mRNA_P-littoralis_Contig206.65.1 (mRNA) Pylaiella littoralis U1_48

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

Overview
NamemRNA_P-littoralis_Contig206.65.1
Unique NamemRNA_P-littoralis_Contig206.65.1
TypemRNA
OrganismPylaiella littoralis U1_48 (Pylaiella littoralis U1_48 (Mung))
Homology
BLAST of mRNA_P-littoralis_Contig206.65.1 vs. uniprot
Match: D7FXC3_ECTSI (Uncharacterized protein n=1 Tax=Ectocarpus siliculosus TaxID=2880 RepID=D7FXC3_ECTSI)

HSP 1 Score: 1059 bits (2739), Expect = 0.000e+0
Identity = 562/652 (86.20%), Postives = 589/652 (90.34%), Query Frame = 1
Query:    1 MKPAAGESSAAAAAKETNRDVFDSKGGREDDTLLGWGSTTSGANNMIPSTVARG--KKGSKLTGGSGARGGAAAYSEGPLGSGARSRMASYDSASTLGLPRRVSSRVRLESWEFPGWGSHFSMVSPPGLAMSYQDKSHEGHEKLGEWHATAISGNDILSSVLYVTGLVTGFAGWLSPVCLLMVAGILYLYRQGRGRKT*FIYGEAISALPMNGGAYNVLINTTSKPVASFAACLAVISYIATGVVSAATAISYLQTLIPAAGLMTCTIGLLFFFACLMTMGISESAGVALGMFVVHVFTLTAVCVLSAMYAFFNVTILKENLQQDFPDVRVGGSIVEGTWMTAILFGVSSAMLGVSGFESSSQFVEEQAKGVFVKTLRNMQWGVGIFNPAICLLSLCVLPMDEIVQYKHSMLSIMARRVGYWAGGCLGLSNPRFDLGEAFAFWVSLDAFVVLSGAVLTAYVGISGLLARMAKDRCLPQFLLMKNKWRGTYHYIIFGFFFLATSQVIILQGDITTLAGVYTFSFLGVMTLFSVGTILLKFKRPSLPREVTVSYGTTLVGITCVVTAFVGNMLSKPEVVSWFLIYFMAVGFLVVLVFLRVRLLKILLKLAGPVCLDSVTSSIKDQIHELQDEPFVFLCKQADTYVINKAILYVR 1950
            M+PA GES A AA+    R       G E+D LLGWGS  + +N MIPSTV RG  K  SKL GGSG RGG  AY+EGPLGSGARSRMASYDSA+TLGLPRRVSSRVRLESWEFPGWGSHF+M  PPGLA+S   K + GHEKLGEW+ATAISGNDILSSVLYVTGLVTGFAGWLSPVCLLMVAGILYLYR        FIYGEAISALPMNGGAYNVLINTTSKPVASFAACLAVISYIATGVVSAATA+SYLQTLIPAAGLMTCTIGLLFFFACLMTMGISESAGVALGMFVVHVFTLTAVCVLSA YAF+NVTILKENLQQDFP V VGG++VEGTW+TAILFGVSSAMLGVSGFESSSQFVEEQAKGVFVKTLRNMQWGV +FNPAICLLSLCVLPM+EI++YKHSML+IMA+RVGYWAGGCLGL  P  DLGE FAFWVSLDAFVVLSGAVLTAYVGISGLLARMAKDRCLPQF+L KNKWRGTYHY IFGFF LATSQVIILQGDITTL+GVYTFSFLGVMTLFSVGTILLKFKRPSLPREVTVSY TTLVGITCV+TAFVGNMLSKPEVVSWFLIYFMAVGF+VVLVFLRVRLLKILLK A PVC D VTSSIKDQ+HELQDEPFVF CKQ DTYVINKAILYVR
Sbjct:   41 MEPAGGESPARAASGAPTR-------GSENDALLGWGSGGNASNTMIPSTVGRGRGKGSSKLKGGSGDRGGTTAYTEGPLGSGARSRMASYDSATTLGLPRRVSSRVRLESWEFPGWGSHFTMNPPPGLALSNPSKDNGGHEKLGEWYATAISGNDILSSVLYVTGLVTGFAGWLSPVCLLMVAGILYLYR--------FIYGEAISALPMNGGAYNVLINTTSKPVASFAACLAVISYIATGVVSAATAVSYLQTLIPAAGLMTCTIGLLFFFACLMTMGISESAGVALGMFVVHVFTLTAVCVLSACYAFYNVTILKENLQQDFPAVTVGGTVVEGTWVTAILFGVSSAMLGVSGFESSSQFVEEQAKGVFVKTLRNMQWGVAVFNPAICLLSLCVLPMEEIIEYKHSMLAIMAKRVGYWAGGCLGLPTPGLDLGEIFAFWVSLDAFVVLSGAVLTAYVGISGLLARMAKDRCLPQFMLRKNKWRGTYHYTIFGFFLLATSQVIILQGDITTLSGVYTFSFLGVMTLFSVGTILLKFKRPSLPREVTVSYATTLVGITCVITAFVGNMLSKPEVVSWFLIYFMAVGFVVVLVFLRVRLLKILLKFAHPVCCDGVTSSIKDQLHELQDEPFVFFCKQPDTYVINKAILYVR 677          
BLAST of mRNA_P-littoralis_Contig206.65.1 vs. uniprot
Match: A0A836CNH3_9STRA (Amino acid permease-domain-containing protein n=1 Tax=Tribonema minus TaxID=303371 RepID=A0A836CNH3_9STRA)

HSP 1 Score: 691 bits (1784), Expect = 2.780e-241
Identity = 372/581 (64.03%), Postives = 441/581 (75.90%), Query Frame = 1
Query:  217 YSEGPLGSGARSRMASYDSASTLGLPRRVSSRVRLESWEFPGWGSHFSMVSPPGLAMSYQDKSHEGHEKLGEWHATAISGNDILSSVLYVTGLVTGFAGWLSPVCLLMVAGILYLYRQGRGRKT*FIYGEAISALPMNGGAYNVLINTTSKPVASFAACLAVISYIATGVVSAATAISYLQTLIPAAGLMTCTIGLLFFFACLMTMGISESAGVALGMFVVHVFTLTAVCVLSAMYAFFNVTILKENLQQDFPDVRVGGSIVEGTWMTAILFGVSSAMLGVSGFESSSQFVEEQAKGVFVKTLRNMQWGVGIFNPAICLLSLCVLPMDEIVQYKHSMLSIMARRVGYWAG---GCLGLSNPRFDLGEAFAFWVSLDAFVVLSGAVLTAYVGISGLLARMAKDRCLPQFLLMKNKWRGTYHYIIFGFFFLATSQVIILQGDITTLAGVYTFSFLGVMTLFSVGTILLKFKRPSLPREVTVSYGTTLVGITCVVTAFVGNMLSKPEVVSWFLIYFMAVGFLVVLVFLRVRLLKILLKLAGPVCLDSVTSSIKDQIHELQDEPFVFLCKQADTYVINKAILYVR 1950
            ++E PLG   R R+ASYDSA TLGL RRVS RVRLESWEFPGWGSHF M  P       +++  + H KLGEW ATAI GNDILSSVLYV+GLVT  AGWLSPVCLLMVAG+LYLYR        FIYGEAISALPMNGG+YNVLINTTSK +ASFAACLA+ISYIATGVVSAATAI+YL+TL P       T+ LLFFFACLM  GISES+ VALGMFV+HV TL A+ V +A YA F  T   EN+Q+DFPD+ VGG++V+G W TA+LFG SSAMLGVSGFESSSQ               NM  GV +FNP +CLLS CVL MDEIV ++HSML++MA RVGYW     G LG +   F+LG AF  WVSLDAF+VLSGAVLTAYVGI+GL+ RMA DRCLPQFLL  N+WRGT H+IIFGFF LAT+QV +L+GDIT L+GVYTF+FLGVM++FS G I+LKFKRP LPR+VTVSY    +G+T V+TAFVGNM+SKPE++S+F +YF+AVG +V+ VF R+R+LK+              + +K+QI EL+ +P++F CK  D Y INKAILYVR
Sbjct:   32 HTEHPLGGPTRGRLASYDSA-TLGLSRRVSDRVRLESWEFPGWGSHFRMTVPQDELRLIEEEHEKHHPKLGEWAATAICGNDILSSVLYVSGLVTSSAGWLSPVCLLMVAGLLYLYR--------FIYGEAISALPMNGGSYNVLINTTSKAIASFAACLAIISYIATGVVSAATAIAYLRTLWPELDAQLATVALLFFFACLMGYGISESSDVALGMFVLHVATLFALAVGAAAYACFETTTFHENIQRDFPDIIVGGNLVQGNWATALLFGFSSAMLGVSGFESSSQ---------------NMWMGVAVFNPVLCLLSFCVLQMDEIVAHRHSMLALMANRVGYWLSDRAGLLGYNTQSFNLGVAFEAWVSLDAFIVLSGAVLTAYVGITGLIRRMAMDRCLPQFLLRTNEWRGTNHFIIFGFFVLATTQVYLLRGDITLLSGVYTFAFLGVMSIFSSGCIILKFKRPKLPRDVTVSYAAIAIGLTFVLTAFVGNMISKPEILSYFSLYFIAVGLVVLSVFQRIRILKV--------------NFLKEQISELRSQPYLFFCKADDLYTINKAILYVR 574          
BLAST of mRNA_P-littoralis_Contig206.65.1 vs. uniprot
Match: A0A7S1UN14_9STRA (Hypothetical protein n=1 Tax=Phaeomonas parva TaxID=124430 RepID=A0A7S1UN14_9STRA)

HSP 1 Score: 499 bits (1286), Expect = 1.720e-165
Identity = 291/558 (52.15%), Postives = 372/558 (66.67%), Query Frame = 1
Query:  316 RLESWEFPGWGSHFSM--VSPPGLAMS---YQDKSHEGHEKLGEWHATAISGNDILSSVLYVTGLVTGFAGWLSPVCLLMVAGILYLYRQGRGRKT*FIYGEAISALPMNGGAYNVLINTTSKPVASFAACLAVISYIATGVVSAATAISYLQTLIPAAGLMTCTIGLLFFFACLMTMGISESAGVALGMFVVHVFTLTAVCVLSAMYAF-FNVTILKENLQQDFPDVRVGGSIVEGTWMTAILFGVSSAMLGVSGFESSSQFVEEQAKGVFVKTLRNMQWGVGIFNPAICLLSLCVLPMDEIVQYKHSMLSIMARRVGYWAGGCLG-------LSNPRFDLGEAFAFWVSLDAFVVLSGAVLTAYVGISGLLARMAKDRCLPQFLLMKNKWRGTYHYIIFGFFFLATSQVIILQGDITTLAGVYTFSFLGVMTLFSVGTILLKFKRPSLPREVTVSYGTTLVGITCVVTAFVGNMLSKPEVVSWFLIYFMAVGFLVVLVFLRVRLLKILLKLAGPVCLDSVTSSIKDQIHELQDEPFVFLCKQADTYVINKAILYVR 1950
            R+E WE P  G +     V   GL  +    +++   GH KLGE  ATAI GNDILSS LYV   VT  AG  +PVCL +VAGIL+LY+         IYGE+I+A+ MNGG+YNVLINTTSKPVA+ AACLAVISYIATGVVSA TAISYLQ L+P   L+T  + L  FFA L   GI ESA VA+ +FV+H+FTL+   +L  ++        L  NL    P V +   I+ G  +TA+ FG  + MLGVSGFESSSQFVEEQA GVFVKTLRNM  GV  FNP I L+SLCVLPM ++ + K ++L+++ ++ G W    L        +SN R  LG    F+V +DAFVVL GAVLT YVGI+GL  RMA D  LP+FLL KN+WRGT H     FF L+ SQVI+L GD++ L+GVYTF+FLGVMT F VGTI+LKFKRPSLPREV ++Y    +G+ CV+  F+GN++ K + VS+F  Y   VG ++V++F RVRL+K+L  +   +   S  + +K+ I EL+  P +F  K AD YV+NKA+LY+R
Sbjct:   38 RMEHWEIPALGGYKVTLDVDAAGLRAAGGAVRERVDTGH-KLGELEATAICGNDILSSCLYVASQVTESAGMFAPVCLALVAGILWLYKG--------IYGESITAISMNGGSYNVLINTTSKPVAATAACLAVISYIATGVVSATTAISYLQVLVPDLPLITGVVVLHAFFALLNAWGIGESARVAMLIFVLHLFTLSLFVLLGLVFVVGAQGGHLWANLAAPLPAVEITSLIIPGNMLTALFFGTCTGMLGVSGFESSSQFVEEQAPGVFVKTLRNMWLGVAFFNPVISLISLCVLPMTDVKKAKGNLLAVVTQKAGNWLQDALSSIAGIPRVSNSRTTLGGVLQFFVCVDAFVVLCGAVLTGYVGINGLACRMASDGVLPEFLLHKNRWRGTTHNTTLVFFLLSASQVIMLHGDVSGLSGVYTFAFLGVMTCFGVGTIMLKFKRPSLPREVHITYAHASLGVICVLATFLGNLMGKSDYVSYFSFYLCGVGIVIVIMFQRVRLMKLLYLVLRSLFPRSSFAGLKNIISELRSGPMIFFAKHADLYVLNKAVLYMR 586          
BLAST of mRNA_P-littoralis_Contig206.65.1 vs. uniprot
Match: A0A6A3ZJ44_9STRA (Uncharacterized protein n=4 Tax=Peronosporaceae TaxID=4777 RepID=A0A6A3ZJ44_9STRA)

HSP 1 Score: 492 bits (1267), Expect = 1.050e-162
Identity = 289/565 (51.15%), Postives = 377/565 (66.73%), Query Frame = 1
Query:  319 LESWEFPGWGSHFSMVSPPGLAMSYQDKSHEGHEKLGEWHATAISGNDILSSVLYVTGLVTGFAGWLSPVCLLMVAGILYLYRQGRGRKT*FIYGEAISALPMNGGAYNVLINTTSKPVASFAACLAVISYIATGVVSAATAISYLQTLIPAAGLMTCTIGLLFFFACLMTMGISESAGVALGMFVVHVFTLTAVCVLSAMYAFFN-VTILKENLQQDFPDVRVGGSIVEGTWMTAILFGVSSAMLGVSGFESSSQFVEEQAKGVFVKTLRNMQWGVGIFNPAICLLSLCVLPMDE---IVQYKHSMLSIMARRVGYWAGGCLGLSNPRFDLGEAFAFWVSLDAFVVLSGAVLTAYVGISGLLARMAKDRCLPQFLLMKNKWRGTYHYIIFGFFFLATSQVIILQGDITTLAGVYTFSFLGVMTLFSVGTILLKFKRPSLPREVTVSYGTTLVGITCVVTAFVGNMLSKPEVVSWFLIYFMAVGFLVVLVFLRVRLLKILLKLAGPVCLDSVTSSIKDQIHELQ----------------DEPFVFL-CKQADTYVINKAILYVR 1950
            L+ WEFPGWG + S V+        Q      H KL EW ATAI GNDILSS LYV+GLV   AG L+P+ L +VAGILYLYR        FIYGE ++A+P+NGG+YNVL+NTTSK VA+ AA LA++SYIATGVVS  +A +YL + +P+  ++  TIGLLF FA L  +GI+ESA VAL +FV H  TLT +CVLSA+Y + +    L  N   DFPD+ + G I+ G ++TAI FG S+AMLG+SGFE+SSQFVEEQA+GVF KTLRNM WGV IFNP I LLSL VLP+D    IV  K+++L+ M  +V                 GE     V+LDAF+VLSGAVLTAYVG+ GL+ R+A DR +P+FLL  NK RGT H+II G+F +ATS V+IL GD  TL+GVYT++FLG+MTLF +G +LLKFKR  +PR V   + + ++G++ VVT F+GN+L  P ++++F +YF+AV  LV ++F R  LL++ L     +C  S  S  +D+ H L+                +EP VF  CK  +  +INKAILYVR
Sbjct:   43 LKGWEFPGWGDNLSAVASESELNEIQAHQSVDHTKLSEWLATAICGNDILSSCLYVSGLVASKAGKLAPLALAIVAGILYLYR--------FIYGEVLNAVPLNGGSYNVLLNTTSKRVAAMAASLAILSYIATGVVSGTSACNYLASHVPSLEIVPATIGLLFIFAALSLIGITESAVVALVIFVAHAATLTVLCVLSAVYVWNDGFQTLHANFSTDFPDINLAGDIMSGNFLTAIFFGTSTAMLGISGFETSSQFVEEQAEGVFPKTLRNMWWGVAIFNPMISLLSLGVLPLDGPGGIVDKKNTVLAEMGLKVA----------------GENMQLVVALDAFIVLSGAVLTAYVGVVGLVRRLASDRVVPEFLLHVNKTRGTNHFIIIGYFLVATSLVLILHGDTETLSGVYTYAFLGLMTLFGIGCMLLKFKRAEIPRSVIAPWWSCVLGVSMVVTTFMGNLLGDPTILTYFSLYFIAVLSLVYIMFERTFLLRMCLYCMRQLC-PSQRSIDEDETHSLRTGARGGQTIARFIREINEPAVFFFCKTPNLNIINKAILYVR 582          
BLAST of mRNA_P-littoralis_Contig206.65.1 vs. uniprot
Match: A0A835YT58_9STRA (Amino acid permease-domain-containing protein n=1 Tax=Tribonema minus TaxID=303371 RepID=A0A835YT58_9STRA)

HSP 1 Score: 488 bits (1256), Expect = 1.800e-161
Identity = 280/556 (50.36%), Postives = 380/556 (68.35%), Query Frame = 1
Query:  289 LPRRVSSRVRLESWEFPGWGSHFSMVSPPGLAMSYQDKSHEGHEKLGEWHATAISGNDILSSVLYVTGLVTGFAGWLSPVCLLMVAGILYLYRQGRGRKT*FIYGEAISALPMNGGAYNVLINTTSKPVASFAACLAVISYIATGVVSAATAISYLQTLIPAAGLMTCTIGLLFFFACLMTMGISESAGVALGMFVVHVFTLTAVCVLSAMYAFFNVTILKENLQQDFPDVRVGGSIVEGTWMTAILFGVSSAMLGVSGFESSSQFVEEQAKGVFVKTLRNMQWGVGIFNPAICLLSLCVLPMDEIVQYKHSMLSIMARRVGYWAG-GCLGLSNPRFDLGEAFAFWVSLDAFVVLSGAVLTAYVGISGLLARMAKDRCLPQFLLMKNKWRGTYHYIIFGFFFLATSQVIILQGDITTLAGVYTFSFLGVMTLFSVGTILLKFKRPSLPREVTVSYGTTLVGITCVVTAFVGNMLSKPEVVSWFLIYFMAVGFLVVLVFLRVRLLKILLKLAGPVCLDS-VTSSIKDQIHELQDEPFVFLCKQADTYVINKAILYVR 1950
            L R+  S++ +ES++ PG+G H+ +  P G     + ++   H  LGEW +TAI  NDILSSV+Y +GLV+  AG L+PVCL +VAG+L+L++         IY EAISALP NGG+YNVL+N TSK VA+ AAC+ V+SY+ TGVVSAA+AI+YL  + P   L+  T+ LL FFACL   G+SESA VA+G+F +HV TLTAVC+LS++Y  FN   L  N++  +PDV + G  V GT+ TA+ FGVS+A LGVSGFE+S+QFVEEQ  GVF KTL NM +GV +FNP +C+LSL VL +DE+V +K S+L+ + RRVG W     LG+      LG     WVS+DAF+VLSGAVLTAYVGI+GL+  MA+DRCLPQFLL  N+  G+ H IIFG+F L +S V+++ GDI  L  +YT +FL VM  F+VG +LL+ KR  LPR++T    T  + +  V T+ V N+  KPE++ +FL+Y   V  LV L+F RVRLLK++  +       S + + ++ ++  + D P VF CK+ D YV+NKA LYVR
Sbjct:   33 LIRQTLSKLSVESFQHPGFGRHYKVDVPAGPLELIEGQAKPKH-LLGEWMSTAICANDILSSVIYTSGLVSATAGVLAPVCLFIVAGVLHLFKS--------IYCEAISALPSNGGSYNVLLNATSKSVAALAACVTVLSYVTTGVVSAASAIAYLHVVFPQVHLVYGTVLLLLFFACLTAFGVSESARVAVGIFALHVLTLTAVCLLSSVYVAFNSATLHANIEAGYPDVILAGGRVRGTFWTALFFGVSTAFLGVSGFETSAQFVEEQVAGVFPKTLSNM-FGVTVFNPLLCVLSLGVLDIDEVVTFKDSVLAHVVRRVGNWLQIELLGVHGGGAHLGSLLMTWVSIDAFIVLSGAVLTAYVGITGLVRTMARDRCLPQFLLATNR-NGSCHNIIFGYFLLGSSLVLLMGGDIEVLGNIYTMAFLCVMIAFAVGVVLLQAKRLKLPRDITTPPLTLALALLAVGTSLVVNVAFKPEILVYFLLYLGCVLALVGLMFERVRLLKLVAHVVDKWSPRSRLAAWVQLEVQRVLDVPCVFFCKRDDLYVLNKAALYVR 577          
BLAST of mRNA_P-littoralis_Contig206.65.1 vs. uniprot
Match: A0A1E7ERC1_9STRA (Uncharacterized protein n=1 Tax=Fragilariopsis cylindrus CCMP1102 TaxID=635003 RepID=A0A1E7ERC1_9STRA)

HSP 1 Score: 486 bits (1252), Expect = 7.640e-161
Identity = 274/574 (47.74%), Postives = 376/574 (65.51%), Query Frame = 1
Query:  268 DSASTLGLPRRVSSRVRLESWEFPGWGSHFSMVSPP-----GLAMSYQDKSHEGHEKLGEWHATAISGNDILSSVLYVTGLVTGFAGWLSPVCLLMVAGILYLYRQGRGRKT*FIYGEAISALPMNGGAYNVLINTTSKPVASFAACLAVISYIATGVVSAATAISYLQTLIPA---AGLMTCTIGLLFFFACLMTMGISESAGVALGMFVVHVFTLTAVCVLSAMYAFFNVTILKENLQQDFPDVRVGGSIVEGTWMTAILFGVSSAMLGVSGFESSSQFVEEQAKGVFVKTLRNMQWGVGIFNPAICLLSLCVLPMDEIVQYKHSMLSIMARRVGYWAGGCLGLSNPRFDLGEAFAFWVSLDAFVVLSGAVLTAYVGISGLLARMAKDRCLPQFLLMKNKWRGTYHYIIFGFFFLATSQVIILQGDITTLAGVYTFSFLGVMTLFSVGTILLKFKRPSLPREVTVSYGTTLVGITCVVTAFVGNMLSKPEVVSWFLIYFMAVGFLVVLVFLRVRLLKILLKLAGPVCLDSVTS-----SIKDQIHELQDEPFVFLCKQADTYVINKAILYVR 1950
            D +S L  P   S R + ES +F G+GS+    +P       +  S+ +K  +G +KLGE  ATAISGNDILSS  YV+GLV+  AG L+P+CL +V  +LYL+R         IY E + ALP NGG YN+L+N TSK  AS AA  A+I+YI TGVVSA  AI+YLQT++P          TI LLFFF  L  +G+SESA VA  +FV+HV  L+ + +L  +Y  FN  +L EN +  +P V   G ++ GT+ TAI +G SSAMLGVSGFE+SSQFVEEQA GVF KTL+NM  GV +FNP + L+S   +P+ EI+  K ++L+ MAR VG W  GCL +      LG  F+F +S+DAF+VL+ A+LT YVGI+GL+ RM+ DRCLPQF L+ N W GT  +I+ GFF L  SQVI+L  D+  L GVY ++FL VMT+F++G ILLK KRP+LPRE+T S+  +++G+  VV A +GN+L KPE++++F +YF+ +G LV+++F R +   +  ++   + L   T      +I D +   QD PFVF  K  D ++ NKA+LY+R
Sbjct:   18 DKSSWLWTPPGAS-RKKYESHDFAGYGSYDVKTTPSVSDIQSIDHSFHEKE-QGEKKLGELEATAISGNDILSSTFYVSGLVSTSAGKLAPLCLTLVGFVLYLFRG--------IYHETVMALPCNGGTYNILLNCTSKQTASIAAVFAIIAYITTGVVSAIEAIAYLQTILPEDCQIDQQIATIALLFFFCLLTNLGMSESAFVAKSIFVIHVAVLSLLTILGVIYTIFNSELLFENWETPYPSVDAAGEVLTGTFFTAIFYGFSSAMLGVSGFETSSQFVEEQAAGVFPKTLKNMWVGVMVFNPLLSLVSFAAMPLQEIMDNKDTVLARMARVVGEWFQGCLFIPEHYVSLGSLFSFIISVDAFIVLAAALLTGYVGINGLIRRMSMDRCLPQFFLISNPWTGTDSFILCGFFLLCVSQVILLDSDVEALGGVYCYAFLTVMTIFALGNILLKIKRPTLPREITTSWLQSILGLVSVVIALLGNILGKPELLTYFFVYFLIIGTLVLVMFQRTQKTNLSFQIYTTMILALTTKKREIITIADTVKNFQDIPFVFFVKHDDLHMANKAVLYIR 581          
BLAST of mRNA_P-littoralis_Contig206.65.1 vs. uniprot
Match: A0A1V9YY08_9STRA (Uncharacterized protein n=1 Tax=Thraustotheca clavata TaxID=74557 RepID=A0A1V9YY08_9STRA)

HSP 1 Score: 485 bits (1249), Expect = 1.350e-160
Identity = 283/574 (49.30%), Postives = 378/574 (65.85%), Query Frame = 1
Query:  289 LPRRVSSRV-RLESWEFPGWGSHFSMVSPPGLAMSYQDK-SHEGHEKLGEWHATAISGNDILSSVLYVTGLVTGFAGWLSPVCLLMVAGILYLYRQGRGRKT*FIYGEAISALPMNGGAYNVLINTTSKPVASFAACLAVISYIATGVVSAATAISYLQTLIPAAGLMTCTIGLLFFFACLMTMGISESAGVALGMFVVHVFTLTAVCVLSAMY-AFFNVTILKENL-QQDFPDVRVGGSIVEGTWMTAILFGVSSAMLGVSGFESSSQFVEEQAKGVFVKTLRNMQWGVGIFNPAICLLSLCVLPMDEIVQYKHSMLSIMARRVGYWAGGCLGLSNPRFDLGEAFAFWVSLDAFVVLSGAVLTAYVGISGLLARMAKDRCLPQFLLMKNKWRGTYHYIIFGFFFLATSQVIILQGDITTLAGVYTFSFLGVMTLFSVGTILLKFKRPSLPREVTVSYGTTLVGITCVVTAFVGNMLSKPEVVSWFLIYFMAVGFLVVLVFLRVRLLKILLKLAGPVCLDSVTSSIKDQ---------------IHELQDE-PFVFLCKQADTYVINKAILYVR 1950
            L R ++  V  ++ W+FPGWG + S        M  +D      H KL EW ATAI GNDILSS LYV+GLVT  AG L+P+ L++VAGILYLYR        FIYGE ++A+PMNGG+YNVL+NTTSK VAS AA LA++SYIATGVVS  +A +YL   +P   ++  +IGLLFFFA L  MGISESA VAL +F++H  TL  +CV+S ++ A  N +IL ENL Q DFP+V V G+ V G   TA+ FG S+AMLG+SGFESSSQFV+EQA GVF KTL+NM WGV +FNP +  LSL V+PM  I  +K+++LS MA  VG                G+     VS+DAF+VLSGAVLTAYVGI+GL+ R+A D  LP+FLL +N  R T H+I+FG+F +ATS V++L+G++ TL+GVYT++FLG+MTLF  G +LLKFKR  L R+V   + T +VG++ V+ AF GN+   P ++++F +YF  V F+V ++F R+  L++++     +C      S +D                + ++ +  P VF CK  D   INKAILYVR
Sbjct:   20 LARSLNPSVSNVKPWDFPGWGKYISTNVKKEELMEIEDTLKRREHRKLSEWPATAICGNDILSSCLYVSGLVTAKAGKLAPLDLVLVAGILYLYR--------FIYGEVVNAIPMNGGSYNVLLNTTSKRVASIAASLAILSYIATGVVSGTSACTYLSATVPTLSVVPASIGLLFFFAVLTCMGISESAMVALVIFIIHTLTLVVLCVMSVLFMAKNNFSILYENLFQTDFPEVNVAGTWVSGDVFTALFFGTSTAMLGISGFESSSQFVQEQAPGVFPKTLKNMWWGVAVFNPLLSFLSLGVMPMSNINMFKNTVLSQMALVVG----------------GQTLQTIVSIDAFIVLSGAVLTAYVGINGLVRRLASDHILPEFLLHENSCRRTNHWILFGYFGIATSLVLVLEGNVETLSGVYTYAFLGLMTLFGTGCMLLKFKRADLRRDVIAPWWTCIVGVSLVIVAFFGNLCGDPTILTYFALYFSCVIFVVFIMFERLFFLRLIMYALQRICPSREKQSSEDTALATGARGGRTIVKAMRQITNACPTVFFCKNPDLPTINKAILYVR 569          
BLAST of mRNA_P-littoralis_Contig206.65.1 vs. uniprot
Match: H3GCK0_PHYRM (Uncharacterized protein n=25 Tax=Peronosporaceae TaxID=4777 RepID=H3GCK0_PHYRM)

HSP 1 Score: 485 bits (1249), Expect = 2.220e-160
Identity = 285/566 (50.35%), Postives = 371/566 (65.55%), Query Frame = 1
Query:  319 LESWEFPGWGSHFSMVSPPGLAMSYQDKSHEGHEKLGEWHATAISGNDILSSVLYVTGLVTGFAGWLSPVCLLMVAGILYLYRQGRGRKT*FIYGEAISALPMNGGAYNVLINTTSKPVASFAACLAVISYIATGVVSAATAISYLQTLIPAAGLMTCTIGLLFFFACLMTMGISESAGVALGMFVVHVFTLTAVCVLSAMYAFFN-VTILKENLQQDFPDVRVGGSIVEGTWMTAILFGVSSAMLGVSGFESSSQFVEEQAKGVFVKTLRNMQWGVGIFNPAICLLSLCVLPMDE---IVQYKHSMLSIMARRVGYWAGGCLGLSNPRFDLGEAFAFWVSLDAFVVLSGAVLTAYVGISGLLARMAKDRCLPQFLLMKNKWRGTYHYIIFGFFFLATSQVIILQGDITTLAGVYTFSFLGVMTLFSVGTILLKFKRPSLPREVTVSYGTTLVGITCVVTAFVGNMLSKPEVVSWFLIYFMAVGFLVVLVFLRVRLLKILLKLAGPVCL---------DSVTS---------SIKDQIHELQDEPFVFLCKQADTYVINKAILYVR 1950
            L+ WEFPGWG + S V+        Q +    H KL EW ATAI GNDILSS LYV+GLV   AG L+PV L +VAGILYLYR        FIYGE ++A+P+NGG+YNVL+NTTSK +A+ AA LA++SYIATGVVS  +A +YL + +P+  ++  TIGLLF FA L  +GI+ESA VAL +F+ H  TLT +CVLSA+Y   +    L+ N    FPD+ + G I+ G ++TAI FG S+AMLG+SGFE+SSQFVEEQA+GVF KTLRNM WGV IFNP I LLSL VLP+D    IV  K+++L+ M  +V                 GE     V+LDAF+VLSGAVLTAYVG+ GL+ R+A DR LP FLL  NK RGT H+II G+F +ATS V+IL GD  TL+GVYT++FLG+MTLF VG +LLKFKR  +PR V   + + ++G+  VVT F+GN+L  P ++++F +YF+AV  LV ++F R  LL++ +     +C          D   S         +I   I E+ +    F CK  +  +INKAILYVR
Sbjct:   44 LKGWEFPGWGDNLSSVASDSELNEIQARLSMDHTKLSEWLATAICGNDILSSCLYVSGLVASKAGKLAPVALAIVAGILYLYR--------FIYGEVLNAVPLNGGSYNVLLNTTSKRLAAMAASLAILSYIATGVVSGTSACNYLASHVPSLEIVPATIGLLFIFAMLSLIGITESAVVALVIFITHAATLTVLCVLSAVYVVKDEFQTLQANFDTGFPDINLAGDIMSGNFLTAIFFGTSTAMLGISGFETSSQFVEEQAEGVFPKTLRNMWWGVAIFNPMISLLSLGVLPLDGPGGIVDKKNTVLAEMGLKVA----------------GENMQLMVALDAFIVLSGAVLTAYVGVVGLVRRLASDRVLPDFLLHVNKARGTNHFIIIGYFLVATSLVLILHGDTETLSGVYTYAFLGLMTLFGVGCMLLKFKRADIPRSVIAPWWSCILGVIMVVTTFMGNLLGDPTILTYFSLYFIAVLSLVYIMFERTFLLRMCIYCMRQLCPSQRGNDEDGDETHSLRTGARGGQTIARYIREINEPAVFFFCKTPNLNIINKAILYVR 585          
BLAST of mRNA_P-littoralis_Contig206.65.1 vs. uniprot
Match: W7U6R6_9STRA (Transmembrane protein n=2 Tax=Nannochloropsis gaditana TaxID=72520 RepID=W7U6R6_9STRA)

HSP 1 Score: 484 bits (1246), Expect = 1.680e-159
Identity = 271/559 (48.48%), Postives = 374/559 (66.91%), Query Frame = 1
Query:  298 RVSSRVRLESWEFPGWGSHFSM--VSPPGLAMSYQDKSHEGHEKLGEWHATAISGNDILSSVLYVTGLVTGFAGWLSPVCLLMVAGILYLYRQGRGRKT*FIYGEAISALPMNGGAYNVLINTTSKPVASFAACLAVISYIATGVVSAATAISYLQTLIPAAGLMTCTIGLLFFFACLMTMGISESAGVALGMFVVHVFTLTAVCVLSAMYAFFNVTILKENLQQDFPDVRVGGSIVEGTWMTAILFGVSSAMLGVSGFESSSQFVEEQAKGVFVKTLRNMQWGVGIFNPAICLLSLCVLPMDEIVQYKHSMLSIMARRVGYWAGGCLGL---SNPRFDLGEA----FAFWVSLDAFVVLSGAVLTAYVGISGLLARMAKDRCLPQFLLMKNKWRGTYHYIIFGFFFLATSQVIILQGDITTLAGVYTFSFLGVMTLFSVGTILLKFKRPSLPREVTVSYGTTLVGITCVVTAFVGNMLSKPEVVSWFLIYFMAVGFLVVLVFLRVRLLKILLKLAGPVCLDSVTSSIKDQIHELQDEPFVFLCKQADTYVINKAILYV 1947
            R+S++  +E+W FPGWG +     V+   LA    D   +   KL +W ATAI GNDI++S  YV GLVT  AG ++P+ LL+V+ +LYL R        F+Y EAI+ALPMNGG++NVL+N+TSK +AS AA LA++SYIATGVVSA +A+ YL+ ++     +   +GLLF FA L+ +GI ESAGVA  +F +H+FTLT +C  S +Y   + + L+EN +  +PDV +GG I  G++ TAI FG +SA+LGVSGFESSSQFV+ QA GVF+KTLRNM  G  +FNP I  LSL VLP+  IV+ +  +L+ MA+ VG W  G  G    ++ R   G         WVSLDAF+VLSG++LTAYVG+ GL+ RMA DRCLPQFLL +N WR T H II G+   +   V+IL+G++T L+GVY+ +FL V+ LF+VGT+LLKFKRPSLPR+VTVS+ + +V  T ++   +GN++  P+V+  FL Y  A G LV+L+F    LL+  + +   +C    T  ++ ++   Q  P +F CK  D YV+NKA+LYV
Sbjct:   66 RLSNKSNIETWTFPGWGRYNLQMTVTDEELAEIEADMDQQQPPKLNQWEATAICGNDIMASCFYVVGLVTMSAGKMAPLALLLVSCVLYLIR--------FLYAEAITALPMNGGSFNVLLNSTSKGIASSAATLALVSYIATGVVSATSAVDYLKKVVSVPNPLLAILGLLFLFAVLVFLGIKESAGVAQVIFWIHIFTLTLLCACSMVYVVADPSTLRENFRAPYPDVELGGVIRSGSFATAIFFGYTSAILGVSGFESSSQFVQSQAPGVFLKTLRNMWVGAFVFNPTISFLSLGVLPLARIVEDESVVLAKMAKHVGDWMCGGAGAGVEASRRLGAGMGGGRWLEIWVSLDAFLVLSGSLLTAYVGVCGLIERMASDRCLPQFLLRRNPWRRTTHNIILGYLVFSAVLVLILEGNVTDLSGVYSLAFLSVLLLFTVGTMLLKFKRPSLPRDVTVSWMSVVVAFTMILVGLLGNLMGNPQVLLVFLAYVAAAGTLVLLMFQWTNLLRFTVLVLRGICPGIDTGVLQKELALTQSIPAIFFCKADDVYVLNKALLYV 616          
BLAST of mRNA_P-littoralis_Contig206.65.1 vs. uniprot
Match: A0A7R9YBH7_9STRA (Hypothetical protein (Fragment) n=1 Tax=Pinguiococcus pyrenoidosus TaxID=172671 RepID=A0A7R9YBH7_9STRA)

HSP 1 Score: 479 bits (1232), Expect = 1.980e-159
Identity = 275/556 (49.46%), Postives = 365/556 (65.65%), Query Frame = 1
Query:  319 LESWEFPGWGSHFSMVSPPGLAMSYQD---KSHEGHEKLGEWHATAISGNDILSSVLYVTGLVTGFAGWLSPVCLLMVAGILYLYRQGRGRKT*FIYGEAISALPMNGGAYNVLINTTSKPVASFAACLAVISYIATGVVSAATAISYLQTLIPAAGLMTCTIGLLFFFACLMTMGISESAGVALGMFVVHVFTLTAVCVLSAMYAFFNVT-ILKENLQQDFPDVRVGGSIVEGTWMTAILFGVSSAMLGVSGFESSSQFVEEQAKGVFVKTLRNMQWGVGIFNPAICLLSLCVLPMDEIVQYKHSMLSIMARRVGYWAGGCLG--------LSNPRFDLGEAFAFWVSLDAFVVLSGAVLTAYVGISGLLARMAKDRCLPQFLLMKNKWRGTYHYIIFGFFFLATSQVIILQGDITTLAGVYTFSFLGVMTLFSVGTILLKFKRPSLPREVTVSYGTTLVGITCVVTAFVGNMLSKPEVVSWFLIYFMAVGFLVVLVFLRVRLLKILLKLAGPVCLDSVTSSIKDQIHELQDEPFVFLCKQADTYVINKAILYVR 1950
            +E WEFPG+G +   +S     +   +   ++  G EKL E  ATAISGNDILSS LYV+  VT  AG L+PVCL +VA IL++Y+         IYGEAISA+ MNGG+YN+LINT++KPVA+ AACLAVISYIATGVVSA TA+ YLQ L+PA  L+   + L FFFA L   GI +SA VA+ +F++H+  L    +L  +Y  F+    L+EN    +PD  V    VEG   +A+ FG  + MLGVSGFESSSQFVE Q  GVFVKTLRNM  GV +FNP I L+SL VLP++++     S+L+++A   G W    +         +S+  + LG+   F V +DAF+VL GAVLT+YVGI+GL  RMA DR LP+FLL +N+WR T H     FF L+  QV IL+GD+  L+GVY+F+FLGVM  F VGTI+LKFKRPSLPREVTVS+     G+  VV  F+G ++ K   VS+F  Y + VG +++++F RVRLL++L      V  +S  +++K  I +L+  P +F  K  D YV+NKA+LYVR
Sbjct:    1 MEGWEFPGFGDYHRTMSVEKEELRVAEDTVRTRGGTEKLNELEATAISGNDILSSCLYVSSQVTESAGILAPVCLTIVAAILWIYKG--------IYGEAISAISMNGGSYNLLINTSTKPVAALAACLAVISYIATGVVSATTAVVYLQVLVPAVPLIGGIVLLHFFFAVLNAWGIGDSAKVAVFIFILHLCVLVMFVILGVVYMVFSGGGHLQENFYTHYPDASVADETVEGNTFSALYFGTCAGMLGVSGFESSSQFVESQGPGVFVKTLRNMWIGVVVFNPVISLVSLSVLPLEDVKAAHGSLLAVVADHAGNWLQDAIADMSDWVPRVSSSEYTLGQVLQFIVCVDAFIVLCGAVLTSYVGINGLACRMASDRVLPEFLLNRNRWRNTTHNTALIFFLLSALQVAILKGDVDGLSGVYSFAFLGVMIAFGVGTIMLKFKRPSLPREVTVSFAAACFGVVLVVCTFLGTLMGKSVYVSYFSFYLIGVGAVIIIMFQRVRLLRLLYVAMRSVFPNSAFANLKALISKLRSGPMLFYAKHPDLYVLNKAVLYVR 548          
The following BLAST results are available for this feature:
BLAST of mRNA_P-littoralis_Contig206.65.1 vs. uniprot
Analysis Date: 2022-09-19 (Diamond blastx: OGS1.0 vs UniRef90)
Total hits: 25
Match NameE-valueIdentityDescription
D7FXC3_ECTSI0.000e+086.20Uncharacterized protein n=1 Tax=Ectocarpus silicul... [more]
A0A836CNH3_9STRA2.780e-24164.03Amino acid permease-domain-containing protein n=1 ... [more]
A0A7S1UN14_9STRA1.720e-16552.15Hypothetical protein n=1 Tax=Phaeomonas parva TaxI... [more]
A0A6A3ZJ44_9STRA1.050e-16251.15Uncharacterized protein n=4 Tax=Peronosporaceae Ta... [more]
A0A835YT58_9STRA1.800e-16150.36Amino acid permease-domain-containing protein n=1 ... [more]
A0A1E7ERC1_9STRA7.640e-16147.74Uncharacterized protein n=1 Tax=Fragilariopsis cyl... [more]
A0A1V9YY08_9STRA1.350e-16049.30Uncharacterized protein n=1 Tax=Thraustotheca clav... [more]
H3GCK0_PHYRM2.220e-16050.35Uncharacterized protein n=25 Tax=Peronosporaceae T... [more]
W7U6R6_9STRA1.680e-15948.48Transmembrane protein n=2 Tax=Nannochloropsis gadi... [more]
A0A7R9YBH7_9STRA1.980e-15949.46Hypothetical protein (Fragment) n=1 Tax=Pinguiococ... [more]

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Alignments
The following features are aligned
Aligned FeatureFeature TypeAlignment Location
P-littoralis_Contig206contigP-littoralis_Contig206:397382..419887 +
Analyses
This mRNA is derived from or has results from the following analyses
Analysis NameDate Performed
Diamond blastx: OGS1.0 vs UniRef902022-09-19
Pylaiella littoralis U1_48 OGS1.02022-07-08
Properties
Property NameValue
Stop1
Start1
Seed ortholog2880.D7FXC3
PFAMsAA_permease_2
Model size1953
Max annot lvl2759|Eukaryota
Hectar predicted targeting categorysignal anchor
Exons14
Evalue2.74e-281
EggNOG OGs28KN3@1|root,2QT3M@2759|Eukaryota
DescriptionAmino acid permease
Cds size1329
COG categoryS
Relationships

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

Feature NameUnique NameSpeciesTypePosition
1680790005.2350857-UTR-P-littoralis_Contig206:397381..3976771680790005.2350857-UTR-P-littoralis_Contig206:397381..397677Pylaiella littoralis U1_48UTRP-littoralis_Contig206 397382..397677 +
1680790005.245066-UTR-P-littoralis_Contig206:399776..3998901680790005.245066-UTR-P-littoralis_Contig206:399776..399890Pylaiella littoralis U1_48UTRP-littoralis_Contig206 399777..399890 +
1680790005.262485-UTR-P-littoralis_Contig206:400189..4002521680790005.262485-UTR-P-littoralis_Contig206:400189..400252Pylaiella littoralis U1_48UTRP-littoralis_Contig206 400190..400252 +
1680790005.2708325-UTR-P-littoralis_Contig206:401359..4014761680790005.2708325-UTR-P-littoralis_Contig206:401359..401476Pylaiella littoralis U1_48UTRP-littoralis_Contig206 401360..401476 +
1680790005.2792468-UTR-P-littoralis_Contig206:403011..4030451680790005.2792468-UTR-P-littoralis_Contig206:403011..403045Pylaiella littoralis U1_48UTRP-littoralis_Contig206 403012..403045 +


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

Feature NameUnique NameSpeciesTypePosition
1680790005.2879188-CDS-P-littoralis_Contig206:403045..4031801680790005.2879188-CDS-P-littoralis_Contig206:403045..403180Pylaiella littoralis U1_48CDSP-littoralis_Contig206 403046..403180 +
1680790005.2986696-CDS-P-littoralis_Contig206:403857..4039331680790005.2986696-CDS-P-littoralis_Contig206:403857..403933Pylaiella littoralis U1_48CDSP-littoralis_Contig206 403858..403933 +
1680790005.3083196-CDS-P-littoralis_Contig206:405237..4053681680790005.3083196-CDS-P-littoralis_Contig206:405237..405368Pylaiella littoralis U1_48CDSP-littoralis_Contig206 405238..405368 +
1680790005.31965-CDS-P-littoralis_Contig206:405910..4060811680790005.31965-CDS-P-littoralis_Contig206:405910..406081Pylaiella littoralis U1_48CDSP-littoralis_Contig206 405911..406081 +
1680790005.328174-CDS-P-littoralis_Contig206:406551..4066321680790005.328174-CDS-P-littoralis_Contig206:406551..406632Pylaiella littoralis U1_48CDSP-littoralis_Contig206 406552..406632 +
1680790005.3371036-CDS-P-littoralis_Contig206:411060..4112851680790005.3371036-CDS-P-littoralis_Contig206:411060..411285Pylaiella littoralis U1_48CDSP-littoralis_Contig206 411061..411285 +
1680790005.3482769-CDS-P-littoralis_Contig206:411866..4119441680790005.3482769-CDS-P-littoralis_Contig206:411866..411944Pylaiella littoralis U1_48CDSP-littoralis_Contig206 411867..411944 +
1680790005.3603632-CDS-P-littoralis_Contig206:412545..4127011680790005.3603632-CDS-P-littoralis_Contig206:412545..412701Pylaiella littoralis U1_48CDSP-littoralis_Contig206 412546..412701 +
1680790005.3723712-CDS-P-littoralis_Contig206:418134..4182911680790005.3723712-CDS-P-littoralis_Contig206:418134..418291Pylaiella littoralis U1_48CDSP-littoralis_Contig206 418135..418291 +
1680790005.3840237-CDS-P-littoralis_Contig206:419768..4198871680790005.3840237-CDS-P-littoralis_Contig206:419768..419887Pylaiella littoralis U1_48CDSP-littoralis_Contig206 419769..419887 +


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

Feature NameUnique NameSpeciesTypePosition
mRNA_P-littoralis_Contig206.65.1prot_P-littoralis_Contig206.65.1Pylaiella littoralis U1_48polypeptideP-littoralis_Contig206 403046..419887 +


Sequences
The following sequences are available for this feature:

protein sequence of mRNA_P-littoralis_Contig206.65.1

>prot_P-littoralis_Contig206.65.1 ID=prot_P-littoralis_Contig206.65.1|Name=mRNA_P-littoralis_Contig206.65.1|organism=Pylaiella littoralis U1_48|type=polypeptide|length=443bp
MNGGAYNVLINTTSKPVASFAACLAVISYIATGVVSAATAISYLQTLIPA
AGLMTCTIGLLFFFACLMTMGISESAGVALGMFVVHVFTLTAVCVLSAMY
AFFNVTILKENLQQDFPDVRVGGSIVEGTWMTAILFGVSSAMLGVSGFES
SSQFVEEQAKGVFVKTLRNMQWGVGIFNPAICLLSLCVLPMDEIVQYKHS
MLSIMARRVGYWAGGCLGLSNPRFDLGEAFAFWVSLDAFVVLSGAVLTAY
VGISGLLARMAKDRCLPQFLLMKNKWRGTYHYIIFGFFFLATSQVIILQG
DITTLAGVYTFSFLGVMTLFSVGTILLKFKRPSLPREVTVSYGTTLVGIT
CVVTAFVGNMLSKPEVVSWFLIYFMAVGFLVVLVFLRVRLLKILLKLAGP
VCLDSVTSSIKDQIHELQDEPFVFLCKQADTYVINKAILYVR*
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mRNA from alignment at P-littoralis_Contig206:397382..419887+

Legend: UTRpolypeptideCDS
Hold the cursor over a type above to highlight its positions in the sequence below.
>mRNA_P-littoralis_Contig206.65.1 ID=mRNA_P-littoralis_Contig206.65.1|Name=mRNA_P-littoralis_Contig206.65.1|organism=Pylaiella littoralis U1_48|type=mRNA|length=22506bp|location=Sequence derived from alignment at P-littoralis_Contig206:397382..419887+ (Pylaiella littoralis U1_48)
ATGAAGCCAGCAGCGGGCGAATCATCCGCAGCAGCAGCAGCAAAAGAAAC AAATAGGGATGTCTTCGACTCCAAGGGCGGCCGCGAGGACGACACCCTGC TTGGCTGGGGCAGCACAACCAGCGGCGCCAACAACATGATCCCGAGCACT GTTGCGAGGGGTAAGAAGGGGAGCAAGCTCACGGGCGGGTCAGGCGCTAG AGGGGGCGCCGCCGCGTACTCGGAGGGACCCCTGGGGTCAGGGGCTAGGT CGAGGATGGCATCTTACGACTCGGCGTCTACGCTGGGCTTGCCCAGGTTG GTATGTGTGTGTGGTGTTGCACGATTTTTTTCGGAGATTTCGTCTCGTTT TCGGAGATATCTTCTCCTGATCGGACATCGTCTCCTTTTCCCGGAGATGT ATGCAGTCGTACGGGACACAGCAATAGATGCTTGTTTTATTTTGGTCTAG GCTGCGTTGCTTGGCTTGCTGAAGTGCAGTGTTGCTGCCTTGTTTGCTTC GATGTCAGACGTTTTATATTTGATGCAAGGTGGGGGCGACGCACAGCGAG GCGGGCGGGTTTAAAGAGTGCCGTGTTGTTGTTGTTGTTGTTGTTGTTGT TGTGTTGTTGTTGTTGTTGTTGTTGTTGTTGTTGTTGTTGTTGTTGTTGT TGTTCTTGTTGTTGTTGTTGTTGTTGTTGTTGTTGTTGTTGTTGTTGTTG TTGTTGTTGTTGTTGTTGTTGTTGTTGTTGTTGTTGTTGTTGTTGTTGTT GTTGTTGTTGTTGTTGTTGTTGTTGTTGTTGTTGTTGTTGTTGTTGTTGT TGTTGTTGTTGTTGTTGTTGTTGTTGTTGTTGTTGTTGTTGTTGTTGTTG TTGTTGTTGTTGTTGTTGTTGTTGTTGTTGTTGTTGTTGTTGTTGTTGTT GTTGTTGTTGTTGTTGTTGTTGTTGTTGTTGTTGTTGTTGTTGTTGTTGT TGTTGTTGTTGTTGTTGTTGTTGTTGTTGTTGTTGTTGTTGTTGTTGTTG TTGTTGTTGTTGTTGTTGTTGTTGTTGTTGTTGTTGTTGTTGTTGTTGTT GTTGTTGTTGTTGTTGTTGTTGTTGTTGTTGTTGTTGTTGTTGTTGTTGT TGTTGTTGTTGTTGTTGTTGTTGTTGTTGTTGTTGTTGTTGTTGTTGTTG TTGTTGTTGTTGTTGTTGTTGTTGTTGTTGTTGTTGTTGTTGTTGTTGTT GTTGTTGTTGTTGTTGTTGTTGTTGTTGTTGTTGTTGTTGTTGTTGTTGT TGTTGTTGTTGTTGTTGTTGTTGTTGTTGTTGTTGTTGTTGTTGTTGTTG TTGTTGTTGTTGTTGTTGTTGTTGTTGTTGTTGTTGTTGTTGTTGTTGTT GTTGTTGTTGTTGTTGTTGTTGTTGTTGTTGTTGTTGTTGTTGTTGTTGT TGTTGTTGTTGTTGTTGTTGTTGTTGTTGTTGTTGTTGTTGTTGTTGTTG TTGTTGTTGTTGTTGTTGTTGTTGTTGTTGTTGTTGTTGTTGTTGTTGTT GTTGTTGTTGTTGTTGTTGTTGTTGTTGTTGTTGTTGTTGTTGTTGTTGT TGTTGTTGTTGTTGTTGTTGTTGTTGTTGTTGTTGTTGTTGCTGGTGTTG TTGTTGTTGTTGTTGTTGTTGTTGTTGTTGTTGTTGTTGTTGTTGTTGTT GTTGTTGTTGTTGTTGTTGTTGTTGTTGTTGTTGTTGTTGTTGTTGTTGT TGTTGTTGTTGTTGTTGTTGTTGTTGTTGTTGTTGTTGTTGTTGTTGTTG TTGTTGTTGTTGTTGTTGTTGTTGTTGTTGTTGTTGTTGTTGTTGTTGTT GTTGTTGTTGTTGTTGTTGTTGTTGTTGTTGTTGTTGTTGTTGTTGTTGT TGTTGATGTTCATAACATACTTGAAGTATACAAGTATGCTGCCGCTGCTG TTGGTGCTGTTGTTTCTCGCGAAAGCTCTGCTAGAGAGATCTGGCCCGTG ATACCCAACCTCGAGCTACAGAAAGAAAAACCAAGAACAAAATAACATGT ATCTAAAACACGGGAAAGTACAGCACCCAAGGAATGTAGAAGAGAGACCG GGGCTGCGCTTCGGTGAAGGCCTTATGCGTACGATACAAAACGATGTGCG ACACGTTGCTGTGGCCTGACCCCTCTGCTGCTGCTGTTGTTGCTGTCGCT GTTGCTGATGTTGATATTGATGTTGATGCTGATGATGTTGTTTTGTTGTT GCTGGTAGTGTTGCCGACACTTTTGCTGATGTTCACGTTGATTTCGATTC TGATGCTGATGTTTTTGCTGATCCTCCTTTTGCTGTTGCTGACGCTGACT CTGTTGTTGCTGCTGATTCTGCTGCTGTTTGCGTCGCCCTTACTGTCTTC CATGGTTCGGGCGCTGTTTTCGATGATTCCTGAATTATGCGACAGGCGTG TTTCTAGCAGGGTCCGGCTCGAGTCTTGGGAATTTCCGGGCTGGGGGAGT CACTTCAGCATGGTCTCGCCGCCTGGGCTGGCCATGTCGTACCAGGACAA GAGCCATGAGTGAGATTATGGGTATCGATACAGTTGATCTCGTTGTTGTT GTTGCTGCTGCGGCGGCTGTGGGTAAGACTGGCGGAAGACTCGGATGAAC TTTATCGTTGTTGTTGTTGTTGTTGTTTGATGCTGCTGCTGCTGCTGCTG CTGCTGCTGCTGCTGAGCTGAAGCTGCTGCTATGGATGTGGCTGTTCCAG CTCCGGTGCATGTTTTAAACGTCTTAACGACAATGTTGGCATCCCGCCCA CCACCCCTGCGGATATTCGCCGAACCTGCTGCTGTGATTCCTGAACCACT CCTTGCAGGGGCCATGAAAAACTGGGCGAGTGGCACGCTACGGCTATCAG CGGCAACGACATCCTCTCAAGGTTCGTTGTGCTCTCTGAACCTCGTTGCG CTCTTTCGGTTTCATATTGGTGACTCTAGTAGCATACGATAGCGGATCGC TACCGTAGATCCTCCGCTGCGTCTCTCGGTATCTATTGTATTATTCTGTG TCTGCCTCTTGTTCTGCGCCATCCCTTCGCCGCTACTGTCTCTCTCTCTC TCTCTCTCTCTCTCTCTCTCTCTCTCTCTCTCTCTCTCTCTCTCTCTCTC TCGAGATCAAATTCCCCTGTGTGTCACTGATGTATGTTCCTGTTTTTTTG GACTCCTGTGTATCTGTTTCTTTCTCTTTCTCTTTTGTCCCTCTCGCTCT TTATCCCCCTTCCTCCCTATTTTCTCGCCCCATCGCGAAACATTTTTCGC TTTACTCCAGTACACTTTCCGCTGTCCTTTTCTCCTTCCCGTGATTTCTG ATGCCATCGCAACTGCGGTCTTTCTACATCCCCACCAGTGAATACTCGAG TATTTCACACCTCGGAAGACGCAAAATACCAGATGATGCGACACTCTTGT TTTGCTTTTCCGCTACATGGGACCGCAATACCAGATGATGCGACACTCTT GTTTTGCTTTTCCGCTACATGGGACCGCGAGTACATAGCACAGACGTACA CGACTTGCCGAGTGTTACGTTTTACGAGGTGCGGAAACACTAACCGCTTT ATTTATCTCTCGCTGATGTTGCGTTTATCCCTCTCTCTTTATCTAACACT CTCTCGAACTCACTCTCTCTCTCTTCCCCTCCCCCTCCCCCCCCCCCCCC CTCCCTCTCTCTCTCTCTCTCTCTCTCTTTCTTTTCCTCCCCTCTATTTG CTCTCTCTCTCCAACTCTCTTCAACTCTCTCGCCCTTTCTCTCTCTCTTT TCTCCCTCTCGTTCTTTGTCTCCCTTCCTCTCTCTCTCTCTCTCTCTCTC TCTCTCTCTCTCTCTCTCTCTCTCTCTCTCTCTCTCTCTCTCTCTCTCTC TCTCTCTCTCTCTCTCTCTCTCTCTTTCTCCCTCCCTCTATTTGCTCTCT CTCTCCAACTCTCTTCAACTCTCTCTCCCTCTCTCCCTCTCTCTCTCTCC CTCTCCCGCCTTCTTTCCCGGCTCCCAGCGTCCTTTACGTGACTGGTCTC GTGACAGGGTTCGCGGGCTGGCTGTCCCCCGTCTGCCTGCTCATGGTCGC CGGGATCCTGTACCTCTACAGGCAAGGGCGTGGCAGAAAAACATGGTTGG TGGAAGTGAAGCGTTCAAACGACGATGCGTCGATGCCGGTAGCGTATGAT CGCGGTTCGTGAGTAGGTTGGCTCGCTCCGCTGGCACATGCTGCCTGCTG CTGTACGAGTACCTGCAGGAACTTTTGTGTTTTTGCCACTACTGTTGGTT TTTCATGTCGCCGCGACAGTGTTATTTAGGGTACCTGTGCGTGGTTGGTG GGGTGAGTGATACTTTTGGAATTTCGAGGGAAAATATGTTGTGATGGCAC AAATTATTTACAGGATGATACGAGAATTCTTGGTGCTAGTCTACTCGGTT TGTTTGGTGCTTTTTCCGCGTAGAACAAAAGTCGGGCACTTTTAGGGGTT TTATGAGATAGTATTATACTTACTGGTGTTGTGTTGTGTTGTGTTGTGTT GTGTTGTGTGGTGTGGTGTGTTGTGTTGTTTGTATTGTGTTATATTGTAA TTTTATCTATCCTGTACCAGGCGTATTTTGCGGTGATGAGGCTACCGTAC TCTCCAAAAATGACACCAGTAAGATTTTCAGATTTTTCGAGTTCAAAATA CTCCGAAGCATGGAGACCGAAATTCAGGTGCGCCGCATGTCCTGATGATG TAGAGAACTGTAGAACGCATGTTGTGGTACTCCGTTGACATTTAAATGTA TGCGATATTTTGCTGTATCCGCTTTCTTTCCGGGGAGGCTATGTGCGCGC TGCCAATGACCGGGGGCGCGTCCAACCTTTTTATCACCTTCGTAAATCAA AGAAATCAAACCATGCTGCTGTATTAGGTTTTCCTGCTGTATTAGGGTTT CCCATGTACGGGGAGGCTTGAACAACGTTCACATCATCTCCGCAGACGGT GTTATACTGTACGCGCGTGCTTGTATGATACTTAGTGCTTCGTGTGAGGT TAGTCTATCAACGGGAAGGCTGTCTCCGCGCTGCCTACGAAGCGGTGCGC GTGTAACGTTCTCATGATTATGTCCGTACACGGTAAAACCTAATCCATGC TGCTGTATCAGATTTTCTACATGTGGGAAGGCTACCTCCGCGCTGCCTAT GAATTGGGGCGCGTTGAACGTTCTCATGATTCTCCGTAGATGGCATGAAT CAAAACCATGCCGCTGTAATAGGTTCATCTTTACATATGTGTGGGGAGGC TACCTCCGCGCTGCTGATGAACAGGGGCGCGTTCAACGTTCTCATTATCT TCGTAAACGATATTTCGACGTATACATCAAAACCATGCTGCCGTAACGCT CTCATCTGCGAAAAAGATATACACATCAAAACATGCTGCTACAAACAGGT TTCTCTTCATACGGGGAGGCTATCTCCGCGCTGCCGATGAACCGGGGCGC ATTTCACCTCTTTACCCCTGTAGACGGTACAGACCAAAACCATGTTGCTG TTCAACATCAGGTTTATCTATGTACGGGGAGGTCATCCCCTCGCTGCCGA TGAACCGGGGCGCGTTTAACGTTCTCATGATCTCCGTAGATGGCGCTAAT ATATCAAAACCATGCTGCTTTGTTCACCAGATTTATCTACGGGGAGGCTA TCTCCGCTCTGCCGATGAACGGGGGCGCGTACAACGTTCTCATCAACACG ACCAGCAAGCCGGTGGCTTCTTTCGCCGCTTGTCTGGCGGTGATCTCGTA CATCGCAACGGGGGTCGTGTCGGCTGCTACCGCCATCTCCTACCTGCAGG TGTCGTGATGCTGTATGTTGATTTTTTTTTTTTCTCACTTCAGCTCACCT CCGAAGTCTGGCCGTGGTCACAAACCAGGCACATATGTGTCGTGCCACTG TAGGGGGAAAACTAAAATGAAGATGTTGGTTGGATGTGACACTGACTTTA CTATGTTGTCGATGTAGTGATTCTGATCCGAGGCAGTGATGTGGACAAGT TGGTGTCAAAATTTGTGTGGACGCGTTGGTATTGCTGTTGATGTTGTCGA CATATTGTTGCTGGTCTAGCGGATTGATGTGGACAAGTTGGTGTTGATGG TTCCAGGGGTATGCCGTTGGTATTCATCTTGATCTAGGCGATAATGGTTC GATATCTAGATGCTAATCTGGTGTCTTGATGTGGACAAGTTGTTGGCAAA TGTTCCAGGTATTTTGTGTTGGTGTTGATCTTGGTATTGATGTTGATGAT GTCGGATGTTTGATGTTTGAAGTTGAAACATGTTTATTTGTTGGTATTTT CCAGGTACGTGTGACTAATACCTGGCAACGTGGCTGGTGTGGTCGCTACG ATGCTGCTGCTACTGCTGCTGCTGCTGCTGCCGCTGCTGTTAACTCCGAC TAATCTCCCGCCCTTGCTGCTCTTGGCAATTGTAATGCTGTTGCTGTGGC GTATCCTTGCTGGGACAACGAGGCAGACGTTGATACCGGCGGCGGGATTG ATGACCTGCACCATTGGTCTCCTCTTCTTTTTCGCCTGCCTGATGACTAT GGGTGAGAAACGAAATATGTAACGGGGCTCAGTAGAATACCATTGGAGGG TGACCCCAACTAAAGTCCCGGAATTTCCAACGTCTTTCCGCACCATGTCG TTGCCGGTAATTACCAGTGTTGAACCGGTGACTCCCATCACTGGATACTT GCATGGGTGTTTCCGTTTACTACTGTAGTCCAACTCTTCGAGCCAAACAC TCCAGGCAGTCAGTACCACGACGTGCATTGATTGCGATGGAACCTGCGGG CGATGATACTCCTTCGTCATGAACGGGTGTCTTTGCCGAATACACCCCCC CTCTTGTTTTTTTGCTCTCATGTACTTATCCGTCTGCCTCATGACCACCG AGTGAGAAAAGTAGTAATAGTGGGTGCGTTCTGTCGGCTGCACAAGGTAG TAAATCGTGGCGCACTCGGATGAGGTCAGCCGACCTTGTGCCTTCCCACA TCAGAGCCAGTGCCGGGTTGCTGAGGCCCCATCGGAATACTAGCACGTAT GGTTGTACCGGACCACTGGGCCTGTCGAGAGTCGAGAGTCGAGAACAGTA CCGCCCCCGCTGACAGTCCCGCTGACAGCAGAGCACCGTTGTTTTTTTTC CTGTTGTATTTTTCGCCCACCTGATGGCCATGGGTGACCCGCAAGGCTCT GTACCTGTACGTACCCAGTCGACGAAGTTTATGGGGAAGAGACAGATCGG GTAGCAAGGCATGCACCTGATGAGGGATGCACCTGACTGACTGCTTAGCT TAAGAAATGGGTGGCGATGTTGATATCATGATGTGCCGGTTGACGAAGTT AAGGGGCAAGAGGCAGATCGAGTGGCGAAGCATGCACCTGATTAAGAAGC AAGCCAAGCACCAGTGGTCCCGTCGAGACCATGTTTGTTGTTGTTGTTGT TGTCGTTGTTGTTGTTTTCTTTACGATGATATAAGAAAATAAGCACCGCG TACACCCTTAAACGTCCACAAGAACAGCAGAGGTTTTGATCGACAATGTT TTCTATTGCTGGCACCAAGAACAAGCAAGATACTCACGCTGCCTTTCTCT GTTGCTGCTGCGGCTCCGCTTTTGCTTCTGCTGCTGCTGCTGCTGCTCTT GCTGCTTCGGCTCTGCTTTTGCTACTGCTGCTGCTGCTCTTGCTGCTTCG GCTCTGCTCTTGCTACTGCTGCTGGTGGTGCCTCGGATCTGCTCTTGCTA CTGCTACTGCTACTGCTGCTGGTGGTGCTGCGGCTCCGCTTCTGCTACTG GTGCTGCTGGTGCTGCTGCTACTGCCATGCACTTGGTCTCCGTGACGTAT GTGCAGGGATCTCTGAGTCTGCGGGGGTAGCACTCGGAATGTTCGTGGTT CACGTGTTTACCCTTACGGCTGTTTGCGTCTTGTCAGCCATGTACGCATT CTTCAATGTAACAATCCTCAAGGAAAACCTGCAGCAGGTAAACATCGTAC GTGCTCAGTGTCGTCACTGGTGTTGCTGTTGCTGTTCTTCTTCTTGGTTG TGGTGGTGGTGGTGGTGGTGCTGTTGGTGCTGTTGCCCTTGGTCGTGGTG GTGGTGGTGATGATGGTCTTGGTCGTGGTCTTAGTCTTGGCGTTGGCGTT GTTGTTGTTGTTGTTGTTGTTGGTGGTGGTGGTGGTGGTGGTGGTCATGT TGGTGATTGTGTAGCTGTTGCAGTTGCTGCTGCAGCTGTTGGTGCTGCCG CTACTGCGCACGAACGTTAAAAGCAGAAAACTCAACCTACCTTACACTTG TCAACACCAGAGAAATAAGCCATGAGCATGAAAGTCAAAAGTAGCATTGC AATATATTTGTAGGATTTTCCCGGCCTTACCTGCTGTAATTCGTCGGCCC TGCATGATGGGATTGTCAGACAAGCAATTATCTCGAAGCAACATTCTACG CTGTACCGCTGATATTGCACTTTTTATCCAGGAAATTTCCCGACTTTCAC TACTGTATTTCATTGCATTTTGTGCCTAGGATTTTCCCGACGTGAGAGTC GGCGGCTCAATCGTGGAGGGGACATGGATGACGGCCATTTTGTTTGGGGT TTCCAGTGCAATGCTTGGCGTTTCGGGGTTCGAGTCGTCCTCGCAATTCG TGGAAGAACAGGCCAAGGGGGTCTTCGTCAAGACTCTTCGCAACATGCAG GTTGGTGGTTCATTGCGTTGCTGTTGATGTTGTTGTTGTTATTGTTATTG TTGTTCGGGATCATCATTTGTTGCAGTTCCTCACGACTCGTGGAACAGCA GGCCAGACGGAGGTGTTCGTCAAGGCTAGTACCAACACGCAGGTTGGGTG TGTGCGGTCTTTGTTTGTTCGCTACTTCGTACAGTATATACTTCGAAGTG TTTATTTGTTTTTTGCTGTCGTTGTCGTCGTCGTCTTCGTCGTTATTCTT GTTGCGCCCGAAGGCCGGCCCTGACTGATGGCAATCACAAACGTCCGGCC TCCAACTATGGAGGACCGCACTCCTCATGATACCTGCCTAATGTGCCGCG TGCTTCTTCTTCGTGGTGCGTTCGTTGTGCGTGCCCCGTGTGCTTGTTCG TCGCCGTGTGCTTGTTTCGTCATTGTCTCCACCACGGGGCCGCCGCCAAA TCCCGCCGTCGCTGCTGCAGTGGGGCGTCGGCATCTTCAACCCGGCCATC TGCCTGCTGAGCTTGTGCGTGCTGCCGATGGACGAAATCGTTCAGTACAA GGTGATGCCGAAATTTGAACACGAATAACTGCGATAATTTCTGGTTTGGC CGCAACAAGGGCAGAGAACACGTGAAACATTGTTTTTGTGCAAGGTTTCG CAAAAAAAAAAAAAACGTTCATATGATGGCGTCCTTTAGTGTTCTTCGAA GTTTCTTCAACAGCGTCATACACGCGGTTCCAGCAGAAACTTACAGAGAT GTTTACTGTTATGCATACCGCACTGCTGCTTCCATGACATGTGTCGTGAT ATGTACTTCGTATATTTTTGTGACTGGGCAGTCTCTGGCTCTACAGTGTA TGCGAGGATGATGTTAATCCAGCTCTTTGTCCAGACCGCGCGTTTGAGGC TTCCTCTTGATTCTTGGTGGGTCACACTATAGAGTGAGTGCATGATCCCC GCGCATGCATCCTCGGATTATATGCTGGACATACCAGTTCTTAGCCGTAT GATTGGCCTGGGAGGGGGGGGGGGGTGCACTCATGGCTATTTTTGGAAGT CAGCCGATTGGCCTAACATCGCTAGCGTACACTGCCTGGAACACGAGGGT TTGAGCACGCCTATTGCTGGATGTTCACGGCGCACCAGACTCGACCTGCG TGTCTATTGGCTGCCCAGGGGGACGTGCGTGTTTTGCCTCGCTCTGCAGA GAATTGGAGATAAATGCCCCCACGCGTTTACTCTCGAATGGAGTGCCGGA CATGTTTGTCCTCGCGTGCTCAGCATGACCGGTCACCGCACATACACACA CATGATACCTGTAATCCTTATCTGAAAGGGTGCAGACAGCAGTAGTTCTC TCGATTGCTGGACAGCACACTTTGTCGGTCCAGGTGGGGTGTTTCGCCTC CTCAGAGTTGGGGGCACCAGAGCACGCATGATCTCAAGCCCGAGGTGTAC ATGGAATCCATACTTCCTCTATATCATAAGTCTGTGCCGTTATGTTTTTA CGCCCCCTTAACGGTGTCCGATTTCTTCGGCGATAATTTTTTCGAAATCT TCGGAGTTTTTCGGGCTGAAACACATTTTTTTTTTCTTGCGCACTACCCT GCATGGGCTAGCGGCTAACAAAAAAGTAGTCAGGCCAAAAATTGCCGTAT TTGAGCCTTTCCAGAGGTGGACGGGGGGGCGGGGGCACAAAAAAAAACAA TGCAATCCCCCCCAAAATTATCCCTAACCCTGAACCTAGCCCCCCTAACT CAAAAAGTCATGTCGAGTCCCCCCTTACTAAAATCAGTATAATAGTGACG CCACACTAAAACCAAGACACTTGGGGTTTCCACACTAAAACGAAGATACT TGGGACTCATACCCTAAAACCAAGACATCTGGCTGAGTCAAAATTCTCAA AAATGGGCCAAAATGGGCATATTTTGACTTCATTTTAGTACAAACAACTG GCTTTTTTTTTCTTTTTTTTTGCATCAGCTTCTCGGAGACTTCATCTTTC GAACGAACCTAACTATAGGATGATCGAAACGGTATGGACGCGCAAACAAT TACACGCCCATAACGGCACAGACTTATGATACAGAGGAAGTATGTGTACA GTACCAGGTATGGTTTTTAGCCCCCCCCCTCACCCCCAAATGGCGGCCAC ACGAGGCCAAACAAGAAGCTAGTACATTTGCTGTGAGACATTTTCGTGTT GAGATACAGGTGGGGCTTGCGGTGTAGGAGAGGGGCGAACCATGCCAAGA AAAGCTCTCTAAAGCTCTCTTCAACCGGCAATTCTCTTAAACCGGCAATA AACTCTTATACCGACAATGCTCTTGAACCGAATCTCCTGGCTACCGTGCA CGAGAGGGAAAAGAAAGAAAAATCGTTCTATGTGAGAGAGGGGTGTGCCA GCCGTTTCACCTCGCTTGAATCGACATTTTTTTTGGAATGAGCTCTCCAG AACCGTAGCCATGACTACTGCTGTATGGCGAAAACGTGTGAACGTAAAGC GTCCAAGTGTTGGTTTGGCTCGGTGGTCACTCCGTTAGGAGCAGGAACGG GGGGCTCCGTTTCGAAATCGGTTCGAGTCGATGGCCTAACGACTTCGTCG AAGGCAAGCAGCAATCTGAGTACTGTACCCTCCCCCCTGGACGTGTTCAC AGTCTCAAGGCTTCGTATGTTTACGTGCTTCCAGCTTTTCGAGAGTAAAG TATCGGGAGTAACGACAGCAGTAGCGCAGTGCAGTCAAGTGCAAGTACGC ATGATCTCACTCTGGACGTGAGACTACCGGACCCGTATGCAGCCCAAAAT TTTCGTTCCCCTCCTAAAATGGTGGCCGCAAGAGGCCAAAATAAGAATGG GAAAATGTACAGACAACAAAAAAACTTTTTGATGCCAACACCAAAAAACC AATGGAGGCAGCAAAGTTCGCCAATGTACGAAAGTTTCGCAGAATCCTCA CCAGCATTTTGGAGCCGAATCTTCTTTTCCCCGAGGTTTTCGTACCGCCG CTTTTGGTCACAGAATTTTTCTCTTGCTGACTTTTTTTTTTTCCGGGTGG ATTTGGTCTGCGGCTGGCTTTGTGCTAGAGGTCACGTGCGTGTGTTCTGT GTTCCCAATCGACAGCGGCCGTTCATGGCGAGGTTCAAGAGATGGACCTC AGGTACACCACACACCACAGCCTCCATCTCGTTCCCTACACCACACCTCT AAACGCGAAACTCTCTTGGATGTCACTCCCATCCACCTCCCTCCATCGAT GGGGCGTTGGGTTGGAGGCGGGGGCATTCAACCGATAGAGAGCAGCATTG CTGTGCTTGATATCATATCTGACTCCTGCTTGCTGCAGTGATGTGTAACC ATATTTTCAGGCGGCAGAATACGTATTCCGTTTCCAGGTAAAGAGCGGTC CACATACCGTCGATTTTTGGTTGATACCGCAGGGAGCACAACGGTACTCC GTCTCGCAAGGGCTTGTGCGTGGTCAACGGTCGAATGACGTGAGAGAAGC AAGACATGCGTGAGCGCCCCCCCCTTCCCGTTATCATACTTTGTGCCCAG TAGGAGCTCGGTCTTGACAAAGGAGTTTTGGTCATCATGGCTTTCAGGCA AGCAACAAATGCGTGAGCGACCCCCTCGCCGCCCTCGAAATCAGACTTGT CAACGAGCAGGAACGGCGCTCCATCTCGTATATATGGCATTCTTTATTTT TGACCTTTGGTTGAATGACGTAAGGCAACCAACCAACTAGCACCTCCCGC ACCCCAAGACTTTTCGACGAGTAGGAACGGTGCTCCGTCTCGGGAGGGAT TCTTGATCTGTGATGGAATTACTTTTGACAACCAACCAATCTTTAACCCG CCCCCCGATATCAGACTTGTCAACGAGCAAAAACGGTGTGTTAAGATGTA GTTCACGTATCCACTGTTCTATTAGTCAGCGCTGACTTGTTGTACTGTAC AGTGGATATTTTTACGTACTAACACGGTGCTCCGTCTCGAAAGAGATTGT TGGTCTGTGATAAAATGACTCAAGGCAAGAAACCAATTAGTACCTCCCCC CCGATATCACACTTTTGAACTGGTAGGAACGGTGCTTCGTCTTGAAAGGG ATTATTGAACTGTGGTAGAATCACTTGAAGGCAACCAACCAATCAGCACC TCCCCCCGCCGATATCAGCCTTTCCTCCACAGGGATTGTTGATCTGTGGT AAAATGACGTAAAGCAAGCAACCAATTTGTACCTCCCCCCCCGACATCAG GCTTTTCAACGAGTAGCAGCGGTGCTCCGTCTCGAAAGGGGTGATGCGCG GTCAAATGCCTTGAGGCAAGCAATAAATGCGTGAACATCCCCCTGCCCTC CCCCCTGGCATCAGACTTTTCAACGAGTCGGACCGATGCTCCATCTCGGA AGGGATTATTGATCTGTGGTAGAATGACTTTGAAGGCAAGCAACAAATTC GTGAACATCCCCCTCCCCTCCCCCCTGGGATCAGACTTTTCAACGAGTCA GACCGATGCTCCGCCTCGGAAGGGATGATGCGCGGTCAATGGTTTAATGG TCAAATGACTCGAGTCAAGCAACAAATGCTTGCATTCCTCCCCTGGTATC AGACTTTTCGACGAGTCGGTCCGATGTCCCGTCTCGAAAGGATGCCGGTC AATCAATGGTCATTTGGCTAGGACGAGCAACGAATGAGTAACGCCCCGCC GCCCCGCCCCGCCCGGCCCTGTCGCAACGCGATCGATCCGATTATTTAAT TTTATTTATTTTTATCGTATTGTGCACTCACTCGAAGTACTATTTTTTTC TTCTTTTTTTTTTTAACAAAACCAAAACTTAAAAAAATACGTTGACATCA CTATTTTGCTTTGTCTTATTTATTTTGCTTTGTTTCATGTGTTTTCTTTT CTTTTCTTTTCTTTTCTTTTCTTTGTTTTTCTTTTTTTTTCTTTTTTTTT CTTTCCTTTTCTTTTTGTCCCACTTGCAGCATTCCATGCTGTCAATTATG GCAAGGCGTGTCGGCTACTGGGCCGGGGGATGCCTCGGGCTGTCGAACCC GCGGTTTGACCTTGGGGAGGCGTTTGCGTTCTGGGTGTCTTTGGACGCGT TCGTGGTCCTTTCGGGGGCCGTCCTGACGGCCTACGTGGGCATCAGCGGG CTGCTGGCTAGGATGGCCAAGGACCGCTGCCTCCCGCAGTTTTTGCTGAT GAAGGTCGGTTTTGTTGCTGCTTTGTTGGGTTCCGGTGGTGTTGGCGTGT TTTCGTTTTGTGGTGGTGGTGGTGATGGTGGTTATTGTGGCGATGGCATT TGCGTGGTGATGACATATATAGTGTTGTGATTTCTAGCTTTTTTCAGTAA TGTGGTAGACGATGATGCTCTAAGAGAAGGACACCGTATTCAACGGAAGA TACATACACGGGACCCCTGAGTGGTCCCCGACGGCGAGGGTGCCGACCAA TATCACACAGCACGATTTCGAACAGCTCTCGACGGGAAATCACAAGGATC AAAATATGTTCCCTCACGGACCCCCCCCCCCCCCCATAACAGCACGAAAT CAAACAGCTCTCGACGGGAAATCAAAAGGATCCAGATATGTTTCCTCATC ACCCCCTCCCCCCCTGAACGGCACGAAATCAAACACGGGATAACGGAAGT ATCCAGCGATATACCCCCCCCCGCATCAAACGACAAGTTTTCAAATCAGC TCTCGACGGAATAAAAAAATTATCAAGTGATGTACCCGATCAACCCCATC ACCCCGCTCCTCCACCCCCCCCCCCCGCGCACCAGAATAAGTGGAGAGGA ACATACCACTACATCATCTTCGGATTCTTCTTCCTCGCTACCAGCCAAGT CATCATTCTGCAGGTGTGCGGTGTTGCCGGTACCCCGAGATGCTGCCGCA GGCTTGGTGTAACGTACTGTAGTGCTACCGGCACATCACGACGTTGGCTC CAACGTGTTCTGATTGCGCCGTTTTTCCATTGAATGCACACCGCGCTAGG GTGATATCCGCCGTACTTGTGCTGTATTTTTGTTTAATGCAAACACCCCA GGGGACATCACCAACCTTGGCTCCCATCTGTTTTGCTTGCCTCTGTTTTT TTTTCCCCATTAAATGCACACCGGGTAAGAACGACGTCCGCCGCACTATG CTGCACTTCCATTTAATGCACACCGCACAACATAACGGCGTTGGCGCCGA TATGTTCCAATTGCGCCGTTTATCCATTAAATGCACACCGCACGAGGGCG ACATCCGCCGCATTTATGCTGTATTTTTGTTTAATGTTGTATTTTTGTTT ATTGCAAACACGGCAGGGGACATAACCACCTTGGCTCCCATCTCTTCTGC CTGCTTCTATTTTTTTTTTTCAATTCAATGCACACTGCATGAGGGCGACA TCCGCCGCCGCCGCCGTAATTATTGCCGCACTTTTGTTTGATGAACACAC CGTATGCTTTGCAGGGGGACATCACCACCTTGGCAGGCGTGTATACCTTT TCCTTCTTGGGCGTGATGACGCTTTTTTCCGTGGGCACCATTCTTCTCAA GTTTAAGCGGCCCTCCCTCCCCAGAGAAGTCACGGTCAGCTACGGGACCA CGCTCGTCGGGATAACCTGCGTGAGTTAGGGCTGTTCGTTTGACGGTCGC ACCGACAGGTCTCTCTCTGTTGTTGTTGTTGTTGTTGTTGTTGTTGTTGT TGTTGTTGTTGTTGTTGTTGTTGTTGTTGTTGTTGTTGCTGTTGTTGGTG TTGGTGTTGGTGTTGGTGTTGGTGTTGGTGTTGGTGTTGGTGTTGGTGTT CTTGTTCTTGTTCTTGTTCTTGTTCTTGTTCTTGTTCTTGTTGTTGTTGG TGTTGTTGTTGTTGTTGTTGTTGTTGTTGTTGTTGTTGTTGTTGTTGTTG TTGTTGTTGTTGTTGTTGTTGTTGTTGTTGTTGTTGCTGTTGTTGGTGTT GGTGTTGGTGTTGGTGTTGGTGTTGGTGTTGGTGTTGGTGTTGGTGTTGG TGTTGGTGTTGGTGTTGGTGTTGGTGTTCTTGTTCTTGTTCTTGTTCTTG TTCTTGTTCTTGTTGGTGTTGTTGTTGTTGGTGTTGTTGTTGTTGGTGTT GTTGTTGTTGTTGTTGTTGTTGTTGTTGTTGTTGTTGTTGTTGTTGTTGT TGTTGTTGTTGTTGTTGTTGTTGTTGTTGTTGTTGTTGTTGTTGTTGTTG TTGTTGTTGTTGTTGTTGTTGTTGTTGTTGTTGTTGTTGTTGTTGTTGTT GTTGTTGTTGTTGTTGTTGTTGTTGTTGTTGTTGTTGTTGTTGTTGTTGT TGTTGTTGTTGTTGTTGTTGTTGTTGTTGTTGTTGTTGTTGTTGTTGTTG TTGTTGTTGTTGTTGTTGTTGTTGTTGTTGTTGTTGTTGTTGTTGTTGTT GTTGTTGTTGTTGTTGTTGTTGTTGTTGTTGTTGTTGTTGTTGTTGTTGT TGTTGTTGTTGTTGTTGTTGTTGTTGTTGTTGTTGTTGTTGTTGTTGTTG TTGTTGTTGTTGTTGTTGTTGTTGTTGTTGTTGTTGTTGTTGTTGTTGTT GTTGTTGTTGTTGTTGTTGTTGTTGTTGTTGTTGTTGTTGTTGTTGTTGT TGTTGTTGTTGTTGTTGTTGTTGTTGTTGTTGTTGTTGTTGTTGTTGTTG TTGTTGTTGTTGTTGTTGTTGTTGTTGTTGTTGTTGTTGTTGTTGTTGTT GTTGTTGTTGTTGTTGTTGTTGTTGTTGTTGTTGTTGTTGTTGTTGTTGT TGTTGTTGTTGTTGTTGTTGTTGTTGTTGTTGTTGTTGTTGTTGTTGTTG TTGTTGTTGTTGTTGTTGTTGTTGTTGTTGTTGTTGTTGTTGTTGTTGTT GTTGTTGTTGTTGTTGTTGTTGTTGTTGTTGTTGTTGTTGTTGTTGTTGT TGTTGTTGTTGTTGTTGTTGTTGTTGTTGTTGTTGTTGTTGTTGTTGTTG TTGTTGTTGTTGTTGTTGTTGTTGTTGTTGTTGTTGTTGTTGTTGTTGTT GTTGTTGTTGTTGTTGTTGTTGTTGTTGTTGTTGTTGTTGTTGTTGTTGT TGTTGTTGTTGTTGTTGTTGTTGTTGTTGTTGTTGTTGTTGTTGTTGTTG TTGTTGTTGTTGTTGTTGTTGTTGTTGTTGTTGTTGTTGTTGTTGTTGTT GTTGTTGTTGTTGTTGTTGTTGTTGTTGTTGTTGTTGTTGTTGTTGTTGT TGTTGTTGTTGTTGTTGTTGTTGTTGTTGTTGTTGTTGTTGTTGTTGTTG TTGTTGTTGTTGTTGTTGTTGTTGTTGTTGTTGTTGTTGTTGTTGTTGTT GTTGTTGTTGTTGTTGTTGTTGTTGTTGTTGTTGTTGTTGTTGTTGTTGT TGTTGTTGTTGTTGTTGTTGTTGTTGTTGTTGTTGTTGTTGTTGTTGTTG TTGTTGTTGTTGTTGGTGTTGGTGTTGGTGTTGGTGTTGGTGTTGGTGTT GGTGTTGGTGTTCTTGTTCTTGTTCTTGTTCTTGTTCTTGTTCTTGTTCT TGTTCTTGTTCTTGTTCTTGTTCTTGTTCTTGTTCTTGTTGTTGTTGTTG TTGTTGTTGTTGTTGTTGTTGTTGTTGTTGTTGTTGTTGTTGTTGTTGTT GTTGTTGTTGTTGTTGTTGTTGTTGTTGTTGTTGTTGTTGTTGTTGTTGT TGTTGTTGTTGTTGTTGTTGTTGTTGTTGTTGTTGTTGTTGTTGTTGTTG CTGTTGTTGTTGTTGTTGTTGGTGTTGGTGTTGGTGTTGGTGTTGGTGTT GGTGTTGGTGTTGGTGTTGGTGTTCTTGTTCTTGTTCTTGTTCTTGTTCT TGTTCTTGTTGGTGTTGTTGTTGTTGGTGTTGTTGTTGTTGGTGTGTTGT TGTTGGTGTGTTGTTGTTGTTGTTGTTGTTGTTGTTGTTGTTGTTGTTGT TGTTGTTGTTGTTGTTGTTGTTGTTGTTGTTGTTGTTGTTGTTGTTGCTG TTGTTGTTGTTGTTGTTGGTGTTGGTGTTGGTGTTGGTGTTGGTGTTGGT GTTGGTGTTGTTGGTGTTCTTGTTCTTGTTGTTGTTGGTGTTGTTGTTGT TGGTGTTGTTGTTGTTGGTGTTGTTGTTGTTGTTGTTGTTGTTGTTGTTG TTGTTGTTGGTGTTGTTGGTGTTGTTGTTGTCGTCGTTGTTGTTGTTGTT GTTGTTGTTGTTGTTGTTGTTGTTGTTGTTGTTGTTGTTGTTGTTGTTGT TGTTGTTGTTGTTGTTGTTGTTGTTGTTGTTGTTGTTGTTGTTGTTGTTG TTGTTGTTGTTGTTGTTGTTGTTGTTGTTGTTGTTGTTGTTGTTGTTGTT GTTGTTGTTGTTGTTGTTGTTGTTGTTGTTGTTGTTGTTGTTGTTGTTGT TGTTGTTGTTGTTGTTGTTGTTGTTGTTGTTGTTGTTGTTGTTGTTGTTG TTGTTGTTGTTGTTGTTGTTGTTGTTGTTGTTGTTGTTGTTGTTGTTGTT GTTGTTGTTGTTGTTGTTGTTGTTGTTGTTGTTGTTGTTGTTGTTGTTGT TGTTGTTGTTGTTGTTGTTGTTGTTGTTGTTGTTGTTGTTGTTGTTGTTG TTGTTGTTGTTGTTGTTGTTGTTGTTGTTGTTGTTGTTGTTGTTGTTGTT GTTGTTGTTGTTGTTGTTGTTGTTGTTGTTGTTGTTGTTGTTGTTGTTGT TGTTGTTGTTGTTGTTGTTGTTGTTGTTGTTGTTGTTGTTGTTGTTGTTG TTGTTGTTGTTGTTGTTGTTGTTGTTGTTGTTGTTGTTGTTGTTGTTGTT GTTGTTGTTGTTGTTGTTGTTGTTGTTGTTGTTGTTGTTGTTGTTGTTGT TGTTGTTGTTGTTGTTGTTGTTGTTGTTGTTGTTGTTGTTGTTGTTGTTG TTGTTGTTGTTGTTGTTGTTGTTGTTGTTGTTGTTGTTGTTGTTGTTGTT GTTGTTGTTGTTGCTGTTGTTGTTGTTGTTGTTGGTGTTGGTGTTGGTGT TGGTGTTGGTGTTGGTGTTGGTGTTGTTGGTGTTCTTGTTCTTGTTGTTG TTGGTGTTGTTGTTGTTGGTGTTGTTGTTGTTGTTGTTGTTGTTGTTGTT GTTGTTGTTGTTGTTGTTGTTGTTGTTGTTGGTGTTGTTGGTGTTGTTGT TGTCGTTGTTGTTGTTGTTGTTGTTGTTGTTGTTGTTGTTGTTGTTGTTG TTGTTGTTGTTGTTGTTGTTGTTGTTGTTGTTGTTGGTGTTGTTGTTGTT GTTGTTGTTGTTGTTGTTGGTGTTGTTGTTGTTGTTGTTGTTGTTGTTGT TGTTGTTGTTGTTGTTGTTGTTGTTGTTGTTGTTGTTGTTGTTGTTGTTG TTGTTGTTGTTGTTGTTGTTGTTGTTGTTGTTGTTGTTGTTGTTGTTGTT GTTGTTGTTGTTGTTGTTGTTGTTGTTGTTGTTGTTGTTGTTGTTGTTGT TGTTGTTGTTGTTGTTGTTGTTGTTGTTGTTGTTGTTGTTGTTGTTGTTG TTGTTGTTGCTGTTGTTGTTGTTGTTGTTGGTGTTGGTGTTGGTGTTGGT GTTGGTGTTGGTGTTGGTGTTGGTGTTGGTGTTCTTGTTCTTGTTCTTGT TCTTGTTCTTGTTCTTGTTGGTGTTGTTGTTGTTGGTGTTGTTGTTGTTG GTGTGTTGTTGTTGTTGTTGTTGTTGTTGTTGTTGGTGTTGTTGTTGTTG TTGTTGTTGTTGTTGTTGTTGTTGTTGTTGTTGTTGTTGTTGTTGTTGTT GTTGTTGTTGTTGTTGTTGTTGTTGTTGTTGTTGTTGTTGTTGTTGTTGT TGTTGTTGTTGTTGTTGTTGTTGTTGTTGTTGTTGTTGTTGTTGTTGTTG TTGTTGTTGTTGTTGTTGTTGTTGTTGTTGTTGTTGTTGTTGTTGTTGTT GTTGTTGTTGTTGTTGTTGTTGTTGTTGTTGTTGTTGTTGTTGTTGTTGT TGTTGTTGTTGTTGTTGTTGCTGTTGTTGTTGTTGTTGTTGGTGTTGGTG TTGGTGTTGGTGTTGGTGTTGGTGTTGGTGTTGTTGGTGTTCTTGTTCTT GTTGTTGTTGGTGTTGTTGTTGTTGGTGTTGTTGTTGTTGTTGTTGTTGT TGTTGTTGTTGTTGTTGTTGTTGGTGTTGGTGTTGTTGGTGTTGTTGTTG TCGTTGTTGTTGTTGTTGTTGTTGTTGTTGTTGTTGTTGTTGTTGTTGTT GTTGTTGTTGTTGTTGTTGTTGTTGTTGTTGTTGGTGTTGTTGTTGTTGT TGTTGTTGTTGTTGTTGTTGTTGTTGTTGTTGTGTTGTTGTTGTTGTTGT TGTTGTTGTTGTTGTTGTTGTTGTTGTTGTTGTTGTTGTTGTTGTTGTTG TTGTTGTTGTTGTTGTTGTTGTTGTTGTTGTTGTTGTTGTTGTTGTTGTT GTTGTTGTTGTTGTTGTTGTTGTTGTTGTTGTTGTTGTTGTTGTTGCTGT TGTTGGTGTTGGTGTTGGTGTTGGTGTTGGTGTTGGTGTTGGTGTTGGTG TTGGTGTTGGTGTTCTTGTTCTTGTTCTTGTTCTTGTTCTTGTTCTTGTT CTTGTTCTTGTTCTTGTTCTTGTTCTTGTTCTTGTTGTTGGTGGTGTTGT TGTTGTTGTTGTTGGTGTTGTTGTTGTGTTGTTGTTGTTGTTGTTGTTGT TGCTGTTGTTGTTGTTGGTGTTGGTGTTGGTGTTGGTGTTGGTGTTGGTG TTGGTGTTGTTGGTGTTCTTGTTCTTGTTGTTGTTGGTGTTGTTGTTGTT GGTGTTGTTGTTGTTGTTGTTGGTGTTGTTGTTGTTGTTGTTGTTGGTGT TGTTGCTGTTGTTGTTGGTGTTGTTGTTGTTGTTGTTGGTGGTGTTGGTG TTGGTGTTGTTGGTGTTCTTGTTCTTGTTCTTGTTCTTGTTCTTGTTCTT GTTGTTGGTGTTGTTGTTGTTGTTGTTGTTGTTGTTGTTGTTGTTGTTGT TGTTGTTGTTGTTGTTGTTGTTGTTGTTGTTGTTGGTGTTGTTGTTGTTG TTCTCGTTGTTCTTGTTGCTGTCGTTTCCAGCACTGCCTTTTTTCTATTT TCGCTGCTCGTGAACCTCTGCCTTTCCATCGAACGTGGCACCAAAATTGG CAGGTGGTCACCGCGTTCGTCGGCAACATGCTCAGCAAGCCCGAGGTAGT CTCGTGGTTCTTGATATACTTCATGGCCGTGGGATTTCTGGTCGTGCTGG TGTTCTTGAGGGTGCGGCTGCTCAAGATCTTGCTCAAGCTCGCCGGCCCC GTGTGCCTAGGTGAGCAGAAATAGAAGGAGGCGTTTGGTCGCGTTACTAT GTTTCGAGGGGGCTTGCTCGAATCGCGAGCGTCGGAGCGAAATCGATTGA ATTTCTATTGACCTACGGCATGTCCTTGACCCGCCTTTTGAGGTGTTATC TCTAATGTTGAATACCTACTCTCTCTTATTTACTCGCTATTGATTGGTTT ACTTCTTTTTTGTCTCTCACCACCTGTCGCTGATGTTTCTGTTTCTGTTC TCTGTTCACGGTGTCGTGTCTTTTGTTTCTTCTCACATCAACCCCTTTTT CATCTGTTTTGCTTGTCTTTAGCTCACTCCTCAATCCATTCCATCTCCCC TTGATTTTTTTTTTTTTGTGTTCACGGTGCCGTGCGTTGTTTCTTTCTCA CAACAACCGTTTCTTTCTCACAACAACCGCTTCTTTCTCACAACAACCGT TTCTTTCTCACAACAACCGTTTCTTTCTCACAACAACCGTTTCTTTCTCA CAACAACCGCTTCTTTCTCACAACAACCGCTTCTTTCTCACAACAACCGT TTCTTTCTTACAACAACCGTTTCTTTCTCACAACAACCGTTTCTTTCTCA CAACAACCGTTTCTCCATGTGTTTTTTCTTATTTCTTATTTCTTACTGTT CTCCTTGATGTGTTTTTTTTGTTCATGGTGTCGCGTCTTGTTTCTCCTCT CAACAGCCGCTCACGTTTTTTTGTTTTTTTCGCATATTTTGTGTTTACTT GATCCCTCTCACCATCTCTCTCGTTGCCGTTTTTTGTTTGTTTGTCTATT GTGTCTTTCCTTGTTTCTCTCCACAACAACCGTTTCTAAATGTGTTCTGT TTATTTGCTGTCTTCCTCCTCACACCGTTTTCCGTGTACATACTACCCTA CGTGTGCGTCCTTGTGGCACCTTAGCTCCTTTCTCTCTACATCGCTCATT TCTGCATATCATACACTTCGTGGTACATATTCGTGGCCTCGTTCTGCATT TCTTGTGTCATTCCCCGCGGCTCCTCATGGGCGGACGTACGTGATATCCT GGCGCGTGTCATGCTTTTCCCTCTCCCCATCCGCTCTTCCGTTTTTGACC TCTCTTGCCTCGGTCTTTTGGTCTCCGCCATTTTTCGCGTCGTCCTTTCT CTTTACTCTCCTGATTCTCTTGCGATACCAGGTATACTAAAGTCGAAAGT TTTTTTACTTTCAACTAAAGTCGAAACTTTTTTACTTTCAACGTGTCGTG TCTTCTCTCATAGCCCCCCCCACCCCATGTCTTTTGCTTTCTGCGTGTCG TCTCTTTATCTCATAACACCCCCCCCACATGTCTTTGACTTTCTGTGTGT CGTCCCTCGTCTTATTGCACACACACGCCTCCTGTGTTTTGCTTTCTGTG TGCCGTGTCATATCTTACACTCCCCCCCCCCCCTCCTGTATTTTGCTTTC TGTGCGTCGTCTCTTATCTCATACCCCCCCGATGCAGATTCGGTAACCTC GAGCATAAAGGATCAGATTCACGAGCTCCAGGACGAGCCTTTCGTGTTCT TGTGCAAACAGGCAGACACTTACGTCATCAACAAGGCAATTTTGTACGTC AGGTGA
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Coding sequence (CDS) from alignment at P-littoralis_Contig206:397382..419887+

>mRNA_P-littoralis_Contig206.65.1 ID=mRNA_P-littoralis_Contig206.65.1|Name=mRNA_P-littoralis_Contig206.65.1|organism=Pylaiella littoralis U1_48|type=CDS|length=1329bp|location=Sequence derived from alignment at P-littoralis_Contig206:397382..419887+ (Pylaiella littoralis U1_48)
ATGAACGGGGGCGCGTACAACGTTCTCATCAACACGACCAGCAAGCCGGT
GGCTTCTTTCGCCGCTTGTCTGGCGGTGATCTCGTACATCGCAACGGGGG
TCGTGTCGGCTGCTACCGCCATCTCCTACCTGCAGACGTTGATACCGGCG
GCGGGATTGATGACCTGCACCATTGGTCTCCTCTTCTTTTTCGCCTGCCT
GATGACTATGGGGATCTCTGAGTCTGCGGGGGTAGCACTCGGAATGTTCG
TGGTTCACGTGTTTACCCTTACGGCTGTTTGCGTCTTGTCAGCCATGTAC
GCATTCTTCAATGTAACAATCCTCAAGGAAAACCTGCAGCAGGATTTTCC
CGACGTGAGAGTCGGCGGCTCAATCGTGGAGGGGACATGGATGACGGCCA
TTTTGTTTGGGGTTTCCAGTGCAATGCTTGGCGTTTCGGGGTTCGAGTCG
TCCTCGCAATTCGTGGAAGAACAGGCCAAGGGGGTCTTCGTCAAGACTCT
TCGCAACATGCAGTGGGGCGTCGGCATCTTCAACCCGGCCATCTGCCTGC
TGAGCTTGTGCGTGCTGCCGATGGACGAAATCGTTCAGTACAAGCATTCC
ATGCTGTCAATTATGGCAAGGCGTGTCGGCTACTGGGCCGGGGGATGCCT
CGGGCTGTCGAACCCGCGGTTTGACCTTGGGGAGGCGTTTGCGTTCTGGG
TGTCTTTGGACGCGTTCGTGGTCCTTTCGGGGGCCGTCCTGACGGCCTAC
GTGGGCATCAGCGGGCTGCTGGCTAGGATGGCCAAGGACCGCTGCCTCCC
GCAGTTTTTGCTGATGAAGAATAAGTGGAGAGGAACATACCACTACATCA
TCTTCGGATTCTTCTTCCTCGCTACCAGCCAAGTCATCATTCTGCAGGGG
GACATCACCACCTTGGCAGGCGTGTATACCTTTTCCTTCTTGGGCGTGAT
GACGCTTTTTTCCGTGGGCACCATTCTTCTCAAGTTTAAGCGGCCCTCCC
TCCCCAGAGAAGTCACGGTCAGCTACGGGACCACGCTCGTCGGGATAACC
TGCGTGGTCACCGCGTTCGTCGGCAACATGCTCAGCAAGCCCGAGGTAGT
CTCGTGGTTCTTGATATACTTCATGGCCGTGGGATTTCTGGTCGTGCTGG
TGTTCTTGAGGGTGCGGCTGCTCAAGATCTTGCTCAAGCTCGCCGGCCCC
GTGTGCCTAGATTCGGTAACCTCGAGCATAAAGGATCAGATTCACGAGCT
CCAGGACGAGCCTTTCGTGTTCTTGTGCAAACAGGCAGACACTTACGTCA
TCAACAAGGCAATTTTGTACGTCAGGTGA
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