The Plant Resilience Institute, Michigan State University, East Lansing, Michigan, 48824, USA.
Department of Plant, Soil, and Microbial Sciences, Michigan State University, East Lansing, Michigan, 48824, USA.
Plant J. 2024 Mar;117(6):1764-1780. doi: 10.1111/tpj.16511. Epub 2023 Nov 3.
Efficiently regulating growth to adapt to varying resource availability is crucial for organisms, including plants. In particular, the acquisition of essential nutrients is vital for plant development, as a shortage of just one nutrient can significantly decrease crop yield. However, plants constantly experience fluctuations in the presence of multiple essential mineral nutrients, leading to combined nutrient stress conditions. Unfortunately, our understanding of how plants perceive and respond to these multiple stresses remains limited. Unlocking this mystery could provide valuable insights and help enhance plant nutrition strategies. This review focuses specifically on the regulation of phosphorous homeostasis in plants, with a primary emphasis on recent studies that have shed light on the intricate interactions between phosphorous and other essential elements, such as nitrogen, iron, and zinc, as well as non-essential elements like aluminum and sodium. By summarizing and consolidating these findings, this review aims to contribute to a better understanding of how plants respond to and cope with combined nutrient stress.
有效地调节生长以适应变化的资源可用性对于生物体至关重要,包括植物。特别是,必需营养物质的获取对植物的发育至关重要,因为即使缺少一种营养物质也会显著降低作物产量。然而,植物经常经历多种必需矿物质营养物质的存在波动,导致组合养分胁迫条件。不幸的是,我们对植物如何感知和应对这些多种胁迫的理解仍然有限。揭示这个谜团可以提供有价值的见解,并有助于增强植物营养策略。本综述特别关注植物中磷稳态的调节,主要侧重于最近的研究,这些研究揭示了磷与其他必需元素(如氮、铁和锌)以及非必需元素(如铝和钠)之间复杂的相互作用。通过总结和整合这些发现,本综述旨在促进对植物如何应对和应对组合养分胁迫的更好理解。