Departamento de Ciencias Veterinarias y Salud Pública, Facultad de Recursos Naturales, Universidad Católica de Temuco, Casilla 15-D, Temuco, Chile.
Núcleo de Investigación en Producción Alimentaria, Facultad de Recursos Naturales, Universidad Católica de Temuco, Temuco, Chile.
Fish Physiol Biochem. 2024 Aug;50(4):1879-1894. doi: 10.1007/s10695-024-01340-7. Epub 2024 Apr 17.
Selenium (Se) is a vital trace element, essential for growth and other biological functions in fish. Its significance lies in its role as a fundamental component of selenoproteins, which are crucial for optimal functioning of the organism. The inclusion of Se in the diets of farmed animals, including fish, has proved invaluable in mitigating the challenges arising from elemental deficiencies experienced in captivity conditions due to limitations in the content of fishmeal. Supplementing diets with Se enhances physiological responses, particularly mitigates the effects of the continuous presence of environmental stress factors. Organic Se has been shown to have higher absorption rates and a greater impact on bioavailability and overall health than inorganic forms. A characteristic feature of yeasts is their rapid proliferation and growth, marked by efficient mineral assimilation. Most of the selenized yeasts currently available in the market, and used predominantly in animal production and aquaculture, are based on Saccharomyces cerevisiae, which contains selenomethionine (Se-Met). The object of this review is to highlight the importance of selenized yeasts. In addition, it presents metabolic and productive aspects of other yeast genera that are important potential sources of organic selenium. Some yeast strains discussed produce metabolites of interest such as lipids, pigments, and amino acids, which could have applications in aquaculture and further enrich their usefulness.
硒(Se)是一种重要的微量元素,对鱼类的生长和其他生物学功能至关重要。其重要性在于它是硒蛋白的基本组成部分,而硒蛋白对于生物体的最佳功能至关重要。在包括鱼类在内的养殖动物的饮食中添加硒已被证明非常有价值,可以缓解由于鱼粉含量有限而在圈养条件下出现的元素缺乏所带来的挑战。用硒补充饮食可以增强生理反应,特别是减轻持续存在的环境应激因素的影响。与无机形式相比,有机硒具有更高的吸收率,对生物利用度和整体健康的影响更大。酵母的一个特征是其快速增殖和生长,其特点是高效的矿物质吸收。目前市场上大多数用于动物生产和水产养殖的硒化酵母都基于酿酒酵母(Saccharomyces cerevisiae),它含有硒代蛋氨酸(Se-Met)。本综述的目的是强调硒化酵母的重要性。此外,它还介绍了其他酵母属的代谢和生产方面,这些酵母属是有机硒的重要潜在来源。一些讨论的酵母菌株会产生具有应用价值的代谢物,如脂质、色素和氨基酸,这可以在水产养殖中进一步应用,进一步丰富其用途。