Li Xue, Guan Cong, Liu Huayue, Wang Tingting, Lin Mengzhuo, Zhou Die, Zhang Yunwei, Bi Xiaojing
College of Grassland Science and Technology, China Agricultural University, Beijing 100193, China.
Institute of Leisure Agriculture, Shandong Academy of Agricultural Sciences, Jinan 250100, China.
Plants (Basel). 2024 Feb 20;13(5):566. doi: 10.3390/plants13050566.
Switchgrass is an important bioenergy crop valued for its biomass yield and abiotic tolerance. Alkali stress is a major abiotic stress that significantly impedes plant growth and yield due to high salinity and pH; however, the response mechanism of switchgrass to alkali stress remains limited. Here, we characterized , an ARF-like gene, which was up-regulated in both the shoot and root tissues under alkali stress conditions. Overexpression of not only improved alkali tolerance but also promoted biomass yield with more tiller and higher plant height in switchgrass. Moreover, overexpression lines displayed higher capacities in the maintenance of water content and photosynthetic stability compared with the controls under alkali treatments. A significant reduction in the ratio of electrolyte leakage, MDA content, and reactive oxygen species (ROS) showed that PvARL1 plays a positive role in protecting cell membrane integrity. In addition, PvARL1 also negatively affected the K efflux or uptake in roots to alleviate ion toxicity under alkali treatments. Overall, our results suggest that PvARL1 functions as a positive regulator in plant growth as well as in the plant response to alkali stress, which could be used to improve switchgrass biomass yield and alkali tolerance genetically.
柳枝稷是一种重要的生物能源作物,因其生物量产量和非生物耐受性而受到重视。碱胁迫是一种主要的非生物胁迫,由于高盐度和pH值,会显著阻碍植物生长和产量;然而,柳枝稷对碱胁迫的响应机制仍然有限。在这里,我们鉴定了一个类ARF基因,它在碱胁迫条件下在地上部和根部组织中均上调表达。该基因的过表达不仅提高了柳枝稷的耐碱性,还通过增加分蘖和提高株高促进了生物量产量。此外,与碱处理下的对照相比,该基因过表达系在维持水分含量和光合稳定性方面表现出更高的能力。电解质渗漏率、丙二醛含量和活性氧(ROS)的显著降低表明,PvARL1在保护细胞膜完整性方面发挥了积极作用。此外,PvARL1还对碱处理下根中钾离子的外流或吸收产生负面影响,以减轻离子毒性。总体而言,我们的结果表明,PvARL1在植物生长以及植物对碱胁迫的响应中起正向调节作用,可用于通过基因手段提高柳枝稷的生物量产量和耐碱性。