4.7 Article

Screening of a Thraustochytrid Strain Collection for Carotenoid and Squalene Production Characterized by Cluster Analysis, Comparison of 18S rRNA Gene Sequences, Growth Behavior, and Morphology

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MARINE DRUGS
卷 21, 期 4, 页码 -

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MDPI
DOI: 10.3390/md21040204

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Stramenopiles; Thraustochytrium; Ulkenia; Schizochytrium; Oblongichytrium; Labyrinthulomycetes; chemotaxonomy; microscopy; growth models; cluster analysis

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This study screened 62 strains of Thraustochytrids and found that eight different clades related to Thraustochytic were capable of producing carotenoids and squalene. The importance of glucose and yeast extract in the production was determined through experimental design and growth models. The research provided possible chemotaxonomy and identified promising strains for carotenoid and squalene synthesis.
Carotenoids and squalene are important terpenes that are applied in a wide range of products in foods and cosmetics. Thraustochytrids might be used as alternative production organisms to improve production processes, but the taxon is rarely studied. A screening of 62 strains of thraustochytrids sensu lato for their potential to produce carotenoids and squalene was performed. A phylogenetic tree was built based on 18S rRNA gene sequences for taxonomic classification, revealing eight different clades of thraustochytrids. Design of experiments (DoE) and growth models identified high amounts of glucose (up to 60 g/L) and yeast extract (up to 15 g/L) as important factors for most of the strains. Squalene and carotenoid production was studied by UHPLC-PDA-MS measurements. Cluster analysis of the carotenoid composition partially mirrored the phylogenetic results, indicating a possible use for chemotaxonomy. Strains in five clades produced carotenoids. Squalene was found in all analyzed strains. Carotenoid and squalene synthesis was dependent on the strain, medium composition and solidity. Strains related to Thraustochytrium aureum and Thraustochytriidae sp. are promising candidates for carotenoid synthesis. Strains closely related to Schizochytrium aggregatum might be suitable for squalene production. Thraustochytrium striatum might be a good compromise for the production of both molecule groups.

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