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首页> 外文期刊>LWT-Food Science & Technology >Production of bioactive compounds by the mycelial growth of Pleurotus djamor in whey powder enriched with selenium
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Production of bioactive compounds by the mycelial growth of Pleurotus djamor in whey powder enriched with selenium

机译:通过乳清粉蛋白质生长的生物活性化合物的生产乳清粉富含硒

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摘要

Mycelia of fungi produced edible mushrooms are functional or biofortifled foods, due to their bioactive compounds and their bioaccumulation of microelements (e.g, Se, Fe, and Zn). The use of cheese whey for mycelial growth is an alternative to take advantage of this by-product of the Dairy Industry and produce a nutritional supplement with bioactive compounds. In this study, the production of bioactive compounds was performed after 25 days of mycelial growth of Pleurotus djamor in whey with or without selenium. P. djamor was capable of growing and producing biomass in a liquid culture medium containing cheese whey without selenium. This element did not influence the ergosterol content. However, sodium selenite promoted an increase in the mycelial biomass and the antioxidant activity, as well as the contents of ergosterol and beta-glucans. The lactose degradation was higher in the culture medium using selenate when compared to the control and in the culture medium with selenite. Furthemore, the mycelium showed potential in absorbing and accumulating elements (e.g. Ca, Fe, Mg, K, and Zn) from the cheese whey. Thus, this mycelium could be used as a nutritional supplement without lactose and with bioactive compounds.
机译:由于它们的生物活性化合物及其对微量元素的生物累积(例如,SE,Fe,Fe和Zn),真菌的食用菌菌群是功能性或生物侵蚀的食物。使用乳酪乳清的菌丝体增长是利用乳制品行业的这种副产品的替代方案,并产生具有生物活性化合物的营养补充剂。在这项研究中,在具有或不含硒的乳清乳清蛋白酶的菌丝生长25天后进行生物活性化合物的产生。 P. Djamor能够在没有硒的乳酪乳清的液体培养基中生长和生产生物量。该元素没有影响Ergosterol含量。然而,硒沸石促进了菌丝体生物质和抗氧化活性的增加,以及Ergosterol和β-葡聚糖的含量。与对照和用硒沸石的对照和培养基中的培养基,培养基中乳糖降解较高。菌丝菌丝菌丝菌丝体显示出吸收和积聚元素(例如Ca,Fe,Mg,K和Zn)的潜力。因此,这种菌丝体可以用作没有乳糖和生物活性化合物的营养补充剂。

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