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Integrated omics unveil the secondary metabolic landscape of a basal dinoflagellate.

Girish BeedesseeTakaaki KubotaAsuka ArimotoKoki NishitsujiRoss F WallerKanako HisataShinichi YamasakiNoriyuki SatohJun'ichi KobayashiEiichi Shoguchi
Published in: BMC biology (2020)
Our genomic findings suggest intricate integration of various metabolic enzymes that function iteratively to synthesize metabolites, providing mechanistic insights into how dinoflagellates synthesize secondary metabolites, depending upon nutrient availability. This study provides insights into toxin production associated with dinoflagellate blooms. The genome of this basal dinoflagellate provides important clues about dinoflagellate evolution and overcomes the large genome size, which has been a challenge previously.
Keyphrases
  • ms ms
  • escherichia coli
  • single cell
  • genome wide
  • copy number
  • gene expression
  • dna methylation