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Homology
BLAST of mRNA_D-dichotoma_M_contig105.483.1 vs. uniprot
Match: D7G7A6_ECTSI (GTP-binding nuclear protein n=2 Tax=Ectocarpus TaxID=2879 RepID=D7G7A6_ECTSI) HSP 1 Score: 412 bits (1060), Expect = 1.410e-133 Identity = 202/213 (94.84%), Postives = 205/213 (96.24%), Query Frame = 1
Query: 247 MAQEMPEFKLILVGDGGVGKTTFVKRHVTGEFEKKYVATLGVEVRPLPFHTNRGPIKFNVWDTAGQEKFGGLRDGYYIQGQCAIIMFDVTSRITYKNVPNWHRDLTRVCEHIPIVLCGNKVEIKDRKVKAKQITFHRKKNLQYYDISAKSNYNFEKPFLWLAKKLVGDPNLQFVEQPALQPPEFVINQADQQRIENETLHAAQVPLPDEEDDL 885
MAQEMPEFKLILVGDGGVGKTTFVKRHVTGEFEKKYVATLGVEVRPLPFHTNRGPIKFNVWDTAGQEKFGGLRDGYYIQGQCAIIMFDVTSRITYKNVPNWHRDLTRVCEHIPIVLCGNKVEIKDRKVKAKQITFHRKKNLQYYDISAKSNYNFEKPFLWLAKKLVGD NLQFVEQPALQPPEFVINQADQ + + E AA VPLPDE+DDL
Sbjct: 1 MAQEMPEFKLILVGDGGVGKTTFVKRHVTGEFEKKYVATLGVEVRPLPFHTNRGPIKFNVWDTAGQEKFGGLRDGYYIQGQCAIIMFDVTSRITYKNVPNWHRDLTRVCEHIPIVLCGNKVEIKDRKVKAKQITFHRKKNLQYYDISAKSNYNFEKPFLWLAKKLVGDANLQFVEQPALQPPEFVINQADQLKFQQEIDAAAAVPLPDEDDDL 213
BLAST of mRNA_D-dichotoma_M_contig105.483.1 vs. uniprot
Match: A0A835YR82_9STRA (GTP-binding nuclear protein n=2 Tax=Tribonema minus TaxID=303371 RepID=A0A835YR82_9STRA) HSP 1 Score: 387 bits (994), Expect = 6.920e-124 Identity = 189/210 (90.00%), Postives = 197/210 (93.81%), Query Frame = 1
Query: 256 EMPEFKLILVGDGGVGKTTFVKRHVTGEFEKKYVATLGVEVRPLPFHTNRGPIKFNVWDTAGQEKFGGLRDGYYIQGQCAIIMFDVTSRITYKNVPNWHRDLTRVCEHIPIVLCGNKVEIKDRKVKAKQITFHRKKNLQYYDISAKSNYNFEKPFLWLAKKLVGDPNLQFVEQPALQPPEFVINQADQQRIENETLHAAQVPLPDEEDDL 885
EMPEFKLILVGDGGVGKTTFVKRH+TGEFEKKYVATLGVEVRPL FHTNRGPIKFNVWDTAGQEKFGGLRDGYYIQGQCAIIMFDVTSRITYKNVP WHRDLTRVCE+IPIVL GNKVEIKDRKVKAKQITFHRKKNLQYYDISAKSNYNFEKPFLWLA+KLVGDPNL FVEQPAL PPEF +++AD QR E E AA +PLPDE+DDL
Sbjct: 3 EMPEFKLILVGDGGVGKTTFVKRHLTGEFEKKYVATLGVEVRPLVFHTNRGPIKFNVWDTAGQEKFGGLRDGYYIQGQCAIIMFDVTSRITYKNVPYWHRDLTRVCENIPIVLTGNKVEIKDRKVKAKQITFHRKKNLQYYDISAKSNYNFEKPFLWLARKLVGDPNLMFVEQPALAPPEFQLDKADVQRFEQELEQAAAIPLPDEDDDL 212
BLAST of mRNA_D-dichotoma_M_contig105.483.1 vs. uniprot
Match: A0A7S3ZPZ2_9STRA (GTP-binding nuclear protein n=3 Tax=Pelagomonas calceolata TaxID=35677 RepID=A0A7S3ZPZ2_9STRA) HSP 1 Score: 376 bits (965), Expect = 5.110e-118 Identity = 184/217 (84.79%), Postives = 195/217 (89.86%), Query Frame = 1
Query: 235 SELTMAQEMPEFKLILVGDGGVGKTTFVKRHVTGEFEKKYVATLGVEVRPLPFHTNRGPIKFNVWDTAGQEKFGGLRDGYYIQGQCAIIMFDVTSRITYKNVPNWHRDLTRVCEHIPIVLCGNKVEIKDRKVKAKQITFHRKKNLQYYDISAKSNYNFEKPFLWLAKKLVGDPNLQFVEQPALQPPEFVINQADQQRIENETLHAAQVPLPDEEDDL 885
S L+ EMPEFKLILVGDGGVGKTTFVKRH+TGEFEKKYVATLGVEV PL FHTNRGPIKFNVWDTAGQE+FGGLRDGYYIQGQCAI+MFDVTSRITYKNVPNWHRDLTRVCE+IPIVL GNKVEIKDRKVKAKQITFHRKKNLQYYDISAKSNYNFEKPFLWLA+KL GD NL FVE PAL PPEF I+ AD R E E AA +PLP+++DDL
Sbjct: 102 STLSATMEMPEFKLILVGDGGVGKTTFVKRHLTGEFEKKYVATLGVEVHPLVFHTNRGPIKFNVWDTAGQERFGGLRDGYYIQGQCAIVMFDVTSRITYKNVPNWHRDLTRVCENIPIVLTGNKVEIKDRKVKAKQITFHRKKNLQYYDISAKSNYNFEKPFLWLARKLCGDNNLHFVEAPALAPPEFNIDAADAARYEAELREAANIPLPEDDDDL 318
BLAST of mRNA_D-dichotoma_M_contig105.483.1 vs. uniprot
Match: W7TTE5_9STRA (GTP-binding nuclear protein n=2 Tax=Monodopsidaceae TaxID=425072 RepID=W7TTE5_9STRA) HSP 1 Score: 366 bits (939), Expect = 8.030e-116 Identity = 179/213 (84.04%), Postives = 188/213 (88.26%), Query Frame = 1
Query: 247 MAQEMPEFKLILVGDGGVGKTTFVKRHVTGEFEKKYVATLGVEVRPLPFHTNRGPIKFNVWDTAGQEKFGGLRDGYYIQGQCAIIMFDVTSRITYKNVPNWHRDLTRVCEHIPIVLCGNKVEIKDRKVKAKQITFHRKKNLQYYDISAKSNYNFEKPFLWLAKKLVGDPNLQFVEQPALQPPEFVINQADQQRIENETLHAAQVPLPDEEDDL 885
M +PEFKLILVGDGGVGKTTFV+RH+TGEFEK+YVATLGVEV PL FHTNRG IKFNVWDTAGQEKFGGLRDGYYIQGQCAIIMFDVTSRITYKNVPNWHRDLTRVCE+IPIVLCGNKVEIKDRKVK KQI FHRKKNLQYYDISAKSNYNFEKPFLWLA+KL GD NL FVE PAL PPE +Q D R E E AA +PLPDE+DDL
Sbjct: 1 MTDFIPEFKLILVGDGGVGKTTFVRRHLTGEFEKRYVATLGVEVHPLLFHTNRGQIKFNVWDTAGQEKFGGLRDGYYIQGQCAIIMFDVTSRITYKNVPNWHRDLTRVCENIPIVLCGNKVEIKDRKVKPKQIIFHRKKNLQYYDISAKSNYNFEKPFLWLARKLTGDNNLHFVEAPALAPPEVAYDQNDMVRYEQELTEAAAMPLPDEDDDL 213
BLAST of mRNA_D-dichotoma_M_contig105.483.1 vs. uniprot
Match: A0A7R9ZLZ6_9STRA (GTP-binding nuclear protein n=1 Tax=Craspedostauros australis TaxID=1486917 RepID=A0A7R9ZLZ6_9STRA) HSP 1 Score: 367 bits (943), Expect = 1.620e-115 Identity = 182/212 (85.85%), Postives = 192/212 (90.57%), Query Frame = 1
Query: 247 MAQEMPEFKLILVGDGGVGKTTFVKRHVTGEFEKKYVATLGVEVRPLPFHTNRGPIKFNVWDTAGQEKFGGLRDGYYIQGQCAIIMFDVTSRITYKNVPNWHRDLTRVCEHIPIVLCGNKVEIKDRKVKAKQITFHRKKNLQYYDISAKSNYNFEKPFLWLAKKLVGDPNLQFVEQPALQPPEFVINQADQQRIENETLHAAQVPLPDEEDD 882
M+QE PEFKLILVGDGGVGKTTFVKRH+TGEFEKKYVATLGVEV PL FHTNRGPIKFNVWDTAGQEKFGGLRDGYYIQGQCAIIMFDVTSRITYKNVPNWHRDLTRVCE+IPIVL GNKVEIKDRKVKAKQITFHRKKNLQYYDISAKSNYNFEKPFLWLA+KL GD L FVE PALQPPEF I++ + R E E AA PLP+++DD
Sbjct: 59 MSQE-PEFKLILVGDGGVGKTTFVKRHLTGEFEKKYVATLGVEVHPLTFHTNRGPIKFNVWDTAGQEKFGGLRDGYYIQGQCAIIMFDVTSRITYKNVPNWHRDLTRVCENIPIVLTGNKVEIKDRKVKAKQITFHRKKNLQYYDISAKSNYNFEKPFLWLARKLSGDNALHFVEAPALQPPEFTIDEQTKARYEAEIAEAANKPLPEDDDD 269
BLAST of mRNA_D-dichotoma_M_contig105.483.1 vs. uniprot
Match: A0A1E7FMC8_9STRA (GTP-binding nuclear protein n=19 Tax=Ochrophyta TaxID=2696291 RepID=A0A1E7FMC8_9STRA) HSP 1 Score: 363 bits (933), Expect = 6.480e-115 Identity = 178/207 (85.99%), Postives = 188/207 (90.82%), Query Frame = 1
Query: 262 PEFKLILVGDGGVGKTTFVKRHVTGEFEKKYVATLGVEVRPLPFHTNRGPIKFNVWDTAGQEKFGGLRDGYYIQGQCAIIMFDVTSRITYKNVPNWHRDLTRVCEHIPIVLCGNKVEIKDRKVKAKQITFHRKKNLQYYDISAKSNYNFEKPFLWLAKKLVGDPNLQFVEQPALQPPEFVINQADQQRIENETLHAAQVPLPDEEDD 882
PEFKLILVGDGGVGKTTFVKRH+TGEFEKKYVATLGVEV PL FHTNRGPIKFNVWDTAGQEKFGGLRDGYYIQGQCAIIMFDVTSRITYKNVPNWHRDLTRVCE+IPIVLCGNKVEIKDRKVKAKQITFHRKKNLQYYDISAKSNYNFEKPFLWLA+KL GD L FVE PALQPPEF ++ + + E E AA PLP+++DD
Sbjct: 7 PEFKLILVGDGGVGKTTFVKRHLTGEFEKKYVATLGVEVHPLNFHTNRGPIKFNVWDTAGQEKFGGLRDGYYIQGQCAIIMFDVTSRITYKNVPNWHRDLTRVCENIPIVLCGNKVEIKDRKVKAKQITFHRKKNLQYYDISAKSNYNFEKPFLWLARKLSGDNALHFVEAPALQPPEFQFDENLKNQYEQELQAAAAQPLPEDDDD 213
BLAST of mRNA_D-dichotoma_M_contig105.483.1 vs. uniprot
Match: A0A024GC68_9STRA (GTP-binding nuclear protein n=4 Tax=Oomycota TaxID=4762 RepID=A0A024GC68_9STRA) HSP 1 Score: 362 bits (929), Expect = 2.400e-114 Identity = 179/214 (83.64%), Postives = 191/214 (89.25%), Query Frame = 1
Query: 247 MAQEMPEFKLILVGDGGVGKTTFVKRHVTGEFEKKYVATLGVEVRPLPFHTNRGPIKFNVWDTAGQEKFGGLRDGYYIQGQCAIIMFDVTSRITYKNVPNWHRDLTRVCEHIPIVLCGNKVEIKDRKVKAKQITFHRKKNLQYYDISAKSNYNFEKPFLWLAKKLVGDPNLQFVEQPALQPPEFVINQADQQRIENETLHAA-QVPLPDEEDDL 885
MAQ+MPEFKLILVGDGGVGKTTFVKRH+TGEFEKKYVATLGVEV PL FHTN GPI+FN WDTAGQEKFGGLRDGYYIQGQCAIIMFDVTSRITYKNVPNW+RDL RVCE+IPIVLCGNKVE+KDRKVKAKQITFHRKKNLQYYD SAKSNY FEKPFLWLA+KLVGD NL FVE PAL PPE I Q +IE + AA Q+PLPDE++DL
Sbjct: 1 MAQQMPEFKLILVGDGGVGKTTFVKRHLTGEFEKKYVATLGVEVHPLVFHTNFGPIRFNCWDTAGQEKFGGLRDGYYIQGQCAIIMFDVTSRITYKNVPNWYRDLVRVCENIPIVLCGNKVEVKDRKVKAKQITFHRKKNLQYYDCSAKSNYQFEKPFLWLARKLVGDNNLTFVEAPALAPPEVTITQEQINQIEADNRAAALQLPLPDEDEDL 214
BLAST of mRNA_D-dichotoma_M_contig105.483.1 vs. uniprot
Match: A0A7S2RFE4_9STRA (GTP-binding nuclear protein n=1 Tax=Eucampia antarctica TaxID=49252 RepID=A0A7S2RFE4_9STRA) HSP 1 Score: 362 bits (928), Expect = 3.600e-114 Identity = 178/213 (83.57%), Postives = 190/213 (89.20%), Query Frame = 1
Query: 241 LTMAQEMPEFKLILVGDGGVGKTTFVKRHVTGEFEKKYVATLGVEVRPLPFHTNRGPIKFNVWDTAGQEKFGGLRDGYYIQGQCAIIMFDVTSRITYKNVPNWHRDLTRVCEHIPIVLCGNKVEIKDRKVKAKQITFHRKKNLQYYDISAKSNYNFEKPFLWLAKKLVGDPNLQFVEQPALQPPEFVINQADQQRIENETLHAAQVPLPDEED 879
++ AQ PEFKLILVGDGGVGKTTFVKRH+TGEFEKKYVATLGVEV PL FHTNRGPIKFNVWDTAGQEKFGGLRDGYYIQGQCAIIMFDVTSRITYKNVPNWHRDLTRVCE+IPIVLCGNKVEIKDRKVKAKQITFHRKKNLQYYDISAKSNYNFEKPFLWLAKKL GD L VE PAL P+F I+++ ++R E E AA PLP++ D
Sbjct: 1 MSAAQGSPEFKLILVGDGGVGKTTFVKRHLTGEFEKKYVATLGVEVHPLVFHTNRGPIKFNVWDTAGQEKFGGLRDGYYIQGQCAIIMFDVTSRITYKNVPNWHRDLTRVCENIPIVLCGNKVEIKDRKVKAKQITFHRKKNLQYYDISAKSNYNFEKPFLWLAKKLSGDNQLTLVEAPALAVPDFDIDESTKRRYEAELAQAALEPLPEDSD 213
BLAST of mRNA_D-dichotoma_M_contig105.483.1 vs. uniprot
Match: A0A812EKK0_SEPPH (GTP-binding nuclear protein n=1 Tax=Sepia pharaonis TaxID=158019 RepID=A0A812EKK0_SEPPH) HSP 1 Score: 360 bits (925), Expect = 1.510e-113 Identity = 172/211 (81.52%), Postives = 190/211 (90.05%), Query Frame = 1
Query: 253 QEMPEFKLILVGDGGVGKTTFVKRHVTGEFEKKYVATLGVEVRPLPFHTNRGPIKFNVWDTAGQEKFGGLRDGYYIQGQCAIIMFDVTSRITYKNVPNWHRDLTRVCEHIPIVLCGNKVEIKDRKVKAKQITFHRKKNLQYYDISAKSNYNFEKPFLWLAKKLVGDPNLQFVEQPALQPPEFVINQADQQRIENETLHAAQVPLPDEEDDL 885
+EMP FKL+LVGDGGVGKTTFVKRH+TGEFEKKYVATLGVEV PL F+T RGPIKFNVWDTAGQEKFGGLRDGYYIQGQCAIIMFDVTSR+TYKNVPNWHRDL RVCE+ PIVLCGNKV++KDRKVKAK ITFHRKKNLQYYDISAKSNYNFEKPFLWLA+KL+GDPNL+FVE PALQPPE ++Q + E E A ++ LPD++DDL
Sbjct: 18 KEMPTFKLVLVGDGGVGKTTFVKRHMTGEFEKKYVATLGVEVHPLVFYTARGPIKFNVWDTAGQEKFGGLRDGYYIQGQCAIIMFDVTSRVTYKNVPNWHRDLVRVCENTPIVLCGNKVDVKDRKVKAKTITFHRKKNLQYYDISAKSNYNFEKPFLWLARKLIGDPNLEFVEMPALQPPEVEMSQTLALQYEKELEEAQRIALPDDDDDL 228
BLAST of mRNA_D-dichotoma_M_contig105.483.1 vs. uniprot
Match: A0A8J4Z522_9CHEL (GTP-binding nuclear protein n=1 Tax=Nymphon striatum TaxID=424472 RepID=A0A8J4Z522_9CHEL) HSP 1 Score: 360 bits (923), Expect = 2.140e-113 Identity = 170/208 (81.73%), Postives = 189/208 (90.87%), Query Frame = 1
Query: 259 MPEFKLILVGDGGVGKTTFVKRHVTGEFEKKYVATLGVEVRPLPFHTNRGPIKFNVWDTAGQEKFGGLRDGYYIQGQCAIIMFDVTSRITYKNVPNWHRDLTRVCEHIPIVLCGNKVEIKDRKVKAKQITFHRKKNLQYYDISAKSNYNFEKPFLWLAKKLVGDPNLQFVEQPALQPPEFVINQADQQRIENETLHAAQVPLPDEEDD 882
+P FKL+LVGDGG GKTTFVKRH+TGEFEKKYVATLGV+V PL FHTNRGPIKFNVWDTAGQEKFGGLRDGYYIQGQCAIIMFDVTSR+TYK+VPNWHRDL RVCE+IP+VLCGNKV++KDRKVKAK I FHRKKNLQYYDISAKSNYNFEKPFLWLA+KL+GDPNL+FV PAL PPE V++ A Q+RIE E A QV LPD+++D
Sbjct: 10 VPTFKLVLVGDGGTGKTTFVKRHLTGEFEKKYVATLGVDVHPLIFHTNRGPIKFNVWDTAGQEKFGGLRDGYYIQGQCAIIMFDVTSRVTYKHVPNWHRDLVRVCENIPVVLCGNKVDVKDRKVKAKAIVFHRKKNLQYYDISAKSNYNFEKPFLWLARKLIGDPNLEFVAMPALLPPEIVMDPALQKRIEEEMKEAQQVSLPDDDED 217
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 | 417.9 |
| Seed ortholog evalue | 2.8e-114 |
| Seed eggNOG ortholog | 2880.D7G7A6 |
| KEGG ko | ko:K07936 |
| KEGG Pathway | ko03008,ko03013,ko05166,ko05169,map03008,map03013,map05166,map05169 |
| GOs | GO:0000003,GO:0003006,GO:0003674,GO:0005488,GO:0005515,GO:0007275,GO:0007276,GO:0007281,GO:0007292,GO:0008150,GO:0009790,GO:0009792,GO:0009987,GO:0019953,GO:0022412,GO:0022414,GO:0030154,GO:0032501,GO:0032502,GO:0032504,GO:0044703,GO:0048468,GO:0048477,GO:0048609,GO:0048856,GO:0048869,GO:0051704 |
| EggNOG free text desc. | ribosome localization |
| EggNOG OGs | KOG0096@1,KOG0096@2759 |
| COG Functional cat. | A |
| Best tax level | Eukaryota |
| Best eggNOG OG | NA|NA|NA |
| BRITE | ko00000,ko00001,ko03009,ko03016,ko03019,ko03036,ko04031,ko04147 |
| Hectar predicted targeting category | other localisation |
| Ec32 ortholog description | RAN, Ras superfamily GTPase |
| Ec32 ortholog | Ec-04_003550.1 |
| Exons | 7 |
| Model size | 3332 |
| Cds size | 642 |
| Stop | 1 |
| Start | 1 |
Relationships
The following UTR feature(s) are a part of this mRNA:
| Feature Name | Unique Name | Species | Type | Position |
| 1622927541.772464-UTR-D-dichotoma_M_contig105:118675..118921 | 1622927541.772464-UTR-D-dichotoma_M_contig105:118675..118921 | Dictyota dichotoma ODC1387m male | UTR | D-dichotoma_M_contig105 118676..118921 + |
| 1690798026.8903093-UTR-D-dichotoma_M_contig105:118675..118921 | 1690798026.8903093-UTR-D-dichotoma_M_contig105:118675..118921 | Dictyota dichotoma ODC1387m male | UTR | D-dichotoma_M_contig105 118676..118921 + |
| 1622927541.8992953-UTR-D-dichotoma_M_contig105:126177..128621 | 1622927541.8992953-UTR-D-dichotoma_M_contig105:126177..128621 | Dictyota dichotoma ODC1387m male | UTR | D-dichotoma_M_contig105 126178..128621 + |
| 1690798026.9865334-UTR-D-dichotoma_M_contig105:126177..128621 | 1690798026.9865334-UTR-D-dichotoma_M_contig105:126177..128621 | Dictyota dichotoma ODC1387m male | UTR | D-dichotoma_M_contig105 126178..128621 + |
The following CDS feature(s) are a part of this mRNA:
| Feature Name | Unique Name | Species | Type | Position |
| 1622927541.8105054-CDS-D-dichotoma_M_contig105:118921..118924 | 1622927541.8105054-CDS-D-dichotoma_M_contig105:118921..118924 | Dictyota dichotoma ODC1387m male | CDS | D-dichotoma_M_contig105 118922..118924 + |
| 1690798026.90957-CDS-D-dichotoma_M_contig105:118921..118924 | 1690798026.90957-CDS-D-dichotoma_M_contig105:118921..118924 | Dictyota dichotoma ODC1387m male | CDS | D-dichotoma_M_contig105 118922..118924 + |
| 1622927541.822832-CDS-D-dichotoma_M_contig105:121720..121829 | 1622927541.822832-CDS-D-dichotoma_M_contig105:121720..121829 | Dictyota dichotoma ODC1387m male | CDS | D-dichotoma_M_contig105 121721..121829 + |
| 1690798026.9272106-CDS-D-dichotoma_M_contig105:121720..121829 | 1690798026.9272106-CDS-D-dichotoma_M_contig105:121720..121829 | Dictyota dichotoma ODC1387m male | CDS | D-dichotoma_M_contig105 121721..121829 + |
| 1622927541.8374135-CDS-D-dichotoma_M_contig105:123061..123179 | 1622927541.8374135-CDS-D-dichotoma_M_contig105:123061..123179 | Dictyota dichotoma ODC1387m male | CDS | D-dichotoma_M_contig105 123062..123179 + |
| 1690798026.9364421-CDS-D-dichotoma_M_contig105:123061..123179 | 1690798026.9364421-CDS-D-dichotoma_M_contig105:123061..123179 | Dictyota dichotoma ODC1387m male | CDS | D-dichotoma_M_contig105 123062..123179 + |
| 1622927541.8582833-CDS-D-dichotoma_M_contig105:124044..124174 | 1622927541.8582833-CDS-D-dichotoma_M_contig105:124044..124174 | Dictyota dichotoma ODC1387m male | CDS | D-dichotoma_M_contig105 124045..124174 + |
| 1690798026.9458895-CDS-D-dichotoma_M_contig105:124044..124174 | 1690798026.9458895-CDS-D-dichotoma_M_contig105:124044..124174 | Dictyota dichotoma ODC1387m male | CDS | D-dichotoma_M_contig105 124045..124174 + |
| 1622927541.8688257-CDS-D-dichotoma_M_contig105:124479..124619 | 1622927541.8688257-CDS-D-dichotoma_M_contig105:124479..124619 | Dictyota dichotoma ODC1387m male | CDS | D-dichotoma_M_contig105 124480..124619 + |
| 1690798026.9564178-CDS-D-dichotoma_M_contig105:124479..124619 | 1690798026.9564178-CDS-D-dichotoma_M_contig105:124479..124619 | Dictyota dichotoma ODC1387m male | CDS | D-dichotoma_M_contig105 124480..124619 + |
| 1622927541.8799427-CDS-D-dichotoma_M_contig105:124767..124843 | 1622927541.8799427-CDS-D-dichotoma_M_contig105:124767..124843 | Dictyota dichotoma ODC1387m male | CDS | D-dichotoma_M_contig105 124768..124843 + |
| 1690798026.9648876-CDS-D-dichotoma_M_contig105:124767..124843 | 1690798026.9648876-CDS-D-dichotoma_M_contig105:124767..124843 | Dictyota dichotoma ODC1387m male | CDS | D-dichotoma_M_contig105 124768..124843 + |
| 1622927541.8898702-CDS-D-dichotoma_M_contig105:126111..126177 | 1622927541.8898702-CDS-D-dichotoma_M_contig105:126111..126177 | Dictyota dichotoma ODC1387m male | CDS | D-dichotoma_M_contig105 126112..126177 + |
| 1690798026.974275-CDS-D-dichotoma_M_contig105:126111..126177 | 1690798026.974275-CDS-D-dichotoma_M_contig105:126111..126177 | Dictyota dichotoma ODC1387m male | CDS | D-dichotoma_M_contig105 126112..126177 + |
The following polypeptide feature(s) derives from this mRNA:
Sequences
The following sequences are available for this feature:
protein sequence of mRNA_D-dichotoma_M_contig105.483.1 >prot_D-dichotoma_M_contig105.483.1 ID=prot_D-dichotoma_M_contig105.483.1|Name=mRNA_D-dichotoma_M_contig105.483.1|organism=Dictyota dichotoma ODC1387m male|type=polypeptide|length=214bp
MAQEMPEFKLILVGDGGVGKTTFVKRHVTGEFEKKYVATLGVEVRPLPFH TNRGPIKFNVWDTAGQEKFGGLRDGYYIQGQCAIIMFDVTSRITYKNVPN WHRDLTRVCEHIPIVLCGNKVEIKDRKVKAKQITFHRKKNLQYYDISAKS NYNFEKPFLWLAKKLVGDPNLQFVEQPALQPPEFVINQADQQRIENETLH AAQVPLPDEEDDL* back to topmRNA from alignment at D-dichotoma_M_contig105:118676..128621+ Legend: UTRpolypeptideCDS Hold the cursor over a type above to highlight its positions in the sequence below. >mRNA_D-dichotoma_M_contig105.483.1 ID=mRNA_D-dichotoma_M_contig105.483.1|Name=mRNA_D-dichotoma_M_contig105.483.1|organism=Dictyota dichotoma ODC1387m male|type=mRNA|length=9946bp|location=Sequence derived from alignment at D-dichotoma_M_contig105:118676..128621+ (Dictyota dichotoma ODC1387m male) CTGTACTGTACACGTAACGGTTGTTGGAATCGATACTGTTTTCGCATGCT
CTTTTCTAGTCGGTCTTTTCCCATCACATATCGTCGGTATGAAACCTGTT
TTCGTCGGTATCATCCGCCCGCCACCAGCCCATAAGCGGCACATAACCTC
TGATCCTGGTACCTACGTGTTGCCCTGAAACAAAGCTCCTGGGTCAAAAA
GCGACCAGATCAAAGCACTAAGCACGTCCAGAAATCAGAATTGACCATGG
TGAGAGGGGAGGGTGAGAGTTGGTTGCTTGACTTCCTGGATGTTTCTAAT
TATTCAGAAATATATGTTTGGCACTCGAGACGTGTTGGAGTGCGATTGCG
GCTCCTCATGGGGGAAAAGGGCGTAGAGAGTCGGCGAGCATCAGCCAGAG
GAAACTATTGGAAGTGATAAAGCCGTGGTGACTCCTTGGAATGTGTGAGG
TATGAGCAACTCAAGCATTGGTCGTGGATAATGGGAGGGAACTAGGTCTC
TCTTGGTGTCGATCCTGATGATCAATCTAGCCACCACCCGCCTTATGTGT
TTCCTCGGGCAGTAATGATGCAGGGGCCGCGTATCGAAGTTGAGACGTGT
AACTCTTGCGTTGCGGCTGACAACCATTTTAAAAGCTTGATTCTCCTCTT
CATGATTTTTTCATTAAATACTATCTGACAACCCTTGGGGTGGGCCTCGT
CGCTTGCTCTGATGGCAGTTAGGTTTCCTGGTCTTCTGAAAACGCTTGCA
CTTGTCCCGCCCATCCCTCTCCAAAGCTAAACTTACACGCTGTAACACGA
TGACGGGAAGTAGTACTTGATGTCCCAACACATGTTGAGCCGATGACCCT
GACTTTTCGAAACCTGCGAAGTGCAGAGCATGAACTACCCAGCATCCCTC
CATGATACCCATGGAACTTGACTACCTTGCCCGACGTCGACCAGAAGTAA
GAGATTTGCTTACCCCCCTCAAGTTTTATCTCGCCTGGTACTAATGTGCG
GCCGTCCGTCGGCCAGATAAACTGCCGGTTATACAGCTGTTCGTGTGGGC
CGATTTTTTTTTGTCTTCACTCGTCTCCAATTGCGACCCCCTGTAATTTC
TTCGTCTCCGTTTGTCCTTCGAGGGGCGCGAGCCGTTCTACGAGCATCAA
ATATCTCTTCCCATGTAAATTGTGTTTTGGGTGATTCGAGCGACTTCTCC
TTGGGCTCTCGAAGCCACCAGTGTTTCAGCAAGTTGTCCCAACGGCCGTT
TTTCTCCCTGACCCTCCTGGAGGCCACCCATTGGATCTAAGAGAAGAGTC
ATTTCTGTTCGGAATCATGCGTTCTAGGCCGGTTTATCCTGCCCTGCTCC
TTACTCCTGTAGATCTCGTGGCGTATAGTCTTCGTAATGCTCCGTCCCAA
GCCGTCGAAAAAAAGTGGGTCGATGGGAAGTTCGGATGTTCTCCTTCGTT
TCCCCTTTCCGATCGCATGTTCCATCAGGCGAACATCTCGTCCGTATCCC
AACACAGGCACGTTCGAAACCTAGCAGGATGGGTCTCAGCAGCAGGAAAT
CTTCCAGTGCTTGTCGTGGCATCCTTACAGAGGATGATTGTCCCTTCGCT
CTCATCTGACCTTTGCCTGAAACACATGGGAAGTGTCTTTTGGGAGGCGA
AGTGTTCCGCTTCGTCACACATCTTCAAGCTCTTCAAGAGTGCGTGCCAT
GCGACACCTTTCTTGCGCTGCGCTCGCCACATGACCTGGGCGTTGGGCCA
GACGTACCCTCTCGGCCTTAAATATTTTAATTATTTTTAATTTTTTGGCG
CACCTGCACGTTTCGTGATGCGAGGTTGAGCCCGAAAGGACGTGGAAGAT
TGCTGCTGAAATTGCTCCGAACTGGAATCCTCGTCTCACACCTTCACGCT
TCGCTTGAAGGCATCTTTTTCAAACTTCATATTGATTGACCGTGACAAGT
ACCTCGAGCGTGGAGATTGTAGTAATTACCAGGGACCACATCATGGACGC
ACTTCCGCCTCTTGTAATGGTATCCGAAGTGTCTTCCCTCGAGAGGGGGA
AATAATTTGCTTTATTGAAGGTGTCGGTCGTATTAGTTCGTTAGGCGCTC
ATGTGCGGCATCTAGAGGCTGCAAATTTGTCCCACCGCATTTTTTGGAGC
GAGGCCCACAGGGGGGCAAGGGGCAAAACGAAAGAAGCCAAGACGACAGA
AACGGTTATCACCCCTGATTGTTGGGACACGATCGGTTAGTATCATGAGC
TCTTAATACACTGAGCCGGCCCTTTCCCGTCCTGTCCATGGGAAAAGCAA
TACAATCATGTTAGGGCGGTACTGCGGTACTCCATGGATGGAGAGGAAGA
CAGACACGCCTATTGCACTTTCTCCATCCACCCAGAAAGCGGAATTCAGC
TCGTCACGCTATGTTCGGATGCCAATCCCTCTCTTCTCCCTCATTGTCGA
AGGCACTAGCAACACTTTGCAGCGGCGGCGCGTTGAGGCACCGAGAGGCG
AAAGACATGGATATCGTGTTTTTCTATCGACCGCACGGCAGACGGAGCTA
GCCGGTTTTGTTTCAAAACTCATCTTCGACGAACATTTCTGTCCCCCATG
TGAATAGCATCAGTGCTGCTCGGAGCCTCTCAATGGGTGCTTCCCTCGGT
ACTCATGGGCTCTTTTCTCGGGAAGGCAATCCCGCCCAGGGCTCGCTCAG
GCGTCGTAGTTGTTTTTTCTCTGCGGAATTTGTGCACGCCCTTGTGGAAC
AGGAGTGCTGCTAGCAGCCTTTCGGCGACCGTCGAAGCATAGGTAGGGGT
GGCATTTGCATTTCATGGACTGTCTTAGAATGTAGTCGAGACGTTCGTGT
TTGCAGCACACGACGCCACCGCGTATTCATGAGCTCACAACCTGGAGATG
GTATTTTGCAGGTTAGTGGGTCATGCGGTGATGCAGTTGCGTCGAGGTGG
CGGAGTTACATGACCCACTGCGCTGAAATCTCTCCTGTTTACCGTGGGTC
GGCTGTCTGGCGTGGGGATGGATAACCGTGGCTCCCCTTCCCTAGGCGCA
AGAGATGCCTGAGTTTAAGCTCATCCTCGTCGGTGATGGCGGGGTGGGCA
AGACCACTTTTGTTAAGCGACACGTGACGGGAGAATTCGAGAAGAAGTAC
GTCGGTAAGTGCCCAATAATTAGGGGATTATTATACAGTCAGCCAACAAG
AACCATTATCCTCTCTGTGATGGCTTTGTTTTTTTGAAGGGTGTGCACGA
TGTAAGCCTCGTGTTTGAGGTCCTTGAAGTCCGTGAGGATTCGTGGATAA
ATGTTGAGATATTGAGATTCATGTTCCAGATCTTTATTCCGTCGAAGACT
CATCTGAGGTACCAGCAATCGATGAATCCCCTTGCACGGGCGAACCTGGA
CACCCTTCCCGCTGGCAATCAACATTTGGATCGATCTTCAAGTTCTGCAG
ATCAAACAAAGAGTGCGGGGGGCTTGGGTTTCAGATTTTAAACGTTTTTT
GGTCGACGGCCGTTGTATCGGTGGAAAATTACATATTTGTGGCTGCATTC
TCCCTGCCAGTGAAATAGAAAGGAATTTCGCTTCTCGTCGTTTTAACTTC
TGTACGAAGTGCATCATGTGGATGATGCTTTGGGATTGGAGTAGGCTTGT
GTCTTGGTTTCTGCGGTTGCGATGTACTAAGTCCCCACGTAAAGGTGGTC
GACAAATTGTCCGTAGTCGGTGACCCCTTTTCGAGTAAATGCTCAAGGTA
GTGGAGTCCCAAGTTGTCGTGGATACAGCTGTGCAGTATTTCTTCCGCAG
GATCATGCTCTAGGAATGATCCATTCATTTTGTTCCGTGCGCTTGCGTTT
GGAGTAATGCAAGGTTAAAGGAGTAAACCACGTTCCTTCGGTAATATCTC
CAAAGAATTGCCAATAGCAAACAAATGGGCTCTTCCATCAGTTCACGTAG
AGAAATAATAAATCAAATCCAAGATCTGTTTCGTTGCAGTTGAATCCGTG
GCCACCGCTAGTGGAAACCCCGGTTAGACGGGGGCACGTCAGTTGGACTT
TGTGGATTCGTCGCGGGTCTCTAGCAGATTCGGTTAGACACATCGAATCC
CTTCACCGCTTATATCTAGTCGATGGTTAAGGATTGAAGTGACATGTCCG
AAAGATTTGGGTTTTTCTACAGATTGCATTTGCTCGTCCGAGGTGCACGC
TCTGACTTATGAGCACAGCTTGGGTTAAAAGTTAAATTCCTTTGGTTTCA
TTACGATTTTTCTTTCTGTACCTTGAAGATGGAGTCGATGCGGTGCATAC
GCGTCATGTTCAGGAGCTGTCATATGATGAGATCGAACCAACGTCGCTGA
ACTGAAATATGTGGCGATACACTTCACGTGCTGCAGCAACGCTGGGCGTG
GAGGTTCGTCCTCTCCCGTTCCACACAAACCGAGGCCCGATCAAGTTCAA
CGTGTGGGACACTGCTGGTCAGGAGAAGTTCGGCGGCCTCAGGGACGGAT
ACTAGTGAGTCCGAACGAGTTGGTTTGGTCCATTTCTTGCAGCCCGCCGT
GTCTGCTTTCATCGGTGTGCATGCGAAGGAAGCGAGGTGCATTGGCCAGT
TTCATTTGGTGCTGAAGTATGCTCGTGAGTCAGGCCACTCCTGGGATTGC
CGCTAATCTTGTGCTACCGCGGGAGTTGCGATGGGTCAAGTATTTGGATC
GATGAATGGATCTTCAAAAAGCCTTCGCAATCTTTGATCTTTTCATTGTT
ACGATTACTGCTCGTGGTCTGCTGGAAAACGATTGATGGGAATGGTGCGC
GGATCGGGGGAAGGGATTGAGGATGGGAAGGTGATTGCGGGGGCCCCAGT
GGCGCTGCAGGCGGGAGGAGACGAGGTGTCGTCCGCGAAGAGTCGTAATC
AATGCGCTACTTTTCCCTGTTTTCATCGATAATCGAAGTCATTCGTCCAA
GTAACCTGTTTATCCAAATCGATTCTACTTCAAGGGACTTGCACCCCGTT
CACGTTATTTCACGATTTCTCGCTTTCGTTGCATGGAAGGGAACGACGGC
ACCTCGCTGTGGGTCGATTTTGTTCCATGCAGTCGCCATAACGCCAAAAT
ACTAGAACGGATTACCTGGACTAACGCCTTCGATTTTCCATGCAAACGGA
AGAGAAATAGCGTGTTGATAACGGCCCTAGGGTGGGCGTTTGGAGTTCTT
GTGTAGGCTACCACCACCCCGGTTTGGCGCTAAGCTGGTGTTGTGTCGTA
GCTCTCAAGATTCTTGCGCTTCGTCAAGCGCTCGTTGTGCCTGGCTCCCC
TCAATCCCCTGATGTGGACTCTTTTGCTTTTGCATGTGCTCGTGTTGCGG
TGTTTGCTGTTATGTCCAGCATCCAGGGTCAGTGTGCCATCATCATGTTC
GACGTAACGAGCAGGATCACATACAAGAACGTACCCAACTGGCACCGAGA
TCTGACCAGGGTCTGCGAGCACATCCCGATCGTGTTGTGTGGGAACAAGG
TGAGATGCGGTAGATGTGGTTGAGGAGGGAGGGGTGCTCGTGACCTTTGA
CTTCTTGAATGCAGTTGGTCCTGATTTCATCGTGCATGTTCATAAGCGAG
CGTCGTATAAGCCAAGACCGACCCCATTTGCTGACTTATCCGGAACTCGC
CTACAGCGTCCACCCTGATAACCCTTTTTCTCGGCATGGGGTGAATTTGA
AAGCCTAAGTGAGGTATTACCGAGTATTCGAAGAAGTTAAGTGCAATTGG
AGTGGTTCGTGATGTCTATGTACGTTTCTCCTGCTGACGAAATTGTGCTA
CCAGGTGGAGATCAAGGACCGTAAGGTGAAGGCGAAGCAGATCACGTTCC
ACCGTAAGAAGAATCTTCAGTACTACGACATCTCGGCAAAGTCCAATTAT
AACTTCGAGAAGCCCTTCCTGTGGCTTGCGAAGAAGCTAGTCGGGTAAGT
CTTGGGTTGGCTAGGACGAACTCATGACACGATGTTCGATGCCCCACATC
GTACATGTGCAATATTTGGTCTTGTTATCCTTCCCTTCAGTATCTGTCTG
GCCTTCTGCTGTGCCTGAATGGTCCGGTTCGCTGTCATGCAGGGACCCAA
ACCTCCAGTTCGTGGAGCAGCCAGCGCTGCAGCCACCCGAGTTTGTCATC
AACCAGGCGGACCAACAGGTGTGTCGCGCCGAGCTGCAGTTTACTCTGCA
CATGGTTTTTGGTTAGCCGTGGGAACCTTCAAGTCGGGATATTCCCAGGA
GAAATCTGAGTCCTACGCAATCTTTCCTAAAGTGGCAAGCGATACTCTTG
TTTGCTTGATTGGCCGACTGGTGGGGTTGCATTCTGCCCTTTCAAGTCGG
GGATGACAAGCTACGAGCTGGTTTATATAGATTGCCATTAGATTCGGAGA
GATTCAGGCGTCTATATAAATTGCCATTAGATGACCAATTCTTGGAATTA
CACCATGAAAGTTTGACACCATATTTTGAACACATCTATAAAGAAAGTGG
GACATTAAAAAGAGCGGAAGGAGTCGACATAACAAGATTAGATGACATTG
CAGGGTTGGCCGTTTGGCGGGGAAATAGTATGTTTGGACTATCCCACTAC
TGTCGGTTTTTGGCACCTGTTTTGATGTTACCCTCATGGGATTGTTTGTT
CACAAAAAAAAACATGAATGTAATGTTTCAGCTTCAAATAAACCAAAATG
GGCGTAGAATGGCGAATTTCCTTTAGGGGGCATTGTATCTCGAATTAAGT
GTGGAATAGCTGTTTTCCATGTCCCCCTACTCCTGTTCTTTTTTTggGGG
GGGGGCGAGGCTTGCGGAGGAATCTAGGAGAAGCAAGGGACACCATCGCA
AAATTTCGTAGAAAAACCCGTTGACTCGATTGTCGTGGAATTGGCCCCAA
AGAGTTTGATTTCACCTCCCTATTTTGAACTATAGGGCATTCCTTGCCGA
GACTTGTGCAAGCTCTTAGGGAAAATGGCGAAGTATATTCTCCTATATCA
GGTGACTGGTGTGATGCTTTCAGATTCGTGAGATTCAATGTATAGCAGTA
GCTGTTCAATAGACTTGTTCCCTGAGTTTCTTCGCTTGACCAGCCTGTAG
AGTGGCTGTGTTGGGTTAGAACTAAAAATATGAGTATTCGACCGAAAGCA
TATTTAATGCCAGTCCATTGGACCAGATAACTCTTTATTAAGTCAAGTGC
TGTGTATCGTAAGGACAGTACTTGACATTCAAACGGTAGGAAACGAATGT
TCAGGTCGAAATCACCTGGACTTACTATGCATCCATTCGAATCTCAATCT
TTTTGATAGTTACAACTACTGCTTTTGCCTTGGCGTCCCTCGGCGTGTTG
TGTTTCTCGGCTGCCGTGAATGACTTGTGGGATACTCACGTTTACCTCCA
ACTTTCTGCTGTTTCCCGTCTGGCACGTTATCCCAGCGCATCGAAAACGA
GACACTTCACGCAGCGCAGGTTCCCCTGCCCGACGAGGAAGACGACCTTT
GAGCCGTCTCCTCCGTTACCCAAACCGACCGCACTGTGGCCTTCATGGCG
GGAAATCAGAATATAAACTCCGGGCAGGGAGGGAGCATGCCCGAATGGAG
TTGGTTGAGGGCTGGAAGGCGAGATTCCCGAAAAGAGGGAAGCACGGGAG
GATAGTCACGTAGGCGTGACAGCCGTGGCGAGAGTCTTGGGTGGTAGCAT
ACTGGTGTTTGGTTCACGGTTTCTGTCGGGGGTCTTGTTCTTGTTGGCGT
TTTTCTCTTTTCACTACTCGGGATTGGTGTCCAAGTTCATGTTGCGTTGG
GAGTAGCCCGGCCCACTTGGTGTGTGCTCGGGACTGTCAAGTCGCCTTTT
TTCTGTCGTGGCTTTCGTCGCTCGCAGCCTGGTCATCCACGATGGATTGC
TGGTATTCTCCGCTTTCGTTTACTTGCGAGTGCTTTCTTCGCCTTACTCC
TCCTTTCCGAATGTTGCGATTTCCTTTTGCCATGGCATATTTGCTGCCAC
AAATCAGCCGTGGGATGCAGAAATTCGTGTGGTCATGTATAGCCGTAGGT
CGGCCCTCAGCTGCTCCATGTTGGTCCCGCATCACGTGCCATGCGTCGAT
GGACGGGTGGATCATAGTTGAGAGGTTAAGGAACAAATAGATGCCTTCGG
AGGAGGACGGGCTGTATCCCGTCATGTTGCTTTCGAGCTCTCGGTAGATC
CTCATCCGTTGATCGAACGAGGTGTCGAGGCAATCGAAGTGGCCACTTAT
TCGTGGAAGCGTGCTGCTTTGCTGATGTGCGCTTATGTCTTGGGTTCCGG
TGGTCCCGAAACCAGCTGATCCTGTCTTGGGGCTTCCATCGGAAAAAGCA
GATATGACTGATTGGGGCTCTCGATGGGTCTTCGGATGGAAGACAAACGG
TGTTCTAGTGTATGTCGGTTTCGCACGCGGACGGACAGGGCCGTGGATCC
TGGGAGCCACTCTAGCTCCTTCTACTTAATTTCTTCTTGTCCTTTATTTC
ATCTACCCCACGCGTCAGCGCCAATGATACCTGTGCCGCTCTGGGCATTG
GCCGAAATGGCGCCGAAGCTTCAGAGAATGACGGGGAGTGTGAAGGAGAA
TGCGGCGTGATGGATGTCACGCGTAGCTAACGGGACGATATGGGTAGGAC
GATATAGGGCGCGGTGTCGGTGACCGACGAGGCCGCAACTGGTGGATGGC
AGTGGGCATTGTATGGGCGTCGAGCATGAAGTTACCAAAGTCGGGGACCG
GGGTCGACGGAAGCAGAGGATAAGTCAGGGAGGTTCGGTAAGAGGAAGAG
AGGGAGCCGCCGAGACGTGGAATGGGGAGAGGAAAGCCGCTACACTACGG
ACGGGTGGGGAGCACAAGTTGACATCGTGTTGAGCCAAGGGACGGAGGCA
TGGTTTGTTTGGGTGGACAGGGATGGGTCAGCGACGGTACTGGCGGTAGG
GAGCTTTACCCAGCCTGAAATGTGGGCACGAAACTAGACTATCGGCTGTG
GAAGGGCCCGAATGTTGTGTTCCGTACCGTCTCCAGGTGTTCCTTTTCTT
TTGGCAGCTGGGAAGATCTGCACGGAATTGTGACTCTGTGAGACGCGAGT
GGAAAGTGTTGGTGGGTGGGTCAACGGTTGAGACGACTGGGGCCATGAGG
CTTGGAGTGTTCAAATAGGTTGGCGTAACAGTATTGATACATATAGTTCG
AGAGGACTACGGTCTGTTATTTGTTTTTTCTCGGGGGCTCGGGGACCAAA
TGGCTAAAGTGAGAAATACATAATGAAGTGGCGGAGTGTTCCTTACGGGG
ATACGGGGATACGAGGCGACAAGCCACCACCACGATTCCATGAGGAAAAT
TCGTTCGAAATTGGTGAGGGGTGACTCGTGAGTGACCTGCCCGTGAGTTT
CTCGAGGGAGAACCTGGAGAGACGTGAAGCCCAGCAGATTTTCCCGTTGT
TCGCGAGTGCCTGGTGATTTTGCACATCGTACATCGTTTTTTTGGGATGT
AGAAGGTGGGGTATGGGAGGCAAGGTGTTTCTCGACGGATAATGGATTTT
TTCGAGGGAACTCTCAGATGGTGAGCTTCGGTTGAAGCAGCTGGACGGCC
AATACAGATTTGGATCCTCATGACAAATGCAGCAGCCACTGAAATTAATG
TGGTCATTACTCTGCAGTGAGGGATGGTGGAGATGGAGATGGGACACGCC
TTGCCGTTGTGTGCGTCGCAGTTTGTGCTCAAGCATCAACGCTGTATGAT
TAACACGCTCACCTGATCGGTGGAATGATGAAGAGGTGCTCTGGCAAAAT
ACATCTTTCAGCCTGACAACTTGGTATGCAAACGGCCCCCTAATAATTAT
GTGAATCAAGCATCTGGTGGTCGCTCCGACCCACAGGTAGCAGATGAGCA
CTCCATACGGACACAAAAATGGGAAAAAAACGAAGAAAAAGGTGGG back to topCoding sequence (CDS) from alignment at D-dichotoma_M_contig105:118676..128621+ >mRNA_D-dichotoma_M_contig105.483.1 ID=mRNA_D-dichotoma_M_contig105.483.1|Name=mRNA_D-dichotoma_M_contig105.483.1|organism=Dictyota dichotoma ODC1387m male|type=CDS|length=1284bp|location=Sequence derived from alignment at D-dichotoma_M_contig105:118676..128621+ (Dictyota dichotoma ODC1387m male) ATGATGGCGCAAGAGATGCCTGAGTTTAAGCTCATCCTCGTCGGTGATGG CGGGGTGGGCAAGACCACTTTTGTTAAGCGACACGTGACGGGAGAATTCG AGAAGAAGTACGTCGGCGCAAGAGATGCCTGAGTTTAAGCTCATCCTCGT CGGTGATGGCGGGGTGGGCAAGACCACTTTTGTTAAGCGACACGTGACGG GAGAATTCGAGAAGAAGTACGTCGCAACGCTGGGCGTGGAGGTTCGTCCT CTCCCGTTCCACACAAACCGAGGCCCGATCAAGTTCAACGTGTGGGACAC TGCTGGTCAGGAGAAGTTCGGCGGCCTCAGGGACGGATACTACAACGCTG GGCGTGGAGGTTCGTCCTCTCCCGTTCCACACAAACCGAGGCCCGATCAA GTTCAACGTGTGGGACACTGCTGGTCAGGAGAAGTTCGGCGGCCTCAGGG ACGGATACTACATCCAGGGTCAGTGTGCCATCATCATGTTCGACGTAACG AGCAGGATCACATACAAGAACGTACCCAACTGGCACCGAGATCTGACCAG GGTCTGCGAGCACATCCCGATCGTGTTGTGTGGGAACAAGCATCCAGGGT CAGTGTGCCATCATCATGTTCGACGTAACGAGCAGGATCACATACAAGAA CGTACCCAACTGGCACCGAGATCTGACCAGGGTCTGCGAGCACATCCCGA TCGTGTTGTGTGGGAACAAGGTGGAGATCAAGGACCGTAAGGTGAAGGCG AAGCAGATCACGTTCCACCGTAAGAAGAATCTTCAGTACTACGACATCTC GGCAAAGTCCAATTATAACTTCGAGAAGCCCTTCCTGTGGCTTGCGAAGA AGCTAGTCGGGTGGAGATCAAGGACCGTAAGGTGAAGGCGAAGCAGATCA CGTTCCACCGTAAGAAGAATCTTCAGTACTACGACATCTCGGCAAAGTCC AATTATAACTTCGAGAAGCCCTTCCTGTGGCTTGCGAAGAAGCTAGTCGG GGACCCAAACCTCCAGTTCGTGGAGCAGCCAGCGCTGCAGCCACCCGAGT TTGTCATCAACCAGGCGGACCAACAGGGACCCAAACCTCCAGTTCGTGGA GCAGCCAGCGCTGCAGCCACCCGAGTTTGTCATCAACCAGGCGGACCAAC AGCGCATCGAAAACGAGACACTTCACGCAGCGCAGGTTCCCCTGCCCGAC GAGGAAGACGACCTTTGACGCATCGAAAACGAGACACTTCACGCAGCGCA GGTTCCCCTGCCCGACGAGGAAGACGACCTTTGA back to top
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