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Homology
BLAST of mRNA_P-fluviatile_contig87.14927.1 vs. uniprot
Match: D8LJ47_ECTSI (Uncharacterized protein n=2 Tax=Ectocarpus TaxID=2879 RepID=D8LJ47_ECTSI) HSP 1 Score: 655 bits (1691), Expect = 1.650e-223 Identity = 368/525 (70.10%), Postives = 427/525 (81.33%), Query Frame = 1
Query: 493 MLLVARAVRLSSLYFRSSGPLWMLPHRSIIPLATHRFSLS-----SRLSCTSHRILSI-MSAGSGNGGVIRPRVPVSSITAFGEGLGQEKLKALGRELSASSESERVMHPFAGKIYDISTAALFYAHNGRLDSAQEQLTAAQELISSDLKSVDQAGSADELRHDRVSGSLETFIKAKAFVHFLQTGRLLPKSAVGEEIQDSEYLGAAMRLTEALSRYAITQASTLDKGSVLACALLCRGIFGELVQFDFRNGPLRKKYDGVKYDVRKVDDILYELALLGGGEGEXXXXXXXXVVXXXXXXXXXXXGGSRKRKERGEEEEVLDVKEFEAIREAMTAFDEKREAVIKRTRDIQKGSKMAIYSLHRGDFKKAEQQLQGCRTAAEGLLPMINETPLLRMGSFSASMEEFAEARLYELWLKDKKLATKAEVGLVNTEEYLGGLLDLTGELNRFAVARATERDSVGVKECLETVLVIHEFVTLNALPGELRRKKGELFSSLRKLENMTYELALMKAGKGKVAGVSGLDEGP 2049
ML++AR RLS L FR+S + P + +L+ S SC S + MS +G G VIRPRVPVSS+TAFG+GLGQE+L++LG+E+ AS+E ER++ PF GK+YD+S AALFYAHNGRLD+AQEQL A +L++S+L+ VD+A S D +R++RVSG+LE +KAKAFV+FLQTGRLL KSA+ EE+ D EYLGAAMRLT LSRYAITQAS LD+ S+LACA LCRG+FGELVQFD RNGPLR+K+DGVKYDVRKVDDILYELAL+G G E XX XXXXXXXXXXX +K G VLD +EFE+IR AMT FDEKREAVIKRTRDIQK SKMAIYSLHR D KKAE+Q+ CRTAAEGLLP+I+ETP LRMG++S SMEEFAEARLYELWLK+K+LAT+AEVGLVNTEEYLGGLLDLTGELNRFAVARATERDSVGVKECLETVLVIHEFVTLNALPG+L +KK EL +SLRKL+NMTYELALMKAGKG V+GVSGLDEGP
Sbjct: 1 MLILARTFRLSLLAFRNSEISKTASSALLRPTPSTAVTLAPPCGISHSSCRSTYTTRLSMSDDTGGGRVIRPRVPVSSVTAFGQGLGQEELQSLGKEMEASNEGERLVFPFVGKLYDVSNAALFYAHNGRLDAAQEQLKAGADLMASELEGVDKACSKDGVRNERVSGALENLVKAKAFVYFLQTGRLLRKSALEEEVADDEYLGAAMRLTSELSRYAITQASILDRSSILACASLCRGVFGELVQFDLRNGPLRRKFDGVKYDVRKVDDILYELALVGTGADEGDGNADXXXXXXXXXXXXXXXXXXXXKKAEGGP--VLDTEEFESIRVAMTYFDEKREAVIKRTRDIQKWSKMAIYSLHRADLKKAEKQISDCRTAAEGLLPLIDETPRLRMGAYSCSMEEFAEARLYELWLKEKRLATRAEVGLVNTEEYLGGLLDLTGELNRFAVARATERDSVGVKECLETVLVIHEFVTLNALPGKLPKKKNELLNSLRKLQNMTYELALMKAGKGTVSGVSGLDEGP 523
BLAST of mRNA_P-fluviatile_contig87.14927.1 vs. uniprot
Match: A0A7S2L0N5_9STRA (Hypothetical protein n=1 Tax=Leptocylindrus danicus TaxID=163516 RepID=A0A7S2L0N5_9STRA) HSP 1 Score: 249 bits (635), Expect = 5.570e-69 Identity = 163/469 (34.75%), Postives = 256/469 (54.58%), Query Frame = 1
Query: 721 GEGLGQEKLK--------ALGRELSASSESERVMHPFAGKIYDISTAALFYAHNGR-LDSAQEQLTAAQELISSDLKSVDQAGSADEL--------RHDRVSGSLETFIKAKAFVHFLQTGRL---------LPKSAVGEEIQDSEYLGAAMRLTEALSRYAITQASTLDKGSVLACALLCRGIFGELVQFDFRNGPLRKKYDGVKYDVRKVDDILYELALLGGGEGEXXXXXXXXVVXXXXXXXXXXXGGSRKRKERGEEEEVLDVKEFEAIREAMTAFDEKREAVIKRTRDIQKGSKMAIYSLHRGDFKKAEQQLQGCRTAAEGLLPMINETPLLRMGSFSASMEEFAEARLYELWLKDKKLATKAEVGLVNTEEYLGGLLDLTGELNRFAVARATERDSVGVKECLETVLVIHEFVTLNALPGELRRKKGELFSSLRKLENMTYELALMKAGKGKVAGVSGLDEGP 2049
G+G G EKL +L +LS + + V+ + K+ D A + R D ++ A ++I + +++AGS + R + ++ ++A A+ +FL+TG+L L ++ G +D EYLG + + LSRYAI +A+ D+ SVL L + L++FDFRNG +R+K+DG+KY ++++++ILYEL++ G+ S++ K E+ E +DV E + +R M A DE RE VIKRTRD QK +K AI++LHRGD +A++ + A LLP+I + P LR GSF+ S+EE+AEA+L++LWL +++L T ++ + N EE+LGGL DLTGE+ R AVA+ T RD V+ + T + + + ALP L +K G L S++KLE M YEL+L + G+ +G DE P
Sbjct: 30 GKGNGDEKLMQMASFSLPSLTEKLSLAEKRRDVVFK-SSKLIDRQLVKCRAALDIRGADGGDDEFQALNDVIKGTFEDLNKAGSTSDSFNQESNAPREGNLGNKMDDAVRALAYRYFLKTGKLVKLSDVNAMLDSASTGLSFRDEEYLGGVISFAQDLSRYAIGRATLRDEQSVLIARDLVSELMACLLKFDFRNGSIRRKFDGIKYALKRLENILYELSVTSDNAGDDGPK-------------------SKRAKIEEEKTERVDVAEIDEVRARMEARDELREKVIKRTRDSQKSAKQAIFALHRGDQARADKLILESEEIAAELLPIIEKEPQLRYGSFANSLEEYAEAKLFKLWLTEQRLGTPDDMPICNEEEFLGGLCDLTGEVGRNAVAKGTSRDVTAVQFAMVTNMTVMNLLEGLALPYNLGKKLGPLNQSVKKLEQMLYELSLTQGGRTAPSGGMVEDEEP 478
BLAST of mRNA_P-fluviatile_contig87.14927.1 vs. uniprot
Match: A0A7S2RGZ0_9STRA (Hypothetical protein n=1 Tax=Rhizochromulina marina TaxID=1034831 RepID=A0A7S2RGZ0_9STRA) HSP 1 Score: 243 bits (621), Expect = 3.940e-68 Identity = 149/376 (39.63%), Postives = 204/376 (54.26%), Query Frame = 1
Query: 958 RHDRVSGSLETFIKAKAFVHFLQTGRLLPKSAVGEEIQDSEYLGAAMRLTEALSRYAITQASTLDKGSVLACALLCRGIFGELVQFDFRNGPLRKKYDGVKYDVRKVDDILYELALL-GGGEGEXXXXXXXXVVXXXXXXXXXXXGGSRKRKERGEE-EEVLDVKEFEAIREAMTAFDEKREAVIKRTRDIQKGSKMAIYSLHRGDFKKAEQQLQGCRTAAEGLLPMINETPLLRMGSFSASMEEFAEARLYELWLKDKKLATKAEVGLVNTEEYLGGLLDLTGELNRFAVARATERDSVGVKECLETVLVIHEFVTLNALPGELRRKKGELFSSLRKLENMTYELALMKAG-KGKVAGVSGLDEGPRGGPNGDNE 2076
R +S LE I +AF+HF+ +G LL KS + D E++G + L Y++ +A D SV C L + +L+ FDFRNGPLR+KYD +KY +R+++DILYE +LL GG GE S + EVLD E+ +R M A D RE VIK RD QK +K A+YS+HRG KA+QQL L P + E P LR GSFS ++EE+AE L+ W K+L+ E+ LV E++GGL DLTGE+ R+AVA AT+R+ V+EC ET ++ + L L++K L +LRKL + YEL+L +AG K + S LDE PRGG + E
Sbjct: 16 RAQHMSSILEEMICCEAFLHFIDSGSLLRKSTLRSVFDDHEFIGGTINFASELVEYSVGRAMERDVTSVRLCRDLVEALNAQLITFDFRNGPLRRKYDSLKYSLRRLEDILYEQSLLQDGGNGEPFEESGSQAKKPRIEPKENEVAPSSAADGASQPVSEVLDTAEWADLRTRMEAADAARETVIKGCRDAQKLAKQAVYSVHRGSHGKAQQQLDEAMAKLRDLEPTVVEFPTLRPGSFSNALEEWAEGALFLRWRTKKELSALDELPLVRGGEFIGGLTDLTGEIGRYAVACATKRNMEQVRECFETTSMLTSSILALPLSSGLKKKTSALQQNLRKLRTVLYELSLAQAGRKLRAPPSSSLDEAPRGGGGDEGE 391
BLAST of mRNA_P-fluviatile_contig87.14927.1 vs. uniprot
Match: A0A7S4CIW7_9EUGL (Hypothetical protein n=2 Tax=Eutreptiella gymnastica TaxID=73025 RepID=A0A7S4CIW7_9EUGL) HSP 1 Score: 241 bits (615), Expect = 1.350e-66 Identity = 146/416 (35.10%), Postives = 223/416 (53.61%), Query Frame = 1
Query: 763 ELSASSESERVMHPFAGKIYDISTAALFYAHNGRLDSAQEQLTAAQELISSDLKSVDQAGSADELRHDRVSGSLETFIKAKAFVHFLQTGRLLPKSAVGEEIQDSEYLGAAMRLTEALSRYAITQASTLDKGSVLACALLCRGIFGELVQFDFRNGPLRKKYDGVKYDVRKVDDILYELALLGGGEGEXXXXXXXXVVXXXXXXXXXXXGGSRKRKERGEEEEVLDVKEFEAIREAMTAFDEKREAVIKRTRDIQKGSKMAIYSLHRGDFKKAEQQLQGCRTAAEGLLPMINETPLLRMGSFSASMEEFAEARLYELWLKDKKLATKAEVGLVNTEEYLGGLLDLTGELNRFAVARATERDSVGVKECLETVLVIHEFVTLNALPGELRRKKGELFSSLRKLENMTYELALMKAGK 2010
+L A ++ M K+ ++ ALF H G L E ++ + ++D A E+R + GS+E+F+ FVHFL GR+ K+A+ + +EYL + L RYA +A D SVL C + + ++QFDFRN PLR+KYDG+KY V+++ DILYEL+L E + S + + + + D ++FEA+R+ +D R+A+IKR+RD+ K +K AIY+LHR D KAEQ L AA+ LLP++ LR GSF+ +EE+AEAR ++ +LK + AE+ ++ EYLGGL DLTGEL R+AVA+AT RD V+ C + + + + L G+L +K + +L+K E + Y+L L G+
Sbjct: 43 QLDAHNDQRDAMFKSHHKLQQLAGRALFCLHRGDLAQVAELHATFAQIARA---AIDAAQGRVEIR-SIIDGSMESFVSGAVFVHFLAHGRVPAKAAIPLPVTSTEYLSGVCGFVQELQRYAAARAIQRDVRSVLLCRDVVEAVNARMMQFDFRNSPLRRKYDGIKYTVKRLQDILYELSLTDFEEAKCL---------------------SADPRPPADADTMTDAEDFEALRKETEEYDATRDAIIKRSRDVTKAAKNAIYALHRSDHAKAEQLLAEAEKAAQELLPLVAADRTLRFGSFAGGLEEYAEARAFQYFLKTGGIMPLAEMPVLELPEYLGGLADLTGELGRYAVAKATVRDVEAVERCHAIMDALSGELLMLRLGGDLYKKTNSIGWNLKKAETLLYDLMLATGGR 433
BLAST of mRNA_P-fluviatile_contig87.14927.1 vs. uniprot
Match: A0A7S1NCU6_9EUGL (Hypothetical protein n=1 Tax=Eutreptiella gymnastica TaxID=73025 RepID=A0A7S1NCU6_9EUGL) HSP 1 Score: 235 bits (600), Expect = 1.110e-64 Identity = 152/417 (36.45%), Postives = 220/417 (52.76%), Query Frame = 1
Query: 763 ELSASSESERVMHPFAGKIYDISTAALFYAHNGRLDSAQEQLTAAQELISSDLKSV-DQAGSADELRHDRVSGSLETFIKAKAFVHFLQTGRLLPKSAVGEEIQDSEYLGAAMRLTEALSRYAITQASTLDKGSVLACALLCRGIFGELVQFDFRNGPLRKKYDGVKYDVRKVDDILYELALLGGGEGEXXXXXXXXVVXXXXXXXXXXXGGSRKRKERGEEEEVLDVKEFEAIREAMTAFDEKREAVIKRTRDIQKGSKMAIYSLHRGDFKKAEQQLQGCRTAAEGLLPMINETPLLRMGSFSASMEEFAEARLYELWLKDKKLATKAEVGLVNTEEYLGGLLDLTGELNRFAVARATERDSVGVKECLETVLVIHEFVTLNALPGELRRKKGELFSSLRKLENMTYELALMKAGK 2010
EL SE KI ++ A+++ H G L + L+++ + V D L H +E FI + F+HFL TG +L KSA+ ++EYL + L RYA +A+ D SV+ C + I +++QFDFRN PLR+KYDG+KY V+++ DILYEL+L E + E ++DV E E IR + +D R+A+IKR+RDI K SK AIY LHR D KKAE QL +TAAE L+P I LR GSF +EE+AEA +++ +LK + K ++ LV EY+GGL+D TGE+ R+AVA+AT R+ V+ C + + + L + ++ +K L ++LRKLE + YEL+L AGK
Sbjct: 31 ELERLSEKRDECFKSGNKIRPLALRAIYHLHRGELSQVTQLHADCVTLMTAVMAKVSDNTQLRGILEH-----CMEAFITSSMFLHFLDTGLILQKSALPLVATNTEYLSGLCGFAKELERYAAARATHRDVLSVILCRDVVEVINSQMMQFDFRNSPLRRKYDGLKYAVKRLQDILYELSLTDFEEAKCLTTGQHTPQ---------------------EASTLMDVAEMEQIRMQVEEYDATRDAIIKRSRDITKCSKNAIYCLHRDDSKKAEVQLSEAKTAAEELMPHILADRTLRFGSFEGGLEEYAEALIFQNFLKSGTIMPKKQIPLVELTEYIGGLVDFTGEVGRYAVAKATRREIQAVERCHAVLDRLSGEMLLLRVNSQMAKKAEALATNLRKLEIVLYELSLATAGK 421
BLAST of mRNA_P-fluviatile_contig87.14927.1 vs. uniprot
Match: A0A7S4I1F4_9STRA (Hypothetical protein n=1 Tax=Odontella aurita TaxID=265563 RepID=A0A7S4I1F4_9STRA) HSP 1 Score: 224 bits (572), Expect = 1.080e-60 Identity = 163/394 (41.37%), Postives = 218/394 (55.33%), Query Frame = 1
Query: 958 RHDRVSGSLETFIKAKAFVHFLQTGRLLPKSAVGEEIQDSEYLGAA-MRLTEALSRYAITQASTLDKGSVLACALLCRGIFGELVQFDFRNGPLRKKYDGVKYDVRKVDDILYELALLG-GGEGEXXXXXXXXVVXXXXXXXXXXXGGSR--------KRKERGEE-------------EEVLDVKEFEAIREAMTAFDEKREAVIKRTRDIQKGSKMAIYSLHRGDFKKAEQQLQGCRTAAE-GLLPMINETPLLRMGSFSASMEEFAEARLYELWL------KDKKLATKAEVGL--------VNTEEYLGGLLDLTGELNRFAVARATERDSVGVKECLETVL-VIHEFVTLNALPG--ELRRKKGELFSSLRKLENMTYELALMKAGKGK 2016
R +S +E ++ A+ HFL TG LLP S+V D EYLG A + L L RY + +A+ D SV L + L+ FDFRNGPLR+KYDG KY +R ++ +LYEL++ G EG XXXXXXX G K+KE G + EE + + E++R M DE RE +IKR RD QK +K AIY+LHRGD +A + + C + LLP++ E P LR GSF+ MEE+AEARL+ WL K+ K+ T A V L + EYLGGL DLTGE+ RFAV R T RDS GV+ CLET + ++H TL+ P ++ +K G L +S+RKLE M YE++L++A GK
Sbjct: 42 REANLSSRVEDHVRLLAYEHFLSTGCLLPPSSV-PLATDEEYLGGACIGLARDLERYGVGRATVRDAASVRLARDLVGDVLDRLLLFDFRNGPLRRKYDGTKYAMRTLETVLYELSVTGTSAEGGKXXXXXXXXDVEPDLKKMKVEGSPAEEDAMDVDKQKEEGGDGPVIPGDSSSPPKEERIPSSQIESLRLRMEHRDELRERLIKRCRDGQKAAKQAIYALHRGDVGRARKLMGQCEDCVKKDLLPIVEEEPGLRYGSFANVMEEYAEARLFYSWLVGDEEEKEGKVDTPAAVVLQPDAFPLHLEPAEYLGGLCDLTGEVGRFAVQRGTARDSDGVRMCLETNMSILHALETLDRFPSRSDIGKKMGPLRNSVRKLERMLYEMSLVEATGGK 434
BLAST of mRNA_P-fluviatile_contig87.14927.1 vs. uniprot
Match: A0A7S0LX05_9CRYP (Hypothetical protein (Fragment) n=2 Tax=Cryptomonas curvata TaxID=233186 RepID=A0A7S0LX05_9CRYP) HSP 1 Score: 208 bits (529), Expect = 1.800e-56 Identity = 128/301 (42.52%), Postives = 172/301 (57.14%), Query Frame = 1
Query: 1150 DKGSVLACALLCRGIFGELVQFDFRNGPLRKKYDGVKYDVRKVDDILYELALLGGGEGEXXXXXXXXVVXXXXXXXXXXXGGSRKRKERGEEEEVLDVKEFEAIREAMTAFDEKREAVIKRTRDIQKGSKMAIYSLHRGDFKKAEQQLQGCRTAAEGLLPMINETPLLRM-GSFSASMEEFAEARLYELWLKDKKLATKAEVGLVNTEEYLGGLLDLTGELNRFAVARATERDSVGVKECLE-TVLVIHEFVTLNALPGELRRKKGELFSSLRKLENMTYELALMK----AGKGKVAGVSG 2034
D S+ AC + + +L+ F+FRNG LR++YDGVKY VRK++D L+EL+L G EEEE++ V EFE +R M A D RE VIKR RD+QK K AIY +HRG ++AE L+ R A +LP P LR GSFS +MEE+AE L ++++ ++A+ E+ VN EYLGGLLD TGE+ R+AVARAT RD VKECLE T ++ + +L LPG L RK +LR++E + YELALM+ A +G+ AG G
Sbjct: 32 DADSLRACLAVFEALQAQLILFNFRNGALRQRYDGVKYAVRKLEDTLFELSLHPAEPGPDSPTRPPPDGQAP-----------------AEEEELVCVAEFERMRAEMDAADAAREDVIKRCRDLQKAGKTAIYEIHRGGLERAEDLLEDLRERALAMLPGFERQPSLRASGSFSGAMEEYAEGALLLRFVQEHRIASLEELSPVNENEYLGGLLDFTGEIGRYAVARATRRDLDSVKECLEATDRLVGQVTSLEGLPGALHRKVETARGTLRRMEGLVYELALMRRSSFAAEGRDAGGGG 315
BLAST of mRNA_P-fluviatile_contig87.14927.1 vs. uniprot
Match: A0A7S4EC85_9STRA (Hypothetical protein n=1 Tax=Pelagomonas calceolata TaxID=35677 RepID=A0A7S4EC85_9STRA) HSP 1 Score: 209 bits (532), Expect = 2.090e-55 Identity = 149/428 (34.81%), Postives = 226/428 (52.80%), Query Frame = 1
Query: 766 LSASSESERVMHPFAGKIYDISTAALFYAHNGRLDSAQEQLTAAQELISSDLKSVDQAGS-----ADELRHDRVSGSLETFIKAKAFVHFLQTGRLLPKSAVGEEIQDSEYLGAAMRLTEALSRYAITQASTLDKGSVLACALLCRGIFGELVQFDFRNGPLRKKYDGVKYDVRKVDDILYELALLGGGEGEXXXXXXXXVVXXXXXXXXXXXGGSRKRKERGEEEEVLDVKEFEAIREAMTAFDEKREAVIKRTRDIQKGSKMAIYSLHRGDFKKAEQQLQGCRTAAEGLL---PMINETPLLRMGSFSASMEEFAEARLYELWLKDKK------LATKAEVGL-VNTEEYLGGLLDLTGELNRFAVARATERDSVGVKECLETVLVIHEFVTLNALPGELRRKKGELFSSLRKLENMTYELALMKA 2004
L E ER H AG D + A+ A L+ + A+ K++D AG + R + E ++ +HFL+TGR P S E + DSEY+ + E L++YA+ +A+ D S+ C + + G L+ FDFRNGPLR+++DG+KY V++++D+LYE +L+G V +E+ +K I+ D+ RE VIK++RD+QK SK AI++ HRGD KA + L+ +TAAE +L ++ + P LR GS +A++EE+AEA L+ WL+ KK +A++ +GL ++ EEYLGG+ DLTGE+ R AVA AT RD V+ ET + + E V+ LP +L +K G L +RK+E++ YELAL A
Sbjct: 21 LGVRQEEERRRHKAAG---DAANASGRLAKKAALELQLGRTNDAKACTEQARKALDGAGEDGFNQETKQRAYALKPIAEQIQTVESTLHFLETGRFPPPS---EGLDDSEYIQGLLGGAENLAKYAVGRATAGDASSIAVCRDGVKALQGALLAFDFRNGPLRRRFDGLKYQVKRLEDLLYEQSLIG--------KTIDSVTQV--------------------DEDDPCLKALAEIKIRFDEADQARENVIKKSRDVQKASKQAIFACHRGDAAKAAKLLETAKTAAEAILNDETLVKKWPALRFGSLAAALEEYAEAALFMKWLEAKKDPSAPLVASQHALGLPLSDEEYLGGVCDLTGEVGRVAVAAATARDLGTVRRVFETDVAVMEAVSGLNLPPKLAKKIGPLEMCVRKVEHLLYELALAAA 414
BLAST of mRNA_P-fluviatile_contig87.14927.1 vs. uniprot
Match: B5Y4Y7_PHATC (Predicted protein n=2 Tax=Phaeodactylum tricornutum TaxID=2850 RepID=B5Y4Y7_PHATC) HSP 1 Score: 207 bits (528), Expect = 2.400e-54 Identity = 139/384 (36.20%), Postives = 203/384 (52.86%), Query Frame = 1
Query: 919 LKSVDQAGSADELRHDRVSGSLETFIKAKAFVHFLQTGRLLPKSAVGEEIQDSEYLGAAMRLTEALSRYAITQASTLDKGSVLACALLCRGIFGELVQFDFRNGPLRKKYDGVKYDVRKVDDILYELALLGGGEGEXXXXXXXXVVXXXXXXXXXXXGGSRKRKERGEEEE--VLDVKEFEAIREAMTAFDEKREAVIKRTRDIQKGSKMAIYSLHRGDFKKAEQQLQGCRTA-AEGLLPMINETPLLRMGSFSASMEEFAEARLYELWLKDKKLATKAEVG--------------LVNTEEYLGGLLDLTGELNRFAVARATERDSVGVKECLETVLVIHEFV-TLNALPGELRRKKGELFSSLRKLENMTYELALMKAGKGK 2016
LK +D + A RH +S +E +++ AF FLQ+ LLP +A D EYLGA M L + L RY + +A+ D SV A A L + L+Q DFRNGPLR+KYDG KY ++ ++ +LYELA+ G S ++ + E+ +L + +A++ M D+ RE++IK+ RD QK +K +I++LHRGD +KA + L C LLP++ E PLLR GSF+ +EE+ E +L+ WL K E + EYLGGL DLTGE+ R+AV R T RD GV+ CLET I+ + + LP + +K +L S+ K+E M YE++L +A G+
Sbjct: 118 LKQLDASDRAP--RHANLSFKMEDYLRFLAFQRFLQSADLLPPAA---PFTDEEYLGACMGLAQDLQRYGLGRATVRDVASVQAAADLVGDLLDFLLQLDFRNGPLRRKYDGTKYSLKALETLLYELAVTDSSRA--------------------VEGTSPAKRSKVEKASTMLLPLDSLQALKSRMVYRDDLRESLIKKCRDGQKAAKQSIFALHRGDKEKALELLTECHNGIVNELLPIVVEEPLLRNGSFANVLEEYVEGKLFCAWLYGKDYGRDVESDQPSGTVLKPEDFDIALEPAEYLGGLCDLTGEVGRYAVQRGTARDVRGVQLCLETNTSIYTALQAIGRLPQGIPKKMDQLRYSVEKIERMLYEMSLSEAAGGR 476
BLAST of mRNA_P-fluviatile_contig87.14927.1 vs. uniprot
Match: A0A7S1D4M2_CYCTE (Hypothetical protein n=1 Tax=Cyclophora tenuis TaxID=216820 RepID=A0A7S1D4M2_CYCTE) HSP 1 Score: 202 bits (515), Expect = 6.020e-53 Identity = 138/363 (38.02%), Postives = 199/363 (54.82%), Query Frame = 1
Query: 958 RHDRVSGSLETFIKAKAFVHFLQTGRLLPKSAVGEEIQDSEYL-GAAMRLTEALSRYAITQASTLDKGSVLACALLCRGIFGELVQFDFRNGPLRKKYDGVKYDVRKVDDILYELALLGGGEGEXXXXXXXXVVXXXXXXXXXXXGGSRKRKERGEEEEVLDVKEFEAIREAMTAFDEKREAVIKRTRDIQKGSKMAIYSLHRGDFKKAEQQLQGCRTAAE-GLLPMINETPLLRM-GSFSASMEEFAEARLYELWLKDKK-LATKAEVGLV---------NTEEYLGGLLDLTGELNRFAVARATERDSVGVKECLETVLVI-HEFVTLNALPGELRRKKGELFSSLRKLENMTYELALMKA 2004
R +S LE +++ +++ FL+ G+LLP SA + D EYL GA M L L+RY + QA+ D SV L I EL+QFDFRNGPLR+K+DG KY ++ ++ +LYEL++ G ++K K +++ +E + +R M DE RE +IK RD QK +K +I++LHRGD K AE LQ C T + LLP+ E P LR GS + +EE+ EA+ + +WL K +T+A L+ EEYLGGL D+TGE+ RFAV R T RD+ GV+ CL T I + TL +PG + +K + S+ KLE + YE++L +A
Sbjct: 98 REANLSFRLEDYVRVQSYSFFLEQGKLLPPSAC-KYATDEEYLAGALMGLCSDLARYGMGQATGRDVVSVKIARDLVHAIQNELLQFDFRNGPLRRKFDGTKYSLKTLETLLYELSVTGSAPEHPQ---------------------NKKHKC-----DLVPTQELKQLRSRMEYRDELREKLIKMCRDGQKAAKQSIFALHRGDRKMAENLLQQCETCIDRSLLPIATEEPPLRYAGSLTGVLEEYVEAKQFHVWLFGKDGSSTEATGDLLLPDEFSVDLTPEEYLGGLCDVTGEIGRFAVQRGTVRDTDGVRLCLRTNSSIWNALQTLERVPGSIGKKMDAMRLSVEKLERILYEMSLSEA 433
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 | 659.8 |
| Seed ortholog evalue | 1e-186 |
| Seed eggNOG ortholog | 2880.D8LJ47 |
| Preferred name | TSN |
| KEGG rclass | RC00017 |
| KEGG ko | ko:K04500,ko:K05287 |
| KEGG Reaction | R05923,R05924,R08107 |
| KEGG Pathway | ko00563,ko01100,ko04068,ko04110,ko04144,ko04218,ko04350,ko04371,ko04390,ko04520,ko04550,ko04659,ko04926,ko04933,ko05142,ko05166,ko05200,ko05210,ko05212,ko05225,ko05226,ko05321,map00563,map01100,map04068,map04110,map04144,map04218,map04350,map04371,map04390,map04520,map04550,map04659,map04926,map04933,map05142,map05166,map05200,map05210,map05212,map05225,map05226,map05321 |
| KEGG Module | M00065,M00680,M00681 |
| GOs | GO:0003674,GO:0003676,GO:0003677,GO:0003690,GO:0003696,GO:0003697,GO:0003723,GO:0003729,GO:0003824,GO:0004518,GO:0004519,GO:0004521,GO:0004540,GO:0005488,GO:0005515,GO:0005575,GO:0005622,GO:0005623,GO:0005634,GO:0005737,GO:0005829,GO:0006139,GO:0006259,GO:0006310,GO:0006396,GO:0006399,GO:0006725,GO:0006807,GO:0006950,GO:0008033,GO:0008150,GO:0008152,GO:0009605,GO:0009892,GO:0009987,GO:0009991,GO:0010467,GO:0010468,GO:0010605,GO:0010608,GO:0010629,GO:0016070,GO:0016246,GO:0016441,GO:0016458,GO:0016787,GO:0016788,GO:0019222,GO:0031047,GO:0031647,GO:0031667,GO:0034470,GO:0034641,GO:0034660,GO:0035194,GO:0035939,GO:0040029,GO:0042162,GO:0042321,GO:0042594,GO:0042595,GO:0042749,GO:0042752,GO:0042754,GO:0042802,GO:0042803,GO:0043047,GO:0043170,GO:0043226,GO:0043227,GO:0043229,GO:0043231,GO:0043565,GO:0044237,GO:0044238,GO:0044260,GO:0044424,GO:0044444,GO:0044464,GO:0044877,GO:0045187,GO:0046483,GO:0046983,GO:0048519,GO:0048521,GO:0050789,GO:0050795,GO:0050821,GO:0050896,GO:0051239,GO:0051241,GO:0060255,GO:0065007,GO:0065008,GO:0071704,GO:0090304,GO:0090305,GO:0090501,GO:0090502,GO:0097159,GO:0098847,GO:0140098,GO:1901360,GO:1901363,GO:1990605,GO:1990837 |
| EggNOG free text desc. | single-stranded DNA binding |
| EggNOG OGs | KOG3067@1,KOG3067@2759 |
| COG Functional cat. | S |
| Best tax level | Eukaryota |
| Best eggNOG OG | NA|NA|NA |
| BRITE | ko00000,ko00001,ko00002,ko01000 |
| Hectar predicted targeting category | mitochondrion |
| Exons | 11 |
| Model size | 3155 |
| Cds size | 1590 |
| Stop | 1 |
| Start | 1 |
Relationships
The following UTR feature(s) are a part of this mRNA:
| Feature Name | Unique Name | Species | Type | Position |
| 1622817296.3807023-UTR-P-fluviatile_contig87:101698..102771 | 1622817296.3807023-UTR-P-fluviatile_contig87:101698..102771 | Porterinema fluviatile SAG_2381 | UTR | P-fluviatile_contig87 101699..102771 - |
| 1693571974.8723397-UTR-P-fluviatile_contig87:101698..102771 | 1693571974.8723397-UTR-P-fluviatile_contig87:101698..102771 | Porterinema fluviatile SAG_2381 | UTR | P-fluviatile_contig87 101699..102771 - |
| 1622817296.6299396-UTR-P-fluviatile_contig87:120589..121081 | 1622817296.6299396-UTR-P-fluviatile_contig87:120589..121081 | Porterinema fluviatile SAG_2381 | UTR | P-fluviatile_contig87 120590..121081 - |
| 1693571974.9923916-UTR-P-fluviatile_contig87:120589..121081 | 1693571974.9923916-UTR-P-fluviatile_contig87:120589..121081 | Porterinema fluviatile SAG_2381 | UTR | P-fluviatile_contig87 120590..121081 - |
The following CDS feature(s) are a part of this mRNA:
| Feature Name | Unique Name | Species | Type | Position |
| 1622817296.3908584-CDS-P-fluviatile_contig87:102771..102882 | 1622817296.3908584-CDS-P-fluviatile_contig87:102771..102882 | Porterinema fluviatile SAG_2381 | CDS | P-fluviatile_contig87 102772..102882 - |
| 1693571974.8847578-CDS-P-fluviatile_contig87:102771..102882 | 1693571974.8847578-CDS-P-fluviatile_contig87:102771..102882 | Porterinema fluviatile SAG_2381 | CDS | P-fluviatile_contig87 102772..102882 - |
| 1622817296.4004612-CDS-P-fluviatile_contig87:103322..103409 | 1622817296.4004612-CDS-P-fluviatile_contig87:103322..103409 | Porterinema fluviatile SAG_2381 | CDS | P-fluviatile_contig87 103323..103409 - |
| 1693571974.9004664-CDS-P-fluviatile_contig87:103322..103409 | 1693571974.9004664-CDS-P-fluviatile_contig87:103322..103409 | Porterinema fluviatile SAG_2381 | CDS | P-fluviatile_contig87 103323..103409 - |
| 1622817296.411599-CDS-P-fluviatile_contig87:104016..104127 | 1622817296.411599-CDS-P-fluviatile_contig87:104016..104127 | Porterinema fluviatile SAG_2381 | CDS | P-fluviatile_contig87 104017..104127 - |
| 1693571974.9100254-CDS-P-fluviatile_contig87:104016..104127 | 1693571974.9100254-CDS-P-fluviatile_contig87:104016..104127 | Porterinema fluviatile SAG_2381 | CDS | P-fluviatile_contig87 104017..104127 - |
| 1622817296.42091-CDS-P-fluviatile_contig87:104531..104621 | 1622817296.42091-CDS-P-fluviatile_contig87:104531..104621 | Porterinema fluviatile SAG_2381 | CDS | P-fluviatile_contig87 104532..104621 - |
| 1693571974.9212677-CDS-P-fluviatile_contig87:104531..104621 | 1693571974.9212677-CDS-P-fluviatile_contig87:104531..104621 | Porterinema fluviatile SAG_2381 | CDS | P-fluviatile_contig87 104532..104621 - |
| 1622817296.4306886-CDS-P-fluviatile_contig87:105705..105826 | 1622817296.4306886-CDS-P-fluviatile_contig87:105705..105826 | Porterinema fluviatile SAG_2381 | CDS | P-fluviatile_contig87 105706..105826 - |
| 1693571974.9291186-CDS-P-fluviatile_contig87:105705..105826 | 1693571974.9291186-CDS-P-fluviatile_contig87:105705..105826 | Porterinema fluviatile SAG_2381 | CDS | P-fluviatile_contig87 105706..105826 - |
| 1622817296.4403787-CDS-P-fluviatile_contig87:106085..106154 | 1622817296.4403787-CDS-P-fluviatile_contig87:106085..106154 | Porterinema fluviatile SAG_2381 | CDS | P-fluviatile_contig87 106086..106154 - |
| 1693571974.9370813-CDS-P-fluviatile_contig87:106085..106154 | 1693571974.9370813-CDS-P-fluviatile_contig87:106085..106154 | Porterinema fluviatile SAG_2381 | CDS | P-fluviatile_contig87 106086..106154 - |
| 1622817296.4504626-CDS-P-fluviatile_contig87:106931..107287 | 1622817296.4504626-CDS-P-fluviatile_contig87:106931..107287 | Porterinema fluviatile SAG_2381 | CDS | P-fluviatile_contig87 106932..107287 - |
| 1693571974.9495919-CDS-P-fluviatile_contig87:106931..107287 | 1693571974.9495919-CDS-P-fluviatile_contig87:106931..107287 | Porterinema fluviatile SAG_2381 | CDS | P-fluviatile_contig87 106932..107287 - |
| 1622817296.4662106-CDS-P-fluviatile_contig87:107941..108048 | 1622817296.4662106-CDS-P-fluviatile_contig87:107941..108048 | Porterinema fluviatile SAG_2381 | CDS | P-fluviatile_contig87 107942..108048 - |
| 1693571974.957673-CDS-P-fluviatile_contig87:107941..108048 | 1693571974.957673-CDS-P-fluviatile_contig87:107941..108048 | Porterinema fluviatile SAG_2381 | CDS | P-fluviatile_contig87 107942..108048 - |
| 1622817296.5830114-CDS-P-fluviatile_contig87:109016..109154 | 1622817296.5830114-CDS-P-fluviatile_contig87:109016..109154 | Porterinema fluviatile SAG_2381 | CDS | P-fluviatile_contig87 109017..109154 - |
| 1693571974.9675741-CDS-P-fluviatile_contig87:109016..109154 | 1693571974.9675741-CDS-P-fluviatile_contig87:109016..109154 | Porterinema fluviatile SAG_2381 | CDS | P-fluviatile_contig87 109017..109154 - |
| 1622817296.6024084-CDS-P-fluviatile_contig87:109730..109872 | 1622817296.6024084-CDS-P-fluviatile_contig87:109730..109872 | Porterinema fluviatile SAG_2381 | CDS | P-fluviatile_contig87 109731..109872 - |
| 1693571974.9757967-CDS-P-fluviatile_contig87:109730..109872 | 1693571974.9757967-CDS-P-fluviatile_contig87:109730..109872 | Porterinema fluviatile SAG_2381 | CDS | P-fluviatile_contig87 109731..109872 - |
| 1622817296.6137621-CDS-P-fluviatile_contig87:120331..120589 | 1622817296.6137621-CDS-P-fluviatile_contig87:120331..120589 | Porterinema fluviatile SAG_2381 | CDS | P-fluviatile_contig87 120332..120589 - |
| 1693571974.9841151-CDS-P-fluviatile_contig87:120331..120589 | 1693571974.9841151-CDS-P-fluviatile_contig87:120331..120589 | Porterinema fluviatile SAG_2381 | CDS | P-fluviatile_contig87 120332..120589 - |
The following polypeptide feature(s) derives from this mRNA:
Sequences
The following sequences are available for this feature:
protein sequence of mRNA_P-fluviatile_contig87.14927.1 >prot_P-fluviatile_contig87.14927.1 ID=prot_P-fluviatile_contig87.14927.1|Name=mRNA_P-fluviatile_contig87.14927.1|organism=Porterinema fluviatile SAG_2381|type=polypeptide|length=530bp
MLLVARAVRLSSLYFRSSGPLWMLPHRSIIPLATHRFSLSSRLSCTSHRI LSIMSAGSGNGGVIRPRVPVSSITAFGEGLGQEKLKALGRELSASSESER VMHPFAGKIYDISTAALFYAHNGRLDSAQEQLTAAQELISSDLKSVDQAG SADELRHDRVSGSLETFIKAKAFVHFLQTGRLLPKSAVGEEIQDSEYLGA AMRLTEALSRYAITQASTLDKGSVLACALLCRGIFGELVQFDFRNGPLRK KYDGVKYDVRKVDDILYELALLGGGEGEGEGVGGGEVVGDDDGDVDGDDG GSRKRKERGEEEEVLDVKEFEAIREAMTAFDEKREAVIKRTRDIQKGSKM AIYSLHRGDFKKAEQQLQGCRTAAEGLLPMINETPLLRMGSFSASMEEFA EARLYELWLKDKKLATKAEVGLVNTEEYLGGLLDLTGELNRFAVARATER DSVGVKECLETVLVIHEFVTLNALPGELRRKKGELFSSLRKLENMTYELA LMKAGKGKVAGVSGLDEGPRGGPNGDNEG* back to topmRNA from alignment at P-fluviatile_contig87:101699..121081- Legend: UTRpolypeptideCDS Hold the cursor over a type above to highlight its positions in the sequence below. >mRNA_P-fluviatile_contig87.14927.1 ID=mRNA_P-fluviatile_contig87.14927.1|Name=mRNA_P-fluviatile_contig87.14927.1|organism=Porterinema fluviatile SAG_2381|type=mRNA|length=19383bp|location=Sequence derived from alignment at P-fluviatile_contig87:101699..121081- (Porterinema fluviatile SAG_2381) CACAGAACTTCATGTCATCGACAGCCCTGACACATGTCTTCTTATCAATA
GAATTGGTGAAAGATAGAGAGACGACCTCAGCCCACTGCCTCACTCTCCT
CACAGTAGTGGCACCAGTACCAACCACGGACGGCAGAAAACAGGGCACGA
TCTCCATAGCCATTTTCCCCACCTTTTTCTCCGTCGACTTCCCCGTCTTC
CTTCACCACCACACCACCTCCTAAATCAATACAAGATGAACGTGGATTCG
GAGAGGCGGACATGACCACACAAAGCGGCAGTTTGGATAAGCCAGCAGGG
GCCACGGCAGACGGGCCAGGCACCTGGCACCACACTGCACTACATGGTCA
GGGCGGCGGCGGCGGGGGGGGGTCGTGCAATAGGGCAGGCCACATCTAAA
CGTGGGTATCCAAGGGTTTTCACCGTGAACCACCTTGGGCGGGGATCGAT
TGACACTGTGACACTGCTTGCTCAGCCAGCTGCCCGGAGCTGATGCTGCT
GGTTGCAAGGGCAGTGCGTCTCAGTTCCCTTTATTTTCGGAGTAGTGGGC
CGCTTTGGATGCTACCTCATCGCTCCATCATACCGCTTGCGACGCACCGC
TTTTCGTTGAGCAGCAGACTGAGCTGCACCTCCCACCGCATCTTGAGCAT
CATGTCCGCTGGGAGCGGCAATGGTGGCGTCATCCGCCCACGGGTTCCTG
TGAGCTCGATCACGGCATTCGGTGAAGGCTTGGGGCAGGAGAAACTTAAG
GTAAGAGGGGGGTTAACAGGGTCGAGAGCCGAACCAGGTGGGGTTCAGGA
TGCCAGGCACACAACACACCCAAGATTAGATTTGCGGTGCCGGTGATCCG
AGAGAGGTCATACTTCGGTGTATCTATCTTTGCCCTGCTACTGTAGTGAA
ACCGATATGAGATGCAGCAGCGCCTTTGCAGAGCAGCGCGTAGTGCGTTA
GATACGCCATGCCCCCTACCGGGTGGGTTGCGCGAAACCCGATTTCTCCT
CAACACCTAAAAAGGGTCGTTCTTGAAAAAACACGGAATATTTCACGGAA
CCGTGTTTTCTTGCAAATATATGGAGGCGTTTCTCCCCGAAAACGTGTAA
AGAAGGAGCCGTGATTTTTGGGGGCTTGCTCCTTTCACCGTTCCGGGGGG
AAAAAACCGCTTTTTCCGGGCAGCCGAAGCAGATACCGGTCGCGCGTGCT
GCCTTCATCACACCACACCTGGACAGCACCCACAACACCCCAAAAAGCTT
CCCACGGCAAGTCGACCACCATGGCTGAGCGCGGGAAGCGCCAGGATCCC
ACAGACCCCGCACCGCAACGCCGGGAGAAGCGCCGTCGACGAGCTATCGA
TGAGGAGAATGCAGCCTAGGAAGACAAGGGGTTCACGGTCCTGGGTTTTC
TGAGGGCCGTAGTAGTGGCGGCGGGCGTCGTGGCAGCAGGAGAAGCTCAT
CGTGCCCACTGCCCTCAGGAACGGGAGCCCATCTACGAGCCCAAGCGACT
TCCGGGGGCCCAACACGAGGCGGACCTCGATAAACGGCGCGGCTGGGGGC
GGTCGTATCGCATGGAAAAAGACAGTTTCCACAAGCTCGTCGAGCTACTC
CGCCCATCGCTCGAAGTCAACGCCTTCTTCGGCGGTGAGTGTTGATGCGT
AGGTGCAGCCGCCCACGGCACGTATGCGTAAGGCTCCCTCTGGTGTATAT
ATATATGTAGAACCGGGGACGAGCAACTCAAAACCAAGGGAGAACGATAT
TACAGCTGTAGAATACTGTATGACCCGTGTCTTTTCAAAAATAAAAACTC
GCTCGTTGAAGCAGCGGTACCATCCAGGAACATATAGCAGTGCCGCAGCA
TATCTCGTCTACAGCAGTACGGCTGTAGTATGCATATTGTACAGCAGCAG
TCATTGTATGAGAACAACGCTGAGGTACTACTATTTGCGACGCTGACTAC
CGTTCAGCAGTAATAGTTAATCACAATACACGCTGGCACCACTAAAACAG
TATACATGACTCGTCGGGAGCCAATCAATGCAGAATGTCGTATCCCCCGC
AATGACACAACAGCATTCGACACTGCTCATCATGTGCAAGATATTGCGTG
TGTGTAGGTGATTAACACAGATCCGTCTCAGTACCGTAGTCGGGAGGTGG
ACTGGGCCGGCAATCTGACGAGTTTGTCGAGAACACGCGTCCCCATCATA
GGTTGTTAATTAGGTGCTGGCGATTGCAAACATGCCACCTCTGACACTCG
CATGGCGTGCAAAAATTATCTGCGCGTCGCTCGGAAACCCCACAGCACTG
CGATCGCCACGCAACGGCGCCATAGCCGTGGAAGTTCGCGTTGCCGTGGC
GTTGAGGATCCTGGCTGGCGCCAGTTACTGGGATGTCCTTCTCATGTTTG
GCTTGTCGGTGGCGGTCACATACCAGTTCTTGTGGGAGGTGATCGATGCC
ATCAACAACACGCCTGCGGTTGGGGCATTCGACTTCCCCCTGACCGAGGA
AGGATGCATGCGAAACGCCGACAGATTCAAGGTGAGGCCTAGCGGTGGTC
AGTACTGCTGCTGTGAGGGTTAATTCTTGGCGGCATTCTTTCGACCAACC
GCGCGATATCGTTCGTTTTTGTTTTGTGCGACTGGCGTTTCCAGCCGTTT
TATTAGTGTAGTGGTGAGGCCCATCTATAATACGCAGCCCCCGTCGGTAA
AGTGCGGGTACAAGTTCGGGTTGTCGTCGTTATCAGCATGCTTCGAATCG
AAAAACACCCCCGGGGTCCCAGGTGGTTCGCCAGCTTTTGACATCCTTTT
TCAAATATGTTACTTGGGTTAGATCAATTGTGTATGCTGGCCATGTTGGT
TCGGCCCCGCAACAGCTTTCTGCGAGACAAGAGTGTGGAATCAATGTACT
GTAGCCCCCTTCGTCTCTAAGATGCCCTAGTACCTTTTTACCGCTGTACC
TGGCGCGACATTAGGATTAGCAAACATCAAGTCTCAGCTTGCACGGTATG
CGCACCGTTCGTGGCTAGTGATGGCGCCGTCGCTGATGACACCAACCCAC
ACGACGTATCTCTCGACTTTTTATTTTGTATCTCCCGGTACTACTTTCCC
GCCGTCGTGTCTGCCGTCTACAAATGCAGGACAAGGGCACGGGTCGTCGC
CGCCGTGGATGGTCTGTTCATCAAGGCCAAGGCTCCGTGTGAGAAAGAGA
CCAAAAACGTCGTCCAGTACTACTCTGGCAGCAAGCCCGCGTACGGCATC
AACGTGCAAGCGATGTGCACCGCCGACTACCGGTTCTGCGCAATGTCGGC
GATCTCTCCAGGATCGACGAACGACGGGGTGGCATGGAATCGATCTTCCC
TCGCCAAGGCCGTCGCCCGCTTGCCCGCCGGATTCCACATCATTGGTGAC
GCCGCCTACCCCATCGGAGAAAAGCTTCTGACTCCGTACCCTGGGAGGCA
ACTGCCGGCGGGCGAGGACTCGTTCAACCTCCACCTGAGCCAGCTTCGTG
TCAAGATCGAACAGAGCTTCGGCATCCTGGTTTCGATTCGGGGCATTCTG
TGGAGACCCCTCCGCGTGCAGCTCGGAGGACGCGCGGATCTCATCACAGC
TCTCTTTCATCTGCACGACTTCCTGTAAGACGAGAAGGTAGCGCCGATCC
AGCTTTCAGAGGAGGACTCCCGCAGCGGACTCAACCGGCCGACCCTCTGT
GCTACCCAGCGCACCTTGCCGCCGGATGGCTGGGGAACGGAGCCGGCTCC
TTCGAGGAGCGGTGAGACCCCGGCTCGAGCGGCTATCCGCAAGGCCCTGG
AGTTGAAGAAGCAGTGGAGGCCGGACTATAACCTCCAGAGGAATTCGTAA
GGACGTATCCAGCTCTGGCGGCATCGCGTGGCGGGCGCACGAGGGGGGAG
TGGGGACGGGTCTACATAGGCGCGGATGGAGTCGGATGGGGGGAAGGTCG
CTACTACGAGCGGGCGAGAGGCGCGGCGGGGAGCAAGCGGGCGCGGGGGG
GAGTGCACGGGGAGGCTATTCTGGCCATCGTGGGTACACTACAAGGGTGG
GTTAGGGTTCGGGGCTACATAGGCGGAAGGCGGCAGAAGTAGGCTCGCTG
CCTCGAGGTGGCGGGTCTCGCTTCCACGGTAGGATGAGATGGCGGGAGGG
GGGTACCTCGTTGTGGAGGGCGGAGGGCGCTGGACGGAAGCGTTTTGGGT
GTTGGTAAGAGGGTGTGATGTGTGACATGTTGGTCCTCGCTGCCATGTTT
TGTGGGTGTCGGTGTTAAGCGTTATGGCCATGAGTTTCCGGGTACACGTG
GTTCACAATGTGCCGGTGCGTGGGTCTTGGTTATGTGTATTTGGCGCCGG
GTTGACATTAATCGTGTTCGGACGAGACCGGGGCACGGTAGGTCTAGGAG
GCTGCTTGTTTTGGGTAGTGCATGAAAAGCGGGGGCATGTTCGACTTTTC
TTTCCCAGTTAGGATCGTACGAATCGCAAGCGTTAGTTGTCGTCGATACT
GTGTCTGTATTAAATTGGTTGTGCAGGGTTATTGTCATACAAATAATCTC
GGTTTGCAGCACGCCAGACGAAACCGCGATGGTCGCAAAAAACTCCTTAT
GGTATCTATCATACAACGTCAGTTTCTTCGAGCGGGTAATACATTGCTCC
AGGTTGCAAACCTGAAGGGGACACACACACACACTAAGAATTGGGGTCTT
GTAGAGTCCCATCGCCAACACATTCCTGCGCTTGGAGTGGGAATGCGCGG
AGACGGCGTAAATTGCAGGGCTCCAAAATGGTGGAACCCAAAGCGTGCCT
GAGAGTTACCGCCAACACCCAACGTAGTATTGGGTTGCAAGAACAAGTCT
TGCAAACTGGCAAACACGAAACGACATGTATGTACGCAGGTTGGAGGCGC
AGAAACTCGCCCGTGAACCACAACGGTCTCGGTGTTTTTCAACCATGTTA
CCCTTGATACTCCTTTGTTGCCGCAAGGCATGCTCTTAATTGTTGTTGCC
AACCAACCCCACACGTCTTTGCGGAGGCGCACGTGTCCTCCATGGCGATG
CTACGAAAAAATAAAGACGTTTACTCAACCATGCGCAAAAAAAACCCCCC
GAAACCACAACAAAATAAAAATAGCCACGGCCCTCGCAACAAGCAAGCCT
TGCCGTGACAGTGGGAAAAAAAAAACCCCTTGTGTTCGTTTACTGCCGGC
ACAGCAGCTTGCCAGTGGACCACAACGGTCTCGGCGTTCTTCAATCACAT
GTTATCCTTCATACTCCTTTGTTGCCGCAAGGCATCCTCTCAATTGTTGT
TGCCAACCAAACCCACACGTCTTTGCATAGTCGAACGTATCCTCGGTGCT
TAACGCTACGAAAAACAATGGTGGCTCATGCATAACAGGAGCACACGCCC
ACACGCTTCCACTTCGACGATTGCACGGAAGAAAGCAAGTCCAGCAGTGC
ATGTGGGTGTTATTGGCCGCCAAACATCTCCTTCTCGAGCTTTGCTACCA
TTTGTTCCATGAATTTTACTCTCGTCTGGTAACCCGGCCGCTTTTTTTCC
TCCTCTTCCACAATCTGCTCCGAATATTTCTGGTGGTCGGCGCACATTTC
ATTCTGCAGAGCGTATGCAGCAGCCTTGGTATCGAGGGCAGCAGACTTGC
TTTCCTCTTCCTCTTGTTTCAGTCGCCAATCAGATTTCTCCGATCCGCCA
CGTGGCAGGAGCGGCTCAATATCTAAGAGTGCGGTTTTCATGGCAACGGA
CACAGCCTCTGCCACGCTCTGCCCCCCCCTCCTTCTTTTTCTGCTTCGTC
CCCTGCCTGTTCTGCTCGTCGAGCCTCGCGCCCTCCCGCTTGGCGGCCGC
CCGGCGTTCGGCACCGCCTGTACAGCCATCGCCCTCTCCGGTCCCGTCGT
CCTCTCGCTGAGCGTCCTTCGGGAGGAGATCGTTGCACACTTGGTCAAGC
TCGGGGTATTTCTCGATTGCGCAACCGAGAATGTACGTGTCCTATTGCGC
ACATTCTCGGTTGCGCAATCGAGAAATACCCCGAGCTTGACCAAGTGTGC
AACAATCTCCTCCCGAAGGACGCTCAGCGAGAGGACGACGGGACCGGAGA
GGGCGATGGCTGTACAGGCGGTGCCGAATGCCGGGCGGCCGCCAAGCGGG
AGGGCGCGAGGCTCGACGAGCAGAACAGGCGGGGGACGAAGCAAAAAAAG
AAGGAGGGGGGGGCAGAGCGTGGCAGAGGCTGTGTCCGTTGCCATGAAAA
CCGCACTCTTAGATATTGAGCCGCTCCTGCCACATGGCGGATCGGAGAAA
TCTGATTGGCGACTGAAACAAGAGGAAGAGGAAAGCAAGTCTGCTGCCCT
CGATACCAAGGCTGCTGCATACGCTCTGCAGAATGAAATGTGCGCCGACC
ACCAGAAATATTCGGAGCAGATTGTGGAAGAGGAGGGAAAAAAGCGGCCG
GGTTACCAGACGAGAGTAAAATTCATGGAACAAATGGTAGCAAAGCTCGA
GAAGGAGATGTTTGGCGGCCAATAACACCCACATGCACTGCTGGACTTGC
TTTCTTCCGTGCAATCGTCGAAGTGGAAGCGTGTGGGCGTGTGCTCCTGT
TATGCATGAGCCACCATTGTTTTTCGTAGCGTTAAGCACCGAGGATACGT
TCGACTATGCAAAGACGTGTGGGTTTGGTTGGCAACAACAATTGAGAGGA
TGCCTTGCGGCAACAAAGGAGTATGAAGGATAACATGTGATTGAAGAACG
CCGAGACCGTTGTGGTCCACTGGCAAGCTGCTGTGCCGGCAGTAAACGAA
CACGAGGGTGTTTTTTTTTTCCCACTGTCACGGCAAGGCTTGCTTGTTGC
GAGGGCCGTGGCTTTTTTTTTTTTGTGGTTTCGGGGGCGGGGGGGTATTT
TTTTGCGCATGGTTGAGTAAACGTCTTTATTTTTTCGTAACATCGCCATG
GAGGGGAAGTTGTGCAGATGAAAGAGAGCTGTGATGAGATCCGCGCGTCC
TCCGAGCTGCACGCGGAGGGGTCTCCACAGAATGCCCCAAGTCGAAACCA
GGATGCCGAAGCTCTGTTCGATCTTGACACGAAGCTGGCTCAGGTGGAGG
TTGAACGAGTCCTCGCCCGCCGGCAGTTGCCTCCCAGGGTACGGAGTCAG
AAGCTTTTCTCCGATGGGGTAGGCGGCGTCACCAATGATGTGAAATCCGG
CGGGCAAGCGGGCGACGGCCTTGGCGGGGGAAGATCGATTCCATGCCACC
CAGTCGTTCGTCGATCCTGGAGAGATCGCCGACATTGCGCAGAACCGGTA
GTCGGCGGTGCACATCGCTTGCACGTTGATGCCGTACGCGAACTTGCTGC
CAGAGTAGTACTGGACGACGTTTTTGGTCTCTTTCTCACACGGAGCCTTG
GCCTTGATGAACAGACCATCCACGGCGGCGACGACCCGTGCCCTTGTCCT
GCATTTGTAGACGGCAGACACGACGGCGGGAAAGTAGTACCGGGAGATAC
AAAATAAAAAGTCGAGAGATACGTCGTGTGGGTTGGTGTCATCAGCGACG
GCGCCATCACTAGCCACGAACGGTGCGCATACCGTGCAAGCTGAGACTTG
ATGTTTGCTAATCCTAATGTCGCGCCAGGTACAGCGGTAAAAAGGTACTA
GGGCATCTTAGAGACGAAGGGGGCTACAGTACATTGATTCCACACTCTTG
TCTCGCAGAAAGCTGTTGCGGGGCCGAACCAACATGGCCAGCATACACAA
TTGATCTAACCCTATAATAGTAACATATATTTGAAAAAGGATGCCAAAAG
CTGGCGAACCACCTAGGACCCCGGGGGTGTTTTTCGATTCGAAGCATGCT
GACAACGACGACAACCGGAACTTGTACCCGCACTTTACCGACGGGGGCTG
CGTATTATAGATGGGCCTCACTACACTAATAAAACGGCTGGAAACGCCAG
TCGCACAAAACAAAAACGAACGATATCGCGCGGTTGGTCGAAAGAATGCC
GCCAAGAATTAACCCTCACAGCAGCAGTACTGACCACCGCTAGGCCTCAC
CTTGAATCTGTCGGCGTTTCGCATGCATCCTTCCTCGGTCAGGGGGAAGT
CGAATGCCCCAACCGCAGGCGTGTTGTTGATGGCATCGATCACCTCCCAC
AAGAACTGGTATGTGACCGCCACCGACAAGCCAAACATGAGAAGGACATC
CCAGTAACTGGCGCCAGCCAGGATCCTCAACGCCACGGCAACGCGAACTT
CCACGGCTATGGCGCCGTTGCGTGGCGATCGCAGTGCTGTGGGGTTTCCG
AGCGACGCGCAGATAATTTTTGCACGCCATGCGAGTGTCAGAGGTGGCAT
GTTTGCAATCGCCAGCACCTAATTAACAACCTATGATGGGGGACGCGTGT
TCTCGACAAACTCGTCAGATTGCCGGCCCAGTCCACCTCCCGACTACGGT
ACTGAGACGGATCTGTGTTAATCACCTACACACACGCAATATCTTGCACA
TGATGAGCAGTGTCGAATGCTGTTGTGTCATTGCGGGGGATACGACATTC
TGCATTGATTGGCTCCCGACGAGTCATGTATACTGTTTTAGTGGTGCCAG
CGTGTATTGTGATTAACTATTACTGCTGAACGGTAGTCAGCGTCGCAAAT
AGTAGTACCTCAGCGTTGTTCTCATACAATGACTGCTGCTGTACAATATG
CATACTACAGCCGTACTGCTGTAGACGAGATATGCTGCGGCACTGCTAAA
TGTTCCTGGATGGTACCGCTGCTTCAACGAGCGAGTTTTTATTTTTGAAA
AGACACGGGTCATACAGTATTCTACAGCTGTAATATCGTTTCTCCCTTGG
TTTTGAGTTGCTCGTCCCCGGTTCTACATATATATTTATACACCAGAGGG
AGCCTTACGCATACGTGCCGTGGGCGGCTGCACCTACGCATCAACACTCA
CCGCCGAAGAAGGCGTTGACTTCGAGCGATGGGCGGAGTAGCTCGACGAG
CTTGTGGAAACTGTCTTTTTCCATGCGATACGACCGCCCCCAGCCGCGCC
GTTTATCGAGGTCCGCCTCGTGTTGGGCCTACGGAAGTCGCTTGGGCTCG
TAGATGGGCTCCCGTTCCAGAGGGCAGTGGGCACGATGGGCTTCTCCTGC
TGCCACGACGCCCGCCGCCACTACTACGGCCCTCAGAAAACCCAGGACCG
TGAACCTCTTGTCTTCCTAGGCTGCATTCTCCTCATCGATAGCTCGTCGA
CGGCGCTTCTCCCGGCGTTGCGGTGCGGGGTCTGTGGGATCCTGGCGCTT
CCCGCGCTCAGCCATGGTGGTCGACTTGCCGTGGGAAGCTTTTTGGGGTG
TTGTGGGTGCTGTCCAGGTGTGGTGTGATGAAGGCAGCACGCGTGACCGG
TATCTGCTTCGGCTGCCCGGAAAAAGCGGGGGGTTTTCCCCGGAACCGTG
AAAGGAGCAAGCCCCCAAAAATCACGGCTCCTTCCTTACACGTTTTCGGG
GAGAAACGCCTCCATATATTTGCAAGAAAACACGGTTCCGTGAAATATTC
CGTGTTTTTTCGGTCGATAAGAATGACCCTAAGAAGTTTCTGACGAAGGA
ATGTGACGGACACAAGTAGAAACTAACTTTCGCACAAGTAGGACTGTGTT
GCTGCTTTGGTTTTTTGTTTGTCATTGACCCCCTACAGTTTGGATGCCTT
CTCGCACGATTACACGCCAAGGCAGTTTAGGGGCGGGTCTGGCCGGTGAA
AGCCCGGACATGTAGCATACGGGCCTCGTATGGATGTTCGGATAGCTTGT
GATTATGGTTTGAATAGAGAAAAGTAGAGGGTAGGTGGTGATTCCTGTGG
CACCCACGCACCAGCTTGGATGCCCTTTTCCTTTCTCCCCAGCCGACGGT
TTGAGTTTTCCGTAATGATTCACGATGGATCCACTGTCAGTTTATTTGAT
TCTCGTTACTGTACCCGCGCGGGGTACTATTTCTTAGCCCGTGATCACGG
AAGTCGACTCGATAGGGTAGAGCAGCACGGACATTTGCGCGTACTCAGAA
GTGATCGGGAGTGTTTTTTACGTGACAACAACAACAACAGATTTGTTTTC
ACGGGGCTGTGCGGAGTCGGTGTGCCCCTGATTGTTGTTCCACGAAATGT
TTCGTCAATTCCGCCAAAGAGTCGAGCCGAAGCTGGCCGCGTGCGCCAGG
AGCGGCGCAGAGAAACACCTGTGGAGTACCTGGGTCCTATGCATCATAAT
TTCCGAGAGATTTACGAGTTTTGCTTCTTTTTGTTGTAACGATAACATAC
TCCGGAGTATTTGCTATGAGACAAAACGAAAATAACAAAAATCTACGGTT
CAGTCGTAAATATCTTGGCCAGAGCGATGCGAACCACCTGCCAAATTTCA
GCATCTGGTTCGAAGAAATACGGGGGCGAAAATCACTAATTTGGTTTTGA
ACGGAGAACCTGGATCAAGCGGCAACAACGGAAAGATGAAGTGGGAGGTC
TCAACGACCCTGCACTTTTGTGTGGCTTTGGTGTACTTGCGAGAATGATG
CCGGCTGCTAACGAAAGATGTGCATGGACATCCTCATCGTGAGCGGAGAG
GCAGTGGCCCAGGAGACGCTTCATTCAAGCCTCACGACGGAAAAGTCACC
AACCCTAGATGTCTACACACACGGAGGTCGGCGGGAGACACCGTCCGAGA
AACATCGCCACGCGCGAAGTGCGGCTGGTCATTTCCAGAAAGCGGGAATG
CCGTCGTGTTCCATCCCTCGCCTGTGGCTGCAAGAGAGGGATCTGGCGCT
ATGCTGCCGCTCTCTTCGTGCAAGATGTTATTGCATGTGTCTCGCTACGT
GTGTGTGCGTGTCGCAAGAGTGTTATTTCCCTGTCTAAATCCCGATGGTT
TTATGTGTGCCTAAGTAGGATATTCTCTAGTTTACAAGAACGTGGCCAAT
CGACTGACAGCGAACACGTGCAGCACCGTGATTCGGGGATTCAGCAGTTG
GTGGGGTTCCGGCAAGATTACATTGCTTTGAAACCCCATGTGGTGACGAA
GGAATGTCGCTTCCTTGCTCAGTCCATCTTGTACTTTAATTTTGGGGCCG
TTTTCCTTCTTTCGGTGTGTATTGTTCAGCTTTTGGCTCCTTGCGGTGTA
GCCGAAACATTGATTGACATGACACCCTCTATGCGATGCCTTGCGTCCGT
ACCACCAAGGCTCTGGGTAGGGAGCTGAGCGCGTCGAGCGAGAGCGAGAG
GGTGATGCACCCCTTCGCGGGGAAGATATACGACATCTCCACCGCCGCAT
TGTTCTACGCCCACAACGGCCGCCTGGACAGCGCCCAGGAGCAGCTGACC
GGTCAGTGAAAAGCGGCAGCCACCCAGCGAACTTGCTTTGTAGCCACACT
AATGACACACAGAACTTTATGGATGTTGATAGCTCAGTCTCGCCTGGAGC
TTTTGATGGGATATACCGCGGAGGCCTGCCCCCCCCTCCAAAAGAGATAT
TGGCGTCGTGACGGCACCCCCAGCCAGCCCGCCCGCCCTCCCGCCCCTTA
GAGAAGAGCAACGAAAAAGCCATCGTTGCAGATGATGGGGCGAGTGAGTC
GAGTAAAAAACAAAAGTGAATGAAGGGGCAAATCAGGACGAGAGAATTGA
CGTGGAGTGAAGATCGGCAAGTGAAAGCAAGGATATCAACGAGAGACGGG
TGAGCATAGCATACGAAGTAAGGCAAGGATATCAAAGAGAAACAGGTGTG
CACGGTACATATCTCTCATGAGAATAAGCCTTTGTCCGCTGAAGGGACGC
ATGGTCAGTGGTCAACTGACTGGTGGCACGCACAATCGAGTGCCCCCGCC
CATTACCCCAATCCCCCGCCCGCCTTACGCACGCCCGTCCCGTACTTTCG
CATCCGATTTTGCTATCGTCGTCACAGCTGCCCAGGAGCTCATATCGTCG
GATCTGAAAAGTGTCGACCAAGCTGGTTCGGCGGACGAACTGCGCCACGA
TAGAGTCTCTGGCAGCCTAGAGACCTTCATCAAAGCGAAGGCATTCGTAC
ACTTCTTGCAGACAGGTGATGACTTGTGGAGGAATCTCCCGGAGTTGCAC
TGTGCTGTTGATGCTGTTTCGCCCTTCGCCTTCGCGCGAAATTTCGAGCT
CACCCAATCGTTCAGCCCCTTATTTCAACCGGTCTTCGCTAGGTGCAGCT
TCTGCACTCCCAACCAAAGGGTACCGACTACATCAGATTGTTTATCCCAG
ACGCTTGCTGGTTTCGACTGGGACGAAGCATCCGAAGTAGAAGTCGACGA
AGCTTCGGTGGAGTGAAATCGCGTAACGTGGGGAGAAATGTTGATAAGAA
CAATCGCTTAGTGTGACGGTCTGCGCGTCGTGGATGGTTCATCCATGTTG
CGCTGCACGAGTGCTGTCCGAAAACGAAATGGTGCGATGAGGGTGATGGA
GTTGCGCTGCCATATCTGACCACGAGTAGGAGTTGCCTTCTCACCGGGTT
TCATGGGCAACGAGTTGCAGCGGCCGATAGTCACGGATATTGGCTGCTCC
TTTGCTGTATTTGCAGCAGGCGTCAGTTGGTCGGATTTCTTCGAAAGCGA
TCACAAGGACCGCCAAAATACCCCCGAACGACTCTCCGCCTGCACACCGG
CCAGGGCGACGTGCAAACCTCTCCCTTACCACCTGTACTCGGATGCTTTT
GTCTGTACATGTGTGTTTTCACAACAGGCAGGCGTTCGTGAGTCTCAGTG
TTCGTTAGTATTTCCGCTGCGAACCGTGCATGCGCAGCTTTCGCACCGAC
CATAGTTTCGCGTTCTTGAAGGACGTCTCATGGGCGAGGGCGGTCACTGC
TCCGGATGCCAAGATCTGCGATCCGCCGATGGATCCATAGGCCGGCTAGG
GCTTCCTCAATTTTCCACCTCTTTTTTTCTCGCTGGTCAAGGGGTCTTTG
CCGGTGCCGAATGCGGCTGCCCGGTGGAAGCGTGAGGCACATCTTGTTTT
CGCTTAGCGCCTATTTCTCGTGCGTTGTACAAGGGCGGCTGCTGCCGAAA
TCTGCGGTCGGCGAGGAGATCCAGGACTCGGAGTACCTCGGCGCGGCGAT
GAGGTTAACCGAAGCGCTTTCACGCTACGCGATCACTCAGGTGACCAAAT
TTGGCACTTTGCTCAAGGTCCACGACCATGTATGCGCAGACTTTCGACCA
CAGCTTGCTTCTCCATGATCCGGGTCGATGGTCCGGATGGATAGCGGGAG
GCTTCCGAATGTGGGGGTTCGAGAAAGATCGTTCATTTGCTCAGCACGAC
ACGAAATTCAAGCAGGATCGGATTCCAAGAATGGAGCGCGTAAGGCAGGC
AGGAGATAATGTGTTCAGAGCTGATGTTCTTTCGGTAAATTTGCGAAGTG
AGTGATGGGCAGGTGCATCCTTCCTTTGAGTCCTCACAAGGTTTGAGCTT
CAATATCTGCGTGCTATGAAAGTACCGGAAAAAACAGGGAAACGTATAAT
CTTGAAACAGTGCCCGGAGCCCACTTGTCGCAGTTGAGGATGACATCAAC
AGCTCTCGGGTCCACACGGCCTTTCTGCGCCACCGCGTGTTACCGTGCAC
GTATGGTATCTTCTGCTTCCCCTGTCTGTCTCTCTCTCTCTTGTCTCTGC
CTCTGGCCGCCGCATGGCGCTCATCTTTCGCCTTACCGAACCCCTCCACC
GCAACCGCATGGGCCATGATGGCCATGGTGGCTTTCGACGATCGGTGGTG
CCTATTCCTGTTGGCCCCACCGATCCATATCCGCCGGGAGCCAGGCCTCC
ACCTTGGACAAGGGCTCCGTGCTCGCCTGCGCCTTGCTGTGCCGAGGCAT
CTTCGGAGAACTGGTGCAGTTCGACTTCCGCAACGGCCCGCTCCGCAAGA
AGTACGACGGCGTCAAGTACGACGTCCGCAAGGTGGATGATATCTTGTAC
GAGCTTGCTCTGCTCGGCGGAGGCGAGGGCGAGGGCGAGGGCGTGGGCGG
GGGAGAGGTAGTTGGGGATGACGACGGTGATGTTGATGGCGATGACGGAG
GCAGTCGGAAGAGGAAAGAGAGGGGGGAGGAGGAGGAGGTCTTGGACGTT
AAGGAGTTCGAGGCCATCCGGGAGGCGATGACAGCCTTCGACGAGAAACG
GTGAGGACGGGGGCCACGGCAGGAAAAATGTTGAGGATACAGGGTGGCAA
GGGAGGGTAGAAGCGCGCATAGTGTTCGAAACTTGGCGAGAAATGAAATT
GCTGTTTGAATACAGCACTTTTGAGGGGCAGGAAGGGATGCTCCTCTTTT
GAAGAATGTGGAAAATGCCAGTATAGTAAAGAGGCGCTTATTTTGCGGAG
CAGTAACGGCACCTTGTCTATGTGTCATCTCGAGGTATCGTCAGTGCAGC
TCGAGTTTTCACGTGACATCTCGGGTGTTGTCAGTACGCGTTGGCCTGAA
ACACAAAATGCGATGCATTTGCGCGAATGCTAGGCGCGAGATATTACATC
CCCACGCACCCGGCGGGAACGGTTTCACTCCTTGTCGTTGTGAATAATGC
GAAAAACTCATCTCGGAGTTCAACTCTTCCACACAAGTGAATGGCAGTGT
TGATTCGCAATGCTTCTGGTGCTCCCAATCCCCATACCCTTGTTGCGGGA
CGTCTTCCTTGCTTGCTGGCCGGCCCCCGAGGTGGTCAAGACTACACCCA
CCTTGATTGCCACTGATGAAAGGTGTGCTTCAGGCCGTCACTAGCTCAAG
AATAACACACAAACAACAGAGAGTTGTCCCCGCACCCCTCCCCCCTCCTC
ATTTTCGCCTCTGTGTGCTAGGCTTCGAGAGCACCAGGATGACGTTGCCC
TCAATATCCCCCCCAGCCCCCGTCAGCGTTGTCATGGACTGTCCTTGCGT
GCTGTGATTCCGCTCCGCGTGTGGCAGGGAAGCGGTGATCAAGCGAACAC
GGGATATCCAAAAGGGGAGCAAGATGGCGATCTACAGCCTTCACCGGTAA
GAAAGTGCTCAGATTTTGCGGGGGGGTTGTGCTGGGGCAAGAGAGGGAAG
GAGCAACGTGGTGCTGTCGTGTGCGTCCTGTTTCACGTCGGAAGAACAAT
TTCAGATCCTCGAAATTATAGTCGTTTCTGTTAGTCTTGAGATAATTCCA
GCATGCAGCATCGGCGGCCCGCCTTCAATTCGGGCGTGCAACCCGATTTT
CCTCTGGTCTTTGCGTTCGTCCGGCCGTCTGACTCGGCTCGGGGGTCAAC
CACAGAGGGGACTTCAAGAAGGCGGAACAGCAGCTGCAAGGCTGTCGCAC
CGCCGCGGAGGGCCTCCTTCCTATGATCAATGAGACGCCTCTGCTGCGGA
TGGGCTCGTTTTCCGCCTCGATGGAGGTGGGTGTATTGTCGGTTCCTTCA
ATCCCCCGGTATCGCTTCGCCGTTTCTCCCCATTTCTGCCGTGTTTTGCA
GTCAAGTCTCAACCAAGACTTGCAGGCAACCTTCCTTACGAACGCATCTC
TTCACGGGAACTTTTATTGTGAGGCCTTCTTTGTGTTAATTCTCTCTGGC
AGAGCATAAGGTTGAACCGCGCCGTTGATGTGCTATCTTCGCAGCGGTAG
AAGCGCTCCTCCGCAAGTCGGCCGACCCTTCGGACATTGAGCGGCTTGGG
TGGCACCTGCCTATTTTGCTTTCTCTTCCCGCACCAACCCCCCCTGTGCA
AGTCCTTGAGCGTTTGCATTGTTTCATCGCATGCGTTGCTACATTGCTGT
CTGGAGACCATGTAGCGTGACCTGCGCTGATCTCCCTCGGCGTGCTTTAC
CTTCCCACCGCTCGTCGAACCCCCGGGTGTGTCTCGGGGCGAGTGTCGTC
TTCGTCCCGATGCCAGCCAAGTGTGAACGCATGGGGCCTCGACACACGGC
GGCGTCGGCACGTTTTTCTGCTCGTTTTGCCCTCCGATTGTCCTCGTGGC
CTCCTGCGTCTTACTCGTGTGTTTCCCGCGAGTGCAACGTTCCTGCTCCA
GTCGTGATTGCGGCTCGTGTGGTGATTGACTGTTGTAGGAGGTCGCGCTC
CTCGGCCACGTGCTATTTGACAAGGGAGGTTCAGCTGCGGCTTCTTCCAC
ATGCTAGCGTTACCCTCGGGGCATCTCCTTTATGTGCTACGGCGCCCACG
TGGCTGCAGAAACGATTACATTTGCGCTTTACATTCGGTGATCTGATTAC
CGTCGTAGCAAGTCCCGTCTCGATGACAACGAGTTAAGATTAAAAAAACA
ACACCGAGAAAAAATGATAGAGTTGGTTCAAGCGACGCGGGAGGAGCTCT
CTGTCCGCCTCGCTACCTCACCCACAGATGTCGTCGTCCACGTGGGTGGA
AAGGGTGGAACCTTTCTTTTCAATAGTTTCCACGTCGTCGTCGAACTGCT
GGGCCGAATGTCAAGATTATGTGTTTGCGCACAACACGATCCATTTCGCA
ACACCCCCAGGAGTTCGCGGAGGCTCGCCTGTACGAGCTGTGGCTCAAGG
ACAAGAAGCTGGCTACAAAGGCGGAGGTCGGCCTGGTCAATACCGAAGAG
GTTAGTGCGTATCGGCTGGCACACTCCTCGGCAAGTTGAAACGTGCGTTG
TGCGCGTCGGTCGGTTCTCAGGGATGTTGGCATTCGAGTCTTGTTCGTTG
CTGTTATCCGCTTTTCATCTGGAGATCATTGTTGTCACGTTCAAAAATGT
TTTCACGCTTAAGTTTTGAAGCACGATTCATGGGACAGTTGTGACTACTG
TGAACAGGCGTTCTTGCCCGTTGCATTTGGTATCTTCTGTTTTCCTATTA
TGTGTGGGCATTTTGCTTCGCCGTAAAGCGTGCCGTGGTGATTTATTTGT
TCCAGGCGACACGCCACCTGTACTGGTACAGATTCACCGTGATCCCCGTG
ACAGCCCCATGATAACAAATCCCTCCCCTGTTCGCTCGGCGCTCCTTCGC
GCAGTACCTGGGGGGGCTGCTGGATCTGACGGGAGAGCTGAACCGGTTCG
CTGTCGCCCGCGCCACCGAAAGAGACTCTGTTGGTGTGAAGGAGTGCCTT
GAGACGGTTCTGGTGGTGAGTCAACACCCTTCCTTTCGGTATCCTCTGCC
TTTTCCCGGCCTAACGCCCTTGACGTGCATACGTAACGTCCCCTCGTCTC
CTGTTTTAGGCATCACGGGACCCCGCTTCAACAGCCATTTTGGCACAAAC
GCCCGCTCACACATTGCCCACGTGAACAGCGTGTTCCGGCGGCGTGCTCA
AAAGAGATCCTTGGCGAGGATGGGCGACCGCCATCGGGTCTTGGATTTCT
TGTGCCGAGTGCGCGTACCACCGGGTGTCCTCACTCCTCCAGTTCGGTCG
CGCGTTTGCCACTTTCACAACACTCCACGTCCGTGTACGTCTCGGTGTTC
GACATTTCTGCTCAATCCGTGCGAGGCCAAAAGCTGAACCCCGCTCCTAA
TCCACCTCCATGCCTGTTGTTGACTTTGGTCATGCGCCACCAGCTTCTGC
CGAAGGTGTGCTGGCTCACACGCAGCACCCATCATCTATCTTTCCTGCCG
TCGATGCCCCCCCCCTCCCCGCTCTAATTTGTGTTCACCCCGCGACCGCC
ATCGCTCTCTCTGTGTCCCTCTTGTCTGCACTTTCTTCGGCGCTCCTCCC
GCCGCACGCAACATTCGCGCAGATCCACGAGTTCGTGACTCTCAACGCCC
TTCCGGGGGAGCTGCGTAGGAAGAAGGGCGAGCTCTTCAGTTCGCTGCGC
AAACTGGAGGTGGGCGACGACCTTTTCGTCTACTTTTTTTCATCGCTGTG
TGTGATGAACATTTCTAAAATACCTGCTGGTCGCCGCCGCAGAGGTTAAC
GTGCTTGCGCCGGGCGTGTTGCGGTCGTGGAACTCCCCGATCCGAGATTA
GCGGCTCTCGTGGGGGTGCGCGCCCGTTCGCGGACGTCGTTGCTCAACCC
CAAAAGATAGTGAGTCCGCTCTGTCCCCTGTTTGTTTTCACCATATTGTC
GTAAACAGCTGTTTCCGGCAACATGTTACGCTCAGAACCCCCCGATTATT
TCACGCGGACGCGACCTGGATACTTCCTGATAAGTTTGCGCACGTGGATG
CTTTTTGTATCTTTCGCTCCCGAGAGCTCACGATTGCTTCTCTCGTCGGC
GTCTCCCGACGCACGAACGACCACCTTGATCCTCAACCGTGCCGGACAGA
ATATGACGTATGAGTTAGCGCTGATGAAGGCCGGGAAAGGGAAGGTGGCG
GGCGTGTCCGGTTTGGACGAAGGTCCGCGTGGCGGGCCGAACGGCGACAA
CGAAGGATAAGGCTAGCTGAAGGAGAGGATGTCGTCATTCTGGCGCGAGG
CGGTTACATGCATATCCTATTGCCTCTGGGGCCCTCGAGGGCTTCAGCTG
GGGTCGAGAGGGGAAACGTCGTTGCTGCCATCGTCGTGGTTCAGCCGCAG
CGGCTGCGCCGGGCGTCGATCTGCATTGTCTGCACAACCGAGCCGAGCGA
ATGAGCCGCGGCGTTGTGCCGAGGCCTAGTCGCCGGTCGTCCTGCACGAA
GGTGGCACCAGCTGCCGGGCTCCATAAGCATTGAGCGCATGTGTATCGGT
CGAGGAGTTAGGAGGGGGCCGATGTCGTAGCGGCGGGCCCGTGTCGGGGT
TGAGAACAAAACCCCGTCCGAAGGACAAATGATCCCGAAATCGAATTTGA
TTCCTGGTCGCGGCGCTGACTTGTCAGGCAATACTGTACCGCGATCACAG
GGTCGATTCGAAGTTTCACGTCGAACCCTTTGGAATCCTGGTGGAGGTGA
GTAATCATTCTAGAGAATAGCTGGAGTAAAGCGCCATCGTTGGATGTAAC
CAGAACGTTGTGAGATGGGCGCAAGAGTAAGCTGGTTGGTGTTGATGCGC
GTGCTGCAGTGAGAGCCTGGACGCAGGTGCCTACACTGTGATGCCGCTGG
TCTGTGTTTTCTCGTGAGATCTGGCGAGGGAGCAGGGCAGACTTGCCCAC
TACAGGCAGAGAAAACAAACATTCTCCGTTAGCTGTTACAGGCGAAATGT
AGGTGGGTTGCCTCTCTCGATTCCTTCTCTGTGGCGTCGCTGCATGCACA
GGTATCTAGACTGGTTTCTAGAAGACTTGACCCTTCGGTGCAGGTGTTGT
GAACCTGCGTCAAGCATTGATGACTTACCCAAAAGCTTTCTTGTAGGATA
AGTAAAATGTGTGCAACACCGCCAGTCGTCGTCTTCGTTCATCCTGGCCC
AAGACTTCATCAGTTTGCTTCAATAACCAACACTGAAGAACTGAATGCAC
AAAACCTTGATGGGCTTTACTTTCTCTGCCGTGCACCTGCACGAGGACGA
GCCATTGTGCGAGGCTTTCCGCTGCTAGTCGAC back to topCoding sequence (CDS) from alignment at P-fluviatile_contig87:101699..121081- >mRNA_P-fluviatile_contig87.14927.1 ID=mRNA_P-fluviatile_contig87.14927.1|Name=mRNA_P-fluviatile_contig87.14927.1|organism=Porterinema fluviatile SAG_2381|type=CDS|length=3180bp|location=Sequence derived from alignment at P-fluviatile_contig87:101699..121081- (Porterinema fluviatile SAG_2381) ATGCTGCTGGTTGCAAGGGCAGTGCGTCTCAGTTCCCTTTATTTTCGGAG TAGTGGGCCGCTTTGGATGCTACCTCATCGCTCCATCATACCGCTTGCGA CGCACCGCTTTTCGTTGAGCAGCAGACTGAGCTGCACCTCCCACCGCATC TTGAGCATCATGTCCGCTGGGAGCGGCAATGGTGGCGTCATCCGCCCACG GGTTCCTGTGAGCTCGATCACGGCATTCGGTGAAGGCTTGGGGCAGGAGA AACTTAAGATGCTGCTGGTTGCAAGGGCAGTGCGTCTCAGTTCCCTTTAT TTTCGGAGTAGTGGGCCGCTTTGGATGCTACCTCATCGCTCCATCATACC GCTTGCGACGCACCGCTTTTCGTTGAGCAGCAGACTGAGCTGCACCTCCC ACCGCATCTTGAGCATCATGTCCGCTGGGAGCGGCAATGGTGGCGTCATC CGCCCACGGGTTCCTGTGAGCTCGATCACGGCATTCGGTGAAGGCTTGGG GCAGGAGAAACTTAAGGCTCTGGGTAGGGAGCTGAGCGCGTCGAGCGAGA GCGAGAGGGTGATGCACCCCTTCGCGGGGAAGATATACGACATCTCCACC GCCGCATTGTTCTACGCCCACAACGGCCGCCTGGACAGCGCCCAGGAGCA GCTGACCGGCTCTGGGTAGGGAGCTGAGCGCGTCGAGCGAGAGCGAGAGG GTGATGCACCCCTTCGCGGGGAAGATATACGACATCTCCACCGCCGCATT GTTCTACGCCCACAACGGCCGCCTGGACAGCGCCCAGGAGCAGCTGACCG CTGCCCAGGAGCTCATATCGTCGGATCTGAAAAGTGTCGACCAAGCTGGT TCGGCGGACGAACTGCGCCACGATAGAGTCTCTGGCAGCCTAGAGACCTT CATCAAAGCGAAGGCATTCGTACACTTCTTGCAGACAGCTGCCCAGGAGC TCATATCGTCGGATCTGAAAAGTGTCGACCAAGCTGGTTCGGCGGACGAA CTGCGCCACGATAGAGTCTCTGGCAGCCTAGAGACCTTCATCAAAGCGAA GGCATTCGTACACTTCTTGCAGACAGGGCGGCTGCTGCCGAAATCTGCGG TCGGCGAGGAGATCCAGGACTCGGAGTACCTCGGCGCGGCGATGAGGTTA ACCGAAGCGCTTTCACGCTACGCGATCACTCAGGGCGGCTGCTGCCGAAA TCTGCGGTCGGCGAGGAGATCCAGGACTCGGAGTACCTCGGCGCGGCGAT GAGGTTAACCGAAGCGCTTTCACGCTACGCGATCACTCAGGCCTCCACCT TGGACAAGGGCTCCGTGCTCGCCTGCGCCTTGCTGTGCCGAGGCATCTTC GGAGAACTGGTGCAGTTCGACTTCCGCAACGGCCCGCTCCGCAAGAAGTA CGACGGCGTCAAGTACGACGTCCGCAAGGTGGATGATATCTTGTACGAGC TTGCTCTGCTCGGCGGAGGCGAGGGCGAGGGCGAGGGCGTGGGCGGGGGA GAGGTAGTTGGGGATGACGACGGTGATGTTGATGGCGATGACGGAGGCAG TCGGAAGAGGAAAGAGAGGGGGGAGGAGGAGGAGGTCTTGGACGTTAAGG AGTTCGAGGCCATCCGGGAGGCGATGACAGCCTTCGACGAGAAACGGCCT CCACCTTGGACAAGGGCTCCGTGCTCGCCTGCGCCTTGCTGTGCCGAGGC ATCTTCGGAGAACTGGTGCAGTTCGACTTCCGCAACGGCCCGCTCCGCAA GAAGTACGACGGCGTCAAGTACGACGTCCGCAAGGTGGATGATATCTTGT ACGAGCTTGCTCTGCTCGGCGGAGGCGAGGGCGAGGGCGAGGGCGTGGGC GGGGGAGAGGTAGTTGGGGATGACGACGGTGATGTTGATGGCGATGACGG AGGCAGTCGGAAGAGGAAAGAGAGGGGGGAGGAGGAGGAGGTCTTGGACG TTAAGGAGTTCGAGGCCATCCGGGAGGCGATGACAGCCTTCGACGAGAAA CGGGAAGCGGTGATCAAGCGAACACGGGATATCCAAAAGGGGAGCAAGAT GGCGATCTACAGCCTTCACCGGGAAGCGGTGATCAAGCGAACACGGGATA TCCAAAAGGGGAGCAAGATGGCGATCTACAGCCTTCACCGAGGGGACTTC AAGAAGGCGGAACAGCAGCTGCAAGGCTGTCGCACCGCCGCGGAGGGCCT CCTTCCTATGATCAATGAGACGCCTCTGCTGCGGATGGGCTCGTTTTCCG CCTCGATGGAGAGGGGACTTCAAGAAGGCGGAACAGCAGCTGCAAGGCTG TCGCACCGCCGCGGAGGGCCTCCTTCCTATGATCAATGAGACGCCTCTGC TGCGGATGGGCTCGTTTTCCGCCTCGATGGAGGAGTTCGCGGAGGCTCGC CTGTACGAGCTGTGGCTCAAGGACAAGAAGCTGGCTACAAAGGCGGAGGT CGGCCTGGTCAATACCGAAGAGGAGTTCGCGGAGGCTCGCCTGTACGAGC TGTGGCTCAAGGACAAGAAGCTGGCTACAAAGGCGGAGGTCGGCCTGGTC AATACCGAAGAGTACCTGGGGGGGCTGCTGGATCTGACGGGAGAGCTGAA CCGGTTCGCTGTCGCCCGCGCCACCGAAAGAGACTCTGTTGGTGTGAAGG AGTGCCTTGAGACGGTTCTGGTGTACCTGGGGGGGCTGCTGGATCTGACG GGAGAGCTGAACCGGTTCGCTGTCGCCCGCGCCACCGAAAGAGACTCTGT TGGTGTGAAGGAGTGCCTTGAGACGGTTCTGGTGATCCACGAGTTCGTGA CTCTCAACGCCCTTCCGGGGGAGCTGCGTAGGAAGAAGGGCGAGCTCTTC AGTTCGCTGCGCAAACTGGAGATCCACGAGTTCGTGACTCTCAACGCCCT TCCGGGGGAGCTGCGTAGGAAGAAGGGCGAGCTCTTCAGTTCGCTGCGCA AACTGGAGAATATGACGTATGAGTTAGCGCTGATGAAGGCCGGGAAAGGG AAGGTGGCGGGCGTGTCCGGTTTGGACGAAGGTCCGCGTGGCGGGCCGAA CGGCGACAACGAAGGATAAAATATGACGTATGAGTTAGCGCTGATGAAGG CCGGGAAAGGGAAGGTGGCGGGCGTGTCCGGTTTGGACGAAGGTCCGCGT GGCGGGCCGAACGGCGACAACGAAGGATAA back to top
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