Nitrogen (N) is a major essential nutrient for plant growth, and rice is an important food crop globally. Although ammonium (NH4+) is the main N source for rice, nitrate (NO3-) is also absorbed and utilized. Rice responds to NO3- supply by changing root morphology. However, the mechanisms of rice root growth and formation under NO3- supply are unclear. Nitric oxide (NO) and auxin are important regulators of root growth and development under NO3- supply. How the interactions between NO and auxin in regulating root growth in response to NO3- are unknown. In this study, the levels of indole-3-acetic acid (IAA) and NO in roots, and the responses of lateral roots (LRs) and seminal roots (SRs) to NH4+ and NO3-, were investigated using wild-type (...
Hormone patterns tailor cell fate decisions during plant organ formation. Among them, auxins and cyt...
Hormone patterns tailor cell fate decisions during plant organ formation. Among them, auxins and cyt...
Hormone patterns tailor cell fate decisions during plant organ formation. Among them, auxins and cyt...
Fe deficiency (-Fe) is a common abiotic stress that affects the root development of plants. Auxin an...
Root morphology is essential for plant survival. NO3− is not only a nutrient, but also a signa...
Abstract Background Nutrition with ammonium (NH4 +) can enhance the drought tolerance of rice seedli...
To deal with environmental challenges, plants must rely on a sophisticated and tightly regulated def...
Abstract: Previous researches on nitrogen nutrition of rice mainly focus more on ammonium (NH4+) tha...
Oryza sativa L. is a worldwide food-crop frequently growing in cadmium (Cd) polluted soils. High Cd ...
Crop plant development is strongly dependent on nitrogen availability in the soil and on the efficie...
As a crucial nitrogen source, nitrate (NO3−) is a key nutrient for plants. Accordingly, root systems...
Root development is extremely sensitive to variations in nutrient supply, but the mechanisms are poo...
Cadmium (Cd) and Arsenic (As) pollution has become a serious factor limiting the growth and producti...
Background and Aims: Auxin is the main phytohormone controlling root development in plants. This stu...
Isolates of Rhizobium leguminosarum bv. trifolii (the clover root-nodule endosynibiont) from the Nil...
Hormone patterns tailor cell fate decisions during plant organ formation. Among them, auxins and cyt...
Hormone patterns tailor cell fate decisions during plant organ formation. Among them, auxins and cyt...
Hormone patterns tailor cell fate decisions during plant organ formation. Among them, auxins and cyt...
Fe deficiency (-Fe) is a common abiotic stress that affects the root development of plants. Auxin an...
Root morphology is essential for plant survival. NO3− is not only a nutrient, but also a signa...
Abstract Background Nutrition with ammonium (NH4 +) can enhance the drought tolerance of rice seedli...
To deal with environmental challenges, plants must rely on a sophisticated and tightly regulated def...
Abstract: Previous researches on nitrogen nutrition of rice mainly focus more on ammonium (NH4+) tha...
Oryza sativa L. is a worldwide food-crop frequently growing in cadmium (Cd) polluted soils. High Cd ...
Crop plant development is strongly dependent on nitrogen availability in the soil and on the efficie...
As a crucial nitrogen source, nitrate (NO3−) is a key nutrient for plants. Accordingly, root systems...
Root development is extremely sensitive to variations in nutrient supply, but the mechanisms are poo...
Cadmium (Cd) and Arsenic (As) pollution has become a serious factor limiting the growth and producti...
Background and Aims: Auxin is the main phytohormone controlling root development in plants. This stu...
Isolates of Rhizobium leguminosarum bv. trifolii (the clover root-nodule endosynibiont) from the Nil...
Hormone patterns tailor cell fate decisions during plant organ formation. Among them, auxins and cyt...
Hormone patterns tailor cell fate decisions during plant organ formation. Among them, auxins and cyt...
Hormone patterns tailor cell fate decisions during plant organ formation. Among them, auxins and cyt...