mRNA_P-fluviatile_contig8.14574.1 (mRNA) Porterinema fluviatile SAG_2381

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

Overview
NamemRNA_P-fluviatile_contig8.14574.1
Unique NamemRNA_P-fluviatile_contig8.14574.1
TypemRNA
OrganismPorterinema fluviatile SAG_2381 (Porterinema fluviatile SAG_2381)
Homology
BLAST of mRNA_P-fluviatile_contig8.14574.1 vs. uniprot
Match: A0A6H5LBL5_9PHAE (Protein kinase domain-containing protein n=1 Tax=Ectocarpus sp. CCAP 1310/34 TaxID=867726 RepID=A0A6H5LBL5_9PHAE)

HSP 1 Score: 605 bits (1561), Expect = 7.240e-191
Identity = 529/1122 (47.15%), Postives = 583/1122 (51.96%), Query Frame = 2
Query:  401 RAATTTTSNTE-HG-ALRAWAQQYSVETEPLGRGSFASVYKGVNRYTKEPVAVKVMTKARLGERALNMLSAEINILRTLRHPNVVCLRDSHTTERRILIVLEYCGGGDLGQFIQTRGPSPEPTARHFMLQLVAGLTFLRSRHLIHRDIKPQNLLLSEDSSRACLKIADFGLARHLPQGSLAESMLGSPLYMAPEILSNRAYDAKADLWSAGAVLFEILTAKHPYGGTNQV--------------ELMNNIRRNRPRLPPGVTLSPPCVELLGMLLVPQPDQRASLQKFVSCAFLNNGSXXXXXXXXXXXXXXXXXXXXXXXXXXXXXRDGEPRAVSPRPGRSAAKSTEPAADALRQRGQRVPPAEAHFAMYRTTVTVTTPEREREMDVATTGGSSGSRSVPFLQHGYKQQQXXXXXXLPXXXXXQWSPDSVRRMNRSDAAREGQPLDRTSDDGPAPSDAAAASNXXXXXXXXXXXXXXXXXDVRPTXXXXXXXXXDDGGARNDGIVGHPVGGRNGERGWDWGDGRGLTPALAVVAAAEAGGVHDGGAVTDGVNDGGPLPALPALPFARGPFGIRGSFKEDGCCGGDGNSIGGDDGDCPQGSAGFAF---------------DLAFAGSPMRSRCRVVPATA-APSGGGG--SERDRHSYSASDAAV--------GPE--RREREGFAA---------------------ALTAVVPLQRPQ-----------------------------------AESHAGDAVSLPRVPAAFPPATPARPRSHSVSDGASLRTKVEHSEQQIECNTAAGVSTAPSPAFHTS--GDHDSGY---------PAAAGGA------------DGIXXXXXXXXXXXRG--------------------YAQISSCSSXXXXXXXXXXXXPPAV-DLGV-PVLLKPSFRGSDSLLTIPEDSTGFVLVTRPSSITCEHGQNCECWXXXXXXXXXXXXXXXXXXXXIMRSPSTSYLAAAANPYXXXXXXXXXXXXXXXXXXXXXXXXXFLG------LGNIWNTAINTFRGVAGAHGRRSSWPAARGRH-QQTRGSMGSGSPPTAAASPAHSRAGSCSPREQ-------HRSPHSSV 3289
            R++++++S T+ HG ALR WA QYSVETEPLGRGSFASVYKGV R T EPVA+KVMTKARLGERAL MLSAE+NILRTL HPNVVCLRDSHTTERRILIVLE+CGGGDLGQFIQ RGPSPE TARHFMLQL AGL+FLRSR LIHRDIKPQNLLLS  SSRA LKIADFGLARHLPQGSLAESMLGSPLYMA E+LSNRAYDAKADLWSAG VL+E++TAKHP+ GTNQV              EL+NNI+RNRPRLPPGVTLSP CVELLGMLLVPQP+QRA+L+ FVSCAFLN                                                                  PP                                                XXXXXX  XXXX    P      NR + A                  A  A++                                             VGGR+GE GWD G GRGL P     AA       D GAV  G+ND GPLPALPALPFA  PFG+RGSF                DGD                         DLAFAGSP+  R R++ A A APSGGGG   ER+R S SASDAA         GPE  RR+R   A                      A+    P +R                                     AE H G   S+P  P   P  TPA P+ H                 Q   +++AGVST PSPA+ T   GDH SG          P  +GGA               XXXXXXXXXXXRG                      Q  S S+             PAV DLG  PVLLKPSFRGSDSLLTIPEDSTGFVLVTRPSS++CEHG +CECW     XXXXXXXXXXX     +RSPS SYLA A+NPY       XXXXXXXXXXXXXXXXXX         LG+IWNTA+NTFRGVAGAHGRR+SW  ARGR  QQ R S+   SPPTAA SPAH R G+ SPRE+       H SPHS+V
Sbjct:   10 RSSSSSSSGTDAHGRALREWALQYSVETEPLGRGSFASVYKGVKRETNEPVAIKVMTKARLGERALKMLSAEVNILRTLEHPNVVCLRDSHTTERRILIVLEFCGGGDLGQFIQARGPSPEATARHFMLQLAAGLSFLRSRRLIHRDIKPQNLLLSSRSSRASLKIADFGLARHLPQGSLAESMLGSPLYMALEVLSNRAYDAKADLWSAGVVLYELMTAKHPFAGTNQVGERQAERQEGQREMELINNIQRNRPRLPPGVTLSPACVELLGMLLVPQPEQRATLEAFVSCAFLN------------------------------------------------------------------PPXXXXXXXX---------XXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXAGVGPTGDNSRNRENEA------------------AVVAADA--------------------------------------------VGGRDGEWGWDCG-GRGLFPPSLTGAA-------DSGAVRLGINDEGPLPALPALPFALEPFGVRGSF----------------DGDXXXXXXXXXXXXXXXXXXXXXXXXXDLAFAGSPVHDRSRMLSAAADAPSGGGGVAGERERRSLSASDAAAAAHDARDAGPETGRRKRVDAAPPXXXXXXXXXXXFPAGAEHDHAVRVATPTRRHHRHSFSGKDSPTHPVPAAERVMSNSRDYREVASAGPAEGHVGRGESVPG-PNVSPAHTPATPQRHPTDQ-----------RHQAAGHSSAGVSTPPSPAYFTGRLGDHASGVGVGGNTGGSPNRSGGACSPALGSQPSXXXXXXXXXXXXXXXXRGCLLYTSRCPSPLPSSFDGGAQQQPPSLSATGSSHGAGSGSGGPAVGDLGAAPVLLKPSFRGSDSLLTIPEDSTGFVLVTRPSSVSCEHGPHCECWAWSASXXXXXXXXXXX-----VRSPSASYLATASNPYGGPGKEAXXXXXXXXXXXXXXXXXXXXXXXXXAFLGSIWNTAVNTFRGVAGAHGRRASWSTARGRGGQQHRASV---SPPTAAVSPAHMR-GASSPRERRQQXXXXHLSPHSNV 949          
BLAST of mRNA_P-fluviatile_contig8.14574.1 vs. uniprot
Match: D8LHF7_ECTSI (Protein kinase domain-containing protein (Fragment) n=1 Tax=Ectocarpus siliculosus TaxID=2880 RepID=D8LHF7_ECTSI)

HSP 1 Score: 447 bits (1150), Expect = 1.040e-142
Identity = 234/300 (78.00%), Postives = 249/300 (83.00%), Query Frame = 2
Query:  434 HG-ALRAWAQQYSVETEPLGRGSFASV-------------------------------YKGVNRYTKEPVAVKVMTKARLGERALNMLSAEINILRTLRHPNVVCLRDSHTTERRILIVLEYCGGGDLGQFIQTRGPSPEPTARHFMLQLVAGLTFLRSRHLIHRDIKPQNLLLSEDSSRACLKIADFGLARHLPQGSLAESMLGSPLYMAPEILSNRAYDAKADLWSAGAVLFEILTAKHPYGGTNQVELMNNIRRNRPRLPPGVTLSPPCVELLGMLLVPQPDQRASLQKFVSCAFLN 1237
            HG ALR WA QYSVETEPLGRGSFASV                               YKGVNR T EPVA+KVMTKARLGERAL MLSAEINILRTL HPNVVCLRDS TTERRILIVLE+CGGGDLGQFIQ RGPSPE TARHFMLQL AGL+FLRSR LIHRDIKPQNLLLS  SSRA LKIADFGLARHLPQGSLAESMLGSPLYMA E+LSNRAYDAKADLWSAG VL+E++TAKHP+ GTNQ+EL+NNI+RNRPRLPPGVTLSP CVELLGMLLVPQP++RA+L+ FVSCAFLN
Sbjct:   22 HGRALREWALQYSVETEPLGRGSFASVAVLSVTESDRKALINASILTERKRKGKCIEVYKGVNRETNEPVAIKVMTKARLGERALKMLSAEINILRTLEHPNVVCLRDSRTTERRILIVLEFCGGGDLGQFIQARGPSPEATARHFMLQLAAGLSFLRSRRLIHRDIKPQNLLLSSRSSRASLKIADFGLARHLPQGSLAESMLGSPLYMALEVLSNRAYDAKADLWSAGVVLYELMTAKHPFAGTNQMELINNIQRNRPRLPPGVTLSPACVELLGMLLVPQPEKRATLEAFVSCAFLN 321          
BLAST of mRNA_P-fluviatile_contig8.14574.1 vs. uniprot
Match: A0A7S2C5C8_9STRA (Hypothetical protein (Fragment) n=1 Tax=Dictyocha speculum TaxID=35687 RepID=A0A7S2C5C8_9STRA)

HSP 1 Score: 267 bits (682), Expect = 2.880e-76
Identity = 140/250 (56.00%), Postives = 171/250 (68.40%), Query Frame = 2
Query:  485 LGRGSFASVYKGVNRYTKEPVAVKVMTKARLGERALNMLSAEINILRTLRHPNVVCLRDSHTTERRILIVLEYCGGGDLGQFIQTRGPSPEPTARHFMLQLVAGLTFLRSRHLIHRDIKPQNLLLSEDSSRACLKIADFGLARHLPQGSLAESMLGSPLYMAPEILSNRAYDAKADLWSAGAVLFEILTAKHPYGGTNQVELMNNIRRNRPRLPPGVTLSPPCVELLGMLLVPQPDQRASLQKFVSCAFL 1234
            LGRGSFA VY  V+  T    AVK + + RL  + L  L +EI+ILR  +H N+VCL     T   I +VLE+C GGDL ++I+++G   E  A HFM  L  GL FL  R LIHRDIKPQNLLL+  S  A LKIADFG AR L  G +A++M GSPLYMAPEILS + YDAKADLWSAG VLFE+L  + PYGG+ Q ELM+NIRR   RLP GV ++PPCV L+ MLL   P++RAS + F+S  FL
Sbjct:   40 LGRGSFAKVYHAVSERTGAASAVKKIDRTRLSSKLLQNLESEISILRDFQHVNIVCLEGIRKTSSHIYLVLEFCAGGDLHKYIRSKGRLSERVASHFMRHLAFGLEFLWRRQLIHRDIKPQNLLLTAASDSATLKIADFGFARSLGAGKMADTMCGSPLYMAPEILSGQKYDAKADLWSAGTVLFEMLAGQPPYGGSTQHELMDNIRRKELRLPRGVNIAPPCVTLIQMLLKRMPEKRASFEMFLSAEFL 289          
BLAST of mRNA_P-fluviatile_contig8.14574.1 vs. uniprot
Match: A0A7S4EV10_CHRCT (Hypothetical protein (Fragment) n=1 Tax=Chrysotila carterae TaxID=13221 RepID=A0A7S4EV10_CHRCT)

HSP 1 Score: 266 bits (681), Expect = 3.510e-76
Identity = 138/254 (54.33%), Postives = 182/254 (71.65%), Query Frame = 2
Query:  485 LGRGSFASVYKGVNRYTKEPVAVKVMTKARLGERALNMLSAEINILRTLRHPNVVCLRDSHTTERRILIVLEYCGGGDLGQFIQTRGPSPEPTARHFMLQLVAGLTFLRSRHLIHRDIKPQNLLLSEDSSRACLKIADFGLARHLPQGSLAESMLGSPLYMAPEILSNRAYDAKADLWSAGAVLFEILTAKHPYGGTNQVELMNNIRRNRPRLPPGVTLSPPCVELLGMLLVPQPDQRASLQKFVSCAFLNNGS 1246
            LG+GSFA+VY+G +R TK  VAVK + + RL ++    L AEI+IL+TL+H NVV L D  TTER + +V+E+C GGDL +FI++RG   EP AR F+LQL  GL +LRS +LIHRD+KPQNLLLS  S+ A LKIADFG AR++ Q  LAE++ GSPLYMAPEIL  + YDAKADLWS GA+++E+LTA+ P+ G N V+L+ NI  +  +LPP +T   PC  LL  LL  +P +R S + F +  FL+  S
Sbjct:   22 LGQGSFATVYRGQHRGTKRIVAVKAIVRGRLNQKLTENLEAEISILQTLQHTNVVRLHDVQTTERHVYLVMEFCPGGDLSRFIRSRGAQSEPMARGFLLQLAEGLRYLRSHNLIHRDLKPQNLLLSSLSADATLKIADFGFARYMQQQDLAETLCGSPLYMAPEILRFQKYDAKADLWSVGAIMYELLTARPPFTGANHVQLLKNIESSSAQLPPQLTQ--PCQRLLSSLLQREPTERLSFEAFFADPFLDLSS 273          
BLAST of mRNA_P-fluviatile_contig8.14574.1 vs. uniprot
Match: A0A7S1CB65_9STRA (Hypothetical protein (Fragment) n=1 Tax=Bicosoecida sp. CB-2014 TaxID=1486930 RepID=A0A7S1CB65_9STRA)

HSP 1 Score: 256 bits (653), Expect = 3.150e-73
Identity = 131/258 (50.78%), Postives = 175/258 (67.83%), Query Frame = 2
Query:  470 VETEPLGRGSFASVYKGVNRYTKEPVAVKVMTKARLGERALNMLSAEINILRTLRHPNVVCLRDSHTTERRILIVLEYCGGGDLGQFIQTRGPSPEPTARHFMLQLVAGLTFLRSRHLIHRDIKPQNLLLSEDSSRACLKIADFGLARHLPQGSLAESMLGSPLYMAPEILSNRAYDAKADLWSAGAVLFEILTAKHPYGGTNQVELMNNIRRNRPRLPPGVTLSPPCVELLGMLLVPQPDQRASLQKFVSCAFLNNG 1243
            V T  LG+GSFA VYK  +R T   VA+K ++  ++  +A   L +EI+IL+ +RHPN+V L +   ++R I +VLEYC GGDL + I  +GP  E   ++FM QL +GL FL +R+LIHRD+KPQNLLL+       LKIADFG ARHL   SLAE++ GSPLYMAPEIL  + YDAKADLWS G +++E+L  + P+GG N VEL+ NI R   RLP G+T+S  C+ LL +LL   P QRAS ++F    F++ G
Sbjct:   11 VATHMLGQGSFAVVYKAHHRVTGAVVAIKAISLKKMDRKAQENLESEIHILQEVRHPNIVRLFEIQKSDRYIYLVLEYCAGGDLSRLIHKKGPFTEARTQYFMRQLASGLRFLWNRNLIHRDLKPQNLLLTSTEEDGVLKIADFGFARHLAAASLAETLCGSPLYMAPEILRYQRYDAKADLWSVGTIMYEMLAKRPPFGGRNHVELLANIERQELRLPEGITISKECLGLLRILLRRNPVQRASFEEFFESRFVSGG 268          
BLAST of mRNA_P-fluviatile_contig8.14574.1 vs. uniprot
Match: A0A7S2G2R9_9STRA (Hypothetical protein (Fragment) n=1 Tax=Florenciella parvula TaxID=236787 RepID=A0A7S2G2R9_9STRA)

HSP 1 Score: 261 bits (666), Expect = 4.000e-73
Identity = 143/263 (54.37%), Postives = 176/263 (66.92%), Query Frame = 2
Query:  446 RAWAQQYSVETEPLGRGSFASVYKGVNRYTKEPVAVKVMTKARLGERALNMLSAEINILRTLRHPNVVCLRDSHTTERRILIVLEYCGGGDLGQFIQTRGPSPEPTARHFMLQLVAGLTFLRSRHLIHRDIKPQNLLLSEDSSRACLKIADFGLARHLPQGSLAESMLGSPLYMAPEILSNRAYDAKADLWSAGAVLFEILTAKHPYGGTNQVELMNNIRRNRPRLPPGVTLSPPCVELLGMLLVPQPDQRASLQKFVSCAFL 1234
            RA   +Y +  E LGRGSFA VY   +  T    A+K + ++RL  + L  L +EI+ILR  +H N+V L     T   I +VLE+C GGDL +FI++RG   E  ++HFM  L AGL FL  R LIHRDIKPQNLLL+     A LKIADFG ARHL + SLA+++ GSPLYMAPEILS + YDAKADLWSAG VLFE+L  + PYGG NQ EL+ NIRR   RLP GV +S  CV L+ MLL  +P  RAS +KF+S  FL
Sbjct:   16 RARVDEYIIGRE-LGRGSFAKVYLCQHEKTGAQRAIKKIDRSRLSTKLLQNLESEISILRDYQHTNIVKLDGIKKTRGHIFLVLEFCAGGDLHKFIKSRGKLSERVSKHFMRHLAAGLEFLWRRQLIHRDIKPQNLLLTASEETATLKIADFGFARHLAEESLADTLCGSPLYMAPEILSYQKYDAKADLWSAGTVLFEMLAGQPPYGGANQHELVENIRRKELRLPRGVNISASCVTLIQMLLQRKPGHRASFEKFLSADFL 277          
BLAST of mRNA_P-fluviatile_contig8.14574.1 vs. uniprot
Match: A0A418D3B7_9STRA (Protein kinase domain-containing protein (Fragment) n=2 Tax=Aphanomyces astaci TaxID=112090 RepID=A0A418D3B7_9STRA)

HSP 1 Score: 244 bits (624), Expect = 2.590e-68
Identity = 129/258 (50.00%), Postives = 171/258 (66.28%), Query Frame = 2
Query:  470 VETEPLGRGSFASVYKGVNRYTKEPVAVKVMTKARLGERALNMLSAEINILRTLRHPNVVCLRDSHTTERRILIVLEYCGGGDLGQFI--QTRGPSPEPTARHFMLQLVAGLTFLRSRHLIHRDIKPQNLLLSEDSSRACLKIADFGLARHLPQGSLAESMLGSPLYMAPEILSNRAYDAKADLWSAGAVLFEILTAKHPYGGTNQVELMNNIRRNRPRLPPGVTLSPPCVELLGMLLVPQPDQRASLQKFVSCAFLN 1237
            V T  +G GSFA VYKG ++ T  PVAVK + K +L  + L  L +EI+I+R + HPN+V L D   T++ I ++LEYC GGDL  FI  Q  G   E TARHF+ +L  GL  L S +LIHRD+KPQNLLL+E S+ + LKIADFG ARHL   SLAE++ GSPLYMAPEIL  + YD KADLWS G +L+E++  + P+ G NQV+L++NI+R+  R P  + +    V L+  LLV  P +R S  +F    FL+
Sbjct:   12 VVTARIGSGSFAIVYKGYHKVTNVPVAVKAINKTKLNPKLLENLESEISIMRQINHPNIVKLYDIKKTDKHIYLMLEYCDGGDLQHFIKKQPNGVVTEATARHFLRELADGLHVLWSLNLIHRDLKPQNLLLTEPSATSSLKIADFGFARHLESTSLAETLCGSPLYMAPEILQFQKYDNKADLWSVGTILYEMVVGRPPFNGANQVQLLHNIQRDNVRFPKDLPVGRDAVALMEGLLVRDPKRRISFDQFFHAPFLD 269          
BLAST of mRNA_P-fluviatile_contig8.14574.1 vs. uniprot
Match: A0A836C971_9STRA (Kinase-like domain-containing protein n=1 Tax=Tribonema minus TaxID=303371 RepID=A0A836C971_9STRA)

HSP 1 Score: 241 bits (616), Expect = 2.660e-68
Identity = 130/267 (48.69%), Postives = 172/267 (64.42%), Query Frame = 2
Query:  476 TEPLGRGSFASVYKGVNRYTKEPVAVKVMTKARLGERALNMLSAEINILRTLRHPNVVCLRDSHTTERRILIVLEYCGGGDLGQFIQTRGPSPEPTARHFMLQLVAGLTFLRSRHLIHRDIKPQNLLLSE----------DSSRACLKIADFGLARHLPQGSLAESMLGSPLYMAPEILSNRAYDAKADLWSAGAVLFEILTAKHPYGGTNQVELMNNIRRNRPRLPPGVTLSPPCVELLGMLLVPQPDQRASLQKFVSCAFLNNGS 1246
            T  LG+GSFA+V  G NR +   VA+K++++ +L  +    L +EI+ILR  RHPN+V L D   T+  I ++LEYC GGDL +FI+ RG   E TA+ FM  L AGL FL  R LIHRD+KPQNLLL++           +    LKIADFG ARHL   S+AE++ GSPLYMAPEIL  R YDAKADLWS GA+LFE++    P+GG N +EL+ NI+     +P  V +   C+E+L MLL   P++RAS + F    F+N G+
Sbjct:   11 TTRLGKGSFATVSLGQNRASGSLVAIKIISREQLNRKHTENLESEISILRNFRHPNMVELYDIKKTDNNIYLILEYCEGGDLQRFIKARGRLREGTAQAFMTHLAAGLKFLWERSLIHRDLKPQNLLLAKLPESLAHTAPATGGLILKIADFGFARHLEVASMAETLCGSPLYMAPEILEGRRYDAKADLWSVGAILFEMVVGHPPFGGANHLELLRNIKSRSLVVPEDVEIGVGCLEVLKMLLKRDPNKRASFETFFGAEFVNAGA 277          
BLAST of mRNA_P-fluviatile_contig8.14574.1 vs. uniprot
Match: A0A7S3SPR9_EMIHU (Hypothetical protein (Fragment) n=1 Tax=Emiliania huxleyi TaxID=2903 RepID=A0A7S3SPR9_EMIHU)

HSP 1 Score: 242 bits (617), Expect = 4.060e-68
Identity = 128/250 (51.20%), Postives = 166/250 (66.40%), Query Frame = 2
Query:  485 LGRGSFASVYKGVNRYTKEPVAVKVMTKARLGERALNMLSAEINILRTLRHPNVVCLRDSHTTERRILIVLEYCGGGDLGQFIQTRGPSPEPTARHFMLQLVAGLTFLRSRHLIHRDIKPQNLLLSEDSSRACLKIADFGLARHLPQGSLAESMLGSPLYMAPEILSNRAYDAKADLWSAGAVLFEILTAKHPYGGTNQVELMNNIRRNRPRLPPGVTLSPPCVELLGMLLVPQPDQRASLQKFVSCAFL 1234
            LG+GSFA VY+G +R +K  VAVK + +ARL ++    L AEI+IL+TL+HP++V L D  TTER + +V+E C GGDL + I+++G   E   R +MLQLV GL +LR  +L+HRD+KPQNLLLS     A LKIADFG AR++ Q  LAE++ GSPLYMAPEIL    YDAKADLWS G + FE+LT + PY G N V+L+ +I  +   LP G+  S  C  LL  LL   P QR S     +  FL
Sbjct:   53 LGQGSFAIVYRGQHRISKRTVAVKAIVRARLNQKLQANLEAEISILQTLQHPHIVRLHDVQTTERHVYLVMELCPGGDLLRVIRSQGAQTEAQTRGYMLQLVRGLAYLREHNLVHRDLKPQNLLLSSHLPDATLKIADFGFARYMQQADLAETLCGSPLYMAPEILRFHKYDAKADLWSVGTIAFELLTTRPPYTGANHVQLLQHIEASEVELPGGI--SQECASLLRSLLRRDPTQRLSFGSLFAHPFL 300          
BLAST of mRNA_P-fluviatile_contig8.14574.1 vs. uniprot
Match: A0A024TZI0_9STRA (ULK/ULK protein kinase n=1 Tax=Aphanomyces invadans TaxID=157072 RepID=A0A024TZI0_9STRA)

HSP 1 Score: 251 bits (641), Expect = 3.750e-67
Identity = 133/261 (50.96%), Postives = 173/261 (66.28%), Query Frame = 2
Query:  470 VETEPLGRGSFASVYKGVNRYTKEPVAVKVMTKARLGERALNMLSAEINILRTLRHPNVVCLRDSHTTERRILIVLEYCGGGDLGQFI--QTRGPSPEPTARHFMLQLVAGLTFLRSRHLIHRDIKPQNLLLSEDSSRACLKIADFGLARHLPQGSLAESMLGSPLYMAPEILSNRAYDAKADLWSAGAVLFEILTAKHPYGGTNQVELMNNIRRNRPRLPPGVTLSPPCVELLGMLLVPQPDQRASLQKFVSCAFLNNGS 1246
            V T  +G GSFA VYKG ++ T  PVAVK + K +L  + L  L +EI+I+R + HPN+V L D   TE+ I ++LEYC GGDL  FI  Q  G   E TARHF+ +L  GL  L S +LIHRD+KPQNLLLSE S+ A LKIADFG ARHL   SLAE++ GSPLYMAPEIL  + YD+KADLWS G +L+E++  + P+ G NQV+L++NI+R   R P  + +    + L+  LLV  P +R S  +F +  FLN  S
Sbjct:   12 VVTARIGSGSFAIVYKGYHKVTNVPVAVKAINKQKLNPKLLENLESEISIMRQINHPNIVKLYDIKKTEKHIYLMLEYCDGGDLQHFIKKQPNGVVSEDTARHFLRELADGLHVLWSLNLIHRDLKPQNLLLSEASATASLKIADFGFARHLESTSLAETLCGSPLYMAPEILQFQKYDSKADLWSVGTILYEMVVGRPPFNGANQVQLLHNIQRESVRFPKDLPVGRDAINLMEGLLVRDPKRRISFDQFFNAPFLNRPS 272          
The following BLAST results are available for this feature:
BLAST of mRNA_P-fluviatile_contig8.14574.1 vs. uniprot
Analysis Date: 2022-09-19 (Diamond blastx: OGS1.0 vs UniRef90)
Total hits: 25
Match NameE-valueIdentityDescription
A0A6H5LBL5_9PHAE7.240e-19147.15Protein kinase domain-containing protein n=1 Tax=E... [more]
D8LHF7_ECTSI1.040e-14278.00Protein kinase domain-containing protein (Fragment... [more]
A0A7S2C5C8_9STRA2.880e-7656.00Hypothetical protein (Fragment) n=1 Tax=Dictyocha ... [more]
A0A7S4EV10_CHRCT3.510e-7654.33Hypothetical protein (Fragment) n=1 Tax=Chrysotila... [more]
A0A7S1CB65_9STRA3.150e-7350.78Hypothetical protein (Fragment) n=1 Tax=Bicosoecid... [more]
A0A7S2G2R9_9STRA4.000e-7354.37Hypothetical protein (Fragment) n=1 Tax=Florenciel... [more]
A0A418D3B7_9STRA2.590e-6850.00Protein kinase domain-containing protein (Fragment... [more]
A0A836C971_9STRA2.660e-6848.69Kinase-like domain-containing protein n=1 Tax=Trib... [more]
A0A7S3SPR9_EMIHU4.060e-6851.20Hypothetical protein (Fragment) n=1 Tax=Emiliania ... [more]
A0A024TZI0_9STRA3.750e-6750.96ULK/ULK protein kinase n=1 Tax=Aphanomyces invadan... [more]

Pages

back to top
Alignments
The following features are aligned
Aligned FeatureFeature TypeAlignment Location
P-fluviatile_contig8contigP-fluviatile_contig8:2782854..2790913 +
Analyses
This mRNA is derived from or has results from the following analyses
Analysis NameDate Performed
Diamond blastx: OGS1.0 vs UniRef902022-09-19
OGS1.0 of Porterinema fluviatile SAG_23812021-02-24
Properties
Property NameValue
Taxonomic scopeEukaryota
Seed ortholog score453.8
Seed ortholog evalue2.2e-124
Seed eggNOG ortholog2880.D8LHF7
KEGG koko:K08269,ko:K21358
KEGG Pathwayko04136,ko04138,ko04139,ko04140,ko04150,ko04212,map04136,map04138,map04139,map04140,map04150,map04212
EggNOG free text desc.protein serine/threonine kinase activity
EggNOG OGsKOG0595@1,KOG0595@2759
Ec32 ortholog descriptionProtein kinase
Ec32 orthologEc-11_004250.1
EC2.7.11.1
COG Functional cat.T
Best tax levelEukaryota
Best eggNOG OGNA|NA|NA
BRITEko00000,ko00001,ko01000,ko01001,ko03029,ko04131
Hectar predicted targeting categoryother localisation
Exons7
Model size3521
Cds size3126
Stop0
Start1
Relationships

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

Feature NameUnique NameSpeciesTypePosition
mRNA_P-fluviatile_contig8.14574.1prot_P-fluviatile_contig8.14574.1Porterinema fluviatile SAG_2381polypeptideP-fluviatile_contig8 2783248..2790913 +


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

Feature NameUnique NameSpeciesTypePosition
1622817250.7055378-UTR-P-fluviatile_contig8:2782853..27832471622817250.7055378-UTR-P-fluviatile_contig8:2782853..2783247Porterinema fluviatile SAG_2381UTRP-fluviatile_contig8 2782854..2783247 +
1693571726.7334-UTR-P-fluviatile_contig8:2782853..27832471693571726.7334-UTR-P-fluviatile_contig8:2782853..2783247Porterinema fluviatile SAG_2381UTRP-fluviatile_contig8 2782854..2783247 +


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

Feature NameUnique NameSpeciesTypePosition
1622817250.7188714-CDS-P-fluviatile_contig8:2783247..27833611622817250.7188714-CDS-P-fluviatile_contig8:2783247..2783361Porterinema fluviatile SAG_2381CDSP-fluviatile_contig8 2783248..2783361 +
1693571726.7455378-CDS-P-fluviatile_contig8:2783247..27833611693571726.7455378-CDS-P-fluviatile_contig8:2783247..2783361Porterinema fluviatile SAG_2381CDSP-fluviatile_contig8 2783248..2783361 +
1622817250.7312527-CDS-P-fluviatile_contig8:2785267..27853971622817250.7312527-CDS-P-fluviatile_contig8:2785267..2785397Porterinema fluviatile SAG_2381CDSP-fluviatile_contig8 2785268..2785397 +
1693571726.7553804-CDS-P-fluviatile_contig8:2785267..27853971693571726.7553804-CDS-P-fluviatile_contig8:2785267..2785397Porterinema fluviatile SAG_2381CDSP-fluviatile_contig8 2785268..2785397 +
1622817250.743523-CDS-P-fluviatile_contig8:2786098..27863491622817250.743523-CDS-P-fluviatile_contig8:2786098..2786349Porterinema fluviatile SAG_2381CDSP-fluviatile_contig8 2786099..2786349 +
1693571726.7633872-CDS-P-fluviatile_contig8:2786098..27863491693571726.7633872-CDS-P-fluviatile_contig8:2786098..2786349Porterinema fluviatile SAG_2381CDSP-fluviatile_contig8 2786099..2786349 +
1622817250.7558298-CDS-P-fluviatile_contig8:2786858..27869641622817250.7558298-CDS-P-fluviatile_contig8:2786858..2786964Porterinema fluviatile SAG_2381CDSP-fluviatile_contig8 2786859..2786964 +
1693571726.7716265-CDS-P-fluviatile_contig8:2786858..27869641693571726.7716265-CDS-P-fluviatile_contig8:2786858..2786964Porterinema fluviatile SAG_2381CDSP-fluviatile_contig8 2786859..2786964 +
1622817250.7676785-CDS-P-fluviatile_contig8:2787506..27875921622817250.7676785-CDS-P-fluviatile_contig8:2787506..2787592Porterinema fluviatile SAG_2381CDSP-fluviatile_contig8 2787507..2787592 +
1693571726.7828982-CDS-P-fluviatile_contig8:2787506..27875921693571726.7828982-CDS-P-fluviatile_contig8:2787506..2787592Porterinema fluviatile SAG_2381CDSP-fluviatile_contig8 2787507..2787592 +
1622817250.7796247-CDS-P-fluviatile_contig8:2787993..27896361622817250.7796247-CDS-P-fluviatile_contig8:2787993..2789636Porterinema fluviatile SAG_2381CDSP-fluviatile_contig8 2787994..2789636 +
1693571726.7934477-CDS-P-fluviatile_contig8:2787993..27896361693571726.7934477-CDS-P-fluviatile_contig8:2787993..2789636Porterinema fluviatile SAG_2381CDSP-fluviatile_contig8 2787994..2789636 +
1622817250.7914772-CDS-P-fluviatile_contig8:2790117..27909131622817250.7914772-CDS-P-fluviatile_contig8:2790117..2790913Porterinema fluviatile SAG_2381CDSP-fluviatile_contig8 2790118..2790913 +
1693571726.8073406-CDS-P-fluviatile_contig8:2790117..27909131693571726.8073406-CDS-P-fluviatile_contig8:2790117..2790913Porterinema fluviatile SAG_2381CDSP-fluviatile_contig8 2790118..2790913 +


Sequences
The following sequences are available for this feature:

protein sequence of mRNA_P-fluviatile_contig8.14574.1

>prot_P-fluviatile_contig8.14574.1 ID=prot_P-fluviatile_contig8.14574.1|Name=mRNA_P-fluviatile_contig8.14574.1|organism=Porterinema fluviatile SAG_2381|type=polypeptide|length=1042bp
MSRAATTTTSNTEHGALRAWAQQYSVETEPLGRGSFASVYKGVNRYTKEP
VAVKVMTKARLGERALNMLSAEINILRTLRHPNVVCLRDSHTTERRILIV
LEYCGGGDLGQFIQTRGPSPEPTARHFMLQLVAGLTFLRSRHLIHRDIKP
QNLLLSEDSSRACLKIADFGLARHLPQGSLAESMLGSPLYMAPEILSNRA
YDAKADLWSAGAVLFEILTAKHPYGGTNQVELMNNIRRNRPRLPPGVTLS
PPCVELLGMLLVPQPDQRASLQKFVSCAFLNNGSSPPPAALTASPNGGGG
TAGENNCEGGGGGRDGEPRAVSPRPGRSAAKSTEPAADALRQRGQRVPPA
EAHFAMYRTTVTVTTPEREREMDVATTGGSSGSRSVPFLQHGYKQQQQQR
QQQLPQQRQQQWSPDSVRRMNRSDAAREGQPLDRTSDDGPAPSDAAAASN
GAGRPAGGGGDAGAQAEDVRPTGNGDGNGNGDDGGARNDGIVGHPVGGRN
GERGWDWGDGRGLTPALAVVAAAEAGGVHDGGAVTDGVNDGGPLPALPAL
PFARGPFGIRGSFKEDGCCGGDGNSIGGDDGDCPQGSAGFAFDLAFAGSP
MRSRCRVVPATAAPSGGGGSERDRHSYSASDAAVGPERREREGFAAALTA
VVPLQRPQAESHAGDAVSLPRVPAAFPPATPARPRSHSVSDGASLRTKVE
HSEQQIECNTAAGVSTAPSPAFHTSGDHDSGYPAAAGGADGIAGGIQGGG
EGGRGYAQISSCSSSSSSPSPSHSPSPPAVDLGVPVLLKPSFRGSDSLLT
IPEDSTGFVLVTRPSSITCEHGQNCECWAWSGGPGVASGGAGAGAGAGIM
RSPSTSYLAAAANPYGGPGKASTGPGVADTGGLRRSGASAFLGLGNIWNT
AINTFRGVAGAHGRRSSWPAARGRHQQTRGSMGSGSPPTAAASPAHSRAG
SCSPREQHRSPHSSVPYRHFVSAAESSGGSGQVGRSTNSSGESNSGGGGG
GSRRDSCFSRQRGDCGGSGGTKAAANHATTSTAYRGSVGSFQ
back to top

mRNA from alignment at P-fluviatile_contig8:2782854..2790913+

Legend: UTRpolypeptideCDS
Hold the cursor over a type above to highlight its positions in the sequence below.
>mRNA_P-fluviatile_contig8.14574.1 ID=mRNA_P-fluviatile_contig8.14574.1|Name=mRNA_P-fluviatile_contig8.14574.1|organism=Porterinema fluviatile SAG_2381|type=mRNA|length=8060bp|location=Sequence derived from alignment at P-fluviatile_contig8:2782854..2790913+ (Porterinema fluviatile SAG_2381)
GTAGATCTATCTACTCCTTAGCCCCCCCCACCAGGTCAACAAGAGGGGGC TTTCTCCCACACGCACAACAATTGGATTTTCATCCAGGGGAAGGGTAAGG TGGGGAAGCCGACCTGCCGATCCTCGAATTCAAGCACTGCTGCGTGTCCA TCGGGAGCGGTTCTCAAGGTTTTTACGTGTTTCTTTTCTCACGAAAAAAA AAAAGAAGGCATCAGCACGCTCCAAGACCGTGCAGCAGCGCACTCTCCAT GCCACCAGCGTACATCAAAGTCGACTCCGCGAGATAGTCGAGAGGCGGGA GCAGCCGGAGTGTTCCCCCGCTTTCACTTTCTTCGGAGCAGCAGCCCTCG CTCCGCCTCCTTTGCCAGCATACTCCTACAGAGGCGGGGCAACTATGTCT CGGGCCGCCACAACGACGACAAGCAACACTGAACACGGCGCTTTACGTGC ATGGGCGCAGCAGTATTCCGTGGAGACTGAGCCATTGGGACGTGGATCCT TCGCTTCGGTGAGAGAGAGAAAGAGTCGAACAGAGACAGAGTTTGTGTAG GATGCGAATGTTTTTCCCGAGAGCGAAAGCGAGAAAGAGAGCGAGCGATG TCGGTGCGAGTTTGAACTTATCGAGGCGTCGACGCGTGGCGAACACCCCA AGGCGTTAGCGGCAGCGTTTGCGTTCCTGTGCTCTCAGAGTGAGATAGCA CGATGGACGAAAGTCCTCTAGCGTGAGATGTGTTCGTTTTGCGATTACTT GTAAGACGCATATCCCTCTAGCATTGTACTCTTGTCCTATCGCACACCCG CACGCCCACGTAACGTTGGAGGTTCAACATCGCTGGGCAGCGTGCACGAA ACAAGCAATGCGCTTCTTCAACCCATGCGAATGAATGCGCTTCTCAACGA CAACATTTTACGGGCCGACATGTCGAGGACGCGCCCCCGGTCACTTTGGA GTTTTTTGCCGTCAGGGGTCTCTCTCATTTGGATCGAGAGGGGGGGAGCG CTCGGGCAGTATCCCACCCTCCCACCAAATGATATGAGCGAGGGGGTCCG CATGAACTCAAGGCAAGGAGACGCTTGCGGCGTTACGAATATATACATCA TCCTACGGAGGCCATCGGCTCCATTTCCGCCATTTCCGCTGAATCGCGGG GAAGGTGTGGTTTTTTTGAAAAATAAACCCGCTTGAAAAAAAACGGCGTA ACTAAAGCCTTGCCCGACACAGGCCCTGTCCACGGCTTAACCTCTTCACG TGAGGGGATGGATGCTCATGTGGGCTTTAAGGGGCTACTGTATTTGATTC AGCTGGCCCGACGTAAAAAGAAGCTCTCGCCCACTGTTGCGGCGCCATTT GTTGACGCTGCTGTGCACTTCCGTTTCCCGAGAGTCCACGCGACCAAACG ACAACGTCAACCCTGGATCAAATTGGCTCTTGATTTTTCTCGGGGATGTT TTGAGACAACACGTGTGTATCACCCGCCAGGGCGGTAGAGGTACGCTGAT TTGTCTCGAATGTATTCCGATGTGTACCTTCAATGTTGTTGTACTCGTGG AGAGGGGTGATGTGCCAAACTTCATCGTAGTTTTCCATGTGTTGCGTCAG TGGTGACCCCCTTGCGACTTTACTTCCGAGCTTACCAGGGAAAGAGGGAG GGTGTCGAGAAAAATATACGGATAAGGGGAACGTTCAACCGGGCGGTACA TTCGCTGTCTCGAGCAAGCGGCTTTTACGCGAAAGTTGGAACGTAGATTT CGTATGCAGTCGTCCGGATCGAAAATCGCTCATGTAGGGATTGAAGTACC GTGATGGTGTGAAAACCTCTGCATAAAATCAAGACTTGGTGGAGAGCATC TGCAGCGAGGTGCGGGTTATGGTGCAGCGTTACATACAGACTAAATTGAG AGTCCGCTTGTGCCGAAGATGAGTGCTGTGTTTCTATCTCGTCATGAGCA TATAATTCACCGCACCAGACGGCAGCACAAGCGGGGCACTGCAACTTGCA GAGGTGTTGTGTGTCATCGTCTCGAGAACAAACCTTGCGGGCGGGCCGCC GACCGATTTTGTCGTTTCGGCTGTTGATTCTGTTTCAGATGTAGGTGTTT CGTGACTTTCATACCCTGCTGGATTGACCCGCAATCGTGAAATCTCCGTC ACGCCATACGTACACAAAGAACCGCCCGCGTTTGCCTGCTCGCCACACAC GAAGCTCCACGAGGGGGAAAAGTAATACAGTCGGTAAGTTATAAGCAAAC ACGCTCACTCAAGCACTCGGGTTGTGCCATCCTAATTCTGTTTTTTGTTG TGTGTTGCGCGCGATGCTTTTAGTGTGTGTACATGAATGTGTTTGAGGGC GGCGATCGACTAATAGACCACACTCGCGACCTGACAAAACGCGACGTAAA TGTACACACATTAGGTGTACAAGGGAGTGAACCGCTACACGAAGGAGCCG GTCGCCGTGAAGGTCATGACCAAGGCGCGCCTCGGGGAGCGGGCGCTCAA CATGCTCTCGGCCGAGATCAACATCCTGCGGACCCTGAGGCACCGTGAGT GCCGAAACCTTGCTACTACCCGTGCCGCACCCGTGCCGCGCGTGAGAGCA CTATGTAACAAATTTCCCAAACAGCGGTGTTTTTTTTTCTGCCGCGAGTT TGTGGTTGCTGTCCTCCGGTCTTGTTGCCCTCTTCCTACTTACCTTCCGT CGGGGGCACGGCGCGCGCGCGCGCGGGGGGTGATCCGCGTGCGCGCGATT TTCGAGCGTCGCTCGCCGACGTCCCGTTCCCGCTTGGCGGGCCTTATTCG GTCATTCCAGGCCTTGGCTTTATGTGGGAACCCGCCGCGGCTGAGTCGCA GACATCGAGAGCAAAGGAGGCATTGTGCGTGTGCACTTGTCACTATTCTA TGCCAGTCAAGTCGCTGGTACAACTGCCGAAGCGCATTGTTCTGTCCCCA TCACTCATGGTTATCCCTCCGTGAACACCCACGCCTCCCCTCCTCCCGTT TTTCGGGGTTGTAACTAAAGGCTGTCATCCTCTCCTCCTGCTTGCTGCTC GAACTAAGCATCCTCATGTAGTCAGTCCATGCTTCATGAACATCACATCA CACACGCGACACACGCACATACCCATAAACTGCTTGTATTATTGGCTGCC ACTTGTCCCTCTTCATCTTGTGAATACTGAAAATACCGGCCGTCTTGCAA ACTCCTTCCCTGCACCCCCCGTTACTCCTGCTTCCCTTGCCGCAGCGAAC GTGGTGTGCCTGCGCGACAGCCACACCACGGAGCGGAGGATCCTTATCGT GCTCGAGTACTGTGGAGGCGGCGACCTCGGACAGTTTATCCAGACCAGGG GGCCCTCCCCTGAGCCAACGGCGCGGCATTTCATGCTGCAGCTGGTGGCG GGGCTCACGTTCCTGCGGTCGCGGCATCTGATCCATCGGGACATCAAGCC GCAGAACCTGCTGCTGAGCGAAGATTCCTCTCGCGCCTGCTTGAAGGTAT GAGTTGACGACTGTGGAGCAGTGAAGTGTTTGTGCGATCATCGCCTCTTC CCATGCGACTCGCCCGCGAGTTCCGAGAGAAGGCGGATGAATGTGTTGCT GCTGCTGCTCTTGCGGTCGTAACGAGGAAAGAAGTACAGCGGCACAAGCG ACAAGACAAGTCCACCATTGATTTTCCAACCTGGCGAAGTCAGACGGGAC CGACACTTTGGCCCTGCAACTGCTACCCTGCGGTCGGCTTCTCACCGCAC GGGAGCAGTCCATCACAGAACAGCGATGGGCAAATTCTCTGACTTCGATC AAGTGTTGACATGTTCTAGACTATCTCGAGAACACATCCTGTTCCCTCCG CTCTATCGACTTGCTCTGGCTTTTCGTAATTTTTTAGCTTTTTTTCAATT TTTGTTTTCATCTCCGTCCACATCTCCTTTTCCTTCCCTGCCACCTCCGA GCGCTCTGAAACATATATTTTTTGACATTTTTTGTTGTATTGACGCCGCT TGCAGATTGCAGACTTCGGGTTGGCTCGCCATCTGCCGCAGGGCTCGCTC GCGGAGAGTATGCTGGGGTCCCCCCTCTACATGGCTCCGGAGATCCTCAG CAATCGAGCATGTGCGAACCGTAGGTCGCACAAGACATCATTCTCCGGGT GGATTTTCATCGCTCGATTACTCCGCGGTGTAAAAGTCCCTTGCTTGAAA CGGAGCAGCGTTCGAAACATCTTGTCGAGAGCTTTTTGGTGACCCAGCGT TCGATACTAGCCAACCCTCGCCATGGAGATATCGAGCTTGAAAACGCGAT CCAAGGTGTGCGGTATCTTATGCGACCTGTGGTAATGGAGCATGCTCCCG CGCGCATGTCAGCTTGTTGATAAGGCATGCAACATTCGCAGGATGTTCGC GACGTGTGGGTATGTGGACGCATGTAAAAATTCGTGATGAGTTTAGGTTA TGGTTGGCCTAGCCAGTGTAACGCTTCGTGTTCTGCCCTCCGCACTCAAA ATGCTACGAACCGTCGGTGTGAGTCGTTGCGCAAGACTCGCCACGTGCGA TGGCTTGCTTGGAAATCCGACGTTTGCATACGGCTTTCGTTTTCCCGTTG CCCTCGGCCTCCCCTTTTGTTTTCTTGTTGTGTGCTTCGTCTCCGGCCTT CAGACGATGCTAAGGCGGACCTGTGGTCAGCGGGAGCTGTGCTTTTCGAG ATTCTGACCGCCAAACACCCGTACGGCGGCACGAATCAGGTCCGCGTCGT CGTTTTTGCTCCTTAGTATAAATTTTGCTGTTCTCAAGGCGGCACACCCC GAGGCTGATGGAGATCGGGCTCTGCCTATCCAGCGGAGTTATAACTGCTG CATTGTCCTCACCCCCGGAAGCTGCGTCTCTGTCATTTGTTTCTGTGAAC GTATCGTCAACCAGGATTTGTGCGTTGATCGTGGCTCTTTCCGTGCGTGA ACCGCGGCGGCGGGTGCCTGAGATCGAGGCGGGTATAATACTTCGCCTCC GTCCCACGTGACTTGCGTAAAAGTATCCAGCACCACTCGTGCTGGAAACT AGATTCGAGCCCCCATACCGCCCCCTCCTCGCTCGCCCCCCACCTGCCGA TCCTCGTGTTTGCTCCGAAAATGACTATTGATCGGACCAGGTGGAGCTCA TGAACAACATCCGGAGGAACCGGCCAAGGCTGCCGCCGGGCGTAACCCTG AGCCCTCCCTGCGTCGAGCTGCTCGGGATGCTGCTCGTCCCACAGCCAGA TCAACGCGCGTCCCTACAGAAGTTCGTTTCTTGCGCCTTCCTCAACAACG GCAGCAGCCCGCCACCCGCTGCGCTTACCGCTTCGCCCAACGGCGGCGGC GGCACAGCCGGCGAAAATAACTGCGAAGGCGGCGGCGGCGGCAGGGATGG TGAGCCTCGGGCTGTCTCGCCGCGCCCGGGTCGGTCAGCCGCGAAGTCCA CCGAACCGGCCGCCGATGCTTTGCGTCAGCGGGGGCAGCGCGTGCCCCCG GCTGAGGCCCATTTCGCGATGTACAGAACAACAGTTACCGTCACAACGCC GGAGCGCGAGCGTGAGATGGACGTAGCTACCACCGGGGGCTCGAGTGGCT CCAGATCGGTTCCCTTTCTGCAGCATGGGTACAAGCAGCAACAGCAACAG CGGCAACAGCAGTTGCCGCAGCAGCGGCAGCAACAGTGGTCCCCGGACAG TGTTAGGCGGATGAACAGGTCGGACGCAGCGCGAGAAGGACAGCCGCTCG ATCGCACGTCAGATGACGGGCCGGCGCCGAGCGATGCTGCTGCTGCTTCC AATGGCGCCGGGCGTCCTGCCGGCGGCGGCGGCGACGCCGGTGCTCAAGC GGAAGATGTACGGCCGACCGGTAACGGCGACGGCAACGGCAACGGCGACG ACGGTGGCGCCCGAAACGACGGGATTGTCGGGCACCCGGTGGGAGGTAGG AACGGCGAGCGCGGCTGGGACTGGGGCGATGGCAGGGGCCTTACCCCGGC CCTGGCGGTGGTGGCGGCGGCGGAGGCAGGAGGCGTACACGACGGCGGCG CCGTCACAGACGGCGTCAACGACGGAGGCCCGCTCCCCGCGCTTCCTGCC CTCCCCTTCGCTCGTGGGCCATTCGGCATTCGAGGGTCCTTCAAGGAAGA TGGCTGCTGCGGCGGTGACGGCAACAGTATTGGTGGCGATGACGGCGACT GCCCGCAGGGTTCAGCTGGCTTTGCGTTTGATCTCGCGTTCGCGGGTAGC CCCATGCGTAGCCGGTGTCGCGTAGTTCCTGCCACGGCTGCGCCATCGGG CGGTGGTGGCAGCGAGCGGGATCGTCATAGCTACAGCGCCAGCGATGCCG CTGTCGGGCCCGAGCGACGGGAAAGAGAAGGCTTCGCCGCTGCTCTCACC GCCGTGGTGCCGCTGCAGCGACCGCAGGCGGAATCCCACGCGGGTGACGC GGTCTCGCTCCCTCGTGTTCCCGCTGCATTTCCGCCGGCAACGCCTGCCC GCCCCCGCAGCCACAGCGTTTCTGACGGCGCGTCTCTGCGGACGAAGGTG GAGCACTCTGAGCAACAGATCGAGTGCAACACAGCCGCGGGCGTGTCCAC CGCGCCATCCCCGGCATTCCACACGAGTGGCGACCACGACAGTGGTTATC CGGCGGCCGCTGGAGGCGCCGACGGCATCGCGGGGGGAATCCAGGGCGGC GGAGAAGGCGGTCGCGGCTACGCGCAGATCTCGTCTTGCTCTTCTTCGTC CTCCTCGCCGTCGCCTTCCCACAGCCCGTCGCCGTGAGTCTCGAACTGCT GCAGAGGCTCAGTTAGAGTCGGTGTGCTCTCGACGATGTTTCTTTGAAGT CAAGACCTGTGCCGTACGCATCCGCATTTTTATATTTCCGTCCGTCTGAG CGAGTGCCTTGAGCTGAATGATGTCTCCGTCTTTTGGTGCGGTGGTGCCC ATCAGTTCGTTCGAGGATTGCCCTGCTTTCGCTCTGAGGGCTTCACTCGC CGCGGGAGAAAGGTGTCGTGGTTTGAATAACGAATGGTGAACTACCTAGG AGCAGAGGCACTCGACGGAAAGTTACGGTCAACGTTTCAGTGGCTCTCTG GGAAAAAGACGCACGCGCATGGCTCTCAGTTCTGACCCTGCCGGAGTTTC AAGGTAGACTAGTAGCTGTTGCGTGTGAAACCAGAGGCGACACTAGAGAT ATAACCCGTCCCCTGCAACGCCCCCTCTTCCCACCCTGCCTCTCGGCTGC GCTGCTGGCAGCAGTCCGGCGGTAGACCTTGGTGTTCCGGTGCTGCTCAA GCCTAGCTTCCGGGGCAGCGATAGCCTCCTTACCATCCCCGAGGACTCCA CCGGCTTTGTCTTGGTCACGCGGCCCTCTTCCATCACTTGCGAGCACGGC CAGAACTGCGAGTGCTGGGCTTGGTCCGGCGGGCCCGGAGTCGCCTCGGG AGGAGCCGGAGCTGGAGCTGGCGCCGGGATCATGAGATCACCCTCGACCT CGTACCTCGCGGCGGCGGCGAACCCGTACGGGGGGCCAGGAAAAGCATCG ACCGGACCAGGCGTCGCCGACACCGGAGGGCTGCGGCGTTCGGGCGCAAG CGCCTTTCTCGGTCTGGGCAACATCTGGAATACCGCCATCAACACCTTCC GCGGCGTCGCCGGCGCTCACGGGAGGCGGAGTTCGTGGCCCGCCGCTCGC GGCAGGCACCAGCAGACGCGAGGATCCATGGGGAGCGGTTCGCCTCCGAC CGCGGCTGCTTCTCCCGCGCACTCTCGCGCGGGGTCTTGCTCCCCCCGCG AGCAGCACCGATCGCCTCACTCCTCTGTCCCGTACCGTCACTTCGTGAGC GCAGCTGAAAGTTCCGGAGGGAGCGGCCAGGTTGGTCGGAGCACGAACAG CAGCGGTGAGAGTAACAGCGGCGGCGGCGGCGGCGGCAGCAGGAGAGACT CTTGTTTCTCGCGACAGAGGGGGGATTGCGGCGGAAGCGGCGGCACCAAG GCGGCCGCGAACCACGCCACCACGAGCACCGCGTACCGCGGCAGCGTTGG TAGCTTCCAG
back to top

Coding sequence (CDS) from alignment at P-fluviatile_contig8:2782854..2790913+

>mRNA_P-fluviatile_contig8.14574.1 ID=mRNA_P-fluviatile_contig8.14574.1|Name=mRNA_P-fluviatile_contig8.14574.1|organism=Porterinema fluviatile SAG_2381|type=CDS|length=6252bp|location=Sequence derived from alignment at P-fluviatile_contig8:2782854..2790913+ (Porterinema fluviatile SAG_2381)
ATGTCTCGGGCCGCCACAACGACGACAAGCAACACTGAACACGGCGCTTT
ACGTGCATGGGCGCAGCAGTATTCCGTGGAGACTGAGCCATTGGGACGTG
GATCCTTCGCTTCGATGTCTCGGGCCGCCACAACGACGACAAGCAACACT
GAACACGGCGCTTTACGTGCATGGGCGCAGCAGTATTCCGTGGAGACTGA
GCCATTGGGACGTGGATCCTTCGCTTCGGTGTACAAGGGAGTGAACCGCT
ACACGAAGGAGCCGGTCGCCGTGAAGGTCATGACCAAGGCGCGCCTCGGG
GAGCGGGCGCTCAACATGCTCTCGGCCGAGATCAACATCCTGCGGACCCT
GAGGCACCGTGTACAAGGGAGTGAACCGCTACACGAAGGAGCCGGTCGCC
GTGAAGGTCATGACCAAGGCGCGCCTCGGGGAGCGGGCGCTCAACATGCT
CTCGGCCGAGATCAACATCCTGCGGACCCTGAGGCACCCGAACGTGGTGT
GCCTGCGCGACAGCCACACCACGGAGCGGAGGATCCTTATCGTGCTCGAG
TACTGTGGAGGCGGCGACCTCGGACAGTTTATCCAGACCAGGGGGCCCTC
CCCTGAGCCAACGGCGCGGCATTTCATGCTGCAGCTGGTGGCGGGGCTCA
CGTTCCTGCGGTCGCGGCATCTGATCCATCGGGACATCAAGCCGCAGAAC
CTGCTGCTGAGCGAAGATTCCTCTCGCGCCTGCTTGAAGCGAACGTGGTG
TGCCTGCGCGACAGCCACACCACGGAGCGGAGGATCCTTATCGTGCTCGA
GTACTGTGGAGGCGGCGACCTCGGACAGTTTATCCAGACCAGGGGGCCCT
CCCCTGAGCCAACGGCGCGGCATTTCATGCTGCAGCTGGTGGCGGGGCTC
ACGTTCCTGCGGTCGCGGCATCTGATCCATCGGGACATCAAGCCGCAGAA
CCTGCTGCTGAGCGAAGATTCCTCTCGCGCCTGCTTGAAGATTGCAGACT
TCGGGTTGGCTCGCCATCTGCCGCAGGGCTCGCTCGCGGAGAGTATGCTG
GGGTCCCCCCTCTACATGGCTCCGGAGATCCTCAGCAATCGAGCATATTG
CAGACTTCGGGTTGGCTCGCCATCTGCCGCAGGGCTCGCTCGCGGAGAGT
ATGCTGGGGTCCCCCCTCTACATGGCTCCGGAGATCCTCAGCAATCGAGC
ATACGATGCTAAGGCGGACCTGTGGTCAGCGGGAGCTGTGCTTTTCGAGA
TTCTGACCGCCAAACACCCGTACGGCGGCACGAATCAGACGATGCTAAGG
CGGACCTGTGGTCAGCGGGAGCTGTGCTTTTCGAGATTCTGACCGCCAAA
CACCCGTACGGCGGCACGAATCAGGTGGAGCTCATGAACAACATCCGGAG
GAACCGGCCAAGGCTGCCGCCGGGCGTAACCCTGAGCCCTCCCTGCGTCG
AGCTGCTCGGGATGCTGCTCGTCCCACAGCCAGATCAACGCGCGTCCCTA
CAGAAGTTCGTTTCTTGCGCCTTCCTCAACAACGGCAGCAGCCCGCCACC
CGCTGCGCTTACCGCTTCGCCCAACGGCGGCGGCGGCACAGCCGGCGAAA
ATAACTGCGAAGGCGGCGGCGGCGGCAGGGATGGTGAGCCTCGGGCTGTC
TCGCCGCGCCCGGGTCGGTCAGCCGCGAAGTCCACCGAACCGGCCGCCGA
TGCTTTGCGTCAGCGGGGGCAGCGCGTGCCCCCGGCTGAGGCCCATTTCG
CGATGTACAGAACAACAGTTACCGTCACAACGCCGGAGCGCGAGCGTGAG
ATGGACGTAGCTACCACCGGGGGCTCGAGTGGCTCCAGATCGGTTCCCTT
TCTGCAGCATGGGTACAAGCAGCAACAGCAACAGCGGCAACAGCAGTTGC
CGCAGCAGCGGCAGCAACAGTGGTCCCCGGACAGTGTTAGGCGGATGAAC
AGGTCGGACGCAGCGCGAGAAGGACAGCCGCTCGATCGCACGTCAGATGA
CGGGCCGGCGCCGAGCGATGCTGCTGCTGCTTCCAATGGCGCCGGGCGTC
CTGCCGGCGGCGGCGGCGACGCCGGTGCTCAAGCGGAAGATGTACGGCCG
ACCGGTAACGGCGACGGCAACGGCAACGGCGACGACGGTGGCGCCCGAAA
CGACGGGATTGTCGGGCACCCGGTGGGAGGTAGGAACGGCGAGCGCGGCT
GGGACTGGGGCGATGGCAGGGGCCTTACCCCGGCCCTGGCGGTGGTGGCG
GCGGCGGAGGCAGGAGGCGTACACGACGGCGGCGCCGTCACAGACGGCGT
CAACGACGGAGGCCCGCTCCCCGCGCTTCCTGCCCTCCCCTTCGCTCGTG
GGCCATTCGGCATTCGAGGGTCCTTCAAGGAAGATGGCTGCTGCGGCGGT
GACGGCAACAGTATTGGTGGCGATGACGGCGACTGCCCGCAGGGTTCAGC
TGGCTTTGCGTTTGATCTCGCGTTCGCGGGTAGCCCCATGCGTAGCCGGT
GTCGCGTAGTTCCTGCCACGGCTGCGCCATCGGGCGGTGGTGGCAGCGAG
CGGGATCGTCATAGCTACAGCGCCAGCGATGCCGCTGTCGGGCCCGAGCG
ACGGGAAAGAGAAGGCTTCGCCGCTGCTCTCACCGCCGTGGTGCCGCTGC
AGCGACCGCAGGCGGAATCCCACGCGGGTGACGCGGTCTCGCTCCCTCGT
GTTCCCGCTGCATTTCCGCCGGCAACGCCTGCCCGCCCCCGCAGCCACAG
CGTTTCTGACGGCGCGTCTCTGCGGACGAAGGTGGAGCACTCTGAGCAAC
AGATCGAGTGCAACACAGCCGCGGGCGTGTCCACCGCGCCATCCCCGGCA
TTCCACACGAGTGGCGACCACGACAGTGGTTATCCGGCGGCCGCTGGAGG
CGCCGACGGCATCGCGGGGGGAATCCAGGGCGGCGGAGAAGGCGGTCGCG
GCTACGCGCAGATCTCGTCTTGCTCTTCTTCGTCCTCCTCGCCGTCGCCT
TCCCACAGCCCGTCGCCGTGGAGCTCATGAACAACATCCGGAGGAACCGG
CCAAGGCTGCCGCCGGGCGTAACCCTGAGCCCTCCCTGCGTCGAGCTGCT
CGGGATGCTGCTCGTCCCACAGCCAGATCAACGCGCGTCCCTACAGAAGT
TCGTTTCTTGCGCCTTCCTCAACAACGGCAGCAGCCCGCCACCCGCTGCG
CTTACCGCTTCGCCCAACGGCGGCGGCGGCACAGCCGGCGAAAATAACTG
CGAAGGCGGCGGCGGCGGCAGGGATGGTGAGCCTCGGGCTGTCTCGCCGC
GCCCGGGTCGGTCAGCCGCGAAGTCCACCGAACCGGCCGCCGATGCTTTG
CGTCAGCGGGGGCAGCGCGTGCCCCCGGCTGAGGCCCATTTCGCGATGTA
CAGAACAACAGTTACCGTCACAACGCCGGAGCGCGAGCGTGAGATGGACG
TAGCTACCACCGGGGGCTCGAGTGGCTCCAGATCGGTTCCCTTTCTGCAG
CATGGGTACAAGCAGCAACAGCAACAGCGGCAACAGCAGTTGCCGCAGCA
GCGGCAGCAACAGTGGTCCCCGGACAGTGTTAGGCGGATGAACAGGTCGG
ACGCAGCGCGAGAAGGACAGCCGCTCGATCGCACGTCAGATGACGGGCCG
GCGCCGAGCGATGCTGCTGCTGCTTCCAATGGCGCCGGGCGTCCTGCCGG
CGGCGGCGGCGACGCCGGTGCTCAAGCGGAAGATGTACGGCCGACCGGTA
ACGGCGACGGCAACGGCAACGGCGACGACGGTGGCGCCCGAAACGACGGG
ATTGTCGGGCACCCGGTGGGAGGTAGGAACGGCGAGCGCGGCTGGGACTG
GGGCGATGGCAGGGGCCTTACCCCGGCCCTGGCGGTGGTGGCGGCGGCGG
AGGCAGGAGGCGTACACGACGGCGGCGCCGTCACAGACGGCGTCAACGAC
GGAGGCCCGCTCCCCGCGCTTCCTGCCCTCCCCTTCGCTCGTGGGCCATT
CGGCATTCGAGGGTCCTTCAAGGAAGATGGCTGCTGCGGCGGTGACGGCA
ACAGTATTGGTGGCGATGACGGCGACTGCCCGCAGGGTTCAGCTGGCTTT
GCGTTTGATCTCGCGTTCGCGGGTAGCCCCATGCGTAGCCGGTGTCGCGT
AGTTCCTGCCACGGCTGCGCCATCGGGCGGTGGTGGCAGCGAGCGGGATC
GTCATAGCTACAGCGCCAGCGATGCCGCTGTCGGGCCCGAGCGACGGGAA
AGAGAAGGCTTCGCCGCTGCTCTCACCGCCGTGGTGCCGCTGCAGCGACC
GCAGGCGGAATCCCACGCGGGTGACGCGGTCTCGCTCCCTCGTGTTCCCG
CTGCATTTCCGCCGGCAACGCCTGCCCGCCCCCGCAGCCACAGCGTTTCT
GACGGCGCGTCTCTGCGGACGAAGGTGGAGCACTCTGAGCAACAGATCGA
GTGCAACACAGCCGCGGGCGTGTCCACCGCGCCATCCCCGGCATTCCACA
CGAGTGGCGACCACGACAGTGGTTATCCGGCGGCCGCTGGAGGCGCCGAC
GGCATCGCGGGGGGAATCCAGGGCGGCGGAGAAGGCGGTCGCGGCTACGC
GCAGATCTCGTCTTGCTCTTCTTCGTCCTCCTCGCCGTCGCCTTCCCACA
GCCCGTCGCCTCCGGCGGTAGACCTTGGTGTTCCGGTGCTGCTCAAGCCT
AGCTTCCGGGGCAGCGATAGCCTCCTTACCATCCCCGAGGACTCCACCGG
CTTTGTCTTGGTCACGCGGCCCTCTTCCATCACTTGCGAGCACGGCCAGA
ACTGCGAGTGCTGGGCTTGGTCCGGCGGGCCCGGAGTCGCCTCGGGAGGA
GCCGGAGCTGGAGCTGGCGCCGGGATCATGAGATCACCCTCGACCTCGTA
CCTCGCGGCGGCGGCGAACCCGTACGGGGGGCCAGGAAAAGCATCGACCG
GACCAGGCGTCGCCGACACCGGAGGGCTGCGGCGTTCGGGCGCAAGCGCC
TTTCTCGGTCTGGGCAACATCTGGAATACCGCCATCAACACCTTCCGCGG
CGTCGCCGGCGCTCACGGGAGGCGGAGTTCGTGGCCCGCCGCTCGCGGCA
GGCACCAGCAGACGCGAGGATCCATGGGGAGCGGTTCGCCTCCGACCGCG
GCTGCTTCTCCCGCGCACTCTCGCGCGGGGTCTTGCTCCCCCCGCGAGCA
GCACCGATCGCCTCACTCCTCTGTCCCGTACCGTCACTTCGTGAGCGCAG
CTGAAAGTTCCGGAGGGAGCGGCCAGGTTGGTCGGAGCACGAACAGCAGC
GGTGAGAGTAACAGCGGCGGCGGCGGCGGCGGCAGCAGGAGAGACTCTTG
TTTCTCGCGACAGAGGGGGGATTGCGGCGGAAGCGGCGGCACCAAGGCGG
CCGCGAACCACGCCACCACGAGCACCGCGTACCGCGGCAGCGTTGGTAGC
TTCCAGTCCGGCGGTAGACCTTGGTGTTCCGGTGCTGCTCAAGCCTAGCT
TCCGGGGCAGCGATAGCCTCCTTACCATCCCCGAGGACTCCACCGGCTTT
GTCTTGGTCACGCGGCCCTCTTCCATCACTTGCGAGCACGGCCAGAACTG
CGAGTGCTGGGCTTGGTCCGGCGGGCCCGGAGTCGCCTCGGGAGGAGCCG
GAGCTGGAGCTGGCGCCGGGATCATGAGATCACCCTCGACCTCGTACCTC
GCGGCGGCGGCGAACCCGTACGGGGGGCCAGGAAAAGCATCGACCGGACC
AGGCGTCGCCGACACCGGAGGGCTGCGGCGTTCGGGCGCAAGCGCCTTTC
TCGGTCTGGGCAACATCTGGAATACCGCCATCAACACCTTCCGCGGCGTC
GCCGGCGCTCACGGGAGGCGGAGTTCGTGGCCCGCCGCTCGCGGCAGGCA
CCAGCAGACGCGAGGATCCATGGGGAGCGGTTCGCCTCCGACCGCGGCTG
CTTCTCCCGCGCACTCTCGCGCGGGGTCTTGCTCCCCCCGCGAGCAGCAC
CGATCGCCTCACTCCTCTGTCCCGTACCGTCACTTCGTGAGCGCAGCTGA
AAGTTCCGGAGGGAGCGGCCAGGTTGGTCGGAGCACGAACAGCAGCGGTG
AGAGTAACAGCGGCGGCGGCGGCGGCGGCAGCAGGAGAGACTCTTGTTTC
TCGCGACAGAGGGGGGATTGCGGCGGAAGCGGCGGCACCAAGGCGGCCGC
GAACCACGCCACCACGAGCACCGCGTACCGCGGCAGCGTTGGTAGCTTCC
AG
back to top