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遗传和农艺生物强化计划中甜玉米穗中锌的分异和积累。

Speciation and accumulation of Zn in sweetcorn kernels for genetic and agronomic biofortification programs.

机构信息

School of Agriculture and Food Sciences, The University of Queensland, Gatton, QLD, 4343, Australia.

Department of Agriculture and Fisheries, Gatton, QLD, 4343, Australia.

出版信息

Planta. 2019 Jul;250(1):219-227. doi: 10.1007/s00425-019-03162-x. Epub 2019 Apr 12.

Abstract

In sweetcorn (Zea mays L.), embryo Zn is accumulated mainly as Zn-phytate, whereas endosperm Zn is complexed with a N- or S-containing ligand. Understanding the speciation of Zn in crop plants helps improve the effectiveness of biofortification efforts. Kernels of four sweetcorn (Zea mays L.) varieties were analysed for Zn concentration and content. We also assessed the speciation of the Zn in the embryo, endosperm, and pericarp in situ using synchrotron-based X-ray absorption spectroscopy. The majority of the Zn was in the endosperm and pericarp (72%), with the embryo contributing 28%. Approximately 79% of the Zn in the embryo accumulated as Zn-phytate, whereas in the endosperm most of the Zn was complexed with a N- or S-containing ligand, possibly as Zn-histidine and Zn-cysteine. This suggests that whilst the Zn in the endosperm and pericarp is likely to be bioavailable for humans, the Zn in the embryo is of low bioavailability. This study highlights the importance of targeting the endosperm of sweetcorn kernels as the tissue for increasing bioavailable Zn concentration.

摘要

在甜玉米(Zea mays L.)中,胚中的 Zn 主要以 Zn-植酸的形式积累,而胚乳中的 Zn 则与含 N 或 S 的配体结合。了解作物中 Zn 的形态有助于提高生物强化的效果。对四个甜玉米(Zea mays L.)品种的玉米粒进行了 Zn 浓度和含量分析。我们还使用基于同步加速器的 X 射线吸收光谱原位评估了胚、胚乳和果皮中 Zn 的形态。大部分 Zn 存在于胚乳和果皮中(72%),胚贡献了 28%。大约 79%的胚中的 Zn 积累为 Zn-植酸,而在胚乳中,大部分 Zn 与含 N 或 S 的配体结合,可能是 Zn-组氨酸和 Zn-半胱氨酸。这表明,尽管胚乳和果皮中的 Zn 可能对人类具有生物可利用性,但胚中的 Zn 生物利用度较低。本研究强调了将甜玉米籽粒的胚乳作为增加生物可利用 Zn 浓度的目标组织的重要性。

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