Al-Sheikh Ahmed Sarah, Zhang Jingjuan, Farhan Hussein, Zhang Yingquan, Yu Zitong, Islam Shahidul, Chen Jiansheng, Cricelli Sanda, Foreman Andrew, Ende Wim Van den, Ma Wujun, Dell Bernard
Agricultural Sciences, College of Science, Health, Engineering and Education, Murdoch University, 90 South Street, Murdoch, WA 6150, Australia.
College of Science, Health, Engineering and Education, Murdoch University, 90 South Street, Murdoch 6150, WA, Australia.
Int J Mol Sci. 2020 Nov 5;21(21):8276. doi: 10.3390/ijms21218276.
In plant tissues, sugar levels are determined by the balance between sugar import, export, and sugar synthesis. So far, water soluble carbohydrate (WSC) dynamics have not been investigated in a diurnal context in wheat stems as compared to the dynamics in flag leaves during the terminal phases of grain filling. Here, we filled this research gap and tested the hypothesis that WSC dynamics interlink with gene expression of The main stems and flag leaves of two genotypes, Westonia and Kauz, were sampled at four hourly intervals over a 24 h period at six developmental stages from heading to 28 DAA (days after anthesis). The total levels of WSC and WSC components were measured, and gene expression was quantified at 21 DAA. On average, the total WSC and fructan levels in the stems were double those in the flag leaves. In both cultivars, diurnal patterns in the total WSC and sucrose were detected in leaves across all developmental stages, but not for the fructans 6-kestose and bifurcose. However, in stems, diurnal patterns of the total WSC and fructan were only found at anthesis in Kauz. The different levels of WSC and WSC components between Westonia and Kauz are likely associated with leaf chlorophyll levels and fructan degradation, especially 6-kestose degradation. High correlation between levels of expression and sucrose in leaves indicated that expression is likely to be influenced by the level of sucrose in leaves, and the combination of high levels of expression and sucrose in Kauz may contribute to its high grain yield under well-watered conditions.
在植物组织中,糖水平由糖的输入、输出及糖合成之间的平衡决定。到目前为止,与灌浆末期旗叶中的动态变化相比,尚未在昼夜条件下研究小麦茎中水溶性碳水化合物(WSC)的动态变化。在此,我们填补了这一研究空白,并检验了以下假设:WSC动态变化与基因表达相互关联。在从抽穗到花后28天(DAA)的六个发育阶段,每隔四小时对两个基因型(Westonia和Kauz)的主茎和旗叶进行取样。测定了WSC及其组分的总水平,并在花后21天对基因表达进行了定量分析。平均而言,茎中WSC和果聚糖的总水平是旗叶中的两倍。在两个品种中,所有发育阶段叶片中均检测到WSC总量和蔗糖的昼夜变化模式,但对于果聚糖6-蔗果三糖和分枝蔗果四糖则未检测到。然而,在茎中,仅在Kauz的开花期发现了WSC总量和果聚糖的昼夜变化模式。Westonia和Kauz之间WSC及其组分的不同水平可能与叶片叶绿素水平和果聚糖降解,尤其是6-蔗果三糖降解有关。叶片中基因表达水平与蔗糖之间的高度相关性表明,基因表达可能受叶片中蔗糖水平的影响,并且Kauz中高水平的基因表达和蔗糖的组合可能有助于其在水分充足条件下获得高产。