Water is a major limiting factor in world agriculture. In general, most crop plants are highly sensitive to even a mild dehydration stress. There are however, a few genera of plants unique to Southern Africa, called “resurrection plants ” which can tolerate extreme water loss or desiccation. We have used Xerophyta viscosa, a representative of the monocotyledonous resurrection plants to isolate genes that are associated with osmotic stress tolerance. Several genes that are differentially expressed, and that confer functional sufficiency to osmotically-stressed Escherichia coli are being studied at the molecular and biochemical levels. In this review, we use this as a basis to discuss the physiological and molecular insights into drought tole...
Xerophyta viscosa (Baker) is a monocotyledonousresurrection plant that is capable of tolerating extr...
Desiccation tolerance (DT), which is the ability to survive and recover from the almost complete los...
In the last decade, our understanding of the processes underlying plant response to drought, at the ...
Water is a major limiting factor in world agriculture. In general, most crop plants are highly sensi...
Water is a major limiting factor in world agriculture. In general, most crop plants are highly sensi...
Water is a major limiting factor in world agriculture. In general, most crop plants are highly sensi...
Provides a first comprehensive review of integrated physiological and molecular aspects of desiccati...
Systems studies of drought stress in resurrection plants and other xerophytes are rapidly identifyin...
Desiccation tolerance is common in seeds and various other organisms but only a few Angiosperm speci...
Few organisms are able to survive desiccation to the air-dried state. Nevertheless, there are a smal...
Desiccation tolerance is common in seeds and various other organisms but only a few Angiosperm speci...
A small group of angiosperms, known as resurrection plants, can tolerate extreme dehydration. They s...
A small group of angiosperms, known as resurrection plants, can tolerate extreme dehydration. They ...
Drought is one of the abiotic stresses that plants have to fight with from the beginning of their tr...
Xerophyta viscosa (Baker) is a monocotyledonous resurrection plant that is capable of tolerating ext...
Xerophyta viscosa (Baker) is a monocotyledonousresurrection plant that is capable of tolerating extr...
Desiccation tolerance (DT), which is the ability to survive and recover from the almost complete los...
In the last decade, our understanding of the processes underlying plant response to drought, at the ...
Water is a major limiting factor in world agriculture. In general, most crop plants are highly sensi...
Water is a major limiting factor in world agriculture. In general, most crop plants are highly sensi...
Water is a major limiting factor in world agriculture. In general, most crop plants are highly sensi...
Provides a first comprehensive review of integrated physiological and molecular aspects of desiccati...
Systems studies of drought stress in resurrection plants and other xerophytes are rapidly identifyin...
Desiccation tolerance is common in seeds and various other organisms but only a few Angiosperm speci...
Few organisms are able to survive desiccation to the air-dried state. Nevertheless, there are a smal...
Desiccation tolerance is common in seeds and various other organisms but only a few Angiosperm speci...
A small group of angiosperms, known as resurrection plants, can tolerate extreme dehydration. They s...
A small group of angiosperms, known as resurrection plants, can tolerate extreme dehydration. They ...
Drought is one of the abiotic stresses that plants have to fight with from the beginning of their tr...
Xerophyta viscosa (Baker) is a monocotyledonous resurrection plant that is capable of tolerating ext...
Xerophyta viscosa (Baker) is a monocotyledonousresurrection plant that is capable of tolerating extr...
Desiccation tolerance (DT), which is the ability to survive and recover from the almost complete los...
In the last decade, our understanding of the processes underlying plant response to drought, at the ...