State Key Laboratory of Nutrient Use and Management, College of Resources and Environmental Sciences, China Agricultural University, Beijing, 100193, China.
Beijing Key Laboratory of Growth and Developmental Regulation for Protected Vegetable Crops, Department of Vegetable Sciences, China Agricultural University, Beijing, 100193, China.
Plant Cell Rep. 2024 Jul 15;43(8):195. doi: 10.1007/s00299-024-03278-9.
ZmRLCK58, a negative growth regulator, reduces tolerance of maize seedlings to low Mg via enhancing HO accumulation in the shoot. Magnesium (Mg) deficiency is one of critical limiting factors for crop production in widespread acidic soils worldwide. However, the molecular mechanism of crop response to Mg deficiency is still largely unclear. Here, we found higher concentrations of HO, soluble sugars, and starch (1.5-, 1.9-, and 1.4-fold, respectively) in the shoot of low-Mg-treated maize seedlings, compared with Mg sufficient plants under hydroponic culture. Consistent with over-accumulation of HO, transcriptome profiling revealed significant enrichment of 175 differentially expressed genes (DEGs) in "response to oxygen-containing compound" out of 641 DEGs in the shoot under low Mg. Among 175 DEGs, a down-regulated receptor-like cytoplasmic kinase ZmRLCK58 underwent a recent duplication event before Poaceae divergence and was highly expressed in the maize shoot. ZmRLCK58 overexpression enhanced HO accumulation in shoots by 21.3% and 29.8% under control and low-Mg conditions, respectively, while reducing biomass accumulation compared with wild-type plants. Low Mg further led to 39.7% less starch accumulation in the ZmRLCK58 overexpression shoot and lower Mg utilization efficiency. Compared with wild-type plants, overall down-regulated expression of genes related to response to carbohydrate, photosynthesis, HO metabolic, oxidation-reduction, and ROS metabolic processes in ZmRLCK58 overexpression lines preconditioned aforementioned physiological alterations. Together, ZmRLCK58, as a negative growth regulator, reduces tolerance of maize seedlings to low Mg via enhancing HO accumulation.
ZmRLCK58 是一种负生长调节剂,通过增加 shoot 中 HO 的积累,降低玉米幼苗对低镁的耐受性。镁(Mg)缺乏是全球广泛酸性土壤中作物生产的关键限制因素之一。然而,作物对镁缺乏的分子机制在很大程度上仍不清楚。在这里,我们发现与 Mg 充足的水培植物相比,低镁处理的玉米幼苗的 shoot 中 HO、可溶性糖和淀粉的浓度分别高出 1.5、1.9 和 1.4 倍。与 HO 的过度积累一致,转录组分析显示,在低 Mg 下,shoot 中有 641 个差异表达基因(DEGs)中有 175 个 DEGs 显著富集在“对含氧化合物的反应”中。在 175 个 DEGs 中,一个下调的类受体细胞质激酶 ZmRLCK58 在禾本科植物分化之前经历了最近的复制事件,在玉米 shoot 中高度表达。ZmRLCK58 过表达分别使对照和低镁条件下的 shoot 中 HO 积累增加了 21.3%和 29.8%,而与野生型植物相比,生物量积累减少。低镁进一步导致 ZmRLCK58 过表达 shoot 中淀粉积累减少 39.7%,Mg 利用效率降低。与野生型植物相比,ZmRLCK58 过表达系中与碳水化合物反应、光合作用、HO 代谢、氧化还原和 ROS 代谢过程相关的基因总体下调表达,预先调节了上述生理变化。总之,ZmRLCK58 作为一种负生长调节剂,通过增加 HO 的积累,降低了玉米幼苗对低镁的耐受性。