ADReM Data Lab, Department of Computer Science, University of Antwerp, Antwerp 2020, Belgium.
Laboratory for Integrated Molecular Plant Physiology Research (IMPRES), Department of Biology, University of Antwerp, Antwerp 2020, Belgium.
J Hazard Mater. 2024 Feb 15;464:132956. doi: 10.1016/j.jhazmat.2023.132956. Epub 2023 Nov 10.
Global soil acidification is increasing, enlarging aluminum (Al) availability in soils, leading to reductions in plant growth. This study investigates the effect of Al stress on the leaf growth zones of Rye (Secale cereale, cv Beira). Kinematic analysis showed that the effect of Al on leaf growth rates was mainly due to a reduced cell production rate in the meristem. Transcriptomic analysis identified 2272 significantly (log2fold > |0.5| FDR < 0.05) differentially expressed genes (DEGs) for Al stress. There was a downregulation in several DEGs associated with photosynthetic processes and an upregulation in genes for heat/light response, and HO production in all leaf zones. DEGs associated with heavy metals and malate transport were increased, particularly, in the meristem. To determine the putative function of these processes in Al tolerance, we performed biochemical analyses comparing the tolerant Beira with an Al sensitive variant RioDeva. Beira showed improved sugar metabolism and redox homeostasis, specifically in the meristem compared to RioDeva. Similarly, a significant increase in malate and citrate production, which are known to aid in Al detoxification in plants, was found in Beira. This suggests that Al tolerance in Rye is linked to its ability for Al exclusion from the leaf meristem.
全球土壤酸化正在加剧,增加了土壤中铝(Al)的可用性,导致植物生长减少。本研究调查了 Al 胁迫对黑麦(Secale cereale,cv Beira)叶片生长区的影响。运动学分析表明,Al 对叶片生长速率的影响主要是由于分生组织中细胞产生率降低。转录组分析确定了 2272 个显著(log2fold > |0.5| FDR < 0.05)差异表达基因(DEGs)对 Al 胁迫。几个与光合作用过程相关的 DEGs 下调,而与热/光反应以及所有叶片区 HO 产生相关的基因上调。与重金属和苹果酸转运相关的 DEGs 增加,特别是在分生组织中。为了确定这些过程在 Al 耐受中的可能功能,我们进行了生化分析,比较了耐 Al 的 Beira 与 Al 敏感的 RioDeva 变体。与 RioDeva 相比,Beira 在分生组织中表现出改善的糖代谢和氧化还原稳态。同样,发现 Beira 中苹果酸和柠檬酸的产量显著增加,已知这有助于植物中的 Al 解毒。这表明,黑麦的 Al 耐受性与其将 Al 从叶片分生组织中排除的能力有关。