The plant root is an important storage organ that stores indole-3-acetic acid (IAA) from the apical meristem, as well as nitrogen, which is obtained from the external environment. IAA and nitrogen act as signaling molecules that promote root growth to obtain further resources. Fluctuations in the distribution of nitrogen in the soil environment induce plants to develop a set of strategies that effectively improve nitrogen use efficiency. Auxin integrates the information regarding the nitrate status inside and outside the plant body to reasonably distribute resources and sustainably construct the plant root system. In this review, we focus on the main factors involved in the process of nitrate- and auxin-mediated regulation of root structure...
Nitrogen (N) is an essential macronutrient for crops. Plants have developed several responses to N f...
In most aerobic soils, nitrate (NO3–) is the main nitrogen source for plants and is often limiting f...
Shoot and root growth is facilitated by stem cells in the shoot and root apical meristems (SAM and R...
In a new study published in this issue of Developmental Cell, Krouk et al. reveal a surprising mecha...
Availability of the essential macronutrient nitrogen in soil plays a critical role in plant growth, ...
Nitrogen (N) is needed by plants in great quantities. Besides being a nutrient, it also acts as a si...
In this review, we summarize the different biosynthesis-related pathways that contribute to the regu...
Adventitious root formation is a key step in vegetative propagation of woody or horticul-tural speci...
Nitrate commands genome-wide gene expression changes that impact metabolism, physiology, plant growt...
Nitrogen (N) plays a vital role in plant life, with nitrate (NO3-) and ammonium (NH4+) as the most c...
Hormone patterns tailor cell fate decisions during plant organ formation. Among them, auxins and cyt...
Nitrogen (N) is fundamental for plant growth and development, since it represents an essential compo...
International audienceIn agricultural systems, nitrate is the main source of nitrogen available for ...
Unlike animals, most of the plants are sessile. This may be a reason why they developed the powerful...
Nitrogen (N) is an essential macronutrient for crops. Plants have developed several responses to N f...
In most aerobic soils, nitrate (NO3–) is the main nitrogen source for plants and is often limiting f...
Shoot and root growth is facilitated by stem cells in the shoot and root apical meristems (SAM and R...
In a new study published in this issue of Developmental Cell, Krouk et al. reveal a surprising mecha...
Availability of the essential macronutrient nitrogen in soil plays a critical role in plant growth, ...
Nitrogen (N) is needed by plants in great quantities. Besides being a nutrient, it also acts as a si...
In this review, we summarize the different biosynthesis-related pathways that contribute to the regu...
Adventitious root formation is a key step in vegetative propagation of woody or horticul-tural speci...
Nitrate commands genome-wide gene expression changes that impact metabolism, physiology, plant growt...
Nitrogen (N) plays a vital role in plant life, with nitrate (NO3-) and ammonium (NH4+) as the most c...
Hormone patterns tailor cell fate decisions during plant organ formation. Among them, auxins and cyt...
Nitrogen (N) is fundamental for plant growth and development, since it represents an essential compo...
International audienceIn agricultural systems, nitrate is the main source of nitrogen available for ...
Unlike animals, most of the plants are sessile. This may be a reason why they developed the powerful...
Nitrogen (N) is an essential macronutrient for crops. Plants have developed several responses to N f...
In most aerobic soils, nitrate (NO3–) is the main nitrogen source for plants and is often limiting f...
Shoot and root growth is facilitated by stem cells in the shoot and root apical meristems (SAM and R...