AI Article Synopsis

  • - Efficient growth regulation in plants is crucial for adapting to changing nutrient availability, as deficiencies in essential nutrients can drastically reduce crop yields.
  • - Fluctuations in multiple nutrient levels lead to combined nutrient stress in plants, yet our understanding of their responses to such stresses is still limited.
  • - This review highlights the regulation of phosphorus homeostasis in plants, focusing on the interactions between phosphorus and other essential and non-essential elements, to improve our understanding of plant responses to nutrient stress.

Article Abstract

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.

Download full-text PDF

Source
http://dx.doi.org/10.1111/tpj.16511DOI Listing

Publication Analysis

Top Keywords

combined nutrient
12
nutrient stress
12
understanding plants
8
plants
6
advances unraveling
4
unraveling mystery
4
mystery combined
4
nutrient
4
stress plants
4
plants efficiently
4

Similar Publications

Want AI Summaries of new PubMed Abstracts delivered to your In-box?

Enter search terms and have AI summaries delivered each week - change queries or unsubscribe any time!