Yoshimi Yoshihisa, Yu Li, Cresswell Rosalie, Guo Xinyu, Echevarría-Poza Alberto, Lyczakowski Jan J, Dupree Ray, Kotake Toshihisa, Dupree Paul
Department of Biochemistry, University of Cambridge, Hopkins Building, The Downing Site, Tennis Court Road, Cambridge, CB2 1QW, UK.
Department of Physics, University of Warwick, Coventry, CV4 7AL, UK.
Nat Commun. 2025 Jan 31;16(1):1235. doi: 10.1038/s41467-025-56626-y.
Widely found in most plant lineages, β-mannans are structurally diverse polysaccharides that can bind to cellulose fibrils to form the complex polysaccharide architecture of the cell wall. How changes in polysaccharide structure influence its cell wall solubility or promote appropriate interaction with cellulose fibrils is poorly understood. Glucomannan backbones acquire variable patterns of galactosyl substitutions, depending on plant developmental stage and species. Here, we show that fine-tuning of galactosyl modification on glucomannans is achieved by the differing acceptor recognition of mannan α-galactosyltransferases (MAGTs). Biochemical analysis and C solid-state nuclear magnetic resonance spectroscopy of Arabidopsis with cell wall glucomannan engineered by MAGTs reveal that the degree of galactosylation strongly affects the interaction with cellulose. The findings indicate that plants tailor galactosyl modification on glucomannans for constructing an appropriate cell wall architecture, paving the way to convert properties of lignocellulosic biomass for better use.
β-甘露聚糖广泛存在于大多数植物谱系中,是结构多样的多糖,可与纤维素微纤丝结合形成细胞壁的复杂多糖结构。多糖结构的变化如何影响其细胞壁溶解性或促进与纤维素微纤丝的适当相互作用,目前还知之甚少。葡甘露聚糖主链具有可变的半乳糖基取代模式,这取决于植物的发育阶段和物种。在这里,我们表明,甘露聚糖α-半乳糖基转移酶(MAGTs)对受体的不同识别实现了葡甘露聚糖上半乳糖基修饰的微调。对经MAGTs工程改造细胞壁葡甘露聚糖的拟南芥进行生化分析和碳固态核磁共振光谱分析表明,半乳糖基化程度强烈影响与纤维素的相互作用。这些发现表明,植物通过调整葡甘露聚糖上的半乳糖基修饰来构建合适的细胞壁结构,为更好地利用木质纤维素生物质的特性铺平了道路。