2025-09-16 14:32:58, GGRNA.v2 : RefSeq release 231 (Jul, 2025)
LOCUS XM_073865697 2196 bp mRNA linear VRT 07-MAY-2025 DEFINITION PREDICTED: Misgurnus anguillicaudatus uncharacterized protein (LOC141363140), mRNA. ACCESSION XM_073865697 VERSION XM_073865697.1 DBLINK BioProject: PRJNA955227 KEYWORDS RefSeq; includes ab initio. SOURCE Misgurnus anguillicaudatus (oriental weatherfish) ORGANISM Misgurnus anguillicaudatus Eukaryota; Metazoa; Chordata; Craniata; Vertebrata; Euteleostomi; Actinopterygii; Neopterygii; Teleostei; Ostariophysi; Cypriniformes; Cobitidae; Cobitinae; Misgurnus. COMMENT MODEL REFSEQ: This record is predicted by automated computational analysis. This record is derived from a genomic sequence (NW_027395283) annotated using gene prediction method: Gnomon. Also see: Documentation of NCBI's Annotation Process ##Genome-Annotation-Data-START## Annotation Provider :: NCBI RefSeq Annotation Status :: Full annotation Annotation Name :: GCF_027580225.2-RS_2025_04 Annotation Pipeline :: NCBI eukaryotic genome annotation pipeline Annotation Software Version :: 10.3 Annotation Method :: Gnomon; cmsearch; tRNAscan-SE Features Annotated :: Gene; mRNA; CDS; ncRNA Annotation Date :: 04/24/2025 ##Genome-Annotation-Data-END## ##RefSeq-Attributes-START## ab initio :: 43% of CDS bases ##RefSeq-Attributes-END## FEATURES Location/Qualifiers source 1..2196 /organism="Misgurnus anguillicaudatus" /mol_type="mRNA" /db_xref="taxon:75329" /chromosome="Unknown" gene 1..2196 /gene="LOC141363140" /note="uncharacterized LOC141363140; Derived by automated computational analysis using gene prediction method: Gnomon. Supporting evidence includes similarity to: 6 Proteins" /db_xref="GeneID:141363140" CDS 1..2196 /gene="LOC141363140" /codon_start=1 /product="uncharacterized protein" /protein_id="XP_073721798.1" /db_xref="GeneID:141363140" /translation="
MRWMNVRKMRKRNMRWMRRMNEVDEENECEEDEVDECEEDEVDEENKCEEDKADECEEDEVDEEDEGEEYEVDEENECEEDEVDEEDEEEDEVDEEDEGEEDEADECEENEADEEDECEENEVDEENKCQEDEVDEEDEGEEYEVDEENEYEVDEENECEEDEADECEEDEVDEEDEGEENEADKENKCQEDEVDEEDEGEEDEVDEENECEEDEVDEENKCQEDEVDEEDEDEVDEEDECEEDVVDEENECEEDEVDEEGECEEDEVDEENECEENEADEENKCQEDEVDEEDEGEEDEVDKENECEEDEADECEENEADEEDKCEDNEVDEENECEEDEVDEENKCQEDEVDEEDEGEEDEVDEENECEEDEVDEENECEEDEVHEEGECEEDEVDEENECEENEADEENKCQEDEVDEEDEGEEDEADECEENEVDEENKCQEDEVDEEDEGEEDEVDEEDECEEDVVDEENECEEDEVDEENECQEDEVDEEDECEEDEEDEENKCEEDEVDEEDEGEEDEVDEEDEGEEDEEDEENKCEEDEVDEEDEGEEDEVDEEDECEEDEEDEENKCEEDEVDEKNECQEDEVDEEDEGEEDEVDEEDECKEDVVDEENECEEDEVDEENECQEDEVDEEDECQEDEVDEEDECEEDEEDEENKCEEDEVDECEEDEVDEKNECEEDEVDEEDECEEDEADECEEDEADECEENEADEEDECEENEVDEENM"
ORIGIN
atgaggtggatgaatgtgaggaagatgaggaagaggaatatgaggtggatgaggagaatgaatgaggtggatgaggagaatgagtgtgaggaagatgaggtggatgaatgtgaggaagatgaggtggatgaggagaataagtgtgaggaagataaggcagatgaatgtgaggaagatgaggtggatgaggaggatgagggagaggaatatgaggtggatgaggagaatgagtgtgaggaagatgaggtggatgaggaggatgaggaggaagatgaggtggatgaggaggatgagggagaggaagatgaggcagatgaatgtgaggaaaatgaggcggatgaagaggatgaatgtgaggaaaatgaggtggatgaggagaataagtgtcaggaagatgaggtggatgaggaggatgagggagaggaatatgaggtggatgaggagaatgagtatgaggtggatgaggagaatgagtgtgaggaagatgaggcagatgaatgtgaggaagatgaggtggatgaggaggatgagggtgaggaaaatgaggcggataaggagaataagtgtcaagaagatgaggtggatgaggaggatgagggagaggaagatgaggtggatgaggagaatgagtgtgaggaagatgaggtggatgaggagaataagtgtcaggaagatgaggtggatgaggaggatgaggatgaggtggatgaggaggatgaatgtgaggaagatgtggtggatgaggagaatgagtgtgaggaagatgaggtggatgaggagggtgaatgtgaggaagatgaggtggatgaggagaatgagtgtgaggaaaatgaggcggatgaggagaataagtgtcaggaagatgaggtggatgaggaggatgagggagaggaagatgaggtggataaggagaatgagtgtgaggaagatgaggcagatgaatgtgaggaaaatgaggcagatgaagaggataaatgtgaggacaatgaggtggatgaggagaatgaatgtgaggaagatgaggtggatgaggagaataagtgtcaagaagatgaggtggatgaggaggatgagggagaggaagatgaggttgatgaggagaatgaatgtgaggaagatgaggttgatgaggagaatgaatgtgaggaagatgaggtgcatgaggagggtgaatgtgaggaagatgaggtggatgaggagaatgagtgtgaggaaaatgaggcggatgaggagaataagtgtcaagaagatgaggtggatgaggaggatgagggagaggaagatgaggcagatgaatgtgaggaaaatgaggtggatgaggagaataagtgtcaggaagatgaggtggatgaggaggatgagggtgaggaagatgaggtggatgaggaggatgaatgtgaggaagatgtggtggatgaagagaatgagtgtgaggaagatgaggtggatgaggagaatgagtgtcaggaagatgaggtggatgaggaggatgaatgtgaggaagatgaggaggatgaggagaataagtgtgaggaagatgaggtggatgaggaggatgagggagaggaagatgaggtggatgaggaggatgagggagaggaagatgaggaggatgaggagaataagtgtgaggaagatgaggtggatgaggaggatgagggagaggaagatgaggtggatgaggaggatgaatgtgaggaagatgaggaggatgaggagaataaatgtgaggaagatgaggtggatgagaagaatgagtgtcaggaagatgaggtggatgaggaggatgagggtgaggaagatgaggtggatgaggaggatgaatgtaaggaagatgtggtggatgaggagaatgagtgtgaggaggatgaggtggatgaggagaatgagtgtcaggaagatgaggtggatgaggaggatgagtgtcaggaagatgaggtggatgaggaggatgaatgtgaggaagatgaggaggatgaggagaataagtgtgaggaagatgaggtggatgaatgtgaggaagatgaggtggatgagaagaatgagtgtgaggaagatgaggtggatgaggaggatgaatgtgaggaagatgaggcagatgaatgtgaggaagatgaggcagatgaatgtgaggaaaatgaggcggatgaagaggatgaatgtgaggaaaatgaggtggatgaggagaatatgtga
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Creative Commons Attribution 4.0 International License (CC BY 4.0).
If you use GGRNA in your work, please cite:
Naito Y, Bono H. (2012)
GGRNA: an ultrafast, transcript-oriented search engine for genes and transcripts.
Nucleic Acids Res., 40, W592-W596.
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