Hormone patterns tailor cell fate decisions during plant organ formation. Among them, auxins and cytokinins are critical phytohormones during early development. Nitric oxide (NO) modulates root architecture by the control of auxin spatial patterns. However, NO involvement during the coordination of shoot organogenesis remains unclear. Here, we explore the effect of NO during shoot development by using a phenotypic, cellular, and genetic analysis in Arabidopsis thaliana and get new insights into the characterization of NO-mediated leaf-related phenotypes. NO homeostasis mutants are impaired in several shoot architectural parameters, including phyllotactic patterns, inflorescence stem elongation, silique production, leaf number, and margin. A...
Availability of the essential macronutrient nitrogen in soil plays a critical role in plant growth, ...
S-nitrosylation of Cys-residues is one of the molecular mechanisms driven by nitric oxide (NO) for r...
The plant root is an important storage organ that stores indole-3-acetic acid (IAA) from the apical ...
Hormone patterns tailor cell fate decisions during plant organ formation. Among them, auxins and cyt...
[EN] Plants are often exposed to high levels of nitric oxide (NO) that affects development and stres...
The cue1 nitric oxide (NO) overproducer mutants are impaired in a plastid phosphoenolpyruvate/phosph...
Background and Aims: Auxin is the main phytohormone controlling root development in plants. This stu...
As a gaseous biological signaling molecule, nitric oxide (NO) regulates many physiological processes...
Background and Aims Plants are able to adapt to the environment dynamically through regulation of th...
High-resolution and automated image analysis of individual roots demonstrated that endogenous nitric...
Root architecture results from coordinated cell division and expansion in spatially distinct cells o...
Gravitropism is required for the appropriate alignment of the plant root and shoot. According to the...
Morphogenesis during multicellular development is regulated by intercellular signaling molecules as ...
[EN] Nitric oxide (NO) regulates developmental and stress-related plant processes through still larg...
Nitrogen (N) is a major essential nutrient for plant growth, and rice is an important food crop glob...
Availability of the essential macronutrient nitrogen in soil plays a critical role in plant growth, ...
S-nitrosylation of Cys-residues is one of the molecular mechanisms driven by nitric oxide (NO) for r...
The plant root is an important storage organ that stores indole-3-acetic acid (IAA) from the apical ...
Hormone patterns tailor cell fate decisions during plant organ formation. Among them, auxins and cyt...
[EN] Plants are often exposed to high levels of nitric oxide (NO) that affects development and stres...
The cue1 nitric oxide (NO) overproducer mutants are impaired in a plastid phosphoenolpyruvate/phosph...
Background and Aims: Auxin is the main phytohormone controlling root development in plants. This stu...
As a gaseous biological signaling molecule, nitric oxide (NO) regulates many physiological processes...
Background and Aims Plants are able to adapt to the environment dynamically through regulation of th...
High-resolution and automated image analysis of individual roots demonstrated that endogenous nitric...
Root architecture results from coordinated cell division and expansion in spatially distinct cells o...
Gravitropism is required for the appropriate alignment of the plant root and shoot. According to the...
Morphogenesis during multicellular development is regulated by intercellular signaling molecules as ...
[EN] Nitric oxide (NO) regulates developmental and stress-related plant processes through still larg...
Nitrogen (N) is a major essential nutrient for plant growth, and rice is an important food crop glob...
Availability of the essential macronutrient nitrogen in soil plays a critical role in plant growth, ...
S-nitrosylation of Cys-residues is one of the molecular mechanisms driven by nitric oxide (NO) for r...
The plant root is an important storage organ that stores indole-3-acetic acid (IAA) from the apical ...