Yang Shuo, Xu Yiqing, Tang Zhenzhong, Jin Shumei, Yang Shuang
College of Life Sciences, Northeast Forestry University, Harbin 150069, China.
Int J Mol Sci. 2024 Dec 23;25(24):13719. doi: 10.3390/ijms252413719.
Alkaline stress can induce significant injury to plants, resulting in a range of negative effects, including ion toxicity, oxidative stress, and damage from high pH values. These stress factors can substantially affect normal plant growth and development, as well as yield and quality loss. To counteract alkaline stress, plants have developed a range of defense strategies, enabling them to adapt and thrive in challenging environments. These defense mechanisms operate at multiple levels such as morphological, physiological, biochemical, and molecular. The continuous advancement of genetic engineering has enabled significant breakthroughs in enhancing plant alkali resistance through human intervention. This research provides a scientific basis for crop production and ecological environment construction, and also promotes the effective development and utilization of saline-alkali lands, improving the sustainability of agricultural production.
碱胁迫会对植物造成严重伤害,产生一系列负面影响,包括离子毒性、氧化应激以及高pH值造成的损害。这些胁迫因素会严重影响植物的正常生长发育,以及导致产量和品质下降。为了应对碱胁迫,植物已经形成了一系列防御策略,使其能够在具有挑战性的环境中适应并茁壮成长。这些防御机制在形态、生理、生化和分子等多个层面发挥作用。基因工程的不断发展使得通过人为干预提高植物抗碱性取得了重大突破。该研究为作物生产和生态环境建设提供了科学依据,也促进了盐碱地的有效开发利用,提高了农业生产的可持续性。