Veličković Dušan, Saulnier Luc, Lhomme Margot, Damond Aurélie, Guillon Fabienne, Rogniaux Hélène
INRA , UR1268 Biopolymers Interactions Assemblies, F-44316 Nantes, France.
J Agric Food Chem. 2016 Aug 17;64(32):6249-56. doi: 10.1021/acs.jafc.6b02047. Epub 2016 Aug 8.
Arabinoxylans (AX) and (1→3),(1→4)-β-glucans (BG) are the main components of cereal cell walls and influence many aspects of their end uses. Important variations in the composition and structure of these polysaccharides have been reported among cereals and cultivars of a given species. In this work, the spatial distribution of AX and BG in the endosperm of mature grains was established for nine wheat varieties and eight barley varieties using enzymatically assisted mass spectrometry imaging (MSI). Important structural features of the AX and BG polymers that were previously shown to influence their physicochemical properties were assessed. Differences in the distribution of AX and BG structures were observed, both within the endosperm of a given cultivar and between wheat and barley cultivars. This study provides a unique picture of the structural heterogeneity of AX and BG polysaccharides at the scale of the whole endosperm in a series of wheat and barley cultivars. Thus, it can participate meaningfully in a strategy aiming at understanding the structure-function relationships of these two polymers.
阿拉伯木聚糖(AX)和(1→3),(1→4)-β-葡聚糖(BG)是谷物细胞壁的主要成分,并影响其最终用途的许多方面。据报道,这些多糖的组成和结构在不同谷物以及同一物种的不同品种间存在重要差异。在这项研究中,利用酶辅助质谱成像(MSI)技术确定了9个小麦品种和8个大麦品种成熟籽粒胚乳中AX和BG的空间分布。对先前已证明会影响其物理化学性质的AX和BG聚合物的重要结构特征进行了评估。观察到AX和BG结构分布的差异,这些差异既存在于给定品种的胚乳内部,也存在于小麦和大麦品种之间。本研究提供了一系列小麦和大麦品种胚乳整体尺度上AX和BG多糖结构异质性的独特图景。因此,它能够为旨在理解这两种聚合物结构-功能关系的策略做出有意义的贡献。