Dynamic Investigation of Auxin on Germination of Sesamum Indicum Seed by 1H Spectroscopy and Chemical Shift Selection Imaging

Pub Date : 2024-03-29 DOI:10.12982/cmjs.2024.033
Yuhui Xiao, Wenliang Liao, Honghao Cai, Hui Ni
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Abstract

Ger mination of sesame seeds in acidic and indole-3-acetic acid (IAA) liquid mediums was investigated using single pulse 1H spectroscopy and chemical shift selection imaging. The spectra and images demonstrated high correlation and reliability. Chemical shift selection imaging allowed for an intuitive comprehension of the dynamic distribution of metabolites and structural changes during germination, leading to a clearer understanding of IAA’s regulation on sesame metabolites, when combined with 1H spectra. Results showed that exogenous hormones accelerated the decomposition of lipid macromolecules before rapid radicle growth, while IAA delayed sesame development at this stage. However, post-growth delay, the addition of IAA effectively accelerated germination. This study confirms that 1H spectroscopy and chemical shift selection imaging can interpret the metabolic response of plants to the change in their internal physiological state and help to determine the optimal time to add IAA.
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利用 1H 光谱和化学位移选择成像技术动态研究 Auxin 对大豆种子萌发的影响
利用单脉冲 1H 光谱和化学位移选择成像技术研究了芝麻在酸性和吲哚-3-乙酸(IAA)液体介质中的萌发。光谱和图像显示出高度的相关性和可靠性。化学位移选择成像可以直观地了解萌芽过程中代谢物的动态分布和结构变化,结合 1H 光谱,可以更清楚地了解 IAA 对芝麻代谢物的调控作用。结果表明,在胚根快速生长之前,外源激素加速了脂质大分子的分解,而IAA则延迟了芝麻在这一阶段的发育。然而,在生长延迟后,添加 IAA 能有效加速发芽。这项研究证实,1H 光谱和化学位移选择成像可以解释植物对其内部生理状态变化的代谢反应,有助于确定添加 IAA 的最佳时机。
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