Environmental pollution, global warming and climate change exacerbate the impact of biotic and abiotic stresses on plant growth and yield. Plants have evolved sophisticated defence network, also called innate immune system, in response to everchanging environmental conditions. Significant progress has been made in identifying the key stress-inducible genes associated with defence response to single stressors. However, relatively little information is available on the signaling crosstalk in response to combined biotic/abiotic stresses. Recent evidence highlights the complex nature of interactions between biotic and abiotic stress responses, significant aberrant signaling crosstalk in response to combined stresses and a degree of overlap, but...
Drought, cold, high-salinity and heat are major abiotic stresses that severely reduce the yield of f...
Environmental stress factors such as drought, elevated temperature, salinity and rising CO2 affect p...
In nature, plants must respond to multiple stresses simultaneously, which likely demands cross-talk ...
Crop plants have developed a multitude of defense and adaptation responses to protect themselves aga...
Plants are constantly confronted to both abiotic and biotic stresses that seriously reduce their pro...
Higher plants play a major role in keeping a stable environment on the globe. They regulate global c...
International audienceThe current context of environmental and climate changes deeply influences the...
Most reviews of climate change are epidemiological, focusing on impact assessment and risk mapping. ...
Plants growing in their natural habitats are often challenged simultaneously by multiple stress fact...
Agriculture production faces many abiotic stresses, mainly drought, salinity, low and high temperatu...
Understanding how plants cope with stress and the intricate mechanisms thereby used to adapt and sur...
The world’s population is growing at an alarming rate. As of 2010, out of 7 billion people in the wo...
Plants, due to their sessile nature, face several environmental adversities. Abiotic stresses such a...
Plants, due to their sessile nature, face several environmental adversities. Abiotic stresses such a...
Climate change is altering environments in which plants and different crops grow and survive. We alr...
Drought, cold, high-salinity and heat are major abiotic stresses that severely reduce the yield of f...
Environmental stress factors such as drought, elevated temperature, salinity and rising CO2 affect p...
In nature, plants must respond to multiple stresses simultaneously, which likely demands cross-talk ...
Crop plants have developed a multitude of defense and adaptation responses to protect themselves aga...
Plants are constantly confronted to both abiotic and biotic stresses that seriously reduce their pro...
Higher plants play a major role in keeping a stable environment on the globe. They regulate global c...
International audienceThe current context of environmental and climate changes deeply influences the...
Most reviews of climate change are epidemiological, focusing on impact assessment and risk mapping. ...
Plants growing in their natural habitats are often challenged simultaneously by multiple stress fact...
Agriculture production faces many abiotic stresses, mainly drought, salinity, low and high temperatu...
Understanding how plants cope with stress and the intricate mechanisms thereby used to adapt and sur...
The world’s population is growing at an alarming rate. As of 2010, out of 7 billion people in the wo...
Plants, due to their sessile nature, face several environmental adversities. Abiotic stresses such a...
Plants, due to their sessile nature, face several environmental adversities. Abiotic stresses such a...
Climate change is altering environments in which plants and different crops grow and survive. We alr...
Drought, cold, high-salinity and heat are major abiotic stresses that severely reduce the yield of f...
Environmental stress factors such as drought, elevated temperature, salinity and rising CO2 affect p...
In nature, plants must respond to multiple stresses simultaneously, which likely demands cross-talk ...