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Breeding Chlorophyll-Deficient Mutants of Chlorella vulgaris to Enhance Consumer Acceptance

  • Malene Lihme Olsen
  • , Daniel Poveda-Huertes
  • , Duygu Ozcelik
  • , Emil Gundersen
  • , Jens Frederik Bang Thøfner
  • , Maryna Kobylynska
  • , Stefania Marcotti
  • , Roland A. Fleck
  • , Damien McGrouther
  • , Johan Andersen-Ranberg
  • , Charlotte Jacobsen
  • , Poul Erik Jensen*
  • *Corresponding author for this work
  • Danish Technological Institute
  • University of Copenhagen
  • King's College London
  • The Francis Crick Institute
  • JEOL UK Ltd.

Research output: Contribution to journalJournal articleResearchpeer-review

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Abstract

The use of microalgae as a food source is limited by consumers' dislike of their organoleptic traits, primarily the intense green color and bitter taste associated with high chlorophyll content. The eukaryotic microalgae Chlorella vulgaris can grow under heterotrophic conditions, providing the opportunity to cultivate chlorophyll-less strains. In this work we applied random mutagenesis for breeding chlorophyll-deficient C. vulgaris strains. Wild-type strain was UVC-radiated, and 12 colonies with changed pigmentation were selected. Based on phenotypic stability two mutants, M6 and M11, were selected for characterization of growth, pigment and biomass accumulation. Cultivation under photo-, mixo- and heterotrophic conditions revealed distinct phenotypes for the two mutants. M6 remained chlorophyll-deficient in all cultivation conditions tested, while chlorophyll was observed in M11 when grown under light. Under heterotrophic and mixotrophic growth conditions, both mutants were chlorophyll-deficient while biomass productivity, protein content, and amino acid composition remained similar to wild type. Characterization of the cellular ultrastructure of the wild type and mutants using cryo Focused Ion-Beam Scanning Electron Microscopy revealed that functional chloroplasts and thylakoid membranes were absent in the mutants. Our work demonstrates how a simple approach using UV mutagenesis and visual screening can provide novel strains of C. vulgaris with traits for improved consumer acceptance, without compromising the use of the algae biomass as a protein-rich food source.
Original languageEnglish
Article number318
JournalBioengineering
Volume13
Issue number3
Number of pages21
ISSN2306-5354
DOIs
Publication statusPublished - 2026

UN SDGs

This output contributes to the following UN Sustainable Development Goals (SDGs)

  1. SDG 2 - Zero Hunger
    SDG 2 Zero Hunger

Keywords

  • Chlorella
  • Chlorophyll-deficient mutants
  • Microalgae breeding
  • UV mutagenesis
  • Heterotrophic cultivation
  • Consumer acceptance
  • Non-GMO breeding
  • Microalgae for food
  • Cryo Focused Ion-Beam Scanning Electron Microscopy
  • vEM
  • cvEM

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