Environmental stress factors such as drought, elevated temperature, salinity and rising CO2 affect plant growth and pose a growing threat to sustainable agriculture. This has become a hot issue due to concerns about the effects of climate change on plant resources, biodiversity and global food security. Plant adaptation to stress involves key changes in the ‘-omic’ architecture. Here, we present an overview of the physiological and molecular programs in stress adaptation focusing on how genes, proteins and metabolites change after individual and multiple environmental stresses. We address the role which ‘-omics’ research, coupled to systems biology approaches, can play in future research on plants seemingly unable to adapt as well as those ...
Plants benefit from their close association with soil microbes which assist in their response to abi...
Plants benefit from their close association with soil microbes which assist in their response to abi...
Plants benefit from their close association with soil microbes which assist in their response to abi...
Environmental stress factors such as drought, elevated temperature, salinity and rising CO2 affect p...
Environmental stress factors such as drought, elevated temperature, salinity and rising CO2 affect p...
Due to their sessile nature, plants have to confront the stresses and develop potent adaptive tactic...
International audienceClimate change reshapes the physiology and development of organisms through ph...
International audienceClimate change reshapes the physiology and development of organisms through ph...
The world’s population is growing at an alarming rate. As of 2010, out of 7 billion people in the wo...
The environment is constantly affecting all organisms in many different ways during their entire lif...
Environmental stresses such as drought, heat, and salinity limit plant development and agricultural ...
In recent decades, global climate change and heavy metal stress have severely affected plant growth ...
Climate change is altering environments in which plants and different crops grow and survive. We alr...
Climate change is predicted to increase the frequency and intensity of abiotic stress combinations t...
Sewelam N, Brilhaus D, Bräutigam A, Alseekh S, Fernie AR, Maurino VG. Molecular plant responses to c...
Plants benefit from their close association with soil microbes which assist in their response to abi...
Plants benefit from their close association with soil microbes which assist in their response to abi...
Plants benefit from their close association with soil microbes which assist in their response to abi...
Environmental stress factors such as drought, elevated temperature, salinity and rising CO2 affect p...
Environmental stress factors such as drought, elevated temperature, salinity and rising CO2 affect p...
Due to their sessile nature, plants have to confront the stresses and develop potent adaptive tactic...
International audienceClimate change reshapes the physiology and development of organisms through ph...
International audienceClimate change reshapes the physiology and development of organisms through ph...
The world’s population is growing at an alarming rate. As of 2010, out of 7 billion people in the wo...
The environment is constantly affecting all organisms in many different ways during their entire lif...
Environmental stresses such as drought, heat, and salinity limit plant development and agricultural ...
In recent decades, global climate change and heavy metal stress have severely affected plant growth ...
Climate change is altering environments in which plants and different crops grow and survive. We alr...
Climate change is predicted to increase the frequency and intensity of abiotic stress combinations t...
Sewelam N, Brilhaus D, Bräutigam A, Alseekh S, Fernie AR, Maurino VG. Molecular plant responses to c...
Plants benefit from their close association with soil microbes which assist in their response to abi...
Plants benefit from their close association with soil microbes which assist in their response to abi...
Plants benefit from their close association with soil microbes which assist in their response to abi...