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Homology
BLAST of mRNA_P-littoralis_Contig135.24.1 vs. uniprot
Match: A0A6H5KSG2_9PHAE (Nucleolar protein 16 n=1 Tax=Ectocarpus sp. CCAP 1310/34 TaxID=867726 RepID=A0A6H5KSG2_9PHAE) HSP 1 Score: 295 bits (754), Expect = 2.630e-91 Identity = 168/230 (73.04%), Postives = 180/230 (78.26%), Query Frame = 1
Query: 79 MAKNAAKKRRSGTRKVSKKLKNTFKYKKPDISSAVVRELWDNNLTAETNMAKMGLRQSANRDIRPTANRAAVRSTPGGQLLEACEVSRLFDVADTADLKVIDRNYGRRPMSDEDQRYTAKLMAKHGLDHRAMTRDIKTNYNQLTLGQLRRMCDMLLSLGDDQRVVTVPERALKEAPDTAALSNPAAGGDSSGGNSGKKTAPATGT-------------VAMEVGEGSDDD 729
MAKNAAKKRRSGTRKVSKKLKNTF+YKKPDISSAVVRE WD+NLTAETNMAKMGLRQSANRDIR A RAA + PGG+++E+CEVSRLFDVADTADLKVIDRNYGRRPMSDEDQRY AKL++KHGLDH AM RDIK NYNQLTLGQLRRMCD LLSL ++QRVVT+PER EA A S AAGG A ATGT VAMEVGE S DD
Sbjct: 1 MAKNAAKKRRSGTRKVSKKLKNTFRYKKPDISSAVVRERWDSNLTAETNMAKMGLRQSANRDIRAPARRAAASAAPGGKIVESCEVSRLFDVADTADLKVIDRNYGRRPMSDEDQRYMAKLLSKHGLDHEAMARDIKVNYNQLTLGQLRRMCDTLLSLDEEQRVVTLPERVANEA--AKAASRTAAGG----------AAAATGTSPCQSRRVSVSTPVAMEVGEASVDD 218
BLAST of mRNA_P-littoralis_Contig135.24.1 vs. uniprot
Match: D8LSG8_ECTSI (Nucleolar protein 16 n=1 Tax=Ectocarpus siliculosus TaxID=2880 RepID=D8LSG8_ECTSI) HSP 1 Score: 221 bits (563), Expect = 4.260e-64 Identity = 123/171 (71.93%), Postives = 136/171 (79.53%), Query Frame = 1
Query: 226 MAKMGLRQSANRDIRPTANRAAVRSTPGGQLLEACEVSRLFDVADTADLKVIDRNYGRRPMSDEDQRYTAKLMAKHGLDHRAMTRDIKTNYNQLTLGQLRRMCDMLLSLGDDQRVVTVPERALKEAPDTAALSNPAAGGDSSGGNSG---KKTAPATGTVAMEVGEGSDDD 729
MAKMGLRQSANRDIR A RAA + PGG+++E+CEVSRLFDVADTADLKVIDRNYGRRPMSDEDQRY AKL+ KHGLDH AMTRDIK NYNQLTLGQLRRMCD LLSLG++QRVVT+PER EA T A S AAGG ++G +G A+ VAMEVGE S DD
Sbjct: 1 MAKMGLRQSANRDIRAPARRAAASAAPGGKIVESCEVSRLFDVADTADLKVIDRNYGRRPMSDEDQRYMAKLLTKHGLDHEAMTRDIKVNYNQLTLGQLRRMCDTLLSLGEEQRVVTLPERVANEA--TKAASTTAAGGTAAGTGTGPCHSGRVSASTPVAMEVGEESGDD 169
BLAST of mRNA_P-littoralis_Contig135.24.1 vs. uniprot
Match: A0A7R9UCV7_9STRA (Nucleolar protein 16 n=1 Tax=Pinguiococcus pyrenoidosus TaxID=172671 RepID=A0A7R9UCV7_9STRA) HSP 1 Score: 92.4 bits (228), Expect = 5.290e-18 Identity = 63/171 (36.84%), Postives = 93/171 (54.39%), Query Frame = 1
Query: 94 AKKRRSGTRKVSKKLKNTFKYKKPDISSAVVRELWDNNLTAETNMAKMGLRQSANRDIRPTANRAAVRSTPGGQLLEACEVSRL-FDVADTADLKVIDRNYGRRPMSDEDQRYTAKLMAKHGLDHRAMTRDIKTNYNQLTLGQLRRMCDMLLSLGDDQRVVTVPERALKEA 603
+KKRRSG ++VS+K K +P ++ ++++WD L N+ ++GL + N + +ST G L A + + F +D +DRN RRPMS+EDQRY AK M KHG D++AM DI TN Q T +LR+M L L QR++ VP +E+
Sbjct: 11 SKKRRSGRQRVSRK----NKIVRPVVTDRSLKKVWDEKLPPAENLKRVGLNFNVNGEF-------GRKSTKKGPKLVAETLQEVTFAEIPASDSLDVDRNPRRRPMSEEDQRYIAKQMKKHGKDYKAMFMDIDTNVMQYTEAKLRKMASRFLLLEGAQRLIPVPSEVAEES 170
BLAST of mRNA_P-littoralis_Contig135.24.1 vs. uniprot
Match: A0A7S1XQN3_9STRA (Nucleolar protein 16 n=1 Tax=Phaeomonas parva TaxID=124430 RepID=A0A7S1XQN3_9STRA) HSP 1 Score: 87.4 bits (215), Expect = 8.280e-16 Identity = 66/162 (40.74%), Postives = 89/162 (54.94%), Query Frame = 1
Query: 97 KKRRSGTRKVSKKLKNTFKYKKPDISSAVVRELWDNNLTAETNMAKMGLRQSANRDIRPTANRAAVRSTPGGQLLEACEVSRLFDVADTADLKVIDRNYGRRPMSDEDQRYTAKLMAKHGLDHRAMTRDIKTNYNQLTLGQLRRMCDMLLSLGDDQRVVTVP 582
KKRRSG RKVS+ K K ++ +R++WD L A N+ ++GL N RP A R+A P A EV+ DV + DL RN R+ MS+ DQRY AK +AKHG +++ M D++TN Q T QLR+M L LG+ +R V VP
Sbjct: 56 KKRRSGRRKVSR----GNKVPKAKVTDHNLRKVWDEKLPAAVNLKRVGLTHDVN-GKRPAARRSAREGKPIAAATLA-EVT-FADVPASDDLDGF-RNPRRKAMSEADQRYIAKQLAKHGTEYKKMFMDVETNVMQYTETQLRKMASRFLLLGEHERDVPVP 209
BLAST of mRNA_P-littoralis_Contig135.24.1 vs. uniprot
Match: A0A7S2VEB0_9STRA (Nucleolar protein 16 n=1 Tax=Amphiprora paludosa TaxID=265537 RepID=A0A7S2VEB0_9STRA) HSP 1 Score: 61.6 bits (148), Expect = 3.090e-7 Identity = 48/146 (32.88%), Postives = 72/146 (49.32%), Query Frame = 1
Query: 163 PDISSAVVRELWDNNLTAETNMAKMGLRQSAN--RDIRPTANRAAV-RSTPGGQLLEACEVSRLFDV--ADTADLKVIDRNYGRRPMSDEDQRYTAKLMAKHGLDHRAMTRDIKTNYNQLTLGQLRRMCDMLLSLGDDQRVVTVPE 585
P + +++ WD N++ N+ KMGL N + R ++ + V +STP LFD+ +D L+ R P+ +E+++Y AK M KHG ++ M RD KTN Q T LR++ L L QR V VPE
Sbjct: 33 PKFTDKRIKKNWDTNISPSANLVKMGLVALPNDLNNSRGSSTKVTVTQSTP----------IELFDIPESDRPSLR------SRYPLDEEEEKYIAKCMKKHGDNYLKMFRDTKTNDMQHTEQVLRKLGSRYLLLSPQQRRVEVPE 162
The following BLAST results are available for this feature:
Alignments
The following features are aligned
Analyses
This mRNA is derived from or has results from the following analyses
Properties
| Property Name | Value |
| Stop | 1 |
| Start | 1 |
| Seed ortholog | 2880.D8LSG8 |
| PFAMs | Nop16 |
| Model size | 2265 |
| Max annot lvl | 2759|Eukaryota |
| KEGG ko | ko:K14839 |
| Hectar predicted targeting category | other localisation |
| Exons | 5 |
| Evalue | 1.81e-70 |
| EggNOG OGs | 2D0KR@1|root,2SEKH@2759|Eukaryota |
| Ec32 ortholog description | Ribosome biogenesis protein Nop16 |
| Ec32 ortholog | Ec-21_003630.1 |
| Description | Ribosome biogenesis protein Nop16 |
| Cds size | 738 |
| COG category | S |
| BRITE | ko00000,ko03009 |
Relationships
The following polypeptide feature(s) derives from this mRNA:
The following UTR feature(s) are a part of this mRNA:
| Feature Name | Unique Name | Species | Type | Position |
| 1680789621.4787211-UTR-P-littoralis_Contig135:108901..108979 | 1680789621.4787211-UTR-P-littoralis_Contig135:108901..108979 | Pylaiella littoralis U1_48 | UTR | P-littoralis_Contig135 108902..108979 + |
| 1680789621.545266-UTR-P-littoralis_Contig135:121862..123311 | 1680789621.545266-UTR-P-littoralis_Contig135:121862..123311 | Pylaiella littoralis U1_48 | UTR | P-littoralis_Contig135 121863..123311 + |
The following CDS feature(s) are a part of this mRNA:
| Feature Name | Unique Name | Species | Type | Position |
| 1680789621.4886851-CDS-P-littoralis_Contig135:108979..109047 | 1680789621.4886851-CDS-P-littoralis_Contig135:108979..109047 | Pylaiella littoralis U1_48 | CDS | P-littoralis_Contig135 108980..109047 + |
| 1680789621.501356-CDS-P-littoralis_Contig135:119654..119697 | 1680789621.501356-CDS-P-littoralis_Contig135:119654..119697 | Pylaiella littoralis U1_48 | CDS | P-littoralis_Contig135 119655..119697 + |
| 1680789621.5122664-CDS-P-littoralis_Contig135:120262..120422 | 1680789621.5122664-CDS-P-littoralis_Contig135:120262..120422 | Pylaiella littoralis U1_48 | CDS | P-littoralis_Contig135 120263..120422 + |
| 1680789621.5230827-CDS-P-littoralis_Contig135:120974..121093 | 1680789621.5230827-CDS-P-littoralis_Contig135:120974..121093 | Pylaiella littoralis U1_48 | CDS | P-littoralis_Contig135 120975..121093 + |
| 1680789621.5329657-CDS-P-littoralis_Contig135:121514..121862 | 1680789621.5329657-CDS-P-littoralis_Contig135:121514..121862 | Pylaiella littoralis U1_48 | CDS | P-littoralis_Contig135 121515..121862 + |
Sequences
The following sequences are available for this feature:
protein sequence of mRNA_P-littoralis_Contig135.24.1 >prot_P-littoralis_Contig135.24.1 ID=prot_P-littoralis_Contig135.24.1|Name=mRNA_P-littoralis_Contig135.24.1|organism=Pylaiella littoralis U1_48|type=polypeptide|length=246bp
MAKNAAKKRRSGTRKVSKKLKNTFKYKKPDISSAVVRELWDNNLTAETNM AKMGLRQSANRDIRPTANRAAVRSTPGGQLLEACEVSRLFDVADTADLKV IDRNYGRRPMSDEDQRYTAKLMAKHGLDHRAMTRDIKTNYNQLTLGQLRR MCDMLLSLGDDQRVVTVPERALKEAPDTAALSNPAAGGDSSGGNSGKKTA PATGTVAMEVGEGSDDDEAGLEDSNKKTKKNKSKSSKNKKSGKPA* back to topmRNA from alignment at P-littoralis_Contig135:108902..123311+ Legend: UTRpolypeptideCDS Hold the cursor over a type above to highlight its positions in the sequence below. >mRNA_P-littoralis_Contig135.24.1 ID=mRNA_P-littoralis_Contig135.24.1|Name=mRNA_P-littoralis_Contig135.24.1|organism=Pylaiella littoralis U1_48|type=mRNA|length=14410bp|location=Sequence derived from alignment at P-littoralis_Contig135:108902..123311+ (Pylaiella littoralis U1_48) CGGGCAGGGAAGGAAGGCATTGACAGCGAGAGAGACAGAGGGGAAGAGGG
AGAGAAAGAGTGGCGAGAAAAGAGAACCATGGCGAAGAACGCTGCGAAAA
AGCGAAGAAGTGGGACACGCAAGGTCTCTAAGAAGCTCAAGAACACGTGA
GCATGCATTGTTAGCAGCCATATATCATGCCTGCTGGTGATTCACACTTG
TCGTACTCATATTCAAAAATATCTGCTGTGTGCTCTCGTGAGTCGAGTCT
CCACATCATTTGGTGCTCCTGTGGTTTCAGCGCTCCTGTGGCAATAATTG
AACTGCTGTTGCCCACCTGTCAGTCGTTCGCTTATCTATCAGTCGTTCGT
ATACCGTCAAGGTTGTGAGTGTTCGCGTGTTCGCGTGTGTGTGTGGTGGT
GGGAAACCATGTGGTGGTGGGACGTACGACAGAACTCTGTCTGGTTCCCA
TCATTTCGGCAGCCAGACCAGGGGGTTCGATTGTTCGAACAACATGCTGG
CGGATGACACCAATCGGGAGACAAGAGCAGGCGGCTATAGCCAGTGCTGC
GCGCCGACAAATATGTACTCCGAGAATATATATATATATGTATATCTCAA
CCGGAAACCCGTATATTATACTTCAGCGAGTGCTGTACTAGCGATGGGTG
GCCGACAACCCAATTCCGAGATGATTCAGCAGTAGAGTTTGTTATTACCT
CTCTAGAGACCCACGGTTCACCAATTTCCATCGGCTACAGCAGTAGAACT
ACTCGGCACAAGCACAGTCACTCTGCTGCTTTCGGTCAAACACCTGGCCA
ACGTAAATTTAGACGCGGCGCGATCAGACAGGCACCGCCGTCATTTCACC
GGACGACGAGAACGCGCCCATTACGAGACGATGGGACGCGATTTTTGGTA
CACCGACGTAATGTGCTATGCAGAGTAGGTATCTGGAGTTTCGAGGCGAA
ATATATAAAGACCACGGAATAAGGGCAGAATCAAAGTATAAAATAGCAAG
CACGTAGGGGGGCCATGCTTAGCTTGAGCTAAGCTGGCGTAAACACACGC
GGCTGCGTGTGATAGCCCTTGCGTCTGTGATTCAACAGCAGTTGGAATTA
CTGGTAGGCATGCAGTACAGGTTGCGTACGGGTTGTCAACTTGAGCTCCA
GTTTTCAACTTGAACTGTAAAACAAACTGTAACTGTTGCACCGCCGTTTT
CAAAAGATATCGTGTACTGGATATTTTTTCAAATATGCAAATTTGTCGTT
GTGTGTCAACCGGACTACTGCTGTTAAACTGCGCAAATGGGGCTTTTTCG
TCGCACACTGGCCATCAAAATAGCTTTGAAGACGCCGGCAACATGTCAAC
GTGTTTCTCACAAAACATGAAACTCGTAGCTTAGTAAATTTGACCGTATT
TTATCATAGGATATTGGAGATGATATGGTTTGAGGTATCACAATTGAAAT
TCCACGCCCAGTCAGACACCTTACTGCATGGCGAACGCACACAGGTGGCC
ACTGGGACACGTTATGGCAGCTTATCATTTTTCACAACGTAGAGAGGTTG
TGAAGGGTTGTGGGGTGGTTGTGGGAGGACGGAATCGATCTGAAACCTTT
TTTTCTGTGCTGCCAGCCCTCCCTGTCGGTTGCATCAAAACTATTAGTAC
TAAATATTGTTGGCCCCAAAGAAAAAATATAGGGTTCAGGTCGATTCCGT
CCTCGCATAACCACCCCCAACCTTCCACAACCTTCCTAGGTTTGGCCATA
TGCGTAACCTGCGACAACGTGTCCCAGCGGCCACCTTTGCTTCGGGACGG
GGCAAGATCAGATTTCGCATGCATGCGCCAATTGCCCTGTAGCTCACATG
CCACTAATTGCGCGATGAAACAAATACGTCCGCATCAACCTGCCATTTCC
GTATCGCCCGAACTCCCTGCTTTATACGGAAATTCTTGTTTTCCTGGATG
GGGCTGATAACGCCCAATCCACCCGCCGAAACCATTGTCACATCCTCGCA
TACACGCAATATTCCGCCTGTACATTATACTTCGTATACAGCAAAGCTGG
TAGGCTAGAGCTTTTTGGGGCTACCCATCTGTACATCCAAACTTCAAGCA
TTGATCACTCTTGTCCCAAGAGCCCGAAGGCATGAAGAGAGACAACCCTG
AAGACGACAACGAAACACCCGTCATCAGTCCTTCGCCAAAAGCGGTGAAA
AAAACGTCAAATGCGCGTCCATAGAACTCCCCCCCCATCCCTTTCGTCCC
CACCGTGCTCGCTTCCTACATATTCTCGCAATCCCGGGGGCCAATCCCAC
CAGCCCATCGCCGAACGGGTTATCCAAACGGGCGGACTCACCCCATTCCG
CCCACTGGCATCATCCGCGATGGGGTCTGTTGATCCGTCGAAACAGAGGC
AGCAGCAAGACGCGTGCAGAAGCCAATAAAACAAACTGTTGTTGACAAAC
AATCTGGACAGTGTTGCGCCTGCACGCGTAGGATATAGTACGGACATGTA
GATTGAAATCAAAACGGAAACACCCATTGTGACACACACGCGAGCACACG
CGAGCACACGCACACGCACACACAGACCCTATCTATCTCTCACACATTCA
CACACCTGCCGCGGCACAACTGCCCTTTAAGCTCCATGCGCCGCCTACCA
GATCTGAATCATCCGATTTTCCCCCGTACTCATCTCCCCAGGACAAGGTC
GAACTCCCCGGAGACGACGCCTCCGAGCGTCTGTCGCTGTTGCTATCGTG
GCGCTCGTCCAACTCCTTCTCTTCGATTCCGTCGGAGTCACTGCCAGAAA
TCTCTTGCCACCTCTGGTTCGCCGGCCTCCGTAGCGACTACTGGGCTTGC
AATCTCCGCACCCCCCCCACTACCACCGGTCGTAGCCGGCCTGTTCATGG
CGGCGGAAAAAAGCGCGAGGGCATTCGCAACGGCAGAGGAAAGGGGCGGG
CCAGGCGATGCCACAGTTGCAGGCTCACCGGACGCTGCCACGGACACAGG
CGCACCGTTCGTCGGCCCGGGCGCAGGCGCACTAGGTTCGGCCACGGTCG
CACGGGGTAGGTTGCACCGACCCCTGCAGCCGCAGGCGAGCGAGCATTTC
CCCCCTCTGCAGCTGCACGATCTGCACATGCGGTGGGGGGGCAGGTCCGG
GTTGCAACCGCATGTAAGCGTTTTCGTCTTCCTGTCAGTACCGATGTACG
AATGCTCCGACAACCACAACACGCAGTTTCTCCCTGTTAGTTCTTCCGCC
TCGCGCCCCATATAGCTTGCGGGTCGACACCCCACCCGTGGTTTTTCAAG
TCTCTTTTTGGCATCGTCTCTTTCAGGCCATCTTGCCAGTACCCCATGAC
GGCGCTGGCTCGCTCGCTCTGCGGACGCAACGACTCGAAACCCGGACAAG
TGGCCGTAGTCCGCTTGCCACCAAGCCTGAGGATCACGAAGCGGATGACG
TCGACATAATCCTGCACATTGTCGTGGACGTCGGCGAGTATCATCCCTGC
GGTCCTCTCACCACGCCGAAATGCAGCCTCTTTCTTGGAAAAAAACATAG
TCGCCAAGAGCTTTATGCACTCATCGATGTCCACAGCCCACACCTCATCG
TCCTTCACGAACTCGAGGTTCTTGAAACCCCTTGAGCCCGCACGCTTCTT
ATAGCGAAGGCCCACATTTTGTCGAAGGGTAGACCGGACATGGCCGGCAG
GAAGTCGCACCCCGCCAAGAGGTAGATCAAGACGAAAAGGCGGACTTTGT
CATTCTTATCGGGAGTCCAACCTCCGAAGCCAGCGGCGGGCCATGCCGAT
TCGATGCCGTCCTCGACTTCGCAGATTTTGGCGAACGCCCGATTGACCCA
CAATCCTCTGCACGGTCACCTCCACCGCCCCCGGACCTTGAGGCCTAATC
TTTCCCGTGCTTATGGCTAGTATGATGATCATCCACTCATCCGTAACGAC
TGACGTGACGAGCCACTTGTCGAAGTCCTTCCCCCAGTACCTCTTCGCCC
GTACGATGAAATGAACAAGTGACAGCTCAGCCTCGCCAATGTCCGGATCG
CGCTGTCGCTGTACACCCGGAGCCGCACCGTTTCGAAATTGCAGGAGAGG
CTCTTCCTCTACACAGTCCCCCGCCCCCCCAACACTGCGAGCCTCGGCGC
TAATACCAGTTTCTATGCTCTCTTCCTCGCCAGGCTCACTACAGACACCG
TAGAAGGCTATGGTCCGATCACGCCCGTTGTCTTCTGACCACATGTTGTC
TGCTAGTACCTTCATGGCGAGGTTCGCGGCAATTCCATCCCGTGGTGCCT
TCGAGTCGGATCGAAGCCACGGCTGATACTGTGAAGTAGGGATTGGTTTC
TCTGACAACGGATCGAACACCCGAGCGCACTCCCCGATCTTCTCTGTCCG
CCCGGCTTGCTCATGCTCTTTGATAACCGGCACGAGTACCGCGCGATCGT
AGGACACCAAAAGCAGCTCCGTCTCCATCAGCCATTTCGAGTATAACTAC
CTCACGAAGCAAGCGATGACTCCCACACTCCCCTTCTCTAGGTCGAGAGG
CCTTACTCCCTTGGTGGATTGACACGCGTAGGTCCACCCCATGAGCGTCG
GGTTGGTAGAACTGGTCGTAGGCGAACCCATCCTGAAGATGATCCTCGAG
CCACTTCAACGGACCTTAGGCTTTGTCGGCGTGCTTAGCCCCTGCAAAAA
GCCCGGTGGGGTGTGTGCGGAAGAGATATGAGGGCAAGCGTGGGTTCATC
ATAAAAATGAAAAAAATAGATATCCACATAAACACAAGCGTGGGTTCATC
ATAAAAAATACAGAGTATATAGTTCGTACATATTAACGTAAAAATGATCC
CAGATGAGGGCTTGGGCCATATTCCATATAACATCGATTTTTTTTGTAGT
CCCTATTCATATATCCCCGCGGTCACTGAAATTGAGGCGAGAAAAGAGCA
CAAGCATTAGACCTCTAGACGCATAGGAATTAACGATGTCGCCGTCGCCC
TGTACGTGCGATTCTGCACACAGCAACCCCGAATTGATATGCAACCCAAT
CGTTTTATTTTCTACTCCACGACGCACAAAAACTCTCTCAACATCGGAGA
TTATCCGGGCATTCGTATTTTACAATGGAGGTCGTTTGGAAATCCTGTAC
CTCTTGTACCTCCAGATGCACAGGTGGCCACTGGGATACGTTGTCGCAGG
TTATGCATATGGCCAAACCTAGGAAGGTTGTGGAAGGTTGGGGGTGGTTA
TGCGAGGACAGAATCGACCTGAACCCTATATTTTTTCTTTGGGGGCAACA
ATATTTAGTACTAATATTTTTGATGCAACCAACAGGGCGGGCTGGTAGCA
TAGAAAAAAAGGTTTCAGATCGATTCCGTCCTCCCACAACCACCCCACAA
CCCTTCACAACCTCTCTACGTTTGTGAAAAATGATAAGCTGTCATAACGT
GTCCCAGTGGCCACCTGTGTGCGTTCGCCATGCAGTAAGGTGTCGTCGTG
CCGATCGCCGACATCATCCCAAGCACCGGCCCCGGCTCTAACGATCCCGT
CGCGCTTACAAGGTCCCAAACGTTGAGCAGGAACGACTTGAATCCCCCCC
CCCCCATACGGACATTGGCGACGGAATCCTTCAGCGCCGATGCCCTCCCC
GTCTTGTTGGTCGCCTTTTTTGTTGTGTTTTTGGACGGGATGGAATACAC
CTTCTGCCTCGTTCGTCGCCCCCTTTTTTGTTTTGTCATTCAAGACCCTG
TAGCAGCAGCTCGATCGAGCTCGGGGATATCAAATATCATCAATTTCGAC
CTGAATGGACAATTTACGGTATCGACGCATAAACACCAAAAACAAATAAG
GACTACAGCGACACACACGCTTGGGCCGGGATGGCACCGCAACCACCGTG
GCTCCTTGTTTGCGTTGAACAAAGCACGATGATGTCGTGCTGATATTGAA
CTTGAATATTGACGTGCATCTCATTGTACCCGCATTACAATAGCTAGTTC
TTGTTGTGGTGCATATAGCGACATCCTGAGCCACAACATCAGTGGACTCG
CGGTGATTCGTCCAAGGTTGGGCCAATACAAGATTATTTTACAGCAAGCT
GCCACGCACATGTTTCCCACACGACAACAGAACCCTGCCTTTTGTCCGAC
ATTTTATATATACAAATCTATTTCTCATGCCCATGCTTCTCCTGTTGAGA
GCTCAGAATGTTCAAAAACAAGCTGCATCAGATAGCAAATACAACTTCCT
ATGCGTCATAAGCATCATGCAGGCATCTTCTTGGTGGCGAAAGTGGGAAG
CCAGCGGTCTCAAAGGTCCAGTCAGCTGCTGGTTTCTCCGCATGCGGCAT
GCGGCTGGATTGGCAAGAAATTAAAATTTTGATCTCGTAATGCTTAACTT
GAGCAACACCAAATCGGCTCAAATCTTTTGCAACAGTTGCCAACTAGAGA
CGACTACACGATGCGTGCGGTACTAGGAGTAGGCACGCCAAACTCCTGCC
GAGGTGAGTGTGAACAACAGGCTCTGCGTCTGTTTCCACAGCCCAATTTA
TGAGGGCTGCTTCAGGCAAAATACGAATTATGCATTCTCTTACGCAAAGT
CGTCCACAAACACGTGGCCGCACAATGACCCCACATGTATAGGACATAAA
TTTGGCAACCGTACTTCGGTTTGGTCCCTGCTTCACCTCCTGTCGCCCGT
GCTGTGTAACGAGGTGTGTTGCCAGTGTGCCCGCATGTTTTAGGGGTTTC
CACGCTGTCCCCGGTTTTCCGTTGGAAGCTTTAATGTCGCTCAAACTTTA
TTTTTTTTAGTCGGCGCGCAGCACTGTAGCAGCATTTTGAAACCGCTACC
GTGCCGCGTTTGATGCTATGCGCCGaattttagttttgcacatcgccctG
GTGGTTCAGTTAGTTGGTAAGTCACGTAACCTTCTGACATTCACGCGTGA
GTTCGAATCCCAGTGAAGTAACACGATCTGGGTTTTCTTCTCACAATGCG
CGTGAAAGTGGAAAGCGATTATTTCGTGAGTAAACAATATTAATATTCGA
TCGTACCATCGACGAGGGAAAGGGATTGCTGCCCCCTTTCTCGCGATAAA
AGCTCAACCACAACAAGGCAAGCACCGCAGAGGGAAGTGGAGGAAAAAAA
AAAAAACTCCTGTGTTGACTTCCCCCTGTGTGACCCCAGTTGGAGCGTCG
ACCTACCTGAAAGGTGTAGAGTGGCGTCCAATTAAAGGGACGACAACACA
CACACACACACCCGACGTTGTGCATCTATTTTATCACACACACACACACA
CACACGCACACACACACACACTGAGCCCCGCTACGTACCAACCACGCGGT
TTCGGAGAGCGCTCGACAACACGCTGTATTTCCACGCTGCTGCAGAGGCA
CCGAGCCTATCCACATTACTGTATGCAAGTAGGAAAGCGGAGGTTGCACA
CCCTACTTGTCCGTAGCAGCTGACTGTCGTCTGCCGGCAAGATGAACGTC
ATATCATACATGTGACACGCTGGCTCCGGTGCTGGGAACTGCGTAGAACA
AACGATGTCGCCCACTCTGGATCTGAAGATGGTACTTTGCATTAAGACAT
CAGCACCAATTACGTCGCGGCTGCTATGGGCATGACATGAATACGATGCT
ACAGGGAATCTGTAAGTTTTTCCCAAAAAAAAAAATCCACATATACCGTA
CCTAGGACAGATCAGAACACCTTCAGGTCACCTATACGTATATAGAAGAG
GAATGGCCTAAAACGGGTATACCAGATAGTTTTGTGGCCATAACCGGGTA
CCTCTTTTTTTCAGTGACCGAAACCGCCCAAGGTCGCCATCTCATTGGCC
AGAACCCTCCACTACCCGGCGATGGCCACGTTCCCGCCGGGTATGCTCGA
TTATGGCTACTCAACTCGTGAAGGGTACCCGAAACTTGTACCCACTACCC
GAAAACGGCCACAAATACGCGGGCTCCTCGACTCTTCTTGATTGTTTCGA
GCTCAAGTCTCTCGTCTTCTCTGCTCTTTCGTTCTCCCTCTCTCTCCCAA
CCACAAAAAGTGATCCAGCACCACCGTTTTAGTAGTAAGTGCTCGTAGTC
GCAGGAAGAAACACGGCAAGCGGTACTGCTAGATAGACGTTGCAGCCCGA
CTATTTTTGTGTTTTTCGATGTTTCCATCGATTTGAGTACACAGAGGCAA
AGGGCGTCTGACAACAACAGACTGCAGCAGCAAGACGCGGCGCCTTTTCT
GTAGCGAGTCTGCCTGTGTGTGTGCTGCTTCCTGTGTTGTTTTTCTTGCT
CGGGTCAAAAGAGCGACTGCCGCCGGCGAAGTACCCGCCCACGACAGCTC
GTAAAAGATTTTTGGCGGGAAAACTCTGCTAGCTGCATGTTGAGTTGCGT
TTGTGTGTGGTCCGTTGGTCGAGGAGCCCGCGTATTTGTGGCCGTTTTCG
GGTAGTGGGTACAAGTTTCGGGTACCCTTCACGAGTTGAGTAGCCATAAT
CGGGGATACCCGGCGGGAGCGTGGCCATCGCCGGGTAGTCGAGGGTTCTG
GCCAATGAGATGGCGACCTTGGGCGGTTTCGGTCACTGAAAAAAAGAGGT
ACCCGGTTATGGCCACAAAATCATCGGGTATACCCGTTTTTGGCCATTCC
TCTATATAAAACTAGAATAATCGCAGATCACTACAGCTATGTTGTGTTGT
TCTGTGGCACAGGTGACCTGTGTCACAGAACATCTGGTGTTCTGTAGCGC
ACAGGTCACCTGTTGCATTTTCGAAGTGGTGTTCTGTGACGCACATGTGA
TCTGTTACATTTTTCGAACCGATGTCCTGTGGCACAGGTGACCTGTGGCA
TTTTCCCAACTGATGTTCTGTGGATGTCCTGTGACTCTGTGACAAAGGTG
ACCTGTGCTCCACAGATCATTGTAACATAGGGCACCGCGAGCGGGTGTTG
GCGTGTATTTTTTTTTTGTTTGGCGATATTTTGTTTTGTACTAGTAATAC
GCAACAGTATTATTATTCCGTGAACCGCTGTTTCTACACACAGCACACAC
AGCACGCGCAGCGCACGCAGCACGATCGGACCAACGTAGGATGGCAGATA
ACTTCAGTGGCAGCAGCTCTTCTACTGGTGCTTCAGTTGCAGATGAAGTC
GGTTATATGGGAGGGTGGTGGTGGTGCGCAAAGCCTCCCGACGACAGAAG
CAGGGCGACAAGAAGAGGAAGAGTGTGTATCTATAACAAGTAGACCGACA
CACAAGGGGCCATCTCACACCCCCCCCCTTTTGTAGTACGTTCTGTTCAC
CCACGTCCACTTAGAAAGCAGCCGATCTGCTCGAAAGCTCAACACAAAAT
AGGGGATCAATAGGTCGCATTTGTGCACGGAACTAGATTCAATGTACACT
ATTTTTTCCCAATTGATCTGTCTAATGTTCTGTGGCACAGATATAACATG
TTCTGTGCAGCGGTGTTCTGCGCGCACAGGTGACCTGTGACATTTTTCCA
AGTGGTGTTCTGTGGCGCGCAGGTGACCTGTTACATTTTTTTCAACTGAT
GCACTGTGGCACAGATGACCTGTGCCATAGAACATCTGATGTTCTGTGGC
TCACAGGTACCTGTTACATTTTTCCAACTGGTGTTGAGTGCGCACAGGTG
ACCTGTTGCATCTTTTCAACCCATGTTCTGTGGCCGACAGGTAACCTAGA
ATACATTCTGTCCTATGTGTGAAAAAATCCAACTCCCAGAACGTACAACA
TGAAGTTCTTGTCACTCATAAGGAAATCTGAATTAAACTGGCATGTTTTC
GTCATGGTCCCACAGCAGTTCAATACGATATTGCTGTATCATTAATGATG
ATAGGAACATCATGTATACCCAAATCAACACAAGTAACGCCAAGGACGAT
GCTTAGAGCCTCACATATAGGCTGTAAATACTCACCACATGATGTAACGT
GTGTCACACAAGACGTGATACCCTCAGAGGAGCTGCGACGGTATATTTTC
TGATGAGTTATAGAAACACAGGTAAATGTATCCTATTCTTTGTGTTCGTC
GTTAATCTACTCCAGATCCTCGCATGGGGAAGACGGACACACTGATGTGC
TTGTGGAAACATTATAAAAAATATAAAAGTTTATAATACCTGGTATATAG
AAAGGCACTTTCGTACGTACCAGGTGTTTGTTTGGTTCCCTTTGCGGAAA
GGGGTGGTAGACAGAAACATCGCCAACTTCTACCTCCATCGCGACCCCCC
CGCCCCCCCGTCTTGCCTCGGATACCGTACAAGTATTTTGCACTTTGAAG
TATAACATTATGCTATCGGTACCGTCACTTCGAAACCATCCTCCTACACT
GTGTGTGTTGTCATCCCTTTAATTGGACGCCACTCTACACCTTTCGGGTA
GGTAGACGCTCCAACCGGGGTCACACAGGGGGAAGTCAACACAGTAGTTT
TTTTTTTTGCTCCACTTCCCTCTGCGGTGCTTGCCTTTTCGTGGTTGAGC
TTTTATCGCGAGAAAGGGGACAGCAATCCCTTTCCCTTGTCGATGATACG
ATCGAATTTTGTTTACTCACGAATTGATCGCTTTCGACTTTCACGCACAA
TGTGAGAAAAAAACTACACTGCGATGGAGAAACGGCATAATAAAAACCAT
AATAATTTTGTTCTTGCGCAAAACGGTATGTGATATATTCATCACCCCGC
CCTTGTTGATGGTCTTCCCGCATCCGTCCCCTATTCCTCATCTCGGGTCA
CAGGTTCAAGTACAAGAAACCAGACATAAGCTCTGCGGTCGTAAGGGTGA
GCAACTGCCTGCCCCGTGATTTTCACGTTCTTGACGTCTTAACGTACGGA
CACTGCGAATGCTGCTGCTGCTGCTGCTGCGGCGGCGGCGGCGGCGGCGT
TCATGCGTAGCGCGGAGTGTGAGGAAAGTAGATTCGATTCGGCGTGGCGA
TGGACATGTTGAATATCCTCGTAACTTGGGAACATTTCGAAATAGAGATC
GGAGAGGGAGACCATGCTCTTTCAGCCAACAAGCAAGAAGTGAAGTATCT
TGATGTGGCGGATGGCGACCGCATCGCGAGAACTGAATCTTTAGACCAAT
ACGGCAAACGTTCAAGGAATGAGAACCGGTTGTCCGTTCCGACTGAGGCT
CGCGAGTTTAGGCCAAAGCCTCAGACAGTAAAAAATGAGTTAGACATCAA
CGTTTGGTGACTGTTTACTGGTTCGACGGGGTTTCCTTGAATTGTTACAG
CATGCGGCATATTTTTTTGTACCTTCGTGAACGAGTATGTCGCTCGTACc
cccgCCCCCCCCCCCCTCCCACACAGCTGATGTCGCCCGCTTACATTATC
ATTGCCGTCAGGAGCTGTGGGACAACAACTTGACGGCGGAGACAAACATG
GCGAAGATGGGGCTACGGCAAAGCGCTAACAGGGACATTAGACCAACCGC
AAATCGGGCGGCGGTAAGGTCCACTCCGGGCGGGCAGCTTCTAGAGGCGT
GCGAGGTGTCGAGATTATTTGGTAAGTTTTTTTTCTCTTTTAAATCTCAC
ACTCACCTTCCTGTGGGTCGTATCAGTGCCTGGTATGTCCCTCCAGAATA
AATATCCGTTTTACTGCTCGCAAACTAGATGCAACATTAACGGGGATTAA
CTACATCGTGGTGAACTACCGAATTGCCCGTAACCGGGCCGAACCTAGGC
GTATCATATGATACGTGTCTTGAGGTCTCGGAGCTGAGAATTCCGTTGAG
ATTTGCCGGGACATGCATGCATCAAACGTTTTTACGCACATGCAGCACCC
TCCCCCCTTGCCATCCCCCTTGGCATGCTCTTACATATACATTCGACTTG
CAACTGAATTAGCTCTTTTGGGGTTTGTTTTTGTCCGAGAATATGTACGT
ATCACAGCCCCGTTGCAGTCCGCGCCGTGACTCTCTATTTTCCACCCCCC
CCCCCTAGACACCCGAACCTCTTGCAATAAACTCCCCACCTTCTCGTGCT
CGCCTCGTCCGTGCGACCCGGTCGGTGTGGGTGGTGTTGGTGTTGTTGCT
GGTGCTGTTGCACATTGTCACAGACGTTGCCGACACTGCAGACCTGAAGG
TGATCGATCGCAACTACGGGCGACGGCCGATGTCGGACGAAGACCAGCGA
TACACGGCGAAGCTTATGGCCAAGCACGGGCTCGACCACCGGGTGATTTG
AGTTGCTGTCAGCCAGGCTTTGAAGTATGTATCCGTGTGGGGGCTTGGTC
GGTCCGGTTTGAAACCGTTGACCTCATGTGAAGTACGCGGCGGATGGCGG
TGTCCGTCGTATCAATGAAGAGACCCCCAGGTGGGGCGGGCGGGGTGTCG
CCATCCAAGTTCCCTACGCCGCCACTGACACGCTCGAGGCACACATTTTT
TGTTCGTTTGTAAGATTTTTTCTGTAGCATGCTGTTTTTATTTTTTCGTT
CTTCTATTCATGGTCATTCTGTTGCAATTGTAAAATTGCATCTACTGCTG
TTTTTGTATTTAATATATCTATATCTTATCTCTGCCCCTCCCCACCCCCC
CTCTGTGCCACTTCTGCATTACTCTACTGTGTACCGTATTGTACCTCTCT
TCAACTCTGAAAGGCAATGACTCGTGACATCAAGACGAACTACAACCAAC
TGACGCTCGGACAGCTGCGGCGGATGTGCGACATGCTCCTGTCTCTCGGG
GACGACCAGCGAGTCGTCACCGTACCCGAGCGGGCGTTGAAAGAGGCCCC
CGACACCGCCGCATTATCAAATCCGGCAGCCGGTGGCGATAGCAGTGGGG
GAAACAGCGGCAAAAAAACAGCGCCGGCCACTGGAACAGTGGCAATGGAA
GTTGGGGAAGGGTCTGACGATGACGAAGCTGGGCTGGAGGATTCGAACAA
GAAGACAAAGAAGAACAAGAGCAAGAGTAGTAAAAACAAGAAGTCGGGCA
AACCTGCGTAAAATGGGTGCCGCTTGTAAAGAGTTACAAGGTGGCGGGGA
GCGAAAGTGTGCTGGGAATCCCTGTTGATGCTACTTGTCAAAGGCCGGTT
TGATGACGCGCCACATGCTCCAGGGTAGCTGGCGGGTGGTTTGTGATAAA
GCGGCAGCGGCGTTGAATGAATGTGTATCTTTTCAGGTACTGCCCCAGAG
TAGCAGCAGACGTCGGTGTCTTTATTTTGTTGTAAAGCACATGGAGCTTT
GTTACGGACAAATGATAATCGAGCCCATCCATCTGCGCAGTAGTTGGTAT
GTCAAGCTGCCCGCACCTGTGAAGCGAAACGTACCAGGGGGGGGACCCAG
CTACGCCAGAAATGTGCGCTTGGCCAATACGGGATGCAAAATAGAAAAAT
CAAAAACGATTTGCCGAGTATCTTGCGCGACCAAATGCTTGGTGTGCCGG
GGCTGGGAAGCCCATGTCCGCCCTTCTCCCTTGTGGGTGTCGATGGAACT
TCCTTAATAACTTGCAAGGATTTTTTTGTTGCTTTGGCGTCGGGTTCGCT
AGATATTTTACCGTCTTCACCGGGAGTGGACAGAGCCCGCTTATTACGTT
TTGAGCGTGCTGTCGGGTCGACACCCCGCCCTTCAAGTCTGTAGCCGAGG
CAGCTTCGAGGGAGATACGTCCGGCCCAGTCAGAGAGAGCTACCGGTACA
TCGAACGTCACTACCAGACTCCATATTACGTGGTATATCACCCCCCCTTT
GGGCCGATATTATCAAAGCTCGGCATGAATGCTTTGTTCATCCACAGCAG
TAGTATCACGTCGCAACATAGCAAAGAAAAGAAAGTGTCAGTGCCGAACA
AAAGTGGTTTTAGCAAGATCTCGTCAAAAGCTATCTGAACACGTGTCGTG
CGGTGCACGCAACAGCATTGACAGAGGCTAGTGCTGGTTTGTGGTGGCAC
CCAATCGGTTTGCGAATAGTATGAAGGTGGGGTGATCGAGCGATCGAGCT
GAAAACAAATCTCGAGGAACTGGCCTGGGAAGAGAAACCGAGTACCGCGT
TCGTTTCCGTGTGCATCTGGATGGTATAGCAGTCAGTGCGGTAGGCGATA
GCCGGCTCTGTTCATCAGAGATAGCGGCCTCGTTCAGTATGTTTTGACTA
TATCGTATCACATGCGAAGGCAGCTTTGCAAGGTTCCTACAGGTGTCCTC
CATTGTTCTGTTACAGGAGTATAGGTTATCTTCGAGAACGTCCGAGAGGA
GCTGCGCCTAATTTTCAATTTTCGAACATCTGTGTTGAGTTTTAGAAGCA
CCCATGTGTGCGTCGACAACCCCTCAGATCGTCATCGAGAGGGGGGCGAG
TACATCGGTATACTTGTAGTAAAAAAACAAGATTCGGGCAATGAGCTCTC
TTCTTCTGTGACTTATCCTCGGACGAATTGTCCATCATGGTCCAGCGGGT
AATTAATGTG back to topCoding sequence (CDS) from alignment at P-littoralis_Contig135:108902..123311+ >mRNA_P-littoralis_Contig135.24.1 ID=mRNA_P-littoralis_Contig135.24.1|Name=mRNA_P-littoralis_Contig135.24.1|organism=Pylaiella littoralis U1_48|type=CDS|length=738bp|location=Sequence derived from alignment at P-littoralis_Contig135:108902..123311+ (Pylaiella littoralis U1_48) ATGGCGAAGAACGCTGCGAAAAAGCGAAGAAGTGGGACACGCAAGGTCTC TAAGAAGCTCAAGAACACGTTCAAGTACAAGAAACCAGACATAAGCTCTG CGGTCGTAAGGGAGCTGTGGGACAACAACTTGACGGCGGAGACAAACATG GCGAAGATGGGGCTACGGCAAAGCGCTAACAGGGACATTAGACCAACCGC AAATCGGGCGGCGGTAAGGTCCACTCCGGGCGGGCAGCTTCTAGAGGCGT GCGAGGTGTCGAGATTATTTGACGTTGCCGACACTGCAGACCTGAAGGTG ATCGATCGCAACTACGGGCGACGGCCGATGTCGGACGAAGACCAGCGATA CACGGCGAAGCTTATGGCCAAGCACGGGCTCGACCACCGGGCAATGACTC GTGACATCAAGACGAACTACAACCAACTGACGCTCGGACAGCTGCGGCGG ATGTGCGACATGCTCCTGTCTCTCGGGGACGACCAGCGAGTCGTCACCGT ACCCGAGCGGGCGTTGAAAGAGGCCCCCGACACCGCCGCATTATCAAATC CGGCAGCCGGTGGCGATAGCAGTGGGGGAAACAGCGGCAAAAAAACAGCG CCGGCCACTGGAACAGTGGCAATGGAAGTTGGGGAAGGGTCTGACGATGA CGAAGCTGGGCTGGAGGATTCGAACAAGAAGACAAAGAAGAACAAGAGCA AGAGTAGTAAAAACAAGAAGTCGGGCAAACCTGCGTAA back to top
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