Reactive oxygen species (ROS) can act as signaling molecules involved in the acclimation of plants to various abiotic and biotic stresses. However, it is not clear how the generalized increases in ROS and downstream signaling events that occur in response to stressful conditions are coordinated to modify plant growth and development. Previous studies of maize (Zea mays L.) primary root growth under water deficit stress showed that cell elongation is maintained in the apical region of the growth zone but progressively inhibited further from the apex, and that the rate of cell production is also decreased. It was observed that apoplastic ROS, particularly hydrogen peroxide (H2O2), increased specifically in the apical region of the growth zone...
We previously reported that proline modulates root meristem size in Arabidopsis by controlling the r...
International audienceWe have dissected the influences of apoplastic pH and cell turgor on short-ter...
BACKGROUND:Previous work showed that the maize primary root adapts to low Psiw (-1.6 MPa) by maintai...
Reactive oxygen species (ROS) can act as signaling molecules involved in the acclimation of plants t...
Only abstract of poster available.Track V: BiomassDrought is the most important cause of crop failur...
The divergence of metabolic responses to water stress in the elongation zone of cotton and maize pri...
Root architecture and xylem phenotypic plasticity influence crop productivity by affecting water and...
AbstractDrought is the most important yield-limiting factor under natural and agricultural condition...
Root architecture and xylem phenotypic plasticity influence crop productivity by affecting water and...
We previously reported that proline modulates root meristem size in Arabidopsis by control- ling the...
The hormone auxin and reactive oxygen species (ROS) regulate root elongation, but the interactions b...
Previous work on the adaptation of maize (Zea mays) primary roots to water deficit showed that cell ...
The hormone auxin and reactive oxygen species (ROS) regulate root elongation, but the interactions b...
We previously reported that proline modulates root meristem size in Arabidopsis by controlling the r...
Previous work on the adaptation of maize (Zea mays) primary roots to water deficit showed that cell ...
We previously reported that proline modulates root meristem size in Arabidopsis by controlling the r...
International audienceWe have dissected the influences of apoplastic pH and cell turgor on short-ter...
BACKGROUND:Previous work showed that the maize primary root adapts to low Psiw (-1.6 MPa) by maintai...
Reactive oxygen species (ROS) can act as signaling molecules involved in the acclimation of plants t...
Only abstract of poster available.Track V: BiomassDrought is the most important cause of crop failur...
The divergence of metabolic responses to water stress in the elongation zone of cotton and maize pri...
Root architecture and xylem phenotypic plasticity influence crop productivity by affecting water and...
AbstractDrought is the most important yield-limiting factor under natural and agricultural condition...
Root architecture and xylem phenotypic plasticity influence crop productivity by affecting water and...
We previously reported that proline modulates root meristem size in Arabidopsis by control- ling the...
The hormone auxin and reactive oxygen species (ROS) regulate root elongation, but the interactions b...
Previous work on the adaptation of maize (Zea mays) primary roots to water deficit showed that cell ...
The hormone auxin and reactive oxygen species (ROS) regulate root elongation, but the interactions b...
We previously reported that proline modulates root meristem size in Arabidopsis by controlling the r...
Previous work on the adaptation of maize (Zea mays) primary roots to water deficit showed that cell ...
We previously reported that proline modulates root meristem size in Arabidopsis by controlling the r...
International audienceWe have dissected the influences of apoplastic pH and cell turgor on short-ter...
BACKGROUND:Previous work showed that the maize primary root adapts to low Psiw (-1.6 MPa) by maintai...