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选育高锌小麦品种可提高谷物锌的生物可利用率。

Selecting High Zinc Wheat Cultivars Increases Grain Zinc Bioavailability.

机构信息

State Key Laboratory of Crop Stress Biology for Arid Areas, Northwest A&F University, Yangling, Shaanxi 712100, China.

College of Natural Resources and Environment, Northwest A&F University, Yangling, Shaanxi 712100, China.

出版信息

J Agric Food Chem. 2021 Sep 29;69(38):11196-11203. doi: 10.1021/acs.jafc.1c03166. Epub 2021 Sep 16.

Abstract

Improving the concentration and bioavailability of zinc (Zn) in cereal grains is an important way to solve the problem of Zn deficiency in human body. The bioavailability of Zn is related to both its distribution and speciation in grains. In the current study, we examined the differences of Zn concentration, distribution, and speciation within grains among wheat cultivars with similar high grain yield but contrasting grain Zn concentration using synchrotron micro X-ray fluorescence (μ-XRF) and X-ray absorption near-edge structure (XANES). Results showed that compared to the low-Zn cultivar, the Zn concentration was 103, 50, 76, 33, and 64% higher in the crease region, aleurone layer, scutellum, embryonic axis, and endosperm of the high-Zn cultivar, respectively. Zinc mainly colocalized with phosphorus (P) in the aleurone layer and the scutellum, but less colocalization of Zn with P and a much lower concentration ratio of P/Zn were found in the high-Zn cultivar. Sulfur (S) is present in the form of scattered spots in the endosperm in accord with Zn, but the colocalization of Zn with S was predominant in the modified aleurone layer and the nucellar projection of the high-Zn cultivar. XANES results showed the lower proportion of Zn-phytate in the high-Zn cultivar. Findings indicated that it is possible to select the high-yield wheat cultivar with both high grain Zn concentration and high bioavailability, which provide a new perspective for genetic Zn biofortification.

摘要

提高谷物中锌(Zn)的浓度和生物利用度是解决人体缺锌问题的重要途径。Zn 的生物利用度与其在谷物中的分布和形态有关。本研究利用同步辐射微 X 射线荧光(μ-XRF)和 X 射线吸收近边结构(XANES)技术,研究了具有相似高谷物产量但籽粒 Zn 浓度差异较大的小麦品种中,籽粒内 Zn 浓度、分布和形态的差异。结果表明,与低 Zn 品种相比,高 Zn 品种的皱粒区、糊粉层、盾片、胚轴和胚乳中的 Zn 浓度分别高出 103%、50%、76%、33%和 64%。Zn 主要与 P 在糊粉层和盾片中共定位,但在高 Zn 品种中,Zn 与 P 的共定位较少,P/Zn 浓度比值也较低。S 以散在斑点的形式存在于胚乳中,与 Zn 共存,但在高 Zn 品种的改良糊粉层和珠心突起中,Zn 与 S 的共定位占主导地位。XANES 结果表明,高 Zn 品种中 Zn-植酸的比例较低。研究结果表明,有可能选择高产量且籽粒 Zn 浓度和生物利用度均较高的小麦品种,为遗传 Zn 生物强化提供了新视角。

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