mRNA_P-fluviatile_contig13.1950.1 (mRNA) Porterinema fluviatile SAG_2381

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

Overview
NamemRNA_P-fluviatile_contig13.1950.1
Unique NamemRNA_P-fluviatile_contig13.1950.1
TypemRNA
OrganismPorterinema fluviatile SAG_2381 (Porterinema fluviatile SAG_2381)
Homology
BLAST of mRNA_P-fluviatile_contig13.1950.1 vs. uniprot
Match: D8LT77_ECTSI (Branched-chain-amino-acid aminotransferase n=2 Tax=Ectocarpus TaxID=2879 RepID=D8LT77_ECTSI)

HSP 1 Score: 613 bits (1580), Expect = 3.140e-213
Identity = 307/395 (77.72%), Postives = 342/395 (86.58%), Query Frame = 1
Query:   85 MMAGSAFRRGVGLVGIFLSKA-STASARPS-WERLYSVAVGVRGGAGASTDEEVAATVGGAPTTEIAAANTMSAVSRSDPYQHLRGLEPSLLTVERTTAPREKKEKSTLVFGQTFTDHMLHVDWDNKRGWHAPRIAPYGDLAISPASSSLHYGLQCFEGMKAYRDAQGSVRLFRPDLNIRRLNRSMERLRFPHVDAASMIELMSKLVLEDADWIPEGDGYSLYLRPTAISTHPYLGIAPAASVKLFVILSPVGPYYKEGFNPIRLYADTEHKRAWPGGMGFAKAGGNYAPTIQPQAQAQEEHGCSQVLWLFGEDDHVTEVGAMNIFFLLEKEGGGGVELVTSPLDDGDILDGVTRRSVLELSREWGTLEGGVPLEVSERRLPMGEVVRACTEGRL 1263
            MMA SA R G+G +GI LS+A S+ASARP  W R+YS A+GVRGGA ++T E +      A     +   T S  + SDP+QHL G+EPSLLTVERTT PREK++KSTLVFGQTF+DHMLH+DWDN+ GW APRI PYGDL ISPA+SSLHYGLQCFEGMKAYRDA+G VRLFRP+LNIRRLNRSMERLRFP VD   MIEL+SKLVLEDADWIPEGDGYSLYLRPTA+STHPYLGI  AA++KLFVILSPVGPYYKEGFNPI+LYADTEH+RAWPGGMGFAKAGGNYAPTIQPQAQA EEHGC+QVLWLFGE+D+VTEVGAMNIFFL+ KEGGGGVELVTSPLD GDILDGVTRRSVLEL+REW  LE GVPLEVSERRL MGEV++A  EGR+
Sbjct:    1 MMARSAIRGGMGFIGILLSRAASSASARPQPWGRVYSTALGVRGGASSATAEAIGVDTAAAGRPGPSG-QTSSPAATSDPFQHLPGIEPSLLTVERTTTPREKQDKSTLVFGQTFSDHMLHLDWDNEEGWQAPRILPYGDLRISPAASSLHYGLQCFEGMKAYRDAEGRVRLFRPELNIRRLNRSMERLRFPKVDEDGMIELISKLVLEDADWIPEGDGYSLYLRPTAVSTHPYLGITAAANLKLFVILSPVGPYYKEGFNPIKLYADTEHRRAWPGGMGFAKAGGNYAPTIQPQAQALEEHGCAQVLWLFGEEDYVTEVGAMNIFFLMAKEGGGGVELVTSPLDAGDILDGVTRRSVLELAREWRELERGVPLEVSERRLTMGEVLKASREGRV 394          
BLAST of mRNA_P-fluviatile_contig13.1950.1 vs. uniprot
Match: D8LT74_ECTSI (Branched-chain-amino-acid aminotransferase n=2 Tax=Ectocarpus TaxID=2879 RepID=D8LT74_ECTSI)

HSP 1 Score: 610 bits (1574), Expect = 1.020e-212
Identity = 288/370 (77.84%), Postives = 330/370 (89.19%), Query Frame = 1
Query:  337 LEPSLLTVERTTAPREKKEKSTLVFGQTFTDHMLHVDWDNKRGWHAPRIAPYGDLAISPASSSLHYGLQCFEGMKAYRDAQGSVRLFRPDLNIRRLNRSMERLRFPHVDAASMIELMSKLVLEDADWIPEGDGYSLYLRPTAISTHPYLGIAPAASVKLFVILSPVGPYYKEGFNPIRLYADTEHKRAWPGGMGFAKAGGNYAPTIQPQAQAQEEHGCSQVLWLFGEDDHVTEVGAMNIFFLLEKEGGGGVELVTSPLDDGDILDGVTRRSVLELSREWGTLEGGVPLEVSERRLPMGEVVRACTEGRLLEVFGTGTAAVISPVKGIKYRGREIEVRSGDSIGPLAKRCWKTLTDIQYGRVDHPWSVKIS 1446
            L+ S+L+VERTT PREK++KS LVFGQTF+DHMLH+DWD++ GW APRI PYGDL ISPA+SSLHYGLQC+EGMKAYRDA G VRLFRPDLN+ RLNRSM+RL FP VD ASMIEL+SKLV+EDADWIPEGDGYSLY+RPTAISTHPYLG+A    VK++V+LSPVGPYYKEGF P++LYADTE +RAWPGGMGFAKAGGNYAPT++P  +A++EHGC+Q+LWLFGE+D+V EV AMNIFFL++KE G GVELVT PLD GDIL+G+TRRSVLEL+REW  LEGGVPLEVSER L MGEVV+A  EGRLLEVFGTGTAAVISPV+ IKYRG EIEV SG SIGPLAKR W  LTDIQYGRV+HPWSV+I+
Sbjct:   36 LQTSMLSVERTTTPREKQDKSKLVFGQTFSDHMLHLDWDSEGGWQAPRILPYGDLRISPAASSLHYGLQCYEGMKAYRDADGGVRLFRPDLNMIRLNRSMDRLCFPQVDEASMIELISKLVVEDADWIPEGDGYSLYIRPTAISTHPYLGLAAPEKVKIYVVLSPVGPYYKEGFKPVKLYADTEQRRAWPGGMGFAKAGGNYAPTVKPGLKAKKEHGCAQILWLFGEEDYVQEVSAMNIFFLIKKEDGEGVELVTPPLDAGDILEGITRRSVLELAREWRELEGGVPLEVSERPLAMGEVVKASREGRLLEVFGTGTAAVISPVEAIKYRGMEIEVPSGTSIGPLAKRFWGALTDIQYGRVEHPWSVRIA 405          
BLAST of mRNA_P-fluviatile_contig13.1950.1 vs. uniprot
Match: A0A7S2CUE9_9STRA (Branched-chain-amino-acid aminotransferase n=1 Tax=Florenciella parvula TaxID=236787 RepID=A0A7S2CUE9_9STRA)

HSP 1 Score: 452 bits (1164), Expect = 4.680e-151
Identity = 224/376 (59.57%), Postives = 276/376 (73.40%), Query Frame = 1
Query:  328 LRGLEPSLLTVERTTAPREKKEKSTLVFGQTFTDHMLHVDWDNKRGWHAPRIAPYGDLAISPASSSLHYGLQCFEGMKAYRDAQGSVRLFRPDLNIRRLNRSMERLRFPHVDAASMIELMSKLVLEDADWIPEGDGYSLYLRPTAISTHPYLGIAPAASVKLFVILSPVGPYYKEGFNPIRLYADTEHKRAWPGGMGFAKAGGNYAPTIQPQAQAQEEHGCSQVLWLFGE----DDHVTEVGAMNIFFLLEKEGGGGVELVTSPLDDGDILDGVTRRSVLELSREWGTLEGGVPLEVSERRLPMGEVVRACTEGRLLEVFGTGTAAVISPVKGIKYRGREIEVRSGDSIGPLAKRCWKTLTDIQYGRVDHPWSVKI 1443
            L  L+ S LT+ER +  R+   K  LVFG+TFT HML VDW    GW +PRI PY +L +SPA+  LHYGL+CFEGMKAY+D +G+ RLFRPD N+ RLN S+ERL  P  D  ++IE M +L+  DADWIPEG+GYS+YLRPTAI+T P+LG+A  + VKLFVI+SPVGPYY EGF P++LYADTE+ RAWPGG+G AK GGNY PTI P A AQ + GC+QVLWLF +    + + TEVGAMNIFF +EK  GG +EL T+PL  GDIL GVTRRS+LEL+R  G +E      VSER + M E++ A  EGRL E FG GTAAVISPVK I Y+G +I+  +G+ IGPLAKR W  L  IQYGR++H WSV +
Sbjct:    7 LAPLDASTLTIERDSVSRKPPPKEELVFGKTFTPHMLEVDWSVDHGWKSPRIVPYQNLPMSPAAMCLHYGLECFEGMKAYKDDEGATRLFRPDCNMARLNDSLERLHMPDFDGEALIECMKELLKVDADWIPEGEGYSMYLRPTAIATDPFLGVASCSEVKLFVIMSPVGPYYAEGFAPVKLYADTENVRAWPGGVGNAKVGGNYGPTIGPAAAAQAK-GCAQVLWLFEDPNDGEHYATEVGAMNIFFAIEKPEGG-LELCTAPLSKGDILPGVTRRSILELARGMGDVE------VSEREVSMSELLTARDEGRLREAFGAGTAAVISPVKSILYKGEDIDFPTGEDIGPLAKRMWDQLLGIQYGRIEHEWSVPV 374          
BLAST of mRNA_P-fluviatile_contig13.1950.1 vs. uniprot
Match: A0A835Z010_9STRA (Branched chain amino acid aminotransferase n=1 Tax=Tribonema minus TaxID=303371 RepID=A0A835Z010_9STRA)

HSP 1 Score: 452 bits (1163), Expect = 7.620e-150
Identity = 241/443 (54.40%), Postives = 302/443 (68.17%), Query Frame = 1
Query:  121 LVGIFLSKASTASARPSWERLYSVAVGVRGGAGASTDEEV-AATVGGAPTTEIAAANTMSAVSRSDPYQHLRGLEPSLLTVERTTAPREKKEKSTLVFGQTFTDHMLHVDWDNKRGWHAPRIAPYGDLAISPASSSLHYGLQCFEGMKAYRDAQGSVRLFRPDLNIRRLNRSMERLRFPHVDAASMIELMSKLVLEDADWIPEGDGYSLYLRPTAISTHPYLGIAPAASVKLFVILSPVGPYYKEGFNPIRLYADTEHKRAWPGGMGFAKAGGNYAPTIQPQAQAQEEHGCSQVLWLFGEDDHVTEVGAMNIFFLL-EKEGGGGVELVTSPLDDGDILDGVTRRSVLELSREWGTLEGGVPLEVSERRLPMGEVVRACTEGRLLEVFGTGTAAVISPVKGIKYRGREIE-VRSGDSIGPLAKRCWKTLTDIQYGRVDHPWSVK 1440
            L+   L  A TA  +P  +R +  A+G RGGA A+ + +  AA     P+T I    T       DP+Q L  L+ + L++E TT P+ K  K  L++G TF+DHML VDWD++ GWH P I P+ DL +SPA+S LHYGL+ FEG+KAY    G+V LFRPDLN+ R N S++RLR P  DAA +  L+++L+  DADW+P G+GY+LYLRPTAIST P +G+APA  VKL+VI SP GPYYKEGF P++LYADT + R+WPGG G+ K GGNYAPTI P A+AQ+  GCSQVLWL+GEDD VTEVGAMN F LL +      +ELVT  LD  DIL GVTR SVL+L+R WG         VSER + M E+  A  EGRL+E F TGTAAVISP+  I+YRG ++   R GD IGP A+R W  L DIQYGRV H WSV+
Sbjct:   11 LIAAALLLACTAECKPL-DRRWLAALGSRGGATATEERQSPAAATEDTPSTSIF---TDPLEDVYDPFQGLTPLDSTKLSIEHTTEPKPKPAKEGLIWGATFSDHMLEVDWDDETGWHPPEIVPFHDLELSPAASVLHYGLEAFEGLKAYAAPDGAVLLFRPDLNLARFNASLKRLRMPTFDAAELQALIAELLSVDADWVPRGEGYALYLRPTAISTTPSIGVAPARRVKLYVIASPCGPYYKEGFVPVKLYADTTYTRSWPGGAGYTKTGGNYAPTIFPAAEAQKR-GCSQVLWLYGEDDLVTEVGAMNFFALLRDARDPSRLELVTPTLDRRDILAGVTRASVLDLARSWGDCA------VSERDVGMRELRDAAREGRLVEAFATGTAAVISPIHAIEYRGEDLVCARGGDGIGPFAQRLWDALRDIQYGRVRHAWSVR 442          
BLAST of mRNA_P-fluviatile_contig13.1950.1 vs. uniprot
Match: A0A024UVJ6_9STRA (Branched-chain-amino-acid aminotransferase n=3 Tax=Aphanomyces TaxID=100860 RepID=A0A024UVJ6_9STRA)

HSP 1 Score: 440 bits (1132), Expect = 3.920e-146
Identity = 213/379 (56.20%), Postives = 269/379 (70.98%), Query Frame = 1
Query:  319 YQHLRGLEPSLLTVERTTAPREKKEKSTLVFGQTFTDHMLHVDWDNKRGWHAPRIAPYGDLAISPASSSLHYGLQCFEGMKAYRDAQGSVRLFRPDLNIRRLNRSMERLRFPHVDAASMIELMSKLVLEDADWIPEGDGYSLYLRPTAISTHPYLGIAPAASVKLFVILSPVGPYYKEGFNPIRLYADTEHKRAWPGGMGFAKAGGNYAPTIQPQAQAQEEHGCSQVLWLFGEDDHVTEVGAMNIFFLLEKEGGGGVELVTSPLDDGDILDGVTRRSVLELSREWGTLEGGVPLEVSERRLPMGEVVRACTEGRLLEVFGTGTAAVISPVKGIKYRGREIEV---RSGDSIGPLAKRCWKTLTDIQYGRVDHPWSVKIS 1446
            +  L GL+ S   + +T  P+ K  K  L FG TF+DH+L +DWD   GW AP I PYG LAI PA+SSLHY LQCFEGMKAY D++G +RLFRPDLN++R+N SMERL  P  D+  +IE + KL+L D  WIPEGDGYSLY+RPT +STHP++G+  ++  K++VILSPVGPYY EGFNP++L+AD ++ RAWPGG G  K GGNY PTI PQ +A ++ G SQ+LWLFGED  VTE G MN+F     E G   ELVT+PL  GDIL GVTR+S+LE++R WG  +      V+E  + M  +V+A  EGRLLEVFG+GTAAVISPV+ I Y G+++ V         G L KR W  +TDIQYGRV+HPWSV I+
Sbjct:   22 FSALAGLDASKTIIHQTPHPKAKTPKEKLTFGTTFSDHLLEIDWDKNSGWGAPLIRPYGPLAIDPAASSLHYALQCFEGMKAYIDSKGKIRLFRPDLNMKRMNNSMERLFLPTFDSDELIECLKKLILLDKSWIPEGDGYSLYIRPTGVSTHPFIGVGASSKAKVYVILSPVGPYYPEGFNPVKLFADDKYVRAWPGGTGNTKVGGNYGPTIMPQMEAAKK-GYSQILWLFGEDHLVTEAGTMNLFVFWINEQGEK-ELVTAPLTRGDILPGVTRQSILEMTRGWGEFK------VTEHTITMPAIVKAQQEGRLLEVFGSGTAAVISPVQLINYNGKDVNVPLDAPDGKSGQLTKRIWNEMTDIQYGRVEHPWSVVIN 392          
BLAST of mRNA_P-fluviatile_contig13.1950.1 vs. uniprot
Match: A0A7S0XD88_9STRA (Branched-chain-amino-acid aminotransferase n=1 Tax=Chromulina nebulosa TaxID=96789 RepID=A0A7S0XD88_9STRA)

HSP 1 Score: 436 bits (1121), Expect = 7.170e-145
Identity = 204/370 (55.14%), Postives = 270/370 (72.97%), Query Frame = 1
Query:  337 LEPSLLTVERTTAPREKKEKSTLVFGQTFTDHMLHVDWDNKRGWHAPRIAPYGDLAISPASSSLHYGLQCFEGMKAYRDAQGSVRLFRPDLNIRRLNRSMERLRFPHVDAASMIELMSKLVLEDADWIPEGDGYSLYLRPTAISTHPYLGIAPAASVKLFVILSPVGPYYKEGFNPIRLYADTEHKRAWPGGMGFAKAGGNYAPTIQPQAQAQEEHGCSQVLWLFGEDDHVTEVGAMNIFFLLEKEGGGGVELVTSPLDDGDILDGVTRRSVLELSREWGTLEGGVPLEVSERRLPMGEVVRACTEGRLLEVFGTGTAAVISPVKGIKYRGREIEVRSGDSIGPLAKRCWKTLTDIQYGRVDHPWSVKIS 1446
            ++PS   +  TT P+E      LVFG++F+DHML +DWD   GW  P I+PY + +ISPA++  HY ++CFEGMKAY+D  G +RLFRPD N+ RL  SM+RL  P  ++   I+ + +L+L D +WIP+ +GYS+Y+RPTAI T PYLG+  + +VKL+VILSPVGPYYK GF PI+LYADT + RAWPGG+G AK GGNYAPTI P     E+ G SQ+LWLFGE+  +TEVGAMNIFFL++K     +EL+T PL  GDIL GVTRRS++++++ W    G   ++VSER + M EV  A  +GRLLEVFG GTA VISPVK I Y   +I+V +GD +GP+A + WKTL DIQYG+V+HPWSV+++
Sbjct:    1 IDPSKTEITLTTHPKEMLPLDELVFGKSFSDHMLSIDWDEINGWQNPTISPYKNFSISPAATVFHYAIECFEGMKAYKDKSGVIRLFRPDCNMDRLLYSMQRLAMPKFNSDGFIDCIKQLLLVDKNWIPDQEGYSIYIRPTAIGTSPYLGVHASETVKLYVILSPVGPYYKHGFKPIKLYADTANIRAWPGGVGNAKVGGNYAPTILPSKLVAEK-GYSQILWLFGENHEITEVGAMNIFFLIKKSDSNIIELITPPLSRGDILPGVTRRSIIDIAKSWS---GDESIQVSERSITMSEVRSAQLDGRLLEVFGCGTAVVISPVKAIHYNDEDIKVPTGDDVGPIAYKLWKTLYDIQYGKVEHPWSVRVN 366          
BLAST of mRNA_P-fluviatile_contig13.1950.1 vs. uniprot
Match: A0A6G0W7D6_9STRA (Branched-chain-amino-acid aminotransferase n=1 Tax=Aphanomyces euteiches TaxID=100861 RepID=A0A6G0W7D6_9STRA)

HSP 1 Score: 437 bits (1123), Expect = 8.850e-145
Identity = 213/379 (56.20%), Postives = 268/379 (70.71%), Query Frame = 1
Query:  319 YQHLRGLEPSLLTVERTTAPREKKEKSTLVFGQTFTDHMLHVDWDNKRGWHAPRIAPYGDLAISPASSSLHYGLQCFEGMKAYRDAQGSVRLFRPDLNIRRLNRSMERLRFPHVDAASMIELMSKLVLEDADWIPEGDGYSLYLRPTAISTHPYLGIAPAASVKLFVILSPVGPYYKEGFNPIRLYADTEHKRAWPGGMGFAKAGGNYAPTIQPQAQAQEEHGCSQVLWLFGEDDHVTEVGAMNIFFLLEKEGGGGVELVTSPLDDGDILDGVTRRSVLELSREWGTLEGGVPLEVSERRLPMGEVVRACTEGRLLEVFGTGTAAVISPVKGIKYRGREIEV---RSGDSIGPLAKRCWKTLTDIQYGRVDHPWSVKIS 1446
            +  L  ++ S   + +TTAP+ K  K  L FG TFTDHML VDWDNK GW AP I PYG LA+ PA+S+LHY LQCFEGMKAY D  G +RLFRPDLN++R+N SMERL  P  ++  +I  M KL+L D +WIP+G+GYSLY+RPT ISTHP +G+A +   K+FVILSPVGPYY EGFNP++LYADT++ RAWPGG G  K GGNY  TI+PQ  A + +G SQ+LWLFGE+ +VTE G MN+F     E G   ELVT+PL  GDIL GVTR+S+LEL+R WG  +      V+E  + +  + +A  EGRLLE+FG+GTAAVISPV+ I Y G++I V         G L KR W  +TDI YGRV+HPWS+ I+
Sbjct:   22 FSALADIQSSKTIINKTTAPKAKIPKEQLKFGATFTDHMLEVDWDNKNGWAAPVIRPYGPLALDPAASALHYALQCFEGMKAYIDDNGKIRLFRPDLNMKRMNNSMERLHLPTFNSEELIAAMKKLILLDQEWIPKGEGYSLYIRPTGISTHPNIGVAASTKAKIFVILSPVGPYYPEGFNPVKLYADTKNVRAWPGGTGNTKVGGNYGSTIKPQMDAAK-NGYSQILWLFGEEHYVTEAGTMNLFVHWINENGEK-ELVTAPLSRGDILPGVTRQSILELARGWGEFK------VAESTITLPSIAKAQKEGRLLEIFGSGTAAVISPVQLINYNGQDINVPLDAPDGKSGKLTKRIWDEMTDIHYGRVEHPWSIVIN 392          
BLAST of mRNA_P-fluviatile_contig13.1950.1 vs. uniprot
Match: A0A067CV10_SAPPC (Branched-chain-amino-acid aminotransferase n=3 Tax=Saprolegniaceae TaxID=4764 RepID=A0A067CV10_SAPPC)

HSP 1 Score: 434 bits (1115), Expect = 1.320e-143
Identity = 217/380 (57.11%), Postives = 265/380 (69.74%), Query Frame = 1
Query:  319 YQHLRGLEPSLLTVERTTAPREKKEKSTLVFGQTFTDHMLHVDWDNKRGWHAPRIAPYGDLAISPASSSLHYGLQCFEGMKAYRDAQGSVRLFRPDLNIRRLNRSMERLRFPHVDAASMIELMSKLVLEDADWIPEGDGYSLYLRPTAISTHPYLGIAPAASVKLFVILSPVGPYYKEGFNPIRLYADTEHKRAWPGGMGFAKAGGNYAPTIQPQAQAQEEHGCSQVLWLFGEDDHVTEVGAMNIFFLLEKEGGGGVELVTSPLDDGDILDGVTRRSVLELSREWGTLEGGVPLEVSERRLPMGEVVRACTEGRLLEVFGTGTAAVISPVKGIKYRGREIEV----RSGDSIGPLAKRCWKTLTDIQYGRVDHPWSVKIS 1446
            +  L GL+ S   + +T  P+ K  K TL FG TFTDHML +DWD   GW  P I PYG L++ PASSSLHY LQCFEGMKAY +  G +RLFRPD+N+ R+N SMERL  P  D+  +I+ + +LVL D DWIP+GDGYSLYLRPT ISTHP++G+  +   K+FVILSPVGPYY EGFNP++L+AD  + RAWPGG G  K GGNY  TI PQ +A ++ G SQ+LWLFGE+  VTEVG MN+F     E G   ELVT+PL  GDIL GVTR S+LEL+R WG  +      VSE  + M  +V+A  EGRLLE+FG+GTAAVISPVK I Y G +++V      G S G L KR WK +TDIQYGR  HPWSV I+
Sbjct:   20 FSALAGLDSSKTIIHKTMHPKAKVPKETLTFGTTFTDHMLEIDWDQTTGWGKPLIRPYGPLSVDPASSSLHYALQCFEGMKAYINDDGKIRLFRPDMNMARMNNSMERLFLPTFDSEELIKCIEQLVLLDKDWIPKGDGYSLYLRPTGISTHPHIGVGASTKAKVFVILSPVGPYYPEGFNPVKLFADDTYVRAWPGGTGNTKVGGNYGATIMPQMEANKK-GYSQILWLFGEEHFVTEVGTMNLFVYWINEDGEK-ELVTAPLHRGDILPGVTRDSILELTRGWGEFK------VSEHTITMPSIVKAQKEGRLLEIFGSGTAAVISPVKLINYNGVDLDVPLDAEDGKS-GQLTKRIWKEMTDIQYGRKPHPWSVVIN 390          
BLAST of mRNA_P-fluviatile_contig13.1950.1 vs. uniprot
Match: A0A1W0A544_9STRA (Branched-chain-amino-acid aminotransferase n=1 Tax=Thraustotheca clavata TaxID=74557 RepID=A0A1W0A544_9STRA)

HSP 1 Score: 432 bits (1112), Expect = 3.730e-143
Identity = 216/380 (56.84%), Postives = 270/380 (71.05%), Query Frame = 1
Query:  319 YQHLRGLEPSLLTVERTTAPREKKEKSTLVFGQTFTDHMLHVDWDNKRGWHAPRIAPYGDLAISPASSSLHYGLQCFEGMKAYRDAQGSVRLFRPDLNIRRLNRSMERLRFPHVDAASMIELMSKLVLEDADWIPEGDGYSLYLRPTAISTHPYLGIAPAASVKLFVILSPVGPYYKEGFNPIRLYADTEHKRAWPGGMGFAKAGGNYAPTIQPQAQAQEEHGCSQVLWLFGEDDHVTEVGAMNIFFLLEKEGGGGVELVTSPLDDGDILDGVTRRSVLELSREWGTLEGGVPLEVSERRLPMGEVVRACTEGRLLEVFGTGTAAVISPVKGIKYRGREIEV----RSGDSIGPLAKRCWKTLTDIQYGRVDHPWSVKIS 1446
            +  L G++ +   + +TT P+ K EK  L FG TF+DHML +DWD ++GW  P I PYG L I PASSSLHY LQCFEGMKAY +  G +RLFRPD+N+ R+N SMERL  P  D+  MIE + +LVL D DWIP+GDGYSLYLRPT ISTHP++G++ ++  K+FVILSPVGPYY EGF P++LYAD ++ RAWPGG G  K GGNY  TI PQ +A ++ G SQ+LWLFGE+  VTEVG MN+F     E G   ELVT+PL  GDIL GVTR S+L+L+R WG  +      V+E  + M  +V+A  EGRLLE+FG+GTAA+ISPV+ I Y G +I V      G S G L KR WK +TDIQYGRV+HPWSV I+
Sbjct:   20 FSALAGVDSTKTIIHQTTHPKAKLEKEKLKFGTTFSDHMLEIDWDAEKGWGKPLIRPYGPLNIDPASSSLHYALQCFEGMKAYINDDGKIRLFRPDMNMARMNSSMERLFLPTFDSKEMIECIKQLVLLDKDWIPKGDGYSLYLRPTGISTHPHIGVSASSKAKVFVILSPVGPYYPEGFAPVKLYADDKYVRAWPGGTGNTKIGGNYGSTIMPQYEASKK-GYSQILWLFGEEHFVTEVGTMNLFVYWINENGEK-ELVTAPLHRGDILPGVTRDSILQLTRGWGEFK------VTEHTITMPSIVKAQKEGRLLEIFGSGTAAIISPVELINYNGVDINVPLDAEDGKS-GKLTKRIWKEMTDIQYGRVEHPWSVVIN 390          
BLAST of mRNA_P-fluviatile_contig13.1950.1 vs. uniprot
Match: A0A4D9D2E3_9STRA (Branched-chain-amino-acid aminotransferase n=1 Tax=Nannochloropsis salina CCMP1776 TaxID=1027361 RepID=A0A4D9D2E3_9STRA)

HSP 1 Score: 432 bits (1112), Expect = 4.280e-143
Identity = 213/375 (56.80%), Postives = 269/375 (71.73%), Query Frame = 1
Query:  337 LEPSLLTVERTTAPREKKEKSTLVFGQTFTDHMLHVDWDNKR-----GWHAPRIAPYGDLAISPASSSLHYGLQCFEGMKAYRDAQGSVRLFRPDLNIRRLNRSMERLRFPHVDAASMIELMSKLVLEDADWIPEGDGYSLYLRPTAISTHPYLGIAPAASVKLFVILSPVGPYYKEGFNPIRLYADTEHKRAWPGGMGFAKAGGNYAPTIQPQAQAQEEHGCSQVLWLFGEDDHVTEVGAMNIFFLLEKEGGGGVELVTSPLDDGDILDGVTRRSVLELSREWGTLEGGVPLEVSERRLPMGEVVRACTEGRLLEVFGTGTAAVISPVKGIKYRGREIEV-RSGDSIGPLAKRCWKTLTDIQYGRVDHPWSVKI 1443
            ++P L+ ++RTT PR K  +  LVFG+ F+DHML +DWD K      GWH P I+ Y  L++SPA+S LHY L+CFEGMKAY+D  G +RLFRP+LN++RLN S+ RL  P VD  + IE + +LV +D DW+PEG GYS+YLRPTAIST+P+LG+     +KLF I+SPVGPYY EGFNPI+LYADT + RAWPGG+G  K GGNY PTI+PQ +A    GC+QVLWL GED  VTEVGAMN+FF    E G   EL+T+PL  GD+L GVTRRS+LEL+ +W   +      V+ER + M EVV+A  EGRLLE FG GTA V+ P++ I Y   ++ V + GD +GPL KR W  LTDIQYG+ DHPWSV I
Sbjct:   28 IDPKLMRIQRTTNPRPKVPQKELVFGKVFSDHMLEIDWDYKNVRKEGGWHPPVISAYHPLSLSPAASVLHYALECFEGMKAYKDVCGRLRLFRPELNMQRLNSSLARLYMPSVDPDAFIECIKELVRQDRDWVPEGIGYSIYLRPTAISTYPFLGVGATKEIKLFCIMSPVGPYYPEGFNPIKLYADTLNVRAWPGGVGNTKVGGNYGPTIRPQMEATRL-GCAQVLWL-GEDHTVTEVGAMNVFFFWVNEQGEK-ELITAPLCRGDVLPGVTRRSILELAGKWREFK------VTERAVGMKEVVKAKNEGRLLEAFGAGTAVVVCPIRAILYEEEDVVVIKEGDDVGPLTKRMWDALTDIQYGKFDHPWSVLI 393          
The following BLAST results are available for this feature:
BLAST of mRNA_P-fluviatile_contig13.1950.1 vs. uniprot
Analysis Date: 2022-09-19 (Diamond blastx: OGS1.0 vs UniRef90)
Total hits: 25
Match NameE-valueIdentityDescription
D8LT77_ECTSI3.140e-21377.72Branched-chain-amino-acid aminotransferase n=2 Tax... [more]
D8LT74_ECTSI1.020e-21277.84Branched-chain-amino-acid aminotransferase n=2 Tax... [more]
A0A7S2CUE9_9STRA4.680e-15159.57Branched-chain-amino-acid aminotransferase n=1 Tax... [more]
A0A835Z010_9STRA7.620e-15054.40Branched chain amino acid aminotransferase n=1 Tax... [more]
A0A024UVJ6_9STRA3.920e-14656.20Branched-chain-amino-acid aminotransferase n=3 Tax... [more]
A0A7S0XD88_9STRA7.170e-14555.14Branched-chain-amino-acid aminotransferase n=1 Tax... [more]
A0A6G0W7D6_9STRA8.850e-14556.20Branched-chain-amino-acid aminotransferase n=1 Tax... [more]
A0A067CV10_SAPPC1.320e-14357.11Branched-chain-amino-acid aminotransferase n=3 Tax... [more]
A0A1W0A544_9STRA3.730e-14356.84Branched-chain-amino-acid aminotransferase n=1 Tax... [more]
A0A4D9D2E3_9STRA4.280e-14356.80Branched-chain-amino-acid aminotransferase n=1 Tax... [more]

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Alignments
The following features are aligned
Aligned FeatureFeature TypeAlignment Location
P-fluviatile_contig13contigP-fluviatile_contig13:3057015..3072081 +
Analyses
This mRNA is derived from or has results from the following analyses
Analysis NameDate Performed
Diamond blastx: OGS1.0 vs UniRef902022-09-19
OGS1.0 of Porterinema fluviatile SAG_23812021-02-24
Properties
Property NameValue
Taxonomic scopeEukaryota
Seed ortholog score615.1
Seed ortholog evalue2.5e-173
Seed eggNOG ortholog2880.D8LT77
Preferred nameBCAT1
KEGG rclassRC00001,RC00006,RC00036,RC00066
KEGG koko:K00036,ko:K00826
KEGG ReactionR00835,R01090,R01214,R02199,R02736,R10907,R10991
KEGG Pathwayko00030,ko00270,ko00280,ko00290,ko00480,ko00770,ko01100,ko01110,ko01120,ko01130,ko01200,ko01210,ko01230,ko05230,map00030,map00270,map00280,map00290,map00480,map00770,map01100,map01110,map01120,map01130,map01200,map01210,map01230,map05230
KEGG ModuleM00004,M00006,M00008,M00019,M00036,M00119,M00570
GOsGO:0000082,GO:0000278,GO:0002119,GO:0002164,GO:0003674,GO:0003824,GO:0004084,GO:0005488,GO:0005515,GO:0005575,GO:0005622,GO:0005623,GO:0005634,GO:0005737,GO:0005739,GO:0005759,GO:0005829,GO:0006082,GO:0006520,GO:0006549,GO:0006550,GO:0006551,GO:0006573,GO:0006807,GO:0006810,GO:0007049,GO:0007275,GO:0007589,GO:0007595,GO:0008144,GO:0008150,GO:0008152,GO:0008283,GO:0008483,GO:0008652,GO:0009056,GO:0009058,GO:0009063,GO:0009081,GO:0009082,GO:0009083,GO:0009097,GO:0009098,GO:0009099,GO:0009790,GO:0009791,GO:0009792,GO:0009987,GO:0010033,GO:0010817,GO:0016053,GO:0016054,GO:0016740,GO:0016769,GO:0019752,GO:0019842,GO:0022402,GO:0030170,GO:0030879,GO:0031974,GO:0032501,GO:0032502,GO:0034097,GO:0036094,GO:0042221,GO:0042802,GO:0043167,GO:0043168,GO:0043226,GO:0043227,GO:0043229,GO:0043231,GO:0043233,GO:0043436,GO:0044237,GO:0044238,GO:0044248,GO:0044249,GO:0044281,GO:0044282,GO:0044283,GO:0044422,GO:0044424,GO:0044429,GO:0044444,GO:0044446,GO:0044464,GO:0044770,GO:0044772,GO:0044843,GO:0046394,GO:0046395,GO:0046903,GO:0048037,GO:0048513,GO:0048731,GO:0048732,GO:0048856,GO:0050662,GO:0050878,GO:0050896,GO:0051179,GO:0051234,GO:0051716,GO:0052654,GO:0052655,GO:0052656,GO:0065007,GO:0065008,GO:0070013,GO:0070279,GO:0070887,GO:0071310,GO:0071345,GO:0071704,GO:0097159,GO:1901363,GO:1901564,GO:1901565,GO:1901566,GO:1901575,GO:1901576,GO:1901605,GO:1901606,GO:1901607,GO:1903047,GO:1990823,GO:1990830
EggNOG free text desc.branched-chain-amino-acid transaminase activity
EggNOG OGsCOG0115@1,KOG0975@2759
EC1.1.1.363,1.1.1.49,2.6.1.42
COG Functional cat.E
Best tax levelEukaryota
Best eggNOG OGNA|NA|NA
BRITEko00000,ko00001,ko00002,ko01000,ko01007,ko04147
Hectar predicted targeting categorysignal peptide
Ec32 ortholog descriptionbranched chain amino acid aminotransferase
Ec32 orthologEc-12_005560.1
Exons11
Model size2110
Cds size1365
Stop1
Start1
Relationships

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

Feature NameUnique NameSpeciesTypePosition
1622815584.8532274-UTR-P-fluviatile_contig13:3057014..30570981622815584.8532274-UTR-P-fluviatile_contig13:3057014..3057098Porterinema fluviatile SAG_2381UTRP-fluviatile_contig13 3057015..3057098 +
1693562352.1762316-UTR-P-fluviatile_contig13:3057014..30570981693562352.1762316-UTR-P-fluviatile_contig13:3057014..3057098Porterinema fluviatile SAG_2381UTRP-fluviatile_contig13 3057015..3057098 +
1622815585.0301805-UTR-P-fluviatile_contig13:3071420..30720811622815585.0301805-UTR-P-fluviatile_contig13:3071420..3072081Porterinema fluviatile SAG_2381UTRP-fluviatile_contig13 3071421..3072081 +
1693562352.5663846-UTR-P-fluviatile_contig13:3071420..30720811693562352.5663846-UTR-P-fluviatile_contig13:3071420..3072081Porterinema fluviatile SAG_2381UTRP-fluviatile_contig13 3071421..3072081 +


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

Feature NameUnique NameSpeciesTypePosition
1622815584.867743-CDS-P-fluviatile_contig13:3057098..30573561622815584.867743-CDS-P-fluviatile_contig13:3057098..3057356Porterinema fluviatile SAG_2381CDSP-fluviatile_contig13 3057099..3057356 +
1693562352.4532573-CDS-P-fluviatile_contig13:3057098..30573561693562352.4532573-CDS-P-fluviatile_contig13:3057098..3057356Porterinema fluviatile SAG_2381CDSP-fluviatile_contig13 3057099..3057356 +
1622815584.8812733-CDS-P-fluviatile_contig13:3060707..30608441622815584.8812733-CDS-P-fluviatile_contig13:3060707..3060844Porterinema fluviatile SAG_2381CDSP-fluviatile_contig13 3060708..3060844 +
1693562352.4651294-CDS-P-fluviatile_contig13:3060707..30608441693562352.4651294-CDS-P-fluviatile_contig13:3060707..3060844Porterinema fluviatile SAG_2381CDSP-fluviatile_contig13 3060708..3060844 +
1622815584.894294-CDS-P-fluviatile_contig13:3061561..30616251622815584.894294-CDS-P-fluviatile_contig13:3061561..3061625Porterinema fluviatile SAG_2381CDSP-fluviatile_contig13 3061562..3061625 +
1693562352.4732265-CDS-P-fluviatile_contig13:3061561..30616251693562352.4732265-CDS-P-fluviatile_contig13:3061561..3061625Porterinema fluviatile SAG_2381CDSP-fluviatile_contig13 3061562..3061625 +
1622815584.9073634-CDS-P-fluviatile_contig13:3062549..30626951622815584.9073634-CDS-P-fluviatile_contig13:3062549..3062695Porterinema fluviatile SAG_2381CDSP-fluviatile_contig13 3062550..3062695 +
1693562352.4854286-CDS-P-fluviatile_contig13:3062549..30626951693562352.4854286-CDS-P-fluviatile_contig13:3062549..3062695Porterinema fluviatile SAG_2381CDSP-fluviatile_contig13 3062550..3062695 +
1622815584.9265893-CDS-P-fluviatile_contig13:3063892..30639771622815584.9265893-CDS-P-fluviatile_contig13:3063892..3063977Porterinema fluviatile SAG_2381CDSP-fluviatile_contig13 3063893..3063977 +
1693562352.498092-CDS-P-fluviatile_contig13:3063892..30639771693562352.498092-CDS-P-fluviatile_contig13:3063892..3063977Porterinema fluviatile SAG_2381CDSP-fluviatile_contig13 3063893..3063977 +
1622815584.9422-CDS-P-fluviatile_contig13:3064382..30644571622815584.9422-CDS-P-fluviatile_contig13:3064382..3064457Porterinema fluviatile SAG_2381CDSP-fluviatile_contig13 3064383..3064457 +
1693562352.508197-CDS-P-fluviatile_contig13:3064382..30644571693562352.508197-CDS-P-fluviatile_contig13:3064382..3064457Porterinema fluviatile SAG_2381CDSP-fluviatile_contig13 3064383..3064457 +
1622815584.9567063-CDS-P-fluviatile_contig13:3066385..30665321622815584.9567063-CDS-P-fluviatile_contig13:3066385..3066532Porterinema fluviatile SAG_2381CDSP-fluviatile_contig13 3066386..3066532 +
1693562352.5181298-CDS-P-fluviatile_contig13:3066385..30665321693562352.5181298-CDS-P-fluviatile_contig13:3066385..3066532Porterinema fluviatile SAG_2381CDSP-fluviatile_contig13 3066386..3066532 +
1622815584.9725666-CDS-P-fluviatile_contig13:3067379..30675151622815584.9725666-CDS-P-fluviatile_contig13:3067379..3067515Porterinema fluviatile SAG_2381CDSP-fluviatile_contig13 3067380..3067515 +
1693562352.5278718-CDS-P-fluviatile_contig13:3067379..30675151693562352.5278718-CDS-P-fluviatile_contig13:3067379..3067515Porterinema fluviatile SAG_2381CDSP-fluviatile_contig13 3067380..3067515 +
1622815584.9901662-CDS-P-fluviatile_contig13:3069949..30700771622815584.9901662-CDS-P-fluviatile_contig13:3069949..3070077Porterinema fluviatile SAG_2381CDSP-fluviatile_contig13 3069950..3070077 +
1693562352.5387743-CDS-P-fluviatile_contig13:3069949..30700771693562352.5387743-CDS-P-fluviatile_contig13:3069949..3070077Porterinema fluviatile SAG_2381CDSP-fluviatile_contig13 3069950..3070077 +
1622815585.0039845-CDS-P-fluviatile_contig13:3070675..30707561622815585.0039845-CDS-P-fluviatile_contig13:3070675..3070756Porterinema fluviatile SAG_2381CDSP-fluviatile_contig13 3070676..3070756 +
1693562352.5474646-CDS-P-fluviatile_contig13:3070675..30707561693562352.5474646-CDS-P-fluviatile_contig13:3070675..3070756Porterinema fluviatile SAG_2381CDSP-fluviatile_contig13 3070676..3070756 +
1622815585.0161726-CDS-P-fluviatile_contig13:3071312..30714201622815585.0161726-CDS-P-fluviatile_contig13:3071312..3071420Porterinema fluviatile SAG_2381CDSP-fluviatile_contig13 3071313..3071420 +
1693562352.5567176-CDS-P-fluviatile_contig13:3071312..30714201693562352.5567176-CDS-P-fluviatile_contig13:3071312..3071420Porterinema fluviatile SAG_2381CDSP-fluviatile_contig13 3071313..3071420 +


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

Feature NameUnique NameSpeciesTypePosition
mRNA_P-fluviatile_contig13.1950.1prot_P-fluviatile_contig13.1950.1Porterinema fluviatile SAG_2381polypeptideP-fluviatile_contig13 3057099..3071420 +


Sequences
The following sequences are available for this feature:

protein sequence of mRNA_P-fluviatile_contig13.1950.1

>prot_P-fluviatile_contig13.1950.1 ID=prot_P-fluviatile_contig13.1950.1|Name=mRNA_P-fluviatile_contig13.1950.1|organism=Porterinema fluviatile SAG_2381|type=polypeptide|length=455bp
MMAGSAFRRGVGLVGIFLSKASTASARPSWERLYSVAVGVRGGAGASTDE
EVAATVGGAPTTEIAAANTMSAVSRSDPYQHLRGLEPSLLTVERTTAPRE
KKEKSTLVFGQTFTDHMLHVDWDNKRGWHAPRIAPYGDLAISPASSSLHY
GLQCFEGMKAYRDAQGSVRLFRPDLNIRRLNRSMERLRFPHVDAASMIEL
MSKLVLEDADWIPEGDGYSLYLRPTAISTHPYLGIAPAASVKLFVILSPV
GPYYKEGFNPIRLYADTEHKRAWPGGMGFAKAGGNYAPTIQPQAQAQEEH
GCSQVLWLFGEDDHVTEVGAMNIFFLLEKEGGGGVELVTSPLDDGDILDG
VTRRSVLELSREWGTLEGGVPLEVSERRLPMGEVVRACTEGRLLEVFGTG
TAAVISPVKGIKYRGREIEVRSGDSIGPLAKRCWKTLTDIQYGRVDHPWS
VKIS*
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mRNA from alignment at P-fluviatile_contig13:3057015..3072081+

Legend: UTRpolypeptideCDS
Hold the cursor over a type above to highlight its positions in the sequence below.
>mRNA_P-fluviatile_contig13.1950.1 ID=mRNA_P-fluviatile_contig13.1950.1|Name=mRNA_P-fluviatile_contig13.1950.1|organism=Porterinema fluviatile SAG_2381|type=mRNA|length=15067bp|location=Sequence derived from alignment at P-fluviatile_contig13:3057015..3072081+ (Porterinema fluviatile SAG_2381)
AGTGTGTGTGGCCGTAGGATCGCAGTGAGCCTTGCCTGCATACCGGGAGA ACACGTCACTGTCTCTCTCACACTGCCCATTAGCATGATGGCGGGGAGTG CCTTCAGACGGGGGGTAGGATTGGTGGGCATTTTTTTGTCCAAGGCATCG ACAGCGTCGGCCAGGCCAAGCTGGGAACGCTTGTACTCCGTTGCTGTCGG CGTGCGCGGGGGGGCGGGAGCATCCACGGACGAGGAGGTGGCGGCGACAG TGGGGGGCGCCCCCACAACAGAGATTGCGGCAGCGAACACCATGTCTGCT GTTTCGAGGAGCGATCCCTACCAGCACCTTCGAGGACTGGAGGTGTGCAC TGGATTCATCCGAGTTTCAGTCAAGTTGATCTTTAAAAAAAAACGGTGTC GCGTCACTAGACTAGTACCCAAAATGCTCTCACTATACACGCAATCCGCT GTTCTGCTGTTGTTTATAAAATCGGCAACGGAAATAAATCTCCGGGAAGC GCCCAAGATTGCATGAAAACACCTCAAGATCTCAAGGATTTGATTCAACG AGGAGAGAACAGATGCGTGGTATCGCAAATGCTCGACCTTGGGCCAAAAG ATCAAAGGCTTTCGTAGCTGAATGCTGGGGCTTCAAATGCAAGAAGTCCC GAATTCGTCTAGCTGGTGTGATTTAGCTTGTTCTGAAGTACTCTACACTT TTGATAAGCATTATGACCACTAGACTACCAGTCAGCCGCTTACTGGGAGT CTAGTGTTCATCGAGCTGACTGGTAGTCTGGTGGTCATCGTGGTTCTCAA CAGAAGCTAGCGCCCGTATCCGTCTGGCTGTTAACTAACCATTTTTAAGC CACGAACCCGGTACATTTCACCTCCAGGGTGCAATCCCTGTAGTCGACGC TGTGCTTGCCAGATCGATACAAGCAGGTCATGGGCTTAAGTGCGTAACCT CTCAGAGACTATTCCTTCCCATTTGTGGGCTTCATCGCGCTTTTGAACGA AAAGTAATATCCAGGGCTCCATTCTCACCCGGTGGGTCCTCTTACACGCA ACACAAATTTGCCTTCGATACATAGAAGAAATAGTCTTGTGTGAGGCGGC TACGCAAATATGCCGATGGCCTGCTTAGATCGATCTGCCAAGCACAGCGT TGATTACAGGGATTGCAACCCTGGAGGTGAAATTCATCGGGTCCGTGGCT TATCAGCCAGACGGACACGGGCATTAGGTTTCAGCAACAAGAACGGTGAC CACTAGAGCAGCAGTCAGGCGCTTACTGGTGGTCTAGTGGTCATCGTGCT TCTTAACATTCATCACGGGGGAGTCAACATATCGAAAAGCTGACTACGGA GTACTATGTGCCGCTCGAGCTTGCATTCTAAGCTTAGGGCATACTATTGA GAGAAATTTTGCTCGCGCAGCTCGCAGAAATGCTGTTCATATATTTCAGC TTCCTAGGCATGCAGTGATGCTCTCTCTCGGCTTGAAATCCTTTCAGCCT ACATGTTTTATGTAACAATAATCGTCGCATTCCCCAGCAAGCGACAGCAT ACAGGATTTTCGTTAAACGGACGGAAAGGACCGTTGATTTTTATTTTGTT ACCGAAACGGGCGGCTGACAACCCGGGATCAGCTCCGACTGAGCGTCGAG CGCCCGCCGCCCCCTGCAGTGCCAATCCACAACCGGGATCGACCCGACGG TTTTTGTCCAGGTGATTTATTCCGCAGAAAACCTTCAAAGCACACACTGC ATAAAGGGCACGCTGGTGGTACCAATATTGGTTGAGATAAAATCTCGATT CGTATCCGTCGACCACGTAATCGAATCGTAAGGATAGGATACGGGCATTT GAAGGTGCTGGAGATCAGAATGGTTTTGTTTGAAGAGACAACAACAACAA CAACAACAACGACAACGACAACGACAACGACAACAACAAAGCAGCAACAA GACAAAGAATCTTGCCTGGGTCCAATGGACAGTGGAATAGTCTTTCCGCG CAACAAGCCCAGAACTAGAGTTGGCGTCGTAGAAACAGTGTCGAGGACGC AACTTCCTGATTCAGCGGATTCCAAGTGTTAAATGTTCGGCGTCCGCGCA AGATTTGGCAAAATTTCGCCAAGAAGCGGTGATTGGGCCCAACAATTGCC CGCGGCGAGCATGGAATCCAACCGCACGTCTAAAAAAGCGAGGTGTCAGA AAACAATCAATCCCTGGTGACCCTTCCCTTCCCTTCCCTTCCCTTCCCTT CCCTTCCTTCAGCCCCCCCCCCTCTGTCCCCCCTCGGTGTTTGCTGTCGG GATTGGGTTTTCGTCGCTTGGCAACGACATTATAAAACAAGCCAATTCGC TTCGTGAACTCGGCAACCAGGTTACCGTCTTTTTTTTGCCTCTGTTTTTT TTTTGCGGTAACCATAATGGTGGTCGAGATGATCATGTTGTGCGGAGTGG AGAACCCTCACTCCGTGCAATGGGGATGATCGCACCACGTTGTGTTAAGA TGGTCAAGCGCCCTCGAGGCAGTTACACAGTGCTTACAACTGTCTCTGGA AGTGAAAGTACCAGAAAATAAATCAAGCCATACGCAGCTGTCATCCGTAT GCCAGGAAGTATGCACAAGATGCCGAACACCCTTAGCAGGATGCAGCACA CCCTTCATGCGACTCGCCGAATACCTCACGGCGCTTCGCGCTTGGTGATG TGAGAGCCTGGTCCGGTGAGAACCCGGCGTGCTCCGTCCCGGCTTTGTAG GGATGTGAGGTCAATGGTCTGAACAACGACAATGAGTACACCCCCACCCC CCTCTCCCGCCTCCCTCAGGATTTCTTGTGCAAAGAAAGGCAAAAGCGGA AAGAGTGCTCGAATGTTGGGGATGCCTTTGTTAGGAGTAGGAATGGTACT TCATCTCGAAAAGGATGGATGCTCGATGGTGAAATGACGAAGACATGCAA CAGCTGAGTAACGCCCCCCCTCCCTCCCCCTCCCCCCTTTTTCGAGGGTG GATTGGTCGAGGTAGGGTTGGCTCTTGTGGCATGGAGCTGTAAAACTGCT GTATAGGGCATGGGGGTTGTTCATGCGGTATATCCTGTGAGCTTGTGGAC TCCGGTCCTAGAGATCACACCCTATAGGATGTCCGCTGAACGCTGGATAG TTGGAACGCCCTAGAGCAATCATACTTATGAAATATCCACCTGTGGGGTA TATAAGCAGATTATTCTCCAAGTGTATCACACACGAAGCGACGTGTTCGC TGTGTGTGGCGCGCCAATATGATAAGTGCGCGCAAAGATCGAAGTCCCTT GCGGTACTTGAAGAATAGTCGAGCCTGCCGAATGTGAAACGTTTGGTTTA CCGGATGCCCAATCAACCCATGGCAGACCCGGTTTGGCTCAGCAAACACA AGGATGATGGCCAGATGCTGGCTTATCCTTGTGAAACGCGCCTGGCCGGC GAAAACCCGGCGTATCGCTCCGTCCCGGCATTGTAGGTGACGCGAGGTCT ATGGTCTGACCGACTACGGCATGCGTTTTCATGAGTACACCCCTCCCTCC CCCAGAGCCTGGTCCGGTGAGAACCCGGCGTGCTCCGTCCCGGCTTTGTA GGGATGCGAGGTCAATGGTCTAACGACTACGGCATGCACGACTGTGAGTA CACCCCCTCCCTCCCCCCCTTTGGCCGTCCCTCCACCCTTCAGCCCTCGT TGCTGACGGTGGAGCGCACGACAGCCCCGCGCGAGAAAAAGGAGAAGTCG ACGCTAGTGTTCGGGCAGACGTTCACAGACCACATGCTGCACGTCGACTG GGACAACAAGAGGGGTTGGCACGCGCCCAGGTCAGCAGGTGCCCTGCAGC GATGAGTGACTTGATACACCACACAAGAGTAGCAAACACCACGGACGGGA AAGATAGCAGAAGAAAGGAAATGAGTCAACAGAAAATCGGATGCACTCGT AGAGAGAGCTGTGTGTCTTGTTCTGTATTTTCGCGAGGGGGTGTCGCGGG AGGAGGCGGGAGGAGAGGTGCGGGAATCTGCGGACGCGCCCGATGCTTGA GATTTTATCCGTGGTCAAGCAGAAGGGCACATCCCCCCGAGCTGCAGTTT GTTGTTTTATTCGAAGCAGAGGGGCCACGTCATGAACGACCTCATGATCC GGCGGTTTGTGGTGCGTCACAGGCGAGCACCCGGGCTTGCAGAATAAAGT TGTGTAGATGCCTGGAACGTCAATTGACCGCACTTTTATGAACAACGCGA GTTGATATTACCGGCAACGCAGGTACTCGCGGATGACTTCGGCATCTCAA GCTTGACGCGTGCAGGCCGAAACGTTTGTCAGCGCACATACGTCGCTCCC AGGACGCCCAGCCGATTGCTCCAATTTGTACGTGTACGATTCTCTTTTGC CTACATGTGGATTGTCTCTCTTCTTGATCATTTTTCGACGCAGGGTCCCA AAAACGTACTCACTCACGACGCTCGCTCCCCCGCGGAGTGTTTTTCCGAT GGTCCATTGAAAGCGAAGTCTCAAATTGTTCGTTGTCACGCTGCCAGGAT CGCGCCGTACGGGGACCTCGCTATCAGCCCTGCGTCGTCGTCTTTGCACT ACGGGCTGCAGGTAACTATTCTTGGGGCAAGCCTGGCTTGCCCTTCGGCT GCTCTGCGCCGACCGCCGCACGCGCGTGATGTACTCAAGATTTTAGCGTT TTCTGGGTTTACTCGTTGTCCGAGGGACGGAACGCGTAGCCGAAAACCAG GGTTTTCTGTCAAACCCGATCGATTCATCCACCCATTTATCCATCGATTC ATCCCCCGATTCATCCATCGATTCATCCACCCATTTATCCATCGATTCAT CCCCCGATTTATCTATCGATTCATCCAACGATTCATCCATCGATTCGTCC ACCGATTTATCTATCGATTTATCTATCGATTCGTCCACCGATTTATCTAT CGATTCATCCACCGACCATCCACCGATTTATCTATCGATTTATCTATCGA TTCGTCCACCGATTTATCTATCGATTCACCCACCGACCATCCACCGATTT ATCTATCGATTCATCCACCGATTCATCCATCGATTCATCCATCGATTCGT CCACCGATTTATCTATCGATTTATCTATCGATTCGTCCACCGATTTATCT ATCGATTCATCCACGGACCATCCACCGATTTATCTGTCGATTCATCCACC GATTCATCCACCGATTTATCTATCGAACCATCGGCTTACGTTGCGGCGCG GATGGTACTGCCTGAGAGATGTCGCCGAGACCTCTTTCGAGCACGGATCG TTTGGCCTCGTGCTCTTCCACCCCTTTCCCGGTTGTCAGCTCGCTCTTCG CCCCCCTACCCCCGCCCCCTCTAAATTCCTCTTCTGACCCCCCCCCTCGC CCCCACCCCTCGTCGTTCCATTCGGTGGTTGCCGACGCCCCGTCCCCGTG ACGTGACACTTGACAAAAATGAACGGCGGTTTGCGTCTGGAACGGAAACC GAACACGCAAACCCTTCGAAACGCATTCGATGAAGTGCTTCGAGGGGATG AAGGCCTACCGAGACGCTCAGGGCAGCGTGCGCCTCTTCCGTCCGGACCT CAACATCCGCCGCCTCAACAGATCCATGGAGAGGCTGCGCTTCCCCCACG TTGACGCGGCCAGCATGATCGAGCTCATGAGGTACCTATTTGACGCCATT GTGCTCTTCCGCACGCAATCCTCGGAAGTGCAGCGCAAGCGATTTTCGAA AATCGAGTGCAATAGAGACGCCTCGCCCCTCCCCCCCCCCATCCGCCGCC CTTACCCCAAACACACGTCAGTGGCACACGGAAATGACAATTGCGAGAAA GTTGTCATTTCCTATTATATTACGAGGCGTGCGTGACAGAGTTTATGCGT GCGTTGCCATGGGGGGGGGGAGGGTATCGGTTTCAGTACGATGATCATTT TAACCATTCATCACGCATCTGCAGCACCTCCTTTCGAGGCGGAGGGGGTG TCGTTCCTGCTAGACTCCACCACAACTCTGGCCAAGCCTCACCTCTTTGC CACACTCGAGATTGACGAGGCCTTGTGATAAACTCGCCCCAGACCCGTTT CACCTCTCGCGGGTATCAGCACCAAATAGAGCCATGGTTTCGCGCCATAG TTTACTGTACAAAAACAACCCATGCCACACCCTTCGTTCCGTTTCCTTTT TGCCTCGTGTTAAGGGGTAATTGATGTTCATGAAGGGGTAATTGATTTTC ATGAAGGGGTAATTGATGTCCATGAAGGGGTCATTGATTTTCATGGGAGG GTCATTGATCATGAAGGGGTCATTGATGTTCATGAAGGGGTCATTGATAT TCATGAAGGGGTCATTGATGTTCATGATTATCTGTTGCGCTATGGCCGAT TTTTTTTCTACGGGAGGGGCGAGGGGCGGGAAGTCGGGTCCGCGTGCAGT TCCGATCGAGTGCCACTGCAGCACTGCCTGCGCTGTGAATGTGGCGCGTT ATTTCCGGAGTGATTTTGTGGTTGCTTCCGCGCTTGTTCTTGCTTCTGGT CTCGCTCTAGTTCTTCATGCGATTTTCCTGCTTCGTGTGCTGCTTGGCCC AGCCAGCATCTGTTAGATTTCACGGAGGAACAGTATTCCGCAAGCAACGC ACTCGCATTCCCCCTCGAGAACTTGTACGAAACCGCGAGTGCACGACATT CGGATGAGCGACATCTATTCCTAAAAATAAAGCCCCCCTTGGTCTGAACA AACACGTGAACGCTCTCCTTGCTACCCCACCTCCCCTGGCGCCCACCGCC GGCCCTACCGCTTCGTCTTCTCACCCCCCCCCCCCTCCAAACGGCCAATC TCCTCTGAAATCCCGTTTCTCTGCCCAGCAAACTTGTCCTCGAAGACGCG GACTGGATTCCCGAGGGAGACGGTTACTCGCTCTACCTCCGGCCTACTGC CATCAGCACCCACGTGAGAGAATCAAGCAAAGCGAAGGGAAGAATCGGTC GCGTTGCCGCGTTGTTTTTTGTTTTGGTTGTGTTGTGATTGTTGTTGCTT TTGTTGTTGTTGTTGTTGTTGTGAGTGTTGTTGTTAAATGTTGTTGTTGT CGCCGTTGTCGTCGCTACGGCTTTTGTCGTTCGCCTTGTCTACTCGCCTC TCGCCCCGCTGCTCGCGTCTGTTGATGCTCACTTTGCCCTGTGTCATAAC TTCCCCCGCCCCCGCCTAGGGCTTTTCTCGCCGTTTCCCTGGTTCTGTCT TGTCTGTTCTCCAACGCACGCCGCCTGCGTTCCGCGTCTGCTCACATCTT GATTTTTCGTTTTCTGCTGCTCCTCTTTCATGTCCGTTTTCCCTCCCACC TCGGCGCTCTTCCTGCAGCCGTACCTGGGCATCGCCCCAGCGGCGAGCGT AAAGCTTTTTGTCATCCTCTCTCCAGTGGGCCCCTACTACAAGGTGACAA CGACGTACATGGTGCCTCGTCATTCGCAAGGGTTGCACGAGGCAACGGAC GTCGCGCCGCGATTTGAGTCGAACGAAAGCTTGCAGCGACCCCTCAACCT AAAGTGGCTTGTTCGCTTGGAGGCGGGTGAACTTAACGACCTCAGTTTTG TACTTGTCATGGTCCTCATCGATGTGGTGGCTGTTTGTAGACGTGAAACA GGGAGGGTTAGACCCTGCGCACGTACATGAGGCGCGGGCTCGACCCCGTG TTGATTTTGCTCTGTTCTTTATTTTTTATATTATCCATCCCGGCTCAGCA CAAGGCTGACTCTGTCGCTTATCCCTTCCCCTCTATCTCTCGCCCTCTTG ATCAACCCCCCTCCCCCTTGCTGGCCCTCCATCAATGACTTGCTAGTAGC TGAAGAAGAGGTGAAACAAGGAGTTGATATAAGGGGCAATCAGGTGTCGG GGTTTGTGGATGTGGATGTTTTTGCAGTGGTTTCGGGAACACCGAGGGGC TCCAACAACAAATCGATGTTGCCTTGGATTACACAACGAAATGGAGGTTC ACCGTGAACGTCCCAAAGTGCGCAGTGTTGATTTGCGATGAAAACTCGGA AAACCCAGAGCAGTTCAAATGGAAATGGGGCGAAGAGGAGCTGCCGGTTG CAGTCCAATTTTCTTAACTAGAGGTGAAGATATCGAAAGTTTTTCTTGGG TTGCGCACATCCGAAAGGTCATTGGAAAGGGCAAGGTAGCACTAGGAAAT ATGGATAGAATCCTTGCAGACCCACACCTGGACACAAGGTTTGAAAAGGT GTAATGTACTGAACGTTGTTGTACCCCACCTAGAAAATGCAGGAGAAGTA TGAGAATGAAGTATGAAGTAGACCATGCAGCCTGAAACAGTCAAGATGAC ATTTGCTAAAAAGACATCGGGGTGCTCACGTACGGCGAGCACCACCGTAG TAAGGGCGGAACTATAAACAGGCATGGAATCGTTGATTTGACATCAAAAA CAAATATGAGGAGGTTGAAATGGCAGTACTTGGTATAAGACTATCGGCCG TTGTTGACAAGGGGACATGGAAGAAGGCCAGGAAAGGGAGATCGGGAATA CGATGGAACAAGGAAGCAGAGAAAATTCGGAAGGAAATTGGGGGAGATGA AATGGAGGCATTGACTCTGAAGGGGTACAACTGAAGTATGGGGCATGAAA AGAAAGGAGGGAGAGACTAGCGATTGATACAAGGTGTATAGCGAGCACCA CTCAAATATGTAGGGGGAGCTGAAGGAGGAGAGAGGCATGCGAGTGTGTT TTGAACGGCCAGATGGACGACGCGAAGAAGCTGAAATTTCGATTTTGAGA TTTATATCTGGACCGATTTCGAGATTGATATCCGGACTTGCCAGGAAGAC GGAAAAGTTGCACCAGCAATAGAACGGAAGTCGAGGAAGAAAGACGGACA TGCCCAGCAGAGAGCCCGAGGGAAGTCGCACACAAATAGCTGCAGCACGT GAGCTCTTCAGGGAGGAACGTGGACAGAGGAATTAAGAGAATCATTCGCA TGGGCGACTTCGTCAAACTCGGATGAAAGCGAAGAAACCATCGAGGTCAT AGGGGATAGATGATGGCCAGCCGAAGCCAAACAAGAGGGGGATGAGATCA GCAAGCTATTTTTGTGTAGAGTGTGGCAAAAACGTAAAAAGCGCCCAATC GTTGGAGGTGCCTCTATCAGGGGAATGAACGATGATCCTCCTCGGAAGCG ATGCGTGGTCGATGGTCAGGTATCGCAGGCAAGCAACAAGTCTGTACGCC TGAACCCCCCCCCCCGCCCTCCTCGCTCTTCACTCTCTCTCTCACACACA AAAGCCCTTTCCCTGCCCCTCCCTCCTCTCCTCGATCTCGATGTATCCGT GTGCAACTCGTGGCGTCGCAGGAGGGTTTCAACCCGATCAGGCTGTACGC CGACACGGAGCACAAGCGGGCGTGGCCCGGCGGCATGGGATTCGCCAAGG CCGGCGGAAACTACGCTCCCACTATCCAGCCGCAGGCGCAGGCGCAAGAG GAGCACGGCTGCTCGCAGGTGAGGCTGATACTCCGTAGGCGATTTCTTCC CGATTTAGATGCACTTTGATTCTACTCGAGATTTGGTAAAGAATCTTCGC CCATTCAGAAATCAGTCAATCACCTACGGAGTACAAGCCTATCTCAGGTG AGCGTGTGAAAACTGTCGGGCCGTAGATTGTAGCGGTGGAGTGGGGCGCG TTTTTTCCGTTGTTGTCCAAACCAAGAAGTAGGAGAGGAGATACAGACAG ACAGACAGACAATGTGTGGAAACAGGGTCGGTTCTCTCACGCCATCTCGC CCGTGGCCGCGCGGCCGCATGGACTACAATGGTCAGCTCAGTGATGATTA GATCAGGCTCTTCACCCTACGTATGTGCGCGATTGTAGAATGTGCTGTAG GTGCACGATGCCCTCGTCAACAGTGCTAGCTTATCACCGGCCACCGGAGC TGGGGGGCTGGGGGAACCGAGGTGCAGGGATCACGGGTACCTCAACGGAG GGGTGGGGTAACGTGTGGAGGTATAGGGGGGCCTGTGTGAAGAATTTTGT TTTTTGTTGTGGGTGGGGTAGGGGACGTCCGAGGGCAAACGGACCATGCC CCGGCGAATTGCTGTTCTGCATCCATTTCCCGTCTCATAGTTAAAACCTC TTGCGCTGTACGTGCATTTTTCGCCGTGAATTTGGAATTTTTTGCATCTG TTCAACCCGGCCCGACCGATCAACCTTTTTACTATTGCTTATGTCCGAGA GAAACGAGAAATAGAGCAAGAGCGAGGGACGGGGGGAATTGCGCAATTGG TCATGTCTCCGTCTTTTCTTTCCACGCCCCAATCATTTCGTTTTTCACCG GTTTCTGGACTCCAGGTCCTGTGGCTGTTCGGCGAAGACGACCACGTCAC TGAGGTTGGTGCGATGAACATCTTCTTCCTCCTGGAGAAGGAAGGTGGCG GCGGGGTGGAGCTCGTGACGTCACCTCTTGACGACGGCGACATCCTCGAC GGTGAGCATTTTCTTTCTTCAATTGTTTTCAATGAGGTTCGCTCCCCGCT GCTGGTGCTGCCGCTTGGCCGTTGGTGACTGATGCCGCCCCTTGGCGTTG TTGAGTCTACTGCCTGTCCGGTTGCTGCCACTGCTGTGGCGCCGCCAGCA TTCCTGCCGCTGAATCACCACCTTCTCGGCAGGCACATACGGCAACCGTA CCCGCTCTCTCAAGATGCCGATTTCGAGTTCAGAGCACATGCGCGCTCTC TCAAACTCGGGATTTTGGCCGTTACTTTTGTCAGAAATATCTTCAGTCCG GTTTCTTCGTGAGAGATCCTGTACACAAACACCACGCACGCACACTCATC CACAACCACCAGGTTTCAAGAGCAATTATTTCGCTTTCGAAGGCGTCACC GCTCAAGCGCAAGCCAGCTACTGAAGACCAGAGCGCTCACCAACCGCGTT ATGTTATGATTTCGCACAACCAGCCTCTTCCCTCTTCTCGTTTACGCGAA GTTGTGTCAGTCGCGGGTGTAATGCCGAAGAATGGTCCCGGCGTAACGAG TGTACGCGCTCACGTGGGAAAGGTAGTTTTTTTAATTTCTCGCTTCTAGT TCAAGTGGTCGATAGTGCTGCTGCACAAGCGTTCGCCATCTTCCTGTTTT TTTTCAGAATGCGTCATTACGCAGACACCCCCAGGGCGTCATGACGCATC GATGACGACAAATAGCATCATCGCCGCCGGCATCGTTACTAAAGGAACAC TGCTCCTACATGCGTCTGGATATGAGCATCGGAAAGCACACATCATCCCG CGCACACAATTCACAATTAGTTGCCCGTGCATTTCAAAAATAATGCACCC TTTAGAATTCTTCGGCAAGAACCGAAACCATCACAGCACAATTTGTGCCT CGAGATCATACTTTGCCTTCATTCTCAAACTCATGACGCTTGGTATGCCC AGCACACCCCGGCCACCACTAGTTTTCGTCCCTCACATCAGTGCGTAAAC CAGCATCAAAACGCGATGAACGGAGGACGGGAGCGCCGTCAGATCCCCGC GTCCGGAACCCTTGTTAAATACTCCGGAGTAAATAATAATCAAGGGATAA AAGACAATACTTTTAATTTAAATTTTCGCCGTAGCAAGCGCCGTACAGCG AACGGTCCTGCTGCAAATGGCTTCTATTAGCTTTTTGTTCTCTTACCTCC TTTCTGTACACATCACCTTTTTTTACACATCACCTCCTTTTTGTAAACAT CACCCCCTTTTTTTACACATCATTGCTTCCTTTTTTAGACGTCACCTCCT TTTTTTACACATCACCTCCTTTTTTTACACATCACCTCCTTTTTGTAATC ATCACTTCCTTTTTTTACACATAACCTTTTTTTACACATCACCTCCTTTT TTTACACATCACCTCCTTTTTGTACACATCACCTCCTTTTTTTTCACATC TCCTCCTTTTTTTACACGTCACCTCCTTTTTGTACACATCACTTCCTTTT TTTCACATCACCTCCTTTTTTTACACATCACCTCCTTTTTGTAAGCATCA CTTCCTTTTTTTCACATCACCTTTTTTTACACATCACCTCCTTTTTTACA CGTCACCTCCTTTTTTTACACATCACCTCCTTTTTGTAAACATCACCTCC TTTTTGTAAACATCACCTCCTTTTTTTACACATCATTGCCTCCTTTTTTT ACACATCACCTCCTTTTCTTCACATCACCTCCTTTTTTTACACATCACCT CCTTTTTTACACGTCACCTCCTTTTTTTACACATCACCTTTTTTTACACA TCACGTCCTTTTTCTACACATAAAACAAATGAAAAAGTGTGCCGCAGCTA TGGCGTCCGTGCCGCTAGTACCTCGTGCTGCGGCTACAGTGATGGCTATG AATAGTGTTTATCAACCCCCTTTCCTGCAAGACCTTTGTGTGCCCGTTGA CTGCCGTGCCATTTAGCCCTCCTCCGCGTCCTGCTCCTGCTTCACGTCCT TACGCTTGGTCTGATTCTTGGTTGTTTGGACCCTAGCTACTGGAGCCAGA GAGGTGCTAGTATTAGCCTACTACCAGGGGCATGTCGAGCTTCCTTTAGT GATATTTAGAGAGAGACGAGAGATCCCACAAGGAGAGAGTTGGGGAGAGC GGGGGAGCCATCCCAAGGAGGGTCCGCCGATCTCTCCCGTCTGCATGGAA GATCCGATTTCCCAACGGACCTTCCTTGACACAACGGTCAAGGAGGTGTC TCGGGGATGATCGTATCTTAGTATCTATGTGTGTGTACATGGGTACGTCA CTCTCTACACCTGACATCCACAGTTGTGGTTTTTTATCAACCAGCTTCCC TCAATTTGTGTTTCGTTTTTCTTCCTCTTTTTATTTTATTTACTCGATGT CGTTCCATCTGGTCTTTCGCTTGCCTTGTCTTCAGGCGTGACCCGAAGGT CGGTGCTGGAACTCTCGAGGGAGTGGGGTACCTTGGAAGGCGGTGTCCCC CTCGAGGTCAGCGAGCGACGTCTACCCATGGGAGAAGTCGTCAGGGCTTG CACGGAGGGCCGGGTAAGCGGGTATATGGGTAGATCAGGGGGCTCCAGCA GTAGCGTCTTCGAAGAACTCTGCTACACGAAAGGGCTCGCAGTTTTTTCG GTGTTTTTTTGTTCAGCCCCGCCTGTTCCTCCATAAAATCCAGGCCTTTC CCCCCTCCGTTTTGTTTTCCGAGCAAGAATCCGCTCTCCGGCAGTGAGTT CTCGCCCTCCTCACCCCACACCCCCCTCTGTACCTCCTGCCACCCTCCTC TTGGCGGCGAGAACAACGTAGATCGTGATCTGTCCCTCTCTTGGAAGTAC CCGCAACGACGCCAAAGCCTGTAACGACAAACTTTGTGCGGCATACAAAC GGGCTCCCTACCCGCTTACGTCGACGCGAGGAAAGAGTGGTTCGTTCTTG AGTCGAGCCCCCGCCGCTACCTGCTAGTACTCTGCCACTACGTCGAGTGC GAGGAAGGTCGCCCGGCCCAATGAGCACGGGGCACCAGTTTTCGACTGAA CCCCCCTCTATCCCAGGCCGATCACGTGCTCCCGCCCGTGCCCGACACGC TCTGTTTTCGTTGTTTTTTCCGCCGCTTCTTGTTTCCTCTCCTTCGTTTC GTCATGTCAAGCTCCTGGAGGTGTTCGGCACAGGCACAGCCGCCGTCATC TCTCCTGTGAAAGGCATCAAATACAGGGGGCGCGAGATCGAGGTCGGGGC CAGGACGAGCGAAAGAGTAGTCCCAAAGCCCTCTCCGTTGTTTGTCGACC GGTTCCCTTCTGCGTCTGTCTTGATTGTGTACTCTCCCCCTCGCCTTTTG GCCCGAAGATCTGAAATTGACCAGCAAAAAATAAAACCTCATTGGACGCG CTGGGCCCACGAAATTGGGTCTGGAGCGGGGGGCGGGGTACAGAAAGCTG AACGGGTGTCCCCAGCATCCAGAGCAACGGAGAAGTACTGAAGAAGCAGC GTCCTGTTTGCGTTGGCGCGTCCCTCTCTCTATCTTGTGTGTCTGTCTGG TTGTCTGTTTGTCCCTCTGCCCCTCTGTCCCTCTGTCTGTTTCTTTTCCG TTTTCTGTTTTGTGTTGAGTTTTCTGTTTTTTGTTTGTCAGGCAGGTCAT TTTCCCGAAGCGGGTGATTCTTCGCGTTTATCGTCGTTCCTCGACGTGTG GTCGAGGTCACAGCCGGCTCGCTCTAGTTTTATTCTTGATTTCTGCTAGT TTTTCCAACTCATGCCATGCGGTCCCATCTCATGTCCCGGGTCGACAGGT GCGGAGCGGCGATTCCATCGGCCCCCTCGCGAAGCGGTGCTGGAAGACCC TCACGGACATCCAATACGGCAGAGTGGACCACCCATGGTCCGTGAAAATC TCGTGAACGGACGGTCTTCCGCGCGTGGAGAGAAGACGGCCCAGGAGGGA ACATATGAGAGAAAGAAATAACACGATGGACGAGTCGAGAAAGACGGAAA ATAATCCAATCCGTTCTTCCACAGAGATGCAATGACGAGATGAGGCAAAG AATTCGGGAATGATCCAAAGGGTGTAACGCCTGCGGTCCGTGATAATCTC TTGAACGGACCGCACGACGGGCACGTGTGTGGACTCGAAGAAGGAGGAGG AGGAGGAGGAACAAAAAAGGGAGAAGAAGCGACGAACGAACCAACGAAGG AATCGGTGAAAACTAAGGGGATACGTGTCTCATCCAGTCCCTCTGATGGG AAAAAACAGTCAAGTGAGACGGGCAGGGATTCGATTCTGGCGATGAGTTC CATGGGTGTGGTGCTTGCATCAAATTGAAGTAGGGGGGAGACGAAGAGCA GGATCGCCGACAAGCACGCCCGTCCTTGGGGTGCAGGCTACACGTTCTCC CTCTGTGTGATCGTGGTTGGGTTGCACGTGTTGTTTCTCGATTGTTGACC GCTGATCTGGTATGCTTGATGTTCGAGACTGCTTTTGCTTCGCTCAGCAC CGACGTCGGACGGAATCCGTTTAGTGTAGTTGCGTTTGGGATCGCGGGGG TAGGGCCAGACTTTTTT
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Coding sequence (CDS) from alignment at P-fluviatile_contig13:3057015..3072081+

>mRNA_P-fluviatile_contig13.1950.1 ID=mRNA_P-fluviatile_contig13.1950.1|Name=mRNA_P-fluviatile_contig13.1950.1|organism=Porterinema fluviatile SAG_2381|type=CDS|length=2730bp|location=Sequence derived from alignment at P-fluviatile_contig13:3057015..3072081+ (Porterinema fluviatile SAG_2381)
ATGATGGCGGGGAGTGCCTTCAGACGGGGGGTAGGATTGGTGGGCATTTT
TTTGTCCAAGGCATCGACAGCGTCGGCCAGGCCAAGCTGGGAACGCTTGT
ACTCCGTTGCTGTCGGCGTGCGCGGGGGGGCGGGAGCATCCACGGACGAG
GAGGTGGCGGCGACAGTGGGGGGCGCCCCCACAACAGAGATTGCGGCAGC
GAACACCATGTCTGCTGTTTCGAGGAGCGATCCCTACCAGCACCTTCGAG
GACTGGAGATGATGGCGGGGAGTGCCTTCAGACGGGGGGTAGGATTGGTG
GGCATTTTTTTGTCCAAGGCATCGACAGCGTCGGCCAGGCCAAGCTGGGA
ACGCTTGTACTCCGTTGCTGTCGGCGTGCGCGGGGGGGCGGGAGCATCCA
CGGACGAGGAGGTGGCGGCGACAGTGGGGGGCGCCCCCACAACAGAGATT
GCGGCAGCGAACACCATGTCTGCTGTTTCGAGGAGCGATCCCTACCAGCA
CCTTCGAGGACTGGAGCCCTCGTTGCTGACGGTGGAGCGCACGACAGCCC
CGCGCGAGAAAAAGGAGAAGTCGACGCTAGTGTTCGGGCAGACGTTCACA
GACCACATGCTGCACGTCGACTGGGACAACAAGAGGGGTTGGCACGCGCC
CAGCCCTCGTTGCTGACGGTGGAGCGCACGACAGCCCCGCGCGAGAAAAA
GGAGAAGTCGACGCTAGTGTTCGGGCAGACGTTCACAGACCACATGCTGC
ACGTCGACTGGGACAACAAGAGGGGTTGGCACGCGCCCAGGATCGCGCCG
TACGGGGACCTCGCTATCAGCCCTGCGTCGTCGTCTTTGCACTACGGGCT
GCAGGATCGCGCCGTACGGGGACCTCGCTATCAGCCCTGCGTCGTCGTCT
TTGCACTACGGGCTGCAGTGCTTCGAGGGGATGAAGGCCTACCGAGACGC
TCAGGGCAGCGTGCGCCTCTTCCGTCCGGACCTCAACATCCGCCGCCTCA
ACAGATCCATGGAGAGGCTGCGCTTCCCCCACGTTGACGCGGCCAGCATG
ATCGAGCTCATGAGTGCTTCGAGGGGATGAAGGCCTACCGAGACGCTCAG
GGCAGCGTGCGCCTCTTCCGTCCGGACCTCAACATCCGCCGCCTCAACAG
ATCCATGGAGAGGCTGCGCTTCCCCCACGTTGACGCGGCCAGCATGATCG
AGCTCATGAGCAAACTTGTCCTCGAAGACGCGGACTGGATTCCCGAGGGA
GACGGTTACTCGCTCTACCTCCGGCCTACTGCCATCAGCACCCACCAAAC
TTGTCCTCGAAGACGCGGACTGGATTCCCGAGGGAGACGGTTACTCGCTC
TACCTCCGGCCTACTGCCATCAGCACCCACCCGTACCTGGGCATCGCCCC
AGCGGCGAGCGTAAAGCTTTTTGTCATCCTCTCTCCAGTGGGCCCCTACT
ACAAGCCGTACCTGGGCATCGCCCCAGCGGCGAGCGTAAAGCTTTTTGTC
ATCCTCTCTCCAGTGGGCCCCTACTACAAGGAGGGTTTCAACCCGATCAG
GCTGTACGCCGACACGGAGCACAAGCGGGCGTGGCCCGGCGGCATGGGAT
TCGCCAAGGCCGGCGGAAACTACGCTCCCACTATCCAGCCGCAGGCGCAG
GCGCAAGAGGAGCACGGCTGCTCGCAGGAGGGTTTCAACCCGATCAGGCT
GTACGCCGACACGGAGCACAAGCGGGCGTGGCCCGGCGGCATGGGATTCG
CCAAGGCCGGCGGAAACTACGCTCCCACTATCCAGCCGCAGGCGCAGGCG
CAAGAGGAGCACGGCTGCTCGCAGGTCCTGTGGCTGTTCGGCGAAGACGA
CCACGTCACTGAGGTTGGTGCGATGAACATCTTCTTCCTCCTGGAGAAGG
AAGGTGGCGGCGGGGTGGAGCTCGTGACGTCACCTCTTGACGACGGCGAC
ATCCTCGACGGTCCTGTGGCTGTTCGGCGAAGACGACCACGTCACTGAGG
TTGGTGCGATGAACATCTTCTTCCTCCTGGAGAAGGAAGGTGGCGGCGGG
GTGGAGCTCGTGACGTCACCTCTTGACGACGGCGACATCCTCGACGGCGT
GACCCGAAGGTCGGTGCTGGAACTCTCGAGGGAGTGGGGTACCTTGGAAG
GCGGTGTCCCCCTCGAGGTCAGCGAGCGACGTCTACCCATGGGAGAAGTC
GTCAGGGCTTGCACGGAGGGCCGGGCGTGACCCGAAGGTCGGTGCTGGAA
CTCTCGAGGGAGTGGGGTACCTTGGAAGGCGGTGTCCCCCTCGAGGTCAG
CGAGCGACGTCTACCCATGGGAGAAGTCGTCAGGGCTTGCACGGAGGGCC
GGCTCCTGGAGGTGTTCGGCACAGGCACAGCCGCCGTCATCTCTCCTGTG
AAAGGCATCAAATACAGGGGGCGCGAGATCGAGCTCCTGGAGGTGTTCGG
CACAGGCACAGCCGCCGTCATCTCTCCTGTGAAAGGCATCAAATACAGGG
GGCGCGAGATCGAGGTGCGGAGCGGCGATTCCATCGGCCCCCTCGCGAAG
CGGTGCTGGAAGACCCTCACGGACATCCAATACGGCAGAGTGGACCACCC
ATGGTCCGTGAAAATCTCGTGAGTGCGGAGCGGCGATTCCATCGGCCCCC
TCGCGAAGCGGTGCTGGAAGACCCTCACGGACATCCAATACGGCAGAGTG
GACCACCCATGGTCCGTGAAAATCTCGTGA
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