Department of Life Sciences and Systems Biology, University of Turin, Via Quarello 15/a, 10135 Turin, Italy.
Dipartimento di Biotecnologie, Università degli Studi di Verona, Strada le Grazie 15, 37134 Verona, Italy.
Int J Mol Sci. 2023 Feb 2;24(3):2896. doi: 10.3390/ijms24032896.
Plants evolved in the presence of the Earth's magnetic field (or geomagnetic field, GMF). Variations in MF intensity and inclination are perceived by plants as an abiotic stress condition with responses at the genomic and metabolic level, with changes in growth and developmental processes. The reduction of GMF to near null magnetic field (NNMF) values by the use of a triaxial Helmholtz coils system was used to evaluate the requirement of the GMF for Lima bean ( L.) photosynthesis and reactive oxygen species (ROS) production. The leaf area, stomatal density, chloroplast ultrastructure and some biochemical parameters including leaf carbohydrate, total carbon, protein content and δC were affected by NNMF conditions, as were the chlorophyll and carotenoid levels. RubisCO activity and content were also reduced in NNMF. The GMF was required for the reaction center's efficiency and for the reduction of quinones. NNMF conditions downregulated the expression of the homologs and , implying a connection between magnetoreception and photosynthetic efficiency. Finally, we showed that the GMF induced a higher expression of genes involved in ROS production, with increased contents of both HO and other peroxides. Our results show that, in Lima bean, the GMF is required for photosynthesis and that and may play a role in the modulation of MF-dependent responses of photosynthesis and plant oxidative stress.
植物是在地球磁场(或地磁,GMF)的存在下进化的。MF 强度和倾斜度的变化被植物感知为一种非生物胁迫条件,在基因组和代谢水平上有反应,在生长和发育过程中有变化。使用三轴亥姆霍兹线圈系统将 GMF 降低到近零磁场(NNMF)值,以评估 GMF 对利马豆(L.)光合作用和活性氧(ROS)产生的要求。NNMF 条件影响叶片面积、气孔密度、叶绿体超微结构和一些生化参数,包括叶片碳水化合物、总碳、蛋白质含量和δC,叶绿素和类胡萝卜素水平也降低。RubisCO 活性和含量在 NNMF 中也减少。GMF 是反应中心效率和醌还原所必需的。NNMF 条件下调了 和 同源物的表达,这意味着磁受体和光合作用效率之间存在联系。最后,我们表明 GMF 诱导了与 ROS 产生相关的基因的更高表达,HO 和其他过氧化物的含量增加。我们的结果表明,在利马豆中,GMF 是光合作用所必需的, 和 可能在调节 MF 依赖的光合作用和植物氧化应激反应中起作用。