Resurrection plants can tolerate extreme water loss. Substantial sugar accumulation is a phenomenon in resurrection plants during dehydration. Sugars have been identified as one important factor contributing to desiccation tolerance. Phylogenetic diversity of resurrection plants reflects the diversity of sugar metabolism in response to dehydration. Sugars, which accumulate during dehydration, have been shown to protect macromolecules and membranes and to scavenge reactive oxygen species. This review focuses on the performance of enzymes participating in sugar metabolism during dehydration stress. The relation between sugar metabolism and other biochemical activities is discussed and open questions as well as potential experimental approache...
The resurrection plant C. plantagineum is able to survive almost complete water loss in their vegeta...
Desiccation-tolerance in vegetative tissues of angiosperms has a polyphyletic origin and could be du...
Provides a first comprehensive review of integrated physiological and molecular aspects of desiccati...
The ability of the resurrection plant Craterostigma plantagineum to recover from complete dehydratio...
A small group of angiosperms, known as resurrection plants, can tolerate extreme dehydration. They ...
A small group of angiosperms, known as resurrection plants, can tolerate extreme dehydration. They s...
Drought is one of the abiotic stresses that plants have to fight with from the beginning of their tr...
Resurrection plants possess a unique ability to counteract desiccation stress. Desiccation tolerance...
Drought is one of the abiotic stresses that plants have to fight with from the beginning of their tr...
International audienceResurrection plants possess a unique ability to counteract desiccation stress....
Most higher plants possess a phase in their life cycle in which tissues can survive desiccation. How...
What is remarkable about resurrection plants is the ability of vegetative tissues (root, shoot, stem...
The ability to survive vegetative-tissue desiccation, defined as the near complete loss (80-95%) of ...
Because of their unique tolerance to desiccation, the so-called resurrection plants can be considere...
Tolerance to near complete desiccation of vegetative organs is a widespread capability in bryophytes...
The resurrection plant C. plantagineum is able to survive almost complete water loss in their vegeta...
Desiccation-tolerance in vegetative tissues of angiosperms has a polyphyletic origin and could be du...
Provides a first comprehensive review of integrated physiological and molecular aspects of desiccati...
The ability of the resurrection plant Craterostigma plantagineum to recover from complete dehydratio...
A small group of angiosperms, known as resurrection plants, can tolerate extreme dehydration. They ...
A small group of angiosperms, known as resurrection plants, can tolerate extreme dehydration. They s...
Drought is one of the abiotic stresses that plants have to fight with from the beginning of their tr...
Resurrection plants possess a unique ability to counteract desiccation stress. Desiccation tolerance...
Drought is one of the abiotic stresses that plants have to fight with from the beginning of their tr...
International audienceResurrection plants possess a unique ability to counteract desiccation stress....
Most higher plants possess a phase in their life cycle in which tissues can survive desiccation. How...
What is remarkable about resurrection plants is the ability of vegetative tissues (root, shoot, stem...
The ability to survive vegetative-tissue desiccation, defined as the near complete loss (80-95%) of ...
Because of their unique tolerance to desiccation, the so-called resurrection plants can be considere...
Tolerance to near complete desiccation of vegetative organs is a widespread capability in bryophytes...
The resurrection plant C. plantagineum is able to survive almost complete water loss in their vegeta...
Desiccation-tolerance in vegetative tissues of angiosperms has a polyphyletic origin and could be du...
Provides a first comprehensive review of integrated physiological and molecular aspects of desiccati...