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首页> 外文期刊>Journal of the Chinese Chemical Society >Fingerprints of Phalaenopsis Tissues in Growth and Spike Induction Periods-A Solid-state ~(13)C NMR Approach
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Fingerprints of Phalaenopsis Tissues in Growth and Spike Induction Periods-A Solid-state ~(13)C NMR Approach

机译:蝴蝶兰组织在生长期和穗诱导期的指纹图谱-固态〜(13)C NMR方法

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摘要

Solid-state Nuclear Magnetic Resonance (ss-NMR) ~(13)C single-pulse excitation spectroscopy in combination with the magic-angle spinning (MAS) technique was applied to a series of Phalaenopsis tissues, including the leaf, sheath, stem, and root, at different growth and spiking periods. Compared with {~1H}/~(13)C cross-polarization MAS spectra, the ~(13)C single-pulse excitation MAS spectra displayed very distinct spectral patterns, recognizable as fingerprints of the tissues studied. ~1Here, we demonstrate that solid-state ~(13)C single-pulse excitation NMR spectroscopy provides a direct and robust analytical tool for studying the various tissues of Phalaenopsis in different growth and spiking induction periods.
机译:固态核磁共振(ss-NMR)〜(13)C单脉冲激发光谱结合魔角旋转(MAS)技术应用于蝴蝶兰组织,包括叶片,鞘,茎,和根,处于不同的生长和峰值时期。与{〜1H} /〜(13)C交叉极化MAS光谱相比,〜(13)C单脉冲激发MAS光谱显示出非常不同的光谱模式,可以识别为所研究组织的指纹。 〜1这里,我们证明了固态〜(13)C单脉冲激发NMR光谱学为研究蝴蝶兰在不同生长和峰值诱导时期的各种组织提供了直接而强大的分析工具。

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