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Homology
BLAST of mRNA_P-fluviatile_contig12.1410.1 vs. uniprot
Match: A0A6H5KHP7_9PHAE (Uncharacterized protein n=1 Tax=Ectocarpus sp. CCAP 1310/34 TaxID=867726 RepID=A0A6H5KHP7_9PHAE) HSP 1 Score: 1775 bits (4597), Expect = 0.000e+0 Identity = 918/989 (92.82%), Postives = 940/989 (95.05%), Query Frame = 1
Query: 295 GGKGLARPGGEQSEDHSFDEVVSEHSKKLEELRERQKAEDGQCGGNAETRLQYLMQQSEVFTHFLDSTSFGKDKGGKG-KRGGTGDGVRGRMKEHEEDKLLLATAASKARVTRLSKQPDLIKFGKMRAYQLEGLNWMIKLHDNGINGILADEMGLGKTLQSISVLAYLKEDRGINGPHIVIVPKSTVGNWMREFKRWCPSIKTVRLLGNKTERKLVCENVLETGNFDACVASYESVLKEASTLKKIKWRYLLIDEAHRIKNENSSLSKTVRLLSTQFRLLITGTPLQVWLHVVRSLLWSLWALLNFLLPDVFNSAETFDQWFNLETDKSARDNVIKKLHTILRPFMLRRIKADVEKDLPQEGGEFESVKLYIGMTPMQRKWYKDLLNRDVGNLNTLGGPDKMRLLNILMQLRKVCNHPYLFDGAEPGPPFVNGPHLYENAGKMVLLQKLLPKLRMQGSRVLLFCQMTRLLDILEDYMHLQGYDYCRIDGSTDGESRDSQMDEFNEPGSSKFLFLLSTRAGGLGINLATADVVILYDSDWNPQVDLQAMDRAHRIGQTKPVKVFRFITEGTVEEKIVERADRKLFLDAAVIQQGRLAEKNASLDKRELMAMVKFGADEILRMDDSHGLTDESIDELLRKGEEKTEETNARIQKDMQHNLLTFKIDEED-VSTFLFEGADHREGGSANAGTGAFINLPTRQRKSNYDVNEYYRARMDSNKNIPGVRKRKGITMHDFQFYDKEALEALQAKEHEFADRKNAIIAEIKEIRTRCKRMEAQNGEEEHAARLEKEADSLELSPKEQEQKKKLIESAFGDWNRKDFRAFVAATERHGRDDTEAVVRDVCLETAKTEENVRKYIKVFWKRCRELGDHAKIMEKIEKGEKRIFRSKQIRSAIDSKINRHANPWSDLTINYYGGKGKVFTEEEDAFLLNMMHRYGYGNWEVIRMEIRKAWQFRFDWFFKSRNAAELQRRGDTLIRLVEKENEELEASTN 3255
GGKGLA GG Q ED+SFDEVVSEHSK LEELRERQKA DGQCGGNAETRLQYLMQQSEVFTHFLDSTSFGKDKGGKG K DGVRGRMKE EEDKLLLATAASKARVTRLSKQPDLIKFG MRAYQLEGLNWMIKLHDNGINGILADEMGLGKTLQSISVLAYLKEDRGINGPHIVIVPKSTVGNWMREFKRWCPSIKTV+LLGNK ERK VCENVL+TGNFDACVASYESVLKE+STLKKIKWRYLLIDEAHRIKNENSSLSKTVRLLSTQFRLLITGTPLQ LH LWALLNFLLPDVF+SA+TFD WFNLETDKSARDNVIKKLHTILRPFMLRRIKADVEKDLP + E VKLYIGMTPMQRKWYKDLLNRDVGNLNTLGGPDKMRLLNILMQLRKVCNHPYLFDGAEPGPPFVNG HL+ENAGKMVLLQKLLPKLRMQGSRVLLFCQMTRLLDILEDYMHLQGYDYCRIDGSTDGESRDSQMDEFNEPGSSKFLFLLSTRAGGLGINLATADVVILYDSDWNPQVDLQAMDRAHRIGQTKPVKVFRFITEGTVEEKIVERADRKLFLDAAVIQQGRLAEKNASLDKRELMAMVKFGADEILRMDDS GLTDESIDELLRKGEEKTEETNARIQKDMQHNLLTFKIDEED +STFLFEG+DHREGG+AN GTGAFINLPTRQRKSNYDVNEYYRARMDSNKNIPGVRKRKGITMHDFQFYD+EALEALQ KEH+ ADRKNAII EIKE+RTRCKRMEAQ GEEE AA+LEK A+ LELS KEQEQKKKLI++AFGDWNRKDFRAFVAATERHGRDDTEAVVRDVCLETAKTEENVRKYIKVFWKRCREL DH KIMEKIEKGEKRIFRSKQIRSAIDSK++RH+NPWSDLTINYYGGKGKVFTEEEDAFLLNMMHRYGYGNWEVIRMEIRKAWQFRFDWFFKSRNAAELQRRGDTLIRLVEKENEELE + N
Sbjct: 94 GGKGLASAGG-QKEDNSFDEVVSEHSKNLEELRERQKAADGQCGGNAETRLQYLMQQSEVFTHFLDSTSFGKDKGGKGSKXXXXXDGVRGRMKEQEEDKLLLATAASKARVTRLSKQPDLIKFGTMRAYQLEGLNWMIKLHDNGINGILADEMGLGKTLQSISVLAYLKEDRGINGPHIVIVPKSTVGNWMREFKRWCPSIKTVKLLGNKAERKTVCENVLDTGNFDACVASYESVLKESSTLKKIKWRYLLIDEAHRIKNENSSLSKTVRLLSTQFRLLITGTPLQNNLH-------ELWALLNFLLPDVFSSADTFDHWFNLETDKSARDNVIKKLHTILRPFMLRRIKADVEKDLPPKK-EATKVKLYIGMTPMQRKWYKDLLNRDVGNLNTLGGPDKMRLLNILMQLRKVCNHPYLFDGAEPGPPFVNGSHLWENAGKMVLLQKLLPKLRMQGSRVLLFCQMTRLLDILEDYMHLQGYDYCRIDGSTDGESRDSQMDEFNEPGSSKFLFLLSTRAGGLGINLATADVVILYDSDWNPQVDLQAMDRAHRIGQTKPVKVFRFITEGTVEEKIVERADRKLFLDAAVIQQGRLAEKNASLDKRELMAMVKFGADEILRMDDSQGLTDESIDELLRKGEEKTEETNARIQKDMQHNLLTFKIDEEDGISTFLFEGSDHREGGAAN-GTGAFINLPTRQRKSNYDVNEYYRARMDSNKNIPGVRKRKGITMHDFQFYDREALEALQTKEHDLADRKNAIINEIKELRTRCKRMEAQGGEEEQAAQLEKTANGLELSSKEQEQKKKLIDNAFGDWNRKDFRAFVAATERHGRDDTEAVVRDVCLETAKTEENVRKYIKVFWKRCRELADHPKIMEKIEKGEKRIFRSKQIRSAIDSKVSRHSNPWSDLTINYYGGKGKVFTEEEDAFLLNMMHRYGYGNWEVIRMEIRKAWQFRFDWFFKSRNAAELQRRGDTLIRLVEKENEELETTGN 1072
BLAST of mRNA_P-fluviatile_contig12.1410.1 vs. uniprot
Match: D8LDI0_ECTSI (Ci-SWI/SNF n=1 Tax=Ectocarpus siliculosus TaxID=2880 RepID=D8LDI0_ECTSI) HSP 1 Score: 1529 bits (3960), Expect = 0.000e+0 Identity = 813/989 (82.20%), Postives = 835/989 (84.43%), Query Frame = 1
Query: 295 GGKGLARPGGEQSEDHSFDEVVSEHSKKLEELRERQKAEDGQCGGNAETRLQYLMQQSEVFTHFLDSTSFGKDKGGKG-KRGGTGDGVRGRMKEHEEDKLLLATAASKARVTRLSKQPDLIKFGKMRAYQLEGLNWMIKLHDNGINGILADEMGLGKTLQSISVLAYLKEDRGINGPHIVIVPKSTVGNWMREFKRWCPSIKTVRLLGNKTERKLVCENVLETGNFDACVASYESVLKEASTLKKIKWRYLLIDEAHRIKNENSSLSKTVRLLSTQFRLLITGTPLQVWLHVVRSLLWSLWALLNFLLPDVFNSAETFDQWFNLETDKSARDNVIKKLHTILRPFMLRRIKADVEKDLPQEGGEFESVKLYIGMTPMQRKWYKDLLNRDVGNLNTLGGPDKMRLLNILMQLRKVCNHPYLFDGAEPGPPFVNGPHLYENAGKMVLLQKLLPKLRMQGSRVLLFCQMTRLLDILEDYMHLQGYDYCRIDGSTDGESRDSQMDEFNEPGSSKFLFLLSTRAGGLGINLATADVVILYDSDWNPQVDLQAMDRAHRIGQTKPVKVFRFITEGTVEEKIVERADRKLFLDAAVIQQGRLAEKNASLDKRELMAMVKFGADEILRMDDSHGLTDESIDELLRKGEEKTEETNARIQKDMQHNLLTFKIDEED-VSTFLFEGADHREGGSANAGTGAFINLPTRQRKSNYDVNEYYRARMDSNKNIPGVRKRKGITMHDFQFYDKEALEALQAKEHEFADRKNAIIAEIKEIRTRCKRMEAQNGEEEHAARLEKEADSLELSPKEQEQKKKLIESAFGDWNRKDFRAFVAATERHGRDDTEAVVRDVCLETAKTEENVRKYIKVFWKRCRELGDHAKIMEKIEKGEKRIFRSKQIRSAIDSKINRHANPWSDLTINYYGGKGKVFTEEEDAFLLNMMHRYGYGNWEVIRMEIRKAWQFRFDWFFKSRNAAELQRRGDTLIRLVEKENEELEASTN 3255
GGKGLA GG Q EDHSFDEVVSEHSK LEELRERQKA DGQ GGNAETRLQYLMQQSEVFTHFLDSTSFGK+KGGKG K DGVRGRMKE EEDKLLLATAASKARVTRLSKQPDLIKFG MRAYQLEGLNWMIKLHDNGINGILADEMGLGKTLQSISVLAYLKEDRGINGPHIVIVPKSTVGNWMREFKRWCPSIKTV+LLGNK ERK VCENVL+TGNFDACVASYESVLKE+STLKKIKWRYLLIDEAHRIKNENSSLSKTV +LETDKSARDNVIKKLHTILRPFMLRRIKADVEKDLP + + VKLYIGMTPMQRKWYKDLLNRDVGNLNTLGGPDKMRLLNILMQLRKVCNHPYLFDGAEPGPPFVNG HL+ENAGKMVLLQKLLPKLRMQGSRVLLFCQMTRLLDILEDYMHLQGYDYCRIDGSTDGESRDSQMDEFNEPGSSKFLFLLSTRAGGLGINLATADVVILYDSDWNPQ RELMAMVKFGADEILRMDDS GLTDESIDELLRKGEEKTEETNARIQKDMQHNLLTFKIDEED ++TFLFEG+DHREGG+AN GTGAFINLPTRQRKSNYDVNEYYRARMDSNKNIPGVRKRKGITMHDFQFYD+EALEALQ KEH+ ADRKNAII EIKE+RTRCKRMEA GEEEHAA+LEK A LELS KEQ+QKKKLI++AFGDWNRKDFRAFVAATERHGRDDTEAVVRDVCLETAKTEENVRKYIKVFWKRCREL DH KIMEKIEKGEKRIFRSKQIRSAIDSK++RHANPWSDLTINYYGGKGKVFTEEEDAFLLNMMHRYGYGNWEVIRMEIRKAWQFRFDWFFKSRNAAELQRRGDTLIRLVEKENEELE + N
Sbjct: 170 GGKGLASAGG-QKEDHSFDEVVSEHSKNLEELRERQKAADGQFGGNAETRLQYLMQQSEVFTHFLDSTSFGKEKGGKGSKXXXXXDGVRGRMKEQEEDKLLLATAASKARVTRLSKQPDLIKFGTMRAYQLEGLNWMIKLHDNGINGILADEMGLGKTLQSISVLAYLKEDRGINGPHIVIVPKSTVGNWMREFKRWCPSIKTVKLLGNKAERKAVCENVLDTGNFDACVASYESVLKESSTLKKIKWRYLLIDEAHRIKNENSSLSKTV----------------------------------------------------SLETDKSARDNVIKKLHTILRPFMLRRIKADVEKDLPPK----KEVKLYIGMTPMQRKWYKDLLNRDVGNLNTLGGPDKMRLLNILMQLRKVCNHPYLFDGAEPGPPFVNGSHLWENAGKMVLLQKLLPKLRMQGSRVLLFCQMTRLLDILEDYMHLQGYDYCRIDGSTDGESRDSQMDEFNEPGSSKFLFLLSTRAGGLGINLATADVVILYDSDWNPQ--------------------------------------------------------------RELMAMVKFGADEILRMDDSQGLTDESIDELLRKGEEKTEETNARIQKDMQHNLLTFKIDEEDGINTFLFEGSDHREGGAAN-GTGAFINLPTRQRKSNYDVNEYYRARMDSNKNIPGVRKRKGITMHDFQFYDREALEALQTKEHDLADRKNAIINEIKELRTRCKRMEAHGGEEEHAAQLEKTASGLELSSKEQDQKKKLIDNAFGDWNRKDFRAFVAATERHGRDDTEAVVRDVCLETAKTEENVRKYIKVFWKRCRELADHPKIMEKIEKGEKRIFRSKQIRSAIDSKVSRHANPWSDLTINYYGGKGKVFTEEEDAFLLNMMHRYGYGNWEVIRMEIRKAWQFRFDWFFKSRNAAELQRRGDTLIRLVEKENEELETTGN 1038
BLAST of mRNA_P-fluviatile_contig12.1410.1 vs. uniprot
Match: A0A835ZE29_9STRA (P-loop containing nucleoside triphosphate hydrolase protein n=1 Tax=Tribonema minus TaxID=303371 RepID=A0A835ZE29_9STRA) HSP 1 Score: 1122 bits (2901), Expect = 0.000e+0 Identity = 602/984 (61.18%), Postives = 722/984 (73.37%), Query Frame = 1
Query: 358 VSEHSKKLEELRERQKAEDGQCGGNAET---RLQYLMQQSEVFTHFLDSTSFGK--DKGGKGKRGGTGDGVRGRMKEHEEDKLLLATAASKARVTRLSKQPDLIKFGKMRAYQLEGLNWMIKLHDNGINGILADEMGLGKTLQSISVLAYLKEDRGINGPHIVIVPKSTVGNWMREFKRWCPSIKTVRLLGNKTERKLVCENVLETGNFDACVASYESVLKEASTLKKIKWRYLLIDEAHRIK------------NENSSLSKTVRLLSTQFRLLITGTPLQVWLHVVRSLLWSLWALLNFLLPDVFNSAETFDQWFNLETDKSARDNVIKKLHTILRPFMLRRIKADVEKDLPQEGGEFESVKLYIGMTPMQRKWYKDLLNRDVGNLNTLGGPDKMRLLNILMQLRKVCNHPYLFDGAEPGPPFVNGPHLYENAGKMVLLQKLLPKLRMQGSRVLLFCQMTRLLDILEDYMHLQGYDYCRIDGSTDGESRDSQMDEFNEPGSSKFLFLLSTRAGGLGINLATADVVILYDSDWNPQVDLQAMDRAHRIGQTKPVKVFRFITEGTVEEKIVERADRKLFLDAAVIQQGRLAEKNASLDKRELMAMVKFGADEILRMDDSHGLTDESIDELLRKGEEKTEETNARIQKDMQHNLLTFKI--DEEDVSTFLFEGADHREGGSANAGTGAFINLPTRQRK-SNYDVNEYYRARMDSNKNIPGVRKRKGITMHDFQFYDKEALEALQAKEHEFADRKNAIIAEIKEIRTRCKRMEAQNGEEEHAARLEKEADSLELSPKEQEQKKKLIESAFGDWNRKDFRAFVAATERHGRDDTEAVVRDVCLETAKTEENVRKYIKVFWKRCRELGDHAKIMEKIEKGEKRIFRSKQIRSAIDSKINRHANPWSDLTINYYGGKGKVFTEEEDAFLLNMMHRYGYGNWEVIRMEIRKAWQFRFDWFFKSRNAAELQRRGDTLIRLVEKENEELEAS 3249
++EH K+L LR+ +K D AE RL YLM QSE+FTHFL+ST GK D G KGK G R ++ E ED+L++ A S ARVTRL KQPDLI G MR YQLEGLNWMIKLHDNGINGILADEMGLGKTLQSIS+LAYL+E RGI+GPH+VIVPKSTVGNW+REF+RWCP I V+LLG+K ERK VCE + G FD V SYE VLKE +TL KIKW+YL+IDEAHRIK NE SSLS+ VRL+ST+FRLLITGTPLQ LH LWALLNFLLPDVF+SA+ FDQWFN+ D ++NVIKKLHT+LRPFMLRRIKADVEKDLP + + +KLY+ + MQR+WY+ +L++D LN LGGPD+ RLLN+LMQLRKVCNHPYLF GAE GPP+ +GPH++EN+ K+ LL KLLP+L+ GSRVL+F QMTRLLDILEDY++ G+ YCRIDGSTDGESRDSQM EFN P S KF FLLSTRAGGLGINL TAD V+LYDSDWNPQ DLQAMDRAHRIGQT+PV+VFRF+ EGTVEEKIVERADRKLFLDAAVIQQGRLAEK+A L K ELM MVKFGAD+IL ++ +T+E ID LL +GEEKT+ +I+ DM+HNL F + D E S F FEG D+++ ++ AG INLP R+RK + YDV+ YYR +RKG+ M D+QFYD+ L A+ +E AD A + E +L LS K+ KK+LI AF DW RKD R FVAA ER+GR D + VVR+V ++T K +E++ +Y VF KRC EL DHAK+MEKIE+GE+RI RSK+I+ A++ K+ RH +PW L I+Y KGK +TEEEDAFL+NMMHRYGYGNWEVIR +I+KAWQF FDWFFKSRNAAELQ+RGD LI++VEKENEE++A+
Sbjct: 1 MTEHEKELRALRQAKKDRDADQINTAEDLNKRLNYLMAQSEIFTHFLESTGGGKALDAGAKGKS----KGGRTKVSEEAEDRLMMKQAQSAARVTRLVKQPDLITHGTMRDYQLEGLNWMIKLHDNGINGILADEMGLGKTLQSISLLAYLREGRGIHGPHVVIVPKSTVGNWIREFERWCPKINVVKLLGSKDERKAVCETRIAPGKFDVVVTSYECVLKEKATLTKIKWKYLMIDEAHRIKASAPRHTRAAAINEKSSLSRQVRLMSTRFRLLITGTPLQNNLH-------ELWALLNFLLPDVFSSADDFDQWFNVTGDSQQQENVIKKLHTVLRPFMLRRIKADVEKDLPPK----KEIKLYVPLVAMQREWYRKVLSKDAHALNALGGPDRARLLNVLMQLRKVCNHPYLFTGAEIGPPYQDGPHMWENSAKLSLLHKLLPRLKGSGSRVLIFSQMTRLLDILEDYLNYNGHAYCRIDGSTDGESRDSQMAEFNAPNSPKFCFLLSTRAGGLGINLQTADTVVLYDSDWNPQADLQAMDRAHRIGQTRPVRVFRFVCEGTVEEKIVERADRKLFLDAAVIQQGRLAEKHAQLSKDELMTMVKFGADDILHTENDKDMTEEDIDALLFRGEEKTQSLKDKIETDMRHNLANFSLMGDGEAPSLFDFEGRDYKK--NSGAGGHLLINLPGRERKRAAYDVDAYYRRGGPGAAGGAPRPRRKGLVMQDYQFYDQAKLGAILERE---ADEDAAEL-------------------EXXXXXXXXXLPALVLSDKDAADKKRLIADAFPDWTRKDARTFVAALERNGRGDRDQVVREVAIDTGKPDEDIVRYFNVFLKRCHELSDHAKVMEKIERGERRIQRSKEIKVALEKKVQRHQSPWQHLPISYGSTKGKTYTEEEDAFLINMMHRYGYGNWEVIRTQIKKAWQFHFDWFFKSRNAAELQKRGDYLIKVVEKENEEIDAA 945
BLAST of mRNA_P-fluviatile_contig12.1410.1 vs. uniprot
Match: A0A6U0WH08_9STRA (Hypothetical protein n=1 Tax=Pinguiococcus pyrenoidosus TaxID=172671 RepID=A0A6U0WH08_9STRA) HSP 1 Score: 1111 bits (2874), Expect = 0.000e+0 Identity = 587/974 (60.27%), Postives = 727/974 (74.64%), Query Frame = 1
Query: 436 ETRLQYLMQQSEVFTHFL---DSTSFGKDKGGKGKRGGTGDGVRGRMKEHEEDKLLLATAASKARVTRLSKQPDLIKFGKMRAYQLEGLNWMIKLHDNGINGILADEMGLGKTLQSISVLAYLKEDRGINGPHIVIVPKSTVGNWMREFKRWCPSIKTVRLLGNKTERKLVCENVLETGNFDACVASYESVLKEASTLKKIKWRYLLIDEAHRIKNENSSLSKTVRLLSTQFRLLITGTPLQVWLHVVRSLLWSLWALLNFLLPDVFNSAETFDQWFNLETDKSARDNVIKKLHTILRPFMLRRIKADVEKDLPQEGGEFESVKLYIGMTPMQRKWYKDLLNRDVGNLNTLGGPDKMRLLNILMQLRKVCNHPYLFDGAEPGPPFVNGPHLYENAGKMVLLQKLLPKLRMQGSRVLLFCQMTRLLDILEDYMHLQGYDYCRIDGSTDGESRDSQMDEFNEPGSSKFLFLLSTRAGGLGINLATADVVILYDSDWNPQVDLQAMDRAHRIGQTKPVKVFRFITEGTVEEKIVERADRKLFLDAAVIQQGRLAEKNASLDKRELMAMVKFGADEILRMDDSHGLTDESIDELLRKGEEKTEETNARIQKDMQHNLLTFKI--DEEDVSTFLFEGADHREGGSANAGTGAFINLPTRQRKSNYDVNEYYRARMD--SNKNIPGVRKRKGITMHDFQFYDKEALEALQAKEHEFADRKNAIIAEIKEIR---TRCKRMEAQNGEEEHAAR-------LEKEADSLELSPKEQEQKKKLIESAFGDWNRKDFRAFVAATERHGRDDTEAVVRDVCLETAKTEENVRKYIKVFWKRCRELGDHAKIMEKIEKGEKRIFRSKQIRSAIDSKINRHANPWSDLTINYYGGKGKVFTEEEDAFLLNMMHRYGYGNWEVIRMEIRKAWQFRFDWFFKSRNAAELQRRGDTLIRLVEKENEELEASTNDKMPHFTTGHGGKKRKS 3306
E LQYLM QSEVF HFL + TS G G KGK+ G R RM E ED L+A A SK RVTRL +QP +IK GKMR YQLEGLNWMI+LHDNG+NGILADEMGLGKTLQ+IS+LAYL+E R GPHIVIVPK+ GNWMREF RWCP I+T++LLG+K ERK + + G FD V SYESVL+E S+L K+ WR+L+IDEAHRIKNENSSLSK VRL Q RLLITGTPLQ LH LWALLNFLLP+VF+SA+ FD+WFNL +D+ ++NV++KLHT+L+PFMLRR K DVEK+LP + KL+IGM+ MQR+ Y ++L+++ LN+LGGP K+++LNILMQLRKVCNHPYLF+GAEPGPP+ NGPHL+ N GKM LL KLLPKLR QGSRVL+FCQMTR+LDILED M L G+ YCRIDGST E RD QMDEFN P S F FLLSTRAGGLGINL TAD+V+LYDSDWNPQ+DLQAMDRAHRIGQTKPV+VFRF+TEGTVEEKI+ERA+RKLFLDAAVIQQGRLA+KN+ L K ELM MV+FGA++I++ + LTDE ID LL+ GEE+T+E RI++DMQH+L F + +E D S F FEGAD+++ G G FINL R+RK NYDV+EY+R + S + G RKR+G+TM DFQFY++ LE +Q KE AD+K + +KE+R ++ +R A + R +E E ELS + +++K++LIE +FG W +KDF++FV+A ERHGR+D + +VR+V LET KTEE++ +Y FW R EL +H KI+E+IEKGE+RI R K+I+ A+D K+ RH +PW ++INY G KGK++T EED FL+NMMHR+GYG WE IR+EIR+AWQFRFDW+FKSRN E+QRR DTLIR++EKENEE E S + + GG S
Sbjct: 141 EKLLQYLMAQSEVFAHFLVGREDTSAG---GKKGKKKAKSAG-RTRMSEAAEDAALMANALSKQRVTRLDRQPSIIKHGKMRPYQLEGLNWMIRLHDNGVNGILADEMGLGKTLQTISLLAYLREARKNTGPHIVIVPKTVCGNWMREFARWCPEIRTLKLLGSKAERKRILIQDMRPGQFDVLVTSYESVLREKSSLCKVPWRFLIIDEAHRIKNENSSLSKVVRLFKVQSRLLITGTPLQNNLH-------ELWALLNFLLPEVFDSADVFDEWFNL-SDEGGKENVVRKLHTVLKPFMLRRGKKDVEKELPPK----TETKLFIGMSAMQREMYTNILSKEAIYLNSLGGPSKVQMLNILMQLRKVCNHPYLFEGAEPGPPYTNGPHLWTNCGKMTLLSKLLPKLRAQGSRVLIFCQMTRMLDILEDVMQLFGHRYCRIDGSTSSEDRDRQMDEFNAPESPYFAFLLSTRAGGLGINLNTADIVVLYDSDWNPQMDLQAMDRAHRIGQTKPVRVFRFVTEGTVEEKIIERAERKLFLDAAVIQQGRLADKNSQLAKDELMTMVRFGAEQIMQSKEGT-LTDEDIDALLKHGEERTKEEQDRIKQDMQHSLANFSLVTEEGDTSLFEFEGADYKK----KKGGGNFINLAQRERKRNYDVDEYFRDALQAGSGRGRTGDRKRRGLTMQDFQFYNRGRLEQIQQKEFSLADKKQQTVQILKELRKKESKERRAVAAGQIPDEGTRKKIEDLEMELEEGDYELSDELRQEKQELIEESFGHWTKKDFKSFVSAMERHGREDVDLIVREVSLETGKTEEDIARYYTTFWTRYEELPEHPKILERIEKGERRIARLKEIKHALDVKVARHPDPWRLMSINYNGNKGKMYTLEEDVFLINMMHRHGYGEWERIRLEIRRAWQFRFDWYFKSRNVNEIQRRCDTLIRVIEKENEEFEGSDSRGRGKRQSADGGASSSS 1093
BLAST of mRNA_P-fluviatile_contig12.1410.1 vs. uniprot
Match: F0YAG6_AURAN (Uncharacterized protein RUV1 n=2 Tax=Aureococcus anophagefferens TaxID=44056 RepID=F0YAG6_AURAN) HSP 1 Score: 1096 bits (2834), Expect = 0.000e+0 Identity = 584/939 (62.19%), Postives = 694/939 (73.91%), Query Frame = 1
Query: 442 RLQYLMQQSEVFTHFLDSTSFGKDKGGKGKRGGTGDGVRGRMKEHEEDKLLLATAASKARVTRLSKQPDLIKFGKMRAYQLEGLNWMIKLHDNGINGILADEMGLGKTLQSISVLAYLKEDRGINGPHIVIVPKSTVGNWMREFKRWCPSIKTVRLLGNKTERKLVCENVLETGNFDACVASYESVLKEASTLKKIKWRYLLIDEAHRIKNENSSLSKTVRLLSTQFRLLITGTPLQVWLHVVRSLLWSLWALLNFLLPDVFNSAETFDQWFNLETDKSARDNVIKKLHTILRPFMLRRIKADVEKDLPQEGGEFESVKLYIGMTPMQRKWYKDLLNRDVGNLNTLGGPDKMRLLNILMQLRKVCNHPYLFDGAEPGPPFVNGPHLYENAGKMVLLQKLLPKLRMQGSRVLLFCQMTRLLDILEDYMHLQGYDYCRIDGSTDGESRDSQMDEFNEPGSSKFLFLLSTRAGGLGINLATADVVILYDSDWNPQVDLQAMDRAHRIGQTKPVKVFRFITEGTVEEKIVERADRKLFLDAAVIQQGRLAEKNASLDKRELMAMVKFGADEILRMDDSHGLTDESIDELLRKGEEKTEETNARIQKDMQHNLLTFKI---DEEDVSTFLFEGADHREGGSANAGTGAFINLPTRQRKSNYDVNEYYRARMDSNKNIPGV----RKRKGITMHDFQFYDKEALEALQAKEHEFADRKNAIIAEIKEIRTRCKRMEAQNGEEEHAARLEKEADSLELSPKEQEQKKKLIESAFGDWNRKDFRAFVAATERHGRDDTEAVVRDVCLETAKTEENVRKYIKVFWKRCRELGDHAKIMEKIEKGEKRIFRSKQIRSAIDSKINRHANPWSDLTINYYGGKGKVFTEEEDAFLLNMMHRYGYGNWEVIRMEIRKAWQFRFDWFFKSRNAAELQRRGDTLIRLVEKENEE 3237
RL YLM QSEVF+HF++ S G K K K G T RM E ED L+ TA SK RVTR+ QP +I KMR YQLEGLNW++KLHDNGINGILADEMGLGKTLQSIS+LAYL E RGI GPHI IVPKS NWMRE ++WCP+++ V+LLG+K ER V L G FD V SYE +LKE + L KI+W+YLLIDEAHRIKN NSSLSK VRL+ TQFRLLITGTPLQ L+ LWALLNFLLPD+F S F+ WF+L D A+DNV+KKLHT+LRPFMLRRIK DVEKDLP + VKLYIGMT MQR WY +L++D LN LGGPD+++LLNILMQLRKVCNHPYLF+GAEPGPPF++GPHL+EN GK+VL+ KLLPKL Q SRVL+F QMTR+LDILEDYM L Y YCRIDGST G+ RDSQMD FN PGS KF FLLSTRAGGLGINLATAD+V+LYDSDWNPQVDLQAMDRAHRIGQTKPV VFRF+TEGTVEEKI+ERADRKLFLDAAVIQQGRLAE+NA+L K +LMAMV+FGADEI + +TDE ID LL++GEE+T+E ++IQ D+QHNL F + +E + S F FEG +++ A G G INLP R+RK NYDV+EY+R + + P V RKR+G MHDFQF+++ LE L AKE E A +K+ A+ E A LE + EL KE +K++L++ FGDW RKD RAF+ A ERHGR D +AV R+ ET KT+ +VR+Y FWK+ +++ D ++++K+EKGEKR+ RS++IRSA+ K+ RH PW L INY +GKV+TEEEDAFL+NMMH YGYGNWE IR+EIR AWQF FDWFFKSRNA EL RR D LIRLVEKENE+
Sbjct: 59 RLNYLMAQSEVFSHFMEENSDGGFKRAKAKAGRT------RMTESAEDANLMKTAQSKLRVTRVQTQPSIIT-AKMRPYQLEGLNWLVKLHDNGINGILADEMGLGKTLQSISLLAYLHETRGITGPHICIVPKSVTNNWMRELRKWCPTLRPVKLLGSKDERARVLREDLRPGTFDVLVTSYEGILKEKAGLMKIQWQYLLIDEAHRIKNPNSSLSKIVRLIPTQFRLLITGTPLQNNLN-------ELWALLNFLLPDIFASEADFETWFSLG-DADAKDNVVKKLHTVLRPFMLRRIKKDVEKDLPPK----REVKLYIGMTEMQRLWYTKILSKDAHTLNALGGPDRVQLLNILMQLRKVCNHPYLFEGAEPGPPFMDGPHLWENTGKLVLMSKLLPKLMAQDSRVLIFSQMTRMLDILEDYMRLNQYKYCRIDGSTSGDDRDSQMDVFNAPGSEKFAFLLSTRAGGLGINLATADIVVLYDSDWNPQVDLQAMDRAHRIGQTKPVTVFRFVTEGTVEEKIIERADRKLFLDAAVIQQGRLAEQNAALGKNDLMAMVRFGADEIFASK-AKTITDEDIDTLLKRGEERTQEQASKIQSDVQHNLANFSLTTMEEPEGSLFNFEGENYK---GAKGGGGLMINLPQRERKRNYDVDEYFRDALRQG-DKPAVAREPRKRRGPPMHDFQFFNRAELEVLLAKEDELAGKKHEARADEME------------------ATLET---AYELPVKEAVRKERLLKEGFGDWTRKDLRAFLNAMERHGRGDVDAVARETANETGKTDADVRRYHATFWKKHKDIADWERLVDKVEKGEKRLQRSQEIRSALADKVARHPKPWECLPINYGASRGKVWTEEEDAFLVNMMHTYGYGNWERIRVEIRNAWQFNFDWFFKSRNAQELNRRADLLIRLVEKENED 952
BLAST of mRNA_P-fluviatile_contig12.1410.1 vs. uniprot
Match: A0A7S2SFZ0_9STRA (Hypothetical protein n=2 Tax=Rhizochromulina marina TaxID=1034831 RepID=A0A7S2SFZ0_9STRA) HSP 1 Score: 1084 bits (2803), Expect = 0.000e+0 Identity = 587/963 (60.96%), Postives = 712/963 (73.94%), Query Frame = 1
Query: 442 RLQYLMQQSEVFTHFLDSTSFGKDK-----GGKGKRGGTGDGVRGRMKEHEEDKLLLATAASKARVTRLSKQPDLIKFGKMRAYQLEGLNWMIKLHDNGINGILADEMGLGKTLQSISVLAYLKEDRGINGPHIVIVPKSTVGNWMREFKRWCPSIKTVRLLGNKTERKLVCENVLET-------GNFDACVASYESVLKEASTLKKIKWRYLLIDEAHRIKNENSSLSKTVRLLSTQFRLLITGTPLQVWLHVVRSLLWSLWALLNFLLPDVFNSAETFDQWFNLETDKSARDNVIKKLHTILRPFMLRRIKADVEKDLPQEGGEFESVKLYIGMTPMQRKWYKDLLNRDVGNLNTLGGPDKMRLLNILMQLRKVCNHPYLFDGAEPGPPFVNGPHLYENAGKMVLLQKLLPKLRMQGSRVLLFCQMTRLLDILEDYMHLQGYDYCRIDGSTDGESRDSQMDEFNEPGSSKFLFLLSTRAGGLGINLATADVVILYDSDWNPQVDLQAMDRAHRIGQTKPVKVFRFITEGTVEEKIVERADRKLFLDAAVIQQGRLAEKNASLDKRELMAMVKFGADEILRMDDSHGLTDESIDELLRKGEEKTEETNARIQKDMQHNLLTFKI--DEEDVSTFLFEGADHREGGSANAGTGAFINLPTRQRKSNYDVNEYYRARMDSNKNIPGVRKRKGITMHDFQFYDKEALEALQAKEHEFADRKNAIIAEIKEIRTRCKRMEAQNGEEEHAA---RLEKEADSLELSPKEQEQKKKLIESAFGDWNRKDFRAFVAATERHGRDDTEAVVRDVCLETAKTEENVRKYIKVFWKRCRE-LGDHAKIMEKIEKGEKRIFRSKQIRSAIDSKINRHANPWSDLTINYYGG-----KGKVFTEEEDAFLLNMMHRYGYGNWEVIRMEIRKAWQFRFDWFFKSRNAAELQRRGDTLIRLVEKENEELEASTNDK 3261
RL+YLM QSEVF HFL G K GG K G R RM E ED ++ A RVTRL QP IK G MRAYQLEGLNWMIKL++NG+NGILADEMGLGKTLQSIS+LA+LKE RGI+GPHIVI PKSTV NWMRE K+WCP ++ ++LLG+K RK V ++ + N+D V SYE VLKE STL KI W+YL+IDEAHRIKNE SSLS VRL+ TQ RLLITGTPLQ LH LWALLNFLLPDVF SA+ FD+WF++ ++ AR+NVI+KLHT+LRPFMLRR+KADVEKDLP + KLYIG++ QR+WY +L++D +LN LGGPD+++LLN+LMQLRKVCNHPYLF+GAEPGPP+ NGPHL+ENAGKMVLL KLLPKLR QGSRVL+F QMTRLLDILEDYM ++G+ YCRIDGST GE RD+ MD FN P S F FLLSTRAGGLGINLATAD+VILYDSDWNPQVDLQAMDRAHRIGQTK V+VFRF+TEGTVEEKIVERADRKLFLDAAVIQQGRLAE+N L K ELM+MVKFGADEI + S L+D ID +L++GE++T+E + IQKD QH+L F + DE S F FEG D+RE G G F+NLP R+RK Y E A++ S+ R R+G MHDFQF+ K+ LE L KEHE +++ +A IKE+RTR R + + EE+ +A RLE E +++LS +EQ K KL+E FGDW RKDF+ FVAA E+HGR+DT+ V R V ET K E V +Y VFWK+ + L D AK++EKIE+GEK+I R ++IR A++SK++R+ P+ LT+NY G +GK++TEEEDAFL+ MMHR+GYG W+ IR EIR+AWQF+FDWFFKSRN++ELQRR D L+R +E+ENEEL + K
Sbjct: 121 RLEYLMAQSEVFAHFLSGADEGDVKRGGRGGGAAKAAKAKGGGRTRMSESAEDSAMMKGALQNRRVTRLDSQPRNIKGGTMRAYQLEGLNWMIKLNENGVNGILADEMGLGKTLQSISLLAFLKEVRGISGPHIVITPKSTVSNWMREIKKWCPELRPLKLLGSKEVRKQVVQDFIAPVAGNPTHRNWDVVVTSYEGVLKEKSTLTKIPWKYLMIDEAHRIKNEKSSLSVAVRLMKTQSRLLITGTPLQNNLH-------ELWALLNFLLPDVFGSADDFDEWFSMGGEE-ARENVIRKLHTVLRPFMLRRVKADVEKDLPPK----IETKLYIGLSAKQREWYTKILSKDAHSLNALGGPDRVKLLNVLMQLRKVCNHPYLFEGAEPGPPYTNGPHLWENAGKMVLLDKLLPKLRAQGSRVLIFSQMTRLLDILEDYMLIKGHVYCRIDGSTKGEDRDTAMDRFNAPDSPCFAFLLSTRAGGLGINLATADIVILYDSDWNPQVDLQAMDRAHRIGQTKTVRVFRFVTEGTVEEKIVERADRKLFLDAAVIQQGRLAEQNNQLSKGELMSMVKFGADEIFKGKTST-LSDTDIDVILKQGEQRTQEQQSLIQKDAQHSLANFSLLGDEGGGSLFAFEGEDYRE---KQRGGGLFLNLPQRERKRTY---ENLPAKVASSS---AQRPRRGPPMHDFQFFQKDKLETLLQKEHELKLQRDQTLASIKELRTRASREQWGSDEEDPSAIADRLENETQTMQLSDREQATKTKLLEEGFGDWTRKDFKCFVAALEQHGREDTDNVFRQVGAETGKPETEVERYYGVFWKKGEKCLADWAKVVEKIERGEKKIARHQEIRDALESKVSRYEVPFMQLTMNYGAGGAGGARGKIWTEEEDAFLVCMMHRHGYGQWDRIRQEIRRAWQFKFDWFFKSRNSSELQRRCDILLRCIERENEELAKKSTTK 1061
BLAST of mRNA_P-fluviatile_contig12.1410.1 vs. uniprot
Match: A0A8J2SZN3_9STRA (Hypothetical protein n=2 Tax=Pelagomonas calceolata TaxID=35677 RepID=A0A8J2SZN3_9STRA) HSP 1 Score: 1074 bits (2777), Expect = 0.000e+0 Identity = 579/997 (58.07%), Postives = 708/997 (71.01%), Query Frame = 1
Query: 412 DGQCGGNAETRLQYLMQQSEVFTHFLDSTS---FGKDKGGKGKRGGTGDGVRGRMKEHEEDKLLLATAASKARVTRLSKQPDLIKFGKMRAYQLEGLNWMIKLHDNGINGILADEMGLGKTLQSISVLAYLKEDRGINGPHIVIVPKSTVGNWMREFKRWCPSIKTVRLLGNKTER-KLVCENVLETGNFDACVASYESVLKEASTLKKIKWRYLLIDEAHRIKNENSSLSKTVRLLSTQFRLLITGTPLQVWLHVVRSLLWSLWALLNFLLPDVFNSAETFDQWFNLETDKSARDNVIKKLHTILRPFMLRRIKADVEKDLPQEGGEFESVKLYIGMTPMQRKWYKDLLNRDVGNLNTLGGPDKMRLLNILMQLRKVCNHPYLFDGAEPGPPFVNGPHLYENAGKMVLLQKLLPKLRMQGSRVLLFCQMTRLLDILEDYMHLQGYDYCRIDGSTDGESRDSQMDEFNEPGSSKFLFLLSTRAGGLGINLATADVVILYDSDWNPQVDLQAMDRAHRIGQTKPVKVFRFITEGTVEEKIVERADRKLFLDAAVIQQGRLAEKNASLDKRELMAMVKFGADEILRMDDSHGLTDESIDELLRKGEEKTEETNARIQKDMQHNLLTFKIDEEDV---STFLFEGADHREGGSANAGTGAFINLPTRQRKSNYDVNEYYRARMDSN---KNIPGVRKRKGITMHDFQFYDKEALEALQAKEHEFADRKNAIIAEIKEIRTR---------------------CKRMEAQNGEEEHAARLEKEADSLELSPKEQEQKKKLIESAFGDWNRKDFRAFVAATERHGRDDTEAVVRDVCLETAKTEENVRKYIKVFWKRCRELGDHAKIMEKIEKGEKRIFRSKQIRSAIDSKINRHANPWSDLTINYYGGKGKVFTEEEDAFLLNMMHRYGYGNWEVIRMEIRKAWQFRFDWFFKSRNAAELQRRGDTLIRLVEKENEELEASTNDKM-PHFTTGHGGKKRKS 3306
DG G E RL YLM QSEVF+HF++ S GK K G R RM E ED L+ A S+ +V R+++QP I MR YQ+EGLNW++KLHDNGINGILADEMGLGKTLQSIS+LAYL E + I+GPHI IVPKS V NWMRE ++WCP+++ V+LLG+K ER + + E++ + +FD CV SYE VLKE L KI W YLLIDEAHRIKN NSSLS+ VR + TQFRLLITGTPLQ L+ LWALLNFLLPD+F+S F+ WF+L D A+DNV+KKLHT+LRPFMLRRIK DVE DLP + +KLYIG+T MQR WY +L++D LN LGGPD++RLLNILMQLRKVCNHPYLF+GAEPGPPF++GPHL+EN GK+VLL KLLPKL+ Q SRVL+F QMTR+LDILED+M L+ Y YCRIDGST G+ RD QMD FN P S KF FLLSTRAGGLGINLATAD+V+LYDSDWNPQVDLQAMDRAHRIGQTKPV VFRF+TEGTVEEKIVERADRKLFLDAAVIQQGRLAE+N S++K++LMAMV+FGADEI S LTDE ID LL++GEE+T E N +I+ D QHNL F + +D S F FEGA++R G G INLPTR+RK NYDV+EY+R ++ + P +KRKG MHDFQF+++E L L +E R+ + +E++ + C EA + A+ ++ S EL+ + E+K++L+ F DW RKDFR+F+ A ER GRD+ + + R+ ET KTEE VR+Y KVFW+R +EL D ++++KIEKGEKR+ RSK+IR A+ KI R P L +NY +GKV+TEEEDAFLLNMMH YGYGNWE IR+EIR AWQF FDWFFKSRNA+EL RR D LI+LVEKEN +L+ + K P + K +KS
Sbjct: 101 DGGSGDQREKRLNYLMAQSEVFSHFMEENSDLNLGKKKSKTG---------RTRMTEAAEDARLMKDAQSQLQVHRVTRQPSTIT-ATMRPYQVEGLNWLVKLHDNGINGILADEMGLGKTLQSISLLAYLAETKNIHGPHICIVPKSVVNNWMREMRKWCPTMRPVKLLGDKHERARCIREDLRDPESFDVCVTSYEGVLKEKGALCKINWSYLLIDEAHRIKNPNSSLSRIVRTIPTQFRLLITGTPLQNNLN-------ELWALLNFLLPDIFSSEADFETWFSLGGDSGAKDNVVKKLHTVLRPFMLRRIKRDVEADLPPK----REIKLYIGLTEMQRLWYTKILSKDAHTLNALGGPDRVRLLNILMQLRKVCNHPYLFEGAEPGPPFLDGPHLWENTGKLVLLSKLLPKLQAQQSRVLIFSQMTRMLDILEDFMRLKRYAYCRIDGSTSGDDRDLQMDTFNAPNSPKFAFLLSTRAGGLGINLATADIVVLYDSDWNPQVDLQAMDRAHRIGQTKPVTVFRFVTEGTVEEKIVERADRKLFLDAAVIQQGRLAEQNTSVNKQDLMAMVRFGADEIFASK-SKQLTDEDIDVLLKRGEERTAEQNKKIETDAQHNLANFSLTTQDAAPGSLFEFEGANYR----GAKGAGLLINLPTRERKRNYDVDEYFRDTLNDGSKKRKEPREKKRKGPAMHDFQFFNREELGELVQEEERLEQRRKDAQSLARELKQKGKKAQDEANAKAKAAGQEPSPCAEAEAHLQQSREVAKELEKGSSYELTGAKLEKKEQLLREGFVDWTRKDFRSFLNAMERRGRDEVDVIARETSNETGKTEEEVRRYHKVFWERHKELADWERVIDKIEKGEKRLQRSKEIREALAEKIARSPKPHECLPLNYGASRGKVWTEEEDAFLLNMMHTYGYGNWERIRVEIRNAWQFNFDWFFKSRNASELGRRADLLIKLVEKENSDLDGRSRPKSSPRASVTASEKPKKS 1071
BLAST of mRNA_P-fluviatile_contig12.1410.1 vs. uniprot
Match: A0A7S1BEM4_9STRA (Hypothetical protein n=1 Tax=Corethron hystrix TaxID=216773 RepID=A0A7S1BEM4_9STRA) HSP 1 Score: 1018 bits (2632), Expect = 0.000e+0 Identity = 548/968 (56.61%), Postives = 695/968 (71.80%), Query Frame = 1
Query: 442 RLQYLMQQSEVFTHFLDSTSFGKDKGGKGKRGGTGDGVRGR------MKEHEEDKLLLATAASKARVTRLSKQPD-LIKFGKMRAYQLEGLNWMIKLHDNGINGILADEMGLGKTLQSISVLAYLKEDRGINGPHIVIVPKSTVGNWMREFKRWCPSIKTVRLLGNKTERKLVCENVL---ETGNF--DACVASYESVLKEASTLKKIKWRYLLIDEAHRIKNENSSLSKTVRLLSTQFRLLITGTPLQVWLHVVRSLLWSLWALLNFLLPDVFNSAETFDQWFNLETDKSARDNVIKKLHTILRPFMLRRIKADVEKDLPQEGGEFESVKLYIGMTPMQRKWYKDLLNRDVGNLNTLGGPDKMRLLNILMQLRKVCNHPYLFDGAEPGPPFVNGPHLYENAGKMVLLQKLLPKLRMQGSRVLLFCQMTRLLDILEDYMHLQGYDYCRIDGSTDGESRDSQMDEFNEPGSSKFLFLLSTRAGGLGINLATADVVILYDSDWNPQVDLQAMDRAHRIGQTKPVKVFRFITEGTVEEKIVERADRKLFLDAAVIQQGRLAEKNASLDKRELMAMVKFGADEILRMDDSHGLTDESIDELLRKGEEKTEETNARIQKDMQHNLLTFKIDEEDVSTFLFEGADHREGGSANAGTGAFINLPTRQRKSNYDVNEYYRARMDSNK---NIPGVRKRKGITMHDFQFYDKEALEALQAKEHEFADRKNAIIAEIKEIRTRCKRMEAQN--------GEE-----EHAARLEKEADSLELSPKEQEQKKKLIESAFGDWNRKDFRAFVAATERHGRDDTEAVVRDVCLETAKTEENVRKYIKVFWKRCRELGDHAKIMEKIEKGEKRIFRSKQIRSAIDSKINRHAN-----PWSDLTINYYGGKGKVFTEEEDAFLLNMMHRYGY-GNWEVIRMEIRKAWQFRFDWFFKSRNAAELQRRGDTLIRLVEKENEELE 3243
R +L+ QSEVF HFL + ++K KGK+G M E ED L+A + S +VTRL KQP L+K KM YQLEGLNW+IKLHD G+NGILADEMGLGKTLQ+IS+LA+L+E RG+ GPH+VIVPKS VGNWM E K+WCP I+ ++LLGNK ERK VC+ +L TG F D V SYE +L+E TL KI W YL+IDEAHRIKNENSSLSK VRL+ T+FR+LITGTPLQ LH LWALLNFLLP+VF AE FD+WF++ + A++NVI+KLHT+LRPFMLRR+K DV LP + + KLY+G+T MQ++WY LL +D LN+LGGPDK+RLLNILMQLRK CNHPYLF+GAEPGPP+ +GPHL+EN GKM+LL KLLPKL+ Q SRVL+F QMTR+LDILEDY+ G++YCRIDG+TDG++RDS + FNEP SSKF F+LSTRAGGLGINLATAD+VILYDSDWNPQVDLQAMDRAHRIGQTKPV+VFRF+ EG+VEEKIVERADRKLFLDAAV+QQGRLAE+NA++ K ELM MV+FGAD+IL TDE ID L+ +GE KT E NA++Q + QHNL +F + + + TF+F G ++R+ A G FINLP R+RK NYDV+EYYR + + N ++RKG + ++Q Y+ + +E L A E + +K + EI+++R R K ++N GE + A LE EL + +K++L AF DW++KDF++F + ERHGR D ++V DV LE KTEE V++Y FW + +GD KI+E+IEKGEK+I + +QI +AI K+ RH W +T NY KG+ +TEEEDAFL++MM R+G+ G+WE IRMEIRKAWQFRFDWFFKSRNA EL +R + LI+++E+ENEE++
Sbjct: 115 RFGFLIAQSEVFAHFLAGSIAAEEKNRKGKKGXXXXXXXXXXXXXXXMSEAAEDAQLMAQSQSAQKVTRLEKQPGILVKECKMHPYQLEGLNWLIKLHDTGLNGILADEMGLGKTLQTISLLAWLREGRGVKGPHLVIVPKSVVGNWMNELKKWCPVIRGLKLLGNKEERKRVCKLILPNESTGKFRFDVLVTSYEGILREKGTLTKISWNYLIIDEAHRIKNENSSLSKVVRLMHTKFRILITGTPLQNNLH-------ELWALLNFLLPEVFGDAEMFDRWFSM-SGSEAQNNVIRKLHTVLRPFMLRRVKKDVACSLPPK----KETKLYVGLTAMQQEWYTKLLRKDAFELNSLGGPDKVRLLNILMQLRKACNHPYLFEGAEPGPPYSDGPHLWENCGKMMLLHKLLPKLKKQDSRVLIFTQMTRVLDILEDYLRYVGHEYCRIDGNTDGDNRDSAIAAFNEPNSSKFAFILSTRAGGLGINLATADIVILYDSDWNPQVDLQAMDRAHRIGQTKPVQVFRFLVEGSVEEKIVERADRKLFLDAAVVQQGRLAEQNATVGKDELMHMVRFGADQILSKKGGT-YTDEDIDALIARGETKTAEMNAKLQTNAQHNLASFSLFDAERDTFIFGGENYRD---KRARGGNFINLPQRERKRNYDVDEYYRDTLSLGQVKANDFVKKRRKGPALQEYQLYNIDRIEELNAIESVISAKKQDRLNEIRDLRLRSKHAPSKNNSRVSVSAGESSEDLLQQANLLESTLAQFELGKEHIAEKERLTNEAFPDWSKKDFKSFCLSMERHGRFDVASIVDDVVLECGKTEEEVKRYYIAFWTYYKRIGDWKKIIERIEKGEKKITKLRQICNAITKKVERHQKGAEILSWQTMTFNYGPYKGRAYTEEEDAFLVSMMFRHGFAGSWERIRMEIRKAWQFRFDWFFKSRNAVELGKRCEVLIKVIERENEEID 1066
BLAST of mRNA_P-fluviatile_contig12.1410.1 vs. uniprot
Match: A0A2R5GCY8_9STRA (ISWI chromatin-remodeling complex ATPase CHR11 n=1 Tax=Hondaea fermentalgiana TaxID=2315210 RepID=A0A2R5GCY8_9STRA) HSP 1 Score: 1009 bits (2609), Expect = 0.000e+0 Identity = 532/983 (54.12%), Postives = 685/983 (69.68%), Query Frame = 1
Query: 328 QSEDHSFDEVVSEHSKKLEELRERQKAEDGQCGG-NAETRLQYLMQQSEVFTHFLDSTSFGKDKGG-KGKRGGTGDGVRGRMKEHEEDKLLLATAASKARVTRLSKQPDLIKFGKMRAYQLEGLNWMIKLHDNGINGILADEMGLGKTLQSISVLAYLKEDRGINGPHIVIVPKSTVGNWMREFKRWCPSIKTVRLLGNKTERKLVCENVLETGNFDACVASYESVLKEASTLKKIKWRYLLIDEAHRIKNENSSLSKTVRLLSTQFRLLITGTPLQVWLHVVRSLLWSLWALLNFLLPDVFNSAETFDQWFNLETDKSARDNVIKKLHTILRPFMLRRIKADVEKDLPQEGGEFESVKLYIGMTPMQRKWYKDLLNRDVGNLNTLGGPDKMRLLNILMQLRKVCNHPYLFDGAEPGPPFVNGPHLYENAGKMVLLQKLLPKLRMQGSRVLLFCQMTRLLDILEDYMHLQGYDYCRIDGSTDGESRDSQMDEFNEPGSSKFLFLLSTRAGGLGINLATADVVILYDSDWNPQVDLQAMDRAHRIGQTKPVKVFRFITEGTVEEKIVERADRKLFLDAAVIQQGRLAEKNASLDKRELMAMVKFGADEILRMDDSHGLTDESIDELLRKGEEKTEETNARIQKDMQHNLLTFKIDE-EDVSTFLFEGADHREGGSANAGTGAFINLPTRQRKSNYDVNEYYRARMDSNKNIPG---VRKRKGITMHDFQFYDKEALEALQAKEHEFADRKNAIIAEIKEIRTRCKRM-------EAQNGEEEHAARLEKEADSLELSPKEQEQKKKLIESAFGDWNRKDFRAFVAATERHGRDDTEAVVRDVCLETAKTEENVRKYIKVFWKRCRELGDHAKIMEKIEKGEKRIFRSKQIRSAIDSKINRHANPWSDLTINYYGGKGKVFTEEEDAFLLNMMHRYGYGNWEVIRMEIRKAWQFRFDWFFKSRNAAELQRRGDTLIRLVEKENEE 3237
+ E+ S E H +L+ +RE Q A + G +AE RL++L +Q++VF F+++ + K K + L+A + +TRL+ QP I FG MR YQ+EGLNWMI L++ GINGILADEMGLGKTLQ+IS+L YLK DR ++GPHI+IVPKS +GNW RE RWCPS++ +++ GN+ ER + + G FD CV +YE V E ++ K KWRYL++DEAH IKNE S LS+ VR L T+FRLLITGTPLQ L LWALLNFLLP+VF ++ F+ +F +E A ++V+ KLH ILRPFM+RR+K+DVE LP + +KL+ GMT MQ WYK L+RDV LN LGGP+K RLLNILMQLRKVCNHPYLF GAEPGPP+ +GPHL+EN+GKM+LL KLL KL+ G RVL+F QMTRLLDILEDYM +GY YCRIDG T GE RD M E+NEPGSSKF+FLLSTRAGGLGINL TA++V+LYDSDWNPQ+DLQA DRAHRIGQ K V VFRF+TEGTVEEKIVERA++KL+LDA V+QQGRL ++N +LDK ELM MVKFGA+ I + + +TDE ID +L KG +KTEET ++ Q D QHNLL F++D+ TF+F+G ++R G FI LP R RK NYDVNEYYR ++++ R KG+TMHDFQF+ K+ +EAL+ KEHE+ ++ A + IKE + +R EA+ ++ + RLE+E ++ELS +EQE+K+KLI FG WNR+DFRA+ +A ERHGRD + ++ DV T K + +R Y FW+R +E+ DH +I+++I+KGE+++ R I A+D K+ R NPW LTINY KGK F+EEED FL+ M+ R GYG W+ ++ EIRKAW FRFDWFFKSR AAELQRR DTL+RL+EKE EE
Sbjct: 157 KEEEFSRSEARQMHDSELKRIREAQNARLAKSGKRSAEARLKFLQEQTDVFARFMNTPAAEVPKKKVKXXXXXXXXXXXXXXXXXXXXEELMADSLKGKVLTRLTVQPKCIAFGTMRPYQIEGLNWMINLYEQGINGILADEMGLGKTLQTISLLGYLKNDRNVSGPHIIIVPKSVLGNWQRELARWCPSLRVIKVHGNQAERTEQIKTTMIAGTFDVCVTTYEVVRIERTSFLKFKWRYLIMDEAHSIKNEQSRLSQVVRELDTEFRLLITGTPLQNNLR-------ELWALLNFLLPEVFGDSDVFEDFFKIEN--MAEESVVSKLHAILRPFMIRRLKSDVEDALPPK----REIKLFTGMTEMQTYWYKKTLSRDVAALNQLGGPEKTRLLNILMQLRKVCNHPYLFQGAEPGPPYFDGPHLWENSGKMILLDKLLSKLKANGDRVLIFSQMTRLLDILEDYMRFRGYQYCRIDGQTKGEDRDKYMAEYNEPGSSKFVFLLSTRAGGLGINLQTANIVVLYDSDWNPQMDLQAQDRAHRIGQKKEVTVFRFVTEGTVEEKIVERAEKKLYLDAVVVQQGRLQQQNKNLDKDELMTMVKFGAEAIFKTTGA-SVTDEDIDLILEKGRQKTEETKSKYQTDAQHNLLNFRLDDGAGTDTFMFDGENYR-----GKKVGNFIALPQRARKKNYDVNEYYRDALNTSNETSKKKEARLPKGLTMHDFQFFQKDKIEALEKKEHEYITQRRAQMQRIKEAKNNERRTSSSSAAPEAEGDKKPLSERLEEELATMELSAEEQEEKEKLISEGFGSWNRRDFRAYTSACERHGRDARDDILADVAEATGKPKTEIRDYHDTFWRRYKEISDHERIIDRIKKGEQKLARRAAITEALDKKVARTKNPWQALTINYGSNKGKTFSEEEDRFLVCMLQRLGYGAWDQLKQEIRKAWNFRFDWFFKSRTAAELQRRADTLVRLIEKELEE 1120
BLAST of mRNA_P-fluviatile_contig12.1410.1 vs. uniprot
Match: A0A7S3PML4_9STRA (Hypothetical protein n=1 Tax=Aplanochytrium stocchinoi TaxID=215587 RepID=A0A7S3PML4_9STRA) HSP 1 Score: 998 bits (2580), Expect = 0.000e+0 Identity = 534/960 (55.62%), Postives = 668/960 (69.58%), Query Frame = 1
Query: 430 NAETRLQYLMQQSEVFTHFLDSTSFGK-DKGGKGKRGGTGDGVRGRMKEHEE--DKLLLATAASKARVTRLSKQPDLIKFGKMRAYQLEGLNWMIKLHDNGINGILADEMGLGKTLQSISVLAYLKEDRGINGPHIVIVPKSTVGNWMREFKRWCPSIKTVRLLGNKTERKLVCENVLETGNFDACVASYESVLKEASTLKKIKWRYLLIDEAHRIKNENSSLSKTVRLLSTQFRLLITGTPLQVWLHVVRSLLWSLWALLNFLLPDVFNSAETFDQWFNLETDKSARDNVIKKLHTILRPFMLRRIKADVEKDLPQEGGEFESVKLYIGMTPMQRKWYKDLLNRDVGNLNTLGGPDKMRLLNILMQLRKVCNHPYLFDGAEPGPPFVNGPHLYENAGKMVLLQKLLPKLRMQGSRVLLFCQMTRLLDILEDYMHLQGYDYCRIDGSTDGESRDSQMDEFNEPGSSKFLFLLSTRAGGLGINLATADVVILYDSDWNPQVDLQAMDRAHRIGQTKPVKVFRFITEGTVEEKIVERADRKLFLDAAVIQQGRLAEKNASLDKRELMAMVKFGADEILRMDDSHGLTDESIDELLRKGEEKTEETNARIQKDMQHNLLTFKID-EEDVSTFLFEGADHREGGSANAGTGAFINLPTRQRKSNYDVNEYYRARMDSNKNIPGVRKR--KGITMHDFQFYDKEALEALQAKEHEFADRKNAIIAEIKEIRTRCKRM-------------EAQNGEEEHAARLEKEADSLELSPKEQEQKKKLIESAFGDWNRKDFRAFVAATERHGRDDTEAVVRDVCLETAKTEENVRKYIKVFWKRCRELGDHAKIMEKIEKGEKRIFRSKQIRSAIDSKINRHANPWSDLTINYYGGKGKVFTEEEDAFLLNMMHRYGYGNWEVIRMEIRKAWQFRFDWFFKSRNAAELQRRGDTLIRLVEKENEELEAST 3252
+A+ RL +L +Q+EVF+ FL S DKG K D LL R TRL+ QP IKFG MR YQ+EGLNW++ L++ GINGILADEMGLGKTLQ+IS+L YLK DRG++GPH+V+VPKS +GNWMREF RWCPS+K V++ G K ER L G +D + +YE + E S +K K+RYL++DEAH IKNE+S L+ TVR + TQFR+LITGTPLQ L LWALLNFLLP+VF+ A+ F+ +F +E K ++V+ KLH ILRPF+LRR+K DVE DLP + +KLY G+T MQ WYK L++DV LN LGGP+K RLLNILMQLRKVCNHPYLF GAEPGPP+ +GPHL+EN+GKM+LL KLL KL+ G RVL+F QMTRLLDILEDYM +GY+YCRIDG T GE RD M EFN S+KF FLLSTRAGGLGINL TA++VILYDSDWNPQ+DLQA DRAHRIGQ K V VFRFITEGTVEEKIVERA++KL+LDA V+QQGRL + L K ELM MVKFGA+ I + + +TDE ID +L+KGE +TEE A+ + D QHNLL F ++ +++ TF+FEG D+R A AGT FINLP R RK NYDVNEYYR M + + P R K ITMHDFQF+DK+ +E ++ KEHE ++ + IK+ R + +R +A +E +LE + D +L+ +EQE+K +L+E AFGDWNR+DFRA+ A ERHGR D +A++ DV T KT+E+VR Y FW+R +EL D K +++I+KGE ++ R I A+ SK+ R NPW LT+NY KGK FTEEED FL+ MM+R GYG W+ ++ EIRKAW FRFDWFFKSR AELQRR DTL+RLVEKENEE+ S+
Sbjct: 93 HAQNRLDFLARQTEVFSRFLTGGSLASPDKGKKXXXXXXXXXXXXXXXXXXXXXDAELLEEELHGTRATRLTIQPSCIKFGTMRWYQIEGLNWLVNLYEQGINGILADEMGLGKTLQTISLLGYLKHDRGVSGPHMVVVPKSVLGNWMREFNRWCPSLKVVKVWGTKDERATQIAEDLMPGGWDVVLTTYEIIRIEKSAFQKFKYRYLVMDEAHSIKNESSRLAVTVREMDTQFRMLITGTPLQNNLR-------ELWALLNFLLPEVFSDADQFEDYFKIEDMKE--ESVVSKLHAILRPFLLRRLKKDVEHDLPDK----REIKLYTGLTEMQHYWYKTTLSKDVAALNQLGGPEKTRLLNILMQLRKVCNHPYLFQGAEPGPPYFDGPHLWENSGKMILLDKLLKKLKKNGDRVLIFSQMTRLLDILEDYMRYKGYEYCRIDGQTKGEDRDKFMAEFNAEDSTKFCFLLSTRAGGLGINLQTANIVILYDSDWNPQMDLQAQDRAHRIGQKKEVIVFRFITEGTVEEKIVERAEKKLYLDAVVVQQGRLQNQTKKLGKDELMTMVKFGAETIFKSGGAT-VTDEDIDLILQKGEARTEEQAAKFKTDAQHNLLDFSLEGDKETGTFMFEGKDYR---GARAGT--FINLPQRVRKKNYDVNEYYREAMGTGEKKPKREPRLPKSITMHDFQFFDKKRIEEIEKKEHELIAKRRTHMGLIKDARAKERRSGRGKFGEVQEDTDDAAKKAKEELEKLEAKLDDFQLTEEEQEEKDRLVEEAFGDWNRRDFRAYTQACERHGRKDIKAIIADVVDATGKTKEDVRAYHNTFWERYKELQDWEKTIDRIKKGEHKLKRKHAIAEALRSKVERTTNPWQTLTLNYGSNKGKTFTEEEDRFLVCMMNRLGYGAWDQLKQEIRKAWNFRFDWFFKSRTTAELQRRCDTLVRLVEKENEEMSGSS 1033
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 | 1533.9 |
| Seed ortholog evalue | 0.0 |
| Seed eggNOG ortholog | 2880.D8LDI0 |
| Preferred name | SMARCA5 |
| KEGG ko | ko:K11654,ko:K11727 |
| GOs | GO:0000003,GO:0000122,GO:0000166,GO:0000182,GO:0000183,GO:0000228,GO:0000733,GO:0000785,GO:0000790,GO:0000793,GO:0000819,GO:0000981,GO:0001067,GO:0001178,GO:0001410,GO:0001650,GO:0003006,GO:0003674,GO:0003676,GO:0003677,GO:0003678,GO:0003682,GO:0003690,GO:0003697,GO:0003700,GO:0003824,GO:0004386,GO:0005488,GO:0005515,GO:0005524,GO:0005575,GO:0005622,GO:0005623,GO:0005634,GO:0005654,GO:0005667,GO:0005677,GO:0005694,GO:0005700,GO:0005730,GO:0006139,GO:0006259,GO:0006323,GO:0006325,GO:0006333,GO:0006334,GO:0006336,GO:0006338,GO:0006342,GO:0006348,GO:0006351,GO:0006352,GO:0006353,GO:0006354,GO:0006355,GO:0006357,GO:0006360,GO:0006363,GO:0006366,GO:0006369,GO:0006725,GO:0006807,GO:0006996,GO:0006997,GO:0007049,GO:0007059,GO:0007062,GO:0007154,GO:0007165,GO:0007275,GO:0007276,GO:0007281,GO:0007283,GO:0007286,GO:0007289,GO:0007338,GO:0007399,GO:0007417,GO:0007420,GO:0008094,GO:0008134,GO:0008144,GO:0008150,GO:0008152,GO:0008623,GO:0009058,GO:0009059,GO:0009373,GO:0009553,GO:0009561,GO:0009566,GO:0009653,GO:0009719,GO:0009725,GO:0009755,GO:0009889,GO:0009890,GO:0009891,GO:0009892,GO:0009893,GO:0009987,GO:0010033,GO:0010035,GO:0010038,GO:0010467,GO:0010468,GO:0010556,GO:0010557,GO:0010558,GO:0010604,GO:0010605,GO:0010628,GO:0010629,GO:0010639,GO:0014070,GO:0015616,GO:0016043,GO:0016070,GO:0016458,GO:0016462,GO:0016584,GO:0016587,GO:0016589,GO:0016590,GO:0016787,GO:0016817,GO:0016818,GO:0016887,GO:0017053,GO:0017076,GO:0017111,GO:0018130,GO:0019219,GO:0019222,GO:0019236,GO:0019237,GO:0019438,GO:0019953,GO:0019954,GO:0022008,GO:0022402,GO:0022412,GO:0022414,GO:0022607,GO:0023052,GO:0030154,GO:0030182,GO:0030435,GO:0030436,GO:0030447,GO:0030518,GO:0030522,GO:0030554,GO:0030575,GO:0030874,GO:0031010,GO:0031055,GO:0031213,GO:0031323,GO:0031324,GO:0031325,GO:0031326,GO:0031327,GO:0031328,GO:0031497,GO:0031974,GO:0031981,GO:0032392,GO:0032501,GO:0032502,GO:0032504,GO:0032508,GO:0032553,GO:0032555,GO:0032559,GO:0032774,GO:0032870,GO:0032991,GO:0033043,GO:0033044,GO:0033993,GO:0034080,GO:0034097,GO:0034401,GO:0034508,GO:0034622,GO:0034641,GO:0034645,GO:0034654,GO:0034724,GO:0034728,GO:0035039,GO:0035041,GO:0035063,GO:0035075,GO:0035076,GO:0035092,GO:0035639,GO:0035690,GO:0036094,GO:0036310,GO:0036314,GO:0036315,GO:0036436,GO:0036437,GO:0040007,GO:0040026,GO:0040028,GO:0040029,GO:0040034,GO:0042127,GO:0042221,GO:0042493,GO:0042623,GO:0042752,GO:0042766,GO:0043044,GO:0043167,GO:0043168,GO:0043170,GO:0043226,GO:0043227,GO:0043228,GO:0043229,GO:0043231,GO:0043232,GO:0043233,GO:0043254,GO:0043401,GO:0043486,GO:0043565,GO:0043933,GO:0043934,GO:0043936,GO:0043954,GO:0044085,GO:0044087,GO:0044212,GO:0044237,GO:0044238,GO:0044249,GO:0044260,GO:0044271,GO:0044422,GO:0044424,GO:0044427,GO:0044428,GO:0044446,GO:0044451,GO:0044452,GO:0044454,GO:0044464,GO:0044703,GO:0045814,GO:0045815,GO:0045892,GO:0045893,GO:0045934,GO:0045935,GO:0045944,GO:0045996,GO:0046019,GO:0046020,GO:0046483,GO:0046688,GO:0048229,GO:0048232,GO:0048468,GO:0048506,GO:0048509,GO:0048510,GO:0048513,GO:0048515,GO:0048518,GO:0048519,GO:0048522,GO:0048523,GO:0048545,GO:0048580,GO:0048582,GO:0048583,GO:0048584,GO:0048609,GO:0048646,GO:0048699,GO:0048731,GO:0048856,GO:0048869,GO:0050789,GO:0050793,GO:0050794,GO:0050896,GO:0051094,GO:0051128,GO:0051129,GO:0051171,GO:0051172,GO:0051173,GO:0051239,GO:0051240,GO:0051252,GO:0051253,GO:0051254,GO:0051276,GO:0051704,GO:0051716,GO:0060194,GO:0060195,GO:0060255,GO:0060260,GO:0060303,GO:0060322,GO:0061062,GO:0061063,GO:0061641,GO:0065003,GO:0065004,GO:0065007,GO:0065008,GO:0070013,GO:0070603,GO:0070615,GO:0070827,GO:0070828,GO:0070829,GO:0070868,GO:0070870,GO:0070887,GO:0070925,GO:0071103,GO:0071241,GO:0071248,GO:0071280,GO:0071310,GO:0071345,GO:0071383,GO:0071390,GO:0071396,GO:0071407,GO:0071444,GO:0071495,GO:0071704,GO:0071824,GO:0071840,GO:0080090,GO:0080134,GO:0080135,GO:0090304,GO:0090537,GO:0090568,GO:0097159,GO:0097305,GO:0097306,GO:0097367,GO:0097549,GO:0097617,GO:0097659,GO:0098813,GO:0140097,GO:0140110,GO:1900034,GO:1900036,GO:1900049,GO:1900050,GO:1901265,GO:1901360,GO:1901362,GO:1901363,GO:1901576,GO:1901654,GO:1901655,GO:1901700,GO:1901701,GO:1902275,GO:1902494,GO:1902679,GO:1902680,GO:1903506,GO:1903507,GO:1903508,GO:1904949,GO:1905268,GO:1990823,GO:1990830,GO:1990837,GO:2000026,GO:2000112,GO:2000113,GO:2000142,GO:2000177,GO:2001141,GO:2001251 |
| EggNOG free text desc. | helicase activity |
| EggNOG OGs | COG0553@1,KOG0385@2759 |
| COG Functional cat. | KL |
| Best tax level | Eukaryota |
| Best eggNOG OG | NA|NA|NA |
| BRITE | ko00000,ko01000,ko03021,ko03036 |
| Hectar predicted targeting category | other localisation |
| Ec32 ortholog description | SNF2-related, helicase, ISW1, SANT and SLIDE domain protein |
| Ec32 ortholog | Ec-15_000520.1 |
| Exons | 25 |
| Model size | 4868 |
| Cds size | 3336 |
| Stop | 1 |
| Start | 1 |
Relationships
The following UTR feature(s) are a part of this mRNA:
| Feature Name | Unique Name | Species | Type | Position |
| 1622815505.4360466-UTR-P-fluviatile_contig12:1279283..1280749 | 1622815505.4360466-UTR-P-fluviatile_contig12:1279283..1280749 | Porterinema fluviatile SAG_2381 | UTR | P-fluviatile_contig12 1279284..1280749 - |
| 1693562078.004641-UTR-P-fluviatile_contig12:1279283..1280749 | 1693562078.004641-UTR-P-fluviatile_contig12:1279283..1280749 | Porterinema fluviatile SAG_2381 | UTR | P-fluviatile_contig12 1279284..1280749 - |
| 1622815505.9366987-UTR-P-fluviatile_contig12:1304804..1304870 | 1622815505.9366987-UTR-P-fluviatile_contig12:1304804..1304870 | Porterinema fluviatile SAG_2381 | UTR | P-fluviatile_contig12 1304805..1304870 - |
| 1693562078.4989016-UTR-P-fluviatile_contig12:1304804..1304870 | 1693562078.4989016-UTR-P-fluviatile_contig12:1304804..1304870 | Porterinema fluviatile SAG_2381 | UTR | P-fluviatile_contig12 1304805..1304870 - |
The following CDS feature(s) are a part of this mRNA:
| Feature Name | Unique Name | Species | Type | Position |
| 1622815505.448596-CDS-P-fluviatile_contig12:1280749..1280878 | 1622815505.448596-CDS-P-fluviatile_contig12:1280749..1280878 | Porterinema fluviatile SAG_2381 | CDS | P-fluviatile_contig12 1280750..1280878 - |
| 1693562078.0141392-CDS-P-fluviatile_contig12:1280749..1280878 | 1693562078.0141392-CDS-P-fluviatile_contig12:1280749..1280878 | Porterinema fluviatile SAG_2381 | CDS | P-fluviatile_contig12 1280750..1280878 - |
| 1622815505.4626384-CDS-P-fluviatile_contig12:1281191..1281332 | 1622815505.4626384-CDS-P-fluviatile_contig12:1281191..1281332 | Porterinema fluviatile SAG_2381 | CDS | P-fluviatile_contig12 1281192..1281332 - |
| 1693562078.022288-CDS-P-fluviatile_contig12:1281191..1281332 | 1693562078.022288-CDS-P-fluviatile_contig12:1281191..1281332 | Porterinema fluviatile SAG_2381 | CDS | P-fluviatile_contig12 1281192..1281332 - |
| 1622815505.4733288-CDS-P-fluviatile_contig12:1283240..1283339 | 1622815505.4733288-CDS-P-fluviatile_contig12:1283240..1283339 | Porterinema fluviatile SAG_2381 | CDS | P-fluviatile_contig12 1283241..1283339 - |
| 1693562078.030431-CDS-P-fluviatile_contig12:1283240..1283339 | 1693562078.030431-CDS-P-fluviatile_contig12:1283240..1283339 | Porterinema fluviatile SAG_2381 | CDS | P-fluviatile_contig12 1283241..1283339 - |
| 1622815505.488069-CDS-P-fluviatile_contig12:1283865..1284039 | 1622815505.488069-CDS-P-fluviatile_contig12:1283865..1284039 | Porterinema fluviatile SAG_2381 | CDS | P-fluviatile_contig12 1283866..1284039 - |
| 1693562078.047431-CDS-P-fluviatile_contig12:1283865..1284039 | 1693562078.047431-CDS-P-fluviatile_contig12:1283865..1284039 | Porterinema fluviatile SAG_2381 | CDS | P-fluviatile_contig12 1283866..1284039 - |
| 1622815505.5059197-CDS-P-fluviatile_contig12:1284759..1284838 | 1622815505.5059197-CDS-P-fluviatile_contig12:1284759..1284838 | Porterinema fluviatile SAG_2381 | CDS | P-fluviatile_contig12 1284760..1284838 - |
| 1693562078.0611913-CDS-P-fluviatile_contig12:1284759..1284838 | 1693562078.0611913-CDS-P-fluviatile_contig12:1284759..1284838 | Porterinema fluviatile SAG_2381 | CDS | P-fluviatile_contig12 1284760..1284838 - |
| 1622815505.5219188-CDS-P-fluviatile_contig12:1285159..1285275 | 1622815505.5219188-CDS-P-fluviatile_contig12:1285159..1285275 | Porterinema fluviatile SAG_2381 | CDS | P-fluviatile_contig12 1285160..1285275 - |
| 1693562078.0696445-CDS-P-fluviatile_contig12:1285159..1285275 | 1693562078.0696445-CDS-P-fluviatile_contig12:1285159..1285275 | Porterinema fluviatile SAG_2381 | CDS | P-fluviatile_contig12 1285160..1285275 - |
| 1622815505.5363395-CDS-P-fluviatile_contig12:1286435..1286519 | 1622815505.5363395-CDS-P-fluviatile_contig12:1286435..1286519 | Porterinema fluviatile SAG_2381 | CDS | P-fluviatile_contig12 1286436..1286519 - |
| 1693562078.0817473-CDS-P-fluviatile_contig12:1286435..1286519 | 1693562078.0817473-CDS-P-fluviatile_contig12:1286435..1286519 | Porterinema fluviatile SAG_2381 | CDS | P-fluviatile_contig12 1286436..1286519 - |
| 1622815505.5510852-CDS-P-fluviatile_contig12:1286888..1286999 | 1622815505.5510852-CDS-P-fluviatile_contig12:1286888..1286999 | Porterinema fluviatile SAG_2381 | CDS | P-fluviatile_contig12 1286889..1286999 - |
| 1693562078.0937526-CDS-P-fluviatile_contig12:1286888..1286999 | 1693562078.0937526-CDS-P-fluviatile_contig12:1286888..1286999 | Porterinema fluviatile SAG_2381 | CDS | P-fluviatile_contig12 1286889..1286999 - |
| 1622815505.5676734-CDS-P-fluviatile_contig12:1287309..1287431 | 1622815505.5676734-CDS-P-fluviatile_contig12:1287309..1287431 | Porterinema fluviatile SAG_2381 | CDS | P-fluviatile_contig12 1287310..1287431 - |
| 1693562078.1126626-CDS-P-fluviatile_contig12:1287309..1287431 | 1693562078.1126626-CDS-P-fluviatile_contig12:1287309..1287431 | Porterinema fluviatile SAG_2381 | CDS | P-fluviatile_contig12 1287310..1287431 - |
| 1622815505.581204-CDS-P-fluviatile_contig12:1288116..1288207 | 1622815505.581204-CDS-P-fluviatile_contig12:1288116..1288207 | Porterinema fluviatile SAG_2381 | CDS | P-fluviatile_contig12 1288117..1288207 - |
| 1693562078.1238525-CDS-P-fluviatile_contig12:1288116..1288207 | 1693562078.1238525-CDS-P-fluviatile_contig12:1288116..1288207 | Porterinema fluviatile SAG_2381 | CDS | P-fluviatile_contig12 1288117..1288207 - |
| 1622815505.5942266-CDS-P-fluviatile_contig12:1288979..1289132 | 1622815505.5942266-CDS-P-fluviatile_contig12:1288979..1289132 | Porterinema fluviatile SAG_2381 | CDS | P-fluviatile_contig12 1288980..1289132 - |
| 1693562078.1344967-CDS-P-fluviatile_contig12:1288979..1289132 | 1693562078.1344967-CDS-P-fluviatile_contig12:1288979..1289132 | Porterinema fluviatile SAG_2381 | CDS | P-fluviatile_contig12 1288980..1289132 - |
| 1622815505.6920564-CDS-P-fluviatile_contig12:1289494..1289680 | 1622815505.6920564-CDS-P-fluviatile_contig12:1289494..1289680 | Porterinema fluviatile SAG_2381 | CDS | P-fluviatile_contig12 1289495..1289680 - |
| 1693562078.1433444-CDS-P-fluviatile_contig12:1289494..1289680 | 1693562078.1433444-CDS-P-fluviatile_contig12:1289494..1289680 | Porterinema fluviatile SAG_2381 | CDS | P-fluviatile_contig12 1289495..1289680 - |
| 1622815505.7071233-CDS-P-fluviatile_contig12:1290174..1290378 | 1622815505.7071233-CDS-P-fluviatile_contig12:1290174..1290378 | Porterinema fluviatile SAG_2381 | CDS | P-fluviatile_contig12 1290175..1290378 - |
| 1693562078.1512783-CDS-P-fluviatile_contig12:1290174..1290378 | 1693562078.1512783-CDS-P-fluviatile_contig12:1290174..1290378 | Porterinema fluviatile SAG_2381 | CDS | P-fluviatile_contig12 1290175..1290378 - |
| 1622815505.7244892-CDS-P-fluviatile_contig12:1291257..1291353 | 1622815505.7244892-CDS-P-fluviatile_contig12:1291257..1291353 | Porterinema fluviatile SAG_2381 | CDS | P-fluviatile_contig12 1291258..1291353 - |
| 1693562078.1595917-CDS-P-fluviatile_contig12:1291257..1291353 | 1693562078.1595917-CDS-P-fluviatile_contig12:1291257..1291353 | Porterinema fluviatile SAG_2381 | CDS | P-fluviatile_contig12 1291258..1291353 - |
| 1622815505.740142-CDS-P-fluviatile_contig12:1292422..1292509 | 1622815505.740142-CDS-P-fluviatile_contig12:1292422..1292509 | Porterinema fluviatile SAG_2381 | CDS | P-fluviatile_contig12 1292423..1292509 - |
| 1693562078.1708019-CDS-P-fluviatile_contig12:1292422..1292509 | 1693562078.1708019-CDS-P-fluviatile_contig12:1292422..1292509 | Porterinema fluviatile SAG_2381 | CDS | P-fluviatile_contig12 1292423..1292509 - |
| 1622815505.7529871-CDS-P-fluviatile_contig12:1292835..1292973 | 1622815505.7529871-CDS-P-fluviatile_contig12:1292835..1292973 | Porterinema fluviatile SAG_2381 | CDS | P-fluviatile_contig12 1292836..1292973 - |
| 1693562078.1804512-CDS-P-fluviatile_contig12:1292835..1292973 | 1693562078.1804512-CDS-P-fluviatile_contig12:1292835..1292973 | Porterinema fluviatile SAG_2381 | CDS | P-fluviatile_contig12 1292836..1292973 - |
| 1622815505.7630262-CDS-P-fluviatile_contig12:1294972..1295105 | 1622815505.7630262-CDS-P-fluviatile_contig12:1294972..1295105 | Porterinema fluviatile SAG_2381 | CDS | P-fluviatile_contig12 1294973..1295105 - |
| 1693562078.1882808-CDS-P-fluviatile_contig12:1294972..1295105 | 1693562078.1882808-CDS-P-fluviatile_contig12:1294972..1295105 | Porterinema fluviatile SAG_2381 | CDS | P-fluviatile_contig12 1294973..1295105 - |
| 1622815505.7728782-CDS-P-fluviatile_contig12:1297397..1297468 | 1622815505.7728782-CDS-P-fluviatile_contig12:1297397..1297468 | Porterinema fluviatile SAG_2381 | CDS | P-fluviatile_contig12 1297398..1297468 - |
| 1693562078.4248927-CDS-P-fluviatile_contig12:1297397..1297468 | 1693562078.4248927-CDS-P-fluviatile_contig12:1297397..1297468 | Porterinema fluviatile SAG_2381 | CDS | P-fluviatile_contig12 1297398..1297468 - |
| 1622815505.7822907-CDS-P-fluviatile_contig12:1298032..1298189 | 1622815505.7822907-CDS-P-fluviatile_contig12:1298032..1298189 | Porterinema fluviatile SAG_2381 | CDS | P-fluviatile_contig12 1298033..1298189 - |
| 1693562078.4346676-CDS-P-fluviatile_contig12:1298032..1298189 | 1693562078.4346676-CDS-P-fluviatile_contig12:1298032..1298189 | Porterinema fluviatile SAG_2381 | CDS | P-fluviatile_contig12 1298033..1298189 - |
| 1622815505.7941287-CDS-P-fluviatile_contig12:1298863..1299045 | 1622815505.7941287-CDS-P-fluviatile_contig12:1298863..1299045 | Porterinema fluviatile SAG_2381 | CDS | P-fluviatile_contig12 1298864..1299045 - |
| 1693562078.4436646-CDS-P-fluviatile_contig12:1298863..1299045 | 1693562078.4436646-CDS-P-fluviatile_contig12:1298863..1299045 | Porterinema fluviatile SAG_2381 | CDS | P-fluviatile_contig12 1298864..1299045 - |
| 1622815505.8059502-CDS-P-fluviatile_contig12:1299364..1299466 | 1622815505.8059502-CDS-P-fluviatile_contig12:1299364..1299466 | Porterinema fluviatile SAG_2381 | CDS | P-fluviatile_contig12 1299365..1299466 - |
| 1693562078.452338-CDS-P-fluviatile_contig12:1299364..1299466 | 1693562078.452338-CDS-P-fluviatile_contig12:1299364..1299466 | Porterinema fluviatile SAG_2381 | CDS | P-fluviatile_contig12 1299365..1299466 - |
| 1622815505.8182456-CDS-P-fluviatile_contig12:1300467..1300558 | 1622815505.8182456-CDS-P-fluviatile_contig12:1300467..1300558 | Porterinema fluviatile SAG_2381 | CDS | P-fluviatile_contig12 1300468..1300558 - |
| 1693562078.461095-CDS-P-fluviatile_contig12:1300467..1300558 | 1693562078.461095-CDS-P-fluviatile_contig12:1300467..1300558 | Porterinema fluviatile SAG_2381 | CDS | P-fluviatile_contig12 1300468..1300558 - |
| 1622815505.8674695-CDS-P-fluviatile_contig12:1301218..1301380 | 1622815505.8674695-CDS-P-fluviatile_contig12:1301218..1301380 | Porterinema fluviatile SAG_2381 | CDS | P-fluviatile_contig12 1301219..1301380 - |
| 1693562078.4703915-CDS-P-fluviatile_contig12:1301218..1301380 | 1693562078.4703915-CDS-P-fluviatile_contig12:1301218..1301380 | Porterinema fluviatile SAG_2381 | CDS | P-fluviatile_contig12 1301219..1301380 - |
| 1622815505.879754-CDS-P-fluviatile_contig12:1301878..1302111 | 1622815505.879754-CDS-P-fluviatile_contig12:1301878..1302111 | Porterinema fluviatile SAG_2381 | CDS | P-fluviatile_contig12 1301879..1302111 - |
| 1693562078.4796147-CDS-P-fluviatile_contig12:1301878..1302111 | 1693562078.4796147-CDS-P-fluviatile_contig12:1301878..1302111 | Porterinema fluviatile SAG_2381 | CDS | P-fluviatile_contig12 1301879..1302111 - |
| 1622815505.9248552-CDS-P-fluviatile_contig12:1304609..1304804 | 1622815505.9248552-CDS-P-fluviatile_contig12:1304609..1304804 | Porterinema fluviatile SAG_2381 | CDS | P-fluviatile_contig12 1304610..1304804 - |
| 1693562078.4892447-CDS-P-fluviatile_contig12:1304609..1304804 | 1693562078.4892447-CDS-P-fluviatile_contig12:1304609..1304804 | Porterinema fluviatile SAG_2381 | CDS | P-fluviatile_contig12 1304610..1304804 - |
The following polypeptide feature(s) derives from this mRNA:
Sequences
The following sequences are available for this feature:
protein sequence of mRNA_P-fluviatile_contig12.1410.1 >prot_P-fluviatile_contig12.1410.1 ID=prot_P-fluviatile_contig12.1410.1|Name=mRNA_P-fluviatile_contig12.1410.1|organism=Porterinema fluviatile SAG_2381|type=polypeptide|length=1112bp
MAEAAPLAAEGGDGDGEQEENGGEEEEEEEEEQEEEDEEEEEEEEEENGE EEVEDKGAAQESDSDGVSAKGKAKPRGGKGLARPGGEQSEDHSFDEVVSE HSKKLEELRERQKAEDGQCGGNAETRLQYLMQQSEVFTHFLDSTSFGKDK GGKGKRGGTGDGVRGRMKEHEEDKLLLATAASKARVTRLSKQPDLIKFGK MRAYQLEGLNWMIKLHDNGINGILADEMGLGKTLQSISVLAYLKEDRGIN GPHIVIVPKSTVGNWMREFKRWCPSIKTVRLLGNKTERKLVCENVLETGN FDACVASYESVLKEASTLKKIKWRYLLIDEAHRIKNENSSLSKTVRLLST QFRLLITGTPLQVWLHVVRSLLWSLWALLNFLLPDVFNSAETFDQWFNLE TDKSARDNVIKKLHTILRPFMLRRIKADVEKDLPQEGGEFESVKLYIGMT PMQRKWYKDLLNRDVGNLNTLGGPDKMRLLNILMQLRKVCNHPYLFDGAE PGPPFVNGPHLYENAGKMVLLQKLLPKLRMQGSRVLLFCQMTRLLDILED YMHLQGYDYCRIDGSTDGESRDSQMDEFNEPGSSKFLFLLSTRAGGLGIN LATADVVILYDSDWNPQVDLQAMDRAHRIGQTKPVKVFRFITEGTVEEKI VERADRKLFLDAAVIQQGRLAEKNASLDKRELMAMVKFGADEILRMDDSH GLTDESIDELLRKGEEKTEETNARIQKDMQHNLLTFKIDEEDVSTFLFEG ADHREGGSANAGTGAFINLPTRQRKSNYDVNEYYRARMDSNKNIPGVRKR KGITMHDFQFYDKEALEALQAKEHEFADRKNAIIAEIKEIRTRCKRMEAQ NGEEEHAARLEKEADSLELSPKEQEQKKKLIESAFGDWNRKDFRAFVAAT ERHGRDDTEAVVRDVCLETAKTEENVRKYIKVFWKRCRELGDHAKIMEKI EKGEKRIFRSKQIRSAIDSKINRHANPWSDLTINYYGGKGKVFTEEEDAF LLNMMHRYGYGNWEVIRMEIRKAWQFRFDWFFKSRNAAELQRRGDTLIRL VEKENEELEASTNDKMPHFTTGHGGKKRKSISSSDQGGPSSGKKKKALTS TPATGKKQRRR* back to topmRNA from alignment at P-fluviatile_contig12:1279284..1304870- Legend: UTRpolypeptideCDS Hold the cursor over a type above to highlight its positions in the sequence below. >mRNA_P-fluviatile_contig12.1410.1 ID=mRNA_P-fluviatile_contig12.1410.1|Name=mRNA_P-fluviatile_contig12.1410.1|organism=Porterinema fluviatile SAG_2381|type=mRNA|length=25587bp|location=Sequence derived from alignment at P-fluviatile_contig12:1279284..1304870- (Porterinema fluviatile SAG_2381) GCGGAGGGAGGAGGAAGCGGGGACGGGGAGGATGAGGCCGAAGCAGAAGA
GGAGGAGGATGCCGAGATGGCCGAGGCTGCGCCGCTGGCAGCAGAGGGCG
GGGACGGGGATGGGGAGCAAGAGGAGAATGGCGGCGAGGAGGAGGAGGAA
GAGGAGGAGGAGCAGGAGGAGGAGGACGAGGAGGAGGAGGAGGAGGAGGA
AGAAGAAAATGGGGAGGAGGAGGTGGAGGATAAAGGGGCAGCGCAAGAGA
GCGACTCCGACGTAGAGCTGGAAGGGTGAGCGCCTGCCATGGCGGGGGGT
ACGAGGGTGGGGTGGGGACGAGGGTGGGGGAGTATGGGGAGCGAAGTGCG
AAATCACGGTCATAATCGCATGCGTCGGTCACATTGTAGAAGGAGACGTG
GCGAAGAATGTAATACCCCTGTTCGTGAACAAAAGGGGCCCTTTTAATCA
CGAACAGGAAGTATACCCTCATTTGTCGATTCCCATCCACGAACATGGGG
GAATACCGCCATTTATCAAATCCCCTTTTGTGAAAGATGGAGGCTTTTAC
GTGTGCGAAGGGGAATACTGGTTTCGCGGCGTGGCTCTTGGGCGAGAGGG
GCGAAGTGTTTCATTGGCTGAGGGGGGGGGACTCAATTCACGCATGCCGT
AGCCGTTAGGCCATAGACCTCGCATCCCTAGCAGGCCGGATGGAGCGATT
GACCGGGGTTTCACTGGCCCAAAACCTTGCATTCGCCAAGCACGAAGCGC
CGTGATGCCTTCGGCTAGTCGCATGAAGAGGGGCAGAATCCTATGAACGT
TGGCCAACTGCTGGCTGATCTTGCACACGGATGACAGCCTCACCTGAGCT
GACATCCTTTTTTTGATGTCGCCCCAGAGACAGCCATCGGATTTTAACCC
GGCAACACCATTTCAACACTGCGCGATGCGGCCATGCCCCGTGTGAGGAG
TTCACTTCTCGACCCCGCACACATGGTGTACTCCATAGTGATAAGCTGTA
ACCTGGTTGCCTAGCTCACGTGGTAAAAAGCATGTCTTAAAGCGCCGTCA
CCGGTGCCAACCCGACCCCTTGCCTCGCGGTCGGGTCGGTTGCATCTCTT
ACGGTAGCGTGGGGGGGTGTACTCATAGTCGTGCATGCCGTAGTCGTTAG
ACCATTGACCTCGCATCCCTACAAAGCCGGGACGGAGCACGCCGGGTTCT
CACCGGACCAGGCTCTCACACCACCAAGCGCGAAGCGCCGTGAGGTATTC
GGCGAGTCGCATGAAGGGTGCGCTGCATCCTGCTAAGGGTGTTCGGCATC
TTGTGCTTACTTCCATGCATACGGATGACAGCTGCGTATGGGTTATTTAT
TTTCTGGTGCTTTCACTTCCAGAGACAGTTGTAAGCACTATGTAACTGCC
TCGAGGGTGCTTGACCATTTTGACACAACGTGGTGCGATCATCCCCCTTG
CACGGAGTGAGGGTTCTCCACTCCGCACAACATGATCTTCTCGACCACCA
TTATGGTTACCGCCAAAAACCAGAGGAAAAAAAAAAGACGGTAACCTGGT
TGCCGAGTTCACGAAGTGAATTGGCTTGTTTTACAACGTCGTTGCCACGC
GACGAAAACCCAATCCCGATGGCAAACACCGAGATGAGAGCCATCAGGCG
AGGGGAGGGGGCATTTTTTGAATCGACCACGCATTGACGGCGCCCCTTTC
GACGACGGAAGGAAGGTGAGTTTGCTCCGAGTATAGTGACACTACCTTTT
TGTGCGTGTCATCCTTGTTTGCTCCTGAAAAGCCATGGCATGTTCATTGA
GACACGACGATATTTCGCGTGTCTCTCTGCAGGATTGATATGGAGGGCAT
GGAAGGGGACCAGGAAGCGGAGGACGAGGAGGACGAGGCGGACGAAGAGG
AGGAGGACGAGGAGGAGGACGAGACTTCTGGCGATGTGGGCGGGCAGCCG
GATGAAAGAGAGGATGATGAAGGTGACCAGACACATTCAAGGCGAATGTG
CTTCCAAAGTTTGGGCTCAAGCAATTGAGCGAATACACGTTGTTTCTTTC
TTTCTAATCACTCTGATGTAGACTCCGGTCCCACATTTATTCTGGACGCC
GGTTCCACATTTATTCTGGACGCCGTTTCCACATTTATTCTGGACGCCGG
CAATGTCAACTTCTGTATTGTGTGAGATTGCCAGTGGGGCCGCACACAGG
AGAGCTAGCTAAATCAGTCGGAGTCATTTGCTTTCCCTTTGTTGCCGTGC
ACGCATTAAGAAGGGCAAAACAGATGCTCGGTCTTGCGCATGAGATATTC
TCACCCCGTGATGAAAGTCGCTCGAGGATACACACGTTTGATGTTTTGCA
GCACCCTTTGCGGTGATGTGATCCCGGCTGGGAAGCCCACGCGACGAATT
TGGTGTTTCGGCCGTGAACGGGTACATGAAACCGATCAGAGTACACTACC
GCTCCCTAACAAGTTGCCACTCGTGTTGCTGGCGTCATTGCCTTCGTCGT
CGTCGACCACCCACTGATCGGCGTTGTTCGGGGACGATAGTATGGCTTCC
ATTTACCTGTCTCAAACCATCACCGCTTGTCACCGTCGCTCACGCGATAA
TGGGCGTTACACGTGGACCCTGAAGCATCTACTACCATGCTTCAAACATT
CCATTCCCCCATCCGAAACCACCATCTCTTGTCGCCGTCGTTGTTGCTGC
CATTGTTAACGCCACCGCCCACCCATTCAGCGGCGGCTATGCCGCCGCCT
CCCGGAAAGGGGGTCTCCGCAAAGGGAAAAGCCAAGCCTAGGGGAGGCAA
GGGCTTGGCGAGGCCCGGGGGAGAGCAGAGCGAAGACCACTCTTTCGACG
AGGTGGTGTCAGAACACTCCAAGAAGCTCGAGGAGCTGAGGGAGAGGCAG
AAGGCGGAGGACGGGCAATGCGGCGGGAACGCGGAGACTCGCCTGCAGTA
CCTAATGCAGCAGTCGGAGGTGTTTACGCACTTCTTGGATAGGTGTGTGG
TGCAGCACAGCAGTCGTCCCCTCTTTGAGGCCTCTCTGAGGCCTCATTGG
GGGTATTTTGGCTTCTTTTTCTGAACCGGAGAGCGCGGTGAGCTGCCGTC
TCCCAATCTTCTGGACAACTTACAAGTATTGAGACGGACGGCAAGCGCTT
TTCAAAGCATACATACGACGCCTCTTTTTCCGTTCACCCCCCCCCCCCGC
CCCCACCCGAGGTGCGAGGTCAATGGTCTAACGACTACGGCATGCACGAC
TATGAGTACACCCCCCCACCCGCCCCCACCCTGCTCGGCGGTGACAATTT
TCTTGAGTCTTGCTTCGTGTTTGCTTTGTGTTTCTTCCGTGTGGCACGAC
CTTCGGGAAGAACAAGCCCCCGCAAGATGACAGTATTGTCGGTTTGTTGA
CGCCTCCCGTGTGCAGCACGAGCTTCGCAAAAACCAGTCCCCCCTAGAAA
CGACACCTTTCTCGGTTTTGTTGACGCTCCCCGTGTGCAGCACAAGCTTC
GGGAAGGACAAGGGCGGCAAGGGTAAGAGGGGGGGGACGGGGGACGGGGT
GCGGGGGCGCATGAAGGAGCACGAGGAGGACAAGCTTCTGTTGGCAACGG
CGGCAAGCAAGGCGAGGGTGACGCGGCTCTCCAAGCAGCCCGACCTCATC
AAGTGAGTTTGCCGCGGGGAGGGAGGGAGGGGATGAGAGAGTGAAAGACG
GGGAGAGGGGGCGGGGGCAGAGCGCACGCGCGCGAGAGAGAGAACGAGAG
AGAGAGAGAGAGAGAGAGAGAGAGAGAGAGAGAATAACGGCCGAGGTTAT
CTCCAAGACCACAGAAGAACGGGACCAGAGCAGTATGTTCTGTGGACGAG
CGAATTGATGCAGATGGAAGTAGGGAGAGAGAGACCTAAAGGGACAGAGG
AGGGAGAAATGTGTTACGCTCACGAAGCCCCTGCTCGAGCTTCCAGTCTA
GAGATGGATCAGCAACGTTTTTGCCACTATTTCGCGACACTGCCGTGCAA
ATGCGACGATGGTGTCCGCCTATCCTTTATTTCGCAAATTCCACGCGAAG
GGGCCGAGTAAGCACCTGAAGTCGTTCGAAGTAACTCCGTTGAAGTCAAC
TATCTGTGCCAACGACGCGATTTGTCTCGGAAGCATGGTGGCCCCGAACC
CTTGCCAATGGGATACCGTTCCCAGACCCTTCAGGATTGACACGTCCCTA
CTTGAGACGCACTTTTTCACAAGGTCAAGGAATTGTGGGGTCTTCAAGGC
GGCGCCGGCTATGTGCGTTACTTGCTCGGGGTTTTATTCTTCACTTGCCT
CGGGTTTGTCAGGTTCGGCAAGATGAGGGCTTACCAGCTGGAGGGGCTGA
ACTGGATGATCAAGTTGCACGACAACGGGATCAACGGAATCCTGGCCGAC
GAGGTGTGGCATGAATGCAGTGGGTGCATTGTTGCAATAATAGTATTGCC
AAAAGTCCCCTCTCACAAGGGAGGGGCCGGTGCAAGACGGTGGTGGGGGC
AGCGAACAACGATTGCTGACATCGGGCAACCGCCATGTATCGAACAGGGG
GTTGTACAAAGAACAGAGTCAGGCGTGTGGGGGAACTTTCATGGCACACG
ATTAAATCCGCCGTAGCTCGCATACCCGCCTTATTCAAACCGCCTTATTT
CACCCCCACTGCTGTATAGAGTTGCAGTAGCGGCAATGATGTTGCAGAGG
GTCCGAATTACCGAAAAAGTTATCTCGTAAGTCATCCGGCGTCCTCTTAC
GATGTCGACCTATTTCGCAGCATACATTGGCTTCAGAGGTTCGTCACAAG
CGATTTTGGCTCCTTTGTATGAAGGCCTCCTCTCATTTCGATTCTCTTCG
CAGGGTCGCCTTCGATTATCTTTTAAGCGCCGCTCCTTAGAAGACTTGTC
GCGGTTTTTGCCCCTCCCCGTAATATTTGTCCGTTTGGTTTTGTCTTTCC
CTTGCTGGCATACTCTACGCTCCTCTGTTCCCATTGCAAACGCCGTCTCT
CTCGGTCGAAATCCGTCCATTCAGCAGCAACGTTTGTTTCTTGTTAAATT
TCCGCCGTCGCTTCTGCTCCGTTTTTGCCAATCGTGTCCAACGATCGCCG
TGTTTCCTTGTGTCACGCTTTTGCCTCACCCCACCGCTCAAGTTTCCGCT
CGTTCGCTGGGCCTGCCTGACCTTGCATTCCCTTCCGGATGGAAGTTGGC
AAGACCTTGCAGAGCATTTCGATGCTACTTAGGGCTAACGTTAGGGTTAG
GGTTAGTGGAGTTGTCTATTGGTTCGACTCTGTCTTTCTCTCTCAGGAGG
TTTCTTTTCACTTTCCCTAACCCTGACCGTAAAGTCAAACCTATCCCTTG
TCCTGACCCTGAACCTAACTACCCCTAAACTTTATCCCGGCTTGCCTTCC
CCAGATGGGATTAGGCAAGACTCTCCAAAGCATATCGGTGCTCGCCTACC
TCAAGGAGGACCGGGGCATCAACGGGCCGCATATCGTCATCGTCCCCAAG
TCCACGGTGAGAATTGCGCCGCGAAGAGTGCTCCTACGAGCGATGTTCAA
CGTGAAAACAAGAAGTGCGAAAGCTGTTAAGGGGGGCCATGGCGGTTGGG
TGTGGCGTCGCGTGGACAAAAGCCCCCCTTTTTGTCTTCACTATCTTTTA
TTTATTTATTTTTTGACGGAATAACTCTACACATATTTCGTCGTCGCCCG
TCTGACTTGCCATAAGTATTAACACGAAGAATAAAAACAGCGAAACTCCC
AACGAATCAGAAGGACAAAAAAAAGCACATATACCACACATATTAAATTT
TGCTCGTCTTGATAAACTGCGCAAGGTGGGCAACTGGATGCGCGAGTTTA
AGAGGTGGTGTCCCTCGATCAAGACGGTGAGGCTGCTGGGGAACAAGACC
GAGAGGAAGCTGGTGTGCGAGAACGTGCTGGAGACCGGCAACTTCGATGC
GTGCGTGGCTTCGTACGAGAGCGTCCTCAAAGAGGCGTCCACCCTCAAGA
AGATCAAGTGAGGGGGTAGGCGAGAGCGAGGGTGGTATGGAAGAACGATA
GGTGTGTGTGTGTGCGTGTGTGATTGTTGAACGATACGCGGGGCGTCGAC
CCACCCGCGGAGTAGACGAGCGAGAGAGACGGTGCGGAAGAAAGCGGAAT
GTGTGTTGAATGACACGCAGGCCATCCCTCCCTGGGGGAGTATCGGGTGA
GGGGAGTAGACGATAGAGAGGTCGGTGTGGCAGAAGACGAGATGTGCGTT
GAAGAATATGCGGCTCACCCGTTCTCCAGAAAAGATCGAGCGTGCGAGGA
GACAAAAGCGACGGGGGCGAAGAGCTTCGCAGTAGTCGACATGCTCTTTA
AGACGATGGTAGCCGCAGCTGCAAGAACTATTGTTTTCATTCCCCTGAAC
ACAAAAAATGGTCATGGAATACCCCCTTTTTTTTTTTGTTCTTATGTGGA
ATACGCATTTGTTTTTTTATCTTCGTTTGTGGAATACCCATTTGCTTTTT
CATGTTCGTATGTGAAATACCCATTTGTTTTTAATGTCCACATGTGAAAG
GGGGGTGTGCTGCATGCGCTTCTGTTGCTAAAGCTTGACGTAAACGAATC
TGACCTTGCTTTTCATCAGCTCGAAAAGTGAAAAAGTGAAAAATGAAAAA
ATGAAAGCCCGTTCTTTTGCCTGTGCGTTAGGTGGCGGTATCTGCTGATC
GACGAGGCCCACCGCATCAAGAACGAGAACTCCTCCCTGTCCAAGACGGT
CAGGCTCCTGTCCACGCAGTTCCGCCTGCTCATAACGGGCACCCCCCTGC
AGGTGTGGCTGCATGTTGTGCGCTCATTATTGTGGAGTGTTCCGGTTTTT
TTGCGCGATACCGGTGCAGGTACGCTTGGATGTGGAGTGCTTGCACGAAA
GCTTTTTACATGGCGCGCTCGTGTCATTTGGATTTTGAAGGTCTACGACT
TTTATCGCAGGCGTTAGTGACACCCGGAGGAGCGACTTTCGTACCGTGGG
AGGGGGGGGCGCTTGCTTGAGCACGTACCCCCTACCTTTCTTTGTATCCG
TGGCGATACGGCGGCACCCCACAGTTGGTTCGTAACTGAGTCTACAAGTC
GCATCAGAATCAGAGCAGATTGGAAGTCGACACGTTTCTCCTCTGCTTGT
CCAGCTTTTCTCTCTCCTTCTGCTTCCATCTCTGTTTCTCTCGCTCCCCT
CTCTCTCCCTGCTTCGCTGCTCTCGTCTGTCTCGCCTGCATTTTTCTTCT
TTTTCAAATTCAAGCAACAGTTTACACGATCGTCACCTCGCCCGCCGCTT
TTTTGACGCGTGTGTGGTCGCATGGCGCTGCCCCCGGCATACCTGGCGTT
GGGGGCGTGGTGTTTGTCCTCTACCGTTATTTCTCAGAACAATCTGCACG
AGTTGTGGGCCCTGCTGAACTTCTTGCTGCCGGACGTGTTCAACAGCGCC
GAGACTTTCGACCAATGGTTCAAGTGAGTTACCTTGCTGCCCTGCAGGCG
GCTTCGTCTCGCTCCCCCCCCCCGCCGAATAAATAAACAAGGCAAAGGGC
TTTTGATTTTTTTTTTTTCTTACTTGTTTGGCGGGAAGTTTCACGGGATG
GGGTTTTGGTGCGAGAATTTCCAAGAATCATTAAAAATTGTTCAACTCTG
ACCATCCTTTGCTTAAGTTGACAACGAAAGAACAGACGTTTTCTATCACC
TCACACGAGAGACACACGTGAGTGAGCGCGATCAGTGGCCTGGCCGGGAT
GGAAGACGATCAGCTGCCACCCGCCCCCCCTCTCGGGAAAAAAAACTTGC
TGTGGTGATTTTTCTGACGCAAGTCCCGTGGATAAACTCCCACCACCACA
AGCGTCTGAAAGACCCCCCCGACTTTTTGGCACGCATTTGATCCGCAGCA
TGGACGGAATTCTGGCCAAGCTGTAAACAGGGCAAATGATACTGGGTAGT
GTGGGGAACCAGAGCCGGGATAATGGTTTGTCACCTAATCACTCCAAATC
CCTGCACTGTTCAAGCAGGTTAAGCTCCTTCCAGGCTCCCTCGTACGCGA
TTTAAAATTGTGGCACATCCCCGGTTCAGCGGCGAGCGTAGTGAACAGCA
TATTCATGCCGAATTGGCAGGGCTCACGAGGCAGGAGAGGCACAGACCGC
ATGACATTACCGAGAGCGGGCCGATGTAGTGCGGGTATGGGATAAGCGAT
TTCACCGCACTCTGGCGGTCCCCCGCACAAATCAGAAGTAGGTAAATAAG
TGGATTTTTAGTGCATGAAAGCGCTTTTCTACCAACTGATGTCACCCGCA
CTATACCGGGGACCCGCACCCCTAAACCCGCACTATACGCCCCCCTCCCA
CACTATATTCACGTCGGGGGAGATGGAGCAGGGGGCCCGAGAAGTATGGT
TTCGAGAAGTGAATCACGTATGGTGGTTTCTAGGGGACTCGCGGACGCCA
GAATGCAAGCTCTCATCTGATGCATGGCGAAGAGCGGGAAAATACTGAGT
TTCGGGGGGGTCTCGAAGGAGTAGGCAGAGCGGGGGGTTGAAAGGCGTTT
CGGCCTGCCCTCGCGGAGGAGCACTCTGCAACCACGGGGTATGCGTTACC
GCAGATGGTTGCGGTGTCGTTCCCTCTCACGGTAGATCTTCACCCCCAGG
CCCAGCTGGAGCTGCGGGTGGACTTGCACCTCTTCGGGAGGCTCGCCCTC
CTCCACACTCTCAGCTTGGTCGAATGCAAGGCAGAACAACCATGACCAGT
AGGTCCCCGTTGGCAGCTTCAGCTGGACCCGGGGGGGCACCTACCTCGAG
GGGGACCGACCACGCACTGGTTGATGGCAACGCCTACCTCATGGTCGAAA
TTTTTTCCTACGCTGCTGGAAAGGCGCCGCCGCCGCCGCCGCCCATGGAG
TGTCGATGCCCTAGGGTTGGTTTACCCCTCGTGTCGAGCTTCAACACCCG
GTTCGATCGGAATTTCTCGAGAGGCACTCGCTTTCCCATGCTGTCATTTG
GTCGCGGCTTCTGAGACCAAACGGACAGCGTGCATGCTGTCCACTTGGCC
AAGTCTTCTCATCGACCAAGTGGAGAGCGTGACATATACTGTACACTTTG
CTCAGTCTCATGATCGACTAAGTGGGACAGCGTGGAGGAGGGATTGACTT
GGAACGCGTTCCCAATCGAACCAGCAGCTTCAGCTGGACCTTAGGGAGAC
CTTCAGCTGGACCTTATGGCGGCCTATCTTGAGGGGGAACGAACACGTAA
CGCTCAGCAGTAGTTGGCCTACCAAATAGTCGAGAACTCCTCTTACGCTG
GGCAAAGGCCTGTATTTATAGTGAAATTTCCAACCCTTTTCTTGTCCTTC
CCCCTCCCCCTCCCATCTCGCCCGCTCCGGCTCCTCCCCCTGGCCCTCGC
CTTTCTTTACTCCCCCCCCACCGTTTCTGACCCTCCCCTGCCGCCCGTCC
CTTTCGTACCCTCCATCTCCCGTTGTATGCCGCTCGTTCCTTCGTTCCGC
TTCCGTGCCTGGCAAATGATATTCCCGTGGGGTTTCCCGCTCGTGGGTTA
TGCTTTGCGTCGTGTTGCGCGAAAATACCCTTGCCTGGGTCGTGGGACCG
GCCCACCTCCTTCCACCACCCCTTCGCCGACGAACACATGGTTGTGCATT
CATGCGGCGATTGTGCTAAAACCGCGTCCGTGCGTCGTGCCGTGTATTCG
TTGCCGTGTGCCCCTCTGTCTGCCGCGGCACGATCGGTGGGTCGATTCGA
TTCGATACGACTCAGCCTGGAGACCGACAAAAGCGCCCGCGACAACGTCA
TCAAGAAACTCCACACCATCTTGAGGCCCTTCATGCTCCGCCGCATCAAG
GCCGACGTGGAGAAGGACCTTCCCCAAGAAGGAGGCGAGTTCGAGTCCGT
TGGTCAGGTCGTTTTTTTTTTTTTCACAGTTTTTTTTTCTATATCAAAGC
AGACTTGGAGAATAATCTTATTTCCACAGTAGGCAAGTTTCAGTCTTTTG
GTCGTTTCATTCTCGTTCTGTTTCCCTTCGTTTCTTGCACCAAAGCCCAG
CCGCCGTGGAGAGGAATCGGAAGCCTCAAGCAGAGGGATATATTGTCTGC
TTAGGCCTATTGAACCCGTCGATCTGGACACTCACGGCACTTGAAGGGAA
ACGAGAGGCCGAAACCTCCTCGTTCAGCGCGTGGGACGGAACTCCTGCCC
GCAACCCGTGCCTGACCTTATTCAAAGGCGAACGCTGCCGTGCTCACTGT
ATTGGCCGACGATCACCCGCGACTGCAAAGGCGACCCTCGCAGTCCATCG
CTTGGGACGGCGGCGGTGTGGTGCTTTAACAATCGTTTGATCCGATGGGG
TCCACCCCATGTATCATTCGCGAACCAACTTCCTGCCTTGCTTGGACGTC
ATTCCATCCGTTTCCTGTGCCATGGTCAACGAACGCAAACTTGCGGTTGA
CCCCGAAAACCCGAAGCGACGTCCCCCCTCCCCTGAAACACCGCCGAGGT
ACCTTCGCAGCCCCGATCGCTTCCCACGAAGTATAGTATCGGCCGCTTCC
GGTTCTTGGTTGGCTTCAGGCTCAATCAGGCTCAATCGGCTATTGGCCGG
TGTCGTCGATGAGGCAATGGCACGGGACACGATGGTCATGTGCCGCTGAA
TGCGCATGCCCCATGTACTTTGGGCAGGCTCACCGTGCGATCCACGACAA
CCGTCTTCCTCGCCGCCGCCTTCTTCTTGACTCCGGCCTGTACCCGATCA
GCTGTCGCCGATGGGCATCGGTCGATCCGTTTCCTCTTAACAGGGTCGAC
GAACACCAACTTTAGCTTGACCTCGGAACCTTGAGCGTAGGCTCCCCCTT
GAAACACCTGCGAGGCATCATCCCAGCCCACATCGCTTGCAAAGTGGAAC
CGAAAGCTTCCAGTTCATCTCTCTCATCACGCGCAATGAGCCCCGGGCCG
GATTCATCGGTGTTCGCGGCGGTGCGGGACATCACGGATCGCGTGGTGAT
CCTGCCCAAAACTGCGCGGTTCGGACAGCCTCACCGTGAGATCCGTGAGG
ATCGTGTCCCATACCACCGCCTCGTCAGTGATCCCGGTCTCCAGCCGATC
GAGCCTGGCACCACCGACGAACTCAGAGGCCGGGCGCTCAGATTTTTTTC
ATTTCGAAGCGCAAAGGGCCGTCGGTATGGCGGTTGGGACTTTTGTTGCG
GTCGAGACTCTTTTTTCCCTTGCTTCACCGTGGCTGCTCACCTATTTTGA
GTCAGCTGCAGAAGCCAAACGTTCCGGGTCGAAATCAGGCCGATGTGTTT
CTCTTTTTTCTCGAATTTCCGCCGTCTCCACGAAATATCCACACGCTTGC
ATGAGCCCCCACGTGACCCCCACCCCGAAAAGATGTCTCGACGATGGTAA
CTATCACTAGAACTAGCTTCTGGTCGCAAGCAATACAGATTCTAACGATG
GTGTTGGTGAAATATTGTTGGTTATTGCATTGACGTATCGAAAGCCTCAG
TTAACCCTCACGAAGGTGAAGCTACACAGCGGAATGACTCCAGAGGTGAC
AGCATCCTTTTCTTCCCCCACCTAGGCTTGCATTACGTAGGCGTCTTTTT
TCCGATTTGGATACAAGTAGCTCTAACTTCATGCTTTTGGTATAAAGTCT
CCCTCTCCCTCCTCCAACAATCCATCAATCGAGTCTACCCCACCGCAGGT
GAAGCTGAAGATCGGAATGATGTAGGAGGAAAATCGCATTACTTTCTGCG
GCCCACCATGGGTAAGGCTGTGCACCGCGGGATGACACCGATGCAGCGAA
AAGGTGGAATATCAATAAAACGGAAATGATGATCTTTTGATGAAAATGGC
AGTCAAGCAATGGAAGTGGCAACAGCCTCTTTGATTCCCCTGCGCAGGTG
AAGCTGTACATCGGAATGACGCCGATGCAGCGAAAGTGGTACAAGGACCT
GCTCAACAGGGACGTGGGGAACCTCAACACCCTCGGAGGCCCGGACAAGA
TGCGCCTCCTCAACATCCTCATGCAACTCCGGAAGGTGGACTACATATCT
CAATGTGTCAGCGTGCATCTCAGGGGCGTGAACATCACTCGACGCCGTTT
TCCAATTTGGGGCAGATGAACCATCAACTCTGTCGATACAGAGAAAACCA
CTACACTTTTGAGCTGGAAGCGATTTCCTGTTAGACCTAGTGGTGGGATT
ATTTTGCCACCTACAAACGATGTTGTTAAGATGTGGAAGTACTACTATTT
CTTCAGTCGTTTTTGCCGTCCCAAAGTGTGCCTGGAAATGCTGTTTCACG
CGAAGGCGACGAAATGTTCCGTTCACTTGGTCGGTCAATCACTGTGCGCA
CGTCTGTGCAGGTGTGTAATCACCCCTACCTCTTCGACGGCGCGGAGCCT
GGACCCCCCTTCGTCAACGGTCCCCACCTCTACGAAAACGCGGGGAAGGT
GCGCGCTGAGCGACGGGGGCGCAGTGGGGGGTTCTGTCGCTTAATTTTTT
GGCGTTTGGGGGGGTGGGCGGACGGGGGTATTTGCGTGGCACCTGACCCG
AAAGTGCCGGACAAGGCGTGCCGGGAGAGGGGGTGGACGTGCACTGGGTA
TCGGTGGTGTTGGGCAAGCGCGTACCCTTTCCGAGGGAGCGGGGCGCAGT
GGGGACTTAATCTCGTTGGTTGTGTCGCGCCTGCTGCGAACGTGCGAAAA
CAGTTGTGCTGGTGGGGGGGGAGGTGTACTCCAGTCACGCATGCCGTAGC
CTTTAGAGCATAAACCCCCATCCCTGCTAGCCCGGAACGGAGTTGATTTG
TCGGGTTTTCACCGGCCCAGGCTCTTGCATTCACCAAACCGAAGCGCCGG
GGGGGTCGCGATGTAGGTTGGAATTTGTTGGGTTGGCGGGTCGGCAGCTT
TTGCGCCGAATGATGAATCGTGATAAAGGTGAATTGAAGAGGGCCCGTGT
GGATACGACATGAGGCTTTTCCCTCCCTGGGTCGGCAGCTTTTGCGCCGG
ATGATGAATCGTGATAAAGGTGAATTGAAGAGGGCCCGTGTGGATAAGAA
ATGAGGTTTTTCCCTCCCTGCGTCTTGCTGAGTTTTTTTAAGAGGGGATG
CTCGAAGAACGGGGGAGAAGAGAGAAATTTGCGCGCACACAAGTCTCGAG
TCCCTCAAGTCAGCGGGTGAGAAATAACGTCACCAGCGGTAGTGGGGCAC
GTGTCCATGTTTTATATCGAGGAACAATGATTTCCTCACGATTCGCAGCG
CGTTCTGCGTTGCGTGCACTTGACAAACGAATACTTCCAGAACCTCTGTC
TCCAAGAAAGAGCTTGATTTGAACTAACAAGACGTGTGACACTGCTTTCT
GGCTTCACCACGTACACATAAATCGATTCGATGACGCTTGCGCGAAGCGA
TGTTTCTCGTCTCATGTCACCTGGTACTCTCTGCTCCTCTTAATTTCAGA
AGTTGCCGCGTGCCGACTTTTTCATGTCTCGAAGCACCTTTCGCCCTTCC
CCCTCCGCTGACTTCAGATGGTGCTGCTGCAGAAGCTGCTCCCGAAGCTC
AGGATGCAGGGCAGCAGGGTGCTGCTCTTCTGCCAGATGACGCGACTTCT
CGACATCTTGGAGGTGAATACAGGCCGAAAATCTTCCCTTCCCCGTGTTC
CTACATGATTCCAGACGCCGGACGAGCTCGGTAATCGTCACGTCGTGCTC
TGTGCATCACAGTGCATTCTTATCATTTCTCTTGCCCTCTCTTCGCCTGG
GGGGGGGGAAGGATATATAACCCCATCGCGACCCTGGCTCCACTCGCCGG
GCGTTTTCTGTGTTCGCAGGAGTGCTACAGCAACACATTGCCGCCAGATC
TGAACGGTATGGGTTGGGCATTGTTTGGACTTGAGACCCTTGATTACTTT
GTGCCCATCATGGACGGAAGTGTATGCCCAAATTGCCTGTGTATCAAACC
CACTCGCACCTCCCATGTTGCGATCATGCAACTGTCCGGAATTGCGCGTG
CATCGCTAAAGGGCCGACTACCCCTTCATTGGCGTCAATCACATCGTGTC
CCTGATCATACCCTCACCCCATTGTGCAGGACCACATGCGCCCCCAAGTG
TATGACGGCCCAAGCAACGCCTCCATCCAGAGGATGCTTTCCAGTTTGCA
TACAGCTATCCCTGTCGACACCTTGCCCCTGTGTGCAGGACTGCATGCAC
CTCCCAAGTACGACTGCTCTTGCCTTTACATCAACGTGCATCAACCGAGA
TGAATCCCTGATCATACCCCTACCTCTGTTTTGTTTAGGACCACTTGCGC
CTCAAAGTGTAAGACTACCCTAACAATGCTCCCAGGATGCTTTCCAGTTT
GCATAACGCAAACGTTATCCCTGCCCACCCCTCCTTGTTCAGGACTGCAT
GCGCCTCCCAAGGGTACGACTGCCCTCGCCTTTGCATCAACTTGCATCAA
CCGAGATGAATCCCTGACCACGCCCTCACCCCTGGTTTGCAGGACTACAT
GCACCTCCAAGGATACGACTACTGCCGCATCGACGGGTCCACGGATGGCG
AATCTCGCGACTCCCAGATGGACGAGTTTAACGAGCCCGGCTCGTCCAAG
TTCCTCTTCCTCCTGTCCACGCGCGCCGGAGGTCTCGGCATCAACCTCGC
TACCGCCGACGTGGTCATCCTCTACGACTCCGACTGGAACCCGCAGGTTA
TTAGGACAAAATTACTGTGCTGCTGCTGCTGCTGCTGCTGCTGCTGCTGC
TGCTGCTCTTGCCTTGATGACTCCTCGTTTTACTGTAATCAACCGTCACT
TTAAGCTGCCTGCGCCTTGTGGTGTGAACTTGAGCGTTGACTGTTGCGAG
AGCGTTGGACTTGGCCTACTGCTGCTGCGGTGGCTCCTCGTCCCCCGTGC
TGCCTCTTCCCTAGACAAGACTGCAACCCGATGACCCGCGGTTTGATGCA
CCTGGCGCGCGCCTTCTTCTCACAAGTCACAGTCTTTTCCCTCCCTCCAT
CGTCACGCCCCCCTCCAAGCAATATATCTCTTCGCACAACCAGCAGGTGG
ATCTGCAGGCGATAGACCGGGCGCACCCTGCTCTGTCAACAAGTTACTGT
CTCCAACTCTAACCCCTCATTGTCACGCCCCCCTACCCCCGCCCTACCCC
TCGTCGTCACGACTCCCCTCTTGGACAACAAATTGAGCAGGTGGACCTGC
AGGCGATGGACCGGGCACACCGCATCGGGCAGACCAAGCCCGTGAAGGTG
TTCCGCTTCATCACGGAAGGCACCGTGGAGGAGAAGATCGTGGAAAGGGC
CGACCGAAAGCTGTTCCTCGATGCCGCCGTCATCCAGCAGGGGAGGCTCG
CCGAGAAGAACGCCTCCCTTGACAAGGTAGGGGTGGCAATGTGCTGTAAG
AATCAGAGGCTCGCCGAGAAAACGCCTCTCGAGACAGGGAAAAGGAAGGG
CGGAGGGCATCATACTGAGGGAGCGGATTGCCGCGAGAACGCCACTTTCA
TCGTAGAGGGAGGGAGGTTGGGTGGGGGTACTGCGCTGGGATAACCGGAG
GCTTGCCGAAAAGATTGCCTCCCTCGTACTACTGGAGTATGTTTTTTAGG
GCGACGTGCTACTGCTGCTGCCGCCGCCGCGAAATAGCGCGAGCTGATGG
CGCTCAATGTCAAATTTGGGTTCATCCCGTTGTTTTCGATTGTGCTGCTA
TTGCCGCAACTTCTGCTGCTGCTGCCACCCTGAGACAGCGCGAGCTGATG
GCGATGGTGAAGTTCGGTGCGGACGAAATCCTTCGCATGGACGACAGCCA
CGGTCTCACGGACGAGAGCATCGACGAGCTGCTGCGGAAGGGGGAGGAGA
AGACGGAGGAGACCAACGCTAGGATCCAGAAGGACATGCAGGTGTGTGTC
TGTCCCGTGTTGATCTAACATAGTCTACCCCCGCCCCCCTTGTTTGGATG
TTCCTCAACCCCCCCCGCGCCCCTCTCCTGTGATTGCGTCCTTGAGCACC
CCCTCCTGTCCCTTGCCTTGCGCTAGCAATAGCAGGCTGCCGAAGCAGCA
CCCGAAGCCGTGGTTTACCGACCTTCGGCGGCAGCGCACGATGCAAACAC
CCCGATTGTTCGAAGCTTGGCAACATCTGTTGTGTTAATATCCGTTCGCG
AGCTTAGACAGTTTCTGATGATTCTCTGTTGATTTTTGGAAGAGCTTGAC
CTTAGTATCCGCGGCGGTGTATATTCCTTTTTTGTGCGCGTCCTTTTCAG
GCTGGGTGTTGTTTTTTTCTTCAAAATGAACGGGCCTCCGCCCACCAGAT
TTCTTTTGGCCGAACAAATTCCACAAATATCGTTCAACAAGCAACCCCAC
GCAAAGCTCTGGGAGACCCGCGGTACAGATTCGCACGGATGAGGTTTATC
TTGGATGCCGACTGCGTTCACACAAAATGGCATTCATTGTAAGGCGGTAC
TGGCATAGTTTCTTAGTTGATACTTTTCTTTTTTGGCCCTTCCATTCTTT
TGCGTCCTCAGGCCGTTTCAAGGTGTGACTTCCCCGTTTCTATTTTCAAA
TCAAACTGAAAATTCAGCACAACCTGGTTGCCTTCAAAATCGTTGTCTAA
TCGTCATATATACATATATGTGTGTATACATATTTTCGCCCTTCCATTGT
TTTGCGTCCGCAGCACAACCTGCTGACCTTCAAGATCGACGAGGAAGACG
TGAGCACCTTCTTGTTTGAGGGCGCCGACCACCGGGAGGGGGGCTCCGCG
AACGGTAAGCACAGTCGACATTCTGAAATTTTTTCCCCGAGACTGATTGG
TCTGATTGGTGTTTTTTTTCTGTGCGTGTTTTATTTTTATTTTTATTTTT
TTGGCGTGGCACCATGCTCCCGGTAAAATCAAGTTTGAGCGCCGAGTATC
CTTGACTTGATGTCCTAATGTCGGGAGTGCGTTTGTTTCAGACAATGTAG
ACAGTCCCGTTGTGATACAAGGTTGTTGTCTTGGCCAGCCGTCTTGTCCG
TGGCTGACGACCATCGAGAGGGGGGCTCCGCGGACCGTTAGTACATTGTA
CTCCCCTTGATCAATGGCAGATATCTTTGGTTCCTGTTTGAGACCATGCT
TGTAAGTCAGGCCGAAAGTTCTCGCTTTGATGTCCTTTAAGCGGGATGAC
TGTATTTGTTGCAGAGGATAATGGTCAGGTCGTGTCACTTAGATTTGTTG
TGGCCGGCGATACTGGCTGTCATGACTCACGGAAATGTGGCAGGACTTCA
GGGCAATACCTTGTTCCTGCAGCCCCTGATCCTTCCGGGGGGGAGACAGG
CGCAAATTGGATTCTCTCCATCATTTGCAAAACATGATGGCTGTAAACGT
TCCGGTGTTTGCTTCTGTGCGGCAATTGTTGGATGCGCAGAAACAAAAAT
GCTTGAGAATATACGAATGTGAAAAACAAACAAAAAAAGCAGGGACGGGA
GCGTTCATCAACCTCCCCACGAGGCAGCGCAAGAGCAACTACGACGTGAA
CGAGTACTACCGCGCCCGCATGGACTCCAATAAGAACATCCCCGGCGTCC
GCAAGCGCAAGGTGTAAAATATTGACCATTTTCTTTCATGATTGTAAATG
GTCGGTGTAGTCATGATCCTTGTCATTTTGCCACTCGTGCTTTTTTTATC
AGTCTCGAACAAGACCATCCTTGGCGTGATTATCGCGAGATACGGAATGG
AATAGGGCTGACTCACGGGGCTCCGCGGGTTGCTTTCTTTAAGAACCTTC
CAAGAATTTTTCCATATAGCCGGCCGTGTAGTGAGAGCTCTCCTCAAAAA
TCTGTTTCGTGGCTTGTCTCACCTACATTATTTTGTGCGATTTGATTTGA
TGTTCTTGTGGCGAGCTGCAGGGCATCACTATGCACGACTTCCAGTTCTA
CGACAAGGAGGCATTGGAGGCGCTGCAGGCGAAGGAGCACGAGTTCGCTG
ACAGGAAGAACGCCATTATCGCAGAGATCAAGGTGACAATCACGTTATTG
ACAATGCCGTTGTTGTTATTGTGGTTTTGATGTTGTCATACTAGGAAGTA
TGGTATTGTTGTGTAAGTTGCTGTTGAAACCATTATCTCCCTTGCTGTCA
AGTATCTTGTGTCTCGGAATCCAAAGCCATTTCTTATGATTTTTTTTGCT
CTCATGTAGTAACAGGCAGCTCTTGCCCCTGATAATTACTGGGCGCCAGT
CTAACCGGCCTTGCCTTACGCCTTGAACAACGGATAGAAAACCCATGCTC
CAAGTAGAGCGGGAGCACTTTTGAACTCCGCATCATTTGAGCGTTTGACA
TATGGAAACCCTCCTCCTGCCCCCCCTGTCCCTCGTGTTGTTTTGGAGCA
GGAGATCAGGACGAGGTGCAAGAGGATGGAGGCACAGAACGGCGAGGAGG
AGCACGCGGCACGCCTGGAGAAGGAAGCTGACTCGGTGAGCTAGGCCGCC
AAGGGGTAGCGAGGGTCCAAGAGGCAGGCGTGGAAAGCGAAAATGAATGG
CTGTCGTCTTTCGATGTGGATCCATGCAGAAATTTGTGGGTGTTATGAAC
TTCGCCAGCACACCCTGACGCGGACGGACGCAATTTCTGGACAGGCTTTT
CCCCCTGTTTCTGGTTTCCTTTCTTGCCACGTGTGTACAACGGTATAGAC
GTTTCGGATGAGAGCGAACGTGGATTGCGGCAAGTTCCGACGTAGGTGAA
GAGTTTTCCTAAATGTTTGGTGCTTTGCCGGCCCACCCTGCCAGGACCTC
TGGACGTAGTCTCCCGGGATAAGGCACGCTCCGTGCCACAAACCGAGCGA
ACCTGGCGGAGTTTATTTTCTAGCTTCGTTTTTCAAGAGATTTTAAAAAC
AAGTACTGTCCCTTCGAAGGGTCGAAGTTTGAGGGAAGACGCTGCTGACC
TGTACCTTGTCCTTCTCGTTGAAGAAGGCGTGCAGTCCAAGAGATCGGGT
GGGTGGCTCGCGGAGAGGAACCCTTCTGTGTGACCCACGCCGGACTTTAA
CTCCCGGTTGGATGTAGCGGACCACACTAATCAATGCAACAGAGTGTCGA
AGGAAACGACGCACTCGGAAATCGCCTCTGAAAGCCAGTGCTCCGGAAAT
TTGTAGGGGGGGAGGGTAGGAGAGTGGGGCGCGCCTTGCGATCGGTCGCC
AACTGTGTCCCTTGCTTCGGTGACCCCTTGCAATGGTGCCTTTTTCTGCG
GTGTTCCCCTTTTCACGGTGCCCCTCCCCCCTACAGTACGCCTTCTCCCT
TGCGCTTTTGCCTTGGCTGTTTGCTTTTGCCTTGGCTGTTTCGCCACTAA
GTACGCCTCAAAGTGGGAGGGGAGGGCATTCGCCGTGTGATATGTGACCG
CGCACCAGTGCTCCATTTCACTGTGTCCCTTGCTACGGTGCCCCCTTGCG
ATGGTGACTTTTGATTTTTCTCTGCGGTGATACCCCTTCTTCGGCGCCCC
ATCTCTGCGGTGCCCCTGTATGTTCGCGCTTGCTGCGTGTTATTCTAACA
TCCCGATGTCATTGCTCCTTCCGCACAACGTTCCGGGTAATGGTTTGATT
TTTGCCGCCGCCGCCGCTGTGGCTTATGCCGCTGGCGCTCCTTAGTTGGA
GCTCTCGCCCAAGGAGCAGGAGCAGAAGAAGAAGCTGATCGAGAGCGCGT
TCGGAGACTGGAACCGGAAGGACTTCCGCGCGTTCGTCGCTGCCACGGAG
CGCCACGGCCGGTGGGTCAAGGGGGCGCATGAATTACCGTCGGAGGATGG
GGGGAGGGATTTTACTCTGAGCATTTTGGTGTGGGTGTCACGGCCGATGA
GTGAGAAACTAGCAAATTGATCACGAAATACCAAATAACACCACCACCAC
CACCACCAACAACAACAACAACAACATTAACAACAACAACAACAACAACA
AGTGAAGGAAAACAAGACAAGAAATGACAACAACGAAAAACGCGCAATTG
CCGTTGTGAAATGCACCCCTCTCTTACTTTGGTTTGACACGCCGCATTGC
TGCTTTCATTTTTATGTGTTGTTTTTCACAAGGGACGACACGGAGGCGGT
GGTTCGAGACGTTTGCCTCGAGACGGCCAAGACCGAGGAGAACGTTCGCA
AGTACATCAAGGTCAGTCAGTCACTCGTACCATTCGTGCCTTGTACAGTA
TGCTTCTGGAACTTCGCCCCCGTTTCTTGCGTTCCCCCCCCTCACTTGCG
CGTTTTGCATGTGCGGCGTTCCCCCCGCCTCTTGTGTTGTGTACCCCCTC
CCCGCCCCCAGCCGCCCCAAGCACTCGATAGAGATGGATCGGCCCGATGG
CACGGCAAGGGGTTGAGTTGGCGCCGGGTTGGTGACGATGCTGTACATCA
TGCTGCTCACTTCGTGATTTAGGCAACCGGGTTGCAGCTTTTTTCCCGTC
TTTATTTGCGGGGCGGCAACCGTGATGGTGGTTGATTTAAACTAGTGTGC
GGGAAGAGAATTTATTCTAAGGTGTATGGTCGTACCAAGCAGTGTTGAAA
TGGTGATGCGCCCGCGAGGGACTGCCGTAGTATACTCCAATGGCTGTTTC
TGAGGCTATGCCAAAACACGAATTGCAGCTCAGTTGAGGCTGTCGTCCGT
GTGCACGATCGGTAAGTCCTGGCCGAACAAGCAGGATGCTGTCCACGCTT
CATGCGACTCGCCGAATGCATCGCTGCGCTTTGCGCTTGGTCAGTGCAAA
AGCCTGGGCCAGTGAAACCCCGGCAAATCGCTCCGTCCCGGCCTATTAGG
GGTGCGAGGTCTGCGGCCTGACTGCTACGGCACGCGTGAATAGAGTACCC
CGCTCTCTCGCTCGTCCAACCCCCCCGCCAGGTGTTTTGGAAGCGTTGCC
GCGAGCTCGGGGACCACGCCAAGATCATGGAGAAGATCGAGAAGGGGGAG
AAGCGCATCTTCCGATCGAAGCAGATTCGGTCGGCCATCGACAGCAAGAT
CAACCGGCACGCGAACCCCTGGAGCGACCTCACCATCAACTACTACGGCG
GAAAGGTGGGATAGGCTGACCTTGCTGTCCTAACCCTAACCCTGACCTTA
CTTGAGCACTAGATGCAGGTAAGGGTTAGGGTTTGGGTTAGGGTTAGGGT
TGGCACAGGCTAGGTTTGGGATTCGGCCAGCCTAGGGTTCGAGTCGGATC
TGGTTAGGGTTAGGACTAGGGTCAGGTTTCGTCGCTTTGTTGCAGGCGTA
AGGAGTCGTCCCACACATCTCCACGGCTGCGATGGTGGCAGGGTTAGCAT
TTGTTTGGTTGCCCGGGATGGAGGAAGAGAGAGAGAGAGAGAGAGAAAGA
AAGAGATGTGACGATGGAGAGGCGTAGATGGGGAATGAGGATGTATGTGT
GAAGGTAAGGAGAGGGGGAGGAGGCGACGGCGGGAGAGAGTAAGTGCCGA
AGACCACAGGTCGGTGGGATTCGGGTTAATAGAGGAGCAAACACACATTC
TTTGCTTTTCTATTTTTTTGTATTCCTACCCACCTCGCTTCTCTCCACAA
ATACTACGTAATCATTTTCTGTGCATCGTAGGGCAAAGTGTTCACGGAGG
AGGAGGACGCCTTCTTGCTGAATATGATGCACCGCTACGGCTACGGAAAC
TGGGAGGTCATCCGCATGGAAATTCGCAAGGTGACGCGACTGACCGGCCT
GAGCATTTCCTTCGAGTTTTGAAGTTTGCTAGGCTTTCATCCGCGAAGAA
AGCGGATCGTGCTGAGGGTTTAGCATTGGGTGAGGTCAAGTGATAATCAG
CGCTGGGGTCAGCCGATCCTCCCTTCCCTAAACAGAGCCCTGACCCTAAG
CTGTGTGCAGGGCTTTTCTCTGCGATTGGTTATCATGGAGGCAAAACCCT
CGCACGGTCACTGTGGAATTGTACCCGGGTTGACATATGGTAGATTTTGG
GTGCTGTGCGACAAGTCGTAGTTTACATTTTATGAAATTTTTGAATCAAC
ACATTAACACTCCAACCGCTTCTTCGAGTAAGCGAGAACCTCCGCCCTCC
CCGACTCTACCTCCCTACCCCAGCCTTCCGTTTCCTTGCGCCCCTTCCTG
AGTCATGAGTAGAGTTTTGCACTTTCATTTGGAGGGCTGGACAAAACGGG
TCAACGGAAGAACCCCAACCTGCCGCTCCTCGTGTTGCTTCGTGGTGGAA
ATCCACCTCTCACATGACAGTCCTCCCCCCCACCCGGCCGCATATTATGC
GCTCATTTAACCTTGCAACTTCCCCCCCTGCCCCCCCCCTCTCGTTTTTT
TTTTCTGCACGCATGTACGACAGTGCCCTCGCCCCGCCCCCCTCCCGAAG
TGTTCGGATTCGCATCCGTTTGCGAATTTCCCCCTCCCTTCTCAGGGGAC
GTAGAAGGAGGTTTAGGAAGGTAGACGACGACGAAGACAAGTTCAAATGT
GACTGCGGCGCCGAATGCGAAGACCGGGTACATGTAGTTGCGGAATGCCC
GTTGTACGATCAGGAGAGAGAAGGGTACATGGTTGAGCTGGAAAAAGTAG
ACAGTCGGTATAGAGAGAAGTTTGAGGCATGGAACAAAGAGGAGAAGACG
GTAGCGGTACTCGGGTGTAAGATGTGGCCCAGGACGGACAGGTATAAAGT
AGACAGGTTAGGGAAAACATTTTTGAGCCACCTTTGGCAAAGTAGGAAGG
AACGATTGGCCATCGGTGGTCGATCCTGCGGGAACAATGCTCCGTCCTCT
CGAGGACGCGTGGTCAATGGTCTAACAACTAAGGCATGCAAAACATGAGT
ACGTCCCCCCCTCCCGTTGTCTGATGGCTCTCATCTCGGTGTTTGCCATC
GGGATTGGGTTTTCGTCGCGTGGCAACGACGTTGTAAAACAAGCCAATTC
ACTTCGTGAACTCGGCAACCAGGTTACCGTCTTTTTTTTTTCCTCTGGTT
TTTTTTTTGGTAACCATAATGGTGGTCGAGAAGATCATGTTGTGCGGAGT
GGAGAACCCTCACCCGTGCAAGGGGATGATCGCACCACGTTGTGTTAAAA
TGGTCAAGCACCCTCGAGGCAGTTACATAGTGCTTACAACTGTCTCTGGA
AGTGAAAGCACCAGAAAATAAATTAACCCATACGCAGCTGTCATCCGTGT
GCAAGGAAGTAAGCACAAGATGCCGAACACCCTTAGCAGGATGCAGCGCA
CCCTTCATGCGACTCGCCGAATATCTCACGGCGCTTCGCGCTTGGTGGTG
TGAGAGCCTGGTCCGGTGAGAACCCGGCGTGCTCCGTCCCGGCTTTGTAG
GGATGCGAGGTCAATGGTCTAACGACTACGGCATGCACGACTATGAGTAC
ACCCCCCCCCCCTTCTCAGGGGAAAAGGGAGGAAAGGGGAGGGGGAAATT
CGTTCCTATTCTGTTACATTTTTTCAGACTTTTCTTTTGTTCTCCCCCGA
CAACACCATCGCTACTTCACGTGTACTCCCCACAACCAGAAAAAAGGCCC
ACCCAAATAAGAGAAAGTCAAGTGGTTCTAAAAACACCTTTTTTATGTTT
ACAAACTCCCCCTCCTCATGTCTTCTCGTTTTCCGCAGGCGTGGCAATTC
CGATTCGACTGGTTCTTCAAGAGCAGGAACGCCGCGGAGCTGCAGAGGAG
GGGCGACACGCTCATCCGCCTGGTCGAGAAAGAGAACGAAGAGCTTGAGG
CGAGTACAAATGATAAGATGCCGCACTTCGTTCGTGCATCCACACAAAAT
TCGCAGGTGCTATCACACATTCACACGGCACATAGATACACGCATTTTTT
TCAATATGCAGGGACCAGTGCTCCATTTCACAATTGGCGAAGGGGTCACC
GTGAGTGCGAGCTTACTGATCAAATGCGCATTACTCAAACTTACAGTCAT
CGAGTCCAACTGTCTCACTCCTCTCGCTCCTTCCTTGGCCCCCGCCCCCG
CCCCGTCTCCCCCCTTTCCCCTTCCCCTCCACGTCTCCCCCCTTTCCCCT
CCCCCCTCCACGTCCGCACTGGCCCTTAATCGCTGTTCACAGACGACGGG
GCATGGCGGAAAAAAGCGGAAGAGCATTTCGTCTTCGGACCAGGGCGGCC
CCTCCTCCGGCAAGAAGAAGAAAGCTTTGACGTCCACCCCCGCCACCGGC
AAGAAGCAACGGCGCAGATGAAGAAACACAAGCTCGCTCGGCGAGGTCGC
TAATTTGCCGTTCCGCTGCACGTTTTGGGCAGTTCCGACGCCGCCGATGG
AGGATAGCTACTTATTGCCCAGGTTGAGCGGAGTTTTTGATTATTTGAGC
CTCTCGCTGCGGCTTTTAGCAGCTTCGACGAATTTCCGTTGGGGGGAAAT
TCGAAGTTATCCCGCTGCAGCTTGTGGCAGCTATAGCGAAGCCTTAATTA
AGAGGAGAATTACTCGGCCACCTCGAGCTTCTCGCCGCAGCATTTGGCAG
ATTCGCTGGGTGGGAGGGGAGGATTGCAGAAGGACGTGGAGAGGAGGCAT
GATTGTGATTGGTGGACACCGAACGAATATTCTGTACCGCGGCGAAATGA
GGACGTTCGCCGCAGCTTGCGGTCGCTCGGCTTGTTGGCAGAGAACGAGA
CCAGAAACAAGGACAGAGATGTGAACGTATATACAGCATAGTGACCTACA
AGCTTGTTTTCCTTTGATTTGTCTGACTTCAACCTATTTTTGTCCACGGC
CGGGTTGGACCTTAGTCCTAAAGGTGAGGGAATTCGATCTAGAGGTCGGC
AGGCGGAGTAGTGTGTTGTCGTTTCAGCGACCCCGGCTTGTTGGCTGATC
TATCGTCGCTTCGTCGTCGTCTTCGTTGTCGTTGACGGTGGCGGTGGTGG
CGGGTGTAAGGCATTCAGACAGACGTCGCCGACCACTGCAAGAAAGAAAA
ATCTGCTGGCAGTTTTTTTATACCCCGATTTTCTGTGTTCCGCTGGGCAT
GGTTCCAGTGGACACGGCGATTGGGACAGATTTCAGTGTCGAGGGCACCT
CCGGACATGGCTCGTCCTGCGCCAGGTGTGTGTTGTTGCTTGCGAGCTGC
CGAGCGAGGCGGATGCATGGACACACGTCGGCGCTGTAGGGAGAAACGGG
CCTGGTTTGCTGTCTTCTCAAAGGGGGAATGGAACGCGCGCGCGAGGGGG
AGCTGCGATGGGGTGTGTTGCTTACTTGCGACGCCCGGATGGATGTGGAT
GGATGTACCACGTTGTTGGCGCTGCACCGATGACGGCATACCTCTTGTGT
GTTAGAGAGATTTTGTCGTACCGGCGTTCATTCGTTTTTATCTCCGCCGG
GATGTATGCATGTGGTAACTGAACGGATGGCGGAATATGATACATGAGGC
AGCTGACGAAATGGGGGACTCGGGTGTCGCGGAGTGGACGACTGGGCTGG
CTCTTGAATTGATCGACTCATTCGATTTTGAACGTGACGGATTAGGCGTG
GCTCTTCTCGCAGCAACGGTAAAATGCTGCGTCTTTTGCTGCATTATGAA
AAGAGCAAAGCTGTAGAGCTGTAATGTGACAAGAGGACGAGCTCGGCTTA
GCTGCTGCAGAGGAGACAGGGATTGCGATCGACATCAACGACTCCATCCC
AGAAGTGGAGACCCGATCGACCCACGCCACGAAAGGG back to topCoding sequence (CDS) from alignment at P-fluviatile_contig12:1279284..1304870- >mRNA_P-fluviatile_contig12.1410.1 ID=mRNA_P-fluviatile_contig12.1410.1|Name=mRNA_P-fluviatile_contig12.1410.1|organism=Porterinema fluviatile SAG_2381|type=CDS|length=6672bp|location=Sequence derived from alignment at P-fluviatile_contig12:1279284..1304870- (Porterinema fluviatile SAG_2381) ATGGCCGAGGCTGCGCCGCTGGCAGCAGAGGGCGGGGACGGGGATGGGGA GCAAGAGGAGAATGGCGGCGAGGAGGAGGAGGAAGAGGAGGAGGAGCAGG AGGAGGAGGACGAGGAGGAGGAGGAGGAGGAGGAAGAAGAAAATGGGGAG GAGGAGGTGGAGGATAAAGGGGCAGCGCAAGAGAGCGACTCCGACATGGC CGAGGCTGCGCCGCTGGCAGCAGAGGGCGGGGACGGGGATGGGGAGCAAG AGGAGAATGGCGGCGAGGAGGAGGAGGAAGAGGAGGAGGAGCAGGAGGAG GAGGACGAGGAGGAGGAGGAGGAGGAGGAAGAAGAAAATGGGGAGGAGGA GGTGGAGGATAAAGGGGCAGCGCAAGAGAGCGACTCCGACGGGGTCTCCG CAAAGGGAAAAGCCAAGCCTAGGGGAGGCAAGGGCTTGGCGAGGCCCGGG GGAGAGCAGAGCGAAGACCACTCTTTCGACGAGGTGGTGTCAGAACACTC CAAGAAGCTCGAGGAGCTGAGGGAGAGGCAGAAGGCGGAGGACGGGCAAT GCGGCGGGAACGCGGAGACTCGCCTGCAGTACCTAATGCAGCAGTCGGAG GTGTTTACGCACTTCTTGGATAGGGGGTCTCCGCAAAGGGAAAAGCCAAG CCTAGGGGAGGCAAGGGCTTGGCGAGGCCCGGGGGAGAGCAGAGCGAAGA CCACTCTTTCGACGAGGTGGTGTCAGAACACTCCAAGAAGCTCGAGGAGC TGAGGGAGAGGCAGAAGGCGGAGGACGGGCAATGCGGCGGGAACGCGGAG ACTCGCCTGCAGTACCTAATGCAGCAGTCGGAGGTGTTTACGCACTTCTT GGATAGCACAAGCTTCGGGAAGGACAAGGGCGGCAAGGGTAAGAGGGGGG GGACGGGGGACGGGGTGCGGGGGCGCATGAAGGAGCACGAGGAGGACAAG CTTCTGTTGGCAACGGCGGCAAGCAAGGCGAGGGTGACGCGGCTCTCCAA GCAGCCCGACCTCATCAACACAAGCTTCGGGAAGGACAAGGGCGGCAAGG GTAAGAGGGGGGGGACGGGGGACGGGGTGCGGGGGCGCATGAAGGAGCAC GAGGAGGACAAGCTTCTGTTGGCAACGGCGGCAAGCAAGGCGAGGGTGAC GCGGCTCTCCAAGCAGCCCGACCTCATCAAGTTCGGCAAGATGAGGGCTT ACCAGCTGGAGGGGCTGAACTGGATGATCAAGTTGCACGACAACGGGATC AACGGAATCCTGGCCGACGAGGTTCGGCAAGATGAGGGCTTACCAGCTGG AGGGGCTGAACTGGATGATCAAGTTGCACGACAACGGGATCAACGGAATC CTGGCCGACGAGATGGGATTAGGCAAGACTCTCCAAAGCATATCGGTGCT CGCCTACCTCAAGGAGGACCGGGGCATCAACGGGCCGCATATCGTCATCG TCCCCAAGTCCACGATGGGATTAGGCAAGACTCTCCAAAGCATATCGGTG CTCGCCTACCTCAAGGAGGACCGGGGCATCAACGGGCCGCATATCGTCAT CGTCCCCAAGTCCACGGTGGGCAACTGGATGCGCGAGTTTAAGAGGTGGT GTCCCTCGATCAAGACGGTGAGGCTGCTGGGGAACAAGACCGAGAGGAAG CTGGTGTGCGAGAACGTGCTGGAGACCGGCAACTTCGATGCGTGCGTGGC TTCGTACGAGAGCGTCCTCAAAGAGGCGTCCACCCTCAAGAAGATCAAGT GGGCAACTGGATGCGCGAGTTTAAGAGGTGGTGTCCCTCGATCAAGACGG TGAGGCTGCTGGGGAACAAGACCGAGAGGAAGCTGGTGTGCGAGAACGTG CTGGAGACCGGCAACTTCGATGCGTGCGTGGCTTCGTACGAGAGCGTCCT CAAAGAGGCGTCCACCCTCAAGAAGATCAAGTGGCGGTATCTGCTGATCG ACGAGGCCCACCGCATCAAGAACGAGAACTCCTCCCTGTCCAAGACGGTC AGGCTCCTGTCCACGCAGTTCCGCCTGCTCATAACGGGCACCCCCCTGCA GGTGTGGCTGCATGTTGTGCGCTCATTATTGTGGAGTGTGGCGGTATCTG CTGATCGACGAGGCCCACCGCATCAAGAACGAGAACTCCTCCCTGTCCAA GACGGTCAGGCTCCTGTCCACGCAGTTCCGCCTGCTCATAACGGGCACCC CCCTGCAGGTGTGGCTGCATGTTGTGCGCTCATTATTGTGGAGTTTGTGG GCCCTGCTGAACTTCTTGCTGCCGGACGTGTTCAACAGCGCCGAGACTTT CGACCAATGGTTCAATTGTGGGCCCTGCTGAACTTCTTGCTGCCGGACGT GTTCAACAGCGCCGAGACTTTCGACCAATGGTTCAACCTGGAGACCGACA AAAGCGCCCGCGACAACGTCATCAAGAAACTCCACACCATCTTGAGGCCC TTCATGCTCCGCCGCATCAAGGCCGACGTGGAGAAGGACCTTCCCCAAGA AGGAGGCGAGTTCGAGTCCCCTGGAGACCGACAAAAGCGCCCGCGACAAC GTCATCAAGAAACTCCACACCATCTTGAGGCCCTTCATGCTCCGCCGCAT CAAGGCCGACGTGGAGAAGGACCTTCCCCAAGAAGGAGGCGAGTTCGAGT CCGTGAAGCTGTACATCGGAATGACGCCGATGCAGCGAAAGTGGTACAAG GACCTGCTCAACAGGGACGTGGGGAACCTCAACACCCTCGGAGGCCCGGA CAAGATGCGCCTCCTCAACATCCTCATGCAACTCCGGAAGGTGAAGCTGT ACATCGGAATGACGCCGATGCAGCGAAAGTGGTACAAGGACCTGCTCAAC AGGGACGTGGGGAACCTCAACACCCTCGGAGGCCCGGACAAGATGCGCCT CCTCAACATCCTCATGCAACTCCGGAAGGTGTGTAATCACCCCTACCTCT TCGACGGCGCGGAGCCTGGACCCCCCTTCGTCAACGGTCCCCACCTCTAC GAAAACGCGGGGAAGGTGTGTAATCACCCCTACCTCTTCGACGGCGCGGA GCCTGGACCCCCCTTCGTCAACGGTCCCCACCTCTACGAAAACGCGGGGA AGATGGTGCTGCTGCAGAAGCTGCTCCCGAAGCTCAGGATGCAGGGCAGC AGGGTGCTGCTCTTCTGCCAGATGACGCGACTTCTCGACATCTTGGAGAT GGTGCTGCTGCAGAAGCTGCTCCCGAAGCTCAGGATGCAGGGCAGCAGGG TGCTGCTCTTCTGCCAGATGACGCGACTTCTCGACATCTTGGAGGACTAC ATGCACCTCCAAGGATACGACTACTGCCGCATCGACGGGTCCACGGATGG CGAATCTCGCGACTCCCAGATGGACGAGTTTAACGAGCCCGGCTCGTCCA AGTTCCTCTTCCTCCTGTCCACGCGCGCCGGAGGTCTCGGCATCAACCTC GCTACCGCCGACGTGGTCATCCTCTACGACTCCGACTGGAACCCGCAGGA CTACATGCACCTCCAAGGATACGACTACTGCCGCATCGACGGGTCCACGG ATGGCGAATCTCGCGACTCCCAGATGGACGAGTTTAACGAGCCCGGCTCG TCCAAGTTCCTCTTCCTCCTGTCCACGCGCGCCGGAGGTCTCGGCATCAA CCTCGCTACCGCCGACGTGGTCATCCTCTACGACTCCGACTGGAACCCGC AGGTGGACCTGCAGGCGATGGACCGGGCACACCGCATCGGGCAGACCAAG CCCGTGAAGGTGTTCCGCTTCATCACGGAAGGCACCGTGGAGGAGAAGAT CGTGGAAAGGGCCGACCGAAAGCTGTTCCTCGATGCCGCCGTCATCCAGC AGGGGAGGCTCGCCGAGAAGAACGCCTCCCTTGACAAGGTGGACCTGCAG GCGATGGACCGGGCACACCGCATCGGGCAGACCAAGCCCGTGAAGGTGTT CCGCTTCATCACGGAAGGCACCGTGGAGGAGAAGATCGTGGAAAGGGCCG ACCGAAAGCTGTTCCTCGATGCCGCCGTCATCCAGCAGGGGAGGCTCGCC GAGAAGAACGCCTCCCTTGACAAGCGCGAGCTGATGGCGATGGTGAAGTT CGGTGCGGACGAAATCCTTCGCATGGACGACAGCCACGGTCTCACGGACG AGAGCATCGACGAGCTGCTGCGGAAGGGGGAGGAGAAGACGGAGGAGACC AACGCTAGGATCCAGAAGGACATGCAGCGCGAGCTGATGGCGATGGTGAA GTTCGGTGCGGACGAAATCCTTCGCATGGACGACAGCCACGGTCTCACGG ACGAGAGCATCGACGAGCTGCTGCGGAAGGGGGAGGAGAAGACGGAGGAG ACCAACGCTAGGATCCAGAAGGACATGCAGCACAACCTGCTGACCTTCAA GATCGACGAGGAAGACGTGAGCACCTTCTTGTTTGAGGGCGCCGACCACC GGGAGGGGGGCTCCGCGAACGCACAACCTGCTGACCTTCAAGATCGACGA GGAAGACGTGAGCACCTTCTTGTTTGAGGGCGCCGACCACCGGGAGGGGG GCTCCGCGAACGCAGGGACGGGAGCGTTCATCAACCTCCCCACGAGGCAG CGCAAGAGCAACTACGACGTGAACGAGTACTACCGCGCCCGCATGGACTC CAATAAGAACATCCCCGGCGTCCGCAAGCGCAAGCAGGGACGGGAGCGTT CATCAACCTCCCCACGAGGCAGCGCAAGAGCAACTACGACGTGAACGAGT ACTACCGCGCCCGCATGGACTCCAATAAGAACATCCCCGGCGTCCGCAAG CGCAAGGGCATCACTATGCACGACTTCCAGTTCTACGACAAGGAGGCATT GGAGGCGCTGCAGGCGAAGGAGCACGAGTTCGCTGACAGGAAGAACGCCA TTATCGCAGAGATCAAGGGCATCACTATGCACGACTTCCAGTTCTACGAC AAGGAGGCATTGGAGGCGCTGCAGGCGAAGGAGCACGAGTTCGCTGACAG GAAGAACGCCATTATCGCAGAGATCAAGGAGATCAGGACGAGGTGCAAGA GGATGGAGGCACAGAACGGCGAGGAGGAGCACGCGGCACGCCTGGAGAAG GAAGCTGACTCGGAGATCAGGACGAGGTGCAAGAGGATGGAGGCACAGAA CGGCGAGGAGGAGCACGCGGCACGCCTGGAGAAGGAAGCTGACTCGTTGG AGCTCTCGCCCAAGGAGCAGGAGCAGAAGAAGAAGCTGATCGAGAGCGCG TTCGGAGACTGGAACCGGAAGGACTTCCGCGCGTTCGTCGCTGCCACGGA GCGCCACGGCCGTTGGAGCTCTCGCCCAAGGAGCAGGAGCAGAAGAAGAA GCTGATCGAGAGCGCGTTCGGAGACTGGAACCGGAAGGACTTCCGCGCGT TCGTCGCTGCCACGGAGCGCCACGGCCGGGACGACACGGAGGCGGTGGTT CGAGACGTTTGCCTCGAGACGGCCAAGACCGAGGAGAACGTTCGCAAGTA CATCAAGGGACGACACGGAGGCGGTGGTTCGAGACGTTTGCCTCGAGACG GCCAAGACCGAGGAGAACGTTCGCAAGTACATCAAGGTGTTTTGGAAGCG TTGCCGCGAGCTCGGGGACCACGCCAAGATCATGGAGAAGATCGAGAAGG GGGAGAAGCGCATCTTCCGATCGAAGCAGATTCGGTCGGCCATCGACAGC AAGATCAACCGGCACGCGAACCCCTGGAGCGACCTCACCATCAACTACTA CGGCGGAAAGGTGTTTTGGAAGCGTTGCCGCGAGCTCGGGGACCACGCCA AGATCATGGAGAAGATCGAGAAGGGGGAGAAGCGCATCTTCCGATCGAAG CAGATTCGGTCGGCCATCGACAGCAAGATCAACCGGCACGCGAACCCCTG GAGCGACCTCACCATCAACTACTACGGCGGAAAGGGCAAAGTGTTCACGG AGGAGGAGGACGCCTTCTTGCTGAATATGATGCACCGCTACGGCTACGGA AACTGGGAGGTCATCCGCATGGAAATTCGCAAGGGCAAAGTGTTCACGGA GGAGGAGGACGCCTTCTTGCTGAATATGATGCACCGCTACGGCTACGGAA ACTGGGAGGTCATCCGCATGGAAATTCGCAAGGCGTGGCAATTCCGATTC GACTGGTTCTTCAAGAGCAGGAACGCCGCGGAGCTGCAGAGGAGGGGCGA CACGCTCATCCGCCTGGTCGAGAAAGAGAACGAAGAGCTTGAGGCGAGTA CAAATGATAAGATGCCGCACTTCGCGTGGCAATTCCGATTCGACTGGTTC TTCAAGAGCAGGAACGCCGCGGAGCTGCAGAGGAGGGGCGACACGCTCAT CCGCCTGGTCGAGAAAGAGAACGAAGAGCTTGAGGCGAGTACAAATGATA AGATGCCGCACTTCACGACGGGGCATGGCGGAAAAAAGCGGAAGAGCATT TCGTCTTCGGACCAGGGCGGCCCCTCCTCCGGCAAGAAGAAGAAAGCTTT GACGTCCACCCCCGCCACCGGCAAGAAGCAACGGCGCAGATGAACGACGG GGCATGGCGGAAAAAAGCGGAAGAGCATTTCGTCTTCGGACCAGGGCGGC CCCTCCTCCGGCAAGAAGAAGAAAGCTTTGACGTCCACCCCCGCCACCGG CAAGAAGCAACGGCGCAGATGA back to top
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