Homology
BLAST of mRNA_P-fluviatile_contig20.4262.1 vs. uniprot
Match:
D8LJJ8_ECTSI (Protein phosphatase, putative n=1 Tax=Ectocarpus siliculosus TaxID=2880 RepID=D8LJJ8_ECTSI)
HSP 1 Score: 531 bits (1368), Expect = 3.540e-178
Identity = 276/335 (82.39%), Postives = 301/335 (89.85%), Query Frame = 3
Query: 171 MGTLLDKPITEKQTETERGENGLEFGVSAMQGWRVDMEDSHTIISNVAGLEGHSFVAVYDGHGGAACAAYAGENMMRHIAETEEFKEYAGLAEKDAKLLEKALYAAFLACDRGVKVSQESSTDGDRSGSTAVAAFLTPTHVVLAHAGDSRAVLASGRKVAVATADHKPYNDGERARIEKAGGVVSMKRVDGDLAVSRALGDFQYKDDELPAEECKVSPAPETQSIPRSQEDEFLIVACDGIWDVMSDEDCTQAVRDIFQEGESNVGLACEEILDMCLFEGSRDNMSAVIVAFPGLKRNHTGEGVKGRRSQRAAEATESNADS--QDEESSEGASQ 1169
MGTLLDKP+TEK+TETE G NGLEFG SAMQGWRVDMEDSHTI++NVAGLEGHSFVAV+DGHGGA CAAYAGENMMRH+ ET EF EYA EKD +LEKALYAAFLACDR VK SQ+++ +GDRSGSTAVA+F+TPTHVVLAHAGDSRAVLASG+KVAVATADHKPYNDGERARIEKAGGVVSMKRVDGDLAVSRALGDFQYKDD LP EECKVSPAPET+S PRS +DEFL+VACDGIWDVMSDEDCTQAVR+IF EGES++GLACEEILDM GSRDNMSAV+VAFPGLKR+ TG+GV GRR+QRAAE +ESNADS Q E S E A Q
Sbjct: 1 MGTLLDKPVTEKETETETGSNGLEFGASAMQGWRVDMEDSHTIVANVAGLEGHSFVAVFDGHGGALCAAYAGENMMRHVMETAEFAEYAESTEKDTTVLEKALYAAFLACDRSVKASQDANPEGDRSGSTAVASFVTPTHVVLAHAGDSRAVLASGQKVAVATADHKPYNDGERARIEKAGGVVSMKRVDGDLAVSRALGDFQYKDDALPPEECKVSPAPETRSFPRSPQDEFLVVACDGIWDVMSDEDCTQAVREIFVEGESSMGLACEEILDM----GSRDNMSAVLVAFPGLKRSETGKGVAGRRAQRAAEDSESNADSLSQGETSEEAADQ 331
BLAST of mRNA_P-fluviatile_contig20.4262.1 vs. uniprot
Match:
A0A6H5KCZ0_9PHAE (PPM-type phosphatase domain-containing protein n=1 Tax=Ectocarpus sp. CCAP 1310/34 TaxID=867726 RepID=A0A6H5KCZ0_9PHAE)
HSP 1 Score: 361 bits (927), Expect = 1.180e-114
Identity = 181/212 (85.38%), Postives = 197/212 (92.92%), Query Frame = 3
Query: 279 MEDSHTIISNVAGLEGHSFVAVYDGHGGAACAAYAGENMMRHIAETEEFKEYAGLAEKDAKLLEKALYAAFLACDRGVKVSQESSTDGDRSGSTAVAAFLTPTHVVLAHAGDSRAVLASGRKVAVATADHKPYNDGERARIEKAGGVVSMKRVDGDLAVSRALGDFQYKDDELPAEECKVSPAPETQSIPRSQEDEFLIVACDGIWDVMSDE 914
MEDSHTI++NVAGLEGHSFVAV+DGHGGA CAAYAGENMMRH+ ET EF EYA EKD +LE+ALYAAFLACDR VK SQ+++ +GDRSGSTAVA+F+TPTHVVLAHAGDSRAVLASG+KVAVATADHKPYNDGERARIEKAGGVVSMKRVDGDLAVSRALGDFQYKDD+LP EECKVSPAPET+S PRS +DEFLIVACDGIWDVMSDE
Sbjct: 1 MEDSHTIVANVAGLEGHSFVAVFDGHGGALCAAYAGENMMRHVMETAEFAEYAESTEKDTTVLERALYAAFLACDRSVKASQDANPEGDRSGSTAVASFVTPTHVVLAHAGDSRAVLASGQKVAVATADHKPYNDGERARIEKAGGVVSMKRVDGDLAVSRALGDFQYKDDDLPPEECKVSPAPETRSFPRSPQDEFLIVACDGIWDVMSDE 212
BLAST of mRNA_P-fluviatile_contig20.4262.1 vs. uniprot
Match:
A0A835ZAX4_9STRA (Phosphatase 2C-like domain-containing protein n=1 Tax=Tribonema minus TaxID=303371 RepID=A0A835ZAX4_9STRA)
HSP 1 Score: 334 bits (857), Expect = 5.010e-102
Identity = 178/342 (52.05%), Postives = 230/342 (67.25%), Query Frame = 3
Query: 174 GTLLDKPITEKQTETERGENGLEFGVSAMQGWRVDMEDSHTIISNVAGLEGHSFVAVYDGHGGAACAAYAGENMMRHIAETEEFKEYAG--LAEKDAKLLEKALYAAFLACDRGVKVSQ---------------------------ESSTDGDRSGSTAVAAFLTPTHVVLAHAGDSRAVLASGRKVAVATADHKPYNDGERARIEKAGGVVSMKRVDGDLAVSRALGDFQYKDDELPAEECKVSPAPETQSIPRSQEDEFLIVACDGIWDVMSDEDCTQAVRDIFQEGESNVGLACEEILDMCLFEGSRDNMSAVIVAFPGLKRNHTGEGVKGRRSQRAAE 1112
GT LDKP+T+K TE + E+GL FG SAMQGWRV+MEDSHTII+ + GL HSFVAVYDGHGG+ CA YAG+ MMR + T +++ Y ++ +LL KALY A+L D ++ + E+ + +RSG TA++A +TP H+V+AHAGDSRA++ SG +VA AT DHKPY+ E+ARIE AGG VSM+RVDGDLAVSRALGDFQYK +L CKV+ P+T R+ DE L++ CDG+WDVM+++DC + +IF +GE+ VGLACEE++D CL GSRDNMS V+VAF LK G GV GRR+ R AE
Sbjct: 10 GTFLDKPVTDKDTEEDTSEDGLRFGASAMQGWRVEMEDSHTIITAMPGLPNHSFVAVYDGHGGSMCATYAGKEMMRFLRATPDYEAYVAQPAGGRNVELLCKALYTAYLDIDEALQKMRSRAFVTLLLPLLLTLLPPVPLLPPQVPEAQSASERSGCTALSAVITPNHIVVAHAGDSRAIICSGGRVAAATEDHKPYDAEEKARIEAAGGHVSMRRVDGDLAVSRALGDFQYKSRDLLPRNCKVTCVPDTLVYRRTPGDELLLLCCDGVWDVMNNDDCQRCAMEIFADGEARVGLACEELIDTCLARGSRDNMSVVMVAFKALKAGK-GRGVAGRRAAREAE 350
BLAST of mRNA_P-fluviatile_contig20.4262.1 vs. uniprot
Match:
A0A7S2V4V3_9STRA (Hypothetical protein n=1 Tax=Fibrocapsa japonica TaxID=94617 RepID=A0A7S2V4V3_9STRA)
HSP 1 Score: 306 bits (785), Expect = 2.990e-92
Identity = 168/323 (52.01%), Postives = 214/323 (66.25%), Query Frame = 3
Query: 171 MGTLLDKPITEKQTETERGENGLEFGVSAMQGWRVDMEDSHTIISNVAGLEGHSFVAVYDGHGGAACAAYAGENMMRHIAETEEFKEYAGLAEKDAKLLEKALYAAFLACDRGVKVSQESSTDGDRSGSTAVAAFLTPTHVVLAHAGDSRAVLASGRKVAVATADHKPYNDGERARIEKAGGVVSMKRVDGDLAVSRALGDFQYKD-DELPAEECKVSPAPETQSIPRSQEDEFLIVACDGIWDVMSDEDCTQAVRDIFQEGESNVGLACEEILDMCLFEGSRDNMSAVIVAFPGLKRN--------HTGEGVKGRRSQRAAE 1112
MGTLLDKPIT K+T NGL +G S+MQGWRV+MED HTI ++ GL+ HS VAVYDGHGG A +AG+ ++ +E EY ++ LLEKAL F+A D +K + GD SG TA+ A +TP+H+V A AGDSR ++ + +V + DHKP ER RIE AGG VSM+RVDGDLAV+RALGDFQYKD +LP + KV+ P+ ++ PRS DE L++ACDGIWDVMS++DC VR I+QEGE++ GL CEE+LD CL +GSRDNMS V+V FP + G GV RRS+RA E
Sbjct: 1 MGTLLDKPITTKETSNVE-HNGLTYGASSMQGWRVEMEDQHTIEVHLTGLQDHSLVAVYDGHGGQFAAKFAGKTLVAEFLSSESVAEYNRSGFRETSLLEKALKETFVAVDEKLKTEADVQC-GDCSGCTAICAVITPSHIVCASAGDSRGIMVTSGQVRALSEDHKPDGAIERERIESAGGCVSMRRVDGDLAVARALGDFQYKDRPDLPVDRQKVTCVPDVRTTPRSSGDEVLVLACDGIWDVMSNQDCCDCVRQIYQEGETDSGLVCEELLDTCLTKGSRDNMSVVMVQFPAMLEPPPGTAAGAERGGGVMARRSKRAEE 321
BLAST of mRNA_P-fluviatile_contig20.4262.1 vs. uniprot
Match:
A0A6U5FKN3_9STRA (Hypothetical protein n=2 Tax=Corethron hystrix TaxID=216773 RepID=A0A6U5FKN3_9STRA)
HSP 1 Score: 287 bits (735), Expect = 4.460e-85
Identity = 157/311 (50.48%), Postives = 212/311 (68.17%), Query Frame = 3
Query: 171 MGTLLDKPITEKQTETERGENGLEFGVSAMQGWRVDMEDSHTIISNVAGLEGHSFVAVYDGHGGAACAAYAGENMMRHIAETEEFKEYAGLAEKDA------KLLEKALYAAFLACDRGVKVSQESSTDGDRSGSTAVAAFLTPTHVVLAHAGDSRAVLASGRKVAVATADHKPYNDGERARIEKAGGVVSMKRVDGDLAVSRALGDFQYKD-DELPAEECKVSPAPETQSIPRSQE-DEFLIVACDGIWDVMSDEDCTQAVRDIFQEGESNVGLACEEILDMCLFEGSRDNMSAVIVAFPGLKRNHTGEG 1079
MGTLLDKP+TEK TE NGL++G S+MQGWRV+MED H + +N+ L+G SF AV+DGHGG+ + YA N++R ++ETE + +Y L+++ KL + AL AFL D ++ + E GDRSG T++A +TP H++ A+AGDSRA G + DHKP N E RI++AGG VSM+RVDGDLAVSRALGD QYK ++LPAE+ KV+ P+ R DE++I+ACDGIWDV+S+++ + V IF EGE N+G CEE+LD+CL + SRDNM+A +VAFPG+ H GEG
Sbjct: 1 MGTLLDKPVTEKNTELGES-NGLKYGASSMQGWRVEMEDEHILATNLPKLDGTSFFAVFDGHGGSFTSYYAKGNLVRLLSETESYTKYVELSQEKRDEMDGLKLFKSALEQAFLNVDVELRETPE-HLKGDRSGCTSIAVAVTPKHIICANAGDSRACYCKGGAAVPLSYDHKPTNSEEHNRIDRAGGYVSMRRVDGDLAVSRALGDLQYKTRNDLPAEQQKVTALPDFIVHERDNRLDEYIIIACDGIWDVVSNDESVEIVSQIFMEGEKNIGFVCEEMLDLCLAKNSRDNMTACVVAFPGV---HIGEG 306
BLAST of mRNA_P-fluviatile_contig20.4262.1 vs. uniprot
Match:
A0A7S2PS74_9STRA (Hypothetical protein n=1 Tax=Leptocylindrus danicus TaxID=163516 RepID=A0A7S2PS74_9STRA)
HSP 1 Score: 283 bits (725), Expect = 1.450e-83
Identity = 164/323 (50.77%), Postives = 215/323 (66.56%), Query Frame = 3
Query: 171 MGTLLDKPITEKQTETERGE-NGLEFGVSAMQGWRVDMEDSHTIISNVAGLEGHSFVAVYDGHGGAACAAYAGENMMRHIAETEEFKEYAGL--AEKDAK----LLEKALYAAFLACDRGVKVSQESSTDG-DRSGSTAVAAFLTPTHVVLAHAGDSRAVLASGRKVAVATADHKPYNDGERARIEKAGGVVSMKRVDGDLAVSRALGDFQYKDD-ELPAEECKVSPAPETQSIPRSQE-DEFLIVACDGIWDVMSDEDCTQAVRDIFQEGESNVGLACEEILDMCLFEGSRDNMSAVIVAFPGLKRNHTGEGVKGRRSQRAA 1109
MG++LDKPITEK ETE+GE N + +GVS MQGWRV+MEDSHT++ ++ L F YDGHGG+ +AYAG+++M +E EFK+Y L A +D+ L++ AL AFL D + E D DRSG T + +T H++ ++AGDSRA + + DHKP + E +RI++AGG VSM+RVDGDLAVSRALGDFQYKD +LPAEE KV+ P+ PR E DEF++VACDGIWDV+S+++C V+ I EGE+++GL CEE+LD CL SRDNM+A+IVAFP K G GV RR R A
Sbjct: 1 MGSMLDKPITEK--ETEKGEANSVVYGVSGMQGWRVEMEDSHTLVGSIPALPTMGFFGCYDGHGGSYTSAYAGDHLMNIFSERPEFKQYLALTQAARDSSEGIDLIKAALNNAFLQIDEKMLAESEEDRDPRDRSGCTCIVVVVTEKHLICSNAGDSRACYSRDGHAVPLSFDHKPNDAEEHSRIDRAGGYVSMRRVDGDLAVSRALGDFQYKDRADLPAEEQKVTAKPDLIVYPRDPEKDEFMVVACDGIWDVVSNDECVNMVQKILDEGETDMGLVCEEVLDSCLELNSRDNMTALIVAFPSAKFGKGG-GVAARRDARKA 320
BLAST of mRNA_P-fluviatile_contig20.4262.1 vs. uniprot
Match:
A0A4D9CRJ3_9STRA (PPM-type phosphatase domain-containing protein n=3 Tax=Monodopsidaceae TaxID=425072 RepID=A0A4D9CRJ3_9STRA)
HSP 1 Score: 283 bits (723), Expect = 2.380e-83
Identity = 160/315 (50.79%), Postives = 210/315 (66.67%), Query Frame = 3
Query: 171 MGTLLDKPITEKQTETERGENGLEFGVSAMQGWRVDMEDSHTIISNV-AGLEGHSFVAVYDGHGGAACAAYAGENMMRHIAETEEFKEYAGLAEKDAKLLEKALYAAFLACDRGVKVSQESSTDGDRSGSTAVAAFLTPTHVVLAHAGDSRAVLASGRKVAVATADHKPYNDGERARIEKAGGVVSMKRVDGDLAVSRALGDFQYKDDELPAEECKVSPAPETQSIPR-SQEDEFLIVACDGIWDVMSDEDCTQAVRDIFQEGESNVGLACEEILDMCLFEGSRDNMSAVIVAFPGLKRNH--TGEGVKGRRSQR 1103
MG+ L KPITEK++ E +GL FG +AMQGWRV+MED+HT+I + LEGHSF+AVYDGHGG A YAG++M + T + EY KD L+ A+++AFL D +K+ E D SG TA+ A +TP+HVV+A+AGDSRAV+ + + + DHKPY + ER RIE AGG+VSM+RVDGDLA+SR+LGDFQ+KD LP E KV+ PE Q R S++D L++ACDG+WDV + + V DI +GE + L EE+LD CL S+DNMSAV+V F L H GEGV+GRR +R
Sbjct: 1 MGSHLAKPITEKESY-ESNAHGLNFGAAAMQGWRVEMEDAHTVIETMDPELEGHSFIAVYDGHGGQYSAIYAGKHMADFVRRTVAYTEYK--TTKDVAHLQTAIHSAFLNLDESLKLQDEFVHKHDTSGCTAICAIITPSHVVVANAGDSRAVMYTTKGTHQLSRDHKPYLEDERKRIESAGGMVSMQRVDGDLALSRSLGDFQFKDRNLPPERQKVTAVPEVQVHVRDSEKDLCLLLACDGVWDVCESAEAGRIVFDILGDGEKRMALVAEELLDQCLLRYSKDNMSAVVVGFAKLWEEHGKEGEGVEGRRRRR 312
BLAST of mRNA_P-fluviatile_contig20.4262.1 vs. uniprot
Match:
A0A7S2B8Y2_9STRA (Hypothetical protein n=1 Tax=Florenciella parvula TaxID=236787 RepID=A0A7S2B8Y2_9STRA)
HSP 1 Score: 270 bits (690), Expect = 9.070e-79
Identity = 148/310 (47.74%), Postives = 202/310 (65.16%), Query Frame = 3
Query: 171 MGTLLDKPITEKQTETERGE-NGLEFGVSAMQGWRVDMEDSHTIISNVAGLEGHSFVAVYDGHGGAACAAYAGENMMRHIAETEEFKEYAGLAEKDAKLLEKALYAAFLACDRGVKVSQESSTDGDRSGSTAVAAFLTPTHVVLAHAGDSRAVLASGRKVAVATADHKPYNDGERARIEKAGGVVSMKRVDGDLAVSRALGDFQYKDDELPAEECKVSPAPETQSIPRSQEDEFLIVACDGIWDVMSDEDCTQAVRDIFQEGESNVGLACEEILDMCLFEGSRDNMSAVIVAFP-GLKRNHTGEGVKGRR 1094
MG LLDKP T+ E E GE NG+++GVS+MQGWR +MED+HTI + GL H+ AV+DGHGG A YA E+++ + + Y D LL +AL AFL D ++ + + +RSG TA+A ++P+H+V+A+AGDSR+ + G + + DHKPYN E+ RIE AGG VSMKRVDG+LAVSRALGDFQ+KD L A++ KV+ P+ + RS+ DEF+I+ACDGIWDVM++E T+ + ++GE++ L CEE++ CL SRDNMS V + FP G GEGV G R
Sbjct: 1 MGNLLDKPNTD-YLEAEEGEGNGIKYGVSSMQGWRTEMEDAHTITPEIPGLTDHALYAVFDGHGGQYAARYASEHLVDELKIAPSYIAYVDGGNADPALLGQALQEAFLNLDSNLR-DETRAMQNERSGCTAIATVISPSHIVVANAGDSRSAMQVGSETVALSEDHKPYNAEEKNRIEAAGGCVSMKRVDGELAVSRALGDFQFKDANLDAKDTKVTAFPDITIVQRSEADEFVILACDGIWDVMTNEQATKQMTSYCEQGEASPRLMCEEMMCDCLERSSRDNMSVVTLIFPAGEALTKAGEGVMGLR 308
BLAST of mRNA_P-fluviatile_contig20.4262.1 vs. uniprot
Match:
W4H0A2_9STRA (PPM-type phosphatase domain-containing protein n=7 Tax=Aphanomyces astaci TaxID=112090 RepID=W4H0A2_9STRA)
HSP 1 Score: 266 bits (681), Expect = 1.240e-77
Identity = 156/316 (49.37%), Postives = 204/316 (64.56%), Query Frame = 3
Query: 171 MGTLLDKPITEKQTETERGENGLEFGVSAMQGWRVDMEDSHTIISNVAGLEGHSFVAVYDGHGGAACAAYAGENMMRHIAETEEFKEYAGLAEKDAKLLEKALYAAFLACDRGVKVSQESSTDGDRSGSTAVAAFLTPTHVVLAHAGDSRAVLASGRKVAVATADHKPYNDGERARIEKAGGVVSMKRVDGDLAVSRALGDFQYKD-DELPAEECKVSPAPETQSIPRSQEDEFLIVACDGIWDVMSDEDCTQAVRDIFQEGESNVGLACEEILDMCLFEGSRDNMSAVIVAFPGLKRNHTGEGVKGRRSQRAAEA 1115
MG L P+TEK T G NGL FGVS MQGWR MED+H +++ +G S AV+DGHGG A + N++ + K+ + +KD + AL AFLA D + ++ + D SG TA+AAF+ TH+V+A++GDSR+VLA+ V + DHKP N GER RIE AGG V RV+GDLAVSRALGDF YK +L AE+ +VS P+ +++ R+++ EFL++ACDG+WDVMS+ED VR + GESN+GL CEE+LD CL GSRDNMS V+V FPG R TG+GV G R R AEA
Sbjct: 1 MGNFLSSPLTEKDTHVGSG-NGLSFGVSCMQGWRATMEDAHIARTSIPSFDGCSIFAVFDGHGGKLVADESALNLIETLE-----KQDVNVKDKDD--IGGALTRAFLALDIEHRQLKQVVSGDDHSGCTAIAAFINDTHIVVANSGDSRSVLATDGGVVPMSYDHKPNNPGERQRIENAGGSVRNNRVNGDLAVSRALGDFVYKQRPDLRAEDQQVSAEPDVKAVERTKDFEFLLLACDGVWDVMSNEDACAFVRSLLAHGESNMGLICEEVLDHCLSLGSRDNMSIVVVKFPGA-RIGTGDGVAGLRKLREAEA 307
BLAST of mRNA_P-fluviatile_contig20.4262.1 vs. uniprot
Match:
A0A024UCH5_9STRA (PPM-type phosphatase domain-containing protein n=2 Tax=Aphanomyces invadans TaxID=157072 RepID=A0A024UCH5_9STRA)
HSP 1 Score: 265 bits (677), Expect = 5.900e-77
Identity = 159/316 (50.32%), Postives = 201/316 (63.61%), Query Frame = 3
Query: 171 MGTLLDKPITEKQTETERGENGLEFGVSAMQGWRVDMEDSHTIISNVAGLEGHSFVAVYDGHGGAACAAYAGENMMRHIAETEEFKEYAGLAEKDAKLLEKALYAAFLACDRGVKVSQESSTDGDRSGSTAVAAFLTPTHVVLAHAGDSRAVLASGRKVAVATADHKPYNDGERARIEKAGGVVSMKRVDGDLAVSRALGDFQYKD-DELPAEECKVSPAPETQSIPRSQEDEFLIVACDGIWDVMSDEDCTQAVRDIFQEGESNVGLACEEILDMCLFEGSRDNMSAVIVAFPGLKRNHTGEGVKGRRSQRAAEA 1115
MG L PITEK T G NGLEFGVS MQGWR MED+H +++ + S AV+DGHGG A + +N++ + KE + KD + ++L AFLA D + +E D SG TA+AAF+T +V+A++GDSR+VLA+ V + DHKP N GER RIE AGG V RV+GDLAVSRALGDF YK +LPA +VS P+ + R++EDEFL++ACDGIWDVMS+ED VR + +GESN+GL CEE+LD CL GSRDNMS V+V FPG K G+GV G R R AEA
Sbjct: 1 MGNFLSSPITEKDTHVGTG-NGLEFGVSCMQGWRATMEDAHVARTSIPAFDRCSIFAVFDGHGGKLVADESAQNLIDVLE-----KEVMDVKNKDD--IGRSLTRAFLALDDDHRRLKEVIGGEDHSGCTAIAAFVTDLFIVVANSGDSRSVLATDGGVIPMSYDHKPNNTGERQRIENAGGSVRNNRVNGDLAVSRALGDFIYKQRPDLPAAAQQVSAEPDVKVAERTKEDEFLLLACDGIWDVMSNEDAVALVRSLMAQGESNMGLICEEVLDHCLSLGSRDNMSIVVVKFPGAKIGQ-GDGVAGIRKIREAEA 307
The following BLAST results are available for this feature:
Sequences
The following sequences are available for this feature:
protein sequence of mRNA_P-fluviatile_contig20.4262.1
>prot_P-fluviatile_contig20.4262.1 ID=prot_P-fluviatile_contig20.4262.1|Name=mRNA_P-fluviatile_contig20.4262.1|organism=Porterinema fluviatile SAG_2381|type=polypeptide|length=348bp
MGTLLDKPITEKQTETERGENGLEFGVSAMQGWRVDMEDSHTIISNVAGL
EGHSFVAVYDGHGGAACAAYAGENMMRHIAETEEFKEYAGLAEKDAKLLE
KALYAAFLACDRGVKVSQESSTDGDRSGSTAVAAFLTPTHVVLAHAGDSR
AVLASGRKVAVATADHKPYNDGERARIEKAGGVVSMKRVDGDLAVSRALG
DFQYKDDELPAEECKVSPAPETQSIPRSQEDEFLIVACDGIWDVMSDEDC
TQAVRDIFQEGESNVGLACEEILDMCLFEGSRDNMSAVIVAFPGLKRNHT
GEGVKGRRSQRAAEATESNADSQDEESSEGASQGHTTSEVTPESKVA*
back to topmRNA from alignment at P-fluviatile_contig20:499982..516949+
Legend: UTRpolypeptideCDS
Hold the cursor over a type above to highlight its positions in the sequence below.
>mRNA_P-fluviatile_contig20.4262.1 ID=mRNA_P-fluviatile_contig20.4262.1|Name=mRNA_P-fluviatile_contig20.4262.1|organism=Porterinema fluviatile SAG_2381|type=mRNA|length=16968bp|location=Sequence derived from alignment at P-fluviatile_contig20:499982..516949+ (Porterinema fluviatile SAG_2381)
AAAAAACGACAGACAGTCTGCGGTTCGTTGGCGAAACAGAACGATAGAGC
TAGCAGCCGGCGCTCTCCAGCGAAGTTGCAGCACTTCTGCTTGGAACCAC
GCATCGCTTTTGCGGGATCTTCATCAACACAACAACTCGGAGATTCTTCA
CCTCCTTTGCCGTGTTAATAATGGTGAGCCTAGCTTAGAGGTGGCCCCCG
CGACGCTCCCTCTCGCTCTCTCTTTCTTTCGTCGTTTACTCTCTAATTAT
CGAGGCGCAAACGCTCGACGCGTCGCGGAAGGAATACCCAAAGTCGCTGG
AGGGGGGGAGGGGGAGAGAGGGAGGGGGATTCGCAGGGACGAAAGAGAGA
ATTTCTCTTACGAGTATAGCTGTTTCTCATGGTGGGTGATGTTTGATGCT
ATTTGCCTTGCACCGGACGTCGGCAAACTGTGCGCGGATGACTTGCAATA
AATTGCACCCTCCCGATGGAAGCGCACAAACCTTAGAATCCGAGCCGGCG
ATTTGAATGAGCAGCATGTTCGTGCGTGTTGTCTGCGTTCAGGAAAATGC
AAATATTGGGGAACGATGGTCGCAAATGCGCCCGGTTTGTTGTGAATGGC
TATTCTCAGAGCACAGAGAATTGTGAGTTGCGGGGAGGGTGCAGTAGAAA
CGGCAGTGGCGACGGAGCAGGTGTGTCCGTTCCCGACTGCGATATGCCTC
GTTCGCACATTCCGAGTTCCTTGATTGAAGGGGTGCGGTCTGGTCACTAG
ACTGTAAGTTTTAAATCTGCACACTCTCGCTTTAATGCCCTCCCTCTTGA
TTCCGGCGGTCCCGGTTCGCTTCCTGTACGTACGCCTACTTCGCGAGCGT
CCACGCCCCCCCCGCCCGCAAAACATTCTTTGATTACGATTTTCCACGAG
AATCCCCTCCGTCCGTCGGCACTATGTCGCGAAGCCCCCCTGGAAGTGAA
GTGACCCCAGAGCCAGCAGAAGCAGCAGCAGCAGTAGCGGCAGCAGCGGC
AGCCAGCAGCTTCAGGGCAAGCCGGGTGCAGCCTCAGACTCGAAGTTGTA
TTTGCACAGGCTGCACAGGAGCGAAAGAGACAGCCGCGTTTGTTGTGCGG
CAAGGCGGGCATGAGCGAAGTGCTCGAGGACTCCGCTGTCTCGACTCATA
CCCACTTGTAACAGGGAGGCGTAAATTAGTACCTTTGGATAGCGTGTGCG
GGTGGGTCTTCGTTCATTACCAACCGACCAACTCCAGCGCTCCATATTGG
GGCATGTCAGCACAATGGGTCACCTCCAACTTGCCTGTGAAAGGCCAGGG
ACAGCCAAAAGTAAACTTTTTTTCCCGTTCTGTTTGAAAAGATGATACCT
CGAACTTCCGTTTCTCCGTGAGTGGATATGTTCTCTGCGTGTACCCCTCG
GTGCACAGCCGCTGATCGCCAACAAGTGTGCTGGGCTACTGTCGGCTATG
ACGGTACCACCCCAGCCTGTGTCGAGACGCTTTTTCCCCCTTGTGTTGGC
CGAACGCCCTTGAACCCGACTCGGAGAAATAGTTAATTTGACATCTGGTC
CAATGCTAAGCCCATTTGCCTTTGGCTGTGTCTTGGCCCACGAGACCAAA
GATGAAATATACAACAACCTCCATGCTGTAGAAGTCCCGACCTGGGCTGA
AGTAGGCGAGGATGAGATGGATGTAGGCGAGGGGTGTTGGCATGCCCGAA
TCTGCTTGTGTTGGGGCAGATGCACTATGGCAGCTCATGAACTCAACAGG
CTGGACCGAAACCACACAGTTGGAGCGGCTGTCCTCGCCGCGACGGGCGC
ACCTTTCTTACGAAATATCGAATACCTCCGTGGTCACGTGCTACTTACCC
GACATAACTCGTCAAACCTGAAACATGTGTTCACGTTGTACTTTCATTGC
TGTCCTCCCTCGGCAAACGCGCAGTTTTTCCCCAACGGCAGCACAGGTGC
GCTTGTGCTCGAACCCGGTCGCATTTTGTTGTTTGATGTCCGGTGGCCTG
CTCTGTTTTGCCTGCATTCCATTAATTGTGTTTTCTGTTGGTGTCTCTAC
TTTTGCGTGGCGTCCTGCTGCTGTCACGGCACATGATCAGGGGACGCTGT
TGGACAAGCCCATCACTGAAAAGCAGACGGAGACAGAAAGGGGGGAAAAT
GGGCTTGAGTTCGGAGTTTCGGCGATGCAGGTGCGTTCCCTCGGGTGGAC
GGGCGCTCGGAGGTTCGGCAGAGGGGGAAGCCGAAACCAGCGGTGCTCTC
ATTTTCAAGCGAGCGCTTTTCTGCGCTTTTTCGCCGTGGAAGCTCTTGAC
ATGCGCGGTTCACATTTTGTGCGTATTCAGACAGCCCAATTGCTCGGCAC
TGCCTCGGCGGCCGGTATCTGTTCCTTCATGAACGAGAACGGGCAGAATC
GAGTGAGACCCCCCCTGTCCTGCTGCGACCATGTCTCCTGCTGACGACCG
GGAGAAATAGCTGCAATGTCGGAGTCCTGTGTCTCCTGCGCTCGATATAA
GGCGTTTGCACATTTCGTCATTCGCTTGTCGTGCAGCTCTCACGAGGTCC
TCCCCTACCGAGGATGGAATGCTTTGTCACTGTTCAGATCACTGCCATCA
CTCAATGAGATGAGAGCAACATCTTTGCCGGCCGCACGTCGCACCCGACG
CAGGGCTGGCGGGTAGACATGGAGGACTCCCATACCATCATATCTAACGT
GGCGGGATTGGAAGGGCATTCCTTCGTGGCCGTTTATGACGGCCACGGGG
GAGCGGCGTGCGCGGCTTACGCGGGCGAGAACATGATGCGGCACATCGCG
GAGACGGAGGAGTTTAAGGAGTACGCCGGGTTAGCAGAGAAAGACGCGAA
GGTACGTCCTTTTTTCATCTCGTTGGACCTTGTCGCGTGTTTCGCTTTTT
TTTTTTGGCGCTGCGGATGGAGCGCGGTGTGTTGTGGAGCAGGGACCCTC
ACGATATTGCGTGCTGAACCATGGTCATTCGTGCCTTCGTAATTTCCGAT
GGCGCACTCATCCCTCGCCGGAAAACCCATCGATTGGTCTCGAGTGTCCG
TGTCGGCAATCACCGCGATTCACGTTTGTTTCCTTCTGCGTGGGCGCTTA
GGCTTGTATCTCTCGCGCGTGGGGCTTCGTTCGTCTGACTATTTTTCAAT
CCGTCTTCGTAGCTCCCGAAGATTTAGTGTTGCAGGCTCCTCTGTGGCCT
CCAGAGACGGAGTGCGTGCGTCTGCTCGCGAATGATCGAAAGACACAGCA
AGCATCTGATAAATTGCCACCCCCCCCCCCCTCTCCGACCTTCTTGCGTT
ACATATTTTAATCGTCCGCAACCGACGGAGGGCAGCTCCTTGAAAAGGCG
TTGTACGCTGCTTTCTTGGCCTGTGACCGGGGGGTGAAGGTCTCACAGGA
GTCCAGCACGGACGGCGACCGCAGCGGCAGCACCGCGGTGGCGGCGTTCT
TGACGCCGACGCATGTTGTGCTGGCGCACGCGGGGGACTCGAGGGCGGTG
CTGGCCAGCGGACGAAAGGTGTGCACGTGGATTTGTTGCGTTTCCGGTGC
GTGGTTGTTGCGTTTCGGGTGTGTGGAGCAAGCATCTGCCTCCTGCGCGC
TCGTGGCTTGCGTTCGAGCACGGCTTCGGCCTATGGTGTGCTGTGTGCAC
GGAAAGAGGAAGGGGGGGGGGGGCGTGCTCATGTTTTGCATGCCTTAGTT
GTTGGACCATTGACCACACGTCCTCGAGAGGACGGAGCAATGTTCCCACA
GGATCGATCACCGATGGCCAATCGTTCCTTCCTACTTGCCAGAGGTGGCT
CAAAAATGTTTTCCTACCCTGTCTACTTTATACCTGTCCTTCCTGGGCCA
CATCCTACACCCGAGTACCGCTACCGTCTTCTCCTCTTTGTTCCATGCCT
CAAACTTCTCTCTATACCGACTGTCTACTTTTTCGAGCTCAATCGTGTAC
CCTTCTCTCTCCTGATCGTGTAACGGGCATTCCGCAACTACATGTACCCG
GTCTTCGCGTTCGGCGCCGCAGTCACATTTGAACTTGCCTTCGTCGTCGT
CTACCTTCCTAAACCTCCTTCTACGTTCCCGAAGGTCAATGTCGCCCGTT
CTAAATTGACCTTCATCTTTTGTCCCTTCATCCCATGGTCCGTTTAGGTA
CTCCTTGAACCCTATTCCTCAGCCTTCCGTACACTTCTAGAACCTCCTTT
TCCTTGGTCTCTTTCCGCAAGCTCTGGTCTTTTCTATTTTCAAAGGCTTC
TGAGATACTCTTCTTGTACCCTTCTAAGCATTCCGCTCCCGTCGTCTCCC
GTTCGTCAATATCTAACCCACTCCACACTCCCTGTACAACCTTAGCCCAC
TCAATGGGTTGTCTACCCTTGGCCTTGTTTACCCATCTCGCCTCCCAAGC
TATTCTCGGTAACCTCTCCTTTCCCATGTTTTCCATACGGTATTGCCATG
TCAACTTCCTTCTGTCTCTTCCCGTTCTTAAGGAGTTAATCCCCAACTCT
GCTCTTACTGCTGCGTTACTTGTGCGCTGGGAGCATCCTAGAATGATCTT
CGCTGCTTTCATCTGCGCTGCCTCCAACTCGCTACTATTTTCTTGTTCCC
TTCCCAAACTTCTCCCGCATACTCTAGTGGCGGGATGATAACACTTTTCA
GAATGGCCATTTTGACGCGTGTATCAAGGTGCCGGTCTGCTAGGATTGGG
TGCAACTTCCCTGCCCTTGCTTTGCCCTTGTCCGCTAATTCGTGCATGCG
TGCATCCCATTTACAGTCTTTTGCTATCTGTACTCCAAGGTATGTGTATT
TTCCACTCTTGGCAGCTCCTTGTCCCCCCATGTCCACTTGGTACCTACTT
CCTCGTCACCATCTTCGTTGCATACCATTACGACACACTTTGGGACGTTG
GCCGAGAATATCTACTTATCAGCATAGGCCTTCGCTGCGTTAATCTGTAG
TTGGAGCCCCTCAGGCGTGTCCGACACTCCAACAAAGTCGTCAGCAAATA
GCAGTCCCGATACCGAGGTTTCCCCTACTTCTACTCCCTTCCCTACCGCC
GCCTCTACCTCTTTCAGTAAGTCGTTGATGAATACCTGGAACAACGTTGG
TGACATTGTGCACCCCTGTGGGACCCTCTGCTTAATGTCGAAGAACCTCG
AGAGTTCTCCATCTAACATCACGGCGCTTTTCGTGCTCTCTGTCATCTTC
TTAATCATTCTCCACATCTTCCCGTTTATCCCATACTTCGCCAACTTTTT
CCAGAGCCCATTTTCCCATGCTGTATCATACGCCTTCTGAACGTCTAGGA
AAAAGCAGTATGTCGGCTTTCCCACCCTCTTCCGACCTTGTATGATCCTC
CCTACGGTGTATAGGTGATATCCACACCCCCTAGCCTCCCTGAAACCTGC
TTGGCCCTCACTATTTCTCTTTTCCATCTCCAGTACTCGTACTATTCTGT
TGTTGAGGATCTTCAAGAACACTTTCCCTACTGTGCTCAACAGGGTGATT
CCCCTATAGTTTCCTGGGTCAGTGTTATCTCCTTTCTTAAATAGGTTCAC
CACCACCCCTTCCCTCCATCTACTCGGTGCATATTCGTACCCAGTTGAAC
AACAGCGCCATCATCTGAATCATCCCCTCCCCCCCGAACTTCATGATTTC
GTTCACTATCCCGTCTGCCCCTGCGGCCTTGTGACACTGCAGTTTTTTCA
CACAACTCTCAACCTCTTCCTCGGTGAACTTCTTTCGGAGCTCTGCATTC
CCAACTTCCTCCATCGAAGCTCTCTCTTCTGCTTGGGCCCACGCGTCTAC
CTCTTCCTTGAGTACTTGGTCGAAGTCTGCCTTTTCCGACGGCACCGCGA
GTCTCCTATAGTGTCCTGCTAGTACCTGCCTCTTCCCCTTGCCACTGCTG
ACTAGTTTACCGTTTACGCCTCGCAATGTTGCTACTCCTGCTTCCCCCCC
ATCCTCATTCTTTTTTTCCAATACATTAGTTCCCTGCCTCATCTGTTTTA
CGCTACCCTCCAACCCCCCCATCGCTCCTGCACCACTTTGTCCCAGATGC
CTTTCTTCTTCTTTTTCACTACTCCATTCACATGTTTCCTCTTGGTTCTG
TAGGTTTTCCAACTCTCCTATGTCTTCTCATTCATGTGCCGCTTAAACTG
TTCTCTTCGTTCCCCTATTTCTTCCCTCAACTCTTCGTCCCACCACTTAT
CCGCCTGACCACACCGGACCATCTTTTTCCCTATCTCTTCCTCTGCGGTT
GTGTTCAATATGTTTTCCCATCCTGCGATTTCTCTGTCCCCTGCTACTCG
AACGTCCTCTTCCTCTCCCGCTTTCCCCATCAGTTCCCTTGCTTGTTCTA
CGCTGTCTGCATTCCTTTGTTGGAATTCAGCACGTACTCTCTCGTTTCCC
AATCGTTCTACTTTCCATCTGAATACCTTCCTCGTCTTCGTACTCTTGAC
CCTATTGTTACGTGTTGTTTTAGCCCAAATAAGGAAGTGGTCAGTCGTGC
CTATGTCTACCTTGCTTACTTGCAATCTTGGGATCCGCTTTGTTTCTCTG
TCTACCGGGATGTAGTCAAGAATCGAGGATTCTCCACAACTTGCCCGCTG
TCTGGTATACTGCGGGGTGTCCTCCCGACTCCTATTGTTTGTCGCCATCA
GCTCGTTACTGCCAGGAAGTCAAGCATTTTTTCCCCGTTGGCCTTTACTC
GGTTTTCTCCGTATTGCCCTATCACCTGCCCCCTCCGACTAGCTTTACCA
TCTCGAGGGTTGAAATCGCCTACCATGACAACTTCTCCCTTTCTCTTGAA
CTTCTGAACATCTTCCCCCACTTGCTCGAAATTCTCCTGCGCCTTACATG
CGACTTTGTTAGACGACGAGGAAGGGGGGGGCGTAACTCATTGATCGCTT
GCCTTCGTAATTTGACCATTGACCAAGCCTCCCTTAGAGATGGAGCACGT
TCCTACTCCTAGTCATTGGGCGCTCTCTACGTTTTTGCCATCGCTACACG
GGAACCCCTTTTCTAATATACCCTCGTGTTTTGCTTTGGCTGGCCACCAT
CGATTCCCTATGATGGCGACTGTTTTTTCGCTTTCATCGAGTTTACCTAA
CTCATCCTTGTTACATCCGATTCTCCTTATTTTTCTTACCAGGTTCTCTC
TTCCCTCCCTGTGCAGCTCACACCCTGCAACTATGTGTGTTCGACCTTCC
TCGGTTTCGCCGCATGGGCATGCCTGTCTACCCTCCTTTTCTTCTGTTCT
ATGTTGGTGTATCTTTCCACCTTTCTGTCAAGCCCAGGTCTCCGACCCGA
ACTCGAATTCCTATCATTTTCGCGTTGTCCATCTTGCCGTTTCGACATTT
TCATCCTTCTCTTTTCTTCAGAAAGGGATGGGGTAGCAGAGAGTGAGAGC
TCTGCGTGTTCTGGTAGCATAGTCCCTCCCTGACACTCCTCCCTCCTGGC
CAGTATTTTCCCATGCACCTTCGGAGGGAGCCTTGCATTCGTCGCACGCC
GCATTTCCATTTGTTTCTTCTGCTTTCATGTAGTGGCGGATAGTCTACAA
ATATCGGTGGTCTACGGAGGCGACCGCGGTCACACGGAAAGGGGCGATAG
CACACGTCCGATCGGCCAATTGCGCGTCGGTCCTTATCCCCATCCTCCCG
CGAGGCAATCCGATCGTGCTCCCAAAGCGCTTCGCCTTAAATCAACGCGC
TGCCGCTGCTGCCTGCGTTTTTTTTCCCCTCCATATGTTCACTCGCCTGT
CGTGTCGTGTGCGCGAAAGGTGGCCGTGGCGACGGCGGATCACAAGCCCT
ACAACGACGGGGAGCGGGCTCGGATAGAAAAAGCGGGGGGTGTCGTGAGC
ATGAAGCGAGTGGACGGCGATCTGGCTGTGGTGAGGCCGCTGCTGATGCC
TCTTGCTGTCGCTGCTGCTAAACGTTTGCTGTTGCTGAACAGTTGCTGTT
ATTCCTGCTGCTGTGTGTCGTTGTTGTTGTTCCTGCTGGCTGCTGTCGCT
GTTAGTGTTGTGGTTGCTGTTGTAGCTGCTGCTGCTGCTGCTGCTTTTTC
CATTCAATCGTCGTGCTTGTGCCTCATGTGCCTCACCAGTCGCGGCCTTC
TCGAACAGACATCGAAATGAAACCAGCGCCGCCCACTCCCTACCATTTTG
TCATTCATGAACCTTTACGACCATCAGTACCCGAGTGAGAAGCAAAGATG
CCCGATATTTGCATCTGCCGCCATTTCAAAATGTATCGACATCTCTCACG
GCGTGGAGGAGGGTGATGCGCTGCCGCACAGGCCAACGCGCCGAAACAAC
AGCCGCTACTCATCAACACGGCGCTTTCCCCCACGAGTTTAATGGCTTGC
TGAGATGCAGCAGGCTCAAATCCATACAGTGAGGTGCCCTCAATAGCTCG
GGCTTGTGCCAAGCAATTTCACCCGCACTGAAGCATGCACTCGCACAATG
TAGAATTCGGCGCGAATAATGCGGGTATCCGCACTATTCAGGGGATACTG
GCGATATGGGGTATGGTTTGCCTAACTGCACACCAATGCCATAGTACGGA
AAAGCGCTGCTCGCCCAGAAGCTTGTGTCCGTTCGTCAACGACTCGTGAA
GGTGCAGTGGTTTTGGTTCCGTTACGATACCTCAACAGTGACCTCAGAGA
GACTTGTAGCCTATCCCTTGATTCGATTCACTCGTTTTCTCGTTTTCAGC
CTCTCAACACTCATCATCATGTACCTGGTAGTCCACAAGCTTTCAACAGA
AGGAAACAGAAAGGCAATAAAGTGAATGGAGCAAGGCCAACAGACCGCCG
AGGACAATGGGTTTTCCATGGTGAACGCAAAGCAGGCCGTAAGACCTAAC
CGAATCAAAACGGGACACAAGAGCATAAAAAATACAATAACAACGGGGGC
GACAGAAATGTGCAGCCCAGTCTCTCCCGCCCTACCAACCACGGACACGT
TTGTATTCGACCTACTGTTCACCGATGCTCGCACAGAGCAGACGTCCTTG
CTCTCGGCACATGAGCTCAAAACGATACGGCGCCAATTTCTGCAAGAAAC
CCAGAAACCATGAGCTACTTTTTCCGCGTTTCCCAAAAAGCCCCTAACGT
CAGCCTGGCGCGGCGGCTTGGAGGAGTGAGCTTCGATCATCACTCTTTCT
AGCTTTCTCATCGAAGAAGCTGGCCTCTCTCGACTTGCTCCCTGATGCTT
ACTTTTCCAGGGCTGCGAAGTGCGGCGAAATGTCCTCGTAGGACGGTGGC
TCAGGGCCCCCGCCCGCCGGGCTCGCATCTCCCTGATGTCCTCCACCTCC
ACCTCCACCTCCACTACGAATGCCCACAAGGCCTTCGTCAAGCCTTCCGC
CTCATCCAACCGAATCGCCTCTTCCACGTCCTCGTGGTCCTCGATCGCCG
CCTCCTGCGTGGCAGACTCGTCGCTATCCTCGCCCGGGCTGACGTCTAGG
TTCGCCAGCAGGTCGGCGAAAGTCGGTATCCTAGGGGGATCCTTCCTCTT
GTGCTTGGCGATCACGCACGCTTAGACTCTTGGTGAGCCTATCCTTCGCC
GGATCCTTGCCACCGGCTTGAGAATTCCCACACGATGCCTAGAGCGCGGC
CTCCATCTCCGACGGAAGCGTCTTCGCTTTGACGAAGCACCTGCGTGATG
TGGAGCATTCATTGGAAAAATGCAGACGACGAAAGTAGCGGCAGCGAAAA
TGAATGCACTTGAAACGCGAAGAAACGGGGCAAACTTGGAAGTGCAGCAA
AAGAGTGCGGATATGGATGACAGAGGTCCACAGAGCATTATCCCCCGAGC
GCAATGCGGTGCTGTTTTGAGCACAGGAGTGTTGACCCGAAAAGATATTT
ATGTAACTAGCAATGGTCTGCAGGGTAATGCTGCGCGATGCACGTGCAAG
GAGATCCGCCGCATCCAGCATGTGGGGGTCGGGTCCCCTCGACCAACCCC
GAAACCCCGGCCACCATCCTGCGCCCTTGGCCTGGGCGCAAACTGGCTCT
TCCACGAGCATGGTGGAAAGCTTGACGTCGAGTATCTCGTTCCTCTAGTC
CACTTTGGTGCCCGCGACGATCCCCTGCTCCATAGGCTGATGTACGCTAG
TGTAGCCTGTCGGATATGTCATCACCGTCACCCGCCTACTGTCATCCACC
AAGTCACTGTGCCCCGACAGCCATCCATGAGCAGTAGCACCGGGAGATGA
GCCCAGCGCCGGATGAAACGACCTATTGCCAACGCTTCAGGAACATCGCC
GCGTCGGACCATGCATTGACTTCAGTGCTCCATGGGGCACTGTTTTCCCC
GACGCAGCGCGGGTTCTTCGCCTTGCCGATGATAACCAGGGCAACCTTGG
CAGAGCCATCGGCGTGGGCGAACATGAAGGCAGACACGCGATCTTCGAGC
GTACGCTCTCTTACCCCGGATCGTCCTCCGAACTCCCGATTTGGAGAGGT
GATTCGCCTGGGCATCAGCTTCCAGAAGGTACCGGTCTTGCCGACCTTGT
TGGAGATGCTGTCGGGCGAGTACTCCTTACAATATCCCCTGACTTCGCCG
ATGCCCTTTTAGACAGCTCCGGGGTCTACGCTTCCGGCCTCAACAAACTT
CGCGTATGAGATATGGCGCCTCGTGAAGTTTCTGGCCCACTTGCCACCCC
CCAAGGAGGTGTCGAGCTTCTCCTTCAGCGGTCCAAGAGTTGTTGGTGCG
TCCAACATGGATGCCTTGGCGTAGCGACCGAATGCTCGGATGACGGCCCG
CGTGATGGGGATACTTGGCCGCCCTCGCCTTCTCGAACAAATTCAAGACG
ATGGCATCCACCCGGTCTCATGTTTTCGGCAGCAAGGAACTTGCGAAACG
AAGGGGAGCAGGAAAATGTCGTCAGCACACGGCAACAACGATAATCGTGC
ATTCTCGCCTGGGACGCATCCGCGGAATAGCAGGGTGCAGTAGCAGGTCG
TGCTTTGCAGCAGAAACGCCAGGTTGAATATCCCAGCGAGACACACAGCA
ATCATCACCACTGCCAGTTAGGAGGAATGAGCAAGAAGCACTCCTGCTTC
GATCGTCCAGCAAAAATCACAACATACCAAAAAAGAAGTCCAGCGTAACT
TGAACTACAAAAGTACAAGCATATTTTTGTCTTGTAAAGAAAGAAGGAAA
GGAACTTCAAGTCTATCAGGGTGTAAGATTAGGTGGAGAGAGACAGAGCA
ACACACACAACGTACGAAGAAAACTTCTAACGAATTGTCCGCCGGTAATC
CAGCGAGCACGGCAGAAAGAAACTCCTACACACATTAGCACATTAGCAAG
AGAACACGCCCGCACCACAACACTTTCGGAATTTTTGAAAATATTGAAAC
TTCTCAAGAATAGGGATGAGAACAACAATGCAACATTTCTAGAGAATTTC
CACTGTACGCTTGTTTCTTTGCGGCTTTCCTTGGCCGTCTGGGCTTCGCG
TCTCGATCTCCTTCCTGCCGTTGATTCTTAGAATCGGGCGGACACCGCAC
TCTATCCGCTCTTGCACCGTTTCCTGCGAAACACCCTTGTCCAACTCTGC
GAGCACGCCCATCTTCTCGTCCGCGTCCAGCCGCCTGCGAGGTTTGCTTC
TATCCAGCTGCTTGCCCGGTCCGGATTTCCGACCTTGGGGATGCGGCCCA
TTTGTGGCGCCCTGCGCTTGCCCGCCGCAGCCTTCGAGGCCTTGGCAGGG
GGCTTCGCGCGCTCGGGGCAGATGCGTCGAGTTTTGGTGTCACTCCCCTG
CGCGACTTCACCAGCCGCGCCGGGGCATCGTGCTGTAGGGTTATGGCTGC
TGCGTGTGCGTGACATGACCCGCACTATGTAAGTCTCTGGGGGGGTGCCA
TGCTGCACGATTGAGTGCCGGTGCCCACTTAGTGCGGGGCCCGCGCTATC
GCGGGTCCTGTCTGTGCTACGCGATTTCACCCACACAATATCGGCAACCC
ACGCTATTTTTCAACCCGTACTCTGGAGGGCACCCCACTGTATTTGTATT
GAGTGCGCCCTGCCCACGCTCCCGCCCCCCATGTGCCCAATTCCGCACTG
GTTCTGAAGTCGCGTGCTCTGGGAGACTTCCAGTACAAGGACGACGAACT
GCCGGCGGAGGAGTGCAAGGTGTCACCCGCGCCCGAGACGCAGAGCATCC
CGAGGTCGCAGGAGGACGAGTTCCTGATCGTGGCGTGCGACGGAATTTGG
GACGTCATGTCCGATGAGGTCAGTCTCTCGTTCCGTGAGTCGTTCCGTGG
GTGATTCCGTCCCGTGGGTCGTTCCGTCCCGTGGGACGTTTTGTCCAGCC
GGTCGTGCCGGCAATCCATGGTTTCAGTGATGTCCGCGACTTTGGTGACC
CTTGTTGCATACGGGTACATCTGCTCTCTCCGGTGTCCCCTCTGCCCACC
TCAGTTTGCTATCTTCTGTCGATGTGCTTCATCATGTGTGTCACTCTCTG
TCTTGTGCATGCAGAGCCTTGTTGTCACCCTGCCTCGTCTTTGTTCTTTT
GGCTGTGGGGCACTATGGTGTCGTAAGCTCGCCGCAGAACATTGCATTTT
GGGTTGAAAGGCGAAGGACAACTTTAGATTCCTGCAGTTCCTGATACTGC
CAGGCGAAAAGTCGCTTGATTATTGTAGGTGTAGGAAGGCACGATGGGGG
GAGGGGGAGGGTGATCGTTAGCCTTGCTGTTGGACACGCGACGGGCGTTG
CTGTGTACGGTATTGACGCTTGAAGCTCTTGGCGCGTCCTCACTGCAAAC
GGACGAGAAGAGCCGGCCTCTCTTTCGCGCTCCAGACGCGGTAGATGAAC
GTTTGTTTGACATGTCGCGAACCGTAGTAGACTTGCCCCTCATTACCGTG
TAGTCGCCGGGACGGGCAAAACGCGGACGGCCCTGTGGCATGATGGGAGC
GACAAAACACGTACGAGTGGATGCGGATGGCATAGAGTGTTGCGCAGCTC
TGGTCATCCCTGGGACTTTCGCGAGCTATCAGCATGCGCTTATCGCCGTC
CGTTGGCATTGCGTTTTATTGTCGTCGTTCGCGTGCGCGCGCTGTCTTTC
CCTTCCTCCCTCCCTTCAGGACTGCACACAAGCGGTGCGAGATATTTTCC
AAGAGGGGGAGAGTAATGTTGGGCTGGCATGCGAGGAGATTCTTGATATG
GTGAGTGCGTCAACCTGACACCAAGGCGCTTTCTCAGCCAAGTCGCATGT
GTGGTGGCTGCTGGGCAGCAGTATCAGCAGCAGCAGTAGGTCGCCGCCAG
GCGTTCACCGGCCGATTGCGTCCTACAGGAGTAGACCTATTTTTGATCAG
CGAATGACGAAAGCAAATAAAATCAAATTTCAGGGCTTGCCATCGAGCAG
GTGGCTGGTCGGCTCCCGTTTGACAGCGATTGACAGTAGACAGCATTGTC
CCCGCACCTCACGACCGTGTGGACAAAAAGGCCGTTCTTTCGTTTTGTAC
ACGTGTTATGCGGTTTGTCCAAGAAGTGGCCGTCTCCTCTCTGCTAGTCT
CCACACAAGTTTAGAGTAAATCGTGTTAACATAACAGTCAGGCCAGGACA
TGACGAAGCCTTTGATGATGCTGGACATTCCACACTACACCCGCGTCCAT
CCCCTCGGAGGTACGATAAATCAAGCTAAACCGCAAACGCTTTTGCTTCA
ATCGCCTTAACTTTGCGGGGTGTGGGATTTCGCTCTTGGCGAGTGGAGTG
ATTCACCGCGCGGTCCGCCTGCCGTGGTTAGGGTGGACGTTCGACGGCCG
CCGACTCGCCGTGCCGTTTGCTTTCCGCTCGCAGTCGGTCAGTCAGACAG
ACAGGCGGACAGAAGGGTTTGCCCTATAACGCGAAAAGCTCAAGTTGTTT
TGTGTGTCCTTGTTTGTTCTCTCATCCTTTTTTTTGTCGGCGCCGGTGAA
AAAATTAACAGTGCCTGTTCGAGGGGAGCCGTGACAACATGTCTGCCGTA
ATTGTCGCCTTCCCGGGATTGAAGCGGAACCACACTGGCGAGGGCGTGAA
GGGACGGCGCTCTCAGCGGGCGGCCGAAGCCACCGAGGTGGGTGATGCAC
GGGGGACAAGGAAGGGGTGAAACGGCGTAACGATGTGCACGCCGGGAATA
TCGAATGGTCATAGAGGACACGGGCTGTCATTGTTTTTTGCTGCCGTACG
TGCGATGAAAGAGGATAGCAAAGCTGCAGTGTTTTCTTGTTTTTGTTTCT
TGTTTGCTTGTACGCGTCTTCGGGGAAGGGACAGCGGAAGAGTGGGGACA
CACACGTAGGTTGCATGTGTGAGGTTTTGACTTGTACGCCCCAGGCAGTT
GGGCACGGAAAGCACGTGGTGGCACACGCGTGATATCAAGGAACGGGCAA
AACAGCTCCCCTTGCATGGTTGCCGTGCGTTTTATGGCAGGGAATTTTGC
ACAAGGCGGTGAAGTGAATAAAAGAACAAAATTCGGTAATTGCATCACTT
GCAAAAGCGTCAAACCATTTCTGTTCATGTGCGGGAACAGCGACTGTTGG
GTTGACGAACAGCGGCGACGGTAGTGGGGCTGCCAAGAAGTGGCGGTGGA
GATCAGCGATCATGAATGTGCCTCACACTGCGAGCGGGCGAACCGCGAGG
GGACTCAGTTTTGGTTCTCCAGTTTGGCCTGCGCATGACACATATTAAGA
AAGTCAGACTTCCAGGTCTGCATGTTTCCAACCTCAGTGATTGAGCATCT
TATCTTCACGGGAGTATGCGAGGCATTCCGTTTCATTTTGTCGTTTCGTC
GGCCTAAGCACGCTTGCGGTTAGGACTTCCTCGAGAGGGCGTACGCGAGC
AAGAGATACAAGGTCTTCCGATCGAAGCCGTTCCAAACGGCATGGCTTTA
CCGGCGACCGCCCTCCGCTGCGAATCATTCGCTGCTGCCATCTGATCAGA
CACTGCTCCGCTGTCGCCTGGCGCCATTTTCTTCGCGCCATTTACTTCGA
CTCTTTTTTCTTTCGCTGCGATCGGATCCATTCCCCCCCAGAGCAACGCC
GATAGCCAGGACGAAGAATCGTCAGAGGGAGCGTCTCAAGGACACACCAC
GTCCGAGGTCACGCCGGAGTCCAAGGTAGCGTAAAGCACCGCTGGGTATG
TGCATGGTCAGCGTCACCCCCCTCGGCATAGAGGGATACGCAGAGAGGGG
TACAGAGGGCGAGGCCACTAGGGAGCAACAATGGTCCAGCTGCCGTTTGC
GGAGATCAGGGGCGAGGGTGCACGAACCATTTTTGCCGCTTTTGCTGGGC
TTGCTAATGCCAATGTCAGCGGGGGTTGTACGCCGGTGCAGGGTTGCTCG
CCCTCCGACCGCCGTTCCCTAATCGCTTGCTCGTTTGCTTTGAAGTGGAA
CAGATCATTTGTTCAAGGCGCGCGTTCGTCTATCCAGTGTAAAGCGATTC
GTTTTCAACGCCATTGTTGTCTCCACCAGGCAACGCTTTGTATGCTTAAT
TAAAACAAGATCGGTTGGCGATGGTGGTGGTGCTAGTGCATGCAGGTTTT
GCTTGCCCATGTAGCGGATCAAATTTCGACGACACAGCGTTTCCCCGAAC
TCTGTATGTCGTGCTCTATGCATGGTTTTGATTACTCCTTCTTTACCAGC
TTCCCCCCTCCTACCTCCTACGTAGCGTGTGTTGGAAGGAGGGGGGGGAG
GGTGCGGTCGTCGGCGAAAACAAGCCGGAAGAAAGTCCAGACCAGATTTC
GTCACAAATGTTTCGGTGAACATCGGCTTCGGCGCGATTGTATATGCAGA
GGTGTTGGCTTTTTTTTAAGTTAGAACAAGGCGAGGGTCGGTGCGTGCGT
GCGTGTAAAAGGGCGCCCGCACGAGCAACCCCGTGGGTCCGCTATACGGG
GTGCGACGGGGCGCGGGGTCTTGATTTTCATGCTGGCACGAAGCACGGAA
CGCAGGACCTGGCTTTGCATCCGGGGTGGCGGCGGCACGACGCCGCTTTT
ATTTCTCCCCATGTGCGATGGAGGCCGCGGAGGTGAGGCGCCGCAGTGCC
GTTACGTTGACGTGCTTGAGATCGTCAGCGCGACGGGCTGTTTTGAAGTT
CGGCCACGAATCACCTGTTTTGCTGTCGTGTGCCGGTGTGCCCGCGGCTT
TTCTCCGGATCTTTGAAGGACGGGCGCGCGGCCGCCGCCGAGCCGAAGAG
GAATTGGGATTTCAGATATGGGGCGAGGCAATGTTTTCGGCGCCTCTTGT
GCACAAAAAAGAATAAGCGCGAGACCCTCGTGGGAAATAGGAAATTTGCC
GCGTTGTTGCCATCGCAATTTTGCGACCCTCTGGTGCTTTTTCGAAGAAA
GCCACGGGGGCAGGCGAAGAATGAAAGGCAGGAAATCACGGGCTTGATGA
GTTCCCATCCGGGCCGACTCGAAGGAAGCTTTGTCTTGCGAGCGAAGGAT
GGGGGTTGCGACCGTTTGCATTAATGCAGCCGTTATCCTCGTGAGCGCCG
TCCTGAACATGCGATTGATTGGATGGAAGTGCGAAACGGTCACGTATAGC
CCACGTCTGGAGCGATTTTGCGTGGCATCCTTGAAAATGAACTACCTGAT
GACCCCCGGCGACTCTTGCCTTGGAAACGACGCAGGTACTTTGCTGCGTT
TTCGACCTTCGGCGGACACTCGCACCGGGTCTTTTTCCGGACGATTGAAT
GTTGGATATTTTGTCGTCGCCCTGGATAGAAATCGCGTCATTTAGAAATC
CACAGCCTTCGCTTTACTCCGCCCCTGTTCCCATCGTTGGGTGATCGGGG
CTAAACTCGTGTGGAGTGGAGTGCGGCATTTGTTGTGCTCTTCCAGTCTC
ATGGGCGGGCGCTCTTGCATTTCGGTTCGTGTTCAAAAACAAGGCGAATT
TTGCAGGATGCAAAGCCTCACGTATTCGGTACACGCCGTCATGGTTAAAA
CGAAAGAGAAGGCTTGTTCGCGGCACCCAGATAGCTAGGCTCAAGTCACA
CAGCAAAGGGCAAAGGGG
back to topCoding sequence (CDS) from alignment at P-fluviatile_contig20:499982..516949+
>mRNA_P-fluviatile_contig20.4262.1 ID=mRNA_P-fluviatile_contig20.4262.1|Name=mRNA_P-fluviatile_contig20.4262.1|organism=Porterinema fluviatile SAG_2381|type=CDS|length=2088bp|location=Sequence derived from alignment at P-fluviatile_contig20:499982..516949+ (Porterinema fluviatile SAG_2381)
ATGATGGGGACGCTGTTGGACAAGCCCATCACTGAAAAGCAGACGGAGAC
AGAAAGGGGGGAAAATGGGCTTGAGTTCGGAGTTTCGGCGATGCAGGGGA
CGCTGTTGGACAAGCCCATCACTGAAAAGCAGACGGAGACAGAAAGGGGG
GAAAATGGGCTTGAGTTCGGAGTTTCGGCGATGCAGGGCTGGCGGGTAGA
CATGGAGGACTCCCATACCATCATATCTAACGTGGCGGGATTGGAAGGGC
ATTCCTTCGTGGCCGTTTATGACGGCCACGGGGGAGCGGCGTGCGCGGCT
TACGCGGGCGAGAACATGATGCGGCACATCGCGGAGACGGAGGAGTTTAA
GGAGTACGCCGGGTTAGCAGAGAAAGACGCGAAGGGCTGGCGGGTAGACA
TGGAGGACTCCCATACCATCATATCTAACGTGGCGGGATTGGAAGGGCAT
TCCTTCGTGGCCGTTTATGACGGCCACGGGGGAGCGGCGTGCGCGGCTTA
CGCGGGCGAGAACATGATGCGGCACATCGCGGAGACGGAGGAGTTTAAGG
AGTACGCCGGGTTAGCAGAGAAAGACGCGAAGCTCCTTGAAAAGGCGTTG
TACGCTGCTTTCTTGGCCTGTGACCGGGGGGTGAAGGTCTCACAGGAGTC
CAGCACGGACGGCGACCGCAGCGGCAGCACCGCGGTGGCGGCGTTCTTGA
CGCCGACGCATGTTGTGCTGGCGCACGCGGGGGACTCGAGGGCGGTGCTG
GCCAGCGGACGAAAGCTCCTTGAAAAGGCGTTGTACGCTGCTTTCTTGGC
CTGTGACCGGGGGGTGAAGGTCTCACAGGAGTCCAGCACGGACGGCGACC
GCAGCGGCAGCACCGCGGTGGCGGCGTTCTTGACGCCGACGCATGTTGTG
CTGGCGCACGCGGGGGACTCGAGGGCGGTGCTGGCCAGCGGACGAAAGGT
GGCCGTGGCGACGGCGGATCACAAGCCCTACAACGACGGGGAGCGGGCTC
GGATAGAAAAAGCGGGGGGTGTCGTGAGCATGAAGCGAGTGGACGGCGAT
CTGGCTGTGGTGGCCGTGGCGACGGCGGATCACAAGCCCTACAACGACGG
GGAGCGGGCTCGGATAGAAAAAGCGGGGGGTGTCGTGAGCATGAAGCGAG
TGGACGGCGATCTGGCTGTGTCGCGTGCTCTGGGAGACTTCCAGTACAAG
GACGACGAACTGCCGGCGGAGGAGTGCAAGGTGTCACCCGCGCCCGAGAC
GCAGAGCATCCCGAGGTCGCAGGAGGACGAGTTCCTGATCGTGGCGTGCG
ACGGAATTTGGGACGTCATGTCCGATGAGTCGCGTGCTCTGGGAGACTTC
CAGTACAAGGACGACGAACTGCCGGCGGAGGAGTGCAAGGTGTCACCCGC
GCCCGAGACGCAGAGCATCCCGAGGTCGCAGGAGGACGAGTTCCTGATCG
TGGCGTGCGACGGAATTTGGGACGTCATGTCCGATGAGGACTGCACACAA
GCGGTGCGAGATATTTTCCAAGAGGGGGAGAGTAATGTTGGGCTGGCATG
CGAGGAGATTCTTGATATGGACTGCACACAAGCGGTGCGAGATATTTTCC
AAGAGGGGGAGAGTAATGTTGGGCTGGCATGCGAGGAGATTCTTGATATG
TGCCTGTTCGAGGGGAGCCGTGACAACATGTCTGCCGTAATTGTCGCCTT
CCCGGGATTGAAGCGGAACCACACTGGCGAGGGCGTGAAGGGACGGCGCT
CTCAGCGGGCGGCCGAAGCCACCGAGTGCCTGTTCGAGGGGAGCCGTGAC
AACATGTCTGCCGTAATTGTCGCCTTCCCGGGATTGAAGCGGAACCACAC
TGGCGAGGGCGTGAAGGGACGGCGCTCTCAGCGGGCGGCCGAAGCCACCG
AGAGCAACGCCGATAGCCAGGACGAAGAATCGTCAGAGGGAGCGTCTCAA
GGACACACCACGTCCGAGGTCACGCCGGAGTCCAAGGTAGCGTAAAGCAA
CGCCGATAGCCAGGACGAAGAATCGTCAGAGGGAGCGTCTCAAGGACACA
CCACGTCCGAGGTCACGCCGGAGTCCAAGGTAGCGTAA
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