As the centerpiece of the biomass production process, ribosome activity is highly coordinated with environmental cues. Findings revealing ribosome subgroups responsive to adverse conditions suggest this tight coordination may be grounded in the induction of variant ribosome compositions and the differential translation outcomes they might produce. In this perspective, we go through the literature linking ribosome heterogeneity to plants’ abiotic stress response. Once unraveled, this crosstalk may serve as the foundation of novel strategies to custom cultivars tolerant to challenging environments without the yield penalty
Not AvailableMultiple biotic and abiotic environmental stress factors affect negatively various aspe...
Drought, cold, high-salinity and heat are major abiotic stresses that severely reduce the yield of f...
Plants, due to their sessile nature, face several environmental adversities. Abiotic stresses such a...
Plants have to coordinate eukaryotic ribosomes (cytoribosomes) and prokaryotic ribosomes (plastoribo...
Plants have to coordinate eukaryotic ribosomes (cytoribosomes) and prokaryotic ribosomes (plastoribo...
Adverse environmental conditions pose serious limitations to agricultural production. Classical biot...
Translation and its regulation play an important role in plant adaptation. Ribosomes have tradition...
Agriculture production faces many abiotic stresses, mainly drought, salinity, low and high temperatu...
Crop plants have developed a multitude of defense and adaptation responses to protect themselves aga...
Understanding how plants cope with stress and the intricate mechanisms thereby used to adapt and sur...
Abiotic stresses are the foremost limiting factors for agricultural productivity. Crop plants need t...
It is vital to ramp up crop production dramatically by 2050 due to the increasing global population ...
Not AvailableAbiotic stresses are the foremost limiting factors for agricultural productivity. Crop ...
Plants have developed strategies to deal with the great variety of challenges they are exposed to. A...
Plant abiotic stress responses are vital yield restricting aspect in agriculture. Recent technology ...
Not AvailableMultiple biotic and abiotic environmental stress factors affect negatively various aspe...
Drought, cold, high-salinity and heat are major abiotic stresses that severely reduce the yield of f...
Plants, due to their sessile nature, face several environmental adversities. Abiotic stresses such a...
Plants have to coordinate eukaryotic ribosomes (cytoribosomes) and prokaryotic ribosomes (plastoribo...
Plants have to coordinate eukaryotic ribosomes (cytoribosomes) and prokaryotic ribosomes (plastoribo...
Adverse environmental conditions pose serious limitations to agricultural production. Classical biot...
Translation and its regulation play an important role in plant adaptation. Ribosomes have tradition...
Agriculture production faces many abiotic stresses, mainly drought, salinity, low and high temperatu...
Crop plants have developed a multitude of defense and adaptation responses to protect themselves aga...
Understanding how plants cope with stress and the intricate mechanisms thereby used to adapt and sur...
Abiotic stresses are the foremost limiting factors for agricultural productivity. Crop plants need t...
It is vital to ramp up crop production dramatically by 2050 due to the increasing global population ...
Not AvailableAbiotic stresses are the foremost limiting factors for agricultural productivity. Crop ...
Plants have developed strategies to deal with the great variety of challenges they are exposed to. A...
Plant abiotic stress responses are vital yield restricting aspect in agriculture. Recent technology ...
Not AvailableMultiple biotic and abiotic environmental stress factors affect negatively various aspe...
Drought, cold, high-salinity and heat are major abiotic stresses that severely reduce the yield of f...
Plants, due to their sessile nature, face several environmental adversities. Abiotic stresses such a...