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硒的施用方法对紫粒小麦的生长、硒积累与形态、蛋白质、花青素及矿质元素浓度有不同程度的调节作用。

Methods of Selenium Application Differentially Modulate Plant Growth, Selenium Accumulation and Speciation, Protein, Anthocyanins and Concentrations of Mineral Elements in Purple-Grained Wheat.

作者信息

Xia Qing, Yang Zhenping, Shui Yang, Liu Xiaoli, Chen Jie, Khan Shahbaz, Wang Jianming, Gao Zhiqiang

机构信息

College of Agriculture, Shanxi Agricultural University, Taigu, China.

出版信息

Front Plant Sci. 2020 Jul 21;11:1114. doi: 10.3389/fpls.2020.01114. eCollection 2020.

Abstract

Selenium (Se) is an essential micronutrient for human health. Deficiency and suboptimality of Se in human populations are a potential health risk. The reduction of such health risk by biofortification of crops, particularly in wheat has drawn much attention, especially for color-grained wheat as it is rich in anthocyanins and can be used as a major source of antioxidants in diet. Herein, a two-year field study on the purple-grained wheat cultivar (202w17) and common wheat cultivar (Shannong 129) was conducted with soil application (SeS) and foliar spray (SeF) of selenium. Results showed that the SeS increased shoot dry weight and grain yield. Both SeS and SeF enhanced the concentration of organic Se, but the higher concentration of organic Se in the grain of two cultivars was observed in SeF in comparison with SeS. The concentration of organic Se in the grain of 202w17 treated with SeF was approximately 1.5-fold of that in Shannong 129 with SeF. The analysis of Se accumulation in different parts of the plant revealed that 202w17 accumulated more Se in shoots and grain than Shannong 129, and 202w17 had also higher levels of total protein, total free amino acids and anthocyanin in grain than Shannong 129. In addition, SeF significantly increased the concentrations of zinc (Zn), calcium (Ca), magnesium (Mg) in both cultivars, but decreased the concentration of chromium (Cr), cadmium (Cd) and lead (Pd), which phenomenon was more significant in 202w17. Our results indicate that SeS increases plant growth, leading to higher grain yield in two cultivars tested. The purple-grained wheat (202w17) could accumulate more Se in grain and have a higher concentration of orgainic Se in grain than the common wheat (Shannong 129).

摘要

硒(Se)是人体健康必需的微量营养素。人群中硒缺乏和摄入不足存在潜在健康风险。通过作物生物强化,尤其是小麦生物强化来降低此类健康风险备受关注,特别是彩色小麦,因其富含花青素,可作为饮食中抗氧化剂的主要来源。在此,对紫粒小麦品种(202w17)和普通小麦品种(山农129)进行了为期两年的田间试验,采用土壤施硒(SeS)和叶面喷硒(SeF)的方式。结果表明,土壤施硒增加了地上部干重和籽粒产量。土壤施硒和叶面喷硒均提高了有机硒浓度,但与土壤施硒相比,两个品种籽粒中有机硒浓度在叶面喷硒处理时更高。叶面喷硒处理的202w17籽粒中有机硒浓度约为叶面喷硒处理的山农129的1.5倍。对植物不同部位硒积累的分析表明,202w17地上部和籽粒中积累的硒比山农129更多,且202w17籽粒中总蛋白、总游离氨基酸和花青素水平也高于山农129。此外,叶面喷硒显著提高了两个品种锌(Zn)、钙(Ca)、镁(Mg)的浓度,但降低了铬(Cr)、镉(Cd)和铅(Pd)的浓度,这种现象在202w17中更显著。我们的结果表明,土壤施硒促进了植物生长,使两个受试品种籽粒产量更高。紫粒小麦(202w17)籽粒中能积累更多硒,且籽粒中有机硒浓度高于普通小麦(山农129)。

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