van Erven Gijs, Veersma Romy J, Kabel Mirjam A
Laboratory of Food Chemistry, Wageningen University & Research, Bornse Weilanden 9, Wageningen 6708 WG, The Netherlands.
Wageningen Food and Biobased Research, Bornse Weilanden 9, Wageningen 6708 WG, The Netherlands.
J Agric Food Chem. 2025 Apr 16;73(15):9136-9143. doi: 10.1021/acs.jafc.4c11880. Epub 2025 Apr 5.
Wheat bran is a large volume sidestream of wheat flour production and is used in food and feed applications. Despite great advances in the characterization of the wheat bran hemicellulose component, thus far, only limited attention has been paid to wheat bran lignin. Here, we describe the comprehensive structural characterization of wheat bran lignin, facilitated by sequential enzymatic starch and protein removal, followed by mild γ-valerolactone organosolv extraction and extensive purification. Quantitative C-IS pyrolysis-GC-MS and HSQC NMR revealed that wheat bran lignin is enriched in syringyl subunits (S/G ∼ 0.9), as compared to wheat straw lignin (typical S/G ∼ 0.5), but surprisingly poor in -coumarate incorporated (<1 per 100 aromatic rings), entirely free of tricin, and accordingly composed of typical β-O-4 aryl ether (84%), β-5 phenylcoumaran (7%), and β-β resinol (9%) interunit linkages. Moreover, and in line with the interunit linkage abundance (46 per 100 aromatic rings), alkaline SEC and P NMR, respectively, confirmed a macromolecular nature ( 6900 g/mol, 5.9) and low phenolic hydroxyl content (1.6 mmol/g of lignin) of the wheat bran lignin structure. Our extensive characterization efforts contribute to the dedicated valorization of wheat bran lignin and support understanding potential physiological effects when incorporated into human and animal diets.
麦麸是小麦粉生产过程中的大量副产物,用于食品和饲料领域。尽管在麦麸半纤维素成分的表征方面取得了巨大进展,但迄今为止,对麦麸木质素的关注仍较为有限。在此,我们描述了麦麸木质素的全面结构表征,通过依次酶解去除淀粉和蛋白质,随后进行温和的γ-戊内酯有机溶剂提取和广泛纯化来实现。定量C-IS热解-气相色谱-质谱联用仪(pyrolysis-GC-MS)和异核单量子相干核磁共振谱(HSQC NMR)分析表明,与麦秸木质素(典型的S/G约为0.5)相比,麦麸木质素富含紫丁香基亚基(S/G约为0.9),但令人惊讶的是,其对香豆酸掺入量很低(每100个芳香环中少于1个),完全不含小麦黄素,因此由典型的β-O-4芳基醚(84%)、β-5苯基香豆满(7%)和β-β树脂醇(9%)单元间连接键组成。此外,与单元间连接键丰度(每100个芳香环中有46个)一致,碱性尺寸排阻色谱(SEC)和磷核磁共振谱(P NMR)分别证实了麦麸木质素结构具有大分子性质(重均分子量约为6900 g/mol,多分散指数约为5.9)和低酚羟基含量(1.6 mmol/g木质素)。我们广泛的表征工作有助于麦麸木质素的专门增值利用,并有助于理解其掺入人类和动物饮食时的潜在生理效应。