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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:
Alignments
The following features are aligned
Analyses
This mRNA is derived from or has results from the following analyses
Properties
| Property Name | Value |
| Taxonomic scope | Eukaryota |
| Seed ortholog score | 615.1 |
| Seed ortholog evalue | 2.5e-173 |
| Seed eggNOG ortholog | 2880.D8LT77 |
| Preferred name | BCAT1 |
| KEGG rclass | RC00001,RC00006,RC00036,RC00066 |
| KEGG ko | ko:K00036,ko:K00826 |
| KEGG Reaction | R00835,R01090,R01214,R02199,R02736,R10907,R10991 |
| KEGG Pathway | ko00030,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 Module | M00004,M00006,M00008,M00019,M00036,M00119,M00570 |
| GOs | GO: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 OGs | COG0115@1,KOG0975@2759 |
| EC | 1.1.1.363,1.1.1.49,2.6.1.42 |
| COG Functional cat. | E |
| Best tax level | Eukaryota |
| Best eggNOG OG | NA|NA|NA |
| BRITE | ko00000,ko00001,ko00002,ko01000,ko01007,ko04147 |
| Hectar predicted targeting category | signal peptide |
| Ec32 ortholog description | branched chain amino acid aminotransferase |
| Ec32 ortholog | Ec-12_005560.1 |
| Exons | 11 |
| Model size | 2110 |
| Cds size | 1365 |
| Stop | 1 |
| Start | 1 |
Relationships
The following UTR feature(s) are a part of this mRNA:
| Feature Name | Unique Name | Species | Type | Position |
| 1622815584.8532274-UTR-P-fluviatile_contig13:3057014..3057098 | 1622815584.8532274-UTR-P-fluviatile_contig13:3057014..3057098 | Porterinema fluviatile SAG_2381 | UTR | P-fluviatile_contig13 3057015..3057098 + |
| 1693562352.1762316-UTR-P-fluviatile_contig13:3057014..3057098 | 1693562352.1762316-UTR-P-fluviatile_contig13:3057014..3057098 | Porterinema fluviatile SAG_2381 | UTR | P-fluviatile_contig13 3057015..3057098 + |
| 1622815585.0301805-UTR-P-fluviatile_contig13:3071420..3072081 | 1622815585.0301805-UTR-P-fluviatile_contig13:3071420..3072081 | Porterinema fluviatile SAG_2381 | UTR | P-fluviatile_contig13 3071421..3072081 + |
| 1693562352.5663846-UTR-P-fluviatile_contig13:3071420..3072081 | 1693562352.5663846-UTR-P-fluviatile_contig13:3071420..3072081 | Porterinema fluviatile SAG_2381 | UTR | P-fluviatile_contig13 3071421..3072081 + |
The following CDS feature(s) are a part of this mRNA:
| Feature Name | Unique Name | Species | Type | Position |
| 1622815584.867743-CDS-P-fluviatile_contig13:3057098..3057356 | 1622815584.867743-CDS-P-fluviatile_contig13:3057098..3057356 | Porterinema fluviatile SAG_2381 | CDS | P-fluviatile_contig13 3057099..3057356 + |
| 1693562352.4532573-CDS-P-fluviatile_contig13:3057098..3057356 | 1693562352.4532573-CDS-P-fluviatile_contig13:3057098..3057356 | Porterinema fluviatile SAG_2381 | CDS | P-fluviatile_contig13 3057099..3057356 + |
| 1622815584.8812733-CDS-P-fluviatile_contig13:3060707..3060844 | 1622815584.8812733-CDS-P-fluviatile_contig13:3060707..3060844 | Porterinema fluviatile SAG_2381 | CDS | P-fluviatile_contig13 3060708..3060844 + |
| 1693562352.4651294-CDS-P-fluviatile_contig13:3060707..3060844 | 1693562352.4651294-CDS-P-fluviatile_contig13:3060707..3060844 | Porterinema fluviatile SAG_2381 | CDS | P-fluviatile_contig13 3060708..3060844 + |
| 1622815584.894294-CDS-P-fluviatile_contig13:3061561..3061625 | 1622815584.894294-CDS-P-fluviatile_contig13:3061561..3061625 | Porterinema fluviatile SAG_2381 | CDS | P-fluviatile_contig13 3061562..3061625 + |
| 1693562352.4732265-CDS-P-fluviatile_contig13:3061561..3061625 | 1693562352.4732265-CDS-P-fluviatile_contig13:3061561..3061625 | Porterinema fluviatile SAG_2381 | CDS | P-fluviatile_contig13 3061562..3061625 + |
| 1622815584.9073634-CDS-P-fluviatile_contig13:3062549..3062695 | 1622815584.9073634-CDS-P-fluviatile_contig13:3062549..3062695 | Porterinema fluviatile SAG_2381 | CDS | P-fluviatile_contig13 3062550..3062695 + |
| 1693562352.4854286-CDS-P-fluviatile_contig13:3062549..3062695 | 1693562352.4854286-CDS-P-fluviatile_contig13:3062549..3062695 | Porterinema fluviatile SAG_2381 | CDS | P-fluviatile_contig13 3062550..3062695 + |
| 1622815584.9265893-CDS-P-fluviatile_contig13:3063892..3063977 | 1622815584.9265893-CDS-P-fluviatile_contig13:3063892..3063977 | Porterinema fluviatile SAG_2381 | CDS | P-fluviatile_contig13 3063893..3063977 + |
| 1693562352.498092-CDS-P-fluviatile_contig13:3063892..3063977 | 1693562352.498092-CDS-P-fluviatile_contig13:3063892..3063977 | Porterinema fluviatile SAG_2381 | CDS | P-fluviatile_contig13 3063893..3063977 + |
| 1622815584.9422-CDS-P-fluviatile_contig13:3064382..3064457 | 1622815584.9422-CDS-P-fluviatile_contig13:3064382..3064457 | Porterinema fluviatile SAG_2381 | CDS | P-fluviatile_contig13 3064383..3064457 + |
| 1693562352.508197-CDS-P-fluviatile_contig13:3064382..3064457 | 1693562352.508197-CDS-P-fluviatile_contig13:3064382..3064457 | Porterinema fluviatile SAG_2381 | CDS | P-fluviatile_contig13 3064383..3064457 + |
| 1622815584.9567063-CDS-P-fluviatile_contig13:3066385..3066532 | 1622815584.9567063-CDS-P-fluviatile_contig13:3066385..3066532 | Porterinema fluviatile SAG_2381 | CDS | P-fluviatile_contig13 3066386..3066532 + |
| 1693562352.5181298-CDS-P-fluviatile_contig13:3066385..3066532 | 1693562352.5181298-CDS-P-fluviatile_contig13:3066385..3066532 | Porterinema fluviatile SAG_2381 | CDS | P-fluviatile_contig13 3066386..3066532 + |
| 1622815584.9725666-CDS-P-fluviatile_contig13:3067379..3067515 | 1622815584.9725666-CDS-P-fluviatile_contig13:3067379..3067515 | Porterinema fluviatile SAG_2381 | CDS | P-fluviatile_contig13 3067380..3067515 + |
| 1693562352.5278718-CDS-P-fluviatile_contig13:3067379..3067515 | 1693562352.5278718-CDS-P-fluviatile_contig13:3067379..3067515 | Porterinema fluviatile SAG_2381 | CDS | P-fluviatile_contig13 3067380..3067515 + |
| 1622815584.9901662-CDS-P-fluviatile_contig13:3069949..3070077 | 1622815584.9901662-CDS-P-fluviatile_contig13:3069949..3070077 | Porterinema fluviatile SAG_2381 | CDS | P-fluviatile_contig13 3069950..3070077 + |
| 1693562352.5387743-CDS-P-fluviatile_contig13:3069949..3070077 | 1693562352.5387743-CDS-P-fluviatile_contig13:3069949..3070077 | Porterinema fluviatile SAG_2381 | CDS | P-fluviatile_contig13 3069950..3070077 + |
| 1622815585.0039845-CDS-P-fluviatile_contig13:3070675..3070756 | 1622815585.0039845-CDS-P-fluviatile_contig13:3070675..3070756 | Porterinema fluviatile SAG_2381 | CDS | P-fluviatile_contig13 3070676..3070756 + |
| 1693562352.5474646-CDS-P-fluviatile_contig13:3070675..3070756 | 1693562352.5474646-CDS-P-fluviatile_contig13:3070675..3070756 | Porterinema fluviatile SAG_2381 | CDS | P-fluviatile_contig13 3070676..3070756 + |
| 1622815585.0161726-CDS-P-fluviatile_contig13:3071312..3071420 | 1622815585.0161726-CDS-P-fluviatile_contig13:3071312..3071420 | Porterinema fluviatile SAG_2381 | CDS | P-fluviatile_contig13 3071313..3071420 + |
| 1693562352.5567176-CDS-P-fluviatile_contig13:3071312..3071420 | 1693562352.5567176-CDS-P-fluviatile_contig13:3071312..3071420 | Porterinema fluviatile SAG_2381 | CDS | P-fluviatile_contig13 3071313..3071420 + |
The following polypeptide feature(s) derives from this mRNA:
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* back to topmRNA 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 back to topCoding 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 back to top
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