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Selenium and Zinc Biofortification of Pleurotus eryngii Mycelium and Fruiting Bodies as a Tool for Controlling Their Biological Activity

机译:杏鲍菇菌丝体和子实体的硒和锌生物强化作用作为控制其生物活性的工具

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摘要

(DC:Fr.) Quel. is a cultivated mushroom of high culinary value and medicinal properties. Mycelium of is characterized by the ability of effective bio-elements absorption from growth media so it could be biofortified with trace elements with a functional activity in the human body. In this study, the ability of mycelia from in vitro cultures as well as fruiting bodies were investigated in terms of their effectiveness in zinc and selenium accumulation. The effect of Se and Zn biofortification on productivity, chemical compounds, and bio-elements content of was determined as well. To enhance Se and Zn content in fruiting bodies and mycelia, substrates were supplemented with sodium selenite, at a concentration of 50 mg L , zinc sulfate, and zinc hydro-aspartate at a concentration of 87.2 and 100.0 mg L , respectively. Mentioned Zn concentrations contained the same amount of zinc(II) ions, namely 20 mg L . The content of organic compounds include phenolic compounds and lovastatin, which were determined by a high-performance liquid chromatography with diode-array detector (HPLC-DAD) and reverse phase high-performance liquid chromatography (RP-HPLC) method with UV detection. The ability of to accumulate zinc and selenium from the culture medium was demonstrated. The degree of accumulation of zinc turned out to be different depending on the type of salt used. The present study also showed that conducting mycelium of in in vitro culture, with a higher content of zinc ions, can result in obtaining the materials with better antioxidant ability. The results of this study can be used to develop the composition of growing media, which ensures the production of biomass with the desired composition of elements.
机译:(DC:Fr。)是一种具有高烹饪价值和药用特性的栽培蘑菇。菌丝体的特征是从生长介质中有效吸收生物元素的能力,因此可以用在人体中具有功能活性的微量元素进行生物强化。在这项研究中,研究了体外培养菌丝体和子实体在锌和硒积累中的有效性。还确定了硒和锌的生物强化作用对生产力,化合物和生物元素含量的影响。为了提高子实体和菌丝体中的硒和锌含量,向底物分别添加浓度为50 mg L的亚硒酸钠,硫酸锌和浓度为87.2 mg L的天冬氨酸锌。提到的锌浓度包含相同量的锌(II)离子,即20 mg L。有机化合物的含量包括酚类化合物和洛伐他汀,它们是通过带有二极管阵列检测器的高效液相色谱法(HPLC-DAD)和带有UV检测的反相高效液相色谱法(RP-HPLC)测定的。证明了从培养基中积累锌和硒的能力。锌的积累程度根据所用盐的类型而不同。本研究还表明,进行体外培养的菌丝体中锌离子含量较高,可以得到具有更好抗氧化能力的材料。这项研究的结果可用于开发生长培养基的组成,从而确保生产具有所需元素组成的生物质。

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