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Effect of light on the gene expression and hormonal status of winter and spring wheat plants during cold hardening

机译:光照对冷冬冬小麦和春小麦基因表达和激素状态的影响

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The effect of light on gene expression and hormonal status during the development of freezing tolerance was studied in winter wheat (Triticum aestivum var. Mv Emese) and in the spring wheat variety Nadro. Ten-day-old plants (3-leaf stage) were cold hardened at 5 degrees C for 12 days under either normal (250 mu mol m-2 s-1) or low (20 mu mol m-2 s-1) light conditions. Comprehensive analysis was carried out to explore the background of frost tolerance and the differences between these wheat varieties. Global genome analysis was performed, enquiring about the details of the cold signaling pathways. The expression level of a large number of genes is affected by light, and this effect may differ in different wheat genotypes. Photosynthesis-related processes probably play a key role in the enhancement of freezing tolerance; however, there are several other genes whose induction is light-dependent, so either there is cross-talk between signaling of chloroplast originating and other protective mechanisms or there are other light sensors that transduce signals to the components responsible for stress tolerance. Changes in the level of both plant hormones (indole-3-acetic acid, cytokinins, nitric oxide and ethylene precursor 1-aminocyclopropane-1-carboxylic acid) and other stress-related protective substances (proline, phenolics) were investigated during the phases of the hardening period. Hormonal levels were also affected by light and their dynamics indicate that wheat plants try to keep growing during the cold-hardening period. The data from this experiment may provide a new insight into the cross talk between cold and light signaling in wheat.
机译:在冬小麦(Triticum aestivum var。Mv Emese)和春小麦品种Nadro中研究了光对耐冻性发展过程中基因表达和激素状态的影响。将十天大的植物(三叶期)在正常(250μmol m-2 s-1)或低(20μmol m-2 s-1)的光照下于5摄氏度冷硬化12天。条件。进行了综合分析,以探究其抗冻性的背景以及这些小麦品种之间的差异。进行了全局基因组分析,询问了冷信号通路的细节。大量基因的表达水平受光照的影响,这种影响在不同的小麦基因型中可能有所不同。与光合作用相关的过程可能在增强抗冻性中起关键作用。然而,还有其他几种基因的诱导是光依赖性的,因此要么叶绿体起源的信号传导与其他保护机制之间存在串扰,要么其他光传感器将信号转导至负责胁迫耐受性的成分。在此期间,研究了两种植物激素(吲哚-3-乙酸,细胞分裂素,一氧化氮和乙烯前体1-氨基环丙烷-1-羧酸)和其他与胁迫有关的保护性物质(脯氨酸,酚类)水平的变化。硬化期。激素水平也受到光照的影响,其动态表明,小麦植物在冷硬化期试图保持生长。来自该实验的数据可能为小麦冷光信号与光信号之间的串扰提供新的见解。

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