Selenium Incorporation to Amino Acids in Chlorella Cultures Grown in Phototrophic and Heterotrophic Regimes

光养 异养 小球藻 混合营养体 植物 化学 氨基酸 藻类 生物化学 环境化学 生物 光合作用 细菌 有机化学 遗传学
作者
Mykola Mylenko,Dai Long Vu,Jan Kuta,Karolína Ranglová,David Kubáč,Gergely Lakatos,Tomáš Grivalský,Martín P. Caporgno,João Artur Câmara Manoel,Jiřı́ Kopecký,Jiří Masojídek,Pavel Hrouzek
出处
期刊:Journal of Agricultural and Food Chemistry [American Chemical Society]
卷期号:68 (6): 1654-1665 被引量:15
标识
DOI:10.1021/acs.jafc.9b06196
摘要

Microalgae accumulate bioavailable selenium-containing amino acids (Se-AAs), and these are useful as a food supplement. While this accumulation has been studied in phototrophic algal cultures, little data exists for heterotrophic cultures. We have determined the Se-AAs content, selenium/sulfur (Se/S) substitution rates, and overall Se accumulation balance in photo- and heterotrophic Chlorella cultures. Laboratory trials revealed that heterotrophic cultures tolerate Se doses ∼8-fold higher compared to phototrophic cultures, resulting in a ∼2-3-fold higher Se-AAs content. In large-scale experiments, both cultivation regimes provided comparable Se-AAs content. Outdoor phototrophic cultures accumulated up to 400 μg g-1 of total Se-AAs and exhibited a high level of Se/S substitution (5-10%) with 30-60% organic/total Se embedded in the biomass. A slightly higher content of Se-AAs and ratio of Se/S substitution was obtained for a heterotrophic culture in pilot-scale fermentors. The data presented here shows that heterotrophic Chlorella cultures provide an alternative for Se-enriched biomass production and provides information on Se-AAs content and speciation in different cultivation regimes.
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