Plant Biology and Crop Science, Rothamsted Research Harpenden, Hertfordshire, UK.
Front Plant Sci. 2013 Mar 15;4:50. doi: 10.3389/fpls.2013.00050. eCollection 2013.
The cell walls of grasses such as wheat, maize, rice, and sugar cane, contain large amounts of ferulate that is ester-linked to the cell wall polysaccharide glucuronoarabinoxylan (GAX). This ferulate is considered to limit the digestibility of polysaccharide in grass biomass as it forms covalent linkages between polysaccharide and lignin components. Candidate genes within a grass-specific clade of the BAHD acyl-coA transferase superfamily have been identified as being responsible for the ester linkage of ferulate to GAX. Manipulation of these BAHD genes may therefore be a biotechnological target for increasing efficiency of conversion of grass biomass into biofuel. Here, we describe the expression of these candidate genes and amounts of bound ferulate from various tissues and developmental stages of the model grass Brachypodium distachyon. BAHD candidate transcripts and significant amounts of bound ferulate were present in every tissue and developmental stage. We hypothesize that BAHD candidate genes similar to the recently described Oryza sativa p-coumarate monolignol transferase (OsPMT) gene (PMT sub-clade) are principally responsible for the bound para-coumaric acid (pCA), and that other BAHD candidates (non-PMT sub-clade) are responsible for bound ferulic acid (FA). There were some similarities with between the ratio of expression non-PMT/PMT genes and the ratio of bound FA/pCA between tissue types, compatible with this hypothesis. However, much further work to modify BAHD genes in grasses and to characterize the heterologously expressed proteins is required to demonstrate their function.
禾本科植物细胞壁,如小麦、玉米、水稻和甘蔗,含有大量阿魏酸,它通过酯键与细胞壁多糖半乳阿拉伯木聚糖(GAX)相连。由于阿魏酸在多糖和木质素成分之间形成共价键,因此它被认为限制了草类生物质中多糖的消化率。在 BAHD 酰基辅酶 A 转移酶超家族的禾本科特异性分支中,已经鉴定出候选基因负责阿魏酸与 GAX 的酯键连接。因此,这些 BAHD 基因的操纵可能是提高草类生物质转化为生物燃料效率的生物技术目标。在这里,我们描述了候选基因在模式禾本科植物短柄草不同组织和发育阶段的表达以及结合阿魏酸的量。BAHD 候选转录本和大量结合的阿魏酸存在于每个组织和发育阶段。我们假设与最近描述的水稻 p-香豆酸单木质素转移酶(OsPMT)基因(PMT 亚家族)相似的 BAHD 候选基因主要负责结合对香豆酸(pCA),而其他 BAHD 候选基因(非 PMT 亚家族)负责结合阿魏酸(FA)。在组织类型之间,非-PMT/PMT 基因的表达比率与结合 FA/pCA 的比率之间存在一些相似性,这与该假设一致。然而,为了证明它们的功能,还需要进一步修改禾本科植物中的 BAHD 基因,并对异源表达的蛋白质进行表征。