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硒在香菇中的生物累积:这种元素的营养替代来源。

Selenium bioaccumulation in shiitake mushrooms: a nutritional alternative source of this element.

机构信息

Instituto Federal de Educação, Ciência e Tecnologia do Piauí, Campus Teresina Central, Centro, 65400-000 Teresina, PI, Brazil.

出版信息

J Food Sci. 2012 Sep;77(9):C983-6. doi: 10.1111/j.1750-3841.2012.02837.x. Epub 2012 Aug 17.

DOI:10.1111/j.1750-3841.2012.02837.x
PMID:22900710
Abstract

UNLABELLED

Mushrooms have effective mechanisms to absorb and accumulate trace elements from substrates and, therefore could be used as a strategy to produce mineral-enriched food and nutritional supplements. This study aimed to enrich shiitake mushrooms with selenium (Se), an important dietary element in human health. Strains of Lentinula edodes (Berk.) were grown on artificial logs composed of eucalyptus sawdust, and were subjected to cold shock in water containing sodium selenite (Na(2)SeO(3) ) at concentrations of up to 1.28 mM. The content of Se in the mushrooms increased linearly with increasing amounts of Na(2)SeO(3) added to the cold water although above 0.96 mM, mushroom formation was inhibited. Concentrations greater than 17 mg Se 100/g of dried mushrooms were observed after treatment with 0.64 mM Na(2)SeO(3). Shiitake mushroom had a demonstrate potential to offer an effective and economical way to produce Se-enriched products and, the strategy of adding selenite in cold water, used in this study, showed promising once it does not interfere with mycelial growth.

PRACTICAL APPLICATION

Selenium is an essential trace element for both human and animals and is required for the 21st amino acid, selenocysteine, which is used for the synthesis of about a dozen selenoenzymes. In this study, it is demonstrated that shiitake mushroom is a good Se accumulator and only one step during fructification was necessary to obtained enriched mushroom. Se enriched shiitake mushroom can be considered to be an excellent source of this element and used to consumption in different ways.

摘要

未标注

蘑菇具有从基质中吸收和积累微量元素的有效机制,因此可以作为生产富含矿物质的食物和营养补充剂的策略。本研究旨在用硒(Se)来富积香菇,硒是人类健康的重要膳食元素。香菇菌株在由桉树锯末组成的人工原木上生长,并在含有亚硒酸钠(Na2SeO3)的冷水中进行冷冲击,亚硒酸钠的浓度高达 1.28 mM。尽管在 0.96 mM 以上时会抑制蘑菇的形成,但随着冷水中添加的 Na2SeO3量的增加,蘑菇中的 Se 含量呈线性增加。用 0.64 mM 的 Na2SeO3处理后,观察到干蘑菇中 Se 的浓度大于 17 mg/100 g。香菇具有提供有效且经济的生产富硒产品的潜力,本研究中使用的在冷水中添加亚硒酸盐的策略,一旦不干扰菌丝体生长,就显示出很有前途。

实际应用

硒是人和动物必需的微量元素,用于合成大约 12 种硒酶的第 21 种氨基酸——硒代半胱氨酸。在这项研究中,证明了香菇是一种很好的 Se 积累者,只需要在结实过程中的一步就可以获得富硒蘑菇。富硒香菇可被视为该元素的极好来源,并可用于不同的食用方式。

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