State Key Laboratory of Subtropical Silviculture, College of Forestry and Biotechnology, Zhejiang A&F University, Hangzhou, Zhejiang 311300, China.
Biosciences Division, Oak Ridge National Laboratory, Oak Ridge, TN 37831, USA.
Plant Physiol. 2023 Dec 30;194(1):243-257. doi: 10.1093/plphys/kiad377.
Plant lignocellulosic biomass, i.e. secondary cell walls of plants, is a vital alternative source for bioenergy. However, the acetylation of xylan in secondary cell walls impedes the conversion of biomass to biofuels. Previous studies have shown that REDUCED WALL ACETYLATION (RWA) proteins are directly involved in the acetylation of xylan but the regulatory mechanism of RWAs is not fully understood. In this study, we demonstrate that overexpression of a Populus trichocarpa PtRWA-C gene increases the level of xylan acetylation and increases the lignin content and S/G ratio, ultimately yielding poplar woody biomass with reduced saccharification efficiency. Furthermore, through gene coexpression network and expression quantitative trait loci (eQTL) analysis, we found that PtRWA-C was regulated not only by the secondary cell wall hierarchical regulatory network but also by an AP2 family transcription factor HARDY (HRD). Specifically, HRD activates PtRWA-C expression by directly binding to the PtRWA-C promoter, which is also the cis-eQTL for PtRWA-C. Taken together, our findings provide insights into the functional roles of PtRWA-C in xylan acetylation and consequently saccharification and shed light on synthetic biology approaches to manipulate this gene and alter cell wall properties. These findings have substantial implications for genetic engineering of woody species, which could be used as a sustainable source of biofuels, valuable biochemicals, and biomaterials.
植物木质纤维素生物质,即植物的次生细胞壁,是生物能源的重要替代来源。然而,次生细胞壁中木聚糖的乙酰化阻碍了生物质向生物燃料的转化。先前的研究表明,REDUCED WALL ACETYLATION(RWA)蛋白直接参与木聚糖的乙酰化,但 RWAs 的调控机制尚未完全了解。在本研究中,我们证明了过量表达杨树 PtRWA-C 基因会增加木聚糖乙酰化水平,并增加木质素含量和 S/G 比,最终使杨树木质生物质的糖化效率降低。此外,通过基因共表达网络和表达数量性状位点(eQTL)分析,我们发现 PtRWA-C 不仅受到次生细胞壁层次调节网络的调节,还受到 AP2 家族转录因子 HARDY(HRD)的调节。具体来说,HRD 通过直接结合 PtRWA-C 启动子来激活 PtRWA-C 的表达,该启动子也是 PtRWA-C 的顺式-eQTL。综上所述,我们的研究结果揭示了 PtRWA-C 在木聚糖乙酰化以及随后的糖化中的功能作用,为操纵该基因和改变细胞壁特性的合成生物学方法提供了线索。这些发现对木质物种的基因工程具有重要意义,可将其作为生物燃料、有价值的生物化学物质和生物材料的可持续来源。