Efforts to breed salt tolerant crops could benefit from investigating previously unexplored traits. One of them is a tissue succulency. In this work, we have undertaken an electrophysiological and biochemical comparison of properties of mesophyll and storage parenchyma leaf tissues of a succulent halophyte species Carpobrotus rosii (“pigface”). We show that storage parenchyma cells of C. rossii act as Na+ sink and possessed both higher Na+ sequestration (298 vs. 215 mM NaCl in mesophyll) and better K+ retention ability. The latter traits was determined by the higher rate of H+‐ATPase operation and higher nonenzymatic antioxidant activity in this tissue. Na+ uptake in both tissues was insensitive to either Gd3+ or elevated Ca2+ ruling out in...
To understand the adaptive strategies employed by plants to deal with saline conditions, two halophy...
Soil salinity is a major threat to future food stability. Almost 20% of irrigated land is currently ...
<div><p>Salinity is an important environmental constraint limiting plant productivity. Understanding...
Efforts to breed salt tolerant crops could benefit from investigating previously unexplored traits. ...
Halophytes species can be used as a highly convenient model system to reveal key ionic and molecular...
Soil salinity remains a major threat to global food security, and the progress in crop breeding for ...
Growth of most crop plants (glycophytes) is reduced in saline environments. A few plant species (euh...
Halophytes are able to tolerate and even benefit from salt concentrations that kill most other plant...
For a plant to persist in saline soil, osmotic adjustment of all plant cells is essential. The more ...
Although control of xylem ion loading is essential to confer salinity stress tolerance, specific det...
Halophytes can survive and complete their life cycle in the presence of ≥200 mM NaCl. These remarkab...
To compensate for the lack of capacity for external salt storage in the epidermal bladder cells, qui...
The ability of halophytes to thrive under saline conditions implies efficient ROS detoxification and...
Succulent halophytes can be used as convenient models for understanding the mechanistic basis of pla...
Halophytes, plants that survive to reproduce in environments where the salt concentration is around ...
To understand the adaptive strategies employed by plants to deal with saline conditions, two halophy...
Soil salinity is a major threat to future food stability. Almost 20% of irrigated land is currently ...
<div><p>Salinity is an important environmental constraint limiting plant productivity. Understanding...
Efforts to breed salt tolerant crops could benefit from investigating previously unexplored traits. ...
Halophytes species can be used as a highly convenient model system to reveal key ionic and molecular...
Soil salinity remains a major threat to global food security, and the progress in crop breeding for ...
Growth of most crop plants (glycophytes) is reduced in saline environments. A few plant species (euh...
Halophytes are able to tolerate and even benefit from salt concentrations that kill most other plant...
For a plant to persist in saline soil, osmotic adjustment of all plant cells is essential. The more ...
Although control of xylem ion loading is essential to confer salinity stress tolerance, specific det...
Halophytes can survive and complete their life cycle in the presence of ≥200 mM NaCl. These remarkab...
To compensate for the lack of capacity for external salt storage in the epidermal bladder cells, qui...
The ability of halophytes to thrive under saline conditions implies efficient ROS detoxification and...
Succulent halophytes can be used as convenient models for understanding the mechanistic basis of pla...
Halophytes, plants that survive to reproduce in environments where the salt concentration is around ...
To understand the adaptive strategies employed by plants to deal with saline conditions, two halophy...
Soil salinity is a major threat to future food stability. Almost 20% of irrigated land is currently ...
<div><p>Salinity is an important environmental constraint limiting plant productivity. Understanding...