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大麦发芽过程中硒的吸收、转运和代谢模式:硒酸盐、亚硒酸盐和硒代蛋氨酸的比较

Selenium Uptake, Translocation, and Metabolization Pattern during Barley Malting: A Comparison of Selenate, Selenite, and Selenomethionine.

作者信息

Cheng Chao, Coldea Teodora Emilia, Yang Huirong, Zhao Haifeng

机构信息

School of Food Science and Engineering, South China University of Technology, Guangzhou 510640, China.

Faculty of Food Science and Technology, University of Agricultural Sciences and Veterinary Medicine of Cluj-Napoca, Cluj-Napoca 400372, Romania.

出版信息

J Agric Food Chem. 2023 Apr 5;71(13):5240-5249. doi: 10.1021/acs.jafc.3c00273. Epub 2023 Mar 24.

Abstract

Selenium (Se) is an essential trace element for human and animal health. Understanding the uptake and translocation of Se in crops is critical from the perspective of Se biofortification. In this study, barley was malted to investigate the uptake, translocation, and metabolism of exogenous Se including NaSeO, NaSeO, and selenomethionine (Se-Met). The results showed that the uptake rates of different forms of Se in barley decreased in the following order: Se-Met > NaSeO > NaSeO, with the peak uptake occurring at the end of the steeping stages. In the early stages of germination, Se was mainly distributed in the husk and endosperm. Exogenous Se upregulated the transcription levels of Se transport and metabolic enzyme genes in the barley to varying degrees, which promoted Se transformation in various tissues, and improved Se bioeffectiveness. Compared to the NaSeO and Se-Met groups, more Se was transferred from husk and endosperm to acrospire and rootlets in the NaSeO group during the germination stage. NaSeO and Se-Met stimulated the development of rootlets, and accelerated Se metabolism, resulting in a higher Se loss rate. Thus, these comparative findings provide new insights into Se uptake, transformation, and metabolization in barley.

摘要

硒(Se)是人类和动物健康所必需的微量元素。从硒生物强化的角度来看,了解硒在作物中的吸收和转运至关重要。在本研究中,将大麦制成麦芽,以研究包括亚硒酸钠(Na₂SeO₃)、硒酸钠(Na₂SeO₄)和硒代蛋氨酸(Se-Met)在内的外源硒的吸收、转运和代谢。结果表明,大麦中不同形式硒的吸收速率按以下顺序降低:Se-Met > Na₂SeO₃ > Na₂SeO₄,吸收峰值出现在浸泡阶段结束时。在萌发早期,硒主要分布在谷壳和胚乳中。外源硒不同程度地上调了大麦中硒转运和代谢酶基因的转录水平,促进了硒在各组织中的转化,并提高了硒的生物有效性。与Na₂SeO₃和Se-Met组相比,在萌发阶段,Na₂SeO₄组中有更多的硒从谷壳和胚乳转移到胚芽和胚根中。Na₂SeO₃和Se-Met刺激了胚根的发育,并加速了硒的代谢,导致更高的硒损失率。因此,这些比较结果为大麦中硒的吸收、转化和代谢提供了新的见解。

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