Ogura Takaaki, Kobayashi Natsuko I, Hermans Christian, Ichihashi Yasunori, Shibata Arisa, Shirasu Ken, Aoki Naohiro, Sugita Ryohei, Ogawa Takahiro, Suzuki Hisashi, Iwata Ren, Nakanishi Tomoko M, Tanoi Keitaro
Graduate School of Agricultural and Life Sciences, The University of Tokyo, Tokyo, Japan.
Crop Production and Biostimulation Laboratory, Interfacultary School of Bioengineers, Université libre de Bruxelles, Brussels, Belgium.
Front Plant Sci. 2020 Jun 4;11:563. doi: 10.3389/fpls.2020.00563. eCollection 2020.
Magnesium (Mg) is essential for many biological processes in plant cells, and its deficiency causes yield reduction in crop systems. Low Mg status reportedly affects photosynthesis, sucrose partitioning and biomass allocation. However, earlier physiological responses to Mg deficiency are scarcely described. Here, we report that Mg deficiency in first modified the mineral profile in mature leaves within 1 or 2 days, then affected sucrose partitioning after 4 days, and net photosynthesis and biomass production after 6 days. The short-term Mg deficiency reduced the contents of phosphorus (P), potassium, manganese, zinc and molybdenum in mature but not in expanding (young) leaves. While P content decreased in mature leaves, P transport from roots to mature leaves was not affected, indicating that Mg deficiency triggered retranslocation of the mineral nutrients from mature leaves. A global transcriptome analysis revealed that Mg deficiency triggered the expression of genes involved in defence response in young leaves.
镁(Mg)对植物细胞中的许多生物过程至关重要,其缺乏会导致作物系统产量下降。据报道,低镁状态会影响光合作用、蔗糖分配和生物量分配。然而,关于早期对镁缺乏的生理反应却鲜有描述。在此,我们报告,镁缺乏首先在1或2天内改变了成熟叶片中的矿物质分布,然后在4天后影响了蔗糖分配,6天后影响了净光合作用和生物量生产。短期镁缺乏降低了成熟叶片中磷(P)、钾、锰、锌和钼的含量,但未影响正在伸展的(幼嫩)叶片。虽然成熟叶片中的磷含量下降,但从根部到成熟叶片的磷运输未受影响,这表明镁缺乏引发了矿物质营养从成熟叶片的重新转运。一项全转录组分析显示,镁缺乏触发了幼嫩叶片中参与防御反应的基因表达。