Institute of Biological, Environmental and Rural Sciences, Aberystwyth University, Plas Gogerddan, Aberystwyth SY23 3EB, UK.
J Exp Bot. 2011 Jun;62(10):3545-61. doi: 10.1093/jxb/err045. Epub 2011 Mar 14.
Despite the economic importance of grasses as food, feed, and energy crops, little is known about the genes that control their cell wall synthesis, assembly, and remodelling. Here a detailed transcriptome analysis that allowed the identification of genes involved in grass cell wall biogenesis is provided. Differential gene expression profiling, using maize oligonucleotide arrays, was used to identify genes differentially expressed between an elongating internode, containing cells exhibiting primary cell wall synthesis, and an internode that had just ceased elongation and in which many cells were depositing secondary cell wall material. This is one of only a few studies specifically aimed at the identification of cell wall-related genes in grasses. Analysis identified new candidate genes for a role in primary and secondary cell wall biogenesis in grasses. The results suggest that many proteins involved in cell wall processes during normal development are also recruited during defence-related cell wall remodelling events. This work provides a platform for studies in which candidate genes will be functionally tested for involvement in cell wall-related processes, increasing our knowledge of cell wall biogenesis and its regulation in grasses. Since several grasses are currently being developed as lignocellulosic feedstocks for biofuel production, this improved understanding of grass cell wall biogenesis is timely, as it will facilitate the manipulation of traits favourable for sustainable food and biofuel production.
尽管草类作为食物、饲料和能源作物具有重要的经济意义,但人们对控制其细胞壁合成、组装和重塑的基因知之甚少。本文提供了一项详细的转录组分析,该分析能够鉴定参与草类细胞壁生物发生的基因。使用玉米寡核苷酸芯片进行差异基因表达谱分析,用于鉴定在伸长节间(包含正在进行初生细胞壁合成的细胞)和刚刚停止伸长且许多细胞正在沉积次生细胞壁物质的节间之间差异表达的基因。这是少数几项专门针对鉴定禾本科植物细胞壁相关基因的研究之一。分析鉴定了在禾本科植物初生和次生细胞壁生物发生中具有作用的新候选基因。结果表明,在正常发育过程中参与细胞壁过程的许多蛋白质也在与防御相关的细胞壁重塑事件中被募集。这项工作为候选基因参与细胞壁相关过程的功能测试提供了一个平台,从而增加了我们对细胞壁生物发生及其在禾本科植物中的调控的了解。由于目前几种草类正在被开发为木质纤维素生物燃料生产的饲料,因此,这种对草类细胞壁生物发生的理解的提高是及时的,因为这将有助于对有利于可持续粮食和生物燃料生产的特性进行操作。