コンテンツへスキップ
Merck
  • A grass-specific cellulose-xylan interaction dominates in sorghum secondary cell walls.

A grass-specific cellulose-xylan interaction dominates in sorghum secondary cell walls.

Nature communications (2020-11-29)
Yu Gao, Andrew S Lipton, Yuuki Wittmer, Dylan T Murray, Jenny C Mortimer
要旨

Sorghum (Sorghum bicolor L. Moench) is a promising source of lignocellulosic biomass for the production of renewable fuels and chemicals, as well as for forage. Understanding secondary cell wall architecture is key to understanding recalcitrance i.e. identifying features which prevent the efficient conversion of complex biomass to simple carbon units. Here, we use multi-dimensional magic angle spinning solid-state NMR to characterize the sorghum secondary cell wall. We show that xylan is mainly in a three-fold screw conformation due to dense arabinosyl substitutions, with close proximity to cellulose. We also show that sorghum secondary cell walls present a high ratio of amorphous to crystalline cellulose as compared to dicots. We propose a model of sorghum cell wall architecture which is dominated by interactions between three-fold screw xylan and amorphous cellulose. This work will aid the design of low-recalcitrance biomass crops, a requirement for a sustainable bioeconomy.

材料
製品番号
ブランド
製品内容

Sigma-Aldrich
ムラシゲ・スクーグ基礎塩混合物 (MS), powder, suitable for plant cell culture