Hoyos Brenda S, Hernandez-Tenorio Fabian, Miranda Alejandra M, Villanueva-Mejía Diego F, Sáez Alex A
Biological Sciences and Bioprocesses Group, School of Applied Sciences and Engineering, Universidad EAFIT, Medellin 050022, Colombia.
Environmental Processes Research Group, School of Applied Sciences and Engineering, Universidad EAFIT, Medellin 050022, Colombia.
Biology (Basel). 2023 May 12;12(5):703. doi: 10.3390/biology12050703.
Se is one of the essential nutrients for human health and animal growth; it participates in various physiological functions, such as antioxidant and immune response and metabolism. Se deficiency is related in the animal industry to poor production performance and the appearance of health problems in humans. Therefore, interest has arisen in producing fortified foods, nutritional supplements, and animal feed products enriched with Se. A sustainable strategy for bio-based products enriched with Se is microalgae. These are characterized by the ability to bioaccumulate inorganic Se and metabolize it into organic Se for product formulations of industrial interest. Although there are some reports on Se bioaccumulation, further exploration is needed to understand the effects of Se bioaccumulation in microalgae. Therefore, this article presents a systematic review of the genes or groups of genes that trigger biological responses associated with the metabolization of Se in microalgae. A total of 54,541 genes related to Se metabolization distributed in 160 different classes were found. Similarly, trends were identified through bibliometric networks on strains of greatest interest, bioproducts, and scientific production.
硒是人类健康和动物生长必需的营养素之一;它参与各种生理功能,如抗氧化、免疫反应和新陈代谢。在畜牧业中,硒缺乏与生产性能不佳以及人类健康问题的出现有关。因此,人们对生产富含硒的强化食品、营养补充剂和动物饲料产品产生了兴趣。一种可持续的富含硒的生物基产品策略是微藻。微藻的特点是能够生物积累无机硒并将其代谢为有机硒,用于具有工业价值的产品配方。尽管有一些关于硒生物积累的报道,但仍需要进一步探索以了解微藻中硒生物积累的影响。因此,本文对引发与微藻中硒代谢相关生物反应的基因或基因群进行了系统综述。共发现了分布在160个不同类别的54541个与硒代谢相关的基因。同样,通过文献计量网络确定了最受关注的菌株、生物产品和科研产出的趋势。
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