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Homology
BLAST of mRNA_S-dermatodea_contig10789.531.1 vs. uniprot
Match: D7FX80_ECTSI (Protein kinase domain-containing protein n=1 Tax=Ectocarpus siliculosus TaxID=2880 RepID=D7FX80_ECTSI) HSP 1 Score: 103 bits (257), Expect = 9.210e-22 Identity = 101/130 (77.69%), Postives = 103/130 (79.23%), Query Frame = 1
Query: 886 SMAAVESVGHQADKKGKRSSSLRKMYDSLTGGFSGSAAQNXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXPSRT----TARNQLVTSVTSRDVREKYEIERSQLGHGHYGVVRRCWDKETRE 1263
S A S Q +K SSSLRKMYDSLTGGFSGS XXXXXXXXXXXXXXXXXXX XXXXXXXXXXXXXXXXX +ARNQLVTSVTSRDVREKYEIERSQLGHGHYGVVRRCWDK TRE
Sbjct: 7 SAAGASSGVDQNSEKXXXSSSLRKMYDSLTGGFSGSXXXXXXXXXXXXXXXXXXXXXXXPAXXXXXXXXXXXXXXXXXXXXXXXSGSARNQLVTSVTSRDVREKYEIERSQLGHGHYGVVRRCWDKSTRE 136
BLAST of mRNA_S-dermatodea_contig10789.531.1 vs. uniprot
Match: A0A6H5KVE4_9PHAE (Uncharacterized protein n=1 Tax=Ectocarpus sp. CCAP 1310/34 TaxID=867726 RepID=A0A6H5KVE4_9PHAE) HSP 1 Score: 99.4 bits (246), Expect = 1.040e-21 Identity = 93/106 (87.74%), Postives = 94/106 (88.68%), Query Frame = 1
Query: 958 MYDSLTGGFSGSAAQNXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXPSRT----TARNQLVTSVTSRDVREKYEIERSQLGHGHYGVVRRCWDKETRE 1263
MYDSLTGGFSGSAAQN XXXXXXXXXXXXXXXXXX XXXXXXXXXXXXXXXXX +ARNQLVTSVTSRDVREKYEIERSQLGHGHYGVVRRCWDK TRE
Sbjct: 1 MYDSLTGGFSGSAAQNSXXXXXXXXXXXXXXXXXXPAXXXXXXXXXXXXXXXXXXXXXXXSGSARNQLVTSVTSRDVREKYEIERSQLGHGHYGVVRRCWDKSTRE 106
BLAST of mRNA_S-dermatodea_contig10789.531.1 vs. uniprot
Match: A0A7R9VSA8_9STRA (Hypothetical protein (Fragment) n=1 Tax=Pseudictyota dubia TaxID=2749911 RepID=A0A7R9VSA8_9STRA) HSP 1 Score: 54.7 bits (130), Expect = 9.670e-5 Identity = 27/48 (56.25%), Postives = 34/48 (70.83%), Query Frame = 1
Query: 1120 PSRTTARNQLVTSVTSRDVREKYEIERSQLGHGHYGVVRRCWDKETRE 1263
PSR +Q++T S DVR KY I ++GHGHYGVVR+C D+ETRE
Sbjct: 107 PSRMNP-DQVITDALS-DVRIKYHINPREIGHGHYGVVRKCMDRETRE 152
The following BLAST results are available for this feature:
Alignments
The following features are aligned
Analyses
This mRNA is derived from or has results from the following analyses
Properties
| Property Name | Value |
| Taxonomic scope | Eukaryota |
| Seed ortholog score | 104.0 |
| Seed ortholog evalue | 1.8e-19 |
| Seed eggNOG ortholog | 2880.D7FX80 |
| EggNOG free text desc. | protein serine/threonine kinase activity |
| EggNOG OGs | KOG0032@1,KOG0032@2759 |
| COG Functional cat. | T |
| Best tax level | Eukaryota |
| Best eggNOG OG | NA|NA|NA |
| Hectar predicted targeting category | other localisation |
| Exons | 4 |
| Model size | 1263 |
| Cds size | 1263 |
| Stop | 0 |
| Start | 1 |
Relationships
The following polypeptide feature(s) derives from this mRNA:
The following CDS feature(s) are a part of this mRNA:
Sequences
The following sequences are available for this feature:
protein sequence of mRNA_S-dermatodea_contig10789.531.1 >prot_S-dermatodea_contig10789.531.1 ID=prot_S-dermatodea_contig10789.531.1|Name=mRNA_S-dermatodea_contig10789.531.1|organism=Saccorhiza dermatodea SderLu1190fm monoicous|type=polypeptide|length=421bp
MGNACKGQGGVDDTRRKPSSQRKSSGSTSNFSPTEDPDYVGNNNNSTSSA AAGGAVTGGDRNSRDSGARANGTTGNGHEQASASEVNVEMQGSGTLANSR GSSHSPQRQVDPPLNRSRRGSTEREGGGDSGGERSEKSEGGAAAAEEEAA LGAGIANAGARGTRAGDDRDRSARRRRSPRGRRGGSASDLHARLATRRQK RLAGTGRSARRGGAAAEQGGTAAAAAAAAGPAEFHGSSDSRRERKGSRAK DSSGEGRKTSSRDGGGSRERGSGGASGVMAGSGGSTAGGSSAVAGSMAAV ESVGHQADKKGKRSSSLRKMYDSLTGGFSGSAAQNSAGGTAGGGSGGGGG GGGGGPAGGGGGGGGGTGRGAGRPSRTTARNQLVTSVTSRDVREKYEIER SQLGHGHYGVVRRCWDKETRE back to topmRNA from alignment at S-dermatodea_contig10789:2698..7486- Legend: polypeptideCDS Hold the cursor over a type above to highlight its positions in the sequence below. >mRNA_S-dermatodea_contig10789.531.1 ID=mRNA_S-dermatodea_contig10789.531.1|Name=mRNA_S-dermatodea_contig10789.531.1|organism=Saccorhiza dermatodea SderLu1190fm monoicous|type=mRNA|length=4789bp|location=Sequence derived from alignment at S-dermatodea_contig10789:2698..7486- (Saccorhiza dermatodea SderLu1190fm monoicous) ATGGGAAACGCCTGCAAGGGGCAGGGCGGGGTTGACGACACCCGACGAAA
ACCCTCGTCACAGCGGAAGAGCTCAGGCTCCACTTCGAATTTCTCGCCCA
CAGAGGATCCGGACTATGTCGGCAATAACAATAACAGCACCAGCAGCGCC
GCCGCCGGTGGCGCCGTGACCGGAGGAGACAGGAACAGCAGGGACTCGGG
CGCGCGGGCCAACGGGACTACTGGCAACGGGCACGAGCAAGCGTCCGCGT
CGGAGGTAAACGTCGAGATGCAGGGCTCCGGAACGCTCGCCAACAGCCGA
GGAAGCTCGCACTCGCCCCAACGGCAGGTCGATCCCCCGCTCAATCGCTC
GCGAAGGGGCAGCACCGAGCGCGAGGGAGGAGGCGATTCCGGCGGCGAAC
GCAGCGAGAAGAGCGAGTCGCGTGAGCGGCGGCACCGCGAGTCGCGGGGG
AAAGACGGCGAACGACGACCCCGTCGCAGCGACCGCGACCGCGATCGCGA
CCGCCACAAGTCGTCGCGGCCGTCTGCTAGGGATGGGACTTCCTCCTCGA
GGCCTCGAGAGAGGGGGGGCAGCGGCGGCGGAGGAGGAGGCGGCTCTCGG
CGCCGGGATAGCGAACGCGGGGGCCAGGGGGACGAGAGCGGGCGACGACC
GCGATCGGAGCGCACGGAGAAGGAGATCGCCGAGAGGAAGGAGAGGCGGG
AGCGCGAGCGATCTGCACGCGCGATTGGCGACCCGGAGGCAGAAGAGGCT
CGCCGGGACAGGAAGGAGCGCAAGGAGAGGCGTGAGCGCCGAAAGCGAAA
GGAGGCGGAGGCAGCGGCCGCGGCAGCAGAAGCAGCAACAGCAGCAACAG
CAGCCGGCGGCGCGGCTGGCGCAGAAGGCGCAGCGGTGGAGGGCGCAGCG
GCCGAGCAGGGCGGCACGGCGGCAGCGGCAGCGGCTGCCGCTGGCCCCGC
TGAATTCCATGGCAGTAGCGACAGCAGGCGGGAGAGGAAGGGGAGCAGAG
CGAAGGACAGTAGCGGGGAGGGGAGGAAGACCTCTTCGAGGGACGGCGGC
GGGTCGAGGGAGCGTGGTAGCGGTGGGGCTTCGGGCGTGATGGCCGGGTC
GGGAGGGTCGACGGCCGGGGGTTCGAGCGCGGTGGCCGGGTCGATGGCTG
CCGTGGAGTCCGTGGGGCACCAGGCGGACAAGAAGGGCAAGCGCAGCTCG
TCGTTGCGGAAGGTGATGATATTATGGTTCATGGCATTATGGTATGGTGT
CTCATTGCTGCTGTTTGTTCGTAGCAGACATTTTTACATGTATCACTCTC
CTGTATATATTAATAGTCGTGTTGAGTACGTACCTGTACATCTCAGTTTG
AGTGTGTGTGATTTTGTCTTTTGGAAGGCCGGGTGTTTCTGTTGCTTGGT
GACACCCCTGCTACAGGCTGTGATATACACTTATCATTACGACGCTGTTT
TGGTTTGACACTTGAGAGCGATCTCATCATTCGCTGCAAAAAGTTTTGTG
TTGTGGGTGTTTGCTTTTTGTTACTTGGGTTCGTTTGTTCTCTTGGCTGT
ATTTCCTCTCTCATGGTATCAACGCTGTTTAGCGATTTTTGAAGAGGATA
AGAGACAGCAGTAGCTATCATAGCTCCCTCCACGCCTACTATAATGAACA
TATATATCCTCACAACAGAATGCATATATGTATCATACGTGTAATACAAG
TATCATAACAAATCCCTTTTCCCACTGCTGTCGATATACGTTGGATCTTG
TTTTTTCCGTAGTCTCGCTTTCACAACACCACAAAAAGCTGCTGCCACAG
CAGTCATGCAGTCACCAAAAGCCTCACGAAGGGCCGCCCGTGGGCTCTAA
CAGACACGCAATCAATACTGCTCTTACCCCGTCCCCGTCTCGCCGCTCGT
GTGACCGATCTCTGCTTGCATATATGTGTACAGCTCACATATATGACAGC
TCTCACATTTGATTTGCATTGACTGACTACTACTATACTAACGTAACAGA
GGCGTATGAAATGTGCATGTAGTACCTTAGCTGCGACCCTTCTCCACCCA
CAAACAGGGGCGCTTGCTTCTGTGATCGATCAATCCCCCCCCCCCCCGCT
AAGCAACAGCAGTTATTAACAGTGCGTTTGTTGACCTTGAACGCAAGCGA
CCATGACCGTCGGTGTGTGTCGGCGGGGGGTTGGGAGAGGAAGTGCCGTC
ATCATATATATGATACCATTTTTTTATAGTTTCTCCGCAGCTCGTTTTGG
TGCAAGTAAAATAGCGATACTGCTGACTCCTTTACATATTTTACATACTT
GTAGTCAAACAGTTATATGTATAGTTGACTATGCATGCCCTCTGCTCGGA
GATTTTTTGTGAAGGAGAAAAGAAAGCAAAAGCCGTTTTTCTGTCGCTTT
CCTGCAGAGAGGTGCGAAGTATTATGGAAGTTTTTTTAAAATTTATTTTA
GGGGTGCACATAAAAAAAATACCACATGCCAGAGACGGGAGAGAGAGAGA
GAGCCTGGCTTGTGCGTGGGCGCGGCGGCATCTTCGGGCGATACATTGAC
CCATCCTCGCTGCTGTTGCGCCGTGTGGTGTGGTTTGTGCACGTGTGCGC
TCTATGATAGCTGTGTGCTTCAACTATAAATATAATAATAGCTGTGTTGT
GTGATAGTAAAAATATGACATGAGTACGCTTGAAGAGCTCTCACCCCTTG
TTTGCCTCCATCTGGAGGCAGGTCCAAGTAACCATTACCTTATTTGAAGG
CTTTTGGCTCTTCTGGGTGCGTTTCGGCCCGAGCGCGCAGCAGAGGCTTA
GGCTTTGTGCCGGATTTTTCGATTTCGCTATGAAGGTTTGGGGCAGCCAC
CTGTGTCACAACCCCTCTTTCTTACAGGTATTGTAATTAATATTCGCAGT
GTGCACAAGCAGTAGTAATATCTAGAGTGTTGTGTGTCCACGTACGTATC
CCCGCGAAATTTTTGACGTTGTTGCAGTAGTATCATACTCAAACTCCCTC
TCCTCCTTATCATATAATATAATACAAAATGATACAGCAGCGTTAAATAT
TTGCACAGGTATTATGGTGAAGGGAAGAGAATATGTATAAGTGTATACAA
GCACCTACAGCTATAGCACCTACAGCTATATAGCACCTACAGCAGTCTTG
TACAAGTAGCCTCGTTTTTTTTCTCCCATTTATGTGTTGTTGTGTGTGTG
TGTTTTTTTTTTTACGGAGATGAATGCCTCCTCATTTCCACACTACAATC
TTTATACATGAGAGTGATACACGAACGGCTGGACAGCACCCTATGATACT
CGTAGCAGTTGTACAAGTACCTTCCCGCCACAAGAGAAAGAAAAAACGCC
TTGTATAGCTCTATAACAGGTATTCATTGTTGTAGAGCTTACAGTATTAA
TAGTATTAATAGAGCTTACAGCATGTGCAAGTAGAACTACTACTAGAATT
AATAATATTAGTATATGTGATGTGTGAACAGATACCCGGTGCACAATATA
TTTGATATTTGTGATGAGGGAGGGACGCGAACGATTGGAGGAGTTGTGAT
ATTCATAGCCCCTCTCTTTTCTCATGGCGAAGATGTGATACACACCGTAT
GCCATATCAATATCAACAGAGGCATGATGGAAGTGATATTATGCGCATAT
TGATCTTGATTTGTTTTACCACTGACCACCGCATACATACTACTGTACAT
ATTATACATAACATACCTGAACACGGGAAGAGCCACCCACATATGGTGGG
GAAAAGTAGTGCAACTCTTTTGCTCCCGAGCAAATACACAGTGAGAAAGA
AAATATTAATACAGTAGTGCAACTCTCATTTTCTCATTTGCTCCCGAGCA
CATACATGGTGAAGAGGTAGTTCAACTCGGTTTTTTGTTTTTATATTTGT
CCCCAGGGTGTGATAAATACTCACGCACGGTAGTCAACAATCCTGTCAGG
AACTCTGGCATATATATACCTGGTACACTTTATTCATGCAACCGTAACGC
GTCTAAAACAAAAACGAATCCACTGGGGATATGATACTTGTACAGTAGCG
TTCTTGTAGATATAAATACATACCTGAACAAGGGAGGGAAAAACACTTGC
CACCGTAAATCACCCCGCTGCCCCGAAATTATTTGTCTTTATCATTCCCA
ACAAATGCATGTCTTGTCCCCTAAATTCTTTCCTTTCTTCTCTCCCACCA
CAGGCAGTCCTTCCCCCCCCGGTGCTCCCCCCCCCCCCCCCCCCCCCCCC
CCCCCCCCCCCCCCCTCTCCCCCACCCCCTGTCCGCCCTTGTCTTGATCA
CTCTCGCGCCTTGCCACCACCACACGGAACATGCAAACACAAAGCACCCA
TCCCCTTCCCTAACCCCAACGCGCATCACAACACATATACTTCATACACA
ACCCACCCCTTACAAAACACACACTTTGAACAACACACCCTTAAGGCTAA
TGGCACCCCCCCGCCCCCTCTCTCATCTCCCAGATGTACGATAGCCTCAC
GGGCGGCTTTAGCGGCAGTGCTGCCCAAAACAGCGCCGGCGGTACGGCGG
GCGGCGGCAGCGGCGGCGGCGGGGGGGGTGGGGGCGGTGGGCCTGCTGGC
GGCGGCGGCGGCGGAGGCGGTGGCACTGGCAGGGGAGCGGGCAGGCCGTC
TAGGACTACTGCTCGGAACCAGCTGGTGACGTCGGTGACGTCAAGGGATG
TACGTGAGAAGTACGAGATCGAGCGGTCACAACTGGGGCACGGGCACTAC
GGGGTGGTGCGGAGGTGCTGGGATAAGGAGACCCGTGAG back to topCoding sequence (CDS) from alignment at S-dermatodea_contig10789:2698..7486- >mRNA_S-dermatodea_contig10789.531.1 ID=mRNA_S-dermatodea_contig10789.531.1|Name=mRNA_S-dermatodea_contig10789.531.1|organism=Saccorhiza dermatodea SderLu1190fm monoicous|type=CDS|length=2526bp|location=Sequence derived from alignment at S-dermatodea_contig10789:2698..7486- (Saccorhiza dermatodea SderLu1190fm monoicous) ATGGGAAACGCCTGCAAGGGGCAGGGCGGGGTTGACGACACCCGACGAAA ACCCTCGTCACAGCGGAAGAGCTCAGGCTCCACTTCGAATTTCTCGCCCA CAGAGGATCCGGACTATGTCGGCAATAACAATAACAGCACCAGCAGCGCC GCCGCCGGTGGCGCCGTGACCGGAGGAGACAGGAACAGCAGGGACTCGGG CGCGCGGGCCAACGGGACTACTGGCAACGGGCACGAGCAAGCGTCCGCGT CGGAGGTAAACGTCGAGATGCAGGGCTCCGGAACGCTCGCCAACAGCCGA GGAAGCTCGCACTCGCCCCAACGGCAGGTCGATCCCCCGCTCAATCGCTC GCGAAGGGGCAGCACCGAGCGCGAGGGAGGAGGCGATTCCGGCGGCGAAC GCAGCGAGAAGAGCGAATGGGAAACGCCTGCAAGGGGCAGGGCGGGGTTG ACGACACCCGACGAAAACCCTCGTCACAGCGGAAGAGCTCAGGCTCCACT TCGAATTTCTCGCCCACAGAGGATCCGGACTATGTCGGCAATAACAATAA CAGCACCAGCAGCGCCGCCGCCGGTGGCGCCGTGACCGGAGGAGACAGGA ACAGCAGGGACTCGGGCGCGCGGGCCAACGGGACTACTGGCAACGGGCAC GAGCAAGCGTCCGCGTCGGAGGTAAACGTCGAGATGCAGGGCTCCGGAAC GCTCGCCAACAGCCGAGGAAGCTCGCACTCGCCCCAACGGCAGGTCGATC CCCCGCTCAATCGCTCGCGAAGGGGCAGCACCGAGCGCGAGGGAGGAGGC GATTCCGGCGGCGAACGCAGCGAGAAGAGCGAAGGGGGGGCAGCGGCGGC GGAGGAGGAGGCGGCTCTCGGCGCCGGGATAGCGAACGCGGGGGCCAGGG GGACGAGAGCGGGCGACGACCGCGATCGGAGCGCACGGAGAAGGAGATCG CCGAGAGGAAGGAGAGGCGGGAGCGCGAGCGATCTGCACGCGCGATTGGC GACCCGGAGGCAGAAGAGGCTCGCCGGGACAGGAAGGAGCGCAAGGAGAG GCAGGGGGGGCAGCGGCGGCGGAGGAGGAGGCGGCTCTCGGCGCCGGGAT AGCGAACGCGGGGGCCAGGGGGACGAGAGCGGGCGACGACCGCGATCGGA GCGCACGGAGAAGGAGATCGCCGAGAGGAAGGAGAGGCGGGAGCGCGAGC GATCTGCACGCGCGATTGGCGACCCGGAGGCAGAAGAGGCTCGCCGGGAC AGGAAGGAGCGCAAGGAGAGGCGGCGCAGCGGCCGAGCAGGGCGGCACGG CGGCAGCGGCAGCGGCTGCCGCTGGCCCCGCTGAATTCCATGGCAGTAGC GACAGCAGGCGGGAGAGGAAGGGGAGCAGAGCGAAGGACAGTAGCGGGGA GGGGAGGAAGACCTCTTCGAGGGACGGCGGCGGGTCGAGGGAGCGTGGTA GCGGTGGGGCTTCGGGCGTGATGGCCGGGTCGGGAGGGTCGACGGCCGGG GGTTCGAGCGCGGTGGCCGGGTCGATGGCTGCCGTGGAGTCCGTGGGGCA CCAGGCGGACAAGAAGGGCAAGCGCAGCTCGTCGTTGCGGAAGGGCGCAG CGGCCGAGCAGGGCGGCACGGCGGCAGCGGCAGCGGCTGCCGCTGGCCCC GCTGAATTCCATGGCAGTAGCGACAGCAGGCGGGAGAGGAAGGGGAGCAG AGCGAAGGACAGTAGCGGGGAGGGGAGGAAGACCTCTTCGAGGGACGGCG GCGGGTCGAGGGAGCGTGGTAGCGGTGGGGCTTCGGGCGTGATGGCCGGG TCGGGAGGGTCGACGGCCGGGGGTTCGAGCGCGGTGGCCGGGTCGATGGC TGCCGTGGAGTCCGTGGGGCACCAGGCGGACAAGAAGGGCAAGCGCAGCT CGTCGTTGCGGAAGATGTACGATAGCCTCACGGGCGGCTTTAGCGGCAGT GCTGCCCAAAACAGCGCCGGCGGTACGGCGGGCGGCGGCAGCGGCGGCGG CGGGGGGGGTGGGGGCGGTGGGCCTGCTGGCGGCGGCGGCGGCGGAGGCG GTGGCACTGGCAGGGGAGCGGGCAGGCCGTCTAGGACTACTGCTCGGAAC CAGCTGGTGACGTCGGTGACGTCAAGGGATGTACGTGAGAAGTACGAGAT CGAGCGGTCACAACTGGGGCACGGGCACTACGGGGTGGTGCGGAGGTGCT GGGATAAGGAGACCCGTGAGATGTACGATAGCCTCACGGGCGGCTTTAGC GGCAGTGCTGCCCAAAACAGCGCCGGCGGTACGGCGGGCGGCGGCAGCGG CGGCGGCGGGGGGGGTGGGGGCGGTGGGCCTGCTGGCGGCGGCGGCGGCG GAGGCGGTGGCACTGGCAGGGGAGCGGGCAGGCCGTCTAGGACTACTGCT CGGAACCAGCTGGTGACGTCGGTGACGTCAAGGGATGTACGTGAGAAGTA CGAGATCGAGCGGTCACAACTGGGGCACGGGCACTACGGGGTGGTGCGGA GGTGCTGGGATAAGGAGACCCGTGAG back to top
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