Khan Fahad, Siddique Abu Bakar, Shabala Sergey, Zhou Meixue, Zhao Chenchen
Tasmanian Institute of Agriculture, University of Tasmania, Launceston, TAS 7250, Australia.
School of Biological Science, University of Western Australia, Crawley, WA 6009, Australia.
Plants (Basel). 2023 Aug 3;12(15):2861. doi: 10.3390/plants12152861.
Phosphorus (P), an essential macronutrient, plays a pivotal role in the growth and development of plants. However, the limited availability of phosphorus in soil presents significant challenges for crop productivity, especially when plants are subjected to abiotic stresses such as drought, salinity and extreme temperatures. Unraveling the intricate mechanisms through which phosphorus participates in the physiological responses of plants to abiotic stresses is essential to ensure the sustainability of agricultural production systems. This review aims to analyze the influence of phosphorus supply on various aspects of plant growth and plant development under hostile environmental conditions, with a special emphasis on stomatal development and operation. Furthermore, we discuss recently discovered genes associated with P-dependent stress regulation and evaluate the feasibility of implementing P-based agricultural practices to mitigate the adverse effects of abiotic stress. Our objective is to provide molecular and physiological insights into the role of P in regulating plants' tolerance to abiotic stresses, underscoring the significance of efficient P use strategies for agricultural sustainability. The potential benefits and limitations of P-based strategies and future research directions are also discussed.
磷(P)是一种必需的大量营养素,在植物的生长和发育中起着关键作用。然而,土壤中磷的有效性有限,这给作物生产力带来了重大挑战,尤其是当植物遭受干旱、盐碱化和极端温度等非生物胁迫时。揭示磷参与植物对非生物胁迫生理反应的复杂机制,对于确保农业生产系统的可持续性至关重要。本综述旨在分析在恶劣环境条件下磷供应对植物生长和发育各个方面的影响,特别强调气孔发育和运作。此外,我们讨论了最近发现的与磷依赖胁迫调节相关的基因,并评估实施基于磷的农业实践以减轻非生物胁迫不利影响的可行性。我们的目标是提供关于磷在调节植物对非生物胁迫耐受性方面作用的分子和生理见解,强调高效磷利用策略对农业可持续性的重要性。还讨论了基于磷的策略的潜在益处和局限性以及未来的研究方向。