Plants harvest sunlight by converting light energy to electron flow through the primary events in photosynthesis. One important question is how the light harvesting machinery adapts to fluctuating sunlight intensity. As a result of various regulatory processes, efficient light harvesting and photoprotection are balanced. Some of the biological steps in the photoprotective processes have been extensively studied and physiological regulatory factors have been identified. For example, the effect of lumen pH in changing carotenoid composition has been explored. However, the importance of photophysical dynamics in the initial light-harvesting steps and its relation to photoprotection remain poorly understood. Conformational and excited-state dyn...
In oxygenic photosynthesis, light harvesting is regulated to safely dissipate excess energy and prev...
Under conditions of excess sunlight the efficient light-harvesting antenna1 found in the chloroplast...
In order to maximize their use of light energy in photosynthesis, plants have molecules that act as ...
In photosynthetic light harvesting, absorbed sunlight is converted to electron flow with near-unity ...
In photosynthetic light harvesting, absorbed sunlight is converted to electron flow with near-unity ...
Photosynthetic organisms flourish under low light intensities by converting photoenergy to chemical ...
The light-harvesting complexes (LHCs) of plants can regulate the energy flux to the reaction centers...
AbstractLight-harvesting pigment-protein complexes of photosystem II of plants have a dual function:...
The light-harvesting complexes (LHCs) of plants can regulate the level of excitation in the photosyn...
The conversion of solar radiation to chemical energy in plants and green algae takes place in the th...
Light-harvesting pigment-protein complexes of photosystem II of plants have a dual function: they ef...
AbstractThe ability to dissipate large fractions of their absorbed light energy as heat is a vital p...
Understanding photosynthetic light harvesting requires knowledge of the molecular mechanisms that di...
The ability to dissipate large fractions of their absorbed light energy as heat is a vital photoprot...
Under excess illumination, the Photosystem II light-harvesting antenna of higher plants has the abil...
In oxygenic photosynthesis, light harvesting is regulated to safely dissipate excess energy and prev...
Under conditions of excess sunlight the efficient light-harvesting antenna1 found in the chloroplast...
In order to maximize their use of light energy in photosynthesis, plants have molecules that act as ...
In photosynthetic light harvesting, absorbed sunlight is converted to electron flow with near-unity ...
In photosynthetic light harvesting, absorbed sunlight is converted to electron flow with near-unity ...
Photosynthetic organisms flourish under low light intensities by converting photoenergy to chemical ...
The light-harvesting complexes (LHCs) of plants can regulate the energy flux to the reaction centers...
AbstractLight-harvesting pigment-protein complexes of photosystem II of plants have a dual function:...
The light-harvesting complexes (LHCs) of plants can regulate the level of excitation in the photosyn...
The conversion of solar radiation to chemical energy in plants and green algae takes place in the th...
Light-harvesting pigment-protein complexes of photosystem II of plants have a dual function: they ef...
AbstractThe ability to dissipate large fractions of their absorbed light energy as heat is a vital p...
Understanding photosynthetic light harvesting requires knowledge of the molecular mechanisms that di...
The ability to dissipate large fractions of their absorbed light energy as heat is a vital photoprot...
Under excess illumination, the Photosystem II light-harvesting antenna of higher plants has the abil...
In oxygenic photosynthesis, light harvesting is regulated to safely dissipate excess energy and prev...
Under conditions of excess sunlight the efficient light-harvesting antenna1 found in the chloroplast...
In order to maximize their use of light energy in photosynthesis, plants have molecules that act as ...