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钙和镁对玉米氨基酸积累的贡献:从生理生化过程的响应角度。

The contribution of Ca and Mg to the accumulation of amino acids in maize: from the response of physiological and biochemical processes.

机构信息

School of Life Sciences, Yan'an University, Yan'an, 716000, China.

Shaanxi Key Laboratory of Chinese Jujube, Yan'an University, Yan'an, 716000, China.

出版信息

BMC Plant Biol. 2024 Jun 19;24(1):579. doi: 10.1186/s12870-024-05287-y.

Abstract

BACKGROUND

The quality of maize kernels is significantly enhanced by amino acids, which are the fundamental building blocks of proteins. Meanwhile, calcium (Ca) and magnesium (Mg), as important nutrients for maize growth, are vital in regulating the metabolic pathways and enzyme activities of amino acid synthesis. Therefore, our study analyzed the response process and changes of amino acid content, endogenous hormone content, and antioxidant enzyme activity in kernels to the coupling addition of sugar alcohol-chelated Ca and Mg fertilizers with spraying on maize.

RESULT

(1) The coupled addition of Ca and Mg fertilizers increased the Ca and Mg content, endogenous hormone components (indole-3-acetic acid, IAA; gibberellin, GA; zeatin riboside, ZR) content, antioxidant enzyme activity, and amino acid content of maize kernels. The content of Ca and Mg in kernels increased with the increasing levels of Ca and Mg fertilizers within a certain range from the filling to the wax ripening stage, and significantly positively correlated with antioxidant enzyme activities. (2) The contents of IAA, GA, and ZR continued to rise, and the activities of superoxide dismutase (SOD) and catalase (CAT) were elevated, which effectively enhanced the ability of cells to resist oxidative damage, promoted cell elongation and division, and facilitated the growth and development of maize. However, the malondialdehyde (MDA) content increased consistently, which would attack the defense system of the cell membrane plasma to some extent. (3) Leucine (LEU) exhibited the highest percentage of essential amino acid components and a gradual decline from the filling to the wax ripening stage, with the most substantial beneficial effect on essential amino acids. (4) CAT and SOD favorably governed essential amino acids, while IAA and MDA negatively regulated them. The dominant physiological driving pathway for the synthesis of essential amino acids was "IAA-CAT-LEU", in which IAA first negatively drove CAT activity, and CAT then advantageously controlled LEU synthesis.

CONCLUSION

These findings provide a potential approach to the physiological and biochemical metabolism of amino acid synthesis, and the nutritional quality enhancement of maize kernel.

摘要

背景

氨基酸是蛋白质的基本组成部分,可显著提高玉米粒的品质。同时,钙(Ca)和镁(Mg)作为玉米生长的重要营养物质,对于调节氨基酸合成的代谢途径和酶活性至关重要。因此,我们的研究分析了糖醇螯合钙镁肥与叶面喷施耦合添加后玉米子粒中氨基酸含量、内源激素含量和抗氧化酶活性的响应过程和变化。

结果

(1)钙镁肥耦合添加提高了玉米子粒中 Ca 和 Mg 含量、内源激素成分(吲哚-3-乙酸,IAA;赤霉素,GA;玉米素核苷,ZR)含量、抗氧化酶活性和氨基酸含量。在灌浆期至蜡熟期,Ca 和 Mg 含量随 Ca 和 Mg 肥用量的增加而增加,与抗氧化酶活性呈显著正相关。(2)IAA、GA 和 ZR 含量持续上升,超氧化物歧化酶(SOD)和过氧化氢酶(CAT)活性升高,有效增强了细胞抵抗氧化损伤的能力,促进了细胞的伸长和分裂,促进了玉米的生长发育。然而,丙二醛(MDA)含量持续增加,在一定程度上会攻击细胞膜质体的防御系统。(3)亮氨酸(LEU)表现出最高的必需氨基酸成分百分比,且从灌浆期到蜡熟期逐渐下降,对必需氨基酸的有益影响最大。(4)CAT 和 SOD 有利于控制必需氨基酸,而 IAA 和 MDA 则对其产生负调控。必需氨基酸合成的主要生理驱动途径是“IAA-CAT-LEU”,其中 IAA 首先负调控 CAT 活性,然后 CAT 有利地控制 LEU 合成。

结论

这些发现为氨基酸合成的生理生化代谢和提高玉米子粒的营养品质提供了一种潜在的方法。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/9a49/11186291/227e189a00fc/12870_2024_5287_Fig1_HTML.jpg

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