Department of Botany, Dukhulal Nibaran Chandra College, Murshidabad, West Bengal, India.
Plant Molecular Biology Laboratory, Department of Botany, Raiganj University, Raiganj, West Bengal, India.
Physiol Plant. 2022 Jan;174(1):e13647. doi: 10.1111/ppl.13647.
Sugar transport and distribution have a direct impact on the growth and development of plants. Many sugars significantly influence salt stress response. The sensing of salt stress signals triggers a wide array of complicated network transduction pathways in plants. Trehalose and its intermediate compounds effectively modulate salt response and salt tolerance. Sugars such as trehalose and its derivatives not only serve as metabolic resources and structural components of cells in plants but also exhibit hormone-like regulating properties. Trehalose has an important physiological role in improving plant tolerance against salinity stresses in different plants. Plants finely adjust their cytoplasmic compatible solute pool to cope with high salinity. Salt stress induces a variety of structural, anatomical, molecular, biochemical, and physiological changes in plants, all of which have a detrimental influence on plant growth and development. This review highlights the recent developments in understanding trehalose and trehalose-6-phosphate signaling processes in plants, especially their impacts on plants growing in salty environments.
糖的运输和分配对植物的生长和发育有直接影响。许多糖会显著影响盐胁迫反应。对盐胁迫信号的感知会在植物中引发广泛的复杂网络转导途径。海藻糖及其中间化合物能有效调节盐反应和耐盐性。海藻糖及其衍生物等糖不仅是植物细胞的代谢资源和结构成分,还具有激素样调节特性。海藻糖在提高不同植物对盐胁迫的耐受性方面具有重要的生理作用。植物会精细地调整细胞质相容性溶质池以应对高盐度。盐胁迫会引起植物的多种结构、解剖、分子、生化和生理变化,这些变化都会对植物的生长和发育产生不利影响。本综述强调了理解植物中海藻糖和海藻糖-6-磷酸信号转导过程的最新进展,特别是它们对生长在盐环境中的植物的影响。