDSP-fluviatile_contig12 2388633..2389038 +
1622815519.24896-CDS-P-fluviatile_contig12:2389055..23891841622815519.24896-CDS-P-fluviatile_contig12:2389055..2389184Porterinema fluviatile SAG_2381CDSP-fluviatile_contig12 2389056..2389184 +
1693562118.8787193-CDS-P-fluviatile_contig12:2389055..23891841693562118.8787193-CDS-P-fluviatile_contig12:2389055..2389184Porterinema fluviatile SAG_2381CDSP-fluviatile_contig12 2389056..2389184 +
1622815519.2629447-CDS-P-fluviatile_contig12:2389650..23897241622815519.2629447-CDS-P-fluviatile_contig12:2389650..2389724Porterinema fluviatile SAG_2381CDSP-fluviatile_contig12 2389651..2389724 +
1693562118.890237-CDS-P-fluviatile_contig12:2389650..23897241693562118.890237-CDS-P-fluviatile_contig12:2389650..2389724Porterinema fluviatile SAG_2381CDSP-fluviatile_contig12 2389651..2389724 +
1622815519.2749074-CDS-P-fluviatile_contig12:2390690..23908101622815519.2749074-CDS-P-fluviatile_contig12:2390690..2390810Porterinema fluviatile SAG_2381CDSP-fluviatile_contig12 2390691..2390810 +
1693562118.8977866-CDS-P-fluviatile_contig12:2390690..23908101693562118.8977866-CDS-P-fluviatile_contig12:2390690..2390810Porterinema fluviatile SAG_2381CDSP-fluviatile_contig12 2390691..2390810 +
1622815519.288107-CDS-P-fluviatile_contig12:2391814..23921891622815519.288107-CDS-P-fluviatile_contig12:2391814..2392189Porterinema fluviatile SAG_2381CDSP-fluviatile_contig12 2391815..2392189 +
1693562118.9053016-CDS-P-fluviatile_contig12:2391814..23921891693562118.9053016-CDS-P-fluviatile_contig12:2391814..2392189Porterinema fluviatile SAG_2381CDSP-fluviatile_contig12 2391815..2392189 +
1622815519.306265-CDS-P-fluviatile_contig12:2392405..23929961622815519.306265-CDS-P-fluviatile_contig12:2392405..2392996Porterinema fluviatile SAG_2381CDSP-fluviatile_contig12 2392406..2392996 +
1693562118.9129825-CDS-P-fluviatile_contig12:2392405..23929961693562118.9129825-CDS-P-fluviatile_contig12:2392405..2392996Porterinema fluviatile SAG_2381CDSP-fluviatile_contig12 2392406..2392996 +
1622815519.3187513-CDS-P-fluviatile_contig12:2393776..23943051622815519.3187513-CDS-P-fluviatile_contig12:2393776..2394305Porterinema fluviatile SAG_2381CDSP-fluviatile_contig12 2393777..2394305 +
1693562118.9233744-CDS-P-fluviatile_contig12:2393776..23943051693562118.9233744-CDS-P-fluviatile_contig12:2393776..2394305Porterinema fluviatile SAG_2381CDSP-fluviatile_contig12 2393777..2394305 +
1622815519.3334744-CDS-P-fluviatile_contig12:2395501..23962231622815519.3334744-CDS-P-fluviatile_contig12:2395501..2396223Porterinema fluviatile SAG_2381CDSP-fluviatile_contig12 2395502..2396223 +
1693562118.935588-CDS-P-fluviatile_contig12:2395501..23962231693562118.935588-CDS-P-fluviatile_contig12:2395501..2396223Porterinema fluviatile SAG_2381CDSP-fluviatile_contig12 2395502..2396223 +
1622815519.343691-CDS-P-fluviatile_contig12:2396966..23972231622815519.343691-CDS-P-fluviatile_contig12:2396966..2397223Porterinema fluviatile SAG_2381CDSP-fluviatile_contig12 2396967..2397223 +
1693562118.9437532-CDS-P-fluviatile_contig12:2396966..23972231693562118.9437532-CDS-P-fluviatile_contig12:2396966..2397223Porterinema fluviatile SAG_2381CDSP-fluviatile_contig12 2396967..2397223 +
1622815519.3567789-CDS-P-fluviatile_contig12:2398048..23982061622815519.3567789-CDS-P-fluviatile_contig12:2398048..2398206Porterinema fluviatile SAG_2381CDSP-fluviatile_contig12 2398049..2398206 +
1693562118.9517765-CDS-P-fluviatile_contig12:2398048..23982061693562118.9517765-CDS-P-fluviatile_contig12:2398048..2398206Porterinema fluviatile SAG_2381CDSP-fluviatile_contig12 2398049..2398206 +
1622815519.3688335-CDS-P-fluviatile_contig12:2399315..23994691622815519.3688335-CDS-P-fluviatile_contig12:2399315..2399469Porterinema fluviatile SAG_2381CDSP-fluviatile_contig12 2399316..2399469 +
1693562118.969787-CDS-P-fluviatile_contig12:2399315..23994691693562118.969787-CDS-P-fluviatile_contig12:2399315..2399469Porterinema fluviatile SAG_2381CDSP-fluviatile_contig12 2399316..2399469 +
1622815519.3803434-CDS-P-fluviatile_contig12:2400021..24000661622815519.3803434-CDS-P-fluviatile_contig12:2400021..2400066Porterinema fluviatile SAG_2381CDSP-fluviatile_contig12 2400022..2400066 +
1693562118.9820457-CDS-P-fluviatile_contig12:2400021..24000661693562118.9820457-CDS-P-fluviatile_contig12:2400021..2400066Porterinema fluviatile SAG_2381CDSP-fluviatile_contig12 2400022..2400066 +
1622815519.3906088-CDS-P-fluviatile_contig12:2400972..24011221622815519.3906088-CDS-P-fluviatile_contig12:2400972..2401122Porterinema fluviatile SAG_2381CDSP-fluviatile_contig12 2400973..2401122 +
1693562118.992985-CDS-P-fluviatile_contig12:2400972..24011221693562118.992985-CDS-P-fluviatile_contig12:2400972..2401122Porterinema fluviatile SAG_2381CDSP-fluviatile_contig12 2400973..2401122 +
1622815519.4014-CDS-P-fluviatile_contig12:2402805..24035231622815519.4014-CDS-P-fluviatile_contig12:2402805..2403523Porterinema fluviatile SAG_2381CDSP-fluviatile_contig12 2402806..2403523 +
1693562119.0072098-CDS-P-fluviatile_contig12:2402805..24035231693562119.0072098-CDS-P-fluviatile_contig12:2402805..2403523Porterinema fluviatile SAG_2381CDSP-fluviatile_contig12 2402806..2403523 +


Sequences
The following sequences are available for this feature:

protein sequence of mRNA_P-fluviatile_contig12.1500.1

>prot_P-fluviatile_contig12.1500.1 ID=prot_P-fluviatile_contig12.1500.1|Name=mRNA_P-fluviatile_contig12.1500.1|organism=Porterinema fluviatile SAG_2381|type=polypeptide|length=1907bp
MAYIGEKSIIEGRAVLSVTPGVFYSEHQVFQRDLSVAALRVFRRLKLNTP
APQQQQQQRHTGDSSSNSSSTPGVPLVGRQLIQGKENGCADGQQRQHEEG
GHDGAVGVAPAHVLKVCDALAGGGVRAIRYALEAGGPVAVVANDQSREAC
EAILRNARLSGISVTVPETASTRSPREKKTNHGGGGREREEHERVHAATD
DGGGVYDAGDDVEEAASVHREGKQPPWEPEVPGHTLRPPQQASNRASSLD
QRPPTLSPSSLSSFNVREGPANDVLRRPPTSAFSGVDAAAAGDGNAGNFG
EAGGSTSSGGGDGNGNGDGGSCSSSGGDGGGVGECWDFIDVDPFGSCMPF
LEAAVAGAKDGGVLAVAATDLVVLCGKKGGRQCRRQYRATVSDKPYAREA
AMRVLLHHLDVLARRRSKRISPLLCVALDFYVRLFVMILPVPSTDAKGNS
ALALLPSRPPPAPPQQYLVVEQRVDTAEFTLRRGNGFRGGGGIQPRFARC
RSCANSGSGGDGGGGLDGNGDDGRGNGDRGGPRSGAEVKAGWYQTGEGTG
PGPNAPELENGVEVENGSRDRELSARGDGRGGTGGMARVGPLLGRTAVSA
RFRGRCSRRGGAAAEAPGFCGRMPSPIPDVEAVREQLRSMDLECSGSHAD
PRALKTRASLAAVEEAVRRAATAKAVSGAGGGPQQQQQRPPGSLQATRAQ
VAAQAAARGRNAQTDEPKAAEIGIPRQGLGKREDSGNGSEGKGGGGGDGG
GSGSGSGDIWRTATVQAAAAAKPASKPAPAGSAGPRVPVGLVELDPVCQG
ERRGFPHLTMASLLGFVEESLASSTSDDAVDGSSGATNSRRSSGNGNGSS
GGEISTRSSEEASSDHTSKGRSGTDRSGGTRRVTQEVRGNDDDVEDDDDG
DDDGNNTIGNSGSGAGDNADTPRKRPRDDVAAAVGDAVGVDVAASPAGAV
PPPSNGAFFCFVRSGSRHRRRQGGRGGGIGCGDDDDATGQAESAVERLLC
SRWPSRIRFFDSLVEACSVAAAACGPTSSLPAQVFAAGGSGLNRRERRGV
RRSNERGAAAARGCGGGGGGGGGGGGGGGGGGGGAAAAAEERGGEEGSTT
AVSGERLGRGGWGRGREEGRVESVGLRMTSPAAAAATAAAVVATVVVLGG
THDAGPMGLRLAASGMAVVGVIAPDGRLPTVQGRGRAHAIRCTGRGVSVV
SLNVVAGALPASAMSDGEKADDTDGQNTAGGGRGHADSASESGRDEREST
GSGSEKNKSNNKHHDNEVCADDDGDEKGGGGGGGDCNDGGGDGSTSPGTN
QQHVNSSPTSTTSPTPRTSQPPTRRPPQVAATPTTATSASKPATRPRPAV
TRTTATTTAAATATIVPTPTPGGVKRNLASSLARANGGRSAERDGGSVRR
KRPRLVFDDEAAQAVLLDRSKAATAAALVTAAAKYGDNAGSWGGKRKRAS
TKGPLKVDDEPRRRSAAGGRRGGLPQRPAHAVTVEGGGSASISGCDITSH
LPFACVCAAGGGTVVSLNGTRLHDGSGMGLLACGKAKVSADECDFAGMGA
AGVEARGGSYADLTRCSVCGCGKSGVFVHSFGGARLSRCRVAGNHFAGVE
AMKNATVTLEACSIVDSRRGGVLAHVASKVTLRDCNVEGSCLAGIDVRTG
AEAAVESCCFQGGKTSGIYVSAGGRASVCSTLIKSNRLAAVEVRAPDGHR
DSCKGNGGGGGGAGSGHQQRTARLDIPPPNGRERRRDGGEDEGRYGGERR
AAITAVTTPAAAAAAAAAVETVVDQFHGDGVSSSENVVDGVAGGWGCNDA
AAAAITASSGAAFSAASAGAAAAAAAVRASEKSAGHSKSPWECGCCHCCS
VSWGPGNVMEDNGLDGVMRTGRDPPAPMGPLPDVLPAVAGAHNAIVAHSF
HSKHAV*
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mRNA from alignment at P-fluviatile_contig12:2384241..2403782+

Legend: UTRpolypeptideCDS
Hold the cursor over a type above to highlight its positions in the sequence below.
>mRNA_P-fluviatile_contig12.1500.1 ID=mRNA_P-fluviatile_contig12.1500.1|Name=mRNA_P-fluviatile_contig12.1500.1|organism=Porterinema fluviatile SAG_2381|type=mRNA|length=19542bp|location=Sequence derived from alignment at P-fluviatile_contig12:2384241..2403782+ (Porterinema fluviatile SAG_2381)
GGAGCAGGAGAAGGTGTTGGCAGATGGACCACCCTTCACCAAATTGCTAC CACATACCGCTGGTATTTCAGTCTTCGTTCCCCGCCCGATCAGCCGCTCG GCACGCCGAGGCACCGAGACACGCGATACGCGACGCGCTACCCCTGGAGT TTCGCCGCATTTCAGTTTCGCTGCGACCTCTGATCTTCGGAGCACCTCTG CTGTTCGGCACCTTTCAAGCGCCGGTGTATCATGGCCTACATCGGGGAGA AGTCCATCATTGAAGGTTCGGGGCGTCGAGTGGTTGCACCTGACTTGTCC TGCAGTATTTGCACGACTCCCGTTGTTCCAGTTATGTGTAAGGCAAGAAC TGCCCTGCATGCGGATCTCTGACGGCCCAGTAGTGTTGGACTACTATGCG GTAGCACTTCCACAAGCGAAATACTCAGTATATCTCGTTCGCTTTTCTCG GGTATCGCGCGCGGAGTGTGTGGGGTCCACAATCCACAGGAAGCCGCGGA ATGACAGGTGGGGCGACTGGCGCGACGCACTTGCTTGGCCACGACAACCC GACGGCGTGTCGTGTGCTCGATTATTTTCCCGCTGTTTTCCTCTCATCCG AAGCTCGCTAGCCTCTGGCTTGATGAATGTTTCCCGCTGTTTTGATGCAC ATGTCGCTTGCGCACGCCGCGCCGCGGAGACTGGATGTTCCAAGGGTGTC TCACGTACAGCACGTCGGTGGTGACCTCCGTGATGCCCCCCTTGTGTCGA TGTGTGTGCTGCTGGCCGTGTGTTTCAGGTCGTGCGGTGCTGTCGGTGAC CCCAGGCGTCTTTTACAGCGAGCATCAGGTAGGAGGCGATCGCTCATAGG TTTGTTCATTTCCCCTCAAGCTCCTCTAGGTCCCTGCTTGCAAGCGTGCT GGATGAATGTCTGGCAGTCTCCTGCTCTCTGGCATCTCCGCCTCTTCCCC GCTGTTCATCTCCCGCTCTCTCGGTCTCGCAGCGTCGCCCTGATATGAAA ACAGGCACTTCCTGCACCAAATTCAAATATTGTCGACATGCAACGGGACG TCATTCTCCACGGGCCCCCTTCCGACGTTCCTCCCGCTCAAATCTCTCGA AACCGTGTCACGAGAGAGGTCGTGGTGACTTGCCGCTACGAGCGCACATC CACGCCTTTGTGCGTCAAGATGCAGCCAGCAGGTTCACAGGCCCAATCAC AATAAACCGCAGCAAACGCGATCGAGTGGACCGTTTCCAAGATCTTGAAC GAAATGCCGTGTCCGCTTGTTTACAGCACACCAATGAGTCCCTGCTGGAA CTCCAAGAAACAAACAAGTTCGAAACCAGGCCCTTCCGTGATGCCGAGTA TGTTTTTCAGACGTGGGGGTGACTTAACGCCCCCCTCCCAAACCTATTGC AAACATGGAACCACAAGGTTTTCCAGAGAGACCTGTCGGTAGCAGCCCTC CGGGTCTTTCGGCGGCTCAAGTTGAACACTCCAGCCCCGCAACAGCAGCA GCAGCAGCGACACACCGGCGACAGCAGCAGCAACAGCAGCAGCACGCCAG GAGTTCCATTGGTTGGGAGGCAGCTTATCCAAGGGAAGGAAAACGGGTGT GCCGACGGACAACAACGACAACACGAAGAGGGCGGACACGATGGTGCGGT GGGGGTGGCGCCAGCACACGTCTTGAAAGTTTGGTGAGGTGGTTAACTCG TGGAAAGGCATCGCTCTTGACAGTAACCTAATTCCCGCCTGTCTGTAGGT ATGTGCCTAACTTTTGGTTCGGTTAAGGCGTTTTTTTTTTTCTGTGACTT TCTTCCGGGGAAGTCGGGAGGCGGTATTGCGGAAACCTCGGTTTCCGGTC GCTCCTATCGCAAACCTTCTGGCACTCAGCCCCACAGAGCAGATGAACTT ACCCGCACACCCGTAGCCCCGTCCCCGCAAAGCCCACTCCAAGGGAAAGT GCGTACGGCGTCATACACTTCGCACTCTCCGCCTGGACTCGGACTCCTAT CCCCTGCTCCCGTTCTCTCACGGTGATGCGGCAGCGATGCGTTGGCAGGG GGCGGCGTGAGGGCCATTCGGTATGCGCTTGAGGCTGGTGGGCCCGTCGC GGTGGTGGCCAACGATCAATCCAGGGAGGCCTGCGAAGGTGCTTGGGTAT GGTGGGTGAAACACTAGAGTTTTTGTGTGCGCGAGCGCGCGTGTTTTGAA GCTATTTGAAGCTATTTCATGCGACTCTGTGGGTGTGGCAGACACGAGGG AAGTCGCCGTTTGCGTGCTAACCTTTGTTCTCAGGGACTGTGCGGGTAAG ACAGCACGGGCCGTTTAGTTTGGATTATGGCTTGCTCATACTCAAAGCTT AGTGAAACGCCTCGGGGTGGGCTTTGGCCTGGCGTTCGTATCCCTATATT GTTTGTCCTGGTTGGCCGTTGGCTACGTTTCTCCTTGTTCGTATTTTCGA TTCGTCACCCCCGCCTTCGTGGCTCACACAAATGTCATCAATGACCATAA CCGTTCAACGAGTCGGCTCCGTTGAAAACCCCGCGCACGCCTTCCCGTTT TCGCCCGTCCCTATCCTCGCCTGGGGTTTACCGCTGCGCACGTCAACGTT CCGACCGACACAGCCATACTTCGAAATGCTCGACTGAGCGGCATCAGTGT CACCGTTCCGGAAACAGCATCGACGAGGTCACCACGAGAGAAAAAAACGA ATCACGGAGGAGGAGGACGAGAGAGAGAAGAACACGAGCGTGTACATGCT GCTACTGATGATGGTGGTGGTGTTTATGACGCTGGTGATGACGTTGAAGA AGCCGCGAGCGTTCACCGGGAAGGGAAACAACCTCCGTGGGAGCCGGAAG TACCGGGGCACACCCTGCGGCCGCCGCAGCAAGCTTCGAATCGAGCTTCT TCACTCGACCAGAGACCACCGACACTATCGCCTTCGTCTTTGTCCTCGTT CAATGTGCGGGAGGGACCCGCAAACGATGTTCTCCGGAGACCCCCCACTT CTGCATTTTCGGGAGTGGATGCAGCGGCGGCGGGAGATGGAAACGCCGGT AATTTTGGCGAAGCCGGGGGATCGACATCCAGCGGCGGCGGCGACGGCAA CGGCAACGGTGACGGCGGCAGCTGTAGCAGCAGCGGCGGCGACGGCGGTG GCGTCGGAGAATGCTGGGATTTTATCGACGTGGACCCATTTGGCAGCTGC ATGCCGTTCTTGGAGGCGGCCGTCGCGGGCGCTAAGGATGGAGGGGTGTT GGCGGTGGCGGCGACGGACCTGGTGGTGCTGTGCGGGAAGAAAGGAGGGC GGCAGGTGAGCTCGTAGACGACAGCTTTTGCTTCGTGCCTCGTGCGCTCA GATGTCTCGTGTGTTTGTGTGCATGTGACATGATCGCGGCTGGCTCACTT ACTTTGTCTCCGCACCTCGCAAGAAGTCACTTGCTGCTGATATTTTCGCG CACAAGAATGTGCAAGCTTGGGACACCTCTCGTTCGCTTGTGCGTGTGGG CTATTAGTATTTCGCCAGCTCCTGGCGCATATGTGCGCTTTGCTGCCACG GTCTTCCTGCCTCCCTCCCTCCTTCCTTGCCTGTCTATCCGTCTGTCTCT TTGTCTGTCTATCTATCTCTCGCTTCCTCGCTCTGTGACTCCACCTCTTC CTCTCTCTCTCTCTCTCTGTCTCTCTCCCTGTCTCCCTCTCTCGCTTTCT CTCCCTTTCTCTTTCTCTCGCCCTATCTCGCCATCTCTCGCCCTCCCTCA GCCTCGCTCGCCCTCTCTCACCCTCACTCGCTCTCTTTCACTCTCTCTAG CTTTGCCTCTCTCTATTCCTCTACCTCTACGCCTACCTCTACCTGCCTGT CCGCTCTTACACGCGCATGGTCACTTTCTCTTCACCCTCTCTCTTCCACC TTGTCCATTCCAATCCTTCCCCGCCCCTGTGCGGACACGGCGATGCACAC CTAAAAAAAAACAAAGTGTCGTCGGCAGTACCGGGCGACCGTGTCAGACA AGCCTTACGCGAGGGAGGCAGCGATGAGGGTTTTACTGCACCACCTGGAC GTGCTGGCTAGGCGTAGGAGCAAGCGCATCTCCCCTCTACTTTGCGTGGC CCTTGACTTCTACGTGAGTTCATGCTGCGCGGATGGTGGTGCTGGTGGCG GTGGTAGTGGTGGTGTCGCGTCTGTTTTTTTTTTCAGGAGAAGTTACCGT TGTTACTCGTGTTGTTGCTGTTTATCGCTCTAACTCGCAGCTCTTGCTGC TGCTGCTGTTGCTGTTGCTGTTAATGATGACAGGGCTGTCACGGTCAATG TCGTGGGTTCTCCAGTGCCACACCACGCACCCTTTCTCACGACTTTTTCC GTGTCCCCCATTCCTTCTTCCCCGCTCACGCGATCCCTCCAGGTTCGCCT GTTCGTGATGATCCTGCCGGTGCCGTCGACCGACGCAAAGGGAAACTCCG CGCTTGCCCTGCTCCCGTCGCGGCCACCGCCGGCGCCACCGCAGCAATAC CTCGTGGTCGAACAGCGGGTCGATACGGCGGAGTTCACTCTCCGCAGAGG CAACGGCTTTCGCGGAGGCGGCGGCATCCAGCCCCGCTTTGCACGTTGCC GCAGCTGCGCTAACTCCGGCAGTGGCGGAGACGGAGGCGGGGGCTTGGAC GGGAACGGGGACGACGGCCGCGGGAACGGCGACCGAGGGGGCCCGAGAAG CGGCGCCGAAGTGAAGGCGGGGTGGTACCAAACCGGCGAGGGGACCGGTC CTGGGCCGAACGCTCCGGAGTTGGAGAACGGCGTTGAGGTAGAGAACGGT TCTGAAATGAAGAAGGATCCCGAGACAGAGAACTGTCCGCTCGTGGAGAC GGGAGAGGGGGCACGGGAGGGATGGCTCGCGTTGGGCCCCTTTTGGGCCG GACCGCTGTTTCGGCCCGATTTCGTGGCCGATGTTCTCGCCGAGGTTTAT CGCTCCAGGGCCACCTCCGCGTCGACTTCGCCCGCAGCAGCGGCGAGCAC GGCAGGGACATCGGCGGCGGCAGCGAAAAGGACGGCAGCACGAGCAGGCG GGGCGCTTGCAACAACAGAGGCAGCGCCAGCAGCGAGAGCAACAGAACCC GCAATAGCAGCAGCAGCGACGGCAACTGCTTCGGCGACAAAAACGGCGGT GGAAAATGCAACGGCAGCAGCCCCTCCTTGTCCTCCCCCTCCCCTTTCCC CCCCCCCTCCCGCCCCTCCTGCTCCTCTTGCACCTTCTTCTGCCTCTCCT TCCGCTTCCTCTGGGAGAGAGACGGCTCTCCCGGCACCGCTGACCCTCAG CTCGCGGGGCCAGCTGGTGTACCTCCTCGAGGCCCTCGCCGCAGAGCTTG TGGACTGCCCGCTCTTCTACTCGTTGCCGGATGTTGCCGCTCGGATGGAT CGGGGCGGAGGCGGGGCTGCGGCCGAGGCCCCGGGGTTTTGTGGAAGAAT GCCGTCGCCAATACCTGACGTCGAGGCAGTGCGGGTGAGTGAAGGGAGAA CAGCAAGCCGTGGTTGCGAACAAAATTCCGCGGACGAAAGTTATGTAGCA CCACGTGGGTGATCAACGGTCCGTTGATTTTCCGACATGCTTGACGCGGA CAGCTACACCCGGAGGTAACAGAAGTCTACATAGTGTTCATCCGAAGCGT TGTTGGCTGTCGGTAAGGGGTGCAACGAAGCGACCCGTCGTGTTCAAGCG GTGGTATCTCGACACAATTTTTTTCGCGTTTCGTCTACTGTCCGAGGTGC GCACGCCGGTCTACGTGGGGGTTTCTGTGGCACGATTGCCGCCGGGGGTA TTGAAGCCGAAGCGTCGTGCCACTTTCCATTGTAATCAGGCGGCTGTGCT GCGCGTGTCGGCTGATGGTGACGAAATTGAGCGGCATTCTTGTGTACCGA CAGGTGGGCGAATGAAAGACTCGCGCCGAAACTTTTGAAATTTGGCCATT TCGCGGGGCTCCGCGAACCACTCCCCATAAAGGACGTTCATTCTCAGGTG GCACGGTTTGTCGTCCAACAGCAGCCGCTATGCCCGTTTCAGTGATGTTC GTGTCAGTGCTGTATTTTGTACCTGATCCGTTCCGAACTAGTAAGTTTTC CTGCTACTTTTCATCAAAAAACTTTTGAGTCTACGCCTACTTGTAGTCTT TCGCTTGACCTCCCACCAGACATGGAGTGCAGGCAAAAGCAACAGTAGTA GCGGTAGCCGCAACAGCAGCCGCGGCAGATACTGCAATTGCAGCAGCAGC AGCAGCAGCAGCAGCAACAGCGACCGGGATACATGAACGACCCATGACTC GTGCTCCCTTCCGCGGTATGCTTGGTTTACCGTTACCGTCACTTTCGAGC TTGCCCTTACCATCACCCTTGCCATCACCCTTGACACTCGCCCTCACCGT TGCCCTTGCCCTTACCCTTGCCCTTACCCTTGCCCTTACCCTTACCCCAG GAGCAGCTGAGATCCATGGACCTCGAGTGTTCCGGCTCCCACGCCGACCC GCGGGCCCTGAAGACACGAGCATCGCTGGCGGCTGTGGAAGAGGCCGTCC GTCGGGCGGCCACCGCCAAGGTGAGGGAGGGGTAGGGGTTCAATTCACGC ATGCCGTGTAGTCGTTAGGCCATACATCTCGCATCCCTACTAGGCCGGGA CGGAGCGATTTGCCGGGCTTTGGCCGGCCCAGGCTCTTGCATTCACCAAG CGCGACGCGCCGTGATGCATTTGGCGAGTCCCATGAAGGGTGGACAGCAT CCTACGAAGAATATCGGGCCAAAGGCTTACTGATCTTGCACACGGATGAC AGCCTCAACTGAGCTGCATTTTATTTTCTGGTATCGCCGCAGAGACAGCC ATTGGAATGCGCTAGGTCAAGTGCCTCGCGGGTGCATCACAATTTCAACA CTGCTGGGACGACCATGCCTCATGTGCGGAAACGAATTCTTCACCCCGCG CAGATGGTTTTATCCGACCTCAATGGTTACCGCCCAGAAAGAAAAGAAAG AAAGCGGTAGCCTGGTTGCCTTGTTCACGCGGTGAAGAGCATGTTTTACA GTGTCATCAACCCGGCGCCAGCCCAACCCCTTGCCGCGCCATCGGGCCGA TGCATCTCTTTCGAGAGCGTAGGGGTAGTGAAAGGGGGGGGGGATGGAGG AAGAGAGGGGGGGAGGGTGGAGAAGGGGGGCAGAGATGAGGGGCAGGGGA TGGGGGAAGTGAGGTTGGGGAAGGATGGAGGGAGGGGCGGAGAGAGAGGG AGAGCGAGAGCGACCGAGCCGTAGACCCGAGACAGGTCGAGAGACAAATC GGCACGGGCGAGACAGAGAGAAACCGACAGGTTGGCAGAAGAGAGATAAC TGCACACGCGCAAGATGTGGAGCAGCGTCTTTCATGCAAGACGAAGACAG CGTGTTGTGATAATGCGCCATCACCTCGTAAACCAGTCGGATTTTTTGTC ACCGCCCTTTCCTTTTTCGGCTCAAGCGGTTCTGGAAGATGCCGCAACTC TCTTCCTCTCTCGACGTCCCCCTCCCCGTCCCTCCAAATGCCTTCTGTCT CGACTTGCTCAACCCTTCGCCCAGGCGGTCTCTGGCGCGGGAGGCGGCCC GCAGCAGCAACAACAGCGACCGCCTGGCTCTCTGCAGGCGACACGCGCTC AAGTAGCAGCACAAGCTGCAGCAAGAGGAAGAAATGCGCAAACGGACGAG CCGAAAGCAGCAGAGATAGGCATTCCGCGGCAGGGACTGGGAAAGAGGGA AGACAGCGGCAACGGCAGTGAGGGCAAGGGCGGTGGCGGTGGCGACGGTG GCGGGAGCGGCAGCGGCAGCGGCGACATCTGGAGAACCGCAACGGTTCAA GCGGCAGCGGCGGCGAAACCGGCCTCGAAACCGGCGCCAGCAGGGTCGGC GGGACCGCGTGTGCCTGTCGGACTTGTCGAGCTTGATCCCGTATGCCAGG TACAGTTGTCAGATCTGGACCCCCGACCGTATCATGCGAAATGTCCGCAT GTTGCGTTTGACCAAGGTTTGGTGGCATCAAGATTGGTGCGCCGCAATTC CGACGCGTCGGCAAGTGCCAGCGATGCATCGCCCGTCCCCATGCTCCACT CGCATCCACTGGAATTTTAAATCGCCTCCTACGTGTCTGTTGTCCGGGCT CTTTTATCAATCAAGGGCGAACGACGAGGATTTCCGCACCTCACGATGGC GTCGCTGCTAGGTTTCGTCGAGGAGTCCTTGGCCTCTTCGACGAGCGATG ATGCTGTGGACGGCAGCAGCGGGGCAACCAACAGCCGCAGAAGCTCCGGT AACGGCAACGGAAGCAGCGGCGGCGAGATCAGTACCAGAAGCAGTGAAGA GGCCAGCAGCGACCACACAAGCAAGGGCAGGAGCGGTACCGACAGGAGCG GCGGGACCCGCAGAGTAACCCAGGAAGTCAGAGGAAACGACGACGACGTA GAAGACGACGACGACGGCGACGACGACGGTAACAACACAATCGGGAACAG CGGGAGTGGTGCCGGCGACAACGCCGATACCCCCCGTAAACGTCCCCGCG ATGATGTTGCCGCTGCTGTTGGTGATGCCGTCGGGGTTGATGTTGCCGCC AGCCCTGCCGGCGCTGTTCCACCGCCGTCGAACGGGGCTTTCTTCTGCTT CGTCCGCAGCGGCAGCCGCCATCGCCGCCGCCAAGGAGGGAGGGGCGGTG GGATCGGGTGCGGCGATGACGACGACGCTACCGGCCAAGCCGAGAGCGCG GTGGAGGTGTGTTGTCCACACACCGACCGGCAGTAGCGGATGGTTTCTGT TCTCTCCCTCTCTCCCTCTCTCCCTCTCTCCCTCTCTCCCTCTCTGTTTC TCTTTTCCCACACCCTTAGCTTTTTCCTCCATATATCTGTCGCGTTCTGT CTCTCGCTATCTTCTCAACAATTGTCAATGAAAGTGAATAAATTCGTTTC TATTGGTCCGCTCTAATATCGGTGATTCTGAACACCTCGCTCAGCATGAA ATCACTGATAGCTCCCAATATTGGCAATAGGCTCGAGAAGCCAGCTCGAA GGCACTGTTTTTTACTGCTGCTGCTGCTCTGCTCCCTCGCTCGCAACGCG CGTGTTTTTCGGCCCTGCGCTTTTCATGTTTCTAGCAACACCTTCGACCC AAGGGCAGCACACGGAGAGTTGATCCGTTCCCTGTAGCCTCAGCACAGGA CAGCGAGCGGTCAATTTTTACGCGATCACGGGAGCGTCGGAAATTTTCGC TTGCTTTGTCCTGCACCGCGGCCGCACTTTTCTTTCGTCAGCTGCTACCT CGCTCGCTAGGAACATGTTGGAGTCGGAAAAATTCTCTCCGTGCATCGGA AATGAGCGCCTACGGATAGACGGTTGTCGGCGTATAGTCGTCGGCGTAAT TCACCGCCGTTGCAGTGTGTATTCGCGTATTTTTCAGTCGCCCGCTTCGT TTTTCCTTGCTATAAGCCAAGCACGTCCGTCTGGTCTCTTTCTCCCTGTC GGATTTTCCCTGCCGGTTCTGTTCTTTTACACGCAGCGGTTGCTGTGCTC ACGCTGGCCGAGCAGGATTCGCTTCTTCGACTCGCTGGTGGAAGCCTGCT CCGTCGCCGCCGCCGCTTGCGGGCCAACATCGTCACTGCCGGCGCAGGTG TTTGCCGCAGGGGGGAGCGGCTTGAACAGGAGAGAGAGGCGGGGCGTGAG GAGGAGCAATGAGAGAGGTGCAGCGGCTGCAAGGGGGTGCGGAGGCGGAG GAGGAGGAGGAGGAGGAGGAGGAGGAGGAGGAGGAGGAGGGGGAGGAGGG GCAGCGGCAGCTGCCGAGGAAAGGGGTGGGGAGGAGGGAAGTACCACGGC GGTATCGGGAGAGCGCCTGGGGCGAGGCGGGTGGGGACGGGGACGGGAGG AGGGCAGGGTAGAATCGGTGGGGTTGAGGATGACTTCGCCAGCGGCGGCG GCGGCGACGGCGGCAGCAGTGGTGGCGACCGTGGTAGTGCTAGGGGGCAC GCACGATGCGGGCCCGATGGGTCTGCGCCTGGCGGCGAGCGGGATGGCCG TCGTCGGGGTCATAGGTGGGCAAAGATGAAGGCGGGAGGGGGGGGGGGGG AAGCTCCAGAAAGGTATCAACAAGAGATGGGCAAGTTGGAGATTGGCAAG TTGGTTGACCATGCTTTTGGGAGCATGAATGCGAGCTTTGGTGTAGGAGA TGGGAGAGCAAAGGATGGCCTCGTGGGGCGGGCGGAAGGAGGCTGTCGAT CCAAGGCAGACAAGCTGACTGACGACGTCCTCGGATGTACAGTCTTTTCC GTTCAAGTGTTGTATGCGCGGGGTAGTGTCCTTCAGATTCGAAGAATGAT GACTCACAATGCCGTCTGCTTCAGGAAATATGGGTGTCCGTAATCATTGA AGTCATTGAAGTGGGGACGACTGTGCGCAGAAGATCTCACTTTCTTCATG GCTCTACCTCGCGAGCTTTGTGGACGACCGCTTTTCCTTCCTTCCCTCTT CTCGTGCCGTTGCTATCGGATCCCGCCCCATGCTCTGTGGACTTTCACAA TCGGATCGATTTTACCGCTCGTTTGTTGTGGAACCCGCCGATAGTCTCTT TTTCCGCGTCAATGAATAAACTCTAGAACCCGCTCGCCATTGGATGCCTC GACAAACGCACGAAGGCTCCCCTTACCCCCAGCCTTCACCATGAGAAAGG CTTTCTTTTTCGATTTATTCAACGTGGTTATTGCACAAACGATGGATGTT GGCGGAAACTCGGTAGGAAGCAGGACCTACGCATCGGCTCGAAAACAGAT GACGAGTGTGCTGGGGTCAAAACGGCTCACCCAAGCTACACATGAGTAAA TCTCCTCCCTAGCCGACTCTCTCTGCCTGCGTGGATTTCTATTCTACCGT GCCGTGAGCTCCCGTGACGGCGGTCCGCCAGCCAGCTTCAATCAAGCAGG TCCTTGTTGGTTATGGCTGACTGTTGTCGTCGAGCTTTTATTCGTTGATC ACAGACTCTCAGTCCCGCTAAACGATTGTACCCATTCCTGCGTTGGCTGT CGCTTTGGTCGCGGTTAGTGTTGTCTGCAGCGCCCGCCGGTCTCCTCCCT CCGGCCGGCGGCGCAGATTCTCGAGCATGAGGCCACGGTCTAGAGCACAA AATCGTTCCGTTTCCGCTGCTGCCGTCGTCGTCGTCCCCGCTGCTGTTGA TCCTGCTGCTTACACCCTGTCAATGGATGCTCCCTCTCCCTGTGGTGGTG ATTTGCGACAGCGCCCGACGGCCGTCTCCCCACGGTGCAGGGCCGCGGCC GTGCGCACGCGATCAGGTGCACCGGCAGGGGAGTCTCCGTGGTCTCGCTT AACGTCGTGGCCGGCGCGTTGCCAGCCTCAGCCATGTCTGATGGCGAGAA AGCTGACGACACCGACGGTCAAAATACCGCCGGCGGCGGCCGCGGCCATG CGGACAGCGCAAGCGAGAGTGGCAGAGATGAAAGGGAGAGTACGGGCAGC GGCAGCGAGAAGAACAAGAGCAACAACAAGCACCACGACAACGAGGTTTG CGCGGACGACGACGGCGACGAGAAGGGCGGCGGGGGCGGCGGGGGTGACT GCAACGACGGCGGCGGTGACGGCAGCACTAGCCCCGGAACCAACCAACAG CACGTGAACTCAAGTCCGACGTCGACGACGTCGCCAACGCCAAGAACCTC ACAACCACCCACAAGACGGCCACCGCAAGTAGCGGCAACACCCACGACAG CAACATCAGCATCGAAACCAGCGACACGACCTCGACCAGCAGTGACGCGA ACGACAGCAACGACGACGGCAGCGGCAACAGCGACAATAGTACCGACACC GACGCCGGGAGGAGTCAAGAGGAATCTGGCATCAAGCTTGGCTCGGGCGA ACGGCGGTCGCTCGGCGGAGCGGGATGGAGGGAGTGTGAGGAGGAAGCGT CCCCGGTTGGTGTTCGATGACGAAGCCGCCCAGGCAAGTGGGAAGTGGTG TGGTGACGCGGCATGTAGAATCTGTTGGGAGCAGGCGATGCGGCGAGAGT GGAGGGAAGCAGAGAGGGGAGGAGGGGGGGAGGGAGGGCGGGAAGGAGGG AGGAAGGAGAAAAAAAGAAGAGTGAGGGAAACAGCAGATGAAGCGGGGAC GGCGGCCGGGGGACGGCGGCCGGGGACGGCGGCCGGGGGATGGCGGAGGT TGGGGTTGCAGAGCGAGACTGACCTCTACCACATTATACCACAAGCGTGT TTCGCCTGCCACCATTCACCGCAATTTCCCACAATCGTCGATGGCCTCGA AGTCGCTAGTGGCGGAAAAAGAAAAAGCAAGCATGGCGGCCATTTCATGA CCGCCAACCTTGCTCGAGCCTTTCGTGTCTCGTGTACACACAGCGCGCGC ATCTGCAACTGAAGATGGCTCCCGGCCTTCTCGCTGCCCGAACGACTGTG GCTCCTGTGCTCCTCAACGGGACGCTGCAGGATCGTTTGCCAGGGATGCT GTTTGATTGTGTGGTCTGTTTCCTTCGCGCATCTTGTGTAATTGGGGAGT TTTGTTGTTCCATTTCTCTGTTGGTCACCAACGACAGCTGCCGCCAAGGT TTTAGCGAACACGCGCTCTTCGTGCGGTATCTTTAGTGTTGCCTCATTTT TCGAGGCCCGAGAGATTCTTGGACGGCCATGTCCCGACGTGGACGGGTGT CGCGTTTGTTTTCTTCCGCTCGGCAGGCGGTCCTCCTCGACCGCAGCAAA GCAGCGACGGCGGCAGCATTAGTAACGGCTGCGGCGAAATACGGGGATAA CGCCGGGAGCTGGGGCGGGAAACGGAAGCGGGCGTCCACAAAGGGGCCGC TTAAGGTCGACGACGAGCCCCGTCGCCGCTCTGCAGCAGGAGGCCGACGA GGCGGCCTTCCGCAGCGGCCGGCGCATGCCGTTACGGTGGAAGGAGGGGG GTCGGCATCGATCTCGGGCTGCGACATCACCAGGCAAGTTCAAAATTAAG TCAAGCAAAATCTAAAACCATTTTTGTAAGGCGTCTTTTCCATTCGTTGG CGTTTGAATCACGGTCGTATTCGTTATAAGAAGCGAAAGTTGTTGGCTCG CATTGTTGTGCTTTCAACGAAGATAAGATAGAAATATAAAGCTTGGTTCT TGCCTTCCGACGGCCGCCTGCTCCACACGCAGGGGCGATCGTTTTACTTG AAGGAGGAGTGTTTGCTTTCTACCACGACATCGGACTTTTGACTACGGAA TCGATCCGGTTGGATGGTGATGGCGGTGGCGGTGTCCTGGTTGCTAGCTG TCGGCTTCATTGATTGTGTCCCCGCGGCGCTGAAAACACGGCCACTCAAA TGCCCGTGTTGGTCTCGAGCACTGCCACTGGGCAGAGCTGACCTAGCGCA TCACTCTACTTTGTTTTTTCGGATTTTCGTTAGTACACAGACGTGAAAAC ATGTACCCAGGACAAGCAAGCTTTATTTGCCGCGTTCGTACGCTGTATTT CGGACCATTCCTCTCCCCTCCCCAACCCGCCCCTCCCGCCCGTTCCCCCA GTCCTAGCCCCTGCGCCCGCCGCACCCTCTTAGCGATTGTTCAAGAAAAC GAACGATGGCAAGACCAAAACTGACCCTCATCCCAACCCAAACTCAAACA CAGCCCCAACCTTCCCCTCCCCTCCCGTGGAACGATTGGCCATCGGTGAT CGATCCTGTGGGAACAATGCTCGTCCTCTCGAGGACGCGTGGTCAATGGT CTAACAACTAAGGCATGCAAATCATGAGTCCCCCCCCCCCTCCCGTTGGC CCCTTCAGCCACCTCCCGTTTGCTTGCGTGTGCGCGGCCGGTGGGGGCAC CGTGGTGTCATTAAACGGCACCCGCCTTCACGACGGATCCGGCATGGGGC TGCTGGCATGCGGCAAGGCGAAGGTGTCCGCCGACGAATGCGACTTTGCC GGGATGGGTGCCGCAGGTATGAAATAGCGAGCGGGGATTAGAGCGAAAAT GAAGACGAGGGAAAGGGACAGAGAGAGGGAGAGCACGTGGGAACGGGGGA TAGGGGTCGCAGCGCGCTTGCTCTTGGGTTTCCGACGCACTTTCTTCAGT CTCACGCGATTTATCCCACCGGCATAGTTTTTTTTCTTTATTTTACCATT TGCCCGCCGACAATATATGGAACCATGCACATGCACAGAAAGCAATATTC ATACATTAAAACCCTCCTTGAAGTATTTTGACTTGCTATCCTCTTCACCA TCGGTAGCGGAGTTGCTGGCGGATGTCCCAGCGAAAACTTGCCGGTCGAT GGCAAAACGTCGCTCGAACACAACTAACAGGTCAGGGTTTACCCGACCGA GAGCGCCGGTAGGGTTCTCTGACGTGTTTTGCGTTCTTTGTCTTGTACGT TGGTTCCGCTCACCCGAGATTGCCTTTGCTCGCTCGCAAGCATGAGAGCG TAGACCAATCGAGGCATGCTTCATTTTCGCATTTACGACATATCCTTACT TGCAAGACACATGACTCCAGCGCTTGGAGGTTTTCTAGCCGCAAAGGCCG GCGGCAAATGAAGAGACGTCCGTTGGTGCCAGCGGGGCGGGGCTGTTGAA CGGGAAGTATCGACAGAGAATGCGTGCGTGTGTGCTAGCTTTCGTGTTTT GTTGATAAGAGCTCGAGCCACAAATGATTCGCCTCACCACAACAAAGTGC GATGGGGCGGGATGTCAATTGCATGTAAATTCGTGTGGGTACAAGTGCGT GTGAGCGAGCTCACGAAAATGTGACGGAGACAATCCAACAGTCACTTTTT GTAGCCCAATGCTGTACTTGCTGCTGCAGGTATGATAATGTTAATTTTTC GTGTTTTTTCTTCGGTATGGACGTTTCGGGTGTCTCTGTGTGTCTTTGTA AATATCCGCCCGTCTTCCTGCCTGTCTGCCTGCCTGCTTGTCGGCGTTAG CATTATTCCGGAGTATCTCCCGTTCTGTTCGCCTGCTGGTGTGTCTGCCT ACTTCTCTGTGTCTGTCTGTGCCTGTGCCCGGCTCTCGTGGTGGCCTCCT CACGCCACACGCCAACCGACACTAGGCGTCGAGGCGAGGGGCGGCTCCTA TGCCGACCTCACGCGATGCAGCGTCTGCGGGTGCGGAAAGAGCGGCGTGT TCGTCCACAGCTTCGGCGGGGCCAGGCTGAGCCGGTGCCGTGTCGCCGGG AACCACTTCGCCGGCGTCGAGGCGATGAAGTAAGCAGGTGTTGCGTCAAA GCAGGTCTGTGTGGCGGCAGCGTTGTGCCCTTGCCATTGTTGGAAGCCCG ATGCCCCGTGAGCAATCAAGCGCAGAGTGAGCGATGCTTTTGGATGTTGC ACCCTCCTCGCTTCCTCCTCCGCCCGACCCAGCGCCCCTCCCGGGCCCCT ACTCGCGGCAAGTAAATCGCCGTGGAAGTCTGTCTCAACACCACGTCCTC GGAAACTTAAAGGGCGGAAGATCGTTGATTTCAACACAGCAGGAAAGGTC TAACTTTCACTTCCATTTTCACCTTGTTTGCTGCCCTATAACTTCATGAC TTGAGCTGTTTTGCCCCGCATTCAATTCTTGAGCGGTGGCGCTCGTGGGA GTCTCCCTCCTGTTTGTTTGTTTGCGTGTGTATTTCATAGGTGTGTGTTT CACACTTCGTAGTATTTTTTCTGGTGCGCATGTCCTCGCCCCCTTGTCAT TTGTTGCCTCCTTCCTGTTCTATTTGTTCTTCGTCCCTTCCCTTCCCTTC CTCCGTCTCGACATTTGTTTCCGTTCTGGAGGAACGCGACTGTCACCCTC GAGGCGTGCAGTATCGTCGACAGCAGGTACGTGCAACGGACGTGTTTTCT TCTTGTTTTCTTGCTTGATTTTCTGCAACGCAAGCAGCGTGTCCGGTTAT CTGCCCCGCCACCAATAGACCATGGGGTTCCCACTGGTAAACCTATAAGT TGACCTACACGCACAAGACATTTTGGAGGGTGGTGGTGGTGATGGTGGGG GGTACTATCGGCCCAGGTGGTAGCGAAGGGTTTTGGGGATTCCAGTTAGT CTCGGCACTTCGTGGGCGCCGCTAACTCCGTTGTCCCGTCCGTGCTGTAT ATGTTGCGTGGCCGGGCTGCAAATAGTGCAGGCGTCCTCTCGCCCGCCTG AAAAATACTGGCACTTTTCAAGCCACCGCAAACGTAGGCAACCGGCGCCA TTACTGGCGACACGATTAAGGCCACCGGCACTACCGATTCCACCACCACT TCTCAGAAATAGGAAGCATGTGGAAGGCTTAACGTAGGCGTAAGATTTTT TCTCGAGACGTCTTGAGTGAAACAACTTAATCTTGAGTGGCACCATTCAA TCGGCAAAGCTGGCAATAAAGGGGACCCTTGTGTGCCATTCTTGCGTACG TCGAATCCATGGTGGGCGGGTCTCTCATTTTTATTTTACAACTGTTGTTT GTGTCAAAAGCGTCTAAGATGAAACAAACCCATGAACCGTTTCCCCGCGC ACCCTGGCGTTTTGCCGGTGCTGATGGACGGCATTCTTTGCCGATATTGA AACTACCGCCGGGTGGGTGTGTTAGGTGGGAGAAAATGGATTAAATATCC GGCACCGCCCCGTACATGCATCGATGCACACATAATTCCGTTCGATGAAG GGCTCCCTGAGTCCTTTCCAATTGGGTTTTTGATTCTTTTGTTTGCTGTT GTTTGTCCTCTTTCCTTGTGCCTTCAAAACAGGCGCGGGGGTGTCCTCGC CCATGTTGCCTCCAAAGTAACGCTCAGGGATTGCAATGTTGAGGGCAGCT GCCTCGCCGGGATCGACGTTCGAACGGGGGCGGAGGCGGCCGTGGAGTCT TGCTGCTTTCAGGGAGGCAAGACTAGCGGCATGTGAGTTTGAAAACGGCG AGGGGGGGGTGTACTCATGAAAACGCATGCCGTAGTCGGTCAGACCATAG ACCTCGCGTCACCTACAATGCCGGGACGGAGCGATACGCCGGGTTTTCGC CGGCCAGGCGCGTTTCACAAGGATAAGCCAGCATCTGGCCATCATCCTTG TGTTTGCTGAGCCAAACCGGGTCTGCCATGGGTTGATTGGGCATCCGGTA AACCAAACGTTTCACATTCGGCAGGCTCGACTATTCTTCAAGTACCGCAA GGGACTTCGATCTTTGCGCGCACTTATCATATTGGCGCGCCACACACAGC GAACACGTCGCTTCGTGTGTGATACACTTGGAGAATAATCTGCTTATACA CCCCACAGGTGGATACTCCGGAGTATTTCATAAGTATGATTGCTCTAGGG CGTTCCAACTATCCAGCGTTCAGCGGACATCCTATAGGGTGTGATCTCTA GGACCGGAGTCCACAAGCTCACAGGATATACCGCATGAACAACCCCCATG CCCTATACAGCAGTTTTACTGCTCCATGCCACAAGAGCCAACCCTACCTC GACCAATCCACCCTCGAAACCTCACAGGCTGGGGGATTATGGGTCTCAGT TTTGAGGGGGGCGAGGGTgggggggGGGGGGCGTACTCATGTTTTGCATG CCTTAGTTGTTAGACCATTGACCACGCGTCCTCGAGAGGACGGAGCATTG TTCCCGCAGGATCGACCACCGATGGCCAATCGTTTCTTCCTACTTTGCCA AAGGTGGCTCAAAAATGTTTTCCCTAACCTGTCTACTTTATACGTGTCCT TCCTGGGCCACATCTTACACCCGAGTACCGCTACCGTCTTCTCCTCTTTG TTCCATGCCTCAAACTTCTCTCTATACCGACTGTCTACTTTTTCCAGCTC AACCATGTACCCTTCTCTCTCCTGATCGTACAACGGGCATTCCGCAACAA CATGTACCCGGTCTTCGCATTCGGCGCCGCAGTCACATTTGAACATGTCT TCGTCGTCGTCTACCTTCCTAAACCTCCTTGTACGTTCCCGTAGGTCAAT GTCGCCCGTCCTAAATTTGACCTTCATCTTTGTCCCTTCATCCAATGGTC CGTTCAGGTACTCCTTGAACCCTATTCCTTCGTTCAGCCTTCCGTACACT TCTAGAACCTCCTTTTCCTTGGTCTCTTTCCGCAAGCTCTGGTCCTCTCT ATTTTCGAAGGCTTCTGAGATGCTCTTCTTGTACCCTTCTAAGCTTTCCG CTCCCGTCGTCTCCCGTTCGTCATTATCTAACCCACTCCACACTCCCTGT ACCACCTTAGCCCACTCAATGGGTTGGGTGGGGGGGATAGAGAAAGGCGA GGCAGAGAGGGAGAGGGAGTGACAGGAAGGGAAGGGAGAGAAAGAGCGAG AGTAACCAAGATCTTGCAGACACGTATCTGGCTGTTTTCGTAGCTTGTCA TGGCGAGAAGCGCGTGCAGTCGGTGCGCGCGGATGATCACGAGGCGAGGA AGGGAGGGGTCGGAGGGCAGGAGAGGGAAGGGCGCAGCCACGCAATGATA AAACCTGTCATTCCCATTTCGACGGACGATGTGCATTCTTACATTTGCCG ATTGCGTGCGTTCGTGGCGTTCTGGTTTGTTTTTTCGCGTCACTCCCTCC CTCCCAAAATGAAAGCTACGTCTCAGCAGGGGGCCGTGCCAGCGTATGCT CGACGCTCATCAAGTCCAATCGCCTGGCAGCCGTCGAGGTGAGAGCTCCT GACGGGCACCGCGACAGCTGCAAAGGCAACGGCGGCGGCGGCGGCGGCGC TGGTAGCGGTCATCAGCAGCGAACGGCGCGACTCGACATCCCGCCGCCGA ATGGACGAGAACGAAGACGGGATGGAGGGGAGGATGAAGGACGGTATGGA GGAGAACGCCGGGCCGCCATTACTGCTGTGACAACACCGGCTGCTGCTGC TGCTGCTGCTGCTGCTGTCGAAACCGTAGTGGACCAGTTCCATGGCGACG GCGTCAGCAGCAGCGAGAATGTTGTGGATGGCGTTGCCGGTGGGTGGGGC TGCAATGATGCCGCCGCTGCTGCTATCACTGCTTCTTCCGGTGCCGCTTT TAGTGCTGCTTCAGCTGGTGCTGCCGCCGCCGCCGCTGCCGTCAGAGCCA GCGAGAAGAGCGCGGGTCACAGCAAAAGCCCCTGGGAGTGCGGCTGCTGC CACTGCTGCTCCGTCTCGTGGGGGCCAGGGAACGTGATGGAAGACAACGG GCTGGACGGCGTCATGCGGACGGGGAGGGATCCTCCTGCACCCATGGGCC CACTCCCCGACGTCCTTCCCGCCGTTGCTGGCGCGCACAACGCTATTGTG GCACACAGCTTTCATTCAAAGCACGCCGTGTAGCATGCTTTTCTTTCCGT TTATCGGCTTTCTTTTCCGTTGAAGTCTGCGCTGAAAGTCCGTCGGTACA CGTGCATGACAAGAGTGTGGCGGAGGAGCGCACAGCCTTCCCGATGCGTT GTTTGCCGCAGAGCTCCTCTCGGGGCATGGTGAGTCCCTCTTGTTTTCGT GGAAAGCAAGAGGGCGCTCGCCGTTGCTTTTTGCCCCCGACAGAAGACTC CAACCCACCGCCGTGTGAACAAAAAAAAACGGTTTCAGCTAC
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Coding sequence (CDS) from alignment at P-fluviatile_contig12:2384241..2403782+

>mRNA_P-fluviatile_contig12.1500.1 ID=mRNA_P-fluviatile_contig12.1500.1|Name=mRNA_P-fluviatile_contig12.1500.1|organism=Porterinema fluviatile SAG_2381|type=CDS|length=11442bp|location=Sequence derived from alignment at P-fluviatile_contig12:2384241..2403782+ (Porterinema fluviatile SAG_2381)
ATGGCCTACATCGGGGAGAAGTCCATCATTGAAGATGGCCTACATCGGGG
AGAAGTCCATCATTGAAGGTCGTGCGGTGCTGTCGGTGACCCCAGGCGTC
TTTTACAGCGAGCATCAGGTCGTGCGGTGCTGTCGGTGACCCCAGGCGTC
TTTTACAGCGAGCATCAGGTTTTCCAGAGAGACCTGTCGGTAGCAGCCCT
CCGGGTCTTTCGGCGGCTCAAGTTGAACACTCCAGCCCCGCAACAGCAGC
AGCAGCAGCGACACACCGGCGACAGCAGCAGCAACAGCAGCAGCACGCCA
GGAGTTCCATTGGTTGGGAGGCAGCTTATCCAAGGGAAGGAAAACGGGTG
TGCCGACGGACAACAACGACAACACGAAGAGGGCGGACACGATGGTGCGG
TGGGGGTGGCGCCAGCACACGTCTTGAAAGTTTGGTTTTCCAGAGAGACC
TGTCGGTAGCAGCCCTCCGGGTCTTTCGGCGGCTCAAGTTGAACACTCCA
GCCCCGCAACAGCAGCAGCAGCAGCGACACACCGGCGACAGCAGCAGCAA
CAGCAGCAGCACGCCAGGAGTTCCATTGGTTGGGAGGCAGCTTATCCAAG
GGAAGGAAAACGGGTGTGCCGACGGACAACAACGACAACACGAAGAGGGC
GGACACGATGGTGCGGTGGGGGTGGCGCCAGCACACGTCTTGAAAGTTTG
CGATGCGTTGGCAGGGGGCGGCGTGAGGGCCATTCGGTATGCGCTTGAGG
CTGGTGGGCCCGTCGCGGTGGTGGCCAACGATCAATCCAGGGAGGCCTGC
GAAGCGATGCGTTGGCAGGGGGCGGCGTGAGGGCCATTCGGTATGCGCTT
GAGGCTGGTGGGCCCGTCGCGGTGGTGGCCAACGATCAATCCAGGGAGGC
CTGCGAAGCCATACTTCGAAATGCTCGACTGAGCGGCATCAGTGTCACCG
TTCCGGAAACAGCATCGACGAGGTCACCACGAGAGAAAAAAACGAATCAC
GGAGGAGGAGGACGAGAGAGAGAAGAACACGAGCGTGTACATGCTGCTAC
TGATGATGGTGGTGGTGTTTATGACGCTGGTGATGACGTTGAAGAAGCCG
CGAGCGTTCACCGGGAAGGGAAACAACCTCCGTGGGAGCCGGAAGTACCG
GGGCACACCCTGCGGCCGCCGCAGCAAGCTTCGAATCGAGCTTCTTCACT
CGACCAGAGACCACCGACACTATCGCCTTCGTCTTTGTCCTCGTTCAATG
TGCGGGAGGGACCCGCAAACGATGTTCTCCGGAGACCCCCCACTTCTGCA
TTTTCGGGAGTGGATGCAGCGGCGGCGGGAGATGGAAACGCCGGTAATTT
TGGCGAAGCCGGGGGATCGACATCCAGCGGCGGCGGCGACGGCAACGGCA
ACGGTGACGGCGGCAGCTGTAGCAGCAGCGGCGGCGACGGCGGTGGCGTC
GGAGAATGCTGGGATTTTATCGACGTGGACCCATTTGGCAGCTGCATGCC
GTTCTTGGAGGCGGCCGTCGCGGGCGCTAAGGATGGAGGGGTGTTGGCGG
TGGCGGCGACGGACCTGGTGGTGCTGTGCGGGAAGAAAGGAGGGCGGCAG
CCATACTTCGAAATGCTCGACTGAGCGGCATCAGTGTCACCGTTCCGGAA
ACAGCATCGACGAGGTCACCACGAGAGAAAAAAACGAATCACGGAGGAGG
AGGACGAGAGAGAGAAGAACACGAGCGTGTACATGCTGCTACTGATGATG
GTGGTGGTGTTTATGACGCTGGTGATGACGTTGAAGAAGCCGCGAGCGTT
CACCGGGAAGGGAAACAACCTCCGTGGGAGCCGGAAGTACCGGGGCACAC
CCTGCGGCCGCCGCAGCAAGCTTCGAATCGAGCTTCTTCACTCGACCAGA
GACCACCGACACTATCGCCTTCGTCTTTGTCCTCGTTCAATGTGCGGGAG
GGACCCGCAAACGATGTTCTCCGGAGACCCCCCACTTCTGCATTTTCGGG
AGTGGATGCAGCGGCGGCGGGAGATGGAAACGCCGGTAATTTTGGCGAAG
CCGGGGGATCGACATCCAGCGGCGGCGGCGACGGCAACGGCAACGGTGAC
GGCGGCAGCTGTAGCAGCAGCGGCGGCGACGGCGGTGGCGTCGGAGAATG
CTGGGATTTTATCGACGTGGACCCATTTGGCAGCTGCATGCCGTTCTTGG
AGGCGGCCGTCGCGGGCGCTAAGGATGGAGGGGTGTTGGCGGTGGCGGCG
ACGGACCTGGTGGTGCTGTGCGGGAAGAAAGGAGGGCGGCAGTGTCGTCG
GCAGTACCGGGCGACCGTGTCAGACAAGCCTTACGCGAGGGAGGCAGCGA
TGAGGGTTTTACTGCACCACCTGGACGTGCTGGCTAGGCGTAGGAGCAAG
CGCATCTCCCCTCTACTTTGCGTGGCCCTTGACTTCTACTGTCGTCGGCA
GTACCGGGCGACCGTGTCAGACAAGCCTTACGCGAGGGAGGCAGCGATGA
GGGTTTTACTGCACCACCTGGACGTGCTGGCTAGGCGTAGGAGCAAGCGC
ATCTCCCCTCTACTTTGCGTGGCCCTTGACTTCTACGTTCGCCTGTTCGT
GATGATCCTGCCGGTGCCGTCGACCGACGCAAAGGGAAACTCCGCGCTTG
CCCTGCTCCCGTCGCGGCCACCGCCGGCGCCACCGCAGCAATACCTCGTG
GTCGAACAGCGGGTCGATACGGCGGAGTTCACTCTCCGCAGAGGCAACGG
CTTTCGCGGAGGCGGCGGCATCCAGCCCCGCTTTGCACGTTGCCGCAGCT
GCGCTAACTCCGGCAGTGGCGGAGACGGAGGCGGGGGCTTGGACGGGAAC
GGGGACGACGGCCGCGGGAACGGCGACCGAGGGGGCCCGAGAAGCGGCGC
CGAAGTGAAGGCGGGGTGGTACCAAACCGGCGAGGGGACCGGTCCTGGGC
CGAACGCTCCGGAGTTGGAGAACGGCGTTGAGGTAGAGAACGGTTCGCCT
GTTCGTGATGATCCTGCCGGTGCCGTCGACCGACGCAAAGGGAAACTCCG
CGCTTGCCCTGCTCCCGTCGCGGCCACCGCCGGCGCCACCGCAGCAATAC
CTCGTGGTCGAACAGCGGGTCGATACGGCGGAGTTCACTCTCCGCAGAGG
CAACGGCTTTCGCGGAGGCGGCGGCATCCAGCCCCGCTTTGCACGTTGCC
GCAGCTGCGCTAACTCCGGCAGTGGCGGAGACGGAGGCGGGGGCTTGGAC
GGGAACGGGGACGACGGCCGCGGGAACGGCGACCGAGGGGGCCCGAGAAG
CGGCGCCGAAGTGAAGGCGGGGTGGTACCAAACCGGCGAGGGGACCGGTC
CTGGGCCGAACGCTCCGGAGTTGGAGAACGGCGTTGAGGTAGAGAACGGA
TCCCGAGACAGAGAACTGTCCGCTCGTGGAGACGGGAGAGGGGGCACGGG
AGGGATGGCTCGCGTTGGGCCCCTTTTGGGCCGGACCGCTGTTTCGGCCC
GATTTCGTGGCCGATGTTCTCGCCGAGGATCCCGAGACAGAGAACTGTCC
GCTCGTGGAGACGGGAGAGGGGGCACGGGAGGGATGGCTCGCGTTGGGCC
CCTTTTGGGCCGGACCGCTGTTTCGGCCCGATTTCGTGGCCGATGTTCTC
GCCGAGGCGGGGCTGCGGCCGAGGCCCCGGGGTTTTGTGGAAGAATGCCG
TCGCCAATACCTGACGTCGAGGCAGTGCGGGCGGGGCTGCGGCCGAGGCC
CCGGGGTTTTGTGGAAGAATGCCGTCGCCAATACCTGACGTCGAGGCAGT
GCGGGAGCAGCTGAGATCCATGGACCTCGAGTGTTCCGGCTCCCACGCCG
ACCCGCGGGCCCTGAAGACACGAGCATCGCTGGCGGCTGTGGAAGAGGCC
GTCCGTCGGGCGGCCACCGCCAAGGAGCAGCTGAGATCCATGGACCTCGA
GTGTTCCGGCTCCCACGCCGACCCGCGGGCCCTGAAGACACGAGCATCGC
TGGCGGCTGTGGAAGAGGCCGTCCGTCGGGCGGCCACCGCCAAGGCGGTC
TCTGGCGCGGGAGGCGGCCCGCAGCAGCAACAACAGCGACCGCCTGGCTC
TCTGCAGGCGACACGCGCTCAAGTAGCAGCACAAGCTGCAGCAAGAGGAA
GAAATGCGCAAACGGACGAGCCGAAAGCAGCAGAGATAGGCATTCCGCGG
CAGGGACTGGGAAAGAGGGAAGACAGCGGCAACGGCAGTGAGGGCAAGGG
CGGTGGCGGTGGCGACGGTGGCGGGAGCGGCAGCGGCAGCGGCGACATCT
GGAGAACCGCAACGGTTCAAGCGGCAGCGGCGGCGAAACCGGCCTCGAAA
CCGGCGCCAGCAGGGTCGGCGGGACCGCGTGTGCCTGTCGGACTTGTCGA
GCTTGATCCCGTATGCCAGGCGGTCTCTGGCGCGGGAGGCGGCCCGCAGC
AGCAACAACAGCGACCGCCTGGCTCTCTGCAGGCGACACGCGCTCAAGTA
GCAGCACAAGCTGCAGCAAGAGGAAGAAATGCGCAAACGGACGAGCCGAA
AGCAGCAGAGATAGGCATTCCGCGGCAGGGACTGGGAAAGAGGGAAGACA
GCGGCAACGGCAGTGAGGGCAAGGGCGGTGGCGGTGGCGACGGTGGCGGG
AGCGGCAGCGGCAGCGGCGACATCTGGAGAACCGCAACGGTTCAAGCGGC
AGCGGCGGCGAAACCGGCCTCGAAACCGGCGCCAGCAGGGTCGGCGGGAC
CGCGTGTGCCTGTCGGACTTGTCGAGCTTGATCCCGTATGCCAGGGCGAA
CGACGAGGATTTCCGCACCTCACGATGGCGTCGCTGCTAGGTTTCGTCGA
GGAGTCCTTGGCCTCTTCGACGAGCGATGATGCTGTGGACGGCAGCAGCG
GGGCAACCAACAGCCGCAGAAGCTCCGGTAACGGCAACGGAAGCAGCGGC
GGCGAGATCAGTACCAGAAGCAGTGAAGAGGCCAGCAGCGACCACACAAG
CAAGGGCAGGAGCGGTACCGACAGGAGCGGCGGGACCCGCAGAGTAACCC
AGGAAGTCAGAGGAAACGACGACGACGTAGAAGACGACGACGACGGCGAC
GACGACGGTAACAACACAATCGGGAACAGCGGGAGTGGTGCCGGCGACAA
CGCCGATACCCCCCGTAAACGTCCCCGCGATGATGTTGCCGCTGCTGTTG
GTGATGCCGTCGGGGTTGATGTTGCCGCCAGCCCTGCCGGCGCTGTTCCA
CCGCCGTCGAACGGGGCTTTCTTCTGCTTCGTCCGCAGCGGCAGCCGCCA
TCGCCGCCGCCAAGGAGGGAGGGGCGGTGGGATCGGGTGCGGCGATGACG
ACGACGCTACCGGCCAAGCCGAGAGCGCGGTGGAGGGCGAACGACGAGGA
TTTCCGCACCTCACGATGGCGTCGCTGCTAGGTTTCGTCGAGGAGTCCTT
GGCCTCTTCGACGAGCGATGATGCTGTGGACGGCAGCAGCGGGGCAACCA
ACAGCCGCAGAAGCTCCGGTAACGGCAACGGAAGCAGCGGCGGCGAGATC
AGTACCAGAAGCAGTGAAGAGGCCAGCAGCGACCACACAAGCAAGGGCAG
GAGCGGTACCGACAGGAGCGGCGGGACCCGCAGAGTAACCCAGGAAGTCA
GAGGAAACGACGACGACGTAGAAGACGACGACGACGGCGACGACGACGGT
AACAACACAATCGGGAACAGCGGGAGTGGTGCCGGCGACAACGCCGATAC
CCCCCGTAAACGTCCCCGCGATGATGTTGCCGCTGCTGTTGGTGATGCCG
TCGGGGTTGATGTTGCCGCCAGCCCTGCCGGCGCTGTTCCACCGCCGTCG
AACGGGGCTTTCTTCTGCTTCGTCCGCAGCGGCAGCCGCCATCGCCGCCG
CCAAGGAGGGAGGGGCGGTGGGATCGGGTGCGGCGATGACGACGACGCTA
CCGGCCAAGCCGAGAGCGCGGTGGAGCGGTTGCTGTGCTCACGCTGGCCG
AGCAGGATTCGCTTCTTCGACTCGCTGGTGGAAGCCTGCTCCGTCGCCGC
CGCCGCTTGCGGGCCAACATCGTCACTGCCGGCGCAGGTGTTTGCCGCAG
GGGGGAGCGGCTTGAACAGGAGAGAGAGGCGGGGCGTGAGGAGGAGCAAT
GAGAGAGGTGCAGCGGCTGCAAGGGGGTGCGGAGGCGGAGGAGGAGGAGG
AGGAGGAGGAGGAGGAGGAGGAGGAGGAGGGGGAGGAGGGGCAGCGGCAG
CTGCCGAGGAAAGGGGTGGGGAGGAGGGAAGTACCACGGCGGTATCGGGA
GAGCGCCTGGGGCGAGGCGGGTGGGGACGGGGACGGGAGGAGGGCAGGGT
AGAATCGGTGGGGTTGAGGATGACTTCGCCAGCGGCGGCGGCGGCGACGG
CGGCAGCAGTGGTGGCGACCGTGGTAGTGCTAGGGGGCACGCACGATGCG
GGCCCGATGGGTCTGCGCCTGGCGGCGAGCGGGATGGCCGTCGTCGGGGT
CATAGCGGTTGCTGTGCTCACGCTGGCCGAGCAGGATTCGCTTCTTCGAC
TCGCTGGTGGAAGCCTGCTCCGTCGCCGCCGCCGCTTGCGGGCCAACATC
GTCACTGCCGGCGCAGGTGTTTGCCGCAGGGGGGAGCGGCTTGAACAGGA
GAGAGAGGCGGGGCGTGAGGAGGAGCAATGAGAGAGGTGCAGCGGCTGCA
AGGGGGTGCGGAGGCGGAGGAGGAGGAGGAGGAGGAGGAGGAGGAGGAGG
AGGAGGAGGGGGAGGAGGGGCAGCGGCAGCTGCCGAGGAAAGGGGTGGGG
AGGAGGGAAGTACCACGGCGGTATCGGGAGAGCGCCTGGGGCGAGGCGGG
TGGGGACGGGGACGGGAGGAGGGCAGGGTAGAATCGGTGGGGTTGAGGAT
GACTTCGCCAGCGGCGGCGGCGGCGACGGCGGCAGCAGTGGTGGCGACCG
TGGTAGTGCTAGGGGGCACGCACGATGCGGGCCCGATGGGTCTGCGCCTG
GCGGCGAGCGGGATGGCCGTCGTCGGGGTCATAGCGCCCGACGGCCGTCT
CCCCACGGTGCAGGGCCGCGGCCGTGCGCACGCGATCAGGTGCACCGGCA
GGGGAGTCTCCGTGGTCTCGCTTAACGTCGTGGCCGGCGCGTTGCCAGCC
TCAGCCATGTCTGATGGCGAGAAAGCTGACGACACCGACGGTCAAAATAC
CGCCGGCGGCGGCCGCGGCCATGCGGACAGCGCAAGCGAGAGTGGCAGAG
ATGAAAGGGAGAGTACGGGCAGCGGCAGCGAGAAGAACAAGAGCAACAAC
AAGCACCACGACAACGAGGTTTGCGCGGACGACGACGGCGACGAGAAGGG
CGGCGGGGGCGGCGGGGGTGACTGCAACGACGGCGGCGGTGACGGCAGCA
CTAGCCCCGGAACCAACCAACAGCACGTGAACTCAAGTCCGACGTCGACG
ACGTCGCCAACGCCAAGAACCTCACAACCACCCACAAGACGGCCACCGCA
AGTAGCGGCAACACCCACGACAGCAACATCAGCATCGAAACCAGCGACAC
GACCTCGACCAGCAGTGACGCGAACGACAGCAACGACGACGGCAGCGGCA
ACAGCGACAATAGTACCGACACCGACGCCGGGAGGAGTCAAGAGGAATCT
GGCATCAAGCTTGGCTCGGGCGAACGGCGGTCGCTCGGCGGAGCGGGATG
GAGGGAGTGTGAGGAGGAAGCGTCCCCGGTTGGTGTTCGATGACGAAGCC
GCCCAGCGCCCGACGGCCGTCTCCCCACGGTGCAGGGCCGCGGCCGTGCG
CACGCGATCAGGTGCACCGGCAGGGGAGTCTCCGTGGTCTCGCTTAACGT
CGTGGCCGGCGCGTTGCCAGCCTCAGCCATGTCTGATGGCGAGAAAGCTG
ACGACACCGACGGTCAAAATACCGCCGGCGGCGGCCGCGGCCATGCGGAC
AGCGCAAGCGAGAGTGGCAGAGATGAAAGGGAGAGTACGGGCAGCGGCAG
CGAGAAGAACAAGAGCAACAACAAGCACCACGACAACGAGGTTTGCGCGG
ACGACGACGGCGACGAGAAGGGCGGCGGGGGCGGCGGGGGTGACTGCAAC
GACGGCGGCGGTGACGGCAGCACTAGCCCCGGAACCAACCAACAGCACGT
GAACTCAAGTCCGACGTCGACGACGTCGCCAACGCCAAGAACCTCACAAC
CACCCACAAGACGGCCACCGCAAGTAGCGGCAACACCCACGACAGCAACA
TCAGCATCGAAACCAGCGACACGACCTCGACCAGCAGTGACGCGAACGAC
AGCAACGACGACGGCAGCGGCAACAGCGACAATAGTACCGACACCGACGC
CGGGAGGAGTCAAGAGGAATCTGGCATCAAGCTTGGCTCGGGCGAACGGC
GGTCGCTCGGCGGAGCGGGATGGAGGGAGTGTGAGGAGGAAGCGTCCCCG
GTTGGTGTTCGATGACGAAGCCGCCCAGGCGGTCCTCCTCGACCGCAGCA
AAGCAGCGACGGCGGCAGCATTAGTAACGGCTGCGGCGAAATACGGGGAT
AACGCCGGGAGCTGGGGCGGGAAACGGAAGCGGGCGTCCACAAAGGGGCC
GCTTAAGGTCGACGACGAGCCCCGTCGCCGCTCTGCAGCAGGAGGCCGAC
GAGGCGGCCTTCCGCAGCGGCCGGCGCATGCCGTTACGGTGGAAGGAGGG
GGGTCGGCATCGATCTCGGGCTGCGACATCACCAGGCGGTCCTCCTCGAC
CGCAGCAAAGCAGCGACGGCGGCAGCATTAGTAACGGCTGCGGCGAAATA
CGGGGATAACGCCGGGAGCTGGGGCGGGAAACGGAAGCGGGCGTCCACAA
AGGGGCCGCTTAAGGTCGACGACGAGCCCCGTCGCCGCTCTGCAGCAGGA
GGCCGACGAGGCGGCCTTCCGCAGCGGCCGGCGCATGCCGTTACGGTGGA
AGGAGGGGGGTCGGCATCGATCTCGGGCTGCGACATCACCAGCCACCTCC
CGTTTGCTTGCGTGTGCGCGGCCGGTGGGGGCACCGTGGTGTCATTAAAC
GGCACCCGCCTTCACGACGGATCCGGCATGGGGCTGCTGGCATGCGGCAA
GGCGAAGGTGTCCGCCGACGAATGCGACTTTGCCGGGATGGGTGCCGCAG
CCACCTCCCGTTTGCTTGCGTGTGCGCGGCCGGTGGGGGCACCGTGGTGT
CATTAAACGGCACCCGCCTTCACGACGGATCCGGCATGGGGCTGCTGGCA
TGCGGCAAGGCGAAGGTGTCCGCCGACGAATGCGACTTTGCCGGGATGGG
TGCCGCAGGCGTCGAGGCGAGGGGCGGCTCCTATGCCGACCTCACGCGAT
GCAGCGTCTGCGGGTGCGGAAAGAGCGGCGTGTTCGTCCACAGCTTCGGC
GGGGCCAGGCTGAGCCGGTGCCGTGTCGCCGGGAACCACTTCGCCGGCGT
CGAGGCGATGAAGCGTCGAGGCGAGGGGCGGCTCCTATGCCGACCTCACG
CGATGCAGCGTCTGCGGGTGCGGAAAGAGCGGCGTGTTCGTCCACAGCTT
CGGCGGGGCCAGGCTGAGCCGGTGCCGTGTCGCCGGGAACCACTTCGCCG
GCGTCGAGGCGATGAAGAACGCGACTGTCACCCTCGAGGCGTGCAGTATC
GTCGACAGCAGGAACGCGACTGTCACCCTCGAGGCGTGCAGTATCGTCGA
CAGCAGGCGCGGGGGTGTCCTCGCCCATGTTGCCTCCAAAGTAACGCTCA
GGGATTGCAATGTTGAGGGCAGCTGCCTCGCCGGGATCGACGTTCGAACG
GGGGCGGAGGCGGCCGTGGAGTCTTGCTGCTTTCAGGGAGGCAAGACTAG
CGGCATGCGCGGGGGTGTCCTCGCCCATGTTGCCTCCAAAGTAACGCTCA
GGGATTGCAATGTTGAGGGCAGCTGCCTCGCCGGGATCGACGTTCGAACG
GGGGCGGAGGCGGCCGTGGAGTCTTGCTGCTTTCAGGGAGGCAAGACTAG
CGGCATCTACGTCTCAGCAGGGGGCCGTGCCAGCGTATGCTCGACGCTCA
TCAAGTCCAATCGCCTGGCAGCCGTCGAGGTGAGAGCTCCTGACGGGCAC
CGCGACAGCTGCAAAGGCAACGGCGGCGGCGGCGGCGGCGCTGGTAGCGG
TCATCAGCAGCGAACGGCGCGACTCGACATCCCGCCGCCGAATGGACGAG
AACGAAGACGGGATGGAGGGGAGGATGAAGGACGGTATGGAGGAGAACGC
CGGGCCGCCATTACTGCTGTGACAACACCGGCTGCTGCTGCTGCTGCTGC
TGCTGCTGTCGAAACCGTAGTGGACCAGTTCCATGGCGACGGCGTCAGCA
GCAGCGAGAATGTTGTGGATGGCGTTGCCGGTGGGTGGGGCTGCAATGAT
GCCGCCGCTGCTGCTATCACTGCTTCTTCCGGTGCCGCTTTTAGTGCTGC
TTCAGCTGGTGCTGCCGCCGCCGCCGCTGCCGTCAGAGCCAGCGAGAAGA
GCGCGGGTCACAGCAAAAGCCCCTGGGAGTGCGGCTGCTGCCACTGCTGC
TCCGTCTCGTGGGGGCCAGGGAACGTGATGGAAGACAACGGGCTGGACGG
CGTCATGCGGACGGGGAGGGATCCTCCTGCACCCATGGGCCCACTCCCCG
ACGTCCTTCCCGCCGTTGCTGGCGCGCACAACGCTATTGTGGCACACAGC
TTTCATTCAAAGCACGCCGTGTAGCTACGTCTCAGCAGGGGGCCGTGCCA
GCGTATGCTCGACGCTCATCAAGTCCAATCGCCTGGCAGCCGTCGAGGTG
AGAGCTCCTGACGGGCACCGCGACAGCTGCAAAGGCAACGGCGGCGGCGG
CGGCGGCGCTGGTAGCGGTCATCAGCAGCGAACGGCGCGACTCGACATCC
CGCCGCCGAATGGACGAGAACGAAGACGGGATGGAGGGGAGGATGAAGGA
CGGTATGGAGGAGAACGCCGGGCCGCCATTACTGCTGTGACAACACCGGC
TGCTGCTGCTGCTGCTGCTGCTGCTGTCGAAACCGTAGTGGACCAGTTCC
ATGGCGACGGCGTCAGCAGCAGCGAGAATGTTGTGGATGGCGTTGCCGGT
GGGTGGGGCTGCAATGATGCCGCCGCTGCTGCTATCACTGCTTCTTCCGG
TGCCGCTTTTAGTGCTGCTTCAGCTGGTGCTGCCGCCGCCGCCGCTGCCG
TCAGAGCCAGCGAGAAGAGCGCGGGTCACAGCAAAAGCCCCTGGGAGTGC
GGCTGCTGCCACTGCTGCTCCGTCTCGTGGGGGCCAGGGAACGTGATGGA
AGACAACGGGCTGGACGGCGTCATGCGGACGGGGAGGGATCCTCCTGCAC
CCATGGGCCCACTCCCCGACGTCCTTCCCGCCGTTGCTGGCGCGCACAAC
GCTATTGTGGCACACAGCTTTCATTCAAAGCACGCCGTGTAG
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