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LOC8262325 mogroside IE synthase [ Ricinus communis (castor bean) ]

Gene ID: 8262325, updated on 30-Nov-2023

Summary

Gene symbol
LOC8262325
Gene description
mogroside IE synthase
Locus tag
RCOM_0100870
Gene type
protein coding
RefSeq status
MODEL
Organism
Ricinus communis
Lineage
Eukaryota; Viridiplantae; Streptophyta; Embryophyta; Tracheophyta; Spermatophyta; Magnoliopsida; eudicotyledons; Gunneridae; Pentapetalae; rosids; fabids; Malpighiales; Euphorbiaceae; Acalyphoideae; Acalypheae; Ricinus
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Genomic context

See LOC8262325 in Genome Data Viewer
Location:
chromosome: 7
Exon count:
2
Annotation release Status Assembly Chr Location
102 current ASM1957865v1 (GCF_019578655.1) 7 NC_063262.1 (25860430..25862357, complement)
101 previous assembly JCVI_RCG_1.1 (GCF_000151685.1) Unplaced Scaffold NW_002994886.1 (18176..20077, complement)

Chromosome 7 - NC_063262.1Genomic Context describing neighboring genes Neighboring gene uncharacterized LOC125370748 Neighboring gene uncharacterized LOC8262341 Neighboring gene UDP-glycosyltransferase 74G1 Neighboring gene UDP-glycosyltransferase 74G1-like

Genomic regions, transcripts, and products

NCBI Reference Sequences (RefSeq)

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RefSeqs of Annotated Genomes: Ricinus communis Annotation Release 102 details...Open this link in a new tab

The following sections contain reference sequences that belong to a specific genome build. Explain

Reference ASM1957865v1

Genomic

  1. NC_063262.1 Reference ASM1957865v1

    Range
    25860430..25862357 complement
    Download
    GenBank, FASTA, Sequence Viewer (Graphics)

mRNA and Protein(s)

  1. XM_002532396.4XP_002532442.1  mogroside IE synthase

    See identical proteins and their annotated locations for XP_002532442.1

    UniProtKB/TrEMBL
    B9T2H3
    Conserved Domains (2) summary
    COG1819
    Location:11453
    YjiC; UDP:flavonoid glycosyltransferase YjiC, YdhE family [Carbohydrate transport and metabolism]
    cl10013
    Location:1456
    Glycosyltransferase_GTB_type; Glycosyltransferases catalyze the transfer of sugar moieties from activated donor molecules to specific acceptor molecules, forming glycosidic bonds. The acceptor molecule can be a lipid, a protein, a heterocyclic compound, or another carbohydrate ...