Phosphate and sulfate are essential macro-elements for plant growth and development, and deficiencies in these mineral elements alter many metabolic functions. Nutritional constraints are not restricted to macro-elements. Essential metals such as zinc and iron have their homeostasis strictly genetically controlled, and deficiency or excess of these micro-elements can generate major physiological disorders, also impacting plant growth and development. Phosphate and sulfate on one hand, and zinc and iron on the other hand, are known to interact. These interactions have been partly described at the molecular and physiological levels, and are reviewed here. Furthermore the two macro-elements phosphate and sulfate not only interact between thems...
Phosphorus (P) is an essential macronutrient for plant growth and development. Inorganic phosphate (...
Efficient micronutrient acquisition is a critical factor in selecting micronutrient dense crops for ...
Interactions between zinc (Zn) and phosphate (Pi) nutrition in plants have long been recognized, but...
International audienceInorganic phosphate (Pi) and Zinc (Zn) are an essential macro- and micronutrie...
Plants survival depends on their ability to cope with multiple nutrient stresses that often occur si...
Durant cette dernière décennie, plusieurs voies de régulation de l’homéostasie de différents ions on...
International audiencePhosphate (Pi) is an essential element for plant development and metabolism. D...
SUMMARY Efficiently regulating growth to adapt to varying resource availability is crucial for organ...
Interactions between zinc (Zn) and phosphate (Pi) nutrition in plants have long been recognized, but...
Concurrent suboptimal supply of several nutrients requires the coordination of nutrient-specific tra...
Phosphorus (P) and Zinc (Zo) are essential nutrients for plant growth. Plants typically have a [P] l...
peer reviewedIn plants, iron (Fe) transport and homeostasis are highly regulated processes. Fe defic...
This review deals with two essential plant mineral nutrients, iron (Fe) and phosphorus (P); the acqu...
Iron (Fe) and phosphorus (P) are two essential mineral nutrients whose acquisition by plants present...
Phosphate is a crucial and often limiting nutrient for plant growth. To obtain inorganic phosphate (...
Phosphorus (P) is an essential macronutrient for plant growth and development. Inorganic phosphate (...
Efficient micronutrient acquisition is a critical factor in selecting micronutrient dense crops for ...
Interactions between zinc (Zn) and phosphate (Pi) nutrition in plants have long been recognized, but...
International audienceInorganic phosphate (Pi) and Zinc (Zn) are an essential macro- and micronutrie...
Plants survival depends on their ability to cope with multiple nutrient stresses that often occur si...
Durant cette dernière décennie, plusieurs voies de régulation de l’homéostasie de différents ions on...
International audiencePhosphate (Pi) is an essential element for plant development and metabolism. D...
SUMMARY Efficiently regulating growth to adapt to varying resource availability is crucial for organ...
Interactions between zinc (Zn) and phosphate (Pi) nutrition in plants have long been recognized, but...
Concurrent suboptimal supply of several nutrients requires the coordination of nutrient-specific tra...
Phosphorus (P) and Zinc (Zo) are essential nutrients for plant growth. Plants typically have a [P] l...
peer reviewedIn plants, iron (Fe) transport and homeostasis are highly regulated processes. Fe defic...
This review deals with two essential plant mineral nutrients, iron (Fe) and phosphorus (P); the acqu...
Iron (Fe) and phosphorus (P) are two essential mineral nutrients whose acquisition by plants present...
Phosphate is a crucial and often limiting nutrient for plant growth. To obtain inorganic phosphate (...
Phosphorus (P) is an essential macronutrient for plant growth and development. Inorganic phosphate (...
Efficient micronutrient acquisition is a critical factor in selecting micronutrient dense crops for ...
Interactions between zinc (Zn) and phosphate (Pi) nutrition in plants have long been recognized, but...