College of Agriculture, Guizhou University, Guiyang, 550025, China; Department of Renewable Resources, University of Alberta, Edmonton, AB, T6G 2E3, Canada.
Department of Renewable Resources, University of Alberta, Edmonton, AB, T6G 2E3, Canada.
Plant Physiol Biochem. 2024 Nov;216:109122. doi: 10.1016/j.plaphy.2024.109122. Epub 2024 Sep 12.
High mortality and reduced growth due to root hypoxia are commonly observed in plants impacted by flooding or soil compaction. Since earlier research suggested that Nicotiana tabacum PIP1;3 may facilitate cell-to-cell oxygen transport, we overexpressed NtPIP1;3 in canola (Brassica napus) and studied the effects on growth, physiological parameters, root oxygen concentrations, and energy metabolism in plants subjected to waterlogging. Compared with wild-type plants (WT), the waterlogged plants overexpressing NtPIP1;3 (OE) maintained higher dry biomass, gas exchange, root hydraulic conductivity, root oxygen concentrations, leaf water potentials, root respiration rates, and root ATP concentrations. Metabolic profiling revealed that overexpressing plants responded to root hypoxia by altering the glycolysis, pyruvate metabolism, and TCA cycle in roots. Moreover, the differences in expression patterns of RAP2.12, RAP2.2, PCO1, and PCO2 in WT and OE canola plants exposed to root hypoxia point to increased oxygen supply to OE roots, which was confirmed by direct measurements of root O concentrations. Our results demonstrate that the overexpression of NtPIP1;3 affected plant responses to hypoxia by enhancing their aerobic metabolism and strengthened the notion that some of the plant aquaporins may facilitate oxygen transport.
由于缺氧根导致的高死亡率和生长减缓,在受洪水或土壤压实影响的植物中很常见。由于早期的研究表明,烟草 PIP1;3 可能促进细胞间的氧气运输,我们在油菜(甘蓝型油菜)中过表达了 NtPIP1;3,并研究了其对淹水条件下植物生长、生理参数、根氧浓度和能量代谢的影响。与野生型植物(WT)相比,过表达 NtPIP1;3 的水涝植物(OE)保持了更高的干生物量、气体交换、根水力传导性、根氧浓度、叶片水势、根呼吸速率和根 ATP 浓度。代谢谱分析表明,过表达植物通过改变根中的糖酵解、丙酮酸代谢和 TCA 循环来应对缺氧根。此外,WT 和 OE 油菜植物在根缺氧条件下表达模式的差异表明,RAP2.12、RAP2.2、PCO1 和 PCO2 的表达增加,向 OE 根提供了更多的氧气,这通过直接测量根氧浓度得到了证实。我们的研究结果表明,NtPIP1;3 的过表达通过增强植物的需氧代谢来影响植物对缺氧的反应,这强化了一些植物水通道蛋白可能促进氧气运输的观点。