Nazir Faroza, Mahajan Moksh, Khatoon Sayeda, Albaqami Mohammed, Ashfaque Farha, Chhillar Himanshu, Chopra Priyanka, Khan M Iqbal R
Department of Botany, Jamia Hamdard, New Delhi, India.
Department of Botany and Microbiology, College of Science, King Saud University, Riyadh, Saudi Arabia.
Front Plant Sci. 2023 Feb 23;14:1087946. doi: 10.3389/fpls.2023.1087946. eCollection 2023.
In the current changing environment, salt stress has become a major concern for plant growth and food production worldwide. Understanding the mechanisms of how plants function in saline environments is critical for initiating efforts to mitigate the detrimental effects of salt stress. Agricultural productivity is linked to nutrient availability, and it is expected that the judicious metabolism of mineral nutrients has a positive impact on alleviating salt-induced losses in crop plants. Nitrogen (N) is a macronutrient that contributes significantly to sustainable agriculture by maintaining productivity and plant growth in both optimal and stressful environments. Significant progress has been made in comprehending the fundamental physiological and molecular mechanisms associated with N-mediated plant responses to salt stress. This review provided an (a) overview of N-sensing, transportation, and assimilation in plants; (b) assess the salt stress-mediated regulation of N dynamics and nitrogen use- efficiency; (c) critically appraise the role of N in plants exposed to salt stress. Furthermore, the existing but less explored crosstalk between N and phytohormones has been discussed that may be utilized to gain a better understanding of plant adaptive responses to salt stress. In addition, the shade of a small beam of light on the manipulation of N dynamics through genetic engineering with an aim of developing salt-tolerant plants is also highlighted.
在当前不断变化的环境中,盐胁迫已成为全球植物生长和粮食生产的主要关注点。了解植物在盐渍环境中的功能机制对于开展减轻盐胁迫有害影响的工作至关重要。农业生产力与养分有效性相关,预计矿物质养分的合理代谢对减轻作物因盐胁迫造成的损失具有积极影响。氮(N)是一种大量元素,通过在最佳和胁迫环境中维持生产力和植物生长,对可持续农业做出了重大贡献。在理解与氮介导的植物对盐胁迫反应相关的基本生理和分子机制方面已经取得了重大进展。本综述提供了:(a)植物中氮感知、运输和同化的概述;(b)评估盐胁迫介导的氮动态调节和氮利用效率;(c)批判性地评价氮在受盐胁迫植物中的作用。此外,还讨论了氮与植物激素之间现有的但较少探索的相互作用,这可能有助于更好地理解植物对盐胁迫的适应性反应。此外,还强调了一小束光对通过基因工程操纵氮动态以培育耐盐植物的影响。