Homology
BLAST of mRNA_P-littoralis_Contig162.2.1 vs. uniprot
Match:
A0A6H5L1T7_9PHAE (Uncharacterized protein n=1 Tax=Ectocarpus sp. CCAP 1310/34 TaxID=867726 RepID=A0A6H5L1T7_9PHAE)
HSP 1 Score: 260 bits (665), Expect = 5.010e-67
Identity = 301/567 (53.09%), Postives = 327/567 (57.67%), Query Frame = 1
Query: 1 NAMSRKGKWTSEEETFTARIIHYFSLGVLQLPDGTTLRAYLAQKLDCDPMRITKKFTGTNCLGKRVYHSCERTTTTYEVAKQAVEELAELENKFKLRLERNKEKRAGILGIEARLLGSRHPDLDPRVGGGAGGTGAATGTPPGVAKAILHAFGQGG-VGEGAPAVPPQNQQLQNQAAAAAN------WNIPLSQGYAXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXQHHLTRAVLQTHQLQQAAAYSRPQXXXXXXXXXXXXXXXXXXXXX-----------------------SQGQFPPFGAPPLPAPLPPGAATSPNNKAATPAL------AXXXXXXXXXXXXXAHPPALLLPAGKVRAGERGPLET-EVSSASPAESSVCVDQXXXXXXXXXXXXXXGFEAXXXXXXXXXXXXXXXXXXXSLGVKGDGYFSAAAV-----PLPAGGEGIAAGGAGV-RTHATYLCTPSGRTHNPYWSYHSHHAXXXXX--------------------AMKQRPGLGGYMDFGAAAAA---PEVPGGVAGLSYMGMSPAMQQHWLRQRYA 1503
NA+SRKGKWTSEEE TARIIHYFSLGVLQLPDGTTLRAYLAQKLDCDPMRITKKFTGTNCLGKRVYHSCERTT TYEVAKQAVEELAELE +F+ RLERNKEKR GILGIEARLLG+RHP +D GG G GA++G V + +HAFGQG V +GA WNIPLS GYA XXXXXXXXXXXXXXXXXXXXXXXXXXX XXXXXXXXXXXXXXXXXXXXX +Q +F F + A+T+PNN A+ PA XXXXXXXXXXXXX + GE G + E++ XXXXXXXXXXXXXX +A XXXXXX G G AA+V P P G G AG R A+YLCTPSGRTHNPYWSYH HHAXXXXX A + G GGYMDFGAAAA P GVAG ++GMS MQQ WL Q YA
Sbjct: 5 NAISRKGKWTSEEEALTARIIHYFSLGVLQLPDGTTLRAYLAQKLDCDPMRITKKFTGTNCLGKRVYHSCERTTATYEVAKQAVEELAELEARFQARLERNKEKRTGILGIEARLLGNRHPSIDAAAIGGDGAGGASSG----VGGSAMHAFGQGEMVAQGAAGXXXXXXXXXXXXXXXXXXXXXXAWNIPLSPGYATAAMXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXAQARFSQFASANTAQAGKTLASTNPNNSASLPAADAXXXXXXXXXXXXXXXXXXXXXXXXXXXXSPIEGGEGGSKRSPEMNGXXXXXXXXXXXXXXXXXXXXXXXXXXXXDASERSLGSDKNSSAXXXXXXXXXXXGLGIARAASVSAGLRPGPGAGPEGGIGSAGAARAQASYLCTPSGRTHNPYWSYHPHHAXXXXXXXXXXXXXXXXXXXXXGPTGAGTRGAGAGGYMDFGAAAAHGYHPSHAQGVAGFPHLGMSHPMQQQWLHQHYA 567
BLAST of mRNA_P-littoralis_Contig162.2.1 vs. uniprot
Match:
D7FME2_ECTSI (Uncharacterized protein n=1 Tax=Ectocarpus siliculosus TaxID=2880 RepID=D7FME2_ECTSI)
HSP 1 Score: 209 bits (531), Expect = 3.580e-59
Identity = 104/112 (92.86%), Postives = 106/112 (94.64%), Query Frame = 1
Query: 1 NAMSRKGKWTSEEETFTARIIHYFSLGVLQLPDGTTLRAYLAQKLDCDPMRITKKFTGTNCLGKRVYHSCERTTTTYEVAKQAVEELAELENKFKLRLERNKEKRAGILGIE 336
NAMSRKGKWTSEEE TARIIHYFSLGVLQLPDGTTLRAYLAQKLDCDPMRITKKFTGTNCLGKRVYHSCERTT TYEVAKQAVEELAELE +F+ RLERNKEKR GILGIE
Sbjct: 5 NAMSRKGKWTSEEEALTARIIHYFSLGVLQLPDGTTLRAYLAQKLDCDPMRITKKFTGTNCLGKRVYHSCERTTATYEVAKQAVEELAELEARFQARLERNKEKRTGILGIE 116
BLAST of mRNA_P-littoralis_Contig162.2.1 vs. uniprot
Match:
A0A836CQN8_9STRA (Uncharacterized protein (Fragment) n=1 Tax=Tribonema minus TaxID=303371 RepID=A0A836CQN8_9STRA)
HSP 1 Score: 142 bits (359), Expect = 5.360e-36
Identity = 67/104 (64.42%), Postives = 85/104 (81.73%), Query Frame = 1
Query: 13 RKGKWTSEEETFTARIIHYFSLGVLQLPDGTTLRAYLAQKLDCDPMRITKKFTGTNCLGKRVYHSCERTTTTYEVAKQAVEELAELENKFKLRLERNKEKRAGI 324
R+GKW+ EEE +TARIIHYF+ GVLQLP+GTTLR +LA+KL CDPMRITKKFTG+ CLGKRVYHSCERT T +++ E+LA LE +F +LER +++RA +
Sbjct: 18 RRGKWSPEEEAYTARIIHYFNTGVLQLPEGTTLRVFLAEKLRCDPMRITKKFTGSACLGKRVYHSCERTPATKAEIQESKEDLANLEQRFLSQLERRRDRRASL 121
BLAST of mRNA_P-littoralis_Contig162.2.1 vs. uniprot
Match:
A0A6V1Q146_HETAK (Hypothetical protein (Fragment) n=1 Tax=Heterosigma akashiwo TaxID=2829 RepID=A0A6V1Q146_HETAK)
HSP 1 Score: 145 bits (366), Expect = 2.120e-34
Identity = 70/112 (62.50%), Postives = 87/112 (77.68%), Query Frame = 1
Query: 13 RKGKWTSEEETFTARIIHYFSLGVLQLPDGTTLRAYLAQKLDCDPMRITKKFTGTNCLGKRVYHSCERTTTTYEVAKQAVEELAELENKFKLRLERNKEKRAGILGIEARLL 348
RKGKWT EEE FT++IIHYF+ G+LQLP+GTTLR+YLA+KL+CDPMRITKKFTG+ CLGKRVYH + T+ QA++EL+ LE +FKLRLER K+K L E +L
Sbjct: 98 RKGKWTVEEEEFTSKIIHYFNTGILQLPEGTTLRSYLAEKLNCDPMRITKKFTGSQCLGKRVYHQGDVVQATHAQVVQALDELSHLERRFKLRLEREKQKTRSDLDAETTVL 209
BLAST of mRNA_P-littoralis_Contig162.2.1 vs. uniprot
Match:
A0A835Z4F5_9STRA (Uncharacterized protein (Fragment) n=1 Tax=Tribonema minus TaxID=303371 RepID=A0A835Z4F5_9STRA)
HSP 1 Score: 135 bits (340), Expect = 8.440e-34
Identity = 62/90 (68.89%), Postives = 77/90 (85.56%), Query Frame = 1
Query: 13 RKGKWTSEEETFTARIIHYFSLGVLQLPDGTTLRAYLAQKLDCDPMRITKKFTGTNCLGKRVYHSCERTTTTYEVAKQAVEELAELENKF 282
R+GKW+SEEE +T RIIHYF+ GVLQLP+GTTLRAYLA+KL CDPMRITKKFTG++CLGKRVYHSCERT + + + E+L++LE +F
Sbjct: 2 RRGKWSSEEEAYTERIIHYFNTGVLQLPEGTTLRAYLAKKLQCDPMRITKKFTGSSCLGKRVYHSCERTPASPDEITASKEDLSQLEARF 91
BLAST of mRNA_P-littoralis_Contig162.2.1 vs. uniprot
Match:
A0A7S1UUW2_9STRA (Hypothetical protein (Fragment) n=1 Tax=Grammatophora oceanica TaxID=210454 RepID=A0A7S1UUW2_9STRA)
HSP 1 Score: 132 bits (333), Expect = 1.420e-28
Identity = 63/95 (66.32%), Postives = 77/95 (81.05%), Query Frame = 1
Query: 13 RKGKWTSEEETFTARIIHYFSLGVLQLPDGTTLRAYLAQKLDCDPMRITKKFTGTNCLGKRVYHSCERTTTTYEVAKQAVEELAELENKFKLRLE 297
RKGKWT EEE +T+RIIH+FS GVL LP+GTTLR+YLA+KL+CDPMRITKKF G +CLGKRVYH C+R+ T + A ELA LE +F+LR+E
Sbjct: 200 RKGKWTVEEEEYTSRIIHHFSTGVLTLPEGTTLRSYLAEKLNCDPMRITKKFAGASCLGKRVYHLCDRSPGTAADIEMAKAELARLEQRFRLRVE 294
BLAST of mRNA_P-littoralis_Contig162.2.1 vs. uniprot
Match:
A0A7S1XJQ1_9STRA (Hypothetical protein (Fragment) n=1 Tax=Phaeomonas parva TaxID=124430 RepID=A0A7S1XJQ1_9STRA)
HSP 1 Score: 125 bits (315), Expect = 1.810e-27
Identity = 62/129 (48.06%), Postives = 88/129 (68.22%), Query Frame = 1
Query: 13 RKGKWTSEEETFTARIIHYFSLGVLQLPDGTTLRAYLAQKLDCDPMRITKKFTGTNCLGKRVYHSCERTTTTYEVAKQAVEELAELENKFKLRLERNKEKRA----------GILGIEARLLGSRHPDL 369
RKGKWT+EEE +T R+IH F+ G+LQ+ GTTLR+YL++KL+CDPMRITKK+ G++C+GKR++ CERT E +Q+ +ELA+LE F+ +LE ++ R G GI A +G+ P L
Sbjct: 27 RKGKWTAEEEAYTERVIHDFNEGLLQVAAGTTLRSYLSEKLNCDPMRITKKYAGSSCIGKRIFAPCERTPENIERGRQSAKELADLEAAFRAKLESSRSSRVPNGVGPRFNPGAKGIAAFAMGASFPSL 155
BLAST of mRNA_P-littoralis_Contig162.2.1 vs. uniprot
Match:
A0A7S1ZRG3_9STRA (Hypothetical protein (Fragment) n=1 Tax=Ditylum brightwellii TaxID=49249 RepID=A0A7S1ZRG3_9STRA)
HSP 1 Score: 125 bits (313), Expect = 3.300e-26
Identity = 63/116 (54.31%), Postives = 80/116 (68.97%), Query Frame = 1
Query: 13 RKGKWTSEEETFTARIIHYFSLGVLQLPDGTTLRAYLAQKLDCDPMRITKKFTGTNCLGKRVYHSCERTTTTYEVAKQAVEELAELENKFKLRLERNKEKRAGILGIEARLLGSRH 360
RKGKWT EEE +T++IIHYFS G+L LP+GTTLR++LA KL+CDPMRITKK+ G CLGKR YH CER T ++A EL +LE++F+LR++ G I L S H
Sbjct: 366 RKGKWTLEEEEYTSKIIHYFSRGLLTLPEGTTLRSFLADKLNCDPMRITKKYAGAACLGKRAYHLCERPQVTIADIERANAELRQLEHRFQLRVKH------GTSSIMGPLTASSH 475
BLAST of mRNA_P-littoralis_Contig162.2.1 vs. uniprot
Match:
A0A7S1BZD1_9STRA (Hypothetical protein n=1 Tax=Corethron hystrix TaxID=216773 RepID=A0A7S1BZD1_9STRA)
HSP 1 Score: 126 bits (316), Expect = 9.120e-26
Identity = 58/95 (61.05%), Postives = 75/95 (78.95%), Query Frame = 1
Query: 13 RKGKWTSEEETFTARIIHYFSLGVLQLPDGTTLRAYLAQKLDCDPMRITKKFTGTNCLGKRVYHSCERTTTTYEVAKQAVEELAELENKFKLRLE 297
RKGKWT+EEE FT+RIIHYFS G+L LP+GTTLR+YL++ L CDPMRITKKF G +CLGKRVY C+R+ T + A +ELA LE +F+ +++
Sbjct: 216 RKGKWTAEEEEFTSRIIHYFSTGLLTLPEGTTLRSYLSETLSCDPMRITKKFAGASCLGKRVYRLCDRSKATANDNEMAKKELAHLEQRFRAKVQ 310
BLAST of mRNA_P-littoralis_Contig162.2.1 vs. uniprot
Match:
A0A7S2WH73_9STRA (Hypothetical protein n=1 Tax=Rhizochromulina marina TaxID=1034831 RepID=A0A7S2WH73_9STRA)
HSP 1 Score: 122 bits (307), Expect = 2.220e-25
Identity = 61/112 (54.46%), Postives = 81/112 (72.32%), Query Frame = 1
Query: 13 RKGKWTSEEETFTARIIHYFSLGVLQLPDGTTLRAYLAQKLDCDPMRITKKFTGTNCLGKRVYHSCERTTTTYEVAKQAVEELAELENKFKLRLERNKEKRAGILGIEARLL 348
RKGKWT EEE F +R+I +F++G+L LP+GTTLRAYLA KL+CDPMRITKKFTG++CLGKRVY + T + A ++L LE +F LRL+R + A +L +AR +
Sbjct: 78 RKGKWTPEEEDFVSRLIEHFNMGLLMLPEGTTLRAYLADKLNCDPMRITKKFTGSDCLGKRVYQPRKVTNMAAQEMDVARQDLEHLERRFLLRLQRANDADACMLDFDARFV 189
The following BLAST results are available for this feature:
Sequences
The following sequences are available for this feature:
protein sequence of mRNA_P-littoralis_Contig162.2.1
>prot_P-littoralis_Contig162.2.1 ID=prot_P-littoralis_Contig162.2.1|Name=mRNA_P-littoralis_Contig162.2.1|organism=Pylaiella littoralis U1_48|type=polypeptide|length=1325bp
MSRKGKWTSEEETFTARIIHYFSLGVLQLPDGTTLRAYLAQKLDCDPMRI
TKKFTGTNCLGKRVYHSCERTTTTYEVAKQAVEELAELENKFKLRLERNK
EKRAGILGIEARLLGSRHPDLDPRVGGGAGGTGAATGTPPGVAKAILHAF
GQGGVGEGAPAVPPQNQQLQNQAAAAANWNIPLSQGYAAAAMQQHQNQAA
AAAAAVAAAAAYHLPHPHHQHHLTRAVLQTHQLQQAAAYSRPQQQQRQHH
QQQLHHAAMAAAAASQGQFPPFGAPPLPAPLPPGAATSPNNKAATPALAP
APAAAAAATSGGAHPPALLLPAGKVRAGERGPLETEVSSASPAESSVCVD
QQQQQQQSSADPSEQGFEARGGQKSSAPPPTPPPLPPPSLGVKGDGYFSA
AAVPLPAGGEGIAAGGAGVRTHATYLCTPSGRTHNPYWSYHSHHAAAAAA
AMKQRPGLGGYMDFGAAAAAPEVPGGVAGLSYMGMSPAMQQHWLRQRYAA
SAGGVITAKAAASGLAPWQQLHQQQMQMQLTPYAGGGVGGASPPQLLPTS
SGNASSSSQATATAAGLSSSSSSTTAGRKSKSHEQLQQKLLQHMARPSSS
SPPWCPATPFPQTLGGGGGGGKISFSRVVAPPPPPPPSSVRVPTRPGSGS
GSINAEDHGNGDAADAGGDSSSSTLSSVQQPLSPSSQQGLLLDARNNNGN
LQFNVSGNARINGGGASSADAAAVVSAERDTVSSTMASPRELQQMYKKTA
GVNHRGRNGRRIHSSSHHHRRGGGGGQDGQDGSTSPTPSFTRSFTSSRRT
SISSTGHTTGDGGGGGSLASSLAFLSGASSVGGSSRGAGSSVTGSGGSGS
DDRVSLTSSVSTGVDESKNGRRGDAGGGGSGSGSGGTGSMGSTSGSESGS
EEIEKTTSLQSSEDAHSGATTSSASPKLVDIDGAGGLLMGFVQSLNRQYR
LNQQQQQEANKALQEDRTSSPSSPLPTLGKQQEVDCTADKKQSSAASSER
EQQRPDQQRPQPQLQKARSASSITHPRHRHKHAARANDEARLAATARVVA
WALPATTTAATPDSSGRSEATVAVSDISGKGSPNPPPAAASADVGAAVVS
KKERVAGDVSSLKRPRKADSCAASSTGGDGGRRRRKRSGNDVGYGSSSRV
REAVYPPPRPRPTSLVSTVGGGTQDSHLSSSRSSREGGGVGLKRRIAQIA
GSSTDDTMDADDDEDESSTESGVNSEGGGYEEDDGGSWGSSGKSTTTTGS
GSNGSGSGSAEESNEASASEGGYGACDERSSSFEERYTSGVNDGYGDVPP
ILESGVSGNARIAQPQPLQQERGAA
back to topmRNA from alignment at P-littoralis_Contig162:4836..13893+
Legend: UTRpolypeptideCDS
Hold the cursor over a type above to highlight its positions in the sequence below.
>mRNA_P-littoralis_Contig162.2.1 ID=mRNA_P-littoralis_Contig162.2.1|Name=mRNA_P-littoralis_Contig162.2.1|organism=Pylaiella littoralis U1_48|type=mRNA|length=9058bp|location=Sequence derived from alignment at P-littoralis_Contig162:4836..13893+ (Pylaiella littoralis U1_48)
AATGCCATGTCGCGGAAGGGGAAGTGGACGGTGCGTATGCGTGTGCATGT
GTGTGTCTGTGTACCTGTGCCTGTGTTCACGCGTGTGGGTGTGTCGTGCT
AAAAGAAGGAAGGGAGAGGAAAAAGAGATTCCGGCAGCAATCAATGACTC
TGACTAATCCCACGTATTTGTGTGGGCTGAGCGTTGGTTGAAGCAAGGTC
ACTTTTCGAGTAGTGCTGGTTTGGGCGAGAGAGCGGCAGGACACAGCCTT
CACATATACCGGTCGCCCCGGTGGACTAGTGGTCCCCTCGTTAACCACTA
GATGCAGAGGAACGGGGGTTCGATTCCCGGTGAATGTGTTCCTTTGTTAC
TTTGAAAGCGGCTATGCTGTTAGTAAAAAGCAGATTCGGCTTCGCCAACG
AGGGTAGGGACCGCGGATCCCTGCTCGCGAGAAAAAATCTCACTCATGTA
CCGCAGAAGGAAGGTGGGGGTAACTCCTCCTGTGTTGACCTTCCTCCTGT
GTGACCCCGTCGATGGGCCTAGCCTGTAGTTTGAACCGCAGAGTGCAGAG
TAGTGTGCCAGAGAATATGGGATGACAACACATGTGTGGAGGAGCCTAGT
CAGATGCCACCTGTGCTTGATTTTATTCTGCATGGGGGTGGGGGGCAGAC
AATCTTGCTGTTGTGTTGCCAGTATGGAAGAAAGTGGCGTCCAAAGAACA
GAGAGGTCGGGTGCCGCGTGTTGAACCTTCACCTTTAGTTGATCCAATCT
TGGTTTCGTCCTTTCGCCTTTGCCCTTTGGTGCTGCTGCTACTCTTGTGC
CGCCGGAAATCGTCTATAATTAAACGAAAACAGAGCGAAGAGGAAACTTT
CACGGCGAGAATAATCCATTACTTTAGCCTGGGAGTGCTGCAGCTGCCGG
ACGGAACGACCCTGCGCGCCTACTTGGCGCAAAAGCTAGACTGCGATCCC
ATGAGGATAACGAAAAAATTTACCGGAACCAACTGCTTGGGAAAGCGCGT
ATACCACTCCTGCGAACGGACAACAACCACCTACGAGGTAGCAAAGCAGG
CGGTGGAGGAGCTAGCGGAGCTGGAGAATAAGTTTAAACTCAGGCTGGAG
CGTAACAAGGAGAAACGTGCGGGCATTTTGGGGATAGAGGTGAGCGTTCT
TGTGTCCTTTCCAAAGGACACGTCGGTGTGACGCACAAGTCCGTACTTTC
CGAGTTTTTGAGTTTGAACTTGTTCTTTAAAAGAAAAAAAAACATAGTCT
TGTTCAGCCTGATAACCTCCGGGGAGCTGCAACGGTGCACTATCCGATGA
CTTTAGAAACACAACAGGTAATGAATATTATTCTCTGTGTTCACTGCAAT
ATCTACCCCGAATCCTCGTCTGGGGAGAGGCGAACACATCGACGTGTGTC
TATTAAAAACTTACAAAAACATCAATGTGTTCGCCTCTCTCCAGACAAGG
ATCTGGAGCAGATGTTGCAAGGAACATGAGTGAAATACGTCTACCAGTGT
TTCTACACTCAGCAAACGAGTAGTTTGTAAGAAAAATAAAAATAAAACAT
CAATGTGTTCGCCACCTCCAGACAAGGATCTGGAGCAGATATTGCAACAA
ACACAAATGAGTGAAATACGTCTATCAGGAGTGTTTCTTACTCATCAGAT
AATATACCGTTACAGCTCCCCTGAGGCTATCAGGCTCAACAAGACAATTT
GGTGGTTTTCTGAAAGTCAAAGTTCCTTAATCCATCATTTTTTGGGCCTC
ATTTTTTGTCGAGTCGAGGTATTTTTTTTTCATCAGCAGGAAAGCAATGG
AGAGCAGAGCACGCAGGTAGGAGAAGCGAAACATACCAGCACCAGCGCCA
CGCATGACACAGCAGTGGGTCTCGCGGTGTGGTTCCTTTTCTTTCTCTGT
TTGCATTTGAATAAGCCCTCAAGTCAAATGTTGATGTTTCCTTTTACCTT
GTTTGCATTTGAAGAAGCCCTCGCCGCGAGCAATTACAACTTAGTCGGGC
AGCAACCATGCTACAGAAGTAGGTAAATTGACAGCACTGTTTGATTGGGT
GTTTTCATTTCGCCGCTTTACCCTGGTGTGAACAGAACTCTGTGGAGCAG
TCGATTTTTCTTTTCTCTGATCGATATACCTGGTATTGAACTTTCTCCGT
TTTCCATCTAGATTCGTCTGTCGTGTACTATGATACAAGACTCCTAGACC
AACAGCCCCCCCCCCCCGCTCCTATCATGTCGCGGCCATCCTCTATGTTC
AGGCTGGTGCTATCCCTCAGCATTCCCCGACCTCAGTTCCACAAGGTTCG
AGCCCTAAGATAAAAAAAACAGAAAGAAACTACTGGAATAGACCACAGGC
GAATACCAAGACCGAAGAAGATACACCTTCCTACGCGGTGTGCATCACTG
AACTACAGCAGTCACAGCAGTACCAACATCCAACGTACTTCCAGCGTCTT
TCATTTGACTACAGCATCGTATTGAGTCTCCTCCCGCCCCACTTAAAACT
AATAACCTGCTGCTACAAGCAGTCAGTAGGTAGCTGCAGATTACAGCAGT
TAGTTGCTGTCTGGAGTGCTGCCTGCAACGTACAAGTAGCCCCGGCAGTC
GGAGAAGACAGAAAAAGAAAAAACACAAAAACACACACGTATCATCAGAT
GTTGTCGAGGATGGTATCTCCATCCCGTCCTTGCGACGCTGGTGATGATG
TCGCCCTGAACATGTCCTCCTTGTCTGGATCCACGTTGCTGTTGGCGTTG
CCCAAGGTACTTCGACTCGACTACTCGAAGTATCGTATGTTCTTCGTATC
ATACAACAAAATGAGTCAAAATCCGTTTATTTCACGTGCGTACGTGCGAA
CACACGCACACGTACAACAGCAGTAAATGCAAGTACAGCAAATGATGTAA
CTCTAGAACTCTACATGAAACAGTTCCGCGCTGTGTCTGTCGACGCGCCT
TTTTCGCGTCGTACAGCAGGATACACGTGTTTTTCATGTACGAGAGTATG
TTTTCAGCTTTTCCGTGCTGCTCTCACGTTCGGTTATTCCGGACCTGTTG
TGTGTTGGTGCTTCCTTCTACTCTTGACGGGAAAAGTACTCGATAGTACT
CCGACTTCGTCGTTTCGTGGACAAACATATCCGTCGACGAAAAGACTGCT
GTAGAGTACATCCACGCAGCATGACTCTCTGAACTCTGCTGCAACAGCTT
TGTTTTGTGTTCCACAACTATTATATGATAGACTATATTATACGGAGTAC
GTATCATATCGTACCAATGATACTTCGTGTCGTATGAATGAAACCTCCAG
AGTTATGTGTCCGAGGCTGATGACTACTCCTGCGGTGCGTTTTGCCCTCT
CTTTACGCGTATCTTCCCAGCAGTACGAATTATACAACTTGTCTTGTGTC
TGGTCAAGTTCAACCCCGATCTTGGTGCAGTTTTAGATGAAGTCAGAAAA
AGTACTGGTATCATATGATATGGTACGATATCCCCTCTCTCACACCAAAA
ATTCCTCTTCCCATCACCAAAGGAACGATTTATACGACAAGTACTGCTGC
AAGGACAGTTAAATTTTGTCCTCCCCCGTGCCAAAAACTATTTATCCATT
TATTAGTCTATCCAAACAATTTCATCATCAATCTAAAAACCAACCAAACA
TCTAAATTTATTCAGTAAAATGAAGGAGCAGCAAAGAATCAACAGCACAT
GCGTGTCACTATCAACACCTCGAGCGCCGCCTCTCGTGCATCCATTTACC
GGTAGATAAATGACGGCCGGCTCCAAACCTTCTGTGCTTGCTGTACACTA
CAAGTATTGCGTGGTGTTGGAGTGTTTTATTCGGTTGAGGTGCCAACTTC
AAAAAATGAAAAATGGCGTTTCTCGCATTCTGTACCCGGTATATTTTTTT
TTATTTTCAAAATATCTTCTGGACCGGACCCTCTTAACCCTTGCGGGTGC
GCAGGGTGCAGGGACAGCAACAGATTGTTGAGAGGCGCAGGTAAGGGTCC
AGAGACATGTTGTTGAGAGGCACGGATTTTGAAAATTAGCGAAGGGGCCC
TGACAATTAAACTGGGTATCATATACTTCGAATCATACCTCAAGCCAGTA
GGGATGCGTAGGGAAAGAGAGAAGGTGTTTGTTGCGGTCGCACACAGCGG
CGGTAGTGGCTTCTCCTCACGTGTTCACACCACACCTCTATCTCTAATCG
CCTTCATATATATCAACACGATTTTTTCAACTGCTCTAAAATCAAGTTTA
AACAGCTCCTTTGGCTTAACACTTGGACTGCTGTTGTGCAAGGAGTATCA
CCCCTCTTTTGTGTGCTTTTGGGACAACCGGCATGCTGAGAAGTTCGACG
GGTTTACTTAGTTGAGAAGGGAGAAAGTCGGGCGAATGATTGCCTTCCTG
TGTTGCCCTTGACAAGTCTTTTTCTTGCTCGTGGTCGTTACCTACACTAT
CTTTTGCGCCAGACAACAGCATGACTTTGTACCTGACACTTTTTTCATTT
CTCGGGTGTGAAAAGTACATCGGAGTGGACACGGGTGAAGGGTCTACAGA
GTATCAATGACGCTCTGCGATTCAAAGCCAATCGTAAACAGCAGTGAACA
GTCAGAAAACACAGATGATAAAAGTTTAAAATTCTGATGAACCATCCCAG
CACAAGCCAACAAAATGCTGTCATCAAATCTCAAATTACGTCATTTTTTA
CGAGACGGAGGGAGCAACCCTTCCGTCCACTCTGCATGATACGCTTCCGA
CCTCTTACCAGTCGTCTATTGTATGAAGTTAAAGCGACCGACCGCAACTA
ATCCGCTCTCCCCGTGTCTCTCTCGATCTCCACCTATTTTTTTATCGACT
ACATCTTCGACCTGCAGGCGCGGCTTCTCGGATCTCGGCATCCCGATCTC
GACCCGAGGGTCGGTGGTGGAGCCGGGGGAACCGGGGCGGCTACCGGTAC
ACCCCCGGGGGTAGCCAAGGCCATACTTCACGCTTTCGGTCAgggGGGGG
TGGGTGAAGGGGCCCCGGCTGTACCGCCGCAGAACCAACAGCTGCAAAAC
CAGGCAGCGGCAGCGGCGAATTGGAACATCCCGCTTTCCCAGGGCTACGC
GGCGGCAGCTATGCAGCAGCATCAGAACCAGGCGGCGGCGGCTGCTGCTG
CGGTGGCGGCGGCGGCAGCGTACCACCTCCCGCACCCCCACCACCAACAT
CACCTGACCAGAGCGGTGCTCCAAACGCACCAGTTGCAGCAGGCGGCGGC
ATACTCTAGGCCCCAGCAGCAGCAACGACAACATCACCAGCAGCAGCTGC
ACCACGCAGCAATGGCGGCAGCGGCTGCCTCGCAGGGCCAGTTCCCCCCG
TTCGGCGCACCGCCGCTACCCGCGCCGCTACCGCCGGGCGCCGCGACCAG
CCCAAACAACAAGGCAGCAACACCGGCGTTGGCACCGGCACCAGCAGCAG
CAGCAGCAGCGACGTCAGGGGGAGCCCATCCTCCCGCGTTGCTATTACCG
GCTGGGAAAGTAAGGGCAGGAGAGAGAGGGCCTCTAGAGACTGAGGTTAG
TTCCGCCTCGCCTGCAGAAAGCAGCGTCTGCGTTGACCAGCAGCAGCAGC
AGCAGCAGTCGTCGGCAGACCCTTCCGAGCAGGGCTTCGAAGCACGAGGA
GGTCAGAAGTCGTCGGCGCCACCACCGACACCGCCACCGCTCCCTCCACC
AAGTCTAGGCGTCAAGGGGGATGGGTATTTTTCGGCAGCAGCGGTGCCGT
TACCGGCCGGGGGCGAGGGCATCGCCGCCGGCGGCGCCGGCGTCCGCACT
CATGCCACGTACCTTTGCACGCCCTCGGGGCGGACGCACAACCCGTACTG
GTCCTACCACTCGCACCACGCGGCGGCGGCAGCGGCGGCGATGAAGCAGC
GCCCGGGGCTGGGCGGTTACATGGATTTCGGGGCCGCCGCTGCGGCGCCG
GAGGTGCCGGGGGGCGTGGCGGGGCTGTCGTACATGGGCATGTCGCCCGC
CATGCAGCAGCATTGGCTGCGCCAACGGTACGCTGCGAGTGCTGGGGGTG
TGATTACGGCGAAGGCGGCGGCAAGCGGGCTGGCGCCGTGGCAGCAGCTG
CACCAGCAGCAGATGCAGATGCAGCTGACGCCGTACGCGGGTGGTGGTGT
TGGTGGAGCTTCGCCGCCGCAGCTACTGCCCACCAGCTCGGGAAACGCTA
GCAGCAGTAGCCAGGCGACGGCCACGGCGGCAGGCCTTTCGTCCTCATCC
TCCTCCACCACCGCTGGCAGGAAGTCGAAATCTCACGAGCAGCTGCAGCA
GAAGCTGCTGCAACACATGGCGCGACCATCGTCATCGTCACCACCTTGGT
GCCCCGCGACGCCTTTCCCCCAAACGCTCGGCGGTGGCGGTGGCGGCGGA
AAGATCAGCTTCTCCCGCGTGGTGGCGCCGCCGCCGCCGCCGCCGCCCTC
GTCTGTGCGCGTCCCCACACGACCCGGCAGCGGCAGCGGCAGCATCAACG
CCGAGGACCACGGCAACGGTGACGCCGCGGATGCTGGGGGTGACTCCTCC
TCCTCCACCCTTTCTTCCGTTCAGCAGCCTTTGTCACCGTCGTCGCAACA
AGGACTGCTGCTTGACGCTAGAAACAACAACGGCAATCTACAATTTAACG
TTAGCGGCAACGCCCGGATCAACGGCGGAGGTGCTTCCTCGGCGGACGCC
GCCGCCGTCGTGAGTGCAGAGCGAGACACGGTGTCCTCCACGATGGCCTC
GCCGCGAGAGCTCCAGCAGATGTACAAGAAGACCGCGGGAGTTAACCACC
GCGGGAGGAACGGCCGCCGAATCCACAGCAGCAGCCACCACCACCGACGC
GGCGGAGGCGGCGGCCAGGACGGCCAGGACGGCAGCACCAGCCCGACGCC
GTCCTTCACCAGGAGCTTCACCAGCAGCCGCCGCACTAGCATCAGCAGCA
CCGGCCACACCACCGGTGACGGTGGCGGAGGGGGCAGTCTGGCTTCCTCC
CTGGCCTTTCTCTCGGGAGCTAGCAGTGTCGGGGGCTCTTCTAGAGGGGC
GGGCTCTTCGGTCACCGGTTCCGGAGGGTCGGGCTCCGACGACCGGGTAA
GCCTCACCAGCAGCGTCAGCACCGGCGTCGACGAGAGTAAAAACGGGAGA
AGGGGCGACGCCGGCGGAGGCGGTAGCGGTAGCGGTAGCGGCGGAACTGG
ATCGATGGGGTCTACTTCAGGGAGCGAGAGCGGCAGTGAGGTGAGGATTG
GATAAATTAAATCCCCGGCAGGAAGAACGGATCTTTCCTTGCCGTGATTT
TGTTTCGCGCAGCGGAGCTTGTGTCGACGTATGACAGTGGTTCTCTGTAT
AGTCTTGGGAACCCGTGGCGTTGATCGGGGGCACTCGTCGACACCACCAA
GCAGTTGTCCAATCGCAAACGAAAGAGTGTGCTACTTCTAGGACAAGCAG
GTTTTATCTCATGTGCAAGATGGGCGCTCCAGTGTCCGCCGTGACTCCAA
AAGAATCCATACGTATCTAGGGACGGTGCTCTTTTTCAACAGGGATGCTT
AGCTAACGGTCGAGCAATGACAGAGGCAAGCAGCAATTAATGACCCTCCG
CCCCCCCTGCCCTCCTCTATCCACGCCTTTTATTTTTTTTTCCTCGTACA
GGAGATTGAAAAGACGACCTCGCTCCAGTCTTCGGAAGATGCTCACTCGG
GTGCGACCACCTCGTCGGCTTCGCCGAAATTGGTGGACATCGACGGCGCA
GGTGGTTTGCTGATGGGCTTTGTCCAGTCCCTTAATAGACAGTACCGTCT
AAACCAGCAGCAGCAGCAGGAGGCAAATAAAGCACTGCAGGAGGACCGGA
CGTCGTCGCCGTCGTCGCCGTTGCCGACGCTGGGTAAGCAACAAGAGGTA
GACTGCACGGCCGACAAGAAGCAGTCGTCCGCAGCATCATCAGAGCGTGA
GCAACAGCGACCGGACCAGCAGCGGCCACAGCCGCAGCTGCAGAAGGCAA
GGTCGGCCAGCTCGATTACGCACCCCCGACATCGGCACAAGCATGCCGCA
AGGGCAAATGACGAAGCCCGTCTTGCAGCTACCGCCCGTGTTGTGGCATG
GGCGCTGCCGGCTACCACGACCGCTGCTACCCCCGACAGTAGCGGCAGGA
GTGAGGCAACAGTAGCGGTCAGCGACATCAGCGGCAAGGGCTCGCCAAAT
CCTCCACCTGCTGCCGCTTCCGCCGATGTCGGCGCAGCGGTAGTCTCCAA
GAAGGAGCGCGTTGCCGGTGACGTGTCTTCGTTAAAACGGCCGCGGAAGG
CCGACAGCTGCGCGGCGTCATCCACCGGCGGCGACGGCGGGAGGAGGAGG
AGGAAGAGGAGTGGCAACGACGTTGGCTACGGCAGCAGCAGCCGCGTACG
CGAAGCTGTCTACCCTCCGCCCCGCCCCCGGCCCACCTCGCTGGTGAGCA
CCGTTGGCGGCGGCACACAGGATAGTCACCTAAGCAGCAGCAGGAGCAGC
CGAGAGGGCGGAGGGGTCGGGCTCAAGAGGCGAATAGCCCAGATTGCCGG
CAGCAGCACTGATGATAGTAGCAGCAGCAGCCGAGACGGAGGCGTGAGCT
TCGGGGCGTCGTCCCGGCCCCTCGAAAGTGGTGCCGGTGCCGGTTCCGTT
GACGAATCCACTTTGTCGCGGCGGCAACAACAACAATCAAAGCGGAGACA
AGCGATGGACGCGGATGACGACGAAGACGAGAGCAGCACCGAGTCGGGAG
TCAACTCGGAGGGGGGCGGCTACGAAGAGGACGACGGGGGGAGTTGGGGG
AGCTCCGGCAAGTCCACCACGACGACCGGGTCCGGCTCGAACGGGTCAGG
GTCTGGGTCCGCCGAGGAAAGTAATGAGGCGTCTGCGTCCGAGGGGGGCT
ACGGCGCGTGCGACGAGCGGTCGAGTTCGTTCGAAGAGCGCTACACTAGC
GGCGTCAACGACGGCTACGGGGACGTGCCTCCGATTCTGGAGAGCGGCGT
GTCTGGCAACGCGAGAATAGCCCAGCCCCAGCCGCTTCAGCAAGAGCGAG
GGGCGGCG
back to topCoding sequence (CDS) from alignment at P-littoralis_Contig162:4836..13893+
>mRNA_P-littoralis_Contig162.2.1 ID=mRNA_P-littoralis_Contig162.2.1|Name=mRNA_P-littoralis_Contig162.2.1|organism=Pylaiella littoralis U1_48|type=CDS|length=3975bp|location=Sequence derived from alignment at P-littoralis_Contig162:4836..13893+ (Pylaiella littoralis U1_48)
ATGTCGCGGAAGGGGAAGTGGACGAGCGAAGAGGAAACTTTCACGGCGAG
AATAATCCATTACTTTAGCCTGGGAGTGCTGCAGCTGCCGGACGGAACGA
CCCTGCGCGCCTACTTGGCGCAAAAGCTAGACTGCGATCCCATGAGGATA
ACGAAAAAATTTACCGGAACCAACTGCTTGGGAAAGCGCGTATACCACTC
CTGCGAACGGACAACAACCACCTACGAGGTAGCAAAGCAGGCGGTGGAGG
AGCTAGCGGAGCTGGAGAATAAGTTTAAACTCAGGCTGGAGCGTAACAAG
GAGAAACGTGCGGGCATTTTGGGGATAGAGGCGCGGCTTCTCGGATCTCG
GCATCCCGATCTCGACCCGAGGGTCGGTGGTGGAGCCGGGGGAACCGGGG
CGGCTACCGGTACACCCCCGGGGGTAGCCAAGGCCATACTTCACGCTTTC
GGTCAgggGGGGGTGGGTGAAGGGGCCCCGGCTGTACCGCCGCAGAACCA
ACAGCTGCAAAACCAGGCAGCGGCAGCGGCGAATTGGAACATCCCGCTTT
CCCAGGGCTACGCGGCGGCAGCTATGCAGCAGCATCAGAACCAGGCGGCG
GCGGCTGCTGCTGCGGTGGCGGCGGCGGCAGCGTACCACCTCCCGCACCC
CCACCACCAACATCACCTGACCAGAGCGGTGCTCCAAACGCACCAGTTGC
AGCAGGCGGCGGCATACTCTAGGCCCCAGCAGCAGCAACGACAACATCAC
CAGCAGCAGCTGCACCACGCAGCAATGGCGGCAGCGGCTGCCTCGCAGGG
CCAGTTCCCCCCGTTCGGCGCACCGCCGCTACCCGCGCCGCTACCGCCGG
GCGCCGCGACCAGCCCAAACAACAAGGCAGCAACACCGGCGTTGGCACCG
GCACCAGCAGCAGCAGCAGCAGCGACGTCAGGGGGAGCCCATCCTCCCGC
GTTGCTATTACCGGCTGGGAAAGTAAGGGCAGGAGAGAGAGGGCCTCTAG
AGACTGAGGTTAGTTCCGCCTCGCCTGCAGAAAGCAGCGTCTGCGTTGAC
CAGCAGCAGCAGCAGCAGCAGTCGTCGGCAGACCCTTCCGAGCAGGGCTT
CGAAGCACGAGGAGGTCAGAAGTCGTCGGCGCCACCACCGACACCGCCAC
CGCTCCCTCCACCAAGTCTAGGCGTCAAGGGGGATGGGTATTTTTCGGCA
GCAGCGGTGCCGTTACCGGCCGGGGGCGAGGGCATCGCCGCCGGCGGCGC
CGGCGTCCGCACTCATGCCACGTACCTTTGCACGCCCTCGGGGCGGACGC
ACAACCCGTACTGGTCCTACCACTCGCACCACGCGGCGGCGGCAGCGGCG
GCGATGAAGCAGCGCCCGGGGCTGGGCGGTTACATGGATTTCGGGGCCGC
CGCTGCGGCGCCGGAGGTGCCGGGGGGCGTGGCGGGGCTGTCGTACATGG
GCATGTCGCCCGCCATGCAGCAGCATTGGCTGCGCCAACGGTACGCTGCG
AGTGCTGGGGGTGTGATTACGGCGAAGGCGGCGGCAAGCGGGCTGGCGCC
GTGGCAGCAGCTGCACCAGCAGCAGATGCAGATGCAGCTGACGCCGTACG
CGGGTGGTGGTGTTGGTGGAGCTTCGCCGCCGCAGCTACTGCCCACCAGC
TCGGGAAACGCTAGCAGCAGTAGCCAGGCGACGGCCACGGCGGCAGGCCT
TTCGTCCTCATCCTCCTCCACCACCGCTGGCAGGAAGTCGAAATCTCACG
AGCAGCTGCAGCAGAAGCTGCTGCAACACATGGCGCGACCATCGTCATCG
TCACCACCTTGGTGCCCCGCGACGCCTTTCCCCCAAACGCTCGGCGGTGG
CGGTGGCGGCGGAAAGATCAGCTTCTCCCGCGTGGTGGCGCCGCCGCCGC
CGCCGCCGCCCTCGTCTGTGCGCGTCCCCACACGACCCGGCAGCGGCAGC
GGCAGCATCAACGCCGAGGACCACGGCAACGGTGACGCCGCGGATGCTGG
GGGTGACTCCTCCTCCTCCACCCTTTCTTCCGTTCAGCAGCCTTTGTCAC
CGTCGTCGCAACAAGGACTGCTGCTTGACGCTAGAAACAACAACGGCAAT
CTACAATTTAACGTTAGCGGCAACGCCCGGATCAACGGCGGAGGTGCTTC
CTCGGCGGACGCCGCCGCCGTCGTGAGTGCAGAGCGAGACACGGTGTCCT
CCACGATGGCCTCGCCGCGAGAGCTCCAGCAGATGTACAAGAAGACCGCG
GGAGTTAACCACCGCGGGAGGAACGGCCGCCGAATCCACAGCAGCAGCCA
CCACCACCGACGCGGCGGAGGCGGCGGCCAGGACGGCCAGGACGGCAGCA
CCAGCCCGACGCCGTCCTTCACCAGGAGCTTCACCAGCAGCCGCCGCACT
AGCATCAGCAGCACCGGCCACACCACCGGTGACGGTGGCGGAGGGGGCAG
TCTGGCTTCCTCCCTGGCCTTTCTCTCGGGAGCTAGCAGTGTCGGGGGCT
CTTCTAGAGGGGCGGGCTCTTCGGTCACCGGTTCCGGAGGGTCGGGCTCC
GACGACCGGGTAAGCCTCACCAGCAGCGTCAGCACCGGCGTCGACGAGAG
TAAAAACGGGAGAAGGGGCGACGCCGGCGGAGGCGGTAGCGGTAGCGGTA
GCGGCGGAACTGGATCGATGGGGTCTACTTCAGGGAGCGAGAGCGGCAGT
GAGGAGATTGAAAAGACGACCTCGCTCCAGTCTTCGGAAGATGCTCACTC
GGGTGCGACCACCTCGTCGGCTTCGCCGAAATTGGTGGACATCGACGGCG
CAGGTGGTTTGCTGATGGGCTTTGTCCAGTCCCTTAATAGACAGTACCGT
CTAAACCAGCAGCAGCAGCAGGAGGCAAATAAAGCACTGCAGGAGGACCG
GACGTCGTCGCCGTCGTCGCCGTTGCCGACGCTGGGTAAGCAACAAGAGG
TAGACTGCACGGCCGACAAGAAGCAGTCGTCCGCAGCATCATCAGAGCGT
GAGCAACAGCGACCGGACCAGCAGCGGCCACAGCCGCAGCTGCAGAAGGC
AAGGTCGGCCAGCTCGATTACGCACCCCCGACATCGGCACAAGCATGCCG
CAAGGGCAAATGACGAAGCCCGTCTTGCAGCTACCGCCCGTGTTGTGGCA
TGGGCGCTGCCGGCTACCACGACCGCTGCTACCCCCGACAGTAGCGGCAG
GAGTGAGGCAACAGTAGCGGTCAGCGACATCAGCGGCAAGGGCTCGCCAA
ATCCTCCACCTGCTGCCGCTTCCGCCGATGTCGGCGCAGCGGTAGTCTCC
AAGAAGGAGCGCGTTGCCGGTGACGTGTCTTCGTTAAAACGGCCGCGGAA
GGCCGACAGCTGCGCGGCGTCATCCACCGGCGGCGACGGCGGGAGGAGGA
GGAGGAAGAGGAGTGGCAACGACGTTGGCTACGGCAGCAGCAGCCGCGTA
CGCGAAGCTGTCTACCCTCCGCCCCGCCCCCGGCCCACCTCGCTGGTGAG
CACCGTTGGCGGCGGCACACAGGATAGTCACCTAAGCAGCAGCAGGAGCA
GCCGAGAGGGCGGAGGGGTCGGGCTCAAGAGGCGAATAGCCCAGATTGCC
GGCAGCAGCACTGATGATACGATGGACGCGGATGACGACGAAGACGAGAG
CAGCACCGAGTCGGGAGTCAACTCGGAGGGGGGCGGCTACGAAGAGGACG
ACGGGGGGAGTTGGGGGAGCTCCGGCAAGTCCACCACGACGACCGGGTCC
GGCTCGAACGGGTCAGGGTCTGGGTCCGCCGAGGAAAGTAATGAGGCGTC
TGCGTCCGAGGGGGGCTACGGCGCGTGCGACGAGCGGTCGAGTTCGTTCG
AAGAGCGCTACACTAGCGGCGTCAACGACGGCTACGGGGACGTGCCTCCG
ATTCTGGAGAGCGGCGTGTCTGGCAACGCGAGAATAGCCCAGCCCCAGCC
GCTTCAGCAAGAGCGAGGGGCGGCG
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