Low temperature is an environmental stress that greatly influences plant performance and distribution. Plants exposed to cold stress exhibit modifications of plasma membrane physical properties that can affect their functionality. Here it is reported the effect of low temperature exposure of Arabidopsis plants on the activity of phospholipase D and H+-ATPase, the master enzyme located at the plasma membrane. The H+-ATPase activity was differently affected, depending on the length of cold stress imposed. In particular, an exposure to 4 °C for 6 h determined the strong inhibition of the H+-ATPase activity, that correlates with a reduced association with the regulatory 14-3-3 proteins. A longer exposure first caused the full recovery of the en...
Low temperature stress adversely affects plant growth and development. Isolation and characterizatio...
Low temperatures (0–10 °C) represent a major physiological stress for plants, negatively affecting b...
The human population is increasing at an alarming rate, whereas at the same time agricultu...
Low temperature is an environmental stress that greatly influences plant performance and distributio...
Plants are constantly exposed to different environmental stresses such as extreme temperatures, high...
Cold and freezing stresses severely affect plant growth, development, and survival rate. Some plant ...
Cold and freezing stresses severely affect plant growth, development, and survival rate. Some plant ...
Cold and freezing stresses severely affect plant growth, development, and survival rate. Some plant ...
Plant freezing tolerance is one of the most important factors which determine the productivity and d...
Arabidopsis thaliana increases freezing tolerance upon exposure to low, non-freezing temperatures, w...
We here demonstrate the presence of a plasma membrane-associated phospholipase A(2) (EC 3.1.1.4; PLA...
Phosphatidic acid (PtdOH) is emerging as an important signaling lipid in abiotic stress responses in...
AbstractAll higher plants possess highly specific binding sites for fusicoccin, a metabolite of the ...
Heat stress induces an array of physiological adjustments that facilitate continued homeostasis and ...
AbstractActivities of prevalent protein phosphatases decreased by nearly 95% and those of individual...
Low temperature stress adversely affects plant growth and development. Isolation and characterizatio...
Low temperatures (0–10 °C) represent a major physiological stress for plants, negatively affecting b...
The human population is increasing at an alarming rate, whereas at the same time agricultu...
Low temperature is an environmental stress that greatly influences plant performance and distributio...
Plants are constantly exposed to different environmental stresses such as extreme temperatures, high...
Cold and freezing stresses severely affect plant growth, development, and survival rate. Some plant ...
Cold and freezing stresses severely affect plant growth, development, and survival rate. Some plant ...
Cold and freezing stresses severely affect plant growth, development, and survival rate. Some plant ...
Plant freezing tolerance is one of the most important factors which determine the productivity and d...
Arabidopsis thaliana increases freezing tolerance upon exposure to low, non-freezing temperatures, w...
We here demonstrate the presence of a plasma membrane-associated phospholipase A(2) (EC 3.1.1.4; PLA...
Phosphatidic acid (PtdOH) is emerging as an important signaling lipid in abiotic stress responses in...
AbstractAll higher plants possess highly specific binding sites for fusicoccin, a metabolite of the ...
Heat stress induces an array of physiological adjustments that facilitate continued homeostasis and ...
AbstractActivities of prevalent protein phosphatases decreased by nearly 95% and those of individual...
Low temperature stress adversely affects plant growth and development. Isolation and characterizatio...
Low temperatures (0–10 °C) represent a major physiological stress for plants, negatively affecting b...
The human population is increasing at an alarming rate, whereas at the same time agricultu...