High salinity is one of the major environmental stresses that plants encounter. Roots are the initial and direct organs to perceive the signal. However, how plant roots perceive and respond to salinity at the molecular and physiological levels is still poorly understood. Here, we report that IAA-CONJUGATE-RESISTANT 4 (IAR4) plays a key role in primary root growth under salt stress conditions. Mutation of IAR4 led to increased sensitivity to salt stress conditions, with strongly inhibited primary root growth and reduced survival rate in two iar4 mutant alleles. iar4 mutants accumulated greater Na+ and exhibited a greater Na+/K+ ratio under NaCl treatment. In addition, more reactive oxygen species (ROS) accumulated in the iar4 mutants due to ...
This thesis is focused on the underlying mechanisms of salt signaling pathways that modulate root di...
Salt stress harmfully shocks agricultural yield throughout the world affecting production whether it...
In a previous publication, we performed a phenotypic characterization of Arabidopsis auxin receptor ...
High salinity is one of the major environmental stresses that plants encounter. Roots are the initia...
One of the most striking aspects of plant plasticity is the modulation of development in response to...
Salinity of the soil is a major problem for agriculture. The number of salinized soils is rapidly in...
We explored the interplay between ethylene signals and the auxin pool in roots exposed to high salin...
Salt and osmotic stress are the main abiotic stress factors affecting plant root growth and architec...
Soil salinization is increasing globally, driving a reduction in crop yields that threatens food sec...
One of the most striking aspects of plant plasticity is the modulation of development in response to...
Salt stress causes retarded plant growth and reduced crop yield. A complicated regulation network to...
Salinity is one of the most devastating abiotic stresses accounting for major crop losses yearly. Se...
Salinity of soils represents a significant abiotic stress factor that not only reduces productivity ...
Salt and osmotic stress are the main abiotic stress factors affecting plant root growth and architec...
[EN] Jasmonic acid (JA) regulates a wide spectrum of plant biological processes, from plant developm...
This thesis is focused on the underlying mechanisms of salt signaling pathways that modulate root di...
Salt stress harmfully shocks agricultural yield throughout the world affecting production whether it...
In a previous publication, we performed a phenotypic characterization of Arabidopsis auxin receptor ...
High salinity is one of the major environmental stresses that plants encounter. Roots are the initia...
One of the most striking aspects of plant plasticity is the modulation of development in response to...
Salinity of the soil is a major problem for agriculture. The number of salinized soils is rapidly in...
We explored the interplay between ethylene signals and the auxin pool in roots exposed to high salin...
Salt and osmotic stress are the main abiotic stress factors affecting plant root growth and architec...
Soil salinization is increasing globally, driving a reduction in crop yields that threatens food sec...
One of the most striking aspects of plant plasticity is the modulation of development in response to...
Salt stress causes retarded plant growth and reduced crop yield. A complicated regulation network to...
Salinity is one of the most devastating abiotic stresses accounting for major crop losses yearly. Se...
Salinity of soils represents a significant abiotic stress factor that not only reduces productivity ...
Salt and osmotic stress are the main abiotic stress factors affecting plant root growth and architec...
[EN] Jasmonic acid (JA) regulates a wide spectrum of plant biological processes, from plant developm...
This thesis is focused on the underlying mechanisms of salt signaling pathways that modulate root di...
Salt stress harmfully shocks agricultural yield throughout the world affecting production whether it...
In a previous publication, we performed a phenotypic characterization of Arabidopsis auxin receptor ...