Research & Development Center of Blueberry, Key Laboratory of Forest Silviculture and Conservation of the Ministry of Education, Beijing Forestry University, Beijing 100083, China.
Int J Mol Sci. 2022 Dec 16;23(24):16048. doi: 10.3390/ijms232416048.
Saline-alkali stress is a widespread adversity that severely affects plant growth and productivity. Saline-alkaline soils are characterized by high salt content and high pH values, which simultaneously cause combined damage from osmotic stress, ionic toxicity, high pH and HCO/CO stress. In recent years, many determinants of salt tolerance have been identified and their regulatory mechanisms are fairly well understood. However, the mechanism by which plants respond to comprehensive saline-alkali stress remains largely unknown. This review summarizes recent advances in the physiological, biochemical and molecular mechanisms of plants tolerance to salinity or salt- alkali stress. Focused on the progress made in elucidating the regulation mechanisms adopted by plants in response to saline-alkali stress and present some new views on the understanding of plants in the face of comprehensive stress. Plants generally promote saline-alkali tolerance by maintaining pH and Na homeostasis, while the plants responding to HCO/CO stress are not exactly the same as high pH stress. We proposed that pH-tolerant or sensitive plants have evolved distinct mechanisms to adapt to saline-alkaline stress. Finally, we highlight the areas that require further research to reveal the new components of saline-alkali tolerance in plants and present the current and potential application of key determinants in breed improvement and molecular breeding.
盐碱性胁迫是一种广泛存在的逆境,严重影响植物的生长和生产力。盐碱性土壤的特点是盐分含量高、pH 值高,这会同时导致渗透胁迫、离子毒性、高 pH 值和 HCO₃⁻/CO₃²⁻胁迫的综合损伤。近年来,许多耐盐性决定因素已经被鉴定出来,其调控机制也得到了相当的理解。然而,植物对综合盐碱性胁迫的反应机制在很大程度上仍然未知。本综述总结了植物对盐胁迫或盐碱性胁迫的生理、生化和分子机制的最新进展。重点阐述了阐明植物对盐碱性胁迫反应所采用的调控机制的进展,并对植物在面临综合胁迫时的理解提出了一些新的观点。植物通常通过维持 pH 值和 Na 稳态来促进耐盐碱性,而对 HCO₃⁻/CO₃²⁻胁迫做出响应的植物与高 pH 值胁迫并不完全相同。我们提出,耐 pH 值或敏感的植物已经进化出不同的机制来适应盐碱性胁迫。最后,我们强调了需要进一步研究的领域,以揭示植物耐盐碱性的新成分,并介绍了关键决定因素在品种改良和分子育种中的当前和潜在应用。