Paux Etienne, Carocha Víctor, Marques Cristina, Mendes de Sousa António, Borralho Nuno, Sivadon Pierre, Grima-Pettenati Jacqueline
UMR UPS/CNRS 5546, Pôle de Biotechnologies Végétales, 24 chemin de Borde Rouge, BP42617, Auzeville Tolosane, 31326 Castanet Tolosan, France.
New Phytol. 2005 Jul;167(1):89-100. doi: 10.1111/j.1469-8137.2005.01396.x.
Tension wood formed in response to gravitational force is a striking example of the plasticity of angiosperm wood. In this study our goal was to characterize the early changes in gene expression during tension wood formation in Eucalyptus. Using cDNA array technology, transcript profiling of 231 genes preferentially expressed in differentiating Eucalyptus xylem was followed from 6 h to 1 wk of a tension time course of artificially bent Eucalyptus trees. 196 genes were differentially regulated between control and bent trees, some exhibiting distinctive expression patterns related to changes in secondary cell wall structure and composition. For instance, expression of a cellulose synthase gene was well correlated with the appearance of the G-layers. Cluster correlation analysis revealed differential regulation of lignin biosynthetic genes and may also be used to help infer the function of unknown gene products. Eucalyptus wood transcriptome analysis during tension wood formation not only provided new clues into the transcriptional regulatory network of genes preferentially expressed in xylem, but also highlighted candidate genes responsible for the genetic and environmentally induced variation of wood quality traits.
因重力作用形成的拉力木是被子植物木材可塑性的一个显著例子。在本研究中,我们的目标是表征桉树拉力木形成过程中基因表达的早期变化。利用cDNA阵列技术,在人工弯曲桉树的拉力时间进程从6小时到1周的过程中,对231个在分化的桉树木质部中优先表达的基因进行了转录谱分析。196个基因在对照树和弯曲树之间受到差异调节,其中一些表现出与次生细胞壁结构和组成变化相关的独特表达模式。例如,一种纤维素合酶基因的表达与G层的出现密切相关。聚类相关性分析揭示了木质素生物合成基因的差异调节,也可用于帮助推断未知基因产物的功能。桉树拉力木形成过程中的木材转录组分析不仅为木质部中优先表达的基因的转录调控网络提供了新线索,还突出了负责木材质量性状遗传和环境诱导变异的候选基因。