Resurrection plants are able to deal with complete dehydration of their leaves and then recover normal metabolic activity after rehydration. Only a few resurrection species are exposed to freezing temperatures in their natural environments, making them interesting models to study the key metabolic adjustments of freezing tolerances. Here, we investigate the effect of cold and freezing temperatures on physiological and biochemical changes in the leaves of Haberlea rhodopensis under natural and controlled environmental conditions. Our data shows that leaf water content affects its thermodynamical properties during vitrification under low temperatures. The changes in membrane lipid composition, accumulation of sugars, and synthesis of stress-i...
The photoprotective mechanisms of desiccation tolerance and freezing toler- ance and their relation ...
ABSTRACT Heterosis, or hybrid vigor, is one of the most important tools in plant breeding and has pr...
Abstract The desiccation-tolerant plant Haberlea rhodopensis can withstand months of darkness witho...
Resurrection plants are able to deal with complete dehydration of their leaves and then recover norm...
Haberlea rhodopensis is a unique desiccation-tolerant angiosperm that also survives winter frost. As...
Haberlea rhodopensis is a unique desiccation-tolerant angiosperm that also survives winter frost. A...
Haberlea rhodopensis is a resurrection species with extreme resistance to drought stress and desicca...
International audienceGlobal warming and drought stress are expected to have a negative impact on ag...
Haberlea rhodopensis is a resurrection plant with remarkable tolerance to desiccation. Haberlea expo...
Considerable effort has been directed towards understanding how plants adapt to low temperature. In...
Haberlea rhodopensis belongs to the small group of angiosperms that can survive desiccation to air-d...
Plant freezing tolerance is one of the most important factors which determine the productivity and d...
Resurrection plants recover physiological functions after complete desiccation. Almost all of them a...
Cold acclimation of plants is a complex process involving a number of biochemical and physiological ...
Woody plants in boreal to arctic environments and high mountains survive prolonged exposure to tempe...
The photoprotective mechanisms of desiccation tolerance and freezing toler- ance and their relation ...
ABSTRACT Heterosis, or hybrid vigor, is one of the most important tools in plant breeding and has pr...
Abstract The desiccation-tolerant plant Haberlea rhodopensis can withstand months of darkness witho...
Resurrection plants are able to deal with complete dehydration of their leaves and then recover norm...
Haberlea rhodopensis is a unique desiccation-tolerant angiosperm that also survives winter frost. As...
Haberlea rhodopensis is a unique desiccation-tolerant angiosperm that also survives winter frost. A...
Haberlea rhodopensis is a resurrection species with extreme resistance to drought stress and desicca...
International audienceGlobal warming and drought stress are expected to have a negative impact on ag...
Haberlea rhodopensis is a resurrection plant with remarkable tolerance to desiccation. Haberlea expo...
Considerable effort has been directed towards understanding how plants adapt to low temperature. In...
Haberlea rhodopensis belongs to the small group of angiosperms that can survive desiccation to air-d...
Plant freezing tolerance is one of the most important factors which determine the productivity and d...
Resurrection plants recover physiological functions after complete desiccation. Almost all of them a...
Cold acclimation of plants is a complex process involving a number of biochemical and physiological ...
Woody plants in boreal to arctic environments and high mountains survive prolonged exposure to tempe...
The photoprotective mechanisms of desiccation tolerance and freezing toler- ance and their relation ...
ABSTRACT Heterosis, or hybrid vigor, is one of the most important tools in plant breeding and has pr...
Abstract The desiccation-tolerant plant Haberlea rhodopensis can withstand months of darkness witho...