Background Sorghum roots release two categories of biological nitrification inhibitors (BNIs) – hydrophilic-BNIs and hydrophobic-BNIs. Earlier research indicated that rhizosphere pH and plasma membrane (PM) H+ATPase are functionally linked with the release of hydrophilic BNIs, but the underlying mechanisms are not fully elucidated. This study is designed to reveal further insights into the regulatory mechanisms of BNIs release in root systems, using three sorghum genetic stocks. Methods Sorghum plants were grown in a hydroponic system with pH of nutrient solutions ranging from 3.0 ̴ 9.0. Pharmacological agents [(fusicoccin and vanadate) and anion-channel blockers (−niflumic acid (NIF) and anthracene-9-carboxylate (A9C)] were applie...
Abstract Biological nitrification inhibition (BNI) is a plant function where root systems release an...
Primary and secondary metabolites exuded from roots are key drivers of root-soil microbe interaction...
Background: Agriculture is the single largest geo-engineering initiative that humans have initiated ...
Background Sorghum roots release two categories of biological nitrification inhibitors (BNIs) – h...
The biological oxidation of ammonia (i.e. nitrification), results in the transformation of relativel...
Aims The ability to suppress soil nitrification through the release of nitrification inhibitors f...
Nitrification and denitrification are the two most important processes that contribute to greenhouse...
To date, most studies on biological nitrification inhibition (BNI) in sorghum have been performed wi...
Nitrification and denitrification are the primary drivers for generating reactive -N (NO3-, N20 and ...
Nitrification results in poor nitrogen (N) recovery and negative environmental impacts in most agric...
Abstract Background The increasing demand for food production has led to a tenfold increase in nitro...
Biological nitrification inhibition (BNI) of Brachiaria humidicola has been attributed to nitrificat...
Australian native species grow competitively in nutrient limited environments, particularly in nitro...
Sorgoleone is a secondary sorghum metabolite released from roots. It has allelopathic properties and...
Importance of sorghum as staple food worldwide is unquestionable and silicon (Si) supply has decreas...
Abstract Biological nitrification inhibition (BNI) is a plant function where root systems release an...
Primary and secondary metabolites exuded from roots are key drivers of root-soil microbe interaction...
Background: Agriculture is the single largest geo-engineering initiative that humans have initiated ...
Background Sorghum roots release two categories of biological nitrification inhibitors (BNIs) – h...
The biological oxidation of ammonia (i.e. nitrification), results in the transformation of relativel...
Aims The ability to suppress soil nitrification through the release of nitrification inhibitors f...
Nitrification and denitrification are the two most important processes that contribute to greenhouse...
To date, most studies on biological nitrification inhibition (BNI) in sorghum have been performed wi...
Nitrification and denitrification are the primary drivers for generating reactive -N (NO3-, N20 and ...
Nitrification results in poor nitrogen (N) recovery and negative environmental impacts in most agric...
Abstract Background The increasing demand for food production has led to a tenfold increase in nitro...
Biological nitrification inhibition (BNI) of Brachiaria humidicola has been attributed to nitrificat...
Australian native species grow competitively in nutrient limited environments, particularly in nitro...
Sorgoleone is a secondary sorghum metabolite released from roots. It has allelopathic properties and...
Importance of sorghum as staple food worldwide is unquestionable and silicon (Si) supply has decreas...
Abstract Biological nitrification inhibition (BNI) is a plant function where root systems release an...
Primary and secondary metabolites exuded from roots are key drivers of root-soil microbe interaction...
Background: Agriculture is the single largest geo-engineering initiative that humans have initiated ...