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供应亚硒酸盐时金针菇对硒的吸收、耐受性及还原作用。

Selenium uptake, tolerance and reduction in Flammulina velutipes supplied with selenite.

作者信息

Wang Jipeng, Wang Bo, Zhang Dan, Wu Yanhong

机构信息

Key Laboratory of Mountain Surface Process and Ecological Regulation, Institute of Mountain Hazards and Environment, Chinese Academy of Sciences, Chengdu, Sichuan, China.

University of Chinese Academy of Sciences, Beijing, China.

出版信息

PeerJ. 2016 May 11;4:e1993. doi: 10.7717/peerj.1993. eCollection 2016.

Abstract

Recently, selenium (Se) enriched mushrooms have been exploited as dietary Se supplements, but our knowledge of the metabolic process during the Se enrichment process is far from complete. In this study, the uptake, tolerance and reduction of selenite in a widely cultivated mushroom, Flammulina velutipes, was investigated. The results showed that pH variation (from 5.5-7.5), metabolic inhibitor (0.1 mM 2,4-DNP) and P or S starvation led to 11-26% decreases in the selenite uptake rate of F. velutipes. This indicates that a minor portion of the selenite uptake was metabolism dependent, whereas a carrier-facilitated passive transport may be crucial. Growth inhibition of F. velutipes initiated at 0.1 mM selenite (11% decrease in the growth rate) and complete growth inhibition occurred at 3 mM selenite. A selenite concentration of 0.03-0.1 mM was recommended to maintain the balance between mycelium production and Se enrichment. F. velutipes was capable of reducing selenite to elemental Se [Se(0)] including Se(0) nanoparticles, possibly as a detoxification mechanism. This process depended on both selenite concentration and metabolism activity. Overall, the data obtained provided some basic information for the cultivation of the selenized F. velutipes, and highlighted the opportunity of using mushrooms for the production of Se(0) nanoparticles.

摘要

最近,富硒蘑菇已被开发用作膳食硒补充剂,但我们对富硒过程中的代谢过程了解还远远不够。在本研究中,对一种广泛栽培的蘑菇——金针菇对亚硒酸盐的吸收、耐受性和还原作用进行了研究。结果表明,pH值变化(从5.5至7.5)、代谢抑制剂(0.1 mM 2,4-二硝基苯酚)以及磷或硫饥饿导致金针菇对亚硒酸盐的吸收速率下降11%至26%。这表明亚硒酸盐吸收的一小部分依赖于代谢,而载体介导的被动运输可能起关键作用。金针菇在0.1 mM亚硒酸盐时开始生长受抑制(生长速率下降11%),在3 mM亚硒酸盐时完全生长抑制。建议使用0.03至0.1 mM的亚硒酸盐浓度以维持菌丝体生产和硒富集之间的平衡。金针菇能够将亚硒酸盐还原为元素硒[Se(0)],包括Se(0)纳米颗粒,这可能是一种解毒机制。这个过程取决于亚硒酸盐浓度和代谢活性。总体而言,所获得的数据为富硒金针菇的栽培提供了一些基本信息,并突出了利用蘑菇生产Se(0)纳米颗粒的机会。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/41f8/4986802/54198ff073a8/peerj-04-1993-g001.jpg

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