Low phosphate (Pi) availability in soils severely limits crop growth and production. Plants have evolved to have numerous physiological and molecular adaptive mechanisms to cope with Pi starvation. The release of Pi from membrane phospholipids is considered to improve plant phosphorus (P) utilization efficiency in response to Pi starvation and accompanies membrane lipid remodeling. In this review, we summarize recent discoveries related to this topic and the molecular basis of membrane phospholipid alteration and triacylglycerol metabolism in response to Pi depletion in plants at different subcellular levels. These findings will help to further elucidate the molecular mechanisms underlying plant adaptation to Pi starvation and thus help to ...
Phosphate (Pi) is one of the most important but least available plant nutrients found in the soil, t...
Phosphate (Pi) is an essential macronutrient that plays a central role in virtually all metabolic pr...
Phosphate is often a limiting factor for plant growth in soil. In plant cell, phosphate deprivation ...
Phosphorus is a major plant macronutrient, but it is also one of the less accessible mineral element...
Plants have evolved various acclimation responses to cope with phosphate depletion, including severa...
Phosphorus is an essential macronutrient that often limits plant growth and development. Under phosp...
Phosphorus is an essential element influencing plant growth and development. To cope with phosphate ...
AbstractIn plants, phosphate deprivation is normally known to decrease the phospholipid content cons...
Abstract As an essential plant macronutrient, the low availability of phosphorus (P) in most soils i...
Phosphate is a vital macronutrient yet its availability is often a limiting factor which hinders pla...
International audienceInorganic phosphate (Pi) is present in most soils at suboptimal concentrations...
International audiencePhosphorus is a crucial component of major organic molecules such as nucleic a...
Phosphate (Pi) is one of three macronutrients for plants, which is vital for plant growth and develo...
Phosphate (Pi) is one of the most important but least available plant nutrients found in the soil, t...
Phosphate (Pi) is an essential macronutrient that plays a central role in virtually all metabolic pr...
Phosphate is often a limiting factor for plant growth in soil. In plant cell, phosphate deprivation ...
Phosphorus is a major plant macronutrient, but it is also one of the less accessible mineral element...
Plants have evolved various acclimation responses to cope with phosphate depletion, including severa...
Phosphorus is an essential macronutrient that often limits plant growth and development. Under phosp...
Phosphorus is an essential element influencing plant growth and development. To cope with phosphate ...
AbstractIn plants, phosphate deprivation is normally known to decrease the phospholipid content cons...
Abstract As an essential plant macronutrient, the low availability of phosphorus (P) in most soils i...
Phosphate is a vital macronutrient yet its availability is often a limiting factor which hinders pla...
International audienceInorganic phosphate (Pi) is present in most soils at suboptimal concentrations...
International audiencePhosphorus is a crucial component of major organic molecules such as nucleic a...
Phosphate (Pi) is one of three macronutrients for plants, which is vital for plant growth and develo...
Phosphate (Pi) is one of the most important but least available plant nutrients found in the soil, t...
Phosphate (Pi) is an essential macronutrient that plays a central role in virtually all metabolic pr...
Phosphate is often a limiting factor for plant growth in soil. In plant cell, phosphate deprivation ...