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最佳硒肥通过调控黄酮类代谢和氨基酸代谢影响谷子品质形成。

Optimal Selenium Fertilizer Affects the Formation of Foxtail Millet ( L.) Quality by Regulating Flavonoid Metabolism and Amino Acid Metabolism.

作者信息

Wang Shu, Mao Jiao, Xu Yuanmeng, Liu Sichen, Qiao Zhijun, Cao Xiaoning

机构信息

Center for Agricultural Genetic Resources Research Shanxi Agricultural University Taiyuan China.

College of Agriculture Shanxi Agricultural University Jinzhong China.

出版信息

Food Sci Nutr. 2025 May 30;13(6):e70362. doi: 10.1002/fsn3.70362. eCollection 2025 Jun.

Abstract

In order to clarify the regulation mechanism of selenium (Se) on foxtail millet quality formation and metabolism, the effects of different Se fertilizers (no application of S1, optimal for Se S2, high Se S3) on yield, quality, and metabolic characteristics of Jingu 21 and Jingu 40 (Se-rich varieties) were studied. The results showed that S2 treated foxtail millet yield was the highest, the content of fat and starch in Jingu 21 increased, the content of protein decreased, the content of protein in Jingu 40 increased, and the content of starch and fiber decreased. S3 treatment reduced the content of fat and fiber and increased the content of starch. The peak viscosity and breakdown value of Jingu 21 decreased under S2 treatment. Metabolomics analysis revealed that S2 promoted flavonoid accumulation (Taxifolin, Epicatechin, etc.) and inhibition of L-histidine expression in Jingu 21 by regulating flavonoid and histidine metabolism pathways, leading to reduced protein content, increased fat and starch content, and lower peak viscosity and breakdown value, thereby affecting foxtail millet quality formation. S2 treatment activated the stilbenoid, diarylheptanoid, and gingerol biosynthesis pathways of Jingu40, reducing the synthesis of demethoxycurcumin and chlorogenic acid, increasing protein content and decreasing fat content. S3 treatment activated the tyrosine metabolism pathway of Jingu40, up-regulated L-tyrosine and gentisic acid expression, which increased protein content and decreased fat content, thus affecting foxtail millet quality. This study provides a theoretical basis for the safe use of foxtail millet Se fertilizer, high-quality cultivation, and the development of Se-enriched functional foods.

摘要

为了阐明硒(Se)对谷子品质形成与代谢的调控机制,研究了不同硒肥(不施硒S1、适宜施硒S2、高硒S3)对晋谷21和晋谷40(富硒品种)产量、品质及代谢特性的影响。结果表明,S2处理的谷子产量最高,晋谷21中脂肪和淀粉含量增加,蛋白质含量降低,晋谷40中蛋白质含量增加,淀粉和纤维含量降低。S3处理降低了脂肪和纤维含量,增加了淀粉含量。S2处理下晋谷21的峰值黏度和崩解值降低。代谢组学分析表明,S2通过调控黄酮类和组氨酸代谢途径促进晋谷21中黄酮类物质(山奈酚、表儿茶素等)积累并抑制L-组氨酸表达,导致蛋白质含量降低、脂肪和淀粉含量增加、峰值黏度和崩解值降低,从而影响谷子品质形成。S2处理激活了晋谷40的芪类、二芳基庚烷类和姜辣素生物合成途径,减少了去甲氧基姜黄素和绿原酸的合成,增加了蛋白质含量,降低了脂肪含量。S3处理激活了晋谷40的酪氨酸代谢途径,上调了L-酪氨酸和龙胆酸表达,增加了蛋白质含量,降低了脂肪含量,进而影响谷子品质。本研究为谷子硒肥安全施用、优质栽培及富硒功能食品开发提供了理论依据。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/fec1/12124234/635a7e3d54fa/FSN3-13-e70362-g006.jpg

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