Citric acid exudation by plant roots is often linked to the mobilisation of recalcitrant soil phosphorus (P) for plant nutrition. In this case study, we have explored the effect of citric acid on the abundance, size and composition of water-dispersible soil colloids (WDC) to understand the mineral source of desorbed P and the chemical nature of P-carrying mobilized colloids. After incubation with citric acid, WDC were isolated using a soil particle-size fractionation method consisting of sedimentation, centrifugation and syringe filtration. The size range and composition of WDC was assessed using field-flow fractionation (FFF), combined with inductively coupled plasma mass spectrometry (ICP-MS) and UV spectrometry, for in vitro P desorption...
We have used an integrated approach to study the mobility of inorganic phosphorus (P) from soil soli...
Particulate P constitutes a significant portion of the total P found in surface runoff water. Water ...
Dissolved and colloidal phosphorus (P) represent the mobile P fractions in soils, but their role in ...
Citric acid exudation by plant roots is often linked to the mobilisation of recalcitrant soil phosph...
Exudation of low molecular weight carboxylates is an important phosphorus (P) acquisition strategy f...
Organic acids exuded by roots, especially citrate, can increase P availability in soils and thus fac...
International audienceColloids (1~1000 nm) are major phosphorus (P) carrier phases in agricultural s...
One mechanism by which plants can mobilize organic and inorganic forms of phosphorus (P) in soils is...
Background and aimsNanoparticles and colloids affect the mobilisation and availability of phosphorus...
We have used an integrated approach to study the mobility of inorganic phosphorus (P) from soil soli...
International audienceColloids (11000 nm) are important carriers of phosphorus (P) in agricultural s...
Long-term excessive application of mineral fertilizer leads to phosphorus (P) accumulation, increasi...
Due to the limited solubility of phosphorus (P) in soil, understanding its binding in fine colloids ...
We have used an integrated approach to study the mobility of inorganic phosphorus (P) from soil soli...
Particulate P constitutes a significant portion of the total P found in surface runoff water. Water ...
Dissolved and colloidal phosphorus (P) represent the mobile P fractions in soils, but their role in ...
Citric acid exudation by plant roots is often linked to the mobilisation of recalcitrant soil phosph...
Exudation of low molecular weight carboxylates is an important phosphorus (P) acquisition strategy f...
Organic acids exuded by roots, especially citrate, can increase P availability in soils and thus fac...
International audienceColloids (1~1000 nm) are major phosphorus (P) carrier phases in agricultural s...
One mechanism by which plants can mobilize organic and inorganic forms of phosphorus (P) in soils is...
Background and aimsNanoparticles and colloids affect the mobilisation and availability of phosphorus...
We have used an integrated approach to study the mobility of inorganic phosphorus (P) from soil soli...
International audienceColloids (11000 nm) are important carriers of phosphorus (P) in agricultural s...
Long-term excessive application of mineral fertilizer leads to phosphorus (P) accumulation, increasi...
Due to the limited solubility of phosphorus (P) in soil, understanding its binding in fine colloids ...
We have used an integrated approach to study the mobility of inorganic phosphorus (P) from soil soli...
Particulate P constitutes a significant portion of the total P found in surface runoff water. Water ...
Dissolved and colloidal phosphorus (P) represent the mobile P fractions in soils, but their role in ...