Department of Biology, Lund University, Lund, Sweden.
Plant Cell Environ. 2010 Sep;33(9):1513-28. doi: 10.1111/j.1365-3040.2010.02161.x. Epub 2010 Apr 22.
pH is a highly variable environmental factor for the root, and plant cells can modify apoplastic pH for nutrient acquisition and in response to extracellular signals. Nevertheless, surprisingly few effects of external pH on plant gene expression have been reported. We have used microarrays to investigate whether external pH affects global gene expression. In Arabidopsis thaliana roots, 881 genes displayed at least twofold changes in transcript abundance 8 h after shifting medium pH from 6.0 to 4.5, identifying pH as a major affector of global gene expression. Several genes responded within 20 min, and gene responses were also observed in leaves of seedling cultures. The pH 4.5 treatment was not associated with abiotic stress, as evaluated from growth and transcriptional response. However, the observed patterns of global gene expression indicated redundancies and interactions between the responses to pH, auxin and pathogen elicitors. In addition, major shifts in gene expression were associated with cell wall modifications and Ca(2+) signalling. Correspondingly, a marked overrepresentation of Ca(2+)/calmodulin-associated motifs was observed in the promoters of pH-responsive genes. This strongly suggests that plant pH recognition involves intracellular Ca(2+). Overall, the results emphasize the previously underappreciated role of pH in plant responses to the environment.
pH 值是根的一个高度可变的环境因素,植物细胞可以通过改变质外体 pH 值来获取营养物质并响应细胞外信号。然而,令人惊讶的是,外部 pH 值对植物基因表达的影响却鲜有报道。我们使用微阵列技术来研究外部 pH 值是否会影响全局基因表达。在拟南芥根中,881 个基因的转录物丰度在将培养基 pH 值从 6.0 调至 4.5 8 小时后至少发生了两倍的变化,这表明 pH 值是全局基因表达的主要调节因子。一些基因在 20 分钟内就有了响应,在幼苗培养物的叶片中也观察到了基因响应。pH 值为 4.5 的处理与非生物胁迫无关,可从生长和转录响应来评估。然而,观察到的全局基因表达模式表明,对 pH 值、生长素和病原体激发子的反应之间存在冗余和相互作用。此外,基因表达的重大变化与细胞壁修饰和 Ca(2+)信号转导有关。相应地,在 pH 响应基因的启动子中观察到 Ca(2+)/钙调蛋白相关基序的明显过表达。这强烈表明植物 pH 值识别涉及细胞内 Ca(2+)。总的来说,这些结果强调了 pH 值在植物对环境响应中的作用被低估了。