胚乳
阿拉伯木聚糖
乙酰化
化学
木聚糖
分布(数学)
质谱成像
生物化学
植物
生物
多糖
质谱法
色谱法
基因
数学
数学分析
作者
Mathieu Fanuel,Florent Grélard,Loïc Foucat,Camille Alvarado,Bastien Arnaud,Anne‐Laure Chateigner‐Boutin,Luc Saulnier,David Legland,Hélène Rogniaux
标识
DOI:10.1016/j.carbpol.2022.119738
摘要
This study was to investigate the distribution of water and arabinoxylan structures in growing wheat grain using two complementary imaging techniques, magnetic resonance microimaging (μMRI) and mass spectrometry imaging (MSI). μMRI showed an inhomogeneous water distribution, particularly at early stages. This heterogeneity revealed histological differences that corresponded, within the limits of resolution of μMRI, to tissues with specific physiological functions, including the vascular bundles, the cavity and the endosperm periphery. All of these tissues had a higher water content than the central endosperm. MSI revealed distinct xylan structures in these regions with high levels of Araf substitution around the cavity and acetylated xylans concentrated at the endosperm periphery. For the first time, acetylation and Araf substitution of arabinoxylans were found by image processing to spatially correlate with water distribution in planta. Acetylation and Araf substitution of xylans, which alter chain-chain interactions and increase wall porosity, decreased as the grain matured.
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