Department of Molecular Biology, Crop Research Institute, v.v.i., Drnovská 507, 161 06, Prague 6, Czech Republic.
Funct Integr Genomics. 2011 Jun;11(2):307-25. doi: 10.1007/s10142-011-0213-8. Epub 2011 Mar 1.
We report a series of microarray-based comparisons of gene expression in the leaf and crown of the winter barley cultivar Luxor, following the exposure of young plants to various periods of low (above and below zero) temperatures. A transcriptomic analysis identified genes which were either expressed in both the leaf and crown, or specifically in one or the other. Among the former were genes responsible for calcium and abscisic acid signalling, polyamine synthesis, late embryogenesis abundant proteins and dehydrins. In the crown, the key organ for cereal overwintering, cold treatment induced transient changes in the transcription of nucleosome assembly genes, and especially H2A and HTA11, which have been implicated in cold sensing in Arabidopsis thaliana. In the leaf, various heat-shock proteins were induced. Differences in expression pattern between the crown and leaf were frequent for genes involved in certain pathways responsible for osmolyte production (sucrose and starch, raffinose, γ-aminobutyric acid metabolism), sugar signalling (trehalose metabolism) and secondary metabolism (lignin synthesis). The action of proteins with antifreeze activity, which were markedly induced during hardening, was demonstrated by a depression in the ice nucleation temperature.
我们报告了一系列基于微阵列的冬季大麦品种 Luxor 叶片和冠部基因表达比较研究,这些研究是在将幼株暴露于不同时期的低温(零上和零下)之后进行的。转录组分析鉴定了在叶片和冠部均表达的基因,或仅在其中一个部位表达的基因。前者包括钙和脱落酸信号、多胺合成、晚期胚胎丰富蛋白和脱水素的基因。在冠部,作为谷类越冬的关键器官,冷处理诱导核小体组装基因的转录发生短暂变化,尤其是 H2A 和 HTA11,它们与拟南芥的冷感有关。在叶片中,各种热激蛋白被诱导。参与某些途径的基因在冠部和叶片之间的表达模式存在差异,这些途径负责产生渗透物(蔗糖和淀粉、棉子糖、γ-氨基丁酸代谢)、糖信号(海藻糖代谢)和次生代谢(木质素合成)。通过降低冰核形成温度,证明了在硬化过程中明显诱导的具有抗冻活性的蛋白质的作用。